| OLD | NEW |
| 1 // Copyright 2011 the V8 project authors. All rights reserved. | 1 // Copyright 2011 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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| 219 __ lea(rdx, | 219 __ lea(rdx, |
| 220 Operand(rbp, StandardFrameConstants::kCallerSPOffset + offset)); | 220 Operand(rbp, StandardFrameConstants::kCallerSPOffset + offset)); |
| 221 __ push(rdx); | 221 __ push(rdx); |
| 222 __ Push(Smi::FromInt(scope()->num_parameters())); | 222 __ Push(Smi::FromInt(scope()->num_parameters())); |
| 223 // Arguments to ArgumentsAccessStub: | 223 // Arguments to ArgumentsAccessStub: |
| 224 // function, receiver address, parameter count. | 224 // function, receiver address, parameter count. |
| 225 // The stub will rewrite receiver and parameter count if the previous | 225 // The stub will rewrite receiver and parameter count if the previous |
| 226 // stack frame was an arguments adapter frame. | 226 // stack frame was an arguments adapter frame. |
| 227 ArgumentsAccessStub stub( | 227 ArgumentsAccessStub stub( |
| 228 is_strict_mode() ? ArgumentsAccessStub::NEW_STRICT | 228 is_strict_mode() ? ArgumentsAccessStub::NEW_STRICT |
| 229 : ArgumentsAccessStub::NEW_NON_STRICT); | 229 : ArgumentsAccessStub::NEW_NON_STRICT_SLOW); |
| 230 __ CallStub(&stub); | 230 __ CallStub(&stub); |
| 231 | 231 |
| 232 Variable* arguments_shadow = scope()->arguments_shadow(); | |
| 233 if (arguments_shadow != NULL) { | |
| 234 // Store new arguments object in both "arguments" and ".arguments" slots. | |
| 235 __ movq(rcx, rax); | |
| 236 Move(arguments_shadow->AsSlot(), rcx, rbx, rdx); | |
| 237 } | |
| 238 Move(arguments->AsSlot(), rax, rbx, rdx); | 232 Move(arguments->AsSlot(), rax, rbx, rdx); |
| 239 } | 233 } |
| 240 | 234 |
| 241 if (FLAG_trace) { | 235 if (FLAG_trace) { |
| 242 __ CallRuntime(Runtime::kTraceEnter, 0); | 236 __ CallRuntime(Runtime::kTraceEnter, 0); |
| 243 } | 237 } |
| 244 | 238 |
| 245 // Visit the declarations and body unless there is an illegal | 239 // Visit the declarations and body unless there is an illegal |
| 246 // redeclaration. | 240 // redeclaration. |
| 247 if (scope()->HasIllegalRedeclaration()) { | 241 if (scope()->HasIllegalRedeclaration()) { |
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| 370 | 364 |
| 371 void FullCodeGenerator::StackValueContext::Plug(Slot* slot) const { | 365 void FullCodeGenerator::StackValueContext::Plug(Slot* slot) const { |
| 372 MemOperand slot_operand = codegen()->EmitSlotSearch(slot, result_register()); | 366 MemOperand slot_operand = codegen()->EmitSlotSearch(slot, result_register()); |
| 373 __ push(slot_operand); | 367 __ push(slot_operand); |
| 374 } | 368 } |
| 375 | 369 |
| 376 | 370 |
| 377 void FullCodeGenerator::TestContext::Plug(Slot* slot) const { | 371 void FullCodeGenerator::TestContext::Plug(Slot* slot) const { |
| 378 codegen()->Move(result_register(), slot); | 372 codegen()->Move(result_register(), slot); |
| 379 codegen()->PrepareForBailoutBeforeSplit(TOS_REG, false, NULL, NULL); | 373 codegen()->PrepareForBailoutBeforeSplit(TOS_REG, false, NULL, NULL); |
| 380 codegen()->DoTest(this); | 374 codegen()->DoTest(true_label_, false_label_, fall_through_); |
| 381 } | 375 } |
| 382 | 376 |
| 383 | 377 |
| 384 void FullCodeGenerator::EffectContext::Plug(Heap::RootListIndex index) const { | 378 void FullCodeGenerator::EffectContext::Plug(Heap::RootListIndex index) const { |
| 385 } | 379 } |
| 386 | 380 |
| 387 | 381 |
| 388 void FullCodeGenerator::AccumulatorValueContext::Plug( | 382 void FullCodeGenerator::AccumulatorValueContext::Plug( |
| 389 Heap::RootListIndex index) const { | 383 Heap::RootListIndex index) const { |
