190 lines
6.6 KiB
C++
190 lines
6.6 KiB
C++
/*
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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_EVENT_SELECTION_SET_H_
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#define SIMPLE_PERF_EVENT_SELECTION_SET_H_
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#include <functional>
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#include <map>
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#include <set>
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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 "event_attr.h"
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#include "event_fd.h"
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#include "event_type.h"
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#include "InplaceSamplerClient.h"
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#include "IOEventLoop.h"
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#include "perf_event.h"
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#include "record.h"
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constexpr double DEFAULT_PERIOD_TO_DETECT_CPU_HOTPLUG_EVENTS_IN_SEC = 0.5;
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constexpr double DEFAULT_PERIOD_TO_CHECK_MONITORED_TARGETS_IN_SEC = 1;
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struct CounterInfo {
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pid_t tid;
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int cpu;
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PerfCounter counter;
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};
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struct CountersInfo {
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uint32_t group_id;
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std::string event_name;
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std::string event_modifier;
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std::vector<CounterInfo> counters;
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};
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// EventSelectionSet helps to monitor events. It is used in following steps:
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// 1. Create an EventSelectionSet, and add event types to monitor by calling
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// AddEventType() or AddEventGroup().
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// 2. Define how to monitor events by calling SetEnableOnExec(), SampleIdAll(),
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// SetSampleFreq(), etc.
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// 3. Start monitoring by calling OpenEventFilesForCpus() or
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// OpenEventFilesForThreadsOnCpus(). If SetEnableOnExec() has been called
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// in step 2, monitor will be delayed until the monitored thread calls
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// exec().
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// 4. Read counters by calling ReadCounters(), or read mapped event records
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// by calling MmapEventFiles(), PrepareToReadMmapEventData() and
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// FinishReadMmapEventData().
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// 5. Stop monitoring automatically in the destructor of EventSelectionSet by
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// closing perf event files.
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class EventSelectionSet {
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public:
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EventSelectionSet(bool for_stat_cmd)
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: for_stat_cmd_(for_stat_cmd), mmap_pages_(0), loop_(new IOEventLoop) {}
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bool empty() const { return groups_.empty(); }
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bool AddEventType(const std::string& event_name);
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bool AddEventGroup(const std::vector<std::string>& event_names);
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std::vector<const EventType*> GetTracepointEvents() const;
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bool HasInplaceSampler() const;
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std::vector<EventAttrWithId> GetEventAttrWithId() const;
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void SetEnableOnExec(bool enable);
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bool GetEnableOnExec();
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void SampleIdAll();
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void SetSampleFreq(uint64_t sample_freq);
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void SetSamplePeriod(uint64_t sample_period);
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void UseDefaultSampleFreq();
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bool SetBranchSampling(uint64_t branch_sample_type);
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void EnableFpCallChainSampling();
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bool EnableDwarfCallChainSampling(uint32_t dump_stack_size);
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void SetInherit(bool enable);
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bool NeedKernelSymbol() const;
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void AddMonitoredProcesses(const std::set<pid_t>& processes) {
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processes_.insert(processes.begin(), processes.end());
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}
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void AddMonitoredThreads(const std::set<pid_t>& threads) {
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threads_.insert(threads.begin(), threads.end());
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}
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const std::set<pid_t>& GetMonitoredProcesses() const { return processes_; }
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const std::set<pid_t>& GetMonitoredThreads() const { return threads_; }
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bool HasMonitoredTarget() const {
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return !processes_.empty() || !threads_.empty();
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}
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IOEventLoop* GetIOEventLoop() {
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return loop_.get();
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}
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bool OpenEventFiles(const std::vector<int>& on_cpus);
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bool ReadCounters(std::vector<CountersInfo>* counters);
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bool MmapEventFiles(size_t min_mmap_pages, size_t max_mmap_pages);
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bool PrepareToReadMmapEventData(const std::function<bool(Record*)>& callback);
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bool FinishReadMmapEventData();
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// If monitored_cpus is empty, monitor all cpus.
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bool HandleCpuHotplugEvents(const std::vector<int>& monitored_cpus,
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double check_interval_in_sec =
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DEFAULT_PERIOD_TO_DETECT_CPU_HOTPLUG_EVENTS_IN_SEC);
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// Stop profiling if all monitored processes/threads don't exist.
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bool StopWhenNoMoreTargets(double check_interval_in_sec =
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DEFAULT_PERIOD_TO_CHECK_MONITORED_TARGETS_IN_SEC);
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private:
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struct EventSelection {
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EventTypeAndModifier event_type_modifier;
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perf_event_attr event_attr;
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std::vector<std::unique_ptr<EventFd>> event_fds;
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std::vector<std::unique_ptr<InplaceSamplerClient>> inplace_samplers;
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// counters for event files closed for cpu hotplug events
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std::vector<CounterInfo> hotplugged_counters;
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};
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typedef std::vector<EventSelection> EventSelectionGroup;
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bool BuildAndCheckEventSelection(const std::string& event_name,
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EventSelection* selection);
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void UnionSampleType();
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bool IsUserSpaceSamplerGroup(EventSelectionGroup& group);
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bool OpenUserSpaceSamplersOnGroup(EventSelectionGroup& group,
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const std::map<pid_t, std::set<pid_t>>& process_map);
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bool OpenEventFilesOnGroup(EventSelectionGroup& group, pid_t tid, int cpu,
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std::string* failed_event_type);
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bool MmapEventFiles(size_t mmap_pages, bool report_error);
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bool ReadMmapEventData();
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bool DetectCpuHotplugEvents();
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bool HandleCpuOnlineEvent(int cpu);
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bool HandleCpuOfflineEvent(int cpu);
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bool CreateMappedBufferForCpu(int cpu);
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bool CheckMonitoredTargets();
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bool HasSampler();
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const bool for_stat_cmd_;
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std::vector<EventSelectionGroup> groups_;
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std::set<pid_t> processes_;
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std::set<pid_t> threads_;
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size_t mmap_pages_;
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std::unique_ptr<IOEventLoop> loop_;
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std::function<bool(Record*)> record_callback_;
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std::set<int> monitored_cpus_;
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std::vector<int> online_cpus_;
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// Records from all mapped buffers are stored in record_buffer_, each
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// RecordBufferHead manages records read from one mapped buffer. Create
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// record_buffer_heads_ and record_buffer_ here to avoid allocating them
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// from heap each time calling ReadMmapEventData().
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struct RecordBufferHead {
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size_t current_pos; // current position in record_buffer_
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size_t end_pos; // end position in record_buffer_
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perf_event_attr* attr;
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uint64_t timestamp;
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std::unique_ptr<Record> r;
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};
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std::vector<RecordBufferHead> record_buffer_heads_;
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std::vector<char> record_buffer_;
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DISALLOW_COPY_AND_ASSIGN(EventSelectionSet);
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};
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bool IsBranchSamplingSupported();
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bool IsDwarfCallChainSamplingSupported();
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#endif // SIMPLE_PERF_EVENT_SELECTION_SET_H_
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