| OLD | NEW |
| 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_MIPS. | 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_MIPS. |
| 6 #if defined(TARGET_ARCH_MIPS) | 6 #if defined(TARGET_ARCH_MIPS) |
| 7 | 7 |
| 8 #include "vm/intermediate_language.h" | 8 #include "vm/intermediate_language.h" |
| 9 | 9 |
| 10 #include "vm/dart_entry.h" | 10 #include "vm/dart_entry.h" |
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| 128 | 128 |
| 129 | 129 |
| 130 // Detect pattern when one value is zero and another is a power of 2. | 130 // Detect pattern when one value is zero and another is a power of 2. |
| 131 static bool IsPowerOfTwoKind(intptr_t v1, intptr_t v2) { | 131 static bool IsPowerOfTwoKind(intptr_t v1, intptr_t v2) { |
| 132 return (Utils::IsPowerOfTwo(v1) && (v2 == 0)) || | 132 return (Utils::IsPowerOfTwo(v1) && (v2 == 0)) || |
| 133 (Utils::IsPowerOfTwo(v2) && (v1 == 0)); | 133 (Utils::IsPowerOfTwo(v2) && (v1 == 0)); |
| 134 } | 134 } |
| 135 | 135 |
| 136 | 136 |
| 137 LocationSummary* IfThenElseInstr::MakeLocationSummary() const { | 137 LocationSummary* IfThenElseInstr::MakeLocationSummary() const { |
| 138 const intptr_t kNumInputs = 2; | 138 return comparison()->MakeLocationSummary(); |
| 139 const intptr_t kNumTemps = 0; | |
| 140 LocationSummary* locs = | |
| 141 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kNoCall); | |
| 142 locs->set_in(0, Location::RegisterOrConstant(left())); | |
| 143 // Only one of the inputs can be a constant. Choose register if the first one | |
| 144 // is a constant. | |
| 145 locs->set_in(1, locs->in(0).IsConstant() | |
| 146 ? Location::RequiresRegister() | |
| 147 : Location::RegisterOrConstant(right())); | |
| 148 locs->set_out(Location::RequiresRegister()); | |
| 149 return locs; | |
| 150 } | 139 } |
| 151 | 140 |
| 152 | 141 |
| 153 void IfThenElseInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 142 void IfThenElseInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 154 const Register result = locs()->out().reg(); | 143 const Register result = locs()->out().reg(); |
| 155 ASSERT(Token::IsEqualityOperator(kind())); | |
| 156 | 144 |
| 157 Location left = locs()->in(0); | 145 Location left = locs()->in(0); |
| 158 Location right = locs()->in(1); | 146 Location right = locs()->in(1); |
| 159 ASSERT(!left.IsConstant() || !right.IsConstant()); | 147 ASSERT(!left.IsConstant() || !right.IsConstant()); |
| 160 | 148 |
| 161 // Clear out register. | 149 // Clear out register. |
| 162 __ mov(result, ZR); | 150 __ mov(result, ZR); |
| 163 | 151 |
| 164 // Compare left and right. For now only equality comparison is supported. | 152 // Emit comparison code. This must not overwrite the result register. |
| 165 // TODO(vegorov): reuse code from the other comparison instructions instead of | 153 BranchLabels labels = { NULL, NULL, NULL }; |
| 166 // generating it inline here. | 154 Condition true_condition = comparison()->EmitComparisonCode(compiler, labels); |
| 167 if (left.IsConstant()) { | |
| 168 __ CompareObject(CMPRES1, CMPRES2, right.reg(), left.constant()); | |
| 169 } else if (right.IsConstant()) { | |
| 170 __ CompareObject(CMPRES1, CMPRES2, left.reg(), right.constant()); | |
| 171 } else { | |
| 172 __ slt(CMPRES1, left.reg(), right.reg()); | |
| 173 __ slt(CMPRES2, right.reg(), left.reg()); | |
| 174 } | |
| 175 | |
| 176 Condition true_condition = | |
| 177 ((kind_ == Token::kEQ_STRICT) || (kind_ == Token::kEQ)) ? EQ : NE; | |
| 178 | 155 |
| 179 const bool is_power_of_two_kind = IsPowerOfTwoKind(if_true_, if_false_); | 156 const bool is_power_of_two_kind = IsPowerOfTwoKind(if_true_, if_false_); |
| 180 | 157 |
| 181 intptr_t true_value = if_true_; | 158 intptr_t true_value = if_true_; |
