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c594b0e89d
Summary: Allow GetThreadList() to report operation stage. Test Plan: ./thread_list_test ./db_bench --benchmarks=fillrandom --num=100000 --threads=40 \ --max_background_compactions=10 --max_background_flushes=3 \ --thread_status_per_interval=1000 --key_size=16 --value_size=1000 \ --num_column_families=10 export ROCKSDB_TESTS=ThreadStatus ./db_test Sample output ThreadID ThreadType cfName Operation OP_StartTime ElapsedTime Stage State 140116265861184 Low Pri 140116270055488 Low Pri 140116274249792 High Pri column_family_name_000005 Flush 2015/03/10-14:58:11 0 us FlushJob::WriteLevel0Table 140116400078912 Low Pri column_family_name_000004 Compaction 2015/03/10-14:58:11 0 us CompactionJob::FinishCompactionOutputFile 140116358135872 Low Pri column_family_name_000006 Compaction 2015/03/10-14:58:10 1 us CompactionJob::FinishCompactionOutputFile 140116341358656 Low Pri 140116295221312 High Pri default Flush 2015/03/10-14:58:11 0 us FlushJob::WriteLevel0Table 140116324581440 Low Pri column_family_name_000009 Compaction 2015/03/10-14:58:11 0 us CompactionJob::ProcessKeyValueCompaction 140116278444096 Low Pri 140116299415616 Low Pri column_family_name_000008 Compaction 2015/03/10-14:58:11 0 us CompactionJob::FinishCompactionOutputFile 140116291027008 High Pri column_family_name_000001 Flush 2015/03/10-14:58:11 0 us FlushJob::WriteLevel0Table 140116286832704 Low Pri column_family_name_000002 Compaction 2015/03/10-14:58:11 0 us CompactionJob::FinishCompactionOutputFile 140116282638400 Low Pri Reviewers: rven, igor, sdong Reviewed By: sdong Subscribers: dhruba, leveldb Differential Revision: https://reviews.facebook.net/D34683
351 lines
12 KiB
C++
351 lines
12 KiB
C++
// Copyright (c) 2014, Facebook, Inc. All rights reserved.
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// This source code is licensed under the BSD-style license found in the
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// LICENSE file in the root directory of this source tree. An additional grant
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// of patent rights can be found in the PATENTS file in the same directory.
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#include <mutex>
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#include <condition_variable>
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#include "util/thread_status_updater.h"
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#include "util/testharness.h"
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#include "rocksdb/db.h"
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#if ROCKSDB_USING_THREAD_STATUS
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namespace rocksdb {
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class SimulatedBackgroundTask {
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public:
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SimulatedBackgroundTask(
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const void* db_key, const std::string& db_name,
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const void* cf_key, const std::string& cf_name,
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const ThreadStatus::OperationType operation_type =
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ThreadStatus::OP_UNKNOWN,
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const ThreadStatus::StateType state_type =
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ThreadStatus::STATE_UNKNOWN)
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: db_key_(db_key), db_name_(db_name),
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cf_key_(cf_key), cf_name_(cf_name),
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operation_type_(operation_type), state_type_(state_type),
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should_run_(true), running_count_(0) {
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Env::Default()->GetThreadStatusUpdater()->NewColumnFamilyInfo(
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db_key_, db_name_, cf_key_, cf_name_);
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}
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~SimulatedBackgroundTask() {
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Env::Default()->GetThreadStatusUpdater()->EraseDatabaseInfo(db_key_);
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}
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void Run() {
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std::unique_lock<std::mutex> l(mutex_);
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running_count_++;
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Env::Default()->GetThreadStatusUpdater()->SetColumnFamilyInfoKey(cf_key_);
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Env::Default()->GetThreadStatusUpdater()->SetThreadOperation(
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operation_type_);
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Env::Default()->GetThreadStatusUpdater()->SetThreadState(state_type_);
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while (should_run_) {
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bg_cv_.wait(l);
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}
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Env::Default()->GetThreadStatusUpdater()->ClearThreadState();
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Env::Default()->GetThreadStatusUpdater()->ClearThreadOperation();
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Env::Default()->GetThreadStatusUpdater()->SetColumnFamilyInfoKey(0);
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running_count_--;
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bg_cv_.notify_all();
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}
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void FinishAllTasks() {
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std::unique_lock<std::mutex> l(mutex_);
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should_run_ = false;
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bg_cv_.notify_all();
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}
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void WaitUntilScheduled(int job_count, Env* env) {
