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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231 int offset = scope()->num_parameters() * kPointerSize; | 231 int offset = scope()->num_parameters() * kPointerSize; |
232 __ Addu(a2, fp, | 232 __ Addu(a2, fp, |
233 Operand(StandardFrameConstants::kCallerSPOffset + offset)); | 233 Operand(StandardFrameConstants::kCallerSPOffset + offset)); |
234 __ li(a1, Operand(Smi::FromInt(scope()->num_parameters()))); | 234 __ li(a1, Operand(Smi::FromInt(scope()->num_parameters()))); |
235 __ Push(a3, a2, a1); | 235 __ Push(a3, a2, a1); |
236 | 236 |
237 // Arguments to ArgumentsAccessStub: | 237 // Arguments to ArgumentsAccessStub: |
238 // function, receiver address, parameter count. | 238 // function, receiver address, parameter count. |
239 // The stub will rewrite receiever and parameter count if the previous | 239 // The stub will rewrite receiever and parameter count if the previous |
240 // stack frame was an arguments adapter frame. | 240 // stack frame was an arguments adapter frame. |
241 ArgumentsAccessStub stub( | 241 ArgumentsAccessStub::Type type; |
242 is_strict_mode() ? ArgumentsAccessStub::NEW_STRICT | 242 if (is_strict_mode()) { |
243 : ArgumentsAccessStub::NEW_NON_STRICT); | 243 type = ArgumentsAccessStub::NEW_STRICT; |
| 244 } else if (function()->has_duplicate_parameters()) { |
| 245 type = ArgumentsAccessStub::NEW_NON_STRICT_SLOW; |
| 246 } else { |
| 247 type = ArgumentsAccessStub::NEW_NON_STRICT_FAST; |
| 248 } |
| 249 ArgumentsAccessStub stub(type); |
244 __ CallStub(&stub); | 250 __ CallStub(&stub); |
245 | 251 |
246 Variable* arguments_shadow = scope()->arguments_shadow(); | |
247 if (arguments_shadow != NULL) { | |
248 // Duplicate the value; move-to-slot operation might clobber registers. | |
249 __ mov(a3, v0); | |
250 Move(arguments_shadow->AsSlot(), a3, a1, a2); | |
251 } | |
252 Move(arguments->AsSlot(), v0, a1, a2); | 252 Move(arguments->AsSlot(), v0, a1, a2); |
253 } | 253 } |
254 | 254 |
255 if (FLAG_trace) { | 255 if (FLAG_trace) { |
256 __ CallRuntime(Runtime::kTraceEnter, 0); | 256 __ CallRuntime(Runtime::kTraceEnter, 0); |
257 } | 257 } |
258 | 258 |
259 // Visit the declarations and body unless there is an illegal | 259 // Visit the declarations and body unless there is an illegal |
260 // redeclaration. | 260 // redeclaration. |
261 if (scope()->HasIllegalRedeclaration()) { | 261 if (scope()->HasIllegalRedeclaration()) { |
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1247 EmitCallIC(ic, RelocInfo::CODE_TARGET, GetPropertyId(property)); | 1247 EmitCallIC(ic, RelocInfo::CODE_TARGET, GetPropertyId(property)); |
1248 __ Branch(done); | 1248 __ Branch(done); |
1249 } | 1249 } |
1250 } | 1250 } |
1251 } | 1251 } |
1252 } | 1252 } |
1253 } | 1253 } |
1254 | 1254 |
1255 | 1255 |
1256 void FullCodeGenerator::EmitVariableLoad(Variable* var) { | 1256 void FullCodeGenerator::EmitVariableLoad(Variable* var) { |
1257 // Four cases: non-this global variables, lookup slots, all other | 1257 // Three cases: non-this global variables, lookup slots, and all other |
1258 // types of slots, and parameters that rewrite to explicit property | 1258 // types of slots. |
1259 // accesses on the arguments object. | |
1260 Slot* slot = var->AsSlot(); | 1259 Slot* slot = var->AsSlot(); |
