| Index: src/mips/lithium-mips.cc
|
| diff --git a/src/mips/lithium-mips.cc b/src/mips/lithium-mips.cc
|
| index 1e2934e09004b09136d4b351f992c2e76b4d0a0d..a12dd9a83116900f316905c018856f8fd7cb99c1 100644
|
| --- a/src/mips/lithium-mips.cc
|
| +++ b/src/mips/lithium-mips.cc
|
| @@ -1244,14 +1244,20 @@ LInstruction* LChunkBuilder::DoBitwise(HBitwise* instr) {
|
| }
|
|
|
|
|
| +LInstruction* LChunkBuilder::DoDivI(HBinaryOperation* instr) {
|
| + ASSERT(instr->representation().IsSmiOrInteger32());
|
| + ASSERT(instr->left()->representation().Equals(instr->representation()));
|
| + ASSERT(instr->right()->representation().Equals(instr->representation()));
|
| + LOperand* dividend = UseRegister(instr->left());
|
| + LOperand* divisor = UseRegister(instr->right());
|
| + LDivI* div = new(zone()) LDivI(dividend, divisor);
|
| + return AssignEnvironment(DefineAsRegister(div));
|
| +}
|
| +
|
| +
|
| LInstruction* LChunkBuilder::DoDiv(HDiv* instr) {
|
| if (instr->representation().IsSmiOrInteger32()) {
|
| - ASSERT(instr->left()->representation().Equals(instr->representation()));
|
| - ASSERT(instr->right()->representation().Equals(instr->representation()));
|
| - LOperand* dividend = UseRegister(instr->left());
|
| - LOperand* divisor = UseRegister(instr->right());
|
| - LDivI* div = new(zone()) LDivI(dividend, divisor);
|
| - return AssignEnvironment(DefineAsRegister(div));
|
| + return DoDivI(instr);
|
| } else if (instr->representation().IsDouble()) {
|
| return DoArithmeticD(Token::DIV, instr);
|
| } else {
|
| @@ -1262,10 +1268,8 @@ LInstruction* LChunkBuilder::DoDiv(HDiv* instr) {
|
|
|
| bool LChunkBuilder::HasMagicNumberForDivisor(int32_t divisor) {
|
| uint32_t divisor_abs = abs(divisor);
|
| - // Dividing by 0, 1, and powers of 2 is easy.
|
| - // Note that IsPowerOf2(0) returns true;
|
| - ASSERT(IsPowerOf2(0) == true);
|
| - if (IsPowerOf2(divisor_abs)) return true;
|
| + // Dividing by 0 or powers of 2 is easy.
|
| + if (divisor == 0 || IsPowerOf2(divisor_abs)) return true;
|
|
|
| // We have magic numbers for a few specific divisors.
|
| // Details and proofs can be found in:
|
| @@ -1281,51 +1285,73 @@ bool LChunkBuilder::HasMagicNumberForDivisor(int32_t divisor) {
|
| CompilerIntrinsics::CountTrailingZeros(divisor_abs);
|
| DivMagicNumbers magic_numbers =
|
| DivMagicNumberFor(divisor_abs >> power_of_2_factor);
|
| - if (magic_numbers.M != InvalidDivMagicNumber.M) return true;
|
| + return magic_numbers.M != InvalidDivMagicNumber.M;
|
| +}
|
| +
|
|
|
| - return false;
|
| +LInstruction* LChunkBuilder::DoFlooringDivByConstI(HMathFloorOfDiv* instr) {
|
| + LOperand* dividend = UseRegister(instr->left());
|
| + LOperand* divisor = UseOrConstant(instr->right());
|
| + LOperand* remainder = TempRegister();
|
| + LInstruction* result =
|
| + DefineAsRegister(
|
| + new(zone()) LFlooringDivByConstI(dividend, divisor, remainder));
|
| + return AssignEnvironment(result);
|
| }
|
|
|
|
|
| LInstruction* LChunkBuilder::DoMathFloorOfDiv(HMathFloorOfDiv* instr) {
|
| + if (instr->right()->IsConstant()) {
|
| + return DoFlooringDivByConstI(instr);
|
| + } else {
|
| HValue* right = instr->right();
|
| LOperand* dividend = UseRegister(instr->left());
|
