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Issue 1405363003: Move Hydrogen and Lithium to src/crankshaft/ (Closed) Base URL: https://chromium.googlesource.com/v8/v8.git@master
Patch Set: rebased Created 5 years, 2 months ago
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1 // Copyright 2012 the V8 project authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4
5 #include "src/mips64/lithium-mips64.h"
6
7 #include <sstream>
8
9 #if V8_TARGET_ARCH_MIPS64
10
11 #include "src/hydrogen-osr.h"
12 #include "src/lithium-inl.h"
13 #include "src/mips64/lithium-codegen-mips64.h"
14
15 namespace v8 {
16 namespace internal {
17
18 #define DEFINE_COMPILE(type) \
19 void L##type::CompileToNative(LCodeGen* generator) { \
20 generator->Do##type(this); \
21 }
22 LITHIUM_CONCRETE_INSTRUCTION_LIST(DEFINE_COMPILE)
23 #undef DEFINE_COMPILE
24
25 #ifdef DEBUG
26 void LInstruction::VerifyCall() {
27 // Call instructions can use only fixed registers as temporaries and
28 // outputs because all registers are blocked by the calling convention.
29 // Inputs operands must use a fixed register or use-at-start policy or
30 // a non-register policy.
31 DCHECK(Output() == NULL ||
32 LUnallocated::cast(Output())->HasFixedPolicy() ||
33 !LUnallocated::cast(Output())->HasRegisterPolicy());
34 for (UseIterator it(this); !it.Done(); it.Advance()) {
35 LUnallocated* operand = LUnallocated::cast(it.Current());
36 DCHECK(operand->HasFixedPolicy() ||
37 operand->IsUsedAtStart());
38 }
39 for (TempIterator it(this); !it.Done(); it.Advance()) {
40 LUnallocated* operand = LUnallocated::cast(it.Current());
41 DCHECK(operand->HasFixedPolicy() ||!operand->HasRegisterPolicy());
42 }
43 }
44 #endif
45
46
47 void LInstruction::PrintTo(StringStream* stream) {
48 stream->Add("%s ", this->Mnemonic());
49
50 PrintOutputOperandTo(stream);
51
52 PrintDataTo(stream);
53
54 if (HasEnvironment()) {
55 stream->Add(" ");
56 environment()->PrintTo(stream);
57 }
58
59 if (HasPointerMap()) {
60 stream->Add(" ");
61 pointer_map()->PrintTo(stream);
62 }
63 }
64
65
66 void LInstruction::PrintDataTo(StringStream* stream) {
67 stream->Add("= ");
68 for (int i = 0; i < InputCount(); i++) {
69 if (i > 0) stream->Add(" ");
70 if (InputAt(i) == NULL) {
71 stream->Add("NULL");
72 } else {
73 InputAt(i)->PrintTo(stream);
74 }
75 }
76 }
77
78
79 void LInstruction::PrintOutputOperandTo(StringStream* stream) {
80 if (HasResult()) result()->PrintTo(stream);
81 }
82
83
84 void LLabel::PrintDataTo(StringStream* stream) {
85 LGap::PrintDataTo(stream);
86 LLabel* rep = replacement();
87 if (rep != NULL) {
88 stream->Add(" Dead block replaced with B%d", rep->block_id());
89 }
90 }
91
92
93 bool LGap::IsRedundant() const {
94 for (int i = 0; i < 4; i++) {
95 if (parallel_moves_[i] != NULL && !parallel_moves_[i]->IsRedundant()) {
96 return false;
97 }
98 }
99
100 return true;
101 }
102
103
104 void LGap::PrintDataTo(StringStream* stream) {
105 for (int i = 0; i < 4; i++) {
106 stream->Add("(");
107 if (parallel_moves_[i] != NULL) {
108 parallel_moves_[i]->PrintDataTo(stream);
109 }
110 stream->Add(") ");
111 }
112 }
113
114
115 const char* LArithmeticD::Mnemonic() const {
116 switch (op()) {
117 case Token::ADD: return "add-d";
118 case Token::SUB: return "sub-d";
119 case Token::MUL: return "mul-d";
120 case Token::DIV: return "div-d";
121 case Token::MOD: return "mod-d";
122 default:
123 UNREACHABLE();
124 return NULL;
125 }
126 }
127
128
129 const char* LArithmeticT::Mnemonic() const {
130 switch (op()) {
131 case Token::ADD: return "add-t";
132 case Token::SUB: return "sub-t";
133 case Token::MUL: return "mul-t";
134 case Token::MOD: return "mod-t";
135 case Token::DIV: return "div-t";
136 case Token::BIT_AND: return "bit-and-t";
137 case Token::BIT_OR: return "bit-or-t";
138 case Token::BIT_XOR: return "bit-xor-t";
139 case Token::ROR: return "ror-t";
140 case Token::SHL: return "sll-t";
141 case Token::SAR: return "sra-t";
142 case Token::SHR: return "srl-t";
143 default:
144 UNREACHABLE();
145 return NULL;
146 }
147 }
148
149
150 bool LGoto::HasInterestingComment(LCodeGen* gen) const {
151 return !gen->IsNextEmittedBlock(block_id());
152 }
153
154
155 void LGoto::PrintDataTo(StringStream* stream) {
156 stream->Add("B%d", block_id());
157 }
158
159
160 void LBranch::PrintDataTo(StringStream* stream) {
161 stream->Add("B%d | B%d on ", true_block_id(), false_block_id());
162 value()->PrintTo(stream);
163 }
164
165
166 LInstruction* LChunkBuilder::DoDebugBreak(HDebugBreak* instr) {
167 return new(zone()) LDebugBreak();
168 }
169
170
171 void LCompareNumericAndBranch::PrintDataTo(StringStream* stream) {
172 stream->Add("if ");
173 left()->PrintTo(stream);
174 stream->Add(" %s ", Token::String(op()));
175 right()->PrintTo(stream);
176 stream->Add(" then B%d else B%d", true_block_id(), false_block_id());
177 }
178
179
180 void LIsStringAndBranch::PrintDataTo(StringStream* stream) {
181 stream->Add("if is_string(");
182 value()->PrintTo(stream);
183 stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
184 }
185
186
187 void LIsSmiAndBranch::PrintDataTo(StringStream* stream) {
188 stream->Add("if is_smi(");
189 value()->PrintTo(stream);
190 stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
191 }
192
193
194 void LIsUndetectableAndBranch::PrintDataTo(StringStream* stream) {
195 stream->Add("if is_undetectable(");
196 value()->PrintTo(stream);
197 stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
198 }
199
200
201 void LStringCompareAndBranch::PrintDataTo(StringStream* stream) {
202 stream->Add("if string_compare(");
203 left()->PrintTo(stream);
204 right()->PrintTo(stream);
205 stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
206 }
207
208
209 void LHasInstanceTypeAndBranch::PrintDataTo(StringStream* stream) {
210 stream->Add("if has_instance_type(");
211 value()->PrintTo(stream);
212 stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
213 }
214
215
216 void LHasCachedArrayIndexAndBranch::PrintDataTo(StringStream* stream) {
217 stream->Add("if has_cached_array_index(");
218 value()->PrintTo(stream);
219 stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
220 }
221
222
223 void LClassOfTestAndBranch::PrintDataTo(StringStream* stream) {
224 stream->Add("if class_of_test(");
225 value()->PrintTo(stream);
226 stream->Add(", \"%o\") then B%d else B%d",
227 *hydrogen()->class_name(),
228 true_block_id(),
229 false_block_id());
230 }
231
232
233 void LTypeofIsAndBranch::PrintDataTo(StringStream* stream) {
234 stream->Add("if typeof ");
235 value()->PrintTo(stream);
236 stream->Add(" == \"%s\" then B%d else B%d",
237 hydrogen()->type_literal()->ToCString().get(),
238 true_block_id(), false_block_id());
239 }
240
241
242 void LStoreCodeEntry::PrintDataTo(StringStream* stream) {
243 stream->Add(" = ");
244 function()->PrintTo(stream);
245 stream->Add(".code_entry = ");
246 code_object()->PrintTo(stream);
247 }
248
249
250 void LInnerAllocatedObject::PrintDataTo(StringStream* stream) {
251 stream->Add(" = ");
252 base_object()->PrintTo(stream);
253 stream->Add(" + ");
254 offset()->PrintTo(stream);
255 }
256
257
258 void LCallFunction::PrintDataTo(StringStream* stream) {
259 context()->PrintTo(stream);
260 stream->Add(" ");
261 function()->PrintTo(stream);
262 if (hydrogen()->HasVectorAndSlot()) {
263 stream->Add(" (type-feedback-vector ");
264 temp_vector()->PrintTo(stream);
265 stream->Add(" ");
266 temp_slot()->PrintTo(stream);
267 stream->Add(")");
268 }
269 }
270
271
272 void LCallJSFunction::PrintDataTo(StringStream* stream) {
273 stream->Add("= ");
274 function()->PrintTo(stream);
275 stream->Add("#%d / ", arity());
276 }
277
278
279 void LCallWithDescriptor::PrintDataTo(StringStream* stream) {
280 for (int i = 0; i < InputCount(); i++) {
281 InputAt(i)->PrintTo(stream);
282 stream->Add(" ");
283 }
284 stream->Add("#%d / ", arity());
285 }
286
287
288 void LLoadContextSlot::PrintDataTo(StringStream* stream) {
289 context()->PrintTo(stream);
290 stream->Add("[%d]", slot_index());
291 }
292
293
294 void LStoreContextSlot::PrintDataTo(StringStream* stream) {
295 context()->PrintTo(stream);
296 stream->Add("[%d] <- ", slot_index());
297 value()->PrintTo(stream);
298 }
299
300
301 void LInvokeFunction::PrintDataTo(StringStream* stream) {
302 stream->Add("= ");
303 function()->PrintTo(stream);
304 stream->Add(" #%d / ", arity());
305 }
306
307
308 void LCallNew::PrintDataTo(StringStream* stream) {
309 stream->Add("= ");
310 constructor()->PrintTo(stream);
311 stream->Add(" #%d / ", arity());
312 }
313
314
315 void LCallNewArray::PrintDataTo(StringStream* stream) {
316 stream->Add("= ");
317 constructor()->PrintTo(stream);
318 stream->Add(" #%d / ", arity());
319 ElementsKind kind = hydrogen()->elements_kind();
320 stream->Add(" (%s) ", ElementsKindToString(kind));
321 }
322
323
324 void LAccessArgumentsAt::PrintDataTo(StringStream* stream) {
325 arguments()->PrintTo(stream);
326 stream->Add(" length ");
327 length()->PrintTo(stream);
328 stream->Add(" index ");
329 index()->PrintTo(stream);
330 }
331
332
333 void LLoadGlobalViaContext::PrintDataTo(StringStream* stream) {
334 stream->Add("depth:%d slot:%d", depth(), slot_index());
335 }
336
337
338 void LStoreNamedField::PrintDataTo(StringStream* stream) {
339 object()->PrintTo(stream);
340 std::ostringstream os;
341 os << hydrogen()->access() << " <- ";
342 stream->Add(os.str().c_str());
343 value()->PrintTo(stream);
344 }
345
346
347 void LStoreNamedGeneric::PrintDataTo(StringStream* stream) {
348 object()->PrintTo(stream);
349 stream->Add(".");
350 stream->Add(String::cast(*name())->ToCString().get());
351 stream->Add(" <- ");
352 value()->PrintTo(stream);
353 }
354
355
356 void LStoreGlobalViaContext::PrintDataTo(StringStream* stream) {
357 stream->Add("depth:%d slot:%d <- ", depth(), slot_index());
358 value()->PrintTo(stream);
359 }
360
361
362 void LLoadKeyed::PrintDataTo(StringStream* stream) {
363 elements()->PrintTo(stream);
364 stream->Add("[");
365 key()->PrintTo(stream);
366 if (hydrogen()->IsDehoisted()) {
367 stream->Add(" + %d]", base_offset());
368 } else {
369 stream->Add("]");
370 }
371 }
372
373
374 void LStoreKeyed::PrintDataTo(StringStream* stream) {
375 elements()->PrintTo(stream);
376 stream->Add("[");
377 key()->PrintTo(stream);
378 if (hydrogen()->IsDehoisted()) {
379 stream->Add(" + %d] <-", base_offset());
380 } else {
381 stream->Add("] <- ");
382 }
383
384 if (value() == NULL) {
385 DCHECK(hydrogen()->IsConstantHoleStore() &&
386 hydrogen()->value()->representation().IsDouble());
387 stream->Add("<the hole(nan)>");
388 } else {
389 value()->PrintTo(stream);
390 }
391 }
392
393
394 void LStoreKeyedGeneric::PrintDataTo(StringStream* stream) {
395 object()->PrintTo(stream);
396 stream->Add("[");
397 key()->PrintTo(stream);
398 stream->Add("] <- ");
399 value()->PrintTo(stream);
400 }
401
402
403 void LTransitionElementsKind::PrintDataTo(StringStream* stream) {
404 object()->PrintTo(stream);
405 stream->Add(" %p -> %p", *original_map(), *transitioned_map());
406 }
407
408
409 int LPlatformChunk::GetNextSpillIndex(RegisterKind kind) {
410 // Skip a slot if for a double-width slot.
411 if (kind == DOUBLE_REGISTERS) spill_slot_count_++;
412 return spill_slot_count_++;
413 }
414
415
416 LOperand* LPlatformChunk::GetNextSpillSlot(RegisterKind kind) {
417 int index = GetNextSpillIndex(kind);
418 if (kind == DOUBLE_REGISTERS) {
419 return LDoubleStackSlot::Create(index, zone());
420 } else {
421 DCHECK(kind == GENERAL_REGISTERS);
422 return LStackSlot::Create(index, zone());
423 }
424 }
425
426
427 LPlatformChunk* LChunkBuilder::Build() {
428 DCHECK(is_unused());
429 chunk_ = new(zone()) LPlatformChunk(info(), graph());
430 LPhase phase("L_Building chunk", chunk_);
431 status_ = BUILDING;
432
433 // If compiling for OSR, reserve space for the unoptimized frame,
434 // which will be subsumed into this frame.
