planSpliter.c 51.9 KB
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/*
 * Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
 *
 * 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 <http://www.gnu.org/licenses/>.
 */

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#include "functionMgt.h"
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#include "planInt.h"
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#include "tglobal.h"
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#define SPLIT_FLAG_MASK(n) (1 << n)
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#define SPLIT_FLAG_STABLE_SPLIT SPLIT_FLAG_MASK(0)
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#define SPLIT_FLAG_INSERT_SPLIT SPLIT_FLAG_MASK(1)
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#define SPLIT_FLAG_SET_MASK(val, mask)  (val) |= (mask)
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#define SPLIT_FLAG_TEST_MASK(val, mask) (((val) & (mask)) != 0)

typedef struct SSplitContext {
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  SPlanContext* pPlanCxt;
  uint64_t      queryId;
  int32_t       groupId;
  bool          split;
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} SSplitContext;

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typedef int32_t (*FSplit)(SSplitContext* pCxt, SLogicSubplan* pSubplan);
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typedef struct SSplitRule {
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  char*  pName;
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  FSplit splitFunc;
} SSplitRule;

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typedef bool (*FSplFindSplitNode)(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode, void* pInfo);
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static void splSetSubplanVgroups(SLogicSubplan* pSubplan, SLogicNode* pNode) {
  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode)) {
    TSWAP(pSubplan->pVgroupList, ((SScanLogicNode*)pNode)->pVgroupList);
  } else {
    if (1 == LIST_LENGTH(pNode->pChildren)) {
      splSetSubplanVgroups(pSubplan, (SLogicNode*)nodesListGetNode(pNode->pChildren, 0));
    }
  }
}

static SLogicSubplan* splCreateScanSubplan(SSplitContext* pCxt, SLogicNode* pNode, int32_t flag) {
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  SLogicSubplan* pSubplan = (SLogicSubplan*)nodesMakeNode(QUERY_NODE_LOGIC_SUBPLAN);
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  if (NULL == pSubplan) {
    return NULL;
  }
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  pSubplan->id.queryId = pCxt->queryId;
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  pSubplan->id.groupId = pCxt->groupId;
  pSubplan->subplanType = SUBPLAN_TYPE_SCAN;
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  pSubplan->pNode = pNode;
  pSubplan->pNode->pParent = NULL;
  splSetSubplanVgroups(pSubplan, pNode);
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  SPLIT_FLAG_SET_MASK(pSubplan->splitFlag, flag);
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  return pSubplan;
}

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static SLogicSubplan* splCreateSubplan(SSplitContext* pCxt, SLogicNode* pNode, ESubplanType subplanType) {
  SLogicSubplan* pSubplan = (SLogicSubplan*)nodesMakeNode(QUERY_NODE_LOGIC_SUBPLAN);
  if (NULL == pSubplan) {
    return NULL;
  }
  pSubplan->id.queryId = pCxt->queryId;
  pSubplan->id.groupId = pCxt->groupId;
  pSubplan->subplanType = subplanType;
  pSubplan->pNode = pNode;
  pNode->pParent = NULL;
  return pSubplan;
}

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static int32_t splCreateExchangeNode(SSplitContext* pCxt, SLogicNode* pChild, SExchangeLogicNode** pOutput) {
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  SExchangeLogicNode* pExchange = (SExchangeLogicNode*)nodesMakeNode(QUERY_NODE_LOGIC_PLAN_EXCHANGE);
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  if (NULL == pExchange) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
  pExchange->srcGroupId = pCxt->groupId;
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  pExchange->node.precision = pChild->precision;
  pExchange->node.pTargets = nodesCloneList(pChild->pTargets);
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  if (NULL == pExchange->node.pTargets) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }

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  *pOutput = pExchange;
  return TSDB_CODE_SUCCESS;
}

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static int32_t splCreateExchangeNodeForSubplan(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pSplitNode,
                                               ESubplanType subplanType) {
  SExchangeLogicNode* pExchange = NULL;
  int32_t             code = splCreateExchangeNode(pCxt, pSplitNode, &pExchange);
  if (TSDB_CODE_SUCCESS == code) {
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    code = replaceLogicNode(pSubplan, pSplitNode, (SLogicNode*)pExchange);
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  }
  if (TSDB_CODE_SUCCESS == code) {
    pSubplan->subplanType = subplanType;
  } else {
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    nodesDestroyNode((SNode*)pExchange);
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  }
  return code;
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}

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static bool splIsChildSubplan(SLogicNode* pLogicNode, int32_t groupId) {
  if (QUERY_NODE_LOGIC_PLAN_EXCHANGE == nodeType(pLogicNode)) {
    return ((SExchangeLogicNode*)pLogicNode)->srcGroupId == groupId;
  }

  if (QUERY_NODE_LOGIC_PLAN_MERGE == nodeType(pLogicNode)) {
    return ((SMergeLogicNode*)pLogicNode)->srcGroupId == groupId;
  }

  SNode* pChild;
  FOREACH(pChild, pLogicNode->pChildren) {
    bool isChild = splIsChildSubplan((SLogicNode*)pChild, groupId);
    if (isChild) {
      return isChild;
    }
  }
  return false;
}

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static int32_t splMountSubplan(SLogicSubplan* pParent, SNodeList* pChildren) {
  SNode* pChild = NULL;
  WHERE_EACH(pChild, pChildren) {
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    if (splIsChildSubplan(pParent->pNode, ((SLogicSubplan*)pChild)->id.groupId)) {
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      int32_t code = nodesListMakeAppend(&pParent->pChildren, pChild);
      if (TSDB_CODE_SUCCESS == code) {
        REPLACE_NODE(NULL);
        ERASE_NODE(pChildren);
        continue;
      } else {
        return code;
      }
    }
    WHERE_NEXT;
  }
  return TSDB_CODE_SUCCESS;
}

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static bool splMatchByNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode, FSplFindSplitNode func,
                           void* pInfo) {
  if (func(pCxt, pSubplan, pNode, pInfo)) {
    return true;
  }
  SNode* pChild;
  FOREACH(pChild, pNode->pChildren) {
    if (splMatchByNode(pCxt, pSubplan, (SLogicNode*)pChild, func, pInfo)) {
      return true;
    }
  }
  return NULL;
}

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static bool splMatch(SSplitContext* pCxt, SLogicSubplan* pSubplan, int32_t flag, FSplFindSplitNode func, void* pInfo) {
  if (!SPLIT_FLAG_TEST_MASK(pSubplan->splitFlag, flag)) {
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    if (splMatchByNode(pCxt, pSubplan, pSubplan->pNode, func, pInfo)) {
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      return true;
    }
  }
  SNode* pChild;
  FOREACH(pChild, pSubplan->pChildren) {
    if (splMatch(pCxt, (SLogicSubplan*)pChild, flag, func, pInfo)) {
      return true;
    }
  }
  return false;
}

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static void splSetParent(SLogicNode* pNode) {
  SNode* pChild = NULL;
  FOREACH(pChild, pNode->pChildren) { ((SLogicNode*)pChild)->pParent = pNode; }
}

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typedef struct SStableSplitInfo {
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  SLogicNode*    pSplitNode;
  SLogicSubplan* pSubplan;
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} SStableSplitInfo;

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static bool stbSplHasGatherExecFunc(const SNodeList* pFuncs) {
  SNode* pFunc = NULL;
  FOREACH(pFunc, pFuncs) {
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    if (!fmIsWindowPseudoColumnFunc(((SFunctionNode*)pFunc)->funcId) &&
        !fmIsDistExecFunc(((SFunctionNode*)pFunc)->funcId)) {
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      return true;
    }
  }
  return false;
}

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static bool stbSplIsMultiTbScan(bool streamQuery, SScanLogicNode* pScan) {
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  return (NULL != pScan->pVgroupList && pScan->pVgroupList->numOfVgroups > 1);
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}

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static bool stbSplHasMultiTbScan(bool streamQuery, SLogicNode* pNode) {
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  if (1 != LIST_LENGTH(pNode->pChildren)) {
    return false;
  }
  SNode* pChild = nodesListGetNode(pNode->pChildren, 0);
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  if (QUERY_NODE_LOGIC_PLAN_PARTITION == nodeType(pChild)) {
    if (1 != LIST_LENGTH(((SLogicNode*)pChild)->pChildren)) {
      return false;
    }
    pChild = nodesListGetNode(((SLogicNode*)pChild)->pChildren, 0);
  }
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  return (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pChild) && stbSplIsMultiTbScan(streamQuery, (SScanLogicNode*)pChild));
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}

