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      1 // Copyright 2012 the V8 project authors. All rights reserved.
      2 // Redistribution and use in source and binary forms, with or without
      3 // modification, are permitted provided that the following conditions are
      4 // met:
      5 //
      6 //     * Redistributions of source code must retain the above copyright
      7 //       notice, this list of conditions and the following disclaimer.
      8 //     * Redistributions in binary form must reproduce the above
      9 //       copyright notice, this list of conditions and the following
     10 //       disclaimer in the documentation and/or other materials provided
     11 //       with the distribution.
     12 //     * Neither the name of Google Inc. nor the names of its
     13 //       contributors may be used to endorse or promote products derived
     14 //       from this software without specific prior written permission.
     15 //
     16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
     19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
     20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
     21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
     22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
     26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27 
     28 #include "v8.h"
     29 
     30 #include "lithium-allocator-inl.h"
     31 #include "mips/lithium-mips.h"
     32 #include "mips/lithium-codegen-mips.h"
     33 
     34 namespace v8 {
     35 namespace internal {
     36 
     37 #define DEFINE_COMPILE(type)                            \
     38   void L##type::CompileToNative(LCodeGen* generator) {  \
     39     generator->Do##type(this);                          \
     40   }
     41 LITHIUM_CONCRETE_INSTRUCTION_LIST(DEFINE_COMPILE)
     42 #undef DEFINE_COMPILE
     43 
     44 LOsrEntry::LOsrEntry() {
     45   for (int i = 0; i < Register::kNumAllocatableRegisters; ++i) {
     46     register_spills_[i] = NULL;
     47   }
     48   for (int i = 0; i < DoubleRegister::kNumAllocatableRegisters; ++i) {
     49     double_register_spills_[i] = NULL;
     50   }
     51 }
     52 
     53 
     54 void LOsrEntry::MarkSpilledRegister(int allocation_index,
     55                                     LOperand* spill_operand) {
     56   ASSERT(spill_operand->IsStackSlot());
     57   ASSERT(register_spills_[allocation_index] == NULL);
     58   register_spills_[allocation_index] = spill_operand;
     59 }
     60 
     61 
     62 #ifdef DEBUG
     63 void LInstruction::VerifyCall() {
     64   // Call instructions can use only fixed registers as temporaries and
     65   // outputs because all registers are blocked by the calling convention.
     66   // Inputs operands must use a fixed register or use-at-start policy or
     67   // a non-register policy.
     68   ASSERT(Output() == NULL ||
     69          LUnallocated::cast(Output())->HasFixedPolicy() ||
     70          !LUnallocated::cast(Output())->HasRegisterPolicy());
     71   for (UseIterator it(this); !it.Done(); it.Advance()) {
     72     LUnallocated* operand = LUnallocated::cast(it.Current());
     73     ASSERT(operand->HasFixedPolicy() ||
     74            operand->IsUsedAtStart());
     75   }
     76   for (TempIterator it(this); !it.Done(); it.Advance()) {
     77     LUnallocated* operand = LUnallocated::cast(it.Current());
     78     ASSERT(operand->HasFixedPolicy() ||!operand->HasRegisterPolicy());
     79   }
     80 }
     81 #endif
     82 
     83 
     84 void LOsrEntry::MarkSpilledDoubleRegister(int allocation_index,
     85                                           LOperand* spill_operand) {
     86   ASSERT(spill_operand->IsDoubleStackSlot());
     87   ASSERT(double_register_spills_[allocation_index] == NULL);
     88   double_register_spills_[allocation_index] = spill_operand;
     89 }
     90 
     91 
     92 void LInstruction::PrintTo(StringStream* stream) {
     93   stream->Add("%s ", this->Mnemonic());
     94 
     95   PrintOutputOperandTo(stream);
     96 
     97   PrintDataTo(stream);
     98 
     99   if (HasEnvironment()) {
    100     stream->Add(" ");
    101     environment()->PrintTo(stream);
    102   }
    103 
    104   if (HasPointerMap()) {
    105     stream->Add(" ");
    106     pointer_map()->PrintTo(stream);
    107   }
    108 }
    109 
    110 
    111 template<int R, int I, int T>
    112 void LTemplateInstruction<R, I, T>::PrintDataTo(StringStream* stream) {
    113   stream->Add("= ");
    114   for (int i = 0; i < inputs_.length(); i++) {
    115     if (i > 0) stream->Add(" ");
    116     inputs_[i]->PrintTo(stream);
    117   }
    118 }
    119 
    120 
    121 template<int R, int I, int T>
    122 void LTemplateInstruction<R, I, T>::PrintOutputOperandTo(StringStream* stream) {
    123   for (int i = 0; i < results_.length(); i++) {
    124     if (i > 0) stream->Add(" ");
    125     results_[i]->PrintTo(stream);
    126   }
    127 }
    128 
    129 
    130 void LLabel::PrintDataTo(StringStream* stream) {
    131   LGap::PrintDataTo(stream);
    132   LLabel* rep = replacement();
    133   if (rep != NULL) {
    134     stream->Add(" Dead block replaced with B%d", rep->block_id());
    135   }
    136 }
    137 
    138 
    139 bool LGap::IsRedundant() const {
    140   for (int i = 0; i < 4; i++) {
    141     if (parallel_moves_[i] != NULL && !parallel_moves_[i]->IsRedundant()) {
    142       return false;
    143     }
    144   }
    145 
    146   return true;
    147 }
    148 
    149 
    150 void LGap::PrintDataTo(StringStream* stream) {
    151   for (int i = 0; i < 4; i++) {
    152     stream->Add("(");
    153     if (parallel_moves_[i] != NULL) {
    154       parallel_moves_[i]->PrintDataTo(stream);
    155     }
    156     stream->Add(") ");
    157   }
    158 }
    159 
    160 
    161 const char* LArithmeticD::Mnemonic() const {
    162   switch (op()) {
    163     case Token::ADD: return "add-d";
    164     case Token::SUB: return "sub-d";
    165     case Token::MUL: return "mul-d";
    166     case Token::DIV: return "div-d";
    167     case Token::MOD: return "mod-d";
    168     default:
    169       UNREACHABLE();
    170       return NULL;
    171   }
    172 }
    173 
    174 
    175 const char* LArithmeticT::Mnemonic() const {
    176   switch (op()) {
    177     case Token::ADD: return "add-t";
    178     case Token::SUB: return "sub-t";
    179     case Token::MUL: return "mul-t";
    180     case Token::MOD: return "mod-t";
    181     case Token::DIV: return "div-t";
    182     case Token::BIT_AND: return "bit-and-t";
    183     case Token::BIT_OR: return "bit-or-t";
    184     case Token::BIT_XOR: return "bit-xor-t";
    185     case Token::SHL: return "sll-t";
    186     case Token::SAR: return "sra-t";
    187     case Token::SHR: return "srl-t";
    188     default:
    189       UNREACHABLE();
    190       return NULL;
    191   }
    192 }
    193 
    194 
    195 void LGoto::PrintDataTo(StringStream* stream) {
    196   stream->Add("B%d", block_id());
    197 }
    198 
    199 
    200 void LBranch::PrintDataTo(StringStream* stream) {
    201   stream->Add("B%d | B%d on ", true_block_id(), false_block_id());
    202   InputAt(0)->PrintTo(stream);
    203 }
    204 
    205 
    206 void LCmpIDAndBranch::PrintDataTo(StringStream* stream) {
    207   stream->Add("if ");
    208   InputAt(0)->PrintTo(stream);
    209   stream->Add(" %s ", Token::String(op()));
    210   InputAt(1)->PrintTo(stream);
    211   stream->Add(" then B%d else B%d", true_block_id(), false_block_id());
    212 }
    213 
    214 
    215 void LIsNilAndBranch::PrintDataTo(StringStream* stream) {
    216   stream->Add("if ");
    217   InputAt(0)->PrintTo(stream);
    218   stream->Add(kind() == kStrictEquality ? " === " : " == ");
    219   stream->Add(nil() == kNullValue ? "null" : "undefined");
    220   stream->Add(" then B%d else B%d", true_block_id(), false_block_id());
    221 }
    222 
    223 
    224 void LIsObjectAndBranch::PrintDataTo(StringStream* stream) {
    225   stream->Add("if is_object(");
    226   InputAt(0)->PrintTo(stream);
    227   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    228 }
    229 
    230 
    231 void LIsStringAndBranch::PrintDataTo(StringStream* stream) {
    232   stream->Add("if is_string(");
    233   InputAt(0)->PrintTo(stream);
    234   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    235 }
    236 
    237 
    238 void LIsSmiAndBranch::PrintDataTo(StringStream* stream) {
    239   stream->Add("if is_smi(");
    240   InputAt(0)->PrintTo(stream);
    241   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    242 }
    243 
    244 
    245 void LIsUndetectableAndBranch::PrintDataTo(StringStream* stream) {
    246   stream->Add("if is_undetectable(");
    247   InputAt(0)->PrintTo(stream);
    248   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    249 }
    250 
    251 
    252 void LStringCompareAndBranch::PrintDataTo(StringStream* stream) {
    253   stream->Add("if string_compare(");
    254   InputAt(0)->PrintTo(stream);
    255   InputAt(1)->PrintTo(stream);
    256   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    257 }
    258 
    259 
    260 void LHasInstanceTypeAndBranch::PrintDataTo(StringStream* stream) {
    261   stream->Add("if has_instance_type(");
    262   InputAt(0)->PrintTo(stream);
    263   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    264 }
    265 
    266 
    267 void LHasCachedArrayIndexAndBranch::PrintDataTo(StringStream* stream) {
    268   stream->Add("if has_cached_array_index(");
    269   InputAt(0)->PrintTo(stream);
    270   stream->Add(") then B%d else B%d", true_block_id(), false_block_id());
    271 }
    272 
    273 
    274 void LClassOfTestAndBranch::PrintDataTo(StringStream* stream) {
    275   stream->Add("if class_of_test(");
    276   InputAt(0)->PrintTo(stream);
    277   stream->Add(", \"%o\") then B%d else B%d",
    278               *hydrogen()->class_name(),
    279               true_block_id(),
    280               false_block_id());
    281 }
    282 
    283 
    284 void LTypeofIsAndBranch::PrintDataTo(StringStream* stream) {
    285   stream->Add("if typeof ");
    286   InputAt(0)->PrintTo(stream);
    287   stream->Add(" == \"%s\" then B%d else B%d",
    288               *hydrogen()->type_literal()->ToCString(),
    289               true_block_id(), false_block_id());
    290 }
    291 
    292 
    293 void LCallConstantFunction::PrintDataTo(StringStream* stream) {
    294   stream->Add("#%d / ", arity());
    295 }
    296 
    297 
    298 void LUnaryMathOperation::PrintDataTo(StringStream* stream) {
    299   stream->Add("/%s ", hydrogen()->OpName());
    300   InputAt(0)->PrintTo(stream);
    301 }
    302 
    303 
    304 void LLoadContextSlot::PrintDataTo(StringStream* stream) {
    305   InputAt(0)->PrintTo(stream);
    306   stream->Add("[%d]", slot_index());
    307 }
    308 
    309 
    310 void LStoreContextSlot::PrintDataTo(StringStream* stream) {
    311   InputAt(0)->PrintTo(stream);
    312   stream->Add("[%d] <- ", slot_index());
    313   InputAt(1)->PrintTo(stream);
    314 }
    315 
    316 
    317 void LInvokeFunction::PrintDataTo(StringStream* stream) {
    318   stream->Add("= ");
    319   InputAt(0)->PrintTo(stream);
    320   stream->Add(" #%d / ", arity());
    321 }
    322 
    323 
    324 void LCallKeyed::PrintDataTo(StringStream* stream) {
    325   stream->Add("[a2] #%d / ", arity());
    326 }
    327 
    328 
    329 void LCallNamed::PrintDataTo(StringStream* stream) {
    330   SmartArrayPointer<char> name_string = name()->ToCString();
    331   stream->Add("%s #%d / ", *name_string, arity());
    332 }
    333 
    334 
    335 void LCallGlobal::PrintDataTo(StringStream* stream) {
    336   SmartArrayPointer<char> name_string = name()->ToCString();
    337   stream->Add("%s #%d / ", *name_string, arity());
    338 }
    339 
    340 
    341 void LCallKnownGlobal::PrintDataTo(StringStream* stream) {
    342   stream->Add("#%d / ", arity());
    343 }
    344 
    345 
    346 void LCallNew::PrintDataTo(StringStream* stream) {
    347   stream->Add("= ");
    348   InputAt(0)->PrintTo(stream);
    349   stream->Add(" #%d / ", arity());
    350 }
    351 
    352 
    353 void LAccessArgumentsAt::PrintDataTo(StringStream* stream) {
    354   arguments()->PrintTo(stream);
    355 
    356   stream->Add(" length ");
    357   length()->PrintTo(stream);
    358 
    359   stream->Add(" index ");
    360   index()->PrintTo(stream);
    361 }
    362 
    363 
    364 void LStoreNamedField::PrintDataTo(StringStream* stream) {
    365   object()->PrintTo(stream);
    366   stream->Add(".");
    367   stream->Add(*String::cast(*name())->ToCString());
    368   stream->Add(" <- ");
    369   value()->PrintTo(stream);
    370 }
    371 
    372 
    373 void LStoreNamedGeneric::PrintDataTo(StringStream* stream) {
    374   object()->PrintTo(stream);
    375   stream->Add(".");
    376   stream->Add(*String::cast(*name())->ToCString());
    377   stream->Add(" <- ");
    378   value()->PrintTo(stream);
    379 }
    380 
    381 
    382 void LStoreKeyedFastElement::PrintDataTo(StringStream* stream) {
    383   object()->PrintTo(stream);
    384   stream->Add("[");
    385   key()->PrintTo(stream);
    386   stream->Add("] <- ");
    387   value()->PrintTo(stream);
    388 }
    389 
    390 
    391 void LStoreKeyedFastDoubleElement::PrintDataTo(StringStream* stream) {
    392   elements()->PrintTo(stream);
    393   stream->Add("[");
    394   key()->PrintTo(stream);
    395   stream->Add("] <- ");
    396   value()->PrintTo(stream);
    397 }
    398 
    399 
    400 void LStoreKeyedGeneric::PrintDataTo(StringStream* stream) {
    401   object()->PrintTo(stream);
    402   stream->Add("[");
    403   key()->PrintTo(stream);
    404   stream->Add("] <- ");
    405   value()->PrintTo(stream);
    406 }
    407 
    408 
    409 void LTransitionElementsKind::PrintDataTo(StringStream* stream) {
    410   object()->PrintTo(stream);
    411   stream->Add(" %p -> %p", *original_map(), *transitioned_map());
    412 }
    413 
    414 
    415 LChunk::LChunk(CompilationInfo* info, HGraph* graph)
    416     : spill_slot_count_(0),
    417       info_(info),
    418       graph_(graph),
    419       instructions_(32),
    420       pointer_maps_(8),
    421       inlined_closures_(1) {
    422 }
    423 
    424 
    425 int LChunk::GetNextSpillIndex(bool is_double) {
    426   // Skip a slot if for a double-width slot.
