timewindowoperator.c 114.7 KB
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#include "function.h"
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#include "executorimpl.h"
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#include "functionMgt.h"
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#include "tdatablock.h"
#include "ttime.h"
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typedef enum SResultTsInterpType {
  RESULT_ROW_START_INTERP = 1,
  RESULT_ROW_END_INTERP = 2,
} SResultTsInterpType;

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static SSDataBlock* doStreamFinalIntervalAgg(SOperatorInfo* pOperator);
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static SSDataBlock* doStreamSessionAgg(SOperatorInfo* pOperator);
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static int64_t* extractTsCol(SSDataBlock* pBlock, const SIntervalAggOperatorInfo* pInfo);

static SResultRowPosition addToOpenWindowList(SResultRowInfo* pResultRowInfo, const SResultRow* pResult);
static void doCloseWindow(SResultRowInfo* pResultRowInfo, const SIntervalAggOperatorInfo* pInfo, SResultRow* pResult);

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/*
 * There are two cases to handle:
 *
 * 1. Query range is not set yet (queryRangeSet = 0). we need to set the query range info, including
 * pQueryAttr->lastKey, pQueryAttr->window.skey, and pQueryAttr->eKey.
 * 2. Query range is set and query is in progress. There may be another result with the same query ranges to be
 *    merged during merge stage. In this case, we need the pTableQueryInfo->lastResRows to decide if there
 *    is a previous result generated or not.
 */
static void setIntervalQueryRange(STableQueryInfo* pTableQueryInfo, TSKEY key, STimeWindow* pQRange) {
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  // do nothing
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}

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static TSKEY getStartTsKey(STimeWindow* win, const TSKEY* tsCols) {
  return tsCols == NULL? win->skey:tsCols[0];
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}

static void getInitialStartTimeWindow(SInterval* pInterval, int32_t precision, TSKEY ts, STimeWindow* w,
                                      bool ascQuery) {
  if (ascQuery) {
    getAlignQueryTimeWindow(pInterval, precision, ts, w);
  } else {
    // the start position of the first time window in the endpoint that spreads beyond the queried last timestamp
    getAlignQueryTimeWindow(pInterval, precision, ts, w);

    int64_t key = w->skey;
    while (key < ts) {  // moving towards end
      key = taosTimeAdd(key, pInterval->sliding, pInterval->slidingUnit, precision);
      if (key >= ts) {
        break;
      }

      w->skey = key;
    }
  }
}

// get the correct time window according to the handled timestamp
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STimeWindow getActiveTimeWindow(SDiskbasedBuf* pBuf, SResultRowInfo* pResultRowInfo, int64_t ts,
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                                       SInterval* pInterval, int32_t precision, STimeWindow* win) {
  STimeWindow w = {0};

  if (pResultRowInfo->cur.pageId == -1) {  // the first window, from the previous stored value
    getInitialStartTimeWindow(pInterval, precision, ts, &w, true);
    w.ekey = taosTimeAdd(w.skey, pInterval->interval, pInterval->intervalUnit, precision) - 1;
  } else {
    w = getResultRowByPos(pBuf, &pResultRowInfo->cur)->win;
  }

  if (w.skey > ts || w.ekey < ts) {
    if (pInterval->intervalUnit == 'n' || pInterval->intervalUnit == 'y') {
      w.skey = taosTimeTruncate(ts, pInterval, precision);
      w.ekey = taosTimeAdd(w.skey, pInterval->interval, pInterval->intervalUnit, precision) - 1;
    } else {
      int64_t st = w.skey;

      if (st > ts) {
        st -= ((st - ts + pInterval->sliding - 1) / pInterval->sliding) * pInterval->sliding;
      }

      int64_t et = st + pInterval->interval - 1;
      if (et < ts) {
        st += ((ts - et + pInterval->sliding - 1) / pInterval->sliding) * pInterval->sliding;
      }

      w.skey = st;
      w.ekey = taosTimeAdd(w.skey, pInterval->interval, pInterval->intervalUnit, precision) - 1;
    }
  }
  return w;
}

static int32_t setTimeWindowOutputBuf(SResultRowInfo* pResultRowInfo, STimeWindow* win, bool masterscan,
                                      SResultRow** pResult, int64_t tableGroupId, SqlFunctionCtx* pCtx,
                                      int32_t numOfOutput, int32_t* rowCellInfoOffset, SAggSupporter* pAggSup,
                                      SExecTaskInfo* pTaskInfo) {
  assert(win->skey <= win->ekey);
  SResultRow* pResultRow = doSetResultOutBufByKey(pAggSup->pResultBuf, pResultRowInfo, (char*)&win->skey, TSDB_KEYSIZE,
                                                  masterscan, tableGroupId, pTaskInfo, true, pAggSup);

  if (pResultRow == NULL) {
    *pResult = NULL;
    return TSDB_CODE_SUCCESS;
  }

  // set time window for current result
  pResultRow->win = (*win);
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  *pResult = pResultRow;
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  setResultRowInitCtx(pResultRow, pCtx, numOfOutput, rowCellInfoOffset);
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  return TSDB_CODE_SUCCESS;
}

static void updateTimeWindowInfo(SColumnInfoData* pColData, STimeWindow* pWin, bool includeEndpoint) {
  int64_t* ts = (int64_t*)pColData->pData;
  int32_t  delta = includeEndpoint ? 1 : 0;

  int64_t duration = pWin->ekey - pWin->skey + delta;
  ts[2] = duration;            // set the duration
  ts[3] = pWin->skey;          // window start key
  ts[4] = pWin->ekey + delta;  // window end key
}

static void doKeepTuple(SWindowRowsSup* pRowSup, int64_t ts) {
  pRowSup->win.ekey = ts;
  pRowSup->prevTs = ts;
  pRowSup->numOfRows += 1;
}

static void doKeepNewWindowStartInfo(SWindowRowsSup* pRowSup, const int64_t* tsList, int32_t rowIndex) {
  pRowSup->startRowIndex = rowIndex;
  pRowSup->numOfRows = 0;
  pRowSup->win.skey = tsList[rowIndex];
}

static FORCE_INLINE int32_t getForwardStepsInBlock(int32_t numOfRows, __block_search_fn_t searchFn, TSKEY ekey,
                                                   int16_t pos, int16_t order, int64_t* pData) {
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  int32_t forwardRows = 0;
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  if (order == TSDB_ORDER_ASC) {
    int32_t end = searchFn((char*)&pData[pos], numOfRows - pos, ekey, order);
    if (end >= 0) {
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      forwardRows = end;
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      if (pData[end + pos] == ekey) {
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        forwardRows += 1;
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      }
    }
  } else {
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    int32_t end = searchFn((char*)&pData[pos], numOfRows - pos, ekey, order);
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    if (end >= 0) {
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      forwardRows = end;
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      if (pData[end + pos] == ekey) {
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        forwardRows += 1;
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      }
    }
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//    int32_t end = searchFn((char*)pData, pos + 1, ekey, order);
//    if (end >= 0) {
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//      forwardRows = pos - end;
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//
//      if (pData[end] == ekey) {
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//        forwardRows += 1;
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//      }
//    }
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  }

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  assert(forwardRows >= 0);
  return forwardRows;
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}

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int32_t binarySearchForKey(char* pValue, int num, TSKEY key, int order) {
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  int32_t midPos = -1;
  int32_t numOfRows;

  if (num <= 0) {
    return -1;
  }

  assert(order == TSDB_ORDER_ASC || order == TSDB_ORDER_DESC);

  TSKEY*  keyList = (TSKEY*)pValue;
  int32_t firstPos = 0;
  int32_t lastPos = num - 1;

  if (order == TSDB_ORDER_DESC) {
    // find the first position which is smaller than the key
    while (1) {
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      if (key >= keyList[firstPos]) return firstPos;
      if (key == keyList[lastPos]) return lastPos;

      if (key < keyList[lastPos]) {
        lastPos += 1;
        if (lastPos >= num) {
          return -1;
        } else {
          return lastPos;
        }
      }
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      numOfRows = lastPos - firstPos + 1;
      midPos = (numOfRows >> 1) + firstPos;

      if (key < keyList[midPos]) {
        firstPos = midPos + 1;
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      } else if (key > keyList[midPos]) {
        lastPos = midPos - 1;
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      } else {
        break;
      }
    }

  } else {
    // find the first position which is bigger than the key
    while (1) {
      if (key <= keyList[firstPos]) return firstPos;
      if (key == keyList[lastPos]) return lastPos;

      if (key > keyList[lastPos]) {
        lastPos = lastPos + 1;
        if (lastPos >= num)
          return -1;
        else
          return lastPos;
      }

      numOfRows = lastPos - firstPos + 1;
      midPos = (numOfRows >> 1u) + firstPos;

      if (key < keyList[midPos]) {
        lastPos = midPos - 1;
      } else if (key > keyList[midPos]) {
        firstPos = midPos + 1;
      } else {
        break;
      }
    }
  }

  return midPos;
}

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int32_t getNumOfRowsInTimeWindow(SDataBlockInfo* pDataBlockInfo, TSKEY* pPrimaryColumn, int32_t startPos,
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                                        TSKEY ekey, __block_search_fn_t searchFn, STableQueryInfo* item,
                                        int32_t order) {
  assert(startPos >= 0 && startPos < pDataBlockInfo->rows);

  int32_t num = -1;
  int32_t step = GET_FORWARD_DIRECTION_FACTOR(order);

  if (order == TSDB_ORDER_ASC) {
    if (ekey < pDataBlockInfo->window.ekey && pPrimaryColumn) {
      num = getForwardStepsInBlock(pDataBlockInfo->rows, searchFn, ekey, startPos, order, pPrimaryColumn);
      if (item != NULL) {
        item->lastKey = pPrimaryColumn[startPos + (num - 1)] + step;
      }
    } else {
      num = pDataBlockInfo->rows - startPos;
      if (item != NULL) {
        item->lastKey = pDataBlockInfo->window.ekey + step;
      }
    }
  } else {  // desc
    if (ekey > pDataBlockInfo->window.skey && pPrimaryColumn) {
      num = getForwardStepsInBlock(pDataBlockInfo->rows, searchFn, ekey, startPos, order, pPrimaryColumn);
      if (item != NULL) {
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        item->lastKey = pPrimaryColumn[startPos + (num - 1)] + step;
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      }
    } else {
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      num = pDataBlockInfo->rows - startPos;
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      if (item != NULL) {
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        item->lastKey = pDataBlockInfo->window.ekey + step;
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      }
    }
  }

  assert(num >= 0);
  return num;
}

static void getNextTimeWindow(SInterval* pInterval, int32_t precision, int32_t order, STimeWindow* tw) {
  int32_t factor = GET_FORWARD_DIRECTION_FACTOR(order);
  if (pInterval->intervalUnit != 'n' && pInterval->intervalUnit != 'y') {
    tw->skey += pInterval->sliding * factor;
    tw->ekey = tw->skey + pInterval->interval - 1;
    return;
  }

  int64_t key = tw->skey, interval = pInterval->interval;
  // convert key to second
  key = convertTimePrecision(key, precision, TSDB_TIME_PRECISION_MILLI) / 1000;

  if (pInterval->intervalUnit == 'y') {
    interval *= 12;
  }

  struct tm tm;
  time_t    t = (time_t)key;
  taosLocalTime(&t, &tm);

  int mon = (int)(tm.tm_year * 12 + tm.tm_mon + interval * factor);
  tm.tm_year = mon / 12;
  tm.tm_mon = mon % 12;
  tw->skey = convertTimePrecision((int64_t)taosMktime(&tm) * 1000L, TSDB_TIME_PRECISION_MILLI, precision);

  mon = (int)(mon + interval);
  tm.tm_year = mon / 12;
  tm.tm_mon = mon % 12;
  tw->ekey = convertTimePrecision((int64_t)taosMktime(&tm) * 1000L, TSDB_TIME_PRECISION_MILLI, precision);

  tw->ekey -= 1;
}

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void doTimeWindowInterpolation(SIntervalAggOperatorInfo *pInfo, int32_t numOfExprs, SArray* pDataBlock, TSKEY prevTs,
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                               int32_t prevRowIndex, TSKEY curTs, int32_t curRowIndex, TSKEY windowKey, int32_t type) {
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  SqlFunctionCtx* pCtx = pInfo->binfo.pCtx;
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  int32_t index = 1;
  for (int32_t k = 0; k < numOfExprs; ++k) {
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    // todo use flag instead of function name
    if (strcmp(pCtx[k].pExpr->pExpr->_function.functionName, "twa") != 0) {
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      pCtx[k].start.key = INT64_MIN;
      continue;
    }

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//    if (functionId != FUNCTION_TWA && functionId != FUNCTION_INTERP) {
//      pCtx[k].start.key = INT64_MIN;
//      continue;
//    }
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    SFunctParam* pParam = &pCtx[k].param[0];
    SColumnInfoData* pColInfo = taosArrayGet(pDataBlock, pParam->pCol->slotId);

    ASSERT(pColInfo->info.colId == pParam->pCol->colId && curTs != windowKey);
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    double v1 = 0, v2 = 0, v = 0;
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    if (prevRowIndex == -1) {
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      SGroupKeys* p = taosArrayGet(pInfo->pPrevValues, index);
      GET_TYPED_DATA(v1, double, pColInfo->info.type, p->pData);
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    } else {
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      GET_TYPED_DATA(v1, double, pColInfo->info.type, colDataGetData(pColInfo, prevRowIndex));
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    }

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    GET_TYPED_DATA(v2, double, pColInfo->info.type, colDataGetData(pColInfo, curRowIndex));
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#if 0
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    if (functionId == FUNCTION_INTERP) {
      if (type == RESULT_ROW_START_INTERP) {
        pCtx[k].start.key = prevTs;
        pCtx[k].start.val = v1;

        pCtx[k].end.key = curTs;
        pCtx[k].end.val = v2;

        if (pColInfo->info.type == TSDB_DATA_TYPE_BINARY || pColInfo->info.type == TSDB_DATA_TYPE_NCHAR) {
          if (prevRowIndex == -1) {
            //            pCtx[k].start.ptr = (char*)pRuntimeEnv->prevRow[index];
          } else {
            pCtx[k].start.ptr = (char*)pColInfo->pData + prevRowIndex * pColInfo->info.bytes;
          }

          pCtx[k].end.ptr = (char*)pColInfo->pData + curRowIndex * pColInfo->info.bytes;
        }
      }
    } else if (functionId == FUNCTION_TWA) {
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#endif

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      SPoint point1 = (SPoint){.key = prevTs, .val = &v1};
      SPoint point2 = (SPoint){.key = curTs, .val = &v2};
      SPoint point = (SPoint){.key = windowKey, .val = &v};

      taosGetLinearInterpolationVal(&point, TSDB_DATA_TYPE_DOUBLE, &point1, &point2, TSDB_DATA_TYPE_DOUBLE);

      if (type == RESULT_ROW_START_INTERP) {
        pCtx[k].start.key = point.key;
        pCtx[k].start.val = v;
      } else {
        pCtx[k].end.key = point.key;
        pCtx[k].end.val = v;
      }
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      index += 1;
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    }
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#if 0
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  }
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#endif

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}

static void setNotInterpoWindowKey(SqlFunctionCtx* pCtx, int32_t numOfOutput, int32_t type) {
  if (type == RESULT_ROW_START_INTERP) {
    for (int32_t k = 0; k < numOfOutput; ++k) {
      pCtx[k].start.key = INT64_MIN;
    }
  } else {
    for (int32_t k = 0; k < numOfOutput; ++k) {
      pCtx[k].end.key = INT64_MIN;
    }
  }
}

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static bool setTimeWindowInterpolationStartTs(SIntervalAggOperatorInfo *pInfo, SqlFunctionCtx* pCtx, int32_t numOfExprs, int32_t pos,
                                              SSDataBlock* pBlock, const TSKEY* tsCols, STimeWindow* win) {
  bool  ascQuery = (pInfo->order == TSDB_ORDER_ASC);

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  TSKEY curTs = tsCols[pos];
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  SGroupKeys* pTsKey = taosArrayGet(pInfo->pPrevValues, 0);
  TSKEY lastTs = *(int64_t*) pTsKey->pData;
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  // lastTs == INT64_MIN and pos == 0 means this is the first time window, interpolation is not needed.
  // start exactly from this point, no need to do interpolation
  TSKEY key = ascQuery ? win->skey : win->ekey;
  if (key == curTs) {
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    setNotInterpoWindowKey(pCtx, numOfExprs, RESULT_ROW_START_INTERP);
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    return true;
  }

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  // it is the first time window, no need to do interpolation
  if (pTsKey->isNull && pos == 0) {
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    setNotInterpoWindowKey(pCtx, numOfExprs, RESULT_ROW_START_INTERP);
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  } else {
    TSKEY prevTs = ((pos == 0) ? lastTs : tsCols[pos - 1]);
    doTimeWindowInterpolation(pInfo, numOfExprs, pBlock->pDataBlock, prevTs, pos - 1, curTs, pos, key,
                              RESULT_ROW_START_INTERP);
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  }

  return true;
}

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static bool setTimeWindowInterpolationEndTs(SIntervalAggOperatorInfo *pInfo, SqlFunctionCtx* pCtx, int32_t numOfExprs, int32_t endRowIndex,
                                            SArray* pDataBlock, const TSKEY* tsCols, TSKEY blockEkey, STimeWindow* win) {
  int32_t order = pInfo->order;
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  TSKEY actualEndKey = tsCols[endRowIndex];
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  TSKEY key = (order == TSDB_ORDER_ASC) ? win->ekey : win->skey;
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  // not ended in current data block, do not invoke interpolation
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  if ((key > blockEkey && (order == TSDB_ORDER_ASC)) || (key < blockEkey && (order == TSDB_ORDER_DESC))) {
    setNotInterpoWindowKey(pCtx, numOfExprs, RESULT_ROW_END_INTERP);
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    return false;
  }

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  // there is actual end point of current time window, no interpolation needs
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  if (key == actualEndKey) {
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    setNotInterpoWindowKey(pCtx, numOfExprs, RESULT_ROW_END_INTERP);
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    return true;
  }

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  int32_t nextRowIndex = endRowIndex + 1;
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  assert(nextRowIndex >= 0);

  TSKEY nextKey = tsCols[nextRowIndex];
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  doTimeWindowInterpolation(pInfo, numOfExprs, pDataBlock, actualEndKey, endRowIndex, nextKey,
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                            nextRowIndex, key, RESULT_ROW_END_INTERP);
  return true;
}

static int32_t getNextQualifiedWindow(SInterval* pInterval, STimeWindow* pNext, SDataBlockInfo* pDataBlockInfo,
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                                      TSKEY* primaryKeys, int32_t prevPosition, int32_t order) {
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  bool    ascQuery = (order == TSDB_ORDER_ASC);

  int32_t precision = pInterval->precision;
  getNextTimeWindow(pInterval, precision, order, pNext);

