patch 4.0
This commit is contained in:
@ -24,21 +24,27 @@
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#include "sql/ob_sql_init.h"
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#include "share/datum/ob_datum.h"
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#include "sql/engine/expr/ob_expr.h"
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#include "share/ob_simple_mem_limit_getter.h"
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namespace oceanbase {
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namespace sql {
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namespace oceanbase
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{
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namespace sql
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{
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using namespace common;
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static ObSimpleMemLimitGetter getter;
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class TestEnv : public ::testing::Environment {
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class TestEnv : public ::testing::Environment
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{
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public:
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virtual void SetUp() override
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{
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GCONF.enable_sql_operator_dump.set_value("True");
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int ret = OB_SUCCESS;
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lib::ObMallocAllocator* malloc_allocator = lib::ObMallocAllocator::get_instance();
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// ret = malloc_allocator->create_tenant_ctx_allocator(OB_SYS_TENANT_ID);
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// ASSERT_EQ(OB_SUCCESS, ret);
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ret = malloc_allocator->create_tenant_ctx_allocator(OB_SYS_TENANT_ID, common::ObCtxIds::WORK_AREA);
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lib::ObMallocAllocator *malloc_allocator = lib::ObMallocAllocator::get_instance();
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//ret = malloc_allocator->create_tenant_ctx_allocator(OB_SYS_TENANT_ID);
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//ASSERT_EQ(OB_SUCCESS, ret);
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ret = malloc_allocator->create_tenant_ctx_allocator(
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OB_SYS_TENANT_ID, common::ObCtxIds::WORK_AREA);
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ASSERT_EQ(OB_SUCCESS, ret);
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int s = (int)time(NULL);
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LOG_INFO("initial setup random seed", K(s));
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@ -46,52 +52,109 @@ public:
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}
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virtual void TearDown() override
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{}
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{
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}
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};
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#define CALL(func, ...) \
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func(__VA_ARGS__); \
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ASSERT_FALSE(HasFatalFailure());
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#define CALL(func, ...) func(__VA_ARGS__); ASSERT_FALSE(HasFatalFailure());
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class TestChunkDatumStore : public blocksstable::TestDataFilePrepare {
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struct MyAllocator : public DefaultPageAllocator
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{
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void *alloc(const int64_t sz, const ObMemAttr &attr) override
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{
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int64_t size = sz + 8;
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uint64_t *mem = (uint64_t *)DefaultPageAllocator::alloc(size, attr);
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if (NULL != mem) {
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*mem = sz;
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total_ += sz;
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return mem + 1;
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}
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return NULL;
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}
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void free(void *p)
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{
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if (NULL != p) {
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uint64_t *mem = ((uint64_t *)p - 1);
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total_ -= *mem;
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memset(p, 0xAA, *mem);
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DefaultPageAllocator::free(mem);
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}
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}
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int64_t total_ = 0;
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};
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class TestChunkDatumStore : public blocksstable::TestDataFilePrepare
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{
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public:
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TestChunkDatumStore()
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: blocksstable::TestDataFilePrepare("TestDisk_chunk_datum_store", 2 << 20, 5000),
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eval_ctx_(exec_ctx_, eval_res_, eval_tmp_)
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{}
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TestChunkDatumStore() : blocksstable::TestDataFilePrepare(&getter,
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"TestDisk_chunk_datum_store", 2<<20, 5000),
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plan_ctx_(alloc_),
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exec_ctx_(alloc_),
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eval_ctx_(exec_ctx_)
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{
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}
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struct BatchGuard
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{
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BatchGuard(TestChunkDatumStore &t) : t_(t)
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{
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FOREACH_CNT(e, t_.cells_) {
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(*e)->batch_result_ = true;
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}
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FOREACH_CNT(e, t_.ver_cells_) {
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(*e)->batch_result_ = true;
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}
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}
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~BatchGuard()
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{
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FOREACH_CNT(e, t_.cells_) {
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(*e)->batch_result_ = false;
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}
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FOREACH_CNT(e, t_.ver_cells_) {
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(*e)->batch_result_ = false;
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}
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}
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TestChunkDatumStore &t_;
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};
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void init_exprs()
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{
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int ret = OB_SUCCESS;
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int64_t pos = 0;
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eval_ctx_.frames_ = static_cast<char**>(alloc_.alloc(sizeof(void*) * 2));
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ASSERT_EQ(true, nullptr != eval_ctx_.frames_);
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eval_ctx_.frames_[0] = (char*)alloc_.alloc(4096);
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int64_t frame_size = (sizeof(ObDatum) + 16) * COLS * batch_size_ * 2;
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eval_ctx_.frames_[0] = (char *)alloc_.alloc(frame_size);
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memset(eval_ctx_.frames_[0], 0, frame_size);
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ASSERT_EQ(true, nullptr != eval_ctx_.frames_[0]);
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const int64_t datum_eval_info_size = sizeof(ObDatum) + sizeof(ObEvalInfo);
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for (int64_t i = 0; i < COLS; ++i) {