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while (running_count_ < job_count) {
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env->SleepForMicroseconds(1000);
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}
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}
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void WaitUntilDone() {
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std::unique_lock<std::mutex> l(mutex_);
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while (running_count_ > 0) {
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bg_cv_.wait(l);
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}
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}
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static void DoSimulatedTask(void* arg) {
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reinterpret_cast<SimulatedBackgroundTask*>(arg)->Run();
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}
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private:
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const void* db_key_;
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const std::string db_name_;
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const void* cf_key_;
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const std::string cf_name_;
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const ThreadStatus::OperationType operation_type_;
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const ThreadStatus::StateType state_type_;
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std::mutex mutex_;
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std::condition_variable bg_cv_;
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bool should_run_;
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std::atomic<int> running_count_;
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};
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class ThreadListTest {
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public:
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ThreadListTest() {
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}
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};
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TEST(ThreadListTest, GlobalTables) {
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// verify the global tables for operations and states are properly indexed.
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for (int type = 0; type != ThreadStatus::NUM_OP_TYPES; ++type) {
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ASSERT_EQ(global_operation_table[type].type, type);
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ASSERT_EQ(global_operation_table[type].name,
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ThreadStatus::GetOperationName(
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ThreadStatus::OperationType(type)));
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}
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for (int type = 0; type != ThreadStatus::NUM_STATE_TYPES; ++type) {
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ASSERT_EQ(global_state_table[type].type, type);
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ASSERT_EQ(global_state_table[type].name,
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ThreadStatus::GetStateName(
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ThreadStatus::StateType(type)));
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}
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for (int stage = 0; stage != ThreadStatus::NUM_OP_STAGES; ++stage) {
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ASSERT_EQ(global_op_stage_table[stage].stage, stage);
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ASSERT_EQ(global_op_stage_table[stage].name,
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ThreadStatus::GetOperationStageName(
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ThreadStatus::OperationStage(stage)));
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}
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}
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TEST(ThreadListTest, SimpleColumnFamilyInfoTest) {
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Env* env = Env::Default();
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const int kHighPriorityThreads = 3;
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const int kLowPriorityThreads = 5;
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const int kSimulatedHighPriThreads = kHighPriorityThreads - 1;
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const int kSimulatedLowPriThreads = kLowPriorityThreads / 3;
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env->SetBackgroundThreads(kHighPriorityThreads, Env::HIGH);
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env->SetBackgroundThreads(kLowPriorityThreads, Env::LOW);
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SimulatedBackgroundTask running_task(
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reinterpret_cast<void*>(1234), "running",
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reinterpret_cast<void*>(5678), "pikachu");
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for (int test = 0; test < kSimulatedHighPriThreads; ++test) {
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env->Schedule(&SimulatedBackgroundTask::DoSimulatedTask,
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&running_task, Env::Priority::HIGH);
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}
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for (int test = 0; test < kSimulatedLowPriThreads; ++test) {
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env->Schedule(&SimulatedBackgroundTask::DoSimulatedTask,
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&running_task, Env::Priority::LOW);
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}
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running_task.WaitUntilScheduled(
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kSimulatedHighPriThreads + kSimulatedLowPriThreads, env);
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std::vector<ThreadStatus> thread_list;
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// Verify the number of running threads in each pool.