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static bool stbSplIsMultiTbScanChild(bool streamQuery, SLogicNode* pNode) {
  if (1 != LIST_LENGTH(pNode->pChildren)) {
    return false;
  }
  SNode* pChild = nodesListGetNode(pNode->pChildren, 0);
  return (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pChild) && stbSplIsMultiTbScan(streamQuery, (SScanLogicNode*)pChild));
}

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static bool stbSplNeedSplitWindow(bool streamQuery, SLogicNode* pNode) {
  SWindowLogicNode* pWindow = (SWindowLogicNode*)pNode;
  if (WINDOW_TYPE_INTERVAL == pWindow->winType) {
    return !stbSplHasGatherExecFunc(pWindow->pFuncs) && stbSplHasMultiTbScan(streamQuery, pNode);
  }

  if (WINDOW_TYPE_SESSION == pWindow->winType) {
    if (!streamQuery) {
      return stbSplHasMultiTbScan(streamQuery, pNode);
    } else {
      return !stbSplHasGatherExecFunc(pWindow->pFuncs) && stbSplHasMultiTbScan(streamQuery, pNode);
    }
  }
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  if (WINDOW_TYPE_STATE == pWindow->winType) {
    if (!streamQuery) {
      return stbSplHasMultiTbScan(streamQuery, pNode);
    } else {
      return false;
    }
  }

  return false;
}

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static bool stbSplNeedSplitJoin(bool streamQuery, SJoinLogicNode* pJoin) {
  if (pJoin->isSingleTableJoin) {
    return false;
  }
  SNode* pChild = NULL;
  FOREACH(pChild, pJoin->node.pChildren) {
    if (QUERY_NODE_LOGIC_PLAN_SCAN != nodeType(pChild) && QUERY_NODE_LOGIC_PLAN_JOIN != nodeType(pChild)) {
      return false;
    }
  }
  return true;
}

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static bool stbSplNeedSplit(bool streamQuery, SLogicNode* pNode) {
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  switch (nodeType(pNode)) {
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    case QUERY_NODE_LOGIC_PLAN_SCAN:
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      return streamQuery ? false : stbSplIsMultiTbScan(streamQuery, (SScanLogicNode*)pNode);
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    case QUERY_NODE_LOGIC_PLAN_JOIN:
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      return stbSplNeedSplitJoin(streamQuery, (SJoinLogicNode*)pNode);
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    case QUERY_NODE_LOGIC_PLAN_PARTITION:
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      return streamQuery ? false : stbSplIsMultiTbScanChild(streamQuery, pNode);
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    case QUERY_NODE_LOGIC_PLAN_AGG:
      return !stbSplHasGatherExecFunc(((SAggLogicNode*)pNode)->pAggFuncs) && stbSplHasMultiTbScan(streamQuery, pNode);
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    case QUERY_NODE_LOGIC_PLAN_WINDOW:
      return stbSplNeedSplitWindow(streamQuery, pNode);
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    case QUERY_NODE_LOGIC_PLAN_SORT:
      return stbSplHasMultiTbScan(streamQuery, pNode);
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    default:
      break;
  }
  return false;
}

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static bool stbSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                SStableSplitInfo* pInfo) {
  if (stbSplNeedSplit(pCxt->pPlanCxt->streamQuery, pNode)) {
    pInfo->pSplitNode = pNode;
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    pInfo->pSubplan = pSubplan;
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    return true;
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  }
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  return false;
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}

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static int32_t stbSplRewriteFuns(const SNodeList* pFuncs, SNodeList** pPartialFuncs, SNodeList** pMergeFuncs) {
  SNode* pNode = NULL;
  FOREACH(pNode, pFuncs) {
    SFunctionNode* pFunc = (SFunctionNode*)pNode;
    SFunctionNode* pPartFunc = NULL;
    SFunctionNode* pMergeFunc = NULL;
    int32_t        code = TSDB_CODE_SUCCESS;
    if (fmIsWindowPseudoColumnFunc(pFunc->funcId)) {
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      pPartFunc = (SFunctionNode*)nodesCloneNode(pNode);
      pMergeFunc = (SFunctionNode*)nodesCloneNode(pNode);
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      if (NULL == pPartFunc || NULL == pMergeFunc) {
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        nodesDestroyNode((SNode*)pPartFunc);
        nodesDestroyNode((SNode*)pMergeFunc);
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        code = TSDB_CODE_OUT_OF_MEMORY;
      }
    } else {
      code = fmGetDistMethod(pFunc, &pPartFunc, &pMergeFunc);
    }
    if (TSDB_CODE_SUCCESS == code) {
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      code = nodesListMakeStrictAppend(pPartialFuncs, (SNode*)pPartFunc);
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    }
    if (TSDB_CODE_SUCCESS == code) {
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      code = nodesListMakeStrictAppend(pMergeFuncs, (SNode*)pMergeFunc);
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    }
    if (TSDB_CODE_SUCCESS != code) {
      nodesDestroyList(*pPartialFuncs);
      nodesDestroyList(*pMergeFuncs);
      return code;
    }
  }
  return TSDB_CODE_SUCCESS;
}

static int32_t stbSplAppendWStart(SNodeList* pFuncs, int32_t* pIndex) {
  int32_t index = 0;
  SNode*  pFunc = NULL;
  FOREACH(pFunc, pFuncs) {
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    if (FUNCTION_TYPE_WSTART == ((SFunctionNode*)pFunc)->funcType) {
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      *pIndex = index;
      return TSDB_CODE_SUCCESS;
    }
    ++index;
  }

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  SFunctionNode* pWStart = (SFunctionNode*)nodesMakeNode(QUERY_NODE_FUNCTION);
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  if (NULL == pWStart) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
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  strcpy(pWStart->functionName, "_wstart");
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  snprintf(pWStart->node.aliasName, sizeof(pWStart->node.aliasName), "%s.%p", pWStart->functionName, pWStart);
  int32_t code = fmGetFuncInfo(pWStart, NULL, 0);
  if (TSDB_CODE_SUCCESS == code) {
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    code = nodesListStrictAppend(pFuncs, (SNode*)pWStart);
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  }
  *pIndex = index;
  return code;
}

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static int32_t stbSplAppendWEnd(SWindowLogicNode* pWin, int32_t* pIndex) {
  int32_t index = 0;
  SNode*  pFunc = NULL;
  FOREACH(pFunc, pWin->pFuncs) {
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    if (FUNCTION_TYPE_WEND == ((SFunctionNode*)pFunc)->funcType) {
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      *pIndex = index;
      return TSDB_CODE_SUCCESS;
    }
    ++index;
  }

  SFunctionNode* pWEnd = (SFunctionNode*)nodesMakeNode(QUERY_NODE_FUNCTION);
  if (NULL == pWEnd) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
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  strcpy(pWEnd->functionName, "_wend");
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  snprintf(pWEnd->node.aliasName, sizeof(pWEnd->node.aliasName), "%s.%p", pWEnd->functionName, pWEnd);
  int32_t code = fmGetFuncInfo(pWEnd, NULL, 0);
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListStrictAppend(pWin->pFuncs, (SNode*)pWEnd);
  }
  *pIndex = index;
  if (TSDB_CODE_SUCCESS == code) {
    code = createColumnByRewriteExpr(nodesListGetNode(pWin->pFuncs, index), &pWin->node.pTargets);
  }
  return code;
}

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static int32_t stbSplCreatePartWindowNode(SWindowLogicNode* pMergeWindow, SLogicNode** pPartWindow) {
  SNodeList* pFunc = pMergeWindow->pFuncs;
  pMergeWindow->pFuncs = NULL;
  SNodeList* pTargets = pMergeWindow->node.pTargets;
  pMergeWindow->node.pTargets = NULL;
  SNodeList* pChildren = pMergeWindow->node.pChildren;
  pMergeWindow->node.pChildren = NULL;
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  SNode* pConditions = pMergeWindow->node.pConditions;
  pMergeWindow->node.pConditions = NULL;
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  int32_t           code = TSDB_CODE_SUCCESS;
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  SWindowLogicNode* pPartWin = (SWindowLogicNode*)nodesCloneNode((SNode*)pMergeWindow);
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  if (NULL == pPartWin) {
    code = TSDB_CODE_OUT_OF_MEMORY;
  }

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  pPartWin->node.groupAction = GROUP_ACTION_KEEP;

