403 lines
13 KiB
C++
403 lines
13 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 "common/ob_partition_key.h"
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#include "lib/net/ob_addr.h"
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#include "storage/transaction/ob_gts_mgr.h"
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#include "storage/transaction/ob_gts_rpc.h"
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#include "storage/transaction/ob_gts_define.h"
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namespace oceanbase {
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using namespace common;
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using namespace transaction;
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using namespace obrpc;
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namespace unittest {
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class MyTimestampService : public ObITimestampService {
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public:
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MyTimestampService()
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{}
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~MyTimestampService()
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{}
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void set(const ObAddr& self, const ObAddr& leader)
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{
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self_ = self;
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leader_ = leader;
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}
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void reset()
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{
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self_.reset();
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leader_.reset();
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}
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public:
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int get_timestamp(const ObPartitionKey& partition, int64_t& gts, ObAddr& leader) const
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{
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UNUSEDx(partition);
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int ret = OB_SUCCESS;
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if (!leader_.is_valid()) {
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ret = OB_NOT_MASTER;
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} else if (self_ == leader_) {
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gts = ObTimeUtility::current_time();
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leader = leader_;
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} else {
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leader = leader_;
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ret = OB_NOT_MASTER;
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}
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return ret;
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}
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private:
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ObAddr self_;
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ObAddr leader_;
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};
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class MyResponseRpc : public ObIGtsResponseRpc {
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public:
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MyResponseRpc()
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{}
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~MyResponseRpc()
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{}
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public:
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void set_valid_arg(
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const uint64_t tenant_id, const int status, const ObAddr& leader, const ObAddr& sender, const ObAddr self)
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{
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tenant_id_ = tenant_id;
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status_ = status;
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leader_ = leader;
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sender_ = sender;
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self_ = self;
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}
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int post(const uint64_t tenant_id, const ObAddr& server, const ObGtsErrResponse& msg)
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{
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int ret = OB_SUCCESS;
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if (!msg.is_valid() || tenant_id != tenant_id_ || msg.get_status() != status_ || msg.get_leader() != leader_ ||
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msg.get_sender() != sender_ || server != self_) {
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ret = OB_INVALID_ARGUMENT;
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TRANS_LOG(WARN, "invalid argument", K(ret), K(tenant_id), K(server), K(msg), K(*this));
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}
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return ret;
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}
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TO_STRING_KV(K_(tenant_id), K_(status), K_(leader), K_(sender), K_(self));
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private:
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uint64_t tenant_id_;
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int status_;
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ObAddr leader_;
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ObAddr sender_;
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ObAddr self_;
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};
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class TestObGtsMgr : public ::testing::Test {
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public:
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virtual void SetUp()
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{}
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virtual void TearDown()
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{}
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};
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//////////////////////basic function test//////////////////////////////////////////
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TEST_F(TestObGtsMgr, handle_gts_request_by_leader)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr client(ObAddr::IPV4, "10.0.0.1", 10000);
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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const ObAddr other_leader(ObAddr::IPV4, "10.0.0.2", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const int64_t ts_range = 1;
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ts_service.set(server, server);
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response_rpc.set_valid_arg(tenant_id, OB_SUCCESS, server, server, client);
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ObGtsRequest request;
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ObGtsRpcResult result;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_SUCCESS, request.init(tenant_id, srr, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_SUCCESS, gts.handle_request(request, result));
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EXPECT_EQ(tenant_id, result.get_tenant_id());
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EXPECT_EQ(OB_SUCCESS, result.get_status());
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EXPECT_EQ(srr, result.get_srr());
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EXPECT_EQ(ts_range - 1, result.get_gts_end() - result.get_gts_start());
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// EXPECT_TRUE(result.get_gts_start() >= srr);
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, handle_local_gts_request)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const int64_t ts_range = 1;
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ts_service.set(server, server);
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response_rpc.set_valid_arg(tenant_id, OB_SUCCESS, server, server, server);
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ObGtsRequest request;
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ObGtsRpcResult result;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_SUCCESS, request.init(tenant_id, srr, ts_range, gts_pkey, server));
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EXPECT_EQ(OB_SUCCESS, gts.handle_request(request, result));
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EXPECT_EQ(tenant_id, result.get_tenant_id());
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EXPECT_EQ(OB_SUCCESS, result.get_status());
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EXPECT_EQ(srr, result.get_srr());
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EXPECT_EQ(ts_range - 1, result.get_gts_end() - result.get_gts_start());
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// EXPECT_TRUE(result.get_gts_start() >= srr);