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ObExpr* expr = static_cast<ObExpr*>(alloc_.alloc(sizeof(ObExpr)));
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ObExpr *expr = new (alloc_.alloc(sizeof(ObExpr))) ObExpr();
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ASSERT_EQ(OB_SUCCESS, cells_.push_back(expr));
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expr->frame_idx_ = 0;
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expr->datum_off_ = pos;
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expr->eval_info_off_ = pos + sizeof(ObDatum);
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pos += datum_eval_info_size;
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ObDatum* expr_datum = &expr->locate_expr_datum(eval_ctx_);
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new (expr_datum) ObDatum;
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expr_datum->ptr_ = eval_ctx_.frames_[0] + pos;
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pos += sizeof(int64_t);
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pos += sizeof(ObDatum) * batch_size_;
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expr->eval_info_off_ = pos;
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pos += sizeof(ObEvalInfo);
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ObDatum *datums = expr->locate_batch_datums(eval_ctx_);
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for (int64_t j = 0; j < batch_size_; j++) {
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datums[j].ptr_ = eval_ctx_.frames_[0] + pos;
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pos += 8;
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}
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}
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for (int64_t i = 0; i < COLS; ++i) {
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ObExpr* expr = static_cast<ObExpr*>(alloc_.alloc(sizeof(ObExpr)));
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ObExpr *expr = new (alloc_.alloc(sizeof(ObExpr))) ObExpr();
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ASSERT_EQ(OB_SUCCESS, ver_cells_.push_back(expr));
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expr->frame_idx_ = 0;
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expr->datum_off_ = pos;
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expr->eval_info_off_ = pos + sizeof(ObDatum);
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pos += datum_eval_info_size;
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ObDatum* expr_datum = &expr->locate_expr_datum(eval_ctx_);
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new (expr_datum) ObDatum;
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expr_datum->ptr_ = eval_ctx_.frames_[0] + pos;
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pos += sizeof(int64_t);
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pos += sizeof(ObDatum) * batch_size_;
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expr->eval_info_off_ = pos;
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pos += sizeof(ObEvalInfo);
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ObDatum *datums = expr->locate_batch_datums(eval_ctx_);
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for (int64_t j = 0; j < batch_size_; j++) {
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datums[j].ptr_ = eval_ctx_.frames_[0] + pos;
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pos += 8;
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}
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}
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}
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virtual void SetUp() override
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@ -101,16 +164,31 @@ public:
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blocksstable::TestDataFilePrepare::SetUp();
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ret = blocksstable::ObTmpFileManager::get_instance().init();
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ASSERT_EQ(OB_SUCCESS, ret);
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static ObTenantBase tenant_ctx(tenant_id_);
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ObTenantEnv::set_tenant(&tenant_ctx);
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ObTenantIOManager *io_service = nullptr;
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EXPECT_EQ(OB_SUCCESS, ObTenantIOManager::mtl_init(io_service));
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cell_cnt_ = COLS;
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init_exprs();
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// mem limit 1M
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plan_.set_batch_size(batch_size_);
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plan_ctx_.set_phy_plan(&plan_);
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eval_ctx_.set_max_batch_size(batch_size_);
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exec_ctx_.set_physical_plan_ctx(&plan_ctx_);
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skip_ = (ObBitVector *)alloc_.alloc(ObBitVector::memory_size(batch_size_));
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//mem limit 1M
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rs_.set_allocator(rs_alloc_);
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ret = rs_.init(1L << 20, tenant_id_, ctx_id_, label_);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(OB_SUCCESS, rs_.alloc_dir_id());
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memset(str_buf_, 'z', BUF_SIZE);
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memset(str_buf_, 'a', BUF_SIZE);
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for (int64_t i = 0; i < BUF_SIZE; i++) {
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str_buf_[i] += i % 26;
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}
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LOG_INFO("setup finished");
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}
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@ -124,39 +202,45 @@ public:
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blocksstable::ObTmpFileManager::get_instance().destroy();
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blocksstable::TestDataFilePrepare::TearDown();
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ObTenantManager::get_instance().destroy();
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LOG_WARN("TearDown finished", K_(rs));
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}
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void gen_row(int64_t row_id)
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void gen_row(int64_t row_id, int64_t idx = 0)
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{
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ObDatum* expr_datum_0 = &cells_.at(0)->locate_expr_datum(eval_ctx_);
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ObDatum *expr_datum_0 = &cells_.at(0)->locate_batch_datums(eval_ctx_)[idx];
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expr_datum_0->set_int(row_id);
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cells_.at(0)->get_eval_info(eval_ctx_).evaluated_ = true;
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cells_.at(0)->get_eval_info(eval_ctx_).projected_ = true;
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int64_t max_size = 512;
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if (enable_big_row_ && row_id > 0 && random() % 100000 < 5) {
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max_size = 1 << 20;
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}
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ObDatum* expr_datum_1 = &cells_.at(1)->locate_expr_datum(eval_ctx_);
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ObDatum *expr_datum_1 = &cells_.at(1)->locate_batch_datums(eval_ctx_)[idx];
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expr_datum_1->set_null();
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cells_.at(1)->get_eval_info(eval_ctx_).evaluated_ = true;
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cells_.at(1)->get_eval_info(eval_ctx_).projected_ = true;
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int64_t size = 10 + random() % max_size;
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ObDatum* expr_datum_2 = &cells_.at(2)->locate_expr_datum(eval_ctx_);
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ObDatum *expr_datum_2 = &cells_.at(2)->locate_batch_datums(eval_ctx_)[idx];
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expr_datum_2->set_string(str_buf_, (int)size);
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cells_.at(2)->get_eval_info(eval_ctx_).evaluated_ = true;
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cells_.at(2)->get_eval_info(eval_ctx_).projected_ = true;
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}
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// varify next row
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// template <typename T>
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//varify next row
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//template <typename T>
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void verify_row(ObChunkDatumStore::Iterator& it, int64_t n, bool verify_all = false)
