/* * Copyright (c) 2019 TAOS Data, Inc. * * This program is free software: you can use, redistribute, and/or modify * it under the terms of the GNU Affero General Public License, version 3 * or later ("AGPL"), as published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. * * You should have received a copy of the GNU Affero General Public License * along with this program. If not, see . */ #include #include #include "cmdnodes.h" #include "parser.h" #include "planInt.h" using namespace std; using namespace testing; class PlannerTest : public Test { protected: void setDatabase(const string& acctId, const string& db) { acctId_ = acctId; db_ = db; } void bind(const char* sql) { reset(); cxt_.acctId = atoi(acctId_.c_str()); cxt_.db = db_.c_str(); sqlBuf_ = string(sql); transform(sqlBuf_.begin(), sqlBuf_.end(), sqlBuf_.begin(), ::tolower); cxt_.sqlLen = strlen(sql); cxt_.pSql = sqlBuf_.c_str(); } bool run(bool streamQuery = false) { int32_t code = qParseQuerySql(&cxt_, &query_); if (code != TSDB_CODE_SUCCESS) { cout << "sql:[" << cxt_.pSql << "] parser code:" << code << ", strerror:" << tstrerror(code) << ", msg:" << errMagBuf_ << endl; return false; } const string syntaxTreeStr = toString(query_->pRoot, false); SLogicNode* pLogicNode = nullptr; SPlanContext cxt = {0}; cxt.queryId = 1; cxt.acctId = 0; cxt.streamQuery = streamQuery; setPlanContext(query_, &cxt); code = createLogicPlan(&cxt, &pLogicNode); if (code != TSDB_CODE_SUCCESS) { cout << "sql:[" << cxt_.pSql << "] createLogicPlan code:" << code << ", strerror:" << tstrerror(code) << endl; return false; } cout << "====================sql : [" << cxt_.pSql << "]" << endl; cout << "syntax tree : " << endl; cout << syntaxTreeStr << endl; cout << "unformatted logic plan : " << endl; cout << toString((const SNode*)pLogicNode, false) << endl; SLogicSubplan* pLogicSubplan = nullptr; code = splitLogicPlan(&cxt, pLogicNode, &pLogicSubplan); if (code != TSDB_CODE_SUCCESS) { cout << "sql:[" << cxt_.pSql << "] splitLogicPlan code:" << code << ", strerror:" << tstrerror(code) << endl; return false; } SQueryLogicPlan* pLogicPlan = NULL; code = scaleOutLogicPlan(&cxt, pLogicSubplan, &pLogicPlan); if (code != TSDB_CODE_SUCCESS) { cout << "sql:[" << cxt_.pSql << "] createPhysiPlan code:" << code << ", strerror:" << tstrerror(code) << endl; return false; } SQueryPlan* pPlan = nullptr; code = createPhysiPlan(&cxt, pLogicPlan, &pPlan, NULL); if (code != TSDB_CODE_SUCCESS) { cout << "sql:[" << cxt_.pSql << "] createPhysiPlan code:" << code << ", strerror:" << tstrerror(code) << endl; return false; } cout << "unformatted physical plan : " << endl; cout << toString((const SNode*)pPlan, false) << endl; SNode* pNode; FOREACH(pNode, pPlan->pSubplans) { SNode* pSubplan; FOREACH(pSubplan, ((SNodeListNode*)pNode)->pNodeList) { cout << "unformatted physical subplan : " << endl; cout << toString(pSubplan, false) << endl; } } return true; } private: static const int max_err_len = 1024; void setPlanContext(SQuery* pQuery, SPlanContext* pCxt) { if (QUERY_NODE_CREATE_TOPIC_STMT == nodeType(pQuery->pRoot)) { pCxt->pAstRoot = ((SCreateTopicStmt*)pQuery->pRoot)->pQuery; pCxt->topicQuery = true; } else if (QUERY_NODE_CREATE_INDEX_STMT == nodeType(pQuery->pRoot)) { SMCreateSmaReq req = {0}; tDeserializeSMCreateSmaReq(pQuery->pCmdMsg->pMsg, pQuery->pCmdMsg->msgLen, &req); nodesStringToNode(req.ast, &pCxt->pAstRoot); pCxt->streamQuery = true; } else { pCxt->pAstRoot = pQuery->pRoot; } } void reset() { memset(&cxt_, 0, sizeof(cxt_)); memset(errMagBuf_, 0, max_err_len); cxt_.pMsg = errMagBuf_; cxt_.msgLen = max_err_len; } string toString(const SNode* pRoot, bool format = true) { char* pStr = NULL; int32_t len = 0; int32_t code = nodesNodeToString(pRoot, format, &pStr, &len); if (code != TSDB_CODE_SUCCESS) { cout << "sql:[" << cxt_.pSql << "] toString code:" << code << ", strerror:" << tstrerror(code) << endl; return string(); } string str(pStr); taosMemoryFreeClear(pStr); return str; } string acctId_; string db_; char errMagBuf_[max_err_len]; string sqlBuf_; SParseContext cxt_; SQuery* query_; }; TEST_F(PlannerTest, simple) { setDatabase("root", "test"); bind("SELECT * FROM t1"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, stSimple) { setDatabase("root", "test"); bind("SELECT * FROM st1"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, groupBy) { setDatabase("root", "test"); bind("SELECT count(*) FROM t1"); ASSERT_TRUE(run()); bind("SELECT c1, max(c3), min(c2), count(*) FROM t1 GROUP BY c1"); ASSERT_TRUE(run()); bind("SELECT c1 + c3, c1 + count(*) FROM t1 where c2 = 'abc' GROUP BY c1, c3"); ASSERT_TRUE(run()); bind("SELECT c1 + c3, sum(c4 * c5) FROM t1 where concat(c2, 'wwww') = 'abcwww' GROUP BY c1 + c3"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, subquery) { setDatabase("root", "test"); bind("SELECT count(*) FROM (SELECT c1 + c3 a, c1 + count(*) b FROM t1 where c2 = 'abc' GROUP BY c1, c3) where a > 100 group by b"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, interval) { setDatabase("root", "test"); bind("SELECT count(*) FROM t1 interval(10s)"); ASSERT_TRUE(run()); bind("SELECT _wstartts, _wduration, _wendts, count(*) FROM t1 interval(10s)"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, sessionWindow) { setDatabase("root", "test"); bind("SELECT count(*) FROM t1 session(ts, 10s)"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, orderBy) { setDatabase("root", "test"); bind("SELECT * FROM t1 order by c1"); ASSERT_TRUE(run()); bind("SELECT c1 FROM t1 order by c2"); ASSERT_TRUE(run()); bind("SELECT * FROM t1 order by c1 + 10, c2"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, showTables) { setDatabase("root", "test"); bind("show tables"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, showStables) { setDatabase("root", "test"); bind("show stables"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, createTopic) { setDatabase("root", "test"); bind("create topic tp as SELECT * FROM st1"); ASSERT_TRUE(run()); } TEST_F(PlannerTest, stream) { setDatabase("root", "test"); bind("SELECT sum(c1) FROM st1"); ASSERT_TRUE(run(true)); } TEST_F(PlannerTest, createSmaIndex) { setDatabase("root", "test"); bind("create sma index index1 on t1 function(max(c1), min(c3 + 10), sum(c4)) INTERVAL(10s)"); ASSERT_TRUE(run()); }