354 lines
9.6 KiB
C++
354 lines
9.6 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 <gmock/gmock.h>
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#include "all_mock.h"
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#include "observer/omt/ob_multi_tenant.h"
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#include "observer/omt/ob_token_calcer.h"
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#define protected public
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#include "lib/alloc/ob_tenant_ctx_allocator.h"
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#undef protected
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#define protected public
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#include "observer/omt/ob_tenant.h"
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#undef protected
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#include "observer/omt/ob_worker_processor.h"
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#include "lib/random/ob_random.h"
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#include "lib/oblog/ob_log.h"
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#include "share/rc/ob_context.h"
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#include "share/rc/ob_tenant_base.h"
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#include "lib/allocator/ob_malloc.h"
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using namespace std;
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// using namespace share;
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using namespace oceanbase;
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using namespace oceanbase::common;
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using namespace oceanbase::lib;
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using namespace oceanbase::omt;
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using namespace oceanbase::observer;
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#define OMT_UNITTEST
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class MockObPxPools : public ObPxPools {
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public:
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MockObPxPools() : ObPxPools()
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{
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this_seq_ = MockObPxPools::seq_++;
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}
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~MockObPxPools()
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{
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MockObPxPools::seq_--;
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}
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static int mock_mtl_init(ObPxPools*& pool)
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{
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int ret = OB_SUCCESS;
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pool = OB_NEW(MockObPxPools, common::ObModIds::OMT_TENANT);
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if (OB_ISNULL(pool)) {
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ret = OB_ALLOCATE_MEMORY_FAILED;
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}
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return ret;
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}
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static void mock_mtl_destroy(ObPxPools*& pool)
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{
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MockObPxPools* ptr = static_cast<MockObPxPools*>(pool);
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OB_DELETE(MockObPxPools, common::ObModIds::OMT_TENANT, ptr);
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pool = nullptr;
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}
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int64_t get_seq()
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{
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return this_seq_;
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}
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private:
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static int64_t seq_;
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int64_t this_seq_;
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};
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int64_t MockObPxPools::seq_ = 0;
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class MockOMT : public ObMultiTenant {
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static constexpr auto TIMES_OF_WORKERS = 10;
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public:
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MockOMT() : ObMultiTenant(procor_)
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{}
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int add_tenant(uint64_t tenant_id)
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{
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return ObMultiTenant::add_tenant(tenant_id, 1, 1);
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}
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private:
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ObFakeWorkerProcessor procor_;
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};
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class TestMultiTenant : public ::testing::Test {
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public:
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TestMultiTenant()
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{
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all_mock_init();
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}
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static int fake_init_compat_mode(ObWorker::CompatMode& compat_mode)
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{
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compat_mode = ObWorker::CompatMode::ORACLE;
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return OB_SUCCESS;
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}
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static int fake_trans_audit_recmgr_mtl_init(transaction::ObTransAuditRecordMgr*& mgr)
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{
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mgr = nullptr;
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return OB_SUCCESS;
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}
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static int fake_dfc_mtl_init(sql::dtl::ObTenantDfc*& dfc)
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{
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dfc = nullptr;
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return OB_SUCCESS;
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}
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virtual void SetUp()
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{
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static constexpr auto NODE_QUOTA = 10;
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EXPECT_EQ(OB_SUCCESS, omt_.init(ObAddr(), NODE_QUOTA));
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MTL_BIND(fake_init_compat_mode, nullptr);
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MTL_BIND(fake_trans_audit_recmgr_mtl_init, nullptr);
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MTL_BIND(fake_dfc_mtl_init, nullptr);
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}
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virtual void TearDown()
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{
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// Delete all tenants and ensure that resources are released
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TenantIdList ids;
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omt_.get_tenant_ids(ids);
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for (int64_t index = 0; index < ids.size(); index++) {
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omt_.del_tenant(ids[index], true);
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}
