296 lines
11 KiB
C++
296 lines
11 KiB
C++
// Copyright (c) 2012 The Chromium OS Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef CHROMIUMOS_WIDE_PROFILING_PERF_READER_H_
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#define CHROMIUMOS_WIDE_PROFILING_PERF_READER_H_
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#include <stdint.h>
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#include <map>
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#include <set>
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#include <string>
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#include <type_traits>
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#include <vector>
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#include "base/macros.h"
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#include "perf_internals.h"
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#include "quipper_string.h"
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#include "perf_utils.h"
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namespace quipper {
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struct PerfFileAttr {
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struct perf_event_attr attr;
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std::vector<u64> ids;
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};
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// Based on code in tools/perf/util/header.c, the metadata are of the following
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// formats:
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// Based on kernel/perf_internals.h
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const size_t kBuildIDArraySize = 20;
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const size_t kBuildIDStringLength = kBuildIDArraySize * 2;
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struct CStringWithLength {
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u32 len;
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string str;
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};
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struct PerfStringMetadata {
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u32 type;
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std::vector<CStringWithLength> data;
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};
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struct PerfUint32Metadata {
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u32 type;
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std::vector<uint32_t> data;
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};
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struct PerfUint64Metadata {
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u32 type;
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std::vector<uint64_t> data;
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};
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typedef u32 num_siblings_type;
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struct PerfCPUTopologyMetadata {
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std::vector<CStringWithLength> core_siblings;
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std::vector<CStringWithLength> thread_siblings;
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};
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struct PerfNodeTopologyMetadata {
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u32 id;
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u64 total_memory;
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u64 free_memory;
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CStringWithLength cpu_list;
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};
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struct BufferWithSize;
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struct ConstBufferWithSize;
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class PerfReader {
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public:
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PerfReader() : sample_type_(0),
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read_format_(0),
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is_cross_endian_(0) {}
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~PerfReader();
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// Makes |build_id| fit the perf format, by either truncating it or adding
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// zeros to the end so that it has length kBuildIDStringLength.
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static void PerfizeBuildIDString(string* build_id);
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// Changes |build_id| to the best guess of what the build id was before going
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// through perf. Specifically, it keeps removing trailing sequences of four
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// zero bytes (or eight '0' characters) until there are no more such
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// sequences, or the build id would be empty if the process were repeated.
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static void UnperfizeBuildIDString(string* build_id);
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bool ReadFile(const string& filename);
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bool ReadFromVector(const std::vector<char>& data);
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bool ReadFromString(const string& str);
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bool ReadFromPointer(const char* perf_data, size_t size);
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// TODO(rohinmshah): GetSize should not use RegenerateHeader (so that it can
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// be const). Ideally, RegenerateHeader would be deleted and instead of
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// having out_header_ as an instance variable, it would be computed
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// dynamically whenever needed.
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// Returns the size in bytes that would be written by any of the methods that
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// write the entire perf data file (WriteFile, WriteToPointer, etc).
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size_t GetSize();
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bool WriteFile(const string& filename);
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bool WriteToVector(std::vector<char>* data);
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bool WriteToString(string* str);
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bool WriteToPointer(char* buffer, size_t size);
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bool RegenerateHeader();
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// Stores the mapping from filenames to build ids in build_id_events_.
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// Returns true on success.
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// Note: If |filenames_to_build_ids| contains a mapping for a filename for
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// which there is already a build_id_event in build_id_events_, a duplicate
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// build_id_event will be created, and the old build_id_event will NOT be
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// deleted.
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bool InjectBuildIDs(const std::map<string, string>& filenames_to_build_ids);
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// Replaces existing filenames with filenames from |build_ids_to_filenames|
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// by joining on build ids. If a build id in |build_ids_to_filenames| is not
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// present in this parser, it is ignored.
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bool Localize(const std::map<string, string>& build_ids_to_filenames);
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// Same as Localize, but joins on filenames instead of build ids.
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bool LocalizeUsingFilenames(const std::map<string, string>& filename_map);
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// Stores a list of unique filenames found in MMAP/MMAP2 events into
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// |filenames|. Any existing data in |filenames| will be lost.
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void GetFilenames(std::vector<string>* filenames) const;
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void GetFilenamesAsSet(std::set<string>* filenames) const;
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// Uses build id events to populate |filenames_to_build_ids|.
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// Any existing data in |filenames_to_build_ids| will be lost.
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// Note: A filename returned by GetFilenames need not be present in this map,
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// since there may be no build id event corresponding to the MMAP/MMAP2.
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void GetFilenamesToBuildIDs(
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std::map<string, string>* filenames_to_build_ids) const;
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static bool IsSupportedEventType(uint32_t type);
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// If a program using PerfReader calls events(), it could work with the
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// resulting events by importing kernel/perf_internals.h. This would also
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// apply to other forms of data (attributes, event types, build ids, etc.)
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// However, there is no easy way to work with the sample info within events.
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// The following two methods have been added for this purpose.
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// Extracts from a perf event |event| info about the perf sample that
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// contains the event. Stores info in |sample|.
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bool ReadPerfSampleInfo(const event_t& event,
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struct perf_sample* sample) const;
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// Writes |sample| info back to a perf event |event|.
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bool WritePerfSampleInfo(const perf_sample& sample,
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event_t* event) const;
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// Accessor funcs.