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{
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int ret = it.get_next_row(ver_cells_, eval_ctx_);
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ASSERT_EQ(OB_SUCCESS, ret);
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CALL(verify_row_data, n, verify_all);
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}
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ObDatum* expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
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ObDatum* expr_datum_1 = &ver_cells_.at(1)->locate_expr_datum(eval_ctx_);
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ObDatum* expr_datum_2 = &ver_cells_.at(2)->locate_expr_datum(eval_ctx_);
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void verify_row_data(int64_t n, bool verify_all = false, int64_t idx = 0)
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{
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ObDatum *expr_datum_0 = &ver_cells_.at(0)->locate_batch_datums(eval_ctx_)[idx];
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ObDatum *expr_datum_1 = &ver_cells_.at(1)->locate_batch_datums(eval_ctx_)[idx];
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ObDatum *expr_datum_2 = &ver_cells_.at(2)->locate_batch_datums(eval_ctx_)[idx];
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int64_t v = expr_datum_0->get_int();
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if (verify_all) {
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expr_datum_1->is_null();
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@ -181,8 +265,8 @@ public:
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return verify_row(it_, id, verify_all);
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}
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void verify_n_rows(ObChunkDatumStore& rs, ObChunkDatumStore::Iterator& it, int64_t n, bool verify_all = false,
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int64_t chunk_size = 0, int64_t start = 0)
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void verify_n_rows(ObChunkDatumStore &rs, ObChunkDatumStore::Iterator& it,
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int64_t n, bool verify_all = false, int64_t chunk_size = 0, int64_t start = 0)
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{
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if (!it.is_valid()) {
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ASSERT_EQ(rs.begin(it), 0);
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@ -198,7 +282,7 @@ public:
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return verify_n_rows(rs_, it_, n, verify_all);
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}
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void append_rows(ObChunkDatumStore& rs, int64_t cnt)
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void append_rows(ObChunkDatumStore &rs, int64_t cnt)
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{
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int64_t ret = OB_SUCCESS;
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int64_t base = rs.get_row_cnt();
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@ -215,6 +299,45 @@ public:
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return append_rows(rs_, cnt);
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}
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void batch_append_rows(int64_t cnt)
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{
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int64_t ret = 0;
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int64_t base = rs_.get_row_cnt();
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skip_->reset(batch_size_);
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for (int64_t i = 0; i < cnt;) {
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int64_t bcnt = std::min(cnt - i, batch_size_);
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for (int64_t j = 0; j < bcnt; j++, i++) {
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gen_row(base + i, j);
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}
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int64_t stored_row_cnt = 0;
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ret = rs_.add_batch(cells_, eval_ctx_, *skip_, bcnt, stored_row_cnt);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(stored_row_cnt, bcnt);
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}
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ASSERT_EQ(base + cnt, rs_.get_row_cnt());
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}
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void batch_verify_all(int64_t chunk_size)
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{
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it_.reset();
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ASSERT_EQ(OB_SUCCESS, rs_.begin(it_, chunk_size));
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int64_t read_cnt = 0;
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int ret = OB_SUCCESS;
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while (OB_SUCC(ret)) {
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int64_t cnt = 0;
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ret = it_.get_next_batch(ver_cells_, eval_ctx_, batch_size_, cnt);
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if (OB_SUCC(ret)) {
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ASSERT_GT(cnt, 0);
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for (int64_t i = 0; i < cnt; i++) {
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CALL(verify_row_data, read_cnt + i, true, i);
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}
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read_cnt += cnt;
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}
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}
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ASSERT_EQ(OB_ITER_END, ret);
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ASSERT_EQ(read_cnt, rs_.get_row_cnt());
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}
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void test_time(int64_t block_size, int64_t rows)
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{
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ObArenaAllocator alloc(ObModIds::OB_MODULE_PAGE_ALLOCATOR, 2 << 20);
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@ -232,18 +355,15 @@ public:
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ret = rs.add_row(cells_, &eval_ctx_);
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ASSERT_EQ(OB_SUCCESS, ret);
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}
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LOG_INFO("rs write time:",
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K(block_size),
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K(rows),
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K(rs.get_block_cnt()),
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K(rs.get_block_list_cnt()),
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LOG_INFO("rs write time:", K(block_size), K(rows),
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K(rs.get_block_cnt()), K(rs.get_block_list_cnt()),
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K(ObTimeUtil::current_time() - begin));
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begin = ObTimeUtil::current_time();
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ObChunkDatumStore::Iterator it;
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ASSERT_EQ(rs.begin(it), 0);
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i = 0;
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while (OB_SUCC(it.get_next_row(ver_cells_, eval_ctx_))) {
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ObDatum* expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
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ObDatum *expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
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v = *expr_datum_0->int_;
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ASSERT_EQ(i, v);
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i++;
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@ -252,23 +372,28 @@ public:
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}
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void with_or_without_chunk(bool is_with);
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protected:
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const static int64_t COLS = 3;
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bool enable_big_row_ = false;
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int64_t cell_cnt_;
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ObSEArray<ObExpr*, COLS> cells_;
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ObSEArray<ObExpr*, COLS> ver_cells_;
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MyAllocator rs_alloc_;
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ObChunkDatumStore rs_;
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ObChunkDatumStore::Iterator it_;
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// 256 is average row length, contain 5 blocks per batch.
