f4fe42c280
which have different implementations of 'operator=' and 'operator^='. In the case of FINAL_OBJECT_IMPLEMENTATION we do not do the vtable setting in these methods (Note the |= operator functionality is now subsumed into the new implementation of "operator^=") Review URL: https://codereview.chromium.org//12052033 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@17491 260f80e4-7a28-3924-810f-c04153c831b5
198 lines
5.4 KiB
C++
198 lines
5.4 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "vm/globals.h" // Needed here to get TARGET_ARCH_IA32.
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#if defined(TARGET_ARCH_IA32)
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#include "vm/assembler.h"
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#include "vm/code_patcher.h"
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#include "vm/cpu.h"
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#include "vm/dart_entry.h"
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#include "vm/instructions.h"
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#include "vm/object.h"
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#include "vm/raw_object.h"
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namespace dart {
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// The pattern of a Dart instance call is:
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// 1: mov ECX, immediate 1
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// 2: mov EDX, immediate 2
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// 3: call target_address
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// <- return_address
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class DartCallPattern : public ValueObject {
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public:
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explicit DartCallPattern(uword return_address)
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: start_(return_address - (kNumInstructions * kInstructionSize)) {
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ASSERT(IsValid(return_address));
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ASSERT(kInstructionSize == Assembler::kCallExternalLabelSize);
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}
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static bool IsValid(uword return_address) {
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uint8_t* code_bytes =
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reinterpret_cast<uint8_t*>(
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return_address - (kNumInstructions * kInstructionSize));
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return (code_bytes[0] == 0xB9) &&
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(code_bytes[kInstructionSize] == 0xBA) &&
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(code_bytes[2 * kInstructionSize] == 0xE8);
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}
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uword target() const {
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const uword offset = *reinterpret_cast<uword*>(call_address() + 1);
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return return_address() + offset;
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}
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void set_target(uword target) const {
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uword* target_addr = reinterpret_cast<uword*>(call_address() + 1);
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uword offset = target - return_address();
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*target_addr = offset;
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CPU::FlushICache(call_address(), kInstructionSize);
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}
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RawObject* immediate_one() const {
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return *reinterpret_cast<RawObject**>(start_ + 1);
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}
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RawObject* immediate_two() const {
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return *reinterpret_cast<RawObject**>(start_ + kInstructionSize + 1);
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}
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static const int kNumInstructions = 3;
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static const int kInstructionSize = 5; // All instructions have same length.
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private:
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uword return_address() const {
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return start_ + kNumInstructions * kInstructionSize;
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}
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uword call_address() const {
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return start_ + 2 * kInstructionSize;
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}
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uword start_;
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DISALLOW_IMPLICIT_CONSTRUCTORS(DartCallPattern);
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};
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// The expected pattern of a dart instance call:
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// mov ECX, ic-data
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// mov EDX, arguments_descriptor_array
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// call target_address
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// <- return address
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class InstanceCall : public DartCallPattern {
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public:
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explicit InstanceCall(uword return_address)
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: DartCallPattern(return_address) {}
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RawObject* ic_data() const { return immediate_one(); }
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RawObject* arguments_descriptor() const { return immediate_two(); }
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private:
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DISALLOW_IMPLICIT_CONSTRUCTORS(InstanceCall);
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};
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// The expected pattern of a dart static call:
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// mov EDX, arguments_descriptor_array
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// call target_address
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// <- return address
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class StaticCall : public ValueObject {
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public:
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explicit StaticCall(uword return_address)
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: start_(return_address - (kNumInstructions * kInstructionSize)) {
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ASSERT(IsValid(return_address));
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ASSERT(kInstructionSize == Assembler::kCallExternalLabelSize);
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}
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static bool IsValid(uword return_address) {
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uint8_t* code_bytes =
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reinterpret_cast<uint8_t*>(
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return_address - (kNumInstructions * kInstructionSize));
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return (code_bytes[0] == 0xBA) &&
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(code_bytes[1 * kInstructionSize] == 0xE8);
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}
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uword target() const {
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const uword offset = *reinterpret_cast<uword*>(call_address() + 1);
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return return_address() + offset;
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}
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void set_target(uword target) const {
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uword* target_addr = reinterpret_cast<uword*>(call_address() + 1);
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uword offset = target - return_address();
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*target_addr = offset;
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CPU::FlushICache(call_address(), kInstructionSize);
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}
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static const int kNumInstructions = 2;
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static const int kInstructionSize = 5; // All instructions have same length.
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private:
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uword return_address() const {
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return start_ + kNumInstructions * kInstructionSize;
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}
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uword call_address() const {
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return start_ + 1 * kInstructionSize;
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}
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uword start_;
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DISALLOW_IMPLICIT_CONSTRUCTORS(StaticCall);
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};
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uword CodePatcher::GetStaticCallTargetAt(uword return_address) {
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StaticCall call(return_address);
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return call.target();
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}
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void CodePatcher::PatchStaticCallAt(uword return_address, uword new_target) {
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StaticCall call(return_address);
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call.set_target(new_target);
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}
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void CodePatcher::PatchInstanceCallAt(uword return_address, uword new_target) {
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InstanceCall call(return_address);
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call.set_target(new_target);
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}
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void CodePatcher::InsertCallAt(uword start, uword target) {
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*reinterpret_cast<uint8_t*>(start) = 0xE8;
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CallPattern call(start);
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call.SetTargetAddress(target);
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CPU::FlushICache(start, CallPattern::InstructionLength());
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}
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bool CodePatcher::IsDartCall(uword return_address) {
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return DartCallPattern::IsValid(return_address);
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}
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uword CodePatcher::GetInstanceCallAt(uword return_address,
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ICData* ic_data,
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Array* arguments_descriptor) {
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InstanceCall call(return_address);
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if (ic_data != NULL) {
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*ic_data ^= call.ic_data();
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}
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if (arguments_descriptor != NULL) {
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*arguments_descriptor ^= call.arguments_descriptor();
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}
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return call.target();
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}
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intptr_t CodePatcher::InstanceCallSizeInBytes() {
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return DartCallPattern::kNumInstructions * DartCallPattern::kInstructionSize;
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}
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} // namespace dart
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#endif // defined TARGET_ARCH_IA32
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