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  if (TSDB_CODE_SUCCESS == code) {
    pMergeWindow->node.pTargets = pTargets;
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    pMergeWindow->node.pConditions = pConditions;
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    pPartWin->node.pChildren = pChildren;
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    splSetParent((SLogicNode*)pPartWin);
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    code = stbSplRewriteFuns(pFunc, &pPartWin->pFuncs, &pMergeWindow->pFuncs);
  }
  int32_t index = 0;
  if (TSDB_CODE_SUCCESS == code) {
    code = stbSplAppendWStart(pPartWin->pFuncs, &index);
  }
  if (TSDB_CODE_SUCCESS == code) {
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    code = createColumnByRewriteExprs(pPartWin->pFuncs, &pPartWin->node.pTargets);
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  }
  if (TSDB_CODE_SUCCESS == code) {
    nodesDestroyNode(pMergeWindow->pTspk);
    pMergeWindow->pTspk = nodesCloneNode(nodesListGetNode(pPartWin->node.pTargets, index));
    if (NULL == pMergeWindow->pTspk) {
      code = TSDB_CODE_OUT_OF_MEMORY;
    }
  }

  nodesDestroyList(pFunc);
  if (TSDB_CODE_SUCCESS == code) {
    *pPartWindow = (SLogicNode*)pPartWin;
  } else {
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    nodesDestroyNode((SNode*)pPartWin);
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  }

  return code;
}

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static int32_t stbSplGetNumOfVgroups(SLogicNode* pNode) {
  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode)) {
    return ((SScanLogicNode*)pNode)->pVgroupList->numOfVgroups;
  } else {
    if (1 == LIST_LENGTH(pNode->pChildren)) {
      return stbSplGetNumOfVgroups((SLogicNode*)nodesListGetNode(pNode->pChildren, 0));
    }
  }
  return 0;
}

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static int32_t stbSplCreateMergeNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pSplitNode,
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                                     SNodeList* pMergeKeys, SLogicNode* pPartChild, bool groupSort) {
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  SMergeLogicNode* pMerge = (SMergeLogicNode*)nodesMakeNode(QUERY_NODE_LOGIC_PLAN_MERGE);
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  if (NULL == pMerge) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
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  pMerge->numOfChannels = stbSplGetNumOfVgroups(pPartChild);
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  pMerge->srcGroupId = pCxt->groupId;
  pMerge->node.precision = pPartChild->precision;
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  pMerge->pMergeKeys = pMergeKeys;
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  pMerge->groupSort = groupSort;
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  int32_t code = TSDB_CODE_SUCCESS;
  pMerge->pInputs = nodesCloneList(pPartChild->pTargets);
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  // NULL != pSubplan means 'merge node' replaces 'split node'.
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  if (NULL == pSubplan) {
    pMerge->node.pTargets = nodesCloneList(pPartChild->pTargets);
  } else {
    pMerge->node.pTargets = nodesCloneList(pSplitNode->pTargets);
  }
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  if (NULL == pMerge->node.pTargets || NULL == pMerge->pInputs) {
    code = TSDB_CODE_OUT_OF_MEMORY;
  }
  if (TSDB_CODE_SUCCESS == code) {
    if (NULL == pSubplan) {
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      code = nodesListMakeAppend(&pSplitNode->pChildren, (SNode*)pMerge);
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    } else {
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      code = replaceLogicNode(pSubplan, pSplitNode, (SLogicNode*)pMerge);
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    }
  }
  if (TSDB_CODE_SUCCESS != code) {
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    nodesDestroyNode((SNode*)pMerge);
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  }
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  return code;
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}

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static int32_t stbSplCreateExchangeNode(SSplitContext* pCxt, SLogicNode* pParent, SLogicNode* pPartChild) {
  SExchangeLogicNode* pExchange = NULL;
  int32_t             code = splCreateExchangeNode(pCxt, pPartChild, &pExchange);
  if (TSDB_CODE_SUCCESS == code) {
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    pExchange->node.pParent = pParent;
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    code = nodesListMakeAppend(&pParent->pChildren, (SNode*)pExchange);
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  }
  return code;
}

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static int32_t stbSplCreateMergeKeysByPrimaryKey(SNode* pPrimaryKey, EOrder order, SNodeList** pMergeKeys) {
488
  SOrderByExprNode* pMergeKey = (SOrderByExprNode*)nodesMakeNode(QUERY_NODE_ORDER_BY_EXPR);
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  if (NULL == pMergeKey) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
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  pMergeKey->pExpr = nodesCloneNode(pPrimaryKey);
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  if (NULL == pMergeKey->pExpr) {
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    nodesDestroyNode((SNode*)pMergeKey);
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    return TSDB_CODE_OUT_OF_MEMORY;
  }
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  pMergeKey->order = order;
498
  pMergeKey->nullOrder = NULL_ORDER_FIRST;
499
  return nodesListMakeStrictAppend(pMergeKeys, (SNode*)pMergeKey);
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}

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static int32_t stbSplSplitIntervalForBatch(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
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  SLogicNode* pPartWindow = NULL;
  int32_t     code = stbSplCreatePartWindowNode((SWindowLogicNode*)pInfo->pSplitNode, &pPartWindow);
  if (TSDB_CODE_SUCCESS == code) {
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    ((SWindowLogicNode*)pPartWindow)->windowAlgo = INTERVAL_ALGO_HASH;
    ((SWindowLogicNode*)pInfo->pSplitNode)->windowAlgo = INTERVAL_ALGO_MERGE;
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    SNodeList* pMergeKeys = NULL;
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    code = stbSplCreateMergeKeysByPrimaryKey(((SWindowLogicNode*)pInfo->pSplitNode)->pTspk,
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                                             ((SWindowLogicNode*)pInfo->pSplitNode)->outputTsOrder, &pMergeKeys);
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    if (TSDB_CODE_SUCCESS == code) {
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      code = stbSplCreateMergeNode(pCxt, NULL, pInfo->pSplitNode, pMergeKeys, pPartWindow, true);
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    }
    if (TSDB_CODE_SUCCESS != code) {
      nodesDestroyList(pMergeKeys);
    }
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  }
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
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                                     (SNode*)splCreateScanSubplan(pCxt, pPartWindow, SPLIT_FLAG_STABLE_SPLIT));
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  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
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  ++(pCxt->groupId);
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  return code;
}

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static int32_t stbSplSplitIntervalForStream(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
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  SLogicNode* pPartWindow = NULL;
  int32_t     code = stbSplCreatePartWindowNode((SWindowLogicNode*)pInfo->pSplitNode, &pPartWindow);
  if (TSDB_CODE_SUCCESS == code) {
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    ((SWindowLogicNode*)pPartWindow)->windowAlgo = INTERVAL_ALGO_STREAM_SEMI;
    ((SWindowLogicNode*)pInfo->pSplitNode)->windowAlgo = INTERVAL_ALGO_STREAM_FINAL;
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    code = stbSplCreateExchangeNode(pCxt, pInfo->pSplitNode, pPartWindow);
  }
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
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                                     (SNode*)splCreateScanSubplan(pCxt, pPartWindow, SPLIT_FLAG_STABLE_SPLIT));
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  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
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  ++(pCxt->groupId);
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  return code;
}

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static int32_t stbSplSplitInterval(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
545
  if (pCxt->pPlanCxt->streamQuery) {
546
    return stbSplSplitIntervalForStream(pCxt, pInfo);
547
  } else {
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    return stbSplSplitIntervalForBatch(pCxt, pInfo);
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  }
}

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static int32_t stbSplSplitSessionForStream(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  SLogicNode* pPartWindow = NULL;
  int32_t     code = stbSplCreatePartWindowNode((SWindowLogicNode*)pInfo->pSplitNode, &pPartWindow);
  if (TSDB_CODE_SUCCESS == code) {
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    SWindowLogicNode* pPartWin = (SWindowLogicNode*)pPartWindow;
    SWindowLogicNode* pMergeWin = (SWindowLogicNode*)pInfo->pSplitNode;
    pPartWin->windowAlgo = SESSION_ALGO_STREAM_SEMI;
    pMergeWin->windowAlgo = SESSION_ALGO_STREAM_FINAL;
    int32_t index = 0;
    int32_t code = stbSplAppendWEnd(pPartWin, &index);
    if (TSDB_CODE_SUCCESS == code) {
      pMergeWin->pTsEnd = nodesCloneNode(nodesListGetNode(pPartWin->node.pTargets, index));
      if (NULL == pMergeWin->pTsEnd) {
        code = TSDB_CODE_OUT_OF_MEMORY;
      }
    }
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    code = stbSplCreateExchangeNode(pCxt, pInfo->pSplitNode, pPartWindow);
  }
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
                                     (SNode*)splCreateScanSubplan(pCxt, pPartWindow, SPLIT_FLAG_STABLE_SPLIT));
  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
  ++(pCxt->groupId);
  return code;
}

