hotspot/src/cpu/x86/vm/jniFastGetField_x86_32.cpp
author trims
Thu, 12 Mar 2009 18:16:36 -0700
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child 5547 f4b087cbb361
permissions -rw-r--r--
Merge
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/*
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 * Copyright 2004-2008 Sun Microsystems, Inc.  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 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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 * CA 95054 USA or visit www.sun.com if you need additional information or
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 * have any questions.
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 *
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 */
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# include "incls/_precompiled.incl"
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# include "incls/_jniFastGetField_x86_32.cpp.incl"
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#define __ masm->
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#define BUFFER_SIZE 30
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#ifdef _WINDOWS
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GetBooleanField_t JNI_FastGetField::jni_fast_GetBooleanField_fp;
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GetByteField_t    JNI_FastGetField::jni_fast_GetByteField_fp;
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GetCharField_t    JNI_FastGetField::jni_fast_GetCharField_fp;
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GetShortField_t   JNI_FastGetField::jni_fast_GetShortField_fp;
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GetIntField_t     JNI_FastGetField::jni_fast_GetIntField_fp;
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GetLongField_t    JNI_FastGetField::jni_fast_GetLongField_fp;
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GetFloatField_t   JNI_FastGetField::jni_fast_GetFloatField_fp;
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GetDoubleField_t  JNI_FastGetField::jni_fast_GetDoubleField_fp;
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#endif
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// Instead of issuing lfence for LoadLoad barrier, we create data dependency
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// between loads, which is much more efficient than lfence.
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address JNI_FastGetField::generate_fast_get_int_field0(BasicType type) {
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  const char *name;
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  switch (type) {
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    case T_BOOLEAN: name = "jni_fast_GetBooleanField"; break;
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    case T_BYTE:    name = "jni_fast_GetByteField";    break;
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    case T_CHAR:    name = "jni_fast_GetCharField";    break;
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    case T_SHORT:   name = "jni_fast_GetShortField";   break;
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    case T_INT:     name = "jni_fast_GetIntField";     break;
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    default:        ShouldNotReachHere();
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  }
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  ResourceMark rm;
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  BufferBlob* b = BufferBlob::create(name, BUFFER_SIZE*wordSize);
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  address fast_entry = b->instructions_begin();
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  CodeBuffer cbuf(fast_entry, b->instructions_size());
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  MacroAssembler* masm = new MacroAssembler(&cbuf);
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  Label slow;
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  // stack layout:    offset from rsp (in words):
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  //  return pc        0
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  //  jni env          1
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  //  obj              2
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  //  jfieldID         3
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  ExternalAddress counter(SafepointSynchronize::safepoint_counter_addr());
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  __ mov32 (rcx, counter);
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  __ testb (rcx, 1);
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  __ jcc (Assembler::notZero, slow);
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  if (os::is_MP()) {
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    __ mov(rax, rcx);
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    __ andptr(rax, 1);                         // rax, must end up 0
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    __ movptr(rdx, Address(rsp, rax, Address::times_1, 2*wordSize));
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                                              // obj, notice rax, is 0.
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                                              // rdx is data dependent on rcx.
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  } else {
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    __ movptr (rdx, Address(rsp, 2*wordSize));  // obj
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  }
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  __ movptr(rax, Address(rsp, 3*wordSize));  // jfieldID
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  __ movptr(rdx, Address(rdx, 0));           // *obj
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  __ shrptr (rax, 2);                         // offset
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  assert(count < LIST_CAPACITY, "LIST_CAPACITY too small");
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  speculative_load_pclist[count] = __ pc();
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  switch (type) {
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    case T_BOOLEAN: __ movzbl (rax, Address(rdx, rax, Address::times_1)); break;
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    case T_BYTE:    __ movsbl (rax, Address(rdx, rax, Address::times_1)); break;
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    case T_CHAR:    __ movzwl (rax, Address(rdx, rax, Address::times_1)); break;
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    case T_SHORT:   __ movswl (rax, Address(rdx, rax, Address::times_1)); break;
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    case T_INT:     __ movl   (rax, Address(rdx, rax, Address::times_1)); break;
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    default:        ShouldNotReachHere();
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  }
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  Address ca1;
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  if (os::is_MP()) {
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    __ lea(rdx, counter);
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    __ xorptr(rdx, rax);
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    __ xorptr(rdx, rax);
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    __ cmp32(rcx, Address(rdx, 0));
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    // ca1 is the same as ca because
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    // rax, ^ counter_addr ^ rax, = address
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    // ca1 is data dependent on rax,.