| 182 intptr_t false_value = if_false_; | 159 intptr_t false_value = if_false_; |
| 183 | 160 |
| 184 if (is_power_of_two_kind) { | 161 if (is_power_of_two_kind) { |
| 185 if (true_value == 0) { | 162 if (true_value == 0) { |
| 186 // We need to have zero in result on true_condition. | 163 // We need to have zero in result on true_condition. |
| 187 true_condition = NegateCondition(true_condition); | 164 true_condition = NegateCondition(true_condition); |
| 188 } | 165 } |
| 189 } else { | 166 } else { |
| 190 if (true_value == 0) { | 167 if (true_value == 0) { |
| 191 // Swap values so that false_value is zero. | 168 // Swap values so that false_value is zero. |
| 192 intptr_t temp = true_value; | 169 intptr_t temp = true_value; |
| 193 true_value = false_value; | 170 true_value = false_value; |
| 194 false_value = temp; | 171 false_value = temp; |
| 195 } else { | 172 } else { |
| 196 true_condition = NegateCondition(true_condition); | 173 true_condition = NegateCondition(true_condition); |
| 197 } | 174 } |
| 198 } | 175 } |
| 199 | 176 |
| 200 if (true_condition == EQ) { | 177 switch (true_condition) { |
| 201 __ xor_(result, CMPRES1, CMPRES2); | 178 case EQ: |
| 202 __ xori(result, result, Immediate(1)); | 179 __ xor_(result, CMPRES1, CMPRES2); |
| 203 } else { | 180 __ xori(result, result, Immediate(1)); |
| 204 ASSERT(true_condition == NE); | 181 break; |
| 205 __ xor_(result, CMPRES1, CMPRES2); | 182 case NE: |
| 183 __ xor_(result, CMPRES1, CMPRES2); |
| 184 break; |
| 185 case GT: |
| 186 __ mov(result, CMPRES2); |
| 187 break; |
| 188 case GE: |
| 189 __ xori(result, CMPRES1, Immediate(1)); |
| 190 break; |
| 191 case LT: |
| 192 __ mov(result, CMPRES1); |
| 193 break; |
| 194 case LE: |
| 195 __ xori(result, CMPRES2, Immediate(1)); |
| 196 break; |
| 197 default: |
| 198 UNREACHABLE(); |
| 199 break; |
| 206 } | 200 } |
| 207 | 201 |
| 208 if (is_power_of_two_kind) { | 202 if (is_power_of_two_kind) { |
| 209 const intptr_t shift = | 203 const intptr_t shift = |
| 210 Utils::ShiftForPowerOfTwo(Utils::Maximum(true_value, false_value)); | 204 Utils::ShiftForPowerOfTwo(Utils::Maximum(true_value, false_value)); |
| 211 __ sll(result, result, shift + kSmiTagSize); | 205 __ sll(result, result, shift + kSmiTagSize); |
| 212 } else { | 206 } else { |
| 213 __ AddImmediate(result, result, -1); | 207 __ AddImmediate(result, result, -1); |
| 214 const int32_t val = | 208 const int32_t val = |
| 215 Smi::RawValue(true_value) - Smi::RawValue(false_value); | 209 Smi::RawValue(true_value) - Smi::RawValue(false_value); |
| (...skipping 259 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 475 Condition false_condition = NegateCondition(true_condition); | 469 Condition false_condition = NegateCondition(true_condition); |
| 476 EmitBranchAfterCompare(compiler, false_condition, labels.false_label); | 470 EmitBranchAfterCompare(compiler, false_condition, labels.false_label); |
| 477 // Fall through or jump to the true successor. | 471 // Fall through or jump to the true successor. |
| 478 if (labels.fall_through != labels.true_label) { | 472 if (labels.fall_through != labels.true_label) { |
| 479 __ b(labels.true_label); | 473 __ b(labels.true_label); |
| 480 } | 474 } |
| 481 } | 475 } |
| 482 } | 476 } |
| 483 | 477 |
| 484 | 478 |
| 485 static void EmitSmiComparisonOp(FlowGraphCompiler* compiler, | 479 static Condition EmitSmiComparisonOp(FlowGraphCompiler* compiler, |
| 486 const LocationSummary& locs, | 480 const LocationSummary& locs, |
| 487 Token::Kind kind, | 481 Token::Kind kind, |
| 488 BranchLabels labels) { | 482 BranchLabels labels) { |
| 489 __ TraceSimMsg("EmitSmiComparisonOp"); | 483 __ TraceSimMsg("EmitSmiComparisonOp"); |