    427   if (is_double) spill_slot_count_++;
    428   return spill_slot_count_++;
    429 }
    430 
    431 
    432 LOperand* LChunk::GetNextSpillSlot(bool is_double)  {
    433   int index = GetNextSpillIndex(is_double);
    434   if (is_double) {
    435     return LDoubleStackSlot::Create(index);
    436   } else {
    437     return LStackSlot::Create(index);
    438   }
    439 }
    440 
    441 
    442 void LChunk::MarkEmptyBlocks() {
    443   HPhase phase("L_Mark empty blocks", this);
    444   for (int i = 0; i < graph()->blocks()->length(); ++i) {
    445     HBasicBlock* block = graph()->blocks()->at(i);
    446     int first = block->first_instruction_index();
    447     int last = block->last_instruction_index();
    448     LInstruction* first_instr = instructions()->at(first);
    449     LInstruction* last_instr = instructions()->at(last);
    450 
    451     LLabel* label = LLabel::cast(first_instr);
    452     if (last_instr->IsGoto()) {
    453       LGoto* goto_instr = LGoto::cast(last_instr);
    454       if (label->IsRedundant() &&
    455           !label->is_loop_header()) {
    456         bool can_eliminate = true;
    457         for (int i = first + 1; i < last && can_eliminate; ++i) {
    458           LInstruction* cur = instructions()->at(i);
    459           if (cur->IsGap()) {
    460             LGap* gap = LGap::cast(cur);
    461             if (!gap->IsRedundant()) {
    462               can_eliminate = false;
    463             }
    464           } else {
    465             can_eliminate = false;
    466           }
    467         }
    468 
    469         if (can_eliminate) {
    470           label->set_replacement(GetLabel(goto_instr->block_id()));
    471         }
    472       }
    473     }
    474   }
    475 }
    476 
    477 
    478 void LChunk::AddInstruction(LInstruction* instr, HBasicBlock* block) {
    479   LInstructionGap* gap = new(graph_->zone()) LInstructionGap(block);
    480   int index = -1;
    481   if (instr->IsControl()) {
    482     instructions_.Add(gap);
    483     index = instructions_.length();
    484     instructions_.Add(instr);
    485   } else {
    486     index = instructions_.length();
    487     instructions_.Add(instr);
    488     instructions_.Add(gap);
    489   }
    490   if (instr->HasPointerMap()) {
    491     pointer_maps_.Add(instr->pointer_map());
    492     instr->pointer_map()->set_lithium_position(index);
    493   }
    494 }
    495 
    496 
    497 LConstantOperand* LChunk::DefineConstantOperand(HConstant* constant) {
    498   return LConstantOperand::Create(constant->id());
    499 }
    500 
    501 
    502 int LChunk::GetParameterStackSlot(int index) const {
    503   // The receiver is at index 0, the first parameter at index 1, so we
    504   // shift all parameter indexes down by the number of parameters, and
    505   // make sure they end up negative so they are distinguishable from
    506   // spill slots.
    507   int result = index - info()->scope()->num_parameters() - 1;
    508   ASSERT(result < 0);
    509   return result;
    510 }
    511 
    512 // A parameter relative to ebp in the arguments stub.
    513 int LChunk::ParameterAt(int index) {
    514   ASSERT(-1 <= index);  // -1 is the receiver.
    515   return (1 + info()->scope()->num_parameters() - index) *
    516       kPointerSize;
    517 }
    518 
    519 
    520 LGap* LChunk::GetGapAt(int index) const {
    521   return LGap::cast(instructions_[index]);
    522 }
    523 
    524 
    525 bool LChunk::IsGapAt(int index) const {
    526   return instructions_[index]->IsGap();
    527 }
    528 
    529 
    530 int LChunk::NearestGapPos(int index) const {
    531   while (!IsGapAt(index)) index--;
    532   return index;
    533 }
    534 
    535 
    536 void LChunk::AddGapMove(int index, LOperand* from, LOperand* to) {
    537   GetGapAt(index)->GetOrCreateParallelMove(LGap::START)->AddMove(from, to);
    538 }
    539 
    540 
    541 Handle<Object> LChunk::LookupLiteral(LConstantOperand* operand) const {
    542   return HConstant::cast(graph_->LookupValue(operand->index()))->handle();
    543 }
    544 
    545 
    546 Representation LChunk::LookupLiteralRepresentation(
    547     LConstantOperand* operand) const {
    548   return graph_->LookupValue(operand->index())->representation();
    549 }
    550 
    551 
    552 LChunk* LChunkBuilder::Build() {
    553   ASSERT(is_unused());
    554   chunk_ = new(zone()) LChunk(info(), graph());
    555   HPhase phase("L_Building chunk", chunk_);
    556   status_ = BUILDING;
    557   const ZoneList<HBasicBlock*>* blocks = graph()->blocks();
    558   for (int i = 0; i < blocks->length(); i++) {
    559     HBasicBlock* next = NULL;
    560     if (i < blocks->length() - 1) next = blocks->at(i + 1);
    561     DoBasicBlock(blocks->at(i), next);
    562     if (is_aborted()) return NULL;
    563   }
    564   status_ = DONE;
    565   return chunk_;
    566 }
    567 
    568 
    569 void LChunkBuilder::Abort(const char* format, ...) {
    570   if (FLAG_trace_bailout) {
    571     SmartArrayPointer<char> name(
    572         info()->shared_info()->DebugName()->ToCString());
    573     PrintF("Aborting LChunk building in @\"%s\": ", *name);
    574     va_list arguments;
    575     va_start(arguments, format);
    576     OS::VPrint(format, arguments);
    577     va_end(arguments);
    578     PrintF("\n");
    579   }
    580   status_ = ABORTED;
    581 }
    582 
    583 
    584 LUnallocated* LChunkBuilder::ToUnallocated(Register reg) {
    585   return new(zone()) LUnallocated(LUnallocated::FIXED_REGISTER,
    586                                   Register::ToAllocationIndex(reg));
    587 }
    588 
    589 
    590 LUnallocated* LChunkBuilder::ToUnallocated(DoubleRegister reg) {
    591   return new(zone()) LUnallocated(LUnallocated::FIXED_DOUBLE_REGISTER,
    592                                   DoubleRegister::ToAllocationIndex(reg));
    593 }
    594 
    595 
    596 LOperand* LChunkBuilder::UseFixed(HValue* value, Register fixed_register) {
    597   return Use(value, ToUnallocated(fixed_register));
    598 }
    599 
    600 
    601 LOperand* LChunkBuilder::UseFixedDouble(HValue* value, DoubleRegister reg) {
    602   return Use(value, ToUnallocated(reg));
    603 }
    604 
    605 
    606 LOperand* LChunkBuilder::UseRegister(HValue* value) {
    607   return Use(value, new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER));
    608 }
    609 
    610 
    611 LOperand* LChunkBuilder::UseRegisterAtStart(HValue* value) {
    612   return Use(value,
    613              new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER,
    614                                       LUnallocated::USED_AT_START));
    615 }
    616 
    617 
    618 LOperand* LChunkBuilder::UseTempRegister(HValue* value) {
    619   return Use(value, new(zone()) LUnallocated(LUnallocated::WRITABLE_REGISTER));
    620 }
    621 
    622 
    623 LOperand* LChunkBuilder::Use(HValue* value) {
    624   return Use(value, new(zone()) LUnallocated(LUnallocated::NONE));
    625 }
    626 
    627 
    628 LOperand* LChunkBuilder::UseAtStart(HValue* value) {
    629   return Use(value, new(zone()) LUnallocated(LUnallocated::NONE,
    630                                      LUnallocated::USED_AT_START));
    631 }
    632 
    633 
    634 LOperand* LChunkBuilder::UseOrConstant(HValue* value) {
    635   return value->IsConstant()
    636       ? chunk_->DefineConstantOperand(HConstant::cast(value))
    637       : Use(value);
    638 }
    639 
    640 
    641 LOperand* LChunkBuilder::UseOrConstantAtStart(HValue* value) {
    642   return value->IsConstant()
    643       ? chunk_->DefineConstantOperand(HConstant::cast(value))
    644       : UseAtStart(value);
    645 }
    646 
    647 
    648 LOperand* LChunkBuilder::UseRegisterOrConstant(HValue* value) {
    649   return value->IsConstant()
    650       ? chunk_->DefineConstantOperand(HConstant::cast(value))
    651       : UseRegister(value);
    652 }
    653 
    654 
    655 LOperand* LChunkBuilder::UseRegisterOrConstantAtStart(HValue* value) {
    656   return value->IsConstant()
    657       ? chunk_->DefineConstantOperand(HConstant::cast(value))
    658       : UseRegisterAtStart(value);
    659 }
    660 
    661 
    662 LOperand* LChunkBuilder::UseAny(HValue* value) {
    663   return value->IsConstant()
    664       ? chunk_->DefineConstantOperand(HConstant::cast(value))
    665       :  Use(value, new(zone()) LUnallocated(LUnallocated::ANY));
    666 }
    667 
    668 
    669 LOperand* LChunkBuilder::Use(HValue* value, LUnallocated* operand) {
    670   if (value->EmitAtUses()) {
    671     HInstruction* instr = HInstruction::cast(value);
    672     VisitInstruction(instr);
    673   }
    674   operand->set_virtual_register(value->id());
    675   return operand;
    676 }
    677 
    678 
    679 template<int I, int T>
    680 LInstruction* LChunkBuilder::Define(LTemplateInstruction<1, I, T>* instr,
    681                                     LUnallocated* result) {
    682   result->set_virtual_register(current_instruction_->id());
    683   instr->set_result(result);
    684   return instr;
    685 }
    686 
    687 
    688 template<int I, int T>
    689 LInstruction* LChunkBuilder::DefineAsRegister(
    690     LTemplateInstruction<1, I, T>* instr) {
    691   return Define(instr,
    692                 new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER));
    693 }
    694 
    695 
    696 template<int I, int T>
    697 LInstruction* LChunkBuilder::DefineAsSpilled(
    698     LTemplateInstruction<1, I, T>* instr, int index) {
    699   return Define(instr,
    700                 new(zone()) LUnallocated(LUnallocated::FIXED_SLOT, index));
    701 }
    702 
    703 
    704 template<int I, int T>
    705 LInstruction* LChunkBuilder::DefineSameAsFirst(
    706     LTemplateInstruction<1, I, T>* instr) {
    707   return Define(instr,
    708                 new(zone()) LUnallocated(LUnallocated::SAME_AS_FIRST_INPUT));
    709 }
    710 
    711 
    712 template<int I, int T>
    713 LInstruction* LChunkBuilder::DefineFixed(
    714     LTemplateInstruction<1, I, T>* instr, Register reg) {
    715   return Define(instr, ToUnallocated(reg));
    716 }
    717 
    718 
    719 template<int I, int T>
    720 LInstruction* LChunkBuilder::DefineFixedDouble(
    721     LTemplateInstruction<1, I, T>* instr, DoubleRegister reg) {
    722   return Define(instr, ToUnallocated(reg));
    723 }
    724 
    725 
    726 LInstruction* LChunkBuilder::AssignEnvironment(LInstruction* instr) {
    727   HEnvironment* hydrogen_env = current_block_->last_environment();
    728   int argument_index_accumulator = 0;
    729   instr->set_environment(CreateEnvironment(hydrogen_env,
    730                                            &argument_index_accumulator));
    731   return instr;
    732 }
    733 
    734 
    735 LInstruction* LChunkBuilder::SetInstructionPendingDeoptimizationEnvironment(
    736     LInstruction* instr, int ast_id) {
    737   ASSERT(instruction_pending_deoptimization_environment_ == NULL);
    738   ASSERT(pending_deoptimization_ast_id_ == AstNode::kNoNumber);
    739   instruction_pending_deoptimization_environment_ = instr;
    740   pending_deoptimization_ast_id_ = ast_id;
    741   return instr;
    742 }
    743 
    744 
    745 void LChunkBuilder::ClearInstructionPendingDeoptimizationEnvironment() {
    746   instruction_pending_deoptimization_environment_ = NULL;
    747   pending_deoptimization_ast_id_ = AstNode::kNoNumber;
    748 }
    749 
    750 
    751 LInstruction* LChunkBuilder::MarkAsCall(LInstruction* instr,
    752                                         HInstruction* hinstr,
    753                                         CanDeoptimize can_deoptimize) {
    754 #ifdef DEBUG
    755   instr->VerifyCall();
    756 #endif
    757   instr->MarkAsCall();
    758   instr = AssignPointerMap(instr);
    759 
    760   if (hinstr->HasObservableSideEffects()) {
    761     ASSERT(hinstr->next()->IsSimulate());
    762     HSimulate* sim = HSimulate::cast(hinstr->next());
    763     instr = SetInstructionPendingDeoptimizationEnvironment(
    764         instr, sim->ast_id());
    765   }
    766 
    767   // If instruction does not have side-effects lazy deoptimization
    768   // after the call will try to deoptimize to the point before the call.
