hotspot/src/share/vm/opto/divnode.cpp
author rasbold
Tue, 14 Oct 2008 06:58:58 -0700
changeset 1436 6869d58f4f58
parent 1432 44f076e3d2a4
child 2031 24e034f56dcb
permissions -rw-r--r--
6717150: improper constant folding of subnormal strictfp multiplications and divides Summary: suppress constant folding of double divides and multiplications on ia32 Reviewed-by: never
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/*
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 * Copyright 1997-2008 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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// Portions of code courtesy of Clifford Click
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// Optimization - Graph Style
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#include "incls/_precompiled.incl"
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#include "incls/_divnode.cpp.incl"
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#include <math.h>
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//----------------------magic_int_divide_constants-----------------------------
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// Compute magic multiplier and shift constant for converting a 32 bit divide
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// by constant into a multiply/shift/add series. Return false if calculations
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// fail.
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//
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// Borrowed almost verbatum from Hacker's Delight by Henry S. Warren, Jr. with
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// minor type name and parameter changes.
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static bool magic_int_divide_constants(jint d, jint &M, jint &s) {
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  int32_t p;
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  uint32_t ad, anc, delta, q1, r1, q2, r2, t;
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  const uint32_t two31 = 0x80000000L;     // 2**31.
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  ad = ABS(d);
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  if (d == 0 || d == 1) return false;
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  t = two31 + ((uint32_t)d >> 31);
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  anc = t - 1 - t%ad;     // Absolute value of nc.
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  p = 31;                 // Init. p.
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  q1 = two31/anc;         // Init. q1 = 2**p/|nc|.
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  r1 = two31 - q1*anc;    // Init. r1 = rem(2**p, |nc|).
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  q2 = two31/ad;          // Init. q2 = 2**p/|d|.
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  r2 = two31 - q2*ad;     // Init. r2 = rem(2**p, |d|).
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  do {
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    p = p + 1;
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    q1 = 2*q1;            // Update q1 = 2**p/|nc|.
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    r1 = 2*r1;            // Update r1 = rem(2**p, |nc|).
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    if (r1 >= anc) {      // (Must be an unsigned
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      q1 = q1 + 1;        // comparison here).
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      r1 = r1 - anc;
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    }
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    q2 = 2*q2;            // Update q2 = 2**p/|d|.
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    r2 = 2*r2;            // Update r2 = rem(2**p, |d|).
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    if (r2 >= ad) {       // (Must be an unsigned
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      q2 = q2 + 1;        // comparison here).
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      r2 = r2 - ad;
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    }
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    delta = ad - r2;
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  } while (q1 < delta || (q1 == delta && r1 == 0));
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  M = q2 + 1;
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  if (d < 0) M = -M;      // Magic number and
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  s = p - 32;             // shift amount to return.
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  return true;
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}
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//--------------------------transform_int_divide-------------------------------
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// Convert a division by constant divisor into an alternate Ideal graph.
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// Return NULL if no transformation occurs.
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static Node *transform_int_divide( PhaseGVN *phase, Node *dividend, jint divisor ) {
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  // Check for invalid divisors
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  assert( divisor != 0 && divisor != min_jint,
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          "bad divisor for transforming to long multiply" );
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  bool d_pos = divisor >= 0;
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  jint d = d_pos ? divisor : -divisor;
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  const int N = 32;
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  // Result
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  Node *q = NULL;
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  if (d == 1) {
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    // division by +/- 1
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    if (!d_pos) {
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      // Just negate the value
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      q = new (phase->C, 3) SubINode(phase->intcon(0), dividend);
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    }
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  } else if ( is_power_of_2(d) ) {
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    // division by +/- a power of 2
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    // See if we can simply do a shift without rounding
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    bool needs_rounding = true;
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    const Type *dt = phase->type(dividend);
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    const TypeInt *dti = dt->isa_int();
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    if (dti && dti->_lo >= 0) {
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      // we don't need to round a positive dividend
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      needs_rounding = false;
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    } else if( dividend->Opcode() == Op_AndI ) {
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      // An AND mask of sufficient size clears the low bits and
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      // I can avoid rounding.
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      const TypeInt *andconi_t = phase->type( dividend->in(2) )->isa_int();
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      if( andconi_t && andconi_t->is_con() ) {
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        jint andconi = andconi_t->get_con();
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        if( andconi < 0 && is_power_of_2(-andconi) && (-andconi) >= d ) {
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          dividend = dividend->in(1);
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          needs_rounding = false;
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        }
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      }
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    }
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    // Add rounding to the shift to handle the sign bit
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    int l = log2_intptr(d-1)+1;
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    if (needs_rounding) {
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      // Divide-by-power-of-2 can be made into a shift, but you have to do
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      // more math for the rounding.  You need to add 0 for positive
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      // numbers, and "i-1" for negative numbers.  Example: i=4, so the
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      // shift is by 2.  You need to add 3 to negative dividends and 0 to
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      // positive ones.  So (-7+3)>>2 becomes -1, (-4+3)>>2 becomes -1,
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      // (-2+3)>>2 becomes 0, etc.
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      // Compute 0 or -1, based on sign bit
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      Node *sign = phase->transform(new (phase->C, 3) RShiftINode(dividend, phase->intcon(N - 1)));
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      // Mask sign bit to the low sign bits
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      Node *round = phase->transform(new (phase->C, 3) URShiftINode(sign, phase->intcon(N - l)));
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      // Round up before shifting
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      dividend = phase->transform(new (phase->C, 3) AddINode(dividend, round));
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    }
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    // Shift for division
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    q = new (phase->C, 3) RShiftINode(dividend, phase->intcon(l));
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    if (!d_pos) {
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      q = new (phase->C, 3) SubINode(phase->intcon(0), phase->transform(q));
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    }
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  } else {
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    // Attempt the jint constant divide -> multiply transform found in
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    //   "Division by Invariant Integers using Multiplication"
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    //     by Granlund and Montgomery
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    // See also "Hacker's Delight", chapter 10 by Warren.
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    jint magic_const;
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    jint shift_const;
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    if (magic_int_divide_constants(d, magic_const, shift_const)) {
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      Node *magic = phase->longcon(magic_const);
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      Node *dividend_long = phase->transform(new (phase->C, 2) ConvI2LNode(dividend));
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      // Compute the high half of the dividend x magic multiplication
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      Node *mul_hi = phase->transform(new (phase->C, 3) MulLNode(dividend_long, magic));
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      if (magic_const < 0) {
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        mul_hi = phase->transform(new (phase->C, 3) RShiftLNode(mul_hi, phase->intcon(N)));
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        mul_hi = phase->transform(new (phase->C, 2) ConvL2INode(mul_hi));
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        // The magic multiplier is too large for a 32 bit constant. We've adjusted
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        // it down by 2^32, but have to add 1 dividend back in after the multiplication.
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        // This handles the "overflow" case described by Granlund and Montgomery.
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        mul_hi = phase->transform(new (phase->C, 3) AddINode(dividend, mul_hi));
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        // Shift over the (adjusted) mulhi
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        if (shift_const != 0) {
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          mul_hi = phase->transform(new (phase->C, 3) RShiftINode(mul_hi, phase->intcon(shift_const)));
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        }
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      } else {
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        // No add is required, we can merge the shifts together.
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        mul_hi = phase->transform(new (phase->C, 3) RShiftLNode(mul_hi, phase->intcon(N + shift_const)));
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        mul_hi = phase->transform(new (phase->C, 2) ConvL2INode(mul_hi));
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      }
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      // Get a 0 or -1 from the sign of the dividend.
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      Node *addend0 = mul_hi;
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      Node *addend1 = phase->transform(new (phase->C, 3) RShiftINode(dividend, phase->intcon(N-1)));
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      // If the divisor is negative, swap the order of the input addends;
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      // this has the effect of negating the quotient.
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      if (!d_pos) {
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        Node *temp = addend0; addend0 = addend1; addend1 = temp;
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      }
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      // Adjust the final quotient by subtracting -1 (adding 1)
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      // from the mul_hi.
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      q = new (phase->C, 3) SubINode(addend0, addend1);
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    }
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  }
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  return q;
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}
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//---------------------magic_long_divide_constants-----------------------------
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// Compute magic multiplier and shift constant for converting a 64 bit divide
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// by constant into a multiply/shift/add series. Return false if calculations
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// fail.
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//
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// Borrowed almost verbatum from Hacker's Delight by Henry S. Warren, Jr. with
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// minor type name and parameter changes.  Adjusted to 64 bit word width.