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int64_t batch_size_ = (64L << 10) * 5 / 256;
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ObBitVector *skip_;
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int64_t tenant_id_ = OB_SYS_TENANT_ID;
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int64_t ctx_id_ = ObCtxIds::WORK_AREA;
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const char* label_ = ObModIds::OB_SQL_ROW_STORE;
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const char *label_ = ObModIds::OB_SQL_ROW_STORE;
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const static int64_t BUF_SIZE = 2 << 20;
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char str_buf_[BUF_SIZE];
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ObArenaAllocator alloc_;
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ObPhysicalPlan plan_;
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ObPhysicalPlanCtx plan_ctx_;
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ObExecContext exec_ctx_;
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ObArenaAllocator eval_res_;
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ObArenaAllocator eval_tmp_;
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@ -278,7 +403,6 @@ protected:
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int TestChunkDatumStore::init_tenant_mgr()
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{
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int ret = OB_SUCCESS;
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ObTenantManager& tm = ObTenantManager::get_instance();
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ObAddr self;
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oceanbase::rpc::frame::ObReqTransport req_transport(NULL, NULL);
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oceanbase::obrpc::ObSrvRpcProxy rpc_proxy;
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@ -286,36 +410,32 @@ int TestChunkDatumStore::init_tenant_mgr()
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oceanbase::share::ObRsMgr rs_mgr;
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int64_t tenant_id = OB_SYS_TENANT_ID;
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self.set_ip_addr("127.0.0.1", 8086);
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ret = tm.init(self, rpc_proxy, rs_rpc_proxy, rs_mgr, &req_transport, &ObServerConfig::get_instance());
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EXPECT_EQ(OB_SUCCESS, ret);
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ret = tm.add_tenant(tenant_id);
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EXPECT_EQ(OB_SUCCESS, ret);
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ret = tm.set_tenant_mem_limit(tenant_id, 2L * 1024L * 1024L * 1024L, 4L * 1024L * 1024L * 1024L);
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EXPECT_EQ(OB_SUCCESS, ret);
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ret = tm.add_tenant(OB_SYS_TENANT_ID);
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EXPECT_EQ(OB_SUCCESS, ret);
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ret = tm.add_tenant(OB_SERVER_TENANT_ID);
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ret = getter.add_tenant(tenant_id,
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2L * 1024L * 1024L * 1024L, 4L * 1024L * 1024L * 1024L);
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EXPECT_EQ(OB_SUCCESS, ret);
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||||
const int64_t ulmt = 128LL << 30;
|
||||
const int64_t llmt = 128LL << 30;
|
||||
ret = tm.set_tenant_mem_limit(OB_SYS_TENANT_ID, ulmt, llmt);
|
||||
ret = getter.add_tenant(OB_SERVER_TENANT_ID,
|
||||
ulmt,
|
||||
llmt);
|
||||
EXPECT_EQ(OB_SUCCESS, ret);
|
||||
oceanbase::lib::set_memory_limit(128LL << 32);
|
||||
return ret;
|
||||
}
|
||||
|
||||
|
||||
// Test start
|
||||