  // next time window is not in current block
  if ((pNext->skey > pDataBlockInfo->window.ekey && order == TSDB_ORDER_ASC) ||
      (pNext->ekey < pDataBlockInfo->window.skey && order == TSDB_ORDER_DESC)) {
    return -1;
  }

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  TSKEY   skey = ascQuery ? pNext->skey : pNext->ekey;
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  int32_t startPos = 0;

  // tumbling time window query, a special case of sliding time window query
  if (pInterval->sliding == pInterval->interval && prevPosition != -1) {
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    startPos = prevPosition + 1;
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  } else {
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    if ((skey <= pDataBlockInfo->window.skey && ascQuery) || (skey >= pDataBlockInfo->window.ekey && !ascQuery)) {
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      startPos = 0;
    } else {
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      startPos = binarySearchForKey((char*)primaryKeys, pDataBlockInfo->rows, skey, order);
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    }
  }

  /* interp query with fill should not skip time window */
  //  if (pQueryAttr->pointInterpQuery && pQueryAttr->fillType != TSDB_FILL_NONE) {
  //    return startPos;
  //  }

  /*
   * This time window does not cover any data, try next time window,
   * this case may happen when the time window is too small
   */
  if (primaryKeys == NULL) {
    if (ascQuery) {
      assert(pDataBlockInfo->window.skey <= pNext->ekey);
    } else {
      assert(pDataBlockInfo->window.ekey >= pNext->skey);
    }
  } else {
    if (ascQuery && primaryKeys[startPos] > pNext->ekey) {
      TSKEY next = primaryKeys[startPos];
      if (pInterval->intervalUnit == 'n' || pInterval->intervalUnit == 'y') {
        pNext->skey = taosTimeTruncate(next, pInterval, precision);
        pNext->ekey = taosTimeAdd(pNext->skey, pInterval->interval, pInterval->intervalUnit, precision) - 1;
      } else {
        pNext->ekey += ((next - pNext->ekey + pInterval->sliding - 1) / pInterval->sliding) * pInterval->sliding;
        pNext->skey = pNext->ekey - pInterval->interval + 1;
      }
    } else if ((!ascQuery) && primaryKeys[startPos] < pNext->skey) {
      TSKEY next = primaryKeys[startPos];
      if (pInterval->intervalUnit == 'n' || pInterval->intervalUnit == 'y') {
        pNext->skey = taosTimeTruncate(next, pInterval, precision);
        pNext->ekey = taosTimeAdd(pNext->skey, pInterval->interval, pInterval->intervalUnit, precision) - 1;
      } else {
        pNext->skey -= ((pNext->skey - next + pInterval->sliding - 1) / pInterval->sliding) * pInterval->sliding;
        pNext->ekey = pNext->skey + pInterval->interval - 1;
      }
    }
  }

  return startPos;
}

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static bool isResultRowInterpolated(SResultRow* pResult, SResultTsInterpType type) {
  ASSERT(pResult != NULL && (type == RESULT_ROW_START_INTERP || type == RESULT_ROW_END_INTERP));
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  if (type == RESULT_ROW_START_INTERP) {
    return pResult->startInterp == true;
  } else {
    return pResult->endInterp == true;
  }
}

static void setResultRowInterpo(SResultRow* pResult, SResultTsInterpType type) {
  assert(pResult != NULL && (type == RESULT_ROW_START_INTERP || type == RESULT_ROW_END_INTERP));
  if (type == RESULT_ROW_START_INTERP) {
    pResult->startInterp = true;
  } else {
    pResult->endInterp = true;
  }
}

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static void doWindowBorderInterpolation(SIntervalAggOperatorInfo *pInfo, SSDataBlock* pBlock, int32_t numOfExprs, SqlFunctionCtx* pCtx,
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                                        SResultRow* pResult, STimeWindow* win, int32_t startPos, int32_t forwardRows) {
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  if (!pInfo->timeWindowInterpo) {
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    return;
  }

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  ASSERT(pBlock != NULL);
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  if (pBlock->pDataBlock == NULL) {
    //    tscError("pBlock->pDataBlock == NULL");
    return;
  }

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  SColumnInfoData* pColInfo = taosArrayGet(pBlock->pDataBlock, pInfo->primaryTsIndex);
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  TSKEY* tsCols = (TSKEY*)(pColInfo->pData);
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  bool   done = isResultRowInterpolated(pResult, RESULT_ROW_START_INTERP);
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  if (!done) {  // it is not interpolated, now start to generated the interpolated value
562
    bool interp = setTimeWindowInterpolationStartTs(pInfo, pCtx, numOfExprs, startPos, pBlock, tsCols, win);
563 564 565 566
    if (interp) {
      setResultRowInterpo(pResult, RESULT_ROW_START_INTERP);
    }
  } else {
567
    setNotInterpoWindowKey(pCtx, numOfExprs, RESULT_ROW_START_INTERP);
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  }

  // point interpolation does not require the end key time window interpolation.
  //  if (pointInterpQuery) {
  //    return;
  //  }

  // interpolation query does not generate the time window end interpolation
576
  done = isResultRowInterpolated(pResult, RESULT_ROW_END_INTERP);
577
  if (!done) {
578
    int32_t endRowIndex = startPos + forwardRows - 1;
579

580
    TSKEY endKey = (pInfo->order == TSDB_ORDER_ASC) ? pBlock->info.window.ekey : pBlock->info.window.skey;
581
    bool  interp =
582
        setTimeWindowInterpolationEndTs(pInfo, pCtx, numOfExprs, endRowIndex, pBlock->pDataBlock, tsCols, endKey, win);
583 584 585 586
    if (interp) {
      setResultRowInterpo(pResult, RESULT_ROW_END_INTERP);
    }
  } else {
587
    setNotInterpoWindowKey(pCtx, numOfExprs, RESULT_ROW_END_INTERP);
588 589 590
  }
}

591 592
static void saveDataBlockLastRow(SArray* pPrevKeys, const SSDataBlock* pBlock, SArray* pCols) {
  if (pBlock->pDataBlock == NULL) {
593 594 595
    return;
  }

596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617
  size_t num = taosArrayGetSize(pPrevKeys);
  for (int32_t k = 0; k < num; ++k) {
    SColumn* pc = taosArrayGet(pCols, k);

    SColumnInfoData* pColInfo = taosArrayGet(pBlock->pDataBlock, pc->slotId);

    SGroupKeys* pkey = taosArrayGet(pPrevKeys, k);
    for(int32_t i = pBlock->info.rows - 1; i >= 0; --i) {
      if (colDataIsNull_s(pColInfo, i)) {
        continue;
      }

      char* val = colDataGetData(pColInfo, i);
      if (IS_VAR_DATA_TYPE(pkey->type)) {
        memcpy(pkey->pData, val, varDataTLen(val));
        ASSERT(varDataTLen(val) <= pkey->bytes);
      } else {
        memcpy(pkey->pData, val, pkey->bytes);
      }

      break;
    }
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  }
}

621 622 623 624
static void doInterpUnclosedTimeWindow(SOperatorInfo* pOperatorInfo, int32_t numOfExprs, SResultRowInfo* pResultRowInfo,
                                       SSDataBlock* pBlock, int32_t scanFlag, int64_t* tsCols, SResultRowPosition* p) {
  SExecTaskInfo* pTaskInfo = pOperatorInfo->pTaskInfo;

625
  SIntervalAggOperatorInfo* pInfo = (SIntervalAggOperatorInfo*)pOperatorInfo->info;
626

627 628 629
  int32_t  startPos = 0;
  int32_t  numOfOutput = pOperatorInfo->numOfExprs;
  uint64_t groupId = pBlock->info.groupId;
630

631
  SResultRow* pResult = NULL;
632

633 634
  while (1) {
    SListNode* pn = tdListGetHead(pResultRowInfo->openWindow);
635

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    SResultRowPosition* p1 = (SResultRowPosition*)pn->data;
    if (p->pageId == p1->pageId && p->offset == p1->offset) {
      break;
    }
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641 642
    SResultRow* pr = getResultRowByPos(pInfo->aggSup.pResultBuf, p1);
    ASSERT(pr->offset == p1->offset && pr->pageId == p1->pageId);
643

644 645 646 647 648
    if (pr->closed) {
      ASSERT(isResultRowInterpolated(pr, RESULT_ROW_START_INTERP) && isResultRowInterpolated(pr, RESULT_ROW_END_INTERP));
      tdListPopHead(pResultRowInfo->openWindow);
      continue;
    }
649

650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674
    STimeWindow w = pr->win;
    int32_t ret = setTimeWindowOutputBuf(pResultRowInfo, &w, (scanFlag == MAIN_SCAN), &pResult, groupId, pInfo->binfo.pCtx,
                                 numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
    if (ret != TSDB_CODE_SUCCESS) {
      longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
    }

    ASSERT(!isResultRowInterpolated(pResult, RESULT_ROW_END_INTERP));

    SGroupKeys *pTsKey = taosArrayGet(pInfo->pPrevValues, 0);
    int64_t prevTs = *(int64_t*) pTsKey->pData;
    doTimeWindowInterpolation(pInfo, numOfOutput, pBlock->pDataBlock, prevTs, -1, tsCols[startPos], startPos,
                              w.ekey, RESULT_ROW_END_INTERP);

    setResultRowInterpo(pResult, RESULT_ROW_END_INTERP);
    setNotInterpoWindowKey(pInfo->binfo.pCtx, numOfExprs, RESULT_ROW_START_INTERP);

    doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &w, &pInfo->twAggSup.timeWindowData, startPos, 0, tsCols,
                     pBlock->info.rows, numOfExprs, pInfo->order);

    if (isResultRowInterpolated(pResult, RESULT_ROW_END_INTERP)) {
      closeResultRow(pr);
      tdListPopHead(pResultRowInfo->openWindow);
    } else { // the remains are can not be closed yet.
      break;
675
    }
676
  }
677
}
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typedef int64_t (*__get_value_fn_t)(void* data, int32_t index);
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int32_t binarySearch(void* keyList, int num, TSKEY key, int order,
    __get_value_fn_t getValuefn) {
  int    firstPos = 0, lastPos = num - 1, midPos = -1;
  int    numOfRows = 0;

  if (num <= 0) return -1;
  if (order == TSDB_ORDER_DESC) {
    // find the first position which is smaller or equal than the key
    while (1) {
      if (key >= getValuefn(keyList, lastPos)) return lastPos;
      if (key == getValuefn(keyList, firstPos)) return firstPos;
      if (key < getValuefn(keyList, firstPos)) return firstPos - 1;

      numOfRows = lastPos - firstPos + 1;
      midPos = (numOfRows >> 1) + firstPos;

      if (key < getValuefn(keyList, midPos)) {
        lastPos = midPos - 1;
      } else if (key > getValuefn(keyList, midPos)) {
        firstPos = midPos + 1;
      } else {
        break;
      }
    }

  } else {
    // find the first position which is bigger or equal than the key
    while (1) {
      if (key <= getValuefn(keyList, firstPos)) return firstPos;
      if (key == getValuefn(keyList, lastPos)) return lastPos;

      if (key > getValuefn(keyList, lastPos)) {
        lastPos = lastPos + 1;
        if (lastPos >= num)
          return -1;
        else
          return lastPos;
      }

      numOfRows = lastPos - firstPos + 1;
      midPos = (numOfRows >> 1) + firstPos;

      if (key < getValuefn(keyList, midPos)) {
        lastPos = midPos - 1;
      } else if (key > getValuefn(keyList, midPos)) {
        firstPos = midPos + 1;
      } else {
        break;
      }
    }
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  }

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  return midPos;
}

int64_t getReskey(void* data, int32_t index) {
  SArray* res = (SArray*) data;
  SResKeyPos* pos = taosArrayGetP(res, index);
  return *(int64_t*)pos->key;
}

static int32_t saveResult(SResultRow* result, uint64_t groupId, SArray* pUpdated) {
  int32_t size = taosArrayGetSize(pUpdated);
  int32_t index = binarySearch(pUpdated, size, result->win.skey, TSDB_ORDER_DESC, getReskey);
  if (index == -1) {
    index = 0;
  } else {
    TSKEY resTs = getReskey(pUpdated, index);
    if (resTs < result->win.skey) {
      index++;
    } else {
      return TSDB_CODE_SUCCESS;
    }
  }
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  SResKeyPos* newPos = taosMemoryMalloc(sizeof(SResKeyPos) + sizeof(uint64_t));
  if (newPos == NULL) {
    return TSDB_CODE_OUT_OF_MEMORY;
  }
  newPos->groupId = groupId;
  newPos->pos = (SResultRowPosition){.pageId = result->pageId, .offset = result->offset};
  *(int64_t*)newPos->key = result->win.skey;
  if (taosArrayInsert(pUpdated, index, &newPos) == NULL ){
    return TSDB_CODE_OUT_OF_MEMORY;
  }
  return TSDB_CODE_SUCCESS;
}

static void hashIntervalAgg(SOperatorInfo* pOperatorInfo, SResultRowInfo* pResultRowInfo, SSDataBlock* pBlock,
770
                            int32_t scanFlag, SArray* pUpdated) {
771
  SIntervalAggOperatorInfo* pInfo = (SIntervalAggOperatorInfo*)pOperatorInfo->info;
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773 774 775 776 777 778 779
  SExecTaskInfo* pTaskInfo = pOperatorInfo->pTaskInfo;

  int32_t  startPos     = 0;
  int32_t  numOfOutput  = pOperatorInfo->numOfExprs;
  int64_t *tsCols       = extractTsCol(pBlock, pInfo);
  uint64_t tableGroupId = pBlock->info.groupId;
  bool     ascScan      = (pInfo->order == TSDB_ORDER_ASC);
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  TSKEY    ts           = getStartTsKey(&pBlock->info.window, tsCols);
781
  SResultRow* pResult   = NULL;
782 783 784 785

  STimeWindow win = getActiveTimeWindow(pInfo->aggSup.pResultBuf, pResultRowInfo, ts, &pInfo->interval,
                                        pInfo->interval.precision, &pInfo->win);

786
  int32_t ret = setTimeWindowOutputBuf(pResultRowInfo, &win, (scanFlag == MAIN_SCAN), &pResult, tableGroupId, pInfo->binfo.pCtx,
787 788 789 790 791
                                       numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
  if (ret != TSDB_CODE_SUCCESS || pResult == NULL) {
    longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
  }

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  if (pInfo->execModel == OPTR_EXEC_MODEL_STREAM) {
    if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_AT_ONCE ||
        pInfo->twAggSup.calTrigger == STREAM_TRIGGER_AT_ONCE_SMA) {
      saveResult(pResult, tableGroupId, pUpdated);
    }
    if (pInfo->twAggSup.winMap) {
      taosHashRemove(pInfo->twAggSup.winMap, &win.skey, sizeof(TSKEY));
    }
800 801
  }

802
  TSKEY   ekey = ascScan? win.ekey:win.skey;
803 804
  int32_t forwardRows = getNumOfRowsInTimeWindow(&pBlock->info, tsCols, startPos, ekey, binarySearchForKey, NULL, pInfo->order);
  ASSERT(forwardRows > 0);
805 806

  // prev time window not interpolation yet.
807
  if (pInfo->timeWindowInterpo) {
808 809
    SResultRowPosition pos = addToOpenWindowList(pResultRowInfo, pResult);
    doInterpUnclosedTimeWindow(pOperatorInfo, numOfOutput, pResultRowInfo, pBlock, scanFlag, tsCols, &pos);
810 811

    // restore current time window
812
    ret = setTimeWindowOutputBuf(pResultRowInfo, &win, (scanFlag == MAIN_SCAN), &pResult, tableGroupId, pInfo->binfo.pCtx,
813
                                 numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
814 815 816 817
    if (ret != TSDB_CODE_SUCCESS) {
      longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
    }

818
    // window start key interpolation
819
    doWindowBorderInterpolation(pInfo, pBlock, numOfOutput, pInfo->binfo.pCtx, pResult, &win, startPos, forwardRows);
820
  }
821 822

  updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &win, true);
823 824 825 826
  doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &win, &pInfo->twAggSup.timeWindowData, startPos, forwardRows, tsCols,
                   pBlock->info.rows, numOfOutput, pInfo->order);

  doCloseWindow(pResultRowInfo, pInfo, pResult);
827 828 829

  STimeWindow nextWin = win;
  while (1) {
830
    int32_t prevEndPos = forwardRows - 1 + startPos;
831
    startPos = getNextQualifiedWindow(&pInfo->interval, &nextWin, &pBlock->info, tsCols, prevEndPos, pInfo->order);
832 833 834 835 836 837
    if (startPos < 0) {
      break;
    }

    // null data, failed to allocate more memory buffer
    int32_t code =
838
        setTimeWindowOutputBuf(pResultRowInfo, &nextWin, (scanFlag == MAIN_SCAN), &pResult, tableGroupId, pInfo->binfo.pCtx,
839 840 841 842 843
                               numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
    if (code != TSDB_CODE_SUCCESS || pResult == NULL) {
      longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
    }

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    if (pInfo->execModel == OPTR_EXEC_MODEL_STREAM) {
      if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_AT_ONCE ||
          pInfo->twAggSup.calTrigger == STREAM_TRIGGER_AT_ONCE_SMA) {
        saveResult(pResult, tableGroupId, pUpdated);
      }
      if (pInfo->twAggSup.winMap) {
        taosHashRemove(pInfo->twAggSup.winMap, &win.skey, sizeof(TSKEY));
      }
853 854
    }

855
    ekey = ascScan? nextWin.ekey:nextWin.skey;
856
    forwardRows =
857
        getNumOfRowsInTimeWindow(&pBlock->info, tsCols, startPos, ekey, binarySearchForKey, NULL, pInfo->order);
858 859

    // window start(end) key interpolation
860
    doWindowBorderInterpolation(pInfo, pBlock, numOfOutput, pInfo->binfo.pCtx, pResult, &nextWin, startPos, forwardRows);
861 862

    updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &nextWin, true);
863 864 865
    doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &nextWin, &pInfo->twAggSup.timeWindowData, startPos, forwardRows, tsCols,
                     pBlock->info.rows, numOfOutput, pInfo->order);
    doCloseWindow(pResultRowInfo, pInfo, pResult);
866 867 868
  }

  if (pInfo->timeWindowInterpo) {
869
    saveDataBlockLastRow(pInfo->pPrevValues, pBlock, pInfo->pInterpCols);
870
  }
871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908
}

void doCloseWindow(SResultRowInfo* pResultRowInfo, const SIntervalAggOperatorInfo* pInfo, SResultRow* pResult) {
  // current result is done in computing final results.
  if (pInfo->timeWindowInterpo && isResultRowInterpolated(pResult, RESULT_ROW_END_INTERP)) {
    closeResultRow(pResult);
    tdListPopHead(pResultRowInfo->openWindow);
  }
}