1261 Property* property = var->AsProperty(); | 1260 ASSERT((var->is_global() && !var->is_this()) == (slot == NULL)); |
1262 | 1261 |
1263 if (var->is_global() && !var->is_this()) { | 1262 if (slot == NULL) { |
1264 Comment cmnt(masm_, "Global variable"); | 1263 Comment cmnt(masm_, "Global variable"); |
1265 // Use inline caching. Variable name is passed in a2 and the global | 1264 // Use inline caching. Variable name is passed in a2 and the global |
1266 // object (receiver) in a0. | 1265 // object (receiver) in a0. |
1267 __ lw(a0, GlobalObjectOperand()); | 1266 __ lw(a0, GlobalObjectOperand()); |
1268 __ li(a2, Operand(var->name())); | 1267 __ li(a2, Operand(var->name())); |
1269 Handle<Code> ic = isolate()->builtins()->LoadIC_Initialize(); | 1268 Handle<Code> ic = isolate()->builtins()->LoadIC_Initialize(); |
1270 EmitCallIC(ic, RelocInfo::CODE_TARGET_CONTEXT, AstNode::kNoNumber); | 1269 EmitCallIC(ic, RelocInfo::CODE_TARGET_CONTEXT, AstNode::kNoNumber); |
1271 context()->Plug(v0); | 1270 context()->Plug(v0); |
1272 | 1271 |
1273 } else if (slot != NULL && slot->type() == Slot::LOOKUP) { | 1272 } else if (slot->type() == Slot::LOOKUP) { |
1274 Label done, slow; | 1273 Label done, slow; |
1275 | 1274 |
1276 // Generate code for loading from variables potentially shadowed | 1275 // Generate code for loading from variables potentially shadowed |
1277 // by eval-introduced variables. | 1276 // by eval-introduced variables. |
1278 EmitDynamicLoadFromSlotFastCase(slot, NOT_INSIDE_TYPEOF, &slow, &done); | 1277 EmitDynamicLoadFromSlotFastCase(slot, NOT_INSIDE_TYPEOF, &slow, &done); |
1279 | 1278 |
1280 __ bind(&slow); | 1279 __ bind(&slow); |
1281 Comment cmnt(masm_, "Lookup slot"); | 1280 Comment cmnt(masm_, "Lookup slot"); |
1282 __ li(a1, Operand(var->name())); | 1281 __ li(a1, Operand(var->name())); |
1283 __ Push(cp, a1); // Context and name. | 1282 __ Push(cp, a1); // Context and name. |
1284 __ CallRuntime(Runtime::kLoadContextSlot, 2); | 1283 __ CallRuntime(Runtime::kLoadContextSlot, 2); |
1285 __ bind(&done); | 1284 __ bind(&done); |
1286 | 1285 |
1287 context()->Plug(v0); | 1286 context()->Plug(v0); |
1288 | 1287 |
1289 } else if (slot != NULL) { | 1288 } else { |
1290 Comment cmnt(masm_, (slot->type() == Slot::CONTEXT) | 1289 Comment cmnt(masm_, (slot->type() == Slot::CONTEXT) |
1291 ? "Context slot" | 1290 ? "Context slot" |
1292 : "Stack slot"); | 1291 : "Stack slot"); |
1293 if (var->mode() == Variable::CONST) { | 1292 if (var->mode() == Variable::CONST) { |
1294 // Constants may be the hole value if they have not been initialized. | 1293 // Constants may be the hole value if they have not been initialized. |
1295 // Unhole them. | 1294 // Unhole them. |
1296 MemOperand slot_operand = EmitSlotSearch(slot, a0); | 1295 MemOperand slot_operand = EmitSlotSearch(slot, a0); |
1297 __ lw(v0, slot_operand); | 1296 __ lw(v0, slot_operand); |
1298 __ LoadRoot(at, Heap::kTheHoleValueRootIndex); | 1297 __ LoadRoot(at, Heap::kTheHoleValueRootIndex); |
1299 __ subu(at, v0, at); // Sub as compare: at == 0 on eq. | 1298 __ subu(at, v0, at); // Sub as compare: at == 0 on eq. |
1300 __ LoadRoot(a0, Heap::kUndefinedValueRootIndex); | 1299 __ LoadRoot(a0, Heap::kUndefinedValueRootIndex); |