| 490 __ Comment("EmitSmiComparisonOp"); | 484 __ Comment("EmitSmiComparisonOp"); |
| 491 Location left = locs.in(0); | 485 Location left = locs.in(0); |
| 492 Location right = locs.in(1); | 486 Location right = locs.in(1); |
| 493 ASSERT(!left.IsConstant() || !right.IsConstant()); | 487 ASSERT(!left.IsConstant() || !right.IsConstant()); |
| 494 | 488 |
| 495 Condition true_condition = TokenKindToSmiCondition(kind); | 489 Condition true_condition = TokenKindToSmiCondition(kind); |
| 496 | 490 |
| 497 if (left.IsConstant()) { | 491 if (left.IsConstant()) { |
| 498 __ CompareObject(CMPRES1, CMPRES2, right.reg(), left.constant()); | 492 __ CompareObject(CMPRES1, CMPRES2, right.reg(), left.constant()); |
| 499 true_condition = FlipCondition(true_condition); | 493 true_condition = FlipCondition(true_condition); |
| 500 } else if (right.IsConstant()) { | 494 } else if (right.IsConstant()) { |
| 501 __ CompareObject(CMPRES1, CMPRES2, left.reg(), right.constant()); | 495 __ CompareObject(CMPRES1, CMPRES2, left.reg(), right.constant()); |
| 502 } else { | 496 } else { |
| 503 __ slt(CMPRES1, left.reg(), right.reg()); | 497 __ slt(CMPRES1, left.reg(), right.reg()); |
| 504 __ slt(CMPRES2, right.reg(), left.reg()); | 498 __ slt(CMPRES2, right.reg(), left.reg()); |
| 505 } | 499 } |
| 506 EmitBranchOnCondition(compiler, true_condition, labels); | 500 return true_condition; |
| 507 } | 501 } |
| 508 | 502 |
| 509 | 503 |
| 510 static Condition TokenKindToDoubleCondition(Token::Kind kind) { | 504 static Condition TokenKindToDoubleCondition(Token::Kind kind) { |
| 511 switch (kind) { | 505 switch (kind) { |
| 512 case Token::kEQ: return EQ; | 506 case Token::kEQ: return EQ; |
| 513 case Token::kNE: return NE; | 507 case Token::kNE: return NE; |
| 514 case Token::kLT: return LT; | 508 case Token::kLT: return LT; |
| 515 case Token::kGT: return GT; | 509 case Token::kGT: return GT; |
| 516 case Token::kLTE: return LE; | 510 case Token::kLTE: return LE; |
| 517 case Token::kGTE: return GE; | 511 case Token::kGTE: return GE; |
| 518 default: | 512 default: |
| 519 UNREACHABLE(); | 513 UNREACHABLE(); |
| 520 return VS; | 514 return VS; |
| 521 } | 515 } |
| 522 } | 516 } |
| 523 | 517 |
| 524 | 518 |
| 525 static void EmitDoubleComparisonOp(FlowGraphCompiler* compiler, | 519 static Condition EmitDoubleComparisonOp(FlowGraphCompiler* compiler, |
| 526 const LocationSummary& locs, | 520 const LocationSummary& locs, |
| 527 Token::Kind kind, | 521 Token::Kind kind, |
| 528 BranchLabels labels) { | 522 BranchLabels labels) { |
| 529 DRegister left = locs.in(0).fpu_reg(); | 523 DRegister left = locs.in(0).fpu_reg(); |
| 530 DRegister right = locs.in(1).fpu_reg(); | 524 DRegister right = locs.in(1).fpu_reg(); |
| 531 | 525 |
| 532 __ Comment("DoubleComparisonOp(left=%d, right=%d)", left, right); | 526 __ Comment("DoubleComparisonOp(left=%d, right=%d)", left, right); |
| 533 | 527 |
| 534 Condition true_condition = TokenKindToDoubleCondition(kind); | 528 Condition true_condition = TokenKindToDoubleCondition(kind); |
| 535 __ cund(left, right); | 529 __ cund(left, right); |
| 536 Label* nan_label = (true_condition == NE) | 530 Label* nan_label = (true_condition == NE) |
| 537 ? labels.true_label : labels.false_label; | 531 ? labels.true_label : labels.false_label; |
| 538 __ bc1t(nan_label); | 532 __ bc1t(nan_label); |
| 539 | 533 |
| 540 switch (true_condition) { | 534 switch (true_condition) { |
| 541 case EQ: __ ceqd(left, right); break; | 535 case EQ: __ ceqd(left, right); break; |
| 542 case NE: __ ceqd(left, right); break; | 536 case NE: __ ceqd(left, right); break; |
| 543 case LT: __ coltd(left, right); break; | 537 case LT: __ coltd(left, right); break; |