SResultRowPosition addToOpenWindowList(SResultRowInfo* pResultRowInfo, const SResultRow* pResult) {
  SResultRowPosition pos = (SResultRowPosition){.pageId = pResult->pageId, .offset = pResult->offset};
  SListNode* pn = tdListGetTail(pResultRowInfo->openWindow);
  if (pn == NULL) {
    tdListAppend(pResultRowInfo->openWindow, &pos);
    return pos;
  }

  SResultRowPosition* px = (SResultRowPosition*)pn->data;
  if (px->pageId != pos.pageId || px->offset != pos.offset) {
    tdListAppend(pResultRowInfo->openWindow, &pos);
  }

  return pos;
}

int64_t* extractTsCol(SSDataBlock* pBlock, const SIntervalAggOperatorInfo* pInfo) {
  TSKEY* tsCols = NULL;
  if (pBlock->pDataBlock != NULL) {
    SColumnInfoData* pColDataInfo = taosArrayGet(pBlock->pDataBlock, pInfo->primaryTsIndex);
    tsCols = (int64_t*)pColDataInfo->pData;

    if (tsCols != NULL) {
      blockDataUpdateTsWindow(pBlock, pInfo->primaryTsIndex);
    }
  }

  return tsCols;
909 910 911 912 913 914 915
}

static int32_t doOpenIntervalAgg(SOperatorInfo* pOperator) {
  if (OPTR_IS_OPENED(pOperator)) {
    return TSDB_CODE_SUCCESS;
  }

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  SExecTaskInfo*            pTaskInfo = pOperator->pTaskInfo;
917
  SIntervalAggOperatorInfo* pInfo = pOperator->info;
918

919 920
  int32_t scanFlag = MAIN_SCAN;

921
  int64_t st = taosGetTimestampUs();
922 923 924
  SOperatorInfo* downstream = pOperator->pDownstream[0];

  while (1) {
925
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
926 927 928 929
    if (pBlock == NULL) {
      break;
    }

930 931
    getTableScanInfo(pOperator, &pInfo->order, &scanFlag);

932
    // the pDataBlock are always the same one, no need to call this again
933
    setInputDataBlock(pOperator, pInfo->binfo.pCtx, pBlock, pInfo->order, scanFlag, true);
934 935 936
    STableQueryInfo* pTableQueryInfo = pInfo->pCurrent;

    setIntervalQueryRange(pTableQueryInfo, pBlock->info.window.skey, &pTaskInfo->window);
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    hashIntervalAgg(pOperator, &pInfo->binfo.resultRowInfo, pBlock, scanFlag, NULL);
938 939

#if 0  // test for encode/decode result info
940
    if(pOperator->fpSet.encodeResultRow){
941 942 943
      char *result = NULL;
      int32_t length = 0;
      SAggSupporter   *pSup = &pInfo->aggSup;
944
      pOperator->fpSet.encodeResultRow(pOperator, &result, &length);
945 946
      taosHashClear(pSup->pResultRowHashTable);
      pInfo->binfo.resultRowInfo.size = 0;
947
      pOperator->fpSet.decodeResultRow(pOperator, result);
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      if(result){
        taosMemoryFree(result);
      }
    }
#endif
  }

  closeAllResultRows(&pInfo->binfo.resultRowInfo);
956
  initGroupedResultInfo(&pInfo->groupResInfo, pInfo->aggSup.pResultRowHashTable, pInfo->order);
957
  OPTR_SET_OPENED(pOperator);
958 959

  pOperator->cost.openCost = (taosGetTimestampUs() - st) / 1000.0;
960 961 962
  return TSDB_CODE_SUCCESS;
}

963 964 965 966 967 968 969 970 971 972 973 974
static bool compareVal(const char* v, const SStateKeys* pKey) {
  if (IS_VAR_DATA_TYPE(pKey->type)) {
    if (varDataLen(v) != varDataLen(pKey->pData)) {
      return false;
    } else {
      return strncmp(varDataVal(v), varDataVal(pKey->pData), varDataLen(v)) == 0;
    }
  } else {
    return memcmp(pKey->pData, v, pKey->bytes) == 0;
  }
}

975
static void doStateWindowAggImpl(SOperatorInfo* pOperator, SStateWindowOperatorInfo* pInfo, SSDataBlock* pBlock) {
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  SExecTaskInfo* pTaskInfo = pOperator->pTaskInfo;
977

978
  SColumnInfoData* pStateColInfoData = taosArrayGet(pBlock->pDataBlock, pInfo->stateCol.slotId);
979 980 981
  int64_t          gid = pBlock->info.groupId;

  bool    masterScan = true;
982
  int32_t numOfOutput = pOperator->numOfExprs;
983 984
  int16_t bytes = pStateColInfoData->info.bytes;

985
  SColumnInfoData* pColInfoData = taosArrayGet(pBlock->pDataBlock, pInfo->tsSlotId);
986 987 988 989 990
  TSKEY*           tsList = (TSKEY*)pColInfoData->pData;

  SWindowRowsSup* pRowSup = &pInfo->winSup;
  pRowSup->numOfRows = 0;

991
  struct SColumnDataAgg* pAgg = NULL;
992
  for (int32_t j = 0; j < pBlock->info.rows; ++j) {
993 994
    pAgg = (pBlock->pBlockAgg != NULL)? pBlock->pBlockAgg[pInfo->stateCol.slotId]: NULL;
    if (colDataIsNull(pStateColInfoData, pBlock->info.rows, j, pAgg)) {
995 996 997 998 999 1000
      continue;
    }

    char* val = colDataGetData(pStateColInfoData, j);

    if (!pInfo->hasKey) {
1001 1002 1003 1004 1005 1006 1007
      // todo extract method
      if (IS_VAR_DATA_TYPE(pInfo->stateKey.type)) {
        varDataCopy(pInfo->stateKey.pData, val);
      } else {
        memcpy(pInfo->stateKey.pData, val, bytes);
      }

1008 1009 1010 1011
      pInfo->hasKey = true;

      doKeepNewWindowStartInfo(pRowSup, tsList, j);
      doKeepTuple(pRowSup, tsList[j]);
1012
    } else if (compareVal(val, &pInfo->stateKey)) {
1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031
      doKeepTuple(pRowSup, tsList[j]);
      if (j == 0 && pRowSup->startRowIndex != 0) {
        pRowSup->startRowIndex = 0;
      }
    } else {  // a new state window started
      SResultRow* pResult = NULL;

      // keep the time window for the closed time window.
      STimeWindow window = pRowSup->win;

      pRowSup->win.ekey = pRowSup->win.skey;
      int32_t ret =
          setTimeWindowOutputBuf(&pInfo->binfo.resultRowInfo, &window, masterScan, &pResult, gid, pInfo->binfo.pCtx,
                                 numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
      if (ret != TSDB_CODE_SUCCESS) {  // null data, too many state code
        longjmp(pTaskInfo->env, TSDB_CODE_QRY_APP_ERROR);
      }

      updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &window, false);
1032
      doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &window, &pInfo->twAggSup.timeWindowData, pRowSup->startRowIndex,
1033 1034 1035 1036 1037
                       pRowSup->numOfRows, NULL, pBlock->info.rows, numOfOutput, TSDB_ORDER_ASC);

      // here we start a new session window
      doKeepNewWindowStartInfo(pRowSup, tsList, j);
      doKeepTuple(pRowSup, tsList[j]);
1038 1039 1040 1041 1042 1043 1044

      // todo extract method
      if (IS_VAR_DATA_TYPE(pInfo->stateKey.type)) {
        varDataCopy(pInfo->stateKey.pData, val);
      } else {
        memcpy(pInfo->stateKey.pData, val, bytes);
      }
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    }
  }

  SResultRow* pResult = NULL;
  pRowSup->win.ekey = tsList[pBlock->info.rows - 1];
  int32_t ret =
      setTimeWindowOutputBuf(&pInfo->binfo.resultRowInfo, &pRowSup->win, masterScan, &pResult, gid, pInfo->binfo.pCtx,
                             numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
  if (ret != TSDB_CODE_SUCCESS) {  // null data, too many state code
    longjmp(pTaskInfo->env, TSDB_CODE_QRY_APP_ERROR);
  }

  updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pRowSup->win, false);
1058
  doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &pRowSup->win, &pInfo->twAggSup.timeWindowData, pRowSup->startRowIndex,
1059 1060 1061
                   pRowSup->numOfRows, NULL, pBlock->info.rows, numOfOutput, TSDB_ORDER_ASC);
}

1062
static SSDataBlock* doStateWindowAgg(SOperatorInfo* pOperator) {
1063 1064 1065 1066 1067
  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  SStateWindowOperatorInfo* pInfo = pOperator->info;
1068 1069 1070

  SExecTaskInfo*  pTaskInfo = pOperator->pTaskInfo;
  SOptrBasicInfo* pBInfo = &pInfo->binfo;
1071 1072

  if (pOperator->status == OP_RES_TO_RETURN) {
1073
    doBuildResultDatablock(pOperator, pBInfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1074
    if (pBInfo->pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
1075 1076 1077 1078 1079 1080 1081
      doSetOperatorCompleted(pOperator);
      return NULL;
    }

    return pBInfo->pRes;
  }

1082
  int32_t order = TSDB_ORDER_ASC;
1083
  int64_t st = taosGetTimestampUs();
1084 1085 1086

  SOperatorInfo* downstream = pOperator->pDownstream[0];
  while (1) {
1087
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
1088 1089 1090 1091
    if (pBlock == NULL) {
      break;
    }

1092
    setInputDataBlock(pOperator, pBInfo->pCtx, pBlock, order, MAIN_SCAN, true);
1093 1094
    blockDataUpdateTsWindow(pBlock, pInfo->tsSlotId);

1095 1096 1097
    doStateWindowAggImpl(pOperator, pInfo, pBlock);
  }

1098 1099
  pOperator->cost.openCost = (taosGetTimestampUs() - st)/1000.0;

1100 1101 1102
  pOperator->status = OP_RES_TO_RETURN;
  closeAllResultRows(&pBInfo->resultRowInfo);

1103
  initGroupedResultInfo(&pInfo->groupResInfo, pInfo->aggSup.pResultRowHashTable, TSDB_ORDER_ASC);
1104
  blockDataEnsureCapacity(pBInfo->pRes, pOperator->resultInfo.capacity);
1105
  doBuildResultDatablock(pOperator, pBInfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1106
  if (pBInfo->pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
1107 1108 1109
    doSetOperatorCompleted(pOperator);
  }

1110 1111 1112 1113
  size_t rows = pBInfo->pRes->info.rows;
  pOperator->resultInfo.totalRows += rows;

  return (rows == 0)? NULL : pBInfo->pRes;
1114 1115
}

1116
static SSDataBlock* doBuildIntervalResult(SOperatorInfo* pOperator) {
1117
  SIntervalAggOperatorInfo* pInfo = pOperator->info;
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  SExecTaskInfo*            pTaskInfo = pOperator->pTaskInfo;
1119 1120 1121 1122 1123 1124 1125 1126

  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  SSDataBlock* pBlock = pInfo->binfo.pRes;

  if (pInfo->execModel == OPTR_EXEC_MODEL_STREAM) {
1127
    return pOperator->fpSet.getStreamResFn(pOperator);
1128 1129 1130 1131 1132 1133 1134
  } else {
    pTaskInfo->code = pOperator->fpSet._openFn(pOperator);
    if (pTaskInfo->code != TSDB_CODE_SUCCESS) {
      return NULL;
    }

    blockDataEnsureCapacity(pBlock, pOperator->resultInfo.capacity);
1135
    doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1136

1137
    if (pBlock->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
1138 1139 1140
      doSetOperatorCompleted(pOperator);
    }

1141 1142 1143 1144
    size_t rows = pBlock->info.rows;
    pOperator->resultInfo.totalRows += rows;

    return (rows == 0)? NULL:pBlock;
1145 1146 1147 1148
  }
}

// todo merged with the build group result.
1149
static void finalizeUpdatedResult(int32_t numOfOutput, SDiskbasedBuf* pBuf, SArray* pUpdateList,
1150 1151 1152 1153 1154 1155 1156 1157
                                  int32_t* rowCellInfoOffset) {
  size_t num = taosArrayGetSize(pUpdateList);

  for (int32_t i = 0; i < num; ++i) {
    SResKeyPos* pPos = taosArrayGetP(pUpdateList, i);

    SFilePage*  bufPage = getBufPage(pBuf, pPos->pos.pageId);
    SResultRow* pRow = (SResultRow*)((char*)bufPage + pPos->pos.offset);
1158

1159
    for (int32_t j = 0; j < numOfOutput; ++j) {
1160 1161 1162
      SResultRowEntryInfo* pEntry = getResultCell(pRow, j, rowCellInfoOffset);
      if (pRow->numOfRows < pEntry->numOfRes) {
        pRow->numOfRows = pEntry->numOfRes;
1163 1164 1165 1166 1167 1168
      }
    }

    releaseBufPage(pBuf, bufPage);
  }
}
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1169
static void setInverFunction(SqlFunctionCtx* pCtx, int32_t num, EStreamType type) {
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  for (int i = 0; i < num; i++) {
5
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1171 1172
    if (type == STREAM_INVERT) {
      fmSetInvertFunc(pCtx[i].functionId, &(pCtx[i].fpSet));
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1173
    } else if (type == STREAM_NORMAL) {
5
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      fmSetNormalFunc(pCtx[i].functionId, &(pCtx[i].fpSet));
    }
  }
}
5
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1178

1179
void doClearWindowImpl(SResultRowPosition* p1, SDiskbasedBuf* pResultBuf, SOptrBasicInfo* pBinfo, int32_t numOfOutput) {
5
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1180
  SResultRow* pResult = getResultRowByPos(pResultBuf, p1);
5
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1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194
  SqlFunctionCtx* pCtx = pBinfo->pCtx;
  for (int32_t i = 0; i < numOfOutput; ++i) {
    pCtx[i].resultInfo = getResultCell(pResult, i, pBinfo->rowCellInfoOffset);
    struct SResultRowEntryInfo* pResInfo = pCtx[i].resultInfo;
    if (fmIsWindowPseudoColumnFunc(pCtx[i].functionId)) {
      continue;
    }
    pResInfo->initialized = false;
    if (pCtx[i].functionId != -1) {
      pCtx[i].fpSet.init(&pCtx[i], pResInfo);
    }
  }
}

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1195 1196 1197 1198 1199 1200 1201 1202 1203
void doClearWindow(SAggSupporter* pSup, SOptrBasicInfo* pBinfo, char* pData,
    int16_t bytes, uint64_t groupId, int32_t numOfOutput) {
  SET_RES_WINDOW_KEY(pSup->keyBuf, pData, bytes, groupId);
  SResultRowPosition* p1 =
      (SResultRowPosition*)taosHashGet(pSup->pResultRowHashTable, pSup->keyBuf,
          GET_RES_WINDOW_KEY_LEN(bytes));
  doClearWindowImpl(p1, pSup->pResultBuf, pBinfo, numOfOutput);
}

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1204
static void doClearWindows(SAggSupporter* pSup, SOptrBasicInfo* pBinfo,
5
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1205
    SInterval* pInterval, int32_t tsIndex, int32_t numOfOutput, SSDataBlock* pBlock,
1206
    SArray* pUpWins) {
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1207
  SColumnInfoData* pColDataInfo = taosArrayGet(pBlock->pDataBlock, tsIndex);
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  TSKEY *tsCols = (TSKEY*)pColDataInfo->pData;
  int32_t step = 0;
  for (int32_t i = 0; i < pBlock->info.rows; i += step) {
    SResultRowInfo dumyInfo;
    dumyInfo.cur.pageId = -1;
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1213 1214
    STimeWindow win = getActiveTimeWindow(NULL, &dumyInfo, tsCols[i], pInterval,
                                        pInterval->precision, NULL);
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1215 1216
    step = getNumOfRowsInTimeWindow(&pBlock->info, tsCols, i,
        win.ekey, binarySearchForKey, NULL, TSDB_ORDER_ASC);
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1217
    doClearWindow(pSup, pBinfo, (char*)&win.skey, sizeof(TKEY), pBlock->info.groupId, numOfOutput);
1218 1219 1220
    if (pUpWins) {
      taosArrayPush(pUpWins, &win);
    }
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1221 1222
  }
}
1223

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1224 1225 1226 1227 1228 1229 1230 1231
static int32_t closeIntervalWindow(SHashObj *pHashMap, STimeWindowAggSupp *pSup,
    SInterval* pInterval, SArray* closeWins) {
  void *pIte = NULL;
  size_t keyLen = 0;
  while((pIte = taosHashIterate(pHashMap, pIte)) != NULL) {
    void* key = taosHashGetKey(pIte, &keyLen);
    uint64_t groupId = *(uint64_t*) key;
    ASSERT(keyLen == GET_RES_WINDOW_KEY_LEN(sizeof(TSKEY)));
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    TSKEY ts = *(int64_t*) ((char*)key + sizeof(uint64_t));
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1233 1234 1235 1236 1237
    SResultRowInfo dumyInfo;
    dumyInfo.cur.pageId = -1;
    STimeWindow win = getActiveTimeWindow(NULL, &dumyInfo, ts, pInterval,
        pInterval->precision, NULL);
    if (win.ekey < pSup->maxTs - pSup->waterMark) {
5
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1238 1239 1240 1241 1242
      if (pSup->calTrigger == STREAM_TRIGGER_WINDOW_CLOSE_SMA) {
        if (taosHashGet(pSup->winMap, &win.skey, sizeof(TSKEY))) {
          continue;
        }
      }
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1243 1244
      char keyBuf[GET_RES_WINDOW_KEY_LEN(sizeof(TSKEY))];
      SET_RES_WINDOW_KEY(keyBuf, &ts, sizeof(TSKEY), groupId);
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1245 1246 1247 1248
      if (pSup->calTrigger != STREAM_TRIGGER_AT_ONCE_SMA &&
          pSup->calTrigger != STREAM_TRIGGER_WINDOW_CLOSE_SMA) {
        taosHashRemove(pHashMap, keyBuf, keyLen);
      }
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1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259
      SResKeyPos* pos = taosMemoryMalloc(sizeof(SResKeyPos) + sizeof(uint64_t));
      if (pos == NULL) {
        return TSDB_CODE_OUT_OF_MEMORY;
      }
      pos->groupId = groupId;
      pos->pos = *(SResultRowPosition*) pIte;
      *(int64_t*)pos->key = ts;
      if (!taosArrayPush(closeWins, &pos)) {
        taosMemoryFree(pos);
        return TSDB_CODE_OUT_OF_MEMORY;
      }
5
54liuyao 已提交
1260
      taosHashPut(pSup->winMap, &win.skey, sizeof(TSKEY), NULL, 0);
5
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1261 1262 1263 1264 1265
    }
  }
  return TSDB_CODE_SUCCESS;
}

