builtinsimpl.c 167.6 KB
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/*
 * Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
 *
 * This program is free software: you can use, redistribute, and/or modify
 * it under the terms of the GNU Affero General Public License, version 3
 * or later ("AGPL"), as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.
 *
 * You should have received a copy of the GNU Affero General Public License
 * along with this program. If not, see <http://www.gnu.org/licenses/>.
 */

#include "builtinsimpl.h"
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#include "cJSON.h"
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#include "function.h"
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#include "querynodes.h"
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#include "taggfunction.h"
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#include "tcompare.h"
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#include "tdatablock.h"
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#include "tdigest.h"
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#include "tglobal.h"
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#include "thistogram.h"
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#include "tpercentile.h"
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#define HISTOGRAM_MAX_BINS_NUM 1000
#define MAVG_MAX_POINTS_NUM    1000
#define SAMPLE_MAX_POINTS_NUM  1000
#define TAIL_MAX_POINTS_NUM    100
#define TAIL_MAX_OFFSET        100
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#define UNIQUE_MAX_RESULT_SIZE (1024 * 1024 * 10)
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#define HLL_BUCKET_BITS 14  // The bits of the bucket
#define HLL_DATA_BITS   (64 - HLL_BUCKET_BITS)
#define HLL_BUCKETS     (1 << HLL_BUCKET_BITS)
#define HLL_BUCKET_MASK (HLL_BUCKETS - 1)
#define HLL_ALPHA_INF   0.721347520444481703680  // constant for 0.5/ln(2)
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typedef struct SSumRes {
  union {
    int64_t  isum;
    uint64_t usum;
    double   dsum;
  };
} SSumRes;

typedef struct SAvgRes {
  double  result;
  SSumRes sum;
  int64_t count;
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  int16_t type;  // store the original input type, used in merge function
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} SAvgRes;

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typedef struct STuplePos {
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  int32_t pageId;
  int32_t offset;
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} STuplePos;

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typedef struct STopBotResItem {
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  SVariant  v;
  uint64_t  uid;  // it is a table uid, used to extract tag data during building of the final result for the tag data
  STuplePos tuplePos;  // tuple data of this chosen row
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} STopBotResItem;

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typedef struct STopBotRes {
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  int32_t         maxSize;
  int16_t         type;  // store the original input type, used in merge function
  int32_t         numOfItems;
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  STopBotResItem* pItems;
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} STopBotRes;

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typedef struct SFirstLastRes {
  bool    hasResult;
  int32_t bytes;
  char    buf[];
} SFirstLastRes;

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typedef struct SStddevRes {
  double  result;
  int64_t count;
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  union {
    double  quadraticDSum;
    int64_t quadraticISum;
  };
  union {
    double  dsum;
    int64_t isum;
  };
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  int16_t type;
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} SStddevRes;

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typedef struct SLeastSQRInfo {
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  double  matrix[2][3];
  double  startVal;
  double  stepVal;
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  int64_t num;
} SLeastSQRInfo;

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typedef struct SPercentileInfo {
  double      result;
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  tMemBucket* pMemBucket;
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  int32_t     stage;
  double      minval;
  double      maxval;
  int64_t     numOfElems;
} SPercentileInfo;

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typedef struct SAPercentileInfo {
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  double          result;
  double          percent;
  int8_t          algo;
  SHistogramInfo* pHisto;
  TDigest*        pTDigest;
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} SAPercentileInfo;

typedef enum {
  APERCT_ALGO_UNKNOWN = 0,
  APERCT_ALGO_DEFAULT,
  APERCT_ALGO_TDIGEST,
} EAPerctAlgoType;

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typedef struct SDiffInfo {
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  bool hasPrev;
  bool includeNull;
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  bool ignoreNegative;  // replace the ignore with case when
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  bool firstOutput;
  union {
    int64_t i64;
    double  d64;
  } prev;
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  int64_t prevTs;
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} SDiffInfo;

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typedef struct SSpreadInfo {
  double result;
  bool   hasResult;
  double min;
  double max;
} SSpreadInfo;

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typedef struct SElapsedInfo {
  double  result;
  TSKEY   min;
  TSKEY   max;
  int64_t timeUnit;
} SElapsedInfo;

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typedef struct SHistoFuncBin {
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  double  lower;
  double  upper;
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  int64_t count;
  double  percentage;
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} SHistoFuncBin;

typedef struct SHistoFuncInfo {
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  int32_t       numOfBins;
  int32_t       totalCount;
  bool          normalized;
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  SHistoFuncBin bins[];
} SHistoFuncInfo;

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typedef enum { UNKNOWN_BIN = 0, USER_INPUT_BIN, LINEAR_BIN, LOG_BIN } EHistoBinType;
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typedef struct SHLLFuncInfo {
  uint64_t result;
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  uint8_t  buckets[HLL_BUCKETS];
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} SHLLInfo;

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typedef struct SStateInfo {
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  union {
    int64_t count;
    int64_t durationStart;
  };
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} SStateInfo;

typedef enum {
  STATE_OPER_INVALID = 0,
  STATE_OPER_LT,
  STATE_OPER_GT,
  STATE_OPER_LE,
  STATE_OPER_GE,
  STATE_OPER_NE,
  STATE_OPER_EQ,
} EStateOperType;
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typedef struct SMavgInfo {
  int32_t pos;
  double  sum;
  int32_t numOfPoints;
  bool    pointsMeet;
  double  points[];
} SMavgInfo;

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typedef struct SSampleInfo {
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  int32_t  samples;
  int32_t  totalPoints;
  int32_t  numSampled;
  uint8_t  colType;
  int16_t  colBytes;
  char*    data;
  int64_t* timestamp;
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} SSampleInfo;

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typedef struct STailItem {
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  int64_t timestamp;
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  bool    isNull;
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  char    data[];
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} STailItem;
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typedef struct STailInfo {
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  int32_t     numOfPoints;
  int32_t     numAdded;
  int32_t     offset;
  uint8_t     colType;
  int16_t     colBytes;
  STailItem** pItems;
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} STailInfo;

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typedef struct SUniqueItem {
  int64_t timestamp;
  bool    isNull;
  char    data[];
} SUniqueItem;

typedef struct SUniqueInfo {
  int32_t   numOfPoints;
  uint8_t   colType;
  int16_t   colBytes;
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  bool      hasNull;  // null is not hashable, handle separately
  SHashObj* pHash;
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  char      pItems[];
} SUniqueInfo;

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#define SET_VAL(_info, numOfElem, res) \
  do {                                 \
    if ((numOfElem) <= 0) {            \
      break;                           \
    }                                  \
    (_info)->numOfRes = (res);         \
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  } while (0)

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#define GET_TS_LIST(x)    ((TSKEY*)((x)->ptsList))
#define GET_TS_DATA(x, y) (GET_TS_LIST(x)[(y)])

#define DO_UPDATE_TAG_COLUMNS_WITHOUT_TS(ctx)                      \
  do {                                                             \
    for (int32_t _i = 0; _i < (ctx)->tagInfo.numOfTagCols; ++_i) { \
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      SqlFunctionCtx* __ctx = (ctx)->tagInfo.pTagCtxList[_i];      \
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      __ctx->fpSet.process(__ctx);                                 \
    }                                                              \
  } while (0);

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#define DO_UPDATE_SUBSID_RES(ctx, ts)                          \
  do {                                                         \
    for (int32_t _i = 0; _i < (ctx)->subsidiaries.num; ++_i) { \
      SqlFunctionCtx* __ctx = (ctx)->subsidiaries.pCtx[_i];    \
      if (__ctx->functionId == FUNCTION_TS_DUMMY) {            \
        __ctx->tag.i = (ts);                                   \
        __ctx->tag.nType = TSDB_DATA_TYPE_BIGINT;              \
      }                                                        \
      __ctx->fpSet.process(__ctx);                             \
    }                                                          \
  } while (0)

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#define UPDATE_DATA(ctx, left, right, num, sign, _ts) \
  do {                                                \
    if (((left) < (right)) ^ (sign)) {                \
      (left) = (right);                               \
      DO_UPDATE_SUBSID_RES(ctx, _ts);                 \
      (num) += 1;                                     \
    }                                                 \
  } while (0)

#define LOOPCHECK_N(val, _col, ctx, _t, _nrow, _start, sign, num)        \
  do {                                                                   \
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    _t* d = (_t*)((_col)->pData);                                        \
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    for (int32_t i = (_start); i < (_nrow) + (_start); ++i) {            \
      if (((_col)->hasNull) && colDataIsNull_f((_col)->nullbitmap, i)) { \
        continue;                                                        \
      }                                                                  \
      TSKEY ts = (ctx)->ptsList != NULL ? GET_TS_DATA(ctx, i) : 0;       \
      UPDATE_DATA(ctx, val, d[i], num, sign, ts);                        \
    }                                                                    \
  } while (0)

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bool dummyGetEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* UNUSED_PARAM(pEnv)) { return true; }
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bool dummyInit(SqlFunctionCtx* UNUSED_PARAM(pCtx), SResultRowEntryInfo* UNUSED_PARAM(pResultInfo)) { return true; }
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int32_t dummyProcess(SqlFunctionCtx* UNUSED_PARAM(pCtx)) { return 0; }
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int32_t dummyFinalize(SqlFunctionCtx* UNUSED_PARAM(pCtx), SSDataBlock* UNUSED_PARAM(pBlock)) { return 0; }
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bool functionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (pResultInfo->initialized) {
    return false;
  }

  if (pCtx->pOutput != NULL) {
    memset(pCtx->pOutput, 0, (size_t)pCtx->resDataInfo.bytes);
  }

  initResultRowEntry(pResultInfo, pCtx->resDataInfo.interBufSize);
  return true;
}

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int32_t functionFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
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  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
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  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);
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  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  pResInfo->isNullRes = (pResInfo->numOfRes == 0) ? 1 : 0;
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  char* in = GET_ROWCELL_INTERBUF(pResInfo);
  colDataAppend(pCol, pBlock->info.rows, in, pResInfo->isNullRes);

  return pResInfo->numOfRes;
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}

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int32_t firstCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
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  char*                pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
  int32_t              type = pDestCtx->input.pData[0]->info.type;
  int32_t              bytes = pDestCtx->input.pData[0]->info.bytes;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
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  char*                pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
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  if (pSResInfo->numOfRes != 0 && (pDResInfo->numOfRes == 0 || *(TSKEY*)(pDBuf + bytes) > *(TSKEY*)(pSBuf + bytes))) {
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    memcpy(pDBuf, pSBuf, bytes);
    *(TSKEY*)(pDBuf + bytes) = *(TSKEY*)(pSBuf + bytes);
    pDResInfo->numOfRes = 1;
  }
  return TSDB_CODE_SUCCESS;
}

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int32_t functionFinalizeWithResultBuf(SqlFunctionCtx* pCtx, SSDataBlock* pBlock, char* finalResult) {
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  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
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  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  pResInfo->isNullRes = (pResInfo->numOfRes == 0) ? 1 : 0;
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  cleanupResultRowEntry(pResInfo);

  char* in = finalResult;
  colDataAppend(pCol, pBlock->info.rows, in, pResInfo->isNullRes);

  return pResInfo->numOfRes;
}

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EFuncDataRequired countDataRequired(SFunctionNode* pFunc, STimeWindow* pTimeWindow) {
  SNode* pParam = nodesListGetNode(pFunc->pParameterList, 0);
  if (QUERY_NODE_COLUMN == nodeType(pParam) && PRIMARYKEY_TIMESTAMP_COL_ID == ((SColumnNode*)pParam)->colId) {
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    return FUNC_DATA_REQUIRED_NOT_LOAD;
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  }
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  return FUNC_DATA_REQUIRED_STATIS_LOAD;
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}
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bool getCountFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(int64_t);
  return true;
}

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static FORCE_INLINE int32_t getNumOfElems(SqlFunctionCtx* pCtx) {
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  int32_t numOfElem = 0;

  /*
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   * 1. column data missing (schema modified) causes pInputCol->hasNull == true. pInput->colDataAggIsSet == true;
   * 2. for general non-primary key columns, pInputCol->hasNull may be true or false, pInput->colDataAggIsSet == true;
   * 3. for primary key column, pInputCol->hasNull always be false, pInput->colDataAggIsSet == false;
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   */
  SInputColumnInfoData* pInput = &pCtx->input;
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  SColumnInfoData*      pInputCol = pInput->pData[0];
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  if (pInput->colDataAggIsSet && pInput->totalRows == pInput->numOfRows) {
    numOfElem = pInput->numOfRows - pInput->pColumnDataAgg[0]->numOfNull;
    ASSERT(numOfElem >= 0);
  } else {
    if (pInputCol->hasNull) {
      for (int32_t i = pInput->startRowIndex; i < pInput->startRowIndex + pInput->numOfRows; ++i) {
        if (colDataIsNull(pInputCol, pInput->totalRows, i, NULL)) {
          continue;
        }
        numOfElem += 1;
      }
    } else {
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      // when counting on the primary time stamp column and no statistics data is presented, use the size value
      // directly.
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      numOfElem = pInput->numOfRows;
    }
  }
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  return numOfElem;
}
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/*
 * count function does need the finalize, if data is missing, the default value, which is 0, is used
 * count function does not use the pCtx->interResBuf to keep the intermediate buffer
 */
int32_t countFunction(SqlFunctionCtx* pCtx) {
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  int32_t numOfElem = getNumOfElems(pCtx);
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  SResultRowEntryInfo*  pResInfo = GET_RES_INFO(pCtx);
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  SInputColumnInfoData* pInput = &pCtx->input;
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  int32_t type = pInput->pData[0]->info.type;
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  char* buf = GET_ROWCELL_INTERBUF(pResInfo);
  if (IS_NULL_TYPE(type)) {
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    // select count(NULL) returns 0
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    numOfElem = 1;
    *((int64_t*)buf) = 0;
  } else {
    *((int64_t*)buf) += numOfElem;
  }
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  if (tsCountAlwaysReturnValue) {
    pResInfo->numOfRes = 1;
  } else {
    SET_VAL(pResInfo, 1, 1);
  }

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  return TSDB_CODE_SUCCESS;
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}

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int32_t countInvertFunction(SqlFunctionCtx* pCtx) {
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  int32_t numOfElem = getNumOfElems(pCtx);
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  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  char*                buf = GET_ROWCELL_INTERBUF(pResInfo);
  *((int64_t*)buf) -= numOfElem;

  SET_VAL(pResInfo, *((int64_t*)buf), 1);
  return TSDB_CODE_SUCCESS;
}

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int32_t combineFunction(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
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  char*                pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  char*                pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
  *((int64_t*)pDBuf) += *((int64_t*)pSBuf);

  SET_VAL(pDResInfo, *((int64_t*)pDBuf), 1);
  return TSDB_CODE_SUCCESS;
}

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#define LIST_ADD_N(_res, _col, _start, _rows, _t, numOfElem)             \
  do {                                                                   \
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    _t* d = (_t*)(_col->pData);                                          \
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    for (int32_t i = (_start); i < (_rows) + (_start); ++i) {            \
      if (((_col)->hasNull) && colDataIsNull_f((_col)->nullbitmap, i)) { \
        continue;                                                        \
      };                                                                 \
      (_res) += (d)[i];                                                  \
      (numOfElem)++;                                                     \
    }                                                                    \
  } while (0)

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#define LIST_SUB_N(_res, _col, _start, _rows, _t, numOfElem)             \
  do {                                                                   \
    _t* d = (_t*)(_col->pData);                                          \
    for (int32_t i = (_start); i < (_rows) + (_start); ++i) {            \
      if (((_col)->hasNull) && colDataIsNull_f((_col)->nullbitmap, i)) { \
        continue;                                                        \
      };                                                                 \
      (_res) -= (d)[i];                                                  \
      (numOfElem)++;                                                     \
    }                                                                    \
  } while (0)

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int32_t sumFunction(SqlFunctionCtx* pCtx) {
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  int32_t numOfElem = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
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  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
  int32_t               type = pInput->pData[0]->info.type;
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  SSumRes* pSumRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
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  if (IS_NULL_TYPE(type)) {
    GET_RES_INFO(pCtx)->isNullRes = 1;
    numOfElem = 1;
    goto _sum_over;
  }

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  if (pInput->colDataAggIsSet) {
    numOfElem = pInput->numOfRows - pAgg->numOfNull;
    ASSERT(numOfElem >= 0);

    if (IS_SIGNED_NUMERIC_TYPE(type)) {
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      pSumRes->isum += pAgg->sum;
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    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
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      pSumRes->usum += pAgg->sum;
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    } else if (IS_FLOAT_TYPE(type)) {
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      pSumRes->dsum += GET_DOUBLE_VAL((const char*)&(pAgg->sum));
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    }
  } else {  // computing based on the true data block
    SColumnInfoData* pCol = pInput->pData[0];

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    int32_t start = pInput->startRowIndex;
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    int32_t numOfRows = pInput->numOfRows;

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    if (IS_SIGNED_NUMERIC_TYPE(type) || type == TSDB_DATA_TYPE_BOOL) {
      if (type == TSDB_DATA_TYPE_TINYINT || type == TSDB_DATA_TYPE_BOOL) {
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        LIST_ADD_N(pSumRes->isum, pCol, start, numOfRows, int8_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_SMALLINT) {
        LIST_ADD_N(pSumRes->isum, pCol, start, numOfRows, int16_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_INT) {
        LIST_ADD_N(pSumRes->isum, pCol, start, numOfRows, int32_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_BIGINT) {
        LIST_ADD_N(pSumRes->isum, pCol, start, numOfRows, int64_t, numOfElem);
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      }
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    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      if (type == TSDB_DATA_TYPE_UTINYINT) {
        LIST_ADD_N(pSumRes->usum, pCol, start, numOfRows, uint8_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_USMALLINT) {
        LIST_ADD_N(pSumRes->usum, pCol, start, numOfRows, uint16_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_UINT) {
        LIST_ADD_N(pSumRes->usum, pCol, start, numOfRows, uint32_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_UBIGINT) {
        LIST_ADD_N(pSumRes->usum, pCol, start, numOfRows, uint64_t, numOfElem);
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      }
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    } else if (type == TSDB_DATA_TYPE_DOUBLE) {
      LIST_ADD_N(pSumRes->dsum, pCol, start, numOfRows, double, numOfElem);
    } else if (type == TSDB_DATA_TYPE_FLOAT) {
      LIST_ADD_N(pSumRes->dsum, pCol, start, numOfRows, float, numOfElem);
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    }
  }