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static bool magic_long_divide_constants(jlong d, jlong &M, jint &s) {
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  int64_t p;
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  uint64_t ad, anc, delta, q1, r1, q2, r2, t;
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  const uint64_t two63 = 0x8000000000000000LL;     // 2**63.
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  ad = ABS(d);
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  if (d == 0 || d == 1) return false;
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  t = two63 + ((uint64_t)d >> 63);
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  anc = t - 1 - t%ad;     // Absolute value of nc.
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  p = 63;                 // Init. p.
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  q1 = two63/anc;         // Init. q1 = 2**p/|nc|.
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  r1 = two63 - q1*anc;    // Init. r1 = rem(2**p, |nc|).
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  q2 = two63/ad;          // Init. q2 = 2**p/|d|.
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  r2 = two63 - q2*ad;     // Init. r2 = rem(2**p, |d|).
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  do {
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    p = p + 1;
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    q1 = 2*q1;            // Update q1 = 2**p/|nc|.
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    r1 = 2*r1;            // Update r1 = rem(2**p, |nc|).
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    if (r1 >= anc) {      // (Must be an unsigned
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      q1 = q1 + 1;        // comparison here).
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      r1 = r1 - anc;
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    }
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    q2 = 2*q2;            // Update q2 = 2**p/|d|.
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    r2 = 2*r2;            // Update r2 = rem(2**p, |d|).
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    if (r2 >= ad) {       // (Must be an unsigned
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      q2 = q2 + 1;        // comparison here).
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      r2 = r2 - ad;
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    }
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    delta = ad - r2;
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  } while (q1 < delta || (q1 == delta && r1 == 0));
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  M = q2 + 1;
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  if (d < 0) M = -M;      // Magic number and
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  s = p - 64;             // shift amount to return.
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  return true;
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}
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//---------------------long_by_long_mulhi--------------------------------------
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// Generate ideal node graph for upper half of a 64 bit x 64 bit multiplication
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static Node *long_by_long_mulhi( PhaseGVN *phase, Node *dividend, jlong magic_const) {
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  // If the architecture supports a 64x64 mulhi, there is
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  // no need to synthesize it in ideal nodes.
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  if (Matcher::has_match_rule(Op_MulHiL)) {
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    Node *v = phase->longcon(magic_const);
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    return new (phase->C, 3) MulHiLNode(dividend, v);
1
489c9b5090e2 Initial load
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  }
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  const int N = 64;
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  Node *u_hi = phase->transform(new (phase->C, 3) RShiftLNode(dividend, phase->intcon(N / 2)));
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  Node *u_lo = phase->transform(new (phase->C, 3) AndLNode(dividend, phase->longcon(0xFFFFFFFF)));
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  Node *v_hi = phase->longcon(magic_const >> N/2);
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  Node *v_lo = phase->longcon(magic_const & 0XFFFFFFFF);
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  Node *hihi_product = phase->transform(new (phase->C, 3) MulLNode(u_hi, v_hi));
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  Node *hilo_product = phase->transform(new (phase->C, 3) MulLNode(u_hi, v_lo));
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  Node *lohi_product = phase->transform(new (phase->C, 3) MulLNode(u_lo, v_hi));
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  Node *lolo_product = phase->transform(new (phase->C, 3) MulLNode(u_lo, v_lo));
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  Node *t1 = phase->transform(new (phase->C, 3) URShiftLNode(lolo_product, phase->intcon(N / 2)));
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  Node *t2 = phase->transform(new (phase->C, 3) AddLNode(hilo_product, t1));
1056
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  // Construct both t3 and t4 before transforming so t2 doesn't go dead
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  // prematurely.
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  Node *t3 = new (phase->C, 3) RShiftLNode(t2, phase->intcon(N / 2));
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  Node *t4 = new (phase->C, 3) AndLNode(t2, phase->longcon(0xFFFFFFFF));
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  t3 = phase->transform(t3);
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  t4 = phase->transform(t4);
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  Node *t5 = phase->transform(new (phase->C, 3) AddLNode(t4, lohi_product));
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  Node *t6 = phase->transform(new (phase->C, 3) RShiftLNode(t5, phase->intcon(N / 2)));
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  Node *t7 = phase->transform(new (phase->C, 3) AddLNode(t3, hihi_product));
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  return new (phase->C, 3) AddLNode(t7, t6);
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}
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//--------------------------transform_long_divide------------------------------
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// Convert a division by constant divisor into an alternate Ideal graph.
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// Return NULL if no transformation occurs.
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static Node *transform_long_divide( PhaseGVN *phase, Node *dividend, jlong divisor ) {
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  // Check for invalid divisors
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  assert( divisor != 0L && divisor != min_jlong,
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          "bad divisor for transforming to long multiply" );
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  bool d_pos = divisor >= 0;
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  jlong d = d_pos ? divisor : -divisor;
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  const int N = 64;
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  // Result
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  Node *q = NULL;
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  if (d == 1) {
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    // division by +/- 1
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    if (!d_pos) {
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      // Just negate the value
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      q = new (phase->C, 3) SubLNode(phase->longcon(0), dividend);
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    }
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diff changeset
   307
  } else if ( is_power_of_2_long(d) ) {
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   308
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
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diff changeset
   309
    // division by +/- a power of 2
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   310
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   311
    // See if we can simply do a shift without rounding
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   312
    bool needs_rounding = true;
0b3167e2f2de 6603011: RFE: Optimize long division
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diff changeset
   313
    const Type *dt = phase->type(dividend);
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   314
    const TypeLong *dtl = dt->isa_long();
1
489c9b5090e2 Initial load
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parents:
diff changeset
   315
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   316
    if (dtl && dtl->_lo > 0) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   317
      // we don't need to round a positive dividend
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   318
      needs_rounding = false;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   319
    } else if( dividend->Opcode() == Op_AndL ) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   320
      // An AND mask of sufficient size clears the low bits and
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   321
      // I can avoid rounding.
1432
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   322
      const TypeLong *andconl_t = phase->type( dividend->in(2) )->isa_long();
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   323
      if( andconl_t && andconl_t->is_con() ) {
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   324
        jlong andconl = andconl_t->get_con();
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   325
        if( andconl < 0 && is_power_of_2_long(-andconl) && (-andconl) >= d ) {
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   326
          dividend = dividend->in(1);
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   327
          needs_rounding = false;
44f076e3d2a4 6667595: Set probability FAIR for pre-, post- loops and ALWAYS for main loop
kvn
parents: 1067
diff changeset
   328
        }
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   329
      }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   330
    }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   331
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   332
    // Add rounding to the shift to handle the sign bit
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   333
    int l = log2_long(d-1)+1;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   334
    if (needs_rounding) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   335
      // Divide-by-power-of-2 can be made into a shift, but you have to do
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   336
      // more math for the rounding.  You need to add 0 for positive
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   337
      // numbers, and "i-1" for negative numbers.  Example: i=4, so the
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   338
      // shift is by 2.  You need to add 3 to negative dividends and 0 to
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   339
      // positive ones.  So (-7+3)>>2 becomes -1, (-4+3)>>2 becomes -1,
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   340
      // (-2+3)>>2 becomes 0, etc.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   341
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   342
      // Compute 0 or -1, based on sign bit
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   343
      Node *sign = phase->transform(new (phase->C, 3) RShiftLNode(dividend, phase->intcon(N - 1)));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   344
      // Mask sign bit to the low sign bits
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   345
      Node *round = phase->transform(new (phase->C, 3) URShiftLNode(sign, phase->intcon(N - l)));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   346
      // Round up before shifting
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   347
      dividend = phase->transform(new (phase->C, 3) AddLNode(dividend, round));
0b3167e2f2de 6603011: RFE: Optimize long division
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parents: 378
diff changeset
   348
    }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   349
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   350
    // Shift for division
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   351
    q = new (phase->C, 3) RShiftLNode(dividend, phase->intcon(l));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   352
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   353
    if (!d_pos) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   354
      q = new (phase->C, 3) SubLNode(phase->longcon(0), phase->transform(q));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   355
    }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   356
  } else {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   357
    // Attempt the jlong constant divide -> multiply transform found in
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   358
    //   "Division by Invariant Integers using Multiplication"
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   359
    //     by Granlund and Montgomery
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   360
    // See also "Hacker's Delight", chapter 10 by Warren.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   361
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   362
    jlong magic_const;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   363
    jint shift_const;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   364
    if (magic_long_divide_constants(d, magic_const, shift_const)) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   365
      // Compute the high half of the dividend x magic multiplication
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   366
      Node *mul_hi = phase->transform(long_by_long_mulhi(phase, dividend, magic_const));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   367
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   368
      // The high half of the 128-bit multiply is computed.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   369
      if (magic_const < 0) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   370
        // The magic multiplier is too large for a 64 bit constant. We've adjusted
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   371
        // it down by 2^64, but have to add 1 dividend back in after the multiplication.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   372
        // This handles the "overflow" case described by Granlund and Montgomery.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   373
        mul_hi = phase->transform(new (phase->C, 3) AddLNode(dividend, mul_hi));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   374
      }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   375
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   376
      // Shift over the (adjusted) mulhi
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   377
      if (shift_const != 0) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   378
        mul_hi = phase->transform(new (phase->C, 3) RShiftLNode(mul_hi, phase->intcon(shift_const)));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   379
      }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   380
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   381
      // Get a 0 or -1 from the sign of the dividend.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   382
      Node *addend0 = mul_hi;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   383
      Node *addend1 = phase->transform(new (phase->C, 3) RShiftLNode(dividend, phase->intcon(N-1)));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   384
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   385
      // If the divisor is negative, swap the order of the input addends;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   386
      // this has the effect of negating the quotient.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   387
      if (!d_pos) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   388
        Node *temp = addend0; addend0 = addend1; addend1 = temp;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   389
      }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   390
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   391
      // Adjust the final quotient by subtracting -1 (adding 1)
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   392
      // from the mul_hi.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   393
      q = new (phase->C, 3) SubLNode(addend0, addend1);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   394
    }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   395
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   396
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   397
  return q;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   398
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   399
489c9b5090e2 Initial load
duke
parents:
diff changeset
   400
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
   401
//------------------------------Identity---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   402
// If the divisor is 1, we are an identity on the dividend.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   403
Node *DivINode::Identity( PhaseTransform *phase ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   404
  return (phase->type( in(2) )->higher_equal(TypeInt::ONE)) ? in(1) : this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   405
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   406
489c9b5090e2 Initial load
duke
parents:
diff changeset
   407
//------------------------------Idealize---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   408
// Divides can be changed to multiplies and/or shifts
489c9b5090e2 Initial load
duke
parents:
diff changeset
   409
Node *DivINode::Ideal(PhaseGVN *phase, bool can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   410
  if (in(0) && remove_dead_region(phase, can_reshape))  return this;
1067
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   411
  // Don't bother trying to transform a dead node
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   412
  if( in(0) && in(0)->is_top() )  return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   413
489c9b5090e2 Initial load
duke
parents:
diff changeset
   414
  const Type *t = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   415
  if( t == TypeInt::ONE )       // Identity?
