df4942c04a
Changes: - Modify the benchmarks to derive from a single Benchmark object. - Rewrite the main iteration code. This includes changing the iteration code to use the actual total time calculated by the benchmark as a basis for determining whether there are enough iterations instead of using the time it takes to run the benchmark. - Allow benchmarks to take no argument, int, or double. - Fix the PrettyInt printer for negative integers. - Modify the max column width name to include the whole name including the arg part. - Reformat property_benchmark.cpp in line with the rest of the code. - Modify a few of the math benchmarks to take an argument instead of separate benchmarks for the same function with different args. - Create a vector of regex_t structs to represent the args all at once instead of when running each benchmark. This change is in preparation for adding new math based benchmarks. Tested by running on a nexus flo running at max using the new code and the old code and comparing. All of the numbers are similar, but some of the iterations are different due to the slightly different algorithm used. Change-Id: I57ad1f3ff083282b9ffeb72e687cab369ce3523a
234 lines
5.6 KiB
C++
234 lines
5.6 KiB
C++
/*
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* Copyright (C) 2014 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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#include <pthread.h>
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#include <benchmark/Benchmark.h>
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// Stop GCC optimizing out our pure function.
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/* Must not be static! */ pthread_t (*pthread_self_fp)() = pthread_self;
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BENCHMARK_NO_ARG(BM_pthread_self);
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void BM_pthread_self::Run(int iters) {
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_self_fp();
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}
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StopBenchmarkTiming();
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}
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BENCHMARK_NO_ARG(BM_pthread_getspecific);
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void BM_pthread_getspecific::Run(int iters) {
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StopBenchmarkTiming();
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pthread_key_t key;
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pthread_key_create(&key, NULL);
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_getspecific(key);
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}
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StopBenchmarkTiming();
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pthread_key_delete(key);
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}
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BENCHMARK_NO_ARG(BM_pthread_setspecific);
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void BM_pthread_setspecific::Run(int iters) {
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StopBenchmarkTiming();
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pthread_key_t key;
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pthread_key_create(&key, NULL);
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_setspecific(key, NULL);
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}
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StopBenchmarkTiming();
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pthread_key_delete(key);
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}
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static void DummyPthreadOnceInitFunction() {
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}
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BENCHMARK_NO_ARG(BM_pthread_once);
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void BM_pthread_once::Run(int iters) {
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StopBenchmarkTiming();
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pthread_once_t once = PTHREAD_ONCE_INIT;
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pthread_once(&once, DummyPthreadOnceInitFunction);
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_once(&once, DummyPthreadOnceInitFunction);
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}
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StopBenchmarkTiming();
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}
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BENCHMARK_NO_ARG(BM_pthread_mutex_lock);
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void BM_pthread_mutex_lock::Run(int iters) {
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StopBenchmarkTiming();
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pthread_mutex_t mutex = PTHREAD_MUTEX_INITIALIZER;
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_mutex_lock(&mutex);
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pthread_mutex_unlock(&mutex);
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}
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StopBenchmarkTiming();
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}
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BENCHMARK_NO_ARG(BM_pthread_mutex_lock_ERRORCHECK);
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void BM_pthread_mutex_lock_ERRORCHECK::Run(int iters) {
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StopBenchmarkTiming();
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pthread_mutex_t mutex = PTHREAD_ERRORCHECK_MUTEX_INITIALIZER_NP;
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_mutex_lock(&mutex);
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pthread_mutex_unlock(&mutex);
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}
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StopBenchmarkTiming();
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}
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BENCHMARK_NO_ARG(BM_pthread_mutex_lock_RECURSIVE);
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void BM_pthread_mutex_lock_RECURSIVE::Run(int iters) {
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StopBenchmarkTiming();
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pthread_mutex_t mutex = PTHREAD_RECURSIVE_MUTEX_INITIALIZER_NP;
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_mutex_lock(&mutex);
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pthread_mutex_unlock(&mutex);
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}
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StopBenchmarkTiming();
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}
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BENCHMARK_NO_ARG(BM_pthread_rw_lock_read);
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void BM_pthread_rw_lock_read::Run(int iters) {
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StopBenchmarkTiming();
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pthread_rwlock_t lock;
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pthread_rwlock_init(&lock, NULL);
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_rwlock_rdlock(&lock);
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pthread_rwlock_unlock(&lock);
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}
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StopBenchmarkTiming();
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pthread_rwlock_destroy(&lock);
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}
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BENCHMARK_NO_ARG(BM_pthread_rw_lock_write);
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void BM_pthread_rw_lock_write::Run(int iters) {
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StopBenchmarkTiming();
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pthread_rwlock_t lock;
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pthread_rwlock_init(&lock, NULL);
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StartBenchmarkTiming();
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for (int i = 0; i < iters; ++i) {
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pthread_rwlock_wrlock(&lock);
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pthread_rwlock_unlock(&lock);
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}
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StopBenchmarkTiming();
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pthread_rwlock_destroy(&lock);
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}
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static void* IdleThread(void*) {
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return NULL;
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}
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BENCHMARK_NO_ARG(BM_pthread_create);
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void BM_pthread_create::Run(int iters) {
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StopBenchmarkTiming();
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pthread_t thread;
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for (int i = 0; i < iters; ++i) {
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StartBenchmarkTiming();
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pthread_create(&thread, NULL, IdleThread, NULL);
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StopBenchmarkTiming();
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pthread_join(thread, NULL);
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}
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}
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static void* RunThread(void* arg) {
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::testing::Benchmark* benchmark = reinterpret_cast<::testing::Benchmark*>(arg);
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benchmark->StopBenchmarkTiming();
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return NULL;
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}
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BENCHMARK_NO_ARG(BM_pthread_create_and_run);
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void BM_pthread_create_and_run::Run(int iters) {
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StopBenchmarkTiming();
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pthread_t thread;
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for (int i = 0; i < iters; ++i) {
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StartBenchmarkTiming();
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pthread_create(&thread, NULL, RunThread, this);
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pthread_join(thread, NULL);
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}
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}
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static void* ExitThread(void* arg) {
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::testing::Benchmark* benchmark = reinterpret_cast<::testing::Benchmark*>(arg);
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benchmark->StartBenchmarkTiming();
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pthread_exit(NULL);
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}
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BENCHMARK_NO_ARG(BM_pthread_exit_and_join);
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void BM_pthread_exit_and_join::Run(int iters) {
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StopBenchmarkTiming();
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pthread_t thread;
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for (int i = 0; i < iters; ++i) {
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pthread_create(&thread, NULL, ExitThread, this);
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pthread_join(thread, NULL);
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StopBenchmarkTiming();
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}
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}
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BENCHMARK_NO_ARG(BM_pthread_key_create);
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void BM_pthread_key_create::Run(int iters) {
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StopBenchmarkTiming();
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pthread_key_t key;
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for (int i = 0; i < iters; ++i) {
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StartBenchmarkTiming();
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pthread_key_create(&key, NULL);
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StopBenchmarkTiming();
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pthread_key_delete(key);
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}
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}
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BENCHMARK_NO_ARG(BM_pthread_key_delete);
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void BM_pthread_key_delete::Run(int iters) {
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StopBenchmarkTiming();
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pthread_key_t key;
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for (int i = 0; i < iters; ++i) {
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pthread_key_create(&key, NULL);
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StartBenchmarkTiming();
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pthread_key_delete(key);
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StopBenchmarkTiming();
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}
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}
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