hotspot/src/cpu/x86/vm/macroAssembler_x86.cpp
author bpittore
Wed, 24 Jun 2015 12:12:25 -0400
changeset 31592 43f48e165466
parent 31369 0c3dcc865a1c
child 31782 b23b74f8ae8d
permissions -rw-r--r--
8081202: Hotspot compile warning: "Invalid suffix on literal; C++11 requires a space between literal and identifier" Summary: Need to add a space between macro identifier and string literal Reviewed-by: stefank, dholmes, kbarrett
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/*
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 * Copyright (c) 1997, 2015, Oracle and/or its affiliates. All rights reserved.
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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 *
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 * This code is free software; you can redistribute it and/or modify it
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 * under the terms of the GNU General Public License version 2 only, as
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 * published by the Free Software Foundation.
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 *
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 * This code is distributed in the hope that it will be useful, but WITHOUT
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 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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 * version 2 for more details (a copy is included in the LICENSE file that
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 * accompanied this code).
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 *
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 * You should have received a copy of the GNU General Public License version
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 * 2 along with this work; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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 *
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 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 *
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 */
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#include "precompiled.hpp"
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#include "asm/assembler.hpp"
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#include "asm/assembler.inline.hpp"
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#include "compiler/disassembler.hpp"
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#include "gc/shared/cardTableModRefBS.hpp"
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#include "gc/shared/collectedHeap.inline.hpp"
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#include "interpreter/interpreter.hpp"
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#include "memory/resourceArea.hpp"
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#include "memory/universe.hpp"
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#include "prims/methodHandles.hpp"
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#include "runtime/biasedLocking.hpp"
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#include "runtime/interfaceSupport.hpp"
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#include "runtime/objectMonitor.hpp"
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#include "runtime/os.hpp"
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#include "runtime/sharedRuntime.hpp"
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#include "runtime/stubRoutines.hpp"
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#include "utilities/macros.hpp"
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#if INCLUDE_ALL_GCS
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#include "gc/g1/g1CollectedHeap.inline.hpp"
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#include "gc/g1/g1SATBCardTableModRefBS.hpp"
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#include "gc/g1/heapRegion.hpp"
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#endif // INCLUDE_ALL_GCS
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#ifdef PRODUCT
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#define BLOCK_COMMENT(str) /* nothing */
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#define STOP(error) stop(error)
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#else
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#define BLOCK_COMMENT(str) block_comment(str)
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#define STOP(error) block_comment(error); stop(error)
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#endif
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#define BIND(label) bind(label); BLOCK_COMMENT(#label ":")
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PRAGMA_FORMAT_MUTE_WARNINGS_FOR_GCC
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#ifdef ASSERT
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bool AbstractAssembler::pd_check_instruction_mark() { return true; }
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#endif
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static Assembler::Condition reverse[] = {
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    Assembler::noOverflow     /* overflow      = 0x0 */ ,
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    Assembler::overflow       /* noOverflow    = 0x1 */ ,
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    Assembler::aboveEqual     /* carrySet      = 0x2, below         = 0x2 */ ,
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    Assembler::below          /* aboveEqual    = 0x3, carryClear    = 0x3 */ ,
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    Assembler::notZero        /* zero          = 0x4, equal         = 0x4 */ ,
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    Assembler::zero           /* notZero       = 0x5, notEqual      = 0x5 */ ,
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    Assembler::above          /* belowEqual    = 0x6 */ ,
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    Assembler::belowEqual     /* above         = 0x7 */ ,
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    Assembler::positive       /* negative      = 0x8 */ ,
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    Assembler::negative       /* positive      = 0x9 */ ,
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    Assembler::noParity       /* parity        = 0xa */ ,
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    Assembler::parity         /* noParity      = 0xb */ ,
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    Assembler::greaterEqual   /* less          = 0xc */ ,
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    Assembler::less           /* greaterEqual  = 0xd */ ,
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    Assembler::greater        /* lessEqual     = 0xe */ ,
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    Assembler::lessEqual      /* greater       = 0xf, */
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};
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// Implementation of MacroAssembler
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// First all the versions that have distinct versions depending on 32/64 bit
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// Unless the difference is trivial (1 line or so).
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#ifndef _LP64
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// 32bit versions
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Address MacroAssembler::as_Address(AddressLiteral adr) {
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  return Address(adr.target(), adr.rspec());
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}
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Address MacroAssembler::as_Address(ArrayAddress adr) {
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  return Address::make_array(adr);
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}
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void MacroAssembler::call_VM_leaf_base(address entry_point,
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                                       int number_of_arguments) {
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  call(RuntimeAddress(entry_point));
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  increment(rsp, number_of_arguments * wordSize);
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}
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void MacroAssembler::cmpklass(Address src1, Metadata* obj) {
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  cmp_literal32(src1, (int32_t)obj, metadata_Relocation::spec_for_immediate());
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}
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void MacroAssembler::cmpklass(Register src1, Metadata* obj) {
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  cmp_literal32(src1, (int32_t)obj, metadata_Relocation::spec_for_immediate());
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}
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void MacroAssembler::cmpoop(Address src1, jobject obj) {
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  cmp_literal32(src1, (int32_t)obj, oop_Relocation::spec_for_immediate());
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}
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void MacroAssembler::cmpoop(Register src1, jobject obj) {
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  cmp_literal32(src1, (int32_t)obj, oop_Relocation::spec_for_immediate());
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}
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void MacroAssembler::extend_sign(Register hi, Register lo) {
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  // According to Intel Doc. AP-526, "Integer Divide", p.18.
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  if (VM_Version::is_P6() && hi == rdx && lo == rax) {
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    cdql();
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  } else {
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    movl(hi, lo);
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    sarl(hi, 31);
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  }
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}
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void MacroAssembler::jC2(Register tmp, Label& L) {
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  // set parity bit if FPU flag C2 is set (via rax)
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  save_rax(tmp);
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  fwait(); fnstsw_ax();
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  sahf();
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  restore_rax(tmp);
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  // branch
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  jcc(Assembler::parity, L);
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}
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void MacroAssembler::jnC2(Register tmp, Label& L) {
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  // set parity bit if FPU flag C2 is set (via rax)
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  save_rax(tmp);
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  fwait(); fnstsw_ax();
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  sahf();
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  restore_rax(tmp);
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  // branch
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  jcc(Assembler::noParity, L);
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}
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// 32bit can do a case table jump in one instruction but we no longer allow the base
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// to be installed in the Address class
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void MacroAssembler::jump(ArrayAddress entry) {
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  jmp(as_Address(entry));
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}
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// Note: y_lo will be destroyed
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void MacroAssembler::lcmp2int(Register x_hi, Register x_lo, Register y_hi, Register y_lo) {
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  // Long compare for Java (semantics as described in JVM spec.)
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  Label high, low, done;
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  cmpl(x_hi, y_hi);
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  jcc(Assembler::less, low);
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  jcc(Assembler::greater, high);
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  // x_hi is the return register
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  xorl(x_hi, x_hi);
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  cmpl(x_lo, y_lo);
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  jcc(Assembler::below, low);
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  jcc(Assembler::equal, done);
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  bind(high);
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  xorl(x_hi, x_hi);
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  increment(x_hi);
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  jmp(done);
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  bind(low);
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  xorl(x_hi, x_hi);
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  decrementl(x_hi);
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  bind(done);
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}
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void MacroAssembler::lea(Register dst, AddressLiteral src) {
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    mov_literal32(dst, (int32_t)src.target(), src.rspec());
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}
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void MacroAssembler::lea(Address dst, AddressLiteral adr) {
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  // leal(dst, as_Address(adr));
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  // see note in movl as to why we must use a move
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  mov_literal32(dst, (int32_t) adr.target(), adr.rspec());
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}
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void MacroAssembler::leave() {
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  mov(rsp, rbp);
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  pop(rbp);
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}
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void MacroAssembler::lmul(int x_rsp_offset, int y_rsp_offset) {
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  // Multiplication of two Java long values stored on the stack
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  // as illustrated below. Result is in rdx:rax.
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  //
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  // rsp ---> [  ??  ] \               \
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  //            ....    | y_rsp_offset  |
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  //          [ y_lo ] /  (in bytes)    | x_rsp_offset
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  //          [ y_hi ]                  | (in bytes)
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  //            ....                    |
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  //          [ x_lo ]                 /
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  //          [ x_hi ]
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  //            ....
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  //
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  // Basic idea: lo(result) = lo(x_lo * y_lo)
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  //             hi(result) = hi(x_lo * y_lo) + lo(x_hi * y_lo) + lo(x_lo * y_hi)
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  Address x_hi(rsp, x_rsp_offset + wordSize); Address x_lo(rsp, x_rsp_offset);
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  Address y_hi(rsp, y_rsp_offset + wordSize); Address y_lo(rsp, y_rsp_offset);
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  Label quick;
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  // load x_hi, y_hi and check if quick
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  // multiplication is possible
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  movl(rbx, x_hi);
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  movl(rcx, y_hi);
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  movl(rax, rbx);
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  orl(rbx, rcx);                                 // rbx, = 0 <=> x_hi = 0 and y_hi = 0
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  jcc(Assembler::zero, quick);                   // if rbx, = 0 do quick multiply
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  // do full multiplication
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  // 1st step
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  mull(y_lo);                                    // x_hi * y_lo
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  movl(rbx, rax);                                // save lo(x_hi * y_lo) in rbx,
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  // 2nd step
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  movl(rax, x_lo);
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  mull(rcx);                                     // x_lo * y_hi
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  addl(rbx, rax);                                // add lo(x_lo * y_hi) to rbx,
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  // 3rd step
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  bind(quick);                                   // note: rbx, = 0 if quick multiply!
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  movl(rax, x_lo);
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  mull(y_lo);                                    // x_lo * y_lo
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  addl(rdx, rbx);                                // correct hi(x_lo * y_lo)
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}
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void MacroAssembler::lneg(Register hi, Register lo) {
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  negl(lo);
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  adcl(hi, 0);
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  negl(hi);
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}
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void MacroAssembler::lshl(Register hi, Register lo) {
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  // Java shift left long support (semantics as described in JVM spec., p.305)
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  // (basic idea for shift counts s >= n: x << s == (x << n) << (s - n))
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  // shift value is in rcx !
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  assert(hi != rcx, "must not use rcx");
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  assert(lo != rcx, "must not use rcx");
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  const Register s = rcx;                        // shift count
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  const int      n = BitsPerWord;
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  Label L;
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  andl(s, 0x3f);                                 // s := s & 0x3f (s < 0x40)
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  cmpl(s, n);                                    // if (s < n)
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  jcc(Assembler::less, L);                       // else (s >= n)
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  movl(hi, lo);                                  // x := x << n
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  xorl(lo, lo);
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  // Note: subl(s, n) is not needed since the Intel shift instructions work rcx mod n!
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  bind(L);                                       // s (mod n) < n
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  shldl(hi, lo);                                 // x := x << s
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  shll(lo);
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}
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void MacroAssembler::lshr(Register hi, Register lo, bool sign_extension) {
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  // Java shift right long support (semantics as described in JVM spec., p.306 & p.310)
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  // (basic idea for shift counts s >= n: x >> s == (x >> n) >> (s - n))
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  assert(hi != rcx, "must not use rcx");
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  assert(lo != rcx, "must not use rcx");
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  const Register s = rcx;                        // shift count
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  const int      n = BitsPerWord;
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  Label L;
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  andl(s, 0x3f);                                 // s := s & 0x3f (s < 0x40)
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  cmpl(s, n);                                    // if (s < n)
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  jcc(Assembler::less, L);                       // else (s >= n)
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  movl(lo, hi);                                  // x := x >> n
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  if (sign_extension) sarl(hi, 31);
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  else                xorl(hi, hi);
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  // Note: subl(s, n) is not needed since the Intel shift instructions work rcx mod n!
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  bind(L);                                       // s (mod n) < n
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  shrdl(lo, hi);                                 // x := x >> s
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  if (sign_extension) sarl(hi);
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  else                shrl(hi);
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}
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void MacroAssembler::movoop(Register dst, jobject obj) {
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  mov_literal32(dst, (int32_t)obj, oop_Relocation::spec_for_immediate());
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}
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   292
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void MacroAssembler::movoop(Address dst, jobject obj) {
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  mov_literal32(dst, (int32_t)obj, oop_Relocation::spec_for_immediate());
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}
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   296
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void MacroAssembler::mov_metadata(Register dst, Metadata* obj) {
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  mov_literal32(dst, (int32_t)obj, metadata_Relocation::spec_for_immediate());
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}
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   300
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void MacroAssembler::mov_metadata(Address dst, Metadata* obj) {
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  mov_literal32(dst, (int32_t)obj, metadata_Relocation::spec_for_immediate());
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}
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23491
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void MacroAssembler::movptr(Register dst, AddressLiteral src, Register scratch) {
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  // scratch register is not used,
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  // it is defined to match parameters of 64-bit version of this method.
14626
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  if (src.is_lval()) {
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    mov_literal32(dst, (intptr_t)src.target(), src.rspec());
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  } else {
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    movl(dst, as_Address(src));
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  }
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}
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   314
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void MacroAssembler::movptr(ArrayAddress dst, Register src) {
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  movl(as_Address(dst), src);
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}
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void MacroAssembler::movptr(Register dst, ArrayAddress src) {
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  movl(dst, as_Address(src));
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}
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// src should NEVER be a real pointer. Use AddressLiteral for true pointers
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void MacroAssembler::movptr(Address dst, intptr_t src) {
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  movl(dst, src);
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}
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   327
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   328
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void MacroAssembler::pop_callee_saved_registers() {
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  pop(rcx);
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  pop(rdx);
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  pop(rdi);
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  pop(rsi);
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}
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   335
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void MacroAssembler::pop_fTOS() {
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  fld_d(Address(rsp, 0));
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  addl(rsp, 2 * wordSize);
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}
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   340
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void MacroAssembler::push_callee_saved_registers() {
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  push(rsi);
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  push(rdi);
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  push(rdx);
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  push(rcx);
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}
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   347
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void MacroAssembler::push_fTOS() {
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  subl(rsp, 2 * wordSize);
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  fstp_d(Address(rsp, 0));
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}
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   352
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   353
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   354
void MacroAssembler::pushoop(jobject obj) {
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   355
  push_literal32((int32_t)obj, oop_Relocation::spec_for_immediate());
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}
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   357
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   358
void MacroAssembler::pushklass(Metadata* obj) {
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  push_literal32((int32_t)obj, metadata_Relocation::spec_for_immediate());
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}
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   361
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   362
void MacroAssembler::pushptr(AddressLiteral src) {
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   363
  if (src.is_lval()) {
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   364
    push_literal32((int32_t)src.target(), src.rspec());
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   365
  } else {
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    pushl(as_Address(src));
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   367
  }
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}
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   369
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   370
void MacroAssembler::set_word_if_not_zero(Register dst) {
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  xorl(dst, dst);
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  set_byte_if_not_zero(dst);
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}
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   374
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static void pass_arg0(MacroAssembler* masm, Register arg) {
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  masm->push(arg);
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   377
}
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   378
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   379
static void pass_arg1(MacroAssembler* masm, Register arg) {
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  masm->push(arg);
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}
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   382
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   383
static void pass_arg2(MacroAssembler* masm, Register arg) {
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  masm->push(arg);
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   385
}
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diff changeset
   386
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   387
static void pass_arg3(MacroAssembler* masm, Register arg) {
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   388
  masm->push(arg);
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   389
}
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   390
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   391
#ifndef PRODUCT
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   392
extern "C" void findpc(intptr_t x);
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   393
#endif
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   394
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   395
void MacroAssembler::debug32(int rdi, int rsi, int rbp, int rsp, int rbx, int rdx, int rcx, int rax, int eip, char* msg) {
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   396
  // In order to get locks to work, we need to fake a in_VM state
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   397
  JavaThread* thread = JavaThread::current();
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   398
  JavaThreadState saved_state = thread->thread_state();
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diff changeset
   399
  thread->set_thread_state(_thread_in_vm);
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diff changeset
   400
  if (ShowMessageBoxOnError) {
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diff changeset
   401
    JavaThread* thread = JavaThread::current();
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diff changeset
   402
    JavaThreadState saved_state = thread->thread_state();
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diff changeset
   403
    thread->set_thread_state(_thread_in_vm);
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diff changeset
   404
    if (CountBytecodes || TraceBytecodes || StopInterpreterAt) {
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diff changeset
   405
      ttyLocker ttyl;
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diff changeset
   406
      BytecodeCounter::print();
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diff changeset
   407
    }
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diff changeset
   408
    // To see where a verify_oop failed, get $ebx+40/X for this frame.
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   409
    // This is the value of eip which points to where verify_oop will return.
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diff changeset
   410
    if (os::message_box(msg, "Execution stopped, print registers?")) {
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   411
      print_state32(rdi, rsi, rbp, rsp, rbx, rdx, rcx, rax, eip);
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   412
      BREAKPOINT;
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diff changeset
   413
    }
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diff changeset
   414
  } else {
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diff changeset
   415
    ttyLocker ttyl;
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   416
    ::tty->print_cr("=============== DEBUG MESSAGE: %s ================\n", msg);
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diff changeset
   417
  }
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diff changeset
   418
  // Don't assert holding the ttyLock
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diff changeset
   419
    assert(false, err_msg("DEBUG MESSAGE: %s", msg));
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diff changeset
   420
  ThreadStateTransition::transition(thread, _thread_in_vm, saved_state);
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diff changeset
   421
}
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diff changeset
   422
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diff changeset
   423
void MacroAssembler::print_state32(int rdi, int rsi, int rbp, int rsp, int rbx, int rdx, int rcx, int rax, int eip) {
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   424
  ttyLocker ttyl;
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   425
  FlagSetting fs(Debugging, true);
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diff changeset
   426
  tty->print_cr("eip = 0x%08x", eip);
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parents:
diff changeset
   427
#ifndef PRODUCT
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   428
  if ((WizardMode || Verbose) && PrintMiscellaneous) {
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diff changeset
   429
    tty->cr();
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diff changeset
   430
    findpc(eip);
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diff changeset
   431
    tty->cr();
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diff changeset
   432
  }
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diff changeset
   433
#endif
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parents:
diff changeset
   434
#define PRINT_REG(rax) \
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   435
  { tty->print("%s = ", #rax); os::print_location(tty, rax); }
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parents:
diff changeset
   436
  PRINT_REG(rax);
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diff changeset
   437
  PRINT_REG(rbx);
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diff changeset
   438
  PRINT_REG(rcx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
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diff changeset
   439
  PRINT_REG(rdx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   440
  PRINT_REG(rdi);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   441
  PRINT_REG(rsi);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   442
  PRINT_REG(rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   443
  PRINT_REG(rsp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   444
#undef PRINT_REG
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   445
  // Print some words near top of staack.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   446
  int* dump_sp = (int*) rsp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   447
  for (int col1 = 0; col1 < 8; col1++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   448
    tty->print("(rsp+0x%03x) 0x%08x: ", (int)((intptr_t)dump_sp - (intptr_t)rsp), (intptr_t)dump_sp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   449
    os::print_location(tty, *dump_sp++);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   450
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   451
  for (int row = 0; row < 16; row++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   452
    tty->print("(rsp+0x%03x) 0x%08x: ", (int)((intptr_t)dump_sp - (intptr_t)rsp), (intptr_t)dump_sp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   453
    for (int col = 0; col < 8; col++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   454
      tty->print(" 0x%08x", *dump_sp++);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   455
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   456
    tty->cr();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   457
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   458
  // Print some instructions around pc:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   459
  Disassembler::decode((address)eip-64, (address)eip);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   460
  tty->print_cr("--------");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   461
  Disassembler::decode((address)eip, (address)eip+32);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   462
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   463
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   464
void MacroAssembler::stop(const char* msg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   465
  ExternalAddress message((address)msg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   466
  // push address of message
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   467
  pushptr(message.addr());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   468
  { Label L; call(L, relocInfo::none); bind(L); }     // push eip
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   469
  pusha();                                            // push registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   470
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, MacroAssembler::debug32)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   471
  hlt();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   472
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   473
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   474
void MacroAssembler::warn(const char* msg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   475
  push_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   476
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   477
  ExternalAddress message((address) msg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   478
  // push address of message
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   479
  pushptr(message.addr());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   480
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   481
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, warning)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   482
  addl(rsp, wordSize);       // discard argument
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   483
  pop_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   484
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   485
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   486
void MacroAssembler::print_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   487
  { Label L; call(L, relocInfo::none); bind(L); }     // push eip
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   488
  pusha();                                            // push registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   489
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   490
  push_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   491
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, MacroAssembler::print_state32)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   492
  pop_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   493
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   494
  popa();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   495
  addl(rsp, wordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   496
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   497
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   498
#else // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   499
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   500
// 64 bit versions
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   501
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   502
Address MacroAssembler::as_Address(AddressLiteral adr) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   503
  // amd64 always does this as a pc-rel
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   504
  // we can be absolute or disp based on the instruction type
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   505
  // jmp/call are displacements others are absolute
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   506
  assert(!adr.is_lval(), "must be rval");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   507
  assert(reachable(adr), "must be");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   508
  return Address((int32_t)(intptr_t)(adr.target() - pc()), adr.target(), adr.reloc());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   509
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   510
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   511
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   512
Address MacroAssembler::as_Address(ArrayAddress adr) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   513
  AddressLiteral base = adr.base();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   514
  lea(rscratch1, base);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   515
  Address index = adr.index();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   516
  assert(index._disp == 0, "must not have disp"); // maybe it can?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   517
  Address array(rscratch1, index._index, index._scale, index._disp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   518
  return array;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   519
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   520
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   521
void MacroAssembler::call_VM_leaf_base(address entry_point, int num_args) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   522
  Label L, E;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   523
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   524
#ifdef _WIN64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   525
  // Windows always allocates space for it's register args
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   526
  assert(num_args <= 4, "only register arguments supported");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   527
  subq(rsp,  frame::arg_reg_save_area_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   528
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   529
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   530
  // Align stack if necessary
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   531
  testl(rsp, 15);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   532
  jcc(Assembler::zero, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   533
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   534
  subq(rsp, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   535
  {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   536
    call(RuntimeAddress(entry_point));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   537
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   538
  addq(rsp, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   539
  jmp(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   540
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   541
  bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   542
  {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   543
    call(RuntimeAddress(entry_point));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   544
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   545
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   546
  bind(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   547
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   548
#ifdef _WIN64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   549
  // restore stack pointer
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   550
  addq(rsp, frame::arg_reg_save_area_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   551
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   552
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   553
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   554
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   555
void MacroAssembler::cmp64(Register src1, AddressLiteral src2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   556
  assert(!src2.is_lval(), "should use cmpptr");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   557
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   558
  if (reachable(src2)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   559
    cmpq(src1, as_Address(src2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   560
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   561
    lea(rscratch1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   562
    Assembler::cmpq(src1, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   563
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   564
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   565
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   566
int MacroAssembler::corrected_idivq(Register reg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   567
  // Full implementation of Java ldiv and lrem; checks for special
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   568
  // case as described in JVM spec., p.243 & p.271.  The function
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   569
  // returns the (pc) offset of the idivl instruction - may be needed
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   570
  // for implicit exceptions.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   571
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   572
  //         normal case                           special case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   573
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   574
  // input : rax: dividend                         min_long
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   575
  //         reg: divisor   (may not be eax/edx)   -1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   576
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   577
  // output: rax: quotient  (= rax idiv reg)       min_long
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   578
  //         rdx: remainder (= rax irem reg)       0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   579
  assert(reg != rax && reg != rdx, "reg cannot be rax or rdx register");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   580
  static const int64_t min_long = 0x8000000000000000;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   581
  Label normal_case, special_case;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   582
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   583
  // check for special case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   584
  cmp64(rax, ExternalAddress((address) &min_long));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   585
  jcc(Assembler::notEqual, normal_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   586
  xorl(rdx, rdx); // prepare rdx for possible special case (where
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   587
                  // remainder = 0)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   588
  cmpq(reg, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   589
  jcc(Assembler::equal, special_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   590
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   591
  // handle normal case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   592
  bind(normal_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   593
  cdqq();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   594
  int idivq_offset = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   595
  idivq(reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   596
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   597
  // normal and special case exit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   598
  bind(special_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   599
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   600
  return idivq_offset;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   601
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   602
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   603
void MacroAssembler::decrementq(Register reg, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   604
  if (value == min_jint) { subq(reg, value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   605
  if (value <  0) { incrementq(reg, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   606
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   607
  if (value == 1 && UseIncDec) { decq(reg) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   608
  /* else */      { subq(reg, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   609
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   610
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   611
void MacroAssembler::decrementq(Address dst, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   612
  if (value == min_jint) { subq(dst, value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   613
  if (value <  0) { incrementq(dst, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   614
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   615
  if (value == 1 && UseIncDec) { decq(dst) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   616
  /* else */      { subq(dst, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   617
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   618
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   619
void MacroAssembler::incrementq(AddressLiteral dst) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   620
  if (reachable(dst)) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   621
    incrementq(as_Address(dst));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   622
  } else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   623
    lea(rscratch1, dst);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   624
    incrementq(Address(rscratch1, 0));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   625
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   626
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   627
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   628
void MacroAssembler::incrementq(Register reg, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   629
  if (value == min_jint) { addq(reg, value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   630
  if (value <  0) { decrementq(reg, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   631
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   632
  if (value == 1 && UseIncDec) { incq(reg) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   633
  /* else */      { addq(reg, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   634
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   635
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   636
void MacroAssembler::incrementq(Address dst, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   637
  if (value == min_jint) { addq(dst, value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   638
  if (value <  0) { decrementq(dst, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   639
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   640
  if (value == 1 && UseIncDec) { incq(dst) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   641
  /* else */      { addq(dst, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   642
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   643
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   644
// 32bit can do a case table jump in one instruction but we no longer allow the base
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   645
// to be installed in the Address class
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   646
void MacroAssembler::jump(ArrayAddress entry) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   647
  lea(rscratch1, entry.base());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   648
  Address dispatch = entry.index();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   649
  assert(dispatch._base == noreg, "must be");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   650
  dispatch._base = rscratch1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   651
  jmp(dispatch);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   652
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   653
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   654
void MacroAssembler::lcmp2int(Register x_hi, Register x_lo, Register y_hi, Register y_lo) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   655
  ShouldNotReachHere(); // 64bit doesn't use two regs
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   656
  cmpq(x_lo, y_lo);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   657
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   658
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   659
void MacroAssembler::lea(Register dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   660
    mov_literal64(dst, (intptr_t)src.target(), src.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   661
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   662
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   663
void MacroAssembler::lea(Address dst, AddressLiteral adr) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   664
  mov_literal64(rscratch1, (intptr_t)adr.target(), adr.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   665
  movptr(dst, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   666
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   667
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   668
void MacroAssembler::leave() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   669
  // %%% is this really better? Why not on 32bit too?
14837
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
   670
  emit_int8((unsigned char)0xC9); // LEAVE
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   671
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   672
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   673
void MacroAssembler::lneg(Register hi, Register lo) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   674
  ShouldNotReachHere(); // 64bit doesn't use two regs
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   675
  negq(lo);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   676
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   677
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   678
void MacroAssembler::movoop(Register dst, jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   679
  mov_literal64(dst, (intptr_t)obj, oop_Relocation::spec_for_immediate());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   680
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   681
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   682
void MacroAssembler::movoop(Address dst, jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   683
  mov_literal64(rscratch1, (intptr_t)obj, oop_Relocation::spec_for_immediate());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   684
  movq(dst, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   685
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   686
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   687
void MacroAssembler::mov_metadata(Register dst, Metadata* obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   688
  mov_literal64(dst, (intptr_t)obj, metadata_Relocation::spec_for_immediate());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   689
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   690
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   691
void MacroAssembler::mov_metadata(Address dst, Metadata* obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   692
  mov_literal64(rscratch1, (intptr_t)obj, metadata_Relocation::spec_for_immediate());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   693
  movq(dst, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   694
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   695
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   696
void MacroAssembler::movptr(Register dst, AddressLiteral src, Register scratch) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   697
  if (src.is_lval()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   698
    mov_literal64(dst, (intptr_t)src.target(), src.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   699
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   700
    if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   701
      movq(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   702
    } else {
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   703
      lea(scratch, src);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
   704
      movq(dst, Address(scratch, 0));
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   705
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   706
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   707
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   708
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   709
void MacroAssembler::movptr(ArrayAddress dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   710
  movq(as_Address(dst), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   711
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   712
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   713
void MacroAssembler::movptr(Register dst, ArrayAddress src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   714
  movq(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   715
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   716
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   717
// src should NEVER be a real pointer. Use AddressLiteral for true pointers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   718
void MacroAssembler::movptr(Address dst, intptr_t src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   719
  mov64(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   720
  movq(dst, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   721
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   722
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   723
// These are mostly for initializing NULL
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   724
void MacroAssembler::movptr(Address dst, int32_t src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   725
  movslq(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   726
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   727
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   728
void MacroAssembler::movptr(Register dst, int32_t src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   729
  mov64(dst, (intptr_t)src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   730
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   731
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   732
void MacroAssembler::pushoop(jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   733
  movoop(rscratch1, obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   734
  push(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   735
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   736
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   737
void MacroAssembler::pushklass(Metadata* obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   738
  mov_metadata(rscratch1, obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   739
  push(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   740
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   741
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   742
void MacroAssembler::pushptr(AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   743
  lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   744
  if (src.is_lval()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   745
    push(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   746
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   747
    pushq(Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   748
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   749
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   750
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   751
void MacroAssembler::reset_last_Java_frame(bool clear_fp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   752
                                           bool clear_pc) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   753
  // we must set sp to zero to clear frame
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   754
  movptr(Address(r15_thread, JavaThread::last_Java_sp_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   755
  // must clear fp, so that compiled frames are not confused; it is
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   756
  // possible that we need it only for debugging
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   757
  if (clear_fp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   758
    movptr(Address(r15_thread, JavaThread::last_Java_fp_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   759
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   760
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   761
  if (clear_pc) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   762
    movptr(Address(r15_thread, JavaThread::last_Java_pc_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   763
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   764
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   765
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   766
void MacroAssembler::set_last_Java_frame(Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   767
                                         Register last_java_fp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   768
                                         address  last_java_pc) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   769
  // determine last_java_sp register
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   770
  if (!last_java_sp->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   771
    last_java_sp = rsp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   772
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   773
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   774
  // last_java_fp is optional
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   775
  if (last_java_fp->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   776
    movptr(Address(r15_thread, JavaThread::last_Java_fp_offset()),
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   777
           last_java_fp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   778
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   779
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   780
  // last_java_pc is optional
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   781
  if (last_java_pc != NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   782
    Address java_pc(r15_thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   783
                    JavaThread::frame_anchor_offset() + JavaFrameAnchor::last_Java_pc_offset());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   784
    lea(rscratch1, InternalAddress(last_java_pc));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   785
    movptr(java_pc, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   786
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   787
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   788
  movptr(Address(r15_thread, JavaThread::last_Java_sp_offset()), last_java_sp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   789
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   790
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   791
static void pass_arg0(MacroAssembler* masm, Register arg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   792
  if (c_rarg0 != arg ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   793
    masm->mov(c_rarg0, arg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   794
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   795
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   796
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   797
static void pass_arg1(MacroAssembler* masm, Register arg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   798
  if (c_rarg1 != arg ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   799
    masm->mov(c_rarg1, arg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   800
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   801
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   802
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   803
static void pass_arg2(MacroAssembler* masm, Register arg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   804
  if (c_rarg2 != arg ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   805
    masm->mov(c_rarg2, arg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   806
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   807
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   808
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   809
static void pass_arg3(MacroAssembler* masm, Register arg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   810
  if (c_rarg3 != arg ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   811
    masm->mov(c_rarg3, arg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   812
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   813
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   814
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   815
void MacroAssembler::stop(const char* msg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   816
  address rip = pc();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   817
  pusha(); // get regs on stack
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   818
  lea(c_rarg0, ExternalAddress((address) msg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   819
  lea(c_rarg1, InternalAddress(rip));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   820
  movq(c_rarg2, rsp); // pass pointer to regs array
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   821
  andq(rsp, -16); // align stack as required by ABI
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   822
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, MacroAssembler::debug64)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   823
  hlt();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   824
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   825
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   826
void MacroAssembler::warn(const char* msg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   827
  push(rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   828
  movq(rbp, rsp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   829
  andq(rsp, -16);     // align stack as required by push_CPU_state and call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   830
  push_CPU_state();   // keeps alignment at 16 bytes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   831
  lea(c_rarg0, ExternalAddress((address) msg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   832
  call_VM_leaf(CAST_FROM_FN_PTR(address, warning), c_rarg0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   833
  pop_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   834
  mov(rsp, rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   835
  pop(rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   836
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   837
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   838
void MacroAssembler::print_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   839
  address rip = pc();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   840
  pusha();            // get regs on stack
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   841
  push(rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   842
  movq(rbp, rsp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   843
  andq(rsp, -16);     // align stack as required by push_CPU_state and call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   844
  push_CPU_state();   // keeps alignment at 16 bytes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   845
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   846
  lea(c_rarg0, InternalAddress(rip));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   847
  lea(c_rarg1, Address(rbp, wordSize)); // pass pointer to regs array
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   848
  call_VM_leaf(CAST_FROM_FN_PTR(address, MacroAssembler::print_state64), c_rarg0, c_rarg1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   849
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   850
  pop_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   851
  mov(rsp, rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   852
  pop(rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   853
  popa();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   854
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   855
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   856
#ifndef PRODUCT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   857
extern "C" void findpc(intptr_t x);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   858
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   859
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   860
void MacroAssembler::debug64(char* msg, int64_t pc, int64_t regs[]) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   861
  // In order to get locks to work, we need to fake a in_VM state
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   862
  if (ShowMessageBoxOnError) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   863
    JavaThread* thread = JavaThread::current();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   864
    JavaThreadState saved_state = thread->thread_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   865
    thread->set_thread_state(_thread_in_vm);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   866
#ifndef PRODUCT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   867
    if (CountBytecodes || TraceBytecodes || StopInterpreterAt) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   868
      ttyLocker ttyl;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   869
      BytecodeCounter::print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   870
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   871
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   872
    // To see where a verify_oop failed, get $ebx+40/X for this frame.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   873
    // XXX correct this offset for amd64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   874
    // This is the value of eip which points to where verify_oop will return.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   875
    if (os::message_box(msg, "Execution stopped, print registers?")) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   876
      print_state64(pc, regs);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   877
      BREAKPOINT;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   878
      assert(false, "start up GDB");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   879
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   880
    ThreadStateTransition::transition(thread, _thread_in_vm, saved_state);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   881
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   882
    ttyLocker ttyl;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   883
    ::tty->print_cr("=============== DEBUG MESSAGE: %s ================\n",
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   884
                    msg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   885
    assert(false, err_msg("DEBUG MESSAGE: %s", msg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   886
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   887
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   888
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   889
void MacroAssembler::print_state64(int64_t pc, int64_t regs[]) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   890
  ttyLocker ttyl;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   891
  FlagSetting fs(Debugging, true);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   892
  tty->print_cr("rip = 0x%016lx", pc);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   893
#ifndef PRODUCT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   894
  tty->cr();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   895
  findpc(pc);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   896
  tty->cr();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   897
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   898
#define PRINT_REG(rax, value) \
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   899
  { tty->print("%s = ", #rax); os::print_location(tty, value); }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   900
  PRINT_REG(rax, regs[15]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   901
  PRINT_REG(rbx, regs[12]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   902
  PRINT_REG(rcx, regs[14]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   903
  PRINT_REG(rdx, regs[13]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   904
  PRINT_REG(rdi, regs[8]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   905
  PRINT_REG(rsi, regs[9]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   906
  PRINT_REG(rbp, regs[10]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   907
  PRINT_REG(rsp, regs[11]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   908
  PRINT_REG(r8 , regs[7]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   909
  PRINT_REG(r9 , regs[6]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   910
  PRINT_REG(r10, regs[5]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   911
  PRINT_REG(r11, regs[4]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   912
  PRINT_REG(r12, regs[3]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   913
  PRINT_REG(r13, regs[2]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   914
  PRINT_REG(r14, regs[1]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   915
  PRINT_REG(r15, regs[0]);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   916
#undef PRINT_REG
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   917
  // Print some words near top of staack.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   918
  int64_t* rsp = (int64_t*) regs[11];
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   919
  int64_t* dump_sp = rsp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   920
  for (int col1 = 0; col1 < 8; col1++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   921
    tty->print("(rsp+0x%03x) 0x%016lx: ", (int)((intptr_t)dump_sp - (intptr_t)rsp), (int64_t)dump_sp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   922
    os::print_location(tty, *dump_sp++);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   923
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   924
  for (int row = 0; row < 25; row++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   925
    tty->print("(rsp+0x%03x) 0x%016lx: ", (int)((intptr_t)dump_sp - (intptr_t)rsp), (int64_t)dump_sp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   926
    for (int col = 0; col < 4; col++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   927
      tty->print(" 0x%016lx", *dump_sp++);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   928
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   929
    tty->cr();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   930
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   931
  // Print some instructions around pc:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   932
  Disassembler::decode((address)pc-64, (address)pc);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   933
  tty->print_cr("--------");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   934
  Disassembler::decode((address)pc, (address)pc+32);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   935
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   936
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   937
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   938
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   939
// Now versions that are common to 32/64 bit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   940
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   941
void MacroAssembler::addptr(Register dst, int32_t imm32) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   942
  LP64_ONLY(addq(dst, imm32)) NOT_LP64(addl(dst, imm32));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   943
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   944
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   945
void MacroAssembler::addptr(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   946
  LP64_ONLY(addq(dst, src)) NOT_LP64(addl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   947
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   948
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   949
void MacroAssembler::addptr(Address dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   950
  LP64_ONLY(addq(dst, src)) NOT_LP64(addl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   951
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   952
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   953
void MacroAssembler::addsd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   954
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   955
    Assembler::addsd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   956
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   957
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   958
    Assembler::addsd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   959
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   960
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   961
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   962
void MacroAssembler::addss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   963
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   964
    addss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   965
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   966
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   967
    addss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   968
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   969
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   970
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   971
void MacroAssembler::align(int modulus) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   972
  if (offset() % modulus != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   973
    nop(modulus - (offset() % modulus));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   974
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   975
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   976
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   977
void MacroAssembler::andpd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   978
  // Used in sign-masking with aligned address.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   979
  assert((UseAVX > 0) || (((intptr_t)src.target() & 15) == 0), "SSE mode requires address alignment 16 bytes");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   980
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   981
    Assembler::andpd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   982
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   983
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   984
    Assembler::andpd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   985
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   986
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   987
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   988
void MacroAssembler::andps(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   989
  // Used in sign-masking with aligned address.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   990
  assert((UseAVX > 0) || (((intptr_t)src.target() & 15) == 0), "SSE mode requires address alignment 16 bytes");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   991
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   992
    Assembler::andps(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   993
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   994
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   995
    Assembler::andps(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   996
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   997
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   998
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
   999
void MacroAssembler::andptr(Register dst, int32_t imm32) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1000
  LP64_ONLY(andq(dst, imm32)) NOT_LP64(andl(dst, imm32));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1001
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1002
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1003
void MacroAssembler::atomic_incl(Address counter_addr) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1004
  if (os::is_MP())
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1005
    lock();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1006
  incrementl(counter_addr);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1007
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1008
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1009
void MacroAssembler::atomic_incl(AddressLiteral counter_addr, Register scr) {
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1010
  if (reachable(counter_addr)) {
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1011
    atomic_incl(as_Address(counter_addr));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1012
  } else {
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1013
    lea(scr, counter_addr);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1014
    atomic_incl(Address(scr, 0));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1015
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1016
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1017
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1018
#ifdef _LP64
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1019
void MacroAssembler::atomic_incq(Address counter_addr) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1020
  if (os::is_MP())
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1021
    lock();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1022
  incrementq(counter_addr);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1023
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1024
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1025
void MacroAssembler::atomic_incq(AddressLiteral counter_addr, Register scr) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1026
  if (reachable(counter_addr)) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1027
    atomic_incq(as_Address(counter_addr));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1028
  } else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1029
    lea(scr, counter_addr);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1030
    atomic_incq(Address(scr, 0));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1031
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1032
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1033
#endif
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1034
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1035
// Writes to stack successive pages until offset reached to check for
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1036
// stack overflow + shadow pages.  This clobbers tmp.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1037
void MacroAssembler::bang_stack_size(Register size, Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1038
  movptr(tmp, rsp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1039
  // Bang stack for total size given plus shadow page size.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1040
  // Bang one page at a time because large size can bang beyond yellow and
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1041
  // red zones.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1042
  Label loop;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1043
  bind(loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1044
  movl(Address(tmp, (-os::vm_page_size())), size );
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1045
  subptr(tmp, os::vm_page_size());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1046
  subl(size, os::vm_page_size());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1047
  jcc(Assembler::greater, loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1048
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1049
  // Bang down shadow pages too.
21528
479228ecf6ac 8026775: nsk/jvmti/RedefineClasses/StressRedefine crashes due to EXCEPTION_ACCESS_VIOLATION
mikael
parents: 21188
diff changeset
  1050
  // At this point, (tmp-0) is the last address touched, so don't
479228ecf6ac 8026775: nsk/jvmti/RedefineClasses/StressRedefine crashes due to EXCEPTION_ACCESS_VIOLATION
mikael
parents: 21188
diff changeset
  1051
  // touch it again.  (It was touched as (tmp-pagesize) but then tmp
479228ecf6ac 8026775: nsk/jvmti/RedefineClasses/StressRedefine crashes due to EXCEPTION_ACCESS_VIOLATION
mikael
parents: 21188
diff changeset
  1052
  // was post-decremented.)  Skip this address by starting at i=1, and
479228ecf6ac 8026775: nsk/jvmti/RedefineClasses/StressRedefine crashes due to EXCEPTION_ACCESS_VIOLATION
mikael
parents: 21188
diff changeset
  1053
  // touch a few more pages below.  N.B.  It is important to touch all
479228ecf6ac 8026775: nsk/jvmti/RedefineClasses/StressRedefine crashes due to EXCEPTION_ACCESS_VIOLATION
mikael
parents: 21188
diff changeset
  1054
  // the way down to and including i=StackShadowPages.