| 390 __ LoadRoot(result_register(), index); | 384 __ LoadRoot(result_register(), index); |
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| 403 true_label_, | 397 true_label_, |
| 404 false_label_); | 398 false_label_); |
| 405 if (index == Heap::kUndefinedValueRootIndex || | 399 if (index == Heap::kUndefinedValueRootIndex || |
| 406 index == Heap::kNullValueRootIndex || | 400 index == Heap::kNullValueRootIndex || |
| 407 index == Heap::kFalseValueRootIndex) { | 401 index == Heap::kFalseValueRootIndex) { |
| 408 if (false_label_ != fall_through_) __ jmp(false_label_); | 402 if (false_label_ != fall_through_) __ jmp(false_label_); |
| 409 } else if (index == Heap::kTrueValueRootIndex) { | 403 } else if (index == Heap::kTrueValueRootIndex) { |
| 410 if (true_label_ != fall_through_) __ jmp(true_label_); | 404 if (true_label_ != fall_through_) __ jmp(true_label_); |
| 411 } else { | 405 } else { |
| 412 __ LoadRoot(result_register(), index); | 406 __ LoadRoot(result_register(), index); |
| 413 codegen()->DoTest(this); | 407 codegen()->DoTest(true_label_, false_label_, fall_through_); |
| 414 } | 408 } |
| 415 } | 409 } |
| 416 | 410 |
| 417 | 411 |
| 418 void FullCodeGenerator::EffectContext::Plug(Handle<Object> lit) const { | 412 void FullCodeGenerator::EffectContext::Plug(Handle<Object> lit) const { |
| 419 } | 413 } |
| 420 | 414 |
| 421 | 415 |
| 422 void FullCodeGenerator::AccumulatorValueContext::Plug( | 416 void FullCodeGenerator::AccumulatorValueContext::Plug( |
| 423 Handle<Object> lit) const { | 417 Handle<Object> lit) const { |
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| 448 } | 442 } |
| 449 } else if (lit->IsSmi()) { | 443 } else if (lit->IsSmi()) { |
| 450 if (Smi::cast(*lit)->value() == 0) { | 444 if (Smi::cast(*lit)->value() == 0) { |
| 451 if (false_label_ != fall_through_) __ jmp(false_label_); | 445 if (false_label_ != fall_through_) __ jmp(false_label_); |
| 452 } else { | 446 } else { |
| 453 if (true_label_ != fall_through_) __ jmp(true_label_); | 447 if (true_label_ != fall_through_) __ jmp(true_label_); |
| 454 } | 448 } |
| 455 } else { | 449 } else { |
| 456 // For simplicity we always test the accumulator register. | 450 // For simplicity we always test the accumulator register. |
| 457 __ Move(result_register(), lit); | 451 __ Move(result_register(), lit); |
| 458 codegen()->DoTest(this); | 452 codegen()->DoTest(true_label_, false_label_, fall_through_); |
| 459 } | 453 } |
| 460 } | 454 } |
| 461 | 455 |
| 462 | 456 |
| 463 void FullCodeGenerator::EffectContext::DropAndPlug(int count, | 457 void FullCodeGenerator::EffectContext::DropAndPlug(int count, |
| 464 Register reg) const { | 458 Register reg) const { |
| 465 ASSERT(count > 0); | 459 ASSERT(count > 0); |
| 466 __ Drop(count); | 460 __ Drop(count); |
| 467 } | 461 } |
| 468 | 462 |
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| 484 } | 478 } |
| 485 | 479 |
| 486 | 480 |
| 487 void FullCodeGenerator::TestContext::DropAndPlug(int count, | 481 void FullCodeGenerator::TestContext::DropAndPlug(int count, |
| 488 Register reg) const { | 482 Register reg) const { |
| 489 ASSERT(count > 0); | 483 ASSERT(count > 0); |
| 490 // For simplicity we always test the accumulator register. | 484 // For simplicity we always test the accumulator register. |
| 491 __ Drop(count); | 485 __ Drop(count); |
| 492 __ Move(result_register(), reg); | 486 __ Move(result_register(), reg); |
| 493 codegen()->PrepareForBailoutBeforeSplit(TOS_REG, false, NULL, NULL); | 487 codegen()->PrepareForBailoutBeforeSplit(TOS_REG, false, NULL, NULL); |
| 494 codegen()->DoTest(this); | 488 codegen()->DoTest(true_label_, false_label_, fall_through_); |
| 495 } | 489 } |
| 496 | 490 |
| 497 | 491 |