TEST_F(TestChunkDatumStore, basic)
|
||||
{
|
||||
int ret = OB_SUCCESS;
|
||||
LOG_WARN("starting basic test: append 3000 rows");
|
||||
CALL(append_rows, 3000); // approximate 1MB, no need to dump
|
||||
CALL(append_rows, 3000); // approximate 1MB, no need to dump
|
||||
CALL(verify_n_rows, rs_.get_row_cnt(), true);
|
||||
LOG_WARN("basic test: varified rows", K(rs_.get_row_cnt()));
|
||||
it_.reset();
|
||||
|
||||
LOG_WARN("starting basic test: append 10000 rows");
|
||||
CALL(append_rows, 10000); // need to dump
|
||||
CALL(append_rows, 10000); //need to dump
|
||||
rs_.finish_add_row();
|
||||
LOG_WARN("mem", K(rs_.get_mem_hold()), K(rs_.get_mem_used()));
|
||||
ASSERT_EQ(13000, rs_.get_row_cnt());
|
||||
@ -350,6 +470,103 @@ TEST_F(TestChunkDatumStore, basic)
|
||||
rs_.reset();
|
||||
}
|
||||
|
||||
TEST_F(TestChunkDatumStore, has_next_bug)
|
||||
{
|
||||
rs_.reset();
|
||||
int ret = rs_.init(1024, tenant_id_, ctx_id_, label_);
|
||||
rs_.set_allocator(rs_alloc_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
CALL(append_rows, 10000);
|
||||
ASSERT_EQ(OB_SUCCESS, rs_.finish_add_row(true));
|
||||
int64_t mem_before_iterate = rs_alloc_.total_;
|
||||
ObChunkDatumStore::Iterator it;
|
||||
ASSERT_EQ(OB_SUCCESS, rs_.begin(it));
|
||||
for (int64_t i = 0; i < 10000; i++) {
|
||||
ASSERT_TRUE(it.has_next());
|
||||
CALL(verify_row, it, i, true);
|
||||
}
|
||||
ASSERT_FALSE(it.has_next());
|
||||
ASSERT_EQ(OB_ITER_END, it.get_next_row(ver_cells_, eval_ctx_));
|
||||
|
||||
int64_t mem_used = rs_alloc_.total_ - mem_before_iterate;
|
||||
ASSERT_LT(mem_used, 500L * 1024L)
|
||||
<< " mem_before_iterate: " << mem_before_iterate
|
||||
<< " cur_mem: " << rs_alloc_.total_;
|
||||
}
|
||||
|
||||
TEST_F(TestChunkDatumStore, iteration_age)
|
||||
{
|
||||
rs_.reset();
|
||||
int ret = rs_.init(1024, tenant_id_, ctx_id_, label_);
|
||||
rs_.set_allocator(rs_alloc_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
CALL(append_rows, 20000);
|
||||
ASSERT_EQ(OB_SUCCESS, rs_.finish_add_row(true));
|
||||
int64_t mem_before_iterate = rs_alloc_.total_;
|
||||
ObChunkDatumStore::Iterator it;
|
||||
ObChunkDatumStore::IterationAge age;
|
||||
ASSERT_EQ(OB_SUCCESS, rs_.begin(it));
|
||||
// hold the iterated blocks
|
||||
it.set_iteration_age(&age);
|
||||
age.inc();
|
||||
for (int64_t i = 0; i < 10000; i++) {
|
||||
ASSERT_TRUE(it.has_next());
|
||||
CALL(verify_row, it, i, true);
|
||||
}
|
||||
int64_t mem_used = rs_alloc_.total_ - mem_before_iterate;
|
||||
ASSERT_GT(mem_used, 1024L * 1024L)
|
||||
<< " mem_before_iterate: " << mem_before_iterate
|
||||
<< " cur_mem: " << rs_alloc_.total_;
|
||||
|
||||
mem_before_iterate = rs_alloc_.total_;
|
||||
// release the iterated blocks.
|
||||
for (int64_t i = 10000; i < 20000; i++) {
|
||||
age.inc();
|
||||
ASSERT_TRUE(it.has_next());
|
||||
CALL(verify_row, it, i, true);
|
||||
}
|
||||
|
||||
mem_used = rs_alloc_.total_ - mem_before_iterate;
|
||||
ASSERT_LT(mem_used, 500L * 1024L)
|
||||
<< " mem_before_iterate: " << mem_before_iterate
|
||||
<< " cur_mem: " << rs_alloc_.total_;
|
||||
}
|
||||
|
||||
TEST_F(TestChunkDatumStore, batch_basic)
|
||||
{
|
||||
BatchGuard g(*this);
|
||||
CALL(batch_append_rows, 3000); // approximate 1MB, no need to dump
|
||||
CALL(verify_n_rows, rs_.get_row_cnt(), true);
|
||||
it_.reset();
|
||||
CALL(batch_verify_all, 0);
|
||||
it_.reset();
|
||||
rs_.reset();
|
||||
ASSERT_EQ(0, rs_alloc_.total_);
|
||||
|
||||
CALL(batch_append_rows, 30000); // need dump
|
||||
rs_.finish_add_row();
|
||||
ASSERT_EQ(30000, rs_.get_row_cnt());
|
||||
ASSERT_GT(rs_.get_file_size(), 1000000);
|
||||
CALL(batch_verify_all, 0);
|
||||
CALL(batch_verify_all, 512L << 10);
|
||||
it_.reset();
|
||||
rs_.reset();
|
||||
ASSERT_EQ(0, rs_alloc_.total_);
|
||||
|
||||
enable_big_row_ = true;
|
||||
int ret = rs_.init(1L << 20, tenant_id_, ctx_id_, label_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ASSERT_EQ(OB_SUCCESS, rs_.alloc_dir_id());
