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268 lines
11 KiB
C++
268 lines
11 KiB
C++
// Copyright 2015 The Chromium 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 BASE_TRACE_EVENT_MEMORY_DUMP_MANAGER_H_
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#define BASE_TRACE_EVENT_MEMORY_DUMP_MANAGER_H_
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#include <stdint.h>
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#include <map>
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#include <memory>
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#include <unordered_set>
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#include <vector>
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#include "base/atomicops.h"
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#include "base/containers/hash_tables.h"
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#include "base/macros.h"
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#include "base/memory/ref_counted.h"
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#include "base/memory/singleton.h"
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#include "base/synchronization/lock.h"
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#include "base/trace_event/memory_allocator_dump.h"
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#include "base/trace_event/memory_dump_provider_info.h"
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#include "base/trace_event/memory_dump_request_args.h"
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#include "base/trace_event/process_memory_dump.h"
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#include "base/trace_event/trace_event.h"
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namespace base {
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class SequencedTaskRunner;
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class SingleThreadTaskRunner;
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class Thread;
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namespace trace_event {
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class MemoryDumpProvider;
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// This is the interface exposed to the rest of the codebase to deal with
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// memory tracing. The main entry point for clients is represented by
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// RequestDumpPoint(). The extension by Un(RegisterDumpProvider).
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class BASE_EXPORT MemoryDumpManager {
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public:
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using RequestGlobalDumpFunction =
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RepeatingCallback<void(MemoryDumpType, MemoryDumpLevelOfDetail)>;
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static const char* const kTraceCategory;
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// This value is returned as the tracing id of the child processes by
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// GetTracingProcessId() when tracing is not enabled.
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static const uint64_t kInvalidTracingProcessId;
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static MemoryDumpManager* GetInstance();
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static std::unique_ptr<MemoryDumpManager> CreateInstanceForTesting();
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// Invoked once per process to listen to trace begin / end events.
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// Initialization can happen after (Un)RegisterMemoryDumpProvider() calls
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// and the MemoryDumpManager guarantees to support this.
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// On the other side, the MemoryDumpManager will not be fully operational
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// (any CreateProcessDump() will return a failure) until initialized.
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// Arguments:
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// is_coordinator: True when current process coordinates the periodic dump
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// triggering.
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// request_dump_function: Function to invoke a global dump. Global dump
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// involves embedder-specific behaviors like multiprocess handshaking.
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// TODO(primiano): this is only required to trigger global dumps from
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// the scheduler. Should be removed once they are both moved out of base.
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void Initialize(RequestGlobalDumpFunction request_dump_function,
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bool is_coordinator);
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// (Un)Registers a MemoryDumpProvider instance.
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// Args:
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// - mdp: the MemoryDumpProvider instance to be registered. MemoryDumpManager
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// does NOT take memory ownership of |mdp|, which is expected to either
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// be a singleton or unregister itself.
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// - name: a friendly name (duplicates allowed). Used for debugging and
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// run-time profiling of memory-infra internals. Must be a long-lived
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// C string.
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// - task_runner: either a SingleThreadTaskRunner or SequencedTaskRunner. All
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// the calls to |mdp| will be run on the given |task_runner|. If passed
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// null |mdp| should be able to handle calls on arbitrary threads.
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// - options: extra optional arguments. See memory_dump_provider.h.
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void RegisterDumpProvider(MemoryDumpProvider* mdp,
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const char* name,
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scoped_refptr<SingleThreadTaskRunner> task_runner);
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void RegisterDumpProvider(MemoryDumpProvider* mdp,
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const char* name,
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scoped_refptr<SingleThreadTaskRunner> task_runner,
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MemoryDumpProvider::Options options);
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void RegisterDumpProviderWithSequencedTaskRunner(
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MemoryDumpProvider* mdp,
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const char* name,
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scoped_refptr<SequencedTaskRunner> task_runner,
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MemoryDumpProvider::Options options);
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void UnregisterDumpProvider(MemoryDumpProvider* mdp);
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// Unregisters an unbound dump provider and takes care about its deletion
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// asynchronously. Can be used only for for dump providers with no
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// task-runner affinity.