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  // check for overflow
536
  if (IS_FLOAT_TYPE(type) && (isinf(pSumRes->dsum) || isnan(pSumRes->dsum))) {
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    GET_RES_INFO(pCtx)->isNullRes = 1;
  }

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_sum_over:
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  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);
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  return TSDB_CODE_SUCCESS;
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}

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int32_t sumInvertFunction(SqlFunctionCtx* pCtx) {
  int32_t numOfElem = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
  int32_t               type = pInput->pData[0]->info.type;

  SSumRes* pSumRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  if (pInput->colDataAggIsSet) {
    numOfElem = pInput->numOfRows - pAgg->numOfNull;
    ASSERT(numOfElem >= 0);

    if (IS_SIGNED_NUMERIC_TYPE(type)) {
      pSumRes->isum -= pAgg->sum;
    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      pSumRes->usum -= pAgg->sum;
    } else if (IS_FLOAT_TYPE(type)) {
      pSumRes->dsum -= GET_DOUBLE_VAL((const char*)&(pAgg->sum));
    }
  } else {  // computing based on the true data block
    SColumnInfoData* pCol = pInput->pData[0];

    int32_t start = pInput->startRowIndex;
    int32_t numOfRows = pInput->numOfRows;

    if (IS_SIGNED_NUMERIC_TYPE(type) || type == TSDB_DATA_TYPE_BOOL) {
      if (type == TSDB_DATA_TYPE_TINYINT || type == TSDB_DATA_TYPE_BOOL) {
        LIST_SUB_N(pSumRes->isum, pCol, start, numOfRows, int8_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_SMALLINT) {
        LIST_SUB_N(pSumRes->isum, pCol, start, numOfRows, int16_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_INT) {
        LIST_SUB_N(pSumRes->isum, pCol, start, numOfRows, int32_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_BIGINT) {
        LIST_SUB_N(pSumRes->isum, pCol, start, numOfRows, int64_t, numOfElem);
      }
    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      if (type == TSDB_DATA_TYPE_UTINYINT) {
        LIST_SUB_N(pSumRes->usum, pCol, start, numOfRows, uint8_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_USMALLINT) {
        LIST_SUB_N(pSumRes->usum, pCol, start, numOfRows, uint16_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_UINT) {
        LIST_SUB_N(pSumRes->usum, pCol, start, numOfRows, uint32_t, numOfElem);
      } else if (type == TSDB_DATA_TYPE_UBIGINT) {
        LIST_SUB_N(pSumRes->usum, pCol, start, numOfRows, uint64_t, numOfElem);
      }
    } else if (type == TSDB_DATA_TYPE_DOUBLE) {
      LIST_SUB_N(pSumRes->dsum, pCol, start, numOfRows, double, numOfElem);
    } else if (type == TSDB_DATA_TYPE_FLOAT) {
      LIST_SUB_N(pSumRes->dsum, pCol, start, numOfRows, float, numOfElem);
    }
  }

  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);
  return TSDB_CODE_SUCCESS;
}

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int32_t sumCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
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  SSumRes*             pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
  int32_t              type = pDestCtx->input.pData[0]->info.type;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
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  SSumRes*             pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
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  if (IS_SIGNED_NUMERIC_TYPE(type) || type == TSDB_DATA_TYPE_BOOL) {
    pDBuf->isum += pSBuf->isum;
  } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
    pDBuf->usum += pSBuf->usum;
  } else if (type == TSDB_DATA_TYPE_DOUBLE || type == TSDB_DATA_TYPE_FLOAT) {
    pDBuf->dsum += pSBuf->dsum;
  }
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  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
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  return TSDB_CODE_SUCCESS;
}

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bool getSumFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
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  pEnv->calcMemSize = sizeof(SSumRes);
  return true;
}

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int32_t getAvgInfoSize() { return (int32_t)sizeof(SAvgRes); }

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bool getAvgFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
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  pEnv->calcMemSize = sizeof(SAvgRes);
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  return true;
}

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bool avgFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  SAvgRes* pRes = GET_ROWCELL_INTERBUF(pResultInfo);
  memset(pRes, 0, sizeof(SAvgRes));
  return true;
}

int32_t avgFunction(SqlFunctionCtx* pCtx) {
  int32_t numOfElem = 0;

  SInputColumnInfoData* pInput = &pCtx->input;
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  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
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  int32_t               type = pInput->pData[0]->info.type;

  SAvgRes* pAvgRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
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  pAvgRes->type = type;
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  // computing based on the true data block
  SColumnInfoData* pCol = pInput->pData[0];

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

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  if (IS_NULL_TYPE(type)) {
    GET_RES_INFO(pCtx)->isNullRes = 1;
    numOfElem = 1;
    goto _avg_over;
  }

668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689
  if (pInput->colDataAggIsSet) {
    numOfElem = numOfRows - pAgg->numOfNull;
    ASSERT(numOfElem >= 0);

    pAvgRes->count += numOfElem;
    if (IS_INTEGER_TYPE(type)) {
      pAvgRes->sum.isum += pAgg->sum;
    } else if (IS_FLOAT_TYPE(type)) {
      pAvgRes->sum.dsum += GET_DOUBLE_VAL((const char*)&(pAgg->sum));
    }
  } else {  // computing based on the true data block
    switch (type) {
      case TSDB_DATA_TYPE_TINYINT: {
        int8_t* plist = (int8_t*)pCol->pData;
        for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
          if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
            continue;
          }

          numOfElem += 1;
          pAvgRes->count += 1;
          pAvgRes->sum.isum += plist[i];
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        }

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        break;
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      }

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      case TSDB_DATA_TYPE_SMALLINT: {
        int16_t* plist = (int16_t*)pCol->pData;
        for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
          if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
            continue;
          }
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          numOfElem += 1;
          pAvgRes->count += 1;
          pAvgRes->sum.isum += plist[i];
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        }
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        break;
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      }

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      case TSDB_DATA_TYPE_INT: {
        int32_t* plist = (int32_t*)pCol->pData;
        for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
          if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
            continue;
          }

          numOfElem += 1;
          pAvgRes->count += 1;
          pAvgRes->sum.isum += plist[i];
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        }

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        break;
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      }

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      case TSDB_DATA_TYPE_BIGINT: {
        int64_t* plist = (int64_t*)pCol->pData;
        for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
          if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
            continue;
          }
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          numOfElem += 1;
          pAvgRes->count += 1;
          pAvgRes->sum.isum += plist[i];
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        }
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        break;
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      }

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      case TSDB_DATA_TYPE_FLOAT: {
        float* plist = (float*)pCol->pData;
        for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
          if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
            continue;
          }
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          numOfElem += 1;
          pAvgRes->count += 1;
          pAvgRes->sum.dsum += plist[i];
        }
        break;
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      }

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      case TSDB_DATA_TYPE_DOUBLE: {
        double* plist = (double*)pCol->pData;
        for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
          if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
            continue;
          }
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          numOfElem += 1;
          pAvgRes->count += 1;
          pAvgRes->sum.dsum += plist[i];
        }
        break;
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      }

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      default:
        break;
    }
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  }

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_avg_over:
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  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);
  return TSDB_CODE_SUCCESS;
}

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static void avgTransferInfo(SAvgRes* pInput, SAvgRes* pOutput) {
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  pOutput->type = pInput->type;
  if (IS_INTEGER_TYPE(pOutput->type)) {
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    pOutput->sum.isum += pInput->sum.isum;
  } else {
    pOutput->sum.dsum += pInput->sum.dsum;
  }

  pOutput->count += pInput->count;

  return;
}

int32_t avgFunctionMerge(SqlFunctionCtx* pCtx) {
  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData*      pCol = pInput->pData[0];
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SAvgRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  int32_t start = pInput->startRowIndex;
  char*   data = colDataGetData(pCol, start);
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  SAvgRes* pInputInfo = (SAvgRes*)varDataVal(data);
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  avgTransferInfo(pInputInfo, pInfo);

  SET_VAL(GET_RES_INFO(pCtx), 1, 1);

  return TSDB_CODE_SUCCESS;
}

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#define LIST_AVG_N(sumT, T)                                               \
  do {                                                                    \
    T* plist = (T*)pCol->pData;                                           \
    for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) { \
      if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {        \
        continue;                                                         \
      }                                                                   \
                                                                          \
      numOfElem += 1;                                                     \
      pAvgRes->count -= 1;                                                \
      sumT -= plist[i];                                                   \
    }                                                                     \
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  } while (0)

int32_t avgInvertFunction(SqlFunctionCtx* pCtx) {
  int32_t numOfElem = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
  int32_t               type = pInput->pData[0]->info.type;

  SAvgRes* pAvgRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  // computing based on the true data block
  SColumnInfoData* pCol = pInput->pData[0];

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

  switch (type) {
    case TSDB_DATA_TYPE_TINYINT: {
      LIST_AVG_N(pAvgRes->sum.isum, int8_t);
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      LIST_AVG_N(pAvgRes->sum.isum, int16_t);
      break;
    }
    case TSDB_DATA_TYPE_INT: {
      LIST_AVG_N(pAvgRes->sum.isum, int32_t);
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
      LIST_AVG_N(pAvgRes->sum.isum, int64_t);
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
      LIST_AVG_N(pAvgRes->sum.dsum, float);
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      LIST_AVG_N(pAvgRes->sum.dsum, double);
      break;
    }
    default:
      break;
  }

  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);
  return TSDB_CODE_SUCCESS;
}

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int32_t avgCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
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  SAvgRes*             pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
  int32_t              type = pDestCtx->input.pData[0]->info.type;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
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  SAvgRes*             pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
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  if (IS_INTEGER_TYPE(type)) {
    pDBuf->sum.isum += pSBuf->sum.isum;
  } else {
    pDBuf->sum.dsum += pSBuf->sum.dsum;
  }
  pDBuf->count += pSBuf->count;

  return TSDB_CODE_SUCCESS;
}

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int32_t avgFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
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  SInputColumnInfoData* pInput = &pCtx->input;
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  SAvgRes* pAvgRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
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  int32_t  type = pAvgRes->type;
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  if (IS_INTEGER_TYPE(type)) {
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    pAvgRes->result = pAvgRes->sum.isum / ((double)pAvgRes->count);
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  } else {
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    pAvgRes->result = pAvgRes->sum.dsum / ((double)pAvgRes->count);
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  }
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  // check for overflow
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  if (isinf(pAvgRes->result) || isnan(pAvgRes->result)) {
    GET_RES_INFO(pCtx)->isNullRes = 1;
  }

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  return functionFinalize(pCtx, pBlock);
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}

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int32_t avgPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SAvgRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t  resultBytes = getAvgInfoSize();
  char*    res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));

  memcpy(varDataVal(res), pInfo, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return pResInfo->numOfRes;
}

927
EFuncDataRequired statisDataRequired(SFunctionNode* pFunc, STimeWindow* pTimeWindow) {
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  return FUNC_DATA_REQUIRED_STATIS_LOAD;
}

931
typedef struct SMinmaxResInfo {
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  bool      assign;  // assign the first value or not
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  int64_t   v;
  STuplePos tuplePos;
} SMinmaxResInfo;
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937
bool minmaxFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
938 939 940 941
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;  // not initialized since it has been initialized
  }

942 943 944
  SMinmaxResInfo* buf = GET_ROWCELL_INTERBUF(pResultInfo);
  buf->assign = false;
  buf->tuplePos.pageId = -1;
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  return true;
}

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bool getMinmaxFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
949
  pEnv->calcMemSize = sizeof(SMinmaxResInfo);
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  return true;
}

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static void saveTupleData(SqlFunctionCtx* pCtx, int32_t rowIndex, const SSDataBlock* pSrcBlock, STuplePos* pPos);
static void copyTupleData(SqlFunctionCtx* pCtx, int32_t rowIndex, const SSDataBlock* pSrcBlock, STuplePos* pPos);

956
int32_t doMinMaxHelper(SqlFunctionCtx* pCtx, int32_t isMinFunc) {
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  int32_t numOfElems = 0;

  SInputColumnInfoData* pInput = &pCtx->input;
960
  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
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  SColumnInfoData* pCol = pInput->pData[0];
963
  int32_t          type = pCol->info.type;
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  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  SMinmaxResInfo*      pBuf = GET_ROWCELL_INTERBUF(pResInfo);
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  if (IS_NULL_TYPE(type)) {
    GET_RES_INFO(pCtx)->isNullRes = 1;
    numOfElems = 1;
    goto _min_max_over;
  }

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  // data in current data block are qualified to the query
  if (pInput->colDataAggIsSet) {
    numOfElems = pInput->numOfRows - pAgg->numOfNull;
    ASSERT(pInput->numOfRows == pInput->totalRows && numOfElems >= 0);
    if (numOfElems == 0) {
      return numOfElems;
    }

    void*   tval = NULL;
    int16_t index = 0;

    if (isMinFunc) {
986
      tval = &pInput->pColumnDataAgg[0]->min;
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      index = pInput->pColumnDataAgg[0]->minIndex;
    } else {
989
      tval = &pInput->pColumnDataAgg[0]->max;
990 991 992
      index = pInput->pColumnDataAgg[0]->maxIndex;
    }

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    if (!pBuf->assign) {
      pBuf->v = *(int64_t*)tval;
      if (pCtx->subsidiaries.num > 0) {
        saveTupleData(pCtx, index, pCtx->pSrcBlock, &pBuf->tuplePos);
      }
    } else {
      if (IS_SIGNED_NUMERIC_TYPE(type)) {
        int64_t prev = 0;
        GET_TYPED_DATA(prev, int64_t, type, &pBuf->v);

        int64_t val = GET_INT64_VAL(tval);
        if ((prev < val) ^ isMinFunc) {
          pBuf->v = val;
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, index, pCtx->pSrcBlock, &pBuf->tuplePos);
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          }
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        }
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      } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
        uint64_t prev = 0;
        GET_TYPED_DATA(prev, uint64_t, type, &pBuf->v);

        uint64_t val = GET_UINT64_VAL(tval);
        if ((prev < val) ^ isMinFunc) {
          pBuf->v = val;
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, index, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
1021
        }
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      } else if (type == TSDB_DATA_TYPE_DOUBLE) {
        double prev = 0;
        GET_TYPED_DATA(prev, int64_t, type, &pBuf->v);
1025

1026 1027 1028 1029 1030
        double val = GET_DOUBLE_VAL(tval);
        if ((prev < val) ^ isMinFunc) {
          pBuf->v = val;
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, index, pCtx->pSrcBlock, &pBuf->tuplePos);
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          }
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        }
      } else if (type == TSDB_DATA_TYPE_FLOAT) {
        double prev = 0;
        GET_TYPED_DATA(prev, int64_t, type, &pBuf->v);
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1037 1038 1039 1040 1041 1042 1043
        double val = GET_DOUBLE_VAL(tval);
        if ((prev < val) ^ isMinFunc) {
          pBuf->v = val;
        }

        if (pCtx->subsidiaries.num > 0) {
          saveTupleData(pCtx, index, pCtx->pSrcBlock, &pBuf->tuplePos);
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        }
      }
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    }

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    pBuf->assign = true;
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    return numOfElems;
  }

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

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  if (IS_SIGNED_NUMERIC_TYPE(type) || type == TSDB_DATA_TYPE_BOOL) {
    if (type == TSDB_DATA_TYPE_TINYINT || type == TSDB_DATA_TYPE_BOOL) {
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      int8_t* pData = (int8_t*)pCol->pData;
      int8_t* val = (int8_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    } else if (type == TSDB_DATA_TYPE_SMALLINT) {
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      int16_t* pData = (int16_t*)pCol->pData;
      int16_t* val = (int16_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    } else if (type == TSDB_DATA_TYPE_INT) {
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      int32_t* pData = (int32_t*)pCol->pData;
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      int32_t* val = (int32_t*)&pBuf->v;
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      for (int32_t i = start; i < start + numOfRows; ++i) {
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        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

1127
        if (!pBuf->assign) {
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          *val = pData[i];
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          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
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        }

        numOfElems += 1;
      }
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    } else if (type == TSDB_DATA_TYPE_BIGINT) {
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      int64_t* pData = (int64_t*)pCol->pData;
      int64_t* val = (int64_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    }
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  } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
    if (type == TSDB_DATA_TYPE_UTINYINT) {
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      uint8_t* pData = (uint8_t*)pCol->pData;
      uint8_t* val = (uint8_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    } else if (type == TSDB_DATA_TYPE_USMALLINT) {
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      uint16_t* pData = (uint16_t*)pCol->pData;
      uint16_t* val = (uint16_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    } else if (type == TSDB_DATA_TYPE_UINT) {
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      uint32_t* pData = (uint32_t*)pCol->pData;
      uint32_t* val = (uint32_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    } else if (type == TSDB_DATA_TYPE_UBIGINT) {
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      uint64_t* pData = (uint64_t*)pCol->pData;
      uint64_t* val = (uint64_t*)&pBuf->v;

      for (int32_t i = start; i < start + numOfRows; ++i) {
        if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        if (!pBuf->assign) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
          pBuf->assign = true;
        } else {
          // ignore the equivalent data value
          if ((*val) == pData[i]) {
            continue;
          }

          if ((*val < pData[i]) ^ isMinFunc) {
            *val = pData[i];
            if (pCtx->subsidiaries.num > 0) {
              copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
            }
          }
        }

        numOfElems += 1;
      }
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    }
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  } else if (type == TSDB_DATA_TYPE_DOUBLE) {
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    double* pData = (double*)pCol->pData;
    double* val = (double*)&pBuf->v;

    for (int32_t i = start; i < start + numOfRows; ++i) {
      if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
        continue;
      }

      if (!pBuf->assign) {
        *val = pData[i];
        if (pCtx->subsidiaries.num > 0) {
          saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
        }
        pBuf->assign = true;
      } else {
        // ignore the equivalent data value
        if ((*val) == pData[i]) {
          continue;
        }

        if ((*val < pData[i]) ^ isMinFunc) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
        }
      }

      numOfElems += 1;
    }
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  } else if (type == TSDB_DATA_TYPE_FLOAT) {
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    float*  pData = (float*)pCol->pData;
1340
    double* val = (double*)&pBuf->v;
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    for (int32_t i = start; i < start + numOfRows; ++i) {
      if ((pCol->hasNull) && colDataIsNull_f(pCol->nullbitmap, i)) {
        continue;
      }

      if (!pBuf->assign) {
        *val = pData[i];
        if (pCtx->subsidiaries.num > 0) {
          saveTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
        }
        pBuf->assign = true;
      } else {
        // ignore the equivalent data value
        if ((*val) == pData[i]) {
          continue;
        }

        if ((*val < pData[i]) ^ isMinFunc) {
          *val = pData[i];
          if (pCtx->subsidiaries.num > 0) {
            copyTupleData(pCtx, i, pCtx->pSrcBlock, &pBuf->tuplePos);
          }
        }
      }

      numOfElems += 1;
    }
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  }

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_min_max_over:
1372
  return numOfElems;
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}
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1375
int32_t minFunction(SqlFunctionCtx* pCtx) {
1376 1377
  int32_t numOfElems = doMinMaxHelper(pCtx, 1);
  SET_VAL(GET_RES_INFO(pCtx), numOfElems, 1);
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  return TSDB_CODE_SUCCESS;
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}