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const std::vector<PerfFileAttr>& attrs() const {
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return attrs_;
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}
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const std::vector<malloced_unique_ptr<event_t>>& events() const {
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return events_;
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}
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const std::vector<perf_trace_event_type>& event_types() const {
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return event_types_;
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}
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const std::vector<build_id_event*>& build_id_events() const {
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return build_id_events_;
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}
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const std::vector<char>& tracing_data() const {
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return tracing_data_;
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}
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protected:
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bool ReadHeader(const ConstBufferWithSize& data);
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bool ReadAttrs(const ConstBufferWithSize& data);
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bool ReadAttr(const ConstBufferWithSize& data, size_t* offset);
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bool ReadEventAttr(const ConstBufferWithSize& data, size_t* offset,
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perf_event_attr* attr);
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bool ReadUniqueIDs(const ConstBufferWithSize& data, size_t num_ids,
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size_t* offset, std::vector<u64>* ids);
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bool ReadEventTypes(const ConstBufferWithSize& data);
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bool ReadEventType(const ConstBufferWithSize& data, size_t* offset);
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bool ReadData(const ConstBufferWithSize& data);
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// Reads metadata in normal mode.
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bool ReadMetadata(const ConstBufferWithSize& data);
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bool ReadTracingMetadata(const ConstBufferWithSize& data,
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size_t offset, size_t size);
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bool ReadBuildIDMetadata(const ConstBufferWithSize& data, u32 type,
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size_t offset, size_t size);
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bool ReadStringMetadata(const ConstBufferWithSize& data, u32 type,
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size_t offset, size_t size);
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bool ReadUint32Metadata(const ConstBufferWithSize& data, u32 type,
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size_t offset, size_t size);
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bool ReadUint64Metadata(const ConstBufferWithSize& data, u32 type,
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size_t offset, size_t size);
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bool ReadCPUTopologyMetadata(const ConstBufferWithSize& data, u32 type,
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size_t offset, size_t size);
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bool ReadNUMATopologyMetadata(const ConstBufferWithSize& data, u32 type,
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size_t offset, size_t size);
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// Read perf data from piped perf output data.
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bool ReadPipedData(const ConstBufferWithSize& data);
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bool ReadTracingMetadataEvent(const ConstBufferWithSize& data, size_t offset);
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// Like WriteToPointer, but does not check if the buffer is large enough.
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bool WriteToPointerWithoutCheckingSize(char* buffer, size_t size);
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bool WriteHeader(const BufferWithSize& data) const;
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bool WriteAttrs(const BufferWithSize& data) const;
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bool WriteEventTypes(const BufferWithSize& data) const;
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bool WriteData(const BufferWithSize& data) const;
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bool WriteMetadata(const BufferWithSize& data) const;
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// For writing the various types of metadata.
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bool WriteBuildIDMetadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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bool WriteStringMetadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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bool WriteUint32Metadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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bool WriteUint64Metadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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bool WriteEventDescMetadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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bool WriteCPUTopologyMetadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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bool WriteNUMATopologyMetadata(u32 type, size_t* offset,
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const BufferWithSize& data) const;
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// For reading event blocks within piped perf data.
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bool ReadAttrEventBlock(const ConstBufferWithSize& data, size_t offset,
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size_t size);
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bool ReadPerfEventBlock(const event_t& event);
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// Returns the number of types of metadata stored.
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size_t GetNumMetadata() const;
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// For computing the sizes of the various types of metadata.
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size_t GetBuildIDMetadataSize() const;
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size_t GetStringMetadataSize() const;
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size_t GetUint32MetadataSize() const;
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size_t GetUint64MetadataSize() const;
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size_t GetEventDescMetadataSize() const;
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size_t GetCPUTopologyMetadataSize() const;
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size_t GetNUMATopologyMetadataSize() const;
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// Returns true if we should write the number of strings for the string
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// metadata of type |type|.
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bool NeedsNumberOfStringData(u32 type) const;
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// Replaces existing filenames in MMAP/MMAP2 events based on |filename_map|.
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// This method does not change |build_id_events_|.
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bool LocalizeMMapFilenames(const std::map<string, string>& filename_map);
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std::vector<PerfFileAttr> attrs_;
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std::vector<perf_trace_event_type> event_types_;
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std::vector<malloced_unique_ptr<event_t>> events_;
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std::vector<build_id_event*> build_id_events_;
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std::vector<PerfStringMetadata> string_metadata_;
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std::vector<PerfUint32Metadata> uint32_metadata_;
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std::vector<PerfUint64Metadata> uint64_metadata_;
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PerfCPUTopologyMetadata cpu_topology_;
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std::vector<PerfNodeTopologyMetadata> numa_topology_;
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std::vector<char> tracing_data_;
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uint64_t sample_type_;
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uint64_t read_format_;
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uint64_t metadata_mask_;
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// Indicates that the perf data being read is from machine with a different
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// endianness than the current machine.
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bool is_cross_endian_;
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private:
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u32 ReadPerfEventAttrSize(const ConstBufferWithSize& data,
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size_t attr_offset);
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// The file header is either a normal header or a piped header.
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union {
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struct perf_file_header header_;
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struct perf_pipe_file_header piped_header_;
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};
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struct perf_file_header out_header_;
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DISALLOW_COPY_AND_ASSIGN(PerfReader);
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};
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} // namespace quipper
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#endif // CHROMIUMOS_WIDE_PROFILING_PERF_READER_H_
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