423 lines
14 KiB
C++
423 lines
14 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 "share/ob_errno.h"
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#include "lib/oblog/ob_log.h"
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#include "share/ob_define.h"
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#include "lib/container/ob_array.h"
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#include "election/ob_election_msg.h"
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#include "election/ob_election_priority.h"
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#include "election/ob_election_msg_pool.h"
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#include "election/ob_election_time_def.h"
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#include "common/ob_clock_generator.h"
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#include "mock_election.h"
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#include <vector>
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#include <iostream>
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using namespace std;
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namespace oceanbase {
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namespace unittest {
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using namespace election;
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using namespace common;
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const vector<ObAddr> ADDR = {ObAddr(ObAddr::VER::IPV4, "127.0.0.1", 34500),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.2", 34501),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.3", 34502),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.4", 34503),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.5", 34504),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.6", 34505),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.7", 34506),
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ObAddr(ObAddr::VER::IPV4, "127.0.0.8", 34507)};
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const vector<int> REPLICA_NUM = {3, 5, 7};
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class TestObElectionMsgPool : public ::testing::Test {
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public:
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TestObElectionMsgPool()
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{}
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~TestObElectionMsgPool()
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{}
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virtual void SetUp()
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{
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init();
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}
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virtual void TearDown()
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{}
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void reset()
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{
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srand(std::chrono::system_clock::now().time_since_epoch().count());
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election_.set_current_ts(t1_ + rand() % (4 * T_DIFF + T_ST) - 2 * T_DIFF);
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msg_pool_.reset();
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msg_pool_.init(ADDR[0], &election_);
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}
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private:
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int init();
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public:
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ObElectionVoteMsgPool msg_pool_;
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int64_t t1_;
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int64_t send_ts_;
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int64_t lease_time_;
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ObAddr current_leader_;
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MockElection election_;
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};
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int TestObElectionMsgPool::init()
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{
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t1_ = T_ELECT2;
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send_ts_ = t1_ + 10;
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lease_time_ = T_LEADER_LEASE_EXTENDS * T_ELECT2;
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return OB_SUCCESS;
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}
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TEST_F(TestObElectionMsgPool, store_de_prepare)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgDEPrepare msg1(priority, t1_, send_ts_, ADDR[0], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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// same sender message
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EXPECT_EQ(OB_ELECTION_ERROR_DUPLICATED_MSG, msg_pool_.store(msg1));
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ObElectionMsgDEPrepare msg2(priority, t1_, send_ts_, ADDR[1], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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}
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TEST_F(TestObElectionMsgPool, overrange_msg)
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{
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for (auto replica_num : REPLICA_NUM) {
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reset();
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ObAddr self;
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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for (int i = 0; i < replica_num; i++) {
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ObElectionMsgDEPrepare msg(priority, t1_, send_ts_, ADDR[i], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg));
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}
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{
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ObElectionMsgDEPrepare msg1(priority, t1_, send_ts_, ADDR[0], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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if (replica_num <= 3) {
