312 lines
11 KiB
C++
312 lines
11 KiB
C++
/*
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* Copyright (C) 2011 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef ART_COMPILER_COMPILED_METHOD_H_
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#define ART_COMPILER_COMPILED_METHOD_H_
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#include <memory>
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#include <string>
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#include <vector>
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#include "instruction_set.h"
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#include "utils.h"
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#include "utils/array_ref.h"
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#include "utils/swap_space.h"
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namespace llvm {
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class Function;
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} // namespace llvm
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namespace art {
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class CompilerDriver;
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class CompiledCode {
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public:
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// For Quick to supply an code blob
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CompiledCode(CompilerDriver* compiler_driver, InstructionSet instruction_set,
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const ArrayRef<const uint8_t>& quick_code);
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// For Portable to supply an ELF object
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CompiledCode(CompilerDriver* compiler_driver, InstructionSet instruction_set,
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const std::string& elf_object, const std::string &symbol);
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InstructionSet GetInstructionSet() const {
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return instruction_set_;
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}
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const SwapVector<uint8_t>* GetPortableCode() const {
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return portable_code_;
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}
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const SwapVector<uint8_t>* GetQuickCode() const {
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return quick_code_;
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}
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void SetCode(const ArrayRef<const uint8_t>* quick_code,
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const ArrayRef<const uint8_t>* portable_code);
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bool operator==(const CompiledCode& rhs) const;
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// To align an offset from a page-aligned value to make it suitable
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// for code storage. For example on ARM, to ensure that PC relative
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// valu computations work out as expected.
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uint32_t AlignCode(uint32_t offset) const;
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static uint32_t AlignCode(uint32_t offset, InstructionSet instruction_set);
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// returns the difference between the code address and a usable PC.
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// mainly to cope with kThumb2 where the lower bit must be set.
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size_t CodeDelta() const;
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static size_t CodeDelta(InstructionSet instruction_set);
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// Returns a pointer suitable for invoking the code at the argument
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// code_pointer address. Mainly to cope with kThumb2 where the
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// lower bit must be set to indicate Thumb mode.
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static const void* CodePointer(const void* code_pointer,
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InstructionSet instruction_set);
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const std::string& GetSymbol() const;
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const std::vector<uint32_t>& GetOatdataOffsetsToCompliledCodeOffset() const;
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void AddOatdataOffsetToCompliledCodeOffset(uint32_t offset);
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private:
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CompilerDriver* const compiler_driver_;
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const InstructionSet instruction_set_;
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// The ELF image for portable.
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SwapVector<uint8_t>* portable_code_;
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// Used to store the PIC code for Quick.
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SwapVector<uint8_t>* quick_code_;
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// Used for the Portable ELF symbol name.
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const std::string symbol_;
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// There are offsets from the oatdata symbol to where the offset to
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// the compiled method will be found. These are computed by the
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// OatWriter and then used by the ElfWriter to add relocations so
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// that MCLinker can update the values to the location in the linked .so.
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std::vector<uint32_t> oatdata_offsets_to_compiled_code_offset_;
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};
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class SrcMapElem {
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public:
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uint32_t from_;
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int32_t to_;
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explicit operator int64_t() const {
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return (static_cast<int64_t>(to_) << 32) | from_;
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}
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bool operator<(const SrcMapElem& sme) const {
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return int64_t(*this) < int64_t(sme);
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}
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bool operator==(const SrcMapElem& sme) const {
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return int64_t(*this) == int64_t(sme);
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}
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explicit operator uint8_t() const {
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return static_cast<uint8_t>(from_ + to_);
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}
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};
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template <class Allocator>
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class SrcMap FINAL : public std::vector<SrcMapElem, Allocator> {
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public:
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using std::vector<SrcMapElem, Allocator>::begin;
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using typename std::vector<SrcMapElem, Allocator>::const_iterator;
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using std::vector<SrcMapElem, Allocator>::empty;
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using std::vector<SrcMapElem, Allocator>::end;
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using std::vector<SrcMapElem, Allocator>::resize;
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using std::vector<SrcMapElem, Allocator>::shrink_to_fit;
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using std::vector<SrcMapElem, Allocator>::size;
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explicit SrcMap() {}
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template <class InputIt>
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SrcMap(InputIt first, InputIt last, const Allocator& alloc)
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: std::vector<SrcMapElem, Allocator>(first, last, alloc) {}
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void SortByFrom() {
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std::sort(begin(), end(), [] (const SrcMapElem& lhs, const SrcMapElem& rhs) -> bool {
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return lhs.from_ < rhs.from_;
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});
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}
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const_iterator FindByTo(int32_t to) const {
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return std::lower_bound(begin(), end(), SrcMapElem({0, to}));
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}
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SrcMap& Arrange() {
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if (!empty()) {
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std::sort(begin(), end());
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resize(std::unique(begin(), end()) - begin());
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shrink_to_fit();
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}
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return *this;
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}
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void DeltaFormat(const SrcMapElem& start, uint32_t highest_pc) {
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// Convert from abs values to deltas.
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if (!empty()) {
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SortByFrom();
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// TODO: one PC can be mapped to several Java src lines.
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// do we want such a one-to-many correspondence?