|
||||
CALL(batch_append_rows, 20000);
|
||||
ASSERT_EQ(OB_SUCCESS, rs_.finish_add_row());
|
||||
ASSERT_EQ(20000, rs_.get_row_cnt());
|
||||
CALL(batch_verify_all, 0);
|
||||
|
||||
it_.reset();
|
||||
rs_.reset();
|
||||
ASSERT_EQ(0, rs_alloc_.total_);
|
||||
}
|
||||
|
||||
TEST_F(TestChunkDatumStore, multi_iter)
|
||||
{
|
||||
int ret = OB_SUCCESS;
|
||||
@ -362,7 +579,7 @@ TEST_F(TestChunkDatumStore, multi_iter)
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
|
||||
LOG_WARN("starting basic test: append 3000 rows");
|
||||
CALL(append_rows, rs, total); // approximate 1MB, no need to dump
|
||||
CALL(append_rows, rs, total); // approximate 1MB, no need to dump
|
||||
rs.finish_add_row();
|
||||
LOG_WARN("Multi_iter", K_(rs.mem_hold), K_(rs.mem_used));
|
||||
|
||||
@ -400,7 +617,7 @@ TEST_F(TestChunkDatumStore, basic2)
|
||||
int ret = OB_SUCCESS;
|
||||
ObChunkDatumStore rs;
|
||||
ObChunkDatumStore::Iterator it;
|
||||
// mem limit 5M
|
||||
//mem limit 5M
|
||||
ret = rs.init(5L << 20, tenant_id_, ctx_id_, label_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ASSERT_EQ(OB_SUCCESS, rs.alloc_dir_id());
|
||||
@ -422,7 +639,7 @@ TEST_F(TestChunkDatumStore, chunk_iterator)
|
||||
ObChunkDatumStore rs;
|
||||
ObChunkDatumStore::ChunkIterator chunk_it;
|
||||
ObChunkDatumStore::RowIterator it;
|
||||
// mem limit 5M
|
||||
//mem limit 5M
|
||||
ret = rs.init(5L << 20, tenant_id_, ctx_id_, label_);
|
||||
ASSERT_EQ(OB_SUCCESS, rs.alloc_dir_id());
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
@ -434,7 +651,7 @@ TEST_F(TestChunkDatumStore, chunk_iterator)
|
||||
ASSERT_EQ(rs.get_row_cnt_in_memory() + rs.get_row_cnt_on_disk(), 100000);
|
||||
rs.finish_add_row();
|
||||
ASSERT_EQ(OB_SUCCESS, rs.begin(chunk_it, ObChunkDatumStore::BLOCK_SIZE * 4));
|
||||
const ObChunkDatumStore::StoredRow* v_sr = NULL;
|
||||
const ObChunkDatumStore::StoredRow *v_sr = NULL;
|
||||
int64_t v;
|
||||
int64_t extend_v;
|
||||
int64_t row_cnt = 0;
|
||||
@ -443,7 +660,7 @@ TEST_F(TestChunkDatumStore, chunk_iterator)
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
row_cnt += chunk_it.get_cur_chunk_row_cnt();
|
||||
LOG_WARN("got chunk of rows:", K(row_cnt));
|
||||
while (OB_SUCC(ret)) {
|
||||
while(OB_SUCC(ret)) {
|
||||
ret = it.get_next_row(v_sr);
|
||||
if (ret == OB_ITER_END) {
|
||||
ret = chunk_it.load_next_chunk(it);
|
||||
@ -458,9 +675,9 @@ TEST_F(TestChunkDatumStore, chunk_iterator)
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ret = it.convert_to_row(v_sr, ver_cells_, eval_ctx_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ObDatum* expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum* expr_datum_1 = &ver_cells_.at(1)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum* expr_datum_2 = &ver_cells_.at(2)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum *expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum *expr_datum_1 = &ver_cells_.at(1)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum *expr_datum_2 = &ver_cells_.at(2)->locate_expr_datum(eval_ctx_);
|
||||
v = expr_datum_0->get_int();
|
||||
expr_datum_1->is_null();
|
||||
if (0 != strncmp(str_buf_, expr_datum_2->ptr_, expr_datum_2->len_)) {
|
||||
@ -482,7 +699,7 @@ TEST_F(TestChunkDatumStore, test_copy_row)
|
||||
int64_t rows = 1000;
|
||||
ObChunkDatumStore rs;
|
||||
ObChunkDatumStore::Iterator it;
|
||||
const ObChunkDatumStore::StoredRow* sr;
|
||||
const ObChunkDatumStore::StoredRow *sr;
|
||||
LOG_WARN("starting mem_perf test: append rows", K(rows));
|
||||
int64_t begin = ObTimeUtil::current_time();
|
||||
ret = rs.init(0, tenant_id_, ctx_id_, label_);
|
||||
@ -535,11 +752,13 @@ TEST_F(TestChunkDatumStore, disk)
|
||||
write_time += common::ObTimeUtil::current_time() - begin;
|
||||
}
|
||||
|
||||
LOG_INFO("mem and disk", K(rows), K(rs.get_mem_hold()), K(rs.get_mem_used()), K(rs.get_file_size()));