1266
static SSDataBlock* doStreamIntervalAgg(SOperatorInfo* pOperator) {
1267
  SIntervalAggOperatorInfo* pInfo = pOperator->info;
1268 1269 1270
  SExecTaskInfo* pTaskInfo = pOperator->pTaskInfo;

  pInfo->order = TSDB_ORDER_ASC;
1271 1272 1273 1274 1275 1276

  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  if (pOperator->status == OP_RES_TO_RETURN) {
1277
    doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1278
    if (pInfo->binfo.pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
1279 1280 1281 1282 1283 1284 1285
      pOperator->status = OP_EXEC_DONE;
    }
    return pInfo->binfo.pRes->info.rows == 0 ? NULL : pInfo->binfo.pRes;
  }

  SOperatorInfo* downstream = pOperator->pDownstream[0];

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1286 1287 1288
  SArray* pUpdated = taosArrayInit(4, POINTER_BYTES);
  SArray* pClosed = taosArrayInit(4, POINTER_BYTES);

1289
  while (1) {
1290
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
1291 1292 1293 1294
    if (pBlock == NULL) {
      break;
    }

1295
    // The timewindow that overlaps the timestamps of the input pBlock need to be recalculated and return to the
1296 1297
    // caller. Note that all the time window are not close till now.
    // the pDataBlock are always the same one, no need to call this again
1298
    setInputDataBlock(pOperator, pInfo->binfo.pCtx, pBlock, pInfo->order, MAIN_SCAN, true);
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1299 1300 1301
    if (pInfo->invertible) {
      setInverFunction(pInfo->binfo.pCtx, pOperator->numOfExprs, pBlock->info.type);
    }
1302

5
54liuyao 已提交
1303
    if (pBlock->info.type == STREAM_REPROCESS) {
5
54liuyao 已提交
1304
      doClearWindows(&pInfo->aggSup, &pInfo->binfo, &pInfo->interval, 0,
1305
          pOperator->numOfExprs, pBlock, NULL);
1306
      qDebug("%s clear existed time window results for updates checked", GET_TASKID(pTaskInfo));
5
54liuyao 已提交
1307 1308
      continue;
    }
1309

5
54liuyao 已提交
1310
    pInfo->twAggSup.maxTs = TMAX(pInfo->twAggSup.maxTs, pBlock->info.window.ekey);
H
Haojun Liao 已提交
1311
    hashIntervalAgg(pOperator, &pInfo->binfo.resultRowInfo, pBlock, MAIN_SCAN, pUpdated);
1312 1313
  }

5
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1314 1315 1316 1317
  closeIntervalWindow(pInfo->aggSup.pResultRowHashTable, &pInfo->twAggSup,
      &pInfo->interval, pClosed);
  finalizeUpdatedResult(pOperator->numOfExprs, pInfo->aggSup.pResultBuf, pClosed,
      pInfo->binfo.rowCellInfoOffset);
5
54liuyao 已提交
1318 1319
  if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_WINDOW_CLOSE ||
      pInfo->twAggSup.calTrigger == STREAM_TRIGGER_WINDOW_CLOSE_SMA) {
5
54liuyao 已提交
1320 1321
    taosArrayAddAll(pUpdated, pClosed);
  }
H
Haojun Liao 已提交
1322

5
54liuyao 已提交
1323
  taosArrayDestroy(pClosed);
1324
  finalizeUpdatedResult(pOperator->numOfExprs, pInfo->aggSup.pResultBuf, pUpdated, pInfo->binfo.rowCellInfoOffset);
1325 1326 1327

  initMultiResInfoFromArrayList(&pInfo->groupResInfo, pUpdated);
  blockDataEnsureCapacity(pInfo->binfo.pRes, pOperator->resultInfo.capacity);
1328
  doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341

  pOperator->status = OP_RES_TO_RETURN;

  return pInfo->binfo.pRes->info.rows == 0 ? NULL : pInfo->binfo.pRes;
}

static void destroyStateWindowOperatorInfo(void* param, int32_t numOfOutput) {
  SStateWindowOperatorInfo* pInfo = (SStateWindowOperatorInfo*)param;
  doDestroyBasicInfo(&pInfo->binfo, numOfOutput);
  taosMemoryFreeClear(pInfo->stateKey.pData);
}

void destroyIntervalOperatorInfo(void* param, int32_t numOfOutput) {
1342
  SIntervalAggOperatorInfo* pInfo = (SIntervalAggOperatorInfo*)param;
1343 1344 1345 1346
  doDestroyBasicInfo(&pInfo->binfo, numOfOutput);
  cleanupAggSup(&pInfo->aggSup);
}

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1347 1348 1349 1350
void destroyStreamFinalIntervalOperatorInfo(void* param, int32_t numOfOutput) {
  SStreamFinalIntervalOperatorInfo* pInfo = (SStreamFinalIntervalOperatorInfo *)param;
  doDestroyBasicInfo(&pInfo->binfo, numOfOutput);
  cleanupAggSup(&pInfo->aggSup);
1351 1352 1353 1354 1355 1356 1357 1358 1359
  if (pInfo->pChildren) {
    int32_t size = taosArrayGetSize(pInfo->pChildren);
    for (int32_t i = 0; i < size; i++) {
      SOperatorInfo* pChildOp = taosArrayGetP(pInfo->pChildren, i);
      destroyIntervalOperatorInfo(pChildOp->info, numOfOutput);
      taosMemoryFreeClear(pChildOp->info);
      taosMemoryFreeClear(pChildOp);
    }
  }
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1360 1361
}

1362
static bool allInvertible(SqlFunctionCtx* pFCtx, int32_t numOfCols) {
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54liuyao 已提交
1363 1364 1365 1366 1367 1368 1369 1370
  for (int32_t i = 0; i < numOfCols; i++) {
    if (!fmIsInvertible(pFCtx[i].functionId)) {
      return false;
    }
  }
  return true;
}

1371
static bool timeWindowinterpNeeded(SqlFunctionCtx* pCtx, int32_t numOfCols, SIntervalAggOperatorInfo* pInfo) {
1372 1373
  // the primary timestamp column
  bool needed = false;
1374 1375
  pInfo->pInterpCols = taosArrayInit(4, sizeof(SColumn));
  pInfo->pPrevValues = taosArrayInit(4, sizeof(SGroupKeys));
1376 1377 1378 1379

  { // ts column
    SColumn c = {0};
    c.colId = 1;
1380
    c.slotId = pInfo->primaryTsIndex;
1381 1382
    c.type = TSDB_DATA_TYPE_TIMESTAMP;
    c.bytes = sizeof(int64_t);
1383
    taosArrayPush(pInfo->pInterpCols, &c);
1384 1385 1386 1387

    SGroupKeys key = {0};
    key.bytes  = c.bytes;
    key.type   = c.type;
1388
    key.isNull = true;   // to denote no value is assigned yet
1389
    key.pData  = taosMemoryCalloc(1, c.bytes);
1390
    taosArrayPush(pInfo->pPrevValues, &key);
1391 1392 1393 1394 1395 1396 1397 1398 1399
  }

  for(int32_t i = 0; i < numOfCols; ++i) {
    SExprInfo* pExpr = pCtx[i].pExpr;

    if (strcmp(pExpr->pExpr->_function.functionName, "twa") == 0) {
      SFunctParam* pParam = &pExpr->base.pParam[0];

      SColumn c = *pParam->pCol;
1400
      taosArrayPush(pInfo->pInterpCols, &c);
1401 1402 1403 1404 1405 1406 1407
      needed = true;

      SGroupKeys key = {0};
      key.bytes  = c.bytes;
      key.type   = c.type;
      key.isNull = false;
      key.pData  = taosMemoryCalloc(1, c.bytes);
1408
      taosArrayPush(pInfo->pPrevValues, &key);
1409 1410 1411 1412 1413 1414
    }
  }

  return needed;
}

1415 1416
SOperatorInfo* createIntervalOperatorInfo(SOperatorInfo* downstream, SExprInfo* pExprInfo, int32_t numOfCols,
                                          SSDataBlock* pResBlock, SInterval* pInterval, int32_t primaryTsSlotId,
wmmhello's avatar
wmmhello 已提交
1417
                                          STimeWindowAggSupp* pTwAggSupp, SExecTaskInfo* pTaskInfo) {
1418
  SIntervalAggOperatorInfo* pInfo = taosMemoryCalloc(1, sizeof(SIntervalAggOperatorInfo));
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  SOperatorInfo*            pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
1420 1421 1422 1423
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }

1424 1425 1426
  pInfo->win       = pTaskInfo->window;
  pInfo->order     = TSDB_ORDER_ASC;
  pInfo->interval  = *pInterval;
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  pInfo->execModel = pTaskInfo->execModel;
1428 1429
  pInfo->twAggSup  = *pTwAggSupp;

1430 1431
  pInfo->primaryTsIndex = primaryTsSlotId;

1432 1433
  size_t keyBufSize = sizeof(int64_t) + sizeof(int64_t) + POINTER_BYTES;
  initResultSizeInfo(pOperator, 4096);
1434 1435 1436

  int32_t code =
      initAggInfo(&pInfo->binfo, &pInfo->aggSup, pExprInfo, numOfCols, pResBlock, keyBufSize, pTaskInfo->id.str);
1437

1438
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pInfo->win);
1439

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1440
  pInfo->invertible = allInvertible(pInfo->binfo.pCtx, numOfCols);
5
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1441
  pInfo->invertible = false; // Todo(liuyao): Dependent TSDB API
1442

1443
  pInfo->timeWindowInterpo = timeWindowinterpNeeded(pInfo->binfo.pCtx, numOfCols, pInfo);
1444 1445 1446 1447 1448 1449
  if (pInfo->timeWindowInterpo) {
    pInfo->binfo.resultRowInfo.openWindow = tdListNew(sizeof(SResultRowPosition));
  }

  //  pInfo->pTableQueryInfo = initTableQueryInfo(pTableGroupInfo);
  if (code != TSDB_CODE_SUCCESS /* || pInfo->pTableQueryInfo == NULL*/) {
1450 1451 1452 1453 1454
    goto _error;
  }

  initResultRowInfo(&pInfo->binfo.resultRowInfo, (int32_t)1);

1455
  pOperator->name         = "TimeIntervalAggOperator";
1456
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_INTERVAL;
1457 1458 1459 1460 1461 1462
  pOperator->blocking     = true;
  pOperator->status       = OP_NOT_OPENED;
  pOperator->pExpr        = pExprInfo;
  pOperator->pTaskInfo    = pTaskInfo;
  pOperator->numOfExprs   = numOfCols;
  pOperator->info         = pInfo;
1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473

  pOperator->fpSet = createOperatorFpSet(doOpenIntervalAgg, doBuildIntervalResult, doStreamIntervalAgg, NULL,
                                         destroyIntervalOperatorInfo, aggEncodeResultRow, aggDecodeResultRow, NULL);

  code = appendDownstream(pOperator, &downstream, 1);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  return pOperator;

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_error:
1475 1476 1477 1478 1479 1480 1481
  destroyIntervalOperatorInfo(pInfo, numOfCols);
  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
}

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1482 1483
SOperatorInfo* createStreamFinalIntervalOperatorInfo(SOperatorInfo* downstream, SExprInfo* pExprInfo, int32_t numOfCols,
                                          SSDataBlock* pResBlock, SInterval* pInterval, int32_t primaryTsSlotId,
wmmhello's avatar
wmmhello 已提交
1484
                                          STimeWindowAggSupp* pTwAggSupp, SExecTaskInfo* pTaskInfo) {
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1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503
  SStreamFinalIntervalOperatorInfo* pInfo = taosMemoryCalloc(1, sizeof(SStreamFinalIntervalOperatorInfo));
  SOperatorInfo* pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }
  pInfo->order = TSDB_ORDER_ASC;
  pInfo->interval = *pInterval;
  pInfo->twAggSup = *pTwAggSupp;
  pInfo->primaryTsIndex = primaryTsSlotId;
  size_t keyBufSize = sizeof(int64_t) + sizeof(int64_t) + POINTER_BYTES;
  initResultSizeInfo(pOperator, 4096);
  int32_t code =
      initAggInfo(&pInfo->binfo, &pInfo->aggSup, pExprInfo, numOfCols, pResBlock,
          keyBufSize, pTaskInfo->id.str);
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pTaskInfo->window);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }
  initResultRowInfo(&pInfo->binfo.resultRowInfo, (int32_t)1);
1504 1505 1506 1507 1508
  int32_t numOfChild = 8;// Todo(liuyao) get it from phy plan
  pInfo->pChildren = taosArrayInit(numOfChild, sizeof(SOperatorInfo));
  for (int32_t i = 0; i < numOfChild; i++) {
    SSDataBlock* chRes = createOneDataBlock(pResBlock, false);
    SOperatorInfo* pChildOp = createIntervalOperatorInfo(NULL, pExprInfo, numOfCols,
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        chRes, pInterval, primaryTsSlotId, pTwAggSupp, pTaskInfo);
1510 1511 1512 1513 1514 1515
    if (pChildOp && chRes) {
      taosArrayPush(pInfo->pChildren, &pChildOp);
      continue;
    }
    goto _error;
  }
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  pOperator->name = "StreamFinalIntervalOperator";
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_STREAM_FINAL_INTERVAL;
  pOperator->blocking = true;
  pOperator->status = OP_NOT_OPENED;
  pOperator->pExpr = pExprInfo;
  pOperator->pTaskInfo = pTaskInfo;
  pOperator->numOfExprs = numOfCols;
  pOperator->info = pInfo;

  pOperator->fpSet = createOperatorFpSet(NULL, doStreamFinalIntervalAgg, NULL, NULL,
      destroyStreamFinalIntervalOperatorInfo, aggEncodeResultRow, aggDecodeResultRow,
      NULL);

  code = appendDownstream(pOperator, &downstream, 1);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  return pOperator;

_error:
  destroyStreamFinalIntervalOperatorInfo(pInfo, numOfCols);
  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
}

1545 1546
SOperatorInfo* createStreamIntervalOperatorInfo(SOperatorInfo* downstream, SExprInfo* pExprInfo, int32_t numOfCols,
                                                SSDataBlock* pResBlock, SInterval* pInterval, int32_t primaryTsSlotId,
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                                                STimeWindowAggSupp* pTwAggSupp, SExecTaskInfo* pTaskInfo) {
1548
  SIntervalAggOperatorInfo* pInfo = taosMemoryCalloc(1, sizeof(SIntervalAggOperatorInfo));
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  SOperatorInfo*            pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }

  pInfo->order = TSDB_ORDER_ASC;
  pInfo->interval = *pInterval;
  pInfo->execModel = OPTR_EXEC_MODEL_STREAM;
  pInfo->win = pTaskInfo->window;
  pInfo->twAggSup = *pTwAggSupp;
  pInfo->primaryTsIndex = primaryTsSlotId;

  int32_t numOfRows = 4096;
  size_t  keyBufSize = sizeof(int64_t) + sizeof(int64_t) + POINTER_BYTES;

  initResultSizeInfo(pOperator, numOfRows);
  int32_t code =
      initAggInfo(&pInfo->binfo, &pInfo->aggSup, pExprInfo, numOfCols, pResBlock, keyBufSize, pTaskInfo->id.str);
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pInfo->win);

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  if (code != TSDB_CODE_SUCCESS) {
1570 1571 1572 1573 1574 1575 1576
    goto _error;
  }

  initResultRowInfo(&pInfo->binfo.resultRowInfo, (int32_t)1);

  pOperator->name = "StreamTimeIntervalAggOperator";
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_INTERVAL;
1577
  pOperator->blocking = true;
1578 1579 1580
  pOperator->status = OP_NOT_OPENED;
  pOperator->pExpr = pExprInfo;
  pOperator->pTaskInfo = pTaskInfo;
1581
  pOperator->numOfExprs = numOfCols;
1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593
  pOperator->info = pInfo;

  pOperator->fpSet = createOperatorFpSet(doOpenIntervalAgg, doStreamIntervalAgg, doStreamIntervalAgg, NULL,
                                         destroyIntervalOperatorInfo, aggEncodeResultRow, aggDecodeResultRow, NULL);

  code = appendDownstream(pOperator, &downstream, 1);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  return pOperator;

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_error:
1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605
  destroyIntervalOperatorInfo(pInfo, numOfCols);
  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
}

// todo handle multiple tables cases.
static void doSessionWindowAggImpl(SOperatorInfo* pOperator, SSessionAggOperatorInfo* pInfo, SSDataBlock* pBlock) {
  SExecTaskInfo* pTaskInfo = pOperator->pTaskInfo;

1606
  SColumnInfoData* pColInfoData = taosArrayGet(pBlock->pDataBlock, pInfo->tsSlotId);
1607 1608

  bool    masterScan = true;
1609
  int32_t numOfOutput = pOperator->numOfExprs;
1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649
  int64_t gid = pBlock->info.groupId;

  int64_t gap = pInfo->gap;

  if (!pInfo->reptScan) {
    pInfo->reptScan = true;
    pInfo->winSup.prevTs = INT64_MIN;
  }

  SWindowRowsSup* pRowSup = &pInfo->winSup;
  pRowSup->numOfRows = 0;

  // In case of ascending or descending order scan data, only one time window needs to be kepted for each table.
  TSKEY* tsList = (TSKEY*)pColInfoData->pData;
  for (int32_t j = 0; j < pBlock->info.rows; ++j) {
    if (pInfo->winSup.prevTs == INT64_MIN) {
      doKeepNewWindowStartInfo(pRowSup, tsList, j);
      doKeepTuple(pRowSup, tsList[j]);
    } else if (tsList[j] - pRowSup->prevTs <= gap && (tsList[j] - pRowSup->prevTs) >= 0) {
      // The gap is less than the threshold, so it belongs to current session window that has been opened already.
      doKeepTuple(pRowSup, tsList[j]);
      if (j == 0 && pRowSup->startRowIndex != 0) {
        pRowSup->startRowIndex = 0;
      }
    } else {  // start a new session window
      SResultRow* pResult = NULL;

