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244 lines
8.4 KiB
244 lines
8.4 KiB
/*
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* Copyright (C) 2015 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 SIMPLE_PERF_RECORD_FILE_H_
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#define SIMPLE_PERF_RECORD_FILE_H_
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#include <stdio.h>
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#include <functional>
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#include <map>
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#include <memory>
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#include <optional>
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#include <string>
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#include <unordered_map>
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#include <vector>
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#include <android-base/macros.h>
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#include "dso.h"
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#include "event_attr.h"
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#include "event_type.h"
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#include "perf_event.h"
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#include "record.h"
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#include "record_file_format.h"
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#include "thread_tree.h"
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namespace simpleperf {
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struct FileFeature {
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std::string path;
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DsoType type;
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uint64_t min_vaddr;
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uint64_t file_offset_of_min_vaddr;
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std::vector<Symbol> symbols; // used for reading symbols
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std::vector<const Symbol*> symbol_ptrs; // used for writing symbols
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std::vector<uint64_t> dex_file_offsets;
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FileFeature() {}
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DISALLOW_COPY_AND_ASSIGN(FileFeature);
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};
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struct DebugUnwindFile {
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std::string path;
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uint64_t size;
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};
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using DebugUnwindFeature = std::vector<DebugUnwindFile>;
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// RecordFileWriter writes to a perf record file, like perf.data.
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// User should call RecordFileWriter::Close() to finish writing the file, otherwise the file will
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// be removed in RecordFileWriter::~RecordFileWriter().
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class RecordFileWriter {
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public:
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static std::unique_ptr<RecordFileWriter> CreateInstance(const std::string& filename);
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// If own_fp = true, close fp when we finish writing.
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RecordFileWriter(const std::string& filename, FILE* fp, bool own_fp);
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~RecordFileWriter();
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bool WriteAttrSection(const std::vector<EventAttrWithId>& attr_ids);
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bool WriteRecord(const Record& record);
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bool WriteData(const void* buf, size_t len);
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uint64_t GetDataSectionSize() const { return data_section_size_; }
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bool ReadDataSection(const std::function<void(const Record*)>& callback);
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bool BeginWriteFeatures(size_t feature_count);
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bool WriteBuildIdFeature(const std::vector<BuildIdRecord>& build_id_records);
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bool WriteFeatureString(int feature, const std::string& s);
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bool WriteCmdlineFeature(const std::vector<std::string>& cmdline);
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bool WriteBranchStackFeature();
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bool WriteAuxTraceFeature(const std::vector<uint64_t>& auxtrace_offset);
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bool WriteFileFeatures(const std::vector<Dso*>& dsos);
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bool WriteFileFeature(const FileFeature& file);
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bool WriteMetaInfoFeature(const std::unordered_map<std::string, std::string>& info_map);
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bool WriteDebugUnwindFeature(const DebugUnwindFeature& debug_unwind);
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bool WriteFeature(int feature, const char* data, size_t size);
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bool EndWriteFeatures();
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bool Close();
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private:
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void GetHitModulesInBuffer(const char* p, const char* end,
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std::vector<std::string>* hit_kernel_modules,
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std::vector<std::string>* hit_user_files);
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bool WriteFileHeader();
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bool Write(const void* buf, size_t len);
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bool Read(void* buf, size_t len);
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bool GetFilePos(uint64_t* file_pos);
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bool WriteStringWithLength(const std::string& s);
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bool WriteFeatureBegin(int feature);
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bool WriteFeatureEnd(int feature);
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const std::string filename_;
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FILE* record_fp_;
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bool own_fp_;
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perf_event_attr event_attr_;
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uint64_t attr_section_offset_;
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uint64_t attr_section_size_;
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uint64_t data_section_offset_;
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uint64_t data_section_size_;
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uint64_t feature_section_offset_;
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std::map<int, PerfFileFormat::SectionDesc> features_;
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size_t feature_count_;
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DISALLOW_COPY_AND_ASSIGN(RecordFileWriter);
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};
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// RecordFileReader read contents from a perf record file, like perf.data.