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static void stbSplSetTableMergeScan(SLogicNode* pNode) {
580
  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode)) {
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    SScanLogicNode* pScan = (SScanLogicNode*)pNode;
    pScan->scanType = SCAN_TYPE_TABLE_MERGE;
    if (NULL != pScan->pGroupTags) {
      pScan->groupSort = true;
    }
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  } else {
    if (1 == LIST_LENGTH(pNode->pChildren)) {
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      stbSplSetTableMergeScan((SLogicNode*)nodesListGetNode(pNode->pChildren, 0));
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    }
  }
}

static int32_t stbSplSplitSessionOrStateForBatch(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  SLogicNode* pWindow = pInfo->pSplitNode;
  SLogicNode* pChild = (SLogicNode*)nodesListGetNode(pWindow->pChildren, 0);

  SNodeList* pMergeKeys = NULL;
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  int32_t    code = stbSplCreateMergeKeysByPrimaryKey(((SWindowLogicNode*)pWindow)->pTspk,
                                                      ((SWindowLogicNode*)pWindow)->inputTsOrder, &pMergeKeys);
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  if (TSDB_CODE_SUCCESS == code) {
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    code = stbSplCreateMergeNode(pCxt, pInfo->pSubplan, pChild, pMergeKeys, (SLogicNode*)pChild, true);
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  }

  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
                                     (SNode*)splCreateScanSubplan(pCxt, pChild, SPLIT_FLAG_STABLE_SPLIT));
  }

  if (TSDB_CODE_SUCCESS == code) {
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    stbSplSetTableMergeScan(pChild);
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    pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
    SPLIT_FLAG_SET_MASK(pInfo->pSubplan->splitFlag, SPLIT_FLAG_STABLE_SPLIT);
614
    ++(pCxt->groupId);
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  } else {
    nodesDestroyList(pMergeKeys);
  }

  return code;
}

622
static int32_t stbSplSplitSession(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
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  if (pCxt->pPlanCxt->streamQuery) {
    return stbSplSplitSessionForStream(pCxt, pInfo);
  } else {
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    return stbSplSplitSessionOrStateForBatch(pCxt, pInfo);
  }
}

static int32_t stbSplSplitStateForStream(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  return TSDB_CODE_PLAN_INTERNAL_ERROR;
}

static int32_t stbSplSplitState(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  if (pCxt->pPlanCxt->streamQuery) {
    return stbSplSplitStateForStream(pCxt, pInfo);
  } else {
    return stbSplSplitSessionOrStateForBatch(pCxt, pInfo);
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  }
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}

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static SNodeList* stbSplGetPartKeys(SLogicNode* pNode) {
  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode)) {
644
    return ((SScanLogicNode*)pNode)->pGroupTags;
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  } else if (QUERY_NODE_LOGIC_PLAN_PARTITION == nodeType(pNode)) {
    return ((SPartitionLogicNode*)pNode)->pPartitionKeys;
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  } else {
    return NULL;
  }
}

static bool stbSplIsPartTbanme(SNodeList* pPartKeys) {
  if (NULL == pPartKeys || 1 != LIST_LENGTH(pPartKeys)) {
    return false;
  }
  SNode* pPartKey = nodesListGetNode(pPartKeys, 0);
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  return (QUERY_NODE_FUNCTION == nodeType(pPartKey) && FUNCTION_TYPE_TBNAME == ((SFunctionNode*)pPartKey)->funcType) ||
         (QUERY_NODE_COLUMN == nodeType(pPartKey) && COLUMN_TYPE_TBNAME == ((SColumnNode*)pPartKey)->colType);
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}

661
static bool stbSplIsPartTableWinodw(SWindowLogicNode* pWindow) {
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  return stbSplIsPartTbanme(stbSplGetPartKeys((SLogicNode*)nodesListGetNode(pWindow->node.pChildren, 0)));
}

665
static int32_t stbSplSplitWindowForCrossTable(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
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  switch (((SWindowLogicNode*)pInfo->pSplitNode)->winType) {
    case WINDOW_TYPE_INTERVAL:
      return stbSplSplitInterval(pCxt, pInfo);
    case WINDOW_TYPE_SESSION:
      return stbSplSplitSession(pCxt, pInfo);
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    case WINDOW_TYPE_STATE:
      return stbSplSplitState(pCxt, pInfo);
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    default:
      break;
  }
  return TSDB_CODE_PLAN_INTERNAL_ERROR;
}

679
static int32_t stbSplSplitWindowForPartTable(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
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  if (pCxt->pPlanCxt->streamQuery) {
    SPLIT_FLAG_SET_MASK(pInfo->pSubplan->splitFlag, SPLIT_FLAG_STABLE_SPLIT);
    return TSDB_CODE_SUCCESS;
  }

685 686 687
  if (NULL != pInfo->pSplitNode->pParent && QUERY_NODE_LOGIC_PLAN_FILL == nodeType(pInfo->pSplitNode->pParent)) {
    pInfo->pSplitNode = pInfo->pSplitNode->pParent;
  }
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  SExchangeLogicNode* pExchange = NULL;
  int32_t             code = splCreateExchangeNode(pCxt, pInfo->pSplitNode, &pExchange);
  if (TSDB_CODE_SUCCESS == code) {
    code = replaceLogicNode(pInfo->pSubplan, pInfo->pSplitNode, (SLogicNode*)pExchange);
  }
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
                                     (SNode*)splCreateScanSubplan(pCxt, pInfo->pSplitNode, SPLIT_FLAG_STABLE_SPLIT));
  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
  ++(pCxt->groupId);
  return code;
}

static int32_t stbSplSplitWindowNode(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
703 704
  if (stbSplIsPartTableWinodw((SWindowLogicNode*)pInfo->pSplitNode)) {
    return stbSplSplitWindowForPartTable(pCxt, pInfo);
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  } else {
706
    return stbSplSplitWindowForCrossTable(pCxt, pInfo);
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  }
}

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static int32_t stbSplCreatePartAggNode(SAggLogicNode* pMergeAgg, SLogicNode** pOutput) {
  SNodeList* pFunc = pMergeAgg->pAggFuncs;
  pMergeAgg->pAggFuncs = NULL;
  SNodeList* pGroupKeys = pMergeAgg->pGroupKeys;
  pMergeAgg->pGroupKeys = NULL;
  SNodeList* pTargets = pMergeAgg->node.pTargets;
  pMergeAgg->node.pTargets = NULL;
  SNodeList* pChildren = pMergeAgg->node.pChildren;
  pMergeAgg->node.pChildren = NULL;
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  SNode* pConditions = pMergeAgg->node.pConditions;
  pMergeAgg->node.pConditions = NULL;
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  int32_t        code = TSDB_CODE_SUCCESS;
723
  SAggLogicNode* pPartAgg = (SAggLogicNode*)nodesCloneNode((SNode*)pMergeAgg);
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  if (NULL == pPartAgg) {
    code = TSDB_CODE_OUT_OF_MEMORY;
  }

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  pPartAgg->node.groupAction = GROUP_ACTION_KEEP;

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  if (TSDB_CODE_SUCCESS == code && NULL != pGroupKeys) {
    pPartAgg->pGroupKeys = pGroupKeys;
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    code = createColumnByRewriteExprs(pPartAgg->pGroupKeys, &pPartAgg->node.pTargets);
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  }
  if (TSDB_CODE_SUCCESS == code && NULL != pGroupKeys) {
    pMergeAgg->pGroupKeys = nodesCloneList(pPartAgg->node.pTargets);
    if (NULL == pMergeAgg->pGroupKeys) {
      code = TSDB_CODE_OUT_OF_MEMORY;
    }
  }
  if (TSDB_CODE_SUCCESS == code) {
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    pMergeAgg->node.pConditions = pConditions;
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    pMergeAgg->node.pTargets = pTargets;
    pPartAgg->node.pChildren = pChildren;
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    splSetParent((SLogicNode*)pPartAgg);
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    code = stbSplRewriteFuns(pFunc, &pPartAgg->pAggFuncs, &pMergeAgg->pAggFuncs);
  }
  if (TSDB_CODE_SUCCESS == code) {
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    code = createColumnByRewriteExprs(pPartAgg->pAggFuncs, &pPartAgg->node.pTargets);
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  }

  nodesDestroyList(pFunc);
  if (TSDB_CODE_SUCCESS == code) {
    *pOutput = (SLogicNode*)pPartAgg;
  } else {
756
    nodesDestroyNode((SNode*)pPartAgg);
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  }

  return code;
}

static int32_t stbSplSplitAggNode(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  SLogicNode* pPartAgg = NULL;
  int32_t     code = stbSplCreatePartAggNode((SAggLogicNode*)pInfo->pSplitNode, &pPartAgg);
  if (TSDB_CODE_SUCCESS == code) {
    code = stbSplCreateExchangeNode(pCxt, pInfo->pSplitNode, pPartAgg);
  }
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
770
                                     (SNode*)splCreateScanSubplan(pCxt, pPartAgg, SPLIT_FLAG_STABLE_SPLIT));
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  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
773
  ++(pCxt->groupId);
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  return code;
}

