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Side by Side Diff: src/ppc/macro-assembler-ppc.h

Issue 1491433002: PPC: [runtime] Replace global object link with native context link in all contexts. (Closed) Base URL: https://chromium.googlesource.com/v8/v8.git@patch11
Patch Set: Created 5 years ago
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1 // Copyright 2014 the V8 project authors. All rights reserved. 1 // Copyright 2014 the V8 project authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #ifndef V8_PPC_MACRO_ASSEMBLER_PPC_H_ 5 #ifndef V8_PPC_MACRO_ASSEMBLER_PPC_H_
6 #define V8_PPC_MACRO_ASSEMBLER_PPC_H_ 6 #define V8_PPC_MACRO_ASSEMBLER_PPC_H_
7 7
8 #include "src/assembler.h" 8 #include "src/assembler.h"
9 #include "src/bailout-reason.h" 9 #include "src/bailout-reason.h"
10 #include "src/frames.h" 10 #include "src/frames.h"
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423 // remove in a register (or no_reg, if there is nothing to remove). 423 // remove in a register (or no_reg, if there is nothing to remove).
424 void LeaveExitFrame(bool save_doubles, Register argument_count, 424 void LeaveExitFrame(bool save_doubles, Register argument_count,
425 bool restore_context, 425 bool restore_context,
426 bool argument_count_is_length = false); 426 bool argument_count_is_length = false);
427 427
428 // Get the actual activation frame alignment for target environment. 428 // Get the actual activation frame alignment for target environment.
429 static int ActivationFrameAlignment(); 429 static int ActivationFrameAlignment();
430 430
431 void LoadContext(Register dst, int context_chain_length); 431 void LoadContext(Register dst, int context_chain_length);
432 432
433 // Load the global object from the current context.
434 void LoadGlobalObject(Register dst) {
435 LoadNativeContextSlot(Context::EXTENSION_INDEX, dst);
436 }
437
433 // Load the global proxy from the current context. 438 // Load the global proxy from the current context.
434 void LoadGlobalProxy(Register dst); 439 void LoadGlobalProxy(Register dst) {
440 LoadNativeContextSlot(Context::GLOBAL_PROXY_INDEX, dst);
441 }
435 442
436 // Conditionally load the cached Array transitioned map of type 443 // Conditionally load the cached Array transitioned map of type
437 // transitioned_kind from the native context if the map in register 444 // transitioned_kind from the native context if the map in register
438 // map_in_out is the cached Array map in the native context of 445 // map_in_out is the cached Array map in the native context of
439 // expected_kind. 446 // expected_kind.
440 void LoadTransitionedArrayMapConditional(ElementsKind expected_kind, 447 void LoadTransitionedArrayMapConditional(ElementsKind expected_kind,
441 ElementsKind transitioned_kind, 448 ElementsKind transitioned_kind,
442 Register map_in_out, 449 Register map_in_out,
443 Register scratch, 450 Register scratch,
444 Label* no_map_match); 451 Label* no_map_match);
445 452
446 void LoadGlobalFunction(int index, Register function); 453 void LoadNativeContextSlot(int index, Register dst);
447 454
448 // Load the initial map from the global function. The registers 455 // Load the initial map from the global function. The registers
449 // function and map can be the same, function is then overwritten. 456 // function and map can be the same, function is then overwritten.
450 void LoadGlobalFunctionInitialMap(Register function, Register map, 457 void LoadGlobalFunctionInitialMap(Register function, Register map,
451 Register scratch); 458 Register scratch);
452 459
453 void InitializeRootRegister() { 460 void InitializeRootRegister() {
454 ExternalReference roots_array_start = 461 ExternalReference roots_array_start =
455 ExternalReference::roots_array_start(isolate()); 462 ExternalReference::roots_array_start(isolate());
456 mov(kRootRegister, Operand(roots_array_start)); 463 mov(kRootRegister, Operand(roots_array_start));
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991 void MovFromFloatParameter(DoubleRegister dst); 998 void MovFromFloatParameter(DoubleRegister dst);
992 void MovFromFloatResult(DoubleRegister dst); 999 void MovFromFloatResult(DoubleRegister dst);
993 1000
994 // Jump to a runtime routine. 1001 // Jump to a runtime routine.
995 void JumpToExternalReference(const ExternalReference& builtin); 1002 void JumpToExternalReference(const ExternalReference& builtin);
996 1003
997 // Invoke specified builtin JavaScript function. 1004 // Invoke specified builtin JavaScript function.