    769   // Thus we still need to attach environment to this call even if
    770   // call sequence can not deoptimize eagerly.
    771   bool needs_environment =
    772       (can_deoptimize == CAN_DEOPTIMIZE_EAGERLY) ||
    773       !hinstr->HasObservableSideEffects();
    774   if (needs_environment && !instr->HasEnvironment()) {
    775     instr = AssignEnvironment(instr);
    776   }
    777 
    778   return instr;
    779 }
    780 
    781 
    782 LInstruction* LChunkBuilder::MarkAsSaveDoubles(LInstruction* instr) {
    783   instr->MarkAsSaveDoubles();
    784   return instr;
    785 }
    786 
    787 
    788 LInstruction* LChunkBuilder::AssignPointerMap(LInstruction* instr) {
    789   ASSERT(!instr->HasPointerMap());
    790   instr->set_pointer_map(new(zone()) LPointerMap(position_));
    791   return instr;
    792 }
    793 
    794 
    795 LUnallocated* LChunkBuilder::TempRegister() {
    796   LUnallocated* operand =
    797       new(zone()) LUnallocated(LUnallocated::MUST_HAVE_REGISTER);
    798   operand->set_virtual_register(allocator_->GetVirtualRegister());
    799   if (!allocator_->AllocationOk()) Abort("Not enough virtual registers.");
    800   return operand;
    801 }
    802 
    803 
    804 LOperand* LChunkBuilder::FixedTemp(Register reg) {
    805   LUnallocated* operand = ToUnallocated(reg);
    806   ASSERT(operand->HasFixedPolicy());
    807   return operand;
    808 }
    809 
    810 
    811 LOperand* LChunkBuilder::FixedTemp(DoubleRegister reg) {
    812   LUnallocated* operand = ToUnallocated(reg);
    813   ASSERT(operand->HasFixedPolicy());
    814   return operand;
    815 }
    816 
    817 
    818 LInstruction* LChunkBuilder::DoBlockEntry(HBlockEntry* instr) {
    819   return new(zone()) LLabel(instr->block());
    820 }
    821 
    822 
    823 LInstruction* LChunkBuilder::DoSoftDeoptimize(HSoftDeoptimize* instr) {
    824   return AssignEnvironment(new(zone()) LDeoptimize);
    825 }
    826 
    827 
    828 LInstruction* LChunkBuilder::DoDeoptimize(HDeoptimize* instr) {
    829   return AssignEnvironment(new(zone()) LDeoptimize);
    830 }
    831 
    832 
    833 LInstruction* LChunkBuilder::DoShift(Token::Value op,
    834                                      HBitwiseBinaryOperation* instr) {
    835   if (instr->representation().IsTagged()) {
    836     ASSERT(instr->left()->representation().IsTagged());
    837     ASSERT(instr->right()->representation().IsTagged());
    838 
    839     LOperand* left = UseFixed(instr->left(), a1);
    840     LOperand* right = UseFixed(instr->right(), a0);
    841     LArithmeticT* result = new(zone()) LArithmeticT(op, left, right);
    842     return MarkAsCall(DefineFixed(result, v0), instr);
    843   }
    844 
    845   ASSERT(instr->representation().IsInteger32());
    846   ASSERT(instr->left()->representation().IsInteger32());
    847   ASSERT(instr->right()->representation().IsInteger32());
    848   LOperand* left = UseRegisterAtStart(instr->left());
    849 
    850   HValue* right_value = instr->right();
    851   LOperand* right = NULL;
    852   int constant_value = 0;
    853   if (right_value->IsConstant()) {
    854     HConstant* constant = HConstant::cast(right_value);
    855     right = chunk_->DefineConstantOperand(constant);
    856     constant_value = constant->Integer32Value() & 0x1f;
    857   } else {
    858     right = UseRegisterAtStart(right_value);
    859   }
    860 
    861   // Shift operations can only deoptimize if we do a logical shift
    862   // by 0 and the result cannot be truncated to int32.
    863   bool may_deopt = (op == Token::SHR && constant_value == 0);
    864   bool does_deopt = false;
    865   if (may_deopt) {
    866     for (HUseIterator it(instr->uses()); !it.Done(); it.Advance()) {
    867       if (!it.value()->CheckFlag(HValue::kTruncatingToInt32)) {
    868         does_deopt = true;
    869         break;
    870       }
    871     }
    872   }
    873 
    874   LInstruction* result =
    875       DefineAsRegister(new(zone()) LShiftI(op, left, right, does_deopt));
    876   return does_deopt ? AssignEnvironment(result) : result;
    877 }
    878 
    879 
    880 LInstruction* LChunkBuilder::DoArithmeticD(Token::Value op,
    881                                            HArithmeticBinaryOperation* instr) {
    882   ASSERT(instr->representation().IsDouble());
    883   ASSERT(instr->left()->representation().IsDouble());
    884   ASSERT(instr->right()->representation().IsDouble());
    885   ASSERT(op != Token::MOD);
    886   LOperand* left = UseRegisterAtStart(instr->left());
    887   LOperand* right = UseRegisterAtStart(instr->right());
    888   LArithmeticD* result = new(zone()) LArithmeticD(op, left, right);
    889   return DefineAsRegister(result);
    890 }
    891 
    892 
    893 LInstruction* LChunkBuilder::DoArithmeticT(Token::Value op,
    894                                            HArithmeticBinaryOperation* instr) {
    895   ASSERT(op == Token::ADD ||
    896          op == Token::DIV ||
    897          op == Token::MOD ||
    898          op == Token::MUL ||
    899          op == Token::SUB);
    900   HValue* left = instr->left();
    901   HValue* right = instr->right();
    902   ASSERT(left->representation().IsTagged());
    903   ASSERT(right->representation().IsTagged());
    904   LOperand* left_operand = UseFixed(left, a1);
    905   LOperand* right_operand = UseFixed(right, a0);
    906   LArithmeticT* result =
    907       new(zone()) LArithmeticT(op, left_operand, right_operand);
    908   return MarkAsCall(DefineFixed(result, v0), instr);
    909 }
    910 
    911 
    912 void LChunkBuilder::DoBasicBlock(HBasicBlock* block, HBasicBlock* next_block) {
    913   ASSERT(is_building());
    914   current_block_ = block;
    915   next_block_ = next_block;
    916   if (block->IsStartBlock()) {
    917     block->UpdateEnvironment(graph_->start_environment());
    918     argument_count_ = 0;
    919   } else if (block->predecessors()->length() == 1) {
    920     // We have a single predecessor => copy environment and outgoing
    921     // argument count from the predecessor.
    922     ASSERT(block->phis()->length() == 0);
    923     HBasicBlock* pred = block->predecessors()->at(0);
    924     HEnvironment* last_environment = pred->last_environment();
    925     ASSERT(last_environment != NULL);
    926     // Only copy the environment, if it is later used again.
    927     if (pred->end()->SecondSuccessor() == NULL) {
    928       ASSERT(pred->end()->FirstSuccessor() == block);
    929     } else {
    930       if (pred->end()->FirstSuccessor()->block_id() > block->block_id() ||
    931           pred->end()->SecondSuccessor()->block_id() > block->block_id()) {
    932         last_environment = last_environment->Copy();
    933       }
    934     }
    935     block->UpdateEnvironment(last_environment);
    936     ASSERT(pred->argument_count() >= 0);
    937     argument_count_ = pred->argument_count();
    938   } else {
    939     // We are at a state join => process phis.
    940     HBasicBlock* pred = block->predecessors()->at(0);
    941     // No need to copy the environment, it cannot be used later.
    942     HEnvironment* last_environment = pred->last_environment();
    943     for (int i = 0; i < block->phis()->length(); ++i) {
    944       HPhi* phi = block->phis()->at(i);
    945       last_environment->SetValueAt(phi->merged_index(), phi);
    946     }
    947     for (int i = 0; i < block->deleted_phis()->length(); ++i) {
    948       last_environment->SetValueAt(block->deleted_phis()->at(i),
    949                                    graph_->GetConstantUndefined());
    950     }
    951     block->UpdateEnvironment(last_environment);
    952     // Pick up the outgoing argument count of one of the predecessors.
    953     argument_count_ = pred->argument_count();
    954   }
    955   HInstruction* current = block->first();
    956   int start = chunk_->instructions()->length();
    957   while (current != NULL && !is_aborted()) {
    958     // Code for constants in registers is generated lazily.
    959     if (!current->EmitAtUses()) {
    960       VisitInstruction(current);
    961     }
    962     current = current->next();
    963   }
    964   int end = chunk_->instructions()->length() - 1;
    965   if (end >= start) {
    966     block->set_first_instruction_index(start);
    967     block->set_last_instruction_index(end);
    968   }
    969   block->set_argument_count(argument_count_);
    970   next_block_ = NULL;
    971   current_block_ = NULL;
    972 }
    973 
    974 
    975 void LChunkBuilder::VisitInstruction(HInstruction* current) {
    976   HInstruction* old_current = current_instruction_;
    977   current_instruction_ = current;
    978   if (current->has_position()) position_ = current->position();
    979   LInstruction* instr = current->CompileToLithium(this);
    980 
    981   if (instr != NULL) {
    982     if (FLAG_stress_pointer_maps && !instr->HasPointerMap()) {
    983       instr = AssignPointerMap(instr);
    984     }
    985     if (FLAG_stress_environments && !instr->HasEnvironment()) {
    986       instr = AssignEnvironment(instr);
    987     }
    988     instr->set_hydrogen_value(current);
    989     chunk_->AddInstruction(instr, current_block_);
    990   }
    991   current_instruction_ = old_current;
    992 }
    993 
    994 
    995 LEnvironment* LChunkBuilder::CreateEnvironment(
    996     HEnvironment* hydrogen_env,
    997     int* argument_index_accumulator) {
    998   if (hydrogen_env == NULL) return NULL;
    999 
   1000   LEnvironment* outer =
   1001       CreateEnvironment(hydrogen_env->outer(), argument_index_accumulator);
   1002   int ast_id = hydrogen_env->ast_id();
   1003   ASSERT(ast_id != AstNode::kNoNumber ||
   1004          hydrogen_env->frame_type() != JS_FUNCTION);
   1005   int value_count = hydrogen_env->length();
   1006   LEnvironment* result = new(zone()) LEnvironment(
   1007       hydrogen_env->closure(),
   1008       hydrogen_env->frame_type(),
   1009       ast_id,
   1010       hydrogen_env->parameter_count(),
   1011       argument_count_,
   1012       value_count,
   1013       outer);
   1014   int argument_index = *argument_index_accumulator;
   1015   for (int i = 0; i < value_count; ++i) {
   1016     if (hydrogen_env->is_special_index(i)) continue;
   1017 
   1018     HValue* value = hydrogen_env->values()->at(i);
   1019     LOperand* op = NULL;
   1020     if (value->IsArgumentsObject()) {
   1021       op = NULL;
   1022     } else if (value->IsPushArgument()) {
   1023       op = new(zone()) LArgument(argument_index++);
   1024     } else {
   1025       op = UseAny(value);
   1026     }
   1027     result->AddValue(op, value->representation());
   1028   }
   1029 
   1030   if (hydrogen_env->frame_type() == JS_FUNCTION) {
   1031     *argument_index_accumulator = argument_index;
   1032   }
   1033 
   1034   return result;
   1035 }
   1036 
   1037 
   1038 LInstruction* LChunkBuilder::DoGoto(HGoto* instr) {
   1039   return new(zone()) LGoto(instr->FirstSuccessor()->block_id());
   1040 }
   1041 
   1042 
   1043 LInstruction* LChunkBuilder::DoBranch(HBranch* instr) {
   1044   HValue* value = instr->value();
   1045   if (value->EmitAtUses()) {
   1046     HBasicBlock* successor = HConstant::cast(value)->ToBoolean()
   1047         ? instr->FirstSuccessor()
   1048         : instr->SecondSuccessor();
   1049     return new(zone()) LGoto(successor->block_id());
   1050   }
   1051 
   1052   LBranch* result = new(zone()) LBranch(UseRegister(value));
   1053   // Tagged values that are not known smis or booleans require a
   1054   // deoptimization environment.