24018
77b156916bab 8032410: compiler/uncommontrap/TestStackBangRbp.java times out on Solaris-Sparc V9
roland
parents: 23847
diff changeset
  1055
  for (int i = 1; i < StackShadowPages; i++) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1056
    // this could be any sized move but this is can be a debugging crumb
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1057
    // so the bigger the better.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1058
    movptr(Address(tmp, (-i*os::vm_page_size())), size );
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1059
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1060
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1061
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1062
int MacroAssembler::biased_locking_enter(Register lock_reg,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1063
                                         Register obj_reg,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1064
                                         Register swap_reg,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1065
                                         Register tmp_reg,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1066
                                         bool swap_reg_contains_mark,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1067
                                         Label& done,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1068
                                         Label* slow_case,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1069
                                         BiasedLockingCounters* counters) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1070
  assert(UseBiasedLocking, "why call this otherwise?");
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1071
  assert(swap_reg == rax, "swap_reg must be rax for cmpxchgq");
30749
39a2475280ee 6811960: x86 biasedlocking epoch expired rare bug
mockner
parents: 30310
diff changeset
  1072
  assert(tmp_reg != noreg, "tmp_reg must be supplied");
39a2475280ee 6811960: x86 biasedlocking epoch expired rare bug
mockner
parents: 30310
diff changeset
  1073
  assert_different_registers(lock_reg, obj_reg, swap_reg, tmp_reg);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1074
  assert(markOopDesc::age_shift == markOopDesc::lock_bits + markOopDesc::biased_lock_bits, "biased locking makes assumptions about bit layout");
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1075
  Address mark_addr      (obj_reg, oopDesc::mark_offset_in_bytes());
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1076
  Address saved_mark_addr(lock_reg, 0);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1077
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1078
  if (PrintBiasedLockingStatistics && counters == NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1079
    counters = BiasedLocking::counters();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1080
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1081
  // Biased locking
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1082
  // See whether the lock is currently biased toward our thread and
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1083
  // whether the epoch is still valid
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1084
  // Note that the runtime guarantees sufficient alignment of JavaThread
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1085
  // pointers to allow age to be placed into low bits
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1086
  // First check to see whether biasing is even enabled for this object
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1087
  Label cas_label;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1088
  int null_check_offset = -1;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1089
  if (!swap_reg_contains_mark) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1090
    null_check_offset = offset();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1091
    movptr(swap_reg, mark_addr);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1092
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1093
  movptr(tmp_reg, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1094
  andptr(tmp_reg, markOopDesc::biased_lock_mask_in_place);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1095
  cmpptr(tmp_reg, markOopDesc::biased_lock_pattern);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1096
  jcc(Assembler::notEqual, cas_label);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1097
  // The bias pattern is present in the object's header. Need to check
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1098
  // whether the bias owner and the epoch are both still current.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1099
#ifndef _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1100
  // Note that because there is no current thread register on x86_32 we
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1101
  // need to store off the mark word we read out of the object to
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1102
  // avoid reloading it and needing to recheck invariants below. This
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1103
  // store is unfortunate but it makes the overall code shorter and
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1104
  // simpler.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1105
  movptr(saved_mark_addr, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1106
#endif
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1107
  if (swap_reg_contains_mark) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1108
    null_check_offset = offset();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1109
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1110
  load_prototype_header(tmp_reg, obj_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1111
#ifdef _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1112
  orptr(tmp_reg, r15_thread);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1113
  xorptr(tmp_reg, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1114
  Register header_reg = tmp_reg;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1115
#else
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1116
  xorptr(tmp_reg, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1117
  get_thread(swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1118
  xorptr(swap_reg, tmp_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1119
  Register header_reg = swap_reg;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1120
#endif
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1121
  andptr(header_reg, ~((int) markOopDesc::age_mask_in_place));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1122
  if (counters != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1123
    cond_inc32(Assembler::zero,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1124
               ExternalAddress((address) counters->biased_lock_entry_count_addr()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1125
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1126
  jcc(Assembler::equal, done);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1127
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1128
  Label try_revoke_bias;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1129
  Label try_rebias;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1130
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1131
  // At this point we know that the header has the bias pattern and
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1132
  // that we are not the bias owner in the current epoch. We need to
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1133
  // figure out more details about the state of the header in order to
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1134
  // know what operations can be legally performed on the object's
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1135
  // header.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1136
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1137
  // If the low three bits in the xor result aren't clear, that means
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1138
  // the prototype header is no longer biased and we have to revoke
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1139
  // the bias on this object.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1140
  testptr(header_reg, markOopDesc::biased_lock_mask_in_place);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1141
  jccb(Assembler::notZero, try_revoke_bias);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1142
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1143
  // Biasing is still enabled for this data type. See whether the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1144
  // epoch of the current bias is still valid, meaning that the epoch
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1145
  // bits of the mark word are equal to the epoch bits of the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1146
  // prototype header. (Note that the prototype header's epoch bits
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1147
  // only change at a safepoint.) If not, attempt to rebias the object
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1148
  // toward the current thread. Note that we must be absolutely sure
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1149
  // that the current epoch is invalid in order to do this because
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1150
  // otherwise the manipulations it performs on the mark word are
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1151
  // illegal.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1152
  testptr(header_reg, markOopDesc::epoch_mask_in_place);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1153
  jccb(Assembler::notZero, try_rebias);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1154
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1155
  // The epoch of the current bias is still valid but we know nothing
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1156
  // about the owner; it might be set or it might be clear. Try to
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1157
  // acquire the bias of the object using an atomic operation. If this
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1158
  // fails we will go in to the runtime to revoke the object's bias.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1159
  // Note that we first construct the presumed unbiased header so we
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1160
  // don't accidentally blow away another thread's valid bias.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1161
  NOT_LP64( movptr(swap_reg, saved_mark_addr); )
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1162
  andptr(swap_reg,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1163
         markOopDesc::biased_lock_mask_in_place | markOopDesc::age_mask_in_place | markOopDesc::epoch_mask_in_place);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1164
#ifdef _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1165
  movptr(tmp_reg, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1166
  orptr(tmp_reg, r15_thread);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1167
#else
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1168
  get_thread(tmp_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1169
  orptr(tmp_reg, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1170
#endif
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1171
  if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1172
    lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1173
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1174
  cmpxchgptr(tmp_reg, mark_addr); // compare tmp_reg and swap_reg
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1175
  // If the biasing toward our thread failed, this means that
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1176
  // another thread succeeded in biasing it toward itself and we
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1177
  // need to revoke that bias. The revocation will occur in the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1178
  // interpreter runtime in the slow case.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1179
  if (counters != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1180
    cond_inc32(Assembler::zero,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1181
               ExternalAddress((address) counters->anonymously_biased_lock_entry_count_addr()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1182
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1183
  if (slow_case != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1184
    jcc(Assembler::notZero, *slow_case);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1185
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1186
  jmp(done);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1187
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1188
  bind(try_rebias);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1189
  // At this point we know the epoch has expired, meaning that the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1190
  // current "bias owner", if any, is actually invalid. Under these
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1191
  // circumstances _only_, we are allowed to use the current header's
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1192
  // value as the comparison value when doing the cas to acquire the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1193
  // bias in the current epoch. In other words, we allow transfer of
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1194
  // the bias from one thread to another directly in this situation.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1195
  //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1196
  // FIXME: due to a lack of registers we currently blow away the age
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1197
  // bits in this situation. Should attempt to preserve them.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1198
  load_prototype_header(tmp_reg, obj_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1199
#ifdef _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1200
  orptr(tmp_reg, r15_thread);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1201
#else
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1202
  get_thread(swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1203
  orptr(tmp_reg, swap_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1204
  movptr(swap_reg, saved_mark_addr);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1205
#endif
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1206
  if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1207
    lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1208
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1209
  cmpxchgptr(tmp_reg, mark_addr); // compare tmp_reg and swap_reg
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1210
  // If the biasing toward our thread failed, then another thread
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1211
  // succeeded in biasing it toward itself and we need to revoke that
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1212
  // bias. The revocation will occur in the runtime in the slow case.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1213
  if (counters != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1214
    cond_inc32(Assembler::zero,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1215
               ExternalAddress((address) counters->rebiased_lock_entry_count_addr()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1216
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1217
  if (slow_case != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1218
    jcc(Assembler::notZero, *slow_case);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1219
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1220
  jmp(done);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1221
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1222
  bind(try_revoke_bias);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1223
  // The prototype mark in the klass doesn't have the bias bit set any
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1224
  // more, indicating that objects of this data type are not supposed
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1225
  // to be biased any more. We are going to try to reset the mark of
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1226
  // this object to the prototype value and fall through to the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1227
  // CAS-based locking scheme. Note that if our CAS fails, it means
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1228
  // that another thread raced us for the privilege of revoking the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1229
  // bias of this particular object, so it's okay to continue in the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1230
  // normal locking code.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1231
  //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1232
  // FIXME: due to a lack of registers we currently blow away the age
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1233
  // bits in this situation. Should attempt to preserve them.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1234
  NOT_LP64( movptr(swap_reg, saved_mark_addr); )
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1235
  load_prototype_header(tmp_reg, obj_reg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1236
  if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1237
    lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1238
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1239
  cmpxchgptr(tmp_reg, mark_addr); // compare tmp_reg and swap_reg
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1240
  // Fall through to the normal CAS-based lock, because no matter what
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1241
  // the result of the above CAS, some thread must have succeeded in
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1242
  // removing the bias bit from the object's header.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1243
  if (counters != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1244
    cond_inc32(Assembler::zero,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1245
               ExternalAddress((address) counters->revoked_lock_entry_count_addr()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1246
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1247
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1248
  bind(cas_label);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1249
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1250
  return null_check_offset;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1251
}
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1252
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1253
void MacroAssembler::biased_locking_exit(Register obj_reg, Register temp_reg, Label& done) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1254
  assert(UseBiasedLocking, "why call this otherwise?");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1255
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1256
  // Check for biased locking unlock case, which is a no-op
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1257
  // Note: we do not have to check the thread ID for two reasons.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1258
  // First, the interpreter checks for IllegalMonitorStateException at
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1259
  // a higher level. Second, if the bias was revoked while we held the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1260
  // lock, the object could not be rebiased toward another thread, so
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1261
  // the bias bit would be clear.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1262
  movptr(temp_reg, Address(obj_reg, oopDesc::mark_offset_in_bytes()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1263
  andptr(temp_reg, markOopDesc::biased_lock_mask_in_place);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1264
  cmpptr(temp_reg, markOopDesc::biased_lock_pattern);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1265
  jcc(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1266
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  1267
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1268
#ifdef COMPILER2
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1269
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1270
#if INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1271
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1272
// Update rtm_counters based on abort status
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1273
// input: abort_status
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1274
//        rtm_counters (RTMLockingCounters*)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1275
// flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1276
void MacroAssembler::rtm_counters_update(Register abort_status, Register rtm_counters) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1277
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1278
  atomic_incptr(Address(rtm_counters, RTMLockingCounters::abort_count_offset()));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1279
  if (PrintPreciseRTMLockingStatistics) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1280
    for (int i = 0; i < RTMLockingCounters::ABORT_STATUS_LIMIT; i++) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1281
      Label check_abort;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1282
      testl(abort_status, (1<<i));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1283
      jccb(Assembler::equal, check_abort);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1284
      atomic_incptr(Address(rtm_counters, RTMLockingCounters::abortX_count_offset() + (i * sizeof(uintx))));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1285
      bind(check_abort);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1286
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1287
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1288
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1289
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1290
// Branch if (random & (count-1) != 0), count is 2^n
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1291
// tmp, scr and flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1292
void MacroAssembler::branch_on_random_using_rdtsc(Register tmp, Register scr, int count, Label& brLabel) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1293
  assert(tmp == rax, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1294
  assert(scr == rdx, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1295
  rdtsc(); // modifies EDX:EAX
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1296
  andptr(tmp, count-1);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1297
  jccb(Assembler::notZero, brLabel);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1298
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1299
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1300
// Perform abort ratio calculation, set no_rtm bit if high ratio
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1301
// input:  rtm_counters_Reg (RTMLockingCounters* address)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1302
// tmpReg, rtm_counters_Reg and flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1303
void MacroAssembler::rtm_abort_ratio_calculation(Register tmpReg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1304
                                                 Register rtm_counters_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1305
                                                 RTMLockingCounters* rtm_counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1306
                                                 Metadata* method_data) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1307
  Label L_done, L_check_always_rtm1, L_check_always_rtm2;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1308
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1309
  if (RTMLockingCalculationDelay > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1310
    // Delay calculation
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1311
    movptr(tmpReg, ExternalAddress((address) RTMLockingCounters::rtm_calculation_flag_addr()), tmpReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1312
    testptr(tmpReg, tmpReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1313
    jccb(Assembler::equal, L_done);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1314
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1315
  // Abort ratio calculation only if abort_count > RTMAbortThreshold
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1316
  //   Aborted transactions = abort_count * 100
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1317
  //   All transactions = total_count *  RTMTotalCountIncrRate
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1318
  //   Set no_rtm bit if (Aborted transactions >= All transactions * RTMAbortRatio)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1319
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1320
  movptr(tmpReg, Address(rtm_counters_Reg, RTMLockingCounters::abort_count_offset()));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1321
  cmpptr(tmpReg, RTMAbortThreshold);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1322
  jccb(Assembler::below, L_check_always_rtm2);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1323
  imulptr(tmpReg, tmpReg, 100);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1324
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1325
  Register scrReg = rtm_counters_Reg;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1326
  movptr(scrReg, Address(rtm_counters_Reg, RTMLockingCounters::total_count_offset()));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1327
  imulptr(scrReg, scrReg, RTMTotalCountIncrRate);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1328
  imulptr(scrReg, scrReg, RTMAbortRatio);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1329
  cmpptr(tmpReg, scrReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1330
  jccb(Assembler::below, L_check_always_rtm1);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1331
  if (method_data != NULL) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1332
    // set rtm_state to "no rtm" in MDO
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1333
    mov_metadata(tmpReg, method_data);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1334
    if (os::is_MP()) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1335
      lock();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1336
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1337
    orl(Address(tmpReg, MethodData::rtm_state_offset_in_bytes()), NoRTM);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1338
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1339
  jmpb(L_done);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1340
  bind(L_check_always_rtm1);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1341
  // Reload RTMLockingCounters* address
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1342
  lea(rtm_counters_Reg, ExternalAddress((address)rtm_counters));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1343
  bind(L_check_always_rtm2);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1344
  movptr(tmpReg, Address(rtm_counters_Reg, RTMLockingCounters::total_count_offset()));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1345
  cmpptr(tmpReg, RTMLockingThreshold / RTMTotalCountIncrRate);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1346
  jccb(Assembler::below, L_done);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1347
  if (method_data != NULL) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1348
    // set rtm_state to "always rtm" in MDO
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1349
    mov_metadata(tmpReg, method_data);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1350
    if (os::is_MP()) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1351
      lock();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1352
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1353
    orl(Address(tmpReg, MethodData::rtm_state_offset_in_bytes()), UseRTM);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1354
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1355
  bind(L_done);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1356
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1357
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1358
// Update counters and perform abort ratio calculation
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1359
// input:  abort_status_Reg
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1360
// rtm_counters_Reg, flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1361
void MacroAssembler::rtm_profiling(Register abort_status_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1362
                                   Register rtm_counters_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1363
                                   RTMLockingCounters* rtm_counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1364
                                   Metadata* method_data,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1365
                                   bool profile_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1366
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1367
  assert(rtm_counters != NULL, "should not be NULL when profiling RTM");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1368
  // update rtm counters based on rax value at abort
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1369
  // reads abort_status_Reg, updates flags
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1370
  lea(rtm_counters_Reg, ExternalAddress((address)rtm_counters));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1371
  rtm_counters_update(abort_status_Reg, rtm_counters_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1372
  if (profile_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1373
    // Save abort status because abort_status_Reg is used by following code.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1374
    if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1375
      push(abort_status_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1376
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1377
    assert(rtm_counters != NULL, "should not be NULL when profiling RTM");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1378
    rtm_abort_ratio_calculation(abort_status_Reg, rtm_counters_Reg, rtm_counters, method_data);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1379
    // restore abort status
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1380
    if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1381
      pop(abort_status_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1382
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1383
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1384
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1385
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1386
// Retry on abort if abort's status is 0x6: can retry (0x2) | memory conflict (0x4)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1387
// inputs: retry_count_Reg
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1388
//       : abort_status_Reg
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1389
// output: retry_count_Reg decremented by 1
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1390
// flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1391
void MacroAssembler::rtm_retry_lock_on_abort(Register retry_count_Reg, Register abort_status_Reg, Label& retryLabel) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1392
  Label doneRetry;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1393
  assert(abort_status_Reg == rax, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1394
  // The abort reason bits are in eax (see all states in rtmLocking.hpp)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1395
  // 0x6 = conflict on which we can retry (0x2) | memory conflict (0x4)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1396
  // if reason is in 0x6 and retry count != 0 then retry
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1397
  andptr(abort_status_Reg, 0x6);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1398
  jccb(Assembler::zero, doneRetry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1399
  testl(retry_count_Reg, retry_count_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1400
  jccb(Assembler::zero, doneRetry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1401
  pause();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1402
  decrementl(retry_count_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1403
  jmp(retryLabel);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1404
  bind(doneRetry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1405
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1406
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1407
// Spin and retry if lock is busy,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1408
// inputs: box_Reg (monitor address)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1409
//       : retry_count_Reg
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1410
// output: retry_count_Reg decremented by 1
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1411
//       : clear z flag if retry count exceeded
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1412
// tmp_Reg, scr_Reg, flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1413
void MacroAssembler::rtm_retry_lock_on_busy(Register retry_count_Reg, Register box_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1414
                                            Register tmp_Reg, Register scr_Reg, Label& retryLabel) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1415
  Label SpinLoop, SpinExit, doneRetry;
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1416
  int owner_offset = OM_OFFSET_NO_MONITOR_VALUE_TAG(owner);
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1417
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1418
  testl(retry_count_Reg, retry_count_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1419
  jccb(Assembler::zero, doneRetry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1420
  decrementl(retry_count_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1421
  movptr(scr_Reg, RTMSpinLoopCount);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1422
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1423
  bind(SpinLoop);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1424
  pause();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1425
  decrementl(scr_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1426
  jccb(Assembler::lessEqual, SpinExit);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1427
  movptr(tmp_Reg, Address(box_Reg, owner_offset));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1428
  testptr(tmp_Reg, tmp_Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1429
  jccb(Assembler::notZero, SpinLoop);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1430
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1431
  bind(SpinExit);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1432
  jmp(retryLabel);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1433
  bind(doneRetry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1434
  incrementl(retry_count_Reg); // clear z flag
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1435
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1436
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1437
// Use RTM for normal stack locks
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1438
// Input: objReg (object to lock)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1439
void MacroAssembler::rtm_stack_locking(Register objReg, Register tmpReg, Register scrReg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1440
                                       Register retry_on_abort_count_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1441
                                       RTMLockingCounters* stack_rtm_counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1442
                                       Metadata* method_data, bool profile_rtm,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1443
                                       Label& DONE_LABEL, Label& IsInflated) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1444
  assert(UseRTMForStackLocks, "why call this otherwise?");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1445
  assert(!UseBiasedLocking, "Biased locking is not supported with RTM locking");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1446
  assert(tmpReg == rax, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1447
  assert(scrReg == rdx, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1448
  Label L_rtm_retry, L_decrement_retry, L_on_abort;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1449
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1450
  if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1451
    movl(retry_on_abort_count_Reg, RTMRetryCount); // Retry on abort
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1452
    bind(L_rtm_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1453
  }
23847
d792e42aeb4f 8038939: Some options related to RTM locking optimization works inconsistently
kvn
parents: 23491
diff changeset
  1454
  movptr(tmpReg, Address(objReg, 0));
d792e42aeb4f 8038939: Some options related to RTM locking optimization works inconsistently
kvn
parents: 23491
diff changeset
  1455
  testptr(tmpReg, markOopDesc::monitor_value);  // inflated vs stack-locked|neutral|biased
d792e42aeb4f 8038939: Some options related to RTM locking optimization works inconsistently
kvn
parents: 23491
diff changeset
  1456
  jcc(Assembler::notZero, IsInflated);
d792e42aeb4f 8038939: Some options related to RTM locking optimization works inconsistently
kvn
parents: 23491
diff changeset
  1457
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1458
  if (PrintPreciseRTMLockingStatistics || profile_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1459
    Label L_noincrement;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1460
    if (RTMTotalCountIncrRate > 1) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1461
      // tmpReg, scrReg and flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1462
      branch_on_random_using_rdtsc(tmpReg, scrReg, (int)RTMTotalCountIncrRate, L_noincrement);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1463
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1464
    assert(stack_rtm_counters != NULL, "should not be NULL when profiling RTM");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1465
    atomic_incptr(ExternalAddress((address)stack_rtm_counters->total_count_addr()), scrReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1466
    bind(L_noincrement);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1467
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1468
  xbegin(L_on_abort);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1469
  movptr(tmpReg, Address(objReg, 0));       // fetch markword
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1470
  andptr(tmpReg, markOopDesc::biased_lock_mask_in_place); // look at 3 lock bits
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1471
  cmpptr(tmpReg, markOopDesc::unlocked_value);            // bits = 001 unlocked
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1472
  jcc(Assembler::equal, DONE_LABEL);        // all done if unlocked
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1473
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1474
  Register abort_status_Reg = tmpReg; // status of abort is stored in RAX
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1475
  if (UseRTMXendForLockBusy) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1476
    xend();
23847
d792e42aeb4f 8038939: Some options related to RTM locking optimization works inconsistently
kvn
parents: 23491
diff changeset
  1477
    movptr(abort_status_Reg, 0x2);   // Set the abort status to 2 (so we can retry)
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1478
    jmp(L_decrement_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1479
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1480
  else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1481
    xabort(0);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1482
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1483
  bind(L_on_abort);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1484
  if (PrintPreciseRTMLockingStatistics || profile_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1485
    rtm_profiling(abort_status_Reg, scrReg, stack_rtm_counters, method_data, profile_rtm);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1486
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1487
  bind(L_decrement_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1488
  if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1489
    // retry on lock abort if abort status is 'can retry' (0x2) or 'memory conflict' (0x4)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1490
    rtm_retry_lock_on_abort(retry_on_abort_count_Reg, abort_status_Reg, L_rtm_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1491
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1492
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1493
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1494
// Use RTM for inflating locks
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1495
// inputs: objReg (object to lock)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1496
//         boxReg (on-stack box address (displaced header location) - KILLED)
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1497
//         tmpReg (ObjectMonitor address + markOopDesc::monitor_value)
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1498
void MacroAssembler::rtm_inflated_locking(Register objReg, Register boxReg, Register tmpReg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1499
                                          Register scrReg, Register retry_on_busy_count_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1500
                                          Register retry_on_abort_count_Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1501
                                          RTMLockingCounters* rtm_counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1502
                                          Metadata* method_data, bool profile_rtm,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1503
                                          Label& DONE_LABEL) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1504
  assert(UseRTMLocking, "why call this otherwise?");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1505
  assert(tmpReg == rax, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1506
  assert(scrReg == rdx, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1507
  Label L_rtm_retry, L_decrement_retry, L_on_abort;
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1508
  int owner_offset = OM_OFFSET_NO_MONITOR_VALUE_TAG(owner);
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1509
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1510
  // Without cast to int32_t a movptr will destroy r10 which is typically obj
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1511
  movptr(Address(boxReg, 0), (int32_t)intptr_t(markOopDesc::unused_mark()));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1512
  movptr(boxReg, tmpReg); // Save ObjectMonitor address
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1513
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1514
  if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1515
    movl(retry_on_busy_count_Reg, RTMRetryCount);  // Retry on lock busy
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1516
    movl(retry_on_abort_count_Reg, RTMRetryCount); // Retry on abort
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1517
    bind(L_rtm_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1518
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1519
  if (PrintPreciseRTMLockingStatistics || profile_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1520
    Label L_noincrement;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1521
    if (RTMTotalCountIncrRate > 1) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1522
      // tmpReg, scrReg and flags are killed
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1523
      branch_on_random_using_rdtsc(tmpReg, scrReg, (int)RTMTotalCountIncrRate, L_noincrement);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1524
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1525
    assert(rtm_counters != NULL, "should not be NULL when profiling RTM");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1526
    atomic_incptr(ExternalAddress((address)rtm_counters->total_count_addr()), scrReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1527
    bind(L_noincrement);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1528
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1529
  xbegin(L_on_abort);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1530
  movptr(tmpReg, Address(objReg, 0));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1531
  movptr(tmpReg, Address(tmpReg, owner_offset));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1532
  testptr(tmpReg, tmpReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1533
  jcc(Assembler::zero, DONE_LABEL);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1534
  if (UseRTMXendForLockBusy) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1535
    xend();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1536
    jmp(L_decrement_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1537
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1538
  else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1539
    xabort(0);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1540
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1541
  bind(L_on_abort);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1542
  Register abort_status_Reg = tmpReg; // status of abort is stored in RAX
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1543
  if (PrintPreciseRTMLockingStatistics || profile_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1544
    rtm_profiling(abort_status_Reg, scrReg, rtm_counters, method_data, profile_rtm);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1545
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1546
  if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1547
    // retry on lock abort if abort status is 'can retry' (0x2) or 'memory conflict' (0x4)
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1548
    rtm_retry_lock_on_abort(retry_on_abort_count_Reg, abort_status_Reg, L_rtm_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1549
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1550
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1551
  movptr(tmpReg, Address(boxReg, owner_offset)) ;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1552
  testptr(tmpReg, tmpReg) ;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1553
  jccb(Assembler::notZero, L_decrement_retry) ;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1554
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1555
  // Appears unlocked - try to swing _owner from null to non-null.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1556
  // Invariant: tmpReg == 0.  tmpReg is EAX which is the implicit cmpxchg comparand.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1557
#ifdef _LP64
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1558
  Register threadReg = r15_thread;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1559
#else
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1560
  get_thread(scrReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1561
  Register threadReg = scrReg;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1562
#endif
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1563
  if (os::is_MP()) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1564
    lock();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1565
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1566
  cmpxchgptr(threadReg, Address(boxReg, owner_offset)); // Updates tmpReg
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1567
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1568
  if (RTMRetryCount > 0) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1569
    // success done else retry
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1570
    jccb(Assembler::equal, DONE_LABEL) ;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1571
    bind(L_decrement_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1572
    // Spin and retry if lock is busy.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1573
    rtm_retry_lock_on_busy(retry_on_busy_count_Reg, boxReg, tmpReg, scrReg, L_rtm_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1574
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1575
  else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1576
    bind(L_decrement_retry);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1577
  }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1578
}
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1579
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1580
#endif //  INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1581
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1582
// Fast_Lock and Fast_Unlock used by C2
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1583
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1584
// Because the transitions from emitted code to the runtime
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1585
// monitorenter/exit helper stubs are so slow it's critical that
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1586
// we inline both the stack-locking fast-path and the inflated fast path.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1587
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1588
// See also: cmpFastLock and cmpFastUnlock.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1589
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1590
// What follows is a specialized inline transliteration of the code
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1591
// in slow_enter() and slow_exit().  If we're concerned about I$ bloat
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1592
// another option would be to emit TrySlowEnter and TrySlowExit methods
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1593
// at startup-time.  These methods would accept arguments as
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1594
// (rax,=Obj, rbx=Self, rcx=box, rdx=Scratch) and return success-failure
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1595
// indications in the icc.ZFlag.  Fast_Lock and Fast_Unlock would simply
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1596
// marshal the arguments and emit calls to TrySlowEnter and TrySlowExit.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1597
// In practice, however, the # of lock sites is bounded and is usually small.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1598
// Besides the call overhead, TrySlowEnter and TrySlowExit might suffer
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1599
// if the processor uses simple bimodal branch predictors keyed by EIP
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1600
// Since the helper routines would be called from multiple synchronization
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1601
// sites.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1602
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1603
// An even better approach would be write "MonitorEnter()" and "MonitorExit()"
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1604
// in java - using j.u.c and unsafe - and just bind the lock and unlock sites
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1605
// to those specialized methods.  That'd give us a mostly platform-independent
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1606
// implementation that the JITs could optimize and inline at their pleasure.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1607
// Done correctly, the only time we'd need to cross to native could would be
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1608
// to park() or unpark() threads.  We'd also need a few more unsafe operators
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1609
// to (a) prevent compiler-JIT reordering of non-volatile accesses, and
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1610
// (b) explicit barriers or fence operations.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1611
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1612
// TODO:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1613
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1614
// *  Arrange for C2 to pass "Self" into Fast_Lock and Fast_Unlock in one of the registers (scr).
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1615
//    This avoids manifesting the Self pointer in the Fast_Lock and Fast_Unlock terminals.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1616
//    Given TLAB allocation, Self is usually manifested in a register, so passing it into
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1617
//    the lock operators would typically be faster than reifying Self.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1618
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1619
// *  Ideally I'd define the primitives as:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1620
//       fast_lock   (nax Obj, nax box, EAX tmp, nax scr) where box, tmp and scr are KILLED.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1621
//       fast_unlock (nax Obj, EAX box, nax tmp) where box and tmp are KILLED
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1622
//    Unfortunately ADLC bugs prevent us from expressing the ideal form.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1623
//    Instead, we're stuck with a rather awkward and brittle register assignments below.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1624
//    Furthermore the register assignments are overconstrained, possibly resulting in
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1625
//    sub-optimal code near the synchronization site.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1626
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1627
// *  Eliminate the sp-proximity tests and just use "== Self" tests instead.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1628
//    Alternately, use a better sp-proximity test.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1629
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1630
// *  Currently ObjectMonitor._Owner can hold either an sp value or a (THREAD *) value.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1631
//    Either one is sufficient to uniquely identify a thread.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1632
//    TODO: eliminate use of sp in _owner and use get_thread(tr) instead.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1633
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1634
// *  Intrinsify notify() and notifyAll() for the common cases where the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1635
//    object is locked by the calling thread but the waitlist is empty.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1636
//    avoid the expensive JNI call to JVM_Notify() and JVM_NotifyAll().
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1637
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1638
// *  use jccb and jmpb instead of jcc and jmp to improve code density.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1639
//    But beware of excessive branch density on AMD Opterons.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1640
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1641
// *  Both Fast_Lock and Fast_Unlock set the ICC.ZF to indicate success
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1642
//    or failure of the fast-path.  If the fast-path fails then we pass
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1643
//    control to the slow-path, typically in C.  In Fast_Lock and
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1644
//    Fast_Unlock we often branch to DONE_LABEL, just to find that C2
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1645
//    will emit a conditional branch immediately after the node.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1646
//    So we have branches to branches and lots of ICC.ZF games.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1647
//    Instead, it might be better to have C2 pass a "FailureLabel"
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1648
//    into Fast_Lock and Fast_Unlock.  In the case of success, control
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1649
//    will drop through the node.  ICC.ZF is undefined at exit.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1650
//    In the case of failure, the node will branch directly to the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1651
//    FailureLabel
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1652
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1653
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1654
// obj: object to lock
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1655
// box: on-stack box address (displaced header location) - KILLED
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1656
// rax,: tmp -- KILLED
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1657
// scr: tmp -- KILLED
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1658
void MacroAssembler::fast_lock(Register objReg, Register boxReg, Register tmpReg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1659
                               Register scrReg, Register cx1Reg, Register cx2Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1660
                               BiasedLockingCounters* counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1661
                               RTMLockingCounters* rtm_counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1662
                               RTMLockingCounters* stack_rtm_counters,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1663
                               Metadata* method_data,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1664
                               bool use_rtm, bool profile_rtm) {
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1665
  // Ensure the register assignents are disjoint
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1666
  assert(tmpReg == rax, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1667
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1668
  if (use_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1669
    assert_different_registers(objReg, boxReg, tmpReg, scrReg, cx1Reg, cx2Reg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1670
  } else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1671
    assert(cx1Reg == noreg, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1672
    assert(cx2Reg == noreg, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1673
    assert_different_registers(objReg, boxReg, tmpReg, scrReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1674
  }
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1675
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1676
  if (counters != NULL) {
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1677
    atomic_incl(ExternalAddress((address)counters->total_entry_count_addr()), scrReg);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1678
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1679
  if (EmitSync & 1) {
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1680
      // set box->dhw = markOopDesc::unused_mark()
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1681
      // Force all sync thru slow-path: slow_enter() and slow_exit()
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1682
      movptr (Address(boxReg, 0), (int32_t)intptr_t(markOopDesc::unused_mark()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1683
      cmpptr (rsp, (int32_t)NULL_WORD);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1684
  } else {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1685
    // Possible cases that we'll encounter in fast_lock
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1686
    // ------------------------------------------------
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1687
    // * Inflated
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1688
    //    -- unlocked
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1689
    //    -- Locked
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1690
    //       = by self
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1691
    //       = by other
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1692
    // * biased
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1693
    //    -- by Self
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1694
    //    -- by other
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1695
    // * neutral
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1696
    // * stack-locked
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1697
    //    -- by self
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1698
    //       = sp-proximity test hits
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1699
    //       = sp-proximity test generates false-negative
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1700
    //    -- by other
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1701
    //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1702
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1703
    Label IsInflated, DONE_LABEL;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1704
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1705
    // it's stack-locked, biased or neutral
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1706
    // TODO: optimize away redundant LDs of obj->mark and improve the markword triage
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1707
    // order to reduce the number of conditional branches in the most common cases.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1708
    // Beware -- there's a subtle invariant that fetch of the markword
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1709
    // at [FETCH], below, will never observe a biased encoding (*101b).
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1710
    // If this invariant is not held we risk exclusion (safety) failure.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1711
    if (UseBiasedLocking && !UseOptoBiasInlining) {
27638
1142a24d73eb 8062950: Bug in locking code when UseOptoBiasInlining is disabled: assert(dmw->is_neutral()) failed: invariant
mdoerr
parents: 26434
diff changeset
  1712
      biased_locking_enter(boxReg, objReg, tmpReg, scrReg, false, DONE_LABEL, NULL, counters);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1713
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1714
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1715
#if INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1716
    if (UseRTMForStackLocks && use_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1717
      rtm_stack_locking(objReg, tmpReg, scrReg, cx2Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1718
                        stack_rtm_counters, method_data, profile_rtm,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1719
                        DONE_LABEL, IsInflated);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1720
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1721
#endif // INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1722
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1723
    movptr(tmpReg, Address(objReg, 0));          // [FETCH]
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1724
    testptr(tmpReg, markOopDesc::monitor_value); // inflated vs stack-locked|neutral|biased
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1725
    jccb(Assembler::notZero, IsInflated);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1726
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1727
    // Attempt stack-locking ...
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1728
    orptr (tmpReg, markOopDesc::unlocked_value);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1729
    movptr(Address(boxReg, 0), tmpReg);          // Anticipate successful CAS
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1730
    if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1731
      lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1732
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1733
    cmpxchgptr(boxReg, Address(objReg, 0));      // Updates tmpReg
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1734
    if (counters != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1735
      cond_inc32(Assembler::equal,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1736
                 ExternalAddress((address)counters->fast_path_entry_count_addr()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1737
    }
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1738
    jcc(Assembler::equal, DONE_LABEL);           // Success
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1739
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1740
    // Recursive locking.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1741
    // The object is stack-locked: markword contains stack pointer to BasicLock.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1742
    // Locked by current thread if difference with current SP is less than one page.
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1743
    subptr(tmpReg, rsp);
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1744
    // Next instruction set ZFlag == 1 (Success) if difference is less then one page.
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1745
    andptr(tmpReg, (int32_t) (NOT_LP64(0xFFFFF003) LP64_ONLY(7 - os::vm_page_size())) );
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1746
    movptr(Address(boxReg, 0), tmpReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1747
    if (counters != NULL) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1748
      cond_inc32(Assembler::equal,
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1749
                 ExternalAddress((address)counters->fast_path_entry_count_addr()));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1750
    }
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1751
    jmp(DONE_LABEL);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1752
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1753
    bind(IsInflated);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1754
    // The object is inflated. tmpReg contains pointer to ObjectMonitor* + markOopDesc::monitor_value
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1755
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1756
#if INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1757
    // Use the same RTM locking code in 32- and 64-bit VM.
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1758
    if (use_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1759
      rtm_inflated_locking(objReg, boxReg, tmpReg, scrReg, cx1Reg, cx2Reg,
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1760
                           rtm_counters, method_data, profile_rtm, DONE_LABEL);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1761
    } else {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1762
#endif // INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1763
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1764
#ifndef _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1765
    // The object is inflated.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1766
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1767
    // boxReg refers to the on-stack BasicLock in the current frame.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1768
    // We'd like to write:
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1769
    //   set box->_displaced_header = markOopDesc::unused_mark().  Any non-0 value suffices.
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1770
    // This is convenient but results a ST-before-CAS penalty.  The following CAS suffers
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1771
    // additional latency as we have another ST in the store buffer that must drain.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1772
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1773
    if (EmitSync & 8192) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1774
       movptr(Address(boxReg, 0), 3);            // results in ST-before-CAS penalty
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1775
       get_thread (scrReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1776
       movptr(boxReg, tmpReg);                    // consider: LEA box, [tmp-2]
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1777
       movptr(tmpReg, NULL_WORD);                 // consider: xor vs mov
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1778
       if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1779
         lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1780
       }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1781
       cmpxchgptr(scrReg, Address(boxReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1782
    } else
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1783
    if ((EmitSync & 128) == 0) {                      // avoid ST-before-CAS
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1784
       movptr(scrReg, boxReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1785
       movptr(boxReg, tmpReg);                   // consider: LEA box, [tmp-2]
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1786
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1787
       // Using a prefetchw helps avoid later RTS->RTO upgrades and cache probes
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1788
       if ((EmitSync & 2048) && VM_Version::supports_3dnow_prefetch() && os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1789
          // prefetchw [eax + Offset(_owner)-2]
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1790
          prefetchw(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1791
       }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1792
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1793
       if ((EmitSync & 64) == 0) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1794
         // Optimistic form: consider XORL tmpReg,tmpReg
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1795
         movptr(tmpReg, NULL_WORD);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1796
       } else {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1797
         // Can suffer RTS->RTO upgrades on shared or cold $ lines
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1798
         // Test-And-CAS instead of CAS
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1799
         movptr(tmpReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));   // rax, = m->_owner
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1800
         testptr(tmpReg, tmpReg);                   // Locked ?
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1801
         jccb  (Assembler::notZero, DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1802
       }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1803
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1804
       // Appears unlocked - try to swing _owner from null to non-null.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1805
       // Ideally, I'd manifest "Self" with get_thread and then attempt
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1806
       // to CAS the register containing Self into m->Owner.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1807
       // But we don't have enough registers, so instead we can either try to CAS
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1808
       // rsp or the address of the box (in scr) into &m->owner.  If the CAS succeeds
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1809
       // we later store "Self" into m->Owner.  Transiently storing a stack address
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1810
       // (rsp or the address of the box) into  m->owner is harmless.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1811
       // Invariant: tmpReg == 0.  tmpReg is EAX which is the implicit cmpxchg comparand.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1812
       if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1813
         lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1814
       }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1815
       cmpxchgptr(scrReg, Address(boxReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1816
       movptr(Address(scrReg, 0), 3);          // box->_displaced_header = 3
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1817
       jccb  (Assembler::notZero, DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1818
       get_thread (scrReg);                    // beware: clobbers ICCs
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1819
       movptr(Address(boxReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), scrReg);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1820
       xorptr(boxReg, boxReg);                 // set icc.ZFlag = 1 to indicate success
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1821
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1822
       // If the CAS fails we can either retry or pass control to the slow-path.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1823
       // We use the latter tactic.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1824
       // Pass the CAS result in the icc.ZFlag into DONE_LABEL
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1825
       // If the CAS was successful ...
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1826
       //   Self has acquired the lock
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1827
       //   Invariant: m->_recursions should already be 0, so we don't need to explicitly set it.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1828
       // Intentional fall-through into DONE_LABEL ...
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1829
    } else {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1830
       movptr(Address(boxReg, 0), intptr_t(markOopDesc::unused_mark()));  // results in ST-before-CAS penalty
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1831
       movptr(boxReg, tmpReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1832
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1833
       // Using a prefetchw helps avoid later RTS->RTO upgrades and cache probes
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1834
       if ((EmitSync & 2048) && VM_Version::supports_3dnow_prefetch() && os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1835
          // prefetchw [eax + Offset(_owner)-2]
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1836
          prefetchw(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1837
       }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1838
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1839
       if ((EmitSync & 64) == 0) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1840
         // Optimistic form
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1841
         xorptr  (tmpReg, tmpReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1842
       } else {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1843
         // Can suffer RTS->RTO upgrades on shared or cold $ lines
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1844
         movptr(tmpReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));   // rax, = m->_owner
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1845
         testptr(tmpReg, tmpReg);                   // Locked ?
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1846
         jccb  (Assembler::notZero, DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1847
       }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1848
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1849
       // Appears unlocked - try to swing _owner from null to non-null.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1850
       // Use either "Self" (in scr) or rsp as thread identity in _owner.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1851
       // Invariant: tmpReg == 0.  tmpReg is EAX which is the implicit cmpxchg comparand.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1852
       get_thread (scrReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1853
       if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1854
         lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1855
       }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1856
       cmpxchgptr(scrReg, Address(boxReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1857
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1858
       // If the CAS fails we can either retry or pass control to the slow-path.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1859
       // We use the latter tactic.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1860
       // Pass the CAS result in the icc.ZFlag into DONE_LABEL
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1861
       // If the CAS was successful ...
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1862
       //   Self has acquired the lock
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1863
       //   Invariant: m->_recursions should already be 0, so we don't need to explicitly set it.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1864
       // Intentional fall-through into DONE_LABEL ...
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1865
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1866
#else // _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1867
    // It's inflated
29070
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1868
    movq(scrReg, tmpReg);
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1869
    xorq(tmpReg, tmpReg);
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1870
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1871
    if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1872
      lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1873
    }
29070
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1874
    cmpxchgptr(r15_thread, Address(scrReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1875
    // Unconditionally set box->_displaced_header = markOopDesc::unused_mark().
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1876
    // Without cast to int32_t movptr will destroy r10 which is typically obj.
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1877
    movptr(Address(boxReg, 0), (int32_t)intptr_t(markOopDesc::unused_mark()));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1878
    // Intentional fall-through into DONE_LABEL ...
29070
b0a5fc9c59c8 8061553: Contended Locking fast enter bucket
dcubed
parents: 28719
diff changeset
  1879
    // Propagate ICC.ZF from CAS above into DONE_LABEL.
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1880
#endif // _LP64
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1881
#if INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1882
    } // use_rtm()
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1883
#endif
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1884
    // DONE_LABEL is a hot target - we'd really like to place it at the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1885
    // start of cache line by padding with NOPs.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1886
    // See the AMD and Intel software optimization manuals for the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1887
    // most efficient "long" NOP encodings.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1888
    // Unfortunately none of our alignment mechanisms suffice.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1889
    bind(DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1890
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1891
    // At DONE_LABEL the icc ZFlag is set as follows ...
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1892
    // Fast_Unlock uses the same protocol.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1893
    // ZFlag == 1 -> Success
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1894
    // ZFlag == 0 -> Failure - force control through the slow-path
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1895
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1896
}
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1897
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1898
// obj: object to unlock
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1899
// box: box address (displaced header location), killed.  Must be EAX.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1900
// tmp: killed, cannot be obj nor box.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1901
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1902
// Some commentary on balanced locking:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1903
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1904
// Fast_Lock and Fast_Unlock are emitted only for provably balanced lock sites.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1905
// Methods that don't have provably balanced locking are forced to run in the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1906
// interpreter - such methods won't be compiled to use fast_lock and fast_unlock.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1907
// The interpreter provides two properties:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1908
// I1:  At return-time the interpreter automatically and quietly unlocks any
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1909
//      objects acquired the current activation (frame).  Recall that the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1910
//      interpreter maintains an on-stack list of locks currently held by
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1911
//      a frame.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1912
// I2:  If a method attempts to unlock an object that is not held by the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1913
//      the frame the interpreter throws IMSX.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1914
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1915
// Lets say A(), which has provably balanced locking, acquires O and then calls B().
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1916
// B() doesn't have provably balanced locking so it runs in the interpreter.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1917
// Control returns to A() and A() unlocks O.  By I1 and I2, above, we know that O
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1918
// is still locked by A().
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1919
//
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1920
// The only other source of unbalanced locking would be JNI.  The "Java Native Interface:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1921
// Programmer's Guide and Specification" claims that an object locked by jni_monitorenter
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1922
// should not be unlocked by "normal" java-level locking and vice-versa.  The specification
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1923
// doesn't specify what will occur if a program engages in such mixed-mode locking, however.
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  1924
// Arguably given that the spec legislates the JNI case as undefined our implementation
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  1925
// could reasonably *avoid* checking owner in Fast_Unlock().
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  1926
// In the interest of performance we elide m->Owner==Self check in unlock.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  1927
// A perfectly viable alternative is to elide the owner check except when
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  1928
// Xcheck:jni is enabled.
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1929
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1930
void MacroAssembler::fast_unlock(Register objReg, Register boxReg, Register tmpReg, bool use_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1931
  assert(boxReg == rax, "");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1932
  assert_different_registers(objReg, boxReg, tmpReg);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1933
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1934
  if (EmitSync & 4) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1935
    // Disable - inhibit all inlining.  Force control through the slow-path
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1936
    cmpptr (rsp, 0);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1937
  } else {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1938
    Label DONE_LABEL, Stacked, CheckSucc;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1939
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1940
    // Critically, the biased locking test must have precedence over
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1941
    // and appear before the (box->dhw == 0) recursive stack-lock test.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1942
    if (UseBiasedLocking && !UseOptoBiasInlining) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1943
       biased_locking_exit(objReg, tmpReg, DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1944
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1945
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1946
#if INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1947
    if (UseRTMForStackLocks && use_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1948
      assert(!UseBiasedLocking, "Biased locking is not supported with RTM locking");
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1949
      Label L_regular_unlock;
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1950
      movptr(tmpReg, Address(objReg, 0));           // fetch markword
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1951
      andptr(tmpReg, markOopDesc::biased_lock_mask_in_place); // look at 3 lock bits
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1952
      cmpptr(tmpReg, markOopDesc::unlocked_value);            // bits = 001 unlocked
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1953
      jccb(Assembler::notEqual, L_regular_unlock);  // if !HLE RegularLock
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1954
      xend();                                       // otherwise end...