489c9b5090e2 Initial load
duke
parents:
diff changeset
   416
    return NULL;                // Skip it
489c9b5090e2 Initial load
duke
parents:
diff changeset
   417
489c9b5090e2 Initial load
duke
parents:
diff changeset
   418
  const TypeInt *ti = t->isa_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   419
  if( !ti ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   420
  if( !ti->is_con() ) return NULL;
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   421
  jint i = ti->get_con();       // Get divisor
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   422
489c9b5090e2 Initial load
duke
parents:
diff changeset
   423
  if (i == 0) return NULL;      // Dividing by zero constant does not idealize
489c9b5090e2 Initial load
duke
parents:
diff changeset
   424
489c9b5090e2 Initial load
duke
parents:
diff changeset
   425
  set_req(0,NULL);              // Dividing by a not-zero constant; no faulting
489c9b5090e2 Initial load
duke
parents:
diff changeset
   426
489c9b5090e2 Initial load
duke
parents:
diff changeset
   427
  // Dividing by MININT does not optimize as a power-of-2 shift.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   428
  if( i == min_jint ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   429
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   430
  return transform_int_divide( phase, in(1), i );
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   431
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   432
489c9b5090e2 Initial load
duke
parents:
diff changeset
   433
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   434
// A DivINode divides its inputs.  The third input is a Control input, used to
489c9b5090e2 Initial load
duke
parents:
diff changeset
   435
// prevent hoisting the divide above an unsafe test.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   436
const Type *DivINode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   437
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
   438
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   439
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   440
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   441
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   442
489c9b5090e2 Initial load
duke
parents:
diff changeset
   443
  // x/x == 1 since we always generate the dynamic divisor check for 0.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   444
  if( phase->eqv( in(1), in(2) ) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   445
    return TypeInt::ONE;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   446
489c9b5090e2 Initial load
duke
parents:
diff changeset
   447
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
   448
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   449
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
   450
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   451
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   452
489c9b5090e2 Initial load
duke
parents:
diff changeset
   453
  // Divide the two numbers.  We approximate.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   454
  // If divisor is a constant and not zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   455
  const TypeInt *i1 = t1->is_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   456
  const TypeInt *i2 = t2->is_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   457
  int widen = MAX2(i1->_widen, i2->_widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   458
489c9b5090e2 Initial load
duke
parents:
diff changeset
   459
  if( i2->is_con() && i2->get_con() != 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   460
    int32 d = i2->get_con(); // Divisor
489c9b5090e2 Initial load
duke
parents:
diff changeset
   461
    jint lo, hi;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   462
    if( d >= 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   463
      lo = i1->_lo/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   464
      hi = i1->_hi/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   465
    } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   466
      if( d == -1 && i1->_lo == min_jint ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   467
        // 'min_jint/-1' throws arithmetic exception during compilation
489c9b5090e2 Initial load
duke
parents:
diff changeset
   468
        lo = min_jint;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   469
        // do not support holes, 'hi' must go to either min_jint or max_jint:
489c9b5090e2 Initial load
duke
parents:
diff changeset
   470
        // [min_jint, -10]/[-1,-1] ==> [min_jint] UNION [10,max_jint]
489c9b5090e2 Initial load
duke
parents:
diff changeset
   471
        hi = i1->_hi == min_jint ? min_jint : max_jint;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   472
      } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   473
        lo = i1->_hi/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   474
        hi = i1->_lo/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   475
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   476
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   477
    return TypeInt::make(lo, hi, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   478
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   479
489c9b5090e2 Initial load
duke
parents:
diff changeset
   480
  // If the dividend is a constant
489c9b5090e2 Initial load
duke
parents:
diff changeset
   481
  if( i1->is_con() ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   482
    int32 d = i1->get_con();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   483
    if( d < 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   484
      if( d == min_jint ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   485
        //  (-min_jint) == min_jint == (min_jint / -1)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   486
        return TypeInt::make(min_jint, max_jint/2 + 1, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   487
      } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   488
        return TypeInt::make(d, -d, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   489
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   490
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   491
    return TypeInt::make(-d, d, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   492
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   493
489c9b5090e2 Initial load
duke
parents:
diff changeset
   494
  // Otherwise we give up all hope
489c9b5090e2 Initial load
duke
parents:
diff changeset
   495
  return TypeInt::INT;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   496
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   497
489c9b5090e2 Initial load
duke
parents:
diff changeset
   498
489c9b5090e2 Initial load
duke
parents:
diff changeset
   499
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
   500
//------------------------------Identity---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   501
// If the divisor is 1, we are an identity on the dividend.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   502
Node *DivLNode::Identity( PhaseTransform *phase ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   503
  return (phase->type( in(2) )->higher_equal(TypeLong::ONE)) ? in(1) : this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   504
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   505
489c9b5090e2 Initial load
duke
parents:
diff changeset
   506
//------------------------------Idealize---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   507
// Dividing by a power of 2 is a shift.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   508
Node *DivLNode::Ideal( PhaseGVN *phase, bool can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   509
  if (in(0) && remove_dead_region(phase, can_reshape))  return this;
1067
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   510
  // Don't bother trying to transform a dead node
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   511
  if( in(0) && in(0)->is_top() )  return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   512
489c9b5090e2 Initial load
duke
parents:
diff changeset
   513
  const Type *t = phase->type( in(2) );
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   514
  if( t == TypeLong::ONE )      // Identity?
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   515
    return NULL;                // Skip it
489c9b5090e2 Initial load
duke
parents:
diff changeset
   516
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   517
  const TypeLong *tl = t->isa_long();
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   518
  if( !tl ) return NULL;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   519
  if( !tl->is_con() ) return NULL;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   520
  jlong l = tl->get_con();      // Get divisor
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   521
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   522
  if (l == 0) return NULL;      // Dividing by zero constant does not idealize
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   523
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   524
  set_req(0,NULL);              // Dividing by a not-zero constant; no faulting
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   525
489c9b5090e2 Initial load
duke
parents:
diff changeset
   526
  // Dividing by MININT does not optimize as a power-of-2 shift.