      // keep the time window for the closed time window.
      STimeWindow window = pRowSup->win;

      pRowSup->win.ekey = pRowSup->win.skey;
      int32_t ret =
          setTimeWindowOutputBuf(&pInfo->binfo.resultRowInfo, &window, masterScan, &pResult, gid, pInfo->binfo.pCtx,
                                 numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
      if (ret != TSDB_CODE_SUCCESS) {  // null data, too many state code
        longjmp(pTaskInfo->env, TSDB_CODE_QRY_APP_ERROR);
      }

      // pInfo->numOfRows data belong to the current session window
      updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &window, false);
1650
      doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &window, &pInfo->twAggSup.timeWindowData, pRowSup->startRowIndex,
1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668
                       pRowSup->numOfRows, NULL, pBlock->info.rows, numOfOutput, TSDB_ORDER_ASC);

      // here we start a new session window
      doKeepNewWindowStartInfo(pRowSup, tsList, j);
      doKeepTuple(pRowSup, tsList[j]);
    }
  }

  SResultRow* pResult = NULL;
  pRowSup->win.ekey = tsList[pBlock->info.rows - 1];
  int32_t ret =
      setTimeWindowOutputBuf(&pInfo->binfo.resultRowInfo, &pRowSup->win, masterScan, &pResult, gid, pInfo->binfo.pCtx,
                             numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
  if (ret != TSDB_CODE_SUCCESS) {  // null data, too many state code
    longjmp(pTaskInfo->env, TSDB_CODE_QRY_APP_ERROR);
  }

  updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pRowSup->win, false);
1669
  doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &pRowSup->win, &pInfo->twAggSup.timeWindowData, pRowSup->startRowIndex,
1670 1671 1672
                   pRowSup->numOfRows, NULL, pBlock->info.rows, numOfOutput, TSDB_ORDER_ASC);
}

1673
static SSDataBlock* doSessionWindowAgg(SOperatorInfo* pOperator) {
1674 1675 1676 1677 1678 1679 1680 1681
  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  SSessionAggOperatorInfo* pInfo = pOperator->info;
  SOptrBasicInfo*          pBInfo = &pInfo->binfo;

  if (pOperator->status == OP_RES_TO_RETURN) {
1682
    doBuildResultDatablock(pOperator, pBInfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1683
    if (pBInfo->pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
1684 1685 1686 1687 1688 1689 1690
      doSetOperatorCompleted(pOperator);
      return NULL;
    }

    return pBInfo->pRes;
  }

1691 1692 1693
  int64_t st = taosGetTimestampUs();
  int32_t order = TSDB_ORDER_ASC;

1694 1695 1696
  SOperatorInfo* downstream = pOperator->pDownstream[0];

  while (1) {
1697
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
1698 1699 1700 1701 1702
    if (pBlock == NULL) {
      break;
    }

    // the pDataBlock are always the same one, no need to call this again
1703
    setInputDataBlock(pOperator, pBInfo->pCtx, pBlock, order, MAIN_SCAN, true);
1704 1705
    blockDataUpdateTsWindow(pBlock, pInfo->tsSlotId);

1706 1707 1708
    doSessionWindowAggImpl(pOperator, pInfo, pBlock);
  }

1709 1710
  pOperator->cost.openCost = (taosGetTimestampUs() - st) / 1000.0;

1711 1712 1713 1714
  // restore the value
  pOperator->status = OP_RES_TO_RETURN;
  closeAllResultRows(&pBInfo->resultRowInfo);

1715
  initGroupedResultInfo(&pInfo->groupResInfo, pInfo->aggSup.pResultRowHashTable, TSDB_ORDER_ASC);
1716
  blockDataEnsureCapacity(pBInfo->pRes, pOperator->resultInfo.capacity);
1717
  doBuildResultDatablock(pOperator, pBInfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
1718
  if (pBInfo->pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
1719 1720 1721
    doSetOperatorCompleted(pOperator);
  }

1722 1723 1724 1725
  size_t rows = pBInfo->pRes->info.rows;
  pOperator->resultInfo.totalRows += rows;

  return (rows == 0)? NULL : pBInfo->pRes;
1726 1727
}

1728
static SSDataBlock* doAllIntervalAgg(SOperatorInfo* pOperator) {
1729 1730 1731 1732 1733 1734 1735
  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  STimeSliceOperatorInfo* pSliceInfo = pOperator->info;
  if (pOperator->status == OP_RES_TO_RETURN) {
    //    doBuildResultDatablock(&pRuntimeEnv->groupResInfo, pRuntimeEnv, pIntervalInfo->pRes);
1736
    if (pSliceInfo->binfo.pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pSliceInfo->groupResInfo)) {
1737 1738 1739 1740 1741 1742
      doSetOperatorCompleted(pOperator);
    }

    return pSliceInfo->binfo.pRes;
  }

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  int32_t        order = TSDB_ORDER_ASC;
1744 1745 1746
  SOperatorInfo* downstream = pOperator->pDownstream[0];

  while (1) {
1747
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
1748 1749 1750 1751 1752
    if (pBlock == NULL) {
      break;
    }

    // the pDataBlock are always the same one, no need to call this again
1753
    setInputDataBlock(pOperator, pSliceInfo->binfo.pCtx, pBlock, order, MAIN_SCAN, true);
1754 1755 1756 1757 1758 1759 1760
    //    hashAllIntervalAgg(pOperator, &pSliceInfo->binfo.resultRowInfo, pBlock, 0);
  }

  // restore the value
  pOperator->status = OP_RES_TO_RETURN;
  closeAllResultRows(&pSliceInfo->binfo.resultRowInfo);
  setTaskStatus(pOperator->pTaskInfo, TASK_COMPLETED);
1761
  //  finalizeQueryResult(pSliceInfo->binfo.pCtx, pOperator->numOfExprs);
1762 1763 1764 1765

  //  initGroupedResultInfo(&pSliceInfo->groupResInfo, &pSliceInfo->binfo.resultRowInfo);
  //  doBuildResultDatablock(&pRuntimeEnv->groupResInfo, pRuntimeEnv, pSliceInfo->pRes);

1766
  if (pSliceInfo->binfo.pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pSliceInfo->groupResInfo)) {
1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784
    pOperator->status = OP_EXEC_DONE;
  }

  return pSliceInfo->binfo.pRes->info.rows == 0 ? NULL : pSliceInfo->binfo.pRes;
}

SOperatorInfo* createTimeSliceOperatorInfo(SOperatorInfo* downstream, SExprInfo* pExprInfo, int32_t numOfCols,
                                           SSDataBlock* pResultBlock, SExecTaskInfo* pTaskInfo) {
  STimeSliceOperatorInfo* pInfo = taosMemoryCalloc(1, sizeof(STimeSliceOperatorInfo));
  SOperatorInfo*          pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
  if (pOperator == NULL || pInfo == NULL) {
    goto _error;
  }

  initResultRowInfo(&pInfo->binfo.resultRowInfo, 8);

  pOperator->name = "TimeSliceOperator";
  //  pOperator->operatorType = OP_AllTimeWindow;
1785
  pOperator->blocking = true;
1786 1787
  pOperator->status = OP_NOT_OPENED;
  pOperator->pExpr = pExprInfo;
1788
  pOperator->numOfExprs = numOfCols;
1789 1790 1791 1792 1793 1794 1795 1796 1797
  pOperator->info = pInfo;
  pOperator->pTaskInfo = pTaskInfo;

  pOperator->fpSet = createOperatorFpSet(operatorDummyOpenFn, doAllIntervalAgg, NULL, NULL, destroyBasicOperatorInfo,
                                         NULL, NULL, NULL);

  int32_t code = appendDownstream(pOperator, &downstream, 1);
  return pOperator;

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_error:
1799 1800 1801 1802 1803 1804 1805
  taosMemoryFree(pInfo);
  taosMemoryFree(pOperator);
  pTaskInfo->code = TSDB_CODE_OUT_OF_MEMORY;
  return NULL;
}

SOperatorInfo* createStatewindowOperatorInfo(SOperatorInfo* downstream, SExprInfo* pExpr, int32_t numOfCols,
1806
                                             SSDataBlock* pResBlock, STimeWindowAggSupp* pTwAggSup, int32_t tsSlotId,
1807
                                             SColumn* pStateKeyCol, SExecTaskInfo* pTaskInfo) {
1808 1809 1810 1811 1812 1813
  SStateWindowOperatorInfo* pInfo = taosMemoryCalloc(1, sizeof(SStateWindowOperatorInfo));
  SOperatorInfo*            pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }

1814 1815 1816 1817 1818 1819 1820 1821
  pInfo->stateCol = *pStateKeyCol;
  pInfo->stateKey.type = pInfo->stateCol.type;
  pInfo->stateKey.bytes = pInfo->stateCol.bytes;
  pInfo->stateKey.pData = taosMemoryCalloc(1, pInfo->stateCol.bytes);
  if (pInfo->stateKey.pData == NULL) {
    goto _error;
  }

1822 1823 1824 1825 1826 1827
  size_t keyBufSize = sizeof(int64_t) + sizeof(int64_t) + POINTER_BYTES;

  initResultSizeInfo(pOperator, 4096);
  initAggInfo(&pInfo->binfo, &pInfo->aggSup, pExpr, numOfCols, pResBlock, keyBufSize, pTaskInfo->id.str);
  initResultRowInfo(&pInfo->binfo.resultRowInfo, 8);

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  pInfo->twAggSup = *pTwAggSup;
1829 1830
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pTaskInfo->window);

1831 1832
  pInfo->tsSlotId       = tsSlotId;
  pOperator->name       = "StateWindowOperator";
1833
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_STATE_WINDOW;
1834 1835 1836
  pOperator->blocking   = true;
  pOperator->status     = OP_NOT_OPENED;
  pOperator->pExpr      = pExpr;
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  pOperator->numOfExprs = numOfCols;
1838 1839
  pOperator->pTaskInfo  = pTaskInfo;
  pOperator->info       = pInfo;
1840 1841 1842 1843 1844 1845 1846

  pOperator->fpSet = createOperatorFpSet(operatorDummyOpenFn, doStateWindowAgg, NULL, NULL,
                                         destroyStateWindowOperatorInfo, aggEncodeResultRow, aggDecodeResultRow, NULL);

  int32_t code = appendDownstream(pOperator, &downstream, 1);
  return pOperator;

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_error:
1848 1849 1850 1851 1852 1853 1854 1855 1856 1857
  pTaskInfo->code = TSDB_CODE_SUCCESS;
  return NULL;
}

void destroySWindowOperatorInfo(void* param, int32_t numOfOutput) {
  SSessionAggOperatorInfo* pInfo = (SSessionAggOperatorInfo*)param;
  doDestroyBasicInfo(&pInfo->binfo, numOfOutput);
}

SOperatorInfo* createSessionAggOperatorInfo(SOperatorInfo* downstream, SExprInfo* pExprInfo, int32_t numOfCols,
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                                            SSDataBlock* pResBlock, int64_t gap, int32_t tsSlotId,
                                            STimeWindowAggSupp* pTwAggSupp, SExecTaskInfo* pTaskInfo) {
1860 1861 1862 1863 1864 1865
  SSessionAggOperatorInfo* pInfo = taosMemoryCalloc(1, sizeof(SSessionAggOperatorInfo));
  SOperatorInfo*           pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }

1866 1867
  size_t keyBufSize = sizeof(int64_t) + sizeof(int64_t) + POINTER_BYTES;
  initResultSizeInfo(pOperator, 4096);
1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878

  int32_t code =
      initAggInfo(&pInfo->binfo, &pInfo->aggSup, pExprInfo, numOfCols, pResBlock, keyBufSize, pTaskInfo->id.str);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  pInfo->twAggSup = *pTwAggSupp;
  initResultRowInfo(&pInfo->binfo.resultRowInfo, 8);
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pTaskInfo->window);

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  pInfo->tsSlotId = tsSlotId;
  pInfo->gap = gap;
  pInfo->binfo.pRes = pResBlock;
  pInfo->winSup.prevTs = INT64_MIN;
  pInfo->reptScan = false;
  pOperator->name = "SessionWindowAggOperator";
1885
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_SESSION_WINDOW;
1886
  pOperator->blocking = true;
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  pOperator->status = OP_NOT_OPENED;
  pOperator->pExpr = pExprInfo;
  pOperator->numOfExprs = numOfCols;
  pOperator->info = pInfo;
1891 1892 1893 1894 1895 1896 1897 1898

  pOperator->fpSet = createOperatorFpSet(operatorDummyOpenFn, doSessionWindowAgg, NULL, NULL,
                                         destroySWindowOperatorInfo, aggEncodeResultRow, aggDecodeResultRow, NULL);
  pOperator->pTaskInfo = pTaskInfo;

  code = appendDownstream(pOperator, &downstream, 1);
  return pOperator;

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_error:
1900 1901 1902 1903 1904 1905 1906 1907
  if (pInfo != NULL) {
    destroySWindowOperatorInfo(pInfo, numOfCols);
  }

  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
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}
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1910
static SArray* doHashInterval(SOperatorInfo* pOperatorInfo, SSDataBlock* pSDataBlock,
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1911 1912
                               int32_t tableGroupId) {
  SStreamFinalIntervalOperatorInfo* pInfo = (SStreamFinalIntervalOperatorInfo*)pOperatorInfo->info;
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  SResultRowInfo* pResultRowInfo = &(pInfo->binfo.resultRowInfo);
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  SExecTaskInfo* pTaskInfo = pOperatorInfo->pTaskInfo;
  int32_t numOfOutput = pOperatorInfo->numOfExprs;
  SArray* pUpdated = taosArrayInit(4, POINTER_BYTES);
  int32_t step = 1;
  bool    ascScan = true;
  TSKEY* tsCols = NULL;
  SResultRow* pResult = NULL;
1921
  int32_t forwardRows = 0;
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  if (pSDataBlock->pDataBlock != NULL) {
    SColumnInfoData* pColDataInfo = taosArrayGet(pSDataBlock->pDataBlock, pInfo->primaryTsIndex);
    tsCols = (int64_t*)pColDataInfo->pData;
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  } else {
    return pUpdated;
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1928
  }
5
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1929

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  int32_t startPos = ascScan ? 0 : (pSDataBlock->info.rows - 1);
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  TSKEY ts = getStartTsKey(&pSDataBlock->info.window, tsCols);
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  STimeWindow nextWin = getActiveTimeWindow(pInfo->aggSup.pResultBuf, pResultRowInfo, ts,
      &pInfo->interval, pInfo->interval.precision, NULL);
  while (1) {
    int32_t code =
        setTimeWindowOutputBuf(pResultRowInfo, &nextWin, true, &pResult, tableGroupId, pInfo->binfo.pCtx,
                               numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup, pTaskInfo);
    if (code != TSDB_CODE_SUCCESS || pResult == NULL) {
      longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
    }
    SResKeyPos* pos = taosMemoryMalloc(sizeof(SResKeyPos) + sizeof(uint64_t));
    pos->groupId = tableGroupId;
    pos->pos = (SResultRowPosition){.pageId = pResult->pageId, .offset = pResult->offset};
    *(int64_t*)pos->key = pResult->win.skey;
    taosArrayPush(pUpdated, &pos);
1946
    forwardRows =
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        getNumOfRowsInTimeWindow(&pSDataBlock->info, tsCols, startPos, nextWin.ekey, binarySearchForKey, NULL, TSDB_ORDER_ASC);
    // window start(end) key interpolation
1949
    // disable it temporarily
1950
//    doWindowBorderInterpolation(pInfo, pSDataBlock, numOfOutput, pInfo->binfo.pCtx, pResult, &nextWin, startPos, forwardRows);
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    updateTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &nextWin, true);
1952
    doApplyFunctions(pTaskInfo, pInfo->binfo.pCtx, &nextWin, &pInfo->twAggSup.timeWindowData, startPos, forwardRows, tsCols,
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54liuyao 已提交
1953
                     pSDataBlock->info.rows, numOfOutput, TSDB_ORDER_ASC);
1954
    int32_t prevEndPos = (forwardRows - 1) * step + startPos;
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1955 1956 1957 1958 1959 1960 1961 1962
    startPos = getNextQualifiedWindow(&pInfo->interval, &nextWin, &pSDataBlock->info, tsCols, prevEndPos, pInfo->order);
    if (startPos < 0) {
      break;
    }
  }
  return pUpdated;
}

1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007
bool isFinalInterval(SStreamFinalIntervalOperatorInfo* pInfo) {
  return pInfo->pChildren != NULL;
}

void compactFunctions(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx,
    int32_t numOfOutput, SExecTaskInfo* pTaskInfo) {
  for (int32_t k = 0; k < numOfOutput; ++k) {
    if (fmIsWindowPseudoColumnFunc(pDestCtx[k].functionId)) {
      continue;
    }
    int32_t code = TSDB_CODE_SUCCESS;
    if (functionNeedToExecute(&pDestCtx[k]) && pDestCtx[k].fpSet.combine != NULL) {
      code = pDestCtx[k].fpSet.combine(&pDestCtx[k], &pSourceCtx[k]);
      if (code != TSDB_CODE_SUCCESS) {
        qError("%s apply functions error, code: %s", GET_TASKID(pTaskInfo), tstrerror(code));
        pTaskInfo->code = code;
        longjmp(pTaskInfo->env, code);
      }
    }
  }
}

static void rebuildIntervalWindow(SStreamFinalIntervalOperatorInfo* pInfo, SArray *pWinArray,
    int32_t groupId, int32_t numOfOutput, SExecTaskInfo* pTaskInfo) {
  int32_t size = taosArrayGetSize(pWinArray);
  ASSERT(pInfo->pChildren);
  for (int32_t i = 0; i < size; i++) {
    STimeWindow* pParentWin = taosArrayGet(pWinArray, i);
    SResultRow* pCurResult = NULL;
    setTimeWindowOutputBuf(&pInfo->binfo.resultRowInfo, pParentWin, true, &pCurResult, 0,
        pInfo->binfo.pCtx, numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->aggSup,
        pTaskInfo);
    int32_t numOfChildren = taosArrayGetSize(pInfo->pChildren);
    for (int32_t j = 0; j < numOfChildren; j++) {
      SOperatorInfo* pChildOp = taosArrayGetP(pInfo->pChildren, j);
      SIntervalAggOperatorInfo* pChInfo = pChildOp->info;
      SResultRow* pChResult = NULL;
      setTimeWindowOutputBuf(&pChInfo->binfo.resultRowInfo, pParentWin, true, &pChResult,
          0, pChInfo->binfo.pCtx, pChildOp->numOfExprs, pChInfo->binfo.rowCellInfoOffset,
          &pChInfo->aggSup, pTaskInfo);
      compactFunctions(pInfo->binfo.pCtx, pChInfo->binfo.pCtx, numOfOutput, pTaskInfo);
    }
  }
}