| 544 case LE: __ coled(left, right); break; | 538 case LE: __ coled(left, right); break; |
| 545 case GT: __ coltd(right, left); break; | 539 case GT: __ coltd(right, left); break; |
| 546 case GE: __ coled(right, left); break; | 540 case GE: __ coled(right, left); break; |
| 547 default: { | 541 default: { |
| 548 // Should only passing the above conditions to this function. | 542 // Should only passing the above conditions to this function. |
| 549 UNREACHABLE(); | 543 UNREACHABLE(); |
| 550 break; | 544 break; |
| 551 } | 545 } |
| 552 } | 546 } |
| 553 | 547 |
| 548 // Ordering is expected to be described by CMPRES1, CMPRES2. |
| 554 __ LoadImmediate(TMP, 1); | 549 __ LoadImmediate(TMP, 1); |
| 555 if (true_condition == NE) { | 550 if (true_condition == NE) { |
| 556 __ movf(CMPRES1, ZR); | 551 __ movf(CMPRES1, ZR); |
| 557 __ movt(CMPRES1, TMP); | 552 __ movt(CMPRES1, TMP); |
| 558 } else { | 553 } else { |
| 559 __ movf(CMPRES1, TMP); | 554 __ movf(CMPRES1, TMP); |
| 560 __ movt(CMPRES1, ZR); | 555 __ movt(CMPRES1, ZR); |
| 561 } | 556 } |
| 562 __ mov(CMPRES2, ZR); | 557 __ mov(CMPRES2, ZR); |
| 563 | 558 return EQ; |
| 564 // EmitBranchOnCondition expects ordering to be described by CMPRES1, CMPRES2. | |
| 565 EmitBranchOnCondition(compiler, EQ, labels); | |
| 566 } | 559 } |
| 567 | 560 |
| 568 | 561 |
| 562 Condition EqualityCompareInstr::EmitComparisonCode(FlowGraphCompiler* compiler, |
| 563 BranchLabels labels) { |
| 564 if (operation_cid() == kSmiCid) { |
| 565 return EmitSmiComparisonOp(compiler, *locs(), kind(), labels); |
| 566 } else { |
| 567 ASSERT(operation_cid() == kDoubleCid); |
| 568 return EmitDoubleComparisonOp(compiler, *locs(), kind(), labels); |
| 569 } |
| 570 } |
| 571 |
| 572 |
| 569 void EqualityCompareInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 573 void EqualityCompareInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 570 ASSERT((kind() == Token::kNE) || (kind() == Token::kEQ)); | 574 ASSERT((kind() == Token::kNE) || (kind() == Token::kEQ)); |
| 571 __ Comment("EqualityCompareInstr"); | 575 __ Comment("EqualityCompareInstr"); |
| 572 | 576 |
| 573 Label is_true, is_false; | 577 Label is_true, is_false; |
| 574 BranchLabels labels = { &is_true, &is_false, &is_false }; | 578 BranchLabels labels = { &is_true, &is_false, &is_false }; |
| 579 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 580 EmitBranchOnCondition(compiler, true_condition, labels); |
| 575 | 581 |
| 576 if (operation_cid() == kSmiCid) { | |
| 577 EmitSmiComparisonOp(compiler, *locs(), kind(), labels); | |
| 578 } else { | |
| 579 ASSERT(operation_cid() == kDoubleCid); | |
| 580 EmitDoubleComparisonOp(compiler, *locs(), kind(), labels); | |
| 581 } | |
| 582 Register result = locs()->out().reg(); | 582 Register result = locs()->out().reg(); |
| 583 Label done; | 583 Label done; |
| 584 __ Bind(&is_false); | 584 __ Bind(&is_false); |
| 585 __ LoadObject(result, Bool::False()); | 585 __ LoadObject(result, Bool::False()); |
| 586 __ b(&done); | 586 __ b(&done); |
| 587 __ Bind(&is_true); | 587 __ Bind(&is_true); |
| 588 __ LoadObject(result, Bool::True()); | 588 __ LoadObject(result, Bool::True()); |
| 589 __ Bind(&done); | 589 __ Bind(&done); |
| 590 } | 590 } |
| 591 | 591 |
| 592 | 592 |
| 593 void EqualityCompareInstr::EmitBranchCode(FlowGraphCompiler* compiler, | 593 void EqualityCompareInstr::EmitBranchCode(FlowGraphCompiler* compiler, |
| 594 BranchInstr* branch) { | 594 BranchInstr* branch) { |
| 595 __ TraceSimMsg("EqualityCompareInstr"); | 595 __ TraceSimMsg("EqualityCompareInstr"); |
| 596 __ Comment("EqualityCompareInstr:BranchCode"); | 596 __ Comment("EqualityCompareInstr:BranchCode"); |