435 if (graph()->has_osr()) {
436 for (int i = graph()->osr()->UnoptimizedFrameSlots(); i > 0; i--) {
437 chunk_->GetNextSpillIndex(GENERAL_REGISTERS);
438 }
439 }
440
441 const ZoneList<HBasicBlock*>* blocks = graph()->blocks();
442 for (int i = 0; i < blocks->length(); i++) {
443 HBasicBlock* next = NULL;
444 if (i < blocks->length() - 1) next = blocks->at(i + 1);
445 DoBasicBlock(blocks->at(i), next);
446 if (is_aborted()) return NULL;
447 }
448 status_ = DONE;
449 return chunk_;
450 }
451
452
453 LUnallocated* LChunkBuilder::ToUnallocated(Register reg) {
454 return new (zone()) LUnallocated(LUnallocated::FIXED_REGISTER, reg.code());
455 }
456
457
458 LUnallocated* LChunkBuilder::ToUnallocated(DoubleRegister reg) {
459 return new (zone())
460 LUnallocated(LUnallocated::FIXED_DOUBLE_REGISTER, reg.code());
461 }
462
463
464 LOperand* LChunkBuilder::UseFixed(HValue* value, Register fixed_register) {
465 return Use(value, ToUnallocated(fixed_register));
466 }
467
468
469 LOperand* LChunkBuilder::UseFixedDouble(HValue* value, DoubleRegister reg) {
470 return Use(value, ToUnallocated(reg));
471 }
472
473
474 LOperand* LChunkBuilder::UseRegister(HValue* value) {
475 return Use(value, new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER));
476 }
477
478
479 LOperand* LChunkBuilder::UseRegisterAtStart(HValue* value) {
480 return Use(value,
481 new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER,
482 LUnallocated::USED_AT_START));
483 }
484
485
486 LOperand* LChunkBuilder::UseTempRegister(HValue* value) {
487 return Use(value, new(zone()) LUnallocated(LUnallocated::WRITABLE_REGISTER));
488 }
489
490
491 LOperand* LChunkBuilder::Use(HValue* value) {
492 return Use(value, new(zone()) LUnallocated(LUnallocated::NONE));
493 }
494
495
496 LOperand* LChunkBuilder::UseAtStart(HValue* value) {
497 return Use(value, new(zone()) LUnallocated(LUnallocated::NONE,
498 LUnallocated::USED_AT_START));
499 }
500
501
502 LOperand* LChunkBuilder::UseOrConstant(HValue* value) {
503 return value->IsConstant()
504 ? chunk_->DefineConstantOperand(HConstant::cast(value))
505 : Use(value);
506 }
507
508
509 LOperand* LChunkBuilder::UseOrConstantAtStart(HValue* value) {
510 return value->IsConstant()
511 ? chunk_->DefineConstantOperand(HConstant::cast(value))
512 : UseAtStart(value);
513 }
514
515
516 LOperand* LChunkBuilder::UseRegisterOrConstant(HValue* value) {
517 return value->IsConstant()
518 ? chunk_->DefineConstantOperand(HConstant::cast(value))
519 : UseRegister(value);
520 }
521
522
523 LOperand* LChunkBuilder::UseRegisterOrConstantAtStart(HValue* value) {
524 return value->IsConstant()
525 ? chunk_->DefineConstantOperand(HConstant::cast(value))
526 : UseRegisterAtStart(value);
527 }
528
529
530 LOperand* LChunkBuilder::UseConstant(HValue* value) {
531 return chunk_->DefineConstantOperand(HConstant::cast(value));
532 }
533
534
535 LOperand* LChunkBuilder::UseAny(HValue* value) {
536 return value->IsConstant()
537 ? chunk_->DefineConstantOperand(HConstant::cast(value))
538 : Use(value, new(zone()) LUnallocated(LUnallocated::ANY));
539 }
540
541
542 LOperand* LChunkBuilder::Use(HValue* value, LUnallocated* operand) {
543 if (value->EmitAtUses()) {
544 HInstruction* instr = HInstruction::cast(value);
545 VisitInstruction(instr);
546 }
547 operand->set_virtual_register(value->id());
548 return operand;
549 }
550
551
552 LInstruction* LChunkBuilder::Define(LTemplateResultInstruction<1>* instr,
553 LUnallocated* result) {
554 result->set_virtual_register(current_instruction_->id());
555 instr->set_result(result);
556 return instr;
557 }
558
559
560 LInstruction* LChunkBuilder::DefineAsRegister(
561 LTemplateResultInstruction<1>* instr) {
562 return Define(instr,
563 new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER));
564 }
565
566
567 LInstruction* LChunkBuilder::DefineAsSpilled(
568 LTemplateResultInstruction<1>* instr, int index) {
569 return Define(instr,
570 new(zone()) LUnallocated(LUnallocated::FIXED_SLOT, index));
571 }
572
573
574 LInstruction* LChunkBuilder::DefineSameAsFirst(
575 LTemplateResultInstruction<1>* instr) {
576 return Define(instr,
577 new(zone()) LUnallocated(LUnallocated::SAME_AS_FIRST_INPUT));
578 }
579
580
581 LInstruction* LChunkBuilder::DefineFixed(
582 LTemplateResultInstruction<1>* instr, Register reg) {
583 return Define(instr, ToUnallocated(reg));
584 }
585
586
587 LInstruction* LChunkBuilder::DefineFixedDouble(
588 LTemplateResultInstruction<1>* instr, DoubleRegister reg) {
589 return Define(instr, ToUnallocated(reg));
590 }
591
592
593 LInstruction* LChunkBuilder::AssignEnvironment(LInstruction* instr) {
594 HEnvironment* hydrogen_env = current_block_->last_environment();
595 int argument_index_accumulator = 0;
596 ZoneList<HValue*> objects_to_materialize(0, zone());
597 instr->set_environment(CreateEnvironment(hydrogen_env,
598 &argument_index_accumulator,
599 &objects_to_materialize));
600 return instr;
601 }
602
603
604 LInstruction* LChunkBuilder::MarkAsCall(LInstruction* instr,
605 HInstruction* hinstr,
606 CanDeoptimize can_deoptimize) {
607 info()->MarkAsNonDeferredCalling();
608 #ifdef DEBUG
609 instr->VerifyCall();
610 #endif
611 instr->MarkAsCall();
612 instr = AssignPointerMap(instr);
613
614 // If instruction does not have side-effects lazy deoptimization
615 // after the call will try to deoptimize to the point before the call.
616 // Thus we still need to attach environment to this call even if
617 // call sequence can not deoptimize eagerly.
618 bool needs_environment =
619 (can_deoptimize == CAN_DEOPTIMIZE_EAGERLY) ||
620 !hinstr->HasObservableSideEffects();
621 if (needs_environment && !instr->HasEnvironment()) {
622 instr = AssignEnvironment(instr);
623 // We can't really figure out if the environment is needed or not.
624 instr->environment()->set_has_been_used();
625 }
626
627 return instr;
628 }
629
630
631 LInstruction* LChunkBuilder::AssignPointerMap(LInstruction* instr) {
632 DCHECK(!instr->HasPointerMap());
633 instr->set_pointer_map(new(zone()) LPointerMap(zone()));
634 return instr;
635 }
636
637
638 LUnallocated* LChunkBuilder::TempRegister() {
639 LUnallocated* operand =
640 new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER);
641 int vreg = allocator_->GetVirtualRegister();
642 if (!allocator_->AllocationOk()) {
643 Abort(kOutOfVirtualRegistersWhileTryingToAllocateTempRegister);
644 vreg = 0;
645 }
646 operand->set_virtual_register(vreg);
647 return operand;
648 }
649
650
651 LUnallocated* LChunkBuilder::TempDoubleRegister() {
652 LUnallocated* operand =
653 new(zone()) LUnallocated(LUnallocated::MUST_HAVE_DOUBLE_REGISTER);
654 int vreg = allocator_->GetVirtualRegister();
655 if (!allocator_->AllocationOk()) {
656 Abort(kOutOfVirtualRegistersWhileTryingToAllocateTempRegister);
657 vreg = 0;
658 }
659 operand->set_virtual_register(vreg);
660 return operand;
661 }
662
663
664 LOperand* LChunkBuilder::FixedTemp(Register reg) {
665 LUnallocated* operand = ToUnallocated(reg);
666 DCHECK(operand->HasFixedPolicy());
667 return operand;
668 }
669
670
671 LOperand* LChunkBuilder::FixedTemp(DoubleRegister reg) {
672 LUnallocated* operand = ToUnallocated(reg);
673 DCHECK(operand->HasFixedPolicy());
674 return operand;
675 }
676
677
678 LInstruction* LChunkBuilder::DoBlockEntry(HBlockEntry* instr) {
679 return new(zone()) LLabel(instr->block());
680 }
681
682
683 LInstruction* LChunkBuilder::DoDummyUse(HDummyUse* instr) {
684 return DefineAsRegister(new(zone()) LDummyUse(UseAny(instr->value())));
685 }
686
687
688 LInstruction* LChunkBuilder::DoEnvironmentMarker(HEnvironmentMarker* instr) {
689 UNREACHABLE();
690 return NULL;
691 }
692
693
694 LInstruction* LChunkBuilder::DoDeoptimize(HDeoptimize* instr) {
695 return AssignEnvironment(new(zone()) LDeoptimize);
696 }
697
698
699 LInstruction* LChunkBuilder::DoShift(Token::Value op,
700 HBitwiseBinaryOperation* instr) {
701 if (instr->representation().IsSmiOrInteger32()) {
702 DCHECK(instr->left()->representation().Equals(instr->representation()));
703 DCHECK(instr->right()->representation().Equals(instr->representation()));
704 LOperand* left = UseRegisterAtStart(instr->left());
705
706 HValue* right_value = instr->right();
707 LOperand* right = NULL;
708 int constant_value = 0;
709 bool does_deopt = false;
710 if (right_value->IsConstant()) {
711 HConstant* constant = HConstant::cast(right_value);
712 right = chunk_->DefineConstantOperand(constant);
713 constant_value = constant->Integer32Value() & 0x1f;
714 // Left shifts can deoptimize if we shift by > 0 and the result cannot be
715 // truncated to smi.
716 if (instr->representation().IsSmi() && constant_value > 0) {
717 does_deopt = !instr->CheckUsesForFlag(HValue::kTruncatingToSmi);
718 }
719 } else {
720 right = UseRegisterAtStart(right_value);
721 }
722
723 // Shift operations can only deoptimize if we do a logical shift
724 // by 0 and the result cannot be truncated to int32.
725 if (op == Token::SHR && constant_value == 0) {
726 does_deopt = !instr->CheckFlag(HInstruction::kUint32);
727 }
728
729 LInstruction* result =
730 DefineAsRegister(new(zone()) LShiftI(op, left, right, does_deopt));
731 return does_deopt ? AssignEnvironment(result) : result;
732 } else {
733 return DoArithmeticT(op, instr);
734 }
735 }
736
737
738 LInstruction* LChunkBuilder::DoArithmeticD(Token::Value op,
739 HArithmeticBinaryOperation* instr) {
740 DCHECK(instr->representation().IsDouble());
741 DCHECK(instr->left()->representation().IsDouble());
742 DCHECK(instr->right()->representation().IsDouble());
743 if (op == Token::MOD) {
744 LOperand* left = UseFixedDouble(instr->left(), f2);
745 LOperand* right = UseFixedDouble(instr->right(), f4);
746 LArithmeticD* result = new(zone()) LArithmeticD(op, left, right);
747 // We call a C function for double modulo. It can't trigger a GC. We need
748 // to use fixed result register for the call.
749 // TODO(fschneider): Allow any register as input registers.
750 return MarkAsCall(DefineFixedDouble(result, f2), instr);
751 } else {
752 LOperand* left = UseRegisterAtStart(instr->left());
753 LOperand* right = UseRegisterAtStart(instr->right());
754 LArithmeticD* result = new(zone()) LArithmeticD(op, left, right);
755 return DefineAsRegister(result);
756 }
757 }
758
759
760 LInstruction* LChunkBuilder::DoArithmeticT(Token::Value op,
761 HBinaryOperation* instr) {
762 HValue* left = instr->left();
763 HValue* right = instr->right();
764 DCHECK(left->representation().IsTagged());
765 DCHECK(right->representation().IsTagged());
766 LOperand* context = UseFixed(instr->context(), cp);
767 LOperand* left_operand = UseFixed(left, a1);
768 LOperand* right_operand = UseFixed(right, a0);
769 LArithmeticT* result =
770 new(zone()) LArithmeticT(op, context, left_operand, right_operand);
771 return MarkAsCall(DefineFixed(result, v0), instr);
772 }
773
774
775 void LChunkBuilder::DoBasicBlock(HBasicBlock* block, HBasicBlock* next_block) {
776 DCHECK(is_building());
777 current_block_ = block;
778 next_block_ = next_block;
779 if (block->IsStartBlock()) {
780 block->UpdateEnvironment(graph_->start_environment());
781 argument_count_ = 0;
782 } else if (block->predecessors()->length() == 1) {
783 // We have a single predecessor => copy environment and outgoing
784 // argument count from the predecessor.
785 DCHECK(block->phis()->length() == 0);
786 HBasicBlock* pred = block->predecessors()->at(0);
787 HEnvironment* last_environment = pred->last_environment();
788 DCHECK(last_environment != NULL);
789 // Only copy the environment, if it is later used again.
790 if (pred->end()->SecondSuccessor() == NULL) {
791 DCHECK(pred->end()->FirstSuccessor() == block);
792 } else {
793 if (pred->end()->FirstSuccessor()->block_id() > block->block_id() ||
794 pred->end()->SecondSuccessor()->block_id() > block->block_id()) {
795 last_environment = last_environment->Copy();
796 }
797 }
798 block->UpdateEnvironment(last_environment);
799 DCHECK(pred->argument_count() >= 0);
800 argument_count_ = pred->argument_count();
801 } else {
802 // We are at a state join => process phis.