1301 __ movz(v0, a0, at); // Conditional move. | 1300 __ movz(v0, a0, at); // Conditional move. |
1302 context()->Plug(v0); | 1301 context()->Plug(v0); |
1303 } else { | 1302 } else { |
1304 context()->Plug(slot); | 1303 context()->Plug(slot); |
1305 } | 1304 } |
1306 } else { | |
1307 Comment cmnt(masm_, "Rewritten parameter"); | |
1308 ASSERT_NOT_NULL(property); | |
1309 // Rewritten parameter accesses are of the form "slot[literal]". | |
1310 // Assert that the object is in a slot. | |
1311 Variable* object_var = property->obj()->AsVariableProxy()->AsVariable(); | |
1312 ASSERT_NOT_NULL(object_var); | |
1313 Slot* object_slot = object_var->AsSlot(); | |
1314 ASSERT_NOT_NULL(object_slot); | |
1315 | |
1316 // Load the object. | |
1317 Move(a1, object_slot); | |
1318 | |
1319 // Assert that the key is a smi. | |
1320 Literal* key_literal = property->key()->AsLiteral(); | |
1321 ASSERT_NOT_NULL(key_literal); | |
1322 ASSERT(key_literal->handle()->IsSmi()); | |
1323 | |
1324 // Load the key. | |
1325 __ li(a0, Operand(key_literal->handle())); | |
1326 | |
1327 // Call keyed load IC. It has arguments key and receiver in a0 and a1. | |
1328 Handle<Code> ic = isolate()->builtins()->KeyedLoadIC_Initialize(); | |
1329 EmitCallIC(ic, RelocInfo::CODE_TARGET, GetPropertyId(property)); | |
1330 context()->Plug(v0); | |
1331 } | 1305 } |
1332 } | 1306 } |
1333 | 1307 |
1334 | 1308 |
1335 void FullCodeGenerator::VisitRegExpLiteral(RegExpLiteral* expr) { | 1309 void FullCodeGenerator::VisitRegExpLiteral(RegExpLiteral* expr) { |
1336 Comment cmnt(masm_, "[ RegExpLiteral"); | 1310 Comment cmnt(masm_, "[ RegExpLiteral"); |
1337 Label materialized; | 1311 Label materialized; |
1338 // Registers will be used as follows: | 1312 // Registers will be used as follows: |
1339 // t1 = materialized value (RegExp literal) | 1313 // t1 = materialized value (RegExp literal) |
1340 // t0 = JS function, literals array | 1314 // t0 = JS function, literals array |
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1564 void FullCodeGenerator::VisitAssignment(Assignment* expr) { | 1538 void FullCodeGenerator::VisitAssignment(Assignment* expr) { |
1565 Comment cmnt(masm_, "[ Assignment"); | 1539 Comment cmnt(masm_, "[ Assignment"); |
1566 // Invalid left-hand sides are rewritten to have a 'throw ReferenceError' | 1540 // Invalid left-hand sides are rewritten to have a 'throw ReferenceError' |
1567 // on the left-hand side. | 1541 // on the left-hand side. |
1568 if (!expr->target()->IsValidLeftHandSide()) { | 1542 if (!expr->target()->IsValidLeftHandSide()) { |
1569 VisitForEffect(expr->target()); | 1543 VisitForEffect(expr->target()); |
1570 return; | 1544 return; |
1571 } | 1545 } |
1572 | 1546 |
1573 // Left-hand side can only be a property, a global or a (parameter or local) | 1547 // Left-hand side can only be a property, a global or a (parameter or local) |
1574 // slot. Variables with rewrite to .arguments are treated as KEYED_PROPERTY. | 1548 // slot. |
1575 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; | 1549 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; |
1576 LhsKind assign_type = VARIABLE; | 1550 LhsKind assign_type = VARIABLE; |
1577 Property* property = expr->target()->AsProperty(); | 1551 Property* property = expr->target()->AsProperty(); |