| 597 ASSERT((kind() == Token::kNE) || (kind() == Token::kEQ)); | 597 ASSERT((kind() == Token::kNE) || (kind() == Token::kEQ)); |
| 598 | 598 |
| 599 BranchLabels labels = compiler->CreateBranchLabels(branch); | 599 BranchLabels labels = compiler->CreateBranchLabels(branch); |
| 600 | 600 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 601 if (operation_cid() == kSmiCid) { | 601 EmitBranchOnCondition(compiler, true_condition, labels); |
| 602 EmitSmiComparisonOp(compiler, *locs(), kind(), labels); | |
| 603 } else { | |
| 604 ASSERT(operation_cid() == kDoubleCid); | |
| 605 EmitDoubleComparisonOp(compiler, *locs(), kind(), labels); | |
| 606 } | |
| 607 } | 602 } |
| 608 | 603 |
| 609 | 604 |
| 610 LocationSummary* TestSmiInstr::MakeLocationSummary() const { | 605 LocationSummary* TestSmiInstr::MakeLocationSummary() const { |
| 611 const intptr_t kNumInputs = 2; | 606 const intptr_t kNumInputs = 2; |
| 612 const intptr_t kNumTemps = 0; | 607 const intptr_t kNumTemps = 0; |
| 613 LocationSummary* locs = | 608 LocationSummary* locs = |
| 614 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kNoCall); | 609 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kNoCall); |
| 615 locs->set_in(0, Location::RequiresRegister()); | 610 locs->set_in(0, Location::RequiresRegister()); |
| 616 // Only one input can be a constant operand. The case of two constant | 611 // Only one input can be a constant operand. The case of two constant |
| 617 // operands should be handled by constant propagation. | 612 // operands should be handled by constant propagation. |
| 618 locs->set_in(1, Location::RegisterOrConstant(right())); | 613 locs->set_in(1, Location::RegisterOrConstant(right())); |
| 619 return locs; | 614 return locs; |
| 620 } | 615 } |
| 621 | 616 |
| 622 | 617 |
| 623 void TestSmiInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 618 Condition TestSmiInstr::EmitComparisonCode(FlowGraphCompiler* compiler, |
| 624 // Never emitted outside of the BranchInstr. | 619 BranchLabels labels) { |
| 625 UNREACHABLE(); | |
| 626 } | |
| 627 | |
| 628 | |
| 629 void TestSmiInstr::EmitBranchCode(FlowGraphCompiler* compiler, | |
| 630 BranchInstr* branch) { | |
| 631 BranchLabels labels = compiler->CreateBranchLabels(branch); | |
| 632 | |
| 633 Condition true_condition = (kind() == Token::kNE) ? NE : EQ; | |
| 634 Register left = locs()->in(0).reg(); | 620 Register left = locs()->in(0).reg(); |
| 635 Location right = locs()->in(1); | 621 Location right = locs()->in(1); |
| 636 if (right.IsConstant()) { | 622 if (right.IsConstant()) { |
| 637 ASSERT(right.constant().IsSmi()); | 623 ASSERT(right.constant().IsSmi()); |
| 638 const int32_t imm = | 624 const int32_t imm = |
| 639 reinterpret_cast<int32_t>(right.constant().raw()); | 625 reinterpret_cast<int32_t>(right.constant().raw()); |
| 640 __ AndImmediate(CMPRES1, left, imm); | 626 __ AndImmediate(CMPRES1, left, imm); |
| 641 } else { | 627 } else { |
| 642 __ and_(CMPRES1, left, right.reg()); | 628 __ and_(CMPRES1, left, right.reg()); |
| 643 } | 629 } |
| 644 __ mov(CMPRES2, ZR); | 630 __ mov(CMPRES2, ZR); |
| 631 Condition true_condition = (kind() == Token::kNE) ? NE : EQ; |
| 632 return true_condition; |
| 633 } |
| 634 |
| 635 |
| 636 void TestSmiInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 637 // Never emitted outside of the BranchInstr. |
| 638 UNREACHABLE(); |
| 639 } |
| 640 |
| 641 |
| 642 void TestSmiInstr::EmitBranchCode(FlowGraphCompiler* compiler, |
| 643 BranchInstr* branch) { |
| 644 BranchLabels labels = compiler->CreateBranchLabels(branch); |
| 645 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 645 EmitBranchOnCondition(compiler, true_condition, labels); | 646 EmitBranchOnCondition(compiler, true_condition, labels); |