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// This method takes ownership of the dump provider and guarantees that:
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// - The |mdp| will be deleted at some point in the near future.
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// - Its deletion will not happen concurrently with the OnMemoryDump() call.
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// Note that OnMemoryDump() calls can still happen after this method returns.
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void UnregisterAndDeleteDumpProviderSoon(
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std::unique_ptr<MemoryDumpProvider> mdp);
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// Prepare MemoryDumpManager for CreateProcessDump() calls for tracing-related
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// modes (i.e. |level_of_detail| != SUMMARY_ONLY).
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// Also initializes the scheduler with the given config.
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void SetupForTracing(const TraceConfig::MemoryDumpConfig&);
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// Tear-down tracing related state.
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// Non-tracing modes (e.g. SUMMARY_ONLY) will continue to work.
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void TeardownForTracing();
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// Creates a memory dump for the current process and appends it to the trace.
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// |callback| will be invoked asynchronously upon completion on the same
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// thread on which CreateProcessDump() was called. This method should only be
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// used by the memory-infra service while creating a global memory dump.
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void CreateProcessDump(const MemoryDumpRequestArgs& args,
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const ProcessMemoryDumpCallback& callback);
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// Lets tests see if a dump provider is registered.
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bool IsDumpProviderRegisteredForTesting(MemoryDumpProvider*);
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// Returns a unique id for identifying the processes. The id can be
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// retrieved by child processes only when tracing is enabled. This is
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// intended to express cross-process sharing of memory dumps on the
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// child-process side, without having to know its own child process id.
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uint64_t GetTracingProcessId() const { return tracing_process_id_; }
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void set_tracing_process_id(uint64_t tracing_process_id) {
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tracing_process_id_ = tracing_process_id;
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}
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// Returns the name for a the allocated_objects dump. Use this to declare
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// suballocator dumps from other dump providers.
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// It will return nullptr if there is no dump provider for the system
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// allocator registered (which is currently the case for Mac OS).
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const char* system_allocator_pool_name() const {
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return kSystemAllocatorPoolName;
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};
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// When set to true, calling |RegisterMemoryDumpProvider| is a no-op.
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void set_dumper_registrations_ignored_for_testing(bool ignored) {
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dumper_registrations_ignored_for_testing_ = ignored;
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}
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private:
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friend std::default_delete<MemoryDumpManager>; // For the testing instance.
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friend struct DefaultSingletonTraits<MemoryDumpManager>;
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friend class MemoryDumpManagerTest;
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FRIEND_TEST_ALL_PREFIXES(MemoryDumpManagerTest,
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NoStackOverflowWithTooManyMDPs);
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// Holds the state of a process memory dump that needs to be carried over
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// across task runners in order to fulfill an asynchronous CreateProcessDump()
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// request. At any time exactly one task runner owns a
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// ProcessMemoryDumpAsyncState.
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struct ProcessMemoryDumpAsyncState {
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ProcessMemoryDumpAsyncState(
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MemoryDumpRequestArgs req_args,
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const MemoryDumpProviderInfo::OrderedSet& dump_providers,
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ProcessMemoryDumpCallback callback,
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scoped_refptr<SequencedTaskRunner> dump_thread_task_runner);
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~ProcessMemoryDumpAsyncState();
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// A ProcessMemoryDump to collect data from MemoryDumpProviders.
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std::unique_ptr<ProcessMemoryDump> process_memory_dump;
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// The arguments passed to the initial CreateProcessDump() request.
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const MemoryDumpRequestArgs req_args;
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// An ordered sequence of dump providers that have to be invoked to complete
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// the dump. This is a copy of |dump_providers_| at the beginning of a dump
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// and becomes empty at the end, when all dump providers have been invoked.