998 void InvokeBuiltin(int native_context_index, InvokeFlag flag, 1005 void InvokeBuiltin(int native_context_index, InvokeFlag flag,
999 const CallWrapper& call_wrapper = NullCallWrapper()); 1006 const CallWrapper& call_wrapper = NullCallWrapper());
1000 1007
1001 // Store the code object for the given builtin in the target register and
1002 // setup the function in r1.
1003 void GetBuiltinEntry(Register target, int native_context_index);
1004
1005 // Store the function for the given builtin in the target register.
1006 void GetBuiltinFunction(Register target, int native_context_index);
1007
1008 Handle<Object> CodeObject() { 1008 Handle<Object> CodeObject() {
1009 DCHECK(!code_object_.is_null()); 1009 DCHECK(!code_object_.is_null());
1010 return code_object_; 1010 return code_object_;
1011 } 1011 }
1012 1012
1013 1013
1014 // Emit code for a truncating division by a constant. The dividend register is 1014 // Emit code for a truncating division by a constant. The dividend register is
1015 // unchanged and ip gets clobbered. Dividend and result must be different. 1015 // unchanged and ip gets clobbered. Dividend and result must be different.
1016 void TruncatingDiv(Register result, Register dividend, int32_t divisor); 1016 void TruncatingDiv(Register result, Register dividend, int32_t divisor);
1017 1017
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1560 byte* address_; // The address of the code being patched. 1560 byte* address_; // The address of the code being patched.
1561 int size_; // Number of bytes of the expected patch size. 1561 int size_; // Number of bytes of the expected patch size.
1562 MacroAssembler masm_; // Macro assembler used to generate the code. 1562 MacroAssembler masm_; // Macro assembler used to generate the code.
1563 FlushICache flush_cache_; // Whether to flush the I cache after patching. 1563 FlushICache flush_cache_; // Whether to flush the I cache after patching.
1564 }; 1564 };
1565 1565
1566 1566
1567 // ----------------------------------------------------------------------------- 1567 // -----------------------------------------------------------------------------
1568 // Static helper functions. 1568 // Static helper functions.
1569 1569
1570 inline MemOperand ContextOperand(Register context, int index = 0) { 1570 inline MemOperand ContextMemOperand(Register context, int index = 0) {
1571 return MemOperand(context, Context::SlotOffset(index)); 1571 return MemOperand(context, Context::SlotOffset(index));
1572 } 1572 }
1573 1573
1574 1574
1575 inline MemOperand GlobalObjectOperand() { 1575 inline MemOperand NativeContextMemOperand() {
1576 return ContextOperand(cp, Context::GLOBAL_OBJECT_INDEX); 1576 return ContextMemOperand(cp, Context::NATIVE_CONTEXT_INDEX);
1577 } 1577 }
1578 1578
1579 1579
1580 #ifdef GENERATED_CODE_COVERAGE 1580 #ifdef GENERATED_CODE_COVERAGE
1581 #define CODE_COVERAGE_STRINGIFY(x) #x 1581 #define CODE_COVERAGE_STRINGIFY(x) #x
1582 #define CODE_COVERAGE_TOSTRING(x) CODE_COVERAGE_STRINGIFY(x) 1582 #define CODE_COVERAGE_TOSTRING(x) CODE_COVERAGE_STRINGIFY(x)
1583 #define __FILE_LINE__ __FILE__ ":" CODE_COVERAGE_TOSTRING(__LINE__) 1583 #define __FILE_LINE__ __FILE__ ":" CODE_COVERAGE_TOSTRING(__LINE__)
1584 #define ACCESS_MASM(masm) \ 1584 #define ACCESS_MASM(masm) \
1585 masm->stop(__FILE_LINE__); \ 1585 masm->stop(__FILE_LINE__); \
1586 masm-> 1586 masm->
1587 #else 1587 #else
1588 #define ACCESS_MASM(masm) masm-> 1588 #define ACCESS_MASM(masm) masm->
1589 #endif 1589 #endif
1590 } // namespace internal 1590 } // namespace internal
1591 } // namespace v8 1591 } // namespace v8
1592 1592
1593 #endif // V8_PPC_MACRO_ASSEMBLER_PPC_H_ 1593 #endif // V8_PPC_MACRO_ASSEMBLER_PPC_H_
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