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1955
      jmp(DONE_LABEL);                              // ... and we're done
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1956
      bind(L_regular_unlock);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1957
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1958
#endif
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1959
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1960
    cmpptr(Address(boxReg, 0), (int32_t)NULL_WORD); // Examine the displaced header
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1961
    jcc   (Assembler::zero, DONE_LABEL);            // 0 indicates recursive stack-lock
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1962
    movptr(tmpReg, Address(objReg, 0));             // Examine the object's markword
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1963
    testptr(tmpReg, markOopDesc::monitor_value);    // Inflated?
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1964
    jccb  (Assembler::zero, Stacked);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1965
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1966
    // It's inflated.
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1967
#if INCLUDE_RTM_OPT
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1968
    if (use_rtm) {
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1969
      Label L_regular_inflated_unlock;
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  1970
      int owner_offset = OM_OFFSET_NO_MONITOR_VALUE_TAG(owner);
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1971
      movptr(boxReg, Address(tmpReg, owner_offset));
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1972
      testptr(boxReg, boxReg);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1973
      jccb(Assembler::notZero, L_regular_inflated_unlock);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1974
      xend();
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1975
      jmpb(DONE_LABEL);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1976
      bind(L_regular_inflated_unlock);
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1977
    }
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1978
#endif
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  1979
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1980
    // Despite our balanced locking property we still check that m->_owner == Self
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1981
    // as java routines or native JNI code called by this thread might
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1982
    // have released the lock.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1983
    // Refer to the comments in synchronizer.cpp for how we might encode extra
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1984
    // state in _succ so we can avoid fetching EntryList|cxq.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1985
    //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1986
    // I'd like to add more cases in fast_lock() and fast_unlock() --
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1987
    // such as recursive enter and exit -- but we have to be wary of
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1988
    // I$ bloat, T$ effects and BP$ effects.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1989
    //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1990
    // If there's no contention try a 1-0 exit.  That is, exit without
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1991
    // a costly MEMBAR or CAS.  See synchronizer.cpp for details on how
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1992
    // we detect and recover from the race that the 1-0 exit admits.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1993
    //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1994
    // Conceptually Fast_Unlock() must execute a STST|LDST "release" barrier
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1995
    // before it STs null into _owner, releasing the lock.  Updates
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1996
    // to data protected by the critical section must be visible before
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1997
    // we drop the lock (and thus before any other thread could acquire
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1998
    // the lock and observe the fields protected by the lock).
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  1999
    // IA32's memory-model is SPO, so STs are ordered with respect to
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2000
    // each other and there's no need for an explicit barrier (fence).
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2001
    // See also http://gee.cs.oswego.edu/dl/jmm/cookbook.html.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2002
#ifndef _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2003
    get_thread (boxReg);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2004
    if ((EmitSync & 4096) && VM_Version::supports_3dnow_prefetch() && os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2005
      // prefetchw [ebx + Offset(_owner)-2]
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2006
      prefetchw(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2007
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2008
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2009
    // Note that we could employ various encoding schemes to reduce
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2010
    // the number of loads below (currently 4) to just 2 or 3.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2011
    // Refer to the comments in synchronizer.cpp.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2012
    // In practice the chain of fetches doesn't seem to impact performance, however.
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2013
    xorptr(boxReg, boxReg);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2014
    if ((EmitSync & 65536) == 0 && (EmitSync & 256)) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2015
       // Attempt to reduce branch density - AMD's branch predictor.
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2016
       orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(recursions)));
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2017
       orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(EntryList)));
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2018
       orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(cxq)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2019
       jccb  (Assembler::notZero, DONE_LABEL);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2020
       movptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2021
       jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2022
    } else {
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2023
       orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(recursions)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2024
       jccb  (Assembler::notZero, DONE_LABEL);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2025
       movptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(EntryList)));
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2026
       orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(cxq)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2027
       jccb  (Assembler::notZero, CheckSucc);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2028
       movptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2029
       jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2030
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2031
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2032
    // The Following code fragment (EmitSync & 65536) improves the performance of
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2033
    // contended applications and contended synchronization microbenchmarks.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2034
    // Unfortunately the emission of the code - even though not executed - causes regressions
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2035
    // in scimark and jetstream, evidently because of $ effects.  Replacing the code
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2036
    // with an equal number of never-executed NOPs results in the same regression.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2037
    // We leave it off by default.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2038
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2039
    if ((EmitSync & 65536) != 0) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2040
       Label LSuccess, LGoSlowPath ;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2041
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2042
       bind  (CheckSucc);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2043
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2044
       // Optional pre-test ... it's safe to elide this
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2045
       cmpptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(succ)), (int32_t)NULL_WORD);
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2046
       jccb(Assembler::zero, LGoSlowPath);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2047
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2048
       // We have a classic Dekker-style idiom:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2049
       //    ST m->_owner = 0 ; MEMBAR; LD m->_succ
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2050
       // There are a number of ways to implement the barrier:
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2051
       // (1) lock:andl &m->_owner, 0
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2052
       //     is fast, but mask doesn't currently support the "ANDL M,IMM32" form.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2053
       //     LOCK: ANDL [ebx+Offset(_Owner)-2], 0
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2054
       //     Encodes as 81 31 OFF32 IMM32 or 83 63 OFF8 IMM8
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2055
       // (2) If supported, an explicit MFENCE is appealing.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2056
       //     In older IA32 processors MFENCE is slower than lock:add or xchg
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2057
       //     particularly if the write-buffer is full as might be the case if
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2058
       //     if stores closely precede the fence or fence-equivalent instruction.
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2059
       //     See https://blogs.oracle.com/dave/entry/instruction_selection_for_volatile_fences
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2060
       //     as the situation has changed with Nehalem and Shanghai.
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2061
       // (3) In lieu of an explicit fence, use lock:addl to the top-of-stack
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2062
       //     The $lines underlying the top-of-stack should be in M-state.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2063
       //     The locked add instruction is serializing, of course.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2064
       // (4) Use xchg, which is serializing
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2065
       //     mov boxReg, 0; xchgl boxReg, [tmpReg + Offset(_owner)-2] also works
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2066
       // (5) ST m->_owner = 0 and then execute lock:orl &m->_succ, 0.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2067
       //     The integer condition codes will tell us if succ was 0.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2068
       //     Since _succ and _owner should reside in the same $line and
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2069
       //     we just stored into _owner, it's likely that the $line
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2070
       //     remains in M-state for the lock:orl.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2071
       //
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2072
       // We currently use (3), although it's likely that switching to (2)
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2073
       // is correct for the future.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2074
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2075
       movptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2076
       if (os::is_MP()) {
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2077
         lock(); addptr(Address(rsp, 0), 0);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2078
       }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2079
       // Ratify _succ remains non-null
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2080
       cmpptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(succ)), 0);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2081
       jccb  (Assembler::notZero, LSuccess);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2082
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2083
       xorptr(boxReg, boxReg);                  // box is really EAX
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2084
       if (os::is_MP()) { lock(); }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2085
       cmpxchgptr(rsp, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2086
       jccb  (Assembler::notEqual, LSuccess);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2087
       // Since we're low on registers we installed rsp as a placeholding in _owner.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2088
       // Now install Self over rsp.  This is safe as we're transitioning from
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2089
       // non-null to non=null
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2090
       get_thread (boxReg);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2091
       movptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), boxReg);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2092
       // Intentional fall-through into LGoSlowPath ...
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2093
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2094
       bind  (LGoSlowPath);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2095
       orptr(boxReg, 1);                      // set ICC.ZF=0 to indicate failure
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2096
       jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2097
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2098
       bind  (LSuccess);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2099
       xorptr(boxReg, boxReg);                 // set ICC.ZF=1 to indicate success
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2100
       jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2101
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2102
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2103
    bind (Stacked);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2104
    // It's not inflated and it's not recursively stack-locked and it's not biased.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2105
    // It must be stack-locked.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2106
    // Try to reset the header to displaced header.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2107
    // The "box" value on the stack is stable, so we can reload
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2108
    // and be assured we observe the same value as above.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2109
    movptr(tmpReg, Address(boxReg, 0));
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2110
    if (os::is_MP()) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2111
      lock();
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2112
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2113
    cmpxchgptr(tmpReg, Address(objReg, 0)); // Uses RAX which is box
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2114
    // Intention fall-thru into DONE_LABEL
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2115
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2116
    // DONE_LABEL is a hot target - we'd really like to place it at the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2117
    // start of cache line by padding with NOPs.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2118
    // See the AMD and Intel software optimization manuals for the
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2119
    // most efficient "long" NOP encodings.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2120
    // Unfortunately none of our alignment mechanisms suffice.
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2121
    if ((EmitSync & 65536) == 0) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2122
       bind (CheckSucc);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2123
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2124
#else // _LP64
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2125
    // It's inflated
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2126
    if (EmitSync & 1024) {
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2127
      // Emit code to check that _owner == Self
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2128
      // We could fold the _owner test into subsequent code more efficiently
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2129
      // than using a stand-alone check, but since _owner checking is off by
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2130
      // default we don't bother. We also might consider predicating the
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2131
      // _owner==Self check on Xcheck:jni or running on a debug build.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2132
      movptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2133
      xorptr(boxReg, r15_thread);
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2134
    } else {
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2135
      xorptr(boxReg, boxReg);
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2136
    }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2137
    orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(recursions)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2138
    jccb  (Assembler::notZero, DONE_LABEL);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2139
    movptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(cxq)));
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2140
    orptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(EntryList)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2141
    jccb  (Assembler::notZero, CheckSucc);
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2142
    movptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), (int32_t)NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2143
    jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2144
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2145
    if ((EmitSync & 65536) == 0) {
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2146
      // Try to avoid passing control into the slow_path ...
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2147
      Label LSuccess, LGoSlowPath ;
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2148
      bind  (CheckSucc);
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2149
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2150
      // The following optional optimization can be elided if necessary
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2151
      // Effectively: if (succ == null) goto SlowPath
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2152
      // The code reduces the window for a race, however,
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2153
      // and thus benefits performance.
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2154
      cmpptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(succ)), (int32_t)NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2155
      jccb  (Assembler::zero, LGoSlowPath);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2156
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2157
      if ((EmitSync & 16) && os::is_MP()) {
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2158
        orptr(boxReg, boxReg);
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2159
        xchgptr(boxReg, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2160
      } else {
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2161
        movptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)), (int32_t)NULL_WORD);
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2162
        if (os::is_MP()) {
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2163
          // Memory barrier/fence
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2164
          // Dekker pivot point -- fulcrum : ST Owner; MEMBAR; LD Succ
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2165
          // Instead of MFENCE we use a dummy locked add of 0 to the top-of-stack.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2166
          // This is faster on Nehalem and AMD Shanghai/Barcelona.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2167
          // See https://blogs.oracle.com/dave/entry/instruction_selection_for_volatile_fences
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2168
          // We might also restructure (ST Owner=0;barrier;LD _Succ) to
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2169
          // (mov box,0; xchgq box, &m->Owner; LD _succ) .
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2170
          lock(); addl(Address(rsp, 0), 0);
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2171
        }
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2172
      }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2173
      cmpptr(Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(succ)), (int32_t)NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2174
      jccb  (Assembler::notZero, LSuccess);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2175
30244
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2176
      // Rare inopportune interleaving - race.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2177
      // The successor vanished in the small window above.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2178
      // The lock is contended -- (cxq|EntryList) != null -- and there's no apparent successor.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2179
      // We need to ensure progress and succession.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2180
      // Try to reacquire the lock.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2181
      // If that fails then the new owner is responsible for succession and this
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2182
      // thread needs to take no further action and can exit via the fast path (success).
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2183
      // If the re-acquire succeeds then pass control into the slow path.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2184
      // As implemented, this latter mode is horrible because we generated more
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2185
      // coherence traffic on the lock *and* artifically extended the critical section
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2186
      // length while by virtue of passing control into the slow path.
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2187
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2188
      // box is really RAX -- the following CMPXCHG depends on that binding
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2189
      // cmpxchg R,[M] is equivalent to rax = CAS(M,rax,R)
d4e471395ff5 8073165: Contended Locking fast exit bucket
dcubed
parents: 29325
diff changeset
  2190
      movptr(boxReg, (int32_t)NULL_WORD);
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2191
      if (os::is_MP()) { lock(); }
27608
80d91e264baf 8062851: cleanup ObjectMonitor offset adjustments
dcubed
parents: 26434
diff changeset
  2192
      cmpxchgptr(r15_thread, Address(tmpReg, OM_OFFSET_NO_MONITOR_VALUE_TAG(owner)));
22910
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2193
      jccb  (Assembler::notEqual, LSuccess);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2194
      // Intentional fall-through into slow-path
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2195
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2196
      bind  (LGoSlowPath);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2197
      orl   (boxReg, 1);                      // set ICC.ZF=0 to indicate failure
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2198
      jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2199
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2200
      bind  (LSuccess);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2201
      testl (boxReg, 0);                      // set ICC.ZF=1 to indicate success
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2202
      jmpb  (DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2203
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2204
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2205
    bind  (Stacked);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2206
    movptr(tmpReg, Address (boxReg, 0));      // re-fetch
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2207
    if (os::is_MP()) { lock(); }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2208
    cmpxchgptr(tmpReg, Address(objReg, 0)); // Uses RAX which is box
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2209
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2210
    if (EmitSync & 65536) {
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2211
       bind (CheckSucc);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2212
    }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2213
#endif
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2214
    bind(DONE_LABEL);
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2215
  }
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2216
}
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2217
#endif // COMPILER2
88c3369b5967 8033805: Move Fast_Lock/Fast_Unlock code from .ad files to macroassembler
kvn
parents: 21923
diff changeset
  2218
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2219
void MacroAssembler::c2bool(Register x) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2220
  // implements x == 0 ? 0 : 1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2221
  // note: must only look at least-significant byte of x
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2222
  //       since C-style booleans are stored in one byte
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2223
  //       only! (was bug)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2224
  andl(x, 0xFF);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2225
  setb(Assembler::notZero, x);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2226
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2227
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2228
// Wouldn't need if AddressLiteral version had new name
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2229
void MacroAssembler::call(Label& L, relocInfo::relocType rtype) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2230
  Assembler::call(L, rtype);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2231
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2232
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2233
void MacroAssembler::call(Register entry) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2234
  Assembler::call(entry);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2235
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2236
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2237
void MacroAssembler::call(AddressLiteral entry) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2238
  if (reachable(entry)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2239
    Assembler::call_literal(entry.target(), entry.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2240
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2241
    lea(rscratch1, entry);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2242
    Assembler::call(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2243
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2244
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2245
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2246
void MacroAssembler::ic_call(address entry) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2247
  RelocationHolder rh = virtual_call_Relocation::spec(pc());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2248
  movptr(rax, (intptr_t)Universe::non_oop_word());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2249
  call(AddressLiteral(entry, rh));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2250
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2251
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2252
// Implementation of call_VM versions
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2253
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2254
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2255
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2256
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2257
  Label C, E;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2258
  call(C, relocInfo::none);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2259
  jmp(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2260
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2261
  bind(C);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2262
  call_VM_helper(oop_result, entry_point, 0, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2263
  ret(0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2264
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2265
  bind(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2266
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2267
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2268
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2269
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2270
                             Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2271
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2272
  Label C, E;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2273
  call(C, relocInfo::none);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2274
  jmp(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2275
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2276
  bind(C);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2277
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2278
  call_VM_helper(oop_result, entry_point, 1, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2279
  ret(0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2280
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2281
  bind(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2282
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2283
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2284
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2285
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2286
                             Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2287
                             Register arg_2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2288
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2289
  Label C, E;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2290
  call(C, relocInfo::none);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2291
  jmp(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2292
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2293
  bind(C);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2294
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2295
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2296
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2297
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2298
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2299
  call_VM_helper(oop_result, entry_point, 2, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2300
  ret(0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2301
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2302
  bind(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2303
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2304
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2305
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2306
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2307
                             Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2308
                             Register arg_2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2309
                             Register arg_3,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2310
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2311
  Label C, E;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2312
  call(C, relocInfo::none);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2313
  jmp(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2314
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2315
  bind(C);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2316
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2317
  LP64_ONLY(assert(arg_1 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2318
  LP64_ONLY(assert(arg_2 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2319
  pass_arg3(this, arg_3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2320
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2321
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2322
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2323
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2324
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2325
  call_VM_helper(oop_result, entry_point, 3, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2326
  ret(0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2327
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2328
  bind(E);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2329
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2330
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2331
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2332
                             Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2333
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2334
                             int number_of_arguments,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2335
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2336
  Register thread = LP64_ONLY(r15_thread) NOT_LP64(noreg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2337
  call_VM_base(oop_result, thread, last_java_sp, entry_point, number_of_arguments, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2338
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2339
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2340
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2341
                             Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2342
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2343
                             Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2344
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2345
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2346
  call_VM(oop_result, last_java_sp, entry_point, 1, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2347
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2348
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2349
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2350
                             Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2351
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2352
                             Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2353
                             Register arg_2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2354
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2355
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2356
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2357
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2358
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2359
  call_VM(oop_result, last_java_sp, entry_point, 2, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2360
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2361
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2362
void MacroAssembler::call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2363
                             Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2364
                             address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2365
                             Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2366
                             Register arg_2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2367
                             Register arg_3,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2368
                             bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2369
  LP64_ONLY(assert(arg_1 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2370
  LP64_ONLY(assert(arg_2 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2371
  pass_arg3(this, arg_3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2372
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2373
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2374
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2375
  call_VM(oop_result, last_java_sp, entry_point, 3, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2376
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2377
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2378
void MacroAssembler::super_call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2379
                                   Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2380
                                   address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2381
                                   int number_of_arguments,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2382
                                   bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2383
  Register thread = LP64_ONLY(r15_thread) NOT_LP64(noreg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2384
  MacroAssembler::call_VM_base(oop_result, thread, last_java_sp, entry_point, number_of_arguments, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2385
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2386
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2387
void MacroAssembler::super_call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2388
                                   Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2389
                                   address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2390
                                   Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2391
                                   bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2392
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2393
  super_call_VM(oop_result, last_java_sp, entry_point, 1, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2394
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2395
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2396
void MacroAssembler::super_call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2397
                                   Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2398
                                   address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2399
                                   Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2400
                                   Register arg_2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2401
                                   bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2402
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2403
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2404
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2405
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2406
  super_call_VM(oop_result, last_java_sp, entry_point, 2, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2407
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2408
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2409
void MacroAssembler::super_call_VM(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2410
                                   Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2411
                                   address entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2412
                                   Register arg_1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2413
                                   Register arg_2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2414
                                   Register arg_3,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2415
                                   bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2416
  LP64_ONLY(assert(arg_1 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2417
  LP64_ONLY(assert(arg_2 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2418
  pass_arg3(this, arg_3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2419
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2420
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2421
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2422
  super_call_VM(oop_result, last_java_sp, entry_point, 3, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2423
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2424
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2425
void MacroAssembler::call_VM_base(Register oop_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2426
                                  Register java_thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2427
                                  Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2428
                                  address  entry_point,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2429
                                  int      number_of_arguments,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2430
                                  bool     check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2431
  // determine java_thread register
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2432
  if (!java_thread->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2433
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2434
    java_thread = r15_thread;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2435
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2436
    java_thread = rdi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2437
    get_thread(java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2438
#endif // LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2439
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2440
  // determine last_java_sp register
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2441
  if (!last_java_sp->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2442
    last_java_sp = rsp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2443
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2444
  // debugging support
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2445
  assert(number_of_arguments >= 0   , "cannot have negative number of arguments");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2446
  LP64_ONLY(assert(java_thread == r15_thread, "unexpected register"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2447
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2448
  // TraceBytecodes does not use r12 but saves it over the call, so don't verify
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2449
  // r12 is the heapbase.
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  2450
  LP64_ONLY(if ((UseCompressedOops || UseCompressedClassPointers) && !TraceBytecodes) verify_heapbase("call_VM_base: heap base corrupted?");)
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2451
#endif // ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2452
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2453
  assert(java_thread != oop_result  , "cannot use the same register for java_thread & oop_result");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2454
  assert(java_thread != last_java_sp, "cannot use the same register for java_thread & last_java_sp");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2455
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2456
  // push java thread (becomes first argument of C function)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2457
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2458
  NOT_LP64(push(java_thread); number_of_arguments++);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2459
  LP64_ONLY(mov(c_rarg0, r15_thread));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2460
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2461
  // set last Java frame before call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2462
  assert(last_java_sp != rbp, "can't use ebp/rbp");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2463
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2464
  // Only interpreter should have to set fp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2465
  set_last_Java_frame(java_thread, last_java_sp, rbp, NULL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2466
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2467
  // do the call, remove parameters
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2468
  MacroAssembler::call_VM_leaf_base(entry_point, number_of_arguments);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2469
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2470
  // restore the thread (cannot use the pushed argument since arguments
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2471
  // may be overwritten by C code generated by an optimizing compiler);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2472
  // however can use the register value directly if it is callee saved.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2473
  if (LP64_ONLY(true ||) java_thread == rdi || java_thread == rsi) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2474
    // rdi & rsi (also r15) are callee saved -> nothing to do
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2475
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2476
    guarantee(java_thread != rax, "change this code");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2477
    push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2478
    { Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2479
      get_thread(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2480
      cmpptr(java_thread, rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2481
      jcc(Assembler::equal, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2482
      STOP("MacroAssembler::call_VM_base: rdi not callee saved?");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2483
      bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2484
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2485
    pop(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2486
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2487
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2488
    get_thread(java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2489
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2490
  // reset last Java frame
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2491
  // Only interpreter should have to clear fp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2492
  reset_last_Java_frame(java_thread, true, false);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2493
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2494
#ifndef CC_INTERP
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2495
   // C++ interp handles this in the interpreter
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2496
  check_and_handle_popframe(java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2497
  check_and_handle_earlyret(java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2498
#endif /* CC_INTERP */
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2499
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2500
  if (check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2501
    // check for pending exceptions (java_thread is set upon return)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2502
    cmpptr(Address(java_thread, Thread::pending_exception_offset()), (int32_t) NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2503
#ifndef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2504
    jump_cc(Assembler::notEqual,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2505
            RuntimeAddress(StubRoutines::forward_exception_entry()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2506
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2507
    // This used to conditionally jump to forward_exception however it is
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2508
    // possible if we relocate that the branch will not reach. So we must jump
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2509
    // around so we can always reach
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2510
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2511
    Label ok;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2512
    jcc(Assembler::equal, ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2513
    jump(RuntimeAddress(StubRoutines::forward_exception_entry()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2514
    bind(ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2515
#endif // LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2516
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2517
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2518
  // get oop result if there is one and reset the value in the thread
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2519
  if (oop_result->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2520
    get_vm_result(oop_result, java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2521
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2522
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2523
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2524
void MacroAssembler::call_VM_helper(Register oop_result, address entry_point, int number_of_arguments, bool check_exceptions) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2525
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2526
  // Calculate the value for last_Java_sp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2527
  // somewhat subtle. call_VM does an intermediate call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2528
  // which places a return address on the stack just under the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2529
  // stack pointer as the user finsihed with it. This allows
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2530
  // use to retrieve last_Java_pc from last_Java_sp[-1].
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2531
  // On 32bit we then have to push additional args on the stack to accomplish
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2532
  // the actual requested call. On 64bit call_VM only can use register args
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2533
  // so the only extra space is the return address that call_VM created.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2534
  // This hopefully explains the calculations here.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2535
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2536
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2537
  // We've pushed one address, correct last_Java_sp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2538
  lea(rax, Address(rsp, wordSize));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2539
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2540
  lea(rax, Address(rsp, (1 + number_of_arguments) * wordSize));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2541
#endif // LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2542
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2543
  call_VM_base(oop_result, noreg, rax, entry_point, number_of_arguments, check_exceptions);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2544
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2545
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2546
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2547
void MacroAssembler::call_VM_leaf(address entry_point, int number_of_arguments) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2548
  call_VM_leaf_base(entry_point, number_of_arguments);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2549
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2550
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2551
void MacroAssembler::call_VM_leaf(address entry_point, Register arg_0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2552
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2553
  call_VM_leaf(entry_point, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2554
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2555
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2556
void MacroAssembler::call_VM_leaf(address entry_point, Register arg_0, Register arg_1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2557
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2558
  LP64_ONLY(assert(arg_0 != c_rarg1, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2559
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2560
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2561
  call_VM_leaf(entry_point, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2562
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2563
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2564
void MacroAssembler::call_VM_leaf(address entry_point, Register arg_0, Register arg_1, Register arg_2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2565
  LP64_ONLY(assert(arg_0 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2566
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2567
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2568
  LP64_ONLY(assert(arg_0 != c_rarg1, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2569
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2570
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2571
  call_VM_leaf(entry_point, 3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2572
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2573
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2574
void MacroAssembler::super_call_VM_leaf(address entry_point, Register arg_0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2575
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2576
  MacroAssembler::call_VM_leaf_base(entry_point, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2577
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2578
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2579
void MacroAssembler::super_call_VM_leaf(address entry_point, Register arg_0, Register arg_1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2580
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2581
  LP64_ONLY(assert(arg_0 != c_rarg1, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2582
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2583
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2584
  MacroAssembler::call_VM_leaf_base(entry_point, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2585
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2586
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2587
void MacroAssembler::super_call_VM_leaf(address entry_point, Register arg_0, Register arg_1, Register arg_2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2588
  LP64_ONLY(assert(arg_0 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2589
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2590
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2591
  LP64_ONLY(assert(arg_0 != c_rarg1, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2592
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2593
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2594
  MacroAssembler::call_VM_leaf_base(entry_point, 3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2595
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2596
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2597
void MacroAssembler::super_call_VM_leaf(address entry_point, Register arg_0, Register arg_1, Register arg_2, Register arg_3) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2598
  LP64_ONLY(assert(arg_0 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2599
  LP64_ONLY(assert(arg_1 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2600
  LP64_ONLY(assert(arg_2 != c_rarg3, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2601
  pass_arg3(this, arg_3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2602
  LP64_ONLY(assert(arg_0 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2603
  LP64_ONLY(assert(arg_1 != c_rarg2, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2604
  pass_arg2(this, arg_2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2605
  LP64_ONLY(assert(arg_0 != c_rarg1, "smashed arg"));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2606
  pass_arg1(this, arg_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2607
  pass_arg0(this, arg_0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2608
  MacroAssembler::call_VM_leaf_base(entry_point, 4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2609
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2610
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2611
void MacroAssembler::get_vm_result(Register oop_result, Register java_thread) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2612
  movptr(oop_result, Address(java_thread, JavaThread::vm_result_offset()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2613
  movptr(Address(java_thread, JavaThread::vm_result_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2614
  verify_oop(oop_result, "broken oop in call_VM_base");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2615
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2616
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2617
void MacroAssembler::get_vm_result_2(Register metadata_result, Register java_thread) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2618
  movptr(metadata_result, Address(java_thread, JavaThread::vm_result_2_offset()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2619
  movptr(Address(java_thread, JavaThread::vm_result_2_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2620
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2621
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2622
void MacroAssembler::check_and_handle_earlyret(Register java_thread) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2623
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2624
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2625
void MacroAssembler::check_and_handle_popframe(Register java_thread) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2626
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2627
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2628
void MacroAssembler::cmp32(AddressLiteral src1, int32_t imm) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2629
  if (reachable(src1)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2630
    cmpl(as_Address(src1), imm);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2631
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2632
    lea(rscratch1, src1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2633
    cmpl(Address(rscratch1, 0), imm);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2634
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2635
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2636
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2637
void MacroAssembler::cmp32(Register src1, AddressLiteral src2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2638
  assert(!src2.is_lval(), "use cmpptr");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2639
  if (reachable(src2)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2640
    cmpl(src1, as_Address(src2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2641
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2642
    lea(rscratch1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2643
    cmpl(src1, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2644
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2645
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2646
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2647
void MacroAssembler::cmp32(Register src1, int32_t imm) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2648
  Assembler::cmpl(src1, imm);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2649
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2650
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2651
void MacroAssembler::cmp32(Register src1, Address src2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2652
  Assembler::cmpl(src1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2653
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2654
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2655
void MacroAssembler::cmpsd2int(XMMRegister opr1, XMMRegister opr2, Register dst, bool unordered_is_less) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2656
  ucomisd(opr1, opr2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2657
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2658
  Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2659
  if (unordered_is_less) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2660
    movl(dst, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2661
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2662
    jcc(Assembler::below , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2663
    movl(dst, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2664
    jcc(Assembler::equal , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2665
    increment(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2666
  } else { // unordered is greater
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2667
    movl(dst, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2668
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2669
    jcc(Assembler::above , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2670
    movl(dst, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2671
    jcc(Assembler::equal , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2672
    decrementl(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2673
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2674
  bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2675
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2676
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2677
void MacroAssembler::cmpss2int(XMMRegister opr1, XMMRegister opr2, Register dst, bool unordered_is_less) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2678
  ucomiss(opr1, opr2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2679
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2680
  Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2681
  if (unordered_is_less) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2682
    movl(dst, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2683
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2684
    jcc(Assembler::below , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2685
    movl(dst, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2686
    jcc(Assembler::equal , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2687
    increment(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2688
  } else { // unordered is greater
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2689
    movl(dst, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2690
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2691
    jcc(Assembler::above , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2692
    movl(dst, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2693
    jcc(Assembler::equal , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2694
    decrementl(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2695
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2696
  bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2697
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2698
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2699
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2700
void MacroAssembler::cmp8(AddressLiteral src1, int imm) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2701
  if (reachable(src1)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2702
    cmpb(as_Address(src1), imm);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2703
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2704
    lea(rscratch1, src1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2705
    cmpb(Address(rscratch1, 0), imm);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2706
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2707
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2708
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2709
void MacroAssembler::cmpptr(Register src1, AddressLiteral src2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2710
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2711
  if (src2.is_lval()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2712
    movptr(rscratch1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2713
    Assembler::cmpq(src1, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2714
  } else if (reachable(src2)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2715
    cmpq(src1, as_Address(src2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2716
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2717
    lea(rscratch1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2718
    Assembler::cmpq(src1, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2719
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2720
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2721
  if (src2.is_lval()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2722
    cmp_literal32(src1, (int32_t) src2.target(), src2.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2723
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2724
    cmpl(src1, as_Address(src2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2725
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2726
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2727
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2728
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2729
void MacroAssembler::cmpptr(Address src1, AddressLiteral src2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2730
  assert(src2.is_lval(), "not a mem-mem compare");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2731
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2732
  // moves src2's literal address
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2733
  movptr(rscratch1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2734
  Assembler::cmpq(src1, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2735
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2736
  cmp_literal32(src1, (int32_t) src2.target(), src2.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2737
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2738
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2739
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2740
void MacroAssembler::locked_cmpxchgptr(Register reg, AddressLiteral adr) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2741
  if (reachable(adr)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2742
    if (os::is_MP())
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2743
      lock();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2744
    cmpxchgptr(reg, as_Address(adr));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2745
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2746
    lea(rscratch1, adr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2747
    if (os::is_MP())
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2748
      lock();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2749
    cmpxchgptr(reg, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2750
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2751
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2752
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2753
void MacroAssembler::cmpxchgptr(Register reg, Address adr) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2754
  LP64_ONLY(cmpxchgq(reg, adr)) NOT_LP64(cmpxchgl(reg, adr));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2755
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2756
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2757
void MacroAssembler::comisd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2758
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2759
    Assembler::comisd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2760
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2761
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2762
    Assembler::comisd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2763
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2764
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2765
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2766
void MacroAssembler::comiss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2767
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2768
    Assembler::comiss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2769
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2770
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2771
    Assembler::comiss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2772
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2773
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2774
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2775
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2776
void MacroAssembler::cond_inc32(Condition cond, AddressLiteral counter_addr) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2777
  Condition negated_cond = negate_condition(cond);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2778
  Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2779
  jcc(negated_cond, L);
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  2780
  pushf(); // Preserve flags
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2781
  atomic_incl(counter_addr);
23491
f690330b10b9 8031320: Use Intel RTM instructions for locks
kvn
parents: 22910
diff changeset
  2782
  popf();
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2783
  bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2784
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2785
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2786
int MacroAssembler::corrected_idivl(Register reg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2787
  // Full implementation of Java idiv and irem; checks for
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2788
  // special case as described in JVM spec., p.243 & p.271.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2789
  // The function returns the (pc) offset of the idivl
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2790
  // instruction - may be needed for implicit exceptions.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2791
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2792
  //         normal case                           special case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2793
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2794
  // input : rax,: dividend                         min_int
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2795
  //         reg: divisor   (may not be rax,/rdx)   -1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2796
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2797
  // output: rax,: quotient  (= rax, idiv reg)       min_int
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2798
  //         rdx: remainder (= rax, irem reg)       0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2799
  assert(reg != rax && reg != rdx, "reg cannot be rax, or rdx register");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2800
  const int min_int = 0x80000000;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2801
  Label normal_case, special_case;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2802
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2803
  // check for special case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2804
  cmpl(rax, min_int);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2805
  jcc(Assembler::notEqual, normal_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2806
  xorl(rdx, rdx); // prepare rdx for possible special case (where remainder = 0)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2807
  cmpl(reg, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2808
  jcc(Assembler::equal, special_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2809
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2810
  // handle normal case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2811
  bind(normal_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2812
  cdql();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2813
  int idivl_offset = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2814
  idivl(reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2815
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2816
  // normal and special case exit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2817
  bind(special_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2818
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2819
  return idivl_offset;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2820
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2821
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2822
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2823
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2824
void MacroAssembler::decrementl(Register reg, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2825
  if (value == min_jint) {subl(reg, value) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2826
  if (value <  0) { incrementl(reg, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2827
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2828
  if (value == 1 && UseIncDec) { decl(reg) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2829
  /* else */      { subl(reg, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2830
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2831
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2832
void MacroAssembler::decrementl(Address dst, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2833
  if (value == min_jint) {subl(dst, value) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2834
  if (value <  0) { incrementl(dst, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2835
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2836
  if (value == 1 && UseIncDec) { decl(dst) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2837
  /* else */      { subl(dst, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2838
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2839
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2840
void MacroAssembler::division_with_shift (Register reg, int shift_value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2841
  assert (shift_value > 0, "illegal shift value");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2842
  Label _is_positive;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2843
  testl (reg, reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2844
  jcc (Assembler::positive, _is_positive);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2845
  int offset = (1 << shift_value) - 1 ;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2846
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2847
  if (offset == 1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2848
    incrementl(reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2849
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2850
    addl(reg, offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2851
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2852
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2853
  bind (_is_positive);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2854
  sarl(reg, shift_value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2855
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2856
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2857
void MacroAssembler::divsd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2858
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2859
    Assembler::divsd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2860
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2861
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2862
    Assembler::divsd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2863
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2864
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2865
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2866
void MacroAssembler::divss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2867
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2868
    Assembler::divss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2869
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2870
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2871
    Assembler::divss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2872
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2873
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2874
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2875
// !defined(COMPILER2) is because of stupid core builds
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2876
#if !defined(_LP64) || defined(COMPILER1) || !defined(COMPILER2)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2877
void MacroAssembler::empty_FPU_stack() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2878
  if (VM_Version::supports_mmx()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2879
    emms();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2880
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2881
    for (int i = 8; i-- > 0; ) ffree(i);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2882
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2883
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2884
#endif // !LP64 || C1 || !C2
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2885
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2886
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2887
// Defines obj, preserves var_size_in_bytes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2888
void MacroAssembler::eden_allocate(Register obj,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2889
                                   Register var_size_in_bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2890
                                   int con_size_in_bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2891
                                   Register t1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2892
                                   Label& slow_case) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2893
  assert(obj == rax, "obj must be in rax, for cmpxchg");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2894
  assert_different_registers(obj, var_size_in_bytes, t1);
27625
07829380b8cd 8061308: Remove iCMS
brutisso
parents: 26434
diff changeset
  2895
  if (!Universe::heap()->supports_inline_contig_alloc()) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2896
    jmp(slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2897
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2898
    Register end = t1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2899
    Label retry;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2900
    bind(retry);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2901
    ExternalAddress heap_top((address) Universe::heap()->top_addr());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2902
    movptr(obj, heap_top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2903
    if (var_size_in_bytes == noreg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2904
      lea(end, Address(obj, con_size_in_bytes));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2905
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2906
      lea(end, Address(obj, var_size_in_bytes, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2907
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2908
    // if end < obj then we wrapped around => object too long => slow case
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2909
    cmpptr(end, obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2910
    jcc(Assembler::below, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2911
    cmpptr(end, ExternalAddress((address) Universe::heap()->end_addr()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2912
    jcc(Assembler::above, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2913
    // Compare obj with the top addr, and if still equal, store the new top addr in
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2914
    // end at the address of the top addr pointer. Sets ZF if was equal, and clears
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2915
    // it otherwise. Use lock prefix for atomicity on MPs.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2916
    locked_cmpxchgptr(end, heap_top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2917
    jcc(Assembler::notEqual, retry);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2918
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2919
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2920
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2921
void MacroAssembler::enter() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2922
  push(rbp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2923
  mov(rbp, rsp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2924
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2925
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2926
// A 5 byte nop that is safe for patching (see patch_verified_entry)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2927
void MacroAssembler::fat_nop() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2928
  if (UseAddressNop) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2929
    addr_nop_5();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2930
  } else {
14837
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  2931
    emit_int8(0x26); // es:
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  2932
    emit_int8(0x2e); // cs:
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  2933
    emit_int8(0x64); // fs:
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  2934
    emit_int8(0x65); // gs:
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  2935
    emit_int8((unsigned char)0x90);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2936
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2937
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2938
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2939
void MacroAssembler::fcmp(Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2940
  fcmp(tmp, 1, true, true);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2941
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2942
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2943
void MacroAssembler::fcmp(Register tmp, int index, bool pop_left, bool pop_right) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2944
  assert(!pop_right || pop_left, "usage error");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2945
  if (VM_Version::supports_cmov()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2946
    assert(tmp == noreg, "unneeded temp");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2947
    if (pop_left) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2948
      fucomip(index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2949
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2950
      fucomi(index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2951
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2952
    if (pop_right) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2953
      fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2954
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2955
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2956
    assert(tmp != noreg, "need temp");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2957
    if (pop_left) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2958
      if (pop_right) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2959
        fcompp();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2960
      } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2961
        fcomp(index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2962
      }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2963
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2964
      fcom(index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2965
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2966
    // convert FPU condition into eflags condition via rax,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2967
    save_rax(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2968
    fwait(); fnstsw_ax();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2969
    sahf();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2970
    restore_rax(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2971
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2972
  // condition codes set as follows:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2973
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2974
  // CF (corresponds to C0) if x < y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2975
  // PF (corresponds to C2) if unordered
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2976
  // ZF (corresponds to C3) if x = y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2977
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2978
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2979
void MacroAssembler::fcmp2int(Register dst, bool unordered_is_less) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2980
  fcmp2int(dst, unordered_is_less, 1, true, true);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2981
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2982
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2983
void MacroAssembler::fcmp2int(Register dst, bool unordered_is_less, int index, bool pop_left, bool pop_right) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2984
  fcmp(VM_Version::supports_cmov() ? noreg : dst, index, pop_left, pop_right);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2985
  Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2986
  if (unordered_is_less) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2987
    movl(dst, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2988
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2989
    jcc(Assembler::below , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2990
    movl(dst, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2991
    jcc(Assembler::equal , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2992
    increment(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2993
  } else { // unordered is greater
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2994
    movl(dst, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2995
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2996
    jcc(Assembler::above , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2997
    movl(dst, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2998
    jcc(Assembler::equal , L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  2999
    decrementl(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3000
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3001
  bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3002
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3003
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3004
void MacroAssembler::fld_d(AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3005
  fld_d(as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3006
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3007
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3008
void MacroAssembler::fld_s(AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3009
  fld_s(as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3010
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3011
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3012
void MacroAssembler::fld_x(AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3013
  Assembler::fld_x(as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3014
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3015
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3016
void MacroAssembler::fldcw(AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3017
  Assembler::fldcw(as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3018
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3019
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3020
void MacroAssembler::pow_exp_core_encoding() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3021
  // kills rax, rcx, rdx
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3022
  subptr(rsp,sizeof(jdouble));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3023
  // computes 2^X. Stack: X ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3024
  // f2xm1 computes 2^X-1 but only operates on -1<=X<=1. Get int(X) and
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3025
  // keep it on the thread's stack to compute 2^int(X) later
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3026
  // then compute 2^(X-int(X)) as (2^(X-int(X)-1+1)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3027
  // final result is obtained with: 2^X = 2^int(X) * 2^(X-int(X))
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3028
  fld_s(0);                 // Stack: X X ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3029
  frndint();                // Stack: int(X) X ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3030
  fsuba(1);                 // Stack: int(X) X-int(X) ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3031
  fistp_s(Address(rsp,0));  // move int(X) as integer to thread's stack. Stack: X-int(X) ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3032
  f2xm1();                  // Stack: 2^(X-int(X))-1 ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3033
  fld1();                   // Stack: 1 2^(X-int(X))-1 ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3034
  faddp(1);                 // Stack: 2^(X-int(X))
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3035
  // computes 2^(int(X)): add exponent bias (1023) to int(X), then
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3036
  // shift int(X)+1023 to exponent position.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3037
  // Exponent is limited to 11 bits if int(X)+1023 does not fit in 11
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3038
  // bits, set result to NaN. 0x000 and 0x7FF are reserved exponent
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3039
  // values so detect them and set result to NaN.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3040
  movl(rax,Address(rsp,0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3041
  movl(rcx, -2048); // 11 bit mask and valid NaN binary encoding
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3042
  addl(rax, 1023);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3043
  movl(rdx,rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3044
  shll(rax,20);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3045
  // Check that 0 < int(X)+1023 < 2047. Otherwise set rax to NaN.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3046
  addl(rdx,1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3047
  // Check that 1 < int(X)+1023+1 < 2048
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3048
  // in 3 steps:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3049
  // 1- (int(X)+1023+1)&-2048 == 0 => 0 <= int(X)+1023+1 < 2048
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3050
  // 2- (int(X)+1023+1)&-2048 != 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3051
  // 3- (int(X)+1023+1)&-2048 != 1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3052
  // Do 2- first because addl just updated the flags.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3053
  cmov32(Assembler::equal,rax,rcx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3054
  cmpl(rdx,1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3055
  cmov32(Assembler::equal,rax,rcx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3056
  testl(rdx,rcx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3057
  cmov32(Assembler::notEqual,rax,rcx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3058
  movl(Address(rsp,4),rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3059
  movl(Address(rsp,0),0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3060
  fmul_d(Address(rsp,0));   // Stack: 2^X ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3061
  addptr(rsp,sizeof(jdouble));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3062
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3063
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3064
void MacroAssembler::increase_precision() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3065
  subptr(rsp, BytesPerWord);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3066
  fnstcw(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3067
  movl(rax, Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3068
  orl(rax, 0x300);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3069
  push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3070
  fldcw(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3071
  pop(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3072
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3073
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3074
void MacroAssembler::restore_precision() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3075
  fldcw(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3076
  addptr(rsp, BytesPerWord);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3077
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3078
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3079
void MacroAssembler::fast_pow() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3080
  // computes X^Y = 2^(Y * log2(X))
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3081
  // if fast computation is not possible, result is NaN. Requires
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3082
  // fallback from user of this macro.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3083
  // increase precision for intermediate steps of the computation
24314
b66e3734cb3f 8029302: Performance regression in Math.pow intrinsic
adlertz
parents: 24018
diff changeset
  3084
  BLOCK_COMMENT("fast_pow {");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3085
  increase_precision();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3086
  fyl2x();                 // Stack: (Y*log2(X)) ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3087
  pow_exp_core_encoding(); // Stack: exp(X) ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3088
  restore_precision();
24314
b66e3734cb3f 8029302: Performance regression in Math.pow intrinsic
adlertz
parents: 24018
diff changeset
  3089
  BLOCK_COMMENT("} fast_pow");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3090
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3091
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3092
void MacroAssembler::fast_exp() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3093
  // computes exp(X) = 2^(X * log2(e))
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3094
  // if fast computation is not possible, result is NaN. Requires
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3095
  // fallback from user of this macro.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3096
  // increase precision for intermediate steps of the computation
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3097
  increase_precision();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3098
  fldl2e();                // Stack: log2(e) X ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3099
  fmulp(1);                // Stack: (X*log2(e)) ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3100
  pow_exp_core_encoding(); // Stack: exp(X) ...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3101
  restore_precision();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3102
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3103
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3104
void MacroAssembler::pow_or_exp(bool is_exp, int num_fpu_regs_in_use) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3105
  // kills rax, rcx, rdx
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3106
  // pow and exp needs 2 extra registers on the fpu stack.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3107
  Label slow_case, done;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3108
  Register tmp = noreg;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3109
  if (!VM_Version::supports_cmov()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3110
    // fcmp needs a temporary so preserve rdx,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3111
    tmp = rdx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3112
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3113
  Register tmp2 = rax;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3114
  Register tmp3 = rcx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3115
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3116
  if (is_exp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3117
    // Stack: X
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3118
    fld_s(0);                   // duplicate argument for runtime call. Stack: X X
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3119
    fast_exp();                 // Stack: exp(X) X
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3120
    fcmp(tmp, 0, false, false); // Stack: exp(X) X
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3121
    // exp(X) not equal to itself: exp(X) is NaN go to slow case.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3122
    jcc(Assembler::parity, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3123
    // get rid of duplicate argument. Stack: exp(X)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3124
    if (num_fpu_regs_in_use > 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3125
      fxch();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3126
      fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3127
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3128
      ffree(1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3129
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3130
    jmp(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3131
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3132
    // Stack: X Y
28494
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3133
    Label x_negative, y_not_2;
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3134
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3135
    static double two = 2.0;
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3136
    ExternalAddress two_addr((address)&two);
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3137
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3138
    // constant maybe too far on 64 bit
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3139
    lea(tmp2, two_addr);
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3140
    fld_d(Address(tmp2, 0));    // Stack: 2 X Y
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3141
    fcmp(tmp, 2, true, false);  // Stack: X Y
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3142
    jcc(Assembler::parity, y_not_2);
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3143
    jcc(Assembler::notEqual, y_not_2);
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3144
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3145
    fxch(); fpop();             // Stack: X
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3146
    fmul(0);                    // Stack: X*X