   1055   Representation rep = value->representation();
   1056   HType type = value->type();
   1057   if (rep.IsTagged() && !type.IsSmi() && !type.IsBoolean()) {
   1058     return AssignEnvironment(result);
   1059   }
   1060   return result;
   1061 }
   1062 
   1063 
   1064 LInstruction* LChunkBuilder::DoCompareMap(HCompareMap* instr) {
   1065   ASSERT(instr->value()->representation().IsTagged());
   1066   LOperand* value = UseRegisterAtStart(instr->value());
   1067   LOperand* temp = TempRegister();
   1068   return new(zone()) LCmpMapAndBranch(value, temp);
   1069 }
   1070 
   1071 
   1072 LInstruction* LChunkBuilder::DoArgumentsLength(HArgumentsLength* length) {
   1073   return DefineAsRegister(
   1074       new(zone()) LArgumentsLength(UseRegister(length->value())));
   1075 }
   1076 
   1077 
   1078 LInstruction* LChunkBuilder::DoArgumentsElements(HArgumentsElements* elems) {
   1079   return DefineAsRegister(new(zone()) LArgumentsElements);
   1080 }
   1081 
   1082 
   1083 LInstruction* LChunkBuilder::DoInstanceOf(HInstanceOf* instr) {
   1084   LInstanceOf* result =
   1085       new(zone()) LInstanceOf(UseFixed(instr->left(), a0),
   1086                               UseFixed(instr->right(), a1));
   1087   return MarkAsCall(DefineFixed(result, v0), instr);
   1088 }
   1089 
   1090 
   1091 LInstruction* LChunkBuilder::DoInstanceOfKnownGlobal(
   1092     HInstanceOfKnownGlobal* instr) {
   1093   LInstanceOfKnownGlobal* result =
   1094       new(zone()) LInstanceOfKnownGlobal(UseFixed(instr->left(), a0),
   1095                                          FixedTemp(t0));
   1096   return MarkAsCall(DefineFixed(result, v0), instr);
   1097 }
   1098 
   1099 
   1100 LInstruction* LChunkBuilder::DoWrapReceiver(HWrapReceiver* instr) {
   1101   LOperand* receiver = UseRegisterAtStart(instr->receiver());
   1102   LOperand* function = UseRegisterAtStart(instr->function());
   1103   LWrapReceiver* result = new(zone()) LWrapReceiver(receiver, function);
   1104   return AssignEnvironment(DefineSameAsFirst(result));
   1105 }
   1106 
   1107 
   1108 LInstruction* LChunkBuilder::DoApplyArguments(HApplyArguments* instr) {
   1109   LOperand* function = UseFixed(instr->function(), a1);
   1110   LOperand* receiver = UseFixed(instr->receiver(), a0);
   1111   LOperand* length = UseFixed(instr->length(), a2);
   1112   LOperand* elements = UseFixed(instr->elements(), a3);
   1113   LApplyArguments* result = new(zone()) LApplyArguments(function,
   1114                                                         receiver,
   1115                                                         length,
   1116                                                         elements);
   1117   return MarkAsCall(DefineFixed(result, v0), instr, CAN_DEOPTIMIZE_EAGERLY);
   1118 }
   1119 
   1120 
   1121 LInstruction* LChunkBuilder::DoPushArgument(HPushArgument* instr) {
   1122   ++argument_count_;
   1123   LOperand* argument = Use(instr->argument());
   1124   return new(zone()) LPushArgument(argument);
   1125 }
   1126 
   1127 
   1128 LInstruction* LChunkBuilder::DoThisFunction(HThisFunction* instr) {
   1129   return instr->HasNoUses()
   1130       ? NULL
   1131       : DefineAsRegister(new(zone()) LThisFunction);
   1132 }
   1133 
   1134 
   1135 LInstruction* LChunkBuilder::DoContext(HContext* instr) {
   1136   return instr->HasNoUses() ? NULL : DefineAsRegister(new(zone()) LContext);
   1137 }
   1138 
   1139 
   1140 LInstruction* LChunkBuilder::DoOuterContext(HOuterContext* instr) {
   1141   LOperand* context = UseRegisterAtStart(instr->value());
   1142   return DefineAsRegister(new(zone()) LOuterContext(context));
   1143 }
   1144 
   1145 
   1146 LInstruction* LChunkBuilder::DoDeclareGlobals(HDeclareGlobals* instr) {
   1147   return MarkAsCall(new(zone()) LDeclareGlobals, instr);
   1148 }
   1149 
   1150 
   1151 LInstruction* LChunkBuilder::DoGlobalObject(HGlobalObject* instr) {
   1152   LOperand* context = UseRegisterAtStart(instr->value());
   1153   return DefineAsRegister(new(zone()) LGlobalObject(context));
   1154 }
   1155 
   1156 
   1157 LInstruction* LChunkBuilder::DoGlobalReceiver(HGlobalReceiver* instr) {
   1158   LOperand* global_object = UseRegisterAtStart(instr->value());
   1159   return DefineAsRegister(new(zone()) LGlobalReceiver(global_object));
   1160 }
   1161 
   1162 
   1163 LInstruction* LChunkBuilder::DoCallConstantFunction(
   1164     HCallConstantFunction* instr) {
   1165   argument_count_ -= instr->argument_count();
   1166   return MarkAsCall(DefineFixed(new(zone()) LCallConstantFunction, v0), instr);
   1167 }
   1168 
   1169 
   1170 LInstruction* LChunkBuilder::DoInvokeFunction(HInvokeFunction* instr) {
   1171   LOperand* function = UseFixed(instr->function(), a1);
   1172   argument_count_ -= instr->argument_count();
   1173   LInvokeFunction* result = new(zone()) LInvokeFunction(function);
   1174   return MarkAsCall(DefineFixed(result, v0), instr, CANNOT_DEOPTIMIZE_EAGERLY);
   1175 }
   1176 
   1177 
   1178 LInstruction* LChunkBuilder::DoUnaryMathOperation(HUnaryMathOperation* instr) {
   1179   BuiltinFunctionId op = instr->op();
   1180   if (op == kMathLog || op == kMathSin || op == kMathCos || op == kMathTan) {
   1181     LOperand* input = UseFixedDouble(instr->value(), f4);
   1182     LUnaryMathOperation* result = new(zone()) LUnaryMathOperation(input, NULL);
   1183     return MarkAsCall(DefineFixedDouble(result, f4), instr);
   1184   } else if (op == kMathPowHalf) {
   1185     // Input cannot be the same as the result.
   1186     // See lithium-codegen-mips.cc::DoMathPowHalf.
   1187     LOperand* input = UseFixedDouble(instr->value(), f8);
   1188     LOperand* temp = FixedTemp(f6);
   1189     LUnaryMathOperation* result = new(zone()) LUnaryMathOperation(input, temp);
   1190     return DefineFixedDouble(result, f4);
   1191   } else {
   1192     LOperand* input = UseRegisterAtStart(instr->value());
   1193     LOperand* temp = (op == kMathFloor) ? TempRegister() : NULL;
   1194     LUnaryMathOperation* result = new(zone()) LUnaryMathOperation(input, temp);
   1195     switch (op) {
   1196       case kMathAbs:
   1197         return AssignEnvironment(AssignPointerMap(DefineAsRegister(result)));
   1198       case kMathFloor:
   1199         return AssignEnvironment(AssignPointerMap(DefineAsRegister(result)));
   1200       case kMathSqrt:
   1201         return DefineAsRegister(result);
   1202       case kMathRound:
   1203         return AssignEnvironment(DefineAsRegister(result));
   1204       default:
   1205         UNREACHABLE();
   1206         return NULL;
   1207     }
   1208   }
   1209 }
   1210 
   1211 
   1212 LInstruction* LChunkBuilder::DoCallKeyed(HCallKeyed* instr) {
   1213   ASSERT(instr->key()->representation().IsTagged());
   1214   argument_count_ -= instr->argument_count();
   1215   LOperand* key = UseFixed(instr->key(), a2);
   1216   return MarkAsCall(DefineFixed(new(zone()) LCallKeyed(key), v0), instr);
   1217 }
   1218 
   1219 
   1220 LInstruction* LChunkBuilder::DoCallNamed(HCallNamed* instr) {
   1221   argument_count_ -= instr->argument_count();
   1222   return MarkAsCall(DefineFixed(new(zone()) LCallNamed, v0), instr);
   1223 }
   1224 
   1225 
   1226 LInstruction* LChunkBuilder::DoCallGlobal(HCallGlobal* instr) {
   1227   argument_count_ -= instr->argument_count();
   1228   return MarkAsCall(DefineFixed(new(zone()) LCallGlobal, v0), instr);
   1229 }
   1230 
   1231 
   1232 LInstruction* LChunkBuilder::DoCallKnownGlobal(HCallKnownGlobal* instr) {
   1233   argument_count_ -= instr->argument_count();
   1234   return MarkAsCall(DefineFixed(new(zone()) LCallKnownGlobal, v0), instr);
   1235 }
   1236 
   1237 
   1238 LInstruction* LChunkBuilder::DoCallNew(HCallNew* instr) {
   1239   LOperand* constructor = UseFixed(instr->constructor(), a1);
   1240   argument_count_ -= instr->argument_count();
   1241   LCallNew* result = new(zone()) LCallNew(constructor);
   1242   return MarkAsCall(DefineFixed(result, v0), instr);
   1243 }
   1244 
   1245 
   1246 LInstruction* LChunkBuilder::DoCallFunction(HCallFunction* instr) {
   1247   LOperand* function = UseFixed(instr->function(), a1);
   1248   argument_count_ -= instr->argument_count();
   1249   return MarkAsCall(DefineFixed(new(zone()) LCallFunction(function), v0),
   1250                     instr);
   1251 }
   1252 
   1253 
   1254 LInstruction* LChunkBuilder::DoCallRuntime(HCallRuntime* instr) {
   1255   argument_count_ -= instr->argument_count();
   1256   return MarkAsCall(DefineFixed(new(zone()) LCallRuntime, v0), instr);
   1257 }
   1258 
   1259 
   1260 LInstruction* LChunkBuilder::DoShr(HShr* instr) {
   1261   return DoShift(Token::SHR, instr);
   1262 }
   1263 
   1264 
   1265 LInstruction* LChunkBuilder::DoSar(HSar* instr) {
   1266   return DoShift(Token::SAR, instr);
   1267 }
   1268 
   1269 
   1270 LInstruction* LChunkBuilder::DoShl(HShl* instr) {
   1271   return DoShift(Token::SHL, instr);
   1272 }
   1273 
   1274 
   1275 LInstruction* LChunkBuilder::DoBitwise(HBitwise* instr) {
   1276   if (instr->representation().IsInteger32()) {
   1277     ASSERT(instr->left()->representation().IsInteger32());
   1278     ASSERT(instr->right()->representation().IsInteger32());
   1279 
   1280     LOperand* left = UseRegisterAtStart(instr->LeastConstantOperand());
   1281     LOperand* right = UseOrConstantAtStart(instr->MostConstantOperand());
   1282     return DefineAsRegister(new(zone()) LBitI(left, right));
   1283   } else {
   1284     ASSERT(instr->representation().IsTagged());
   1285     ASSERT(instr->left()->representation().IsTagged());
   1286     ASSERT(instr->right()->representation().IsTagged());
   1287 
   1288     LOperand* left = UseFixed(instr->left(), a1);
   1289     LOperand* right = UseFixed(instr->right(), a0);
   1290     LArithmeticT* result = new(zone()) LArithmeticT(instr->op(), left, right);
   1291     return MarkAsCall(DefineFixed(result, v0), instr);
   1292   }
   1293 }
   1294 
   1295 
   1296 LInstruction* LChunkBuilder::DoBitNot(HBitNot* instr) {
   1297   ASSERT(instr->value()->representation().IsInteger32());
   1298   ASSERT(instr->representation().IsInteger32());
   1299   LOperand* value = UseRegisterAtStart(instr->value());
   1300   return DefineAsRegister(new(zone()) LBitNotI(value));
   1301 }
   1302 
   1303 
   1304 LInstruction* LChunkBuilder::DoDiv(HDiv* instr) {
   1305   if (instr->representation().IsDouble()) {
   1306     return DoArithmeticD(Token::DIV, instr);
   1307   } else if (instr->representation().IsInteger32()) {
   1308     // TODO(1042) The fixed register allocation
   1309     // is needed because we call TypeRecordingBinaryOpStub from
   1310     // the generated code, which requires registers a0
   1311     // and a1 to be used. We should remove that
   1312     // when we provide a native implementation.