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  } else {
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    __ cmp32(rcx, counter);
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  }
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  __ jcc (Assembler::notEqual, slow);
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#ifndef _WINDOWS
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  __ ret (0);
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#else
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  // __stdcall calling convention
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  __ ret (3*wordSize);
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#endif
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  slowcase_entry_pclist[count++] = __ pc();
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  __ bind (slow);
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  address slow_case_addr;
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  switch (type) {
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    case T_BOOLEAN: slow_case_addr = jni_GetBooleanField_addr(); break;
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    case T_BYTE:    slow_case_addr = jni_GetByteField_addr();    break;
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    case T_CHAR:    slow_case_addr = jni_GetCharField_addr();    break;
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    case T_SHORT:   slow_case_addr = jni_GetShortField_addr();   break;
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    case T_INT:     slow_case_addr = jni_GetIntField_addr();
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  }
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  // tail call
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  __ jump (ExternalAddress(slow_case_addr));
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  __ flush ();
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#ifndef _WINDOWS
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  return fast_entry;
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#else
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  switch (type) {
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    case T_BOOLEAN: jni_fast_GetBooleanField_fp = (GetBooleanField_t)fast_entry; break;
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    case T_BYTE:    jni_fast_GetByteField_fp = (GetByteField_t)fast_entry; break;
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    case T_CHAR:    jni_fast_GetCharField_fp = (GetCharField_t)fast_entry; break;
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    case T_SHORT:   jni_fast_GetShortField_fp = (GetShortField_t)fast_entry; break;
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    case T_INT:     jni_fast_GetIntField_fp = (GetIntField_t)fast_entry;
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  }
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  return os::win32::fast_jni_accessor_wrapper(type);
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#endif
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}
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address JNI_FastGetField::generate_fast_get_boolean_field() {
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  return generate_fast_get_int_field0(T_BOOLEAN);
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}
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address JNI_FastGetField::generate_fast_get_byte_field() {
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  return generate_fast_get_int_field0(T_BYTE);
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}
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address JNI_FastGetField::generate_fast_get_char_field() {
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  return generate_fast_get_int_field0(T_CHAR);
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}
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address JNI_FastGetField::generate_fast_get_short_field() {
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  return generate_fast_get_int_field0(T_SHORT);
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}
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address JNI_FastGetField::generate_fast_get_int_field() {
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  return generate_fast_get_int_field0(T_INT);
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}
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address JNI_FastGetField::generate_fast_get_long_field() {
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  const char *name = "jni_fast_GetLongField";
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  ResourceMark rm;
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  BufferBlob* b = BufferBlob::create(name, BUFFER_SIZE*wordSize);
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  address fast_entry = b->instructions_begin();
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  CodeBuffer cbuf(fast_entry, b->instructions_size());
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  MacroAssembler* masm = new MacroAssembler(&cbuf);
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  Label slow;
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  // stack layout:    offset from rsp (in words):
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  //  old rsi          0
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  //  return pc        1
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  //  jni env          2
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  //  obj              3
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  //  jfieldID         4
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  ExternalAddress counter(SafepointSynchronize::safepoint_counter_addr());
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  __ push  (rsi);
1
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  __ mov32 (rcx, counter);
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  __ testb (rcx, 1);
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  __ jcc (Assembler::notZero, slow);
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  if (os::is_MP()) {
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    __ mov(rax, rcx);
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    __ andptr(rax, 1);                         // rax, must end up 0
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    __ movptr(rdx, Address(rsp, rax, Address::times_1, 3*wordSize));
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                                              // obj, notice rax, is 0.
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                                              // rdx is data dependent on rcx.
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  } else {
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    __ movptr(rdx, Address(rsp, 3*wordSize));  // obj
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  }
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  __ movptr(rsi, Address(rsp, 4*wordSize));  // jfieldID
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  __ movptr(rdx, Address(rdx, 0));           // *obj
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  __ shrptr(rsi, 2);                         // offset
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  assert(count < LIST_CAPACITY-1, "LIST_CAPACITY too small");
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  speculative_load_pclist[count++] = __ pc();
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  __ movptr(rax, Address(rdx, rsi, Address::times_1));
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#ifndef _LP64
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  speculative_load_pclist[count] = __ pc();
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  __ movl(rdx, Address(rdx, rsi, Address::times_1, 4));
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#endif // _LP64
1
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  if (os::is_MP()) {
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    __ lea(rsi, counter);
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    __ xorptr(rsi, rdx);
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    __ xorptr(rsi, rax);
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    __ xorptr(rsi, rdx);
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    __ xorptr(rsi, rax);
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    __ cmp32(rcx, Address(rsi, 0));
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    // ca1 is the same as ca because
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    // rax, ^ rdx ^ counter_addr ^ rax, ^ rdx = address
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    // ca1 is data dependent on both rax, and rdx.