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   527
  if( l == min_jlong ) return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   528
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   529
  return transform_long_divide( phase, in(1), l );
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   530
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   531
489c9b5090e2 Initial load
duke
parents:
diff changeset
   532
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   533
// A DivLNode divides its inputs.  The third input is a Control input, used to
489c9b5090e2 Initial load
duke
parents:
diff changeset
   534
// prevent hoisting the divide above an unsafe test.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   535
const Type *DivLNode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   536
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
   537
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   538
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   539
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   540
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   541
489c9b5090e2 Initial load
duke
parents:
diff changeset
   542
  // x/x == 1 since we always generate the dynamic divisor check for 0.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   543
  if( phase->eqv( in(1), in(2) ) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   544
    return TypeLong::ONE;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   545
489c9b5090e2 Initial load
duke
parents:
diff changeset
   546
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
   547
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   548
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
   549
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   550
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   551
489c9b5090e2 Initial load
duke
parents:
diff changeset
   552
  // Divide the two numbers.  We approximate.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   553
  // If divisor is a constant and not zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   554
  const TypeLong *i1 = t1->is_long();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   555
  const TypeLong *i2 = t2->is_long();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   556
  int widen = MAX2(i1->_widen, i2->_widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   557
489c9b5090e2 Initial load
duke
parents:
diff changeset
   558
  if( i2->is_con() && i2->get_con() != 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   559
    jlong d = i2->get_con();    // Divisor
489c9b5090e2 Initial load
duke
parents:
diff changeset
   560
    jlong lo, hi;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   561
    if( d >= 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   562
      lo = i1->_lo/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   563
      hi = i1->_hi/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   564
    } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   565
      if( d == CONST64(-1) && i1->_lo == min_jlong ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   566
        // 'min_jlong/-1' throws arithmetic exception during compilation
489c9b5090e2 Initial load
duke
parents:
diff changeset
   567
        lo = min_jlong;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   568
        // do not support holes, 'hi' must go to either min_jlong or max_jlong:
489c9b5090e2 Initial load
duke
parents:
diff changeset
   569
        // [min_jlong, -10]/[-1,-1] ==> [min_jlong] UNION [10,max_jlong]
489c9b5090e2 Initial load
duke
parents:
diff changeset
   570
        hi = i1->_hi == min_jlong ? min_jlong : max_jlong;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   571
      } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   572
        lo = i1->_hi/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   573
        hi = i1->_lo/d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   574
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   575
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   576
    return TypeLong::make(lo, hi, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   577
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   578
489c9b5090e2 Initial load
duke
parents:
diff changeset
   579
  // If the dividend is a constant
489c9b5090e2 Initial load
duke
parents:
diff changeset
   580
  if( i1->is_con() ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   581
    jlong d = i1->get_con();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   582
    if( d < 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   583
      if( d == min_jlong ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   584
        //  (-min_jlong) == min_jlong == (min_jlong / -1)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   585
        return TypeLong::make(min_jlong, max_jlong/2 + 1, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   586
      } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   587
        return TypeLong::make(d, -d, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   588
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   589
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   590
    return TypeLong::make(-d, d, widen);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   591
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   592
489c9b5090e2 Initial load
duke
parents:
diff changeset
   593
  // Otherwise we give up all hope
489c9b5090e2 Initial load
duke
parents:
diff changeset
   594
  return TypeLong::LONG;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   595
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   596
489c9b5090e2 Initial load
duke
parents:
diff changeset
   597
489c9b5090e2 Initial load
duke
parents:
diff changeset
   598
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
   599
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   600
// An DivFNode divides its inputs.  The third input is a Control input, used to
489c9b5090e2 Initial load
duke
parents:
diff changeset
   601
// prevent hoisting the divide above an unsafe test.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   602
const Type *DivFNode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   603
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
   604
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   605
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   606
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   607
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   608
489c9b5090e2 Initial load
duke
parents:
diff changeset
   609
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
   610
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   611
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
   612
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   613
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   614
489c9b5090e2 Initial load
duke
parents:
diff changeset
   615
  // x/x == 1, we ignore 0/0.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   616
  // Note: if t1 and t2 are zero then result is NaN (JVMS page 213)
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
   617
  // Does not work for variables because of NaN's
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   618
  if( phase->eqv( in(1), in(2) ) && t1->base() == Type::FloatCon)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   619
    if (!g_isnan(t1->getf()) && g_isfinite(t1->getf()) && t1->getf() != 0.0) // could be negative ZERO or NaN
489c9b5090e2 Initial load
duke
parents:
diff changeset
   620
      return TypeF::ONE;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   621
489c9b5090e2 Initial load
duke
parents:
diff changeset
   622
  if( t2 == TypeF::ONE )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   623
    return t1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   624
489c9b5090e2 Initial load
duke
parents:
diff changeset
   625
  // If divisor is a constant and not zero, divide them numbers
489c9b5090e2 Initial load
duke
parents:
diff changeset
   626
  if( t1->base() == Type::FloatCon &&
489c9b5090e2 Initial load
duke
parents:
diff changeset
   627
      t2->base() == Type::FloatCon &&
489c9b5090e2 Initial load
duke
parents:
diff changeset
   628
      t2->getf() != 0.0 ) // could be negative zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   629
    return TypeF::make( t1->getf()/t2->getf() );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   630
489c9b5090e2 Initial load
duke
parents:
diff changeset
   631
  // If the dividend is a constant zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   632
  // Note: if t1 and t2 are zero then result is NaN (JVMS page 213)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   633
  // Test TypeF::ZERO is not sufficient as it could be negative zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   634
489c9b5090e2 Initial load
duke
parents:
diff changeset
   635
  if( t1 == TypeF::ZERO && !g_isnan(t2->getf()) && t2->getf() != 0.0 )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   636
    return TypeF::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   637
489c9b5090e2 Initial load
duke
parents:
diff changeset
   638
  // Otherwise we give up all hope
489c9b5090e2 Initial load
duke
parents:
diff changeset
   639
  return Type::FLOAT;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   640
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   641
489c9b5090e2 Initial load
duke
parents:
diff changeset
   642
//------------------------------isA_Copy---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   643
// Dividing by self is 1.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   644
// If the divisor is 1, we are an identity on the dividend.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   645
Node *DivFNode::Identity( PhaseTransform *phase ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   646
  return (phase->type( in(2) ) == TypeF::ONE) ? in(1) : this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   647
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   648
489c9b5090e2 Initial load
duke
parents:
diff changeset
   649
489c9b5090e2 Initial load
duke
parents:
diff changeset
   650
//------------------------------Idealize---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   651
Node *DivFNode::Ideal(PhaseGVN *phase, bool can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   652
  if (in(0) && remove_dead_region(phase, can_reshape))  return this;
1067
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   653
  // Don't bother trying to transform a dead node
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   654
  if( in(0) && in(0)->is_top() )  return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   655
489c9b5090e2 Initial load
duke
parents:
diff changeset
   656
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   657
  if( t2 == TypeF::ONE )         // Identity?
489c9b5090e2 Initial load
duke
parents:
diff changeset
   658
    return NULL;                // Skip it
489c9b5090e2 Initial load
duke
parents:
diff changeset
   659
489c9b5090e2 Initial load
duke
parents:
diff changeset
   660
  const TypeF *tf = t2->isa_float_constant();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   661
  if( !tf ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   662
  if( tf->base() != Type::FloatCon ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   663
489c9b5090e2 Initial load
duke
parents:
diff changeset
   664
  // Check for out of range values
489c9b5090e2 Initial load
duke
parents:
diff changeset
   665
  if( tf->is_nan() || !tf->is_finite() ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   666
489c9b5090e2 Initial load
duke
parents:
diff changeset
   667
  // Get the value
489c9b5090e2 Initial load
duke
parents:
diff changeset
   668
  float f = tf->getf();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   669
  int exp;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   670
489c9b5090e2 Initial load
duke
parents:
diff changeset
   671
  // Only for special case of dividing by a power of 2
489c9b5090e2 Initial load
duke
parents:
diff changeset
   672
  if( frexp((double)f, &exp) != 0.5 ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   673
489c9b5090e2 Initial load
duke
parents:
diff changeset
   674
  // Limit the range of acceptable exponents
489c9b5090e2 Initial load
duke
parents:
diff changeset
   675
  if( exp < -126 || exp > 126 ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   676
489c9b5090e2 Initial load
duke
parents:
diff changeset
   677
  // Compute the reciprocal
489c9b5090e2 Initial load
duke
parents:
diff changeset
   678
  float reciprocal = ((float)1.0) / f;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   679
489c9b5090e2 Initial load
duke
parents:
diff changeset
   680
  assert( frexp((double)reciprocal, &exp) == 0.5, "reciprocal should be power of 2" );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   681
489c9b5090e2 Initial load
duke
parents:
diff changeset
   682
  // return multiplication by the reciprocal
489c9b5090e2 Initial load
duke
parents:
diff changeset
   683
  return (new (phase->C, 3) MulFNode(in(1), phase->makecon(TypeF::make(reciprocal))));
489c9b5090e2 Initial load
duke
parents:
diff changeset
   684
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   685
489c9b5090e2 Initial load
duke
parents:
diff changeset
   686
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
   687
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   688
// An DivDNode divides its inputs.  The third input is a Control input, used to
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
   689
// prevent hoisting the divide above an unsafe test.