| 498 void FullCodeGenerator::EffectContext::Plug(Label* materialize_true, | 492 void FullCodeGenerator::EffectContext::Plug(Label* materialize_true, |
| 499 Label* materialize_false) const { | 493 Label* materialize_false) const { |
| 500 ASSERT(materialize_true == materialize_false); | 494 ASSERT(materialize_true == materialize_false); |
| 501 __ bind(materialize_true); | 495 __ bind(materialize_true); |
| 502 } | 496 } |
| 503 | 497 |
| 504 | 498 |
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| 559 true_label_, | 553 true_label_, |
| 560 false_label_); | 554 false_label_); |
| 561 if (flag) { | 555 if (flag) { |
| 562 if (true_label_ != fall_through_) __ jmp(true_label_); | 556 if (true_label_ != fall_through_) __ jmp(true_label_); |
| 563 } else { | 557 } else { |
| 564 if (false_label_ != fall_through_) __ jmp(false_label_); | 558 if (false_label_ != fall_through_) __ jmp(false_label_); |
| 565 } | 559 } |
| 566 } | 560 } |
| 567 | 561 |
| 568 | 562 |
| 569 void FullCodeGenerator::DoTest(Expression* condition, | 563 void FullCodeGenerator::DoTest(Label* if_true, |
| 570 Label* if_true, | |
| 571 Label* if_false, | 564 Label* if_false, |
| 572 Label* fall_through) { | 565 Label* fall_through) { |
| 573 ToBooleanStub stub; | 566 ToBooleanStub stub; |
| 574 __ push(result_register()); | 567 __ push(result_register()); |
| 575 __ CallStub(&stub); | 568 __ CallStub(&stub); |
| 576 __ testq(rax, rax); | 569 __ testq(rax, rax); |
| 577 // The stub returns nonzero for true. | 570 // The stub returns nonzero for true. |
| 578 Split(not_zero, if_true, if_false, fall_through); | 571 Split(not_zero, if_true, if_false, fall_through); |
| 579 } | 572 } |
| 580 | 573 |
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| 1214 EmitCallIC(ic, RelocInfo::CODE_TARGET, GetPropertyId(property)); | 1207 EmitCallIC(ic, RelocInfo::CODE_TARGET, GetPropertyId(property)); |
| 1215 __ jmp(done); | 1208 __ jmp(done); |
| 1216 } | 1209 } |
| 1217 } | 1210 } |
| 1218 } | 1211 } |
| 1219 } | 1212 } |
| 1220 } | 1213 } |
| 1221 | 1214 |
| 1222 | 1215 |
| 1223 void FullCodeGenerator::EmitVariableLoad(Variable* var) { | 1216 void FullCodeGenerator::EmitVariableLoad(Variable* var) { |
| 1224 // Four cases: non-this global variables, lookup slots, all other | 1217 // Three cases: non-this global variables, lookup slots, and all other |
| 1225 // types of slots, and parameters that rewrite to explicit property | 1218 // types of slots. |
| 1226 // accesses on the arguments object. | |
| 1227 Slot* slot = var->AsSlot(); | 1219 Slot* slot = var->AsSlot(); |
| 1228 Property* property = var->AsProperty(); | 1220 ASSERT((var->is_global() && !var->is_this()) == (slot == NULL)); |
| 1229 | 1221 |
| 1230 if (var->is_global() && !var->is_this()) { | 1222 if (slot == NULL) { |
| 1231 Comment cmnt(masm_, "Global variable"); | 1223 Comment cmnt(masm_, "Global variable"); |
| 1232 // Use inline caching. Variable name is passed in rcx and the global | 1224 // Use inline caching. Variable name is passed in rcx and the global |
| 1233 // object on the stack. | 1225 // object on the stack. |
| 1234 __ Move(rcx, var->name()); | 1226 __ Move(rcx, var->name()); |
| 1235 __ movq(rax, GlobalObjectOperand()); | 1227 __ movq(rax, GlobalObjectOperand()); |
| 1236 Handle<Code> ic = isolate()->builtins()->LoadIC_Initialize(); | 1228 Handle<Code> ic = isolate()->builtins()->LoadIC_Initialize(); |
| 1237 EmitCallIC(ic, RelocInfo::CODE_TARGET_CONTEXT, AstNode::kNoNumber); | 1229 EmitCallIC(ic, RelocInfo::CODE_TARGET_CONTEXT, AstNode::kNoNumber); |
| 1238 context()->Plug(rax); | 1230 context()->Plug(rax); |
| 1239 | 1231 |
| 1240 } else if (slot != NULL && slot->type() == Slot::LOOKUP) { | 1232 } else if (slot != NULL && slot->type() == Slot::LOOKUP) { |