803 HBasicBlock* pred = block->predecessors()->at(0);
804 // No need to copy the environment, it cannot be used later.
805 HEnvironment* last_environment = pred->last_environment();
806 for (int i = 0; i < block->phis()->length(); ++i) {
807 HPhi* phi = block->phis()->at(i);
808 if (phi->HasMergedIndex()) {
809 last_environment->SetValueAt(phi->merged_index(), phi);
810 }
811 }
812 for (int i = 0; i < block->deleted_phis()->length(); ++i) {
813 if (block->deleted_phis()->at(i) < last_environment->length()) {
814 last_environment->SetValueAt(block->deleted_phis()->at(i),
815 graph_->GetConstantUndefined());
816 }
817 }
818 block->UpdateEnvironment(last_environment);
819 // Pick up the outgoing argument count of one of the predecessors.
820 argument_count_ = pred->argument_count();
821 }
822 HInstruction* current = block->first();
823 int start = chunk_->instructions()->length();
824 while (current != NULL && !is_aborted()) {
825 // Code for constants in registers is generated lazily.
826 if (!current->EmitAtUses()) {
827 VisitInstruction(current);
828 }
829 current = current->next();
830 }
831 int end = chunk_->instructions()->length() - 1;
832 if (end >= start) {
833 block->set_first_instruction_index(start);
834 block->set_last_instruction_index(end);
835 }
836 block->set_argument_count(argument_count_);
837 next_block_ = NULL;
838 current_block_ = NULL;
839 }
840
841
842 void LChunkBuilder::VisitInstruction(HInstruction* current) {
843 HInstruction* old_current = current_instruction_;
844 current_instruction_ = current;
845
846 LInstruction* instr = NULL;
847 if (current->CanReplaceWithDummyUses()) {
848 if (current->OperandCount() == 0) {
849 instr = DefineAsRegister(new(zone()) LDummy());
850 } else {
851 DCHECK(!current->OperandAt(0)->IsControlInstruction());
852 instr = DefineAsRegister(new(zone())
853 LDummyUse(UseAny(current->OperandAt(0))));
854 }
855 for (int i = 1; i < current->OperandCount(); ++i) {
856 if (current->OperandAt(i)->IsControlInstruction()) continue;
857 LInstruction* dummy =
858 new(zone()) LDummyUse(UseAny(current->OperandAt(i)));
859 dummy->set_hydrogen_value(current);
860 chunk_->AddInstruction(dummy, current_block_);
861 }
862 } else {
863 HBasicBlock* successor;
864 if (current->IsControlInstruction() &&
865 HControlInstruction::cast(current)->KnownSuccessorBlock(&successor) &&
866 successor != NULL) {
867 instr = new(zone()) LGoto(successor);
868 } else {
869 instr = current->CompileToLithium(this);
870 }
871 }
872
873 argument_count_ += current->argument_delta();
874 DCHECK(argument_count_ >= 0);
875
876 if (instr != NULL) {
877 AddInstruction(instr, current);
878 }
879
880 current_instruction_ = old_current;
881 }
882
883
884 void LChunkBuilder::AddInstruction(LInstruction* instr,
885 HInstruction* hydrogen_val) {
886 // Associate the hydrogen instruction first, since we may need it for
887 // the ClobbersRegisters() or ClobbersDoubleRegisters() calls below.
888 instr->set_hydrogen_value(hydrogen_val);
889
890 #if DEBUG
891 // Make sure that the lithium instruction has either no fixed register
892 // constraints in temps or the result OR no uses that are only used at
893 // start. If this invariant doesn't hold, the register allocator can decide
894 // to insert a split of a range immediately before the instruction due to an
895 // already allocated register needing to be used for the instruction's fixed
896 // register constraint. In this case, The register allocator won't see an
897 // interference between the split child and the use-at-start (it would if
898 // the it was just a plain use), so it is free to move the split child into
899 // the same register that is used for the use-at-start.
900 // See https://code.google.com/p/chromium/issues/detail?id=201590
901 if (!(instr->ClobbersRegisters() &&
902 instr->ClobbersDoubleRegisters(isolate()))) {
903 int fixed = 0;
904 int used_at_start = 0;
905 for (UseIterator it(instr); !it.Done(); it.Advance()) {
906 LUnallocated* operand = LUnallocated::cast(it.Current());
907 if (operand->IsUsedAtStart()) ++used_at_start;
908 }
909 if (instr->Output() != NULL) {
910 if (LUnallocated::cast(instr->Output())->HasFixedPolicy()) ++fixed;
911 }
912 for (TempIterator it(instr); !it.Done(); it.Advance()) {
913 LUnallocated* operand = LUnallocated::cast(it.Current());
914 if (operand->HasFixedPolicy()) ++fixed;
915 }
916 DCHECK(fixed == 0 || used_at_start == 0);
917 }
918 #endif
919
920 if (FLAG_stress_pointer_maps && !instr->HasPointerMap()) {
921 instr = AssignPointerMap(instr);
922 }
923 if (FLAG_stress_environments && !instr->HasEnvironment()) {
924 instr = AssignEnvironment(instr);
925 }
926 chunk_->AddInstruction(instr, current_block_);
927
928 if (instr->IsCall() || instr->IsPrologue()) {
929 HValue* hydrogen_value_for_lazy_bailout = hydrogen_val;
930 if (hydrogen_val->HasObservableSideEffects()) {
931 HSimulate* sim = HSimulate::cast(hydrogen_val->next());
932 sim->ReplayEnvironment(current_block_->last_environment());
933 hydrogen_value_for_lazy_bailout = sim;
934 }
935 LInstruction* bailout = AssignEnvironment(new(zone()) LLazyBailout());
936 bailout->set_hydrogen_value(hydrogen_value_for_lazy_bailout);
937 chunk_->AddInstruction(bailout, current_block_);
938 }
939 }
940
941
942 LInstruction* LChunkBuilder::DoPrologue(HPrologue* instr) {
943 return new (zone()) LPrologue();
944 }
945
946
947 LInstruction* LChunkBuilder::DoGoto(HGoto* instr) {
948 return new(zone()) LGoto(instr->FirstSuccessor());
949 }
950
951
952 LInstruction* LChunkBuilder::DoBranch(HBranch* instr) {
953 HValue* value = instr->value();
954 Representation r = value->representation();
955 HType type = value->type();
956 ToBooleanStub::Types expected = instr->expected_input_types();
957 if (expected.IsEmpty()) expected = ToBooleanStub::Types::Generic();
958
959 bool easy_case = !r.IsTagged() || type.IsBoolean() || type.IsSmi() ||
960 type.IsJSArray() || type.IsHeapNumber() || type.IsString();
961 LInstruction* branch = new(zone()) LBranch(UseRegister(value));
962 if (!easy_case &&
963 ((!expected.Contains(ToBooleanStub::SMI) && expected.NeedsMap()) ||
964 !expected.IsGeneric())) {
965 branch = AssignEnvironment(branch);
966 }
967 return branch;
968 }
969
970
971 LInstruction* LChunkBuilder::DoCompareMap(HCompareMap* instr) {
972 DCHECK(instr->value()->representation().IsTagged());
973 LOperand* value = UseRegisterAtStart(instr->value());
974 LOperand* temp = TempRegister();
975 return new(zone()) LCmpMapAndBranch(value, temp);
976 }
977
978
979 LInstruction* LChunkBuilder::DoArgumentsLength(HArgumentsLength* length) {
980 info()->MarkAsRequiresFrame();
981 return DefineAsRegister(
982 new(zone()) LArgumentsLength(UseRegister(length->value())));
983 }
984
985
986 LInstruction* LChunkBuilder::DoArgumentsElements(HArgumentsElements* elems) {
987 info()->MarkAsRequiresFrame();
988 return DefineAsRegister(new(zone()) LArgumentsElements);
989 }
990
991
992 LInstruction* LChunkBuilder::DoInstanceOf(HInstanceOf* instr) {
993 LOperand* left =
994 UseFixed(instr->left(), InstanceOfDescriptor::LeftRegister());
995 LOperand* right =
996 UseFixed(instr->right(), InstanceOfDescriptor::RightRegister());
997 LOperand* context = UseFixed(instr->context(), cp);
998 LInstanceOf* result = new (zone()) LInstanceOf(context, left, right);
999 return MarkAsCall(DefineFixed(result, v0), instr);
1000 }
1001
1002
1003 LInstruction* LChunkBuilder::DoHasInPrototypeChainAndBranch(
1004 HHasInPrototypeChainAndBranch* instr) {
1005 LOperand* object = UseRegister(instr->object());
1006 LOperand* prototype = UseRegister(instr->prototype());
1007 return new (zone()) LHasInPrototypeChainAndBranch(object, prototype);
1008 }
1009
1010
1011 LInstruction* LChunkBuilder::DoWrapReceiver(HWrapReceiver* instr) {
1012 LOperand* receiver = UseRegisterAtStart(instr->receiver());
1013 LOperand* function = UseRegisterAtStart(instr->function());
1014 LWrapReceiver* result = new(zone()) LWrapReceiver(receiver, function);
1015 return AssignEnvironment(DefineAsRegister(result));
1016 }
1017
1018
1019 LInstruction* LChunkBuilder::DoApplyArguments(HApplyArguments* instr) {
1020 LOperand* function = UseFixed(instr->function(), a1);
1021 LOperand* receiver = UseFixed(instr->receiver(), a0);
1022 LOperand* length = UseFixed(instr->length(), a2);
1023 LOperand* elements = UseFixed(instr->elements(), a3);
1024 LApplyArguments* result = new(zone()) LApplyArguments(function,
1025 receiver,
1026 length,
1027 elements);
1028 return MarkAsCall(DefineFixed(result, v0), instr, CAN_DEOPTIMIZE_EAGERLY);
1029 }
1030
1031
1032 LInstruction* LChunkBuilder::DoPushArguments(HPushArguments* instr) {
1033 int argc = instr->OperandCount();
1034 for (int i = 0; i < argc; ++i) {
1035 LOperand* argument = Use(instr->argument(i));
1036 AddInstruction(new(zone()) LPushArgument(argument), instr);
1037 }
1038 return NULL;
1039 }
1040
1041
1042 LInstruction* LChunkBuilder::DoStoreCodeEntry(
1043 HStoreCodeEntry* store_code_entry) {
1044 LOperand* function = UseRegister(store_code_entry->function());
1045 LOperand* code_object = UseTempRegister(store_code_entry->code_object());
1046 return new(zone()) LStoreCodeEntry(function, code_object);
1047 }
1048
1049
1050 LInstruction* LChunkBuilder::DoInnerAllocatedObject(
1051 HInnerAllocatedObject* instr) {
1052 LOperand* base_object = UseRegisterAtStart(instr->base_object());
1053 LOperand* offset = UseRegisterOrConstantAtStart(instr->offset());
1054 return DefineAsRegister(
1055 new(zone()) LInnerAllocatedObject(base_object, offset));
1056 }
1057
1058
1059 LInstruction* LChunkBuilder::DoThisFunction(HThisFunction* instr) {
1060 return instr->HasNoUses()
1061 ? NULL
1062 : DefineAsRegister(new(zone()) LThisFunction);
1063 }
1064
1065
1066 LInstruction* LChunkBuilder::DoContext(HContext* instr) {
1067 if (instr->HasNoUses()) return NULL;
1068
1069 if (info()->IsStub()) {
1070 return DefineFixed(new(zone()) LContext, cp);
1071 }
1072
1073 return DefineAsRegister(new(zone()) LContext);
1074 }
1075
1076
1077 LInstruction* LChunkBuilder::DoDeclareGlobals(HDeclareGlobals* instr) {
1078 LOperand* context = UseFixed(instr->context(), cp);
1079 return MarkAsCall(new(zone()) LDeclareGlobals(context), instr);
1080 }
1081
1082
1083 LInstruction* LChunkBuilder::DoCallJSFunction(
1084 HCallJSFunction* instr) {
1085 LOperand* function = UseFixed(instr->function(), a1);
1086
1087 LCallJSFunction* result = new(zone()) LCallJSFunction(function);
1088
1089 return MarkAsCall(DefineFixed(result, v0), instr);
1090 }
1091
1092
1093 LInstruction* LChunkBuilder::DoCallWithDescriptor(
1094 HCallWithDescriptor* instr) {
1095 CallInterfaceDescriptor descriptor = instr->descriptor();
1096
1097 LOperand* target = UseRegisterOrConstantAtStart(instr->target());
1098 ZoneList<LOperand*> ops(instr->OperandCount(), zone());
1099 // Target
1100 ops.Add(target, zone());
1101 // Context
1102 LOperand* op = UseFixed(instr->OperandAt(1), cp);
1103 ops.Add(op, zone());
1104 // Other register parameters
1105 for (int i = LCallWithDescriptor::kImplicitRegisterParameterCount;
1106 i < instr->OperandCount(); i++) {
1107 op =
1108 UseFixed(instr->OperandAt(i),
1109 descriptor.GetRegisterParameter(
1110 i - LCallWithDescriptor::kImplicitRegisterParameterCount));
1111 ops.Add(op, zone());
1112 }
1113
1114 LCallWithDescriptor* result = new(zone()) LCallWithDescriptor(
1115 descriptor, ops, zone());
1116 return MarkAsCall(DefineFixed(result, v0), instr);
1117 }
1118
1119
1120 LInstruction* LChunkBuilder::DoInvokeFunction(HInvokeFunction* instr) {
1121 LOperand* context = UseFixed(instr->context(), cp);
1122 LOperand* function = UseFixed(instr->function(), a1);
1123 LInvokeFunction* result = new(zone()) LInvokeFunction(context, function);
1124 return MarkAsCall(DefineFixed(result, v0), instr, CANNOT_DEOPTIMIZE_EAGERLY);
1125 }
1126
1127
1128 LInstruction* LChunkBuilder::DoUnaryMathOperation(HUnaryMathOperation* instr) {
1129 switch (instr->op()) {
1130 case kMathFloor:
1131 return DoMathFloor(instr);
1132 case kMathRound:
1133 return DoMathRound(instr);
1134 case kMathFround:
1135 return DoMathFround(instr);
1136 case kMathAbs:
1137 return DoMathAbs(instr);
1138 case kMathLog:
1139 return DoMathLog(instr);
1140 case kMathExp:
1141 return DoMathExp(instr);
1142 case kMathSqrt:
1143 return DoMathSqrt(instr);
1144 case kMathPowHalf:
1145 return DoMathPowHalf(instr);
1146 case kMathClz32:
1147 return DoMathClz32(instr);
1148 default:
1149 UNREACHABLE();
1150 return NULL;
1151 }
1152 }
1153
1154
1155 LInstruction* LChunkBuilder::DoMathLog(HUnaryMathOperation* instr) {
1156 DCHECK(instr->representation().IsDouble());
1157 DCHECK(instr->value()->representation().IsDouble());
1158 LOperand* input = UseFixedDouble(instr->value(), f4);
1159 return MarkAsCall(DefineFixedDouble(new(zone()) LMathLog(input), f4), instr);
1160 }
1161
1162
1163 LInstruction* LChunkBuilder::DoMathClz32(HUnaryMathOperation* instr) {
1164 LOperand* input = UseRegisterAtStart(instr->value());
1165 LMathClz32* result = new(zone()) LMathClz32(input);
1166 return DefineAsRegister(result);
1167 }
1168
1169
1170 LInstruction* LChunkBuilder::DoMathExp(HUnaryMathOperation* instr) {
1171 DCHECK(instr->representation().IsDouble());
1172 DCHECK(instr->value()->representation().IsDouble());
1173 LOperand* input = UseRegister(instr->value());
1174 LOperand* temp1 = TempRegister();
1175 LOperand* temp2 = TempRegister();
1176 LOperand* double_temp = TempDoubleRegister();
1177 LMathExp* result = new(zone()) LMathExp(input, double_temp, temp1, temp2);
1178 return DefineAsRegister(result);
1179 }
1180
1181
1182 LInstruction* LChunkBuilder::DoMathPowHalf(HUnaryMathOperation* instr) {
1183 // Input cannot be the same as the result, see LCodeGen::DoMathPowHalf.