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EXPECT_EQ(OB_ELECTION_ERROR_DUPLICATED_MSG, msg_pool_.store(msg1));
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} else {
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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}
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}
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{
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ObElectionMsgDEPrepare msg1(priority, t1_, send_ts_, ADDR[replica_num], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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}
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}
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}
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TEST_F(TestObElectionMsgPool, get_decentralized_candidate)
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{
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for (int i = 0; i < 10000; ++i) {
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for (auto replica_num : REPLICA_NUM) {
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reset();
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vector<ObElectionMsgDEPrepare> v_msg;
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for (int i = 0; i < replica_num / 2 + 1; i++) {
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ObElectionPriority priority;
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priority.init(true, 1000 + i, ObVersion(1), 100 + i);
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v_msg.emplace_back(priority, t1_, send_ts_, ADDR[i], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(v_msg.back()));
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}
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{
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ObAddr ob_addr;
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ObElectionPriority priority;
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EXPECT_EQ(OB_SUCCESS, msg_pool_.get_decentralized_candidate(ob_addr, priority, replica_num, t1_, lease_time_));
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EXPECT_EQ(v_msg.back().get_sender(), ob_addr);
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EXPECT_EQ(0, priority.compare_with_accurate_logid(v_msg.back().get_priority()));
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EXPECT_EQ(OB_SUCCESS, msg_pool_.get_decentralized_candidate(ob_addr, priority, replica_num, t1_, lease_time_));
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EXPECT_EQ(v_msg.back().get_sender(), ob_addr);
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EXPECT_EQ(0, priority.compare_with_accurate_logid(v_msg.back().get_priority()));
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election_.set_current_ts(t1_ + T_ELECT2 + rand() % (4 * T_DIFF + T_ST) - 2 * T_DIFF);
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ObElectionPriority lower_priority;
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lower_priority.init(true, 1, ObVersion(1), 1);
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ObElectionMsgDEPrepare msg(
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lower_priority, t1_ + T_ELECT2, send_ts_, ADDR[7], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg));
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EXPECT_EQ(OB_SUCCESS,
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msg_pool_.get_decentralized_candidate(ob_addr, priority, replica_num, t1_ + T_ELECT2, lease_time_));
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EXPECT_EQ(ADDR[7], ob_addr);
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EXPECT_EQ(0, priority.compare_with_accurate_logid(lower_priority));
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EXPECT_EQ(OB_ELECTION_WARN_T1_NOT_MATCH,
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msg_pool_.get_decentralized_candidate(ob_addr, priority, replica_num, t1_, lease_time_));
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EXPECT_EQ(OB_ELECTION_WARN_T1_NOT_MATCH,
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msg_pool_.get_decentralized_candidate(ob_addr, priority, replica_num, t1_ + 2 * T_ELECT2, lease_time_));
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ObElectionPriority higher_priority;
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higher_priority.init(true, 99999, ObVersion(1), 99999);
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ObElectionMsgDEPrepare msg2(priority, t1_, send_ts_, ADDR[6], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_ELECTION_WARN_MESSAGE_NOT_INTIME, msg_pool_.store(msg2));
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EXPECT_EQ(OB_SUCCESS,
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msg_pool_.get_decentralized_candidate(ob_addr, priority, replica_num, t1_ + T_ELECT2, lease_time_));
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EXPECT_EQ(ADDR[7], ob_addr);
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EXPECT_EQ(0, priority.compare_with_accurate_logid(lower_priority));
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}
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}
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}
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}
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TEST_F(TestObElectionMsgPool, centralized_multi_prepare_message)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgPrepare msg(ADDR[0], ADDR[0], t1_, send_ts_, ADDR[0], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg));
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EXPECT_EQ(OB_ELECTION_ERROR_DUPLICATED_MSG, msg_pool_.store(msg));
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ObElectionMsgPrepare msg2(ADDR[1], ADDR[2], t1_, send_ts_, ADDR[3], T_CENTRALIZED_VOTE_EXTENDS * T_ELECT2);
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EXPECT_EQ(OB_ELECTION_ERROR_DUPLICATED_MSG, msg_pool_.store(msg2));
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ObAddr cur_leader, new_leader;
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EXPECT_EQ(OB_SUCCESS, msg_pool_.get_centralized_candidate(cur_leader, new_leader, t1_));
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EXPECT_EQ(cur_leader, ADDR[0]);