| 1241 Label done, slow; | 1233 Label done, slow; |
| 1242 | 1234 |
| 1243 // Generate code for loading from variables potentially shadowed | 1235 // Generate code for loading from variables potentially shadowed |
| 1244 // by eval-introduced variables. | 1236 // by eval-introduced variables. |
| 1245 EmitDynamicLoadFromSlotFastCase(slot, NOT_INSIDE_TYPEOF, &slow, &done); | 1237 EmitDynamicLoadFromSlotFastCase(slot, NOT_INSIDE_TYPEOF, &slow, &done); |
| 1246 | 1238 |
| 1247 __ bind(&slow); | 1239 __ bind(&slow); |
| 1248 Comment cmnt(masm_, "Lookup slot"); | 1240 Comment cmnt(masm_, "Lookup slot"); |
| 1249 __ push(rsi); // Context. | 1241 __ push(rsi); // Context. |
| 1250 __ Push(var->name()); | 1242 __ Push(var->name()); |
| 1251 __ CallRuntime(Runtime::kLoadContextSlot, 2); | 1243 __ CallRuntime(Runtime::kLoadContextSlot, 2); |
| 1252 __ bind(&done); | 1244 __ bind(&done); |
| 1253 | 1245 |
| 1254 context()->Plug(rax); | 1246 context()->Plug(rax); |
| 1255 | 1247 |
| 1256 } else if (slot != NULL) { | 1248 } else { |
| 1257 Comment cmnt(masm_, (slot->type() == Slot::CONTEXT) | 1249 Comment cmnt(masm_, (slot->type() == Slot::CONTEXT) |
| 1258 ? "Context slot" | 1250 ? "Context slot" |
| 1259 : "Stack slot"); | 1251 : "Stack slot"); |
| 1260 if (var->mode() == Variable::CONST) { | 1252 if (var->mode() == Variable::CONST) { |
| 1261 // Constants may be the hole value if they have not been initialized. | 1253 // Constants may be the hole value if they have not been initialized. |
| 1262 // Unhole them. | 1254 // Unhole them. |
| 1263 Label done; | 1255 Label done; |
| 1264 MemOperand slot_operand = EmitSlotSearch(slot, rax); | 1256 MemOperand slot_operand = EmitSlotSearch(slot, rax); |
| 1265 __ movq(rax, slot_operand); | 1257 __ movq(rax, slot_operand); |
| 1266 __ CompareRoot(rax, Heap::kTheHoleValueRootIndex); | 1258 __ CompareRoot(rax, Heap::kTheHoleValueRootIndex); |
| 1267 __ j(not_equal, &done, Label::kNear); | 1259 __ j(not_equal, &done, Label::kNear); |
| 1268 __ LoadRoot(rax, Heap::kUndefinedValueRootIndex); | 1260 __ LoadRoot(rax, Heap::kUndefinedValueRootIndex); |
| 1269 __ bind(&done); | 1261 __ bind(&done); |
| 1270 context()->Plug(rax); | 1262 context()->Plug(rax); |
| 1271 } else { | 1263 } else { |
| 1272 context()->Plug(slot); | 1264 context()->Plug(slot); |
| 1273 } | 1265 } |
| 1274 | |
| 1275 } else { | |
| 1276 Comment cmnt(masm_, "Rewritten parameter"); | |
| 1277 ASSERT_NOT_NULL(property); | |
| 1278 // Rewritten parameter accesses are of the form "slot[literal]". | |
| 1279 | |
| 1280 // Assert that the object is in a slot. | |
| 1281 Variable* object_var = property->obj()->AsVariableProxy()->AsVariable(); | |
| 1282 ASSERT_NOT_NULL(object_var); | |
| 1283 Slot* object_slot = object_var->AsSlot(); | |
| 1284 ASSERT_NOT_NULL(object_slot); | |
| 1285 | |
| 1286 // Load the object. | |
| 1287 MemOperand object_loc = EmitSlotSearch(object_slot, rax); | |
| 1288 __ movq(rdx, object_loc); | |
| 1289 | |
| 1290 // Assert that the key is a smi. | |
| 1291 Literal* key_literal = property->key()->AsLiteral(); | |
| 1292 ASSERT_NOT_NULL(key_literal); | |
| 1293 ASSERT(key_literal->handle()->IsSmi()); | |
| 1294 | |
| 1295 // Load the key. | |
| 1296 __ Move(rax, key_literal->handle()); | |
| 1297 | |
| 1298 // Do a keyed property load. | |
| 1299 Handle<Code> ic = isolate()->builtins()->KeyedLoadIC_Initialize(); | |
| 1300 EmitCallIC(ic, RelocInfo::CODE_TARGET, GetPropertyId(property)); | |
| 1301 context()->Plug(rax); | |
| 1302 } | 1266 } |
| 1303 } | 1267 } |
| 1304 | 1268 |
| 1305 | 1269 |
| 1306 void FullCodeGenerator::VisitRegExpLiteral(RegExpLiteral* expr) { | 1270 void FullCodeGenerator::VisitRegExpLiteral(RegExpLiteral* expr) { |