1184 LOperand* input = UseFixedDouble(instr->value(), f8);
1185 LOperand* temp = TempDoubleRegister();
1186 LMathPowHalf* result = new(zone()) LMathPowHalf(input, temp);
1187 return DefineFixedDouble(result, f4);
1188 }
1189
1190
1191 LInstruction* LChunkBuilder::DoMathFround(HUnaryMathOperation* instr) {
1192 LOperand* input = UseRegister(instr->value());
1193 LMathFround* result = new (zone()) LMathFround(input);
1194 return DefineAsRegister(result);
1195 }
1196
1197
1198 LInstruction* LChunkBuilder::DoMathAbs(HUnaryMathOperation* instr) {
1199 Representation r = instr->value()->representation();
1200 LOperand* context = (r.IsDouble() || r.IsSmiOrInteger32())
1201 ? NULL
1202 : UseFixed(instr->context(), cp);
1203 LOperand* input = UseRegister(instr->value());
1204 LInstruction* result =
1205 DefineAsRegister(new(zone()) LMathAbs(context, input));
1206 if (!r.IsDouble() && !r.IsSmiOrInteger32()) result = AssignPointerMap(result);
1207 if (!r.IsDouble()) result = AssignEnvironment(result);
1208 return result;
1209 }
1210
1211
1212 LInstruction* LChunkBuilder::DoMathFloor(HUnaryMathOperation* instr) {
1213 LOperand* input = UseRegister(instr->value());
1214 LOperand* temp = TempRegister();
1215 LMathFloor* result = new(zone()) LMathFloor(input, temp);
1216 return AssignEnvironment(AssignPointerMap(DefineAsRegister(result)));
1217 }
1218
1219
1220 LInstruction* LChunkBuilder::DoMathSqrt(HUnaryMathOperation* instr) {
1221 LOperand* input = UseRegister(instr->value());
1222 LMathSqrt* result = new(zone()) LMathSqrt(input);
1223 return DefineAsRegister(result);
1224 }
1225
1226
1227 LInstruction* LChunkBuilder::DoMathRound(HUnaryMathOperation* instr) {
1228 LOperand* input = UseRegister(instr->value());
1229 LOperand* temp = TempDoubleRegister();
1230 LMathRound* result = new(zone()) LMathRound(input, temp);
1231 return AssignEnvironment(DefineAsRegister(result));
1232 }
1233
1234
1235 LInstruction* LChunkBuilder::DoCallNew(HCallNew* instr) {
1236 LOperand* context = UseFixed(instr->context(), cp);
1237 LOperand* constructor = UseFixed(instr->constructor(), a1);
1238 LCallNew* result = new(zone()) LCallNew(context, constructor);
1239 return MarkAsCall(DefineFixed(result, v0), instr);
1240 }
1241
1242
1243 LInstruction* LChunkBuilder::DoCallNewArray(HCallNewArray* instr) {
1244 LOperand* context = UseFixed(instr->context(), cp);
1245 LOperand* constructor = UseFixed(instr->constructor(), a1);
1246 LCallNewArray* result = new(zone()) LCallNewArray(context, constructor);
1247 return MarkAsCall(DefineFixed(result, v0), instr);
1248 }
1249
1250
1251 LInstruction* LChunkBuilder::DoCallFunction(HCallFunction* instr) {
1252 LOperand* context = UseFixed(instr->context(), cp);
1253 LOperand* function = UseFixed(instr->function(), a1);
1254 LOperand* slot = NULL;
1255 LOperand* vector = NULL;
1256 if (instr->HasVectorAndSlot()) {
1257 slot = FixedTemp(a3);
1258 vector = FixedTemp(a2);
1259 }
1260
1261 LCallFunction* call =
1262 new (zone()) LCallFunction(context, function, slot, vector);
1263 return MarkAsCall(DefineFixed(call, v0), instr);
1264 }
1265
1266
1267 LInstruction* LChunkBuilder::DoCallRuntime(HCallRuntime* instr) {
1268 LOperand* context = UseFixed(instr->context(), cp);
1269 return MarkAsCall(DefineFixed(new(zone()) LCallRuntime(context), v0), instr);
1270 }
1271
1272
1273 LInstruction* LChunkBuilder::DoRor(HRor* instr) {
1274 return DoShift(Token::ROR, instr);
1275 }
1276
1277
1278 LInstruction* LChunkBuilder::DoShr(HShr* instr) {
1279 return DoShift(Token::SHR, instr);
1280 }
1281
1282
1283 LInstruction* LChunkBuilder::DoSar(HSar* instr) {
1284 return DoShift(Token::SAR, instr);
1285 }
1286
1287
1288 LInstruction* LChunkBuilder::DoShl(HShl* instr) {
1289 return DoShift(Token::SHL, instr);
1290 }
1291
1292
1293 LInstruction* LChunkBuilder::DoBitwise(HBitwise* instr) {
1294 if (instr->representation().IsSmiOrInteger32()) {
1295 DCHECK(instr->left()->representation().Equals(instr->representation()));
1296 DCHECK(instr->right()->representation().Equals(instr->representation()));
1297 DCHECK(instr->CheckFlag(HValue::kTruncatingToInt32));
1298
1299 LOperand* left = UseRegisterAtStart(instr->BetterLeftOperand());
1300 LOperand* right = UseOrConstantAtStart(instr->BetterRightOperand());
1301 return DefineAsRegister(new(zone()) LBitI(left, right));
1302 } else {
1303 return DoArithmeticT(instr->op(), instr);
1304 }
1305 }
1306
1307
1308 LInstruction* LChunkBuilder::DoDivByPowerOf2I(HDiv* instr) {
1309 DCHECK(instr->representation().IsSmiOrInteger32());
1310 DCHECK(instr->left()->representation().Equals(instr->representation()));
1311 DCHECK(instr->right()->representation().Equals(instr->representation()));
1312 LOperand* dividend = UseRegister(instr->left());
1313 int32_t divisor = instr->right()->GetInteger32Constant();
1314 LInstruction* result = DefineAsRegister(new(zone()) LDivByPowerOf2I(
1315 dividend, divisor));
1316 if ((instr->CheckFlag(HValue::kBailoutOnMinusZero) && divisor < 0) ||
1317 (instr->CheckFlag(HValue::kCanOverflow) && divisor == -1) ||
1318 (!instr->CheckFlag(HInstruction::kAllUsesTruncatingToInt32) &&
1319 divisor != 1 && divisor != -1)) {
1320 result = AssignEnvironment(result);
1321 }
1322 return result;
1323 }
1324
1325
1326 LInstruction* LChunkBuilder::DoDivByConstI(HDiv* instr) {
1327 DCHECK(instr->representation().IsInteger32());
1328 DCHECK(instr->left()->representation().Equals(instr->representation()));
1329 DCHECK(instr->right()->representation().Equals(instr->representation()));
1330 LOperand* dividend = UseRegister(instr->left());
1331 int32_t divisor = instr->right()->GetInteger32Constant();
1332 LInstruction* result = DefineAsRegister(new(zone()) LDivByConstI(
1333 dividend, divisor));
1334 if (divisor == 0 ||
1335 (instr->CheckFlag(HValue::kBailoutOnMinusZero) && divisor < 0) ||
1336 !instr->CheckFlag(HInstruction::kAllUsesTruncatingToInt32)) {
1337 result = AssignEnvironment(result);
1338 }
1339 return result;
1340 }
1341
1342
1343 LInstruction* LChunkBuilder::DoDivI(HDiv* instr) {
1344 DCHECK(instr->representation().IsSmiOrInteger32());
1345 DCHECK(instr->left()->representation().Equals(instr->representation()));
1346 DCHECK(instr->right()->representation().Equals(instr->representation()));
1347 LOperand* dividend = UseRegister(instr->left());
1348 LOperand* divisor = UseRegister(instr->right());
1349 LOperand* temp = instr->CheckFlag(HInstruction::kAllUsesTruncatingToInt32)
1350 ? NULL : TempRegister();
1351 LInstruction* result =
1352 DefineAsRegister(new(zone()) LDivI(dividend, divisor, temp));
1353 if (instr->CheckFlag(HValue::kCanBeDivByZero) ||
1354 instr->CheckFlag(HValue::kBailoutOnMinusZero) ||
1355 (instr->CheckFlag(HValue::kCanOverflow) &&
1356 !instr->CheckFlag(HValue::kAllUsesTruncatingToInt32)) ||
1357 (!instr->IsMathFloorOfDiv() &&
1358 !instr->CheckFlag(HValue::kAllUsesTruncatingToInt32))) {
1359 result = AssignEnvironment(result);
1360 }
1361 return result;
1362 }
1363
1364
1365 LInstruction* LChunkBuilder::DoDiv(HDiv* instr) {
1366 if (instr->representation().IsSmiOrInteger32()) {
1367 if (instr->RightIsPowerOf2()) {
1368 return DoDivByPowerOf2I(instr);
1369 } else if (instr->right()->IsConstant()) {
1370 return DoDivByConstI(instr);
1371 } else {
1372 return DoDivI(instr);
1373 }
1374 } else if (instr->representation().IsDouble()) {
1375 return DoArithmeticD(Token::DIV, instr);
1376 } else {
1377 return DoArithmeticT(Token::DIV, instr);
1378 }
1379 }
1380
1381
1382 LInstruction* LChunkBuilder::DoFlooringDivByPowerOf2I(HMathFloorOfDiv* instr) {
1383 LOperand* dividend = UseRegisterAtStart(instr->left());
1384 int32_t divisor = instr->right()->GetInteger32Constant();
1385 LInstruction* result = DefineAsRegister(new(zone()) LFlooringDivByPowerOf2I(
1386 dividend, divisor));
1387 if ((instr->CheckFlag(HValue::kBailoutOnMinusZero) && divisor < 0) ||
1388 (instr->CheckFlag(HValue::kLeftCanBeMinInt) && divisor == -1)) {
1389 result = AssignEnvironment(result);
1390 }
1391 return result;
1392 }
1393
1394
1395 LInstruction* LChunkBuilder::DoFlooringDivByConstI(HMathFloorOfDiv* instr) {
1396 DCHECK(instr->representation().IsInteger32());
1397 DCHECK(instr->left()->representation().Equals(instr->representation()));
1398 DCHECK(instr->right()->representation().Equals(instr->representation()));
1399 LOperand* dividend = UseRegister(instr->left());
1400 int32_t divisor = instr->right()->GetInteger32Constant();
1401 LOperand* temp =
1402 ((divisor > 0 && !instr->CheckFlag(HValue::kLeftCanBeNegative)) ||
1403 (divisor < 0 && !instr->CheckFlag(HValue::kLeftCanBePositive))) ?