|
||||
LOG_INFO("mem and disk", K(rows), K(rs.get_mem_hold()),
|
||||
K(rs.get_mem_used()), K(rs.get_file_size()));
|
||||
LOG_INFO("disk write:", K(rows), K(write_time));
|
||||
|
||||
ASSERT_EQ(OB_SUCCESS, rs.finish_add_row());
|
||||
LOG_WARN("mem and disk after finish", K(rows), K(rs.get_mem_hold()), K(rs.get_mem_used()), K(rs.get_file_size()));
|
||||
LOG_WARN("mem and disk after finish", K(rows), K(rs.get_mem_hold()),
|
||||
K(rs.get_mem_used()), K(rs.get_file_size()));
|
||||
|
||||
it.reset();
|
||||
begin = ObTimeUtil::current_time();
|
||||
@ -568,18 +787,14 @@ TEST_F(TestChunkDatumStore, disk_with_chunk)
|
||||
write_time += common::ObTimeUtil::current_time() - begin;
|
||||
}
|
||||
|
||||
LOG_INFO("mem and disk", K(rows), K(rs.get_mem_hold()), K(rs.get_mem_used()), K(rs.get_file_size()));
|
||||
LOG_INFO("mem and disk", K(rows), K(rs.get_mem_hold()),
|
||||
K(rs.get_mem_used()), K(rs.get_file_size()));
|
||||
LOG_INFO("disk write:", K(rows), K(write_time));
|
||||
|
||||
ASSERT_EQ(OB_SUCCESS, rs.finish_add_row());
|
||||
LOG_INFO("mem and disk after finish",
|
||||
K(rows),
|
||||
K(rs.get_mem_hold()),
|
||||
K(rs.get_mem_used()),
|
||||
K(rs.get_file_size()),
|
||||
K(rs.max_blk_size_),
|
||||
K(rs.min_blk_size_),
|
||||
K(rs.n_block_in_file_));
|
||||
LOG_INFO("mem and disk after finish", K(rows), K(rs.get_mem_hold()),
|
||||
K(rs.get_mem_used()), K(rs.get_file_size()), K(rs.max_blk_size_),
|
||||
K(rs.min_blk_size_), K(rs.n_block_in_file_));
|
||||
|
||||
it.reset();
|
||||
begin = ObTimeUtil::current_time();
|
||||
@ -628,9 +843,9 @@ TEST_F(TestChunkDatumStore, disk_with_chunk)
|
||||
TEST_F(TestChunkDatumStore, test_add_block)
|
||||
{
|
||||
int ret = OB_SUCCESS;
|
||||
// send
|
||||
//send
|
||||
ObChunkDatumStore rs;
|
||||
ObChunkDatumStore::Block* block;
|
||||
ObChunkDatumStore::Block *block;
|
||||
ObArenaAllocator alloc(ObModIds::OB_MODULE_PAGE_ALLOCATOR, 2 << 20);
|
||||
|
||||
gen_row(1);
|
||||
@ -641,7 +856,7 @@ TEST_F(TestChunkDatumStore, test_add_block)
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
|
||||
int64_t min_size = rs.min_blk_size(row_size);
|
||||
void* mem = alloc.alloc(min_size);
|
||||
void *mem = alloc.alloc(min_size);
|
||||
|
||||
ret = rs.init_block_buffer(mem, min_size, block);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
@ -657,12 +872,12 @@ TEST_F(TestChunkDatumStore, test_add_block)
|
||||
LOG_INFO("Molly size", K(block->get_buffer()->data_size()), K(block->get_buffer()->capacity()));
|
||||
|
||||
ObArenaAllocator alloc2(ObModIds::OB_MODULE_PAGE_ALLOCATOR, 2 << 20);
|
||||
void* mem2 = alloc2.alloc(block->get_buffer()->data_size());
|
||||
void *mem2 = alloc2.alloc(block->get_buffer()->data_size());
|
||||
memcpy(mem2, mem, block->get_buffer()->data_size());
|
||||
|
||||
// recv
|
||||
//recv
|
||||
ObChunkDatumStore rs2;
|
||||
ObChunkDatumStore::Block* block2 = reinterpret_cast<ObChunkDatumStore::Block*>(mem2);
|
||||
ObChunkDatumStore::Block *block2 = reinterpret_cast<ObChunkDatumStore::Block *>(mem2);
|
||||
ret = rs2.init(0, tenant_id_, ctx_id_, label_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ret = rs2.add_block(block2, true);
|
||||
@ -673,7 +888,7 @@ TEST_F(TestChunkDatumStore, test_add_block)
|
||||
CALL(verify_n_rows, rs2, it2, 99, true);
|
||||
ASSERT_EQ(true, it2.has_next());
|
||||
CALL(verify_n_rows, rs2, it2, 100, true, 0, 99);
|
||||
ASSERT_EQ(false, it2.has_next());
|
||||
ASSERT_FALSE(it2.has_next());
|
||||
ASSERT_EQ(OB_ITER_END, it2.get_next_row(ver_cells_, eval_ctx_));
|
||||
rs2.remove_added_blocks();
|
||||
it2.reset();
|
||||
@ -710,9 +925,9 @@ TEST_F(TestChunkDatumStore, row_with_extend_size)