| 1307 Comment cmnt(masm_, "[ RegExpLiteral"); | 1271 Comment cmnt(masm_, "[ RegExpLiteral"); |
| 1308 Label materialized; | 1272 Label materialized; |
| 1309 // Registers will be used as follows: | 1273 // Registers will be used as follows: |
| 1310 // rdi = JS function. | 1274 // rdi = JS function. |
| 1311 // rcx = literals array. | 1275 // rcx = literals array. |
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| 1524 void FullCodeGenerator::VisitAssignment(Assignment* expr) { | 1488 void FullCodeGenerator::VisitAssignment(Assignment* expr) { |
| 1525 Comment cmnt(masm_, "[ Assignment"); | 1489 Comment cmnt(masm_, "[ Assignment"); |
| 1526 // Invalid left-hand sides are rewritten to have a 'throw ReferenceError' | 1490 // Invalid left-hand sides are rewritten to have a 'throw ReferenceError' |
| 1527 // on the left-hand side. | 1491 // on the left-hand side. |
| 1528 if (!expr->target()->IsValidLeftHandSide()) { | 1492 if (!expr->target()->IsValidLeftHandSide()) { |
| 1529 VisitForEffect(expr->target()); | 1493 VisitForEffect(expr->target()); |
| 1530 return; | 1494 return; |
| 1531 } | 1495 } |
| 1532 | 1496 |
| 1533 // Left-hand side can only be a property, a global or a (parameter or local) | 1497 // Left-hand side can only be a property, a global or a (parameter or local) |
| 1534 // slot. Variables with rewrite to .arguments are treated as KEYED_PROPERTY. | 1498 // slot. |
| 1535 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; | 1499 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; |
| 1536 LhsKind assign_type = VARIABLE; | 1500 LhsKind assign_type = VARIABLE; |
| 1537 Property* property = expr->target()->AsProperty(); | 1501 Property* property = expr->target()->AsProperty(); |
| 1538 if (property != NULL) { | 1502 if (property != NULL) { |
| 1539 assign_type = (property->key()->IsPropertyName()) | 1503 assign_type = (property->key()->IsPropertyName()) |
| 1540 ? NAMED_PROPERTY | 1504 ? NAMED_PROPERTY |
| 1541 : KEYED_PROPERTY; | 1505 : KEYED_PROPERTY; |
| 1542 } | 1506 } |
| 1543 | 1507 |
| 1544 // Evaluate LHS expression. | 1508 // Evaluate LHS expression. |
| 1545 switch (assign_type) { | 1509 switch (assign_type) { |
| 1546 case VARIABLE: | 1510 case VARIABLE: |
| 1547 // Nothing to do here. | 1511 // Nothing to do here. |
| 1548 break; | 1512 break; |
| 1549 case NAMED_PROPERTY: | 1513 case NAMED_PROPERTY: |
| 1550 if (expr->is_compound()) { | 1514 if (expr->is_compound()) { |
| 1551 // We need the receiver both on the stack and in the accumulator. | 1515 // We need the receiver both on the stack and in the accumulator. |
| 1552 VisitForAccumulatorValue(property->obj()); | 1516 VisitForAccumulatorValue(property->obj()); |
| 1553 __ push(result_register()); | 1517 __ push(result_register()); |
| 1554 } else { | 1518 } else { |
| 1555 VisitForStackValue(property->obj()); | 1519 VisitForStackValue(property->obj()); |
| 1556 } | 1520 } |
| 1557 break; | 1521 break; |
| 1558 case KEYED_PROPERTY: { | 1522 case KEYED_PROPERTY: { |
| 1559 if (expr->is_compound()) { | 1523 if (expr->is_compound()) { |
| 1560 if (property->is_arguments_access()) { | 1524 VisitForStackValue(property->obj()); |
| 1561 VariableProxy* obj_proxy = property->obj()->AsVariableProxy(); | 1525 VisitForAccumulatorValue(property->key()); |
| 1562 MemOperand slot_operand = | |
| 1563 EmitSlotSearch(obj_proxy->var()->AsSlot(), rcx); | |
| 1564 __ push(slot_operand); | |
| 1565 __ Move(rax, property->key()->AsLiteral()->handle()); | |
| 1566 } else { | |
| 1567 VisitForStackValue(property->obj()); | |
| 1568 VisitForAccumulatorValue(property->key()); | |
| 1569 } | |
| 1570 __ movq(rdx, Operand(rsp, 0)); | 1526 __ movq(rdx, Operand(rsp, 0)); |
| 1571 __ push(rax); | 1527 __ push(rax); |
| 1572 } else { | 1528 } else { |