| 646 } | 647 } |
| 647 | 648 |
| 648 | 649 |
| 649 LocationSummary* RelationalOpInstr::MakeLocationSummary() const { | 650 LocationSummary* RelationalOpInstr::MakeLocationSummary() const { |
| 650 const intptr_t kNumInputs = 2; | 651 const intptr_t kNumInputs = 2; |
| 651 const intptr_t kNumTemps = 0; | 652 const intptr_t kNumTemps = 0; |
| 652 if (operation_cid() == kMintCid) { | 653 if (operation_cid() == kMintCid) { |
| 653 const intptr_t kNumTemps = 2; | 654 const intptr_t kNumTemps = 2; |
| 654 LocationSummary* locs = | 655 LocationSummary* locs = |
| (...skipping 20 matching lines...) Expand all Loading... |
| 675 // Only one input can be a constant operand. The case of two constant | 676 // Only one input can be a constant operand. The case of two constant |
| 676 // operands should be handled by constant propagation. | 677 // operands should be handled by constant propagation. |
| 677 summary->set_in(1, summary->in(0).IsConstant() | 678 summary->set_in(1, summary->in(0).IsConstant() |
| 678 ? Location::RequiresRegister() | 679 ? Location::RequiresRegister() |
| 679 : Location::RegisterOrConstant(right())); | 680 : Location::RegisterOrConstant(right())); |
| 680 summary->set_out(Location::RequiresRegister()); | 681 summary->set_out(Location::RequiresRegister()); |
| 681 return summary; | 682 return summary; |
| 682 } | 683 } |
| 683 | 684 |
| 684 | 685 |
| 686 Condition RelationalOpInstr::EmitComparisonCode(FlowGraphCompiler* compiler, |
| 687 BranchLabels labels) { |
| 688 if (operation_cid() == kSmiCid) { |
| 689 return EmitSmiComparisonOp(compiler, *locs(), kind(), labels); |
| 690 } else { |
| 691 ASSERT(operation_cid() == kDoubleCid); |
| 692 return EmitDoubleComparisonOp(compiler, *locs(), kind(), labels); |
| 693 } |
| 694 } |
| 695 |
| 696 |
| 685 void RelationalOpInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 697 void RelationalOpInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 686 __ TraceSimMsg("RelationalOpInstr"); | 698 __ TraceSimMsg("RelationalOpInstr"); |
| 687 | 699 |
| 688 Label is_true, is_false; | 700 Label is_true, is_false; |
| 689 BranchLabels labels = { &is_true, &is_false, &is_false }; | 701 BranchLabels labels = { &is_true, &is_false, &is_false }; |
| 702 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 703 EmitBranchOnCondition(compiler, true_condition, labels); |
| 690 | 704 |
| 691 if (operation_cid() == kSmiCid) { | |
| 692 EmitSmiComparisonOp(compiler, *locs(), kind(), labels); | |
| 693 } else { | |
| 694 ASSERT(operation_cid() == kDoubleCid); | |
| 695 EmitDoubleComparisonOp(compiler, *locs(), kind(), labels); | |
| 696 } | |
| 697 Register result = locs()->out().reg(); | 705 Register result = locs()->out().reg(); |
| 698 Label done; | 706 Label done; |
| 699 __ Bind(&is_false); | 707 __ Bind(&is_false); |
| 700 __ LoadObject(result, Bool::False()); | 708 __ LoadObject(result, Bool::False()); |
| 701 __ b(&done); | 709 __ b(&done); |
| 702 __ Bind(&is_true); | 710 __ Bind(&is_true); |
| 703 __ LoadObject(result, Bool::True()); | 711 __ LoadObject(result, Bool::True()); |
| 704 __ Bind(&done); | 712 __ Bind(&done); |
| 705 } | 713 } |
| 706 | 714 |
| 707 | 715 |
| 708 void RelationalOpInstr::EmitBranchCode(FlowGraphCompiler* compiler, | 716 void RelationalOpInstr::EmitBranchCode(FlowGraphCompiler* compiler, |
| 709 BranchInstr* branch) { | 717 BranchInstr* branch) { |
| 710 __ TraceSimMsg("RelationalOpInstr"); | 718 __ TraceSimMsg("RelationalOpInstr"); |
| 711 | 719 |
| 712 BranchLabels labels = compiler->CreateBranchLabels(branch); | 720 BranchLabels labels = compiler->CreateBranchLabels(branch); |