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// omt_.clear();
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omt_.destroy();
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}
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// void clear() { omt_.clear(); }
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protected:
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MockOMT omt_;
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};
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TEST_F(TestMultiTenant, basic)
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{
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// sorted
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uint64_t tenants[] = {100, 24, 45, 1, 94, 23, 9, 17, 10000};
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int cnt = sizeof(tenants) / sizeof(uint64_t);
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int ret = OB_SUCCESS;
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for (int i = 0; i < cnt; i++) {
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ret = omt_.add_tenant(tenants[i]);
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ASSERT_EQ(ret, OB_SUCCESS);
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}
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TenantList& list = omt_.get_tenant_list();
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ASSERT_EQ(cnt, list.size());
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uint64_t last = 0;
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for (auto it = list.begin(); it != list.end(); it++) {
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ASSERT_GT((*it)->id(), last);
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last = (*it)->id();
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}
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ret = omt_.add_tenant(tenants[0]);
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ASSERT_EQ(OB_TENANT_EXIST, ret);
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omt_.del_tenant(tenants[0]);
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// ASSERT_EQ(OB_SUCCESS, ret); // partition_service should init
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ret = omt_.add_tenant(tenants[0]);
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ASSERT_EQ(OB_SUCCESS, ret);
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}
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TEST_F(TestMultiTenant, RS_TENANT)
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{
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uint64_t tenant_id = OB_RS_TENANT_ID;
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int ret = omt_.add_tenant(tenant_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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lib::ObMallocAllocator* ma = lib::ObMallocAllocator::get_instance();
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ASSERT_EQ(OB_RS_MEMORY, ma->get_tenant_limit(OB_RS_TENANT_ID));
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}
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// int get_tenant_with_tenant_lock(const uint64_t tenant_id, ObTenant *&tenant) const;
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TEST_F(TestMultiTenant, tenant_lock)
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{
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int ret = OB_SUCCESS;
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uint64_t tenant_id = 100;
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omt_.add_tenant(tenant_id);
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ObLDHandle handle;
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// new
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ObTenant* tenant = nullptr;
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ret = omt_.get_tenant_with_tenant_lock(tenant_id, handle, tenant);
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ASSERT_EQ(ret, OB_SUCCESS);
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ASSERT_NE(tenant, nullptr);
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ASSERT_TRUE(tenant->lock_.is_locked());
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tenant->unlock(handle);
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ASSERT_FALSE(tenant->lock_.is_locked());
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// old
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tenant = nullptr;
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ret = omt_.get_tenant(tenant_id, tenant);
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ASSERT_EQ(ret, OB_SUCCESS);
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ASSERT_NE(tenant, nullptr);
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ASSERT_FALSE(tenant->lock_.is_locked());
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}
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TEST_F(TestMultiTenant, get_tenant_context)
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{
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int ret = OB_SUCCESS;
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uint64_t tenant_id = 100;
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omt_.add_tenant(tenant_id);
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GCTX.omt_ = &omt_;
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share::ObTenantSpace* ctx = nullptr;
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ObLDHandle handle;
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ret = share::get_tenant_ctx_with_tenant_lock(tenant_id, handle, ctx);
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ASSERT_EQ(ret, OB_SUCCESS);
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ASSERT_NE(ctx, nullptr);
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ASSERT_NE(ctx->get_tenant(), nullptr);
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ASSERT_TRUE(static_cast<ObTenant*>(ctx->get_tenant())->lock_.is_locked());
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static_cast<ObTenant*>(ctx->get_tenant())->unlock(handle);
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}
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class CtxMemConfigGetter : public ObICtxMemConfigGetter {
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public:
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virtual int get(common::ObIArray<ObCtxMemConfig>& configs)
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{
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int ret = OB_SUCCESS;
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{
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ObCtxMemConfig cfg;
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cfg.ctx_id_ = 10;
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cfg.idle_size_ = 10 * INTACT_ACHUNK_SIZE;
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ret = configs.push_back(cfg);
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}
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{
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ObCtxMemConfig cfg;
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cfg.ctx_id_ = 11;
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cfg.idle_size_ = 20 * INTACT_ACHUNK_SIZE;
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ret = configs.push_back(cfg);
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}
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return ret;
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}
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};
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static CtxMemConfigGetter mcg;
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TEST_F(TestMultiTenant, idle)
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{
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omt::ObMultiTenant::mcg_ = &mcg;
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uint64_t tenant_id = 100;
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int ret = omt_.add_tenant(tenant_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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common::ObArray<ObCtxMemConfig> configs;
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mcg.get(configs);