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ret = it.convert_to_row(v_sr, ver_cells_, eval_ctx_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ObDatum* expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum* expr_datum_1 = &ver_cells_.at(1)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum* expr_datum_2 = &ver_cells_.at(2)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum *expr_datum_0 = &ver_cells_.at(0)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum *expr_datum_1 = &ver_cells_.at(1)->locate_expr_datum(eval_ctx_);
|
||||
ObDatum *expr_datum_2 = &ver_cells_.at(2)->locate_expr_datum(eval_ctx_);
|
||||
v = expr_datum_0->get_int();
|
||||
expr_datum_1->is_null();
|
||||
if (0 != strncmp(str_buf_, expr_datum_2->ptr_, expr_datum_2->len_)) {
|
||||
@ -787,22 +1002,85 @@ TEST_F(TestChunkDatumStore, test_only_disk_data1)
|
||||
rs.reset();
|
||||
}
|
||||
|
||||
} // end namespace sql
|
||||
} // end namespace oceanbase
|
||||
TEST_F(TestChunkDatumStore, test_append_block)
|
||||
{
|
||||
int ret = OB_SUCCESS;
|
||||
//send
|
||||
ObChunkDatumStore rs;
|
||||
ObChunkDatumStore::Block *block;
|
||||
ObArenaAllocator alloc(ObModIds::OB_MODULE_PAGE_ALLOCATOR, 2 << 20);
|
||||
|
||||
gen_row(1);
|
||||
int64_t row_size = 0;
|
||||
ASSERT_EQ(OB_SUCCESS, ObChunkDatumStore::Block::row_store_size(cells_, eval_ctx_, row_size));
|
||||
|
||||
ret = rs.init(0, tenant_id_, ctx_id_, label_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
|
||||
int64_t min_size = rs.min_blk_size(row_size);
|
||||
void *mem = alloc.alloc(min_size);
|
||||
|
||||
ret = rs.init_block_buffer(mem, min_size, block);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ret = rs.add_block(block, false);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
|
||||
CALL(append_rows, rs, 100);
|
||||
rs.finish_add_row();
|
||||
ret = block->unswizzling();
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
rs.remove_added_blocks();
|
||||
rs.reset();
|
||||
LOG_INFO("Molly size", K(block->get_buffer()->data_size()), K(block->get_buffer()->capacity()));
|
||||
|
||||
ObArenaAllocator alloc2(ObModIds::OB_MODULE_PAGE_ALLOCATOR, 2 << 20);
|
||||
void *mem2 = alloc2.alloc(block->get_buffer()->data_size());
|
||||
memcpy(mem2, mem, block->get_buffer()->data_size());
|
||||
|
||||
//recv
|
||||
ObChunkDatumStore rs2;
|
||||
rs2.alloc_dir_id();
|
||||
ObChunkDatumStore::Block *block2 = reinterpret_cast<ObChunkDatumStore::Block *>(mem2);
|
||||
ret = rs2.init(0, tenant_id_, ctx_id_, label_);
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
for (int64_t i = 0; OB_SUCC(ret) && i < 100; ++i) {
|
||||
ret = rs2.append_block(block->get_buffer()->data(), block->get_buffer()->data_size(), true);
|
||||
}
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ret = rs2.dump(false, true);
|
||||
rs2.finish_add_row();
|
||||
ASSERT_EQ(OB_SUCCESS, ret);
|
||||
ObChunkDatumStore::Iterator it2;
|
||||
ASSERT_EQ(OB_SUCCESS, rs2.begin(it2));
|
||||
for (int64_t i = 0; OB_SUCC(ret) && i < 100; ++i) {
|
||||
CALL(verify_n_rows, rs2, it2, 99, true);
|
||||
ASSERT_EQ(true, it2.has_next());
|
||||
CALL(verify_n_rows, rs2, it2, 100, true, 0, 99);
|
||||
}
|
||||
ASSERT_FALSE(it2.has_next());
|
||||
ASSERT_EQ(OB_ITER_END, it2.get_next_row(ver_cells_, eval_ctx_));
|
||||
rs2.remove_added_blocks();
|
||||
it2.reset();
|
||||
rs2.reset();
|
||||
}
|
||||
|
||||
} // end namespace sql
|
||||
} // end namespace oceanbase
|
||||
|
||||
|
||||
void ignore_sig(int sig)
|
||||
{
|
||||
UNUSED(sig);
|
||||
}
|
||||
|
||||
int main(int argc, char** argv)
|
||||
int main(int argc, char **argv)
|
||||
{
|
||||
signal(49, ignore_sig);
|
||||
oceanbase::sql::init_sql_factories();
|
||||
oceanbase::common::ObLogger::get_logger().set_file_name("test_chunk_datum_store.log", true);
|
||||
oceanbase::common::ObLogger::get_logger().set_log_level("INFO");
|
||||
testing::InitGoogleTest(&argc, argv);
|
||||
auto* env = new (oceanbase::sql::TestEnv);
|
||||
auto *env = new (oceanbase::sql::TestEnv);
|
||||
testing::AddGlobalTestEnvironment(env);
|
||||
int ret = RUN_ALL_TESTS();
|
||||
OB_LOGGER.disable();
|
||||
|
Reference in New Issue
Block a user