   1313     LOperand* dividend = UseFixed(instr->left(), a0);
   1314     LOperand* divisor = UseFixed(instr->right(), a1);
   1315     return AssignEnvironment(AssignPointerMap(
   1316              DefineFixed(new(zone()) LDivI(dividend, divisor), v0)));
   1317   } else {
   1318     return DoArithmeticT(Token::DIV, instr);
   1319   }
   1320 }
   1321 
   1322 
   1323 LInstruction* LChunkBuilder::DoMod(HMod* instr) {
   1324   if (instr->representation().IsInteger32()) {
   1325     ASSERT(instr->left()->representation().IsInteger32());
   1326     ASSERT(instr->right()->representation().IsInteger32());
   1327 
   1328     LModI* mod;
   1329     if (instr->HasPowerOf2Divisor()) {
   1330       ASSERT(!instr->CheckFlag(HValue::kCanBeDivByZero));
   1331       LOperand* value = UseRegisterAtStart(instr->left());
   1332       mod = new(zone()) LModI(value, UseOrConstant(instr->right()));
   1333     } else {
   1334       LOperand* dividend = UseRegister(instr->left());
   1335       LOperand* divisor = UseRegister(instr->right());
   1336       mod = new(zone()) LModI(dividend,
   1337                               divisor,
   1338                               TempRegister(),
   1339                               FixedTemp(f20),
   1340                               FixedTemp(f22));
   1341     }
   1342 
   1343     if (instr->CheckFlag(HValue::kBailoutOnMinusZero) ||
   1344         instr->CheckFlag(HValue::kCanBeDivByZero)) {
   1345       return AssignEnvironment(DefineAsRegister(mod));
   1346     } else {
   1347       return DefineAsRegister(mod);
   1348     }
   1349   } else if (instr->representation().IsTagged()) {
   1350     return DoArithmeticT(Token::MOD, instr);
   1351   } else {
   1352     ASSERT(instr->representation().IsDouble());
   1353     // We call a C function for double modulo. It can't trigger a GC.
   1354     // We need to use fixed result register for the call.
   1355     // TODO(fschneider): Allow any register as input registers.
   1356     LOperand* left = UseFixedDouble(instr->left(), f2);
   1357     LOperand* right = UseFixedDouble(instr->right(), f4);
   1358     LArithmeticD* result = new(zone()) LArithmeticD(Token::MOD, left, right);
   1359     return MarkAsCall(DefineFixedDouble(result, f2), instr);
   1360   }
   1361 }
   1362 
   1363 
   1364 LInstruction* LChunkBuilder::DoMul(HMul* instr) {
   1365   if (instr->representation().IsInteger32()) {
   1366     ASSERT(instr->left()->representation().IsInteger32());
   1367     ASSERT(instr->right()->representation().IsInteger32());
   1368     LOperand* left;
   1369     LOperand* right = UseOrConstant(instr->MostConstantOperand());
   1370     LOperand* temp = NULL;
   1371     if (instr->CheckFlag(HValue::kBailoutOnMinusZero) &&
   1372         (instr->CheckFlag(HValue::kCanOverflow) ||
   1373         !right->IsConstantOperand())) {
   1374       left = UseRegister(instr->LeastConstantOperand());
   1375       temp = TempRegister();
   1376     } else {
   1377       left = UseRegisterAtStart(instr->LeastConstantOperand());
   1378     }
   1379     LMulI* mul = new(zone()) LMulI(left, right, temp);
   1380     if (instr->CheckFlag(HValue::kCanOverflow) ||
   1381         instr->CheckFlag(HValue::kBailoutOnMinusZero)) {
   1382       AssignEnvironment(mul);
   1383     }
   1384     return DefineAsRegister(mul);
   1385 
   1386   } else if (instr->representation().IsDouble()) {
   1387     return DoArithmeticD(Token::MUL, instr);
   1388 
   1389   } else {
   1390     return DoArithmeticT(Token::MUL, instr);
   1391   }
   1392 }
   1393 
   1394 
   1395 LInstruction* LChunkBuilder::DoSub(HSub* instr) {
   1396   if (instr->representation().IsInteger32()) {
   1397     ASSERT(instr->left()->representation().IsInteger32());
   1398     ASSERT(instr->right()->representation().IsInteger32());
   1399     LOperand* left = UseRegisterAtStart(instr->left());
   1400     LOperand* right = UseOrConstantAtStart(instr->right());
   1401     LSubI* sub = new(zone()) LSubI(left, right);
   1402     LInstruction* result = DefineAsRegister(sub);
   1403     if (instr->CheckFlag(HValue::kCanOverflow)) {
   1404       result = AssignEnvironment(result);
   1405     }
   1406     return result;
   1407   } else if (instr->representation().IsDouble()) {
   1408     return DoArithmeticD(Token::SUB, instr);
   1409   } else {
   1410     return DoArithmeticT(Token::SUB, instr);
   1411   }
   1412 }
   1413 
   1414 
   1415 LInstruction* LChunkBuilder::DoAdd(HAdd* instr) {
   1416   if (instr->representation().IsInteger32()) {
   1417     ASSERT(instr->left()->representation().IsInteger32());
   1418     ASSERT(instr->right()->representation().IsInteger32());
   1419     LOperand* left = UseRegisterAtStart(instr->LeastConstantOperand());
   1420     LOperand* right = UseOrConstantAtStart(instr->MostConstantOperand());
   1421     LAddI* add = new(zone()) LAddI(left, right);
   1422     LInstruction* result = DefineAsRegister(add);
   1423     if (instr->CheckFlag(HValue::kCanOverflow)) {
   1424       result = AssignEnvironment(result);
   1425     }
   1426     return result;
   1427   } else if (instr->representation().IsDouble()) {
   1428     return DoArithmeticD(Token::ADD, instr);
   1429   } else {
   1430     ASSERT(instr->representation().IsTagged());
   1431     return DoArithmeticT(Token::ADD, instr);
   1432   }
   1433 }
   1434 
   1435 
   1436 LInstruction* LChunkBuilder::DoPower(HPower* instr) {
   1437   ASSERT(instr->representation().IsDouble());
   1438   // We call a C function for double power. It can't trigger a GC.
   1439   // We need to use fixed result register for the call.
   1440   Representation exponent_type = instr->right()->representation();
   1441   ASSERT(instr->left()->representation().IsDouble());
   1442   LOperand* left = UseFixedDouble(instr->left(), f2);
   1443   LOperand* right = exponent_type.IsDouble() ?
   1444       UseFixedDouble(instr->right(), f4) :
   1445       UseFixed(instr->right(), a2);
   1446   LPower* result = new(zone()) LPower(left, right);
   1447   return MarkAsCall(DefineFixedDouble(result, f0),
   1448                     instr,
   1449                     CAN_DEOPTIMIZE_EAGERLY);
   1450 }
   1451 
   1452 
   1453 LInstruction* LChunkBuilder::DoRandom(HRandom* instr) {
   1454   ASSERT(instr->representation().IsDouble());
   1455   ASSERT(instr->global_object()->representation().IsTagged());
   1456   LOperand* global_object = UseFixed(instr->global_object(), a0);
   1457   LRandom* result = new(zone()) LRandom(global_object);
   1458   return MarkAsCall(DefineFixedDouble(result, f0), instr);
   1459 }
   1460 
   1461 
   1462 LInstruction* LChunkBuilder::DoCompareGeneric(HCompareGeneric* instr) {
   1463   ASSERT(instr->left()->representation().IsTagged());
   1464   ASSERT(instr->right()->representation().IsTagged());
   1465   LOperand* left = UseFixed(instr->left(), a1);
   1466   LOperand* right = UseFixed(instr->right(), a0);
   1467   LCmpT* result = new(zone()) LCmpT(left, right);
   1468   return MarkAsCall(DefineFixed(result, v0), instr);
   1469 }
   1470 
   1471 
   1472 LInstruction* LChunkBuilder::DoCompareIDAndBranch(
   1473     HCompareIDAndBranch* instr) {
   1474   Representation r = instr->GetInputRepresentation();
   1475   if (r.IsInteger32()) {
   1476     ASSERT(instr->left()->representation().IsInteger32());
   1477     ASSERT(instr->right()->representation().IsInteger32());
   1478     LOperand* left = UseRegisterOrConstantAtStart(instr->left());
   1479     LOperand* right = UseRegisterOrConstantAtStart(instr->right());
   1480     return new(zone()) LCmpIDAndBranch(left, right);
   1481   } else {
   1482     ASSERT(r.IsDouble());
   1483     ASSERT(instr->left()->representation().IsDouble());
   1484     ASSERT(instr->right()->representation().IsDouble());
   1485     LOperand* left = UseRegisterAtStart(instr->left());
   1486     LOperand* right = UseRegisterAtStart(instr->right());
   1487     return new(zone()) LCmpIDAndBranch(left, right);
   1488   }
   1489 }
   1490 
   1491 
   1492 LInstruction* LChunkBuilder::DoCompareObjectEqAndBranch(
   1493     HCompareObjectEqAndBranch* instr) {
   1494   LOperand* left = UseRegisterAtStart(instr->left());
   1495   LOperand* right = UseRegisterAtStart(instr->right());
   1496   return new(zone()) LCmpObjectEqAndBranch(left, right);
   1497 }
   1498 
   1499 
   1500 LInstruction* LChunkBuilder::DoCompareConstantEqAndBranch(
   1501     HCompareConstantEqAndBranch* instr) {
   1502   return new(zone()) LCmpConstantEqAndBranch(
   1503       UseRegisterAtStart(instr->value()));
   1504 }
   1505 
   1506 
   1507 LInstruction* LChunkBuilder::DoIsNilAndBranch(HIsNilAndBranch* instr) {
   1508   ASSERT(instr->value()->representation().IsTagged());
   1509   return new(zone()) LIsNilAndBranch(UseRegisterAtStart(instr->value()));
   1510 }
   1511 
   1512 
   1513 LInstruction* LChunkBuilder::DoIsObjectAndBranch(HIsObjectAndBranch* instr) {
   1514   ASSERT(instr->value()->representation().IsTagged());
   1515   LOperand* temp = TempRegister();
   1516   return new(zone()) LIsObjectAndBranch(UseRegisterAtStart(instr->value()),
   1517                                         temp);
   1518 }
   1519 
   1520 
   1521 LInstruction* LChunkBuilder::DoIsStringAndBranch(HIsStringAndBranch* instr) {
   1522   ASSERT(instr->value()->representation().IsTagged());
   1523   LOperand* temp = TempRegister();
   1524   return new(zone()) LIsStringAndBranch(UseRegisterAtStart(instr->value()),
   1525                                         temp);
   1526 }
   1527 
   1528 
   1529 LInstruction* LChunkBuilder::DoIsSmiAndBranch(HIsSmiAndBranch* instr) {
   1530   ASSERT(instr->value()->representation().IsTagged());
   1531   return new(zone()) LIsSmiAndBranch(Use(instr->value()));
   1532 }
   1533 
   1534 
   1535 LInstruction* LChunkBuilder::DoIsUndetectableAndBranch(
   1536     HIsUndetectableAndBranch* instr) {
   1537   ASSERT(instr->value()->representation().IsTagged());
   1538   return new(zone()) LIsUndetectableAndBranch(
   1539       UseRegisterAtStart(instr->value()), TempRegister());
   1540 }
   1541 
   1542 
   1543 LInstruction* LChunkBuilder::DoStringCompareAndBranch(
   1544     HStringCompareAndBranch* instr) {
   1545   ASSERT(instr->left()->representation().IsTagged());
   1546   ASSERT(instr->right()->representation().IsTagged());
   1547   LOperand* left = UseFixed(instr->left(), a1);
   1548   LOperand* right = UseFixed(instr->right(), a0);
   1549   LStringCompareAndBranch* result =
   1550       new(zone()) LStringCompareAndBranch(left, right);
   1551   return MarkAsCall(result, instr);
   1552 }
   1553 
   1554 
   1555 LInstruction* LChunkBuilder::DoHasInstanceTypeAndBranch(
   1556     HHasInstanceTypeAndBranch* instr) {
   1557   ASSERT(instr->value()->representation().IsTagged());
   1558   LOperand* value = UseRegisterAtStart(instr->value());
