mirror of
https://github.com/MariaDB/server.git
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186 lines
5.5 KiB
C++
186 lines
5.5 KiB
C++
/* Copyright (C) 2003 MySQL AB
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
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#include "NDBT_Test.hpp"
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#include "NDBT_ReturnCodes.h"
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#include "HugoTransactions.hpp"
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#include "HugoAsynchTransactions.hpp"
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#include "UtilTransactions.hpp"
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#define GETNDB(ps) ((NDBT_NdbApiStep*)ps)->getNdb()
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int runLoadTable(NDBT_Context* ctx, NDBT_Step* step){
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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if (hugoTrans.loadTableAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != 0){
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return NDBT_FAILED;
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}
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return NDBT_OK;
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}
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int runInsert(NDBT_Context* ctx, NDBT_Step* step){
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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// Insert records, dont allow any
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// errors(except temporary) while inserting
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if (hugoTrans.loadTableAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != 0){
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return NDBT_FAILED;
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}
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return NDBT_OK;
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}
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int runVerifyInsert(NDBT_Context* ctx, NDBT_Step* step){
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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if (hugoTrans.pkDelRecordsAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != 0){
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return NDBT_FAILED;
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}
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return NDBT_OK;
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}
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int runClearTable(NDBT_Context* ctx, NDBT_Step* step){
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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if (hugoTrans.pkDelRecordsAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != 0){
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return NDBT_FAILED;
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}
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return NDBT_OK;
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}
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int runPkDelete(NDBT_Context* ctx, NDBT_Step* step){
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int loops = ctx->getNumLoops();
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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int i = 0;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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while (i<loops) {
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ndbout << i << ": ";
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if (hugoTrans.pkDelRecordsAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != 0){
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return NDBT_FAILED;
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}
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// Load table, don't allow any primary key violations
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if (hugoTrans.loadTableAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != 0){
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return NDBT_FAILED;
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}
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i++;
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}
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return NDBT_OK;
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}
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int runPkRead(NDBT_Context* ctx, NDBT_Step* step){
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int loops = ctx->getNumLoops();
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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int i = 0;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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while (i<loops) {
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ndbout << i << ": ";
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if (hugoTrans.pkReadRecordsAsynch(GETNDB(step), records, batchSize,
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transactions, operations) != NDBT_OK){
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return NDBT_FAILED;
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}
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i++;
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}
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return NDBT_OK;
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}
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int runPkUpdate(NDBT_Context* ctx, NDBT_Step* step){
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int loops = ctx->getNumLoops();
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int records = ctx->getNumRecords();
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int batchSize = ctx->getProperty("BatchSize", 1);
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int transactions = (records / 100) + 1;
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int operations = (records / transactions) + 1;
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int i = 0;
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HugoAsynchTransactions hugoTrans(*ctx->getTab());
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while (i<loops) {
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ndbout << i << ": ";
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if (hugoTrans.pkUpdateRecordsAsynch(GETNDB(step), records,
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batchSize, transactions,
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operations) != 0){
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return NDBT_FAILED;
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}
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i++;
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}
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return NDBT_OK;
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}
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NDBT_TESTSUITE(testBasicAsynch);
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TESTCASE("PkInsertAsynch",
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"Verify that we can insert and delete from this table using PK"
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" NOTE! No errors are allowed!" ){
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INITIALIZER(runInsert);
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VERIFIER(runVerifyInsert);
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}
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TESTCASE("PkReadAsynch",
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"Verify that we can insert, read and delete from this table"
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" using PK"){
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INITIALIZER(runLoadTable);
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STEP(runPkRead);
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FINALIZER(runClearTable);
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}
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TESTCASE("PkUpdateAsynch",
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"Verify that we can insert, update and delete from this table"
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" using PK"){
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INITIALIZER(runLoadTable);
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STEP(runPkUpdate);
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FINALIZER(runClearTable);
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}
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TESTCASE("PkDeleteAsynch",
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"Verify that we can delete from this table using PK"){
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INITIALIZER(runLoadTable);
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STEP(runPkDelete);
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FINALIZER(runClearTable);
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}
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NDBT_TESTSUITE_END(testBasicAsynch);
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int main(int argc, const char** argv){
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return testBasicAsynch.execute(argc, argv);
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}
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