1381
int32_t maxFunction(SqlFunctionCtx* pCtx) {
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  int32_t numOfElems = doMinMaxHelper(pCtx, 0);
  SET_VAL(GET_RES_INFO(pCtx), numOfElems, 1);
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  return TSDB_CODE_SUCCESS;
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}

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static void setNullSelectivityValue(SqlFunctionCtx* pCtx, SSDataBlock* pBlock, int32_t rowIndex);

static void setSelectivityValue(SqlFunctionCtx* pCtx, SSDataBlock* pBlock, const STuplePos* pTuplePos, int32_t rIndex);
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1391 1392 1393 1394 1395 1396
int32_t minmaxFunctionFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);

  SMinmaxResInfo* pRes = GET_ROWCELL_INTERBUF(pEntryInfo);

  int32_t slotId = pCtx->pExpr->base.resSchema.slotId;
1397
  int32_t currentRow = pBlock->info.rows;
1398 1399

  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);
1400
  pEntryInfo->isNullRes = (pEntryInfo->numOfRes == 0);
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1402
  if (pCol->info.type == TSDB_DATA_TYPE_FLOAT) {
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    float v = *(double*)&pRes->v;
1404
    colDataAppend(pCol, currentRow, (const char*)&v, pEntryInfo->isNullRes);
1405
  } else {
1406
    colDataAppend(pCol, currentRow, (const char*)&pRes->v, pEntryInfo->isNullRes);
1407
  }
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1409 1410
  if (pEntryInfo->numOfRes > 0) {
    setSelectivityValue(pCtx, pBlock, &pRes->tuplePos, currentRow);
1411 1412
  } else {
    setNullSelectivityValue(pCtx, pBlock, currentRow);
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  }

1415 1416
  return pEntryInfo->numOfRes;
}
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void setNullSelectivityValue(SqlFunctionCtx* pCtx, SSDataBlock* pBlock, int32_t rowIndex) {
  for (int32_t j = 0; j < pCtx->subsidiaries.num; ++j) {
    SqlFunctionCtx* pc = pCtx->subsidiaries.pCtx[j];
    int32_t      dstSlotId = pc->pExpr->base.resSchema.slotId;

    SColumnInfoData* pDstCol = taosArrayGet(pBlock->pDataBlock, dstSlotId);
    colDataAppendNULL(pDstCol, rowIndex);
  }
}

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void setSelectivityValue(SqlFunctionCtx* pCtx, SSDataBlock* pBlock, const STuplePos* pTuplePos, int32_t rowIndex) {
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  int32_t pageId = pTuplePos->pageId;
  int32_t offset = pTuplePos->offset;
  if (pTuplePos->pageId != -1) {
1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452
    SFilePage* pPage = getBufPage(pCtx->pBuf, pageId);

    bool* nullList = (bool*)((char*)pPage + offset);
    char* pStart = (char*)(nullList + pCtx->pSrcBlock->info.numOfCols * sizeof(bool));

    // todo set the offset value to optimize the performance.
    for (int32_t j = 0; j < pCtx->subsidiaries.num; ++j) {
      SqlFunctionCtx* pc = pCtx->subsidiaries.pCtx[j];

      SFunctParam* pFuncParam = &pc->pExpr->base.pParam[0];
      int32_t      srcSlotId = pFuncParam->pCol->slotId;
      int32_t      dstSlotId = pc->pExpr->base.resSchema.slotId;

      int32_t ps = 0;
      for (int32_t k = 0; k < srcSlotId; ++k) {
        SColumnInfoData* pSrcCol = taosArrayGet(pCtx->pSrcBlock->pDataBlock, k);
        ps += pSrcCol->info.bytes;
      }

      SColumnInfoData* pDstCol = taosArrayGet(pBlock->pDataBlock, dstSlotId);
      if (nullList[srcSlotId]) {
1453
        colDataAppendNULL(pDstCol, rowIndex);
1454
      } else {
1455
        colDataAppend(pDstCol, rowIndex, (pStart + ps), false);
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      }
    }
  }
}

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void releaseSource(STuplePos* pPos) {
  if (pPos->pageId == -1) {
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    return;
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  }
  // Todo(liuyao) relase row
}

void replaceTupleData(STuplePos* pDestPos, STuplePos* pSourcePos) {
  releaseSource(pDestPos);
  *pDestPos = *pSourcePos;
}

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int32_t minMaxCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx, int32_t isMinFunc) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
  SMinmaxResInfo*      pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
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  int32_t              type = pDestCtx->input.pData[0]->info.type;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  SMinmaxResInfo*      pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
  if (IS_FLOAT_TYPE(type)) {
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    if (pSBuf->assign && ((((*(double*)&pDBuf->v) < (*(double*)&pSBuf->v)) ^ isMinFunc) || !pDBuf->assign)) {
      *(double*)&pDBuf->v = *(double*)&pSBuf->v;
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      replaceTupleData(&pDBuf->tuplePos, &pSBuf->tuplePos);
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    }
  } else {
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    if (pSBuf->assign && (((pDBuf->v < pSBuf->v) ^ isMinFunc) || !pDBuf->assign)) {
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      pDBuf->v = pSBuf->v;
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      replaceTupleData(&pDBuf->tuplePos, &pSBuf->tuplePos);
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    }
  }
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  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
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  return TSDB_CODE_SUCCESS;
}

int32_t minCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  return minMaxCombine(pDestCtx, pSourceCtx, 1);
}
int32_t maxCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  return minMaxCombine(pDestCtx, pSourceCtx, 0);
}

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int32_t getStddevInfoSize() { return (int32_t)sizeof(SStddevRes); }

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bool getStddevFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SStddevRes);
  return true;
}

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bool stddevFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  SStddevRes* pRes = GET_ROWCELL_INTERBUF(pResultInfo);
  memset(pRes, 0, sizeof(SStddevRes));
  return true;
}

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int32_t stddevFunction(SqlFunctionCtx* pCtx) {
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  int32_t numOfElem = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
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  int32_t               type = pInput->pData[0]->info.type;
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  SStddevRes* pStddevRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
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  pStddevRes->type = type;
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  // computing based on the true data block
  SColumnInfoData* pCol = pInput->pData[0];
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  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;
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  if (IS_NULL_TYPE(type)) {
    GET_RES_INFO(pCtx)->isNullRes = 1;
    numOfElem = 1;
    goto _stddev_over;
  }

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  switch (type) {
    case TSDB_DATA_TYPE_TINYINT: {
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      int8_t* plist = (int8_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + start; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
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        }
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        numOfElem += 1;
        pStddevRes->count += 1;
        pStddevRes->isum += plist[i];
        pStddevRes->quadraticISum += plist[i] * plist[i];
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      }

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      break;
    }

    case TSDB_DATA_TYPE_SMALLINT: {
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      int16_t* plist = (int16_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem += 1;
        pStddevRes->count += 1;
        pStddevRes->isum += plist[i];
        pStddevRes->quadraticISum += plist[i] * plist[i];
      }
      break;
    }

    case TSDB_DATA_TYPE_INT: {
      int32_t* plist = (int32_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem += 1;
        pStddevRes->count += 1;
        pStddevRes->isum += plist[i];
        pStddevRes->quadraticISum += plist[i] * plist[i];
      }

      break;
    }

    case TSDB_DATA_TYPE_BIGINT: {
      int64_t* plist = (int64_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem += 1;
        pStddevRes->count += 1;
        pStddevRes->isum += plist[i];
        pStddevRes->quadraticISum += plist[i] * plist[i];
      }
      break;
    }

    case TSDB_DATA_TYPE_FLOAT: {
      float* plist = (float*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem += 1;
        pStddevRes->count += 1;
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        pStddevRes->dsum += plist[i];
        pStddevRes->quadraticDSum += plist[i] * plist[i];
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      }
      break;
    }

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    case TSDB_DATA_TYPE_DOUBLE: {
      double* plist = (double*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem += 1;
        pStddevRes->count += 1;
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        pStddevRes->dsum += plist[i];
        pStddevRes->quadraticDSum += plist[i] * plist[i];
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      }
      break;
    }

    default:
      break;
  }

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_stddev_over:
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  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);
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  return TSDB_CODE_SUCCESS;
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}

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static void stddevTransferInfo(SStddevRes* pInput, SStddevRes* pOutput) {
  pOutput->type = pInput->type;
  if (IS_INTEGER_TYPE(pOutput->type)) {
    pOutput->quadraticISum += pInput->quadraticISum;
    pOutput->isum += pInput->isum;
  } else {
    pOutput->quadraticDSum += pInput->quadraticDSum;
    pOutput->dsum += pInput->dsum;
  }

  pOutput->count += pInput->count;

  return;
}

int32_t stddevFunctionMerge(SqlFunctionCtx* pCtx) {
  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData*      pCol = pInput->pData[0];
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SStddevRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  int32_t start = pInput->startRowIndex;
  char*   data = colDataGetData(pCol, start);
  SStddevRes* pInputInfo = (SStddevRes*)varDataVal(data);

  stddevTransferInfo(pInputInfo, pInfo);

  SET_VAL(GET_RES_INFO(pCtx), 1, 1);

  return TSDB_CODE_SUCCESS;
}

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#define LIST_STDDEV_SUB_N(sumT, T)                                 \
  do {                                                             \
    T* plist = (T*)pCol->pData;                                    \
    for (int32_t i = start; i < numOfRows + start; ++i) {          \
      if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) { \
        continue;                                                  \
      }                                                            \
      numOfElem += 1;                                              \
      pStddevRes->count -= 1;                                      \
      sumT -= plist[i];                                            \
      pStddevRes->quadraticISum -= plist[i] * plist[i];            \
    }                                                              \
  } while (0)
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int32_t stddevInvertFunction(SqlFunctionCtx* pCtx) {
  int32_t numOfElem = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
  int32_t               type = pInput->pData[0]->info.type;

  SStddevRes* pStddevRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  // computing based on the true data block
  SColumnInfoData* pCol = pInput->pData[0];

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

  switch (type) {
    case TSDB_DATA_TYPE_TINYINT: {
      LIST_STDDEV_SUB_N(pStddevRes->isum, int8_t);
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      LIST_STDDEV_SUB_N(pStddevRes->isum, int16_t);
      break;
    }
    case TSDB_DATA_TYPE_INT: {
      LIST_STDDEV_SUB_N(pStddevRes->isum, int32_t);
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
      LIST_STDDEV_SUB_N(pStddevRes->isum, int64_t);
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
      LIST_STDDEV_SUB_N(pStddevRes->dsum, float);
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      LIST_STDDEV_SUB_N(pStddevRes->dsum, double);
      break;
    }
    default:
      break;
  }

  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);
  return TSDB_CODE_SUCCESS;
}

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int32_t stddevFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
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  SInputColumnInfoData* pInput = &pCtx->input;
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  SStddevRes*           pStddevRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
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  int32_t               type = pStddevRes->type;
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  double                avg;
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  if (IS_INTEGER_TYPE(type)) {
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    avg = pStddevRes->isum / ((double)pStddevRes->count);
    pStddevRes->result = sqrt(pStddevRes->quadraticISum / ((double)pStddevRes->count) - avg * avg);
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  } else {
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    avg = pStddevRes->dsum / ((double)pStddevRes->count);
    pStddevRes->result = sqrt(pStddevRes->quadraticDSum / ((double)pStddevRes->count) - avg * avg);
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  }
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  return functionFinalize(pCtx, pBlock);
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}

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int32_t stddevPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SStddevRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t  resultBytes = getStddevInfoSize();
  char*    res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));

  memcpy(varDataVal(res), pInfo, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return pResInfo->numOfRes;
}

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int32_t stddevCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
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  SStddevRes*          pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
  int32_t              type = pDestCtx->input.pData[0]->info.type;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
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  SStddevRes*          pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
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  if (IS_INTEGER_TYPE(type)) {
    pDBuf->isum += pSBuf->isum;
    pDBuf->quadraticISum += pSBuf->quadraticISum;
  } else {
    pDBuf->dsum += pSBuf->dsum;
    pDBuf->quadraticDSum += pSBuf->quadraticDSum;
  }
  pDBuf->count += pSBuf->count;
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  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
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  return TSDB_CODE_SUCCESS;
}

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bool getLeastSQRFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SLeastSQRInfo);
  return true;
}

bool leastSQRFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  SLeastSQRInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);

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  pInfo->startVal = IS_FLOAT_TYPE(pCtx->param[1].param.nType) ? pCtx->param[1].param.d : (double)pCtx->param[1].param.i;
  pInfo->stepVal = IS_FLOAT_TYPE(pCtx->param[2].param.nType) ? pCtx->param[2].param.d : (double)pCtx->param[2].param.i;
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  return true;
}

#define LEASTSQR_CAL(p, x, y, index, step) \
  do {                                     \
    (p)[0][0] += (double)(x) * (x);        \
    (p)[0][1] += (double)(x);              \
    (p)[0][2] += (double)(x) * (y)[index]; \
    (p)[1][2] += (y)[index];               \
    (x) += step;                           \
  } while (0)

int32_t leastSQRFunction(SqlFunctionCtx* pCtx) {
  int32_t numOfElem = 0;

  SInputColumnInfoData* pInput = &pCtx->input;
  int32_t               type = pInput->pData[0]->info.type;

  SLeastSQRInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  SColumnInfoData* pCol = pInput->pData[0];

  double(*param)[3] = pInfo->matrix;
  double x = pInfo->startVal;

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

  switch (type) {
    case TSDB_DATA_TYPE_TINYINT: {
      int8_t* plist = (int8_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }
        numOfElem++;
        LEASTSQR_CAL(param, x, plist, i, pInfo->stepVal);

        break;
      }
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      int16_t* plist = (int16_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem++;
        LEASTSQR_CAL(param, x, plist, i, pInfo->stepVal);
      }
      break;
    }

    case TSDB_DATA_TYPE_INT: {
      int32_t* plist = (int32_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem++;
        LEASTSQR_CAL(param, x, plist, i, pInfo->stepVal);
      }

      break;
    }

    case TSDB_DATA_TYPE_BIGINT: {
      int64_t* plist = (int64_t*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem++;
        LEASTSQR_CAL(param, x, plist, i, pInfo->stepVal);
      }
      break;
    }

    case TSDB_DATA_TYPE_FLOAT: {
      float* plist = (float*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem++;
        LEASTSQR_CAL(param, x, plist, i, pInfo->stepVal);
      }
      break;
    }

    case TSDB_DATA_TYPE_DOUBLE: {
      double* plist = (double*)pCol->pData;
      for (int32_t i = start; i < numOfRows + pInput->startRowIndex; ++i) {
        if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
          continue;
        }

        numOfElem++;
        LEASTSQR_CAL(param, x, plist, i, pInfo->stepVal);
      }
      break;
    }
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    case TSDB_DATA_TYPE_NULL: {
      GET_RES_INFO(pCtx)->isNullRes = 1;
      numOfElem = 1;
      break;
    }
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    default:
      break;
  }

  pInfo->startVal = x;
  pInfo->num += numOfElem;

  SET_VAL(GET_RES_INFO(pCtx), numOfElem, 1);

  return TSDB_CODE_SUCCESS;
}

int32_t leastSQRFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  SLeastSQRInfo*       pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t              slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData*     pCol = taosArrayGet(pBlock->pDataBlock, slotId);
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  int32_t currentRow = pBlock->info.rows;

1941
  if (0 == pInfo->num) {
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    return 0;
  }

  double(*param)[3] = pInfo->matrix;

  param[1][1] = (double)pInfo->num;
  param[1][0] = param[0][1];

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  double param00 = param[0][0] - param[1][0] * (param[0][1] / param[1][1]);
  double param02 = param[0][2] - param[1][2] * (param[0][1] / param[1][1]);
  // param[0][1] = 0;
  double param12 = param[1][2] - param02 * (param[1][0] / param00);
  // param[1][0] = 0;
  param02 /= param00;
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  param12 /= param[1][1];
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  char   buf[64] = {0};
  size_t len =
      snprintf(varDataVal(buf), sizeof(buf) - VARSTR_HEADER_SIZE, "{slop:%.6lf, intercept:%.6lf}", param02, param12);
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  varDataSetLen(buf, len);

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  colDataAppend(pCol, currentRow, buf, pResInfo->isNullRes);
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  return pResInfo->numOfRes;
}

int32_t leastSQRInvertFunction(SqlFunctionCtx* pCtx) {
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  // TODO
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  return TSDB_CODE_SUCCESS;
}

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int32_t leastSQRCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
  SLeastSQRInfo*       pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
  int32_t              type = pDestCtx->input.pData[0]->info.type;
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  double(*pDparam)[3] = pDBuf->matrix;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  SLeastSQRInfo*       pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
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  double(*pSparam)[3] = pSBuf->matrix;
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  for (int32_t i = 0; i < pSBuf->num; i++) {
    pDparam[0][0] += pDBuf->startVal * pDBuf->startVal;
    pDparam[0][1] += pDBuf->startVal;
    pDBuf->startVal += pDBuf->stepVal;
  }
  pDparam[0][2] += pSparam[0][2] + pDBuf->num * pDBuf->stepVal * pSparam[1][2];
  pDparam[1][2] += pSparam[1][2];
  pDBuf->num += pSBuf->num;
  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
  return TSDB_CODE_SUCCESS;
}