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   690
const Type *DivDNode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   691
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
   692
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   693
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   694
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   695
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   696
489c9b5090e2 Initial load
duke
parents:
diff changeset
   697
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
   698
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   699
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
   700
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   701
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   702
489c9b5090e2 Initial load
duke
parents:
diff changeset
   703
  // x/x == 1, we ignore 0/0.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   704
  // Note: if t1 and t2 are zero then result is NaN (JVMS page 213)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   705
  // Does not work for variables because of NaN's
489c9b5090e2 Initial load
duke
parents:
diff changeset
   706
  if( phase->eqv( in(1), in(2) ) && t1->base() == Type::DoubleCon)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   707
    if (!g_isnan(t1->getd()) && g_isfinite(t1->getd()) && t1->getd() != 0.0) // could be negative ZERO or NaN
489c9b5090e2 Initial load
duke
parents:
diff changeset
   708
      return TypeD::ONE;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   709
489c9b5090e2 Initial load
duke
parents:
diff changeset
   710
  if( t2 == TypeD::ONE )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   711
    return t1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   712
1436
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   713
#if defined(IA32)
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   714
  if (!phase->C->method()->is_strict())
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   715
    // Can't trust native compilers to properly fold strict double
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   716
    // division with round-to-zero on this platform.
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   717
#endif
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   718
    {
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   719
      // If divisor is a constant and not zero, divide them numbers
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   720
      if( t1->base() == Type::DoubleCon &&
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   721
          t2->base() == Type::DoubleCon &&
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   722
          t2->getd() != 0.0 ) // could be negative zero
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   723
        return TypeD::make( t1->getd()/t2->getd() );
6869d58f4f58 6717150: improper constant folding of subnormal strictfp multiplications and divides
rasbold
parents: 1432
diff changeset
   724
    }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   725
489c9b5090e2 Initial load
duke
parents:
diff changeset
   726
  // If the dividend is a constant zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   727
  // Note: if t1 and t2 are zero then result is NaN (JVMS page 213)
489c9b5090e2 Initial load
duke
parents:
diff changeset
   728
  // Test TypeF::ZERO is not sufficient as it could be negative zero
489c9b5090e2 Initial load
duke
parents:
diff changeset
   729
  if( t1 == TypeD::ZERO && !g_isnan(t2->getd()) && t2->getd() != 0.0 )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   730
    return TypeD::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   731
489c9b5090e2 Initial load
duke
parents:
diff changeset
   732
  // Otherwise we give up all hope
489c9b5090e2 Initial load
duke
parents:
diff changeset
   733
  return Type::DOUBLE;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   734
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   735
489c9b5090e2 Initial load
duke
parents:
diff changeset
   736
489c9b5090e2 Initial load
duke
parents:
diff changeset
   737
//------------------------------isA_Copy---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   738
// Dividing by self is 1.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   739
// If the divisor is 1, we are an identity on the dividend.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   740
Node *DivDNode::Identity( PhaseTransform *phase ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   741
  return (phase->type( in(2) ) == TypeD::ONE) ? in(1) : this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   742
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   743
489c9b5090e2 Initial load
duke
parents:
diff changeset
   744
//------------------------------Idealize---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   745
Node *DivDNode::Ideal(PhaseGVN *phase, bool can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   746
  if (in(0) && remove_dead_region(phase, can_reshape))  return this;
1067
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   747
  // Don't bother trying to transform a dead node
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   748
  if( in(0) && in(0)->is_top() )  return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   749
489c9b5090e2 Initial load
duke
parents:
diff changeset
   750
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   751
  if( t2 == TypeD::ONE )         // Identity?
489c9b5090e2 Initial load
duke
parents:
diff changeset
   752
    return NULL;                // Skip it
489c9b5090e2 Initial load
duke
parents:
diff changeset
   753
489c9b5090e2 Initial load
duke
parents:
diff changeset
   754
  const TypeD *td = t2->isa_double_constant();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   755
  if( !td ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   756
  if( td->base() != Type::DoubleCon ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   757
489c9b5090e2 Initial load
duke
parents:
diff changeset
   758
  // Check for out of range values
489c9b5090e2 Initial load
duke
parents:
diff changeset
   759
  if( td->is_nan() || !td->is_finite() ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   760
489c9b5090e2 Initial load
duke
parents:
diff changeset
   761
  // Get the value
489c9b5090e2 Initial load
duke
parents:
diff changeset
   762
  double d = td->getd();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   763
  int exp;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   764
489c9b5090e2 Initial load
duke
parents:
diff changeset
   765
  // Only for special case of dividing by a power of 2
489c9b5090e2 Initial load
duke
parents:
diff changeset
   766
  if( frexp(d, &exp) != 0.5 ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   767
489c9b5090e2 Initial load
duke
parents:
diff changeset
   768
  // Limit the range of acceptable exponents
489c9b5090e2 Initial load
duke
parents:
diff changeset
   769
  if( exp < -1021 || exp > 1022 ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   770
489c9b5090e2 Initial load
duke
parents:
diff changeset
   771
  // Compute the reciprocal
489c9b5090e2 Initial load
duke
parents:
diff changeset
   772
  double reciprocal = 1.0 / d;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   773
489c9b5090e2 Initial load
duke
parents:
diff changeset
   774
  assert( frexp(reciprocal, &exp) == 0.5, "reciprocal should be power of 2" );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   775
489c9b5090e2 Initial load
duke
parents:
diff changeset
   776
  // return multiplication by the reciprocal
489c9b5090e2 Initial load
duke
parents:
diff changeset
   777
  return (new (phase->C, 3) MulDNode(in(1), phase->makecon(TypeD::make(reciprocal))));
489c9b5090e2 Initial load
duke
parents:
diff changeset
   778
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   779
489c9b5090e2 Initial load
duke
parents:
diff changeset
   780
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
   781
//------------------------------Idealize---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   782
Node *ModINode::Ideal(PhaseGVN *phase, bool can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   783
  // Check for dead control input
1067
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   784
  if( in(0) && remove_dead_region(phase, can_reshape) )  return this;
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   785
  // Don't bother trying to transform a dead node
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   786
  if( in(0) && in(0)->is_top() )  return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   787
489c9b5090e2 Initial load
duke
parents:
diff changeset
   788
  // Get the modulus
489c9b5090e2 Initial load
duke
parents:
diff changeset
   789
  const Type *t = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   790
  if( t == Type::TOP ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   791
  const TypeInt *ti = t->is_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   792
489c9b5090e2 Initial load
duke
parents:
diff changeset
   793
  // Check for useless control input
489c9b5090e2 Initial load
duke
parents:
diff changeset
   794
  // Check for excluding mod-zero case
489c9b5090e2 Initial load
duke
parents:
diff changeset
   795
  if( in(0) && (ti->_hi < 0 || ti->_lo > 0) ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   796
    set_req(0, NULL);        // Yank control input
489c9b5090e2 Initial load
duke
parents:
diff changeset
   797
    return this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   798
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   799
489c9b5090e2 Initial load
duke
parents:
diff changeset
   800
  // See if we are MOD'ing by 2^k or 2^k-1.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   801
  if( !ti->is_con() ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   802
  jint con = ti->get_con();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   803
489c9b5090e2 Initial load
duke
parents:
diff changeset
   804
  Node *hook = new (phase->C, 1) Node(1);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   805
489c9b5090e2 Initial load
duke
parents:
diff changeset
   806
  // First, special check for modulo 2^k-1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   807
  if( con >= 0 && con < max_jint && is_power_of_2(con+1) ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   808
    uint k = exact_log2(con+1);  // Extract k
489c9b5090e2 Initial load
duke
parents:
diff changeset
   809
489c9b5090e2 Initial load
duke
parents:
diff changeset
   810
    // Basic algorithm by David Detlefs.  See fastmod_int.java for gory details.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   811
    static int unroll_factor[] = { 999, 999, 29, 14, 9, 7, 5, 4, 4, 3, 3, 2, 2, 2, 2, 2, 1 /*past here we assume 1 forever*/};
489c9b5090e2 Initial load
duke
parents:
diff changeset
   812
    int trip_count = 1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   813
    if( k < ARRAY_SIZE(unroll_factor))  trip_count = unroll_factor[k];
489c9b5090e2 Initial load
duke
parents:
diff changeset
   814
489c9b5090e2 Initial load
duke
parents:
diff changeset
   815
    // If the unroll factor is not too large, and if conditional moves are
489c9b5090e2 Initial load
duke
parents:
diff changeset
   816
    // ok, then use this case
489c9b5090e2 Initial load
duke
parents:
diff changeset
   817
    if( trip_count <= 5 && ConditionalMoveLimit != 0 ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   818
      Node *x = in(1);            // Value being mod'd
489c9b5090e2 Initial load
duke
parents:
diff changeset
   819
      Node *divisor = in(2);      // Also is mask
489c9b5090e2 Initial load
duke
parents:
diff changeset
   820
489c9b5090e2 Initial load
duke
parents:
diff changeset
   821
      hook->init_req(0, x);       // Add a use to x to prevent him from dying
489c9b5090e2 Initial load
duke
parents:
diff changeset
   822
      // Generate code to reduce X rapidly to nearly 2^k-1.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   823
      for( int i = 0; i < trip_count; i++ ) {
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   824
        Node *xl = phase->transform( new (phase->C, 3) AndINode(x,divisor) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   825
        Node *xh = phase->transform( new (phase->C, 3) RShiftINode(x,phase->intcon(k)) ); // Must be signed
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   826
        x = phase->transform( new (phase->C, 3) AddINode(xh,xl) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   827
        hook->set_req(0, x);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   828
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   829
489c9b5090e2 Initial load
duke
parents:
diff changeset
   830
      // Generate sign-fixup code.  Was original value positive?