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3147
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3148
    jmp(done);
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3149
d59774687206 8063086: Math.pow yields different results upon repeated calls
roland
parents: 27645
diff changeset
  3150
    bind(y_not_2);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3151
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3152
    fldz();                     // Stack: 0 X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3153
    fcmp(tmp, 1, true, false);  // Stack: X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3154
    jcc(Assembler::above, x_negative);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3155
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3156
    // X >= 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3157
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3158
    fld_s(1);                   // duplicate arguments for runtime call. Stack: Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3159
    fld_s(1);                   // Stack: X Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3160
    fast_pow();                 // Stack: X^Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3161
    fcmp(tmp, 0, false, false); // Stack: X^Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3162
    // X^Y not equal to itself: X^Y is NaN go to slow case.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3163
    jcc(Assembler::parity, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3164
    // get rid of duplicate arguments. Stack: X^Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3165
    if (num_fpu_regs_in_use > 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3166
      fxch(); fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3167
      fxch(); fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3168
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3169
      ffree(2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3170
      ffree(1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3171
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3172
    jmp(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3173
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3174
    // X <= 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3175
    bind(x_negative);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3176
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3177
    fld_s(1);                   // Stack: Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3178
    frndint();                  // Stack: int(Y) X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3179
    fcmp(tmp, 2, false, false); // Stack: int(Y) X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3180
    jcc(Assembler::notEqual, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3181
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3182
    subptr(rsp, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3183
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3184
    // For X^Y, when X < 0, Y has to be an integer and the final
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3185
    // result depends on whether it's odd or even. We just checked
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3186
    // that int(Y) == Y.  We move int(Y) to gp registers as a 64 bit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3187
    // integer to test its parity. If int(Y) is huge and doesn't fit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3188
    // in the 64 bit integer range, the integer indefinite value will
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3189
    // end up in the gp registers. Huge numbers are all even, the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3190
    // integer indefinite number is even so it's fine.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3191
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3192
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3193
    // Let's check we don't end up with an integer indefinite number
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3194
    // when not expected. First test for huge numbers: check whether
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3195
    // int(Y)+1 == int(Y) which is true for very large numbers and
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3196
    // those are all even. A 64 bit integer is guaranteed to not
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3197
    // overflow for numbers where y+1 != y (when precision is set to
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3198
    // double precision).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3199
    Label y_not_huge;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3200
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3201
    fld1();                     // Stack: 1 int(Y) X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3202
    fadd(1);                    // Stack: 1+int(Y) int(Y) X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3203
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3204
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3205
    // trip to memory to force the precision down from double extended
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3206
    // precision
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3207
    fstp_d(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3208
    fld_d(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3209
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3210
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3211
    fcmp(tmp, 1, true, false);  // Stack: int(Y) X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3212
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3213
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3214
    // move int(Y) as 64 bit integer to thread's stack
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3215
    fistp_d(Address(rsp,0));    // Stack: X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3216
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3217
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3218
    jcc(Assembler::notEqual, y_not_huge);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3219
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3220
    // Y is huge so we know it's even. It may not fit in a 64 bit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3221
    // integer and we don't want the debug code below to see the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3222
    // integer indefinite value so overwrite int(Y) on the thread's
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3223
    // stack with 0.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3224
    movl(Address(rsp, 0), 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3225
    movl(Address(rsp, 4), 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3226
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3227
    bind(y_not_huge);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3228
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3229
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3230
    fld_s(1);                   // duplicate arguments for runtime call. Stack: Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3231
    fld_s(1);                   // Stack: X Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3232
    fabs();                     // Stack: abs(X) Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3233
    fast_pow();                 // Stack: abs(X)^Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3234
    fcmp(tmp, 0, false, false); // Stack: abs(X)^Y X Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3235
    // abs(X)^Y not equal to itself: abs(X)^Y is NaN go to slow case.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3236
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3237
    pop(tmp2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3238
    NOT_LP64(pop(tmp3));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3239
    jcc(Assembler::parity, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3240
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3241
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3242
    // Check that int(Y) is not integer indefinite value (int
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3243
    // overflow). Shouldn't happen because for values that would
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3244
    // overflow, 1+int(Y)==Y which was tested earlier.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3245
#ifndef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3246
    {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3247
      Label integer;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3248
      testl(tmp2, tmp2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3249
      jcc(Assembler::notZero, integer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3250
      cmpl(tmp3, 0x80000000);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3251
      jcc(Assembler::notZero, integer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3252
      STOP("integer indefinite value shouldn't be seen here");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3253
      bind(integer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3254
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3255
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3256
    {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3257
      Label integer;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3258
      mov(tmp3, tmp2); // preserve tmp2 for parity check below
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3259
      shlq(tmp3, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3260
      jcc(Assembler::carryClear, integer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3261
      jcc(Assembler::notZero, integer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3262
      STOP("integer indefinite value shouldn't be seen here");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3263
      bind(integer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3264
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3265
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3266
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3267
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3268
    // get rid of duplicate arguments. Stack: X^Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3269
    if (num_fpu_regs_in_use > 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3270
      fxch(); fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3271
      fxch(); fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3272
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3273
      ffree(2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3274
      ffree(1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3275
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3276
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3277
    testl(tmp2, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3278
    jcc(Assembler::zero, done); // X <= 0, Y even: X^Y = abs(X)^Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3279
    // X <= 0, Y even: X^Y = -abs(X)^Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3280
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3281
    fchs();                     // Stack: -abs(X)^Y Y
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3282
    jmp(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3283
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3284
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3285
  // slow case: runtime call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3286
  bind(slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3287
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3288
  fpop();                       // pop incorrect result or int(Y)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3289
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3290
  fp_runtime_fallback(is_exp ? CAST_FROM_FN_PTR(address, SharedRuntime::dexp) : CAST_FROM_FN_PTR(address, SharedRuntime::dpow),
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3291
                      is_exp ? 1 : 2, num_fpu_regs_in_use);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3292
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3293
  // Come here with result in F-TOS
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3294
  bind(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3295
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3296
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3297
void MacroAssembler::fpop() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3298
  ffree();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3299
  fincstp();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3300
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3301
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3302
void MacroAssembler::fremr(Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3303
  save_rax(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3304
  { Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3305
    bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3306
    fprem();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3307
    fwait(); fnstsw_ax();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3308
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3309
    testl(rax, 0x400);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3310
    jcc(Assembler::notEqual, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3311
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3312
    sahf();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3313
    jcc(Assembler::parity, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3314
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3315
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3316
  restore_rax(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3317
  // Result is in ST0.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3318
  // Note: fxch & fpop to get rid of ST1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3319
  // (otherwise FPU stack could overflow eventually)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3320
  fxch(1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3321
  fpop();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3322
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3323
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3324
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3325
void MacroAssembler::incrementl(AddressLiteral dst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3326
  if (reachable(dst)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3327
    incrementl(as_Address(dst));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3328
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3329
    lea(rscratch1, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3330
    incrementl(Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3331
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3332
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3333
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3334
void MacroAssembler::incrementl(ArrayAddress dst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3335
  incrementl(as_Address(dst));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3336
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3337
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3338
void MacroAssembler::incrementl(Register reg, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3339
  if (value == min_jint) {addl(reg, value) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3340
  if (value <  0) { decrementl(reg, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3341
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3342
  if (value == 1 && UseIncDec) { incl(reg) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3343
  /* else */      { addl(reg, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3344
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3345
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3346
void MacroAssembler::incrementl(Address dst, int value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3347
  if (value == min_jint) {addl(dst, value) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3348
  if (value <  0) { decrementl(dst, -value); return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3349
  if (value == 0) {                        ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3350
  if (value == 1 && UseIncDec) { incl(dst) ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3351
  /* else */      { addl(dst, value)       ; return; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3352
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3353
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3354
void MacroAssembler::jump(AddressLiteral dst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3355
  if (reachable(dst)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3356
    jmp_literal(dst.target(), dst.rspec());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3357
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3358
    lea(rscratch1, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3359
    jmp(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3360
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3361
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3362
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3363
void MacroAssembler::jump_cc(Condition cc, AddressLiteral dst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3364
  if (reachable(dst)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3365
    InstructionMark im(this);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3366
    relocate(dst.reloc());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3367
    const int short_size = 2;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3368
    const int long_size = 6;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3369
    int offs = (intptr_t)dst.target() - ((intptr_t)pc());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3370
    if (dst.reloc() == relocInfo::none && is8bit(offs - short_size)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3371
      // 0111 tttn #8-bit disp
14837
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  3372
      emit_int8(0x70 | cc);
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  3373
      emit_int8((offs - short_size) & 0xFF);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3374
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3375
      // 0000 1111 1000 tttn #32-bit disp
14837
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  3376
      emit_int8(0x0F);
a75c3082d106 8004250: replace AbstractAssembler a_byte/a_long with emit_int8/emit_int32
twisti
parents: 14834
diff changeset
  3377
      emit_int8((unsigned char)(0x80 | cc));
15116
af423dcb739c 8004537: replace AbstractAssembler emit_long with emit_int32
twisti
parents: 15115
diff changeset
  3378
      emit_int32(offs - long_size);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3379
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3380
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3381
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3382
    warning("reversing conditional branch");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3383
#endif /* ASSERT */
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3384
    Label skip;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3385
    jccb(reverse[cc], skip);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3386
    lea(rscratch1, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3387
    Assembler::jmp(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3388
    bind(skip);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3389
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3390
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3391
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3392
void MacroAssembler::ldmxcsr(AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3393
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3394
    Assembler::ldmxcsr(as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3395
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3396
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3397
    Assembler::ldmxcsr(Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3398
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3399
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3400
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3401
int MacroAssembler::load_signed_byte(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3402
  int off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3403
  if (LP64_ONLY(true ||) VM_Version::is_P6()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3404
    off = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3405
    movsbl(dst, src); // movsxb
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3406
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3407
    off = load_unsigned_byte(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3408
    shll(dst, 24);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3409
    sarl(dst, 24);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3410
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3411
  return off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3412
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3413
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3414
// Note: load_signed_short used to be called load_signed_word.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3415
// Although the 'w' in x86 opcodes refers to the term "word" in the assembler
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3416
// manual, which means 16 bits, that usage is found nowhere in HotSpot code.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3417
// The term "word" in HotSpot means a 32- or 64-bit machine word.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3418
int MacroAssembler::load_signed_short(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3419
  int off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3420
  if (LP64_ONLY(true ||) VM_Version::is_P6()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3421
    // This is dubious to me since it seems safe to do a signed 16 => 64 bit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3422
    // version but this is what 64bit has always done. This seems to imply
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3423
    // that users are only using 32bits worth.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3424
    off = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3425
    movswl(dst, src); // movsxw
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3426
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3427
    off = load_unsigned_short(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3428
    shll(dst, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3429
    sarl(dst, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3430
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3431
  return off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3432
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3433
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3434
int MacroAssembler::load_unsigned_byte(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3435
  // According to Intel Doc. AP-526, "Zero-Extension of Short", p.16,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3436
  // and "3.9 Partial Register Penalties", p. 22).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3437
  int off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3438
  if (LP64_ONLY(true || ) VM_Version::is_P6() || src.uses(dst)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3439
    off = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3440
    movzbl(dst, src); // movzxb
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3441
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3442
    xorl(dst, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3443
    off = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3444
    movb(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3445
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3446
  return off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3447
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3448
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3449
// Note: load_unsigned_short used to be called load_unsigned_word.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3450
int MacroAssembler::load_unsigned_short(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3451
  // According to Intel Doc. AP-526, "Zero-Extension of Short", p.16,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3452
  // and "3.9 Partial Register Penalties", p. 22).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3453
  int off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3454
  if (LP64_ONLY(true ||) VM_Version::is_P6() || src.uses(dst)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3455
    off = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3456
    movzwl(dst, src); // movzxw
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3457
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3458
    xorl(dst, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3459
    off = offset();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3460
    movw(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3461
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3462
  return off;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3463
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3464
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3465
void MacroAssembler::load_sized_value(Register dst, Address src, size_t size_in_bytes, bool is_signed, Register dst2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3466
  switch (size_in_bytes) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3467
#ifndef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3468
  case  8:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3469
    assert(dst2 != noreg, "second dest register required");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3470
    movl(dst,  src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3471
    movl(dst2, src.plus_disp(BytesPerInt));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3472
    break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3473
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3474
  case  8:  movq(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3475
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3476
  case  4:  movl(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3477
  case  2:  is_signed ? load_signed_short(dst, src) : load_unsigned_short(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3478
  case  1:  is_signed ? load_signed_byte( dst, src) : load_unsigned_byte( dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3479
  default:  ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3480
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3481
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3482
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3483
void MacroAssembler::store_sized_value(Address dst, Register src, size_t size_in_bytes, Register src2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3484
  switch (size_in_bytes) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3485
#ifndef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3486
  case  8:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3487
    assert(src2 != noreg, "second source register required");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3488
    movl(dst,                        src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3489
    movl(dst.plus_disp(BytesPerInt), src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3490
    break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3491
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3492
  case  8:  movq(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3493
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3494
  case  4:  movl(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3495
  case  2:  movw(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3496
  case  1:  movb(dst, src); break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3497
  default:  ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3498
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3499
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3500
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3501
void MacroAssembler::mov32(AddressLiteral dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3502
  if (reachable(dst)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3503
    movl(as_Address(dst), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3504
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3505
    lea(rscratch1, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3506
    movl(Address(rscratch1, 0), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3507
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3508
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3509
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3510
void MacroAssembler::mov32(Register dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3511
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3512
    movl(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3513
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3514
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3515
    movl(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3516
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3517
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3518
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3519
// C++ bool manipulation
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3520
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3521
void MacroAssembler::movbool(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3522
  if(sizeof(bool) == 1)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3523
    movb(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3524
  else if(sizeof(bool) == 2)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3525
    movw(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3526
  else if(sizeof(bool) == 4)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3527
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3528
  else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3529
    // unsupported
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3530
    ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3531
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3532
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3533
void MacroAssembler::movbool(Address dst, bool boolconst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3534
  if(sizeof(bool) == 1)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3535
    movb(dst, (int) boolconst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3536
  else if(sizeof(bool) == 2)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3537
    movw(dst, (int) boolconst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3538
  else if(sizeof(bool) == 4)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3539
    movl(dst, (int) boolconst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3540
  else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3541
    // unsupported
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3542
    ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3543
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3544
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3545
void MacroAssembler::movbool(Address dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3546
  if(sizeof(bool) == 1)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3547
    movb(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3548
  else if(sizeof(bool) == 2)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3549
    movw(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3550
  else if(sizeof(bool) == 4)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3551
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3552
  else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3553
    // unsupported
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3554
    ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3555
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3556
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3557
void MacroAssembler::movbyte(ArrayAddress dst, int src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3558
  movb(as_Address(dst), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3559
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3560
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3561
void MacroAssembler::movdl(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3562
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3563
    movdl(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3564
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3565
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3566
    movdl(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3567
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3568
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3569
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3570
void MacroAssembler::movq(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3571
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3572
    movq(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3573
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3574
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3575
    movq(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3576
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3577
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3578
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3579
void MacroAssembler::movdbl(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3580
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3581
    if (UseXmmLoadAndClearUpper) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3582
      movsd (dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3583
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3584
      movlpd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3585
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3586
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3587
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3588
    if (UseXmmLoadAndClearUpper) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3589
      movsd (dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3590
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3591
      movlpd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3592
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3593
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3594
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3595
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3596
void MacroAssembler::movflt(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3597
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3598
    movss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3599
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3600
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3601
    movss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3602
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3603
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3604
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3605
void MacroAssembler::movptr(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3606
  LP64_ONLY(movq(dst, src)) NOT_LP64(movl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3607
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3608
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3609
void MacroAssembler::movptr(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3610
  LP64_ONLY(movq(dst, src)) NOT_LP64(movl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3611
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3612
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3613
// src should NEVER be a real pointer. Use AddressLiteral for true pointers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3614
void MacroAssembler::movptr(Register dst, intptr_t src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3615
  LP64_ONLY(mov64(dst, src)) NOT_LP64(movl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3616
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3617
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3618
void MacroAssembler::movptr(Address dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3619
  LP64_ONLY(movq(dst, src)) NOT_LP64(movl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3620
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3621
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3622
void MacroAssembler::movdqu(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3623
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3624
    Assembler::movdqu(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3625
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3626
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3627
    Assembler::movdqu(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3628
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3629
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3630
18507
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3631
void MacroAssembler::movdqa(XMMRegister dst, AddressLiteral src) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3632
  if (reachable(src)) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3633
    Assembler::movdqa(dst, as_Address(src));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3634
  } else {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3635
    lea(rscratch1, src);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3636
    Assembler::movdqa(dst, Address(rscratch1, 0));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3637
  }
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3638
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  3639
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3640
void MacroAssembler::movsd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3641
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3642
    Assembler::movsd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3643
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3644
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3645
    Assembler::movsd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3646
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3647
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3648
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3649
void MacroAssembler::movss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3650
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3651
    Assembler::movss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3652
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3653
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3654
    Assembler::movss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3655
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3656
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3657
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3658
void MacroAssembler::mulsd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3659
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3660
    Assembler::mulsd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3661
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3662
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3663
    Assembler::mulsd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3664
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3665
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3666
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3667
void MacroAssembler::mulss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3668
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3669
    Assembler::mulss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3670
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3671
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3672
    Assembler::mulss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3673
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3674
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3675
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3676
void MacroAssembler::null_check(Register reg, int offset) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3677
  if (needs_explicit_null_check(offset)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3678
    // provoke OS NULL exception if reg = NULL by
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3679
    // accessing M[reg] w/o changing any (non-CC) registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3680
    // NOTE: cmpl is plenty here to provoke a segv
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3681
    cmpptr(rax, Address(reg, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3682
    // Note: should probably use testl(rax, Address(reg, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3683
    //       may be shorter code (however, this version of
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3684
    //       testl needs to be implemented first)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3685
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3686
    // nothing to do, (later) access of M[reg + offset]
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3687
    // will provoke OS NULL exception if reg = NULL
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3688
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3689
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3690
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3691
void MacroAssembler::os_breakpoint() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3692
  // instead of directly emitting a breakpoint, call os:breakpoint for better debugability
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3693
  // (e.g., MSVC can't call ps() otherwise)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3694
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, os::breakpoint)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3695
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3696
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3697
void MacroAssembler::pop_CPU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3698
  pop_FPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3699
  pop_IU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3700
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3701
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3702
void MacroAssembler::pop_FPU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3703
  NOT_LP64(frstor(Address(rsp, 0));)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3704
  LP64_ONLY(fxrstor(Address(rsp, 0));)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3705
  addptr(rsp, FPUStateSizeInWords * wordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3706
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3707
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3708
void MacroAssembler::pop_IU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3709
  popa();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3710
  LP64_ONLY(addq(rsp, 8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3711
  popf();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3712
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3713
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3714
// Save Integer and Float state
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3715
// Warning: Stack must be 16 byte aligned (64bit)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3716
void MacroAssembler::push_CPU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3717
  push_IU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3718
  push_FPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3719
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3720
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3721
void MacroAssembler::push_FPU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3722
  subptr(rsp, FPUStateSizeInWords * wordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3723
#ifndef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3724
  fnsave(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3725
  fwait();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3726
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3727
  fxsave(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3728
#endif // LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3729
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3730
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3731
void MacroAssembler::push_IU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3732
  // Push flags first because pusha kills them
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3733
  pushf();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3734
  // Make sure rsp stays 16-byte aligned
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3735
  LP64_ONLY(subq(rsp, 8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3736
  pusha();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3737
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3738
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3739
void MacroAssembler::reset_last_Java_frame(Register java_thread, bool clear_fp, bool clear_pc) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3740
  // determine java_thread register
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3741
  if (!java_thread->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3742
    java_thread = rdi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3743
    get_thread(java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3744
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3745
  // we must set sp to zero to clear frame
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3746
  movptr(Address(java_thread, JavaThread::last_Java_sp_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3747
  if (clear_fp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3748
    movptr(Address(java_thread, JavaThread::last_Java_fp_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3749
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3750
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3751
  if (clear_pc)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3752
    movptr(Address(java_thread, JavaThread::last_Java_pc_offset()), NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3753
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3754
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3755
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3756
void MacroAssembler::restore_rax(Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3757
  if (tmp == noreg) pop(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3758
  else if (tmp != rax) mov(rax, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3759
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3760
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3761
void MacroAssembler::round_to(Register reg, int modulus) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3762
  addptr(reg, modulus - 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3763
  andptr(reg, -modulus);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3764
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3765
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3766
void MacroAssembler::save_rax(Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3767
  if (tmp == noreg) push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3768
  else if (tmp != rax) mov(tmp, rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3769
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3770
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3771
// Write serialization page so VM thread can do a pseudo remote membar.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3772
// We use the current thread pointer to calculate a thread specific
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3773
// offset to write to within the page. This minimizes bus traffic
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3774
// due to cache line collision.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3775
void MacroAssembler::serialize_memory(Register thread, Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3776
  movl(tmp, thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3777
  shrl(tmp, os::get_serialize_page_shift_count());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3778
  andl(tmp, (os::vm_page_size() - sizeof(int)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3779
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3780
  Address index(noreg, tmp, Address::times_1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3781
  ExternalAddress page(os::get_memory_serialize_page());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3782
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3783
  // Size of store must match masking code above
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3784
  movl(as_Address(ArrayAddress(page, index)), tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3785
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3786
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3787
// Calls to C land
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3788
//
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3789
// When entering C land, the rbp, & rsp of the last Java frame have to be recorded
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3790
// in the (thread-local) JavaThread object. When leaving C land, the last Java fp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3791
// has to be reset to 0. This is required to allow proper stack traversal.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3792
void MacroAssembler::set_last_Java_frame(Register java_thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3793
                                         Register last_java_sp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3794
                                         Register last_java_fp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3795
                                         address  last_java_pc) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3796
  // determine java_thread register
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3797
  if (!java_thread->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3798
    java_thread = rdi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3799
    get_thread(java_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3800
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3801
  // determine last_java_sp register
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3802
  if (!last_java_sp->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3803
    last_java_sp = rsp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3804
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3805
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3806
  // last_java_fp is optional
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3807
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3808
  if (last_java_fp->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3809
    movptr(Address(java_thread, JavaThread::last_Java_fp_offset()), last_java_fp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3810
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3811
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3812
  // last_java_pc is optional
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3813
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3814
  if (last_java_pc != NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3815
    lea(Address(java_thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3816
                 JavaThread::frame_anchor_offset() + JavaFrameAnchor::last_Java_pc_offset()),
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3817
        InternalAddress(last_java_pc));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3818
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3819
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3820
  movptr(Address(java_thread, JavaThread::last_Java_sp_offset()), last_java_sp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3821
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3822
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3823
void MacroAssembler::shlptr(Register dst, int imm8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3824
  LP64_ONLY(shlq(dst, imm8)) NOT_LP64(shll(dst, imm8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3825
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3826
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3827
void MacroAssembler::shrptr(Register dst, int imm8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3828
  LP64_ONLY(shrq(dst, imm8)) NOT_LP64(shrl(dst, imm8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3829
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3830
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3831
void MacroAssembler::sign_extend_byte(Register reg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3832
  if (LP64_ONLY(true ||) (VM_Version::is_P6() && reg->has_byte_register())) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3833
    movsbl(reg, reg); // movsxb
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3834
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3835
    shll(reg, 24);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3836
    sarl(reg, 24);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3837
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3838
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3839
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3840
void MacroAssembler::sign_extend_short(Register reg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3841
  if (LP64_ONLY(true ||) VM_Version::is_P6()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3842
    movswl(reg, reg); // movsxw
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3843
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3844
    shll(reg, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3845
    sarl(reg, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3846
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3847
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3848
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3849
void MacroAssembler::testl(Register dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3850
  assert(reachable(src), "Address should be reachable");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3851
  testl(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3852
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3853
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3854
void MacroAssembler::sqrtsd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3855
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3856
    Assembler::sqrtsd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3857
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3858
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3859
    Assembler::sqrtsd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3860
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3861
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3862
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3863
void MacroAssembler::sqrtss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3864
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3865
    Assembler::sqrtss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3866
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3867
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3868
    Assembler::sqrtss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3869
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3870
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3871
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3872
void MacroAssembler::subsd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3873
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3874
    Assembler::subsd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3875
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3876
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3877
    Assembler::subsd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3878
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3879
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3880
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3881
void MacroAssembler::subss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3882
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3883
    Assembler::subss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3884
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3885
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3886
    Assembler::subss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3887
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3888
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3889
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3890
void MacroAssembler::ucomisd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3891
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3892
    Assembler::ucomisd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3893
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3894
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3895
    Assembler::ucomisd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3896
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3897
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3898
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3899
void MacroAssembler::ucomiss(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3900
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3901
    Assembler::ucomiss(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3902
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3903
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3904
    Assembler::ucomiss(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3905
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3906
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3907
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3908
void MacroAssembler::xorpd(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3909
  // Used in sign-bit flipping with aligned address.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3910
  assert((UseAVX > 0) || (((intptr_t)src.target() & 15) == 0), "SSE mode requires address alignment 16 bytes");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3911
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3912
    Assembler::xorpd(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3913
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3914
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3915
    Assembler::xorpd(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3916
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3917
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3918
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3919
void MacroAssembler::xorps(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3920
  // Used in sign-bit flipping with aligned address.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3921
  assert((UseAVX > 0) || (((intptr_t)src.target() & 15) == 0), "SSE mode requires address alignment 16 bytes");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3922
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3923
    Assembler::xorps(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3924
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3925
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3926
    Assembler::xorps(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3927
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3928
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3929
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3930
void MacroAssembler::pshufb(XMMRegister dst, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3931
  // Used in sign-bit flipping with aligned address.
14834
f29c91f2f22b 8004835: Improve AES intrinsics on x86
kvn
parents: 14631
diff changeset
  3932
  bool aligned_adr = (((intptr_t)src.target() & 15) == 0);
f29c91f2f22b 8004835: Improve AES intrinsics on x86
kvn
parents: 14631
diff changeset
  3933
  assert((UseAVX > 0) || aligned_adr, "SSE mode requires address alignment 16 bytes");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3934
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3935
    Assembler::pshufb(dst, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3936
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3937
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3938
    Assembler::pshufb(dst, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3939
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3940
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3941
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3942
// AVX 3-operands instructions
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3943
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3944
void MacroAssembler::vaddsd(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3945
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3946
    vaddsd(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3947
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3948
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3949
    vaddsd(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3950
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3951
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3952
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3953
void MacroAssembler::vaddss(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3954
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3955
    vaddss(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3956
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3957
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3958
    vaddss(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3959
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3960
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3961
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3962
void MacroAssembler::vandpd(XMMRegister dst, XMMRegister nds, AddressLiteral src, int vector_len) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3963
  if (reachable(src)) {
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3964
    vandpd(dst, nds, as_Address(src), vector_len);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3965
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3966
    lea(rscratch1, src);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3967
    vandpd(dst, nds, Address(rscratch1, 0), vector_len);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3968
  }
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3969
}
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3970
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3971
void MacroAssembler::vandps(XMMRegister dst, XMMRegister nds, AddressLiteral src, int vector_len) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3972
  if (reachable(src)) {
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3973
    vandps(dst, nds, as_Address(src), vector_len);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3974
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3975
    lea(rscratch1, src);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  3976
    vandps(dst, nds, Address(rscratch1, 0), vector_len);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3977
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3978
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3979
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3980
void MacroAssembler::vdivsd(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3981
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3982
    vdivsd(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3983
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3984
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3985
    vdivsd(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3986
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3987
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3988
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3989
void MacroAssembler::vdivss(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3990
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3991
    vdivss(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3992
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3993
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3994
    vdivss(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3995
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3996
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3997
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3998
void MacroAssembler::vmulsd(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  3999
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4000
    vmulsd(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4001
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4002
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4003
    vmulsd(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4004
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4005
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4006
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4007
void MacroAssembler::vmulss(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4008
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4009
    vmulss(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4010
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4011
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4012
    vmulss(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4013
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4014
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4015
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4016
void MacroAssembler::vsubsd(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4017
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4018
    vsubsd(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4019
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4020
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4021
    vsubsd(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4022
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4023
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4024
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4025
void MacroAssembler::vsubss(XMMRegister dst, XMMRegister nds, AddressLiteral src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4026
  if (reachable(src)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4027
    vsubss(dst, nds, as_Address(src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4028
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4029
    lea(rscratch1, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4030
    vsubss(dst, nds, Address(rscratch1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4031
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4032
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4033
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4034
void MacroAssembler::vxorpd(XMMRegister dst, XMMRegister nds, AddressLiteral src, int vector_len) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4035
  if (reachable(src)) {
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4036
    vxorpd(dst, nds, as_Address(src), vector_len);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4037
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4038
    lea(rscratch1, src);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4039
    vxorpd(dst, nds, Address(rscratch1, 0), vector_len);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4040
  }
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4041
}
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4042
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4043
void MacroAssembler::vxorps(XMMRegister dst, XMMRegister nds, AddressLiteral src, int vector_len) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4044
  if (reachable(src)) {
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4045
    vxorps(dst, nds, as_Address(src), vector_len);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4046
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4047
    lea(rscratch1, src);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4048
    vxorps(dst, nds, Address(rscratch1, 0), vector_len);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4049
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4050
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4051
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4052
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4053
//////////////////////////////////////////////////////////////////////////////////
15482
470d0b0c09f1 8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents: 15117
diff changeset
  4054
#if INCLUDE_ALL_GCS
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4055
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4056
void MacroAssembler::g1_write_barrier_pre(Register obj,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4057
                                          Register pre_val,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4058
                                          Register thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4059
                                          Register tmp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4060
                                          bool tosca_live,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4061
                                          bool expand_call) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4062
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4063
  // If expand_call is true then we expand the call_VM_leaf macro
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4064
  // directly to skip generating the check by
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4065
  // InterpreterMacroAssembler::call_VM_leaf_base that checks _last_sp.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4066
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4067
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4068
  assert(thread == r15_thread, "must be");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4069
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4070
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4071
  Label done;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4072
  Label runtime;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4073
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4074
  assert(pre_val != noreg, "check this code");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4075
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4076
  if (obj != noreg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4077
    assert_different_registers(obj, pre_val, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4078
    assert(pre_val != rax, "check this code");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4079
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4080
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4081
  Address in_progress(thread, in_bytes(JavaThread::satb_mark_queue_offset() +
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4082
                                       PtrQueue::byte_offset_of_active()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4083
  Address index(thread, in_bytes(JavaThread::satb_mark_queue_offset() +
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4084
                                       PtrQueue::byte_offset_of_index()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4085
  Address buffer(thread, in_bytes(JavaThread::satb_mark_queue_offset() +
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4086
                                       PtrQueue::byte_offset_of_buf()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4087
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4088
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4089
  // Is marking active?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4090
  if (in_bytes(PtrQueue::byte_width_of_active()) == 4) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4091
    cmpl(in_progress, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4092
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4093
    assert(in_bytes(PtrQueue::byte_width_of_active()) == 1, "Assumption");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4094
    cmpb(in_progress, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4095
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4096
  jcc(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4097
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4098
  // Do we need to load the previous value?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4099
  if (obj != noreg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4100
    load_heap_oop(pre_val, Address(obj, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4101
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4102
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4103
  // Is the previous value null?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4104
  cmpptr(pre_val, (int32_t) NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4105
  jcc(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4106
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4107
  // Can we store original value in the thread's buffer?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4108
  // Is index == 0?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4109
  // (The index field is typed as size_t.)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4110
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4111
  movptr(tmp, index);                   // tmp := *index_adr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4112
  cmpptr(tmp, 0);                       // tmp == 0?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4113
  jcc(Assembler::equal, runtime);       // If yes, goto runtime
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4114
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4115
  subptr(tmp, wordSize);                // tmp := tmp - wordSize
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4116
  movptr(index, tmp);                   // *index_adr := tmp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4117
  addptr(tmp, buffer);                  // tmp := tmp + *buffer_adr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4118
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4119
  // Record the previous value
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4120
  movptr(Address(tmp, 0), pre_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4121
  jmp(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4122
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4123
  bind(runtime);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4124
  // save the live input values
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4125
  if(tosca_live) push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4126
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4127
  if (obj != noreg && obj != rax)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4128
    push(obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4129
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4130
  if (pre_val != rax)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4131
    push(pre_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4132
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4133
  // Calling the runtime using the regular call_VM_leaf mechanism generates
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4134
  // code (generated by InterpreterMacroAssember::call_VM_leaf_base)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4135
  // that checks that the *(ebp+frame::interpreter_frame_last_sp) == NULL.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4136
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4137
  // If we care generating the pre-barrier without a frame (e.g. in the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4138
  // intrinsified Reference.get() routine) then ebp might be pointing to
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4139
  // the caller frame and so this check will most likely fail at runtime.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4140
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4141
  // Expanding the call directly bypasses the generation of the check.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4142
  // So when we do not have have a full interpreter frame on the stack
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4143
  // expand_call should be passed true.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4144
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4145
  NOT_LP64( push(thread); )
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4146
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4147
  if (expand_call) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4148
    LP64_ONLY( assert(pre_val != c_rarg1, "smashed arg"); )
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4149
    pass_arg1(this, thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4150
    pass_arg0(this, pre_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4151
    MacroAssembler::call_VM_leaf_base(CAST_FROM_FN_PTR(address, SharedRuntime::g1_wb_pre), 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4152
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4153
    call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::g1_wb_pre), pre_val, thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4154
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4155
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4156
  NOT_LP64( pop(thread); )
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4157
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4158
  // save the live input values
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4159
  if (pre_val != rax)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4160
    pop(pre_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4161
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4162
  if (obj != noreg && obj != rax)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4163
    pop(obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4164
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4165
  if(tosca_live) pop(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4166
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4167
  bind(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4168
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4169
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4170
void MacroAssembler::g1_write_barrier_post(Register store_addr,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4171
                                           Register new_val,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4172
                                           Register thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4173
                                           Register tmp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4174
                                           Register tmp2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4175
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4176
  assert(thread == r15_thread, "must be");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4177
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4178
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4179
  Address queue_index(thread, in_bytes(JavaThread::dirty_card_queue_offset() +
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4180
                                       PtrQueue::byte_offset_of_index()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4181
  Address buffer(thread, in_bytes(JavaThread::dirty_card_queue_offset() +
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4182
                                       PtrQueue::byte_offset_of_buf()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4183
29325
0e86e64c66e5 8069016: Add BarrierSet downcast support
kbarrett
parents: 29070
diff changeset
  4184
  CardTableModRefBS* ct =
0e86e64c66e5 8069016: Add BarrierSet downcast support
kbarrett
parents: 29070
diff changeset
  4185
    barrier_set_cast<CardTableModRefBS>(Universe::heap()->barrier_set());
21923
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4186
  assert(sizeof(*ct->byte_map_base) == sizeof(jbyte), "adjust this code");
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4187
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4188
  Label done;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4189
  Label runtime;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4190
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4191
  // Does store cross heap regions?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4192
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4193
  movptr(tmp, store_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4194
  xorptr(tmp, new_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4195
  shrptr(tmp, HeapRegion::LogOfHRGrainBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4196
  jcc(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4197
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4198
  // crosses regions, storing NULL?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4199
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4200
  cmpptr(new_val, (int32_t) NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4201
  jcc(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4202
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4203
  // storing region crossing non-NULL, is card already dirty?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4204
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4205
  const Register card_addr = tmp;
21923
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4206
  const Register cardtable = tmp2;
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4207
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4208
  movptr(card_addr, store_addr);
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4209
  shrptr(card_addr, CardTableModRefBS::card_shift);
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4210
  // Do not use ExternalAddress to load 'byte_map_base', since 'byte_map_base' is NOT
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4211
  // a valid address and therefore is not properly handled by the relocation code.
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4212
  movptr(cardtable, (intptr_t)ct->byte_map_base);
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4213
  addptr(card_addr, cardtable);
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4214
20403
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4215
  cmpb(Address(card_addr, 0), (int)G1SATBCardTableModRefBS::g1_young_card_val());
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4216
  jcc(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4217
20403
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4218
  membar(Assembler::Membar_mask_bits(Assembler::StoreLoad));
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4219
  cmpb(Address(card_addr, 0), (int)CardTableModRefBS::dirty_card_val());
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4220
  jcc(Assembler::equal, done);
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4221
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4222
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4223
  // storing a region crossing, non-NULL oop, card is clean.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4224
  // dirty card and log.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4225
20403
45a89fbcd8f7 8014555: G1: Memory ordering problem with Conc refinement and card marking
mgerdin
parents: 19979
diff changeset
  4226
  movb(Address(card_addr, 0), (int)CardTableModRefBS::dirty_card_val());
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4227
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4228
  cmpl(queue_index, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4229
  jcc(Assembler::equal, runtime);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4230
  subl(queue_index, wordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4231
  movptr(tmp2, buffer);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4232
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4233
  movslq(rscratch1, queue_index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4234
  addq(tmp2, rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4235
  movq(Address(tmp2, 0), card_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4236
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4237
  addl(tmp2, queue_index);
21923
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4238
  movl(Address(tmp2, 0), card_addr);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4239
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4240
  jmp(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4241
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4242
  bind(runtime);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4243
  // save the live input values
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4244
  push(store_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4245
  push(new_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4246
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4247
  call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::g1_wb_post), card_addr, r15_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4248
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4249
  push(thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4250
  call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::g1_wb_post), card_addr, thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4251
  pop(thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4252
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4253
  pop(new_val);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4254
  pop(store_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4255
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4256
  bind(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4257
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4258
15482
470d0b0c09f1 8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents: 15117
diff changeset
  4259
#endif // INCLUDE_ALL_GCS
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4260
//////////////////////////////////////////////////////////////////////////////////
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4261
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4262
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4263
void MacroAssembler::store_check(Register obj, Address dst) {
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4264
  store_check(obj);
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4265
}
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4266
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4267
void MacroAssembler::store_check(Register obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4268
  // Does a store check for the oop in register obj. The content of
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4269
  // register obj is destroyed afterwards.
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4270
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4271
  BarrierSet* bs = Universe::heap()->barrier_set();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4272
  assert(bs->kind() == BarrierSet::CardTableModRef, "Wrong barrier set kind");
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4273
29325
0e86e64c66e5 8069016: Add BarrierSet downcast support
kbarrett
parents: 29070
diff changeset
  4274
  CardTableModRefBS* ct = barrier_set_cast<CardTableModRefBS>(bs);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4275
  assert(sizeof(*ct->byte_map_base) == sizeof(jbyte), "adjust this code");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4276
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4277
  shrptr(obj, CardTableModRefBS::card_shift);
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4278
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4279
  Address card_addr;
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4280
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4281
  // The calculation for byte_map_base is as follows:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4282
  // byte_map_base = _byte_map - (uintptr_t(low_bound) >> card_shift);
21923
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4283
  // So this essentially converts an address to a displacement and it will
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4284
  // never need to be relocated. On 64bit however the value may be too
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4285
  // large for a 32bit displacement.
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4286
  intptr_t disp = (intptr_t) ct->byte_map_base;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4287
  if (is_simm32(disp)) {
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4288
    card_addr = Address(noreg, obj, Address::times_1, disp);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4289
  } else {
21923
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4290
    // By doing it as an ExternalAddress 'disp' could be converted to a rip-relative
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4291
    // displacement and done in a single instruction given favorable mapping and a
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4292
    // smarter version of as_Address. However, 'ExternalAddress' generates a relocation
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4293
    // entry and that entry is not properly handled by the relocation code.
5cd9eb764fe9 8028109: compiler/codecache/CheckReservedInitialCodeCacheSizeArgOrder.java crashes in RT_Baseline
anoll
parents: 21528
diff changeset
  4294
    AddressLiteral cardtable((address)ct->byte_map_base, relocInfo::none);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4295
    Address index(noreg, obj, Address::times_1);
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4296
    card_addr = as_Address(ArrayAddress(cardtable, index));
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4297
  }
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4298
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4299
  int dirty = CardTableModRefBS::dirty_card_val();
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4300
  if (UseCondCardMark) {
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4301
    Label L_already_dirty;
31369
0c3dcc865a1c 8079315: UseCondCardMark broken in conjunction with CMS precleaning on x86
aph
parents: 31368
diff changeset
  4302
    if (UseConcMarkSweepGC) {
0c3dcc865a1c 8079315: UseCondCardMark broken in conjunction with CMS precleaning on x86
aph
parents: 31368
diff changeset
  4303
      membar(Assembler::StoreLoad);
0c3dcc865a1c 8079315: UseCondCardMark broken in conjunction with CMS precleaning on x86
aph
parents: 31368
diff changeset
  4304
    }
31368
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4305
    cmpb(card_addr, dirty);
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4306
    jcc(Assembler::equal, L_already_dirty);
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4307
    movb(card_addr, dirty);
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4308
    bind(L_already_dirty);
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4309
  } else {
2cb1abbda511 8078438: Interpreter should support conditional card marks (UseCondCardMark) on x86 and aarch64
shade
parents: 31129
diff changeset
  4310
    movb(card_addr, dirty);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4311
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4312
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4313
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4314
void MacroAssembler::subptr(Register dst, int32_t imm32) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4315
  LP64_ONLY(subq(dst, imm32)) NOT_LP64(subl(dst, imm32));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4316
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4317
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4318
// Force generation of a 4 byte immediate value even if it fits into 8bit
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4319
void MacroAssembler::subptr_imm32(Register dst, int32_t imm32) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4320
  LP64_ONLY(subq_imm32(dst, imm32)) NOT_LP64(subl_imm32(dst, imm32));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4321
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4322
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4323
void MacroAssembler::subptr(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4324
  LP64_ONLY(subq(dst, src)) NOT_LP64(subl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4325
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4326
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4327
// C++ bool manipulation
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4328
void MacroAssembler::testbool(Register dst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4329
  if(sizeof(bool) == 1)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4330
    testb(dst, 0xff);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4331
  else if(sizeof(bool) == 2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4332
    // testw implementation needed for two byte bools
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4333
    ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4334
  } else if(sizeof(bool) == 4)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4335
    testl(dst, dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4336
  else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4337
    // unsupported
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4338
    ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4339
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4340
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4341
void MacroAssembler::testptr(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4342
  LP64_ONLY(testq(dst, src)) NOT_LP64(testl(dst, src));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4343
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4344
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4345
// Defines obj, preserves var_size_in_bytes, okay for t2 == var_size_in_bytes.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4346
void MacroAssembler::tlab_allocate(Register obj,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4347
                                   Register var_size_in_bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4348
                                   int con_size_in_bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4349
                                   Register t1,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4350
                                   Register t2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4351
                                   Label& slow_case) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4352
  assert_different_registers(obj, t1, t2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4353
  assert_different_registers(obj, var_size_in_bytes, t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4354
  Register end = t2;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4355
  Register thread = NOT_LP64(t1) LP64_ONLY(r15_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4356
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4357
  verify_tlab();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4358
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4359
  NOT_LP64(get_thread(thread));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4360
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4361
  movptr(obj, Address(thread, JavaThread::tlab_top_offset()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4362
  if (var_size_in_bytes == noreg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4363
    lea(end, Address(obj, con_size_in_bytes));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4364
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4365
    lea(end, Address(obj, var_size_in_bytes, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4366
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4367
  cmpptr(end, Address(thread, JavaThread::tlab_end_offset()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4368
  jcc(Assembler::above, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4369
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4370
  // update the tlab top pointer
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4371
  movptr(Address(thread, JavaThread::tlab_top_offset()), end);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4372
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4373
  // recover var_size_in_bytes if necessary
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4374
  if (var_size_in_bytes == end) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4375
    subptr(var_size_in_bytes, obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4376
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4377
  verify_tlab();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4378
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4379
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4380
// Preserves rbx, and rdx.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4381
Register MacroAssembler::tlab_refill(Label& retry,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4382
                                     Label& try_eden,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4383
                                     Label& slow_case) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4384
  Register top = rax;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4385
  Register t1  = rcx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4386
  Register t2  = rsi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4387
  Register thread_reg = NOT_LP64(rdi) LP64_ONLY(r15_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4388
  assert_different_registers(top, thread_reg, t1, t2, /* preserve: */ rbx, rdx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4389
  Label do_refill, discard_tlab;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4390
27625
07829380b8cd 8061308: Remove iCMS
brutisso
parents: 26434
diff changeset
  4391
  if (!Universe::heap()->supports_inline_contig_alloc()) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4392
    // No allocation in the shared eden.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4393
    jmp(slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4394
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4395
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4396
  NOT_LP64(get_thread(thread_reg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4397
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4398
  movptr(top, Address(thread_reg, in_bytes(JavaThread::tlab_top_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4399
  movptr(t1,  Address(thread_reg, in_bytes(JavaThread::tlab_end_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4400
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4401
  // calculate amount of free space
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4402
  subptr(t1, top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4403
  shrptr(t1, LogHeapWordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4404
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4405
  // Retain tlab and allocate object in shared space if
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4406
  // the amount free in the tlab is too large to discard.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4407
  cmpptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_refill_waste_limit_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4408
  jcc(Assembler::lessEqual, discard_tlab);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4409
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4410
  // Retain
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4411
  // %%% yuck as movptr...
