227 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			227 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/**
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 * Copyright (c) 2021 OceanBase
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 * OceanBase CE is licensed under Mulan PubL v2.
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 * You can use this software according to the terms and conditions of the Mulan PubL v2.
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 * You may obtain a copy of Mulan PubL v2 at:
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 *          http://license.coscl.org.cn/MulanPubL-2.0
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 * THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND,
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 * EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT,
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 * MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE.
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 * See the Mulan PubL v2 for more details.
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 */
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#include <gtest/gtest.h>
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#include <pthread.h>
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#define private public
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#include "lib/lock/ob_latch.h"
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#undef private
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#include "lib/lock/ob_mutex.h"
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#include "lib/lock/ob_spin_lock.h"
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#include "lib/stat/ob_session_stat.h"
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#include "share/cache/ob_kv_storecache.h"
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#include "lib/random/ob_random.h"
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namespace oceanbase
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{
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namespace common
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{
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class TestLatchStress: public share::ObThreadPool
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{
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public:
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  TestLatchStress();
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  virtual ~TestLatchStress();
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  virtual void run1();
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  int64_t round0_;
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  int64_t value0_;
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  ObLatch lock0_;
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  obsys::ObRWLock lock_;
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  pthread_mutex_t mutex_;
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};
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TestLatchStress::TestLatchStress()
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  : round0_(0),
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    value0_(0),
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    lock0_(),
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    lock_()
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{
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  pthread_mutex_init(&mutex_, NULL);
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}
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TestLatchStress::~TestLatchStress()
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{
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}
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void TestLatchStress::run(obsys::CThread *thread, void *arg)
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{
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  int ret = OB_SUCCESS;
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  int64_t timeout = ObTimeUtility::current_time();
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  if (0 == ((uint64_t)arg) % 2) {
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    for (int i = 0; i < 10000; i++) {
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      timeout = ObTimeUtility::current_time() + 10;
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      ret = lock0_.wrlock(ObLatchIds::ROW_LOCK, timeout);
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      if (OB_SUCC(ret)) {
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        usleep(static_cast<int32_t>(ObRandom::rand(0, 10)));
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        if (0 == ((uint64_t)arg) % 4) {
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          ret = lock0_.wr2rdlock();
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          ASSERT_EQ(OB_SUCCESS, ret);
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          usleep(1);
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        }
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        lock0_.unlock();
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      }
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      //ret = lock1_.wrlock(1, INT64_MAX);
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      //ASSERT_EQ(OB_SUCCESS, ret);
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      //lock1_.wrunlock(1);
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      //ret = pthread_mutex_lock(&mutex_);
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      //ASSERT_EQ(0, ret);
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      //pthread_mutex_unlock(&mutex_);
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      //obsys::ObWLockGuard guard(lock_);
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      //ASSERT_EQ(OB_SUCCESS, ret);
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    }
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  } else {
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    for (int i = 0; i < 10000; i++) {
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      ret = lock0_.rdlock(ObLatchIds::ROW_LOCK);
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      ASSERT_EQ(OB_SUCCESS, ret);
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      ret = lock0_.rdlock(ObLatchIds::ROW_LOCK);
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      ASSERT_EQ(OB_SUCCESS, ret);
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      lock0_.unlock();
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      lock0_.unlock();
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      //ret = lock1_.rdlock(INT64_MAX);
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      //ASSERT_EQ(OB_SUCCESS, ret);
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      //lock1_.rdunlock();
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      //ret = pthread_mutex_lock(&mutex_);
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      //ASSERT_EQ(0, ret);
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      //pthread_mutex_unlock(&mutex_);
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      //obsys::ObRLockGuard guard(lock_);
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      //ASSERT_EQ(OB_SUCCESS, ret);
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    }
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  }
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}
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TEST(ObLatch, invalid)
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{
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  int ret = OB_SUCCESS;