| 713 | 721 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 714 if (operation_cid() == kSmiCid) { | 722 EmitBranchOnCondition(compiler, true_condition, labels); |
| 715 EmitSmiComparisonOp(compiler, *locs(), kind(), labels); | |
| 716 } else { | |
| 717 ASSERT(operation_cid() == kDoubleCid); | |
| 718 EmitDoubleComparisonOp(compiler, *locs(), kind(), labels); | |
| 719 } | |
| 720 } | 723 } |
| 721 | 724 |
| 722 | 725 |
| 723 LocationSummary* NativeCallInstr::MakeLocationSummary() const { | 726 LocationSummary* NativeCallInstr::MakeLocationSummary() const { |
| 724 const intptr_t kNumInputs = 0; | 727 const intptr_t kNumInputs = 0; |
| 725 const intptr_t kNumTemps = 3; | 728 const intptr_t kNumTemps = 3; |
| 726 LocationSummary* locs = | 729 LocationSummary* locs = |
| 727 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kCall); | 730 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kCall); |
| 728 locs->set_temp(0, Location::RegisterLocation(A1)); | 731 locs->set_temp(0, Location::RegisterLocation(A1)); |
| 729 locs->set_temp(1, Location::RegisterLocation(A2)); | 732 locs->set_temp(1, Location::RegisterLocation(A2)); |
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| 3748 // Only one of the inputs can be a constant. Choose register if the first one | 3751 // Only one of the inputs can be a constant. Choose register if the first one |
| 3749 // is a constant. | 3752 // is a constant. |
| 3750 locs->set_in(1, locs->in(0).IsConstant() | 3753 locs->set_in(1, locs->in(0).IsConstant() |
| 3751 ? Location::RequiresRegister() | 3754 ? Location::RequiresRegister() |
| 3752 : Location::RegisterOrConstant(right())); | 3755 : Location::RegisterOrConstant(right())); |
| 3753 locs->set_out(Location::RequiresRegister()); | 3756 locs->set_out(Location::RequiresRegister()); |
| 3754 return locs; | 3757 return locs; |
| 3755 } | 3758 } |
| 3756 | 3759 |
| 3757 | 3760 |
| 3758 static void EmitStrictComparison(FlowGraphCompiler* compiler, | 3761 Condition StrictCompareInstr::EmitComparisonCode(FlowGraphCompiler* compiler, |
| 3759 StrictCompareInstr* compare, | 3762 BranchLabels labels) { |
| 3760 BranchLabels labels) { | 3763 Location left = locs()->in(0); |
| 3761 LocationSummary* locs = compare->locs(); | 3764 Location right = locs()->in(1); |
| 3762 bool needs_number_check = compare->needs_number_check(); | |
| 3763 intptr_t token_pos = compare->token_pos(); | |
| 3764 Token::Kind kind = compare->kind(); | |
| 3765 Location left = locs->in(0); | |
| 3766 Location right = locs->in(1); | |
| 3767 ASSERT(!left.IsConstant() || !right.IsConstant()); | 3765 ASSERT(!left.IsConstant() || !right.IsConstant()); |
| 3768 if (left.IsConstant()) { | 3766 if (left.IsConstant()) { |
| 3769 compiler->EmitEqualityRegConstCompare(right.reg(), | 3767 compiler->EmitEqualityRegConstCompare(right.reg(), |
| 3770 left.constant(), | 3768 left.constant(), |
| 3771 needs_number_check, | 3769 needs_number_check(), |
| 3772 token_pos); | 3770 token_pos()); |
| 3773 } else if (right.IsConstant()) { | 3771 } else if (right.IsConstant()) { |
| 3774 compiler->EmitEqualityRegConstCompare(left.reg(), | 3772 compiler->EmitEqualityRegConstCompare(left.reg(), |
| 3775 right.constant(), | 3773 right.constant(), |
| 3776 needs_number_check, | 3774 needs_number_check(), |
| 3777 token_pos); | 3775 token_pos()); |
| 3778 } else { | 3776 } else { |
| 3779 compiler->EmitEqualityRegRegCompare(left.reg(), | 3777 compiler->EmitEqualityRegRegCompare(left.reg(), |
| 3780 right.reg(), | 3778 right.reg(), |
| 3781 needs_number_check, | 3779 needs_number_check(), |
| 3782 token_pos); | 3780 token_pos()); |
| 3783 } | 3781 } |