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bool getPercentileFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SPercentileInfo);
  return true;
}

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bool percentileFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  // in the first round, get the min-max value of all involved data
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  SPercentileInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
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  SET_DOUBLE_VAL(&pInfo->minval, DBL_MAX);
  SET_DOUBLE_VAL(&pInfo->maxval, -DBL_MAX);
  pInfo->numOfElems = 0;

  return true;
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}

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int32_t percentileFunction(SqlFunctionCtx* pCtx) {
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  int32_t              numOfElems = 0;
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  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
2017 2018

  SInputColumnInfoData* pInput = &pCtx->input;
2019
  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
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2021 2022
  SColumnInfoData* pCol = pInput->pData[0];
  int32_t          type = pCol->info.type;
2023

2024
  SPercentileInfo* pInfo = GET_ROWCELL_INTERBUF(pResInfo);
2025
  if (pCtx->scanFlag == REPEAT_SCAN && pInfo->stage == 0) {
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2026
    pInfo->stage += 1;
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2027

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2028 2029 2030
    // all data are null, set it completed
    if (pInfo->numOfElems == 0) {
      pResInfo->complete = true;
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2031
      return 0;
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2032
    } else {
2033
      pInfo->pMemBucket = tMemBucketCreate(pCol->info.bytes, type, pInfo->minval, pInfo->maxval);
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2034 2035 2036 2037 2038
    }
  }

  // the first stage, only acquire the min/max value
  if (pInfo->stage == 0) {
2039
    if (pCtx->input.colDataAggIsSet) {
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      double tmin = 0.0, tmax = 0.0;
2041 2042 2043 2044 2045 2046 2047 2048 2049
      if (IS_SIGNED_NUMERIC_TYPE(type)) {
        tmin = (double)GET_INT64_VAL(&pAgg->min);
        tmax = (double)GET_INT64_VAL(&pAgg->max);
      } else if (IS_FLOAT_TYPE(type)) {
        tmin = GET_DOUBLE_VAL(&pAgg->min);
        tmax = GET_DOUBLE_VAL(&pAgg->max);
      } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
        tmin = (double)GET_UINT64_VAL(&pAgg->min);
        tmax = (double)GET_UINT64_VAL(&pAgg->max);
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      }

      if (GET_DOUBLE_VAL(&pInfo->minval) > tmin) {
        SET_DOUBLE_VAL(&pInfo->minval, tmin);
      }

      if (GET_DOUBLE_VAL(&pInfo->maxval) < tmax) {
        SET_DOUBLE_VAL(&pInfo->maxval, tmax);
      }

2060
      pInfo->numOfElems += (pInput->numOfRows - pAgg->numOfNull);
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2061
    } else {
2062 2063 2064 2065
      // check the valid data one by one
      int32_t start = pInput->startRowIndex;
      for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
        if (colDataIsNull_f(pCol->nullbitmap, i)) {
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          continue;
        }

2069
        char* data = colDataGetData(pCol, i);
2070

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2071
        double v = 0;
2072
        GET_TYPED_DATA(v, double, type, data);
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2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083
        if (v < GET_DOUBLE_VAL(&pInfo->minval)) {
          SET_DOUBLE_VAL(&pInfo->minval, v);
        }

        if (v > GET_DOUBLE_VAL(&pInfo->maxval)) {
          SET_DOUBLE_VAL(&pInfo->maxval, v);
        }

        pInfo->numOfElems += 1;
      }
    }
2084 2085 2086 2087 2088 2089 2090
  } else {
    // the second stage, calculate the true percentile value
    int32_t start = pInput->startRowIndex;
    for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
      if (colDataIsNull_f(pCol->nullbitmap, i)) {
        continue;
      }
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2091

2092
      char* data = colDataGetData(pCol, i);
2093
      numOfElems += 1;
2094
      tMemBucketPut(pInfo->pMemBucket, data, 1);
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2095 2096
    }

2097
    SET_VAL(pResInfo, numOfElems, 1);
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  }

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2100
  return TSDB_CODE_SUCCESS;
2101 2102
}

2103
int32_t percentileFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
2104
  SVariant* pVal = &pCtx->param[1].param;
2105
  double    v = (pVal->nType == TSDB_DATA_TYPE_BIGINT) ? pVal->i : pVal->d;
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2107 2108
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SPercentileInfo*     ppInfo = (SPercentileInfo*)GET_ROWCELL_INTERBUF(pResInfo);
2109

2110
  tMemBucket* pMemBucket = ppInfo->pMemBucket;
2111 2112 2113 2114 2115
  if (pMemBucket != NULL && pMemBucket->total > 0) {  // check for null
    SET_DOUBLE_VAL(&ppInfo->result, getPercentile(pMemBucket, v));
  }

  tMemBucketDestroy(pMemBucket);
2116
  return functionFinalize(pCtx, pBlock);
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}
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2118

2119
bool getApercentileFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
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2120 2121
  int32_t bytesHist =
      (int32_t)(sizeof(SAPercentileInfo) + sizeof(SHistogramInfo) + sizeof(SHistBin) * (MAX_HISTOGRAM_BIN + 1));
2122
  int32_t bytesDigest = (int32_t)(sizeof(SAPercentileInfo) + TDIGEST_SIZE(COMPRESSION));
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  pEnv->calcMemSize = TMAX(bytesHist, bytesDigest);
2124 2125 2126
  return true;
}

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int32_t getApercentileMaxSize() {
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2128 2129
  int32_t bytesHist =
      (int32_t)(sizeof(SAPercentileInfo) + sizeof(SHistogramInfo) + sizeof(SHistBin) * (MAX_HISTOGRAM_BIN + 1));
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  int32_t bytesDigest = (int32_t)(sizeof(SAPercentileInfo) + TDIGEST_SIZE(COMPRESSION));
  return TMAX(bytesHist, bytesDigest);
}

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2134
static int8_t getApercentileAlgo(char* algoStr) {
2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147
  int8_t algoType;
  if (strcasecmp(algoStr, "default") == 0) {
    algoType = APERCT_ALGO_DEFAULT;
  } else if (strcasecmp(algoStr, "t-digest") == 0) {
    algoType = APERCT_ALGO_TDIGEST;
  } else {
    algoType = APERCT_ALGO_UNKNOWN;
  }

  return algoType;
}

static void buildHistogramInfo(SAPercentileInfo* pInfo) {
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2148 2149
  pInfo->pHisto = (SHistogramInfo*)((char*)pInfo + sizeof(SAPercentileInfo));
  pInfo->pHisto->elems = (SHistBin*)((char*)pInfo->pHisto + sizeof(SHistogramInfo));
2150 2151
}

2152 2153 2154 2155
static void buildTDigestInfo(SAPercentileInfo* pInfo) {
  pInfo->pTDigest = (TDigest*)((char*)pInfo + sizeof(SAPercentileInfo));
}

2156 2157 2158 2159 2160 2161
bool apercentileFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  SAPercentileInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
2162 2163 2164 2165

  SVariant* pVal = &pCtx->param[1].param;
  pInfo->percent = (pVal->nType == TSDB_DATA_TYPE_BIGINT) ? pVal->i : pVal->d;

2166 2167 2168
  if (pCtx->numOfParams == 2) {
    pInfo->algo = APERCT_ALGO_DEFAULT;
  } else if (pCtx->numOfParams == 3) {
2169
    pInfo->algo = getApercentileAlgo(varDataVal(pCtx->param[2].param.pz));
2170 2171 2172 2173 2174
    if (pInfo->algo == APERCT_ALGO_UNKNOWN) {
      return false;
    }
  }

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  char* tmp = (char*)pInfo + sizeof(SAPercentileInfo);
2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186
  if (pInfo->algo == APERCT_ALGO_TDIGEST) {
    pInfo->pTDigest = tdigestNewFrom(tmp, COMPRESSION);
  } else {
    buildHistogramInfo(pInfo);
    pInfo->pHisto = tHistogramCreateFrom(tmp, MAX_HISTOGRAM_BIN);
  }

  return true;
}

int32_t apercentileFunction(SqlFunctionCtx* pCtx) {
2187
  int32_t              numOfElems = 0;
2188 2189 2190
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);

  SInputColumnInfoData* pInput = &pCtx->input;
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  // SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203

  SColumnInfoData* pCol = pInput->pData[0];
  int32_t          type = pCol->info.type;

  SAPercentileInfo* pInfo = GET_ROWCELL_INTERBUF(pResInfo);

  int32_t start = pInput->startRowIndex;
  if (pInfo->algo == APERCT_ALGO_TDIGEST) {
    for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
      if (colDataIsNull_f(pCol->nullbitmap, i)) {
        continue;
      }
2204
      numOfElems += 1;
2205 2206
      char* data = colDataGetData(pCol, i);

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      double  v = 0;  // value
      int64_t w = 1;  // weigth
2209 2210 2211 2212 2213 2214 2215 2216
      GET_TYPED_DATA(v, double, type, data);
      tdigestAdd(pInfo->pTDigest, v, w);
    }
  } else {
    for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
      if (colDataIsNull_f(pCol->nullbitmap, i)) {
        continue;
      }
2217
      numOfElems += 1;
2218 2219 2220 2221 2222 2223 2224 2225
      char* data = colDataGetData(pCol, i);

      double v = 0;
      GET_TYPED_DATA(v, double, type, data);
      tHistogramAdd(&pInfo->pHisto, v);
    }
  }

2226
  SET_VAL(pResInfo, numOfElems, 1);
2227 2228 2229
  return TSDB_CODE_SUCCESS;
}

2230 2231 2232 2233 2234 2235
static void apercentileTransferInfo(SAPercentileInfo* pInput, SAPercentileInfo* pOutput) {
  pOutput->percent = pInput->percent;
  pOutput->algo = pInput->algo;
  if (pOutput->algo == APERCT_ALGO_TDIGEST) {
    buildTDigestInfo(pInput);
    tdigestAutoFill(pInput->pTDigest, COMPRESSION);
2236

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2237
    if (pInput->pTDigest->num_centroids == 0 && pInput->pTDigest->num_buffered_pts == 0) {
2238
      return;
2239 2240
    }

2241
    buildTDigestInfo(pOutput);
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2242
    TDigest* pTDigest = pOutput->pTDigest;
2243

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2244
    if (pTDigest->num_centroids <= 0) {
2245
      memcpy(pTDigest, pInput->pTDigest, (size_t)TDIGEST_SIZE(COMPRESSION));
2246 2247
      tdigestAutoFill(pTDigest, COMPRESSION);
    } else {
2248
      tdigestMerge(pTDigest, pInput->pTDigest);
2249
    }
2250
  } else {
2251 2252 2253
    buildHistogramInfo(pInput);
    if (pInput->pHisto->numOfElems <= 0) {
      return;
2254 2255
    }

2256
    buildHistogramInfo(pOutput);
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2257
    SHistogramInfo* pHisto = pOutput->pHisto;
2258 2259

    if (pHisto->numOfElems <= 0) {
2260
      memcpy(pHisto, pInput->pHisto, sizeof(SHistogramInfo) + sizeof(SHistBin) * (MAX_HISTOGRAM_BIN + 1));
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2261
      pHisto->elems = (SHistBin*)((char*)pHisto + sizeof(SHistogramInfo));
2262
    } else {
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2263 2264
      pHisto->elems = (SHistBin*)((char*)pHisto + sizeof(SHistogramInfo));
      SHistogramInfo* pRes = tHistogramMerge(pHisto, pInput->pHisto, MAX_HISTOGRAM_BIN);
2265
      memcpy(pHisto, pRes, sizeof(SHistogramInfo) + sizeof(SHistBin) * MAX_HISTOGRAM_BIN);
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      pHisto->elems = (SHistBin*)((char*)pHisto + sizeof(SHistogramInfo));
2267 2268 2269
      tHistogramDestroy(&pRes);
    }
  }
2270
}
2271

2272 2273 2274 2275 2276 2277 2278 2279 2280 2281
int32_t apercentileFunctionMerge(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);

  SInputColumnInfoData* pInput = &pCtx->input;

  SColumnInfoData* pCol = pInput->pData[0];
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SAPercentileInfo* pInfo = GET_ROWCELL_INTERBUF(pResInfo);

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2282 2283 2284
  int32_t           start = pInput->startRowIndex;
  char*             data = colDataGetData(pCol, start);
  SAPercentileInfo* pInputInfo = (SAPercentileInfo*)varDataVal(data);
2285 2286 2287 2288

  apercentileTransferInfo(pInputInfo, pInfo);

  SET_VAL(pResInfo, 1, 1);
2289 2290 2291
  return TSDB_CODE_SUCCESS;
}

2292 2293
int32_t apercentileFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  SAPercentileInfo*    pInfo = (SAPercentileInfo*)GET_ROWCELL_INTERBUF(pResInfo);
2295 2296 2297

  if (pInfo->algo == APERCT_ALGO_TDIGEST) {
    if (pInfo->pTDigest->size > 0) {
2298
      pInfo->result = tdigestQuantile(pInfo->pTDigest, pInfo->percent / 100);
2299
    } else {  // no need to free
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      // setNull(pCtx->pOutput, pCtx->outputType, pCtx->outputBytes);
2301 2302 2303 2304
      return TSDB_CODE_SUCCESS;
    }
  } else {
    if (pInfo->pHisto->numOfElems > 0) {
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2305 2306
      double  ratio[] = {pInfo->percent};
      double* res = tHistogramUniform(pInfo->pHisto, ratio, 1);
2307
      pInfo->result = *res;
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2308
      // memcpy(pCtx->pOutput, res, sizeof(double));
2309 2310
      taosMemoryFree(res);
    } else {  // no need to free
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2311
      // setNull(pCtx->pOutput, pCtx->outputType, pCtx->outputBytes);
2312 2313 2314 2315 2316 2317 2318
      return TSDB_CODE_SUCCESS;
    }
  }

  return functionFinalize(pCtx, pBlock);
}

2319 2320
int32_t apercentilePartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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2321
  SAPercentileInfo*    pInfo = (SAPercentileInfo*)GET_ROWCELL_INTERBUF(pResInfo);
2322

2323
  int32_t resultBytes = getApercentileMaxSize();
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2324
  char*   res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));
2325 2326 2327

  if (pInfo->algo == APERCT_ALGO_TDIGEST) {
    if (pInfo->pTDigest->size > 0) {
2328 2329
      memcpy(varDataVal(res), pInfo, resultBytes);
      varDataSetLen(res, resultBytes);
2330 2331 2332 2333 2334
    } else {
      return TSDB_CODE_SUCCESS;
    }
  } else {
    if (pInfo->pHisto->numOfElems > 0) {
2335 2336
      memcpy(varDataVal(res), pInfo, resultBytes);
      varDataSetLen(res, resultBytes);
2337 2338 2339 2340 2341 2342 2343 2344
    } else {
      return TSDB_CODE_SUCCESS;
    }
  }

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

2345
  colDataAppend(pCol, pBlock->info.rows, res, false);
2346

2347
  taosMemoryFree(res);
2348 2349 2350
  return pResInfo->numOfRes;
}

2351 2352 2353 2354 2355 2356 2357
int32_t apercentileCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
  SAPercentileInfo*    pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);

  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  SAPercentileInfo*    pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
  ASSERT(pDBuf->algo == pSBuf->algo);
2358
  apercentileTransferInfo(pSBuf, pDBuf);
2359 2360 2361 2362
  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
  return TSDB_CODE_SUCCESS;
}

2363
int32_t getFirstLastInfoSize(int32_t resBytes) {
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  return sizeof(SFirstLastRes) + resBytes + sizeof(int64_t);
2365 2366
}

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bool getFirstLastFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
2368
  SColumnNode* pNode = (SColumnNode *)nodesListGetNode(pFunc->pParameterList, 0);
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  pEnv->calcMemSize = sizeof(SFirstLastRes) + pNode->node.resType.bytes + sizeof(int64_t);
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2370 2371 2372
  return true;
}

2373
bool getSelectivityFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
2374
  SColumnNode* pNode = (SColumnNode*)nodesListGetNode(pFunc->pParameterList, 0);
2375 2376 2377 2378
  pEnv->calcMemSize = pNode->node.resType.bytes;
  return true;
}

2379 2380 2381 2382 2383
static FORCE_INLINE TSKEY getRowPTs(SColumnInfoData* pTsColInfo, int32_t rowIndex) {
  if (pTsColInfo == NULL) {
    return 0;
  }

2384
  return *(TSKEY*)colDataGetData(pTsColInfo, rowIndex);
2385 2386
}

2387 2388
// This ordinary first function does not care if current scan is ascending order or descending order scan
// the OPTIMIZED version of first function will only handle the ascending order scan
2389
int32_t firstFunction(SqlFunctionCtx* pCtx) {
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2390 2391
  int32_t numOfElems = 0;

2392
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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2393
  SFirstLastRes *pInfo = GET_ROWCELL_INTERBUF(pResInfo);
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2394 2395

  SInputColumnInfoData* pInput = &pCtx->input;
2396
  SColumnInfoData*      pInputCol = pInput->pData[0];
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  int32_t type  = pInputCol->info.type;
2399
  int32_t bytes = pInputCol->info.bytes;
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2400
  pInfo->bytes  = bytes;
2401

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  // All null data column, return directly.
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2403
  if (pInput->colDataAggIsSet && (pInput->pColumnDataAgg[0]->numOfNull == pInput->totalRows)) {
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2404
    ASSERT(pInputCol->hasNull == true);
H
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2405
    return 0;
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2406 2407
  }

2408
  SColumnDataAgg* pColAgg = (pInput->colDataAggIsSet) ? pInput->pColumnDataAgg[0] : NULL;
2409

2410 2411
  TSKEY startKey = getRowPTs(pInput->pPTS, 0);
  TSKEY endKey = getRowPTs(pInput->pPTS, pInput->totalRows - 1);
2412