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static SSDataBlock* doStreamFinalIntervalAgg(SOperatorInfo* pOperator) {
  SStreamFinalIntervalOperatorInfo* pInfo = pOperator->info;
  SOperatorInfo* downstream = pOperator->pDownstream[0];
  SArray* pUpdated = NULL;

  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  } else if (pOperator->status == OP_RES_TO_RETURN) {
    doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
2017
    if (pInfo->binfo.pRes->info.rows == 0 || !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
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      pOperator->status = OP_EXEC_DONE;
    }
    return pInfo->binfo.pRes->info.rows == 0 ? NULL : pInfo->binfo.pRes;
  }

  while (1) {
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
    if (pBlock == NULL) {
      break;
    }
2028

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    setInputDataBlock(pOperator, pInfo->binfo.pCtx, pBlock, pInfo->order, MAIN_SCAN, true);
    if (pBlock->info.type == STREAM_REPROCESS) {
2031
      SArray *pUpWins = taosArrayInit(8, sizeof(STimeWindow));
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      doClearWindows(&pInfo->aggSup, &pInfo->binfo, &pInfo->interval,
2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043
          pInfo->primaryTsIndex, pOperator->numOfExprs, pBlock, pUpWins);
      if (isFinalInterval(pInfo)) {
        int32_t childIndex = 0; //Todo(liuyao) get child id from SSDataBlock
        SOperatorInfo* pChildOp = taosArrayGetP(pInfo->pChildren, childIndex);
        SIntervalAggOperatorInfo* pChildInfo = pChildOp->info;
        doClearWindows(&pChildInfo->aggSup, &pChildInfo->binfo, &pChildInfo->interval,
           pChildInfo->primaryTsIndex, pChildOp->numOfExprs, pBlock, NULL);
        rebuildIntervalWindow(pInfo, pUpWins, pInfo->binfo.pRes->info.groupId,
            pOperator->numOfExprs, pOperator->pTaskInfo);
      }
      taosArrayDestroy(pUpWins);
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      continue;
    }
2046 2047 2048 2049 2050
    if (isFinalInterval(pInfo)) {
      int32_t chIndex = 1; //Todo(liuyao) get it from SSDataBlock
      SOperatorInfo* pChildOp = taosArrayGetP(pInfo->pChildren, chIndex);
      doStreamIntervalAgg(pChildOp);
    }
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    pUpdated = doHashInterval(pOperator, pBlock, 0);
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  }

  finalizeUpdatedResult(pOperator->numOfExprs, pInfo->aggSup.pResultBuf, pUpdated, pInfo->binfo.rowCellInfoOffset);
  initMultiResInfoFromArrayList(&pInfo->groupResInfo, pUpdated);
  blockDataEnsureCapacity(pInfo->binfo.pRes, pOperator->resultInfo.capacity);
  doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo, pInfo->aggSup.pResultBuf);
  pOperator->status = OP_RES_TO_RETURN;
  return pInfo->binfo.pRes->info.rows == 0 ? NULL : pInfo->binfo.pRes;
}
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void destroyStreamAggSupporter(SStreamAggSupporter* pSup) {
  taosArrayDestroy(pSup->pResultRows);
  taosMemoryFreeClear(pSup->pKeyBuf);
  destroyDiskbasedBuf(pSup->pResultBuf);
}

void destroyStreamSessionAggOperatorInfo(void* param, int32_t numOfOutput) {
  SStreamSessionAggOperatorInfo* pInfo = (SStreamSessionAggOperatorInfo*)param;
  doDestroyBasicInfo(&pInfo->binfo, numOfOutput);
  destroyStreamAggSupporter(&pInfo->streamAggSup);
  cleanupGroupResInfo(&pInfo->groupResInfo);
2073 2074 2075 2076 2077 2078 2079 2080 2081 2082
  if (pInfo->pChildren != NULL) {
    int32_t size = taosArrayGetSize(pInfo->pChildren);
    for (int32_t i = 0; i < size; i++) {
      SOperatorInfo *pChild = taosArrayGetP(pInfo->pChildren, i);
      SStreamSessionAggOperatorInfo* pChInfo = pChild->info;
      destroyStreamSessionAggOperatorInfo(pChInfo, numOfOutput);
      taosMemoryFreeClear(pChild);
      taosMemoryFreeClear(pChInfo);
    }
  }
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}

int32_t initBiasicInfo(SOptrBasicInfo* pBasicInfo, SExprInfo* pExprInfo,
    int32_t numOfCols, SSDataBlock* pResultBlock, SDiskbasedBuf* pResultBuf) {
  pBasicInfo->pCtx = createSqlFunctionCtx(pExprInfo, numOfCols, &pBasicInfo->rowCellInfoOffset);
  pBasicInfo->pRes = pResultBlock;
  for (int32_t i = 0; i < numOfCols; ++i) {
    pBasicInfo->pCtx[i].pBuf = pResultBuf;
  }
  return TSDB_CODE_SUCCESS;
}

void initDummyFunction(SqlFunctionCtx* pDummy, SqlFunctionCtx* pCtx, int32_t nums) {
  for (int i = 0; i < nums; i++) {
    pDummy[i].functionId = pCtx[i].functionId;
  }
}
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void initDownStream(SOperatorInfo* downstream, SStreamAggSupporter* pAggSup, int64_t gap,
    int64_t waterMark, uint8_t type) {
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  ASSERT(downstream->operatorType == QUERY_NODE_PHYSICAL_PLAN_STREAM_SCAN);
  SStreamBlockScanInfo* pScanInfo = downstream->info;
  pScanInfo->sessionSup =
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      (SessionWindowSupporter){.pStreamAggSup = pAggSup, .gap = gap, .parentType = type};
  pScanInfo->pUpdateInfo = updateInfoInit(60000, TSDB_TIME_PRECISION_MILLI, waterMark);
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}

SOperatorInfo* createStreamSessionAggOperatorInfo(SOperatorInfo* downstream,
    SExprInfo* pExprInfo, int32_t numOfCols, SSDataBlock* pResBlock, int64_t gap,
    int32_t tsSlotId, STimeWindowAggSupp* pTwAggSupp, SExecTaskInfo* pTaskInfo) {
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  int32_t code = TSDB_CODE_OUT_OF_MEMORY;
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  SStreamSessionAggOperatorInfo* pInfo = 
      taosMemoryCalloc(1, sizeof(SStreamSessionAggOperatorInfo));
  SOperatorInfo* pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }

  initResultSizeInfo(pOperator, 4096);

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  code = initSessionAggSupporter(&pInfo->streamAggSup, "StreamSessionAggOperatorInfo");
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  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  code = initBiasicInfo(&pInfo->binfo, pExprInfo, numOfCols, pResBlock,
      pInfo->streamAggSup.pResultBuf);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }
  pInfo->streamAggSup.resultRowSize = getResultRowSize(pInfo->binfo.pCtx, numOfCols);
  
  pInfo->pDummyCtx = (SqlFunctionCtx*)taosMemoryCalloc(numOfCols, sizeof(SqlFunctionCtx));
  if (pInfo->pDummyCtx == NULL) {
    goto _error;
  }
  initDummyFunction(pInfo->pDummyCtx, pInfo->binfo.pCtx, numOfCols);

  pInfo->twAggSup = *pTwAggSupp;
  initResultRowInfo(&pInfo->binfo.resultRowInfo, 8);
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pTaskInfo->window);

  pInfo->primaryTsIndex = tsSlotId;
  pInfo->gap = gap;
  pInfo->binfo.pRes = pResBlock;
  pInfo->order = TSDB_ORDER_ASC;
  _hash_fn_t hashFn = taosGetDefaultHashFunction(TSDB_DATA_TYPE_BINARY);
  pInfo->pStDeleted = taosHashInit(64, hashFn, true, HASH_NO_LOCK);
  pInfo->pDelIterator = NULL;
  pInfo->pDelRes = createOneDataBlock(pResBlock, false);
  blockDataEnsureCapacity(pInfo->pDelRes, 64);
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  pInfo->pChildren = NULL;
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  pOperator->name = "StreamSessionWindowAggOperator";
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_STREAM_SESSION_WINDOW;
  pOperator->blocking = true;
  pOperator->status = OP_NOT_OPENED;
  pOperator->pExpr = pExprInfo;
  pOperator->numOfExprs = numOfCols;
  pOperator->info = pInfo;
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  pOperator->fpSet = createOperatorFpSet(operatorDummyOpenFn, doStreamSessionAgg,
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      NULL, NULL, destroyStreamSessionAggOperatorInfo, aggEncodeResultRow,
      aggDecodeResultRow, NULL);
  pOperator->pTaskInfo = pTaskInfo;
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  initDownStream(downstream, &pInfo->streamAggSup, pInfo->gap,
      pInfo->twAggSup.waterMark, pOperator->operatorType);
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  code = appendDownstream(pOperator, &downstream, 1);
  return pOperator;

_error:
  if (pInfo != NULL) {
    destroyStreamSessionAggOperatorInfo(pInfo, numOfCols);
  }

  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
}

int64_t getSessionWindowEndkey(void* data, int32_t index) {
  SArray* pWinInfos = (SArray*) data;
  SResultWindowInfo* pWin = taosArrayGet(pWinInfos, index);
  return pWin->win.ekey;
}
static bool isInWindow(SResultWindowInfo* pWin, TSKEY ts, int64_t gap) {
  int64_t sGap = ts - pWin->win.skey;
  int64_t eGap = pWin->win.ekey - ts;
  if ( (sGap < 0 && sGap >= -gap) || (eGap < 0 && eGap >= -gap) || (sGap >= 0 && eGap >= 0) ) {
    return true;
  }
  return false;
}

static SResultWindowInfo* insertNewSessionWindow(SArray* pWinInfos, TSKEY ts,
    int32_t index) {
  SResultWindowInfo win = 
      {.pos.offset = -1, .pos.pageId = -1, .win.skey = ts, .win.ekey = ts, .isOutput = false};
  return taosArrayInsert(pWinInfos, index, &win);
}

static SResultWindowInfo* addNewSessionWindow(SArray* pWinInfos, TSKEY ts) {
  SResultWindowInfo win = 
      {.pos.offset = -1, .pos.pageId = -1, .win.skey = ts, .win.ekey = ts, .isOutput = false};
  return taosArrayPush(pWinInfos, &win);
}

SResultWindowInfo* getSessionTimeWindow(SArray* pWinInfos, TSKEY ts, int64_t gap,
    int32_t* pIndex) {
  int32_t size = taosArrayGetSize(pWinInfos);
  if (size == 0) {
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    *pIndex = 0;
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    return addNewSessionWindow(pWinInfos, ts);
  }
  // find the first position which is smaller than the key
  int32_t index = binarySearch(pWinInfos, size, ts, TSDB_ORDER_DESC,
      getSessionWindowEndkey);
  SResultWindowInfo* pWin = NULL;
  if (index >= 0) {
    pWin = taosArrayGet(pWinInfos, index);
    if (isInWindow(pWin, ts, gap)) {
      *pIndex = index;
      return pWin;
    }
  }

  if (index + 1 < size) {
    pWin = taosArrayGet(pWinInfos, index + 1);
    if (isInWindow(pWin, ts, gap)) {
      *pIndex = index + 1;
      return pWin;
    }
  }

  if (index == size - 1) {
    *pIndex = taosArrayGetSize(pWinInfos);
    return addNewSessionWindow(pWinInfos, ts);
  }
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  *pIndex = index + 1;
  return insertNewSessionWindow(pWinInfos, ts, index + 1);
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}

int32_t updateSessionWindowInfo(SResultWindowInfo* pWinInfo, TSKEY* pTs, int32_t rows,
    int32_t start, int64_t gap, SHashObj* pStDeleted) {
  for (int32_t i = start; i < rows; ++i) {
    if (!isInWindow(pWinInfo, pTs[i], gap)) {
      return i - start;
    }
    if (pWinInfo->win.skey > pTs[i]) {
      if (pStDeleted && pWinInfo->isOutput) {
        taosHashPut(pStDeleted, &pWinInfo->pos, sizeof(SResultRowPosition), &pWinInfo->win.skey, sizeof(TSKEY));
        pWinInfo->isOutput = false;
      }
      pWinInfo->win.skey = pTs[i];
    }
    pWinInfo->win.ekey = TMAX(pWinInfo->win.ekey, pTs[i]);
  }
  return rows - start;
}

static int32_t setWindowOutputBuf(SResultWindowInfo* pWinInfo, SResultRow** pResult,
    SqlFunctionCtx* pCtx, int32_t groupId, int32_t numOfOutput,
    int32_t* rowCellInfoOffset, SStreamAggSupporter* pAggSup, SExecTaskInfo* pTaskInfo) {
  assert(pWinInfo->win.skey <= pWinInfo->win.ekey);
  // too many time window in query
  int32_t size = taosArrayGetSize(pAggSup->pResultRows);
  if (size > MAX_INTERVAL_TIME_WINDOW) {
    longjmp(pTaskInfo->env, TSDB_CODE_QRY_TOO_MANY_TIMEWINDOW);
  }
  
  if (pWinInfo->pos.pageId == -1) {
2273
    *pResult = getNewResultRow(pAggSup->pResultBuf, groupId, pAggSup->resultRowSize);
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    if (*pResult == NULL) {
      return TSDB_CODE_OUT_OF_MEMORY;
    }
    initResultRow(*pResult);

    // add a new result set for a new group
    pWinInfo->pos.pageId = (*pResult)->pageId;
    pWinInfo->pos.offset = (*pResult)->offset;
  } else {
    *pResult = getResultRowByPos(pAggSup->pResultBuf, &pWinInfo->pos);
    if (!(*pResult)) {
      qError("getResultRowByPos return NULL, TID:%s", GET_TASKID(pTaskInfo));
      return TSDB_CODE_FAILED;
    }
  }

  // set time window for current result
  (*pResult)->win = pWinInfo->win;
  setResultRowInitCtx(*pResult, pCtx, numOfOutput, rowCellInfoOffset);
  return TSDB_CODE_SUCCESS;
}

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static int32_t doOneWindowAggImpl(int32_t tsColId, SOptrBasicInfo* pBinfo,
    SStreamAggSupporter* pAggSup, SColumnInfoData* pTimeWindowData,
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    SSDataBlock* pSDataBlock, SResultWindowInfo* pCurWin, SResultRow** pResult,
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    int32_t startIndex, int32_t winRows, int32_t numOutput, SExecTaskInfo* pTaskInfo) {
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  SColumnInfoData* pColDataInfo =
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    taosArrayGet(pSDataBlock->pDataBlock, tsColId);
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  TSKEY* tsCols = (int64_t*)pColDataInfo->pData;
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  int32_t code = setWindowOutputBuf(pCurWin, pResult, pBinfo->pCtx,
      pSDataBlock->info.groupId, numOutput, pBinfo->rowCellInfoOffset,
      pAggSup, pTaskInfo);
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  if (code != TSDB_CODE_SUCCESS || (*pResult) == NULL) {
    return TSDB_CODE_QRY_OUT_OF_MEMORY;
  }
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  updateTimeWindowInfo(pTimeWindowData, &pCurWin->win, true);
  doApplyFunctions(pTaskInfo, pBinfo->pCtx, &pCurWin->win, pTimeWindowData, startIndex,
      winRows, tsCols, pSDataBlock->info.rows, numOutput, TSDB_ORDER_ASC);
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  return TSDB_CODE_SUCCESS;
}

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static int32_t doOneWindowAgg(SStreamSessionAggOperatorInfo* pInfo,
    SSDataBlock* pSDataBlock, SResultWindowInfo* pCurWin, SResultRow** pResult,
    int32_t startIndex, int32_t winRows, int32_t numOutput, SExecTaskInfo* pTaskInfo) {
  return doOneWindowAggImpl(pInfo->primaryTsIndex, &pInfo->binfo, &pInfo->streamAggSup,
      &pInfo->twAggSup.timeWindowData, pSDataBlock, pCurWin, pResult, startIndex,
      winRows, numOutput, pTaskInfo);
}

static int32_t doOneStateWindowAgg(SStreamStateAggOperatorInfo* pInfo,
    SSDataBlock* pSDataBlock, SResultWindowInfo* pCurWin, SResultRow** pResult,
    int32_t startIndex, int32_t winRows, int32_t numOutput, SExecTaskInfo* pTaskInfo) {
  return doOneWindowAggImpl(pInfo->primaryTsIndex, &pInfo->binfo, &pInfo->streamAggSup,
      &pInfo->twAggSup.timeWindowData, pSDataBlock, pCurWin, pResult, startIndex,
      winRows, numOutput, pTaskInfo);
}

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int32_t copyWinInfoToDataBlock(SSDataBlock* pBlock, SStreamAggSupporter* pAggSup,
     int32_t start, int32_t num, int32_t numOfExprs, SOptrBasicInfo* pBinfo) {
  for (int32_t i = start; i < num; i += 1) {
    SResultWindowInfo* pWinInfo = taosArrayGet(pAggSup->pResultRows, start);
    SFilePage*  bufPage = getBufPage(pAggSup->pResultBuf, pWinInfo->pos.pageId);
    SResultRow* pRow = (SResultRow*)((char*)bufPage + pWinInfo->pos.offset);
    for (int32_t j = 0; j < numOfExprs; ++j) {
      SResultRowEntryInfo* pResultInfo = getResultCell(pRow, j, pBinfo->rowCellInfoOffset);
      SColumnInfoData* pColInfoData = taosArrayGet(pBlock->pDataBlock, j);
      char* in = GET_ROWCELL_INTERBUF(pBinfo->pCtx[j].resultInfo);
      colDataAppend(pColInfoData, pBlock->info.rows, in, pResultInfo->isNullRes);
    }
    pBlock->info.rows += pRow->numOfRows;
    releaseBufPage(pAggSup->pResultBuf, bufPage);
  }
  blockDataUpdateTsWindow(pBlock, -1);
  return TSDB_CODE_SUCCESS;
}

int32_t getNumCompactWindow(SArray* pWinInfos, int32_t startIndex, int64_t gap) {
  SResultWindowInfo* pCurWin = taosArrayGet(pWinInfos, startIndex);
  int32_t size = taosArrayGetSize(pWinInfos);
  // Just look for the window behind StartIndex
  for (int32_t i = startIndex + 1; i < size; i++) {
    SResultWindowInfo* pWinInfo = taosArrayGet(pWinInfos, i);
    if (!isInWindow(pCurWin, pWinInfo->win.skey, gap)) {
      return i - startIndex - 1;
    }
  }

  return size - startIndex - 1;
}

void compactTimeWindow(SStreamSessionAggOperatorInfo* pInfo, int32_t startIndex, int32_t num,
    int32_t groupId, int32_t numOfOutput, SExecTaskInfo* pTaskInfo, SHashObj* pStUpdated, SHashObj* pStDeleted) {
  SResultWindowInfo* pCurWin = taosArrayGet(pInfo->streamAggSup.pResultRows, startIndex);
  SResultRow* pCurResult = NULL;
  setWindowOutputBuf(pCurWin, &pCurResult, pInfo->binfo.pCtx, groupId,
      numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->streamAggSup, pTaskInfo);
  num += startIndex + 1;
  ASSERT(num <= taosArrayGetSize(pInfo->streamAggSup.pResultRows));
  // Just look for the window behind StartIndex
  for (int32_t i = startIndex + 1; i < num; i++) {
    SResultWindowInfo* pWinInfo = taosArrayGet(pInfo->streamAggSup.pResultRows, i);
    SResultRow* pWinResult = NULL;
    setWindowOutputBuf(pWinInfo, &pWinResult, pInfo->pDummyCtx, groupId,
        numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->streamAggSup, pTaskInfo);
    pCurWin->win.ekey = TMAX(pCurWin->win.ekey, pWinInfo->win.ekey);
    compactFunctions(pInfo->binfo.pCtx, pInfo->pDummyCtx, numOfOutput, pTaskInfo);
    taosHashRemove(pStUpdated, &pWinInfo->pos, sizeof(SResultRowPosition));
    if (pWinInfo->isOutput) {
      taosHashPut(pStDeleted, &pWinInfo->pos, sizeof(SResultRowPosition), &pWinInfo->win.skey, sizeof(TSKEY));
      pWinInfo->isOutput = false;
    }
    taosArrayRemove(pInfo->streamAggSup.pResultRows, i);
  }
}