1404 NULL : TempRegister();
1405 LInstruction* result = DefineAsRegister(
1406 new(zone()) LFlooringDivByConstI(dividend, divisor, temp));
1407 if (divisor == 0 ||
1408 (instr->CheckFlag(HValue::kBailoutOnMinusZero) && divisor < 0)) {
1409 result = AssignEnvironment(result);
1410 }
1411 return result;
1412 }
1413
1414
1415 LInstruction* LChunkBuilder::DoFlooringDivI(HMathFloorOfDiv* instr) {
1416 DCHECK(instr->representation().IsSmiOrInteger32());
1417 DCHECK(instr->left()->representation().Equals(instr->representation()));
1418 DCHECK(instr->right()->representation().Equals(instr->representation()));
1419 LOperand* dividend = UseRegister(instr->left());
1420 LOperand* divisor = UseRegister(instr->right());
1421 LInstruction* result =
1422 DefineAsRegister(new (zone()) LFlooringDivI(dividend, divisor));
1423 if (instr->CheckFlag(HValue::kCanBeDivByZero) ||
1424 instr->CheckFlag(HValue::kBailoutOnMinusZero) ||
1425 (instr->CheckFlag(HValue::kCanOverflow))) {
1426 result = AssignEnvironment(result);
1427 }
1428 return result;
1429 }
1430
1431
1432 LInstruction* LChunkBuilder::DoMathFloorOfDiv(HMathFloorOfDiv* instr) {
1433 if (instr->RightIsPowerOf2()) {
1434 return DoFlooringDivByPowerOf2I(instr);
1435 } else if (instr->right()->IsConstant()) {
1436 return DoFlooringDivByConstI(instr);
1437 } else {
1438 return DoFlooringDivI(instr);
1439 }
1440 }
1441
1442
1443 LInstruction* LChunkBuilder::DoModByPowerOf2I(HMod* instr) {
1444 DCHECK(instr->representation().IsSmiOrInteger32());
1445 DCHECK(instr->left()->representation().Equals(instr->representation()));
1446 DCHECK(instr->right()->representation().Equals(instr->representation()));
1447 LOperand* dividend = UseRegisterAtStart(instr->left());
1448 int32_t divisor = instr->right()->GetInteger32Constant();
1449 LInstruction* result = DefineSameAsFirst(new(zone()) LModByPowerOf2I(
1450 dividend, divisor));
1451 if (instr->CheckFlag(HValue::kLeftCanBeNegative) &&
1452 instr->CheckFlag(HValue::kBailoutOnMinusZero)) {
1453 result = AssignEnvironment(result);
1454 }
1455 return result;
1456 }
1457
1458
1459 LInstruction* LChunkBuilder::DoModByConstI(HMod* instr) {
1460 DCHECK(instr->representation().IsSmiOrInteger32());
1461 DCHECK(instr->left()->representation().Equals(instr->representation()));
1462 DCHECK(instr->right()->representation().Equals(instr->representation()));
1463 LOperand* dividend = UseRegister(instr->left());
1464 int32_t divisor = instr->right()->GetInteger32Constant();
1465 LInstruction* result = DefineAsRegister(new(zone()) LModByConstI(
1466 dividend, divisor));
1467 if (divisor == 0 || instr->CheckFlag(HValue::kBailoutOnMinusZero)) {
1468 result = AssignEnvironment(result);
1469 }
1470 return result;
1471 }
1472
1473
1474 LInstruction* LChunkBuilder::DoModI(HMod* instr) {
1475 DCHECK(instr->representation().IsSmiOrInteger32());
1476 DCHECK(instr->left()->representation().Equals(instr->representation()));
1477 DCHECK(instr->right()->representation().Equals(instr->representation()));
1478 LOperand* dividend = UseRegister(instr->left());
1479 LOperand* divisor = UseRegister(instr->right());
1480 LInstruction* result = DefineAsRegister(new(zone()) LModI(
1481 dividend, divisor));
1482 if (instr->CheckFlag(HValue::kCanBeDivByZero) ||
1483 instr->CheckFlag(HValue::kBailoutOnMinusZero)) {
1484 result = AssignEnvironment(result);
1485 }
1486 return result;
1487 }
1488
1489
1490 LInstruction* LChunkBuilder::DoMod(HMod* instr) {
1491 if (instr->representation().IsSmiOrInteger32()) {
1492 return instr->RightIsPowerOf2() ? DoModByPowerOf2I(instr) : DoModI(instr);
1493 } else if (instr->representation().IsDouble()) {
1494 return DoArithmeticD(Token::MOD, instr);
1495 } else {
1496 return DoArithmeticT(Token::MOD, instr);
1497 }
1498 }
1499
1500
1501 LInstruction* LChunkBuilder::DoMul(HMul* instr) {
1502 if (instr->representation().IsSmiOrInteger32()) {
1503 DCHECK(instr->left()->representation().Equals(instr->representation()));
1504 DCHECK(instr->right()->representation().Equals(instr->representation()));
1505 HValue* left = instr->BetterLeftOperand();
1506 HValue* right = instr->BetterRightOperand();
1507 LOperand* left_op;
1508 LOperand* right_op;
1509 bool can_overflow = instr->CheckFlag(HValue::kCanOverflow);
1510 bool bailout_on_minus_zero = instr->CheckFlag(HValue::kBailoutOnMinusZero);
1511
1512 int32_t constant_value = 0;
1513 if (right->IsConstant()) {
1514 HConstant* constant = HConstant::cast(right);
1515 constant_value = constant->Integer32Value();
1516 // Constants -1, 0 and 1 can be optimized if the result can overflow.
1517 // For other constants, it can be optimized only without overflow.
1518 if (!can_overflow || ((constant_value >= -1) && (constant_value <= 1))) {
1519 left_op = UseRegisterAtStart(left);
1520 right_op = UseConstant(right);
1521 } else {
1522 if (bailout_on_minus_zero) {
1523 left_op = UseRegister(left);
1524 } else {
1525 left_op = UseRegisterAtStart(left);
1526 }
1527 right_op = UseRegister(right);
1528 }
1529 } else {
1530 if (bailout_on_minus_zero) {
1531 left_op = UseRegister(left);
1532 } else {
1533 left_op = UseRegisterAtStart(left);
1534 }
1535 right_op = UseRegister(right);
1536 }
1537 LInstruction* result =
1538 instr->representation().IsSmi()
1539 ? DefineAsRegister(new (zone()) LMulS(left_op, right_op))
1540 : DefineAsRegister(new (zone()) LMulI(left_op, right_op));
1541 if (right_op->IsConstantOperand()
1542 ? ((can_overflow && constant_value == -1) ||
1543 (bailout_on_minus_zero && constant_value <= 0))
1544 : (can_overflow || bailout_on_minus_zero)) {
1545 AssignEnvironment(result);
1546 }
1547 return result;
1548
1549 } else if (instr->representation().IsDouble()) {
1550 if (kArchVariant == kMips64r2) {
1551 if (instr->HasOneUse() && instr->uses().value()->IsAdd()) {
1552 HAdd* add = HAdd::cast(instr->uses().value());
1553 if (instr == add->left()) {
1554 // This mul is the lhs of an add. The add and mul will be folded
1555 // into a multiply-add.
1556 return NULL;
1557 }
1558 if (instr == add->right() && !add->left()->IsMul()) {
1559 // This mul is the rhs of an add, where the lhs is not another mul.
1560 // The add and mul will be folded into a multiply-add.
1561 return NULL;
1562 }
1563 }
1564 }
1565 return DoArithmeticD(Token::MUL, instr);
1566 } else {
1567 return DoArithmeticT(Token::MUL, instr);
1568 }
1569 }
1570
1571
1572 LInstruction* LChunkBuilder::DoSub(HSub* instr) {
1573 if (instr->representation().IsSmiOrInteger32()) {
1574 DCHECK(instr->left()->representation().Equals(instr->representation()));
1575 DCHECK(instr->right()->representation().Equals(instr->representation()));
1576 LOperand* left = UseRegisterAtStart(instr->left());
1577 LOperand* right = UseRegisterOrConstantAtStart(instr->right());
1578 LInstruction* result =
1579 instr->representation().IsSmi()
1580 ? DefineAsRegister(new (zone()) LSubS(left, right))
1581 : DefineAsRegister(new (zone()) LSubI(left, right));
1582 if (instr->CheckFlag(HValue::kCanOverflow)) {
1583 result = AssignEnvironment(result);
1584 }
1585 return result;
1586 } else if (instr->representation().IsDouble()) {
1587 return DoArithmeticD(Token::SUB, instr);
1588 } else {
1589 return DoArithmeticT(Token::SUB, instr);
1590 }
1591 }
1592
1593
1594 LInstruction* LChunkBuilder::DoMultiplyAdd(HMul* mul, HValue* addend) {
1595 LOperand* multiplier_op = UseRegisterAtStart(mul->left());
1596 LOperand* multiplicand_op = UseRegisterAtStart(mul->right());
1597 LOperand* addend_op = UseRegisterAtStart(addend);
1598 return DefineSameAsFirst(new(zone()) LMultiplyAddD(addend_op, multiplier_op,
1599 multiplicand_op));
1600 }
1601
1602
1603 LInstruction* LChunkBuilder::DoAdd(HAdd* instr) {
1604 if (instr->representation().IsSmiOrInteger32()) {
1605 DCHECK(instr->left()->representation().Equals(instr->representation()));
1606 DCHECK(instr->right()->representation().Equals(instr->representation()));
1607 LOperand* left = UseRegisterAtStart(instr->BetterLeftOperand());
1608 LOperand* right = UseRegisterOrConstantAtStart(instr->BetterRightOperand());
1609 LInstruction* result =
1610 instr->representation().IsSmi()
1611 ? DefineAsRegister(new (zone()) LAddS(left, right))
1612 : DefineAsRegister(new (zone()) LAddI(left, right));
1613 if (instr->CheckFlag(HValue::kCanOverflow)) {
1614 result = AssignEnvironment(result);
1615 }
1616 return result;
1617 } else if (instr->representation().IsExternal()) {
1618 DCHECK(instr->IsConsistentExternalRepresentation());
1619 DCHECK(!instr->CheckFlag(HValue::kCanOverflow));
1620 LOperand* left = UseRegisterAtStart(instr->left());
1621 LOperand* right = UseRegisterOrConstantAtStart(instr->right());
1622 return DefineAsRegister(new (zone()) LAddE(left, right));
1623 } else if (instr->representation().IsDouble()) {
1624 if (kArchVariant == kMips64r2) {
1625 if (instr->left()->IsMul())
1626 return DoMultiplyAdd(HMul::cast(instr->left()), instr->right());
1627
1628 if (instr->right()->IsMul()) {
1629 DCHECK(!instr->left()->IsMul());
1630 return DoMultiplyAdd(HMul::cast(instr->right()), instr->left());
1631 }
1632 }
1633 return DoArithmeticD(Token::ADD, instr);
1634 } else {
1635 return DoArithmeticT(Token::ADD, instr);
1636 }
1637 }
1638
1639
1640 LInstruction* LChunkBuilder::DoMathMinMax(HMathMinMax* instr) {
1641 LOperand* left = NULL;
1642 LOperand* right = NULL;
1643 if (instr->representation().IsSmiOrInteger32()) {
1644 DCHECK(instr->left()->representation().Equals(instr->representation()));
1645 DCHECK(instr->right()->representation().Equals(instr->representation()));
1646 left = UseRegisterAtStart(instr->BetterLeftOperand());
1647 right = UseOrConstantAtStart(instr->BetterRightOperand());
1648 } else {
1649 DCHECK(instr->representation().IsDouble());
1650 DCHECK(instr->left()->representation().IsDouble());
1651 DCHECK(instr->right()->representation().IsDouble());
1652 left = UseRegisterAtStart(instr->left());
1653 right = UseRegisterAtStart(instr->right());
1654 }
1655 return DefineAsRegister(new(zone()) LMathMinMax(left, right));
1656 }
1657
1658
1659 LInstruction* LChunkBuilder::DoPower(HPower* instr) {
1660 DCHECK(instr->representation().IsDouble());
1661 // We call a C function for double power. It can't trigger a GC.
1662 // We need to use fixed result register for the call.