| LOperand* divisor = UseRegisterOrConstant(right);
|
| LOperand* remainder = TempRegister();
|
| return AssignEnvironment(DefineAsRegister(
|
| - new(zone()) LMathFloorOfDiv(dividend, divisor, remainder)));
|
| + new(zone()) LMathFloorOfDiv(dividend, divisor, remainder)));
|
| + }
|
| +}
|
| +
|
| +
|
| +LInstruction* LChunkBuilder::DoModByPowerOf2I(HMod* instr) {
|
| + ASSERT(instr->representation().IsSmiOrInteger32());
|
| + ASSERT(instr->left()->representation().Equals(instr->representation()));
|
| + ASSERT(instr->right()->representation().Equals(instr->representation()));
|
| + LOperand* dividend = UseRegisterAtStart(instr->left());
|
| + int32_t divisor = instr->right()->GetInteger32Constant();
|
| + LInstruction* result =
|
| + DefineSameAsFirst(new(zone()) LModByPowerOf2I(dividend, divisor));
|
| + bool can_deopt =
|
| + instr->CheckFlag(HValue::kBailoutOnMinusZero) &&
|
| + instr->left()->CanBeNegative();
|
| + return can_deopt ? AssignEnvironment(result) : result;
|
| +}
|
| +
|
| +
|
| +LInstruction* LChunkBuilder::DoModI(HMod* instr) {
|
| + ASSERT(instr->representation().IsSmiOrInteger32());
|
| + ASSERT(instr->left()->representation().Equals(instr->representation()));
|
| + ASSERT(instr->right()->representation().Equals(instr->representation()));
|
| + LOperand* dividend = UseRegister(instr->left());
|
| + LOperand* divisor = UseRegister(instr->right());
|
| + LModI* mod = new(zone()) LModI(dividend,
|
| + divisor);
|
| + LInstruction* result = DefineAsRegister(mod);
|
| + bool can_deopt = (instr->right()->CanBeZero() ||
|
| + (instr->left()->RangeCanInclude(kMinInt) &&
|
| + instr->right()->RangeCanInclude(-1) &&
|
| + instr->CheckFlag(HValue::kBailoutOnMinusZero)) ||
|
| + (instr->left()->CanBeNegative() &&
|
| + instr->CanBeZero() &&
|
| + instr->CheckFlag(HValue::kBailoutOnMinusZero)));
|
| + return can_deopt ? AssignEnvironment(result) : result;
|
| }
|
|
|
|
|
| LInstruction* LChunkBuilder::DoMod(HMod* instr) {
|
| - HValue* left = instr->left();
|
| - HValue* right = instr->right();
|
| if (instr->representation().IsSmiOrInteger32()) {
|
| - ASSERT(instr->left()->representation().Equals(instr->representation()));
|
| - ASSERT(instr->right()->representation().Equals(instr->representation()));
|
| - if (instr->RightIsPowerOf2()) {
|
| - ASSERT(!right->CanBeZero());
|
| - LModI* mod = new(zone()) LModI(UseRegisterAtStart(left),
|
| - UseConstant(right));
|
| - LInstruction* result = DefineAsRegister(mod);
|
| - return (left->CanBeNegative() &&
|
| - instr->CheckFlag(HValue::kBailoutOnMinusZero))
|
| - ? AssignEnvironment(result)
|
| - : result;
|
| - } else {
|
| - LModI* mod = new(zone()) LModI(UseRegister(left),
|
| - UseRegister(right),
|
| - TempRegister(),
|
| - FixedTemp(f20),
|
| - FixedTemp(f22));
|
| - LInstruction* result = DefineAsRegister(mod);
|
| - return (right->CanBeZero() ||
|
| - (left->RangeCanInclude(kMinInt) &&
|
| - right->RangeCanInclude(-1)) ||
|
| - instr->CheckFlag(HValue::kBailoutOnMinusZero))
|
| - ? AssignEnvironment(result)
|
| - : result;
|
| - }
|
| + return instr->RightIsPowerOf2() ? DoModByPowerOf2I(instr) : DoModI(instr);
|
| } else if (instr->representation().IsDouble()) {
|
| return DoArithmeticD(Token::MOD, instr);
|
| } else {
|
|
|