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std::vector<scoped_refptr<MemoryDumpProviderInfo>> pending_dump_providers;
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// Callback passed to the initial call to CreateProcessDump().
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ProcessMemoryDumpCallback callback;
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// The thread on which FinishAsyncProcessDump() (and hence |callback|)
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// should be invoked. This is the thread on which the initial
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// CreateProcessDump() request was called.
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const scoped_refptr<SingleThreadTaskRunner> callback_task_runner;
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// The thread on which unbound dump providers should be invoked.
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// This is essentially |dump_thread_|.task_runner() but needs to be kept
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// as a separate variable as it needs to be accessed by arbitrary dumpers'
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// threads outside of the lock_ to avoid races when disabling tracing.
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// It is immutable for all the duration of a tracing session.
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const scoped_refptr<SequencedTaskRunner> dump_thread_task_runner;
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private:
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DISALLOW_COPY_AND_ASSIGN(ProcessMemoryDumpAsyncState);
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};
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static const int kMaxConsecutiveFailuresCount;
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static const char* const kSystemAllocatorPoolName;
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MemoryDumpManager();
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virtual ~MemoryDumpManager();
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static void SetInstanceForTesting(MemoryDumpManager* instance);
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// Lazily initializes dump_thread_ and returns its TaskRunner.
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scoped_refptr<base::SequencedTaskRunner> GetOrCreateBgTaskRunnerLocked();
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// Calls InvokeOnMemoryDump() for the each MDP that belongs to the current
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// task runner and switches to the task runner of the next MDP. Handles
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// failures in MDP and thread hops, and always calls FinishAsyncProcessDump()
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// at the end.
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void ContinueAsyncProcessDump(
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ProcessMemoryDumpAsyncState* owned_pmd_async_state);
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// Invokes OnMemoryDump() of the given MDP. Should be called on the MDP task
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// runner.
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void InvokeOnMemoryDump(MemoryDumpProviderInfo* mdpinfo,
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ProcessMemoryDump* pmd);
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void FinishAsyncProcessDump(
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std::unique_ptr<ProcessMemoryDumpAsyncState> pmd_async_state);
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// Helper for RegierDumpProvider* functions.
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void RegisterDumpProviderInternal(
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MemoryDumpProvider* mdp,
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const char* name,
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scoped_refptr<SequencedTaskRunner> task_runner,
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const MemoryDumpProvider::Options& options);
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// Helper for the public UnregisterDumpProvider* functions.
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void UnregisterDumpProviderInternal(MemoryDumpProvider* mdp,
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bool take_mdp_ownership_and_delete_async);
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bool can_request_global_dumps() const {
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return !request_dump_function_.is_null();
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}
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// An ordered set of registered MemoryDumpProviderInfo(s), sorted by task
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// runner affinity (MDPs belonging to the same task runners are adjacent).
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MemoryDumpProviderInfo::OrderedSet dump_providers_;
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// Function provided by the embedder to handle global dump requests.
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RequestGlobalDumpFunction request_dump_function_;
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// True when current process coordinates the periodic dump triggering.
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bool is_coordinator_;
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// Protects from concurrent accesses to the local state, eg: to guard against
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// disabling logging while dumping on another thread.
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Lock lock_;
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// Thread used for MemoryDumpProviders which don't specify a task runner
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// affinity.
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std::unique_ptr<Thread> dump_thread_;
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// The unique id of the child process. This is created only for tracing and is
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// expected to be valid only when tracing is enabled.
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uint64_t tracing_process_id_;
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// When true, calling |RegisterMemoryDumpProvider| is a no-op.
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bool dumper_registrations_ignored_for_testing_;
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DISALLOW_COPY_AND_ASSIGN(MemoryDumpManager);
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};
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} // namespace trace_event
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} // namespace base
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#endif // BASE_TRACE_EVENT_MEMORY_DUMP_MANAGER_H_
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