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class RecordFileReader {
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public:
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static std::unique_ptr<RecordFileReader> CreateInstance(const std::string& filename);
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~RecordFileReader();
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const PerfFileFormat::FileHeader& FileHeader() const { return header_; }
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std::vector<EventAttrWithId> AttrSection() const {
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std::vector<EventAttrWithId> result(file_attrs_.size());
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for (size_t i = 0; i < file_attrs_.size(); ++i) {
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result[i].attr = &file_attrs_[i].attr;
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result[i].ids = event_ids_for_file_attrs_[i];
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}
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return result;
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}
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const std::unordered_map<uint64_t, size_t>& EventIdMap() const { return event_id_to_attr_map_; }
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const std::map<int, PerfFileFormat::SectionDesc>& FeatureSectionDescriptors() const {
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return feature_section_descriptors_;
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}
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bool HasFeature(int feature) const {
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return feature_section_descriptors_.find(feature) != feature_section_descriptors_.end();
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}
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bool ReadFeatureSection(int feature, std::vector<char>* data);
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bool ReadFeatureSection(int feature, std::string* data);
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// There are two ways to read records in data section: one is by calling
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// ReadDataSection(), and [callback] is called for each Record. the other
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// is by calling ReadRecord() in a loop.
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// If sorted is true, sort records before passing them to callback function.
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bool ReadDataSection(const std::function<bool(std::unique_ptr<Record>)>& callback);
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bool ReadAtOffset(uint64_t offset, void* buf, size_t len);
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// Read next record. If read successfully, set [record] and return true.
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// If there is no more records, set [record] to nullptr and return true.
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// Otherwise return false.
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bool ReadRecord(std::unique_ptr<Record>& record);
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size_t GetAttrIndexOfRecord(const Record* record);
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std::vector<std::string> ReadCmdlineFeature();
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std::vector<BuildIdRecord> ReadBuildIdFeature();
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std::string ReadFeatureString(int feature);
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std::vector<uint64_t> ReadAuxTraceFeature();
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// File feature section contains many file information. This function reads
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// one file information located at [read_pos]. [read_pos] is 0 at the first
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// call, and is updated to point to the next file information. Return true
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// if read successfully, and return false if there is no more file
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// information.
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bool ReadFileFeature(size_t& read_pos, FileFeature* file);
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const std::unordered_map<std::string, std::string>& GetMetaInfoFeature() { return meta_info_; }
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std::optional<DebugUnwindFeature> ReadDebugUnwindFeature();
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void LoadBuildIdAndFileFeatures(ThreadTree& thread_tree);
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bool ReadAuxData(uint32_t cpu, uint64_t aux_offset, void* buf, size_t size);
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bool Close();
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// For testing only.
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std::vector<std::unique_ptr<Record>> DataSection();
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private:
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RecordFileReader(const std::string& filename, FILE* fp);
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bool ReadHeader();
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bool ReadAttrSection();
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bool ReadIdsForAttr(const PerfFileFormat::FileAttr& attr, std::vector<uint64_t>* ids);
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bool ReadFeatureSectionDescriptors();
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bool ReadMetaInfoFeature();
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void UseRecordingEnvironment();
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std::unique_ptr<Record> ReadRecord();
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bool Read(void* buf, size_t len);
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void ProcessEventIdRecord(const EventIdRecord& r);
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bool BuildAuxDataLocation();
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const std::string filename_;
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FILE* record_fp_;
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PerfFileFormat::FileHeader header_;
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std::vector<PerfFileFormat::FileAttr> file_attrs_;
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std::vector<std::vector<uint64_t>> event_ids_for_file_attrs_;
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std::unordered_map<uint64_t, size_t> event_id_to_attr_map_;
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std::map<int, PerfFileFormat::SectionDesc> feature_section_descriptors_;
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size_t event_id_pos_in_sample_records_;
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size_t event_id_reverse_pos_in_non_sample_records_;
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uint64_t read_record_size_;
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std::unordered_map<std::string, std::string> meta_info_;
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std::unique_ptr<ScopedCurrentArch> scoped_arch_;
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std::unique_ptr<ScopedEventTypes> scoped_event_types_;
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struct AuxDataLocation {
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uint64_t aux_offset;
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uint64_t aux_size;
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uint64_t file_offset;
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AuxDataLocation(uint64_t aux_offset, uint64_t aux_size, uint64_t file_offset)
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: aux_offset(aux_offset), aux_size(aux_size), file_offset(file_offset) {}
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};
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// It maps from a cpu id to the locations (file offsets in perf.data) of aux data received from
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// that cpu's aux buffer. It is used to locate aux data in perf.data.
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std::unordered_map<uint32_t, std::vector<AuxDataLocation>> aux_data_location_;
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DISALLOW_COPY_AND_ASSIGN(RecordFileReader);
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};
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bool IsPerfDataFile(const std::string& filename);
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} // namespace simpleperf
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#endif // SIMPLE_PERF_RECORD_FILE_H_
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