489c9b5090e2 Initial load
duke
parents:
diff changeset
   831
      // int hack_res = (i >= 0) ? divisor : 1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   832
      Node *cmp1 = phase->transform( new (phase->C, 3) CmpINode( in(1), phase->intcon(0) ) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   833
      Node *bol1 = phase->transform( new (phase->C, 2) BoolNode( cmp1, BoolTest::ge ) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   834
      Node *cmov1= phase->transform( new (phase->C, 4) CMoveINode(bol1, phase->intcon(1), divisor, TypeInt::POS) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   835
      // if( x >= hack_res ) x -= divisor;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   836
      Node *sub  = phase->transform( new (phase->C, 3) SubINode( x, divisor ) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   837
      Node *cmp2 = phase->transform( new (phase->C, 3) CmpINode( x, cmov1 ) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   838
      Node *bol2 = phase->transform( new (phase->C, 2) BoolNode( cmp2, BoolTest::ge ) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   839
      // Convention is to not transform the return value of an Ideal
489c9b5090e2 Initial load
duke
parents:
diff changeset
   840
      // since Ideal is expected to return a modified 'this' or a new node.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   841
      Node *cmov2= new (phase->C, 4) CMoveINode(bol2, x, sub, TypeInt::INT);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   842
      // cmov2 is now the mod
489c9b5090e2 Initial load
duke
parents:
diff changeset
   843
489c9b5090e2 Initial load
duke
parents:
diff changeset
   844
      // Now remove the bogus extra edges used to keep things alive
489c9b5090e2 Initial load
duke
parents:
diff changeset
   845
      if (can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   846
        phase->is_IterGVN()->remove_dead_node(hook);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   847
      } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   848
        hook->set_req(0, NULL);   // Just yank bogus edge during Parse phase
489c9b5090e2 Initial load
duke
parents:
diff changeset
   849
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   850
      return cmov2;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   851
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   852
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   853
489c9b5090e2 Initial load
duke
parents:
diff changeset
   854
  // Fell thru, the unroll case is not appropriate. Transform the modulo
489c9b5090e2 Initial load
duke
parents:
diff changeset
   855
  // into a long multiply/int multiply/subtract case
489c9b5090e2 Initial load
duke
parents:
diff changeset
   856
489c9b5090e2 Initial load
duke
parents:
diff changeset
   857
  // Cannot handle mod 0, and min_jint isn't handled by the transform
489c9b5090e2 Initial load
duke
parents:
diff changeset
   858
  if( con == 0 || con == min_jint ) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   859
489c9b5090e2 Initial load
duke
parents:
diff changeset
   860
  // Get the absolute value of the constant; at this point, we can use this
489c9b5090e2 Initial load
duke
parents:
diff changeset
   861
  jint pos_con = (con >= 0) ? con : -con;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   862
489c9b5090e2 Initial load
duke
parents:
diff changeset
   863
  // integer Mod 1 is always 0
489c9b5090e2 Initial load
duke
parents:
diff changeset
   864
  if( pos_con == 1 ) return new (phase->C, 1) ConINode(TypeInt::ZERO);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   865
489c9b5090e2 Initial load
duke
parents:
diff changeset
   866
  int log2_con = -1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   867
489c9b5090e2 Initial load
duke
parents:
diff changeset
   868
  // If this is a power of two, they maybe we can mask it
489c9b5090e2 Initial load
duke
parents:
diff changeset
   869
  if( is_power_of_2(pos_con) ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   870
    log2_con = log2_intptr((intptr_t)pos_con);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   871
489c9b5090e2 Initial load
duke
parents:
diff changeset
   872
    const Type *dt = phase->type(in(1));
489c9b5090e2 Initial load
duke
parents:
diff changeset
   873
    const TypeInt *dti = dt->isa_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   874
489c9b5090e2 Initial load
duke
parents:
diff changeset
   875
    // See if this can be masked, if the dividend is non-negative
489c9b5090e2 Initial load
duke
parents:
diff changeset
   876
    if( dti && dti->_lo >= 0 )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   877
      return ( new (phase->C, 3) AndINode( in(1), phase->intcon( pos_con-1 ) ) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   878
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   879
489c9b5090e2 Initial load
duke
parents:
diff changeset
   880
  // Save in(1) so that it cannot be changed or deleted
489c9b5090e2 Initial load
duke
parents:
diff changeset
   881
  hook->init_req(0, in(1));
489c9b5090e2 Initial load
duke
parents:
diff changeset
   882
489c9b5090e2 Initial load
duke
parents:
diff changeset
   883
  // Divide using the transform from DivI to MulL
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   884
  Node *result = transform_int_divide( phase, in(1), pos_con );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   885
  if (result != NULL) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   886
    Node *divide = phase->transform(result);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   887
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   888
    // Re-multiply, using a shift if this is a power of two
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   889
    Node *mult = NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   890
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   891
    if( log2_con >= 0 )
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   892
      mult = phase->transform( new (phase->C, 3) LShiftINode( divide, phase->intcon( log2_con ) ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   893
    else
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   894
      mult = phase->transform( new (phase->C, 3) MulINode( divide, phase->intcon( pos_con ) ) );
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   895
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   896
    // Finally, subtract the multiplied divided value from the original
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   897
    result = new (phase->C, 3) SubINode( in(1), mult );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   898
  }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   899
489c9b5090e2 Initial load
duke
parents:
diff changeset
   900
  // Now remove the bogus extra edges used to keep things alive
489c9b5090e2 Initial load
duke
parents:
diff changeset
   901
  if (can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   902
    phase->is_IterGVN()->remove_dead_node(hook);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   903
  } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   904
    hook->set_req(0, NULL);       // Just yank bogus edge during Parse phase
489c9b5090e2 Initial load
duke
parents:
diff changeset
   905
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   906
489c9b5090e2 Initial load
duke
parents:
diff changeset
   907
  // return the value
489c9b5090e2 Initial load
duke
parents:
diff changeset
   908
  return result;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   909
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   910
489c9b5090e2 Initial load
duke
parents:
diff changeset
   911
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   912
const Type *ModINode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   913
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
   914
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   915
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   916
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   917
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   918
489c9b5090e2 Initial load
duke
parents:
diff changeset
   919
  // We always generate the dynamic check for 0.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   920
  // 0 MOD X is 0
489c9b5090e2 Initial load
duke
parents:
diff changeset
   921
  if( t1 == TypeInt::ZERO ) return TypeInt::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   922
  // X MOD X is 0
489c9b5090e2 Initial load
duke
parents:
diff changeset
   923
  if( phase->eqv( in(1), in(2) ) ) return TypeInt::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   924
489c9b5090e2 Initial load
duke
parents:
diff changeset
   925
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
   926
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   927
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
   928
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   929
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   930
489c9b5090e2 Initial load
duke
parents:
diff changeset
   931
  const TypeInt *i1 = t1->is_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   932
  const TypeInt *i2 = t2->is_int();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   933
  if( !i1->is_con() || !i2->is_con() ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   934
    if( i1->_lo >= 0 && i2->_lo >= 0 )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   935
      return TypeInt::POS;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   936
    // If both numbers are not constants, we know little.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   937
    return TypeInt::INT;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   938
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   939
  // Mod by zero?  Throw exception at runtime!