1578 if (property != NULL) { | 1552 if (property != NULL) { |
1579 assign_type = (property->key()->IsPropertyName()) | 1553 assign_type = (property->key()->IsPropertyName()) |
1580 ? NAMED_PROPERTY | 1554 ? NAMED_PROPERTY |
1581 : KEYED_PROPERTY; | 1555 : KEYED_PROPERTY; |
1582 } | 1556 } |
1583 | 1557 |
1584 // Evaluate LHS expression. | 1558 // Evaluate LHS expression. |
1585 switch (assign_type) { | 1559 switch (assign_type) { |
1586 case VARIABLE: | 1560 case VARIABLE: |
1587 // Nothing to do here. | 1561 // Nothing to do here. |
1588 break; | 1562 break; |
1589 case NAMED_PROPERTY: | 1563 case NAMED_PROPERTY: |
1590 if (expr->is_compound()) { | 1564 if (expr->is_compound()) { |
1591 // We need the receiver both on the stack and in the accumulator. | 1565 // We need the receiver both on the stack and in the accumulator. |
1592 VisitForAccumulatorValue(property->obj()); | 1566 VisitForAccumulatorValue(property->obj()); |
1593 __ push(result_register()); | 1567 __ push(result_register()); |
1594 } else { | 1568 } else { |
1595 VisitForStackValue(property->obj()); | 1569 VisitForStackValue(property->obj()); |
1596 } | 1570 } |
1597 break; | 1571 break; |
1598 case KEYED_PROPERTY: | 1572 case KEYED_PROPERTY: |
1599 // We need the key and receiver on both the stack and in v0 and a1. | 1573 // We need the key and receiver on both the stack and in v0 and a1. |
1600 if (expr->is_compound()) { | 1574 if (expr->is_compound()) { |
1601 if (property->is_arguments_access()) { | 1575 VisitForStackValue(property->obj()); |
1602 VariableProxy* obj_proxy = property->obj()->AsVariableProxy(); | 1576 VisitForAccumulatorValue(property->key()); |
1603 __ lw(v0, EmitSlotSearch(obj_proxy->var()->AsSlot(), v0)); | |
1604 __ push(v0); | |
1605 __ li(v0, Operand(property->key()->AsLiteral()->handle())); | |
1606 } else { | |
1607 VisitForStackValue(property->obj()); | |
1608 VisitForAccumulatorValue(property->key()); | |
1609 } | |
1610 __ lw(a1, MemOperand(sp, 0)); | 1577 __ lw(a1, MemOperand(sp, 0)); |
1611 __ push(v0); | 1578 __ push(v0); |
1612 } else { | 1579 } else { |
1613 if (property->is_arguments_access()) { | 1580 VisitForStackValue(property->obj()); |
1614 VariableProxy* obj_proxy = property->obj()->AsVariableProxy(); | 1581 VisitForStackValue(property->key()); |
1615 __ lw(a1, EmitSlotSearch(obj_proxy->var()->AsSlot(), v0)); | |
1616 __ li(v0, Operand(property->key()->AsLiteral()->handle())); | |
1617 __ Push(a1, v0); | |
1618 } else { | |
1619 VisitForStackValue(property->obj()); | |
1620 VisitForStackValue(property->key()); | |
1621 } | |
1622 } | 1582 } |
1623 break; | 1583 break; |
1624 } | 1584 } |
1625 | 1585 |
1626 // For compound assignments we need another deoptimization point after the | 1586 // For compound assignments we need another deoptimization point after the |
1627 // variable/property load. | 1587 // variable/property load. |
1628 if (expr->is_compound()) { | 1588 if (expr->is_compound()) { |
1629 { AccumulatorValueContext context(this); | 1589 { AccumulatorValueContext context(this); |
1630 switch (assign_type) { | 1590 switch (assign_type) { |
1631 case VARIABLE: | 1591 case VARIABLE: |
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1821 | 1781 |