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static SNode* stbSplCreateColumnNode(SExprNode* pExpr) {
778
  SColumnNode* pCol = (SColumnNode*)nodesMakeNode(QUERY_NODE_COLUMN);
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  if (NULL == pCol) {
    return NULL;
  }
  if (QUERY_NODE_COLUMN == nodeType(pExpr)) {
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    strcpy(pCol->dbName, ((SColumnNode*)pExpr)->dbName);
    strcpy(pCol->tableName, ((SColumnNode*)pExpr)->tableName);
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    strcpy(pCol->tableAlias, ((SColumnNode*)pExpr)->tableAlias);
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    strcpy(pCol->colName, ((SColumnNode*)pExpr)->colName);
  } else {
    strcpy(pCol->colName, pExpr->aliasName);
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  }
  strcpy(pCol->node.aliasName, pExpr->aliasName);
  pCol->node.resType = pExpr->resType;
  return (SNode*)pCol;
}

static SNode* stbSplCreateOrderByExpr(SOrderByExprNode* pSortKey, SNode* pCol) {
796
  SOrderByExprNode* pOutput = (SOrderByExprNode*)nodesMakeNode(QUERY_NODE_ORDER_BY_EXPR);
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  if (NULL == pOutput) {
    return NULL;
  }
  pOutput->pExpr = nodesCloneNode(pCol);
  if (NULL == pOutput->pExpr) {
802
    nodesDestroyNode((SNode*)pOutput);
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    return NULL;
  }
  pOutput->order = pSortKey->order;
  pOutput->nullOrder = pSortKey->nullOrder;
  return (SNode*)pOutput;
}

static int32_t stbSplCreateMergeKeys(SNodeList* pSortKeys, SNodeList* pTargets, SNodeList** pOutput) {
  int32_t    code = TSDB_CODE_SUCCESS;
  SNodeList* pMergeKeys = NULL;
  SNode*     pNode = NULL;
  FOREACH(pNode, pSortKeys) {
    SOrderByExprNode* pSortKey = (SOrderByExprNode*)pNode;
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    SExprNode*        pSortExpr = (SExprNode*)pSortKey->pExpr;
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    SNode*            pTarget = NULL;
    bool              found = false;
    FOREACH(pTarget, pTargets) {
820 821
      if ((QUERY_NODE_COLUMN == nodeType(pSortExpr) && nodesEqualNode((SNode*)pSortExpr, pTarget)) ||
          (0 == strcmp(pSortExpr->aliasName, ((SColumnNode*)pTarget)->colName))) {
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        code = nodesListMakeStrictAppend(&pMergeKeys, stbSplCreateOrderByExpr(pSortKey, pTarget));
        if (TSDB_CODE_SUCCESS != code) {
          break;
        }
        found = true;
      }
    }
    if (TSDB_CODE_SUCCESS == code && !found) {
830
      SNode* pCol = stbSplCreateColumnNode(pSortExpr);
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      code = nodesListMakeStrictAppend(&pMergeKeys, stbSplCreateOrderByExpr(pSortKey, pCol));
      if (TSDB_CODE_SUCCESS == code) {
        code = nodesListStrictAppend(pTargets, pCol);
      } else {
        nodesDestroyNode(pCol);
      }
    }
    if (TSDB_CODE_SUCCESS != code) {
      break;
    }
  }
  if (TSDB_CODE_SUCCESS == code) {
    *pOutput = pMergeKeys;
  } else {
    nodesDestroyList(pMergeKeys);
  }
  return code;
}

static int32_t stbSplCreatePartSortNode(SSortLogicNode* pSort, SLogicNode** pOutputPartSort,
                                        SNodeList** pOutputMergeKeys) {
  SNodeList* pSortKeys = pSort->pSortKeys;
  pSort->pSortKeys = NULL;
  SNodeList* pChildren = pSort->node.pChildren;
  pSort->node.pChildren = NULL;
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  int32_t         code = TSDB_CODE_SUCCESS;
858
  SSortLogicNode* pPartSort = (SSortLogicNode*)nodesCloneNode((SNode*)pSort);
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  if (NULL == pPartSort) {
    code = TSDB_CODE_OUT_OF_MEMORY;
  }

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  SNodeList* pMergeKeys = NULL;
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  if (TSDB_CODE_SUCCESS == code) {
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    pPartSort->node.pChildren = pChildren;
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    splSetParent((SLogicNode*)pPartSort);
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    pPartSort->pSortKeys = pSortKeys;
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    pPartSort->groupSort = pSort->groupSort;
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    code = stbSplCreateMergeKeys(pPartSort->pSortKeys, pPartSort->node.pTargets, &pMergeKeys);
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  }

  if (TSDB_CODE_SUCCESS == code) {
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    *pOutputPartSort = (SLogicNode*)pPartSort;
    *pOutputMergeKeys = pMergeKeys;
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  } else {
876
    nodesDestroyNode((SNode*)pPartSort);
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    nodesDestroyList(pMergeKeys);
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  }

  return code;
}

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static void stbSplSetScanPartSort(SLogicNode* pNode) {
  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode)) {
    SScanLogicNode* pScan = (SScanLogicNode*)pNode;
    if (NULL != pScan->pGroupTags) {
      pScan->groupSort = true;
    }
  } else {
    if (1 == LIST_LENGTH(pNode->pChildren)) {
      stbSplSetScanPartSort((SLogicNode*)nodesListGetNode(pNode->pChildren, 0));
    }
  }
}

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static int32_t stbSplSplitSortNode(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  SLogicNode* pPartSort = NULL;
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  SNodeList*  pMergeKeys = NULL;
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  bool        groupSort = ((SSortLogicNode*)pInfo->pSplitNode)->groupSort;
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  int32_t     code = stbSplCreatePartSortNode((SSortLogicNode*)pInfo->pSplitNode, &pPartSort, &pMergeKeys);
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  if (TSDB_CODE_SUCCESS == code) {
902 903
    code = stbSplCreateMergeNode(pCxt, pInfo->pSubplan, pInfo->pSplitNode, pMergeKeys, pPartSort, groupSort);
  }
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  if (TSDB_CODE_SUCCESS == code) {
905 906 907 908
    nodesDestroyNode((SNode*)pInfo->pSplitNode);
    if (groupSort) {
      stbSplSetScanPartSort(pPartSort);
    }
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    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
910
                                     (SNode*)splCreateScanSubplan(pCxt, pPartSort, SPLIT_FLAG_STABLE_SPLIT));
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  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
913
  ++(pCxt->groupId);
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  return code;
}

917
static int32_t stbSplSplitScanNodeWithoutPartTags(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
918
  SLogicNode* pSplitNode = pInfo->pSplitNode;
919 920
  if (NULL != pInfo->pSplitNode->pParent && QUERY_NODE_LOGIC_PLAN_PROJECT == nodeType(pInfo->pSplitNode->pParent) &&
      NULL == pInfo->pSplitNode->pParent->pLimit && NULL == pInfo->pSplitNode->pParent->pSlimit) {
921 922 923
    pSplitNode = pInfo->pSplitNode->pParent;
  }
  int32_t code = splCreateExchangeNodeForSubplan(pCxt, pInfo->pSubplan, pSplitNode, SUBPLAN_TYPE_MERGE);
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  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
926
                                     (SNode*)splCreateScanSubplan(pCxt, pSplitNode, SPLIT_FLAG_STABLE_SPLIT));
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  }
928
  ++(pCxt->groupId);
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  return code;
}

932
static int32_t stbSplSplitScanNodeWithPartTags(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
933
  SLogicNode* pSplitNode = pInfo->pSplitNode;
934 935
  if (NULL != pInfo->pSplitNode->pParent && QUERY_NODE_LOGIC_PLAN_PROJECT == nodeType(pInfo->pSplitNode->pParent) &&
      NULL == pInfo->pSplitNode->pParent->pLimit && NULL == pInfo->pSplitNode->pParent->pSlimit) {
936 937 938
    pSplitNode = pInfo->pSplitNode->pParent;
  }
  int32_t code = stbSplCreateMergeNode(pCxt, pInfo->pSubplan, pSplitNode, NULL, pSplitNode, true);
939 940
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
941
                                     (SNode*)splCreateScanSubplan(pCxt, pSplitNode, SPLIT_FLAG_STABLE_SPLIT));
942 943 944 945 946 947
  }
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
  ++(pCxt->groupId);
  return code;
}