| 1573 if (property->is_arguments_access()) { | 1529 VisitForStackValue(property->obj()); |
| 1574 VariableProxy* obj_proxy = property->obj()->AsVariableProxy(); | 1530 VisitForStackValue(property->key()); |
| 1575 MemOperand slot_operand = | |
| 1576 EmitSlotSearch(obj_proxy->var()->AsSlot(), rcx); | |
| 1577 __ push(slot_operand); | |
| 1578 __ Push(property->key()->AsLiteral()->handle()); | |
| 1579 } else { | |
| 1580 VisitForStackValue(property->obj()); | |
| 1581 VisitForStackValue(property->key()); | |
| 1582 } | |
| 1583 } | 1531 } |
| 1584 break; | 1532 break; |
| 1585 } | 1533 } |
| 1586 } | 1534 } |
| 1587 | 1535 |
| 1588 // For compound assignments we need another deoptimization point after the | 1536 // For compound assignments we need another deoptimization point after the |
| 1589 // variable/property load. | 1537 // variable/property load. |
| 1590 if (expr->is_compound()) { | 1538 if (expr->is_compound()) { |
| 1591 { AccumulatorValueContext context(this); | 1539 { AccumulatorValueContext context(this); |
| 1592 switch (assign_type) { | 1540 switch (assign_type) { |
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| 1739 | 1687 |
| 1740 void FullCodeGenerator::EmitAssignment(Expression* expr, int bailout_ast_id) { | 1688 void FullCodeGenerator::EmitAssignment(Expression* expr, int bailout_ast_id) { |
| 1741 // Invalid left-hand sides are rewritten to have a 'throw | 1689 // Invalid left-hand sides are rewritten to have a 'throw |
| 1742 // ReferenceError' on the left-hand side. | 1690 // ReferenceError' on the left-hand side. |
| 1743 if (!expr->IsValidLeftHandSide()) { | 1691 if (!expr->IsValidLeftHandSide()) { |
| 1744 VisitForEffect(expr); | 1692 VisitForEffect(expr); |
| 1745 return; | 1693 return; |
| 1746 } | 1694 } |
| 1747 | 1695 |
| 1748 // Left-hand side can only be a property, a global or a (parameter or local) | 1696 // Left-hand side can only be a property, a global or a (parameter or local) |
| 1749 // slot. Variables with rewrite to .arguments are treated as KEYED_PROPERTY. | 1697 // slot. |
| 1750 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; | 1698 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; |
| 1751 LhsKind assign_type = VARIABLE; | 1699 LhsKind assign_type = VARIABLE; |
| 1752 Property* prop = expr->AsProperty(); | 1700 Property* prop = expr->AsProperty(); |
| 1753 if (prop != NULL) { | 1701 if (prop != NULL) { |
| 1754 assign_type = (prop->key()->IsPropertyName()) | 1702 assign_type = (prop->key()->IsPropertyName()) |
| 1755 ? NAMED_PROPERTY | 1703 ? NAMED_PROPERTY |
| 1756 : KEYED_PROPERTY; | 1704 : KEYED_PROPERTY; |
| 1757 } | 1705 } |
| 1758 | 1706 |
| 1759 switch (assign_type) { | 1707 switch (assign_type) { |
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| 1770 __ pop(rax); // Restore value. | 1718 __ pop(rax); // Restore value. |
| 1771 __ Move(rcx, prop->key()->AsLiteral()->handle()); | 1719 __ Move(rcx, prop->key()->AsLiteral()->handle()); |
| 1772 Handle<Code> ic = is_strict_mode() | 1720 Handle<Code> ic = is_strict_mode() |
| 1773 ? isolate()->builtins()->StoreIC_Initialize_Strict() | 1721 ? isolate()->builtins()->StoreIC_Initialize_Strict() |
| 1774 : isolate()->builtins()->StoreIC_Initialize(); | 1722 : isolate()->builtins()->StoreIC_Initialize(); |
| 1775 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); | 1723 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); |
| 1776 break; | 1724 break; |
| 1777 } | 1725 } |
| 1778 case KEYED_PROPERTY: { | 1726 case KEYED_PROPERTY: { |
| 1779 __ push(rax); // Preserve value. | 1727 __ push(rax); // Preserve value. |
| 1780 if (prop->is_synthetic()) { | 1728 VisitForStackValue(prop->obj()); |
| 1781 ASSERT(prop->obj()->AsVariableProxy() != NULL); | 1729 VisitForAccumulatorValue(prop->key()); |