1822 void FullCodeGenerator::EmitAssignment(Expression* expr, int bailout_ast_id) { | 1782 void FullCodeGenerator::EmitAssignment(Expression* expr, int bailout_ast_id) { |
1823 // Invalid left-hand sides are rewritten to have a 'throw | 1783 // Invalid left-hand sides are rewritten to have a 'throw |
1824 // ReferenceError' on the left-hand side. | 1784 // ReferenceError' on the left-hand side. |
1825 if (!expr->IsValidLeftHandSide()) { | 1785 if (!expr->IsValidLeftHandSide()) { |
1826 VisitForEffect(expr); | 1786 VisitForEffect(expr); |
1827 return; | 1787 return; |
1828 } | 1788 } |
1829 | 1789 |
1830 // Left-hand side can only be a property, a global or a (parameter or local) | 1790 // Left-hand side can only be a property, a global or a (parameter or local) |
1831 // slot. Variables with rewrite to .arguments are treated as KEYED_PROPERTY. | 1791 // slot. |
1832 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; | 1792 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; |
1833 LhsKind assign_type = VARIABLE; | 1793 LhsKind assign_type = VARIABLE; |
1834 Property* prop = expr->AsProperty(); | 1794 Property* prop = expr->AsProperty(); |
1835 if (prop != NULL) { | 1795 if (prop != NULL) { |
1836 assign_type = (prop->key()->IsPropertyName()) | 1796 assign_type = (prop->key()->IsPropertyName()) |
1837 ? NAMED_PROPERTY | 1797 ? NAMED_PROPERTY |
1838 : KEYED_PROPERTY; | 1798 : KEYED_PROPERTY; |
1839 } | 1799 } |
1840 | 1800 |
1841 switch (assign_type) { | 1801 switch (assign_type) { |
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1852 __ pop(a0); // Restore value. | 1812 __ pop(a0); // Restore value. |
1853 __ li(a2, Operand(prop->key()->AsLiteral()->handle())); | 1813 __ li(a2, Operand(prop->key()->AsLiteral()->handle())); |
1854 Handle<Code> ic = is_strict_mode() | 1814 Handle<Code> ic = is_strict_mode() |
1855 ? isolate()->builtins()->StoreIC_Initialize_Strict() | 1815 ? isolate()->builtins()->StoreIC_Initialize_Strict() |
1856 : isolate()->builtins()->StoreIC_Initialize(); | 1816 : isolate()->builtins()->StoreIC_Initialize(); |
1857 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); | 1817 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); |
1858 break; | 1818 break; |
1859 } | 1819 } |
1860 case KEYED_PROPERTY: { | 1820 case KEYED_PROPERTY: { |
1861 __ push(result_register()); // Preserve value. | 1821 __ push(result_register()); // Preserve value. |
1862 if (prop->is_synthetic()) { | 1822 VisitForStackValue(prop->obj()); |
1863 ASSERT(prop->obj()->AsVariableProxy() != NULL); | 1823 VisitForAccumulatorValue(prop->key()); |
1864 ASSERT(prop->key()->AsLiteral() != NULL); | 1824 __ mov(a1, result_register()); |
1865 { AccumulatorValueContext for_object(this); | 1825 __ pop(a2); |
1866 EmitVariableLoad(prop->obj()->AsVariableProxy()->var()); | |
1867 } | |
1868 __ mov(a2, result_register()); | |
1869 __ li(a1, Operand(prop->key()->AsLiteral()->handle())); | |
1870 } else { | |
1871 VisitForStackValue(prop->obj()); | |
1872 VisitForAccumulatorValue(prop->key()); | |
1873 __ mov(a1, result_register()); | |
1874 __ pop(a2); | |
1875 } | |
1876 __ pop(a0); // Restore value. | 1826 __ pop(a0); // Restore value. |
1877 Handle<Code> ic = is_strict_mode() | 1827 Handle<Code> ic = is_strict_mode() |
1878 ? isolate()->builtins()->KeyedStoreIC_Initialize_Strict() | 1828 ? isolate()->builtins()->KeyedStoreIC_Initialize_Strict() |
