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782d851e3a
TEST=ubsan Change-Id: I1297e9096875361cd8a4c302d128395e372c7b80 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/256244 Reviewed-by: Alexander Aprelev <aam@google.com> Commit-Queue: Ryan Macnak <rmacnak@google.com>
196 lines
6.8 KiB
C++
196 lines
6.8 KiB
C++
// Copyright (c) 2021, 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_RISCV.
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#if defined(TARGET_ARCH_RISCV32) || defined(TARGET_ARCH_RISCV64)
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#include "vm/code_patcher.h"
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#include "vm/cpu.h"
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#include "vm/instructions.h"
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#include "vm/object.h"
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namespace dart {
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class PoolPointerCall : public ValueObject {
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public:
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PoolPointerCall(uword pc, const Code& code)
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: end_(pc), object_pool_(ObjectPool::Handle(code.GetObjectPool())) {
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ASSERT(*reinterpret_cast<uint16_t*>(end_ - 2) == 0x9082); // jalr ra
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uint32_t load_entry = LoadUnaligned(reinterpret_cast<uint32_t*>(end_ - 6));
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#if XLEN == 32
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ASSERT((load_entry == 0x00362083) || // lw ra, entry(code)
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(load_entry == 0x00b62083)); // lw ra, unchecked_entry(code)
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#elif XLEN == 64
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ASSERT((load_entry == 0x00763083) || // ld ra, entry(code)
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(load_entry = 0x01763083)); // ld ra, unchecked_entry(code)
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#endif
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InstructionPattern::DecodeLoadWordFromPool(end_ - 6, ®_, &index_);
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}
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intptr_t pp_index() const { return index_; }
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CodePtr Target() const {
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return static_cast<CodePtr>(object_pool_.ObjectAt(pp_index()));
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}
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void SetTarget(const Code& target) const {
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object_pool_.SetObjectAt(pp_index(), target);
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// No need to flush the instruction cache, since the code is not modified.
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}
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private:
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uword end_;
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const ObjectPool& object_pool_;
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Register reg_;
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intptr_t index_;
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DISALLOW_IMPLICIT_CONSTRUCTORS(PoolPointerCall);
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};
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CodePtr CodePatcher::GetStaticCallTargetAt(uword return_address,
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const Code& code) {
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ASSERT(code.ContainsInstructionAt(return_address));
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PoolPointerCall call(return_address, code);
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return call.Target();
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}
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void CodePatcher::PatchStaticCallAt(uword return_address,
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const Code& code,
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const Code& new_target) {
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PatchPoolPointerCallAt(return_address, code, new_target);
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}
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void CodePatcher::PatchPoolPointerCallAt(uword return_address,
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const Code& code,
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const Code& new_target) {
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ASSERT(code.ContainsInstructionAt(return_address));
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PoolPointerCall call(return_address, code);
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call.SetTarget(new_target);
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}
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void CodePatcher::InsertDeoptimizationCallAt(uword start) {
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UNREACHABLE();
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}
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CodePtr CodePatcher::GetInstanceCallAt(uword return_address,
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const Code& caller_code,
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Object* data) {
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ASSERT(caller_code.ContainsInstructionAt(return_address));
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ICCallPattern call(return_address, caller_code);
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if (data != NULL) {
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*data = call.Data();
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}
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return call.TargetCode();
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}
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void CodePatcher::PatchInstanceCallAt(uword return_address,
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const Code& caller_code,
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const Object& data,
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const Code& target) {
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auto thread = Thread::Current();
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thread->isolate_group()->RunWithStoppedMutators([&]() {
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PatchInstanceCallAtWithMutatorsStopped(thread, return_address, caller_code,
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data, target);
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});
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}
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void CodePatcher::PatchInstanceCallAtWithMutatorsStopped(
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Thread* thread,
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uword return_address,
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const Code& caller_code,
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const Object& data,
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const Code& target) {
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ASSERT(caller_code.ContainsInstructionAt(return_address));
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ICCallPattern call(return_address, caller_code);
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call.SetData(data);
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call.SetTargetCode(target);
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}
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FunctionPtr CodePatcher::GetUnoptimizedStaticCallAt(uword return_address,
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const Code& code,
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ICData* ic_data_result) {
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ASSERT(code.ContainsInstructionAt(return_address));
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ICCallPattern static_call(return_address, code);
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ICData& ic_data = ICData::Handle();
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ic_data ^= static_call.Data();
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if (ic_data_result != NULL) {
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*ic_data_result = ic_data.ptr();
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}
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return ic_data.GetTargetAt(0);
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}
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void CodePatcher::PatchSwitchableCallAt(uword return_address,
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const Code& caller_code,
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const Object& data,
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const Code& target) {
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auto thread = Thread::Current();
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// Ensure all threads are suspended as we update data and target pair.
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thread->isolate_group()->RunWithStoppedMutators([&]() {
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PatchSwitchableCallAtWithMutatorsStopped(thread, return_address,
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caller_code, data, target);
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});
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}
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void CodePatcher::PatchSwitchableCallAtWithMutatorsStopped(
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Thread* thread,
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uword return_address,
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const Code& caller_code,
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const Object& data,
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const Code& target) {
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if (FLAG_precompiled_mode) {
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BareSwitchableCallPattern call(return_address);
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call.SetData(data);
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call.SetTarget(target);
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} else {
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SwitchableCallPattern call(return_address, caller_code);
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call.SetData(data);
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call.SetTarget(target);
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}
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}
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uword CodePatcher::GetSwitchableCallTargetEntryAt(uword return_address,
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const Code& caller_code) {
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if (FLAG_precompiled_mode) {
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BareSwitchableCallPattern call(return_address);
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return call.target_entry();
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} else {
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SwitchableCallPattern call(return_address, caller_code);
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return call.target_entry();
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}
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}
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ObjectPtr CodePatcher::GetSwitchableCallDataAt(uword return_address,
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const Code& caller_code) {
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if (FLAG_precompiled_mode) {
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BareSwitchableCallPattern call(return_address);
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return call.data();
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} else {
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SwitchableCallPattern call(return_address, caller_code);
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return call.data();
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}
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}
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void CodePatcher::PatchNativeCallAt(uword return_address,
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const Code& caller_code,
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NativeFunction target,
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const Code& trampoline) {
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Thread::Current()->isolate_group()->RunWithStoppedMutators([&]() {
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ASSERT(caller_code.ContainsInstructionAt(return_address));
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NativeCallPattern call(return_address, caller_code);
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call.set_target(trampoline);
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call.set_native_function(target);
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});
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}
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CodePtr CodePatcher::GetNativeCallAt(uword return_address,
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const Code& caller_code,
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NativeFunction* target) {
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ASSERT(caller_code.ContainsInstructionAt(return_address));
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NativeCallPattern call(return_address, caller_code);
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*target = call.native_function();
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return call.target();
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}
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} // namespace dart
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#endif // defined TARGET_ARCH_RISCV
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