1663 Representation exponent_type = instr->right()->representation();
1664 DCHECK(instr->left()->representation().IsDouble());
1665 LOperand* left = UseFixedDouble(instr->left(), f2);
1666 LOperand* right =
1667 exponent_type.IsDouble()
1668 ? UseFixedDouble(instr->right(), f4)
1669 : UseFixed(instr->right(), MathPowTaggedDescriptor::exponent());
1670 LPower* result = new(zone()) LPower(left, right);
1671 return MarkAsCall(DefineFixedDouble(result, f0),
1672 instr,
1673 CAN_DEOPTIMIZE_EAGERLY);
1674 }
1675
1676
1677 LInstruction* LChunkBuilder::DoCompareGeneric(HCompareGeneric* instr) {
1678 DCHECK(instr->left()->representation().IsTagged());
1679 DCHECK(instr->right()->representation().IsTagged());
1680 LOperand* context = UseFixed(instr->context(), cp);
1681 LOperand* left = UseFixed(instr->left(), a1);
1682 LOperand* right = UseFixed(instr->right(), a0);
1683 LCmpT* result = new(zone()) LCmpT(context, left, right);
1684 return MarkAsCall(DefineFixed(result, v0), instr);
1685 }
1686
1687
1688 LInstruction* LChunkBuilder::DoCompareNumericAndBranch(
1689 HCompareNumericAndBranch* instr) {
1690 Representation r = instr->representation();
1691 if (r.IsSmiOrInteger32()) {
1692 DCHECK(instr->left()->representation().Equals(r));
1693 DCHECK(instr->right()->representation().Equals(r));
1694 LOperand* left = UseRegisterOrConstantAtStart(instr->left());
1695 LOperand* right = UseRegisterOrConstantAtStart(instr->right());
1696 return new(zone()) LCompareNumericAndBranch(left, right);
1697 } else {
1698 DCHECK(r.IsDouble());
1699 DCHECK(instr->left()->representation().IsDouble());
1700 DCHECK(instr->right()->representation().IsDouble());
1701 LOperand* left = UseRegisterAtStart(instr->left());
1702 LOperand* right = UseRegisterAtStart(instr->right());
1703 return new(zone()) LCompareNumericAndBranch(left, right);
1704 }
1705 }
1706
1707
1708 LInstruction* LChunkBuilder::DoCompareObjectEqAndBranch(
1709 HCompareObjectEqAndBranch* instr) {
1710 LOperand* left = UseRegisterAtStart(instr->left());
1711 LOperand* right = UseRegisterAtStart(instr->right());
1712 return new(zone()) LCmpObjectEqAndBranch(left, right);
1713 }
1714
1715
1716 LInstruction* LChunkBuilder::DoCompareHoleAndBranch(
1717 HCompareHoleAndBranch* instr) {
1718 LOperand* value = UseRegisterAtStart(instr->value());
1719 return new(zone()) LCmpHoleAndBranch(value);
1720 }
1721
1722
1723 LInstruction* LChunkBuilder::DoCompareMinusZeroAndBranch(
1724 HCompareMinusZeroAndBranch* instr) {
1725 LOperand* value = UseRegister(instr->value());
1726 LOperand* scratch = TempRegister();
1727 return new(zone()) LCompareMinusZeroAndBranch(value, scratch);
1728 }
1729
1730
1731 LInstruction* LChunkBuilder::DoIsStringAndBranch(HIsStringAndBranch* instr) {
1732 DCHECK(instr->value()->representation().IsTagged());
1733 LOperand* temp = TempRegister();
1734 return new(zone()) LIsStringAndBranch(UseRegisterAtStart(instr->value()),
1735 temp);
1736 }
1737
1738
1739 LInstruction* LChunkBuilder::DoIsSmiAndBranch(HIsSmiAndBranch* instr) {
1740 DCHECK(instr->value()->representation().IsTagged());
1741 return new(zone()) LIsSmiAndBranch(Use(instr->value()));
1742 }
1743
1744
1745 LInstruction* LChunkBuilder::DoIsUndetectableAndBranch(
1746 HIsUndetectableAndBranch* instr) {
1747 DCHECK(instr->value()->representation().IsTagged());
1748 return new(zone()) LIsUndetectableAndBranch(
1749 UseRegisterAtStart(instr->value()), TempRegister());
1750 }
1751
1752
1753 LInstruction* LChunkBuilder::DoStringCompareAndBranch(
1754 HStringCompareAndBranch* instr) {
1755 DCHECK(instr->left()->representation().IsTagged());
1756 DCHECK(instr->right()->representation().IsTagged());
1757 LOperand* context = UseFixed(instr->context(), cp);
1758 LOperand* left = UseFixed(instr->left(), a1);
1759 LOperand* right = UseFixed(instr->right(), a0);
1760 LStringCompareAndBranch* result =
1761 new(zone()) LStringCompareAndBranch(context, left, right);
1762 return MarkAsCall(result, instr);
1763 }
1764
1765
1766 LInstruction* LChunkBuilder::DoHasInstanceTypeAndBranch(
1767 HHasInstanceTypeAndBranch* instr) {
1768 DCHECK(instr->value()->representation().IsTagged());
1769 LOperand* value = UseRegisterAtStart(instr->value());
1770 return new(zone()) LHasInstanceTypeAndBranch(value);
1771 }
1772
1773
1774 LInstruction* LChunkBuilder::DoGetCachedArrayIndex(
1775 HGetCachedArrayIndex* instr) {
1776 DCHECK(instr->value()->representation().IsTagged());
1777 LOperand* value = UseRegisterAtStart(instr->value());
1778
1779 return DefineAsRegister(new(zone()) LGetCachedArrayIndex(value));
1780 }
1781
1782
1783 LInstruction* LChunkBuilder::DoHasCachedArrayIndexAndBranch(
1784 HHasCachedArrayIndexAndBranch* instr) {
1785 DCHECK(instr->value()->representation().IsTagged());
1786 return new(zone()) LHasCachedArrayIndexAndBranch(
1787 UseRegisterAtStart(instr->value()));
1788 }
1789
1790
1791 LInstruction* LChunkBuilder::DoClassOfTestAndBranch(
1792 HClassOfTestAndBranch* instr) {
1793 DCHECK(instr->value()->representation().IsTagged());
1794 return new(zone()) LClassOfTestAndBranch(UseRegister(instr->value()),
1795 TempRegister());
1796 }
1797
1798
1799 LInstruction* LChunkBuilder::DoMapEnumLength(HMapEnumLength* instr) {
1800 LOperand* map = UseRegisterAtStart(instr->value());
1801 return DefineAsRegister(new(zone()) LMapEnumLength(map));
1802 }
1803
1804
1805 LInstruction* LChunkBuilder::DoDateField(HDateField* instr) {
1806 LOperand* object = UseFixed(instr->value(), a0);
1807 LDateField* result =
1808 new(zone()) LDateField(object, FixedTemp(a1), instr->index());
1809 return MarkAsCall(DefineFixed(result, v0), instr, CANNOT_DEOPTIMIZE_EAGERLY);
1810 }
1811
1812
1813 LInstruction* LChunkBuilder::DoSeqStringGetChar(HSeqStringGetChar* instr) {
1814 LOperand* string = UseRegisterAtStart(instr->string());
1815 LOperand* index = UseRegisterOrConstantAtStart(instr->index());
1816 return DefineAsRegister(new(zone()) LSeqStringGetChar(string, index));
1817 }
1818
1819
1820 LInstruction* LChunkBuilder::DoSeqStringSetChar(HSeqStringSetChar* instr) {
1821 LOperand* string = UseRegisterAtStart(instr->string());
1822 LOperand* index = FLAG_debug_code
1823 ? UseRegisterAtStart(instr->index())
1824 : UseRegisterOrConstantAtStart(instr->index());
1825 LOperand* value = UseRegisterAtStart(instr->value());
1826 LOperand* context = FLAG_debug_code ? UseFixed(instr->context(), cp) : NULL;
1827 return new(zone()) LSeqStringSetChar(context, string, index, value);
1828 }
1829
1830
1831 LInstruction* LChunkBuilder::DoBoundsCheck(HBoundsCheck* instr) {
1832 if (!FLAG_debug_code && instr->skip_check()) return NULL;
1833 LOperand* index = UseRegisterOrConstantAtStart(instr->index());
1834 LOperand* length = !index->IsConstantOperand()
1835 ? UseRegisterOrConstantAtStart(instr->length())
1836 : UseRegisterAtStart(instr->length());
1837 LInstruction* result = new(zone()) LBoundsCheck(index, length);
1838 if (!FLAG_debug_code || !instr->skip_check()) {
1839 result = AssignEnvironment(result);
1840 }
1841 return result;
1842 }
1843
1844
1845 LInstruction* LChunkBuilder::DoBoundsCheckBaseIndexInformation(
1846 HBoundsCheckBaseIndexInformation* instr) {
1847 UNREACHABLE();
1848 return NULL;
1849 }
1850
1851
1852 LInstruction* LChunkBuilder::DoAbnormalExit(HAbnormalExit* instr) {
1853 // The control instruction marking the end of a block that completed
1854 // abruptly (e.g., threw an exception). There is nothing specific to do.
1855 return NULL;
1856 }
1857
1858
1859 LInstruction* LChunkBuilder::DoUseConst(HUseConst* instr) {
1860 return NULL;
1861 }
1862
1863
1864 LInstruction* LChunkBuilder::DoForceRepresentation(HForceRepresentation* bad) {
1865 // All HForceRepresentation instructions should be eliminated in the
1866 // representation change phase of Hydrogen.
1867 UNREACHABLE();
1868 return NULL;
1869 }
1870
1871
1872 LInstruction* LChunkBuilder::DoChange(HChange* instr) {
1873 Representation from = instr->from();
1874 Representation to = instr->to();
1875 HValue* val = instr->value();
1876 if (from.IsSmi()) {
1877 if (to.IsTagged()) {
1878 LOperand* value = UseRegister(val);
1879 return DefineSameAsFirst(new(zone()) LDummyUse(value));
1880 }
1881 from = Representation::Tagged();
1882 }
1883 if (from.IsTagged()) {
1884 if (to.IsDouble()) {
1885 LOperand* value = UseRegister(val);
1886 LInstruction* result = DefineAsRegister(new(zone()) LNumberUntagD(value));
1887 if (!val->representation().IsSmi()) result = AssignEnvironment(result);
1888 return result;
1889 } else if (to.IsSmi()) {
1890 LOperand* value = UseRegister(val);
1891 if (val->type().IsSmi()) {
1892 return DefineSameAsFirst(new(zone()) LDummyUse(value));
1893 }
1894 return AssignEnvironment(DefineSameAsFirst(new(zone()) LCheckSmi(value)));
1895 } else {
1896 DCHECK(to.IsInteger32());
1897 if (val->type().IsSmi() || val->representation().IsSmi()) {
1898 LOperand* value = UseRegisterAtStart(val);
1899 return DefineAsRegister(new(zone()) LSmiUntag(value, false));
1900 } else {
1901 LOperand* value = UseRegister(val);
1902 LOperand* temp1 = TempRegister();
1903 LOperand* temp2 = TempDoubleRegister();
1904 LInstruction* result =
1905 DefineSameAsFirst(new(zone()) LTaggedToI(value, temp1, temp2));
1906 if (!val->representation().IsSmi()) result = AssignEnvironment(result);
1907 return result;
1908 }
1909 }
1910 } else if (from.IsDouble()) {
1911 if (to.IsTagged()) {
1912 info()->MarkAsDeferredCalling();
1913 LOperand* value = UseRegister(val);
1914 LOperand* temp1 = TempRegister();
1915 LOperand* temp2 = TempRegister();
1916
1917 LUnallocated* result_temp = TempRegister();
1918 LNumberTagD* result = new(zone()) LNumberTagD(value, temp1, temp2);
1919 return AssignPointerMap(Define(result, result_temp));
1920 } else if (to.IsSmi()) {
1921 LOperand* value = UseRegister(val);
1922 return AssignEnvironment(
1923 DefineAsRegister(new(zone()) LDoubleToSmi(value)));
1924 } else {
1925 DCHECK(to.IsInteger32());
1926 LOperand* value = UseRegister(val);
1927 LInstruction* result = DefineAsRegister(new(zone()) LDoubleToI(value));
1928 if (!instr->CanTruncateToInt32()) result = AssignEnvironment(result);
1929 return result;
1930 }
1931 } else if (from.IsInteger32()) {
1932 info()->MarkAsDeferredCalling();
1933 if (to.IsTagged()) {
1934 if (val->CheckFlag(HInstruction::kUint32)) {
1935 LOperand* value = UseRegisterAtStart(val);
1936 LOperand* temp1 = TempRegister();
1937 LOperand* temp2 = TempRegister();
1938 LNumberTagU* result = new(zone()) LNumberTagU(value, temp1, temp2);
1939 return AssignPointerMap(DefineAsRegister(result));
1940 } else {
1941 STATIC_ASSERT((kMinInt == Smi::kMinValue) &&
1942 (kMaxInt == Smi::kMaxValue));
1943 LOperand* value = UseRegisterAtStart(val);
1944 return DefineAsRegister(new(zone()) LSmiTag(value));
1945 }
1946 } else if (to.IsSmi()) {
1947 LOperand* value = UseRegister(val);
1948 LInstruction* result = DefineAsRegister(new(zone()) LSmiTag(value));
1949 if (instr->CheckFlag(HValue::kCanOverflow)) {
1950 result = AssignEnvironment(result);
1951 }
1952 return result;
1953 } else {
1954 DCHECK(to.IsDouble());
1955 if (val->CheckFlag(HInstruction::kUint32)) {
1956 return DefineAsRegister(new(zone()) LUint32ToDouble(UseRegister(val)));
1957 } else {
1958 return DefineAsRegister(new(zone()) LInteger32ToDouble(Use(val)));
1959 }
1960 }
1961 }
1962 UNREACHABLE();
1963 return NULL;
1964 }
1965
1966
1967 LInstruction* LChunkBuilder::DoCheckHeapObject(HCheckHeapObject* instr) {
1968 LOperand* value = UseRegisterAtStart(instr->value());
1969 LInstruction* result = new(zone()) LCheckNonSmi(value);
1970 if (!instr->value()->type().IsHeapObject()) {
1971 result = AssignEnvironment(result);
1972 }
1973 return result;
1974 }
1975
1976
1977 LInstruction* LChunkBuilder::DoCheckSmi(HCheckSmi* instr) {
1978 LOperand* value = UseRegisterAtStart(instr->value());
1979 return AssignEnvironment(new(zone()) LCheckSmi(value));
1980 }
1981
1982
1983 LInstruction* LChunkBuilder::DoCheckArrayBufferNotNeutered(
1984 HCheckArrayBufferNotNeutered* instr) {
1985 LOperand* view = UseRegisterAtStart(instr->value());
1986 LCheckArrayBufferNotNeutered* result =
1987 new (zone()) LCheckArrayBufferNotNeutered(view);
1988 return AssignEnvironment(result);
1989 }
1990
1991
1992 LInstruction* LChunkBuilder::DoCheckInstanceType(HCheckInstanceType* instr) {
1993 LOperand* value = UseRegisterAtStart(instr->value());
1994 LInstruction* result = new(zone()) LCheckInstanceType(value);
1995 return AssignEnvironment(result);
1996 }
1997
1998
1999 LInstruction* LChunkBuilder::DoCheckValue(HCheckValue* instr) {
2000 LOperand* value = UseRegisterAtStart(instr->value());
2001 return AssignEnvironment(new(zone()) LCheckValue(value));
2002 }
2003
2004
2005 LInstruction* LChunkBuilder::DoCheckMaps(HCheckMaps* instr) {
2006 if (instr->IsStabilityCheck()) return new(zone()) LCheckMaps;
2007 LOperand* value = UseRegisterAtStart(instr->value());
2008 LInstruction* result = AssignEnvironment(new(zone()) LCheckMaps(value));
2009 if (instr->HasMigrationTarget()) {
2010 info()->MarkAsDeferredCalling();
2011 result = AssignPointerMap(result);
2012 }
2013 return result;
2014 }
2015
2016
2017 LInstruction* LChunkBuilder::DoClampToUint8(HClampToUint8* instr) {
2018 HValue* value = instr->value();
2019 Representation input_rep = value->representation();
2020 LOperand* reg = UseRegister(value);
2021 if (input_rep.IsDouble()) {
2022 // Revisit this decision, here and 8 lines below.