1879 : isolate()->builtins()->KeyedStoreIC_Initialize(); | 1829 : isolate()->builtins()->KeyedStoreIC_Initialize(); |
1880 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); | 1830 EmitCallIC(ic, RelocInfo::CODE_TARGET, AstNode::kNoNumber); |
1881 break; | 1831 break; |
1882 } | 1832 } |
1883 } | 1833 } |
1884 PrepareForBailoutForId(bailout_ast_id, TOS_REG); | 1834 PrepareForBailoutForId(bailout_ast_id, TOS_REG); |
1885 context()->Plug(v0); | 1835 context()->Plug(v0); |
1886 } | 1836 } |
1887 | 1837 |
1888 | 1838 |
1889 void FullCodeGenerator::EmitVariableAssignment(Variable* var, | 1839 void FullCodeGenerator::EmitVariableAssignment(Variable* var, |
1890 Token::Value op) { | 1840 Token::Value op) { |
1891 // Left-hand sides that rewrite to explicit property accesses do not reach | |
1892 // here. | |
1893 ASSERT(var != NULL); | 1841 ASSERT(var != NULL); |
1894 ASSERT(var->is_global() || var->AsSlot() != NULL); | 1842 ASSERT(var->is_global() || var->AsSlot() != NULL); |
1895 | 1843 |
1896 if (var->is_global()) { | 1844 if (var->is_global()) { |
1897 ASSERT(!var->is_this()); | 1845 ASSERT(!var->is_this()); |
1898 // Assignment to a global variable. Use inline caching for the | 1846 // Assignment to a global variable. Use inline caching for the |
1899 // assignment. Right-hand-side value is passed in a0, variable name in | 1847 // assignment. Right-hand-side value is passed in a0, variable name in |
1900 // a2, and the global object in a1. | 1848 // a2, and the global object in a1. |
1901 __ mov(a0, result_register()); | 1849 __ mov(a0, result_register()); |
1902 __ li(a2, Operand(var->name())); | 1850 __ li(a2, Operand(var->name())); |
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3833 SetSourcePosition(expr->position()); | 3781 SetSourcePosition(expr->position()); |
3834 | 3782 |
3835 // Invalid left-hand sides are rewritten to have a 'throw ReferenceError' | 3783 // Invalid left-hand sides are rewritten to have a 'throw ReferenceError' |
3836 // as the left-hand side. | 3784 // as the left-hand side. |
3837 if (!expr->expression()->IsValidLeftHandSide()) { | 3785 if (!expr->expression()->IsValidLeftHandSide()) { |
3838 VisitForEffect(expr->expression()); | 3786 VisitForEffect(expr->expression()); |
3839 return; | 3787 return; |
3840 } | 3788 } |
3841 | 3789 |
3842 // Expression can only be a property, a global or a (parameter or local) | 3790 // Expression can only be a property, a global or a (parameter or local) |
3843 // slot. Variables with rewrite to .arguments are treated as KEYED_PROPERTY. | 3791 // slot. |
3844 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; | 3792 enum LhsKind { VARIABLE, NAMED_PROPERTY, KEYED_PROPERTY }; |
3845 LhsKind assign_type = VARIABLE; | 3793 LhsKind assign_type = VARIABLE; |
3846 Property* prop = expr->expression()->AsProperty(); | 3794 Property* prop = expr->expression()->AsProperty(); |
3847 // In case of a property we use the uninitialized expression context | 3795 // In case of a property we use the uninitialized expression context |
3848 // of the key to detect a named property. | 3796 // of the key to detect a named property. |
3849 if (prop != NULL) { | 3797 if (prop != NULL) { |
3850 assign_type = | 3798 assign_type = |