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4412
  movptr(t2, (int32_t) ThreadLocalAllocBuffer::refill_waste_limit_increment());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4413
  addptr(Address(thread_reg, in_bytes(JavaThread::tlab_refill_waste_limit_offset())), t2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4414
  if (TLABStats) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4415
    // increment number of slow_allocations
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4416
    addl(Address(thread_reg, in_bytes(JavaThread::tlab_slow_allocations_offset())), 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4417
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4418
  jmp(try_eden);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4419
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4420
  bind(discard_tlab);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4421
  if (TLABStats) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4422
    // increment number of refills
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4423
    addl(Address(thread_reg, in_bytes(JavaThread::tlab_number_of_refills_offset())), 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4424
    // accumulate wastage -- t1 is amount free in tlab
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4425
    addl(Address(thread_reg, in_bytes(JavaThread::tlab_fast_refill_waste_offset())), t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4426
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4427
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4428
  // if tlab is currently allocated (top or end != null) then
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4429
  // fill [top, end + alignment_reserve) with array object
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4430
  testptr(top, top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4431
  jcc(Assembler::zero, do_refill);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4432
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4433
  // set up the mark word
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4434
  movptr(Address(top, oopDesc::mark_offset_in_bytes()), (intptr_t)markOopDesc::prototype()->copy_set_hash(0x2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4435
  // set the length to the remaining space
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4436
  subptr(t1, typeArrayOopDesc::header_size(T_INT));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4437
  addptr(t1, (int32_t)ThreadLocalAllocBuffer::alignment_reserve());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4438
  shlptr(t1, log2_intptr(HeapWordSize/sizeof(jint)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4439
  movl(Address(top, arrayOopDesc::length_offset_in_bytes()), t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4440
  // set klass to intArrayKlass
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4441
  // dubious reloc why not an oop reloc?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4442
  movptr(t1, ExternalAddress((address)Universe::intArrayKlassObj_addr()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4443
  // store klass last.  concurrent gcs assumes klass length is valid if
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4444
  // klass field is not null.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4445
  store_klass(top, t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4446
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4447
  movptr(t1, top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4448
  subptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_start_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4449
  incr_allocated_bytes(thread_reg, t1, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4450
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4451
  // refill the tlab with an eden allocation
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4452
  bind(do_refill);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4453
  movptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_size_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4454
  shlptr(t1, LogHeapWordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4455
  // allocate new tlab, address returned in top
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4456
  eden_allocate(top, t1, 0, t2, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4457
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4458
  // Check that t1 was preserved in eden_allocate.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4459
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4460
  if (UseTLAB) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4461
    Label ok;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4462
    Register tsize = rsi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4463
    assert_different_registers(tsize, thread_reg, t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4464
    push(tsize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4465
    movptr(tsize, Address(thread_reg, in_bytes(JavaThread::tlab_size_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4466
    shlptr(tsize, LogHeapWordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4467
    cmpptr(t1, tsize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4468
    jcc(Assembler::equal, ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4469
    STOP("assert(t1 != tlab size)");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4470
    should_not_reach_here();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4471
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4472
    bind(ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4473
    pop(tsize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4474
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4475
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4476
  movptr(Address(thread_reg, in_bytes(JavaThread::tlab_start_offset())), top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4477
  movptr(Address(thread_reg, in_bytes(JavaThread::tlab_top_offset())), top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4478
  addptr(top, t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4479
  subptr(top, (int32_t)ThreadLocalAllocBuffer::alignment_reserve_in_bytes());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4480
  movptr(Address(thread_reg, in_bytes(JavaThread::tlab_end_offset())), top);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4481
  verify_tlab();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4482
  jmp(retry);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4483
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4484
  return thread_reg; // for use by caller
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4485
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4486
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4487
void MacroAssembler::incr_allocated_bytes(Register thread,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4488
                                          Register var_size_in_bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4489
                                          int con_size_in_bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4490
                                          Register t1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4491
  if (!thread->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4492
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4493
    thread = r15_thread;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4494
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4495
    assert(t1->is_valid(), "need temp reg");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4496
    thread = t1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4497
    get_thread(thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4498
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4499
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4500
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4501
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4502
  if (var_size_in_bytes->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4503
    addq(Address(thread, in_bytes(JavaThread::allocated_bytes_offset())), var_size_in_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4504
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4505
    addq(Address(thread, in_bytes(JavaThread::allocated_bytes_offset())), con_size_in_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4506
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4507
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4508
  if (var_size_in_bytes->is_valid()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4509
    addl(Address(thread, in_bytes(JavaThread::allocated_bytes_offset())), var_size_in_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4510
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4511
    addl(Address(thread, in_bytes(JavaThread::allocated_bytes_offset())), con_size_in_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4512
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4513
  adcl(Address(thread, in_bytes(JavaThread::allocated_bytes_offset())+4), 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4514
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4515
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4516
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4517
void MacroAssembler::fp_runtime_fallback(address runtime_entry, int nb_args, int num_fpu_regs_in_use) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4518
  pusha();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4519
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4520
  // if we are coming from c1, xmm registers may be live
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4521
  int off = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4522
  if (UseSSE == 1)  {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4523
    subptr(rsp, sizeof(jdouble)*8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4524
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4525
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4526
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4527
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4528
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4529
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm5);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4530
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm6);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4531
    movflt(Address(rsp,off++*sizeof(jdouble)),xmm7);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4532
  } else if (UseSSE >= 2)  {
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4533
    if (UseAVX > 2) {
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4534
      movl(rbx, 0xffff);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4535
#ifdef _LP64
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4536
      kmovql(k1, rbx);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4537
#else
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4538
      kmovdl(k1, rbx);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4539
#endif
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  4540
    }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4541
#ifdef COMPILER2
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4542
    if (MaxVectorSize > 16) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4543
      assert(UseAVX > 0, "256bit vectors are supported only with AVX");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4544
      // Save upper half of YMM registes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4545
      subptr(rsp, 16 * LP64_ONLY(16) NOT_LP64(8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4546
      vextractf128h(Address(rsp,  0),xmm0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4547
      vextractf128h(Address(rsp, 16),xmm1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4548
      vextractf128h(Address(rsp, 32),xmm2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4549
      vextractf128h(Address(rsp, 48),xmm3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4550
      vextractf128h(Address(rsp, 64),xmm4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4551
      vextractf128h(Address(rsp, 80),xmm5);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4552
      vextractf128h(Address(rsp, 96),xmm6);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4553
      vextractf128h(Address(rsp,112),xmm7);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4554
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4555
      vextractf128h(Address(rsp,128),xmm8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4556
      vextractf128h(Address(rsp,144),xmm9);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4557
      vextractf128h(Address(rsp,160),xmm10);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4558
      vextractf128h(Address(rsp,176),xmm11);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4559
      vextractf128h(Address(rsp,192),xmm12);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4560
      vextractf128h(Address(rsp,208),xmm13);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4561
      vextractf128h(Address(rsp,224),xmm14);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4562
      vextractf128h(Address(rsp,240),xmm15);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4563
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4564
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4565
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4566
    // Save whole 128bit (16 bytes) XMM regiters
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4567
    subptr(rsp, 16 * LP64_ONLY(16) NOT_LP64(8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4568
    movdqu(Address(rsp,off++*16),xmm0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4569
    movdqu(Address(rsp,off++*16),xmm1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4570
    movdqu(Address(rsp,off++*16),xmm2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4571
    movdqu(Address(rsp,off++*16),xmm3);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4572
    movdqu(Address(rsp,off++*16),xmm4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4573
    movdqu(Address(rsp,off++*16),xmm5);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4574
    movdqu(Address(rsp,off++*16),xmm6);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4575
    movdqu(Address(rsp,off++*16),xmm7);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4576
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4577
    movdqu(Address(rsp,off++*16),xmm8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4578
    movdqu(Address(rsp,off++*16),xmm9);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4579
    movdqu(Address(rsp,off++*16),xmm10);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4580
    movdqu(Address(rsp,off++*16),xmm11);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4581
    movdqu(Address(rsp,off++*16),xmm12);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4582
    movdqu(Address(rsp,off++*16),xmm13);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4583
    movdqu(Address(rsp,off++*16),xmm14);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4584
    movdqu(Address(rsp,off++*16),xmm15);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4585
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4586
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4587
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4588
  // Preserve registers across runtime call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4589
  int incoming_argument_and_return_value_offset = -1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4590
  if (num_fpu_regs_in_use > 1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4591
    // Must preserve all other FPU regs (could alternatively convert
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4592
    // SharedRuntime::dsin, dcos etc. into assembly routines known not to trash
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4593
    // FPU state, but can not trust C compiler)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4594
    NEEDS_CLEANUP;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4595
    // NOTE that in this case we also push the incoming argument(s) to
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4596
    // the stack and restore it later; we also use this stack slot to
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4597
    // hold the return value from dsin, dcos etc.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4598
    for (int i = 0; i < num_fpu_regs_in_use; i++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4599
      subptr(rsp, sizeof(jdouble));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4600
      fstp_d(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4601
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4602
    incoming_argument_and_return_value_offset = sizeof(jdouble)*(num_fpu_regs_in_use-1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4603
    for (int i = nb_args-1; i >= 0; i--) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4604
      fld_d(Address(rsp, incoming_argument_and_return_value_offset-i*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4605
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4606
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4607
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4608
  subptr(rsp, nb_args*sizeof(jdouble));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4609
  for (int i = 0; i < nb_args; i++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4610
    fstp_d(Address(rsp, i*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4611
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4612
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4613
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4614
  if (nb_args > 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4615
    movdbl(xmm0, Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4616
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4617
  if (nb_args > 1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4618
    movdbl(xmm1, Address(rsp, sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4619
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4620
  assert(nb_args <= 2, "unsupported number of args");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4621
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4622
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4623
  // NOTE: we must not use call_VM_leaf here because that requires a
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4624
  // complete interpreter frame in debug mode -- same bug as 4387334
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4625
  // MacroAssembler::call_VM_leaf_base is perfectly safe and will
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4626
  // do proper 64bit abi
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4627
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4628
  NEEDS_CLEANUP;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4629
  // Need to add stack banging before this runtime call if it needs to
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4630
  // be taken; however, there is no generic stack banging routine at
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4631
  // the MacroAssembler level
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4632
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4633
  MacroAssembler::call_VM_leaf_base(runtime_entry, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4634
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4635
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4636
  movsd(Address(rsp, 0), xmm0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4637
  fld_d(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4638
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4639
  addptr(rsp, sizeof(jdouble) * nb_args);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4640
  if (num_fpu_regs_in_use > 1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4641
    // Must save return value to stack and then restore entire FPU
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4642
    // stack except incoming arguments
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4643
    fstp_d(Address(rsp, incoming_argument_and_return_value_offset));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4644
    for (int i = 0; i < num_fpu_regs_in_use - nb_args; i++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4645
      fld_d(Address(rsp, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4646
      addptr(rsp, sizeof(jdouble));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4647
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4648
    fld_d(Address(rsp, (nb_args-1)*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4649
    addptr(rsp, sizeof(jdouble) * nb_args);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4650
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4651
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4652
  off = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4653
  if (UseSSE == 1)  {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4654
    movflt(xmm0, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4655
    movflt(xmm1, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4656
    movflt(xmm2, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4657
    movflt(xmm3, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4658
    movflt(xmm4, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4659
    movflt(xmm5, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4660
    movflt(xmm6, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4661
    movflt(xmm7, Address(rsp,off++*sizeof(jdouble)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4662
    addptr(rsp, sizeof(jdouble)*8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4663
  } else if (UseSSE >= 2)  {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4664
    // Restore whole 128bit (16 bytes) XMM regiters
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4665
    movdqu(xmm0, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4666
    movdqu(xmm1, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4667
    movdqu(xmm2, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4668
    movdqu(xmm3, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4669
    movdqu(xmm4, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4670
    movdqu(xmm5, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4671
    movdqu(xmm6, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4672
    movdqu(xmm7, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4673
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4674
    movdqu(xmm8, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4675
    movdqu(xmm9, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4676
    movdqu(xmm10, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4677
    movdqu(xmm11, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4678
    movdqu(xmm12, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4679
    movdqu(xmm13, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4680
    movdqu(xmm14, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4681
    movdqu(xmm15, Address(rsp,off++*16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4682
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4683
    addptr(rsp, 16 * LP64_ONLY(16) NOT_LP64(8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4684
#ifdef COMPILER2
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4685
    if (MaxVectorSize > 16) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4686
      // Restore upper half of YMM registes.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4687
      vinsertf128h(xmm0, Address(rsp,  0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4688
      vinsertf128h(xmm1, Address(rsp, 16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4689
      vinsertf128h(xmm2, Address(rsp, 32));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4690
      vinsertf128h(xmm3, Address(rsp, 48));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4691
      vinsertf128h(xmm4, Address(rsp, 64));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4692
      vinsertf128h(xmm5, Address(rsp, 80));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4693
      vinsertf128h(xmm6, Address(rsp, 96));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4694
      vinsertf128h(xmm7, Address(rsp,112));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4695
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4696
      vinsertf128h(xmm8, Address(rsp,128));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4697
      vinsertf128h(xmm9, Address(rsp,144));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4698
      vinsertf128h(xmm10, Address(rsp,160));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4699
      vinsertf128h(xmm11, Address(rsp,176));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4700
      vinsertf128h(xmm12, Address(rsp,192));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4701
      vinsertf128h(xmm13, Address(rsp,208));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4702
      vinsertf128h(xmm14, Address(rsp,224));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4703
      vinsertf128h(xmm15, Address(rsp,240));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4704
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4705
      addptr(rsp, 16 * LP64_ONLY(16) NOT_LP64(8));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4706
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4707
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4708
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4709
  popa();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4710
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4711
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4712
static const double     pi_4 =  0.7853981633974483;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4713
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4714
void MacroAssembler::trigfunc(char trig, int num_fpu_regs_in_use) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4715
  // A hand-coded argument reduction for values in fabs(pi/4, pi/2)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4716
  // was attempted in this code; unfortunately it appears that the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4717
  // switch to 80-bit precision and back causes this to be
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4718
  // unprofitable compared with simply performing a runtime call if
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4719
  // the argument is out of the (-pi/4, pi/4) range.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4720
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4721
  Register tmp = noreg;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4722
  if (!VM_Version::supports_cmov()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4723
    // fcmp needs a temporary so preserve rbx,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4724
    tmp = rbx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4725
    push(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4726
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4727
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4728
  Label slow_case, done;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4729
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4730
  ExternalAddress pi4_adr = (address)&pi_4;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4731
  if (reachable(pi4_adr)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4732
    // x ?<= pi/4
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4733
    fld_d(pi4_adr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4734
    fld_s(1);                // Stack:  X  PI/4  X
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4735
    fabs();                  // Stack: |X| PI/4  X
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4736
    fcmp(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4737
    jcc(Assembler::above, slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4738
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4739
    // fastest case: -pi/4 <= x <= pi/4
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4740
    switch(trig) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4741
    case 's':
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4742
      fsin();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4743
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4744
    case 'c':
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4745
      fcos();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4746
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4747
    case 't':
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4748
      ftan();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4749
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4750
    default:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4751
      assert(false, "bad intrinsic");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4752
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4753
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4754
    jmp(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4755
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4756
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4757
  // slow case: runtime call
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4758
  bind(slow_case);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4759
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4760
  switch(trig) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4761
  case 's':
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4762
    {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4763
      fp_runtime_fallback(CAST_FROM_FN_PTR(address, SharedRuntime::dsin), 1, num_fpu_regs_in_use);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4764
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4765
    break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4766
  case 'c':
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4767
    {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4768
      fp_runtime_fallback(CAST_FROM_FN_PTR(address, SharedRuntime::dcos), 1, num_fpu_regs_in_use);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4769
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4770
    break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4771
  case 't':
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4772
    {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4773
      fp_runtime_fallback(CAST_FROM_FN_PTR(address, SharedRuntime::dtan), 1, num_fpu_regs_in_use);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4774
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4775
    break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4776
  default:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4777
    assert(false, "bad intrinsic");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4778
    break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4779
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4780
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4781
  // Come here with result in F-TOS
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4782
  bind(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4783
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4784
  if (tmp != noreg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4785
    pop(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4786
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4787
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4788
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4789
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4790
// Look up the method for a megamorphic invokeinterface call.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4791
// The target method is determined by <intf_klass, itable_index>.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4792
// The receiver klass is in recv_klass.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4793
// On success, the result will be in method_result, and execution falls through.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4794
// On failure, execution transfers to the given label.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4795
void MacroAssembler::lookup_interface_method(Register recv_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4796
                                             Register intf_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4797
                                             RegisterOrConstant itable_index,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4798
                                             Register method_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4799
                                             Register scan_temp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4800
                                             Label& L_no_such_interface) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4801
  assert_different_registers(recv_klass, intf_klass, method_result, scan_temp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4802
  assert(itable_index.is_constant() || itable_index.as_register() == method_result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4803
         "caller must use same register for non-constant itable index as for method");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4804
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4805
  // Compute start of first itableOffsetEntry (which is at the end of the vtable)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4806
  int vtable_base = InstanceKlass::vtable_start_offset() * wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4807
  int itentry_off = itableMethodEntry::method_offset_in_bytes();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4808
  int scan_step   = itableOffsetEntry::size() * wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4809
  int vte_size    = vtableEntry::size() * wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4810
  Address::ScaleFactor times_vte_scale = Address::times_ptr;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4811
  assert(vte_size == wordSize, "else adjust times_vte_scale");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4812
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4813
  movl(scan_temp, Address(recv_klass, InstanceKlass::vtable_length_offset() * wordSize));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4814
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4815
  // %%% Could store the aligned, prescaled offset in the klassoop.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4816
  lea(scan_temp, Address(recv_klass, scan_temp, times_vte_scale, vtable_base));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4817
  if (HeapWordsPerLong > 1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4818
    // Round up to align_object_offset boundary
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4819
    // see code for InstanceKlass::start_of_itable!
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4820
    round_to(scan_temp, BytesPerLong);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4821
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4822
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4823
  // Adjust recv_klass by scaled itable_index, so we can free itable_index.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4824
  assert(itableMethodEntry::size() * wordSize == wordSize, "adjust the scaling in the code below");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4825
  lea(recv_klass, Address(recv_klass, itable_index, Address::times_ptr, itentry_off));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4826
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4827
  // for (scan = klass->itable(); scan->interface() != NULL; scan += scan_step) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4828
  //   if (scan->interface() == intf) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4829
  //     result = (klass + scan->offset() + itable_index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4830
  //   }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4831
  // }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4832
  Label search, found_method;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4833
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4834
  for (int peel = 1; peel >= 0; peel--) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4835
    movptr(method_result, Address(scan_temp, itableOffsetEntry::interface_offset_in_bytes()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4836
    cmpptr(intf_klass, method_result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4837
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4838
    if (peel) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4839
      jccb(Assembler::equal, found_method);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4840
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4841
      jccb(Assembler::notEqual, search);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4842
      // (invert the test to fall through to found_method...)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4843
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4844
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4845
    if (!peel)  break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4846
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4847
    bind(search);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4848
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4849
    // Check that the previous entry is non-null.  A null entry means that
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4850
    // the receiver class doesn't implement the interface, and wasn't the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4851
    // same as when the caller was compiled.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4852
    testptr(method_result, method_result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4853
    jcc(Assembler::zero, L_no_such_interface);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4854
    addptr(scan_temp, scan_step);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4855
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4856
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4857
  bind(found_method);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4858
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4859
  // Got a hit.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4860
  movl(scan_temp, Address(scan_temp, itableOffsetEntry::offset_offset_in_bytes()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4861
  movptr(method_result, Address(recv_klass, scan_temp, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4862
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4863
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4864
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4865
// virtual method calling
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4866
void MacroAssembler::lookup_virtual_method(Register recv_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4867
                                           RegisterOrConstant vtable_index,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4868
                                           Register method_result) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4869
  const int base = InstanceKlass::vtable_start_offset() * wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4870
  assert(vtableEntry::size() * wordSize == wordSize, "else adjust the scaling in the code below");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4871
  Address vtable_entry_addr(recv_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4872
                            vtable_index, Address::times_ptr,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4873
                            base + vtableEntry::method_offset_in_bytes());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4874
  movptr(method_result, vtable_entry_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4875
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4876
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4877
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4878
void MacroAssembler::check_klass_subtype(Register sub_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4879
                           Register super_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4880
                           Register temp_reg,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4881
                           Label& L_success) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4882
  Label L_failure;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4883
  check_klass_subtype_fast_path(sub_klass, super_klass, temp_reg,        &L_success, &L_failure, NULL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4884
  check_klass_subtype_slow_path(sub_klass, super_klass, temp_reg, noreg, &L_success, NULL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4885
  bind(L_failure);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4886
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4887
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4888
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4889
void MacroAssembler::check_klass_subtype_fast_path(Register sub_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4890
                                                   Register super_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4891
                                                   Register temp_reg,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4892
                                                   Label* L_success,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4893
                                                   Label* L_failure,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4894
                                                   Label* L_slow_path,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4895
                                        RegisterOrConstant super_check_offset) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4896
  assert_different_registers(sub_klass, super_klass, temp_reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4897
  bool must_load_sco = (super_check_offset.constant_or_zero() == -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4898
  if (super_check_offset.is_register()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4899
    assert_different_registers(sub_klass, super_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4900
                               super_check_offset.as_register());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4901
  } else if (must_load_sco) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4902
    assert(temp_reg != noreg, "supply either a temp or a register offset");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4903
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4904
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4905
  Label L_fallthrough;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4906
  int label_nulls = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4907
  if (L_success == NULL)   { L_success   = &L_fallthrough; label_nulls++; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4908
  if (L_failure == NULL)   { L_failure   = &L_fallthrough; label_nulls++; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4909
  if (L_slow_path == NULL) { L_slow_path = &L_fallthrough; label_nulls++; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4910
  assert(label_nulls <= 1, "at most one NULL in the batch");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4911
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4912
  int sc_offset = in_bytes(Klass::secondary_super_cache_offset());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4913
  int sco_offset = in_bytes(Klass::super_check_offset_offset());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4914
  Address super_check_offset_addr(super_klass, sco_offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4915
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4916
  // Hacked jcc, which "knows" that L_fallthrough, at least, is in
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4917
  // range of a jccb.  If this routine grows larger, reconsider at
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4918
  // least some of these.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4919
#define local_jcc(assembler_cond, label)                                \
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4920
  if (&(label) == &L_fallthrough)  jccb(assembler_cond, label);         \
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4921
  else                             jcc( assembler_cond, label) /*omit semi*/
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4922
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4923
  // Hacked jmp, which may only be used just before L_fallthrough.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4924
#define final_jmp(label)                                                \
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4925
  if (&(label) == &L_fallthrough) { /*do nothing*/ }                    \
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4926
  else                            jmp(label)                /*omit semi*/
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4927
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4928
  // If the pointers are equal, we are done (e.g., String[] elements).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4929
  // This self-check enables sharing of secondary supertype arrays among
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4930
  // non-primary types such as array-of-interface.  Otherwise, each such
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4931
  // type would need its own customized SSA.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4932
  // We move this check to the front of the fast path because many
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4933
  // type checks are in fact trivially successful in this manner,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4934
  // so we get a nicely predicted branch right at the start of the check.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4935
  cmpptr(sub_klass, super_klass);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4936
  local_jcc(Assembler::equal, *L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4937
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4938
  // Check the supertype display:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4939
  if (must_load_sco) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4940
    // Positive movl does right thing on LP64.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4941
    movl(temp_reg, super_check_offset_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4942
    super_check_offset = RegisterOrConstant(temp_reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4943
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4944
  Address super_check_addr(sub_klass, super_check_offset, Address::times_1, 0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4945
  cmpptr(super_klass, super_check_addr); // load displayed supertype
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4946
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4947
  // This check has worked decisively for primary supers.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4948
  // Secondary supers are sought in the super_cache ('super_cache_addr').
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4949
  // (Secondary supers are interfaces and very deeply nested subtypes.)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4950
  // This works in the same check above because of a tricky aliasing
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4951
  // between the super_cache and the primary super display elements.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4952
  // (The 'super_check_addr' can address either, as the case requires.)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4953
  // Note that the cache is updated below if it does not help us find
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4954
  // what we need immediately.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4955
  // So if it was a primary super, we can just fail immediately.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4956
  // Otherwise, it's the slow path for us (no success at this point).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4957
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4958
  if (super_check_offset.is_register()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4959
    local_jcc(Assembler::equal, *L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4960
    cmpl(super_check_offset.as_register(), sc_offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4961
    if (L_failure == &L_fallthrough) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4962
      local_jcc(Assembler::equal, *L_slow_path);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4963
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4964
      local_jcc(Assembler::notEqual, *L_failure);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4965
      final_jmp(*L_slow_path);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4966
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4967
  } else if (super_check_offset.as_constant() == sc_offset) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4968
    // Need a slow path; fast failure is impossible.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4969
    if (L_slow_path == &L_fallthrough) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4970
      local_jcc(Assembler::equal, *L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4971
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4972
      local_jcc(Assembler::notEqual, *L_slow_path);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4973
      final_jmp(*L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4974
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4975
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4976
    // No slow path; it's a fast decision.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4977
    if (L_failure == &L_fallthrough) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4978
      local_jcc(Assembler::equal, *L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4979
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4980
      local_jcc(Assembler::notEqual, *L_failure);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4981
      final_jmp(*L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4982
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4983
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4984
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4985
  bind(L_fallthrough);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4986
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4987
#undef local_jcc
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4988
#undef final_jmp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4989
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4990
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4991
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4992
void MacroAssembler::check_klass_subtype_slow_path(Register sub_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4993
                                                   Register super_klass,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4994
                                                   Register temp_reg,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4995
                                                   Register temp2_reg,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4996
                                                   Label* L_success,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4997
                                                   Label* L_failure,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4998
                                                   bool set_cond_codes) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  4999
  assert_different_registers(sub_klass, super_klass, temp_reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5000
  if (temp2_reg != noreg)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5001
    assert_different_registers(sub_klass, super_klass, temp_reg, temp2_reg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5002
#define IS_A_TEMP(reg) ((reg) == temp_reg || (reg) == temp2_reg)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5003
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5004
  Label L_fallthrough;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5005
  int label_nulls = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5006
  if (L_success == NULL)   { L_success   = &L_fallthrough; label_nulls++; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5007
  if (L_failure == NULL)   { L_failure   = &L_fallthrough; label_nulls++; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5008
  assert(label_nulls <= 1, "at most one NULL in the batch");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5009
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5010
  // a couple of useful fields in sub_klass:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5011
  int ss_offset = in_bytes(Klass::secondary_supers_offset());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5012
  int sc_offset = in_bytes(Klass::secondary_super_cache_offset());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5013
  Address secondary_supers_addr(sub_klass, ss_offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5014
  Address super_cache_addr(     sub_klass, sc_offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5015
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5016
  // Do a linear scan of the secondary super-klass chain.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5017
  // This code is rarely used, so simplicity is a virtue here.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5018
  // The repne_scan instruction uses fixed registers, which we must spill.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5019
  // Don't worry too much about pre-existing connections with the input regs.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5020
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5021
  assert(sub_klass != rax, "killed reg"); // killed by mov(rax, super)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5022
  assert(sub_klass != rcx, "killed reg"); // killed by lea(rcx, &pst_counter)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5023
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5024
  // Get super_klass value into rax (even if it was in rdi or rcx).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5025
  bool pushed_rax = false, pushed_rcx = false, pushed_rdi = false;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5026
  if (super_klass != rax || UseCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5027
    if (!IS_A_TEMP(rax)) { push(rax); pushed_rax = true; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5028
    mov(rax, super_klass);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5029
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5030
  if (!IS_A_TEMP(rcx)) { push(rcx); pushed_rcx = true; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5031
  if (!IS_A_TEMP(rdi)) { push(rdi); pushed_rdi = true; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5032
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5033
#ifndef PRODUCT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5034
  int* pst_counter = &SharedRuntime::_partial_subtype_ctr;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5035
  ExternalAddress pst_counter_addr((address) pst_counter);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5036
  NOT_LP64(  incrementl(pst_counter_addr) );
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5037
  LP64_ONLY( lea(rcx, pst_counter_addr) );
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5038
  LP64_ONLY( incrementl(Address(rcx, 0)) );
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5039
#endif //PRODUCT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5040
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5041
  // We will consult the secondary-super array.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5042
  movptr(rdi, secondary_supers_addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5043
  // Load the array length.  (Positive movl does right thing on LP64.)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5044
  movl(rcx, Address(rdi, Array<Klass*>::length_offset_in_bytes()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5045
  // Skip to start of data.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5046
  addptr(rdi, Array<Klass*>::base_offset_in_bytes());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5047
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5048
  // Scan RCX words at [RDI] for an occurrence of RAX.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5049
  // Set NZ/Z based on last compare.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5050
  // Z flag value will not be set by 'repne' if RCX == 0 since 'repne' does
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5051
  // not change flags (only scas instruction which is repeated sets flags).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5052
  // Set Z = 0 (not equal) before 'repne' to indicate that class was not found.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5053
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5054
    testptr(rax,rax); // Set Z = 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5055
    repne_scan();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5056
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5057
  // Unspill the temp. registers:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5058
  if (pushed_rdi)  pop(rdi);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5059
  if (pushed_rcx)  pop(rcx);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5060
  if (pushed_rax)  pop(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5061
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5062
  if (set_cond_codes) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5063
    // Special hack for the AD files:  rdi is guaranteed non-zero.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5064
    assert(!pushed_rdi, "rdi must be left non-NULL");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5065
    // Also, the condition codes are properly set Z/NZ on succeed/failure.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5066
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5067
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5068
  if (L_failure == &L_fallthrough)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5069
        jccb(Assembler::notEqual, *L_failure);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5070
  else  jcc(Assembler::notEqual, *L_failure);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5071
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5072
  // Success.  Cache the super we found and proceed in triumph.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5073
  movptr(super_cache_addr, super_klass);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5074
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5075
  if (L_success != &L_fallthrough) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5076
    jmp(*L_success);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5077
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5078
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5079
#undef IS_A_TEMP
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5080
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5081
  bind(L_fallthrough);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5082
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5083
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5084
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5085
void MacroAssembler::cmov32(Condition cc, Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5086
  if (VM_Version::supports_cmov()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5087
    cmovl(cc, dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5088
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5089
    Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5090
    jccb(negate_condition(cc), L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5091
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5092
    bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5093
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5094
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5095
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5096
void MacroAssembler::cmov32(Condition cc, Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5097
  if (VM_Version::supports_cmov()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5098
    cmovl(cc, dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5099
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5100
    Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5101
    jccb(negate_condition(cc), L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5102
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5103
    bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5104
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5105
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5106
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5107
void MacroAssembler::verify_oop(Register reg, const char* s) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5108
  if (!VerifyOops) return;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5109
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5110
  // Pass register number to verify_oop_subroutine
16368
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5111
  const char* b = NULL;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5112
  {
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5113
    ResourceMark rm;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5114
    stringStream ss;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5115
    ss.print("verify_oop: %s: %s", reg->name(), s);
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5116
    b = code_string(ss.as_string());
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5117
  }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5118
  BLOCK_COMMENT("verify_oop {");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5119
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5120
  push(rscratch1);                    // save r10, trashed by movptr()
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5121
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5122
  push(rax);                          // save rax,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5123
  push(reg);                          // pass register argument
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5124
  ExternalAddress buffer((address) b);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5125
  // avoid using pushptr, as it modifies scratch registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5126
  // and our contract is not to modify anything
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5127
  movptr(rax, buffer.addr());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5128
  push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5129
  // call indirectly to solve generation ordering problem
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5130
  movptr(rax, ExternalAddress(StubRoutines::verify_oop_subroutine_entry_address()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5131
  call(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5132
  // Caller pops the arguments (oop, message) and restores rax, r10
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5133
  BLOCK_COMMENT("} verify_oop");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5134
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5135
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5136
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5137
RegisterOrConstant MacroAssembler::delayed_value_impl(intptr_t* delayed_value_addr,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5138
                                                      Register tmp,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5139
                                                      int offset) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5140
  intptr_t value = *delayed_value_addr;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5141
  if (value != 0)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5142
    return RegisterOrConstant(value + offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5143
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5144
  // load indirectly to solve generation ordering problem
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5145
  movptr(tmp, ExternalAddress((address) delayed_value_addr));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5146
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5147
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5148
  { Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5149
    testptr(tmp, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5150
    if (WizardMode) {
16368
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5151
      const char* buf = NULL;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5152
      {
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5153
        ResourceMark rm;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5154
        stringStream ss;
31592
43f48e165466 8081202: Hotspot compile warning: "Invalid suffix on literal; C++11 requires a space between literal and identifier"
bpittore
parents: 31369
diff changeset
  5155
        ss.print("DelayedValue=" INTPTR_FORMAT, delayed_value_addr[1]);
16368
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5156
        buf = code_string(ss.as_string());
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5157
      }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5158
      jcc(Assembler::notZero, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5159
      STOP(buf);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5160
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5161
      jccb(Assembler::notZero, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5162
      hlt();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5163
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5164
    bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5165
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5166
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5167
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5168
  if (offset != 0)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5169
    addptr(tmp, offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5170
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5171
  return RegisterOrConstant(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5172
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5173
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5174
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5175
Address MacroAssembler::argument_address(RegisterOrConstant arg_slot,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5176
                                         int extra_slot_offset) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5177
  // cf. TemplateTable::prepare_invoke(), if (load_receiver).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5178
  int stackElementSize = Interpreter::stackElementSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5179
  int offset = Interpreter::expr_offset_in_bytes(extra_slot_offset+0);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5180
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5181
  int offset1 = Interpreter::expr_offset_in_bytes(extra_slot_offset+1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5182
  assert(offset1 - offset == stackElementSize, "correct arithmetic");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5183
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5184
  Register             scale_reg    = noreg;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5185
  Address::ScaleFactor scale_factor = Address::no_scale;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5186
  if (arg_slot.is_constant()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5187
    offset += arg_slot.as_constant() * stackElementSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5188
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5189
    scale_reg    = arg_slot.as_register();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5190
    scale_factor = Address::times(stackElementSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5191
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5192
  offset += wordSize;           // return PC is on stack
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5193
  return Address(rsp, scale_reg, scale_factor, offset);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5194
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5195
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5196
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5197
void MacroAssembler::verify_oop_addr(Address addr, const char* s) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5198
  if (!VerifyOops) return;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5199
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5200
  // Address adjust(addr.base(), addr.index(), addr.scale(), addr.disp() + BytesPerWord);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5201
  // Pass register number to verify_oop_subroutine
16368
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5202
  const char* b = NULL;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5203
  {
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5204
    ResourceMark rm;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5205
    stringStream ss;
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5206
    ss.print("verify_oop_addr: %s", s);
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5207
    b = code_string(ss.as_string());
713209c45a82 8008555: Debugging code in compiled method sometimes leaks memory
roland
parents: 15612
diff changeset
  5208
  }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5209
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5210
  push(rscratch1);                    // save r10, trashed by movptr()
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5211
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5212
  push(rax);                          // save rax,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5213
  // addr may contain rsp so we will have to adjust it based on the push
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5214
  // we just did (and on 64 bit we do two pushes)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5215
  // NOTE: 64bit seemed to have had a bug in that it did movq(addr, rax); which
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5216
  // stores rax into addr which is backwards of what was intended.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5217
  if (addr.uses(rsp)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5218
    lea(rax, addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5219
    pushptr(Address(rax, LP64_ONLY(2 *) BytesPerWord));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5220
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5221
    pushptr(addr);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5222
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5223
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5224
  ExternalAddress buffer((address) b);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5225
  // pass msg argument
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5226
  // avoid using pushptr, as it modifies scratch registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5227
  // and our contract is not to modify anything
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5228
  movptr(rax, buffer.addr());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5229
  push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5230
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5231
  // call indirectly to solve generation ordering problem
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5232
  movptr(rax, ExternalAddress(StubRoutines::verify_oop_subroutine_entry_address()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5233
  call(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5234
  // Caller pops the arguments (addr, message) and restores rax, r10.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5235
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5236
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5237
void MacroAssembler::verify_tlab() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5238
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5239
  if (UseTLAB && VerifyOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5240
    Label next, ok;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5241
    Register t1 = rsi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5242
    Register thread_reg = NOT_LP64(rbx) LP64_ONLY(r15_thread);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5243
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5244
    push(t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5245
    NOT_LP64(push(thread_reg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5246
    NOT_LP64(get_thread(thread_reg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5247
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5248
    movptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_top_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5249
    cmpptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_start_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5250
    jcc(Assembler::aboveEqual, next);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5251
    STOP("assert(top >= start)");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5252
    should_not_reach_here();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5253
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5254
    bind(next);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5255
    movptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_end_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5256
    cmpptr(t1, Address(thread_reg, in_bytes(JavaThread::tlab_top_offset())));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5257
    jcc(Assembler::aboveEqual, ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5258
    STOP("assert(top <= end)");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5259
    should_not_reach_here();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5260
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5261
    bind(ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5262
    NOT_LP64(pop(thread_reg));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5263
    pop(t1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5264
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5265
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5266
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5267
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5268
class ControlWord {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5269
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5270
  int32_t _value;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5271
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5272
  int  rounding_control() const        { return  (_value >> 10) & 3      ; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5273
  int  precision_control() const       { return  (_value >>  8) & 3      ; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5274
  bool precision() const               { return ((_value >>  5) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5275
  bool underflow() const               { return ((_value >>  4) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5276
  bool overflow() const                { return ((_value >>  3) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5277
  bool zero_divide() const             { return ((_value >>  2) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5278
  bool denormalized() const            { return ((_value >>  1) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5279
  bool invalid() const                 { return ((_value >>  0) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5280
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5281
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5282
    // rounding control
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5283
    const char* rc;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5284
    switch (rounding_control()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5285
      case 0: rc = "round near"; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5286
      case 1: rc = "round down"; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5287
      case 2: rc = "round up  "; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5288
      case 3: rc = "chop      "; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5289
    };
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5290
    // precision control
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5291
    const char* pc;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5292
    switch (precision_control()) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5293
      case 0: pc = "24 bits "; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5294
      case 1: pc = "reserved"; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5295
      case 2: pc = "53 bits "; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5296
      case 3: pc = "64 bits "; break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5297
    };
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5298
    // flags
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5299
    char f[9];
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5300
    f[0] = ' ';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5301
    f[1] = ' ';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5302
    f[2] = (precision   ()) ? 'P' : 'p';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5303
    f[3] = (underflow   ()) ? 'U' : 'u';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5304
    f[4] = (overflow    ()) ? 'O' : 'o';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5305
    f[5] = (zero_divide ()) ? 'Z' : 'z';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5306
    f[6] = (denormalized()) ? 'D' : 'd';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5307
    f[7] = (invalid     ()) ? 'I' : 'i';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5308
    f[8] = '\x0';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5309
    // output
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5310
    printf("%04x  masks = %s, %s, %s", _value & 0xFFFF, f, rc, pc);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5311
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5312
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5313
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5314
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5315
class StatusWord {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5316
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5317
  int32_t _value;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5318
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5319
  bool busy() const                    { return ((_value >> 15) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5320
  bool C3() const                      { return ((_value >> 14) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5321
  bool C2() const                      { return ((_value >> 10) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5322
  bool C1() const                      { return ((_value >>  9) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5323
  bool C0() const                      { return ((_value >>  8) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5324
  int  top() const                     { return  (_value >> 11) & 7      ; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5325
  bool error_status() const            { return ((_value >>  7) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5326
  bool stack_fault() const             { return ((_value >>  6) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5327
  bool precision() const               { return ((_value >>  5) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5328
  bool underflow() const               { return ((_value >>  4) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5329
  bool overflow() const                { return ((_value >>  3) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5330
  bool zero_divide() const             { return ((_value >>  2) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5331
  bool denormalized() const            { return ((_value >>  1) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5332
  bool invalid() const                 { return ((_value >>  0) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5333
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5334
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5335
    // condition codes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5336
    char c[5];
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5337
    c[0] = (C3()) ? '3' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5338
    c[1] = (C2()) ? '2' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5339
    c[2] = (C1()) ? '1' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5340
    c[3] = (C0()) ? '0' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5341
    c[4] = '\x0';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5342
    // flags
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5343
    char f[9];
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5344
    f[0] = (error_status()) ? 'E' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5345
    f[1] = (stack_fault ()) ? 'S' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5346
    f[2] = (precision   ()) ? 'P' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5347
    f[3] = (underflow   ()) ? 'U' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5348
    f[4] = (overflow    ()) ? 'O' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5349
    f[5] = (zero_divide ()) ? 'Z' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5350
    f[6] = (denormalized()) ? 'D' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5351
    f[7] = (invalid     ()) ? 'I' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5352
    f[8] = '\x0';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5353
    // output
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5354
    printf("%04x  flags = %s, cc =  %s, top = %d", _value & 0xFFFF, f, c, top());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5355
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5356
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5357
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5358
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5359
class TagWord {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5360
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5361
  int32_t _value;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5362
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5363
  int tag_at(int i) const              { return (_value >> (i*2)) & 3; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5364
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5365
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5366
    printf("%04x", _value & 0xFFFF);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5367
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5368
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5369
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5370
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5371
class FPU_Register {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5372
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5373
  int32_t _m0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5374
  int32_t _m1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5375
  int16_t _ex;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5376
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5377
  bool is_indefinite() const           {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5378
    return _ex == -1 && _m1 == (int32_t)0xC0000000 && _m0 == 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5379
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5380
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5381
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5382
    char  sign = (_ex < 0) ? '-' : '+';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5383
    const char* kind = (_ex == 0x7FFF || _ex == (int16_t)-1) ? "NaN" : "   ";
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5384
    printf("%c%04hx.%08x%08x  %s", sign, _ex, _m1, _m0, kind);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5385
  };
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5386
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5387
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5388
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5389
class FPU_State {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5390
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5391
  enum {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5392
    register_size       = 10,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5393
    number_of_registers =  8,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5394
    register_mask       =  7
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5395
  };
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5396
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5397
  ControlWord  _control_word;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5398
  StatusWord   _status_word;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5399
  TagWord      _tag_word;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5400
  int32_t      _error_offset;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5401
  int32_t      _error_selector;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5402
  int32_t      _data_offset;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5403
  int32_t      _data_selector;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5404
  int8_t       _register[register_size * number_of_registers];
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5405
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5406
  int tag_for_st(int i) const          { return _tag_word.tag_at((_status_word.top() + i) & register_mask); }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5407
  FPU_Register* st(int i) const        { return (FPU_Register*)&_register[register_size * i]; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5408
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5409
  const char* tag_as_string(int tag) const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5410
    switch (tag) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5411
      case 0: return "valid";
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5412
      case 1: return "zero";
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5413
      case 2: return "special";
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5414
      case 3: return "empty";
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5415
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5416
    ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5417
    return NULL;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5418
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5419
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5420
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5421
    // print computation registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5422
    { int t = _status_word.top();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5423
      for (int i = 0; i < number_of_registers; i++) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5424
        int j = (i - t) & register_mask;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5425
        printf("%c r%d = ST%d = ", (j == 0 ? '*' : ' '), i, j);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5426
        st(j)->print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5427
        printf(" %s\n", tag_as_string(_tag_word.tag_at(i)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5428
      }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5429
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5430
    printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5431
    // print control registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5432
    printf("ctrl = "); _control_word.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5433
    printf("stat = "); _status_word .print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5434
    printf("tags = "); _tag_word    .print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5435
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5436
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5437
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5438
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5439
class Flag_Register {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5440
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5441
  int32_t _value;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5442
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5443
  bool overflow() const                { return ((_value >> 11) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5444
  bool direction() const               { return ((_value >> 10) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5445
  bool sign() const                    { return ((_value >>  7) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5446
  bool zero() const                    { return ((_value >>  6) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5447
  bool auxiliary_carry() const         { return ((_value >>  4) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5448
  bool parity() const                  { return ((_value >>  2) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5449
  bool carry() const                   { return ((_value >>  0) & 1) != 0; }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5450
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5451
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5452
    // flags
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5453
    char f[8];
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5454
    f[0] = (overflow       ()) ? 'O' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5455
    f[1] = (direction      ()) ? 'D' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5456
    f[2] = (sign           ()) ? 'S' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5457
    f[3] = (zero           ()) ? 'Z' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5458
    f[4] = (auxiliary_carry()) ? 'A' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5459
    f[5] = (parity         ()) ? 'P' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5460
    f[6] = (carry          ()) ? 'C' : '-';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5461
    f[7] = '\x0';
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5462
    // output
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5463
    printf("%08x  flags = %s", _value, f);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5464
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5465
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5466
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5467
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5468
class IU_Register {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5469
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5470
  int32_t _value;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5471
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5472
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5473
    printf("%08x  %11d", _value, _value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5474
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5475
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5476
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5477
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5478
class IU_State {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5479
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5480
  Flag_Register _eflags;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5481
  IU_Register   _rdi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5482
  IU_Register   _rsi;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5483
  IU_Register   _rbp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5484
  IU_Register   _rsp;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5485
  IU_Register   _rbx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5486
  IU_Register   _rdx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5487
  IU_Register   _rcx;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5488
  IU_Register   _rax;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5489
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5490
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5491
    // computation registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5492
    printf("rax,  = "); _rax.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5493
    printf("rbx,  = "); _rbx.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5494
    printf("rcx  = "); _rcx.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5495
    printf("rdx  = "); _rdx.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5496
    printf("rdi  = "); _rdi.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5497
    printf("rsi  = "); _rsi.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5498
    printf("rbp,  = "); _rbp.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5499
    printf("rsp  = "); _rsp.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5500
    printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5501
    // control registers
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5502
    printf("flgs = "); _eflags.print(); printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5503
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5504
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5505
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5506
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5507
class CPU_State {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5508
 public:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5509
  FPU_State _fpu_state;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5510
  IU_State  _iu_state;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5511
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5512
  void print() const {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5513
    printf("--------------------------------------------------\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5514
    _iu_state .print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5515
    printf("\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5516
    _fpu_state.print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5517
    printf("--------------------------------------------------\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5518
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5519
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5520
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5521
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5522
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5523
static void _print_CPU_state(CPU_State* state) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5524
  state->print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5525
};
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5526
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5527
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5528
void MacroAssembler::print_CPU_state() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5529
  push_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5530
  push(rsp);                // pass CPU state
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5531
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, _print_CPU_state)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5532
  addptr(rsp, wordSize);       // discard argument
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5533
  pop_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5534
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5535
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5536
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5537
static bool _verify_FPU(int stack_depth, char* s, CPU_State* state) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5538
  static int counter = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5539
  FPU_State* fs = &state->_fpu_state;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5540
  counter++;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5541
  // For leaf calls, only verify that the top few elements remain empty.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5542
  // We only need 1 empty at the top for C2 code.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5543
  if( stack_depth < 0 ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5544
    if( fs->tag_for_st(7) != 3 ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5545
      printf("FPR7 not empty\n");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5546
      state->print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5547
      assert(false, "error");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5548
      return false;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5549
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5550
    return true;                // All other stack states do not matter
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5551
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5552
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5553
  assert((fs->_control_word._value & 0xffff) == StubRoutines::_fpu_cntrl_wrd_std,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5554
         "bad FPU control word");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5555
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5556
  // compute stack depth
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5557
  int i = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5558
  while (i < FPU_State::number_of_registers && fs->tag_for_st(i)  < 3) i++;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5559
  int d = i;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5560
  while (i < FPU_State::number_of_registers && fs->tag_for_st(i) == 3) i++;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5561
  // verify findings
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5562
  if (i != FPU_State::number_of_registers) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5563
    // stack not contiguous
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5564
    printf("%s: stack not contiguous at ST%d\n", s, i);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5565
    state->print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5566
    assert(false, "error");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5567
    return false;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5568
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5569
  // check if computed stack depth corresponds to expected stack depth
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5570
  if (stack_depth < 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5571
    // expected stack depth is -stack_depth or less
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5572
    if (d > -stack_depth) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5573
      // too many elements on the stack
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5574
      printf("%s: <= %d stack elements expected but found %d\n", s, -stack_depth, d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5575
      state->print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5576
      assert(false, "error");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5577
      return false;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5578
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5579
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5580
    // expected stack depth is stack_depth
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5581
    if (d != stack_depth) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5582
      // wrong stack depth
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5583
      printf("%s: %d stack elements expected but found %d\n", s, stack_depth, d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5584
      state->print();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5585
      assert(false, "error");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5586
      return false;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5587
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5588
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5589
  // everything is cool
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5590
  return true;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5591
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5592
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5593
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5594
void MacroAssembler::verify_FPU(int stack_depth, const char* s) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5595
  if (!VerifyFPU) return;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5596
  push_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5597
  push(rsp);                // pass CPU state
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5598
  ExternalAddress msg((address) s);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5599
  // pass message string s
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5600
  pushptr(msg.addr());
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5601
  push(stack_depth);        // pass stack depth
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5602
  call(RuntimeAddress(CAST_FROM_FN_PTR(address, _verify_FPU)));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5603
  addptr(rsp, 3 * wordSize);   // discard arguments
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5604
  // check for error
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5605
  { Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5606
    testl(rax, rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5607
    jcc(Assembler::notZero, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5608
    int3();                  // break if error condition
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5609
    bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5610
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5611
  pop_CPU_state();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5612
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5613
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5614
void MacroAssembler::restore_cpu_control_state_after_jni() {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5615
  // Either restore the MXCSR register after returning from the JNI Call
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5616
  // or verify that it wasn't changed (with -Xcheck:jni flag).