| 1782 ASSERT(prop->key()->AsLiteral() != NULL); | 1730 __ movq(rcx, rax); |
| 1783 { AccumulatorValueContext for_object(this); | 1731 __ pop(rdx); |
| 1784 EmitVariableLoad(prop->obj()->AsVariableProxy()->var()); | |
| 1785 } | |
| 1786 __ movq(rdx, rax); | |
| 1787 __ Move(rcx, prop->key()->AsLiteral()->handle()); | |
| 1788 } else { | |
| 1789 VisitForStackValue(prop->obj()); | |
| 1790 VisitForAccumulatorValue(prop->key()); | |
| 1791 __ movq(rcx, rax); | |
| 1792 __ pop(rdx); | |
| 1793 } | |
| 1794 __ pop(rax); // Restore value. | 1732 __ pop(rax); // Restore value. |
| 1795 Handle<Code> ic = is_strict_mode() | 1733 Handle<Code> ic = is_strict_mode() |
| 1796 ? isolate()->builtins()->KeyedStoreIC_Initialize_Strict() | 1734 ? isolate()->builtins()->KeyedStoreIC_Initialize_Strict() |
| 1797 : isolate()->builtins()->KeyedStoreIC_Initialize(); | 1735 : isolate()->builtins()->KeyedStoreIC_Initialize(); |
| 1798 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); | 1736 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); |
| 1799 break; | 1737 break; |
| 1800 } | 1738 } |
| 1801 } | 1739 } |
| 1802 PrepareForBailoutForId(bailout_ast_id, TOS_REG); | 1740 PrepareForBailoutForId(bailout_ast_id, TOS_REG); |
| 1803 context()->Plug(rax); | 1741 context()->Plug(rax); |
| 1804 } | 1742 } |
| 1805 | 1743 |
| 1806 | 1744 |
| 1807 void FullCodeGenerator::EmitVariableAssignment(Variable* var, | 1745 void FullCodeGenerator::EmitVariableAssignment(Variable* var, |
| 1808 Token::Value op) { | 1746 Token::Value op) { |
| 1809 // Left-hand sides that rewrite to explicit property accesses do not reach | |
| 1810 // here. | |
| 1811 ASSERT(var != NULL); | 1747 ASSERT(var != NULL); |
| 1812 ASSERT(var->is_global() || var->AsSlot() != NULL); | 1748 ASSERT(var->is_global() || var->AsSlot() != NULL); |
| 1813 | 1749 |
| 1814 if (var->is_global()) { | 1750 if (var->is_global()) { |
| 1815 ASSERT(!var->is_this()); | 1751 ASSERT(!var->is_this()); |
| 1816 // Assignment to a global variable. Use inline caching for the | 1752 // Assignment to a global variable. Use inline caching for the |
| 1817 // assignment. Right-hand-side value is passed in rax, variable name in | 1753 // assignment. Right-hand-side value is passed in rax, variable name in |
| 1818 // rcx, and the global object on the stack. | 1754 // rcx, and the global object on the stack. |
| 1819 __ Move(rcx, var->name()); | 1755 __ Move(rcx, var->name()); |
| 1820 __ movq(rdx, GlobalObjectOperand()); | 1756 __ movq(rdx, GlobalObjectOperand()); |
| (...skipping 1934 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 3755 SetSourcePosition(expr->position()); | 3691 SetSourcePosition(expr->position()); |
| 3756 | 3692 |
| 3757 // Invalid left-hand-sides are rewritten to have a 'throw | 3693 // Invalid left-hand-sides are rewritten to have a 'throw |
| 3758 // ReferenceError' as the left-hand side. | 3694 // ReferenceError' as the left-hand side. |
| 3759 if (!expr->expression()->IsValidLeftHandSide()) { | 3695 if (!expr->expression()->IsValidLeftHandSide()) { |
| 3760 VisitForEffect(expr->expression()); | 3696 VisitForEffect(expr->expression()); |
| 3761 return; | 3697 return; |
| 3762 } | 3698 } |
| 3763 | 3699 |
| 3764 // Expression can only be a property, a global or a (parameter or local) | 3700 // Expression can only be a property, a global or a (parameter or local) |
| 3765 // slot. Variables with rewrite to .arguments are treated as KEYED_PROPERTY. | 3701 // slot. |
| 3766 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; | 3702 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; |
| 3767 LhsKind assign_type = VARIABLE; | 3703 LhsKind assign_type = VARIABLE; |