2023 return DefineAsRegister(new(zone()) LClampDToUint8(reg,
2024 TempDoubleRegister()));
2025 } else if (input_rep.IsInteger32()) {
2026 return DefineAsRegister(new(zone()) LClampIToUint8(reg));
2027 } else {
2028 DCHECK(input_rep.IsSmiOrTagged());
2029 LClampTToUint8* result =
2030 new(zone()) LClampTToUint8(reg, TempDoubleRegister());
2031 return AssignEnvironment(DefineAsRegister(result));
2032 }
2033 }
2034
2035
2036 LInstruction* LChunkBuilder::DoDoubleBits(HDoubleBits* instr) {
2037 HValue* value = instr->value();
2038 DCHECK(value->representation().IsDouble());
2039 return DefineAsRegister(new(zone()) LDoubleBits(UseRegister(value)));
2040 }
2041
2042
2043 LInstruction* LChunkBuilder::DoConstructDouble(HConstructDouble* instr) {
2044 LOperand* lo = UseRegister(instr->lo());
2045 LOperand* hi = UseRegister(instr->hi());
2046 return DefineAsRegister(new(zone()) LConstructDouble(hi, lo));
2047 }
2048
2049
2050 LInstruction* LChunkBuilder::DoReturn(HReturn* instr) {
2051 LOperand* context = info()->IsStub()
2052 ? UseFixed(instr->context(), cp)
2053 : NULL;
2054 LOperand* parameter_count = UseRegisterOrConstant(instr->parameter_count());
2055 return new(zone()) LReturn(UseFixed(instr->value(), v0), context,
2056 parameter_count);
2057 }
2058
2059
2060 LInstruction* LChunkBuilder::DoConstant(HConstant* instr) {
2061 Representation r = instr->representation();
2062 if (r.IsSmi()) {
2063 return DefineAsRegister(new(zone()) LConstantS);
2064 } else if (r.IsInteger32()) {
2065 return DefineAsRegister(new(zone()) LConstantI);
2066 } else if (r.IsDouble()) {
2067 return DefineAsRegister(new(zone()) LConstantD);
2068 } else if (r.IsExternal()) {
2069 return DefineAsRegister(new(zone()) LConstantE);
2070 } else if (r.IsTagged()) {
2071 return DefineAsRegister(new(zone()) LConstantT);
2072 } else {
2073 UNREACHABLE();
2074 return NULL;
2075 }
2076 }
2077
2078
2079 LInstruction* LChunkBuilder::DoLoadGlobalGeneric(HLoadGlobalGeneric* instr) {
2080 LOperand* context = UseFixed(instr->context(), cp);
2081 LOperand* global_object =
2082 UseFixed(instr->global_object(), LoadDescriptor::ReceiverRegister());
2083 LOperand* vector = NULL;
2084 if (instr->HasVectorAndSlot()) {
2085 vector = FixedTemp(LoadWithVectorDescriptor::VectorRegister());
2086 }
2087 LLoadGlobalGeneric* result =
2088 new(zone()) LLoadGlobalGeneric(context, global_object, vector);
2089 return MarkAsCall(DefineFixed(result, v0), instr);
2090 }
2091
2092
2093 LInstruction* LChunkBuilder::DoLoadGlobalViaContext(
2094 HLoadGlobalViaContext* instr) {
2095 LOperand* context = UseFixed(instr->context(), cp);
2096 DCHECK(instr->slot_index() > 0);
2097 LLoadGlobalViaContext* result = new (zone()) LLoadGlobalViaContext(context);
2098 return MarkAsCall(DefineFixed(result, v0), instr);
2099 }
2100
2101
2102 LInstruction* LChunkBuilder::DoLoadContextSlot(HLoadContextSlot* instr) {
2103 LOperand* context = UseRegisterAtStart(instr->value());
2104 LInstruction* result =
2105 DefineAsRegister(new(zone()) LLoadContextSlot(context));
2106 if (instr->RequiresHoleCheck() && instr->DeoptimizesOnHole()) {
2107 result = AssignEnvironment(result);
2108 }
2109 return result;
2110 }
2111
2112
2113 LInstruction* LChunkBuilder::DoStoreContextSlot(HStoreContextSlot* instr) {
2114 LOperand* context;
2115 LOperand* value;
2116 if (instr->NeedsWriteBarrier()) {
2117 context = UseTempRegister(instr->context());
2118 value = UseTempRegister(instr->value());
2119 } else {
2120 context = UseRegister(instr->context());
2121 value = UseRegister(instr->value());
2122 }
2123 LInstruction* result = new(zone()) LStoreContextSlot(context, value);
2124 if (instr->RequiresHoleCheck() && instr->DeoptimizesOnHole()) {
2125 result = AssignEnvironment(result);
2126 }
2127 return result;
2128 }
2129
2130
2131 LInstruction* LChunkBuilder::DoLoadNamedField(HLoadNamedField* instr) {
2132 LOperand* obj = UseRegisterAtStart(instr->object());
2133 return DefineAsRegister(new(zone()) LLoadNamedField(obj));
2134 }
2135
2136
2137 LInstruction* LChunkBuilder::DoLoadNamedGeneric(HLoadNamedGeneric* instr) {
2138 LOperand* context = UseFixed(instr->context(), cp);
2139 LOperand* object =
2140 UseFixed(instr->object(), LoadDescriptor::ReceiverRegister());
2141 LOperand* vector = NULL;
2142 if (instr->HasVectorAndSlot()) {
2143 vector = FixedTemp(LoadWithVectorDescriptor::VectorRegister());
2144 }
2145
2146 LInstruction* result =
2147 DefineFixed(new(zone()) LLoadNamedGeneric(context, object, vector), v0);
2148 return MarkAsCall(result, instr);
2149 }
2150
2151
2152 LInstruction* LChunkBuilder::DoLoadFunctionPrototype(
2153 HLoadFunctionPrototype* instr) {
2154 return AssignEnvironment(DefineAsRegister(
2155 new(zone()) LLoadFunctionPrototype(UseRegister(instr->function()))));
2156 }
2157
2158
2159 LInstruction* LChunkBuilder::DoLoadRoot(HLoadRoot* instr) {
2160 return DefineAsRegister(new(zone()) LLoadRoot);
2161 }
2162
2163
2164 LInstruction* LChunkBuilder::DoLoadKeyed(HLoadKeyed* instr) {
2165 DCHECK(instr->key()->representation().IsSmiOrInteger32());
2166 ElementsKind elements_kind = instr->elements_kind();
2167 LOperand* key = UseRegisterOrConstantAtStart(instr->key());
2168 LInstruction* result = NULL;
2169
2170 if (!instr->is_fixed_typed_array()) {
2171 LOperand* obj = NULL;
2172 if (instr->representation().IsDouble()) {
2173 obj = UseRegister(instr->elements());
2174 } else {
2175 DCHECK(instr->representation().IsSmiOrTagged() ||
2176 instr->representation().IsInteger32());
2177 obj = UseRegisterAtStart(instr->elements());
2178 }
2179 result = DefineAsRegister(new(zone()) LLoadKeyed(obj, key));
2180 } else {
2181 DCHECK(
2182 (instr->representation().IsInteger32() &&
2183 !IsDoubleOrFloatElementsKind(elements_kind)) ||
2184 (instr->representation().IsDouble() &&
2185 IsDoubleOrFloatElementsKind(elements_kind)));
2186 LOperand* backing_store = UseRegister(instr->elements());
2187 result = DefineAsRegister(new(zone()) LLoadKeyed(backing_store, key));
2188 }
2189
2190 bool needs_environment;
2191 if (instr->is_fixed_typed_array()) {
2192 // see LCodeGen::DoLoadKeyedExternalArray
2193 needs_environment = elements_kind == UINT32_ELEMENTS &&
2194 !instr->CheckFlag(HInstruction::kUint32);
2195 } else {
2196 // see LCodeGen::DoLoadKeyedFixedDoubleArray and
2197 // LCodeGen::DoLoadKeyedFixedArray
2198 needs_environment =
2199 instr->RequiresHoleCheck() ||
2200 (instr->hole_mode() == CONVERT_HOLE_TO_UNDEFINED && info()->IsStub());
2201 }
2202
2203 if (needs_environment) {
2204 result = AssignEnvironment(result);
2205 }
2206 return result;
2207 }
2208
2209
2210 LInstruction* LChunkBuilder::DoLoadKeyedGeneric(HLoadKeyedGeneric* instr) {
2211 LOperand* context = UseFixed(instr->context(), cp);
2212 LOperand* object =
2213 UseFixed(instr->object(), LoadDescriptor::ReceiverRegister());
2214 LOperand* key = UseFixed(instr->key(), LoadDescriptor::NameRegister());
2215 LOperand* vector = NULL;
2216 if (instr->HasVectorAndSlot()) {
2217 vector = FixedTemp(LoadWithVectorDescriptor::VectorRegister());
2218 }
2219
2220 LInstruction* result =
2221 DefineFixed(new(zone()) LLoadKeyedGeneric(context, object, key, vector),
2222 v0);
2223 return MarkAsCall(result, instr);
2224 }
2225
2226
2227 LInstruction* LChunkBuilder::DoStoreKeyed(HStoreKeyed* instr) {
2228 if (!instr->is_fixed_typed_array()) {
2229 DCHECK(instr->elements()->representation().IsTagged());
2230 bool needs_write_barrier = instr->NeedsWriteBarrier();
2231 LOperand* object = NULL;
2232 LOperand* val = NULL;
2233 LOperand* key = NULL;
2234
2235 if (instr->value()->representation().IsDouble()) {
2236 object = UseRegisterAtStart(instr->elements());
2237 key = UseRegisterOrConstantAtStart(instr->key());
2238 val = UseRegister(instr->value());
2239 } else {
2240 DCHECK(instr->value()->representation().IsSmiOrTagged() ||
2241 instr->value()->representation().IsInteger32());
2242 if (needs_write_barrier) {
2243 object = UseTempRegister(instr->elements());
2244 val = UseTempRegister(instr->value());
2245 key = UseTempRegister(instr->key());
2246 } else {
2247 object = UseRegisterAtStart(instr->elements());
2248 val = UseRegisterAtStart(instr->value());
2249 key = UseRegisterOrConstantAtStart(instr->key());
2250 }
2251 }
2252
2253 return new(zone()) LStoreKeyed(object, key, val);
2254 }
2255
2256 DCHECK(
2257 (instr->value()->representation().IsInteger32() &&
2258 !IsDoubleOrFloatElementsKind(instr->elements_kind())) ||
2259 (instr->value()->representation().IsDouble() &&
2260 IsDoubleOrFloatElementsKind(instr->elements_kind())));
2261 DCHECK(instr->elements()->representation().IsExternal());
2262 LOperand* val = UseRegister(instr->value());
2263 LOperand* key = UseRegisterOrConstantAtStart(instr->key());
2264 LOperand* backing_store = UseRegister(instr->elements());
2265 return new(zone()) LStoreKeyed(backing_store, key, val);
2266 }
2267
2268
2269 LInstruction* LChunkBuilder::DoStoreKeyedGeneric(HStoreKeyedGeneric* instr) {
2270 LOperand* context = UseFixed(instr->context(), cp);
2271 LOperand* obj =
2272 UseFixed(instr->object(), StoreDescriptor::ReceiverRegister());
2273 LOperand* key = UseFixed(instr->key(), StoreDescriptor::NameRegister());
2274 LOperand* val = UseFixed(instr->value(), StoreDescriptor::ValueRegister());
2275
2276 DCHECK(instr->object()->representation().IsTagged());
2277 DCHECK(instr->key()->representation().IsTagged());
2278 DCHECK(instr->value()->representation().IsTagged());
2279
2280 LOperand* slot = NULL;
2281 LOperand* vector = NULL;
2282 if (instr->HasVectorAndSlot()) {
2283 slot = FixedTemp(VectorStoreICDescriptor::SlotRegister());
2284 vector = FixedTemp(VectorStoreICDescriptor::VectorRegister());
2285 }
2286
2287 LStoreKeyedGeneric* result =
2288 new (zone()) LStoreKeyedGeneric(context, obj, key, val, slot, vector);
2289 return MarkAsCall(result, instr);
2290 }
2291
2292
2293 LInstruction* LChunkBuilder::DoTransitionElementsKind(
2294 HTransitionElementsKind* instr) {
2295 if (IsSimpleMapChangeTransition(instr->from_kind(), instr->to_kind())) {
2296 LOperand* object = UseRegister(instr->object());
2297 LOperand* new_map_reg = TempRegister();
2298 LTransitionElementsKind* result =
2299 new(zone()) LTransitionElementsKind(object, NULL, new_map_reg);
2300 return result;
2301 } else {
2302 LOperand* object = UseFixed(instr->object(), a0);
2303 LOperand* context = UseFixed(instr->context(), cp);
2304 LTransitionElementsKind* result =
2305 new(zone()) LTransitionElementsKind(object, context, NULL);
2306 return MarkAsCall(result, instr);
2307 }
2308 }
2309
2310
2311 LInstruction* LChunkBuilder::DoTrapAllocationMemento(
2312 HTrapAllocationMemento* instr) {
2313 LOperand* object = UseRegister(instr->object());
2314 LOperand* temp = TempRegister();
2315 LTrapAllocationMemento* result =
2316 new(zone()) LTrapAllocationMemento(object, temp);
2317 return AssignEnvironment(result);
2318 }
2319
2320
2321 LInstruction* LChunkBuilder::DoMaybeGrowElements(HMaybeGrowElements* instr) {
2322 info()->MarkAsDeferredCalling();
2323 LOperand* context = UseFixed(instr->context(), cp);
2324 LOperand* object = Use(instr->object());
2325 LOperand* elements = Use(instr->elements());
2326 LOperand* key = UseRegisterOrConstant(instr->key());
2327 LOperand* current_capacity = UseRegisterOrConstant(instr->current_capacity());
2328
2329 LMaybeGrowElements* result = new (zone())
2330 LMaybeGrowElements(context, object, elements, key, current_capacity);
2331 DefineFixed(result, v0);
2332 return AssignPointerMap(AssignEnvironment(result));
2333 }
2334
2335
2336 LInstruction* LChunkBuilder::DoStoreNamedField(HStoreNamedField* instr) {
2337 bool is_in_object = instr->access().IsInobject();
2338 bool needs_write_barrier = instr->NeedsWriteBarrier();
2339 bool needs_write_barrier_for_map = instr->has_transition() &&
2340 instr->NeedsWriteBarrierForMap();
2341
2342 LOperand* obj;
2343 if (needs_write_barrier) {
2344 obj = is_in_object
2345 ? UseRegister(instr->object())
2346 : UseTempRegister(instr->object());
2347 } else {
2348 obj = needs_write_barrier_for_map
2349 ? UseRegister(instr->object())
2350 : UseRegisterAtStart(instr->object());
2351 }
2352
2353 LOperand* val;
2354 if (needs_write_barrier) {
2355 val = UseTempRegister(instr->value());
2356 } else if (instr->field_representation().IsDouble()) {
2357 val = UseRegisterAtStart(instr->value());
2358 } else {
2359 val = UseRegister(instr->value());
2360 }
2361
2362 // We need a temporary register for write barrier of the map field.