489c9b5090e2 Initial load
duke
parents:
diff changeset
   940
  if( !i2->get_con() ) return TypeInt::POS;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   941
489c9b5090e2 Initial load
duke
parents:
diff changeset
   942
  // We must be modulo'ing 2 float constants.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   943
  // Check for min_jint % '-1', result is defined to be '0'.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   944
  if( i1->get_con() == min_jint && i2->get_con() == -1 )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   945
    return TypeInt::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   946
489c9b5090e2 Initial load
duke
parents:
diff changeset
   947
  return TypeInt::make( i1->get_con() % i2->get_con() );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   948
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   949
489c9b5090e2 Initial load
duke
parents:
diff changeset
   950
489c9b5090e2 Initial load
duke
parents:
diff changeset
   951
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
   952
//------------------------------Idealize---------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   953
Node *ModLNode::Ideal(PhaseGVN *phase, bool can_reshape) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   954
  // Check for dead control input
1067
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   955
  if( in(0) && remove_dead_region(phase, can_reshape) )  return this;
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   956
  // Don't bother trying to transform a dead node
f82e0a8cd438 6736417: Fastdebug C2 crashes in StoreBNode::Ideal
kvn
parents: 1056
diff changeset
   957
  if( in(0) && in(0)->is_top() )  return NULL;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   958
489c9b5090e2 Initial load
duke
parents:
diff changeset
   959
  // Get the modulus
489c9b5090e2 Initial load
duke
parents:
diff changeset
   960
  const Type *t = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   961
  if( t == Type::TOP ) return NULL;
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   962
  const TypeLong *tl = t->is_long();
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   963
489c9b5090e2 Initial load
duke
parents:
diff changeset
   964
  // Check for useless control input
489c9b5090e2 Initial load
duke
parents:
diff changeset
   965
  // Check for excluding mod-zero case
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   966
  if( in(0) && (tl->_hi < 0 || tl->_lo > 0) ) {
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   967
    set_req(0, NULL);        // Yank control input
489c9b5090e2 Initial load
duke
parents:
diff changeset
   968
    return this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   969
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   970
489c9b5090e2 Initial load
duke
parents:
diff changeset
   971
  // See if we are MOD'ing by 2^k or 2^k-1.
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   972
  if( !tl->is_con() ) return NULL;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   973
  jlong con = tl->get_con();
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   974
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   975
  Node *hook = new (phase->C, 1) Node(1);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   976
489c9b5090e2 Initial load
duke
parents:
diff changeset
   977
  // Expand mod
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   978
  if( con >= 0 && con < max_jlong && is_power_of_2_long(con+1) ) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   979
    uint k = log2_long(con);       // Extract k
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   980
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   981
    // Basic algorithm by David Detlefs.  See fastmod_long.java for gory details.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   982
    // Used to help a popular random number generator which does a long-mod
489c9b5090e2 Initial load
duke
parents:
diff changeset
   983
    // of 2^31-1 and shows up in SpecJBB and SciMark.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   984
    static int unroll_factor[] = { 999, 999, 61, 30, 20, 15, 12, 10, 8, 7, 6, 6, 5, 5, 4, 4, 4, 3, 3, 3, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 1 /*past here we assume 1 forever*/};
489c9b5090e2 Initial load
duke
parents:
diff changeset
   985
    int trip_count = 1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   986
    if( k < ARRAY_SIZE(unroll_factor)) trip_count = unroll_factor[k];
489c9b5090e2 Initial load
duke
parents:
diff changeset
   987
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   988
    // If the unroll factor is not too large, and if conditional moves are
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   989
    // ok, then use this case
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   990
    if( trip_count <= 5 && ConditionalMoveLimit != 0 ) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   991
      Node *x = in(1);            // Value being mod'd
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   992
      Node *divisor = in(2);      // Also is mask
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   993
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   994
      hook->init_req(0, x);       // Add a use to x to prevent him from dying
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   995
      // Generate code to reduce X rapidly to nearly 2^k-1.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
   996
      for( int i = 0; i < trip_count; i++ ) {
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   997
        Node *xl = phase->transform( new (phase->C, 3) AndLNode(x,divisor) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   998
        Node *xh = phase->transform( new (phase->C, 3) RShiftLNode(x,phase->intcon(k)) ); // Must be signed
489c9b5090e2 Initial load
duke
parents:
diff changeset
   999
        x = phase->transform( new (phase->C, 3) AddLNode(xh,xl) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1000
        hook->set_req(0, x);    // Add a use to x to prevent him from dying
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1001
      }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1002
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1003
      // Generate sign-fixup code.  Was original value positive?
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1004
      // long hack_res = (i >= 0) ? divisor : CONST64(1);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1005
      Node *cmp1 = phase->transform( new (phase->C, 3) CmpLNode( in(1), phase->longcon(0) ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1006
      Node *bol1 = phase->transform( new (phase->C, 2) BoolNode( cmp1, BoolTest::ge ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1007
      Node *cmov1= phase->transform( new (phase->C, 4) CMoveLNode(bol1, phase->longcon(1), divisor, TypeLong::LONG) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1008
      // if( x >= hack_res ) x -= divisor;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1009
      Node *sub  = phase->transform( new (phase->C, 3) SubLNode( x, divisor ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1010
      Node *cmp2 = phase->transform( new (phase->C, 3) CmpLNode( x, cmov1 ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1011
      Node *bol2 = phase->transform( new (phase->C, 2) BoolNode( cmp2, BoolTest::ge ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1012
      // Convention is to not transform the return value of an Ideal
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1013
      // since Ideal is expected to return a modified 'this' or a new node.
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1014
      Node *cmov2= new (phase->C, 4) CMoveLNode(bol2, x, sub, TypeLong::LONG);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1015
      // cmov2 is now the mod
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1016
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1017
      // Now remove the bogus extra edges used to keep things alive
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1018
      if (can_reshape) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1019
        phase->is_IterGVN()->remove_dead_node(hook);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1020
      } else {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1021
        hook->set_req(0, NULL);   // Just yank bogus edge during Parse phase
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1022
      }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1023
      return cmov2;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1024
    }
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1025
  }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1026
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1027
  // Fell thru, the unroll case is not appropriate. Transform the modulo
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1028
  // into a long multiply/int multiply/subtract case
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1029
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1030
  // Cannot handle mod 0, and min_jint isn't handled by the transform
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1031
  if( con == 0 || con == min_jlong ) return NULL;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1032
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1033
  // Get the absolute value of the constant; at this point, we can use this
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1034
  jlong pos_con = (con >= 0) ? con : -con;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1035
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1036
  // integer Mod 1 is always 0
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1037
  if( pos_con == 1 ) return new (phase->C, 1) ConLNode(TypeLong::ZERO);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1038
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1039
  int log2_con = -1;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1040
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1041
  // If this is a power of two, they maybe we can mask it
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1042
  if( is_power_of_2_long(pos_con) ) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1043
    log2_con = log2_long(pos_con);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1044
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1045
    const Type *dt = phase->type(in(1));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1046
    const TypeLong *dtl = dt->isa_long();
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1047
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1048
    // See if this can be masked, if the dividend is non-negative
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1049
    if( dtl && dtl->_lo >= 0 )
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1050
      return ( new (phase->C, 3) AndLNode( in(1), phase->longcon( pos_con-1 ) ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1051
  }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1052
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1053
  // Save in(1) so that it cannot be changed or deleted
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1054
  hook->init_req(0, in(1));
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1055
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1056
  // Divide using the transform from DivI to MulL
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1057
  Node *result = transform_long_divide( phase, in(1), pos_con );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1058
  if (result != NULL) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1059
    Node *divide = phase->transform(result);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1060
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1061
    // Re-multiply, using a shift if this is a power of two
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1062
    Node *mult = NULL;
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1063
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1064
    if( log2_con >= 0 )
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1065
      mult = phase->transform( new (phase->C, 3) LShiftLNode( divide, phase->intcon( log2_con ) ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1066
    else
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1067
      mult = phase->transform( new (phase->C, 3) MulLNode( divide, phase->longcon( pos_con ) ) );
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1068
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1069
    // Finally, subtract the multiplied divided value from the original
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1070
    result = new (phase->C, 3) SubLNode( in(1), mult );
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1071
  }
392
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1072
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1073
  // Now remove the bogus extra edges used to keep things alive
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1074
  if (can_reshape) {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1075
    phase->is_IterGVN()->remove_dead_node(hook);
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1076
  } else {
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1077
    hook->set_req(0, NULL);       // Just yank bogus edge during Parse phase
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1078
  }
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1079
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1080
  // return the value
0b3167e2f2de 6603011: RFE: Optimize long division
rasbold
parents: 378
diff changeset
  1081
  return result;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1082
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1083
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1084
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1085
const Type *ModLNode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1086
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1087
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1088
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1089
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1090
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1091
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1092
  // We always generate the dynamic check for 0.