3851 (prop->key()->IsPropertyName()) ? NAMED_PROPERTY : KEYED_PROPERTY; | 3799 (prop->key()->IsPropertyName()) ? NAMED_PROPERTY : KEYED_PROPERTY; |
3852 } | 3800 } |
3853 | 3801 |
3854 // Evaluate expression and get value. | 3802 // Evaluate expression and get value. |
3855 if (assign_type == VARIABLE) { | 3803 if (assign_type == VARIABLE) { |
3856 ASSERT(expr->expression()->AsVariableProxy()->var() != NULL); | 3804 ASSERT(expr->expression()->AsVariableProxy()->var() != NULL); |
3857 AccumulatorValueContext context(this); | 3805 AccumulatorValueContext context(this); |
3858 EmitVariableLoad(expr->expression()->AsVariableProxy()->var()); | 3806 EmitVariableLoad(expr->expression()->AsVariableProxy()->var()); |
3859 } else { | 3807 } else { |
3860 // Reserve space for result of postfix operation. | 3808 // Reserve space for result of postfix operation. |
3861 if (expr->is_postfix() && !context()->IsEffect()) { | 3809 if (expr->is_postfix() && !context()->IsEffect()) { |
3862 __ li(at, Operand(Smi::FromInt(0))); | 3810 __ li(at, Operand(Smi::FromInt(0))); |
3863 __ push(at); | 3811 __ push(at); |
3864 } | 3812 } |
3865 if (assign_type == NAMED_PROPERTY) { | 3813 if (assign_type == NAMED_PROPERTY) { |
3866 // Put the object both on the stack and in the accumulator. | 3814 // Put the object both on the stack and in the accumulator. |
3867 VisitForAccumulatorValue(prop->obj()); | 3815 VisitForAccumulatorValue(prop->obj()); |
3868 __ push(v0); | 3816 __ push(v0); |
3869 EmitNamedPropertyLoad(prop); | 3817 EmitNamedPropertyLoad(prop); |
3870 } else { | 3818 } else { |
3871 if (prop->is_arguments_access()) { | 3819 VisitForStackValue(prop->obj()); |
3872 VariableProxy* obj_proxy = prop->obj()->AsVariableProxy(); | 3820 VisitForAccumulatorValue(prop->key()); |
3873 __ lw(v0, EmitSlotSearch(obj_proxy->var()->AsSlot(), v0)); | |
3874 __ push(v0); | |
3875 __ li(v0, Operand(prop->key()->AsLiteral()->handle())); | |
3876 } else { | |
3877 VisitForStackValue(prop->obj()); | |
3878 VisitForAccumulatorValue(prop->key()); | |
3879 } | |
3880 __ lw(a1, MemOperand(sp, 0)); | 3821 __ lw(a1, MemOperand(sp, 0)); |
3881 __ push(v0); | 3822 __ push(v0); |
3882 EmitKeyedPropertyLoad(prop); | 3823 EmitKeyedPropertyLoad(prop); |
3883 } | 3824 } |
3884 } | 3825 } |
3885 | 3826 |
3886 // We need a second deoptimization point after loading the value | 3827 // We need a second deoptimization point after loading the value |
3887 // in case evaluating the property load my have a side effect. | 3828 // in case evaluating the property load my have a side effect. |
3888 if (assign_type == VARIABLE) { | 3829 if (assign_type == VARIABLE) { |
3889 PrepareForBailout(expr->expression(), TOS_REG); | 3830 PrepareForBailout(expr->expression(), TOS_REG); |
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4378 __ Addu(at, a1, Operand(masm_->CodeObject())); | 4319 __ Addu(at, a1, Operand(masm_->CodeObject())); |
4379 __ Jump(at); | 4320 __ Jump(at); |
4380 } | 4321 } |
4381 | 4322 |
4382 | 4323 |
4383 #undef __ | 4324 #undef __ |
4384 | 4325 |
4385 } } // namespace v8::internal | 4326 } } // namespace v8::internal |
4386 | 4327 |
4387 #endif // V8_TARGET_ARCH_MIPS | 4328 #endif // V8_TARGET_ARCH_MIPS |
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