2363 LOperand* temp = needs_write_barrier_for_map ? TempRegister() : NULL;
2364
2365 return new(zone()) LStoreNamedField(obj, val, temp);
2366 }
2367
2368
2369 LInstruction* LChunkBuilder::DoStoreNamedGeneric(HStoreNamedGeneric* instr) {
2370 LOperand* context = UseFixed(instr->context(), cp);
2371 LOperand* obj =
2372 UseFixed(instr->object(), StoreDescriptor::ReceiverRegister());
2373 LOperand* val = UseFixed(instr->value(), StoreDescriptor::ValueRegister());
2374 LOperand* slot = NULL;
2375 LOperand* vector = NULL;
2376 if (instr->HasVectorAndSlot()) {
2377 slot = FixedTemp(VectorStoreICDescriptor::SlotRegister());
2378 vector = FixedTemp(VectorStoreICDescriptor::VectorRegister());
2379 }
2380
2381 LStoreNamedGeneric* result =
2382 new (zone()) LStoreNamedGeneric(context, obj, val, slot, vector);
2383 return MarkAsCall(result, instr);
2384 }
2385
2386
2387 LInstruction* LChunkBuilder::DoStoreGlobalViaContext(
2388 HStoreGlobalViaContext* instr) {
2389 LOperand* context = UseFixed(instr->context(), cp);
2390 LOperand* value = UseFixed(instr->value(),
2391 StoreGlobalViaContextDescriptor::ValueRegister());
2392 DCHECK(instr->slot_index() > 0);
2393
2394 LStoreGlobalViaContext* result =
2395 new (zone()) LStoreGlobalViaContext(context, value);
2396 return MarkAsCall(result, instr);
2397 }
2398
2399
2400 LInstruction* LChunkBuilder::DoStringAdd(HStringAdd* instr) {
2401 LOperand* context = UseFixed(instr->context(), cp);
2402 LOperand* left = UseFixed(instr->left(), a1);
2403 LOperand* right = UseFixed(instr->right(), a0);
2404 return MarkAsCall(
2405 DefineFixed(new(zone()) LStringAdd(context, left, right), v0),
2406 instr);
2407 }
2408
2409
2410 LInstruction* LChunkBuilder::DoStringCharCodeAt(HStringCharCodeAt* instr) {
2411 LOperand* string = UseTempRegister(instr->string());
2412 LOperand* index = UseTempRegister(instr->index());
2413 LOperand* context = UseAny(instr->context());
2414 LStringCharCodeAt* result =
2415 new(zone()) LStringCharCodeAt(context, string, index);
2416 return AssignPointerMap(DefineAsRegister(result));
2417 }
2418
2419
2420 LInstruction* LChunkBuilder::DoStringCharFromCode(HStringCharFromCode* instr) {
2421 LOperand* char_code = UseRegister(instr->value());
2422 LOperand* context = UseAny(instr->context());
2423 LStringCharFromCode* result =
2424 new(zone()) LStringCharFromCode(context, char_code);
2425 return AssignPointerMap(DefineAsRegister(result));
2426 }
2427
2428
2429 LInstruction* LChunkBuilder::DoAllocate(HAllocate* instr) {
2430 info()->MarkAsDeferredCalling();
2431 LOperand* context = UseAny(instr->context());
2432 LOperand* size = UseRegisterOrConstant(instr->size());
2433 LOperand* temp1 = TempRegister();
2434 LOperand* temp2 = TempRegister();
2435 LAllocate* result = new(zone()) LAllocate(context, size, temp1, temp2);
2436 return AssignPointerMap(DefineAsRegister(result));
2437 }
2438
2439
2440 LInstruction* LChunkBuilder::DoRegExpLiteral(HRegExpLiteral* instr) {
2441 LOperand* context = UseFixed(instr->context(), cp);
2442 return MarkAsCall(
2443 DefineFixed(new(zone()) LRegExpLiteral(context), v0), instr);
2444 }
2445
2446
2447 LInstruction* LChunkBuilder::DoOsrEntry(HOsrEntry* instr) {
2448 DCHECK(argument_count_ == 0);
2449 allocator_->MarkAsOsrEntry();
2450 current_block_->last_environment()->set_ast_id(instr->ast_id());
2451 return AssignEnvironment(new(zone()) LOsrEntry);
2452 }
2453
2454
2455 LInstruction* LChunkBuilder::DoParameter(HParameter* instr) {
2456 LParameter* result = new(zone()) LParameter;
2457 if (instr->kind() == HParameter::STACK_PARAMETER) {
2458 int spill_index = chunk()->GetParameterStackSlot(instr->index());
2459 return DefineAsSpilled(result, spill_index);
2460 } else {
2461 DCHECK(info()->IsStub());
2462 CallInterfaceDescriptor descriptor =
2463 info()->code_stub()->GetCallInterfaceDescriptor();
2464 int index = static_cast<int>(instr->index());
2465 Register reg = descriptor.GetRegisterParameter(index);
2466 return DefineFixed(result, reg);
2467 }
2468 }
2469
2470
2471 LInstruction* LChunkBuilder::DoUnknownOSRValue(HUnknownOSRValue* instr) {
2472 // Use an index that corresponds to the location in the unoptimized frame,
2473 // which the optimized frame will subsume.
2474 int env_index = instr->index();
2475 int spill_index = 0;
2476 if (instr->environment()->is_parameter_index(env_index)) {
2477 spill_index = chunk()->GetParameterStackSlot(env_index);
2478 } else {
2479 spill_index = env_index - instr->environment()->first_local_index();
2480 if (spill_index > LUnallocated::kMaxFixedSlotIndex) {
2481 Retry(kTooManySpillSlotsNeededForOSR);
2482 spill_index = 0;
2483 }
2484 }
2485 return DefineAsSpilled(new(zone()) LUnknownOSRValue, spill_index);
2486 }
2487
2488
2489 LInstruction* LChunkBuilder::DoCallStub(HCallStub* instr) {
2490 LOperand* context = UseFixed(instr->context(), cp);
2491 return MarkAsCall(DefineFixed(new(zone()) LCallStub(context), v0), instr);
2492 }
2493
2494
2495 LInstruction* LChunkBuilder::DoArgumentsObject(HArgumentsObject* instr) {
2496 // There are no real uses of the arguments object.
2497 // arguments.length and element access are supported directly on
2498 // stack arguments, and any real arguments object use causes a bailout.
2499 // So this value is never used.
2500 return NULL;
2501 }
2502
2503
2504 LInstruction* LChunkBuilder::DoCapturedObject(HCapturedObject* instr) {
2505 instr->ReplayEnvironment(current_block_->last_environment());
2506
2507 // There are no real uses of a captured object.
2508 return NULL;
2509 }
2510
2511
2512 LInstruction* LChunkBuilder::DoAccessArgumentsAt(HAccessArgumentsAt* instr) {
2513 info()->MarkAsRequiresFrame();
2514 LOperand* args = UseRegister(instr->arguments());
2515 LOperand* length = UseRegisterOrConstantAtStart(instr->length());
2516 LOperand* index = UseRegisterOrConstantAtStart(instr->index());
2517 return DefineAsRegister(new(zone()) LAccessArgumentsAt(args, length, index));
2518 }
2519
2520
2521 LInstruction* LChunkBuilder::DoToFastProperties(HToFastProperties* instr) {
2522 LOperand* object = UseFixed(instr->value(), a0);
2523 LToFastProperties* result = new(zone()) LToFastProperties(object);
2524 return MarkAsCall(DefineFixed(result, v0), instr);
2525 }
2526
2527
2528 LInstruction* LChunkBuilder::DoTypeof(HTypeof* instr) {
2529 LOperand* context = UseFixed(instr->context(), cp);
2530 LOperand* value = UseFixed(instr->value(), a3);
2531 LTypeof* result = new (zone()) LTypeof(context, value);
2532 return MarkAsCall(DefineFixed(result, v0), instr);
2533 }
2534
2535
2536 LInstruction* LChunkBuilder::DoTypeofIsAndBranch(HTypeofIsAndBranch* instr) {
2537 return new(zone()) LTypeofIsAndBranch(UseTempRegister(instr->value()));
2538 }
2539
2540
2541 LInstruction* LChunkBuilder::DoIsConstructCallAndBranch(
2542 HIsConstructCallAndBranch* instr) {
2543 return new(zone()) LIsConstructCallAndBranch(TempRegister());
2544 }
2545
2546
2547 LInstruction* LChunkBuilder::DoSimulate(HSimulate* instr) {
2548 instr->ReplayEnvironment(current_block_->last_environment());
2549 return NULL;
2550 }
2551
2552
2553 LInstruction* LChunkBuilder::DoStackCheck(HStackCheck* instr) {
2554 if (instr->is_function_entry()) {
2555 LOperand* context = UseFixed(instr->context(), cp);
2556 return MarkAsCall(new(zone()) LStackCheck(context), instr);
2557 } else {
2558 DCHECK(instr->is_backwards_branch());
2559 LOperand* context = UseAny(instr->context());
2560 return AssignEnvironment(
2561 AssignPointerMap(new(zone()) LStackCheck(context)));
2562 }
2563 }
2564
2565
2566 LInstruction* LChunkBuilder::DoEnterInlined(HEnterInlined* instr) {
2567 HEnvironment* outer = current_block_->last_environment();
2568 outer->set_ast_id(instr->ReturnId());
2569 HConstant* undefined = graph()->GetConstantUndefined();
2570 HEnvironment* inner = outer->CopyForInlining(instr->closure(),
2571 instr->arguments_count(),
2572 instr->function(),
2573 undefined,
2574 instr->inlining_kind());
2575 // Only replay binding of arguments object if it wasn't removed from graph.
2576 if (instr->arguments_var() != NULL && instr->arguments_object()->IsLinked()) {
2577 inner->Bind(instr->arguments_var(), instr->arguments_object());
2578 }
2579 inner->BindContext(instr->closure_context());
2580 inner->set_entry(instr);
2581 current_block_->UpdateEnvironment(inner);
2582 chunk_->AddInlinedFunction(instr->shared());
2583 return NULL;
2584 }
2585
2586
2587 LInstruction* LChunkBuilder::DoLeaveInlined(HLeaveInlined* instr) {
2588 LInstruction* pop = NULL;
2589
2590 HEnvironment* env = current_block_->last_environment();
2591
2592 if (env->entry()->arguments_pushed()) {
2593 int argument_count = env->arguments_environment()->parameter_count();
2594 pop = new(zone()) LDrop(argument_count);
2595 DCHECK(instr->argument_delta() == -argument_count);
2596 }
2597
2598 HEnvironment* outer = current_block_->last_environment()->
2599 DiscardInlined(false);
2600 current_block_->UpdateEnvironment(outer);
2601
2602 return pop;
2603 }
2604
2605
2606 LInstruction* LChunkBuilder::DoForInPrepareMap(HForInPrepareMap* instr) {
2607 LOperand* context = UseFixed(instr->context(), cp);
2608 LOperand* object = UseFixed(instr->enumerable(), a0);
2609 LForInPrepareMap* result = new(zone()) LForInPrepareMap(context, object);
2610 return MarkAsCall(DefineFixed(result, v0), instr, CAN_DEOPTIMIZE_EAGERLY);
2611 }
2612
2613
2614 LInstruction* LChunkBuilder::DoForInCacheArray(HForInCacheArray* instr) {
2615 LOperand* map = UseRegister(instr->map());
2616 return AssignEnvironment(DefineAsRegister(new(zone()) LForInCacheArray(map)));
2617 }
2618
2619
2620 LInstruction* LChunkBuilder::DoCheckMapValue(HCheckMapValue* instr) {
2621 LOperand* value = UseRegisterAtStart(instr->value());
2622 LOperand* map = UseRegisterAtStart(instr->map());
2623 return AssignEnvironment(new(zone()) LCheckMapValue(value, map));
2624 }
2625
2626
2627 LInstruction* LChunkBuilder::DoLoadFieldByIndex(HLoadFieldByIndex* instr) {
2628 LOperand* object = UseRegister(instr->object());
2629 LOperand* index = UseTempRegister(instr->index());
2630 LLoadFieldByIndex* load = new(zone()) LLoadFieldByIndex(object, index);
2631 LInstruction* result = DefineSameAsFirst(load);
2632 return AssignPointerMap(result);
2633 }
2634
2635
2636 LInstruction* LChunkBuilder::DoStoreFrameContext(HStoreFrameContext* instr) {
2637 LOperand* context = UseRegisterAtStart(instr->context());
2638 return new(zone()) LStoreFrameContext(context);
2639 }
2640
2641
2642 LInstruction* LChunkBuilder::DoAllocateBlockContext(
2643 HAllocateBlockContext* instr) {
2644 LOperand* context = UseFixed(instr->context(), cp);
2645 LOperand* function = UseRegisterAtStart(instr->function());
2646 LAllocateBlockContext* result =
2647 new(zone()) LAllocateBlockContext(context, function);
2648 return MarkAsCall(DefineFixed(result, cp), instr);
2649 }
2650
2651
2652 } // namespace internal
2653 } // namespace v8
2654
2655 #endif // V8_TARGET_ARCH_MIPS64
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