2413
  int32_t blockDataOrder = (startKey <= endKey) ? TSDB_ORDER_ASC : TSDB_ORDER_DESC;
2414 2415 2416 2417

  if (blockDataOrder == TSDB_ORDER_ASC) {
    // filter according to current result firstly
    if (pResInfo->numOfRes > 0) {
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      TSKEY ts = *(TSKEY*)(pInfo->buf + bytes);
2419 2420 2421 2422 2423 2424 2425 2426 2427 2428
      if (ts < startKey) {
        return TSDB_CODE_SUCCESS;
      }
    }

    for (int32_t i = pInput->startRowIndex; i < pInput->startRowIndex + pInput->numOfRows; ++i) {
      if (pInputCol->hasNull && colDataIsNull(pInputCol, pInput->totalRows, i, pColAgg)) {
        continue;
      }

2429 2430
      numOfElems++;

2431
      char* data = colDataGetData(pInputCol, i);
2432
      TSKEY cts = getRowPTs(pInput->pPTS, i);
2433

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2434
      if (pResInfo->numOfRes == 0 || *(TSKEY*)(pInfo->buf + bytes) > cts) {
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2435 2436 2437 2438
        if (IS_VAR_DATA_TYPE(type)) {
          bytes = varDataTLen(data);
          pInfo->bytes = bytes;
        }
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2439 2440 2441
        memcpy(pInfo->buf, data, bytes);
        *(TSKEY*)(pInfo->buf + bytes) = cts;
        pInfo->hasResult = true;
2442
        //        DO_UPDATE_TAG_COLUMNS(pCtx, ts);
2443 2444

        pResInfo->numOfRes = 1;
2445
        break;
2446 2447 2448 2449 2450 2451
      }
    }
  } else {
    // in case of descending order time stamp serial, which usually happens as the results of the nest query,
    // all data needs to be check.
    if (pResInfo->numOfRes > 0) {
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      TSKEY ts = *(TSKEY*)(pInfo->buf + bytes);
2453 2454 2455
      if (ts < endKey) {
        return TSDB_CODE_SUCCESS;
      }
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2456 2457
    }

2458 2459 2460 2461 2462
    for (int32_t i = pInput->numOfRows + pInput->startRowIndex - 1; i >= pInput->startRowIndex; --i) {
      if (pInputCol->hasNull && colDataIsNull(pInputCol, pInput->totalRows, i, pColAgg)) {
        continue;
      }

2463 2464
      numOfElems++;

2465
      char* data = colDataGetData(pInputCol, i);
2466
      TSKEY cts = getRowPTs(pInput->pPTS, i);
2467

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      if (pResInfo->numOfRes == 0 || *(TSKEY*)(pInfo->buf + bytes) > cts) {
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        if (IS_VAR_DATA_TYPE(type)) {
          bytes = varDataTLen(data);
          pInfo->bytes = bytes;
        }
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        memcpy(pInfo->buf, data, bytes);
        *(TSKEY*)(pInfo->buf + bytes) = cts;
        pInfo->hasResult = true;
2476
        //        DO_UPDATE_TAG_COLUMNS(pCtx, ts);
2477
        pResInfo->numOfRes = 1;
2478
        break;
2479 2480
      }
    }
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  }

  SET_VAL(pResInfo, numOfElems, 1);
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  return TSDB_CODE_SUCCESS;
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}

2487
int32_t lastFunction(SqlFunctionCtx* pCtx) {
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  int32_t numOfElems = 0;

2490
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  SFirstLastRes *pInfo = GET_ROWCELL_INTERBUF(pResInfo);
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  SInputColumnInfoData* pInput = &pCtx->input;
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  SColumnInfoData*      pInputCol = pInput->pData[0];
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  int32_t type  = pInputCol->info.type;
2497
  int32_t bytes = pInputCol->info.bytes;
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  pInfo->bytes  = bytes;
2499

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  // All null data column, return directly.
2501
  if (pInput->colDataAggIsSet && (pInput->pColumnDataAgg[0]->numOfNull == pInput->totalRows)) {
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    ASSERT(pInputCol->hasNull == true);
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    return 0;
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  }

2506
  SColumnDataAgg* pColAgg = (pInput->colDataAggIsSet) ? pInput->pColumnDataAgg[0] : NULL;
2507 2508 2509 2510

  TSKEY startKey = getRowPTs(pInput->pPTS, 0);
  TSKEY endKey = getRowPTs(pInput->pPTS, pInput->totalRows - 1);

2511
  int32_t blockDataOrder = (startKey <= endKey) ? TSDB_ORDER_ASC : TSDB_ORDER_DESC;
2512 2513

  if (blockDataOrder == TSDB_ORDER_ASC) {
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    for (int32_t i = pInput->numOfRows + pInput->startRowIndex - 1; i >= pInput->startRowIndex; --i) {
2515
      if (pInputCol->hasNull && colDataIsNull(pInputCol, pInput->totalRows, i, pColAgg)) {
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        continue;
      }

      numOfElems++;
2520 2521 2522

      char* data = colDataGetData(pInputCol, i);
      TSKEY cts = getRowPTs(pInput->pPTS, i);
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      if (pResInfo->numOfRes == 0 || *(TSKEY*)(pInfo->buf + bytes) < cts) {
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        if (IS_VAR_DATA_TYPE(type)) {
          bytes = varDataTLen(data);
          pInfo->bytes = bytes;
        }
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        memcpy(pInfo->buf, data, bytes);
        *(TSKEY*)(pInfo->buf + bytes) = cts;
2530
        //        DO_UPDATE_TAG_COLUMNS(pCtx, ts);
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        pInfo->hasResult = true;
2532 2533
        pResInfo->numOfRes = 1;
      }
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      break;
    }
2536
  } else {  // descending order
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    for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; ++i) {
2538
      if (pInputCol->hasNull && colDataIsNull(pInputCol, pInput->totalRows, i, pColAgg)) {
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        continue;
      }

2542
      numOfElems++;
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2544 2545
      char* data = colDataGetData(pInputCol, i);
      TSKEY cts = getRowPTs(pInput->pPTS, i);
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      if (pResInfo->numOfRes == 0 || *(TSKEY*)(pInfo->buf + bytes) < cts) {
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        if (IS_VAR_DATA_TYPE(type)) {
          bytes = varDataTLen(data);
          pInfo->bytes = bytes;
        }
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        memcpy(pInfo->buf, data, bytes);
        *(TSKEY*)(pInfo->buf + bytes) = cts;
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        pInfo->hasResult = true;
2554
        pResInfo->numOfRes = 1;
2555
        //        DO_UPDATE_TAG_COLUMNS(pCtx, ts);
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      }
      break;
    }
  }

  SET_VAL(pResInfo, numOfElems, 1);
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  return TSDB_CODE_SUCCESS;
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}
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2565
static void firstLastTransferInfo(SFirstLastRes* pInput, SFirstLastRes* pOutput, bool isFirst) {
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  if (!pInput->hasResult) {
    return;
  }
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  pOutput->bytes = pInput->bytes;
  TSKEY *tsIn = (TSKEY*)(pInput->buf + pInput->bytes);
  TSKEY *tsOut = (TSKEY*)(pOutput->buf + pInput->bytes);
  if (pOutput->hasResult) {
2573 2574 2575 2576 2577 2578 2579 2580
    if (isFirst) {
      if (*tsIn > *tsOut) {
        return;
      }
    } else {
      if (*tsIn < *tsOut) {
        return;
      }
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    }
  }
  *tsOut = *tsIn;
  memcpy(pOutput->buf, pInput->buf, pOutput->bytes);
  pOutput->hasResult = true;
  return;
}

2589
static int32_t firstLastFunctionMergeImpl(SqlFunctionCtx *pCtx, bool isFirstQuery) {
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  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData* pCol = pInput->pData[0];
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SFirstLastRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  int32_t start = pInput->startRowIndex;
  char* data = colDataGetData(pCol, start);
  SFirstLastRes* pInputInfo = (SFirstLastRes *)varDataVal(data);

2600
  firstLastTransferInfo(pInputInfo, pInfo, isFirstQuery);
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  SET_VAL(GET_RES_INFO(pCtx), 1, 1);

  return TSDB_CODE_SUCCESS;
}

2607 2608 2609 2610 2611 2612 2613 2614
int32_t firstFunctionMerge(SqlFunctionCtx *pCtx) {
  return firstLastFunctionMergeImpl(pCtx, true);
}

int32_t lastFunctionMerge(SqlFunctionCtx *pCtx) {
  return firstLastFunctionMergeImpl(pCtx, false);
}

2615
int32_t firstLastFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
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  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  pResInfo->isNullRes = (pResInfo->numOfRes == 0) ? 1 : 0;

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  SFirstLastRes* pRes = GET_ROWCELL_INTERBUF(pResInfo);
  colDataAppend(pCol, pBlock->info.rows, pRes->buf, pResInfo->isNullRes);
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  return pResInfo->numOfRes;
}

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int32_t firstLastPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);
  SFirstLastRes* pRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t resultBytes = getFirstLastInfoSize(pRes->bytes);
  char *res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));

  memcpy(varDataVal(res), pRes, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return 1;
}

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int32_t lastCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
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  char*                pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
  int32_t              type = pDestCtx->input.pData[0]->info.type;
  int32_t              bytes = pDestCtx->input.pData[0]->info.bytes;
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  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
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  char*                pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
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  if (pSResInfo->numOfRes != 0 && (pDResInfo->numOfRes == 0 || *(TSKEY*)(pDBuf + bytes) < *(TSKEY*)(pSBuf + bytes))) {
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    memcpy(pDBuf, pSBuf, bytes);
    *(TSKEY*)(pDBuf + bytes) = *(TSKEY*)(pSBuf + bytes);
    pDResInfo->numOfRes = 1;
  }
  return TSDB_CODE_SUCCESS;
}

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bool getDiffFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SDiffInfo);
  return true;
}

2668
bool diffFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResInfo) {
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  if (!functionSetup(pCtx, pResInfo)) {
    return false;
  }

  SDiffInfo* pDiffInfo = GET_ROWCELL_INTERBUF(pResInfo);
2674
  pDiffInfo->hasPrev = false;
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  pDiffInfo->prev.i64 = 0;
2676
  pDiffInfo->ignoreNegative = pCtx->param[1].param.i;  // TODO set correct param
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  pDiffInfo->includeNull = false;
  pDiffInfo->firstOutput = false;
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  return true;
}

2682
static void doSetPrevVal(SDiffInfo* pDiffInfo, int32_t type, const char* pv) {
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  switch (type) {
2684 2685
    case TSDB_DATA_TYPE_BOOL:
    case TSDB_DATA_TYPE_TINYINT:
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      pDiffInfo->prev.i64 = *(int8_t*)pv;
      break;
2688
    case TSDB_DATA_TYPE_INT:
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      pDiffInfo->prev.i64 = *(int32_t*)pv;
      break;
2691
    case TSDB_DATA_TYPE_SMALLINT:
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      pDiffInfo->prev.i64 = *(int16_t*)pv;
      break;
2694
    case TSDB_DATA_TYPE_BIGINT:
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      pDiffInfo->prev.i64 = *(int64_t*)pv;
      break;
2697
    case TSDB_DATA_TYPE_FLOAT:
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      pDiffInfo->prev.d64 = *(float*)pv;
      break;
2700
    case TSDB_DATA_TYPE_DOUBLE:
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      pDiffInfo->prev.d64 = *(double*)pv;
      break;
2703 2704 2705 2706 2707
    default:
      ASSERT(0);
  }
}

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static void doHandleDiff(SDiffInfo* pDiffInfo, int32_t type, const char* pv, SColumnInfoData* pOutput, int32_t pos,
                         int32_t order) {
  int32_t factor = (order == TSDB_ORDER_ASC) ? 1 : -1;
2711 2712 2713
  switch (type) {
    case TSDB_DATA_TYPE_INT: {
      int32_t v = *(int32_t*)pv;
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      int64_t delta = factor * (v - pDiffInfo->prev.i64);  // direct previous may be null
2715 2716 2717
      if (delta < 0 && pDiffInfo->ignoreNegative) {
        colDataSetNull_f(pOutput->nullbitmap, pos);
      } else {
2718
        colDataAppendInt64(pOutput, pos, &delta);
2719 2720 2721 2722 2723 2724
      }
      pDiffInfo->prev.i64 = v;
      break;
    }
    case TSDB_DATA_TYPE_BOOL:
    case TSDB_DATA_TYPE_TINYINT: {
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      int8_t  v = *(int8_t*)pv;
      int64_t delta = factor * (v - pDiffInfo->prev.i64);  // direct previous may be null
2727 2728 2729
      if (delta < 0 && pDiffInfo->ignoreNegative) {
        colDataSetNull_f(pOutput->nullbitmap, pos);
      } else {
2730
        colDataAppendInt64(pOutput, pos, &delta);
2731 2732 2733 2734 2735 2736
      }
      pDiffInfo->prev.i64 = v;
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      int16_t v = *(int16_t*)pv;
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      int64_t delta = factor * (v - pDiffInfo->prev.i64);  // direct previous may be null
2738 2739 2740
      if (delta < 0 && pDiffInfo->ignoreNegative) {
        colDataSetNull_f(pOutput->nullbitmap, pos);
      } else {
2741
        colDataAppendInt64(pOutput, pos, &delta);
2742 2743 2744 2745 2746 2747
      }
      pDiffInfo->prev.i64 = v;
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
      int64_t v = *(int64_t*)pv;
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      int64_t delta = factor * (v - pDiffInfo->prev.i64);  // direct previous may be null
2749 2750 2751 2752 2753 2754 2755 2756 2757
      if (delta < 0 && pDiffInfo->ignoreNegative) {
        colDataSetNull_f(pOutput->nullbitmap, pos);
      } else {
        colDataAppendInt64(pOutput, pos, &delta);
      }
      pDiffInfo->prev.i64 = v;
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
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      float  v = *(float*)pv;
      double delta = factor * (v - pDiffInfo->prev.d64);                               // direct previous may be null
      if ((delta < 0 && pDiffInfo->ignoreNegative) || isinf(delta) || isnan(delta)) {  // check for overflow
2761 2762
        colDataSetNull_f(pOutput->nullbitmap, pos);
      } else {
2763
        colDataAppendDouble(pOutput, pos, &delta);
2764 2765 2766 2767 2768 2769
      }
      pDiffInfo->prev.d64 = v;
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      double v = *(double*)pv;
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      double delta = factor * (v - pDiffInfo->prev.d64);                               // direct previous may be null
      if ((delta < 0 && pDiffInfo->ignoreNegative) || isinf(delta) || isnan(delta)) {  // check for overflow
2772 2773 2774 2775 2776 2777 2778 2779 2780 2781
        colDataSetNull_f(pOutput->nullbitmap, pos);
      } else {
        colDataAppendDouble(pOutput, pos, &delta);
      }
      pDiffInfo->prev.d64 = v;
      break;
    }
    default:
      ASSERT(0);
  }
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}
2783

2784 2785 2786
int32_t diffFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SDiffInfo*           pDiffInfo = GET_ROWCELL_INTERBUF(pResInfo);
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  SInputColumnInfoData* pInput = &pCtx->input;

2790
  SColumnInfoData* pInputCol = pInput->pData[0];
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  SColumnInfoData* pTsOutput = pCtx->pTsOutput;
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2793
  int32_t numOfElems = 0;
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  TSKEY*  tsList = (int64_t*)pInput->pPTS->pData;
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  int32_t startOffset = pCtx->offset;
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2797
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;
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2799 2800 2801
  if (pCtx->order == TSDB_ORDER_ASC) {
    for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
      int32_t pos = startOffset + numOfElems;
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2803 2804 2805 2806 2807
      if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
        if (pDiffInfo->includeNull) {
          colDataSetNull_f(pOutput->nullbitmap, pos);
          if (tsList != NULL) {
            colDataAppendInt64(pTsOutput, pos, &tsList[i]);
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          }

2810
          numOfElems += 1;
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        }
2812
        continue;
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      }

2815
      char* pv = colDataGetData(pInputCol, i);
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2817 2818 2819 2820
      if (pDiffInfo->hasPrev) {
        doHandleDiff(pDiffInfo, pInputCol->info.type, pv, pOutput, pos, pCtx->order);
        if (pTsOutput != NULL) {
          colDataAppendInt64(pTsOutput, pos, &tsList[i]);
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        }

        numOfElems++;
2824 2825
      } else {
        doSetPrevVal(pDiffInfo, pInputCol->info.type, pv);
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      }

2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839
      pDiffInfo->hasPrev = true;
    }
  } else {
    for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
      int32_t pos = startOffset + numOfElems;

      if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
        if (pDiffInfo->includeNull) {
          colDataSetNull_f(pOutput->nullbitmap, pos);
          if (tsList != NULL) {
            colDataAppendInt64(pTsOutput, pos, &tsList[i]);
          }
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2840

2841
          numOfElems += 1;
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2842
        }
2843
        continue;
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2844 2845
      }

2846
      char* pv = colDataGetData(pInputCol, i);
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2848 2849 2850 2851 2852
      // there is a row of previous data block to be handled in the first place.
      if (pDiffInfo->hasPrev) {
        doHandleDiff(pDiffInfo, pInputCol->info.type, pv, pOutput, pos, pCtx->order);
        if (pTsOutput != NULL) {
          colDataAppendInt64(pTsOutput, pos, &pDiffInfo->prevTs);
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        }

        numOfElems++;
2856 2857
      } else {
        doSetPrevVal(pDiffInfo, pInputCol->info.type, pv);
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      }

2860 2861 2862
      pDiffInfo->hasPrev = true;
      if (pTsOutput != NULL) {
        pDiffInfo->prevTs = tsList[i];
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      }
    }
  }

  // initial value is not set yet
2868
  return numOfElems;
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}
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int32_t getTopBotInfoSize(int64_t numOfItems) { return sizeof(STopBotRes) + numOfItems * sizeof(STopBotResItem); }
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2873
bool getTopBotFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
2874
  SValueNode* pkNode = (SValueNode*)nodesListGetNode(pFunc->pParameterList, 1);
2875
  pEnv->calcMemSize = sizeof(STopBotRes) + pkNode->datum.i * sizeof(STopBotResItem);
2876 2877 2878
  return true;
}

2879
bool getTopBotMergeFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
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  // intermediate result is binary and length contains VAR header size
2881
  pEnv->calcMemSize = pFunc->node.resType.bytes;
2882 2883 2884
  return true;
}