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EXPECT_EQ(new_leader, ADDR[0]);
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}
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TEST_F(TestObElectionMsgPool, check_decentralized_majority)
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{
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reset();
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ObElectionMsgDEVote msg1(ADDR[0], t1_, send_ts_ + 400000, ADDR[0]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObElectionMsgDEVote msg2(ADDR[0], t1_, send_ts_ + 400000, ADDR[1]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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ObAddr new_leader;
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int64_t ticket = 0;
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EXPECT_EQ(OB_SUCCESS, msg_pool_.check_decentralized_majority(new_leader, ticket, 3, t1_));
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EXPECT_EQ(2, ticket);
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EXPECT_EQ(ADDR[0], new_leader);
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}
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TEST_F(TestObElectionMsgPool, check_decentralized_majority_diff_vote_leader)
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{
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reset();
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ObElectionMsgDEVote msg1(ADDR[0], t1_, send_ts_ + 400000, ADDR[0]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObElectionMsgDEVote msg2(ADDR[0], t1_, send_ts_ + 400000, ADDR[1]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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ObElectionMsgDEVote msg3(ADDR[1], t1_, send_ts_ + 400000, ADDR[2]);
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EXPECT_EQ(OB_ERR_UNEXPECTED, msg_pool_.store(msg3));
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ObAddr new_leader;
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int64_t ticket = 0;
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EXPECT_EQ(OB_SUCCESS, msg_pool_.check_decentralized_majority(new_leader, ticket, 3, t1_));
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EXPECT_EQ(new_leader, ADDR[0]);
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EXPECT_EQ(ticket, 2);
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EXPECT_EQ(OB_ELECTION_WARN_NOT_REACH_MAJORITY, msg_pool_.check_decentralized_majority(new_leader, ticket, 5, t1_));
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}
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TEST_F(TestObElectionMsgPool, get_centralized_majority_one_ticket)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgVote msg1(priority, ADDR[0], ADDR[0], t1_, send_ts_ + 400000, ADDR[0]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObAddr msg_cur_leader, msg_new_leader;
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ObElectionPriority leader_priority;
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EXPECT_EQ(OB_ELECTION_WARN_NOT_REACH_MAJORITY,
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msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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}
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TEST_F(TestObElectionMsgPool, check_centralized_majority)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgVote msg1(priority, ADDR[0], ADDR[1], t1_, send_ts_ + 400000, ADDR[1]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObElectionMsgVote msg2(priority, ADDR[0], ADDR[1], t1_, send_ts_ + 400000, ADDR[2]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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ObAddr msg_cur_leader, msg_new_leader;
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ObElectionPriority leader_priority;
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EXPECT_EQ(OB_SUCCESS, msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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EXPECT_EQ(0, leader_priority.compare_with_accurate_logid(priority));
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EXPECT_EQ(ADDR[0], msg_cur_leader);
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EXPECT_EQ(ADDR[1], msg_new_leader);
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}
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TEST_F(TestObElectionMsgPool, check_centralized_majority_no_sender)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgVote msg1(priority, ADDR[0], ADDR[2], t1_, send_ts_ + 400000, ADDR[0]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObElectionMsgVote msg2(priority, ADDR[0], ADDR[2], t1_, send_ts_ + 400000, ADDR[1]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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ObAddr msg_cur_leader, msg_new_leader;
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ObElectionPriority leader_priority;
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EXPECT_EQ(OB_ELECTION_WAIT_LEADER_MESSAGE,
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msg_pool_.check_centralized_majority(msg_cur_leader,
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msg_new_leader,
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leader_priority,
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3,
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t1_));
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ObElectionMsgVote msg3(priority, ADDR[0], ADDR[2], t1_, send_ts_ + 400000, ADDR[2]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg3));
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EXPECT_EQ(OB_SUCCESS, msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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EXPECT_EQ(ADDR[0], msg_cur_leader);
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EXPECT_EQ(ADDR[2], msg_new_leader);
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}
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TEST_F(TestObElectionMsgPool, check_centralized_change_leader_and_vote)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgVote msg1(priority, ADDR[0], ADDR[1], t1_, send_ts_ + 400000, ADDR[0]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObElectionMsgVote msg2(priority, ADDR[0], ADDR[1], t1_, send_ts_ + 400000, ADDR[1]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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ObAddr msg_cur_leader, msg_new_leader;