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env->GetThreadList(&thread_list);
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int running_count[ThreadStatus::NUM_THREAD_TYPES] = {0};
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for (auto thread_status : thread_list) {
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if (thread_status.cf_name == "pikachu" &&
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thread_status.db_name == "running") {
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running_count[thread_status.thread_type]++;
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}
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}
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ASSERT_EQ(
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running_count[ThreadStatus::HIGH_PRIORITY],
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kSimulatedHighPriThreads);
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ASSERT_EQ(
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running_count[ThreadStatus::LOW_PRIORITY],
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kSimulatedLowPriThreads);
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ASSERT_EQ(
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running_count[ThreadStatus::USER], 0);
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running_task.FinishAllTasks();
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running_task.WaitUntilDone();
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// Verify none of the threads are running
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env->GetThreadList(&thread_list);
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for (int i = 0; i < ThreadStatus::NUM_THREAD_TYPES; ++i) {
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running_count[i] = 0;
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}
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for (auto thread_status : thread_list) {
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if (thread_status.cf_name == "pikachu" &&
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thread_status.db_name == "running") {
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running_count[thread_status.thread_type]++;
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}
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}
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ASSERT_EQ(
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running_count[ThreadStatus::HIGH_PRIORITY], 0);
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ASSERT_EQ(
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running_count[ThreadStatus::LOW_PRIORITY], 0);
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ASSERT_EQ(
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running_count[ThreadStatus::USER], 0);
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}
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namespace {
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void UpdateStatusCounts(
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const std::vector<ThreadStatus>& thread_list,
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int operation_counts[], int state_counts[]) {
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for (auto thread_status : thread_list) {
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operation_counts[thread_status.operation_type]++;
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state_counts[thread_status.state_type]++;
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}
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}
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void VerifyAndResetCounts(
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const int correct_counts[], int collected_counts[], int size) {
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for (int i = 0; i < size; ++i) {
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ASSERT_EQ(collected_counts[i], correct_counts[i]);
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collected_counts[i] = 0;
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}
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}
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void UpdateCount(
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int operation_counts[], int from_event, int to_event, int amount) {
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operation_counts[from_event] -= amount;
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operation_counts[to_event] += amount;
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}
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} // namespace
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TEST(ThreadListTest, SimpleEventTest) {
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Env* env = Env::Default();
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// simulated tasks
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const int kFlushWriteTasks = 3;
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SimulatedBackgroundTask flush_write_task(
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reinterpret_cast<void*>(1234), "running",
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reinterpret_cast<void*>(5678), "pikachu",
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ThreadStatus::OP_FLUSH);
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const int kCompactionWriteTasks = 4;
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SimulatedBackgroundTask compaction_write_task(
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reinterpret_cast<void*>(1234), "running",
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reinterpret_cast<void*>(5678), "pikachu",
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ThreadStatus::OP_COMPACTION);
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const int kCompactionReadTasks = 5;
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SimulatedBackgroundTask compaction_read_task(
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reinterpret_cast<void*>(1234), "running",
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reinterpret_cast<void*>(5678), "pikachu",
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ThreadStatus::OP_COMPACTION);
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const int kCompactionWaitTasks = 6;
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SimulatedBackgroundTask compaction_wait_task(
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reinterpret_cast<void*>(1234), "running",
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reinterpret_cast<void*>(5678), "pikachu",
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ThreadStatus::OP_COMPACTION);
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// setup right answers
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int correct_operation_counts[ThreadStatus::NUM_OP_TYPES] = {0};
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correct_operation_counts[ThreadStatus::OP_FLUSH] =
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kFlushWriteTasks;
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correct_operation_counts[ThreadStatus::OP_COMPACTION] =
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kCompactionWriteTasks + kCompactionReadTasks + kCompactionWaitTasks;
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env->SetBackgroundThreads(
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correct_operation_counts[ThreadStatus::OP_FLUSH], Env::HIGH);
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env->SetBackgroundThreads(