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// get rid of the highest values
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size_t i = size() - 1;
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for (; i > 0 ; i--) {
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if ((*this)[i].from_ < highest_pc) {
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break;
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}
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}
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this->resize(i + 1);
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for (i = size(); --i >= 1; ) {
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(*this)[i].from_ -= (*this)[i-1].from_;
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(*this)[i].to_ -= (*this)[i-1].to_;
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}
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DCHECK((*this)[0].from_ >= start.from_);
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(*this)[0].from_ -= start.from_;
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(*this)[0].to_ -= start.to_;
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}
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}
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};
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using DefaultSrcMap = SrcMap<std::allocator<SrcMapElem>>;
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using SwapSrcMap = SrcMap<SwapAllocator<SrcMapElem>>;
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class CompiledMethod FINAL : public CompiledCode {
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public:
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// Constructs a CompiledMethod for the non-LLVM compilers.
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CompiledMethod(CompilerDriver* driver,
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InstructionSet instruction_set,
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const ArrayRef<const uint8_t>& quick_code,
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const size_t frame_size_in_bytes,
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const uint32_t core_spill_mask,
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const uint32_t fp_spill_mask,
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DefaultSrcMap* src_mapping_table,
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const ArrayRef<const uint8_t>& mapping_table,
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const ArrayRef<const uint8_t>& vmap_table,
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const ArrayRef<const uint8_t>& native_gc_map,
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const ArrayRef<const uint8_t>& cfi_info);
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// Constructs a CompiledMethod for the QuickJniCompiler.
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CompiledMethod(CompilerDriver* driver,
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InstructionSet instruction_set,
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const ArrayRef<const uint8_t>& quick_code,
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const size_t frame_size_in_bytes,
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const uint32_t core_spill_mask,
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const uint32_t fp_spill_mask,
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const ArrayRef<const uint8_t>& cfi_info);
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// Constructs a CompiledMethod for the Portable compiler.
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CompiledMethod(CompilerDriver* driver, InstructionSet instruction_set, const std::string& code,
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const ArrayRef<const uint8_t>& gc_map, const std::string& symbol);
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// Constructs a CompiledMethod for the Portable JniCompiler.
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CompiledMethod(CompilerDriver* driver, InstructionSet instruction_set, const std::string& code,
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const std::string& symbol);
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~CompiledMethod() {}
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static CompiledMethod* SwapAllocCompiledMethod(CompilerDriver* driver,
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InstructionSet instruction_set,
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const ArrayRef<const uint8_t>& quick_code,
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const size_t frame_size_in_bytes,
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const uint32_t core_spill_mask,
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const uint32_t fp_spill_mask,
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DefaultSrcMap* src_mapping_table,
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const ArrayRef<const uint8_t>& mapping_table,
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const ArrayRef<const uint8_t>& vmap_table,
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const ArrayRef<const uint8_t>& native_gc_map,
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const ArrayRef<const uint8_t>& cfi_info);
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static CompiledMethod* SwapAllocCompiledMethod(CompilerDriver* driver,
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InstructionSet instruction_set,
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const ArrayRef<const uint8_t>& quick_code,
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const size_t frame_size_in_bytes,
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const uint32_t core_spill_mask,
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const uint32_t fp_spill_mask,
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const ArrayRef<const uint8_t>& cfi_info);
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static void ReleaseSwapAllocatedCompiledMethod(CompilerDriver* driver, CompiledMethod* m);
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size_t GetFrameSizeInBytes() const {
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return frame_size_in_bytes_;
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}
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uint32_t GetCoreSpillMask() const {
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return core_spill_mask_;
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}
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uint32_t GetFpSpillMask() const {
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return fp_spill_mask_;
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}
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const SwapSrcMap& GetSrcMappingTable() const {
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DCHECK(src_mapping_table_ != nullptr);
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return *src_mapping_table_;
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}
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const SwapVector<uint8_t>& GetMappingTable() const {
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DCHECK(mapping_table_ != nullptr);
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return *mapping_table_;
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}
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const SwapVector<uint8_t>& GetVmapTable() const {
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DCHECK(vmap_table_ != nullptr);
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return *vmap_table_;
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}
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const SwapVector<uint8_t>& GetGcMap() const {
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DCHECK(gc_map_ != nullptr);
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return *gc_map_;
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}
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const SwapVector<uint8_t>* GetCFIInfo() const {
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return cfi_info_;
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}
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private:
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// For quick code, the size of the activation used by the code.
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const size_t frame_size_in_bytes_;
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// For quick code, a bit mask describing spilled GPR callee-save registers.
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const uint32_t core_spill_mask_;
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// For quick code, a bit mask describing spilled FPR callee-save registers.
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const uint32_t fp_spill_mask_;
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// For quick code, a set of pairs (PC, Line) mapping from native PC offset to Java line
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SwapSrcMap* src_mapping_table_;
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// For quick code, a uleb128 encoded map from native PC offset to dex PC aswell as dex PC to
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// native PC offset. Size prefixed.
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SwapVector<uint8_t>* mapping_table_;
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// For quick code, a uleb128 encoded map from GPR/FPR register to dex register. Size prefixed.
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SwapVector<uint8_t>* vmap_table_;
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// For quick code, a map keyed by native PC indices to bitmaps describing what dalvik registers
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// are live. For portable code, the key is a dalvik PC.
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SwapVector<uint8_t>* gc_map_;
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// For quick code, a FDE entry for the debug_frame section.
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SwapVector<uint8_t>* cfi_info_;
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};
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} // namespace art
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#endif // ART_COMPILER_COMPILED_METHOD_H_
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