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bool topBotFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResInfo) {
  if (!functionSetup(pCtx, pResInfo)) {
    return false;
  }

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  STopBotRes*           pRes = GET_ROWCELL_INTERBUF(pResInfo);
2891 2892 2893 2894
  SInputColumnInfoData* pInput = &pCtx->input;

  pRes->maxSize = pCtx->param[1].param.i;

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  return true;
}

2898 2899 2900 2901
static STopBotRes* getTopBotOutputInfo(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  STopBotRes*          pRes = GET_ROWCELL_INTERBUF(pResInfo);
  pRes->pItems = (STopBotResItem*)((char*)pRes + sizeof(STopBotRes));
2902 2903

  return pRes;
2904 2905
}

2906
static void doAddIntoResult(SqlFunctionCtx* pCtx, void* pData, int32_t rowIndex, SSDataBlock* pSrcBlock, uint16_t type,
2907
                            uint64_t uid, SResultRowEntryInfo* pEntryInfo, bool isTopQuery);
2908

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Ganlin Zhao 已提交
2909 2910
static void addResult(SqlFunctionCtx* pCtx, STopBotResItem* pSourceItem, int16_t type, bool isTopQuery);

2911 2912 2913
int32_t topFunction(SqlFunctionCtx* pCtx) {
  int32_t              numOfElems = 0;
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
2914 2915

  SInputColumnInfoData* pInput = &pCtx->input;
2916
  SColumnInfoData*      pCol = pInput->pData[0];
2917

G
Ganlin Zhao 已提交
2918 2919
  STopBotRes* pRes = getTopBotOutputInfo(pCtx);
  pRes->type = pInput->pData[0]->info.type;
2920 2921

  int32_t start = pInput->startRowIndex;
2922
  for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
2923 2924 2925
    if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
      continue;
    }
2926

2927
    numOfElems++;
2928
    char* data = colDataGetData(pCol, i);
G
Ganlin Zhao 已提交
2929
    doAddIntoResult(pCtx, data, i, pCtx->pSrcBlock, pRes->type, pInput->uid, pResInfo, true);
2930 2931 2932 2933 2934
  }

  return TSDB_CODE_SUCCESS;
}

2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959
int32_t bottomFunction(SqlFunctionCtx* pCtx) {
  int32_t              numOfElems = 0;
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);

  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData*      pCol = pInput->pData[0];

  STopBotRes* pRes = getTopBotOutputInfo(pCtx);
  pRes->type = pInput->pData[0]->info.type;

  int32_t start = pInput->startRowIndex;
  for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
    if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
      continue;
    }

    numOfElems++;
    char* data = colDataGetData(pCol, i);
    doAddIntoResult(pCtx, data, i, pCtx->pSrcBlock, pRes->type, pInput->uid, pResInfo, false);
  }

  return TSDB_CODE_SUCCESS;
}

static void topBotTransferInfo(SqlFunctionCtx* pCtx, STopBotRes* pInput, bool isTopQuery) {
G
Ganlin Zhao 已提交
2960
  for (int32_t i = 0; i < pInput->numOfItems; i++) {
2961
    addResult(pCtx, &pInput->pItems[i], pInput->type, isTopQuery);
G
Ganlin Zhao 已提交
2962
  }
2963 2964
}

G
Ganlin Zhao 已提交
2965
int32_t topFunctionMerge(SqlFunctionCtx* pCtx) {
X
Xiaoyu Wang 已提交
2966
  SResultRowEntryInfo*  pEntryInfo = GET_RES_INFO(pCtx);
2967
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
2968
  SColumnInfoData*      pCol = pInput->pData[0];
2969 2970
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

X
Xiaoyu Wang 已提交
2971 2972 2973
  int32_t     start = pInput->startRowIndex;
  char*       data = colDataGetData(pCol, start);
  STopBotRes* pInputInfo = (STopBotRes*)varDataVal(data);
2974
  STopBotRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
2975

2976
  pInfo->maxSize = pInputInfo->maxSize;
X
Xiaoyu Wang 已提交
2977
  pInfo->type = pInputInfo->type;
2978
  topBotTransferInfo(pCtx, pInputInfo, true);
G
Ganlin Zhao 已提交
2979
  SET_VAL(GET_RES_INFO(pCtx), pEntryInfo->numOfRes, pEntryInfo->numOfRes);
2980 2981 2982 2983

  return TSDB_CODE_SUCCESS;
}

2984
int32_t bottomFunctionMerge(SqlFunctionCtx* pCtx) {
X
Xiaoyu Wang 已提交
2985
  SResultRowEntryInfo*  pEntryInfo = GET_RES_INFO(pCtx);
2986
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
2987
  SColumnInfoData*      pCol = pInput->pData[0];
2988
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);
2989

X
Xiaoyu Wang 已提交
2990 2991 2992
  int32_t     start = pInput->startRowIndex;
  char*       data = colDataGetData(pCol, start);
  STopBotRes* pInputInfo = (STopBotRes*)varDataVal(data);
2993
  STopBotRes* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
2994

2995
  pInfo->maxSize = pInputInfo->maxSize;
X
Xiaoyu Wang 已提交
2996
  pInfo->type = pInputInfo->type;
2997 2998
  topBotTransferInfo(pCtx, pInputInfo, false);
  SET_VAL(GET_RES_INFO(pCtx), pEntryInfo->numOfRes, pEntryInfo->numOfRes);
2999

3000
  return TSDB_CODE_SUCCESS;
3001 3002
}

3003 3004
static int32_t topBotResComparFn(const void* p1, const void* p2, const void* param) {
  uint16_t type = *(uint16_t*)param;
3005

3006 3007
  STopBotResItem* val1 = (STopBotResItem*)p1;
  STopBotResItem* val2 = (STopBotResItem*)p2;
3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029

  if (IS_SIGNED_NUMERIC_TYPE(type)) {
    if (val1->v.i == val2->v.i) {
      return 0;
    }

    return (val1->v.i > val2->v.i) ? 1 : -1;
  } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
    if (val1->v.u == val2->v.u) {
      return 0;
    }

    return (val1->v.u > val2->v.u) ? 1 : -1;
  }

  if (val1->v.d == val2->v.d) {
    return 0;
  }

  return (val1->v.d > val2->v.d) ? 1 : -1;
}

3030
void doAddIntoResult(SqlFunctionCtx* pCtx, void* pData, int32_t rowIndex, SSDataBlock* pSrcBlock, uint16_t type,
3031
                     uint64_t uid, SResultRowEntryInfo* pEntryInfo, bool isTopQuery) {
3032
  STopBotRes* pRes = getTopBotOutputInfo(pCtx);
3033

3034 3035 3036
  SVariant val = {0};
  taosVariantCreateFromBinary(&val, pData, tDataTypes[type].bytes, type);

3037
  STopBotResItem* pItems = pRes->pItems;
3038 3039 3040
  assert(pItems != NULL);

  // not full yet
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Ganlin Zhao 已提交
3041
  if (pEntryInfo->numOfRes < pRes->maxSize) {
3042
    STopBotResItem* pItem = &pItems[pEntryInfo->numOfRes];
3043
    pItem->v = val;
3044
    pItem->uid = uid;
3045

3046
    // save the data of this tuple
3047
    saveTupleData(pCtx, rowIndex, pSrcBlock, &pItem->tuplePos);
3048 3049 3050

    // allocate the buffer and keep the data of this row into the new allocated buffer
    pEntryInfo->numOfRes++;
G
Ganlin Zhao 已提交
3051 3052
    // accumulate number of items for each vgroup, this info is needed for merge
    pRes->numOfItems++;
3053
    taosheapsort((void*)pItems, sizeof(STopBotResItem), pEntryInfo->numOfRes, (const void*)&type, topBotResComparFn,
3054
                 !isTopQuery);
3055
  } else {  // replace the minimum value in the result
X
Xiaoyu Wang 已提交
3056 3057 3058 3059 3060 3061
    if ((isTopQuery && ((IS_SIGNED_NUMERIC_TYPE(type) && val.i > pItems[0].v.i) ||
                        (IS_UNSIGNED_NUMERIC_TYPE(type) && val.u > pItems[0].v.u) ||
                        (IS_FLOAT_TYPE(type) && val.d > pItems[0].v.d))) ||
        (!isTopQuery && ((IS_SIGNED_NUMERIC_TYPE(type) && val.i < pItems[0].v.i) ||
                         (IS_UNSIGNED_NUMERIC_TYPE(type) && val.u < pItems[0].v.u) ||
                         (IS_FLOAT_TYPE(type) && val.d < pItems[0].v.d)))) {
3062
      // replace the old data and the coresponding tuple data
3063
      STopBotResItem* pItem = &pItems[0];
3064
      pItem->v = val;
3065
      pItem->uid = uid;
3066 3067

      // save the data of this tuple by over writing the old data
3068
      copyTupleData(pCtx, rowIndex, pSrcBlock, &pItem->tuplePos);
3069
      taosheapadjust((void*)pItems, sizeof(STopBotResItem), 0, pEntryInfo->numOfRes - 1, (const void*)&type,
3070
                     topBotResComparFn, NULL, !isTopQuery);
3071
    }
3072 3073
  }
}
3074

3075
void saveTupleData(SqlFunctionCtx* pCtx, int32_t rowIndex, const SSDataBlock* pSrcBlock, STuplePos* pPos) {
3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090
  SFilePage* pPage = NULL;

  int32_t completeRowSize = pSrcBlock->info.rowSize + pSrcBlock->info.numOfCols * sizeof(bool);

  if (pCtx->curBufPage == -1) {
    pPage = getNewBufPage(pCtx->pBuf, 0, &pCtx->curBufPage);
    pPage->num = sizeof(SFilePage);
  } else {
    pPage = getBufPage(pCtx->pBuf, pCtx->curBufPage);
    if (pPage->num + completeRowSize > getBufPageSize(pCtx->pBuf)) {
      pPage = getNewBufPage(pCtx->pBuf, 0, &pCtx->curBufPage);
      pPage->num = sizeof(SFilePage);
    }
  }

3091
  pPos->pageId = pCtx->curBufPage;
3092 3093 3094 3095 3096 3097 3098 3099 3100 3101

  // keep the current row data, extract method
  int32_t offset = 0;
  bool*   nullList = (bool*)((char*)pPage + pPage->num);
  char*   pStart = (char*)(nullList + sizeof(bool) * pSrcBlock->info.numOfCols);
  for (int32_t i = 0; i < pSrcBlock->info.numOfCols; ++i) {
    SColumnInfoData* pCol = taosArrayGet(pSrcBlock->pDataBlock, i);
    bool             isNull = colDataIsNull_s(pCol, rowIndex);
    if (isNull) {
      nullList[i] = true;
3102
      offset += pCol->info.bytes;
3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115
      continue;
    }

    char* p = colDataGetData(pCol, rowIndex);
    if (IS_VAR_DATA_TYPE(pCol->info.type)) {
      memcpy(pStart + offset, p, varDataTLen(p));
    } else {
      memcpy(pStart + offset, p, pCol->info.bytes);
    }

    offset += pCol->info.bytes;
  }

3116
  pPos->offset = pPage->num;
3117 3118 3119 3120 3121 3122
  pPage->num += completeRowSize;

  setBufPageDirty(pPage, true);
  releaseBufPage(pCtx->pBuf, pPage);
}

3123 3124
void copyTupleData(SqlFunctionCtx* pCtx, int32_t rowIndex, const SSDataBlock* pSrcBlock, STuplePos* pPos) {
  SFilePage* pPage = getBufPage(pCtx->pBuf, pPos->pageId);
3125

3126
  bool* nullList = (bool*)((char*)pPage + pPos->offset);
3127 3128 3129
  char* pStart = (char*)(nullList + pSrcBlock->info.numOfCols * sizeof(bool));

  int32_t offset = 0;
3130
  for (int32_t i = 0; i < pSrcBlock->info.numOfCols; ++i) {
3131 3132
    SColumnInfoData* pCol = taosArrayGet(pSrcBlock->pDataBlock, i);
    if ((nullList[i] = colDataIsNull_s(pCol, rowIndex)) == true) {
3133
      offset += pCol->info.bytes;
3134 3135 3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149 3150
      continue;
    }

    char* p = colDataGetData(pCol, rowIndex);
    if (IS_VAR_DATA_TYPE(pCol->info.type)) {
      memcpy(pStart + offset, p, varDataTLen(p));
    } else {
      memcpy(pStart + offset, p, pCol->info.bytes);
    }

    offset += pCol->info.bytes;
  }

  setBufPageDirty(pPage, true);
  releaseBufPage(pCtx->pBuf, pPage);
}

3151
int32_t topBotFinalizeImpl(SqlFunctionCtx* pCtx, SSDataBlock* pBlock, bool isMerge) {
3152 3153
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);
  STopBotRes*          pRes = GET_ROWCELL_INTERBUF(pEntryInfo);
3154

3155
  int16_t type = pCtx->input.pData[0]->info.type;
3156 3157
  int32_t slotId = pCtx->pExpr->base.resSchema.slotId;

3158 3159 3160 3161
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  // todo assign the tag value and the corresponding row data
  int32_t currentRow = pBlock->info.rows;
3162 3163 3164 3165 3166 3167 3168
  for (int32_t i = 0; i < pEntryInfo->numOfRes; ++i) {
    STopBotResItem* pItem = &pRes->pItems[i];
    if (type == TSDB_DATA_TYPE_FLOAT) {
      float v = pItem->v.d;
      colDataAppend(pCol, currentRow, (const char*)&v, false);
    } else {
      colDataAppend(pCol, currentRow, (const char*)&pItem->v.i, false);
3169
    }
3170

3171 3172 3173
    if (!isMerge) {
      setSelectivityValue(pCtx, pBlock, &pRes->pItems[i].tuplePos, currentRow);
    }
3174
    currentRow += 1;
3175 3176 3177
  }

  return pEntryInfo->numOfRes;
3178
}
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Ganlin Zhao 已提交
3179

X
Xiaoyu Wang 已提交
3180
int32_t topBotFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) { return topBotFinalizeImpl(pCtx, pBlock, false); }
3181 3182 3183 3184 3185

int32_t topBotMergeFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  return topBotFinalizeImpl(pCtx, pBlock, true);
}

G
Ganlin Zhao 已提交
3186 3187
int32_t topBotPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);
X
Xiaoyu Wang 已提交
3188 3189 3190
  STopBotRes*          pRes = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t              resultBytes = getTopBotInfoSize(pRes->maxSize);
  char*                res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));
G
Ganlin Zhao 已提交
3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202 3203

  memcpy(varDataVal(res), pRes, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return 1;
}

X
Xiaoyu Wang 已提交
3204
void addResult(SqlFunctionCtx* pCtx, STopBotResItem* pSourceItem, int16_t type, bool isTopQuery) {
3205
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);
X
Xiaoyu Wang 已提交
3206 3207
  STopBotRes*          pRes = getTopBotOutputInfo(pCtx);
  STopBotResItem*      pItems = pRes->pItems;
3208 3209 3210
  assert(pItems != NULL);

  // not full yet
G
Ganlin Zhao 已提交
3211
  if (pEntryInfo->numOfRes < pRes->maxSize) {
3212 3213 3214 3215 3216 3217
    STopBotResItem* pItem = &pItems[pEntryInfo->numOfRes];
    pItem->v = pSourceItem->v;
    pItem->uid = pSourceItem->uid;
    pItem->tuplePos.pageId = -1;
    replaceTupleData(&pItem->tuplePos, &pSourceItem->tuplePos);
    pEntryInfo->numOfRes++;
G
Ganlin Zhao 已提交
3218 3219
    // accumulate number of items for each vgroup, this info is needed for merge
    pRes->numOfItems++;
3220 3221 3222
    taosheapsort((void*)pItems, sizeof(STopBotResItem), pEntryInfo->numOfRes, (const void*)&type, topBotResComparFn,
                 !isTopQuery);
  } else {  // replace the minimum value in the result
X
Xiaoyu Wang 已提交
3223 3224 3225 3226 3227 3228
    if ((isTopQuery && ((IS_SIGNED_NUMERIC_TYPE(type) && pSourceItem->v.i > pItems[0].v.i) ||
                        (IS_UNSIGNED_NUMERIC_TYPE(type) && pSourceItem->v.u > pItems[0].v.u) ||
                        (IS_FLOAT_TYPE(type) && pSourceItem->v.d > pItems[0].v.d))) ||
        (!isTopQuery && ((IS_SIGNED_NUMERIC_TYPE(type) && pSourceItem->v.i < pItems[0].v.i) ||
                         (IS_UNSIGNED_NUMERIC_TYPE(type) && pSourceItem->v.u < pItems[0].v.u) ||
                         (IS_FLOAT_TYPE(type) && pSourceItem->v.d < pItems[0].v.d)))) {
3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242
      // replace the old data and the coresponding tuple data
      STopBotResItem* pItem = &pItems[0];
      pItem->v = pSourceItem->v;
      pItem->uid = pSourceItem->uid;

      // save the data of this tuple by over writing the old data
      replaceTupleData(&pItem->tuplePos, &pSourceItem->tuplePos);
      taosheapadjust((void*)pItems, sizeof(STopBotResItem), 0, pEntryInfo->numOfRes - 1, (const void*)&type,
                     topBotResComparFn, NULL, !isTopQuery);
    }
  }
}

int32_t topCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
X
Xiaoyu Wang 已提交
3243
  int32_t              type = pDestCtx->input.pData[0]->info.type;
3244 3245 3246 3247 3248 3249 3250 3251 3252
  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  STopBotRes*          pSBuf = getTopBotOutputInfo(pSourceCtx);
  for (int32_t i = 0; i < pSResInfo->numOfRes; i++) {
    addResult(pDestCtx, pSBuf->pItems + i, type, true);
  }
  return TSDB_CODE_SUCCESS;
}

int32_t bottomCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
X
Xiaoyu Wang 已提交
3253
  int32_t              type = pDestCtx->input.pData[0]->info.type;
3254 3255 3256 3257 3258 3259 3260 3261
  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  STopBotRes*          pSBuf = getTopBotOutputInfo(pSourceCtx);
  for (int32_t i = 0; i < pSResInfo->numOfRes; i++) {
    addResult(pDestCtx, pSBuf->pItems + i, type, false);
  }
  return TSDB_CODE_SUCCESS;
}