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5617
  if (VM_Version::supports_sse()) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5618
    if (RestoreMXCSROnJNICalls) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5619
      ldmxcsr(ExternalAddress(StubRoutines::addr_mxcsr_std()));
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5620
    } else if (CheckJNICalls) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5621
      call(RuntimeAddress(StubRoutines::x86::verify_mxcsr_entry()));
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5622
    }
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5623
  }
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5624
  if (VM_Version::supports_avx()) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5625
    // Clear upper bits of YMM registers to avoid SSE <-> AVX transition penalty.
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5626
    vzeroupper();
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5627
  }
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5628
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5629
#ifndef _LP64
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5630
  // Either restore the x87 floating pointer control word after returning
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5631
  // from the JNI call or verify that it wasn't changed.
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5632
  if (CheckJNICalls) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5633
    call(RuntimeAddress(StubRoutines::x86::verify_fpu_cntrl_wrd_entry()));
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5634
  }
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5635
#endif // _LP64
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5636
}
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5637
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  5638
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5639
void MacroAssembler::load_klass(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5640
#ifdef _LP64
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5641
  if (UseCompressedClassPointers) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5642
    movl(dst, Address(src, oopDesc::klass_offset_in_bytes()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5643
    decode_klass_not_null(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5644
  } else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5645
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5646
    movptr(dst, Address(src, oopDesc::klass_offset_in_bytes()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5647
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5648
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5649
void MacroAssembler::load_prototype_header(Register dst, Register src) {
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5650
  load_klass(dst, src);
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5651
  movptr(dst, Address(dst, Klass::prototype_header_offset()));
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5652
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5653
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5654
void MacroAssembler::store_klass(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5655
#ifdef _LP64
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5656
  if (UseCompressedClassPointers) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5657
    encode_klass_not_null(src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5658
    movl(Address(dst, oopDesc::klass_offset_in_bytes()), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5659
  } else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5660
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5661
    movptr(Address(dst, oopDesc::klass_offset_in_bytes()), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5662
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5663
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5664
void MacroAssembler::load_heap_oop(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5665
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5666
  // FIXME: Must change all places where we try to load the klass.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5667
  if (UseCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5668
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5669
    decode_heap_oop(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5670
  } else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5671
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5672
    movptr(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5673
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5674
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5675
// Doesn't do verfication, generates fixed size code
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5676
void MacroAssembler::load_heap_oop_not_null(Register dst, Address src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5677
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5678
  if (UseCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5679
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5680
    decode_heap_oop_not_null(dst);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5681
  } else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5682
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5683
    movptr(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5684
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5685
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5686
void MacroAssembler::store_heap_oop(Address dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5687
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5688
  if (UseCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5689
    assert(!dst.uses(src), "not enough registers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5690
    encode_heap_oop(src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5691
    movl(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5692
  } else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5693
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5694
    movptr(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5695
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5696
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5697
void MacroAssembler::cmp_heap_oop(Register src1, Address src2, Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5698
  assert_different_registers(src1, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5699
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5700
  if (UseCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5701
    bool did_push = false;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5702
    if (tmp == noreg) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5703
      tmp = rax;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5704
      push(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5705
      did_push = true;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5706
      assert(!src2.uses(rsp), "can't push");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5707
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5708
    load_heap_oop(tmp, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5709
    cmpptr(src1, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5710
    if (did_push)  pop(tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5711
  } else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5712
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5713
    cmpptr(src1, src2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5714
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5715
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5716
// Used for storing NULLs.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5717
void MacroAssembler::store_heap_oop_null(Address dst) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5718
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5719
  if (UseCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5720
    movl(dst, (int32_t)NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5721
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5722
    movslq(dst, (int32_t)NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5723
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5724
#else
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5725
  movl(dst, (int32_t)NULL_WORD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5726
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5727
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5728
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5729
#ifdef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5730
void MacroAssembler::store_klass_gap(Register dst, Register src) {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5731
  if (UseCompressedClassPointers) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5732
    // Store to klass gap in destination
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5733
    movl(Address(dst, oopDesc::klass_gap_offset_in_bytes()), src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5734
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5735
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5736
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5737
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5738
void MacroAssembler::verify_heapbase(const char* msg) {
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5739
  assert (UseCompressedOops, "should be compressed");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5740
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5741
  if (CheckCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5742
    Label ok;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5743
    push(rscratch1); // cmpptr trashes rscratch1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5744
    cmpptr(r12_heapbase, ExternalAddress((address)Universe::narrow_ptrs_base_addr()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5745
    jcc(Assembler::equal, ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5746
    STOP(msg);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5747
    bind(ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5748
    pop(rscratch1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5749
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5750
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5751
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5752
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5753
// Algorithm must match oop.inline.hpp encode_heap_oop.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5754
void MacroAssembler::encode_heap_oop(Register r) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5755
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5756
  verify_heapbase("MacroAssembler::encode_heap_oop: heap base corrupted?");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5757
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5758
  verify_oop(r, "broken oop in encode_heap_oop");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5759
  if (Universe::narrow_oop_base() == NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5760
    if (Universe::narrow_oop_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5761
      assert (LogMinObjAlignmentInBytes == Universe::narrow_oop_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5762
      shrq(r, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5763
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5764
    return;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5765
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5766
  testq(r, r);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5767
  cmovq(Assembler::equal, r, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5768
  subq(r, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5769
  shrq(r, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5770
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5771
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5772
void MacroAssembler::encode_heap_oop_not_null(Register r) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5773
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5774
  verify_heapbase("MacroAssembler::encode_heap_oop_not_null: heap base corrupted?");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5775
  if (CheckCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5776
    Label ok;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5777
    testq(r, r);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5778
    jcc(Assembler::notEqual, ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5779
    STOP("null oop passed to encode_heap_oop_not_null");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5780
    bind(ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5781
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5782
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5783
  verify_oop(r, "broken oop in encode_heap_oop_not_null");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5784
  if (Universe::narrow_oop_base() != NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5785
    subq(r, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5786
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5787
  if (Universe::narrow_oop_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5788
    assert (LogMinObjAlignmentInBytes == Universe::narrow_oop_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5789
    shrq(r, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5790
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5791
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5792
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5793
void MacroAssembler::encode_heap_oop_not_null(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5794
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5795
  verify_heapbase("MacroAssembler::encode_heap_oop_not_null2: heap base corrupted?");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5796
  if (CheckCompressedOops) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5797
    Label ok;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5798
    testq(src, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5799
    jcc(Assembler::notEqual, ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5800
    STOP("null oop passed to encode_heap_oop_not_null2");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5801
    bind(ok);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5802
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5803
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5804
  verify_oop(src, "broken oop in encode_heap_oop_not_null2");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5805
  if (dst != src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5806
    movq(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5807
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5808
  if (Universe::narrow_oop_base() != NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5809
    subq(dst, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5810
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5811
  if (Universe::narrow_oop_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5812
    assert (LogMinObjAlignmentInBytes == Universe::narrow_oop_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5813
    shrq(dst, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5814
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5815
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5816
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5817
void  MacroAssembler::decode_heap_oop(Register r) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5818
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5819
  verify_heapbase("MacroAssembler::decode_heap_oop: heap base corrupted?");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5820
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5821
  if (Universe::narrow_oop_base() == NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5822
    if (Universe::narrow_oop_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5823
      assert (LogMinObjAlignmentInBytes == Universe::narrow_oop_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5824
      shlq(r, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5825
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5826
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5827
    Label done;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5828
    shlq(r, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5829
    jccb(Assembler::equal, done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5830
    addq(r, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5831
    bind(done);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5832
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5833
  verify_oop(r, "broken oop in decode_heap_oop");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5834
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5835
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5836
void  MacroAssembler::decode_heap_oop_not_null(Register r) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5837
  // Note: it will change flags
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5838
  assert (UseCompressedOops, "should only be used for compressed headers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5839
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5840
  // Cannot assert, unverified entry point counts instructions (see .ad file)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5841
  // vtableStubs also counts instructions in pd_code_size_limit.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5842
  // Also do not verify_oop as this is called by verify_oop.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5843
  if (Universe::narrow_oop_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5844
    assert(LogMinObjAlignmentInBytes == Universe::narrow_oop_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5845
    shlq(r, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5846
    if (Universe::narrow_oop_base() != NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5847
      addq(r, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5848
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5849
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5850
    assert (Universe::narrow_oop_base() == NULL, "sanity");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5851
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5852
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5853
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5854
void  MacroAssembler::decode_heap_oop_not_null(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5855
  // Note: it will change flags
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5856
  assert (UseCompressedOops, "should only be used for compressed headers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5857
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5858
  // Cannot assert, unverified entry point counts instructions (see .ad file)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5859
  // vtableStubs also counts instructions in pd_code_size_limit.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5860
  // Also do not verify_oop as this is called by verify_oop.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5861
  if (Universe::narrow_oop_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5862
    assert(LogMinObjAlignmentInBytes == Universe::narrow_oop_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5863
    if (LogMinObjAlignmentInBytes == Address::times_8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5864
      leaq(dst, Address(r12_heapbase, src, Address::times_8, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5865
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5866
      if (dst != src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5867
        movq(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5868
      }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5869
      shlq(dst, LogMinObjAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5870
      if (Universe::narrow_oop_base() != NULL) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5871
        addq(dst, r12_heapbase);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5872
      }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5873
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5874
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5875
    assert (Universe::narrow_oop_base() == NULL, "sanity");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5876
    if (dst != src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5877
      movq(dst, src);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5878
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5879
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5880
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5881
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5882
void MacroAssembler::encode_klass_not_null(Register r) {
21188
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5883
  if (Universe::narrow_klass_base() != NULL) {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5884
    // Use r12 as a scratch register in which to temporarily load the narrow_klass_base.
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5885
    assert(r != r12_heapbase, "Encoding a klass in r12");
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5886
    mov64(r12_heapbase, (int64_t)Universe::narrow_klass_base());
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5887
    subq(r, r12_heapbase);
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5888
  }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5889
  if (Universe::narrow_klass_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5890
    assert (LogKlassAlignmentInBytes == Universe::narrow_klass_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5891
    shrq(r, LogKlassAlignmentInBytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5892
  }
21188
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5893
  if (Universe::narrow_klass_base() != NULL) {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5894
    reinit_heapbase();
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5895
  }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5896
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5897
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5898
void MacroAssembler::encode_klass_not_null(Register dst, Register src) {
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5899
  if (dst == src) {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5900
    encode_klass_not_null(src);
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5901
  } else {
21188
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5902
    if (Universe::narrow_klass_base() != NULL) {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5903
      mov64(dst, (int64_t)Universe::narrow_klass_base());
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5904
      negq(dst);
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5905
      addq(dst, src);
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5906
    } else {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5907
      movptr(dst, src);
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5908
    }
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5909
    if (Universe::narrow_klass_shift() != 0) {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5910
      assert (LogKlassAlignmentInBytes == Universe::narrow_klass_shift(), "decode alg wrong");
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5911
      shrq(dst, LogKlassAlignmentInBytes);
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5912
    }
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5913
  }
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5914
}
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5915
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5916
// Function instr_size_for_decode_klass_not_null() counts the instructions
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5917
// generated by decode_klass_not_null(register r) and reinit_heapbase(),
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5918
// when (Universe::heap() != NULL).  Hence, if the instructions they
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5919
// generate change, then this method needs to be updated.
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5920
int MacroAssembler::instr_size_for_decode_klass_not_null() {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5921
  assert (UseCompressedClassPointers, "only for compressed klass ptrs");
21188
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5922
  if (Universe::narrow_klass_base() != NULL) {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5923
    // mov64 + addq + shlq? + mov64  (for reinit_heapbase()).
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5924
    return (Universe::narrow_klass_shift() == 0 ? 20 : 24);
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5925
  } else {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5926
    // longest load decode klass function, mov64, leaq
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5927
    return 16;
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5928
  }
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5929
}
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5930
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5931
// !!! If the instructions that get generated here change then function
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5932
// instr_size_for_decode_klass_not_null() needs to get updated.
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5933
void  MacroAssembler::decode_klass_not_null(Register r) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5934
  // Note: it will change flags
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5935
  assert (UseCompressedClassPointers, "should only be used for compressed headers");
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5936
  assert(r != r12_heapbase, "Decoding a klass in r12");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5937
  // Cannot assert, unverified entry point counts instructions (see .ad file)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5938
  // vtableStubs also counts instructions in pd_code_size_limit.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5939
  // Also do not verify_oop as this is called by verify_oop.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5940
  if (Universe::narrow_klass_shift() != 0) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5941
    assert(LogKlassAlignmentInBytes == Universe::narrow_klass_shift(), "decode alg wrong");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5942
    shlq(r, LogKlassAlignmentInBytes);
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5943
  }
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5944
  // Use r12 as a scratch register in which to temporarily load the narrow_klass_base.
21188
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5945
  if (Universe::narrow_klass_base() != NULL) {
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5946
    mov64(r12_heapbase, (int64_t)Universe::narrow_klass_base());
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5947
    addq(r, r12_heapbase);
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5948
    reinit_heapbase();
d053e4e8f901 8024927: Nashorn performance regression with CompressedOops
coleenp
parents: 20403
diff changeset
  5949
  }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5950
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5951
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5952
void  MacroAssembler::decode_klass_not_null(Register dst, Register src) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5953
  // Note: it will change flags
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5954
  assert (UseCompressedClassPointers, "should only be used for compressed headers");
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5955
  if (dst == src) {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5956
    decode_klass_not_null(dst);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5957
  } else {
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5958
    // Cannot assert, unverified entry point counts instructions (see .ad file)
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5959
    // vtableStubs also counts instructions in pd_code_size_limit.
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5960
    // Also do not verify_oop as this is called by verify_oop.
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5961
    mov64(dst, (int64_t)Universe::narrow_klass_base());
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5962
    if (Universe::narrow_klass_shift() != 0) {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5963
      assert(LogKlassAlignmentInBytes == Universe::narrow_klass_shift(), "decode alg wrong");
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5964
      assert(LogKlassAlignmentInBytes == Address::times_8, "klass not aligned on 64bits?");
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5965
      leaq(dst, Address(dst, src, Address::times_8, 0));
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5966
    } else {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5967
      addq(dst, src);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5968
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5969
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5970
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5971
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5972
void  MacroAssembler::set_narrow_oop(Register dst, jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5973
  assert (UseCompressedOops, "should only be used for compressed headers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5974
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5975
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5976
  int oop_index = oop_recorder()->find_index(obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5977
  RelocationHolder rspec = oop_Relocation::spec(oop_index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5978
  mov_narrow_oop(dst, oop_index, rspec);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5979
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5980
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5981
void  MacroAssembler::set_narrow_oop(Address dst, jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5982
  assert (UseCompressedOops, "should only be used for compressed headers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5983
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5984
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5985
  int oop_index = oop_recorder()->find_index(obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5986
  RelocationHolder rspec = oop_Relocation::spec(oop_index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5987
  mov_narrow_oop(dst, oop_index, rspec);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5988
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5989
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5990
void  MacroAssembler::set_narrow_klass(Register dst, Klass* k) {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5991
  assert (UseCompressedClassPointers, "should only be used for compressed headers");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5992
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5993
  int klass_index = oop_recorder()->find_index(k);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5994
  RelocationHolder rspec = metadata_Relocation::spec(klass_index);
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  5995
  mov_narrow_oop(dst, Klass::encode_klass(k), rspec);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5996
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5997
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  5998
void  MacroAssembler::set_narrow_klass(Address dst, Klass* k) {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  5999
  assert (UseCompressedClassPointers, "should only be used for compressed headers");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6000
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6001
  int klass_index = oop_recorder()->find_index(k);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6002
  RelocationHolder rspec = metadata_Relocation::spec(klass_index);
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6003
  mov_narrow_oop(dst, Klass::encode_klass(k), rspec);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6004
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6005
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6006
void  MacroAssembler::cmp_narrow_oop(Register dst, jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6007
  assert (UseCompressedOops, "should only be used for compressed headers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6008
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6009
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6010
  int oop_index = oop_recorder()->find_index(obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6011
  RelocationHolder rspec = oop_Relocation::spec(oop_index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6012
  Assembler::cmp_narrow_oop(dst, oop_index, rspec);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6013
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6014
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6015
void  MacroAssembler::cmp_narrow_oop(Address dst, jobject obj) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6016
  assert (UseCompressedOops, "should only be used for compressed headers");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6017
  assert (Universe::heap() != NULL, "java heap should be initialized");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6018
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6019
  int oop_index = oop_recorder()->find_index(obj);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6020
  RelocationHolder rspec = oop_Relocation::spec(oop_index);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6021
  Assembler::cmp_narrow_oop(dst, oop_index, rspec);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6022
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6023
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6024
void  MacroAssembler::cmp_narrow_klass(Register dst, Klass* k) {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  6025
  assert (UseCompressedClassPointers, "should only be used for compressed headers");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6026
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6027
  int klass_index = oop_recorder()->find_index(k);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6028
  RelocationHolder rspec = metadata_Relocation::spec(klass_index);
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6029
  Assembler::cmp_narrow_oop(dst, Klass::encode_klass(k), rspec);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6030
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6031
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6032
void  MacroAssembler::cmp_narrow_klass(Address dst, Klass* k) {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  6033
  assert (UseCompressedClassPointers, "should only be used for compressed headers");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6034
  assert (oop_recorder() != NULL, "this assembler needs an OopRecorder");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6035
  int klass_index = oop_recorder()->find_index(k);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6036
  RelocationHolder rspec = metadata_Relocation::spec(klass_index);
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6037
  Assembler::cmp_narrow_oop(dst, Klass::encode_klass(k), rspec);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6038
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6039
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6040
void MacroAssembler::reinit_heapbase() {
19979
ebe1dbb6e1aa 8015107: NPG: Use consistent naming for metaspace concepts
ehelin
parents: 19319
diff changeset
  6041
  if (UseCompressedOops || UseCompressedClassPointers) {
19319
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6042
    if (Universe::heap() != NULL) {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6043
      if (Universe::narrow_oop_base() == NULL) {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6044
        MacroAssembler::xorptr(r12_heapbase, r12_heapbase);
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6045
      } else {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6046
        mov64(r12_heapbase, (int64_t)Universe::narrow_ptrs_base());
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6047
      }
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6048
    } else {
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6049
      movptr(r12_heapbase, ExternalAddress((address)Universe::narrow_ptrs_base_addr()));
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6050
    }
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6051
  }
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6052
}
0ad35be0733a 8003424: Enable Class Data Sharing for CompressedOops
hseigel
parents: 18507
diff changeset
  6053
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6054
#endif // _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6055
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6056
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6057
// C2 compiled method's prolog code.
24018
77b156916bab 8032410: compiler/uncommontrap/TestStackBangRbp.java times out on Solaris-Sparc V9
roland
parents: 23847
diff changeset
  6058
void MacroAssembler::verified_entry(int framesize, int stack_bang_size, bool fp_mode_24b) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6059
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6060
  // WARNING: Initial instruction MUST be 5 bytes or longer so that
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6061
  // NativeJump::patch_verified_entry will be able to patch out the entry
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6062
  // code safely. The push to verify stack depth is ok at 5 bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6063
  // the frame allocation can be either 3 or 6 bytes. So if we don't do
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6064
  // stack bang then we must use the 6 byte frame allocation even if
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6065
  // we have no frame. :-(
24018
77b156916bab 8032410: compiler/uncommontrap/TestStackBangRbp.java times out on Solaris-Sparc V9
roland
parents: 23847
diff changeset
  6066
  assert(stack_bang_size >= framesize || stack_bang_size <= 0, "stack bang size incorrect");
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6067
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6068
  assert((framesize & (StackAlignmentInBytes-1)) == 0, "frame size not aligned");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6069
  // Remove word for return addr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6070
  framesize -= wordSize;
24018
77b156916bab 8032410: compiler/uncommontrap/TestStackBangRbp.java times out on Solaris-Sparc V9
roland
parents: 23847
diff changeset
  6071
  stack_bang_size -= wordSize;
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6072
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6073
  // Calls to C2R adapters often do not accept exceptional returns.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6074
  // We require that their callers must bang for them.  But be careful, because
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6075
  // some VM calls (such as call site linkage) can use several kilobytes of
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6076
  // stack.  But the stack safety zone should account for that.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6077
  // See bugs 4446381, 4468289, 4497237.
24018
77b156916bab 8032410: compiler/uncommontrap/TestStackBangRbp.java times out on Solaris-Sparc V9
roland
parents: 23847
diff changeset
  6078
  if (stack_bang_size > 0) {
77b156916bab 8032410: compiler/uncommontrap/TestStackBangRbp.java times out on Solaris-Sparc V9
roland
parents: 23847
diff changeset
  6079
    generate_stack_overflow_check(stack_bang_size);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6080
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6081
    // We always push rbp, so that on return to interpreter rbp, will be
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6082
    // restored correctly and we can correct the stack.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6083
    push(rbp);
30305
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6084
    // Save caller's stack pointer into RBP if the frame pointer is preserved.
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6085
    if (PreserveFramePointer) {
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6086
      mov(rbp, rsp);
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6087
    }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6088
    // Remove word for ebp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6089
    framesize -= wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6090
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6091
    // Create frame
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6092
    if (framesize) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6093
      subptr(rsp, framesize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6094
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6095
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6096
    // Create frame (force generation of a 4 byte immediate value)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6097
    subptr_imm32(rsp, framesize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6098
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6099
    // Save RBP register now.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6100
    framesize -= wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6101
    movptr(Address(rsp, framesize), rbp);
30305
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6102
    // Save caller's stack pointer into RBP if the frame pointer is preserved.
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6103
    if (PreserveFramePointer) {
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6104
      movptr(rbp, rsp);
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6105
      addptr(rbp, framesize + wordSize);
b92a97e1e9cb 8068945: Use RBP register as proper frame pointer in JIT compiled code on x86
zmajo
parents: 30299
diff changeset
  6106
    }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6107
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6108
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6109
  if (VerifyStackAtCalls) { // Majik cookie to verify stack depth
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6110
    framesize -= wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6111
    movptr(Address(rsp, framesize), (int32_t)0xbadb100d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6112
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6113
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6114
#ifndef _LP64
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6115
  // If method sets FPU control word do it now
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6116
  if (fp_mode_24b) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6117
    fldcw(ExternalAddress(StubRoutines::addr_fpu_cntrl_wrd_24()));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6118
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6119
  if (UseSSE >= 2 && VerifyFPU) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6120
    verify_FPU(0, "FPU stack must be clean on entry");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6121
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6122
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6123
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6124
#ifdef ASSERT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6125
  if (VerifyStackAtCalls) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6126
    Label L;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6127
    push(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6128
    mov(rax, rsp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6129
    andptr(rax, StackAlignmentInBytes-1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6130
    cmpptr(rax, StackAlignmentInBytes-wordSize);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6131
    pop(rax);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6132
    jcc(Assembler::equal, L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6133
    STOP("Stack is not properly aligned!");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6134
    bind(L);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6135
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6136
#endif
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6137
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6138
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6139
15114
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6140
void MacroAssembler::clear_mem(Register base, Register cnt, Register tmp) {
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6141
  // cnt - number of qwords (8-byte words).
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6142
  // base - start address, qword aligned.
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6143
  assert(base==rdi, "base register must be edi for rep stos");
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6144
  assert(tmp==rax,   "tmp register must be eax for rep stos");
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6145
  assert(cnt==rcx,   "cnt register must be ecx for rep stos");
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6146
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6147
  xorptr(tmp, tmp);
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6148
  if (UseFastStosb) {
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6149
    shlptr(cnt,3); // convert to number of bytes
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6150
    rep_stosb();
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6151
  } else {
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6152
    NOT_LP64(shlptr(cnt,1);) // convert to number of dwords for 32-bit VM
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6153
    rep_stos();
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6154
  }
4074553c678b 8005522: use fast-string instructions on x86 for zeroing
kvn
parents: 14837
diff changeset
  6155
}
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6156
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6157
// IndexOf for constant substrings with size >= 8 chars
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6158
// which don't need to be loaded through stack.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6159
void MacroAssembler::string_indexofC8(Register str1, Register str2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6160
                                      Register cnt1, Register cnt2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6161
                                      int int_cnt2,  Register result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6162
                                      XMMRegister vec, Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6163
  ShortBranchVerifier sbv(this);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6164
  assert(UseSSE42Intrinsics, "SSE4.2 is required");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6165
28719
5a9aedf87213 8069580: String intrinsic related cleanups
thartmann
parents: 28494
diff changeset
  6166
  // This method uses pcmpestri instruction with bound registers
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6167
  //   inputs:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6168
  //     xmm - substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6169
  //     rax - substring length (elements count)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6170
  //     mem - scanned string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6171
  //     rdx - string length (elements count)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6172
  //     0xd - mode: 1100 (substring search) + 01 (unsigned shorts)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6173
  //   outputs:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6174
  //     rcx - matched index in string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6175
  assert(cnt1 == rdx && cnt2 == rax && tmp == rcx, "pcmpestri");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6176
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6177
  Label RELOAD_SUBSTR, SCAN_TO_SUBSTR, SCAN_SUBSTR,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6178
        RET_FOUND, RET_NOT_FOUND, EXIT, FOUND_SUBSTR,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6179
        MATCH_SUBSTR_HEAD, RELOAD_STR, FOUND_CANDIDATE;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6180
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6181
  // Note, inline_string_indexOf() generates checks:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6182
  // if (substr.count > string.count) return -1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6183
  // if (substr.count == 0) return 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6184
  assert(int_cnt2 >= 8, "this code isused only for cnt2 >= 8 chars");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6185
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6186
  // Load substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6187
  movdqu(vec, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6188
  movl(cnt2, int_cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6189
  movptr(result, str1); // string addr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6190
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6191
  if (int_cnt2 > 8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6192
    jmpb(SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6193
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6194
    // Reload substr for rescan, this code
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6195
    // is executed only for large substrings (> 8 chars)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6196
    bind(RELOAD_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6197
    movdqu(vec, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6198
    negptr(cnt2); // Jumped here with negative cnt2, convert to positive
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6199
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6200
    bind(RELOAD_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6201
    // We came here after the beginning of the substring was
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6202
    // matched but the rest of it was not so we need to search
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6203
    // again. Start from the next element after the previous match.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6204
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6205
    // cnt2 is number of substring reminding elements and
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6206
    // cnt1 is number of string reminding elements when cmp failed.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6207
    // Restored cnt1 = cnt1 - cnt2 + int_cnt2
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6208
    subl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6209
    addl(cnt1, int_cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6210
    movl(cnt2, int_cnt2); // Now restore cnt2
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6211
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6212
    decrementl(cnt1);     // Shift to next element
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6213
    cmpl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6214
    jccb(Assembler::negative, RET_NOT_FOUND);  // Left less then substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6215
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6216
    addptr(result, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6217
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6218
  } // (int_cnt2 > 8)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6219
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6220
  // Scan string for start of substr in 16-byte vectors
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6221
  bind(SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6222
  pcmpestri(vec, Address(result, 0), 0x0d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6223
  jccb(Assembler::below, FOUND_CANDIDATE);   // CF == 1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6224
  subl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6225
  jccb(Assembler::lessEqual, RET_NOT_FOUND); // Scanned full string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6226
  cmpl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6227
  jccb(Assembler::negative, RET_NOT_FOUND);  // Left less then substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6228
  addptr(result, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6229
  jmpb(SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6230
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6231
  // Found a potential substr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6232
  bind(FOUND_CANDIDATE);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6233
  // Matched whole vector if first element matched (tmp(rcx) == 0).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6234
  if (int_cnt2 == 8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6235
    jccb(Assembler::overflow, RET_FOUND);    // OF == 1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6236
  } else { // int_cnt2 > 8
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6237
    jccb(Assembler::overflow, FOUND_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6238
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6239
  // After pcmpestri tmp(rcx) contains matched element index
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6240
  // Compute start addr of substr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6241
  lea(result, Address(result, tmp, Address::times_2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6242
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6243
  // Make sure string is still long enough
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6244
  subl(cnt1, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6245
  cmpl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6246
  if (int_cnt2 == 8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6247
    jccb(Assembler::greaterEqual, SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6248
  } else { // int_cnt2 > 8
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6249
    jccb(Assembler::greaterEqual, MATCH_SUBSTR_HEAD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6250
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6251
  // Left less then substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6252
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6253
  bind(RET_NOT_FOUND);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6254
  movl(result, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6255
  jmpb(EXIT);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6256
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6257
  if (int_cnt2 > 8) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6258
    // This code is optimized for the case when whole substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6259
    // is matched if its head is matched.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6260
    bind(MATCH_SUBSTR_HEAD);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6261
    pcmpestri(vec, Address(result, 0), 0x0d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6262
    // Reload only string if does not match
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6263
    jccb(Assembler::noOverflow, RELOAD_STR); // OF == 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6264
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6265
    Label CONT_SCAN_SUBSTR;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6266
    // Compare the rest of substring (> 8 chars).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6267
    bind(FOUND_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6268
    // First 8 chars are already matched.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6269
    negptr(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6270
    addptr(cnt2, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6271
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6272
    bind(SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6273
    subl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6274
    cmpl(cnt2, -8); // Do not read beyond substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6275
    jccb(Assembler::lessEqual, CONT_SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6276
    // Back-up strings to avoid reading beyond substring:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6277
    // cnt1 = cnt1 - cnt2 + 8
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6278
    addl(cnt1, cnt2); // cnt2 is negative
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6279
    addl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6280
    movl(cnt2, 8); negptr(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6281
    bind(CONT_SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6282
    if (int_cnt2 < (int)G) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6283
      movdqu(vec, Address(str2, cnt2, Address::times_2, int_cnt2*2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6284
      pcmpestri(vec, Address(result, cnt2, Address::times_2, int_cnt2*2), 0x0d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6285
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6286
      // calculate index in register to avoid integer overflow (int_cnt2*2)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6287
      movl(tmp, int_cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6288
      addptr(tmp, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6289
      movdqu(vec, Address(str2, tmp, Address::times_2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6290
      pcmpestri(vec, Address(result, tmp, Address::times_2, 0), 0x0d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6291
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6292
    // Need to reload strings pointers if not matched whole vector
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6293
    jcc(Assembler::noOverflow, RELOAD_SUBSTR); // OF == 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6294
    addptr(cnt2, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6295
    jcc(Assembler::negative, SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6296
    // Fall through if found full substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6297
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6298
  } // (int_cnt2 > 8)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6299
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6300
  bind(RET_FOUND);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6301
  // Found result if we matched full small substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6302
  // Compute substr offset
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6303
  subptr(result, str1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6304
  shrl(result, 1); // index
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6305
  bind(EXIT);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6306
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6307
} // string_indexofC8
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6308
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6309
// Small strings are loaded through stack if they cross page boundary.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6310
void MacroAssembler::string_indexof(Register str1, Register str2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6311
                                    Register cnt1, Register cnt2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6312
                                    int int_cnt2,  Register result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6313
                                    XMMRegister vec, Register tmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6314
  ShortBranchVerifier sbv(this);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6315
  assert(UseSSE42Intrinsics, "SSE4.2 is required");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6316
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6317
  // int_cnt2 is length of small (< 8 chars) constant substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6318
  // or (-1) for non constant substring in which case its length
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6319
  // is in cnt2 register.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6320
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6321
  // Note, inline_string_indexOf() generates checks:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6322
  // if (substr.count > string.count) return -1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6323
  // if (substr.count == 0) return 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6324
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6325
  assert(int_cnt2 == -1 || (0 < int_cnt2 && int_cnt2 < 8), "should be != 0");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6326
28719
5a9aedf87213 8069580: String intrinsic related cleanups
thartmann
parents: 28494
diff changeset
  6327
  // This method uses pcmpestri instruction with bound registers
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6328
  //   inputs:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6329
  //     xmm - substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6330
  //     rax - substring length (elements count)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6331
  //     mem - scanned string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6332
  //     rdx - string length (elements count)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6333
  //     0xd - mode: 1100 (substring search) + 01 (unsigned shorts)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6334
  //   outputs:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6335
  //     rcx - matched index in string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6336
  assert(cnt1 == rdx && cnt2 == rax && tmp == rcx, "pcmpestri");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6337
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6338
  Label RELOAD_SUBSTR, SCAN_TO_SUBSTR, SCAN_SUBSTR, ADJUST_STR,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6339
        RET_FOUND, RET_NOT_FOUND, CLEANUP, FOUND_SUBSTR,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6340
        FOUND_CANDIDATE;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6341
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6342
  { //========================================================
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6343
    // We don't know where these strings are located
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6344
    // and we can't read beyond them. Load them through stack.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6345
    Label BIG_STRINGS, CHECK_STR, COPY_SUBSTR, COPY_STR;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6346
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6347
    movptr(tmp, rsp); // save old SP
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6348
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6349
    if (int_cnt2 > 0) {     // small (< 8 chars) constant substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6350
      if (int_cnt2 == 1) {  // One char
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6351
        load_unsigned_short(result, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6352
        movdl(vec, result); // move 32 bits
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6353
      } else if (int_cnt2 == 2) { // Two chars
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6354
        movdl(vec, Address(str2, 0)); // move 32 bits
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6355
      } else if (int_cnt2 == 4) { // Four chars
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6356
        movq(vec, Address(str2, 0));  // move 64 bits
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6357
      } else { // cnt2 = { 3, 5, 6, 7 }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6358
        // Array header size is 12 bytes in 32-bit VM
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6359
        // + 6 bytes for 3 chars == 18 bytes,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6360
        // enough space to load vec and shift.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6361
        assert(HeapWordSize*TypeArrayKlass::header_size() >= 12,"sanity");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6362
        movdqu(vec, Address(str2, (int_cnt2*2)-16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6363
        psrldq(vec, 16-(int_cnt2*2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6364
      }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6365
    } else { // not constant substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6366
      cmpl(cnt2, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6367
      jccb(Assembler::aboveEqual, BIG_STRINGS); // Both strings are big enough
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6368
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6369
      // We can read beyond string if srt+16 does not cross page boundary
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6370
      // since heaps are aligned and mapped by pages.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6371
      assert(os::vm_page_size() < (int)G, "default page should be small");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6372
      movl(result, str2); // We need only low 32 bits
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6373
      andl(result, (os::vm_page_size()-1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6374
      cmpl(result, (os::vm_page_size()-16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6375
      jccb(Assembler::belowEqual, CHECK_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6376
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6377
      // Move small strings to stack to allow load 16 bytes into vec.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6378
      subptr(rsp, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6379
      int stk_offset = wordSize-2;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6380
      push(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6381
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6382
      bind(COPY_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6383
      load_unsigned_short(result, Address(str2, cnt2, Address::times_2, -2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6384
      movw(Address(rsp, cnt2, Address::times_2, stk_offset), result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6385
      decrement(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6386
      jccb(Assembler::notZero, COPY_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6387
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6388
      pop(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6389
      movptr(str2, rsp);  // New substring address
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6390
    } // non constant
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6391
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6392
    bind(CHECK_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6393
    cmpl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6394
    jccb(Assembler::aboveEqual, BIG_STRINGS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6395
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6396
    // Check cross page boundary.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6397
    movl(result, str1); // We need only low 32 bits
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6398
    andl(result, (os::vm_page_size()-1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6399
    cmpl(result, (os::vm_page_size()-16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6400
    jccb(Assembler::belowEqual, BIG_STRINGS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6401
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6402
    subptr(rsp, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6403
    int stk_offset = -2;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6404
    if (int_cnt2 < 0) { // not constant
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6405
      push(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6406
      stk_offset += wordSize;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6407
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6408
    movl(cnt2, cnt1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6409
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6410
    bind(COPY_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6411
    load_unsigned_short(result, Address(str1, cnt2, Address::times_2, -2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6412
    movw(Address(rsp, cnt2, Address::times_2, stk_offset), result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6413
    decrement(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6414
    jccb(Assembler::notZero, COPY_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6415
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6416
    if (int_cnt2 < 0) { // not constant
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6417
      pop(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6418
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6419
    movptr(str1, rsp);  // New string address
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6420
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6421
    bind(BIG_STRINGS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6422
    // Load substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6423
    if (int_cnt2 < 0) { // -1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6424
      movdqu(vec, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6425
      push(cnt2);       // substr count
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6426
      push(str2);       // substr addr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6427
      push(str1);       // string addr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6428
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6429
      // Small (< 8 chars) constant substrings are loaded already.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6430
      movl(cnt2, int_cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6431
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6432
    push(tmp);  // original SP
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6433
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6434
  } // Finished loading
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6435
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6436
  //========================================================
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6437
  // Start search
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6438
  //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6439
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6440
  movptr(result, str1); // string addr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6441
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6442
  if (int_cnt2  < 0) {  // Only for non constant substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6443
    jmpb(SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6444
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6445
    // SP saved at sp+0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6446
    // String saved at sp+1*wordSize
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6447
    // Substr saved at sp+2*wordSize
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6448
    // Substr count saved at sp+3*wordSize
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6449
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6450
    // Reload substr for rescan, this code
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6451
    // is executed only for large substrings (> 8 chars)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6452
    bind(RELOAD_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6453
    movptr(str2, Address(rsp, 2*wordSize));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6454
    movl(cnt2, Address(rsp, 3*wordSize));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6455
    movdqu(vec, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6456
    // We came here after the beginning of the substring was
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6457
    // matched but the rest of it was not so we need to search
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6458
    // again. Start from the next element after the previous match.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6459
    subptr(str1, result); // Restore counter
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6460
    shrl(str1, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6461
    addl(cnt1, str1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6462
    decrementl(cnt1);   // Shift to next element
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6463
    cmpl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6464
    jccb(Assembler::negative, RET_NOT_FOUND);  // Left less then substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6465
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6466
    addptr(result, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6467
  } // non constant
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6468
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6469
  // Scan string for start of substr in 16-byte vectors
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6470
  bind(SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6471
  assert(cnt1 == rdx && cnt2 == rax && tmp == rcx, "pcmpestri");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6472
  pcmpestri(vec, Address(result, 0), 0x0d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6473
  jccb(Assembler::below, FOUND_CANDIDATE);   // CF == 1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6474
  subl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6475
  jccb(Assembler::lessEqual, RET_NOT_FOUND); // Scanned full string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6476
  cmpl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6477
  jccb(Assembler::negative, RET_NOT_FOUND);  // Left less then substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6478
  addptr(result, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6479
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6480
  bind(ADJUST_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6481
  cmpl(cnt1, 8); // Do not read beyond string
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6482
  jccb(Assembler::greaterEqual, SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6483
  // Back-up string to avoid reading beyond string.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6484
  lea(result, Address(result, cnt1, Address::times_2, -16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6485
  movl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6486
  jmpb(SCAN_TO_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6487
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6488
  // Found a potential substr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6489
  bind(FOUND_CANDIDATE);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6490
  // After pcmpestri tmp(rcx) contains matched element index
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6491
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6492
  // Make sure string is still long enough
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6493
  subl(cnt1, tmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6494
  cmpl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6495
  jccb(Assembler::greaterEqual, FOUND_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6496
  // Left less then substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6497
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6498
  bind(RET_NOT_FOUND);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6499
  movl(result, -1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6500
  jmpb(CLEANUP);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6501
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6502
  bind(FOUND_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6503
  // Compute start addr of substr
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6504
  lea(result, Address(result, tmp, Address::times_2));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6505
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6506
  if (int_cnt2 > 0) { // Constant substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6507
    // Repeat search for small substring (< 8 chars)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6508
    // from new point without reloading substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6509
    // Have to check that we don't read beyond string.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6510
    cmpl(tmp, 8-int_cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6511
    jccb(Assembler::greater, ADJUST_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6512
    // Fall through if matched whole substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6513
  } else { // non constant
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6514
    assert(int_cnt2 == -1, "should be != 0");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6515
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6516
    addl(tmp, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6517
    // Found result if we matched whole substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6518
    cmpl(tmp, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6519
    jccb(Assembler::lessEqual, RET_FOUND);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6520
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6521
    // Repeat search for small substring (<= 8 chars)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6522
    // from new point 'str1' without reloading substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6523
    cmpl(cnt2, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6524
    // Have to check that we don't read beyond string.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6525
    jccb(Assembler::lessEqual, ADJUST_STR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6526
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6527
    Label CHECK_NEXT, CONT_SCAN_SUBSTR, RET_FOUND_LONG;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6528
    // Compare the rest of substring (> 8 chars).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6529
    movptr(str1, result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6530
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6531
    cmpl(tmp, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6532
    // First 8 chars are already matched.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6533
    jccb(Assembler::equal, CHECK_NEXT);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6534
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6535
    bind(SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6536
    pcmpestri(vec, Address(str1, 0), 0x0d);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6537
    // Need to reload strings pointers if not matched whole vector
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6538
    jcc(Assembler::noOverflow, RELOAD_SUBSTR); // OF == 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6539
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6540
    bind(CHECK_NEXT);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6541
    subl(cnt2, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6542
    jccb(Assembler::lessEqual, RET_FOUND_LONG); // Found full substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6543
    addptr(str1, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6544
    addptr(str2, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6545
    subl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6546
    cmpl(cnt2, 8); // Do not read beyond substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6547
    jccb(Assembler::greaterEqual, CONT_SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6548
    // Back-up strings to avoid reading beyond substring.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6549
    lea(str2, Address(str2, cnt2, Address::times_2, -16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6550
    lea(str1, Address(str1, cnt2, Address::times_2, -16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6551
    subl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6552
    movl(cnt2, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6553
    addl(cnt1, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6554
    bind(CONT_SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6555
    movdqu(vec, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6556
    jmpb(SCAN_SUBSTR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6557
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6558
    bind(RET_FOUND_LONG);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6559
    movptr(str1, Address(rsp, wordSize));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6560
  } // non constant
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6561
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6562
  bind(RET_FOUND);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6563
  // Compute substr offset
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6564
  subptr(result, str1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6565
  shrl(result, 1); // index
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6566
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6567
  bind(CLEANUP);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6568
  pop(rsp); // restore SP
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6569
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6570
} // string_indexof
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6571
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6572
// Compare strings.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6573
void MacroAssembler::string_compare(Register str1, Register str2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6574
                                    Register cnt1, Register cnt2, Register result,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6575
                                    XMMRegister vec1) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6576
  ShortBranchVerifier sbv(this);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6577
  Label LENGTH_DIFF_LABEL, POP_LABEL, DONE_LABEL, WHILE_HEAD_LABEL;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6578
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6579
  // Compute the minimum of the string lengths and the
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6580
  // difference of the string lengths (stack).