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  } else {
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    __ cmp32(rcx, counter);
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  }
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  __ jcc (Assembler::notEqual, slow);
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  __ pop (rsi);
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#ifndef _WINDOWS
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  __ ret (0);
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#else
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  // __stdcall calling convention
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  __ ret (3*wordSize);
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#endif
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  slowcase_entry_pclist[count-1] = __ pc();
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  slowcase_entry_pclist[count++] = __ pc();
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  __ bind (slow);
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  __ pop  (rsi);
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  address slow_case_addr = jni_GetLongField_addr();;
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  // tail call
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  __ jump (ExternalAddress(slow_case_addr));
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  __ flush ();
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#ifndef _WINDOWS
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  return fast_entry;
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#else
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  jni_fast_GetLongField_fp = (GetLongField_t)fast_entry;
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  return os::win32::fast_jni_accessor_wrapper(T_LONG);
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#endif
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}
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address JNI_FastGetField::generate_fast_get_float_field0(BasicType type) {
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  const char *name;
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  switch (type) {
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    case T_FLOAT:  name = "jni_fast_GetFloatField";  break;
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    case T_DOUBLE: name = "jni_fast_GetDoubleField"; break;
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    default:       ShouldNotReachHere();
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  }
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  ResourceMark rm;
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  BufferBlob* b = BufferBlob::create(name, BUFFER_SIZE*wordSize);
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  address fast_entry = b->instructions_begin();
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  CodeBuffer cbuf(fast_entry, b->instructions_size());
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  MacroAssembler* masm = new MacroAssembler(&cbuf);
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  Label slow_with_pop, slow;
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  // stack layout:    offset from rsp (in words):
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  //  return pc        0
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  //  jni env          1
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  //  obj              2
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  //  jfieldID         3
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  ExternalAddress counter(SafepointSynchronize::safepoint_counter_addr());
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  __ mov32 (rcx, counter);
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  __ testb (rcx, 1);
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  __ jcc (Assembler::notZero, slow);
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  if (os::is_MP()) {
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    __ mov(rax, rcx);
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    __ andptr(rax, 1);                         // rax, must end up 0
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    __ movptr(rdx, Address(rsp, rax, Address::times_1, 2*wordSize));
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                                              // obj, notice rax, is 0.
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                                              // rdx is data dependent on rcx.
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  } else {
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    __ movptr(rdx, Address(rsp, 2*wordSize)); // obj
1
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  }
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  __ movptr(rax, Address(rsp, 3*wordSize));  // jfieldID
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  __ movptr(rdx, Address(rdx, 0));           // *obj
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  __ shrptr(rax, 2);                         // offset
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  assert(count < LIST_CAPACITY, "LIST_CAPACITY too small");
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  speculative_load_pclist[count] = __ pc();
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  switch (type) {
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#ifndef _LP64
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    case T_FLOAT:  __ fld_s (Address(rdx, rax, Address::times_1)); break;
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    case T_DOUBLE: __ fld_d (Address(rdx, rax, Address::times_1)); break;
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#else
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    case T_FLOAT:  __ movflt (xmm0, Address(robj, roffset, Address::times_1)); break;
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    case T_DOUBLE: __ movdbl (xmm0, Address(robj, roffset, Address::times_1)); break;
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#endif // _LP64
1
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    default:       ShouldNotReachHere();
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  }
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  Address ca1;
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  if (os::is_MP()) {
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    __ fst_s (Address(rsp, -4));
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    __ lea(rdx, counter);
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    __ movl (rax, Address(rsp, -4));
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    // garbage hi-order bits on 64bit are harmless.
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    __ xorptr(rdx, rax);
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    __ xorptr(rdx, rax);
1
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    __ cmp32(rcx, Address(rdx, 0));
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                                          // rax, ^ counter_addr ^ rax, = address
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                                          // ca1 is data dependent on the field
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                                          // access.
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  } else {
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    __ cmp32(rcx, counter);
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  }
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  __ jcc (Assembler::notEqual, slow_with_pop);
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   322
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   323
#ifndef _WINDOWS
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  __ ret (0);
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   325
#else
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  // __stdcall calling convention
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  __ ret (3*wordSize);
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   328
#endif
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   329
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  __ bind (slow_with_pop);
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   331
  // invalid load. pop FPU stack.
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  __ fstp_d (0);
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   333
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  slowcase_entry_pclist[count++] = __ pc();
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  __ bind (slow);
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  address slow_case_addr;
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  switch (type) {
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    case T_FLOAT:  slow_case_addr = jni_GetFloatField_addr();  break;
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   339
    case T_DOUBLE: slow_case_addr = jni_GetDoubleField_addr(); break;
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    default:       ShouldNotReachHere();
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   341
  }
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  // tail call
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  __ jump (ExternalAddress(slow_case_addr));
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   344
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  __ flush ();
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   346
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   347
#ifndef _WINDOWS
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  return fast_entry;
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   349
#else
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   350
  switch (type) {
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   351
    case T_FLOAT:  jni_fast_GetFloatField_fp = (GetFloatField_t)fast_entry; break;
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    case T_DOUBLE: jni_fast_GetDoubleField_fp = (GetDoubleField_t)fast_entry;
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  }
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   354
  return os::win32::fast_jni_accessor_wrapper(type);
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   355
#endif
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   356
}
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   357
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   358
address JNI_FastGetField::generate_fast_get_float_field() {
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   359
  return generate_fast_get_float_field0(T_FLOAT);
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}
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   361
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   362
address JNI_FastGetField::generate_fast_get_double_field() {
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   363
  return generate_fast_get_float_field0(T_DOUBLE);
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   364
}