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static void doStreamSessionAggImpl(SOperatorInfo* pOperator,
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    SSDataBlock* pSDataBlock, SHashObj* pStUpdated, SHashObj* pStDeleted) {
  SExecTaskInfo* pTaskInfo = pOperator->pTaskInfo;
  SStreamSessionAggOperatorInfo* pInfo = pOperator->info;
  bool masterScan = true;
  int32_t numOfOutput = pOperator->numOfExprs;
  int64_t groupId = pSDataBlock->info.groupId;
  int64_t gap = pInfo->gap;
  int64_t code = TSDB_CODE_SUCCESS;

  int32_t step = 1;
  bool    ascScan = true;
  TSKEY* tsCols = NULL;
  SResultRow* pResult = NULL;
  int32_t winRows = 0;

  if (pSDataBlock->pDataBlock != NULL) {
    SColumnInfoData* pColDataInfo =
        taosArrayGet(pSDataBlock->pDataBlock, pInfo->primaryTsIndex);
    tsCols = (int64_t*)pColDataInfo->pData;
  } else {
    return ;
  }
  
  SStreamAggSupporter* pAggSup = &pInfo->streamAggSup;
  for(int32_t i = 0; i < pSDataBlock->info.rows; ) {
    int32_t winIndex = 0;
    SResultWindowInfo* pCurWin =
        getSessionTimeWindow(pAggSup->pResultRows, tsCols[i], gap, &winIndex);
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    winRows = updateSessionWindowInfo(pCurWin, tsCols, pSDataBlock->info.rows, i,
        pInfo->gap, pStDeleted);
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    code = doOneWindowAgg(pInfo, pSDataBlock, pCurWin, &pResult, i, winRows, numOfOutput, pTaskInfo);
    if (code != TSDB_CODE_SUCCESS || pResult == NULL) {
      longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
    }
    // window start(end) key interpolation
2425
    // doWindowBorderInterpolation(pOperatorInfo, pSDataBlock, pInfo->binfo.pCtx, pResult, &nextWin, startPos, forwardRows,
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    //                             pInfo->order, false);
    int32_t winNum = getNumCompactWindow(pAggSup->pResultRows, winIndex, gap);
    if (winNum > 0) {
      compactTimeWindow(pInfo, winIndex, winNum, groupId, numOfOutput, pTaskInfo, pStUpdated, pStDeleted);
    }
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    pCurWin->isClosed = false;
    if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_AT_ONCE) {
      code = taosHashPut(pStUpdated, &pCurWin->pos, sizeof(SResultRowPosition), &(pCurWin->win.skey), sizeof(TSKEY));
      if (code != TSDB_CODE_SUCCESS) {
        longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
      }
      pCurWin->isOutput = true;
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    }
    i += winRows;
  }
}

static void doClearSessionWindows(SStreamAggSupporter* pAggSup, SOptrBasicInfo* pBinfo,
2444
    SSDataBlock* pBlock, int32_t tsIndex, int32_t numOfOutput, int64_t gap, SArray* result) {
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  SColumnInfoData* pColDataInfo = taosArrayGet(pBlock->pDataBlock, tsIndex);
  TSKEY *tsCols = (TSKEY*)pColDataInfo->pData;
  int32_t step = 0;
  for (int32_t i = 0; i < pBlock->info.rows; i += step) {
    int32_t winIndex = 0;
    SResultWindowInfo* pCurWin =
        getSessionTimeWindow(pAggSup->pResultRows, tsCols[i], gap, &winIndex);
    step = updateSessionWindowInfo(pCurWin, tsCols, pBlock->info.rows, i, gap, NULL);
2453
    ASSERT(isInWindow(pCurWin, tsCols[i], gap));
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    doClearWindowImpl(&pCurWin->pos, pAggSup->pResultBuf, pBinfo, numOfOutput);
2455 2456 2457
    if (result) {
      taosArrayPush(result, pCurWin);
    }
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  }
}

static int32_t copyUpdateResult(SHashObj* pStUpdated, SArray* pUpdated, int32_t groupId) {
  void* pData = NULL;
  size_t keyLen = 0;
  while((pData = taosHashIterate(pStUpdated, pData)) != NULL) {
    void* key = taosHashGetKey(pData, &keyLen);
    ASSERT(keyLen == sizeof(SResultRowPosition));
    SResKeyPos* pos = taosMemoryMalloc(sizeof(SResKeyPos) + sizeof(uint64_t));
    if (pos == NULL) {
      return TSDB_CODE_QRY_OUT_OF_MEMORY;
    }
    pos->groupId = groupId;
    pos->pos = *(SResultRowPosition*)key;
    *(int64_t*)pos->key = *(uint64_t*)pData;
    taosArrayPush(pUpdated, &pos);
  }
  return TSDB_CODE_SUCCESS;
}

void doBuildDeleteDataBlock(SHashObj* pStDeleted, SSDataBlock* pBlock, void** Ite) {
  blockDataCleanup(pBlock);
  size_t keyLen = 0;
  while(( (*Ite) = taosHashIterate(pStDeleted, *Ite)) != NULL) {
    SColumnInfoData* pColInfoData = taosArrayGet(pBlock->pDataBlock, 0);
    colDataAppend(pColInfoData, pBlock->info.rows, *Ite, false);  
    for (int32_t i = 1; i < pBlock->info.numOfCols; i++) {
      pColInfoData = taosArrayGet(pBlock->pDataBlock, i);
      colDataAppendNULL(pColInfoData, pBlock->info.rows); 
    }
    pBlock->info.rows += 1;
    if (pBlock->info.rows + 1 >= pBlock->info.capacity) {
      break;
    }
  }
  if ((*Ite) == NULL) {
    taosHashClear(pStDeleted);
  }
}

2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534
static void rebuildTimeWindow(SStreamSessionAggOperatorInfo* pInfo, SArray *pWinArray,
    int32_t groupId, int32_t numOfOutput, SExecTaskInfo* pTaskInfo) {
  int32_t size = taosArrayGetSize(pWinArray);
  ASSERT(pInfo->pChildren);
  for (int32_t i = 0; i < size; i++) {
    SResultWindowInfo* pParentWin = taosArrayGet(pWinArray, i);
    SResultRow* pCurResult = NULL;
    setWindowOutputBuf(pParentWin, &pCurResult, pInfo->binfo.pCtx, groupId,
        numOfOutput, pInfo->binfo.rowCellInfoOffset, &pInfo->streamAggSup, pTaskInfo);
    int32_t numOfChildren = taosArrayGetSize(pInfo->pChildren);
    for (int32_t j = 0; j < numOfChildren; j++) {
      SOperatorInfo* pChild = taosArrayGetP(pInfo->pChildren, j);
      SStreamSessionAggOperatorInfo* pChInfo = pChild->info;
      SArray* pChWins = pChInfo->streamAggSup.pResultRows;
      int32_t chWinSize = taosArrayGetSize(pChWins);
      int32_t index = binarySearch(pChWins, chWinSize, pParentWin->win.skey,
          TSDB_ORDER_DESC, getSessionWindowEndkey);
      for (int32_t k = index; k > 0 && k < chWinSize; k++) {
        SResultWindowInfo* pcw = taosArrayGet(pChWins, k);
        if (pParentWin->win.skey <= pcw->win.skey && pcw->win.ekey <= pParentWin->win.ekey) {
          SResultRow* pChResult = NULL;
          setWindowOutputBuf(pcw, &pChResult, pChInfo->binfo.pCtx, groupId,
              numOfOutput, pChInfo->binfo.rowCellInfoOffset, &pChInfo->streamAggSup, pTaskInfo);
          compactFunctions(pInfo->binfo.pCtx, pChInfo->binfo.pCtx, numOfOutput, pTaskInfo);
          continue;
        }
        break;
      }
    }
  }
}

bool isFinalSession(SStreamSessionAggOperatorInfo* pInfo) {
  return pInfo->pChildren != NULL;
}

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typedef SResultWindowInfo* (*__get_win_info_)(void *);
SResultWindowInfo* getSessionWinInfo(void* pData) {
  return (SResultWindowInfo*) pData;
}
SResultWindowInfo* getStateWinInfo(void* pData) {
  return &((SStateWindowInfo*) pData)->winInfo;
}

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int32_t closeSessionWindow(SArray *pWins, STimeWindowAggSupp *pTwSup, SArray *pClosed,
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    int8_t calTrigger, __get_win_info_ fn) {
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  // Todo(liuyao) save window to tdb
  int32_t size =  taosArrayGetSize(pWins);
  for (int32_t i = 0; i < size; i++) {
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    void *pWin = taosArrayGet(pWins, i);
    SResultWindowInfo *pSeWin = fn(pWin);
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    if (pSeWin->win.ekey < pTwSup->maxTs - pTwSup->waterMark) {
      if (!pSeWin->isClosed) {
        SResKeyPos* pos = taosMemoryMalloc(sizeof(SResKeyPos) + sizeof(uint64_t));
        if (pos == NULL) {
          return TSDB_CODE_OUT_OF_MEMORY;
        }
        pos->groupId = 0;
        pos->pos = pSeWin->pos;
        *(int64_t*)pos->key = pSeWin->win.ekey;
        if (!taosArrayPush(pClosed, &pos)) {
          taosMemoryFree(pos);
          return TSDB_CODE_OUT_OF_MEMORY;
        }
        pSeWin->isClosed = true;
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        if (calTrigger == STREAM_TRIGGER_WINDOW_CLOSE) {
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          pSeWin->isOutput = true;
        }
      }
      continue;
    }
    break;
  }
  return TSDB_CODE_SUCCESS;
}

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static SSDataBlock* doStreamSessionAgg(SOperatorInfo* pOperator) {
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  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  SStreamSessionAggOperatorInfo* pInfo = pOperator->info;
  SOptrBasicInfo* pBInfo = &pInfo->binfo;
  if (pOperator->status == OP_RES_TO_RETURN) {
    doBuildDeleteDataBlock(pInfo->pStDeleted, pInfo->pDelRes, &pInfo->pDelIterator);
    if (pInfo->pDelRes->info.rows > 0) {
      return pInfo->pDelRes;
    }
    doBuildResultDatablock(pOperator, pBInfo, &pInfo->groupResInfo,
        pInfo->streamAggSup.pResultBuf);
    if (pBInfo->pRes->info.rows == 0 ||
        !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
      doSetOperatorCompleted(pOperator);
    }
    return pBInfo->pRes->info.rows == 0 ? NULL : pBInfo->pRes;
  }

  _hash_fn_t hashFn = taosGetDefaultHashFunction(TSDB_DATA_TYPE_BINARY);
  SHashObj* pStUpdated = taosHashInit(64, hashFn, true, HASH_NO_LOCK);
  SOperatorInfo* downstream = pOperator->pDownstream[0];
  while (1) {
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
    if (pBlock == NULL) {
      break;
    }
    // the pDataBlock are always the same one, no need to call this again
    setInputDataBlock(pOperator, pBInfo->pCtx, pBlock, TSDB_ORDER_ASC, MAIN_SCAN, true);
     if (pBlock->info.type == STREAM_REPROCESS) {
2607
      SArray *pWins = taosArrayInit(16, sizeof(SResultWindowInfo));
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      doClearSessionWindows(&pInfo->streamAggSup, &pInfo->binfo, pBlock, 0,
2609 2610 2611 2612 2613 2614 2615 2616 2617 2618
          pOperator->numOfExprs, pInfo->gap, pWins);
      if (isFinalSession(pInfo)) {
        int32_t childIndex = 0; //Todo(liuyao) get child id from SSDataBlock
        SOperatorInfo* pChildOp = taosArrayGetP(pInfo->pChildren, childIndex);
        SStreamSessionAggOperatorInfo* pChildInfo = pChildOp->info;
        doClearSessionWindows(&pChildInfo->streamAggSup, &pChildInfo->binfo, pBlock, 0,
            pChildOp->numOfExprs, pChildInfo->gap, NULL);
        rebuildTimeWindow(pInfo, pWins, pInfo->binfo.pRes->info.groupId, pOperator->numOfExprs, pOperator->pTaskInfo);
      }
      taosArrayDestroy(pWins);
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      continue;
    }
2621 2622 2623
    if (isFinalSession(pInfo)) {
      int32_t childIndex = 0; //Todo(liuyao) get child id from SSDataBlock
      SOptrBasicInfo* pChildOp = taosArrayGetP(pInfo->pChildren, childIndex);
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      doStreamSessionAggImpl(pOperator, pBlock, NULL, NULL);
2625
    }
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    doStreamSessionAggImpl(pOperator, pBlock, pStUpdated, pInfo->pStDeleted);
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    pInfo->twAggSup.maxTs = TMAX(pInfo->twAggSup.maxTs, pBlock->info.window.ekey);
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  }
  // restore the value
  pOperator->status = OP_RES_TO_RETURN;
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  SArray* pClosed = taosArrayInit(16, POINTER_BYTES);
  closeSessionWindow(pInfo->streamAggSup.pResultRows, &pInfo->twAggSup, pClosed,
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      pInfo->twAggSup.calTrigger, getSessionWinInfo);
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  SArray* pUpdated = taosArrayInit(16, POINTER_BYTES);
  copyUpdateResult(pStUpdated, pUpdated, pBInfo->pRes->info.groupId);
  taosHashCleanup(pStUpdated);
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  if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_WINDOW_CLOSE) {
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    taosArrayAddAll(pUpdated, pClosed);
  }

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  finalizeUpdatedResult(pOperator->numOfExprs, pInfo->streamAggSup.pResultBuf, pUpdated,
      pInfo->binfo.rowCellInfoOffset);
  initMultiResInfoFromArrayList(&pInfo->groupResInfo, pUpdated);
  blockDataEnsureCapacity(pInfo->binfo.pRes, pOperator->resultInfo.capacity);
  doBuildDeleteDataBlock(pInfo->pStDeleted, pInfo->pDelRes, &pInfo->pDelIterator);
  if (pInfo->pDelRes->info.rows > 0) {
    return pInfo->pDelRes;
  }
  doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo,
      pInfo->streamAggSup.pResultBuf);
  return pBInfo->pRes->info.rows == 0 ? NULL : pBInfo->pRes;
}
2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689

SOperatorInfo* createStreamFinalSessionAggOperatorInfo(SOperatorInfo* downstream,
    SExprInfo* pExprInfo, int32_t numOfCols, SSDataBlock* pResBlock, int64_t gap,
    int32_t tsSlotId, STimeWindowAggSupp* pTwAggSupp, SExecTaskInfo* pTaskInfo) {
  int32_t code = TSDB_CODE_OUT_OF_MEMORY;
  SStreamSessionAggOperatorInfo* pInfo = NULL;
  SOperatorInfo* pOperator = createStreamSessionAggOperatorInfo(downstream, pExprInfo,
      numOfCols, pResBlock, gap, tsSlotId, pTwAggSupp, pTaskInfo);
  if (pOperator == NULL) {
    goto _error;
  }
  pOperator->name = "StreamFinalSessionWindowAggOperator";
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_STREAM_FINAL_SESSION_WINDOW;
  int32_t numOfChild = 1; //Todo(liuyao) get it from phy plan
  pInfo = pOperator->info;
  pInfo->pChildren = taosArrayInit(8, sizeof(void *));
  for (int32_t i = 0; i < numOfChild; i++) {
    SOperatorInfo* pChild = createStreamSessionAggOperatorInfo(NULL, pExprInfo,
        numOfCols, NULL, gap, tsSlotId, pTwAggSupp, pTaskInfo);
    if (pChild == NULL) {
      goto _error;
    }
    taosArrayPush(pInfo->pChildren, &pChild);
  }
  return pOperator;

_error:
  if (pInfo != NULL) {
    destroyStreamSessionAggOperatorInfo(pInfo, numOfCols);
  }

  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
}
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void destroyStreamStateOperatorInfo(void* param, int32_t numOfOutput) {
  SStreamStateAggOperatorInfo* pInfo = (SStreamStateAggOperatorInfo *)param;
  doDestroyBasicInfo(&pInfo->binfo, numOfOutput);
  destroyStreamAggSupporter(&pInfo->streamAggSup);
  cleanupGroupResInfo(&pInfo->groupResInfo);
  if (pInfo->pChildren != NULL) {
    int32_t size = taosArrayGetSize(pInfo->pChildren);
    for (int32_t i = 0; i < size; i++) {
      SOperatorInfo *pChild = taosArrayGetP(pInfo->pChildren, i);
      SStreamSessionAggOperatorInfo* pChInfo = pChild->info;
      destroyStreamSessionAggOperatorInfo(pChInfo, numOfOutput);
      taosMemoryFreeClear(pChild);
      taosMemoryFreeClear(pChInfo);
    }
  }
}

int64_t getStateWinTsKey(void* data, int32_t index) {
  SStateWindowInfo* pStateWin = taosArrayGet(data, index);
  return pStateWin->winInfo.win.ekey;
}