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  ObLatch latch;
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  uint32_t uid = 0;
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  ret = latch.try_rdlock(ObLatchIds::LATCH_END);
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.try_wrlock(ObLatchIds::LATCH_END, 0);
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.try_wrlock(0, &uid);
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.rdlock(ObLatchIds::LATCH_END);
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.wrlock(ObLatchIds::LATCH_END);
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.wr2rdlock();
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.unlock();
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  ASSERT_NE(OB_SUCCESS, ret);
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}
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TEST(ObLatch, normal)
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{
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  int ret = OB_SUCCESS;
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  ObLatch latch;
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  uint32_t wid = 0;
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  ret = latch.rdlock(1);
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  ASSERT_EQ(OB_SUCCESS, ret);
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  ret = latch.rdlock(1);
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  ASSERT_EQ(OB_SUCCESS, ret);
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  wid = latch.get_wid();
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  ASSERT_EQ(0, wid);
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  ASSERT_TRUE(latch.is_locked());
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  ASSERT_TRUE(latch.is_rdlocked());
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  ret = latch.unlock();
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  ASSERT_EQ(OB_SUCCESS, ret);
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  ret = latch.unlock();
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  ASSERT_EQ(OB_SUCCESS, ret);
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  ASSERT_FALSE(latch.is_locked());
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  ASSERT_FALSE(latch.is_rdlocked());
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  ret = latch.wrlock(1);
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  ASSERT_EQ(OB_SUCCESS, ret);
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  wid = latch.get_wid();
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  ASSERT_EQ(GETTID(), wid);
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  ASSERT_TRUE(latch.is_locked());
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  ASSERT_FALSE(latch.is_rdlocked());
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  ret = latch.unlock();
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  ASSERT_EQ(OB_SUCCESS, ret);
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  //lock timeout
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  ret = latch.wrlock(ObLatchIds::DEFAULT_MUTEX);
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  ASSERT_EQ(OB_SUCCESS, ret);
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  ret = latch.wrlock(ObLatchIds::DEFAULT_MUTEX, 1);
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  ASSERT_EQ(OB_TIMEOUT, ret);
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  ret = latch.rdlock(ObLatchIds::DEFAULT_MUTEX, 1);
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  ASSERT_EQ(OB_TIMEOUT, ret);
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  ret = latch.unlock();
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  ASSERT_EQ(OB_SUCCESS, ret);
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  //lock bound
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  for (int64_t i = 0; i < ObLatch::MAX_READ_LOCK_CNT; ++i) {
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    ret = latch.rdlock(ObLatchIds::DEFAULT_MUTEX);
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    ASSERT_EQ(OB_SUCCESS, ret);
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  }
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  ret = latch.rdlock(ObLatchIds::DEFAULT_MUTEX);
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  ASSERT_NE(OB_SUCCESS, ret);
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  for (int64_t i = 0; i < ObLatch::MAX_READ_LOCK_CNT; ++i) {
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    ret = latch.unlock();
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    ASSERT_EQ(OB_SUCCESS, ret);
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  }
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  for (int64_t i = 0; i < ObLatch::MAX_READ_LOCK_CNT; ++i) {
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    ret = latch.try_rdlock(ObLatchIds::DEFAULT_MUTEX);
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    ASSERT_EQ(OB_SUCCESS, ret);
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  }
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  ret = latch.try_rdlock(ObLatchIds::DEFAULT_MUTEX);
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  ASSERT_NE(OB_SUCCESS, ret);
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  for (int64_t i = 0; i < ObLatch::MAX_READ_LOCK_CNT; ++i) {
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    ret = latch.unlock();
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    ASSERT_EQ(OB_SUCCESS, ret);
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  }
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  //just print longer than 1s log
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  ObSessionStatEstGuard est_guard(1, 1);
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  ret = latch.wrlock(ObLatchIds::DEFAULT_MUTEX);
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  ASSERT_EQ(OB_SUCCESS, ret);
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  ret = latch.wrlock(ObLatchIds::DEFAULT_MUTEX, ObTimeUtility::current_time() + 2000 * 1000);
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  ASSERT_NE(OB_SUCCESS, ret);
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  ret = latch.unlock();
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  ASSERT_EQ(OB_SUCCESS, ret);
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}
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TEST(ObLatch, multithread)
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{
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  TestLatchStress stress;
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  stress.set_thread_count(32);
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  uint64_t begin_time = ::oceanbase::common::ObTimeUtility::current_time();
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  stress.start();
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  stress.wait();
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  uint64_t end_time = ::oceanbase::common::ObTimeUtility::current_time();
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  printf("time: %ld us\n", (end_time - begin_time));
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}
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}
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}
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int main(int argc, char **argv)
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{
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  oceanbase::common::ObLogger::get_logger().set_log_level("WARN");
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  testing::InitGoogleTest(&argc, argv);
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  return RUN_ALL_TESTS();
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}
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