   1559   return new(zone()) LHasInstanceTypeAndBranch(value);
   1560 }
   1561 
   1562 
   1563 LInstruction* LChunkBuilder::DoGetCachedArrayIndex(
   1564     HGetCachedArrayIndex* instr)  {
   1565   ASSERT(instr->value()->representation().IsTagged());
   1566   LOperand* value = UseRegisterAtStart(instr->value());
   1567 
   1568   return DefineAsRegister(new(zone()) LGetCachedArrayIndex(value));
   1569 }
   1570 
   1571 
   1572 LInstruction* LChunkBuilder::DoHasCachedArrayIndexAndBranch(
   1573     HHasCachedArrayIndexAndBranch* instr) {
   1574   ASSERT(instr->value()->representation().IsTagged());
   1575   return new(zone()) LHasCachedArrayIndexAndBranch(
   1576       UseRegisterAtStart(instr->value()));
   1577 }
   1578 
   1579 
   1580 LInstruction* LChunkBuilder::DoClassOfTestAndBranch(
   1581     HClassOfTestAndBranch* instr) {
   1582   ASSERT(instr->value()->representation().IsTagged());
   1583   return new(zone()) LClassOfTestAndBranch(UseRegister(instr->value()),
   1584                                            TempRegister());
   1585 }
   1586 
   1587 
   1588 LInstruction* LChunkBuilder::DoJSArrayLength(HJSArrayLength* instr) {
   1589   LOperand* array = UseRegisterAtStart(instr->value());
   1590   return DefineAsRegister(new(zone()) LJSArrayLength(array));
   1591 }
   1592 
   1593 
   1594 LInstruction* LChunkBuilder::DoFixedArrayBaseLength(
   1595     HFixedArrayBaseLength* instr) {
   1596   LOperand* array = UseRegisterAtStart(instr->value());
   1597   return DefineAsRegister(new(zone()) LFixedArrayBaseLength(array));
   1598 }
   1599 
   1600 
   1601 LInstruction* LChunkBuilder::DoElementsKind(HElementsKind* instr) {
   1602   LOperand* object = UseRegisterAtStart(instr->value());
   1603   return DefineAsRegister(new(zone()) LElementsKind(object));
   1604 }
   1605 
   1606 
   1607 LInstruction* LChunkBuilder::DoValueOf(HValueOf* instr) {
   1608   LOperand* object = UseRegister(instr->value());
   1609   LValueOf* result = new(zone()) LValueOf(object, TempRegister());
   1610   return DefineAsRegister(result);
   1611 }
   1612 
   1613 
   1614 LInstruction* LChunkBuilder::DoDateField(HDateField* instr) {
   1615   LOperand* object = UseFixed(instr->value(), a0);
   1616   LDateField* result = new LDateField(object, FixedTemp(a1), instr->index());
   1617   return MarkAsCall(DefineFixed(result, v0), instr);
   1618 }
   1619 
   1620 
   1621 LInstruction* LChunkBuilder::DoBoundsCheck(HBoundsCheck* instr) {
   1622   LOperand* value = UseRegisterAtStart(instr->index());
   1623   LOperand* length = UseRegister(instr->length());
   1624   return AssignEnvironment(new(zone()) LBoundsCheck(value, length));
   1625 }
   1626 
   1627 
   1628 LInstruction* LChunkBuilder::DoAbnormalExit(HAbnormalExit* instr) {
   1629   // The control instruction marking the end of a block that completed
   1630   // abruptly (e.g., threw an exception).  There is nothing specific to do.
   1631   return NULL;
   1632 }
   1633 
   1634 
   1635 LInstruction* LChunkBuilder::DoThrow(HThrow* instr) {
   1636   LOperand* value = UseFixed(instr->value(), a0);
   1637   return MarkAsCall(new(zone()) LThrow(value), instr);
   1638 }
   1639 
   1640 
   1641 LInstruction* LChunkBuilder::DoUseConst(HUseConst* instr) {
   1642   return NULL;
   1643 }
   1644 
   1645 
   1646 LInstruction* LChunkBuilder::DoForceRepresentation(HForceRepresentation* bad) {
   1647   // All HForceRepresentation instructions should be eliminated in the
   1648   // representation change phase of Hydrogen.
   1649   UNREACHABLE();
   1650   return NULL;
   1651 }
   1652 
   1653 
   1654 LInstruction* LChunkBuilder::DoChange(HChange* instr) {
   1655   Representation from = instr->from();
   1656   Representation to = instr->to();
   1657   if (from.IsTagged()) {
   1658     if (to.IsDouble()) {
   1659       LOperand* value = UseRegister(instr->value());
   1660       LNumberUntagD* res = new(zone()) LNumberUntagD(value);
   1661       return AssignEnvironment(DefineAsRegister(res));
   1662     } else {
   1663       ASSERT(to.IsInteger32());
   1664       LOperand* value = UseRegisterAtStart(instr->value());
   1665       bool needs_check = !instr->value()->type().IsSmi();
   1666       LInstruction* res = NULL;
   1667       if (!needs_check) {
   1668         res = DefineAsRegister(new(zone()) LSmiUntag(value, needs_check));
   1669       } else {
   1670         LOperand* temp1 = TempRegister();
   1671         LOperand* temp2 = instr->CanTruncateToInt32() ? TempRegister()
   1672                                                       : NULL;
   1673         LOperand* temp3 = instr->CanTruncateToInt32() ? FixedTemp(f22)
   1674                                                       : NULL;
   1675         res = DefineSameAsFirst(new(zone()) LTaggedToI(value,
   1676                                                        temp1,
   1677                                                        temp2,
   1678                                                        temp3));
   1679         res = AssignEnvironment(res);
   1680       }
   1681       return res;
   1682     }
   1683   } else if (from.IsDouble()) {
   1684     if (to.IsTagged()) {
   1685       LOperand* value = UseRegister(instr->value());
   1686       LOperand* temp1 = TempRegister();
   1687       LOperand* temp2 = TempRegister();
   1688 
   1689       // Make sure that the temp and result_temp registers are
   1690       // different.
   1691       LUnallocated* result_temp = TempRegister();
   1692       LNumberTagD* result = new(zone()) LNumberTagD(value, temp1, temp2);
   1693       Define(result, result_temp);
   1694       return AssignPointerMap(result);
   1695     } else {
   1696       ASSERT(to.IsInteger32());
   1697       LOperand* value = UseRegister(instr->value());
   1698       LOperand* temp1 = TempRegister();
   1699       LOperand* temp2 = instr->CanTruncateToInt32() ? TempRegister() : NULL;
   1700       LDoubleToI* res = new(zone()) LDoubleToI(value, temp1, temp2);
   1701       return AssignEnvironment(DefineAsRegister(res));
   1702     }
   1703   } else if (from.IsInteger32()) {
   1704     if (to.IsTagged()) {
   1705       HValue* val = instr->value();
   1706       LOperand* value = UseRegisterAtStart(val);
   1707       if (val->HasRange() && val->range()->IsInSmiRange()) {
   1708         return DefineAsRegister(new(zone()) LSmiTag(value));
   1709       } else {
   1710         LNumberTagI* result = new(zone()) LNumberTagI(value);
   1711         return AssignEnvironment(AssignPointerMap(DefineAsRegister(result)));
   1712       }
   1713     } else {
   1714       ASSERT(to.IsDouble());
   1715       LOperand* value = Use(instr->value());
   1716       return DefineAsRegister(new(zone()) LInteger32ToDouble(value));
   1717     }
   1718   }
   1719   UNREACHABLE();
   1720   return NULL;
   1721 }
   1722 
   1723 
   1724 LInstruction* LChunkBuilder::DoCheckNonSmi(HCheckNonSmi* instr) {
   1725   LOperand* value = UseRegisterAtStart(instr->value());
   1726   return AssignEnvironment(new(zone()) LCheckNonSmi(value));
   1727 }
   1728 
   1729 
   1730 LInstruction* LChunkBuilder::DoCheckInstanceType(HCheckInstanceType* instr) {
   1731   LOperand* value = UseRegisterAtStart(instr->value());
   1732   LInstruction* result = new(zone()) LCheckInstanceType(value);
   1733   return AssignEnvironment(result);
   1734 }
   1735 
   1736 
   1737 LInstruction* LChunkBuilder::DoCheckPrototypeMaps(HCheckPrototypeMaps* instr) {
   1738   LOperand* temp1 = TempRegister();
   1739   LOperand* temp2 = TempRegister();
   1740   LInstruction* result = new(zone()) LCheckPrototypeMaps(temp1, temp2);
   1741   return AssignEnvironment(result);
   1742 }
   1743 
   1744 
   1745 LInstruction* LChunkBuilder::DoCheckSmi(HCheckSmi* instr) {
   1746   LOperand* value = UseRegisterAtStart(instr->value());
   1747   return AssignEnvironment(new(zone()) LCheckSmi(value));
   1748 }
   1749 
   1750 
   1751 LInstruction* LChunkBuilder::DoCheckFunction(HCheckFunction* instr) {
   1752   LOperand* value = UseRegisterAtStart(instr->value());
   1753   return AssignEnvironment(new(zone()) LCheckFunction(value));
   1754 }
   1755 
   1756 
   1757 LInstruction* LChunkBuilder::DoCheckMap(HCheckMap* instr) {
   1758   LOperand* value = UseRegisterAtStart(instr->value());
   1759   LInstruction* result = new(zone()) LCheckMap(value);
   1760   return AssignEnvironment(result);
   1761 }
   1762 
   1763 
   1764 LInstruction* LChunkBuilder::DoClampToUint8(HClampToUint8* instr) {
   1765   HValue* value = instr->value();
   1766   Representation input_rep = value->representation();
   1767   LOperand* reg = UseRegister(value);
   1768   if (input_rep.IsDouble()) {
   1769     // Revisit this decision, here and 8 lines below.
   1770     return DefineAsRegister(new(zone()) LClampDToUint8(reg, FixedTemp(f22)));
   1771   } else if (input_rep.IsInteger32()) {
   1772     return DefineAsRegister(new(zone()) LClampIToUint8(reg));
   1773   } else {
   1774     ASSERT(input_rep.IsTagged());
   1775     // Register allocator doesn't (yet) support allocation of double
   1776     // temps. Reserve f22 explicitly.
   1777     LClampTToUint8* result = new(zone()) LClampTToUint8(reg, FixedTemp(f22));
   1778     return AssignEnvironment(DefineAsRegister(result));
   1779   }
   1780 }
   1781 
   1782 
   1783 LInstruction* LChunkBuilder::DoReturn(HReturn* instr) {
   1784   return new(zone()) LReturn(UseFixed(instr->value(), v0));
   1785 }
   1786 
   1787 
   1788 LInstruction* LChunkBuilder::DoConstant(HConstant* instr) {
   1789   Representation r = instr->representation();
   1790   if (r.IsInteger32()) {
   1791     return DefineAsRegister(new(zone()) LConstantI);
   1792   } else if (r.IsDouble()) {
   1793     return DefineAsRegister(new(zone()) LConstantD);
   1794   } else if (r.IsTagged()) {
   1795     return DefineAsRegister(new(zone()) LConstantT);
   1796   } else {
   1797     UNREACHABLE();
   1798     return NULL;
   1799   }
   1800 }
   1801 
   1802 
   1803 LInstruction* LChunkBuilder::DoLoadGlobalCell(HLoadGlobalCell* instr) {
   1804   LLoadGlobalCell* result = new(zone()) LLoadGlobalCell;
   1805   return instr->RequiresHoleCheck()
   1806       ? AssignEnvironment(DefineAsRegister(result))
   1807       : DefineAsRegister(result);
   1808 }
   1809 
   1810 
   1811 LInstruction* LChunkBuilder::DoLoadGlobalGeneric(HLoadGlobalGeneric* instr) {
   1812   LOperand* global_object = UseFixed(instr->global_object(), a0);
   1813   LLoadGlobalGeneric* result = new(zone()) LLoadGlobalGeneric(global_object);
   1814   return MarkAsCall(DefineFixed(result, v0), instr);
   1815 }
   1816 
   1817 
   1818 LInstruction* LChunkBuilder::DoStoreGlobalCell(HStoreGlobalCell* instr) {
   1819   LOperand* value = UseRegister(instr->value());
   1820   // Use a temp to check the value in the cell in the case where we perform
   1821   // a hole check.