SStateWindowInfo* addNewStateWindow(SArray* pWinInfos, TSKEY ts, char* pKeyData,
    SColumn* pCol) {
  SStateWindowInfo win = {.stateKey.bytes = pCol->bytes,
                          .stateKey.type = pCol->type,
                          .stateKey.pData = taosMemoryCalloc(1, pCol->bytes),
                          .winInfo.pos.offset = -1, .winInfo.pos.pageId = -1,
                          .winInfo.win.skey = ts, .winInfo.win.ekey = ts,
                          .winInfo.isOutput = false,
                          .winInfo.isClosed = false,
                          };
  if (IS_VAR_DATA_TYPE(win.stateKey.type)) {
    varDataCopy(win.stateKey.pData, pKeyData);
  } else {
    memcpy(win.stateKey.pData, pKeyData, win.stateKey.bytes);
  }
  return taosArrayPush(pWinInfos, &win);
}

SStateWindowInfo* insertNewStateWindow(SArray* pWinInfos, TSKEY ts, char* pKeyData,
    int32_t index, SColumn* pCol) {
  SStateWindowInfo win = {.stateKey.bytes = pCol->bytes,
                          .stateKey.type = pCol->type,
                          .stateKey.pData = taosMemoryCalloc(1, pCol->bytes),
                          .winInfo.pos.offset = -1, .winInfo.pos.pageId = -1,
                          .winInfo.win.skey = ts, .winInfo.win.ekey = ts,
                          .winInfo.isOutput = false,
                          .winInfo.isClosed = false,
                          };
  if (IS_VAR_DATA_TYPE(win.stateKey.type)) {
    varDataCopy(win.stateKey.pData, pKeyData);
  } else {
    memcpy(win.stateKey.pData, pKeyData, win.stateKey.bytes);
  }
  return taosArrayInsert(pWinInfos, index, &win);
}

bool isTsInWindow(SStateWindowInfo* pWin, TSKEY ts) {
  if (pWin->winInfo.win.skey <= ts && ts <= pWin->winInfo.win.ekey) {
    return true;
  }
  return false;
}

bool isEqualStateKey(SStateWindowInfo* pWin, char* pKeyData) {
  return pKeyData && compareVal(pKeyData, &pWin->stateKey);
}

SStateWindowInfo* getStateWindowByTs(SArray* pWinInfos, TSKEY ts, int32_t* pIndex) {
  int32_t size = taosArrayGetSize(pWinInfos);
  int32_t index = binarySearch(pWinInfos, size, ts, TSDB_ORDER_DESC, getStateWinTsKey);
  SStateWindowInfo* pWin = NULL;
  if (index >= 0) {
    pWin = taosArrayGet(pWinInfos, index);
    if (isTsInWindow(pWin, ts)) {
      *pIndex = index;
      return pWin;
    }
  }

  if (index + 1 < size) {
    pWin = taosArrayGet(pWinInfos, index + 1);
    if (isTsInWindow(pWin, ts)) {
      *pIndex = index + 1;
      return pWin;
    }
  }
  *pIndex = 0;
  return NULL;
}

SStateWindowInfo* getStateWindow(SArray* pWinInfos, TSKEY ts, char* pKeyData,
    SColumn* pCol, int32_t* pIndex) {
  int32_t size = taosArrayGetSize(pWinInfos);
  if (size == 0) {
    *pIndex = 0;
    return addNewStateWindow(pWinInfos, ts, pKeyData, pCol);
  }
  int32_t index = binarySearch(pWinInfos, size, ts, TSDB_ORDER_DESC, getStateWinTsKey);
  SStateWindowInfo* pWin = NULL;
  if (index >= 0) {
    pWin = taosArrayGet(pWinInfos, index);
    if (isTsInWindow(pWin, ts)) {
      *pIndex = index;
      return pWin;
    }
  }

  if (index + 1 < size) {
    pWin = taosArrayGet(pWinInfos, index + 1);
    if (isTsInWindow(pWin, ts) || isEqualStateKey(pWin, pKeyData)) {
      *pIndex = index + 1;
      return pWin;
    }
  }

  if (index >= 0) {
    pWin = taosArrayGet(pWinInfos, index);
    if (isEqualStateKey(pWin, pKeyData)) {
      *pIndex = index;
      return pWin;
    }
  }

  if (index == size - 1) {
    *pIndex = taosArrayGetSize(pWinInfos);
    return addNewStateWindow(pWinInfos, ts, pKeyData, pCol);
  }
  *pIndex = index + 1;
  return insertNewStateWindow(pWinInfos, ts, pKeyData, index + 1, pCol);
}

int32_t updateStateWindowInfo(SArray* pWinInfos, int32_t winIndex, TSKEY* pTs,
    SColumnInfoData* pKeyCol, int32_t rows, int32_t start, bool* allEqual,
    SHashObj* pSeDelete) {
  *allEqual = true;
  SStateWindowInfo* pWinInfo = taosArrayGet(pWinInfos, winIndex);
  for (int32_t i = start; i < rows; ++i) {
    char* pKeyData = colDataGetData(pKeyCol, i);
    if (!isTsInWindow(pWinInfo, pTs[i])) {
      if(isEqualStateKey(pWinInfo, pKeyData)) {
        int32_t size = taosArrayGetSize(pWinInfos);
        if (winIndex + 1 < size) {
          SStateWindowInfo* pNextWin = taosArrayGet(pWinInfos, winIndex + 1);
          // ts belongs to the next window
          if (pTs[i] >= pNextWin->winInfo.win.skey) {
            return i - start;
          }
        }
      } else {
        return i - start;
      }
    }
    if (pWinInfo->winInfo.win.skey > pTs[i]) {
      if (pSeDelete && pWinInfo->winInfo.isOutput) {
        taosHashPut(pSeDelete, &pWinInfo->winInfo.pos, sizeof(SResultRowPosition), &pWinInfo->winInfo.win.skey, sizeof(TSKEY));
        pWinInfo->winInfo.isOutput = false;
      }
      pWinInfo->winInfo.win.skey = pTs[i];
    }
    pWinInfo->winInfo.win.ekey = TMAX(pWinInfo->winInfo.win.ekey, pTs[i]);
    if (!isEqualStateKey(pWinInfo, pKeyData)) {
      *allEqual = false;
    }
  }
  return rows - start;
}

void deleteWindow(SArray* pWinInfos, int32_t index) {
  ASSERT(index >=0 && index < taosArrayGetSize(pWinInfos));
  taosArrayRemove(pWinInfos, index);
}

static void doClearStateWindows(SStreamAggSupporter* pAggSup, SSDataBlock* pBlock,
    int32_t tsIndex, SColumn* pCol, int32_t keyIndex, SHashObj* pSeUpdated, SHashObj* pSeDeleted) {
  SColumnInfoData* pTsColInfo = taosArrayGet(pBlock->pDataBlock, tsIndex);
  SColumnInfoData* pKeyColInfo = taosArrayGet(pBlock->pDataBlock, keyIndex);
  TSKEY* tsCol = (TSKEY *)pTsColInfo->pData;
  bool allEqual = false;
  int32_t step = 1;
  for (int32_t i = 0; i < pBlock->info.rows; i += step) {
    char* pKeyData = colDataGetData(pKeyColInfo, i);
    int32_t winIndex = 0;
    SStateWindowInfo* pCurWin = getStateWindowByTs(pAggSup->pResultRows, tsCol[i], &winIndex);
    if (!pCurWin) {
      continue;
    }
    step = updateStateWindowInfo(pAggSup->pResultRows, winIndex, tsCol, pKeyColInfo,
        pBlock->info.rows, i, &allEqual, pSeDeleted);
    ASSERT(isTsInWindow(pCurWin, tsCol[i]) || isEqualStateKey(pCurWin, pKeyData));
    taosArrayPush(pAggSup->pScanWindow, &pCurWin->winInfo.win);
    taosHashRemove(pSeUpdated, &pCurWin->winInfo.pos, sizeof(SResultRowPosition));
    deleteWindow(pAggSup->pResultRows, winIndex);
  }
}

static void doStreamStateAggImpl(SOperatorInfo* pOperator,
    SSDataBlock* pSDataBlock, SHashObj* pSeUpdated, SHashObj* pStDeleted) {
  SExecTaskInfo* pTaskInfo = pOperator->pTaskInfo;
  SStreamStateAggOperatorInfo* pInfo = pOperator->info;
  bool masterScan = true;
  int32_t numOfOutput = pOperator->numOfExprs;
  int64_t groupId = pSDataBlock->info.groupId;
  int64_t code = TSDB_CODE_SUCCESS;
  int32_t step = 1;
  bool    ascScan = true;
  TSKEY* tsCols = NULL;
  SResultRow* pResult = NULL;
  int32_t winRows = 0;
  if (pSDataBlock->pDataBlock != NULL) {
    SColumnInfoData* pColDataInfo =
        taosArrayGet(pSDataBlock->pDataBlock, pInfo->primaryTsIndex);
    tsCols = (int64_t *)pColDataInfo->pData;
  } else {
    return ;
  }
  
  SStreamAggSupporter* pAggSup = &pInfo->streamAggSup;
  SColumnInfoData* pKeyColInfo = taosArrayGet(pSDataBlock->pDataBlock, pInfo->stateCol.slotId);
  for(int32_t i = 0; i < pSDataBlock->info.rows; i += winRows) {
    char* pKeyData = colDataGetData(pKeyColInfo, i);
    int32_t winIndex = 0;
    bool allEqual = true;
    SStateWindowInfo* pCurWin =
        getStateWindow(pAggSup->pResultRows, tsCols[i], pKeyData, &pInfo->stateCol, &winIndex);
    winRows = updateStateWindowInfo(pAggSup->pResultRows, winIndex, tsCols, pKeyColInfo,
        pSDataBlock->info.rows, i, &allEqual, pInfo->pSeDeleted);
    if (!allEqual) {
      taosArrayPush(pAggSup->pScanWindow, &pCurWin->winInfo.win);
      taosHashRemove(pSeUpdated, &pCurWin->winInfo.pos, sizeof(SResultRowPosition));
      deleteWindow(pAggSup->pResultRows, winIndex);
      continue;
    }
    code = doOneStateWindowAgg(pInfo, pSDataBlock, &pCurWin->winInfo, &pResult, i, winRows,
        numOfOutput, pTaskInfo);
    if (code != TSDB_CODE_SUCCESS || pResult == NULL) {
      longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
    }
    pCurWin->winInfo.isClosed = false;
    if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_AT_ONCE) {
      code = taosHashPut(pSeUpdated, &pCurWin->winInfo.pos, sizeof(SResultRowPosition), &(pCurWin->winInfo.win.skey), sizeof(TSKEY));
      if (code != TSDB_CODE_SUCCESS) {
        longjmp(pTaskInfo->env, TSDB_CODE_QRY_OUT_OF_MEMORY);
      }
      pCurWin->winInfo.isOutput = true;
    }
  }
}

static SSDataBlock* doStreamStateAgg(SOperatorInfo* pOperator) {
  if (pOperator->status == OP_EXEC_DONE) {
    return NULL;
  }

  SStreamStateAggOperatorInfo* pInfo = pOperator->info;
  SOptrBasicInfo* pBInfo = &pInfo->binfo;
  if (pOperator->status == OP_RES_TO_RETURN) {
    doBuildDeleteDataBlock(pInfo->pSeDeleted, pInfo->pDelRes, &pInfo->pDelIterator);
    if (pInfo->pDelRes->info.rows > 0) {
      return pInfo->pDelRes;
    }
    doBuildResultDatablock(pOperator, pBInfo, &pInfo->groupResInfo,
        pInfo->streamAggSup.pResultBuf);
    if (pBInfo->pRes->info.rows == 0 ||
        !hashRemainDataInGroupInfo(&pInfo->groupResInfo)) {
      doSetOperatorCompleted(pOperator);
    }
    return pBInfo->pRes->info.rows == 0 ? NULL : pBInfo->pRes;
  }

  _hash_fn_t hashFn = taosGetDefaultHashFunction(TSDB_DATA_TYPE_BINARY);
  SHashObj* pSeUpdated = taosHashInit(64, hashFn, true, HASH_NO_LOCK);
  SOperatorInfo* downstream = pOperator->pDownstream[0];
  while (1) {
    SSDataBlock* pBlock = downstream->fpSet.getNextFn(downstream);
    if (pBlock == NULL) {
      break;
    }
    // the pDataBlock are always the same one, no need to call this again
    setInputDataBlock(pOperator, pBInfo->pCtx, pBlock, TSDB_ORDER_ASC, MAIN_SCAN, true);
    if (pBlock->info.type == STREAM_REPROCESS) {
      doClearStateWindows(&pInfo->streamAggSup, pBlock, pInfo->primaryTsIndex,
          &pInfo->stateCol, pInfo->stateCol.slotId, pSeUpdated, pInfo->pSeDeleted);
      continue;
    }
    doStreamStateAggImpl(pOperator, pBlock, pSeUpdated, pInfo->pSeDeleted);
    pInfo->twAggSup.maxTs = TMAX(pInfo->twAggSup.maxTs, pBlock->info.window.ekey);
  }
  // restore the value
  pOperator->status = OP_RES_TO_RETURN;
  
  SArray* pClosed = taosArrayInit(16, POINTER_BYTES);
  closeSessionWindow(pInfo->streamAggSup.pResultRows, &pInfo->twAggSup, pClosed,
      pInfo->twAggSup.calTrigger, getStateWinInfo);
  SArray* pUpdated = taosArrayInit(16, POINTER_BYTES);
  copyUpdateResult(pSeUpdated, pUpdated, pBInfo->pRes->info.groupId);
  taosHashCleanup(pSeUpdated);
  if (pInfo->twAggSup.calTrigger == STREAM_TRIGGER_WINDOW_CLOSE) {
    taosArrayAddAll(pUpdated, pClosed);
  }

  finalizeUpdatedResult(pOperator->numOfExprs, pInfo->streamAggSup.pResultBuf, pUpdated,
      pInfo->binfo.rowCellInfoOffset);
  initMultiResInfoFromArrayList(&pInfo->groupResInfo, pUpdated);
  blockDataEnsureCapacity(pInfo->binfo.pRes, pOperator->resultInfo.capacity);
  doBuildDeleteDataBlock(pInfo->pSeDeleted, pInfo->pDelRes, &pInfo->pDelIterator);
  if (pInfo->pDelRes->info.rows > 0) {
    return pInfo->pDelRes;
  }
  doBuildResultDatablock(pOperator, &pInfo->binfo, &pInfo->groupResInfo,
      pInfo->streamAggSup.pResultBuf);
  return pBInfo->pRes->info.rows == 0 ? NULL : pBInfo->pRes;
}

SOperatorInfo* createStreamStateAggOperatorInfo(SOperatorInfo* downstream,
    SPhysiNode* pPhyNode, SExecTaskInfo* pTaskInfo) {
  SStreamStateWinodwPhysiNode* pStateNode = (SStreamStateWinodwPhysiNode *)pPhyNode;
  SSDataBlock* pResBlock = createResDataBlock(pPhyNode->pOutputDataBlockDesc);
  int32_t tsSlotId = ((SColumnNode *)pStateNode->window.pTspk)->slotId;
  SColumnNode* pColNode = (SColumnNode *)((STargetNode *)pStateNode->pStateKey)->pExpr;

  SStreamStateAggOperatorInfo* pInfo =
      taosMemoryCalloc(1, sizeof(SStreamStateAggOperatorInfo));
  SOperatorInfo* pOperator = taosMemoryCalloc(1, sizeof(SOperatorInfo));
  if (pInfo == NULL || pOperator == NULL) {
    goto _error;
  }

  int32_t numOfCols = 0;
  SExprInfo* pExprInfo = createExprInfo(pStateNode->window.pFuncs, NULL, &numOfCols);

  pInfo->stateCol = extractColumnFromColumnNode(pColNode);
  initResultSizeInfo(pOperator, 4096);
  initResultRowInfo(&pInfo->binfo.resultRowInfo, 8);
  pInfo->twAggSup = (STimeWindowAggSupp) {.waterMark = pStateNode->window.watermark,
      .calTrigger = pStateNode->window.triggerType,
      .maxTs = INT64_MIN,
      .winMap = NULL,};
  initExecTimeWindowInfo(&pInfo->twAggSup.timeWindowData, &pTaskInfo->window);
  int32_t code = initStateAggSupporter(&pInfo->streamAggSup, "StreamStateAggOperatorInfo");
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  code = initBiasicInfo(&pInfo->binfo, pExprInfo, numOfCols, pResBlock,
      pInfo->streamAggSup.pResultBuf);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }

  pInfo->streamAggSup.resultRowSize = getResultRowSize(pInfo->binfo.pCtx, numOfCols);
  pInfo->pDummyCtx = (SqlFunctionCtx*)taosMemoryCalloc(numOfCols, sizeof(SqlFunctionCtx));
  if (pInfo->pDummyCtx == NULL) {
    goto _error;
  }

  initDummyFunction(pInfo->pDummyCtx, pInfo->binfo.pCtx, numOfCols);
  pInfo->primaryTsIndex = tsSlotId;
  pInfo->order = TSDB_ORDER_ASC;
  _hash_fn_t hashFn = taosGetDefaultHashFunction(TSDB_DATA_TYPE_BINARY);
  pInfo->pSeDeleted = taosHashInit(64, hashFn, true, HASH_NO_LOCK);
  pInfo->pDelIterator = NULL;
  pInfo->pDelRes = createOneDataBlock(pResBlock, false);
  blockDataEnsureCapacity(pInfo->pDelRes, 64);
  pInfo->pChildren = NULL;

  pOperator->name = "StreamStateAggOperator";
  pOperator->operatorType = QUERY_NODE_PHYSICAL_PLAN_STREAM_STATE_WINDOW;
  pOperator->blocking = true;
  pOperator->status = OP_NOT_OPENED;
  pOperator->numOfExprs = numOfCols;
  pOperator->pExpr = pExprInfo;
  pOperator->pTaskInfo = pTaskInfo;
  pOperator->info = pInfo;
  pOperator->fpSet = createOperatorFpSet(operatorDummyOpenFn, doStreamStateAgg, NULL,
      NULL, destroyStreamStateOperatorInfo, aggEncodeResultRow, aggDecodeResultRow, NULL);
  initDownStream(downstream, &pInfo->streamAggSup, 0, pInfo->twAggSup.waterMark,
      pOperator->operatorType);
  code = appendDownstream(pOperator, &downstream, 1);
  if (code != TSDB_CODE_SUCCESS) {
    goto _error;
  }
  return pOperator;

_error:
  destroyStreamStateOperatorInfo(pInfo, numOfCols);
  taosMemoryFreeClear(pInfo);
  taosMemoryFreeClear(pOperator);
  pTaskInfo->code = code;
  return NULL;
}