X
Xiaoyu Wang 已提交
3262
int32_t getSpreadInfoSize() { return (int32_t)sizeof(SSpreadInfo); }
G
Ganlin Zhao 已提交
3263

G
Ganlin Zhao 已提交
3264 3265 3266 3267 3268
bool getSpreadFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SSpreadInfo);
  return true;
}

X
Xiaoyu Wang 已提交
3269
bool spreadFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
G
Ganlin Zhao 已提交
3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  SSpreadInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
  SET_DOUBLE_VAL(&pInfo->min, DBL_MAX);
  SET_DOUBLE_VAL(&pInfo->max, -DBL_MAX);
  pInfo->hasResult = false;
  return true;
}

X
Xiaoyu Wang 已提交
3281
int32_t spreadFunction(SqlFunctionCtx* pCtx) {
G
Ganlin Zhao 已提交
3282 3283 3284 3285
  int32_t numOfElems = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
3286 3287
  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
  int32_t               type = pInput->pData[0]->info.type;
G
Ganlin Zhao 已提交
3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318

  SSpreadInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  if (pInput->colDataAggIsSet) {
    numOfElems = pInput->numOfRows - pAgg->numOfNull;
    if (numOfElems == 0) {
      goto _spread_over;
    }
    double tmin = 0.0, tmax = 0.0;
    if (IS_SIGNED_NUMERIC_TYPE(type)) {
      tmin = (double)GET_INT64_VAL(&pAgg->min);
      tmax = (double)GET_INT64_VAL(&pAgg->max);
    } else if (IS_FLOAT_TYPE(type)) {
      tmin = GET_DOUBLE_VAL(&pAgg->min);
      tmax = GET_DOUBLE_VAL(&pAgg->max);
    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      tmin = (double)GET_UINT64_VAL(&pAgg->min);
      tmax = (double)GET_UINT64_VAL(&pAgg->max);
    }

    if (GET_DOUBLE_VAL(&pInfo->min) > tmin) {
      SET_DOUBLE_VAL(&pInfo->min, tmin);
    }

    if (GET_DOUBLE_VAL(&pInfo->max) < tmax) {
      SET_DOUBLE_VAL(&pInfo->max, tmax);
    }

  } else {  // computing based on the true data block
    SColumnInfoData* pCol = pInput->pData[0];

X
Xiaoyu Wang 已提交
3319
    int32_t start = pInput->startRowIndex;
G
Ganlin Zhao 已提交
3320 3321 3322 3323 3324 3325 3326 3327
    int32_t numOfRows = pInput->numOfRows;

    // check the valid data one by one
    for (int32_t i = start; i < pInput->numOfRows + start; ++i) {
      if (colDataIsNull_f(pCol->nullbitmap, i)) {
        continue;
      }

X
Xiaoyu Wang 已提交
3328
      char* data = colDataGetData(pCol, i);
G
Ganlin Zhao 已提交
3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353

      double v = 0;
      GET_TYPED_DATA(v, double, type, data);
      if (v < GET_DOUBLE_VAL(&pInfo->min)) {
        SET_DOUBLE_VAL(&pInfo->min, v);
      }

      if (v > GET_DOUBLE_VAL(&pInfo->max)) {
        SET_DOUBLE_VAL(&pInfo->max, v);
      }

      numOfElems += 1;
    }
  }

_spread_over:
  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElems, 1);
  if (numOfElems > 0) {
    pInfo->hasResult = true;
  }

  return TSDB_CODE_SUCCESS;
}

3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364
static void spreadTransferInfo(SSpreadInfo* pInput, SSpreadInfo* pOutput) {
  pOutput->hasResult = pInput->hasResult;
  if (pInput->max > pOutput->max) {
    pOutput->max = pInput->max;
  }

  if (pInput->min < pOutput->min) {
    pOutput->min = pInput->min;
  }
}

X
Xiaoyu Wang 已提交
3365
int32_t spreadFunctionMerge(SqlFunctionCtx* pCtx) {
3366
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
3367
  SColumnInfoData*      pCol = pInput->pData[0];
3368 3369 3370 3371 3372
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SSpreadInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  int32_t start = pInput->startRowIndex;
X
Xiaoyu Wang 已提交
3373
  char*   data = colDataGetData(pCol, start);
G
Ganlin Zhao 已提交
3374
  SSpreadInfo* pInputInfo = (SSpreadInfo*)varDataVal(data);
3375

3376
  spreadTransferInfo(pInputInfo, pInfo);
3377 3378 3379 3380 3381 3382

  SET_VAL(GET_RES_INFO(pCtx), 1, 1);

  return TSDB_CODE_SUCCESS;
}

G
Ganlin Zhao 已提交
3383 3384 3385 3386 3387 3388 3389
int32_t spreadFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SSpreadInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  if (pInfo->hasResult == true) {
    SET_DOUBLE_VAL(&pInfo->result, pInfo->max - pInfo->min);
  }
  return functionFinalize(pCtx, pBlock);
}
3390

3391 3392 3393
int32_t spreadPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SSpreadInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
X
Xiaoyu Wang 已提交
3394 3395
  int32_t      resultBytes = getSpreadInfoSize();
  char*        res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));
3396 3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408

  memcpy(varDataVal(res), pInfo, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return pResInfo->numOfRes;
}

3409 3410
int32_t spreadCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
X
Xiaoyu Wang 已提交
3411
  SSpreadInfo*         pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
3412 3413

  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
X
Xiaoyu Wang 已提交
3414
  SSpreadInfo*         pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
3415
  spreadTransferInfo(pSBuf, pDBuf);
3416 3417 3418 3419
  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
  return TSDB_CODE_SUCCESS;
}

X
Xiaoyu Wang 已提交
3420
int32_t getElapsedInfoSize() { return (int32_t)sizeof(SElapsedInfo); }
3421

G
Ganlin Zhao 已提交
3422 3423 3424 3425 3426
bool getElapsedFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SElapsedInfo);
  return true;
}

X
Xiaoyu Wang 已提交
3427
bool elapsedFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
G
Ganlin Zhao 已提交
3428 3429 3430 3431 3432 3433 3434 3435 3436
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  SElapsedInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
  pInfo->result = 0;
  pInfo->min = MAX_TS_KEY;
  pInfo->max = 0;

H
Haojun Liao 已提交
3437
  if (pCtx->numOfParams > 2) {
G
Ganlin Zhao 已提交
3438 3439 3440 3441 3442 3443 3444 3445
    pInfo->timeUnit = pCtx->param[1].param.i;
  } else {
    pInfo->timeUnit = 1;
  }

  return true;
}

X
Xiaoyu Wang 已提交
3446
int32_t elapsedFunction(SqlFunctionCtx* pCtx) {
G
Ganlin Zhao 已提交
3447 3448 3449 3450
  int32_t numOfElems = 0;

  // Only the pre-computing information loaded and actual data does not loaded
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
3451
  SColumnDataAgg*       pAgg = pInput->pColumnDataAgg[0];
G
Ganlin Zhao 已提交
3452 3453 3454

  SElapsedInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

X
Xiaoyu Wang 已提交
3455
  numOfElems = pInput->numOfRows;  // since this is the primary timestamp, no need to exclude NULL values
G
Ganlin Zhao 已提交
3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471
  if (numOfElems == 0) {
    goto _elapsed_over;
  }

  if (pInput->colDataAggIsSet) {
    if (pInfo->min == MAX_TS_KEY) {
      pInfo->min = GET_INT64_VAL(&pAgg->min);
      pInfo->max = GET_INT64_VAL(&pAgg->max);
    } else {
      if (pCtx->order == TSDB_ORDER_ASC) {
        pInfo->max = GET_INT64_VAL(&pAgg->max);
      } else {
        pInfo->min = GET_INT64_VAL(&pAgg->min);
      }
    }
  } else {  // computing based on the true data block
H
Haojun Liao 已提交
3472
    if (0 == pInput->numOfRows) {
G
Ganlin Zhao 已提交
3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487
      if (pCtx->order == TSDB_ORDER_DESC) {
        if (pCtx->end.key != INT64_MIN) {
          pInfo->min = pCtx->end.key;
        }
      } else {
        if (pCtx->end.key != INT64_MIN) {
          pInfo->max = pCtx->end.key + 1;
        }
      }
      goto _elapsed_over;
    }

    SColumnInfoData* pCol = pInput->pData[0];

    int32_t start     = pInput->startRowIndex;
H
Haojun Liao 已提交
3488
    TSKEY* ptsList = (int64_t*)colDataGetData(pCol, 0);
G
Ganlin Zhao 已提交
3489 3490
    if (pCtx->order == TSDB_ORDER_DESC) {
      if (pCtx->start.key == INT64_MIN) {
X
Xiaoyu Wang 已提交
3491 3492
        pInfo->max =
            (pInfo->max < ptsList[start + pInput->numOfRows - 1]) ? ptsList[start + pInput->numOfRows - 1] : pInfo->max;
G
Ganlin Zhao 已提交
3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511
      } else {
        pInfo->max = pCtx->start.key + 1;
      }

      if (pCtx->end.key != INT64_MIN) {
        pInfo->min = pCtx->end.key;
      } else {
        pInfo->min = ptsList[0];
      }
    } else {
      if (pCtx->start.key == INT64_MIN) {
        pInfo->min = (pInfo->min > ptsList[0]) ? ptsList[0] : pInfo->min;
      } else {
        pInfo->min = pCtx->start.key;
      }

      if (pCtx->end.key != INT64_MIN) {
        pInfo->max = pCtx->end.key + 1;
      } else {
H
Haojun Liao 已提交
3512
        pInfo->max = ptsList[start + pInput->numOfRows - 1];
G
Ganlin Zhao 已提交
3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523
      }
    }
  }

_elapsed_over:
  // data in the check operation are all null, not output
  SET_VAL(GET_RES_INFO(pCtx), numOfElems, 1);

  return TSDB_CODE_SUCCESS;
}

3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534
static void elapsedTransferInfo(SElapsedInfo* pInput, SElapsedInfo* pOutput) {
  pOutput->timeUnit = pInput->timeUnit;
  if (pOutput->min > pInput->min) {
    pOutput->min = pInput->min;
  }

  if (pOutput->max < pInput->max) {
    pOutput->max = pInput->max;
  }
}

X
Xiaoyu Wang 已提交
3535
int32_t elapsedFunctionMerge(SqlFunctionCtx* pCtx) {
3536
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
3537
  SColumnInfoData*      pCol = pInput->pData[0];
3538 3539 3540 3541
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SElapsedInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

X
Xiaoyu Wang 已提交
3542 3543 3544
  int32_t       start = pInput->startRowIndex;
  char*         data = colDataGetData(pCol, start);
  SElapsedInfo* pInputInfo = (SElapsedInfo*)varDataVal(data);
3545

3546
  elapsedTransferInfo(pInputInfo, pInfo);
3547 3548 3549 3550 3551

  SET_VAL(GET_RES_INFO(pCtx), 1, 1);
  return TSDB_CODE_SUCCESS;
}

G
Ganlin Zhao 已提交
3552 3553
int32_t elapsedFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SElapsedInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
X
Xiaoyu Wang 已提交
3554
  double        result = (double)pInfo->max - (double)pInfo->min;
G
Ganlin Zhao 已提交
3555 3556 3557 3558 3559
  result = (result >= 0) ? result : -result;
  pInfo->result = result / pInfo->timeUnit;
  return functionFinalize(pCtx, pBlock);
}

3560 3561
int32_t elapsedPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
X
Xiaoyu Wang 已提交
3562 3563 3564
  SElapsedInfo*        pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t              resultBytes = getElapsedInfoSize();
  char*                res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));
3565 3566 3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577

  memcpy(varDataVal(res), pInfo, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return pResInfo->numOfRes;
}

3578 3579
int32_t elapsedCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
X
Xiaoyu Wang 已提交
3580
  SElapsedInfo*        pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
3581 3582

  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
X
Xiaoyu Wang 已提交
3583
  SElapsedInfo*        pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
3584

3585
  elapsedTransferInfo(pSBuf, pDBuf);
3586 3587 3588 3589
  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
  return TSDB_CODE_SUCCESS;
}

3590 3591 3592 3593
int32_t getHistogramInfoSize() {
  return (int32_t)sizeof(SHistoFuncInfo) + HISTOGRAM_MAX_BINS_NUM * sizeof(SHistoFuncBin);
}

3594 3595 3596 3597 3598
bool getHistogramFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SHistoFuncInfo) + HISTOGRAM_MAX_BINS_NUM * sizeof(SHistoFuncBin);
  return true;
}

X
Xiaoyu Wang 已提交
3599
static int8_t getHistogramBinType(char* binTypeStr) {
3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613
  int8_t binType;
  if (strcasecmp(binTypeStr, "user_input") == 0) {
    binType = USER_INPUT_BIN;
  } else if (strcasecmp(binTypeStr, "linear_bin") == 0) {
    binType = LINEAR_BIN;
  } else if (strcasecmp(binTypeStr, "log_bin") == 0) {
    binType = LOG_BIN;
  } else {
    binType = UNKNOWN_BIN;
  }

  return binType;
}

X
Xiaoyu Wang 已提交
3614
static bool getHistogramBinDesc(SHistoFuncInfo* pInfo, char* binDescStr, int8_t binType, bool normalized) {
3615 3616 3617 3618 3619 3620 3621 3622 3623 3624
  cJSON*  binDesc = cJSON_Parse(binDescStr);
  int32_t numOfBins;
  double* intervals;
  if (cJSON_IsObject(binDesc)) { /* linaer/log bins */
    int32_t numOfParams = cJSON_GetArraySize(binDesc);
    int32_t startIndex;
    if (numOfParams != 4) {
      return false;
    }

X
Xiaoyu Wang 已提交
3625 3626 3627 3628
    cJSON* start = cJSON_GetObjectItem(binDesc, "start");
    cJSON* factor = cJSON_GetObjectItem(binDesc, "factor");
    cJSON* width = cJSON_GetObjectItem(binDesc, "width");
    cJSON* count = cJSON_GetObjectItem(binDesc, "count");
3629 3630 3631 3632 3633 3634
    cJSON* infinity = cJSON_GetObjectItem(binDesc, "infinity");

    if (!cJSON_IsNumber(start) || !cJSON_IsNumber(count) || !cJSON_IsBool(infinity)) {
      return false;
    }

X
Xiaoyu Wang 已提交
3635
    if (count->valueint <= 0 || count->valueint > 1000) {  // limit count to 1000
3636 3637 3638 3639 3640 3641 3642 3643
      return false;
    }

    if (isinf(start->valuedouble) || (width != NULL && isinf(width->valuedouble)) ||
        (factor != NULL && isinf(factor->valuedouble)) || (count != NULL && isinf(count->valuedouble))) {
      return false;
    }

3644
    int32_t counter = (int32_t)count->valueint;
3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703
    if (infinity->valueint == false) {
      startIndex = 0;
      numOfBins = counter + 1;
    } else {
      startIndex = 1;
      numOfBins = counter + 3;
    }

    intervals = taosMemoryCalloc(numOfBins, sizeof(double));
    if (cJSON_IsNumber(width) && factor == NULL && binType == LINEAR_BIN) {
      // linear bin process
      if (width->valuedouble == 0) {
        taosMemoryFree(intervals);
        return false;
      }
      for (int i = 0; i < counter + 1; ++i) {
        intervals[startIndex] = start->valuedouble + i * width->valuedouble;
        if (isinf(intervals[startIndex])) {
          taosMemoryFree(intervals);
          return false;
        }
        startIndex++;
      }
    } else if (cJSON_IsNumber(factor) && width == NULL && binType == LOG_BIN) {
      // log bin process
      if (start->valuedouble == 0) {
        taosMemoryFree(intervals);
        return false;
      }
      if (factor->valuedouble < 0 || factor->valuedouble == 0 || factor->valuedouble == 1) {
        taosMemoryFree(intervals);
        return false;
      }
      for (int i = 0; i < counter + 1; ++i) {
        intervals[startIndex] = start->valuedouble * pow(factor->valuedouble, i * 1.0);
        if (isinf(intervals[startIndex])) {
          taosMemoryFree(intervals);
          return false;
        }
        startIndex++;
      }
    } else {
      taosMemoryFree(intervals);
      return false;
    }

    if (infinity->valueint == true) {
      intervals[0] = -INFINITY;
      intervals[numOfBins - 1] = INFINITY;
      // in case of desc bin orders, -inf/inf should be swapped
      ASSERT(numOfBins >= 4);
      if (intervals[1] > intervals[numOfBins - 2]) {
        TSWAP(intervals[0], intervals[numOfBins - 1]);
      }
    }
  } else if (cJSON_IsArray(binDesc)) { /* user input bins */
    if (binType != USER_INPUT_BIN) {
      return false;
    }
3704
    numOfBins = cJSON_GetArraySize(binDesc);
3705 3706 3707 3708 3709 3710 3711 3712 3713 3714 3715 3716 3717 3718 3719 3720 3721 3722 3723 3724 3725 3726 3727 3728
    intervals = taosMemoryCalloc(numOfBins, sizeof(double));
    cJSON* bin = binDesc->child;
    if (bin == NULL) {
      taosMemoryFree(intervals);
      return false;
    }
    int i = 0;
    while (bin) {
      intervals[i] = bin->valuedouble;
      if (!cJSON_IsNumber(bin)) {
        taosMemoryFree(intervals);
        return false;
      }
      if (i != 0 && intervals[i] <= intervals[i - 1]) {
        taosMemoryFree(intervals);
        return false;
      }
      bin = bin->next;
      i++;
    }
  } else {
    return false;
  }

X
Xiaoyu Wang 已提交
3729
  pInfo->numOfBins = numOfBins - 1;
3730
  pInfo->normalized = normalized;
3731
  for (int32_t i = 0; i < pInfo->numOfBins; ++i) {
3732 3733 3734 3735 3736 3737 3738 3739 3740
    pInfo->bins[i].lower = intervals[i] < intervals[i + 1] ? intervals[i] : intervals[i + 1];
    pInfo->bins[i].upper = intervals[i + 1] > intervals[i] ? intervals[i + 1] : intervals[i];
    pInfo->bins[i].count = 0;
  }

  taosMemoryFree(intervals);
  return true;
}

X
Xiaoyu Wang 已提交
3741
bool histogramFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
3742 3743 3744 3745
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