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, handle_gts_request_by_follower)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr client(ObAddr::IPV4, "10.0.0.1", 10000);
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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const ObAddr other_leader(ObAddr::IPV4, "10.0.0.2", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const int64_t ts_range = 1;
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ts_service.set(server, other_leader);
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response_rpc.set_valid_arg(tenant_id, OB_NOT_MASTER, other_leader, server, client);
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ObGtsRequest request;
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ObGtsRpcResult result;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_SUCCESS, request.init(tenant_id, srr, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_NOT_MASTER, gts.handle_request(request, result));
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EXPECT_EQ(tenant_id, result.get_tenant_id());
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EXPECT_EQ(OB_NOT_MASTER, result.get_status());
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EXPECT_EQ(srr, result.get_srr());
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EXPECT_EQ(0, result.get_gts_start());
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EXPECT_EQ(0, result.get_gts_end());
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, gts_not_master)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr client(ObAddr::IPV4, "10.0.0.1", 10000);
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const int64_t ts_range = 1;
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ts_service.set(server, ObAddr());
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response_rpc.set_valid_arg(tenant_id, OB_NOT_MASTER, ObAddr(), server, client);
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ObGtsRequest request;
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ObGtsRpcResult result;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_SUCCESS, request.init(tenant_id, srr, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_NOT_MASTER, gts.handle_request(request, result));
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EXPECT_EQ(tenant_id, result.get_tenant_id());
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EXPECT_EQ(OB_NOT_MASTER, result.get_status());
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EXPECT_EQ(srr, result.get_srr());
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EXPECT_EQ(0, result.get_gts_start());
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EXPECT_EQ(0, result.get_gts_end());
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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//////////////////////////boundary test/////////////////////////////////////////
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TEST_F(TestObGtsMgr, not_init)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr client(ObAddr::IPV4, "10.0.0.1", 10000);
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_NOT_INIT, gts.start());
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EXPECT_EQ(OB_NOT_INIT, gts.stop());
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EXPECT_EQ(OB_NOT_INIT, gts.wait());
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const int64_t ts_range = 1;
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ts_service.set(server, server);
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response_rpc.set_valid_arg(tenant_id, OB_SUCCESS, server, server, client);
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ObGtsRequest request;
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ObGtsRpcResult result;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_SUCCESS, request.init(tenant_id, srr, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_NOT_INIT, gts.handle_request(request, result));
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}
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TEST_F(TestObGtsMgr, not_start)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr client(ObAddr::IPV4, "10.0.0.1", 10000);
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const int64_t ts_range = 1;
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ts_service.set(server, server);
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response_rpc.set_valid_arg(tenant_id, OB_SUCCESS, server, server, client);
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ObGtsRequest request;
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ObGtsRpcResult result;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_SUCCESS, request.init(tenant_id, srr, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_NOT_RUNNING, gts.handle_request(request, result));
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EXPECT_EQ(OB_ERR_UNEXPECTED, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, restart_after_stop)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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EXPECT_EQ(OB_SUCCESS, gts.start());
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, restart_after_destroy)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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gts.destroy();
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, wait_before_stop)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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EXPECT_EQ(OB_ERR_UNEXPECTED, gts.wait());
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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TEST_F(TestObGtsMgr, invalid_argument)
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{
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TRANS_LOG(INFO, "called", "func", test_info_->name());
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const ObAddr client(ObAddr::IPV4, "10.0.0.1", 10000);
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const ObAddr server(ObAddr::IPV4, "10.0.0.1", 20000);
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MyTimestampService ts_service;
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MyResponseRpc response_rpc;
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ObGlobalTimestampService gts;
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EXPECT_EQ(OB_INVALID_ARGUMENT, gts.init(NULL, &response_rpc, server));
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EXPECT_EQ(OB_INVALID_ARGUMENT, gts.init(&ts_service, NULL, server));
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EXPECT_EQ(OB_INVALID_ARGUMENT, gts.init(&ts_service, &response_rpc, ObAddr()));
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EXPECT_EQ(OB_SUCCESS, gts.init(&ts_service, &response_rpc, server));
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EXPECT_EQ(OB_SUCCESS, gts.start());
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const uint64_t tenant_id = 1001;
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const MonotonicTs srr = MonotonicTs::current_time();
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const MonotonicTs stc;
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const int64_t ts_range = 1;
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ObGtsRequest request;
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ObPartitionKey gts_pkey;
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EXPECT_EQ(OB_SUCCESS, get_gts_pkey(tenant_id, gts_pkey));
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EXPECT_EQ(OB_INVALID_ARGUMENT, request.init(0, srr, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_INVALID_ARGUMENT, request.init(tenant_id, stc, ts_range, gts_pkey, client));
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EXPECT_EQ(OB_INVALID_ARGUMENT, request.init(tenant_id, srr, 0, gts_pkey, client));
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EXPECT_EQ(OB_INVALID_ARGUMENT, request.init(tenant_id, srr, ts_range, ObPartitionKey(), client));
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EXPECT_EQ(OB_INVALID_ARGUMENT, request.init(tenant_id, srr, ts_range, gts_pkey, ObAddr()));
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EXPECT_EQ(OB_SUCCESS, gts.stop());
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EXPECT_EQ(OB_SUCCESS, gts.wait());
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}
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} // namespace unittest
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} // namespace oceanbase
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using namespace oceanbase;
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using namespace oceanbase::common;
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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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ObLogger& logger = ObLogger::get_logger();
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logger.set_file_name("test_ob_gts_mgr.log", true);
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logger.set_log_level(OB_LOG_LEVEL_INFO);
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testing::InitGoogleTest(&argc, argv);
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ret = RUN_ALL_TESTS();
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return ret;
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}
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