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1093
  // 0 MOD X is 0
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1094
  if( t1 == TypeLong::ZERO ) return TypeLong::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1095
  // X MOD X is 0
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1096
  if( phase->eqv( in(1), in(2) ) ) return TypeLong::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1097
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1098
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1099
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1100
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1101
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1102
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1103
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1104
  const TypeLong *i1 = t1->is_long();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1105
  const TypeLong *i2 = t2->is_long();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1106
  if( !i1->is_con() || !i2->is_con() ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1107
    if( i1->_lo >= CONST64(0) && i2->_lo >= CONST64(0) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1108
      return TypeLong::POS;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1109
    // If both numbers are not constants, we know little.
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1110
    return TypeLong::LONG;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1111
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1112
  // Mod by zero?  Throw exception at runtime!
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1113
  if( !i2->get_con() ) return TypeLong::POS;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1114
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1115
  // We must be modulo'ing 2 float constants.
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1116
  // Check for min_jint % '-1', result is defined to be '0'.
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1117
  if( i1->get_con() == min_jlong && i2->get_con() == -1 )
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1118
    return TypeLong::ZERO;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1119
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1120
  return TypeLong::make( i1->get_con() % i2->get_con() );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1121
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1122
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1123
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1124
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1125
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1126
const Type *ModFNode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1127
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1128
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1129
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1130
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1131
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1132
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1133
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1134
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1135
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1136
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1137
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1138
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1139
  // If either number is not a constant, we know nothing.
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1140
  if ((t1->base() != Type::FloatCon) || (t2->base() != Type::FloatCon)) {
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1141
    return Type::FLOAT;         // note: x%x can be either NaN or 0
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1142
  }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1143
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1144
  float f1 = t1->getf();
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1145
  float f2 = t2->getf();
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1146
  jint  x1 = jint_cast(f1);     // note:  *(int*)&f1, not just (int)f1
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1147
  jint  x2 = jint_cast(f2);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1148
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1149
  // If either is a NaN, return an input NaN
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1150
  if (g_isnan(f1))    return t1;
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1151
  if (g_isnan(f2))    return t2;
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1152
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1153
  // If an operand is infinity or the divisor is +/- zero, punt.
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1154
  if (!g_isfinite(f1) || !g_isfinite(f2) || x2 == 0 || x2 == min_jint)
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1155
    return Type::FLOAT;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1156
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1157
  // We must be modulo'ing 2 float constants.
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1158
  // Make sure that the sign of the fmod is equal to the sign of the dividend
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1159
  jint xr = jint_cast(fmod(f1, f2));
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1160
  if ((x1 ^ xr) < 0) {
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1161
    xr ^= min_jint;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1162
  }
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1163
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1164
  return TypeF::make(jfloat_cast(xr));
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1165
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1166
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1167
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1168
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1169
//------------------------------Value------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1170
const Type *ModDNode::Value( PhaseTransform *phase ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1171
  // Either input is TOP ==> the result is TOP
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1172
  const Type *t1 = phase->type( in(1) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1173
  const Type *t2 = phase->type( in(2) );
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1174
  if( t1 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1175
  if( t2 == Type::TOP ) return Type::TOP;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1176
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1177
  // Either input is BOTTOM ==> the result is the local BOTTOM
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1178
  const Type *bot = bottom_type();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1179
  if( (t1 == bot) || (t2 == bot) ||
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1180
      (t1 == Type::BOTTOM) || (t2 == Type::BOTTOM) )
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1181
    return bot;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1182
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1183
  // If either number is not a constant, we know nothing.
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1184
  if ((t1->base() != Type::DoubleCon) || (t2->base() != Type::DoubleCon)) {
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1185
    return Type::DOUBLE;        // note: x%x can be either NaN or 0
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1186
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1187
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1188
  double f1 = t1->getd();
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1189
  double f2 = t2->getd();
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1190
  jlong  x1 = jlong_cast(f1);   // note:  *(long*)&f1, not just (long)f1
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1191
  jlong  x2 = jlong_cast(f2);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1192
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1193
  // If either is a NaN, return an input NaN
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1194
  if (g_isnan(f1))    return t1;
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1195
  if (g_isnan(f2))    return t2;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1196
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1197
  // If an operand is infinity or the divisor is +/- zero, punt.
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1198
  if (!g_isfinite(f1) || !g_isfinite(f2) || x2 == 0 || x2 == min_jlong)
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1199
    return Type::DOUBLE;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1200
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1201
  // We must be modulo'ing 2 double constants.
378
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1202
  // Make sure that the sign of the fmod is equal to the sign of the dividend
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1203
  jlong xr = jlong_cast(fmod(f1, f2));
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1204
  if ((x1 ^ xr) < 0) {
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1205
    xr ^= min_jlong;
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1206
  }
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1207
39fb2dc78042 6695288: runThese tests expr30303 and drem00301m1 fail when compiled code executes without deopt
jrose
parents: 1
diff changeset
  1208
  return TypeD::make(jdouble_cast(xr));
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1209
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1210
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1211
//=============================================================================
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1212
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1213
DivModNode::DivModNode( Node *c, Node *dividend, Node *divisor ) : MultiNode(3) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1214
  init_req(0, c);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1215
  init_req(1, dividend);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1216
  init_req(2, divisor);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1217
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1218
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1219
//------------------------------make------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1220
DivModINode* DivModINode::make(Compile* C, Node* div_or_mod) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1221
  Node* n = div_or_mod;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1222
  assert(n->Opcode() == Op_DivI || n->Opcode() == Op_ModI,
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1223
         "only div or mod input pattern accepted");
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1224
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1225
  DivModINode* divmod = new (C, 3) DivModINode(n->in(0), n->in(1), n->in(2));
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1226
  Node*        dproj  = new (C, 1) ProjNode(divmod, DivModNode::div_proj_num);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1227
  Node*        mproj  = new (C, 1) ProjNode(divmod, DivModNode::mod_proj_num);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1228
  return divmod;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1229
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1230
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1231
//------------------------------make------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1232
DivModLNode* DivModLNode::make(Compile* C, Node* div_or_mod) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1233
  Node* n = div_or_mod;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1234
  assert(n->Opcode() == Op_DivL || n->Opcode() == Op_ModL,
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1235
         "only div or mod input pattern accepted");
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1236
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1237
  DivModLNode* divmod = new (C, 3) DivModLNode(n->in(0), n->in(1), n->in(2));
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1238
  Node*        dproj  = new (C, 1) ProjNode(divmod, DivModNode::div_proj_num);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1239
  Node*        mproj  = new (C, 1) ProjNode(divmod, DivModNode::mod_proj_num);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1240
  return divmod;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1241
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1242
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1243
//------------------------------match------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1244
// return result(s) along with their RegMask info
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1245
Node *DivModINode::match( const ProjNode *proj, const Matcher *match ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1246
  uint ideal_reg = proj->ideal_reg();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1247
  RegMask rm;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1248
  if (proj->_con == div_proj_num) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1249
    rm = match->divI_proj_mask();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1250
  } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1251
    assert(proj->_con == mod_proj_num, "must be div or mod projection");
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1252
    rm = match->modI_proj_mask();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1253
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1254
  return new (match->C, 1)MachProjNode(this, proj->_con, rm, ideal_reg);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1255
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1256
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1257
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1258
//------------------------------match------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1259
// return result(s) along with their RegMask info
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1260
Node *DivModLNode::match( const ProjNode *proj, const Matcher *match ) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1261
  uint ideal_reg = proj->ideal_reg();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1262
  RegMask rm;
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1263
  if (proj->_con == div_proj_num) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1264
    rm = match->divL_proj_mask();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1265
  } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1266
    assert(proj->_con == mod_proj_num, "must be div or mod projection");
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1267
    rm = match->modL_proj_mask();
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1268
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1269
  return new (match->C, 1)MachProjNode(this, proj->_con, rm, ideal_reg);
489c9b5090e2 Initial load
duke
parents:
diff changeset
  1270
}