   1822   return instr->RequiresHoleCheck()
   1823       ? AssignEnvironment(new(zone()) LStoreGlobalCell(value, TempRegister()))
   1824       : new(zone()) LStoreGlobalCell(value, NULL);
   1825 }
   1826 
   1827 
   1828 LInstruction* LChunkBuilder::DoStoreGlobalGeneric(HStoreGlobalGeneric* instr) {
   1829   LOperand* global_object = UseFixed(instr->global_object(), a1);
   1830   LOperand* value = UseFixed(instr->value(), a0);
   1831   LStoreGlobalGeneric* result =
   1832       new(zone()) LStoreGlobalGeneric(global_object, value);
   1833   return MarkAsCall(result, instr);
   1834 }
   1835 
   1836 
   1837 LInstruction* LChunkBuilder::DoLoadContextSlot(HLoadContextSlot* instr) {
   1838   LOperand* context = UseRegisterAtStart(instr->value());
   1839   LInstruction* result =
   1840       DefineAsRegister(new(zone()) LLoadContextSlot(context));
   1841   return instr->RequiresHoleCheck() ? AssignEnvironment(result) : result;
   1842 }
   1843 
   1844 
   1845 LInstruction* LChunkBuilder::DoStoreContextSlot(HStoreContextSlot* instr) {
   1846   LOperand* context;
   1847   LOperand* value;
   1848   if (instr->NeedsWriteBarrier()) {
   1849     context = UseTempRegister(instr->context());
   1850     value = UseTempRegister(instr->value());
   1851   } else {
   1852     context = UseRegister(instr->context());
   1853     value = UseRegister(instr->value());
   1854   }
   1855   LInstruction* result = new(zone()) LStoreContextSlot(context, value);
   1856   return instr->RequiresHoleCheck() ? AssignEnvironment(result) : result;
   1857 }
   1858 
   1859 
   1860 LInstruction* LChunkBuilder::DoLoadNamedField(HLoadNamedField* instr) {
   1861   return DefineAsRegister(
   1862       new(zone()) LLoadNamedField(UseRegisterAtStart(instr->object())));
   1863 }
   1864 
   1865 
   1866 LInstruction* LChunkBuilder::DoLoadNamedFieldPolymorphic(
   1867     HLoadNamedFieldPolymorphic* instr) {
   1868   ASSERT(instr->representation().IsTagged());
   1869   if (instr->need_generic()) {
   1870     LOperand* obj = UseFixed(instr->object(), a0);
   1871     LLoadNamedFieldPolymorphic* result =
   1872         new(zone()) LLoadNamedFieldPolymorphic(obj);
   1873     return MarkAsCall(DefineFixed(result, v0), instr);
   1874   } else {
   1875     LOperand* obj = UseRegisterAtStart(instr->object());
   1876     LLoadNamedFieldPolymorphic* result =
   1877         new(zone()) LLoadNamedFieldPolymorphic(obj);
   1878     return AssignEnvironment(DefineAsRegister(result));
   1879   }
   1880 }
   1881 
   1882 
   1883 LInstruction* LChunkBuilder::DoLoadNamedGeneric(HLoadNamedGeneric* instr) {
   1884   LOperand* object = UseFixed(instr->object(), a0);
   1885   LInstruction* result = DefineFixed(new(zone()) LLoadNamedGeneric(object), v0);
   1886   return MarkAsCall(result, instr);
   1887 }
   1888 
   1889 
   1890 LInstruction* LChunkBuilder::DoLoadFunctionPrototype(
   1891     HLoadFunctionPrototype* instr) {
   1892   return AssignEnvironment(DefineAsRegister(
   1893       new(zone()) LLoadFunctionPrototype(UseRegister(instr->function()))));
   1894 }
   1895 
   1896 
   1897 LInstruction* LChunkBuilder::DoLoadElements(HLoadElements* instr) {
   1898   LOperand* input = UseRegisterAtStart(instr->value());
   1899   return DefineAsRegister(new(zone()) LLoadElements(input));
   1900 }
   1901 
   1902 
   1903 LInstruction* LChunkBuilder::DoLoadExternalArrayPointer(
   1904     HLoadExternalArrayPointer* instr) {
   1905   LOperand* input = UseRegisterAtStart(instr->value());
   1906   return DefineAsRegister(new(zone()) LLoadExternalArrayPointer(input));
   1907 }
   1908 
   1909 
   1910 LInstruction* LChunkBuilder::DoLoadKeyedFastElement(
   1911     HLoadKeyedFastElement* instr) {
   1912   ASSERT(instr->representation().IsTagged());
   1913   ASSERT(instr->key()->representation().IsInteger32());
   1914   LOperand* obj = UseRegisterAtStart(instr->object());
   1915   LOperand* key = UseRegisterAtStart(instr->key());
   1916   LLoadKeyedFastElement* result = new(zone()) LLoadKeyedFastElement(obj, key);
   1917   if (instr->RequiresHoleCheck()) AssignEnvironment(result);
   1918   return DefineAsRegister(result);
   1919 }
   1920 
   1921 
   1922 LInstruction* LChunkBuilder::DoLoadKeyedFastDoubleElement(
   1923     HLoadKeyedFastDoubleElement* instr) {
   1924   ASSERT(instr->representation().IsDouble());
   1925   ASSERT(instr->key()->representation().IsInteger32());
   1926   LOperand* elements = UseTempRegister(instr->elements());
   1927   LOperand* key = UseRegisterOrConstantAtStart(instr->key());
   1928   LLoadKeyedFastDoubleElement* result =
   1929       new(zone()) LLoadKeyedFastDoubleElement(elements, key);
   1930   return AssignEnvironment(DefineAsRegister(result));
   1931 }
   1932 
   1933 
   1934 LInstruction* LChunkBuilder::DoLoadKeyedSpecializedArrayElement(
   1935     HLoadKeyedSpecializedArrayElement* instr) {
   1936   ElementsKind elements_kind = instr->elements_kind();
   1937   Representation representation(instr->representation());
   1938   ASSERT(
   1939       (representation.IsInteger32() &&
   1940        (elements_kind != EXTERNAL_FLOAT_ELEMENTS) &&
   1941        (elements_kind != EXTERNAL_DOUBLE_ELEMENTS)) ||
   1942       (representation.IsDouble() &&
   1943        ((elements_kind == EXTERNAL_FLOAT_ELEMENTS) ||
   1944        (elements_kind == EXTERNAL_DOUBLE_ELEMENTS))));
   1945   ASSERT(instr->key()->representation().IsInteger32());
   1946   LOperand* external_pointer = UseRegister(instr->external_pointer());
   1947   LOperand* key = UseRegisterOrConstant(instr->key());
   1948   LLoadKeyedSpecializedArrayElement* result =
   1949       new(zone()) LLoadKeyedSpecializedArrayElement(external_pointer, key);
   1950   LInstruction* load_instr = DefineAsRegister(result);
   1951   // An unsigned int array load might overflow and cause a deopt, make sure it
   1952   // has an environment.
   1953   return (elements_kind == EXTERNAL_UNSIGNED_INT_ELEMENTS) ?
   1954       AssignEnvironment(load_instr) : load_instr;
   1955 }
   1956 
   1957 
   1958 LInstruction* LChunkBuilder::DoLoadKeyedGeneric(HLoadKeyedGeneric* instr) {
   1959   LOperand* object = UseFixed(instr->object(), a1);
   1960   LOperand* key = UseFixed(instr->key(), a0);
   1961 
   1962   LInstruction* result =
   1963       DefineFixed(new(zone()) LLoadKeyedGeneric(object, key), v0);
   1964   return MarkAsCall(result, instr);
   1965 }
   1966 
   1967 
   1968 LInstruction* LChunkBuilder::DoStoreKeyedFastElement(
   1969     HStoreKeyedFastElement* instr) {
   1970   bool needs_write_barrier = instr->NeedsWriteBarrier();
   1971   ASSERT(instr->value()->representation().IsTagged());
   1972   ASSERT(instr->object()->representation().IsTagged());
   1973   ASSERT(instr->key()->representation().IsInteger32());
   1974 
   1975   LOperand* obj = UseTempRegister(instr->object());
   1976   LOperand* val = needs_write_barrier
   1977       ? UseTempRegister(instr->value())
   1978       : UseRegisterAtStart(instr->value());
   1979   LOperand* key = needs_write_barrier
   1980       ? UseTempRegister(instr->key())
   1981       : UseRegisterOrConstantAtStart(instr->key());
   1982   return new(zone()) LStoreKeyedFastElement(obj, key, val);
   1983 }
   1984 
   1985 
   1986 LInstruction* LChunkBuilder::DoStoreKeyedFastDoubleElement(
   1987     HStoreKeyedFastDoubleElement* instr) {
   1988   ASSERT(instr->value()->representation().IsDouble());
   1989   ASSERT(instr->elements()->representation().IsTagged());
   1990   ASSERT(instr->key()->representation().IsInteger32());
   1991 
   1992   LOperand* elements = UseRegisterAtStart(instr->elements());
   1993   LOperand* val = UseTempRegister(instr->value());
   1994   LOperand* key = UseRegisterOrConstantAtStart(instr->key());
   1995 
   1996   return new(zone()) LStoreKeyedFastDoubleElement(elements, key, val);
   1997 }
   1998 
   1999 
   2000 LInstruction* LChunkBuilder::DoStoreKeyedSpecializedArrayElement(
   2001     HStoreKeyedSpecializedArrayElement* instr) {
   2002   Representation representation(instr->value()->representation());
   2003   ElementsKind elements_kind = instr->elements_kind();
   2004   ASSERT(
   2005       (representation.IsInteger32() &&
   2006        (elements_kind != EXTERNAL_FLOAT_ELEMENTS) &&
   2007        (elements_kind != EXTERNAL_DOUBLE_ELEMENTS)) ||
   2008       (representation.IsDouble() &&
   2009        ((elements_kind == EXTERNAL_FLOAT_ELEMENTS) ||
   2010        (elements_kind == EXTERNAL_DOUBLE_ELEMENTS))));
   2011   ASSERT(instr->external_pointer()->representation().IsExternal());
   2012   ASSERT(instr->key()->representation().IsInteger32());
   2013 
   2014   LOperand* external_pointer = UseRegister(instr->external_pointer());
   2015   bool val_is_temp_register =
   2016       elements_kind == EXTERNAL_PIXEL_ELEMENTS ||
   2017       elements_kind == EXTERNAL_FLOAT_ELEMENTS;
   2018   LOperand* val = val_is_temp_register
   2019       ? UseTempRegister(instr->value())
   2020       : UseRegister(instr->value());
   2021   LOperand* key = UseRegisterOrConstant(instr->key());
   2022 
   2023   return new(zone()) LStoreKeyedSpecializedArrayElement(external_pointer,
   2024                                                         key,
   2025                                                         val);
   2026 }
   2027 
   2028 
   2029 LInstruction* LChunkBuilder::DoStoreKeyedGeneric(HStoreKeyedGeneric* instr) {
   2030   LOperand* obj = UseFixed(instr->object(), a2);
   2031   LOperand* key = UseFixed(instr->key(), a1);
   2032   LOperand* val = UseFixed(instr->value(), a0);
   2033 
   2034   ASSERT(instr->object()->representation().IsTagged());
   2035   ASSERT(instr->key()->representation().IsTagged());
   2036   ASSERT(instr->value()->representation().IsTagged());
   2037 
   2038   return MarkAsCall(new(zone()) LStoreKeyedGeneric(obj, key, val), instr);
   2039 }
   2040 
   2041 
   2042 LInstruction* LChunkBuilder::DoTransitionElementsKind(
   2043     HTransitionElementsKind* instr) {
   2044   if (instr->original_map()->elements_kind() == FAST_SMI_ONLY_ELEMENTS &&
   2045       instr->transitioned_map()->elements_kind() == FAST_ELEMENTS) {
   2046     LOperand* object = UseRegister(instr->object());
   2047     LOperand* new_map_reg = TempRegister();
   2048     LTransitionElementsKind* result =
   2049         new(zone()) LTransitionElementsKind(object, new_map_reg, NULL);
   2050     return DefineSameAsFirst(result);
   2051   } else {
   2052     LOperand* object = UseFixed(instr->object(), a0);
   2053     LOperand* fixed_object_reg = FixedTemp(a2);
   2054     LOperand* new_map_reg = FixedTemp(a3);
   2055     LTransitionElementsKind* result =
   2056         new(zone()) LTransitionElementsKind(object,
   2057                                             new_map_reg,
   2058                                             fixed_object_reg);
   2059     return MarkAsCall(DefineFixed(result, v0), instr);
   2060   }
   2061 }
   2062 
   2063 