| 3784 Condition true_condition = (kind == Token::kEQ_STRICT) ? EQ : NE; | 3782 Condition true_condition = (kind() == Token::kEQ_STRICT) ? EQ : NE; |
| 3785 EmitBranchOnCondition(compiler, true_condition, labels); | 3783 return true_condition; |
| 3786 } | 3784 } |
| 3787 | 3785 |
| 3788 // Special code for numbers (compare values instead of references.) | 3786 |
| 3789 void StrictCompareInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 3787 void StrictCompareInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 3790 __ TraceSimMsg("StrictCompareInstr"); | 3788 __ TraceSimMsg("StrictCompareInstr"); |
| 3791 __ Comment("StrictCompareInstr"); | 3789 __ Comment("StrictCompareInstr"); |
| 3792 ASSERT(kind() == Token::kEQ_STRICT || kind() == Token::kNE_STRICT); | 3790 ASSERT(kind() == Token::kEQ_STRICT || kind() == Token::kNE_STRICT); |
| 3793 | 3791 |
| 3794 Label is_true, is_false; | 3792 Label is_true, is_false; |
| 3795 BranchLabels labels = { &is_true, &is_false, &is_false }; | 3793 BranchLabels labels = { &is_true, &is_false, &is_false }; |
| 3796 | 3794 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 3797 EmitStrictComparison(compiler, this, labels); | 3795 EmitBranchOnCondition(compiler, true_condition, labels); |
| 3798 | 3796 |
| 3799 Register result = locs()->out().reg(); | 3797 Register result = locs()->out().reg(); |
| 3800 Label done; | 3798 Label done; |
| 3801 __ Bind(&is_false); | 3799 __ Bind(&is_false); |
| 3802 __ LoadObject(result, Bool::False()); | 3800 __ LoadObject(result, Bool::False()); |
| 3803 __ b(&done); | 3801 __ b(&done); |
| 3804 __ Bind(&is_true); | 3802 __ Bind(&is_true); |
| 3805 __ LoadObject(result, Bool::True()); | 3803 __ LoadObject(result, Bool::True()); |
| 3806 __ Bind(&done); | 3804 __ Bind(&done); |
| 3807 } | 3805 } |
| 3808 | 3806 |
| 3809 | 3807 |
| 3810 void StrictCompareInstr::EmitBranchCode(FlowGraphCompiler* compiler, | 3808 void StrictCompareInstr::EmitBranchCode(FlowGraphCompiler* compiler, |
| 3811 BranchInstr* branch) { | 3809 BranchInstr* branch) { |
| 3812 __ TraceSimMsg("StrictCompareInstr::EmitBranchCode"); | 3810 __ TraceSimMsg("StrictCompareInstr::EmitBranchCode"); |
| 3813 ASSERT(kind() == Token::kEQ_STRICT || kind() == Token::kNE_STRICT); | 3811 ASSERT(kind() == Token::kEQ_STRICT || kind() == Token::kNE_STRICT); |
| 3814 | 3812 |
| 3815 BranchLabels labels = compiler->CreateBranchLabels(branch); | 3813 BranchLabels labels = compiler->CreateBranchLabels(branch); |
| 3816 | 3814 Condition true_condition = EmitComparisonCode(compiler, labels); |
| 3817 EmitStrictComparison(compiler, this, labels); | 3815 EmitBranchOnCondition(compiler, true_condition, labels); |
| 3818 } | 3816 } |
| 3819 | 3817 |
| 3820 | 3818 |
| 3821 LocationSummary* BooleanNegateInstr::MakeLocationSummary() const { | 3819 LocationSummary* BooleanNegateInstr::MakeLocationSummary() const { |
| 3822 return LocationSummary::Make(1, | 3820 return LocationSummary::Make(1, |
| 3823 Location::RequiresRegister(), | 3821 Location::RequiresRegister(), |
| 3824 LocationSummary::kNoCall); | 3822 LocationSummary::kNoCall); |
| 3825 } | 3823 } |
| 3826 | 3824 |
| 3827 | 3825 |
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| 3895 compiler->GenerateCall(token_pos(), | 3893 compiler->GenerateCall(token_pos(), |
| 3896 &label, | 3894 &label, |
| 3897 PcDescriptors::kOther, | 3895 PcDescriptors::kOther, |
| 3898 locs()); | 3896 locs()); |
| 3899 __ Drop(2); // Discard type arguments and receiver. | 3897 __ Drop(2); // Discard type arguments and receiver. |
| 3900 } | 3898 } |
| 3901 | 3899 |
| 3902 } // namespace dart | 3900 } // namespace dart |
| 3903 | 3901 |
| 3904 #endif // defined TARGET_ARCH_MIPS | 3902 #endif // defined TARGET_ARCH_MIPS |
| OLD | NEW |