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static SNode* stbSplFindPrimaryKeyFromScan(SScanLogicNode* pScan) {
949
  bool   find = false;
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  SNode* pCol = NULL;
  FOREACH(pCol, pScan->pScanCols) {
    if (PRIMARYKEY_TIMESTAMP_COL_ID == ((SColumnNode*)pCol)->colId) {
953 954 955 956 957 958 959 960 961 962
      find = true;
      break;
    }
  }
  if (!find) {
    return NULL;
  }
  SNode* pTarget = NULL;
  FOREACH(pTarget, pScan->node.pTargets) {
    if (nodesEqualNode(pTarget, pCol)) {
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      return pCol;
    }
  }
966 967
  nodesListStrictAppend(pScan->node.pTargets, nodesCloneNode(pCol));
  return pCol;
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}

970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985
static int32_t stbSplCreateMergeScanNode(SScanLogicNode* pScan, SLogicNode** pOutputMergeScan,
                                         SNodeList** pOutputMergeKeys) {
  SNodeList* pChildren = pScan->node.pChildren;
  pScan->node.pChildren = NULL;

  int32_t         code = TSDB_CODE_SUCCESS;
  SScanLogicNode* pMergeScan = (SScanLogicNode*)nodesCloneNode((SNode*)pScan);
  if (NULL == pMergeScan) {
    code = TSDB_CODE_OUT_OF_MEMORY;
  }

  SNodeList* pMergeKeys = NULL;
  if (TSDB_CODE_SUCCESS == code) {
    pMergeScan->scanType = SCAN_TYPE_TABLE_MERGE;
    pMergeScan->node.pChildren = pChildren;
    splSetParent((SLogicNode*)pMergeScan);
986 987
    code = stbSplCreateMergeKeysByPrimaryKey(stbSplFindPrimaryKeyFromScan(pMergeScan),
                                             pMergeScan->scanSeq[0] > 0 ? ORDER_ASC : ORDER_DESC, &pMergeKeys);
988 989 990 991 992 993 994 995 996 997 998 999 1000
  }

  if (TSDB_CODE_SUCCESS == code) {
    *pOutputMergeScan = (SLogicNode*)pMergeScan;
    *pOutputMergeKeys = pMergeKeys;
  } else {
    nodesDestroyNode((SNode*)pMergeScan);
    nodesDestroyList(pMergeKeys);
  }

  return code;
}

1001 1002
static int32_t stbSplSplitMergeScanNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SScanLogicNode* pScan,
                                        bool groupSort) {
1003 1004 1005
  SLogicNode* pMergeScan = NULL;
  SNodeList*  pMergeKeys = NULL;
  int32_t     code = stbSplCreateMergeScanNode(pScan, &pMergeScan, &pMergeKeys);
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  if (TSDB_CODE_SUCCESS == code) {
1007
    code = stbSplCreateMergeNode(pCxt, pSubplan, (SLogicNode*)pScan, pMergeKeys, pMergeScan, groupSort);
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  }
  if (TSDB_CODE_SUCCESS == code) {
1010
    nodesDestroyNode((SNode*)pScan);
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    code = nodesListMakeStrictAppend(&pSubplan->pChildren,
1012
                                     (SNode*)splCreateScanSubplan(pCxt, pMergeScan, SPLIT_FLAG_STABLE_SPLIT));
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  }
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  ++(pCxt->groupId);
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  return code;
}

1018 1019 1020 1021
static int32_t stbSplSplitScanNode(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
  SScanLogicNode* pScan = (SScanLogicNode*)pInfo->pSplitNode;
  if (SCAN_TYPE_TABLE_MERGE == pScan->scanType) {
    pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
1022
    return stbSplSplitMergeScanNode(pCxt, pInfo->pSubplan, pScan, true);
1023 1024 1025 1026 1027 1028 1029
  }
  if (NULL != pScan->pGroupTags) {
    return stbSplSplitScanNodeWithPartTags(pCxt, pInfo);
  }
  return stbSplSplitScanNodeWithoutPartTags(pCxt, pInfo);
}

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static int32_t stbSplSplitJoinNodeImpl(SSplitContext* pCxt, SLogicSubplan* pSubplan, SJoinLogicNode* pJoin) {
  int32_t code = TSDB_CODE_SUCCESS;
  SNode*  pChild = NULL;
  FOREACH(pChild, pJoin->node.pChildren) {
    if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pChild)) {
1035
      code = stbSplSplitMergeScanNode(pCxt, pSubplan, (SScanLogicNode*)pChild, false);
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    } else if (QUERY_NODE_LOGIC_PLAN_JOIN == nodeType(pChild)) {
      code = stbSplSplitJoinNodeImpl(pCxt, pSubplan, (SJoinLogicNode*)pChild);
    } else {
      code = TSDB_CODE_PLAN_INTERNAL_ERROR;
    }
    if (TSDB_CODE_SUCCESS != code) {
      break;
    }
  }
  return code;
}

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static int32_t stbSplSplitJoinNode(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
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  int32_t code = stbSplSplitJoinNodeImpl(pCxt, pInfo->pSubplan, (SJoinLogicNode*)pInfo->pSplitNode);
  if (TSDB_CODE_SUCCESS == code) {
    pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
    SPLIT_FLAG_SET_MASK(pInfo->pSubplan->splitFlag, SPLIT_FLAG_STABLE_SPLIT);
  }
  return code;
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}

1057
static int32_t stbSplCreateMergeKeysForPartitionNode(SLogicNode* pPart, SNodeList** pMergeKeys) {
1058 1059
  SScanLogicNode* pScan = (SScanLogicNode*)nodesListGetNode(pPart->pChildren, 0);
  SNode*          pPrimaryKey = nodesCloneNode(stbSplFindPrimaryKeyFromScan(pScan));
1060 1061 1062 1063 1064
  if (NULL == pPrimaryKey) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
  int32_t code = nodesListAppend(pPart->pTargets, pPrimaryKey);
  if (TSDB_CODE_SUCCESS == code) {
1065
    code = stbSplCreateMergeKeysByPrimaryKey(pPrimaryKey, pScan->scanSeq[0] > 0 ? ORDER_ASC : ORDER_DESC, pMergeKeys);
1066 1067 1068 1069
  }
  return code;
}

1070
static int32_t stbSplSplitPartitionNode(SSplitContext* pCxt, SStableSplitInfo* pInfo) {
1071 1072 1073
  int32_t    code = TSDB_CODE_SUCCESS;
  SNodeList* pMergeKeys = NULL;
  if (pInfo->pSplitNode->requireDataOrder >= DATA_ORDER_LEVEL_IN_GROUP) {
1074
    code = stbSplCreateMergeKeysForPartitionNode(pInfo->pSplitNode, &pMergeKeys);
1075 1076 1077 1078
  }
  if (TSDB_CODE_SUCCESS == code) {
    code = stbSplCreateMergeNode(pCxt, pInfo->pSubplan, pInfo->pSplitNode, pMergeKeys, pInfo->pSplitNode, true);
  }
1079 1080 1081 1082
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&pInfo->pSubplan->pChildren,
                                     (SNode*)splCreateScanSubplan(pCxt, pInfo->pSplitNode, SPLIT_FLAG_STABLE_SPLIT));
  }
1083
  pInfo->pSubplan->subplanType = SUBPLAN_TYPE_MERGE;
1084 1085 1086 1087
  ++(pCxt->groupId);
  return code;
}

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static int32_t stableSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
1089 1090 1091 1092
  if (pCxt->pPlanCxt->rSmaQuery) {
    return TSDB_CODE_SUCCESS;
  }

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  SStableSplitInfo info = {0};
  if (!splMatch(pCxt, pSubplan, SPLIT_FLAG_STABLE_SPLIT, (FSplFindSplitNode)stbSplFindSplitNode, &info)) {
1095 1096
    return TSDB_CODE_SUCCESS;
  }
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  int32_t code = TSDB_CODE_SUCCESS;
  switch (nodeType(info.pSplitNode)) {
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    case QUERY_NODE_LOGIC_PLAN_SCAN:
      code = stbSplSplitScanNode(pCxt, &info);
      break;
    case QUERY_NODE_LOGIC_PLAN_JOIN:
      code = stbSplSplitJoinNode(pCxt, &info);
      break;
1106 1107 1108
    case QUERY_NODE_LOGIC_PLAN_PARTITION:
      code = stbSplSplitPartitionNode(pCxt, &info);
      break;
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    case QUERY_NODE_LOGIC_PLAN_AGG:
      code = stbSplSplitAggNode(pCxt, &info);
      break;
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    case QUERY_NODE_LOGIC_PLAN_WINDOW:
      code = stbSplSplitWindowNode(pCxt, &info);
      break;
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    case QUERY_NODE_LOGIC_PLAN_SORT:
      code = stbSplSplitSortNode(pCxt, &info);
      break;
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    default:
      break;
1120
  }
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1122 1123 1124 1125
  pCxt->split = true;
  return code;
}