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ObElectionPriority leader_priority;
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EXPECT_EQ(OB_SUCCESS, msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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EXPECT_EQ(0, leader_priority.compare_with_accurate_logid(priority));
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EXPECT_EQ(ADDR[1], msg_new_leader);
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EXPECT_EQ(ADDR[0], msg_cur_leader);
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ObElectionPriority priority2;
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priority2.init(false, 2000, ObVersion(1), 100);
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ObElectionMsgVote msg3(priority2, ADDR[0], ADDR[0], t1_, send_ts_ + 400000, ADDR[2]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg3));
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EXPECT_EQ(OB_ELECTION_WARN_NOT_REACH_MAJORITY,
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msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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}
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TEST_F(TestObElectionMsgPool, check_centralized_majority_diff_new_leader)
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{
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reset();
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ObElectionPriority priority;
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priority.init(true, 1000, ObVersion(1), 100);
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ObElectionMsgVote msg1(priority, ADDR[0], ADDR[1], t1_, send_ts_ + 400000, ADDR[0]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg1));
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ObElectionMsgVote msg2(priority, ADDR[0], ADDR[2], t1_, send_ts_ + 400000, ADDR[2]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg2));
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ObAddr msg_cur_leader, msg_new_leader;
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ObElectionPriority leader_priority;
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EXPECT_EQ(OB_ELECTION_WARN_NOT_REACH_MAJORITY,
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msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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}
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TEST_F(TestObElectionMsgPool, check_new_T1_timestamp_clear_old_msg)
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{
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for (int i = 0; i < 10000; ++i) {
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for (auto replica_num : REPLICA_NUM) {
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reset();
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vector<ObElectionMsgVote> v_msg;
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for (int i = 0; i < replica_num / 2 + 1; i++) {
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ObElectionPriority priority;
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priority.init(true, 1000 + i, ObVersion(1), 100 + i);
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v_msg.emplace_back(priority, ADDR[0], ADDR[1], t1_, send_ts_ + 400000, ADDR[i]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(v_msg.back()));
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}
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ObAddr msg_cur_leader, msg_new_leader;
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ObElectionPriority leader_priority;
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EXPECT_EQ(
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OB_SUCCESS, msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, 3, t1_));
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election_.set_current_ts(t1_ + T_ELECT2 + rand() % (4 * T_DIFF + T_ST) - 2 * T_DIFF);
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ObElectionPriority priority;
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priority.init(true, 1, ObVersion(1), 100 + i);
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ObElectionMsgVote msg3(priority, ADDR[0], ADDR[1], t1_ + T_ELECT2, send_ts_ + 400000, ADDR[1]);
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EXPECT_EQ(OB_SUCCESS, msg_pool_.store(msg3));
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EXPECT_EQ(OB_ELECTION_WARN_T1_NOT_MATCH,
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msg_pool_.check_centralized_majority(msg_cur_leader, msg_new_leader, leader_priority, replica_num, t1_));
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EXPECT_EQ(OB_ELECTION_WARN_NOT_REACH_MAJORITY,
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msg_pool_.check_centralized_majority(
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msg_cur_leader, msg_new_leader, leader_priority, replica_num, t1_ + T_ELECT2));
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}
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}
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}
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} // namespace unittest
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} // namespace oceanbase
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int main(int argc, char** argv)
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{
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int ret = -1;
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oceanbase::election::ASYNC_LOG_INIT("test_election_msg_pool.log", OB_LOG_LEVEL_INFO, true);
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if (OB_FAIL(oceanbase::common::ObClockGenerator::init())) {
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ELECT_LOG(WARN, "clock generator init error.", K(ret));
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} else {
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testing::InitGoogleTest(&argc, argv);
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ret = RUN_ALL_TESTS();
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}
|
|
|
|
oceanbase::election::ASYNC_LOG_DESTROY();
|
|
(void)oceanbase::common::ObClockGenerator::destroy();
|
|
|
|
return ret;
|
|
}
|