| 3768 Property* prop = expr->expression()->AsProperty(); | 3704 Property* prop = expr->expression()->AsProperty(); |
| 3769 // In case of a property we use the uninitialized expression context | 3705 // In case of a property we use the uninitialized expression context |
| 3770 // of the key to detect a named property. | 3706 // of the key to detect a named property. |
| 3771 if (prop != NULL) { | 3707 if (prop != NULL) { |
| 3772 assign_type = | 3708 assign_type = |
| 3773 (prop->key()->IsPropertyName()) ? NAMED_PROPERTY : KEYED_PROPERTY; | 3709 (prop->key()->IsPropertyName()) ? NAMED_PROPERTY : KEYED_PROPERTY; |
| 3774 } | 3710 } |
| 3775 | 3711 |
| 3776 // Evaluate expression and get value. | 3712 // Evaluate expression and get value. |
| 3777 if (assign_type == VARIABLE) { | 3713 if (assign_type == VARIABLE) { |
| 3778 ASSERT(expr->expression()->AsVariableProxy()->var() != NULL); | 3714 ASSERT(expr->expression()->AsVariableProxy()->var() != NULL); |
| 3779 AccumulatorValueContext context(this); | 3715 AccumulatorValueContext context(this); |
| 3780 EmitVariableLoad(expr->expression()->AsVariableProxy()->var()); | 3716 EmitVariableLoad(expr->expression()->AsVariableProxy()->var()); |
| 3781 } else { | 3717 } else { |
| 3782 // Reserve space for result of postfix operation. | 3718 // Reserve space for result of postfix operation. |
| 3783 if (expr->is_postfix() && !context()->IsEffect()) { | 3719 if (expr->is_postfix() && !context()->IsEffect()) { |
| 3784 __ Push(Smi::FromInt(0)); | 3720 __ Push(Smi::FromInt(0)); |
| 3785 } | 3721 } |
| 3786 if (assign_type == NAMED_PROPERTY) { | 3722 if (assign_type == NAMED_PROPERTY) { |
| 3787 VisitForAccumulatorValue(prop->obj()); | 3723 VisitForAccumulatorValue(prop->obj()); |
| 3788 __ push(rax); // Copy of receiver, needed for later store. | 3724 __ push(rax); // Copy of receiver, needed for later store. |
| 3789 EmitNamedPropertyLoad(prop); | 3725 EmitNamedPropertyLoad(prop); |
| 3790 } else { | 3726 } else { |
| 3791 if (prop->is_arguments_access()) { | 3727 VisitForStackValue(prop->obj()); |
| 3792 VariableProxy* obj_proxy = prop->obj()->AsVariableProxy(); | 3728 VisitForAccumulatorValue(prop->key()); |
| 3793 MemOperand slot_operand = | |
| 3794 EmitSlotSearch(obj_proxy->var()->AsSlot(), rcx); | |
| 3795 __ push(slot_operand); | |
| 3796 __ Move(rax, prop->key()->AsLiteral()->handle()); | |
| 3797 } else { | |
| 3798 VisitForStackValue(prop->obj()); | |
| 3799 VisitForAccumulatorValue(prop->key()); | |
| 3800 } | |
| 3801 __ movq(rdx, Operand(rsp, 0)); // Leave receiver on stack | 3729 __ movq(rdx, Operand(rsp, 0)); // Leave receiver on stack |
| 3802 __ push(rax); // Copy of key, needed for later store. | 3730 __ push(rax); // Copy of key, needed for later store. |
| 3803 EmitKeyedPropertyLoad(prop); | 3731 EmitKeyedPropertyLoad(prop); |
| 3804 } | 3732 } |
| 3805 } | 3733 } |
| 3806 | 3734 |
| 3807 // We need a second deoptimization point after loading the value | 3735 // We need a second deoptimization point after loading the value |
| 3808 // in case evaluating the property load my have a side effect. | 3736 // in case evaluating the property load my have a side effect. |
| 3809 if (assign_type == VARIABLE) { | 3737 if (assign_type == VARIABLE) { |
| 3810 PrepareForBailout(expr->expression(), TOS_REG); | 3738 PrepareForBailout(expr->expression(), TOS_REG); |
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| 4309 __ ret(0); | 4237 __ ret(0); |
| 4310 } | 4238 } |
| 4311 | 4239 |
| 4312 | 4240 |
| 4313 #undef __ | 4241 #undef __ |
| 4314 | 4242 |
| 4315 | 4243 |
| 4316 } } // namespace v8::internal | 4244 } } // namespace v8::internal |
| 4317 | 4245 |
| 4318 #endif // V8_TARGET_ARCH_X64 | 4246 #endif // V8_TARGET_ARCH_X64 |
| OLD | NEW |