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typedef struct SSigTbJoinSplitInfo {
  SJoinLogicNode* pJoin;
  SLogicNode*     pSplitNode;
  SLogicSubplan*  pSubplan;
} SSigTbJoinSplitInfo;

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static bool sigTbJoinSplNeedSplit(SLogicNode* pNode) {
  if (QUERY_NODE_LOGIC_PLAN_JOIN != nodeType(pNode)) {
    return false;
  }

  SJoinLogicNode* pJoin = (SJoinLogicNode*)pNode;
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  if (!pJoin->isSingleTableJoin) {
    return false;
  }
  return QUERY_NODE_LOGIC_PLAN_EXCHANGE != nodeType(nodesListGetNode(pJoin->node.pChildren, 0)) &&
         QUERY_NODE_LOGIC_PLAN_EXCHANGE != nodeType(nodesListGetNode(pJoin->node.pChildren, 1));
1143 1144
}

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static bool sigTbJoinSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                      SSigTbJoinSplitInfo* pInfo) {
  if (sigTbJoinSplNeedSplit(pNode)) {
    pInfo->pJoin = (SJoinLogicNode*)pNode;
    pInfo->pSplitNode = (SLogicNode*)nodesListGetNode(pNode->pChildren, 1);
1150
    pInfo->pSubplan = pSubplan;
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    return true;
1152
  }
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  return false;
1154 1155
}

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static int32_t singleTableJoinSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
  SSigTbJoinSplitInfo info = {0};
  if (!splMatch(pCxt, pSubplan, 0, (FSplFindSplitNode)sigTbJoinSplFindSplitNode, &info)) {
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    return TSDB_CODE_SUCCESS;
  }
1161
  int32_t code = splCreateExchangeNodeForSubplan(pCxt, info.pSubplan, info.pSplitNode, info.pSubplan->subplanType);
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  if (TSDB_CODE_SUCCESS == code) {
1163
    code = nodesListMakeStrictAppend(&info.pSubplan->pChildren, (SNode*)splCreateScanSubplan(pCxt, info.pSplitNode, 0));
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  }
  ++(pCxt->groupId);
  pCxt->split = true;
  return code;
}

1170 1171 1172 1173 1174 1175 1176 1177
static int32_t unionSplitSubplan(SSplitContext* pCxt, SLogicSubplan* pUnionSubplan, SLogicNode* pSplitNode) {
  SNodeList* pSubplanChildren = pUnionSubplan->pChildren;
  pUnionSubplan->pChildren = NULL;

  int32_t code = TSDB_CODE_SUCCESS;

  SNode* pChild = NULL;
  FOREACH(pChild, pSplitNode->pChildren) {
1178
    SLogicSubplan* pNewSubplan = splCreateSubplan(pCxt, (SLogicNode*)pChild, pUnionSubplan->subplanType);
1179
    code = nodesListMakeStrictAppend(&pUnionSubplan->pChildren, (SNode*)pNewSubplan);
1180 1181
    if (TSDB_CODE_SUCCESS == code) {
      REPLACE_NODE(NULL);
1182
      code = splMountSubplan(pNewSubplan, pSubplanChildren);
1183 1184 1185 1186 1187 1188 1189
    }
    if (TSDB_CODE_SUCCESS != code) {
      break;
    }
  }
  if (TSDB_CODE_SUCCESS == code) {
    nodesDestroyList(pSubplanChildren);
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    NODES_DESTORY_LIST(pSplitNode->pChildren);
1191 1192 1193 1194
  }
  return code;
}

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typedef struct SUnionAllSplitInfo {
  SProjectLogicNode* pProject;
  SLogicSubplan*     pSubplan;
} SUnionAllSplitInfo;

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static bool unAllSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                  SUnionAllSplitInfo* pInfo) {
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  if (QUERY_NODE_LOGIC_PLAN_PROJECT == nodeType(pNode) && LIST_LENGTH(pNode->pChildren) > 1) {
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    pInfo->pProject = (SProjectLogicNode*)pNode;
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    pInfo->pSubplan = pSubplan;
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    return true;
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  }
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  return false;
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}

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static int32_t unAllSplCreateExchangeNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SProjectLogicNode* pProject) {
1211
  SExchangeLogicNode* pExchange = (SExchangeLogicNode*)nodesMakeNode(QUERY_NODE_LOGIC_PLAN_EXCHANGE);
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  if (NULL == pExchange) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
  pExchange->srcGroupId = pCxt->groupId;
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  pExchange->node.precision = pProject->node.precision;
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  pExchange->node.pTargets = nodesCloneList(pProject->node.pTargets);
  if (NULL == pExchange->node.pTargets) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
1221
  TSWAP(pExchange->node.pLimit, pProject->node.pLimit);
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  pSubplan->subplanType = SUBPLAN_TYPE_MERGE;

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  if (NULL == pProject->node.pParent) {
    pSubplan->pNode = (SLogicNode*)pExchange;
1227
    nodesDestroyNode((SNode*)pProject);
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    return TSDB_CODE_SUCCESS;
  }

  SNode* pNode;
  FOREACH(pNode, pProject->node.pParent->pChildren) {
1233
    if (nodesEqualNode(pNode, (SNode*)pProject)) {
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      REPLACE_NODE(pExchange);
      nodesDestroyNode(pNode);
      return TSDB_CODE_SUCCESS;
    }
  }
1239 1240
  nodesDestroyNode((SNode*)pExchange);
  return TSDB_CODE_PLAN_INTERNAL_ERROR;
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}

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static int32_t unionAllSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
  SUnionAllSplitInfo info = {0};
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  if (!splMatch(pCxt, pSubplan, 0, (FSplFindSplitNode)unAllSplFindSplitNode, &info)) {
1246 1247
    return TSDB_CODE_SUCCESS;
  }
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1249
  int32_t code = unionSplitSubplan(pCxt, info.pSubplan, (SLogicNode*)info.pProject);
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  if (TSDB_CODE_SUCCESS == code) {
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    code = unAllSplCreateExchangeNode(pCxt, info.pSubplan, info.pProject);
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  }
  ++(pCxt->groupId);
1254
  pCxt->split = true;
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  return code;
}

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typedef struct SUnionDistinctSplitInfo {
  SAggLogicNode* pAgg;
  SLogicSubplan* pSubplan;
} SUnionDistinctSplitInfo;

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static int32_t unDistSplCreateExchangeNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SAggLogicNode* pAgg) {
1264
  SExchangeLogicNode* pExchange = (SExchangeLogicNode*)nodesMakeNode(QUERY_NODE_LOGIC_PLAN_EXCHANGE);
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  if (NULL == pExchange) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
  pExchange->srcGroupId = pCxt->groupId;
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  pExchange->node.precision = pAgg->node.precision;
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  pExchange->node.pTargets = nodesCloneList(pAgg->pGroupKeys);
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  if (NULL == pExchange->node.pTargets) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }

  pSubplan->subplanType = SUBPLAN_TYPE_MERGE;

1277
  return nodesListMakeAppend(&pAgg->node.pChildren, (SNode*)pExchange);
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}

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static bool unDistSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                   SUnionDistinctSplitInfo* pInfo) {
  if (QUERY_NODE_LOGIC_PLAN_AGG == nodeType(pNode) && LIST_LENGTH(pNode->pChildren) > 1) {
    pInfo->pAgg = (SAggLogicNode*)pNode;
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    pInfo->pSubplan = pSubplan;
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    return true;
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  }
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  return false;
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}

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static int32_t unionDistinctSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
  SUnionDistinctSplitInfo info = {0};
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  if (!splMatch(pCxt, pSubplan, 0, (FSplFindSplitNode)unDistSplFindSplitNode, &info)) {
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    return TSDB_CODE_SUCCESS;
  }

1296
  int32_t code = unionSplitSubplan(pCxt, info.pSubplan, (SLogicNode*)info.pAgg);
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  if (TSDB_CODE_SUCCESS == code) {
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    code = unDistSplCreateExchangeNode(pCxt, info.pSubplan, info.pAgg);
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  }
  ++(pCxt->groupId);
  pCxt->split = true;
  return code;
}

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typedef struct SSmaIndexSplitInfo {
  SMergeLogicNode* pMerge;
  SLogicSubplan*   pSubplan;
} SSmaIndexSplitInfo;

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static bool smaIdxSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                   SSmaIndexSplitInfo* pInfo) {
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  if (QUERY_NODE_LOGIC_PLAN_MERGE == nodeType(pNode) && LIST_LENGTH(pNode->pChildren) > 1) {
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    pInfo->pMerge = (SMergeLogicNode*)pNode;
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    pInfo->pSubplan = pSubplan;
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    return true;
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  }
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  return false;
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}

static int32_t smaIndexSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
  SSmaIndexSplitInfo info = {0};
  if (!splMatch(pCxt, pSubplan, 0, (FSplFindSplitNode)smaIdxSplFindSplitNode, &info)) {
    return TSDB_CODE_SUCCESS;
  }

  int32_t code = unionSplitSubplan(pCxt, info.pSubplan, (SLogicNode*)info.pMerge);
  if (TSDB_CODE_SUCCESS == code) {
    info.pMerge->srcGroupId = pCxt->groupId;
  }
  ++(pCxt->groupId);
  pCxt->split = true;
  return code;
}