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ASSERT_TRUE(2 == configs.size());
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ObMallocAllocator* malloc_allocator = ObMallocAllocator::get_instance();
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for (int i = 0; i < configs.size(); i++) {
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ObCtxMemConfig& cfg = configs.at(i);
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ObTenantCtxAllocator* ta = malloc_allocator->get_tenant_ctx_allocator(tenant_id, cfg.ctx_id_);
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ASSERT_TRUE(NULL != ta);
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int64_t chunk_cnt = cfg.idle_size_ / INTACT_ACHUNK_SIZE;
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ASSERT_EQ(ta->chunk_cnt_, chunk_cnt);
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ASSERT_EQ(ta->idle_size_, cfg.idle_size_);
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ASSERT_NE(0, malloc_allocator->get_tenant_ctx_hold(tenant_id, cfg.ctx_id_));
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}
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// delete
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omt_.del_tenant(tenant_id);
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for (int i = 0; i < configs.size(); i++) {
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ObCtxMemConfig& cfg = configs.at(i);
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ObTenantCtxAllocator* ta = malloc_allocator->get_tenant_ctx_allocator(tenant_id, cfg.ctx_id_);
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ASSERT_TRUE(NULL != ta);
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ASSERT_EQ(0, malloc_allocator->get_tenant_ctx_hold(tenant_id, cfg.ctx_id_));
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}
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}
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TEST_F(TestMultiTenant, tenant_local)
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{
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MTL_BIND(MockObPxPools::mock_mtl_init, MockObPxPools::mock_mtl_destroy);
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uint64_t tenant_id[] = {1010, 1011};
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int64_t& seq = MockObPxPools::seq_;
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ASSERT_EQ(seq, 0);
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omt_.add_tenant(tenant_id[0]);
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ASSERT_EQ(seq, 1);
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omt_.add_tenant(tenant_id[1]);
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ASSERT_EQ(seq, 2);
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int ret = OB_SUCCESS;
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FETCH_ENTITY(TENANT_SPACE, tenant_id[0])
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{
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ObPxPools* px_pool = MTL_GET(ObPxPools*);
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ASSERT_NE(px_pool, nullptr);
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MockObPxPools* mock_pool = static_cast<MockObPxPools*>(px_pool);
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ASSERT_EQ(mock_pool->get_seq(), 0);
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FETCH_ENTITY(TENANT_SPACE, tenant_id[1])
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{
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ObPxPools* px_pool2 = MTL_GET(ObPxPools*);
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ASSERT_NE(px_pool2, nullptr);
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ASSERT_NE(px_pool2, px_pool);
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MockObPxPools* mock_pool2 = static_cast<MockObPxPools*>(px_pool2);
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ASSERT_EQ(mock_pool2->get_seq(), 1);
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}
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else
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{
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ASSERT_TRUE(false);
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}
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px_pool = MTL_GET(ObPxPools*);
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ASSERT_NE(px_pool, nullptr);
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mock_pool = static_cast<MockObPxPools*>(px_pool);
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ASSERT_EQ(mock_pool->get_seq(), 0);
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}
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else
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{
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ASSERT_TRUE(false);
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}
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omt_.del_tenant(tenant_id[0]);
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ASSERT_EQ(seq, 1);
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omt_.del_tenant(tenant_id[1]);
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ASSERT_EQ(seq, 0);
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}
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TEST_F(TestMultiTenant, table_context)
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{
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int ret = OB_SUCCESS;
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uint64_t tenant_id = 1001;
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ret = omt_.add_tenant(tenant_id); // fake compat mode is oracle
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ASSERT_EQ(OB_SUCCESS, ret);
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GCTX.omt_ = &omt_;
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uint64_t table_id = combine_id(1001, OB_MAX_SYS_TABLE_ID);
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THIS_WORKER.set_compatibility_mode(ObWorker::CompatMode::INVALID);
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ObWorker::CompatMode orig_compat_mode = ObWorker::CompatMode::INVALID;
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bool flag = false;
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CREATE_WITH_TEMP_ENTITY(TABLE_SPACE, table_id)
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{
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flag = true;
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ASSERT_EQ(ObWorker::CompatMode::MYSQL, THIS_WORKER.get_compatibility_mode());
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}
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ASSERT_TRUE(flag);
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ASSERT_EQ(orig_compat_mode, THIS_WORKER.get_compatibility_mode());
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flag = false;
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table_id = combine_id(1001, OB_MAX_SYS_TABLE_ID + 1);
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CREATE_WITH_TEMP_ENTITY(TABLE_SPACE, table_id)
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{
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flag = true;
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ASSERT_EQ(ObWorker::CompatMode::ORACLE, THIS_WORKER.get_compatibility_mode());
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}
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ASSERT_TRUE(flag);
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ASSERT_EQ(orig_compat_mode, THIS_WORKER.get_compatibility_mode());
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}
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int main(int argc, char* argv[])
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{
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::testing::InitGoogleMock(&argc, argv);
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if (argc > 1) {
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OB_LOGGER.set_log_level(3);
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}
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return RUN_ALL_TESTS();
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}
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