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correct_operation_counts[ThreadStatus::OP_COMPACTION], Env::LOW);
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// schedule the simulated tasks
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for (int t = 0; t < kFlushWriteTasks; ++t) {
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env->Schedule(&SimulatedBackgroundTask::DoSimulatedTask,
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&flush_write_task, Env::Priority::HIGH);
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}
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flush_write_task.WaitUntilScheduled(kFlushWriteTasks, env);
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for (int t = 0; t < kCompactionWriteTasks; ++t) {
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env->Schedule(&SimulatedBackgroundTask::DoSimulatedTask,
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&compaction_write_task, Env::Priority::LOW);
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}
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compaction_write_task.WaitUntilScheduled(kCompactionWriteTasks, env);
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for (int t = 0; t < kCompactionReadTasks; ++t) {
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env->Schedule(&SimulatedBackgroundTask::DoSimulatedTask,
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&compaction_read_task, Env::Priority::LOW);
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}
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compaction_read_task.WaitUntilScheduled(kCompactionReadTasks, env);
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for (int t = 0; t < kCompactionWaitTasks; ++t) {
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env->Schedule(&SimulatedBackgroundTask::DoSimulatedTask,
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&compaction_wait_task, Env::Priority::LOW);
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}
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compaction_wait_task.WaitUntilScheduled(kCompactionWaitTasks, env);
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// verify the thread-status
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int operation_counts[ThreadStatus::NUM_OP_TYPES] = {0};
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int state_counts[ThreadStatus::NUM_STATE_TYPES] = {0};
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std::vector<ThreadStatus> thread_list;
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env->GetThreadList(&thread_list);
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UpdateStatusCounts(thread_list, operation_counts, state_counts);
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VerifyAndResetCounts(correct_operation_counts, operation_counts,
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ThreadStatus::NUM_OP_TYPES);
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// terminate compaction-wait tasks and see if the thread-status
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// reflects this update
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compaction_wait_task.FinishAllTasks();
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compaction_wait_task.WaitUntilDone();
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UpdateCount(correct_operation_counts, ThreadStatus::OP_COMPACTION,
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ThreadStatus::OP_UNKNOWN, kCompactionWaitTasks);
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env->GetThreadList(&thread_list);
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UpdateStatusCounts(thread_list, operation_counts, state_counts);
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VerifyAndResetCounts(correct_operation_counts, operation_counts,
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ThreadStatus::NUM_OP_TYPES);
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// terminate flush-write tasks and see if the thread-status
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// reflects this update
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flush_write_task.FinishAllTasks();
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flush_write_task.WaitUntilDone();
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UpdateCount(correct_operation_counts, ThreadStatus::OP_FLUSH,
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ThreadStatus::OP_UNKNOWN, kFlushWriteTasks);
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env->GetThreadList(&thread_list);
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UpdateStatusCounts(thread_list, operation_counts, state_counts);
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VerifyAndResetCounts(correct_operation_counts, operation_counts,
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ThreadStatus::NUM_OP_TYPES);
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// terminate compaction-write tasks and see if the thread-status
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// reflects this update
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compaction_write_task.FinishAllTasks();
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compaction_write_task.WaitUntilDone();
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UpdateCount(correct_operation_counts, ThreadStatus::OP_COMPACTION,
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ThreadStatus::OP_UNKNOWN, kCompactionWriteTasks);
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env->GetThreadList(&thread_list);
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UpdateStatusCounts(thread_list, operation_counts, state_counts);
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VerifyAndResetCounts(correct_operation_counts, operation_counts,
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ThreadStatus::NUM_OP_TYPES);
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// terminate compaction-write tasks and see if the thread-status
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// reflects this update
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compaction_read_task.FinishAllTasks();
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compaction_read_task.WaitUntilDone();
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UpdateCount(correct_operation_counts, ThreadStatus::OP_COMPACTION,
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ThreadStatus::OP_UNKNOWN, kCompactionReadTasks);
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env->GetThreadList(&thread_list);
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UpdateStatusCounts(thread_list, operation_counts, state_counts);
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VerifyAndResetCounts(correct_operation_counts, operation_counts,
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ThreadStatus::NUM_OP_TYPES);
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}
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} // namespace rocksdb
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int main(int argc, char** argv) {
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return rocksdb::test::RunAllTests();
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}
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#else
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int main(int argc, char** argv) {
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return 0;
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}
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#endif // ROCKSDB_USING_THREAD_STATUS
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