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typedef struct SInsertSelectSplitInfo {
  SLogicNode*    pQueryRoot;
  SLogicSubplan* pSubplan;
} SInsertSelectSplitInfo;

static bool insSelSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                   SInsertSelectSplitInfo* pInfo) {
  if (QUERY_NODE_LOGIC_PLAN_VNODE_MODIFY == nodeType(pNode) && 1 == LIST_LENGTH(pNode->pChildren) &&
      MODIFY_TABLE_TYPE_INSERT == ((SVnodeModifyLogicNode*)pNode)->modifyType) {
    pInfo->pQueryRoot = (SLogicNode*)nodesListGetNode(pNode->pChildren, 0);
    pInfo->pSubplan = pSubplan;
    return true;
  }
  return false;
}

static int32_t insertSelectSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
  SInsertSelectSplitInfo info = {0};
  if (!splMatch(pCxt, pSubplan, SPLIT_FLAG_INSERT_SPLIT, (FSplFindSplitNode)insSelSplFindSplitNode, &info)) {
    return TSDB_CODE_SUCCESS;
  }

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  SLogicSubplan* pNewSubplan = NULL;
  SNodeList*     pSubplanChildren = info.pSubplan->pChildren;
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  ESubplanType   subplanType = info.pSubplan->subplanType;
  int32_t        code = splCreateExchangeNodeForSubplan(pCxt, info.pSubplan, info.pQueryRoot, SUBPLAN_TYPE_MODIFY);
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  if (TSDB_CODE_SUCCESS == code) {
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    pNewSubplan = splCreateSubplan(pCxt, info.pQueryRoot, subplanType);
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    if (NULL == pNewSubplan) {
      code = TSDB_CODE_OUT_OF_MEMORY;
    }
  }
  if (TSDB_CODE_SUCCESS == code) {
    code = nodesListMakeStrictAppend(&info.pSubplan->pChildren, (SNode*)pNewSubplan);
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  }
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  if (TSDB_CODE_SUCCESS == code) {
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    code = splMountSubplan(pNewSubplan, pSubplanChildren);
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  }

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  SPLIT_FLAG_SET_MASK(info.pSubplan->splitFlag, SPLIT_FLAG_INSERT_SPLIT);
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  ++(pCxt->groupId);
  pCxt->split = true;
  return code;
}

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typedef struct SQnodeSplitInfo {
  SLogicNode*    pSplitNode;
  SLogicSubplan* pSubplan;
} SQnodeSplitInfo;

static bool qndSplFindSplitNode(SSplitContext* pCxt, SLogicSubplan* pSubplan, SLogicNode* pNode,
                                SQnodeSplitInfo* pInfo) {
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  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode) && NULL != pNode->pParent &&
      ((SScanLogicNode*)pNode)->scanSeq[0] < 1 && ((SScanLogicNode*)pNode)->scanSeq[1] < 1) {
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    pInfo->pSplitNode = pNode;
    pInfo->pSubplan = pSubplan;
    return true;
  }
  return false;
}

static int32_t qnodeSplit(SSplitContext* pCxt, SLogicSubplan* pSubplan) {
  if (QUERY_POLICY_QNODE != tsQueryPolicy) {
    return TSDB_CODE_SUCCESS;
  }

  SQnodeSplitInfo info = {0};
  if (!splMatch(pCxt, pSubplan, 0, (FSplFindSplitNode)qndSplFindSplitNode, &info)) {
    return TSDB_CODE_SUCCESS;
  }
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  ((SScanLogicNode*)info.pSplitNode)->dataRequired = FUNC_DATA_REQUIRED_DATA_LOAD;
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  int32_t code = splCreateExchangeNodeForSubplan(pCxt, info.pSubplan, info.pSplitNode, info.pSubplan->subplanType);
  if (TSDB_CODE_SUCCESS == code) {
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    SLogicSubplan* pScanSubplan = splCreateScanSubplan(pCxt, info.pSplitNode, 0);
    if (NULL != pScanSubplan) {
      if (NULL != info.pSubplan->pVgroupList) {
        info.pSubplan->numOfComputeNodes = info.pSubplan->pVgroupList->numOfVgroups;
        TSWAP(pScanSubplan->pVgroupList, info.pSubplan->pVgroupList);
      } else {
        info.pSubplan->numOfComputeNodes = 1;
      }
      code = nodesListMakeStrictAppend(&info.pSubplan->pChildren, (SNode*)pScanSubplan);
    } else {
      code = TSDB_CODE_OUT_OF_MEMORY;
    }
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  }
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  info.pSubplan->subplanType = SUBPLAN_TYPE_COMPUTE;
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  ++(pCxt->groupId);
  pCxt->split = true;
  return code;
}

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// clang-format off
static const SSplitRule splitRuleSet[] = {
  {.pName = "SuperTableSplit",      .splitFunc = stableSplit},
  {.pName = "SingleTableJoinSplit", .splitFunc = singleTableJoinSplit},
  {.pName = "UnionAllSplit",        .splitFunc = unionAllSplit},
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  {.pName = "UnionDistinctSplit",   .splitFunc = unionDistinctSplit},
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  {.pName = "SmaIndexSplit",        .splitFunc = smaIndexSplit},
  {.pName = "InsertSelectSplit",    .splitFunc = insertSelectSplit}
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};
// clang-format on
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static const int32_t splitRuleNum = (sizeof(splitRuleSet) / sizeof(SSplitRule));

1440
static void dumpLogicSubplan(const char* pRuleName, SLogicSubplan* pSubplan) {
1441
  if (!tsQueryPlannerTrace) {
1442 1443
    return;
  }
1444
  char* pStr = NULL;
1445
  nodesNodeToString((SNode*)pSubplan, false, &pStr, NULL);
1446 1447 1448 1449 1450
  if (NULL == pRuleName) {
    qDebugL("before split: %s", pStr);
  } else {
    qDebugL("apply split %s rule: %s", pRuleName, pStr);
  }
1451 1452 1453
  taosMemoryFree(pStr);
}

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static int32_t applySplitRule(SPlanContext* pCxt, SLogicSubplan* pSubplan) {
  SSplitContext cxt = {
      .pPlanCxt = pCxt, .queryId = pSubplan->id.queryId, .groupId = pSubplan->id.groupId + 1, .split = false};
  bool split = false;
1458
  dumpLogicSubplan(NULL, pSubplan);
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  do {
1460
    split = false;
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    for (int32_t i = 0; i < splitRuleNum; ++i) {
1462
      cxt.split = false;
1463
      int32_t code = splitRuleSet[i].splitFunc(&cxt, pSubplan);
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      if (TSDB_CODE_SUCCESS != code) {
        return code;
      }
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      if (cxt.split) {
        split = true;
        dumpLogicSubplan(splitRuleSet[i].pName, pSubplan);
      }
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    }
1472
  } while (split);
1473
  return qnodeSplit(&cxt, pSubplan);
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}
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static void setVgroupsInfo(SLogicNode* pNode, SLogicSubplan* pSubplan) {
  if (QUERY_NODE_LOGIC_PLAN_SCAN == nodeType(pNode)) {
    TSWAP(((SScanLogicNode*)pNode)->pVgroupList, pSubplan->pVgroupList);
    return;
  }

  SNode* pChild;
  FOREACH(pChild, pNode->pChildren) { setVgroupsInfo((SLogicNode*)pChild, pSubplan); }
}

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static bool needSplitSubplan(SLogicSubplan* pLogicSubplan) {
  if (QUERY_NODE_LOGIC_PLAN_VNODE_MODIFY != nodeType(pLogicSubplan->pNode)) {
    return true;
  }
  SVnodeModifyLogicNode* pModify = (SVnodeModifyLogicNode*)pLogicSubplan->pNode;
  return (MODIFY_TABLE_TYPE_INSERT == pModify->modifyType && NULL != pModify->node.pChildren);
}

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int32_t splitLogicPlan(SPlanContext* pCxt, SLogicSubplan* pLogicSubplan) {
1495
  if (!needSplitSubplan(pLogicSubplan)) {
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    setVgroupsInfo(pLogicSubplan->pNode, pLogicSubplan);
    return TSDB_CODE_SUCCESS;
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  }
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  return applySplitRule(pCxt, pLogicSubplan);
}