   2064 LInstruction* LChunkBuilder::DoStoreNamedField(HStoreNamedField* instr) {
   2065   bool needs_write_barrier = instr->NeedsWriteBarrier();
   2066 
   2067   LOperand* obj = needs_write_barrier
   2068       ? UseTempRegister(instr->object())
   2069       : UseRegisterAtStart(instr->object());
   2070 
   2071   LOperand* val = needs_write_barrier
   2072       ? UseTempRegister(instr->value())
   2073       : UseRegister(instr->value());
   2074 
   2075   return new(zone()) LStoreNamedField(obj, val);
   2076 }
   2077 
   2078 
   2079 LInstruction* LChunkBuilder::DoStoreNamedGeneric(HStoreNamedGeneric* instr) {
   2080   LOperand* obj = UseFixed(instr->object(), a1);
   2081   LOperand* val = UseFixed(instr->value(), a0);
   2082 
   2083   LInstruction* result = new(zone()) LStoreNamedGeneric(obj, val);
   2084   return MarkAsCall(result, instr);
   2085 }
   2086 
   2087 
   2088 LInstruction* LChunkBuilder::DoStringAdd(HStringAdd* instr) {
   2089   LOperand* left = UseRegisterAtStart(instr->left());
   2090   LOperand* right = UseRegisterAtStart(instr->right());
   2091   return MarkAsCall(DefineFixed(new(zone()) LStringAdd(left, right), v0),
   2092                     instr);
   2093 }
   2094 
   2095 
   2096 LInstruction* LChunkBuilder::DoStringCharCodeAt(HStringCharCodeAt* instr) {
   2097   LOperand* string = UseTempRegister(instr->string());
   2098   LOperand* index = UseTempRegister(instr->index());
   2099   LStringCharCodeAt* result = new(zone()) LStringCharCodeAt(string, index);
   2100   return AssignEnvironment(AssignPointerMap(DefineAsRegister(result)));
   2101 }
   2102 
   2103 
   2104 LInstruction* LChunkBuilder::DoStringCharFromCode(HStringCharFromCode* instr) {
   2105   LOperand* char_code = UseRegister(instr->value());
   2106   LStringCharFromCode* result = new(zone()) LStringCharFromCode(char_code);
   2107   return AssignPointerMap(DefineAsRegister(result));
   2108 }
   2109 
   2110 
   2111 LInstruction* LChunkBuilder::DoStringLength(HStringLength* instr) {
   2112   LOperand* string = UseRegisterAtStart(instr->value());
   2113   return DefineAsRegister(new(zone()) LStringLength(string));
   2114 }
   2115 
   2116 
   2117 LInstruction* LChunkBuilder::DoAllocateObject(HAllocateObject* instr) {
   2118   LAllocateObject* result = new(zone()) LAllocateObject(
   2119       TempRegister(), TempRegister());
   2120   return AssignPointerMap(DefineAsRegister(result));
   2121 }
   2122 
   2123 
   2124 LInstruction* LChunkBuilder::DoFastLiteral(HFastLiteral* instr) {
   2125   return MarkAsCall(DefineFixed(new(zone()) LFastLiteral, v0), instr);
   2126 }
   2127 
   2128 
   2129 LInstruction* LChunkBuilder::DoArrayLiteral(HArrayLiteral* instr) {
   2130   return MarkAsCall(DefineFixed(new(zone()) LArrayLiteral, v0), instr);
   2131 }
   2132 
   2133 
   2134 LInstruction* LChunkBuilder::DoObjectLiteral(HObjectLiteral* instr) {
   2135   return MarkAsCall(DefineFixed(new(zone()) LObjectLiteral, v0), instr);
   2136 }
   2137 
   2138 
   2139 LInstruction* LChunkBuilder::DoRegExpLiteral(HRegExpLiteral* instr) {
   2140   return MarkAsCall(DefineFixed(new(zone()) LRegExpLiteral, v0), instr);
   2141 }
   2142 
   2143 
   2144 LInstruction* LChunkBuilder::DoFunctionLiteral(HFunctionLiteral* instr) {
   2145   return MarkAsCall(DefineFixed(new(zone()) LFunctionLiteral, v0), instr);
   2146 }
   2147 
   2148 
   2149 LInstruction* LChunkBuilder::DoDeleteProperty(HDeleteProperty* instr) {
   2150   LOperand* object = UseFixed(instr->object(), a0);
   2151   LOperand* key = UseFixed(instr->key(), a1);
   2152   LDeleteProperty* result = new(zone()) LDeleteProperty(object, key);
   2153   return MarkAsCall(DefineFixed(result, v0), instr);
   2154 }
   2155 
   2156 
   2157 LInstruction* LChunkBuilder::DoOsrEntry(HOsrEntry* instr) {
   2158   allocator_->MarkAsOsrEntry();
   2159   current_block_->last_environment()->set_ast_id(instr->ast_id());
   2160   return AssignEnvironment(new(zone()) LOsrEntry);
   2161 }
   2162 
   2163 
   2164 LInstruction* LChunkBuilder::DoParameter(HParameter* instr) {
   2165   int spill_index = chunk()->GetParameterStackSlot(instr->index());
   2166   return DefineAsSpilled(new(zone()) LParameter, spill_index);
   2167 }
   2168 
   2169 
   2170 LInstruction* LChunkBuilder::DoUnknownOSRValue(HUnknownOSRValue* instr) {
   2171   int spill_index = chunk()->GetNextSpillIndex(false);  // Not double-width.
   2172   if (spill_index > LUnallocated::kMaxFixedIndex) {
   2173     Abort("Too many spill slots needed for OSR");
   2174     spill_index = 0;
   2175   }
   2176   return DefineAsSpilled(new(zone()) LUnknownOSRValue, spill_index);
   2177 }
   2178 
   2179 
   2180 LInstruction* LChunkBuilder::DoCallStub(HCallStub* instr) {
   2181   argument_count_ -= instr->argument_count();
   2182   return MarkAsCall(DefineFixed(new(zone()) LCallStub, v0), instr);
   2183 }
   2184 
   2185 
   2186 LInstruction* LChunkBuilder::DoArgumentsObject(HArgumentsObject* instr) {
   2187   // There are no real uses of the arguments object.
   2188   // arguments.length and element access are supported directly on
   2189   // stack arguments, and any real arguments object use causes a bailout.
   2190   // So this value is never used.
   2191   return NULL;
   2192 }
   2193 
   2194 
   2195 LInstruction* LChunkBuilder::DoAccessArgumentsAt(HAccessArgumentsAt* instr) {
   2196   LOperand* arguments = UseRegister(instr->arguments());
   2197   LOperand* length = UseTempRegister(instr->length());
   2198   LOperand* index = UseRegister(instr->index());
   2199   LAccessArgumentsAt* result =
   2200       new(zone()) LAccessArgumentsAt(arguments, length, index);
   2201   return AssignEnvironment(DefineAsRegister(result));
   2202 }
   2203 
   2204 
   2205 LInstruction* LChunkBuilder::DoToFastProperties(HToFastProperties* instr) {
   2206   LOperand* object = UseFixed(instr->value(), a0);
   2207   LToFastProperties* result = new(zone()) LToFastProperties(object);
   2208   return MarkAsCall(DefineFixed(result, v0), instr);
   2209 }
   2210 
   2211 
   2212 LInstruction* LChunkBuilder::DoTypeof(HTypeof* instr) {
   2213   LTypeof* result = new(zone()) LTypeof(UseFixed(instr->value(), a0));
   2214   return MarkAsCall(DefineFixed(result, v0), instr);
   2215 }
   2216 
   2217 
   2218 LInstruction* LChunkBuilder::DoTypeofIsAndBranch(HTypeofIsAndBranch* instr) {
   2219   return new(zone()) LTypeofIsAndBranch(UseTempRegister(instr->value()));
   2220 }
   2221 
   2222 
   2223 LInstruction* LChunkBuilder::DoIsConstructCallAndBranch(
   2224     HIsConstructCallAndBranch* instr) {
   2225   return new(zone()) LIsConstructCallAndBranch(TempRegister());
   2226 }
   2227 
   2228 
   2229 LInstruction* LChunkBuilder::DoSimulate(HSimulate* instr) {
   2230   HEnvironment* env = current_block_->last_environment();
   2231   ASSERT(env != NULL);
   2232 
   2233   env->set_ast_id(instr->ast_id());
   2234 
   2235   env->Drop(instr->pop_count());
   2236   for (int i = 0; i < instr->values()->length(); ++i) {
   2237     HValue* value = instr->values()->at(i);
   2238     if (instr->HasAssignedIndexAt(i)) {
   2239       env->Bind(instr->GetAssignedIndexAt(i), value);
   2240     } else {
   2241       env->Push(value);
   2242     }
   2243   }
   2244 
   2245   // If there is an instruction pending deoptimization environment create a
   2246   // lazy bailout instruction to capture the environment.
   2247   if (pending_deoptimization_ast_id_ == instr->ast_id()) {
   2248     LInstruction* result = new(zone()) LLazyBailout;
   2249     result = AssignEnvironment(result);
   2250     instruction_pending_deoptimization_environment_->
   2251         set_deoptimization_environment(result->environment());
   2252     ClearInstructionPendingDeoptimizationEnvironment();
   2253     return result;
   2254   }
   2255 
   2256   return NULL;
   2257 }
   2258 
   2259 
   2260 LInstruction* LChunkBuilder::DoStackCheck(HStackCheck* instr) {
   2261   if (instr->is_function_entry()) {
   2262     return MarkAsCall(new(zone()) LStackCheck, instr);
   2263   } else {
   2264     ASSERT(instr->is_backwards_branch());
   2265     return AssignEnvironment(AssignPointerMap(new(zone()) LStackCheck));
   2266   }
   2267 }
   2268 
   2269 
   2270 LInstruction* LChunkBuilder::DoEnterInlined(HEnterInlined* instr) {
   2271   HEnvironment* outer = current_block_->last_environment();
   2272   HConstant* undefined = graph()->GetConstantUndefined();
   2273   HEnvironment* inner = outer->CopyForInlining(instr->closure(),
   2274                                                instr->arguments_count(),
   2275                                                instr->function(),
   2276                                                undefined,
   2277                                                instr->call_kind(),
   2278                                                instr->is_construct());
   2279   if (instr->arguments() != NULL) {
   2280     inner->Bind(instr->arguments(), graph()->GetArgumentsObject());
   2281   }
   2282   current_block_->UpdateEnvironment(inner);
   2283   chunk_->AddInlinedClosure(instr->closure());
   2284   return NULL;
   2285 }
   2286 
   2287 
   2288 LInstruction* LChunkBuilder::DoLeaveInlined(HLeaveInlined* instr) {
   2289   HEnvironment* outer = current_block_->last_environment()->
   2290       DiscardInlined(false);
   2291   current_block_->UpdateEnvironment(outer);
   2292   return NULL;
   2293 }
   2294 
   2295 
   2296 LInstruction* LChunkBuilder::DoIn(HIn* instr) {
   2297   LOperand* key = UseRegisterAtStart(instr->key());
   2298   LOperand* object = UseRegisterAtStart(instr->object());
   2299   LIn* result = new(zone()) LIn(key, object);
   2300   return MarkAsCall(DefineFixed(result, v0), instr);
   2301 }
   2302 
   2303 
   2304 LInstruction* LChunkBuilder::DoForInPrepareMap(HForInPrepareMap* instr) {
   2305   LOperand* object = UseFixed(instr->enumerable(), a0);
   2306   LForInPrepareMap* result = new(zone()) LForInPrepareMap(object);
   2307   return MarkAsCall(DefineFixed(result, v0), instr, CAN_DEOPTIMIZE_EAGERLY);
   2308 }
   2309 
   2310 
   2311 LInstruction* LChunkBuilder::DoForInCacheArray(HForInCacheArray* instr) {
   2312   LOperand* map = UseRegister(instr->map());
   2313   return AssignEnvironment(DefineAsRegister(
   2314       new(zone()) LForInCacheArray(map)));
   2315 }
   2316 
   2317 
   2318 LInstruction* LChunkBuilder::DoCheckMapValue(HCheckMapValue* instr) {
   2319   LOperand* value = UseRegisterAtStart(instr->value());
   2320   LOperand* map = UseRegisterAtStart(instr->map());
   2321   return AssignEnvironment(new(zone()) LCheckMapValue(value, map));
   2322 }
   2323 
   2324 
   2325 LInstruction* LChunkBuilder::DoLoadFieldByIndex(HLoadFieldByIndex* instr) {
   2326   LOperand* object = UseRegister(instr->object());
   2327   LOperand* index = UseRegister(instr->index());
   2328   return DefineAsRegister(new(zone()) LLoadFieldByIndex(object, index));
   2329 }
   2330 
   2331 
   2332 } }  // namespace v8::internal
   2333