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6581
  // Do the conditional move stuff
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6582
  movl(result, cnt1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6583
  subl(cnt1, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6584
  push(cnt1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6585
  cmov32(Assembler::lessEqual, cnt2, result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6586
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6587
  // Is the minimum length zero?
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6588
  testl(cnt2, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6589
  jcc(Assembler::zero, LENGTH_DIFF_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6590
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6591
  // Compare first characters
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6592
  load_unsigned_short(result, Address(str1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6593
  load_unsigned_short(cnt1, Address(str2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6594
  subl(result, cnt1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6595
  jcc(Assembler::notZero,  POP_LABEL);
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6596
  cmpl(cnt2, 1);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6597
  jcc(Assembler::equal, LENGTH_DIFF_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6598
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6599
  // Check if the strings start at the same location.
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6600
  cmpptr(str1, str2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6601
  jcc(Assembler::equal, LENGTH_DIFF_LABEL);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6602
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6603
  Address::ScaleFactor scale = Address::times_2;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6604
  int stride = 8;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6605
15612
d4073ad8ce3d 8007708: compiler/6855215 assert(VM_Version::supports_sse4_2())
kvn
parents: 15483
diff changeset
  6606
  if (UseAVX >= 2 && UseSSE42Intrinsics) {
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6607
    Label COMPARE_WIDE_VECTORS, VECTOR_NOT_EQUAL, COMPARE_WIDE_TAIL, COMPARE_SMALL_STR;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6608
    Label COMPARE_WIDE_VECTORS_LOOP, COMPARE_16_CHARS, COMPARE_INDEX_CHAR;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6609
    Label COMPARE_TAIL_LONG;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6610
    int pcmpmask = 0x19;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6611
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6612
    // Setup to compare 16-chars (32-bytes) vectors,
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6613
    // start from first character again because it has aligned address.
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6614
    int stride2 = 16;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6615
    int adr_stride  = stride  << scale;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6616
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6617
    assert(result == rax && cnt2 == rdx && cnt1 == rcx, "pcmpestri");
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6618
    // rax and rdx are used by pcmpestri as elements counters
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6619
    movl(result, cnt2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6620
    andl(cnt2, ~(stride2-1));   // cnt2 holds the vector count
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6621
    jcc(Assembler::zero, COMPARE_TAIL_LONG);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6622
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6623
    // fast path : compare first 2 8-char vectors.
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6624
    bind(COMPARE_16_CHARS);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6625
    movdqu(vec1, Address(str1, 0));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6626
    pcmpestri(vec1, Address(str2, 0), pcmpmask);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6627
    jccb(Assembler::below, COMPARE_INDEX_CHAR);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6628
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6629
    movdqu(vec1, Address(str1, adr_stride));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6630
    pcmpestri(vec1, Address(str2, adr_stride), pcmpmask);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6631
    jccb(Assembler::aboveEqual, COMPARE_WIDE_VECTORS);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6632
    addl(cnt1, stride);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6633
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6634
    // Compare the characters at index in cnt1
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6635
    bind(COMPARE_INDEX_CHAR); //cnt1 has the offset of the mismatching character
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6636
    load_unsigned_short(result, Address(str1, cnt1, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6637
    load_unsigned_short(cnt2, Address(str2, cnt1, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6638
    subl(result, cnt2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6639
    jmp(POP_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6640
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6641
    // Setup the registers to start vector comparison loop
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6642
    bind(COMPARE_WIDE_VECTORS);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6643
    lea(str1, Address(str1, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6644
    lea(str2, Address(str2, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6645
    subl(result, stride2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6646
    subl(cnt2, stride2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6647
    jccb(Assembler::zero, COMPARE_WIDE_TAIL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6648
    negptr(result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6649
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6650
    //  In a loop, compare 16-chars (32-bytes) at once using (vpxor+vptest)
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6651
    bind(COMPARE_WIDE_VECTORS_LOOP);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6652
    vmovdqu(vec1, Address(str1, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6653
    vpxor(vec1, Address(str2, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6654
    vptest(vec1, vec1);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6655
    jccb(Assembler::notZero, VECTOR_NOT_EQUAL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6656
    addptr(result, stride2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6657
    subl(cnt2, stride2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6658
    jccb(Assembler::notZero, COMPARE_WIDE_VECTORS_LOOP);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  6659
    // clean upper bits of YMM registers
30299
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  6660
    vpxor(vec1, vec1);
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6661
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6662
    // compare wide vectors tail
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6663
    bind(COMPARE_WIDE_TAIL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6664
    testptr(result, result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6665
    jccb(Assembler::zero, LENGTH_DIFF_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6666
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6667
    movl(result, stride2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6668
    movl(cnt2, result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6669
    negptr(result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6670
    jmpb(COMPARE_WIDE_VECTORS_LOOP);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6671
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6672
    // Identifies the mismatching (higher or lower)16-bytes in the 32-byte vectors.
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6673
    bind(VECTOR_NOT_EQUAL);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  6674
    // clean upper bits of YMM registers
30299
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  6675
    vpxor(vec1, vec1);
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6676
    lea(str1, Address(str1, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6677
    lea(str2, Address(str2, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6678
    jmp(COMPARE_16_CHARS);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6679
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6680
    // Compare tail chars, length between 1 to 15 chars
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6681
    bind(COMPARE_TAIL_LONG);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6682
    movl(cnt2, result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6683
    cmpl(cnt2, stride);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6684
    jccb(Assembler::less, COMPARE_SMALL_STR);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6685
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6686
    movdqu(vec1, Address(str1, 0));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6687
    pcmpestri(vec1, Address(str2, 0), pcmpmask);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6688
    jcc(Assembler::below, COMPARE_INDEX_CHAR);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6689
    subptr(cnt2, stride);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6690
    jccb(Assembler::zero, LENGTH_DIFF_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6691
    lea(str1, Address(str1, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6692
    lea(str2, Address(str2, result, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6693
    negptr(cnt2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6694
    jmpb(WHILE_HEAD_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6695
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6696
    bind(COMPARE_SMALL_STR);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6697
  } else if (UseSSE42Intrinsics) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6698
    Label COMPARE_WIDE_VECTORS, VECTOR_NOT_EQUAL, COMPARE_TAIL;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6699
    int pcmpmask = 0x19;
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6700
    // Setup to compare 8-char (16-byte) vectors,
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6701
    // start from first character again because it has aligned address.
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6702
    movl(result, cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6703
    andl(cnt2, ~(stride - 1));   // cnt2 holds the vector count
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6704
    jccb(Assembler::zero, COMPARE_TAIL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6705
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6706
    lea(str1, Address(str1, result, scale));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6707
    lea(str2, Address(str2, result, scale));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6708
    negptr(result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6709
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6710
    // pcmpestri
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6711
    //   inputs:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6712
    //     vec1- substring
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6713
    //     rax - negative string length (elements count)
28719
5a9aedf87213 8069580: String intrinsic related cleanups
thartmann
parents: 28494
diff changeset
  6714
    //     mem - scanned string
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6715
    //     rdx - string length (elements count)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6716
    //     pcmpmask - cmp mode: 11000 (string compare with negated result)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6717
    //               + 00 (unsigned bytes) or  + 01 (unsigned shorts)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6718
    //   outputs:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6719
    //     rcx - first mismatched element index
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6720
    assert(result == rax && cnt2 == rdx && cnt1 == rcx, "pcmpestri");
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6721
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6722
    bind(COMPARE_WIDE_VECTORS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6723
    movdqu(vec1, Address(str1, result, scale));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6724
    pcmpestri(vec1, Address(str2, result, scale), pcmpmask);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6725
    // After pcmpestri cnt1(rcx) contains mismatched element index
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6726
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6727
    jccb(Assembler::below, VECTOR_NOT_EQUAL);  // CF==1
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6728
    addptr(result, stride);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6729
    subptr(cnt2, stride);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6730
    jccb(Assembler::notZero, COMPARE_WIDE_VECTORS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6731
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6732
    // compare wide vectors tail
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6733
    testptr(result, result);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6734
    jccb(Assembler::zero, LENGTH_DIFF_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6735
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6736
    movl(cnt2, stride);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6737
    movl(result, stride);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6738
    negptr(result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6739
    movdqu(vec1, Address(str1, result, scale));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6740
    pcmpestri(vec1, Address(str2, result, scale), pcmpmask);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6741
    jccb(Assembler::aboveEqual, LENGTH_DIFF_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6742
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6743
    // Mismatched characters in the vectors
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6744
    bind(VECTOR_NOT_EQUAL);
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6745
    addptr(cnt1, result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6746
    load_unsigned_short(result, Address(str1, cnt1, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6747
    load_unsigned_short(cnt2, Address(str2, cnt1, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6748
    subl(result, cnt2);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6749
    jmpb(POP_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6750
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6751
    bind(COMPARE_TAIL); // limit is zero
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6752
    movl(cnt2, result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6753
    // Fallthru to tail compare
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6754
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6755
  // Shift str2 and str1 to the end of the arrays, negate min
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6756
  lea(str1, Address(str1, cnt2, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6757
  lea(str2, Address(str2, cnt2, scale));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6758
  decrementl(cnt2);  // first character was compared already
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6759
  negptr(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6760
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6761
  // Compare the rest of the elements
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6762
  bind(WHILE_HEAD_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6763
  load_unsigned_short(result, Address(str1, cnt2, scale, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6764
  load_unsigned_short(cnt1, Address(str2, cnt2, scale, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6765
  subl(result, cnt1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6766
  jccb(Assembler::notZero, POP_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6767
  increment(cnt2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6768
  jccb(Assembler::notZero, WHILE_HEAD_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6769
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6770
  // Strings are equal up to min length.  Return the length difference.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6771
  bind(LENGTH_DIFF_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6772
  pop(result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6773
  jmpb(DONE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6774
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6775
  // Discard the stored length difference
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6776
  bind(POP_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6777
  pop(cnt1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6778
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6779
  // That's it
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6780
  bind(DONE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6781
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6782
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6783
// Compare char[] arrays aligned to 4 bytes or substrings.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6784
void MacroAssembler::char_arrays_equals(bool is_array_equ, Register ary1, Register ary2,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6785
                                        Register limit, Register result, Register chr,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6786
                                        XMMRegister vec1, XMMRegister vec2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6787
  ShortBranchVerifier sbv(this);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6788
  Label TRUE_LABEL, FALSE_LABEL, DONE, COMPARE_VECTORS, COMPARE_CHAR;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6789
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6790
  int length_offset  = arrayOopDesc::length_offset_in_bytes();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6791
  int base_offset    = arrayOopDesc::base_offset_in_bytes(T_CHAR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6792
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6793
  // Check the input args
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6794
  cmpptr(ary1, ary2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6795
  jcc(Assembler::equal, TRUE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6796
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6797
  if (is_array_equ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6798
    // Need additional checks for arrays_equals.
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6799
    testptr(ary1, ary1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6800
    jcc(Assembler::zero, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6801
    testptr(ary2, ary2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6802
    jcc(Assembler::zero, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6803
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6804
    // Check the lengths
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6805
    movl(limit, Address(ary1, length_offset));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6806
    cmpl(limit, Address(ary2, length_offset));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6807
    jcc(Assembler::notEqual, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6808
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6809
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6810
  // count == 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6811
  testl(limit, limit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6812
  jcc(Assembler::zero, TRUE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6813
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6814
  if (is_array_equ) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6815
    // Load array address
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6816
    lea(ary1, Address(ary1, base_offset));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6817
    lea(ary2, Address(ary2, base_offset));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6818
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6819
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6820
  shll(limit, 1);      // byte count != 0
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6821
  movl(result, limit); // copy
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6822
15117
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6823
  if (UseAVX >= 2) {
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6824
    // With AVX2, use 32-byte vector compare
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6825
    Label COMPARE_WIDE_VECTORS, COMPARE_TAIL;
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6826
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6827
    // Compare 32-byte vectors
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6828
    andl(result, 0x0000001e);  //   tail count (in bytes)
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6829
    andl(limit, 0xffffffe0);   // vector count (in bytes)
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6830
    jccb(Assembler::zero, COMPARE_TAIL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6831
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6832
    lea(ary1, Address(ary1, limit, Address::times_1));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6833
    lea(ary2, Address(ary2, limit, Address::times_1));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6834
    negptr(limit);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6835
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6836
    bind(COMPARE_WIDE_VECTORS);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6837
    vmovdqu(vec1, Address(ary1, limit, Address::times_1));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6838
    vmovdqu(vec2, Address(ary2, limit, Address::times_1));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6839
    vpxor(vec1, vec2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6840
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6841
    vptest(vec1, vec1);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6842
    jccb(Assembler::notZero, FALSE_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6843
    addptr(limit, 32);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6844
    jcc(Assembler::notZero, COMPARE_WIDE_VECTORS);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6845
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6846
    testl(result, result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6847
    jccb(Assembler::zero, TRUE_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6848
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6849
    vmovdqu(vec1, Address(ary1, result, Address::times_1, -32));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6850
    vmovdqu(vec2, Address(ary2, result, Address::times_1, -32));
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6851
    vpxor(vec1, vec2);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6852
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6853
    vptest(vec1, vec1);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6854
    jccb(Assembler::notZero, FALSE_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6855
    jmpb(TRUE_LABEL);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6856
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6857
    bind(COMPARE_TAIL); // limit is zero
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6858
    movl(limit, result);
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6859
    // Fallthru to tail compare
625397df6f4f 8005419: Improve intrinsics code performance on x86 by using AVX2
kvn
parents: 15116
diff changeset
  6860
  } else if (UseSSE42Intrinsics) {
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6861
    // With SSE4.2, use double quad vector compare
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6862
    Label COMPARE_WIDE_VECTORS, COMPARE_TAIL;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6863
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6864
    // Compare 16-byte vectors
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6865
    andl(result, 0x0000000e);  //   tail count (in bytes)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6866
    andl(limit, 0xfffffff0);   // vector count (in bytes)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6867
    jccb(Assembler::zero, COMPARE_TAIL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6868
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6869
    lea(ary1, Address(ary1, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6870
    lea(ary2, Address(ary2, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6871
    negptr(limit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6872
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6873
    bind(COMPARE_WIDE_VECTORS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6874
    movdqu(vec1, Address(ary1, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6875
    movdqu(vec2, Address(ary2, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6876
    pxor(vec1, vec2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6877
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6878
    ptest(vec1, vec1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6879
    jccb(Assembler::notZero, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6880
    addptr(limit, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6881
    jcc(Assembler::notZero, COMPARE_WIDE_VECTORS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6882
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6883
    testl(result, result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6884
    jccb(Assembler::zero, TRUE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6885
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6886
    movdqu(vec1, Address(ary1, result, Address::times_1, -16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6887
    movdqu(vec2, Address(ary2, result, Address::times_1, -16));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6888
    pxor(vec1, vec2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6889
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6890
    ptest(vec1, vec1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6891
    jccb(Assembler::notZero, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6892
    jmpb(TRUE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6893
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6894
    bind(COMPARE_TAIL); // limit is zero
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6895
    movl(limit, result);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6896
    // Fallthru to tail compare
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6897
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6898
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6899
  // Compare 4-byte vectors
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6900
  andl(limit, 0xfffffffc); // vector count (in bytes)
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6901
  jccb(Assembler::zero, COMPARE_CHAR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6902
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6903
  lea(ary1, Address(ary1, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6904
  lea(ary2, Address(ary2, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6905
  negptr(limit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6906
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6907
  bind(COMPARE_VECTORS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6908
  movl(chr, Address(ary1, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6909
  cmpl(chr, Address(ary2, limit, Address::times_1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6910
  jccb(Assembler::notEqual, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6911
  addptr(limit, 4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6912
  jcc(Assembler::notZero, COMPARE_VECTORS);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6913
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6914
  // Compare trailing char (final 2 bytes), if any
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6915
  bind(COMPARE_CHAR);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6916
  testl(result, 0x2);   // tail  char
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6917
  jccb(Assembler::zero, TRUE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6918
  load_unsigned_short(chr, Address(ary1, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6919
  load_unsigned_short(limit, Address(ary2, 0));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6920
  cmpl(chr, limit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6921
  jccb(Assembler::notEqual, FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6922
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6923
  bind(TRUE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6924
  movl(result, 1);   // return true
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6925
  jmpb(DONE);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6926
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6927
  bind(FALSE_LABEL);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6928
  xorl(result, result); // return false
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6929
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6930
  // That's it
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6931
  bind(DONE);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  6932
  if (UseAVX >= 2) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  6933
    // clean upper bits of YMM registers
30299
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  6934
    vpxor(vec1, vec1);
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  6935
    vpxor(vec2, vec2);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  6936
  }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6937
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6938
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6939
void MacroAssembler::generate_fill(BasicType t, bool aligned,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6940
                                   Register to, Register value, Register count,
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6941
                                   Register rtmp, XMMRegister xtmp) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6942
  ShortBranchVerifier sbv(this);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6943
  assert_different_registers(to, value, count, rtmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6944
  Label L_exit, L_skip_align1, L_skip_align2, L_fill_byte;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6945
  Label L_fill_2_bytes, L_fill_4_bytes;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6946
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6947
  int shift = -1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6948
  switch (t) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6949
    case T_BYTE:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6950
      shift = 2;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6951
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6952
    case T_SHORT:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6953
      shift = 1;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6954
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6955
    case T_INT:
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6956
      shift = 0;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6957
      break;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6958
    default: ShouldNotReachHere();
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6959
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6960
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6961
  if (t == T_BYTE) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6962
    andl(value, 0xff);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6963
    movl(rtmp, value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6964
    shll(rtmp, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6965
    orl(value, rtmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6966
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6967
  if (t == T_SHORT) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6968
    andl(value, 0xffff);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6969
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6970
  if (t == T_BYTE || t == T_SHORT) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6971
    movl(rtmp, value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6972
    shll(rtmp, 16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6973
    orl(value, rtmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6974
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6975
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6976
  cmpl(count, 2<<shift); // Short arrays (< 8 bytes) fill by element
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6977
  jcc(Assembler::below, L_fill_4_bytes); // use unsigned cmp
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6978
  if (!UseUnalignedLoadStores && !aligned && (t == T_BYTE || t == T_SHORT)) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6979
    // align source address at 4 bytes address boundary
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6980
    if (t == T_BYTE) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6981
      // One byte misalignment happens only for byte arrays
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6982
      testptr(to, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6983
      jccb(Assembler::zero, L_skip_align1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6984
      movb(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6985
      increment(to);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6986
      decrement(count);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6987
      BIND(L_skip_align1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6988
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6989
    // Two bytes misalignment happens only for byte and short (char) arrays
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6990
    testptr(to, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6991
    jccb(Assembler::zero, L_skip_align2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6992
    movw(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6993
    addptr(to, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6994
    subl(count, 1<<(shift-1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6995
    BIND(L_skip_align2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6996
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6997
  if (UseSSE < 2) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6998
    Label L_fill_32_bytes_loop, L_check_fill_8_bytes, L_fill_8_bytes_loop, L_fill_8_bytes;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  6999
    // Fill 32-byte chunks
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7000
    subl(count, 8 << shift);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7001
    jcc(Assembler::less, L_check_fill_8_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7002
    align(16);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7003
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7004
    BIND(L_fill_32_bytes_loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7005
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7006
    for (int i = 0; i < 32; i += 4) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7007
      movl(Address(to, i), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7008
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7009
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7010
    addptr(to, 32);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7011
    subl(count, 8 << shift);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7012
    jcc(Assembler::greaterEqual, L_fill_32_bytes_loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7013
    BIND(L_check_fill_8_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7014
    addl(count, 8 << shift);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7015
    jccb(Assembler::zero, L_exit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7016
    jmpb(L_fill_8_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7017
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7018
    //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7019
    // length is too short, just fill qwords
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7020
    //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7021
    BIND(L_fill_8_bytes_loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7022
    movl(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7023
    movl(Address(to, 4), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7024
    addptr(to, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7025
    BIND(L_fill_8_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7026
    subl(count, 1 << (shift + 1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7027
    jcc(Assembler::greaterEqual, L_fill_8_bytes_loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7028
    // fall through to fill 4 bytes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7029
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7030
    Label L_fill_32_bytes;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7031
    if (!UseUnalignedLoadStores) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7032
      // align to 8 bytes, we know we are 4 byte aligned to start
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7033
      testptr(to, 4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7034
      jccb(Assembler::zero, L_fill_32_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7035
      movl(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7036
      addptr(to, 4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7037
      subl(count, 1<<shift);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7038
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7039
    BIND(L_fill_32_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7040
    {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7041
      assert( UseSSE >= 2, "supported cpu only" );
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7042
      Label L_fill_32_bytes_loop, L_check_fill_8_bytes, L_fill_8_bytes_loop, L_fill_8_bytes;
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7043
      if (UseAVX > 2) {
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7044
        movl(rtmp, 0xffff);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7045
#ifdef _LP64
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7046
        kmovql(k1, rtmp);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7047
#else
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7048
        kmovdl(k1, rtmp);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7049
#endif
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7050
      }
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7051
      movdl(xtmp, value);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7052
      if (UseAVX > 2 && UseUnalignedLoadStores) {
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7053
        // Fill 64-byte chunks
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7054
        Label L_fill_64_bytes_loop, L_check_fill_32_bytes;
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7055
        evpbroadcastd(xtmp, xtmp, Assembler::AVX_512bit);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7056
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7057
        subl(count, 16 << shift);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7058
        jcc(Assembler::less, L_check_fill_32_bytes);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7059
        align(16);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7060
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7061
        BIND(L_fill_64_bytes_loop);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7062
        evmovdqu(Address(to, 0), xtmp, Assembler::AVX_512bit);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7063
        addptr(to, 64);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7064
        subl(count, 16 << shift);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7065
        jcc(Assembler::greaterEqual, L_fill_64_bytes_loop);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7066
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7067
        BIND(L_check_fill_32_bytes);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7068
        addl(count, 8 << shift);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7069
        jccb(Assembler::less, L_check_fill_8_bytes);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7070
        evmovdqu(Address(to, 0), xtmp, Assembler::AVX_256bit);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7071
        addptr(to, 32);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7072
        subl(count, 8 << shift);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7073
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7074
        BIND(L_check_fill_8_bytes);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7075
      } else if (UseAVX == 2 && UseUnalignedLoadStores) {
15115
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7076
        // Fill 64-byte chunks
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7077
        Label L_fill_64_bytes_loop, L_check_fill_32_bytes;
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7078
        vpbroadcastd(xtmp, xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7079
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7080
        subl(count, 16 << shift);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7081
        jcc(Assembler::less, L_check_fill_32_bytes);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7082
        align(16);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7083
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7084
        BIND(L_fill_64_bytes_loop);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7085
        vmovdqu(Address(to, 0), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7086
        vmovdqu(Address(to, 32), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7087
        addptr(to, 64);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7088
        subl(count, 16 << shift);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7089
        jcc(Assembler::greaterEqual, L_fill_64_bytes_loop);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7090
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7091
        BIND(L_check_fill_32_bytes);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7092
        addl(count, 8 << shift);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7093
        jccb(Assembler::less, L_check_fill_8_bytes);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7094
        vmovdqu(Address(to, 0), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7095
        addptr(to, 32);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7096
        subl(count, 8 << shift);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7097
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7098
        BIND(L_check_fill_8_bytes);
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7099
        // clean upper bits of YMM registers
30299
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7100
        movdl(xtmp, value);
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7101
        pshufd(xtmp, xtmp, 0);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7102
      } else {
15115
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7103
        // Fill 32-byte chunks
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7104
        pshufd(xtmp, xtmp, 0);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7105
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7106
        subl(count, 8 << shift);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7107
        jcc(Assembler::less, L_check_fill_8_bytes);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7108
        align(16);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7109
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7110
        BIND(L_fill_32_bytes_loop);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7111
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7112
        if (UseUnalignedLoadStores) {
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7113
          movdqu(Address(to, 0), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7114
          movdqu(Address(to, 16), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7115
        } else {
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7116
          movq(Address(to, 0), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7117
          movq(Address(to, 8), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7118
          movq(Address(to, 16), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7119
          movq(Address(to, 24), xtmp);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7120
        }
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7121
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7122
        addptr(to, 32);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7123
        subl(count, 8 << shift);
f8ef87f6f07f 8005544: Use 256bit YMM registers in arraycopy stubs on x86
kvn
parents: 15114
diff changeset
  7124
        jcc(Assembler::greaterEqual, L_fill_32_bytes_loop);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7125
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7126
        BIND(L_check_fill_8_bytes);
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7127
      }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7128
      addl(count, 8 << shift);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7129
      jccb(Assembler::zero, L_exit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7130
      jmpb(L_fill_8_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7131
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7132
      //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7133
      // length is too short, just fill qwords
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7134
      //
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7135
      BIND(L_fill_8_bytes_loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7136
      movq(Address(to, 0), xtmp);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7137
      addptr(to, 8);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7138
      BIND(L_fill_8_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7139
      subl(count, 1 << (shift + 1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7140
      jcc(Assembler::greaterEqual, L_fill_8_bytes_loop);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7141
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7142
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7143
  // fill trailing 4 bytes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7144
  BIND(L_fill_4_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7145
  testl(count, 1<<shift);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7146
  jccb(Assembler::zero, L_fill_2_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7147
  movl(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7148
  if (t == T_BYTE || t == T_SHORT) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7149
    addptr(to, 4);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7150
    BIND(L_fill_2_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7151
    // fill trailing 2 bytes
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7152
    testl(count, 1<<(shift-1));
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7153
    jccb(Assembler::zero, L_fill_byte);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7154
    movw(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7155
    if (t == T_BYTE) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7156
      addptr(to, 2);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7157
      BIND(L_fill_byte);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7158
      // fill trailing byte
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7159
      testl(count, 1);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7160
      jccb(Assembler::zero, L_exit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7161
      movb(Address(to, 0), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7162
    } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7163
      BIND(L_fill_byte);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7164
    }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7165
  } else {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7166
    BIND(L_fill_2_bytes);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7167
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7168
  BIND(L_exit);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  7169
}
15242
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7170
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7171
// encode char[] to byte[] in ISO_8859_1
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7172
void MacroAssembler::encode_iso_array(Register src, Register dst, Register len,
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7173
                                      XMMRegister tmp1Reg, XMMRegister tmp2Reg,
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7174
                                      XMMRegister tmp3Reg, XMMRegister tmp4Reg,
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7175
                                      Register tmp5, Register result) {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7176
  // rsi: src
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7177
  // rdi: dst
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7178
  // rdx: len
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7179
  // rcx: tmp5
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7180
  // rax: result
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7181
  ShortBranchVerifier sbv(this);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7182
  assert_different_registers(src, dst, len, tmp5, result);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7183
  Label L_done, L_copy_1_char, L_copy_1_char_exit;
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7184
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7185
  // set result
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7186
  xorl(result, result);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7187
  // check for zero length
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7188
  testl(len, len);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7189
  jcc(Assembler::zero, L_done);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7190
  movl(result, len);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7191
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7192
  // Setup pointers
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7193
  lea(src, Address(src, len, Address::times_2)); // char[]
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7194
  lea(dst, Address(dst, len, Address::times_1)); // byte[]
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7195
  negptr(len);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7196
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7197
  if (UseSSE42Intrinsics || UseAVX >= 2) {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7198
    Label L_chars_8_check, L_copy_8_chars, L_copy_8_chars_exit;
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7199
    Label L_chars_16_check, L_copy_16_chars, L_copy_16_chars_exit;
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7200
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7201
    if (UseAVX >= 2) {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7202
      Label L_chars_32_check, L_copy_32_chars, L_copy_32_chars_exit;
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7203
      movl(tmp5, 0xff00ff00);   // create mask to test for Unicode chars in vector
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7204
      movdl(tmp1Reg, tmp5);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7205
      vpbroadcastd(tmp1Reg, tmp1Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7206
      jmpb(L_chars_32_check);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7207
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7208
      bind(L_copy_32_chars);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7209
      vmovdqu(tmp3Reg, Address(src, len, Address::times_2, -64));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7210
      vmovdqu(tmp4Reg, Address(src, len, Address::times_2, -32));
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7211
      vpor(tmp2Reg, tmp3Reg, tmp4Reg, /* vector_len */ 1);
15242
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7212
      vptest(tmp2Reg, tmp1Reg);       // check for Unicode chars in  vector
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7213
      jccb(Assembler::notZero, L_copy_32_chars_exit);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7214
      vpackuswb(tmp3Reg, tmp3Reg, tmp4Reg, /* vector_len */ 1);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7215
      vpermq(tmp4Reg, tmp3Reg, 0xD8, /* vector_len */ 1);
15242
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7216
      vmovdqu(Address(dst, len, Address::times_1, -32), tmp4Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7217
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7218
      bind(L_chars_32_check);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7219
      addptr(len, 32);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7220
      jccb(Assembler::lessEqual, L_copy_32_chars);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7221
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7222
      bind(L_copy_32_chars_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7223
      subptr(len, 16);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7224
      jccb(Assembler::greater, L_copy_16_chars_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7225
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7226
    } else if (UseSSE42Intrinsics) {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7227
      movl(tmp5, 0xff00ff00);   // create mask to test for Unicode chars in vector
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7228
      movdl(tmp1Reg, tmp5);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7229
      pshufd(tmp1Reg, tmp1Reg, 0);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7230
      jmpb(L_chars_16_check);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7231
    }
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7232
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7233
    bind(L_copy_16_chars);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7234
    if (UseAVX >= 2) {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7235
      vmovdqu(tmp2Reg, Address(src, len, Address::times_2, -32));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7236
      vptest(tmp2Reg, tmp1Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7237
      jccb(Assembler::notZero, L_copy_16_chars_exit);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7238
      vpackuswb(tmp2Reg, tmp2Reg, tmp1Reg, /* vector_len */ 1);
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7239
      vpermq(tmp3Reg, tmp2Reg, 0xD8, /* vector_len */ 1);
15242
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7240
    } else {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7241
      if (UseAVX > 0) {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7242
        movdqu(tmp3Reg, Address(src, len, Address::times_2, -32));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7243
        movdqu(tmp4Reg, Address(src, len, Address::times_2, -16));
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  7244
        vpor(tmp2Reg, tmp3Reg, tmp4Reg, /* vector_len */ 0);
15242
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7245
      } else {
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7246
        movdqu(tmp3Reg, Address(src, len, Address::times_2, -32));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7247
        por(tmp2Reg, tmp3Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7248
        movdqu(tmp4Reg, Address(src, len, Address::times_2, -16));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7249
        por(tmp2Reg, tmp4Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7250
      }
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7251
      ptest(tmp2Reg, tmp1Reg);       // check for Unicode chars in  vector
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7252
      jccb(Assembler::notZero, L_copy_16_chars_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7253
      packuswb(tmp3Reg, tmp4Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7254
    }
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7255
    movdqu(Address(dst, len, Address::times_1, -16), tmp3Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7256
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7257
    bind(L_chars_16_check);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7258
    addptr(len, 16);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7259
    jccb(Assembler::lessEqual, L_copy_16_chars);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7260
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7261
    bind(L_copy_16_chars_exit);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7262
    if (UseAVX >= 2) {
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7263
      // clean upper bits of YMM registers
30299
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7264
      vpxor(tmp2Reg, tmp2Reg);
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7265
      vpxor(tmp3Reg, tmp3Reg);
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7266
      vpxor(tmp4Reg, tmp4Reg);
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7267
      movdl(tmp1Reg, tmp5);
1f6f7d1e0c1e 8078113: 8011102 changes may cause incorrect results
kvn
parents: 29325
diff changeset
  7268
      pshufd(tmp1Reg, tmp1Reg, 0);
16624
9dbd4b210bf9 8011102: Clear AVX registers after return from JNI call
kvn
parents: 16368
diff changeset
  7269
    }
15242
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7270
    subptr(len, 8);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7271
    jccb(Assembler::greater, L_copy_8_chars_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7272
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7273
    bind(L_copy_8_chars);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7274
    movdqu(tmp3Reg, Address(src, len, Address::times_2, -16));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7275
    ptest(tmp3Reg, tmp1Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7276
    jccb(Assembler::notZero, L_copy_8_chars_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7277
    packuswb(tmp3Reg, tmp1Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7278
    movq(Address(dst, len, Address::times_1, -8), tmp3Reg);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7279
    addptr(len, 8);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7280
    jccb(Assembler::lessEqual, L_copy_8_chars);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7281
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7282
    bind(L_copy_8_chars_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7283
    subptr(len, 8);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7284
    jccb(Assembler::zero, L_done);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7285
  }
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7286
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7287
  bind(L_copy_1_char);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7288
  load_unsigned_short(tmp5, Address(src, len, Address::times_2, 0));
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7289
  testl(tmp5, 0xff00);      // check if Unicode char
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7290
  jccb(Assembler::notZero, L_copy_1_char_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7291
  movb(Address(dst, len, Address::times_1, 0), tmp5);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7292
  addptr(len, 1);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7293
  jccb(Assembler::less, L_copy_1_char);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7294
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7295
  bind(L_copy_1_char_exit);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7296
  addptr(result, len); // len is negative count of not processed elements
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7297
  bind(L_done);
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7298
}
695bb216be99 6896617: Optimize sun.nio.cs.ISO_8859_1$Encode.encodeArrayLoop() on x86
kvn
parents: 15117
diff changeset
  7299
26434
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7300
#ifdef _LP64
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7301
/**
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7302
 * Helper for multiply_to_len().
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7303
 */
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7304
void MacroAssembler::add2_with_carry(Register dest_hi, Register dest_lo, Register src1, Register src2) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7305
  addq(dest_lo, src1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7306
  adcq(dest_hi, 0);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7307
  addq(dest_lo, src2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7308
  adcq(dest_hi, 0);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7309
}
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7310
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7311
/**
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7312
 * Multiply 64 bit by 64 bit first loop.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7313
 */
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7314
void MacroAssembler::multiply_64_x_64_loop(Register x, Register xstart, Register x_xstart,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7315
                                           Register y, Register y_idx, Register z,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7316
                                           Register carry, Register product,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7317
                                           Register idx, Register kdx) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7318
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7319
  //  jlong carry, x[], y[], z[];
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7320
  //  for (int idx=ystart, kdx=ystart+1+xstart; idx >= 0; idx-, kdx--) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7321
  //    huge_128 product = y[idx] * x[xstart] + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7322
  //    z[kdx] = (jlong)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7323
  //    carry  = (jlong)(product >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7324
  //  }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7325
  //  z[xstart] = carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7326
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7327
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7328
  Label L_first_loop, L_first_loop_exit;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7329
  Label L_one_x, L_one_y, L_multiply;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7330
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7331
  decrementl(xstart);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7332
  jcc(Assembler::negative, L_one_x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7333
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7334
  movq(x_xstart, Address(x, xstart, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7335
  rorq(x_xstart, 32); // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7336
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7337
  bind(L_first_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7338
  decrementl(idx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7339
  jcc(Assembler::negative, L_first_loop_exit);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7340
  decrementl(idx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7341
  jcc(Assembler::negative, L_one_y);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7342
  movq(y_idx, Address(y, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7343
  rorq(y_idx, 32); // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7344
  bind(L_multiply);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7345
  movq(product, x_xstart);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7346
  mulq(y_idx); // product(rax) * y_idx -> rdx:rax
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7347
  addq(product, carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7348
  adcq(rdx, 0);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7349
  subl(kdx, 2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7350
  movl(Address(z, kdx, Address::times_4,  4), product);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7351
  shrq(product, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7352
  movl(Address(z, kdx, Address::times_4,  0), product);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7353
  movq(carry, rdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7354
  jmp(L_first_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7355
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7356
  bind(L_one_y);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7357
  movl(y_idx, Address(y,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7358
  jmp(L_multiply);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7359
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7360
  bind(L_one_x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7361
  movl(x_xstart, Address(x,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7362
  jmp(L_first_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7363
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7364
  bind(L_first_loop_exit);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7365
}
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7366
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7367
/**
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7368
 * Multiply 64 bit by 64 bit and add 128 bit.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7369
 */
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7370
void MacroAssembler::multiply_add_128_x_128(Register x_xstart, Register y, Register z,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7371
                                            Register yz_idx, Register idx,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7372
                                            Register carry, Register product, int offset) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7373
  //     huge_128 product = (y[idx] * x_xstart) + z[kdx] + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7374
  //     z[kdx] = (jlong)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7375
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7376
  movq(yz_idx, Address(y, idx, Address::times_4,  offset));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7377
  rorq(yz_idx, 32); // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7378
  movq(product, x_xstart);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7379
  mulq(yz_idx);     // product(rax) * yz_idx -> rdx:product(rax)
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7380
  movq(yz_idx, Address(z, idx, Address::times_4,  offset));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7381
  rorq(yz_idx, 32); // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7382
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7383
  add2_with_carry(rdx, product, carry, yz_idx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7384
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7385
  movl(Address(z, idx, Address::times_4,  offset+4), product);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7386
  shrq(product, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7387
  movl(Address(z, idx, Address::times_4,  offset), product);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7388
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7389
}
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7390
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7391
/**
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7392
 * Multiply 128 bit by 128 bit. Unrolled inner loop.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7393
 */
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7394
void MacroAssembler::multiply_128_x_128_loop(Register x_xstart, Register y, Register z,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7395
                                             Register yz_idx, Register idx, Register jdx,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7396
                                             Register carry, Register product,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7397
                                             Register carry2) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7398
  //   jlong carry, x[], y[], z[];
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7399
  //   int kdx = ystart+1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7400
  //   for (int idx=ystart-2; idx >= 0; idx -= 2) { // Third loop
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7401
  //     huge_128 product = (y[idx+1] * x_xstart) + z[kdx+idx+1] + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7402
  //     z[kdx+idx+1] = (jlong)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7403
  //     jlong carry2  = (jlong)(product >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7404
  //     product = (y[idx] * x_xstart) + z[kdx+idx] + carry2;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7405
  //     z[kdx+idx] = (jlong)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7406
  //     carry  = (jlong)(product >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7407
  //   }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7408
  //   idx += 2;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7409
  //   if (idx > 0) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7410
  //     product = (y[idx] * x_xstart) + z[kdx+idx] + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7411
  //     z[kdx+idx] = (jlong)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7412
  //     carry  = (jlong)(product >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7413
  //   }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7414
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7415
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7416
  Label L_third_loop, L_third_loop_exit, L_post_third_loop_done;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7417
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7418
  movl(jdx, idx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7419
  andl(jdx, 0xFFFFFFFC);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7420
  shrl(jdx, 2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7421
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7422
  bind(L_third_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7423
  subl(jdx, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7424
  jcc(Assembler::negative, L_third_loop_exit);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7425
  subl(idx, 4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7426
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7427
  multiply_add_128_x_128(x_xstart, y, z, yz_idx, idx, carry, product, 8);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7428
  movq(carry2, rdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7429
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7430
  multiply_add_128_x_128(x_xstart, y, z, yz_idx, idx, carry2, product, 0);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7431
  movq(carry, rdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7432
  jmp(L_third_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7433
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7434
  bind (L_third_loop_exit);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7435
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7436
  andl (idx, 0x3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7437
  jcc(Assembler::zero, L_post_third_loop_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7438
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7439
  Label L_check_1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7440
  subl(idx, 2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7441
  jcc(Assembler::negative, L_check_1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7442
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7443
  multiply_add_128_x_128(x_xstart, y, z, yz_idx, idx, carry, product, 0);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7444
  movq(carry, rdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7445
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7446
  bind (L_check_1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7447
  addl (idx, 0x2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7448
  andl (idx, 0x1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7449
  subl(idx, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7450
  jcc(Assembler::negative, L_post_third_loop_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7451
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7452
  movl(yz_idx, Address(y, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7453
  movq(product, x_xstart);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7454
  mulq(yz_idx); // product(rax) * yz_idx -> rdx:product(rax)
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7455
  movl(yz_idx, Address(z, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7456
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7457
  add2_with_carry(rdx, product, yz_idx, carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7458
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7459
  movl(Address(z, idx, Address::times_4,  0), product);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7460
  shrq(product, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7461
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7462
  shlq(rdx, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7463
  orq(product, rdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7464
  movq(carry, product);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7465
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7466
  bind(L_post_third_loop_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7467
}
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7468
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7469
/**
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7470
 * Multiply 128 bit by 128 bit using BMI2. Unrolled inner loop.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7471
 *
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7472
 */
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7473
void MacroAssembler::multiply_128_x_128_bmi2_loop(Register y, Register z,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7474
                                                  Register carry, Register carry2,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7475
                                                  Register idx, Register jdx,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7476
                                                  Register yz_idx1, Register yz_idx2,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7477
                                                  Register tmp, Register tmp3, Register tmp4) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7478
  assert(UseBMI2Instructions, "should be used only when BMI2 is available");
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7479
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7480
  //   jlong carry, x[], y[], z[];
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7481
  //   int kdx = ystart+1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7482
  //   for (int idx=ystart-2; idx >= 0; idx -= 2) { // Third loop
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7483
  //     huge_128 tmp3 = (y[idx+1] * rdx) + z[kdx+idx+1] + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7484
  //     jlong carry2  = (jlong)(tmp3 >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7485
  //     huge_128 tmp4 = (y[idx]   * rdx) + z[kdx+idx] + carry2;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7486
  //     carry  = (jlong)(tmp4 >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7487
  //     z[kdx+idx+1] = (jlong)tmp3;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7488
  //     z[kdx+idx] = (jlong)tmp4;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7489
  //   }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7490
  //   idx += 2;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7491
  //   if (idx > 0) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7492
  //     yz_idx1 = (y[idx] * rdx) + z[kdx+idx] + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7493
  //     z[kdx+idx] = (jlong)yz_idx1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7494
  //     carry  = (jlong)(yz_idx1 >>> 64);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7495
  //   }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7496
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7497
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7498
  Label L_third_loop, L_third_loop_exit, L_post_third_loop_done;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7499
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7500
  movl(jdx, idx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7501
  andl(jdx, 0xFFFFFFFC);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7502
  shrl(jdx, 2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7503
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7504
  bind(L_third_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7505
  subl(jdx, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7506
  jcc(Assembler::negative, L_third_loop_exit);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7507
  subl(idx, 4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7508
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7509
  movq(yz_idx1,  Address(y, idx, Address::times_4,  8));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7510
  rorxq(yz_idx1, yz_idx1, 32); // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7511
  movq(yz_idx2, Address(y, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7512
  rorxq(yz_idx2, yz_idx2, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7513
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7514
  mulxq(tmp4, tmp3, yz_idx1);  //  yz_idx1 * rdx -> tmp4:tmp3
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7515
  mulxq(carry2, tmp, yz_idx2); //  yz_idx2 * rdx -> carry2:tmp
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7516
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7517
  movq(yz_idx1,  Address(z, idx, Address::times_4,  8));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7518
  rorxq(yz_idx1, yz_idx1, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7519
  movq(yz_idx2, Address(z, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7520
  rorxq(yz_idx2, yz_idx2, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7521
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7522
  if (VM_Version::supports_adx()) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7523
    adcxq(tmp3, carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7524
    adoxq(tmp3, yz_idx1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7525
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7526
    adcxq(tmp4, tmp);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7527
    adoxq(tmp4, yz_idx2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7528
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7529
    movl(carry, 0); // does not affect flags
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7530
    adcxq(carry2, carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7531
    adoxq(carry2, carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7532
  } else {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7533
    add2_with_carry(tmp4, tmp3, carry, yz_idx1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7534
    add2_with_carry(carry2, tmp4, tmp, yz_idx2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7535
  }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7536
  movq(carry, carry2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7537
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7538
  movl(Address(z, idx, Address::times_4, 12), tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7539
  shrq(tmp3, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7540
  movl(Address(z, idx, Address::times_4,  8), tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7541
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7542
  movl(Address(z, idx, Address::times_4,  4), tmp4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7543
  shrq(tmp4, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7544
  movl(Address(z, idx, Address::times_4,  0), tmp4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7545
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7546
  jmp(L_third_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7547
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7548
  bind (L_third_loop_exit);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7549
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7550
  andl (idx, 0x3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7551
  jcc(Assembler::zero, L_post_third_loop_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7552
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7553
  Label L_check_1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7554
  subl(idx, 2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7555
  jcc(Assembler::negative, L_check_1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7556
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7557
  movq(yz_idx1, Address(y, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7558
  rorxq(yz_idx1, yz_idx1, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7559
  mulxq(tmp4, tmp3, yz_idx1); //  yz_idx1 * rdx -> tmp4:tmp3
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7560
  movq(yz_idx2, Address(z, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7561
  rorxq(yz_idx2, yz_idx2, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7562
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7563
  add2_with_carry(tmp4, tmp3, carry, yz_idx2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7564
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7565
  movl(Address(z, idx, Address::times_4,  4), tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7566
  shrq(tmp3, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7567
  movl(Address(z, idx, Address::times_4,  0), tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7568
  movq(carry, tmp4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7569
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7570
  bind (L_check_1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7571
  addl (idx, 0x2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7572
  andl (idx, 0x1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7573
  subl(idx, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7574
  jcc(Assembler::negative, L_post_third_loop_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7575
  movl(tmp4, Address(y, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7576
  mulxq(carry2, tmp3, tmp4);  //  tmp4 * rdx -> carry2:tmp3
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7577
  movl(tmp4, Address(z, idx, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7578
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7579
  add2_with_carry(carry2, tmp3, tmp4, carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7580
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7581
  movl(Address(z, idx, Address::times_4,  0), tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7582
  shrq(tmp3, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7583
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7584
  shlq(carry2, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7585
  orq(tmp3, carry2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7586
  movq(carry, tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7587
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7588
  bind(L_post_third_loop_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7589
}
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7590
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7591
/**
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7592
 * Code for BigInteger::multiplyToLen() instrinsic.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7593
 *
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7594
 * rdi: x
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7595
 * rax: xlen
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7596
 * rsi: y
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7597
 * rcx: ylen
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7598
 * r8:  z
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7599
 * r11: zlen
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7600
 * r12: tmp1
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7601
 * r13: tmp2
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7602
 * r14: tmp3
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7603
 * r15: tmp4
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7604
 * rbx: tmp5
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7605
 *
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7606
 */
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7607
void MacroAssembler::multiply_to_len(Register x, Register xlen, Register y, Register ylen, Register z, Register zlen,
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7608
                                     Register tmp1, Register tmp2, Register tmp3, Register tmp4, Register tmp5) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7609
  ShortBranchVerifier sbv(this);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7610
  assert_different_registers(x, xlen, y, ylen, z, zlen, tmp1, tmp2, tmp3, tmp4, tmp5, rdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7611
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7612
  push(tmp1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7613
  push(tmp2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7614
  push(tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7615
  push(tmp4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7616
  push(tmp5);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7617
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7618
  push(xlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7619
  push(zlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7620
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7621
  const Register idx = tmp1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7622
  const Register kdx = tmp2;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7623
  const Register xstart = tmp3;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7624
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7625
  const Register y_idx = tmp4;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7626
  const Register carry = tmp5;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7627
  const Register product  = xlen;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7628
  const Register x_xstart = zlen;  // reuse register
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7629
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7630
  // First Loop.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7631
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7632
  //  final static long LONG_MASK = 0xffffffffL;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7633
  //  int xstart = xlen - 1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7634
  //  int ystart = ylen - 1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7635
  //  long carry = 0;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7636
  //  for (int idx=ystart, kdx=ystart+1+xstart; idx >= 0; idx-, kdx--) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7637
  //    long product = (y[idx] & LONG_MASK) * (x[xstart] & LONG_MASK) + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7638
  //    z[kdx] = (int)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7639
  //    carry = product >>> 32;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7640
  //  }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7641
  //  z[xstart] = (int)carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7642
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7643
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7644
  movl(idx, ylen);      // idx = ylen;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7645
  movl(kdx, zlen);      // kdx = xlen+ylen;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7646
  xorq(carry, carry);   // carry = 0;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7647
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7648
  Label L_done;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7649
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7650
  movl(xstart, xlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7651
  decrementl(xstart);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7652
  jcc(Assembler::negative, L_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7653
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7654
  multiply_64_x_64_loop(x, xstart, x_xstart, y, y_idx, z, carry, product, idx, kdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7655
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7656
  Label L_second_loop;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7657
  testl(kdx, kdx);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7658
  jcc(Assembler::zero, L_second_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7659
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7660
  Label L_carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7661
  subl(kdx, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7662
  jcc(Assembler::zero, L_carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7663
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7664
  movl(Address(z, kdx, Address::times_4,  0), carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7665
  shrq(carry, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7666
  subl(kdx, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7667
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7668
  bind(L_carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7669
  movl(Address(z, kdx, Address::times_4,  0), carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7670
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7671
  // Second and third (nested) loops.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7672
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7673
  // for (int i = xstart-1; i >= 0; i--) { // Second loop
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7674
  //   carry = 0;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7675
  //   for (int jdx=ystart, k=ystart+1+i; jdx >= 0; jdx--, k--) { // Third loop
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7676
  //     long product = (y[jdx] & LONG_MASK) * (x[i] & LONG_MASK) +
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7677
  //                    (z[k] & LONG_MASK) + carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7678
  //     z[k] = (int)product;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7679
  //     carry = product >>> 32;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7680
  //   }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7681
  //   z[i] = (int)carry;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7682
  // }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7683
  //
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7684
  // i = xlen, j = tmp1, k = tmp2, carry = tmp5, x[i] = rdx
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7685
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7686
  const Register jdx = tmp1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7687
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7688
  bind(L_second_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7689
  xorl(carry, carry);    // carry = 0;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7690
  movl(jdx, ylen);       // j = ystart+1
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7691
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7692
  subl(xstart, 1);       // i = xstart-1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7693
  jcc(Assembler::negative, L_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7694
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7695
  push (z);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7696
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7697
  Label L_last_x;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7698
  lea(z, Address(z, xstart, Address::times_4, 4)); // z = z + k - j
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7699
  subl(xstart, 1);       // i = xstart-1;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7700
  jcc(Assembler::negative, L_last_x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7701
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7702
  if (UseBMI2Instructions) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7703
    movq(rdx,  Address(x, xstart, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7704
    rorxq(rdx, rdx, 32); // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7705
  } else {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7706
    movq(x_xstart, Address(x, xstart, Address::times_4,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7707
    rorq(x_xstart, 32);  // convert big-endian to little-endian
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7708
  }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7709
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7710
  Label L_third_loop_prologue;
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7711
  bind(L_third_loop_prologue);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7712
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7713
  push (x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7714
  push (xstart);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7715
  push (ylen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7716
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7717
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7718
  if (UseBMI2Instructions) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7719
    multiply_128_x_128_bmi2_loop(y, z, carry, x, jdx, ylen, product, tmp2, x_xstart, tmp3, tmp4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7720
  } else { // !UseBMI2Instructions
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7721
    multiply_128_x_128_loop(x_xstart, y, z, y_idx, jdx, ylen, carry, product, x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7722
  }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7723
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7724
  pop(ylen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7725
  pop(xlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7726
  pop(x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7727
  pop(z);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7728
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7729
  movl(tmp3, xlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7730
  addl(tmp3, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7731
  movl(Address(z, tmp3, Address::times_4,  0), carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7732
  subl(tmp3, 1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7733
  jccb(Assembler::negative, L_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7734
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7735
  shrq(carry, 32);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7736
  movl(Address(z, tmp3, Address::times_4,  0), carry);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7737
  jmp(L_second_loop);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7738
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7739
  // Next infrequent code is moved outside loops.
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7740
  bind(L_last_x);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7741
  if (UseBMI2Instructions) {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7742
    movl(rdx, Address(x,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7743
  } else {
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7744
    movl(x_xstart, Address(x,  0));
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7745
  }
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7746
  jmp(L_third_loop_prologue);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7747
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7748
  bind(L_done);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7749
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7750
  pop(zlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7751
  pop(xlen);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7752
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7753
  pop(tmp5);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7754
  pop(tmp4);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7755
  pop(tmp3);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7756
  pop(tmp2);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7757
  pop(tmp1);
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  7758
}
31129
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7759
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7760
//Helper functions for square_to_len()
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7761
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7762
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7763
 * Store the squares of x[], right shifted one bit (divided by 2) into z[]
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7764
 * Preserves x and z and modifies rest of the registers.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7765
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7766
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7767
void MacroAssembler::square_rshift(Register x, Register xlen, Register z, Register tmp1, Register tmp3, Register tmp4, Register tmp5, Register rdxReg, Register raxReg) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7768
  // Perform square and right shift by 1
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7769
  // Handle odd xlen case first, then for even xlen do the following
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7770
  // jlong carry = 0;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7771
  // for (int j=0, i=0; j < xlen; j+=2, i+=4) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7772
  //     huge_128 product = x[j:j+1] * x[j:j+1];
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7773
  //     z[i:i+1] = (carry << 63) | (jlong)(product >>> 65);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7774
  //     z[i+2:i+3] = (jlong)(product >>> 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7775
  //     carry = (jlong)product;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7776
  // }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7777
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7778
  xorq(tmp5, tmp5);     // carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7779
  xorq(rdxReg, rdxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7780
  xorl(tmp1, tmp1);     // index for x
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7781
  xorl(tmp4, tmp4);     // index for z
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7782
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7783
  Label L_first_loop, L_first_loop_exit;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7784
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7785
  testl(xlen, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7786
  jccb(Assembler::zero, L_first_loop); //jump if xlen is even
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7787
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7788
  // Square and right shift by 1 the odd element using 32 bit multiply
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7789
  movl(raxReg, Address(x, tmp1, Address::times_4, 0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7790
  imulq(raxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7791
  shrq(raxReg, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7792
  adcq(tmp5, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7793
  movq(Address(z, tmp4, Address::times_4, 0), raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7794
  incrementl(tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7795
  addl(tmp4, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7796
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7797
  // Square and  right shift by 1 the rest using 64 bit multiply
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7798
  bind(L_first_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7799
  cmpptr(tmp1, xlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7800
  jccb(Assembler::equal, L_first_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7801
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7802
  // Square
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7803
  movq(raxReg, Address(x, tmp1, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7804
  rorq(raxReg, 32);    // convert big-endian to little-endian
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7805
  mulq(raxReg);        // 64-bit multiply rax * rax -> rdx:rax
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7806
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7807
  // Right shift by 1 and save carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7808
  shrq(tmp5, 1);       // rdx:rax:tmp5 = (tmp5:rdx:rax) >>> 1
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7809
  rcrq(rdxReg, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7810
  rcrq(raxReg, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7811
  adcq(tmp5, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7812
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7813
  // Store result in z
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7814
  movq(Address(z, tmp4, Address::times_4, 0), rdxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7815
  movq(Address(z, tmp4, Address::times_4, 8), raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7816
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7817
  // Update indices for x and z
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7818
  addl(tmp1, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7819
  addl(tmp4, 4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7820
  jmp(L_first_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7821
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7822
  bind(L_first_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7823
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7824
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7825
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7826
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7827
 * Perform the following multiply add operation using BMI2 instructions
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7828
 * carry:sum = sum + op1*op2 + carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7829
 * op2 should be in rdx
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7830
 * op2 is preserved, all other registers are modified
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7831
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7832
void MacroAssembler::multiply_add_64_bmi2(Register sum, Register op1, Register op2, Register carry, Register tmp2) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7833
  // assert op2 is rdx
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7834
  mulxq(tmp2, op1, op1);  //  op1 * op2 -> tmp2:op1
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7835
  addq(sum, carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7836
  adcq(tmp2, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7837
  addq(sum, op1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7838
  adcq(tmp2, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7839
  movq(carry, tmp2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7840
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7841
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7842
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7843
 * Perform the following multiply add operation:
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7844
 * carry:sum = sum + op1*op2 + carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7845
 * Preserves op1, op2 and modifies rest of registers
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7846
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7847
void MacroAssembler::multiply_add_64(Register sum, Register op1, Register op2, Register carry, Register rdxReg, Register raxReg) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7848
  // rdx:rax = op1 * op2
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7849
  movq(raxReg, op2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7850
  mulq(op1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7851
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7852
  //  rdx:rax = sum + carry + rdx:rax
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7853
  addq(sum, carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7854
  adcq(rdxReg, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7855
  addq(sum, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7856
  adcq(rdxReg, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7857
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7858
  // carry:sum = rdx:sum
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7859
  movq(carry, rdxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7860
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7861
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7862
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7863
 * Add 64 bit long carry into z[] with carry propogation.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7864
 * Preserves z and carry register values and modifies rest of registers.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7865
 *
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7866
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7867
void MacroAssembler::add_one_64(Register z, Register zlen, Register carry, Register tmp1) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7868
  Label L_fourth_loop, L_fourth_loop_exit;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7869
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7870
  movl(tmp1, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7871
  subl(zlen, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7872
  addq(Address(z, zlen, Address::times_4, 0), carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7873
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7874
  bind(L_fourth_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7875
  jccb(Assembler::carryClear, L_fourth_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7876
  subl(zlen, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7877
  jccb(Assembler::negative, L_fourth_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7878
  addq(Address(z, zlen, Address::times_4, 0), tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7879
  jmp(L_fourth_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7880
  bind(L_fourth_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7881
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7882
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7883
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7884
 * Shift z[] left by 1 bit.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7885
 * Preserves x, len, z and zlen registers and modifies rest of the registers.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7886
 *
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7887
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7888
void MacroAssembler::lshift_by_1(Register x, Register len, Register z, Register zlen, Register tmp1, Register tmp2, Register tmp3, Register tmp4) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7889
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7890
  Label L_fifth_loop, L_fifth_loop_exit;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7891
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7892
  // Fifth loop
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7893
  // Perform primitiveLeftShift(z, zlen, 1)
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7894
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7895
  const Register prev_carry = tmp1;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7896
  const Register new_carry = tmp4;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7897
  const Register value = tmp2;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7898
  const Register zidx = tmp3;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7899
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7900
  // int zidx, carry;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7901
  // long value;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7902
  // carry = 0;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7903
  // for (zidx = zlen-2; zidx >=0; zidx -= 2) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7904
  //    (carry:value)  = (z[i] << 1) | carry ;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7905
  //    z[i] = value;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7906
  // }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7907
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7908
  movl(zidx, zlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7909
  xorl(prev_carry, prev_carry); // clear carry flag and prev_carry register
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7910
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7911
  bind(L_fifth_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7912
  decl(zidx);  // Use decl to preserve carry flag
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7913
  decl(zidx);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7914
  jccb(Assembler::negative, L_fifth_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7915
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7916
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7917
     movq(value, Address(z, zidx, Address::times_4, 0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7918
     rclq(value, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7919
     rorxq(value, value, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7920
     movq(Address(z, zidx, Address::times_4,  0), value);  // Store back in big endian form
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7921
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7922
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7923
    // clear new_carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7924
    xorl(new_carry, new_carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7925
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7926
    // Shift z[i] by 1, or in previous carry and save new carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7927
    movq(value, Address(z, zidx, Address::times_4, 0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7928
    shlq(value, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7929
    adcl(new_carry, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7930
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7931
    orq(value, prev_carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7932
    rorq(value, 0x20);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7933
    movq(Address(z, zidx, Address::times_4,  0), value);  // Store back in big endian form
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7934
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7935
    // Set previous carry = new carry
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7936
    movl(prev_carry, new_carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7937
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7938
  jmp(L_fifth_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7939
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7940
  bind(L_fifth_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7941
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7942
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7943
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7944
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7945
 * Code for BigInteger::squareToLen() intrinsic
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7946
 *
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7947
 * rdi: x
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7948
 * rsi: len
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7949
 * r8:  z
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7950
 * rcx: zlen
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7951
 * r12: tmp1
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7952
 * r13: tmp2
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7953
 * r14: tmp3
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7954
 * r15: tmp4
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7955
 * rbx: tmp5
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7956
 *
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7957
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7958
void MacroAssembler::square_to_len(Register x, Register len, Register z, Register zlen, Register tmp1, Register tmp2, Register tmp3, Register tmp4, Register tmp5, Register rdxReg, Register raxReg) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7959
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7960
  Label L_second_loop, L_second_loop_exit, L_third_loop, L_third_loop_exit, fifth_loop, fifth_loop_exit, L_last_x, L_multiply;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7961
  push(tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7962
  push(tmp2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7963
  push(tmp3);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7964
  push(tmp4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7965
  push(tmp5);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7966
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7967
  // First loop
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7968
  // Store the squares, right shifted one bit (i.e., divided by 2).
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7969
  square_rshift(x, len, z, tmp1, tmp3, tmp4, tmp5, rdxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7970
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7971
  // Add in off-diagonal sums.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7972
  //
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7973
  // Second, third (nested) and fourth loops.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7974
  // zlen +=2;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7975
  // for (int xidx=len-2,zidx=zlen-4; xidx > 0; xidx-=2,zidx-=4) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7976
  //    carry = 0;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7977
  //    long op2 = x[xidx:xidx+1];
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7978
  //    for (int j=xidx-2,k=zidx; j >= 0; j-=2) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7979
  //       k -= 2;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7980
  //       long op1 = x[j:j+1];
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7981
  //       long sum = z[k:k+1];
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7982
  //       carry:sum = multiply_add_64(sum, op1, op2, carry, tmp_regs);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7983
  //       z[k:k+1] = sum;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7984
  //    }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7985
  //    add_one_64(z, k, carry, tmp_regs);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7986
  // }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7987
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7988
  const Register carry = tmp5;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7989
  const Register sum = tmp3;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7990
  const Register op1 = tmp4;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7991
  Register op2 = tmp2;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7992
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7993
  push(zlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7994
  push(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7995
  addl(zlen,2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7996
  bind(L_second_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7997
  xorq(carry, carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7998
  subl(zlen, 4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  7999
  subl(len, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8000
  push(zlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8001
  push(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8002
  cmpl(len, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8003
  jccb(Assembler::lessEqual, L_second_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8004
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8005
  // Multiply an array by one 64 bit long.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8006
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8007
    op2 = rdxReg;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8008
    movq(op2, Address(x, len, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8009
    rorxq(op2, op2, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8010
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8011
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8012
    movq(op2, Address(x, len, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8013
    rorq(op2, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8014
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8015
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8016
  bind(L_third_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8017
  decrementl(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8018
  jccb(Assembler::negative, L_third_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8019
  decrementl(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8020
  jccb(Assembler::negative, L_last_x);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8021
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8022
  movq(op1, Address(x, len, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8023
  rorq(op1, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8024
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8025
  bind(L_multiply);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8026
  subl(zlen, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8027
  movq(sum, Address(z, zlen, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8028
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8029
  // Multiply 64 bit by 64 bit and add 64 bits lower half and upper 64 bits as carry.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8030
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8031
    multiply_add_64_bmi2(sum, op1, op2, carry, tmp2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8032
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8033
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8034
    multiply_add_64(sum, op1, op2, carry, rdxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8035
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8036
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8037
  movq(Address(z, zlen, Address::times_4, 0), sum);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8038
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8039
  jmp(L_third_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8040
  bind(L_third_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8041
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8042
  // Fourth loop
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8043
  // Add 64 bit long carry into z with carry propogation.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8044
  // Uses offsetted zlen.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8045
  add_one_64(z, zlen, carry, tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8046
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8047
  pop(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8048
  pop(zlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8049
  jmp(L_second_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8050
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8051
  // Next infrequent code is moved outside loops.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8052
  bind(L_last_x);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8053
  movl(op1, Address(x, 0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8054
  jmp(L_multiply);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8055
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8056
  bind(L_second_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8057
  pop(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8058
  pop(zlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8059
  pop(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8060
  pop(zlen);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8061
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8062
  // Fifth loop
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8063
  // Shift z left 1 bit.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8064
  lshift_by_1(x, len, z, zlen, tmp1, tmp2, tmp3, tmp4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8065
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8066
  // z[zlen-1] |= x[len-1] & 1;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8067
  movl(tmp3, Address(x, len, Address::times_4, -4));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8068
  andl(tmp3, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8069
  orl(Address(z, zlen, Address::times_4,  -4), tmp3);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8070
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8071
  pop(tmp5);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8072
  pop(tmp4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8073
  pop(tmp3);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8074
  pop(tmp2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8075
  pop(tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8076
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8077
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8078
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8079
 * Helper function for mul_add()
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8080
 * Multiply the in[] by int k and add to out[] starting at offset offs using
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8081
 * 128 bit by 32 bit multiply and return the carry in tmp5.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8082
 * Only quad int aligned length of in[] is operated on in this function.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8083
 * k is in rdxReg for BMI2Instructions, for others it is in tmp2.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8084
 * This function preserves out, in and k registers.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8085
 * len and offset point to the appropriate index in "in" & "out" correspondingly
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8086
 * tmp5 has the carry.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8087
 * other registers are temporary and are modified.
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8088
 *
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8089
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8090
void MacroAssembler::mul_add_128_x_32_loop(Register out, Register in,
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8091
  Register offset, Register len, Register tmp1, Register tmp2, Register tmp3,
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8092
  Register tmp4, Register tmp5, Register rdxReg, Register raxReg) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8093
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8094
  Label L_first_loop, L_first_loop_exit;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8095
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8096
  movl(tmp1, len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8097
  shrl(tmp1, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8098
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8099
  bind(L_first_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8100
  subl(tmp1, 1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8101
  jccb(Assembler::negative, L_first_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8102
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8103
  subl(len, 4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8104
  subl(offset, 4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8105
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8106
  Register op2 = tmp2;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8107
  const Register sum = tmp3;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8108
  const Register op1 = tmp4;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8109
  const Register carry = tmp5;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8110
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8111
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8112
    op2 = rdxReg;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8113
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8114
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8115
  movq(op1, Address(in, len, Address::times_4,  8));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8116
  rorq(op1, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8117
  movq(sum, Address(out, offset, Address::times_4,  8));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8118
  rorq(sum, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8119
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8120
    multiply_add_64_bmi2(sum, op1, op2, carry, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8121
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8122
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8123
    multiply_add_64(sum, op1, op2, carry, rdxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8124
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8125
  // Store back in big endian from little endian
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8126
  rorq(sum, 0x20);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8127
  movq(Address(out, offset, Address::times_4,  8), sum);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8128
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8129
  movq(op1, Address(in, len, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8130
  rorq(op1, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8131
  movq(sum, Address(out, offset, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8132
  rorq(sum, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8133
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8134
    multiply_add_64_bmi2(sum, op1, op2, carry, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8135
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8136
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8137
    multiply_add_64(sum, op1, op2, carry, rdxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8138
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8139
  // Store back in big endian from little endian
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8140
  rorq(sum, 0x20);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8141
  movq(Address(out, offset, Address::times_4,  0), sum);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8142
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8143
  jmp(L_first_loop);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8144
  bind(L_first_loop_exit);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8145
}
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8146
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8147
/**
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8148
 * Code for BigInteger::mulAdd() intrinsic
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8149
 *
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8150
 * rdi: out
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8151
 * rsi: in
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8152
 * r11: offs (out.length - offset)
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8153
 * rcx: len
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8154
 * r8:  k
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8155
 * r12: tmp1
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8156
 * r13: tmp2
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8157
 * r14: tmp3
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8158
 * r15: tmp4
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8159
 * rbx: tmp5
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8160
 * Multiply the in[] by word k and add to out[], return the carry in rax
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8161
 */
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8162
void MacroAssembler::mul_add(Register out, Register in, Register offs,
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8163
   Register len, Register k, Register tmp1, Register tmp2, Register tmp3,
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8164
   Register tmp4, Register tmp5, Register rdxReg, Register raxReg) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8165
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8166
  Label L_carry, L_last_in, L_done;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8167
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8168
// carry = 0;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8169
// for (int j=len-1; j >= 0; j--) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8170
//    long product = (in[j] & LONG_MASK) * kLong +
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8171
//                   (out[offs] & LONG_MASK) + carry;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8172
//    out[offs--] = (int)product;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8173
//    carry = product >>> 32;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8174
// }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8175
//
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8176
  push(tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8177
  push(tmp2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8178
  push(tmp3);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8179
  push(tmp4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8180
  push(tmp5);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8181
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8182
  Register op2 = tmp2;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8183
  const Register sum = tmp3;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8184
  const Register op1 = tmp4;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8185
  const Register carry =  tmp5;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8186
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8187
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8188
    op2 = rdxReg;
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8189
    movl(op2, k);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8190
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8191
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8192
    movl(op2, k);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8193
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8194
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8195
  xorq(carry, carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8196
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8197
  //First loop
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8198
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8199
  //Multiply in[] by k in a 4 way unrolled loop using 128 bit by 32 bit multiply
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8200
  //The carry is in tmp5
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8201
  mul_add_128_x_32_loop(out, in, offs, len, tmp1, tmp2, tmp3, tmp4, tmp5, rdxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8202
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8203
  //Multiply the trailing in[] entry using 64 bit by 32 bit, if any
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8204
  decrementl(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8205
  jccb(Assembler::negative, L_carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8206
  decrementl(len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8207
  jccb(Assembler::negative, L_last_in);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8208
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8209
  movq(op1, Address(in, len, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8210
  rorq(op1, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8211
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8212
  subl(offs, 2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8213
  movq(sum, Address(out, offs, Address::times_4,  0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8214
  rorq(sum, 32);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8215
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8216
  if (UseBMI2Instructions) {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8217
    multiply_add_64_bmi2(sum, op1, op2, carry, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8218
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8219
  else {
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8220
    multiply_add_64(sum, op1, op2, carry, rdxReg, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8221
  }
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8222
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8223
  // Store back in big endian from little endian
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8224
  rorq(sum, 0x20);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8225
  movq(Address(out, offs, Address::times_4,  0), sum);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8226
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8227
  testl(len, len);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8228
  jccb(Assembler::zero, L_carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8229
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8230
  //Multiply the last in[] entry, if any
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8231
  bind(L_last_in);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8232
  movl(op1, Address(in, 0));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8233
  movl(sum, Address(out, offs, Address::times_4,  -4));
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8234
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8235
  movl(raxReg, k);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8236
  mull(op1); //tmp4 * eax -> edx:eax
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8237
  addl(sum, carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8238
  adcl(rdxReg, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8239
  addl(sum, raxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8240
  adcl(rdxReg, 0);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8241
  movl(carry, rdxReg);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8242
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8243
  movl(Address(out, offs, Address::times_4,  -4), sum);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8244
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8245
  bind(L_carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8246
  //return tmp5/carry as carry in rax
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8247
  movl(rax, carry);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8248
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8249
  bind(L_done);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8250
  pop(tmp5);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8251
  pop(tmp4);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8252
  pop(tmp3);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8253
  pop(tmp2);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8254
  pop(tmp1);
02ee7609f0e1 8081778: Use Intel x64 CPU instructions for RSA acceleration
kvn
parents: 30773
diff changeset
  8255
}
26434
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  8256
#endif
09ad55e5f486 8055494: Add C2 x86 intrinsic for BigInteger::multiplyToLen() method
kvn
parents: 25932
diff changeset
  8257
18507
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8258
/**
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8259
 * Emits code to update CRC-32 with a byte value according to constants in table
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8260
 *
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8261
 * @param [in,out]crc   Register containing the crc.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8262
 * @param [in]val       Register containing the byte to fold into the CRC.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8263
 * @param [in]table     Register containing the table of crc constants.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8264
 *
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8265
 * uint32_t crc;
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8266
 * val = crc_table[(val ^ crc) & 0xFF];
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8267
 * crc = val ^ (crc >> 8);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8268
 *
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8269
 */
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8270
void MacroAssembler::update_byte_crc32(Register crc, Register val, Register table) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8271
  xorl(val, crc);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8272
  andl(val, 0xFF);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8273
  shrl(crc, 8); // unsigned shift
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8274
  xorl(crc, Address(table, val, Address::times_4, 0));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8275
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8276
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8277
/**
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8278
 * Fold 128-bit data chunk
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8279
 */
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8280
void MacroAssembler::fold_128bit_crc32(XMMRegister xcrc, XMMRegister xK, XMMRegister xtmp, Register buf, int offset) {
25932
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8281
  if (UseAVX > 0) {
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8282
    vpclmulhdq(xtmp, xK, xcrc); // [123:64]
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8283
    vpclmulldq(xcrc, xK, xcrc); // [63:0]
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  8284
    vpxor(xcrc, xcrc, Address(buf, offset), 0 /* vector_len */);
25932
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8285
    pxor(xcrc, xtmp);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8286
  } else {
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8287
    movdqa(xtmp, xcrc);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8288
    pclmulhdq(xtmp, xK);   // [123:64]
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8289
    pclmulldq(xcrc, xK);   // [63:0]
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8290
    pxor(xcrc, xtmp);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8291
    movdqu(xtmp, Address(buf, offset));
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8292
    pxor(xcrc, xtmp);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8293
  }
18507
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8294
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8295
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8296
void MacroAssembler::fold_128bit_crc32(XMMRegister xcrc, XMMRegister xK, XMMRegister xtmp, XMMRegister xbuf) {
25932
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8297
  if (UseAVX > 0) {
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8298
    vpclmulhdq(xtmp, xK, xcrc);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8299
    vpclmulldq(xcrc, xK, xcrc);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8300
    pxor(xcrc, xbuf);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8301
    pxor(xcrc, xtmp);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8302
  } else {
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8303
    movdqa(xtmp, xcrc);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8304
    pclmulhdq(xtmp, xK);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8305
    pclmulldq(xcrc, xK);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8306
    pxor(xcrc, xbuf);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8307
    pxor(xcrc, xtmp);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8308
  }
18507
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8309
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8310
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8311
/**
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8312
 * 8-bit folds to compute 32-bit CRC
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8313
 *
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8314
 * uint64_t xcrc;
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8315
 * timesXtoThe32[xcrc & 0xFF] ^ (xcrc >> 8);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8316
 */
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8317
void MacroAssembler::fold_8bit_crc32(XMMRegister xcrc, Register table, XMMRegister xtmp, Register tmp) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8318
  movdl(tmp, xcrc);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8319
  andl(tmp, 0xFF);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8320
  movdl(xtmp, Address(table, tmp, Address::times_4, 0));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8321
  psrldq(xcrc, 1); // unsigned shift one byte
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8322
  pxor(xcrc, xtmp);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8323
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8324
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8325
/**
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8326
 * uint32_t crc;
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8327
 * timesXtoThe32[crc & 0xFF] ^ (crc >> 8);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8328
 */
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8329
void MacroAssembler::fold_8bit_crc32(Register crc, Register table, Register tmp) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8330
  movl(tmp, crc);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8331
  andl(tmp, 0xFF);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8332
  shrl(crc, 8);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8333
  xorl(crc, Address(table, tmp, Address::times_4, 0));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8334
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8335
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8336
/**
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8337
 * @param crc   register containing existing CRC (32-bit)
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8338
 * @param buf   register pointing to input byte buffer (byte*)
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8339
 * @param len   register containing number of bytes
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8340
 * @param table register that will contain address of CRC table
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8341
 * @param tmp   scratch register
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8342
 */
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8343
void MacroAssembler::kernel_crc32(Register crc, Register buf, Register len, Register table, Register tmp) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8344
  assert_different_registers(crc, buf, len, table, tmp, rax);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8345
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8346
  Label L_tail, L_tail_restore, L_tail_loop, L_exit, L_align_loop, L_aligned;
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8347
  Label L_fold_tail, L_fold_128b, L_fold_512b, L_fold_512b_loop, L_fold_tail_loop;
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8348
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8349
  lea(table, ExternalAddress(StubRoutines::crc_table_addr()));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8350
  notl(crc); // ~crc
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8351
  cmpl(len, 16);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8352
  jcc(Assembler::less, L_tail);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8353
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8354
  // Align buffer to 16 bytes
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8355
  movl(tmp, buf);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8356
  andl(tmp, 0xF);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8357
  jccb(Assembler::zero, L_aligned);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8358
  subl(tmp,  16);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8359
  addl(len, tmp);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8360
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8361
  align(4);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8362
  BIND(L_align_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8363
  movsbl(rax, Address(buf, 0)); // load byte with sign extension
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8364
  update_byte_crc32(crc, rax, table);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8365
  increment(buf);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8366
  incrementl(tmp);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8367
  jccb(Assembler::less, L_align_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8368
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8369
  BIND(L_aligned);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8370
  movl(tmp, len); // save
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8371
  shrl(len, 4);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8372
  jcc(Assembler::zero, L_tail_restore);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8373
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8374
  // Fold crc into first bytes of vector
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8375
  movdqa(xmm1, Address(buf, 0));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8376
  movdl(rax, xmm1);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8377
  xorl(crc, rax);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8378
  pinsrd(xmm1, crc, 0);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8379
  addptr(buf, 16);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8380
  subl(len, 4); // len > 0
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8381
  jcc(Assembler::less, L_fold_tail);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8382
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8383
  movdqa(xmm2, Address(buf,  0));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8384
  movdqa(xmm3, Address(buf, 16));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8385
  movdqa(xmm4, Address(buf, 32));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8386
  addptr(buf, 48);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8387
  subl(len, 3);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8388
  jcc(Assembler::lessEqual, L_fold_512b);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8389
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8390
  // Fold total 512 bits of polynomial on each iteration,
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8391
  // 128 bits per each of 4 parallel streams.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8392
  movdqu(xmm0, ExternalAddress(StubRoutines::x86::crc_by128_masks_addr() + 32));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8393
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8394
  align(32);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8395
  BIND(L_fold_512b_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8396
  fold_128bit_crc32(xmm1, xmm0, xmm5, buf,  0);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8397
  fold_128bit_crc32(xmm2, xmm0, xmm5, buf, 16);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8398
  fold_128bit_crc32(xmm3, xmm0, xmm5, buf, 32);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8399
  fold_128bit_crc32(xmm4, xmm0, xmm5, buf, 48);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8400
  addptr(buf, 64);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8401
  subl(len, 4);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8402
  jcc(Assembler::greater, L_fold_512b_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8403
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8404
  // Fold 512 bits to 128 bits.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8405
  BIND(L_fold_512b);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8406
  movdqu(xmm0, ExternalAddress(StubRoutines::x86::crc_by128_masks_addr() + 16));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8407
  fold_128bit_crc32(xmm1, xmm0, xmm5, xmm2);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8408
  fold_128bit_crc32(xmm1, xmm0, xmm5, xmm3);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8409
  fold_128bit_crc32(xmm1, xmm0, xmm5, xmm4);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8410
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8411
  // Fold the rest of 128 bits data chunks
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8412
  BIND(L_fold_tail);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8413
  addl(len, 3);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8414
  jccb(Assembler::lessEqual, L_fold_128b);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8415
  movdqu(xmm0, ExternalAddress(StubRoutines::x86::crc_by128_masks_addr() + 16));
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8416
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8417
  BIND(L_fold_tail_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8418
  fold_128bit_crc32(xmm1, xmm0, xmm5, buf,  0);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8419
  addptr(buf, 16);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8420
  decrementl(len);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8421
  jccb(Assembler::greater, L_fold_tail_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8422
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8423
  // Fold 128 bits in xmm1 down into 32 bits in crc register.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8424
  BIND(L_fold_128b);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8425
  movdqu(xmm0, ExternalAddress(StubRoutines::x86::crc_by128_masks_addr()));
25932
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8426
  if (UseAVX > 0) {
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8427
    vpclmulqdq(xmm2, xmm0, xmm1, 0x1);
30624
2e1803c8a26d 8076276: Add support for AVX512
kvn
parents: 30310
diff changeset
  8428
    vpand(xmm3, xmm0, xmm2, 0 /* vector_len */);
25932
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8429
    vpclmulqdq(xmm0, xmm0, xmm3, 0x1);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8430
  } else {
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8431
    movdqa(xmm2, xmm0);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8432
    pclmulqdq(xmm2, xmm1, 0x1);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8433
    movdqa(xmm3, xmm0);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8434
    pand(xmm3, xmm2);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8435
    pclmulqdq(xmm0, xmm3, 0x1);
15d133edd8f6 8052081: Optimize generated by C2 code for Intel's Atom processor
kvn
parents: 24424
diff changeset
  8436
  }
18507
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8437
  psrldq(xmm1, 8);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8438
  psrldq(xmm2, 4);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8439
  pxor(xmm0, xmm1);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8440
  pxor(xmm0, xmm2);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8441
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8442
  // 8 8-bit folds to compute 32-bit CRC.
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8443
  for (int j = 0; j < 4; j++) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8444
    fold_8bit_crc32(xmm0, table, xmm1, rax);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8445
  }
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8446
  movdl(crc, xmm0); // mov 32 bits to general register
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8447
  for (int j = 0; j < 4; j++) {
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8448
    fold_8bit_crc32(crc, table, rax);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8449
  }
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8450
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8451
  BIND(L_tail_restore);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8452
  movl(len, tmp); // restore
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8453
  BIND(L_tail);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8454
  andl(len, 0xf);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8455
  jccb(Assembler::zero, L_exit);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8456
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8457
  // Fold the rest of bytes
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8458
  align(4);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8459
  BIND(L_tail_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8460
  movsbl(rax, Address(buf, 0)); // load byte with sign extension
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8461
  update_byte_crc32(crc, rax, table);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8462
  increment(buf);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8463
  decrementl(len);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8464
  jccb(Assembler::greater, L_tail_loop);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8465
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8466
  BIND(L_exit);
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8467
  notl(crc); // ~c
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8468
}
61bfc8995bb3 7088419: Use x86 Hardware CRC32 Instruction with java.util.zip.CRC32
drchase
parents: 16624
diff changeset
  8469
14626
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8470
#undef BIND
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8471
#undef BLOCK_COMMENT
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8472
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8473
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8474
Assembler::Condition MacroAssembler::negate_condition(Assembler::Condition cond) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8475
  switch (cond) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8476
    // Note some conditions are synonyms for others
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8477
    case Assembler::zero:         return Assembler::notZero;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8478
    case Assembler::notZero:      return Assembler::zero;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8479
    case Assembler::less:         return Assembler::greaterEqual;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8480
    case Assembler::lessEqual:    return Assembler::greater;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8481
    case Assembler::greater:      return Assembler::lessEqual;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8482
    case Assembler::greaterEqual: return Assembler::less;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8483
    case Assembler::below:        return Assembler::aboveEqual;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8484
    case Assembler::belowEqual:   return Assembler::above;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8485
    case Assembler::above:        return Assembler::belowEqual;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8486
    case Assembler::aboveEqual:   return Assembler::below;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8487
    case Assembler::overflow:     return Assembler::noOverflow;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8488
    case Assembler::noOverflow:   return Assembler::overflow;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8489
    case Assembler::negative:     return Assembler::positive;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8490
    case Assembler::positive:     return Assembler::negative;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8491
    case Assembler::parity:       return Assembler::noParity;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8492
    case Assembler::noParity:     return Assembler::parity;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8493
  }
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8494
  ShouldNotReachHere(); return Assembler::overflow;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8495
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8496
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8497
SkipIfEqual::SkipIfEqual(
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8498
    MacroAssembler* masm, const bool* flag_addr, bool value) {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8499
  _masm = masm;
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8500
  _masm->cmp8(ExternalAddress((address)flag_addr), value);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8501
  _masm->jcc(Assembler::equal, _label);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8502
}
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8503
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8504
SkipIfEqual::~SkipIfEqual() {
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8505
  _masm->bind(_label);
0cf4eccf130f 8003240: x86: move MacroAssembler into separate file
twisti
parents:
diff changeset
  8506
}