X
Xiaoyu Wang 已提交
3746
  SHistoFuncInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
3747 3748 3749
  pInfo->numOfBins = 0;
  pInfo->totalCount = 0;
  pInfo->normalized = 0;
3750

3751 3752 3753 3754
  int8_t binType = getHistogramBinType(varDataVal(pCtx->param[1].param.pz));
  if (binType == UNKNOWN_BIN) {
    return false;
  }
X
Xiaoyu Wang 已提交
3755
  char*   binDesc = varDataVal(pCtx->param[2].param.pz);
3756
  int64_t normalized = pCtx->param[3].param.i;
3757 3758 3759
  if (normalized != 0 && normalized != 1) {
    return false;
  }
3760 3761 3762
  if (!getHistogramBinDesc(pInfo, binDesc, binType, (bool)normalized)) {
    return false;
  }
3763 3764 3765 3766

  return true;
}

X
Xiaoyu Wang 已提交
3767
int32_t histogramFunction(SqlFunctionCtx* pCtx) {
3768 3769 3770 3771 3772 3773 3774 3775 3776 3777
  SHistoFuncInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData*      pCol = pInput->pData[0];

  int32_t type = pInput->pData[0]->info.type;

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

3778
  int32_t numOfElems = 0;
3779 3780 3781 3782 3783
  for (int32_t i = start; i < numOfRows + start; ++i) {
    if (pCol->hasNull && colDataIsNull_f(pCol->nullbitmap, i)) {
      continue;
    }

3784 3785
    numOfElems++;

X
Xiaoyu Wang 已提交
3786
    char*  data = colDataGetData(pCol, i);
3787 3788 3789 3790 3791 3792
    double v;
    GET_TYPED_DATA(v, double, type, data);

    for (int32_t k = 0; k < pInfo->numOfBins; ++k) {
      if (v > pInfo->bins[k].lower && v <= pInfo->bins[k].upper) {
        pInfo->bins[k].count++;
3793
        pInfo->totalCount++;
3794 3795 3796
        break;
      }
    }
3797 3798
  }

3799
  SET_VAL(GET_RES_INFO(pCtx), numOfElems, pInfo->numOfBins);
3800 3801 3802
  return TSDB_CODE_SUCCESS;
}

3803 3804
static void histogramTransferInfo(SHistoFuncInfo* pInput, SHistoFuncInfo* pOutput) {
  pOutput->normalized = pInput->normalized;
X
Xiaoyu Wang 已提交
3805
  pOutput->numOfBins = pInput->numOfBins;
3806 3807 3808 3809 3810 3811 3812 3813
  pOutput->totalCount += pInput->totalCount;
  for (int32_t k = 0; k < pOutput->numOfBins; ++k) {
    pOutput->bins[k].lower = pInput->bins[k].lower;
    pOutput->bins[k].upper = pInput->bins[k].upper;
    pOutput->bins[k].count += pInput->bins[k].count;
  }
}

X
Xiaoyu Wang 已提交
3814
int32_t histogramFunctionMerge(SqlFunctionCtx* pCtx) {
3815
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
3816
  SColumnInfoData*      pCol = pInput->pData[0];
3817 3818 3819 3820
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SHistoFuncInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

X
Xiaoyu Wang 已提交
3821 3822 3823
  int32_t         start = pInput->startRowIndex;
  char*           data = colDataGetData(pCol, start);
  SHistoFuncInfo* pInputInfo = (SHistoFuncInfo*)varDataVal(data);
3824

3825
  histogramTransferInfo(pInputInfo, pInfo);
3826

G
Ganlin Zhao 已提交
3827
  SET_VAL(GET_RES_INFO(pCtx), pInfo->numOfBins, pInfo->numOfBins);
3828 3829 3830
  return TSDB_CODE_SUCCESS;
}

3831
int32_t histogramFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
3832
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
X
Xiaoyu Wang 已提交
3833 3834 3835
  SHistoFuncInfo*      pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t              slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData*     pCol = taosArrayGet(pBlock->pDataBlock, slotId);
3836 3837 3838

  int32_t currentRow = pBlock->info.rows;

3839 3840
  if (pInfo->normalized) {
    for (int32_t k = 0; k < pResInfo->numOfRes; ++k) {
X
Xiaoyu Wang 已提交
3841
      if (pInfo->totalCount != 0) {
3842 3843 3844 3845 3846 3847 3848
        pInfo->bins[k].percentage = pInfo->bins[k].count / (double)pInfo->totalCount;
      } else {
        pInfo->bins[k].percentage = 0;
      }
    }
  }

3849
  for (int32_t i = 0; i < pResInfo->numOfRes; ++i) {
3850
    int32_t len;
X
Xiaoyu Wang 已提交
3851
    char    buf[512] = {0};
3852
    if (!pInfo->normalized) {
X
Xiaoyu Wang 已提交
3853 3854
      len = sprintf(varDataVal(buf), "{\"lower_bin\":%g, \"upper_bin\":%g, \"count\":%" PRId64 "}",
                    pInfo->bins[i].lower, pInfo->bins[i].upper, pInfo->bins[i].count);
3855
    } else {
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Xiaoyu Wang 已提交
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      len = sprintf(varDataVal(buf), "{\"lower_bin\":%g, \"upper_bin\":%g, \"count\":%lf}", pInfo->bins[i].lower,
                    pInfo->bins[i].upper, pInfo->bins[i].percentage);
3858 3859 3860 3861 3862 3863
    }
    varDataSetLen(buf, len);
    colDataAppend(pCol, currentRow, buf, false);
    currentRow++;
  }

3864
  return pResInfo->numOfRes;
3865
}
3866

3867 3868
int32_t histogramPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SHistoFuncInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
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  int32_t         resultBytes = getHistogramInfoSize();
  char*           res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));
3871 3872 3873 3874 3875 3876 3877 3878 3879 3880

  memcpy(varDataVal(res), pInfo, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
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  return 1;
3882 3883
}

3884 3885 3886 3887 3888 3889 3890
int32_t histogramCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
  SHistoFuncInfo*      pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);

  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
  SHistoFuncInfo*      pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);

3891
  histogramTransferInfo(pSBuf, pDBuf);
3892 3893 3894 3895
  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
  return TSDB_CODE_SUCCESS;
}

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3896
int32_t getHLLInfoSize() { return (int32_t)sizeof(SHLLInfo); }
3897

3898 3899 3900 3901 3902
bool getHLLFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SHLLInfo);
  return true;
}

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static uint8_t hllCountNum(void* data, int32_t bytes, int32_t* buk) {
3904
  uint64_t hash = MurmurHash3_64(data, bytes);
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  int32_t  index = hash & HLL_BUCKET_MASK;
3906 3907 3908
  hash >>= HLL_BUCKET_BITS;
  hash |= ((uint64_t)1 << HLL_DATA_BITS);
  uint64_t bit = 1;
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  uint8_t  count = 1;
  while ((hash & bit) == 0) {
3911 3912 3913 3914 3915 3916 3917
    count++;
    bit <<= 1;
  }
  *buk = index;
  return count;
}

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3918 3919 3920
static void hllBucketHisto(uint8_t* buckets, int32_t* bucketHisto) {
  uint64_t* word = (uint64_t*)buckets;
  uint8_t*  bytes;
3921

X
Xiaoyu Wang 已提交
3922
  for (int32_t j = 0; j < HLL_BUCKETS >> 3; j++) {
3923 3924 3925
    if (*word == 0) {
      bucketHisto[0] += 8;
    } else {
X
Xiaoyu Wang 已提交
3926
      bytes = (uint8_t*)word;
3927 3928 3929 3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947
      bucketHisto[bytes[0]]++;
      bucketHisto[bytes[1]]++;
      bucketHisto[bytes[2]]++;
      bucketHisto[bytes[3]]++;
      bucketHisto[bytes[4]]++;
      bucketHisto[bytes[5]]++;
      bucketHisto[bytes[6]]++;
      bucketHisto[bytes[7]]++;
    }
    word++;
  }
}
static double hllTau(double x) {
  if (x == 0. || x == 1.) return 0.;
  double zPrime;
  double y = 1.0;
  double z = 1 - x;
  do {
    x = sqrt(x);
    zPrime = z;
    y *= 0.5;
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Xiaoyu Wang 已提交
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    z -= pow(1 - x, 2) * y;
  } while (zPrime != z);
3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962
  return z / 3;
}

static double hllSigma(double x) {
  if (x == 1.0) return INFINITY;
  double zPrime;
  double y = 1;
  double z = x;
  do {
    x *= x;
    zPrime = z;
    z += x * y;
    y += y;
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3963
  } while (zPrime != z);
3964 3965 3966
  return z;
}

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3967 3968 3969 3970
// estimate the cardinality, the algorithm refer this paper: "New cardinality estimation algorithms for HyperLogLog
// sketches"
static uint64_t hllCountCnt(uint8_t* buckets) {
  double  m = HLL_BUCKETS;
3971
  int32_t buckethisto[64] = {0};
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Xiaoyu Wang 已提交
3972
  hllBucketHisto(buckets, buckethisto);
3973

X
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3974
  double z = m * hllTau((m - buckethisto[HLL_DATA_BITS + 1]) / (double)m);
3975 3976 3977 3978
  for (int j = HLL_DATA_BITS; j >= 1; --j) {
    z += buckethisto[j];
    z *= 0.5;
  }
3979

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3980 3981
  z += m * hllSigma(buckethisto[0] / (double)m);
  double E = (double)llroundl(HLL_ALPHA_INF * m * m / z);
3982

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3983
  return (uint64_t)E;
3984 3985
}

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3986
int32_t hllFunction(SqlFunctionCtx* pCtx) {
3987 3988 3989 3990 3991
  SHLLInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData*      pCol = pInput->pData[0];

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3992
  int32_t type = pCol->info.type;
3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007
  int32_t bytes = pCol->info.bytes;

  int32_t start = pInput->startRowIndex;
  int32_t numOfRows = pInput->numOfRows;

  int32_t numOfElems = 0;
  for (int32_t i = start; i < numOfRows + start; ++i) {
    if (pCol->hasNull && colDataIsNull_s(pCol, i)) {
      continue;
    }

    numOfElems++;

    char* data = colDataGetData(pCol, i);
    if (IS_VAR_DATA_TYPE(type)) {
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      bytes = varDataLen(data);
4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023
      data = varDataVal(data);
    }

    int32_t index = 0;
    uint8_t count = hllCountNum(data, bytes, &index);
    uint8_t oldcount = pInfo->buckets[index];
    if (count > oldcount) {
      pInfo->buckets[index] = count;
    }
  }

  SET_VAL(GET_RES_INFO(pCtx), numOfElems, 1);
  return TSDB_CODE_SUCCESS;
}

4024 4025 4026 4027 4028 4029 4030 4031
static void hllTransferInfo(SHLLInfo* pInput, SHLLInfo* pOutput) {
  for (int32_t k = 0; k < HLL_BUCKETS; ++k) {
    if (pOutput->buckets[k] < pInput->buckets[k]) {
      pOutput->buckets[k] = pInput->buckets[k];
    }
  }
}

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4032
int32_t hllFunctionMerge(SqlFunctionCtx* pCtx) {
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4033
  SInputColumnInfoData* pInput = &pCtx->input;
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4034
  SColumnInfoData*      pCol = pInput->pData[0];
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4035 4036 4037 4038
  ASSERT(pCol->info.type == TSDB_DATA_TYPE_BINARY);

  SHLLInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));

X
Xiaoyu Wang 已提交
4039 4040 4041
  int32_t   start = pInput->startRowIndex;
  char*     data = colDataGetData(pCol, start);
  SHLLInfo* pInputInfo = (SHLLInfo*)varDataVal(data);
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4042

4043
  hllTransferInfo(pInputInfo, pInfo);
G
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4044 4045 4046 4047 4048

  SET_VAL(GET_RES_INFO(pCtx), 1, 1);
  return TSDB_CODE_SUCCESS;
}

4049
int32_t hllFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
X
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4050
  SResultRowEntryInfo* pInfo = GET_RES_INFO(pCtx);
4051

4052 4053 4054 4055 4056
  SHLLInfo* pHllInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  pHllInfo->result = hllCountCnt(pHllInfo->buckets);
  if (tsCountAlwaysReturnValue && pHllInfo->result == 0) {
    pInfo->numOfRes = 1;
  }
4057 4058 4059 4060

  return functionFinalize(pCtx, pBlock);
}

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4061 4062
int32_t hllPartialFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
X
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4063 4064 4065
  SHLLInfo*            pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  int32_t              resultBytes = getHLLInfoSize();
  char*                res = taosMemoryCalloc(resultBytes + VARSTR_HEADER_SIZE, sizeof(char));
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4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077 4078

  memcpy(varDataVal(res), pInfo, resultBytes);
  varDataSetLen(res, resultBytes);

  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  colDataAppend(pCol, pBlock->info.rows, res, false);

  taosMemoryFree(res);
  return pResInfo->numOfRes;
}

4079 4080
int32_t hllCombine(SqlFunctionCtx* pDestCtx, SqlFunctionCtx* pSourceCtx) {
  SResultRowEntryInfo* pDResInfo = GET_RES_INFO(pDestCtx);
X
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4081
  SHLLInfo*            pDBuf = GET_ROWCELL_INTERBUF(pDResInfo);
4082 4083

  SResultRowEntryInfo* pSResInfo = GET_RES_INFO(pSourceCtx);
X
Xiaoyu Wang 已提交
4084
  SHLLInfo*            pSBuf = GET_ROWCELL_INTERBUF(pSResInfo);
4085

4086
  hllTransferInfo(pSBuf, pDBuf);
4087 4088 4089 4090
  pDResInfo->numOfRes = TMAX(pDResInfo->numOfRes, pSResInfo->numOfRes);
  return TSDB_CODE_SUCCESS;
}

4091 4092 4093 4094 4095
bool getStateFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SStateInfo);
  return true;
}

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4096
static int8_t getStateOpType(char* opStr) {
4097 4098 4099 4100 4101 4102 4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115 4116
  int8_t opType;
  if (strcasecmp(opStr, "LT") == 0) {
    opType = STATE_OPER_LT;
  } else if (strcasecmp(opStr, "GT") == 0) {
    opType = STATE_OPER_GT;
  } else if (strcasecmp(opStr, "LE") == 0) {
    opType = STATE_OPER_LE;
  } else if (strcasecmp(opStr, "GE") == 0) {
    opType = STATE_OPER_GE;
  } else if (strcasecmp(opStr, "NE") == 0) {
    opType = STATE_OPER_NE;
  } else if (strcasecmp(opStr, "EQ") == 0) {
    opType = STATE_OPER_EQ;
  } else {
    opType = STATE_OPER_INVALID;
  }

  return opType;
}

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4117 4118 4119 4120 4121 4122 4123 4124 4125 4126 4127 4128 4129 4130 4131 4132 4133 4134 4135 4136 4137 4138 4139 4140 4141 4142 4143 4144
#define GET_STATE_VAL(param) ((param.nType == TSDB_DATA_TYPE_BIGINT) ? (param.i) : (param.d))

#define STATE_COMP(_op, _lval, _param) STATE_COMP_IMPL(_op, _lval, GET_STATE_VAL(_param))

#define STATE_COMP_IMPL(_op, _lval, _rval) \
  do {                                     \
    switch (_op) {                         \
      case STATE_OPER_LT:                  \
        return ((_lval) < (_rval));        \
        break;                             \
      case STATE_OPER_GT:                  \
        return ((_lval) > (_rval));        \
        break;                             \
      case STATE_OPER_LE:                  \
        return ((_lval) <= (_rval));       \
        break;                             \
      case STATE_OPER_GE:                  \
        return ((_lval) >= (_rval));       \
        break;                             \
      case STATE_OPER_NE:                  \
        return ((_lval) != (_rval));       \
        break;                             \
      case STATE_OPER_EQ:                  \
        return ((_lval) == (_rval));       \
        break;                             \
      default:                             \
        break;                             \
    }                                      \
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  } while (0)
4146 4147 4148

static bool checkStateOp(int8_t op, SColumnInfoData* pCol, int32_t index, SVariant param) {
  char* data = colDataGetData(pCol, index);
X
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4149
  switch (pCol->info.type) {
4150
    case TSDB_DATA_TYPE_TINYINT: {
X
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4151
      int8_t v = *(int8_t*)data;
4152 4153 4154 4155
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_UTINYINT: {
X
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4156
      uint8_t v = *(uint8_t*)data;
4157 4158 4159 4160
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
X
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4161
      int16_t v = *(int16_t*)data;
4162 4163 4164 4165
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_USMALLINT: {
X
Xiaoyu Wang 已提交
4166
      uint16_t v = *(uint16_t*)data;
4167 4168 4169 4170
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_INT: {
X
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4171
      int32_t v = *(int32_t*)data;
4172 4173 4174 4175
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_UINT: {
X
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4176
      uint32_t v = *(uint32_t*)data;
4177 4178 4179 4180
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
X
Xiaoyu Wang 已提交
4181
      int64_t v = *(int64_t*)data;
4182 4183 4184 4185
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_UBIGINT: {
X
Xiaoyu Wang 已提交
4186
      uint64_t v = *(uint64_t*)data;
4187 4188 4189 4190
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
X
Xiaoyu Wang 已提交
4191
      float v = *(float*)data;
4192 4193 4194 4195
      STATE_COMP(op, v, param);
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
X
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4196
      double v = *(double*)data;
4197 4198 4199 4200 4201 4202 4203 4204 4205 4206 4207 4208 4209 4210 4211 4212 4213 4214
      STATE_COMP(op, v, param);
      break;
    }
    default: {
      ASSERT(0);
    }
  }
  return false;
}

int32_t stateCountFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SStateInfo*          pInfo = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;

  SColumnInfoData* pInputCol = pInput->pData[0];

X
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4215
  int32_t          numOfElems = 0;
4216 4217 4218
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;

  int8_t op = getStateOpType(varDataVal(pCtx->param[1].param.pz));
4219 4220 4221 4222
  if (STATE_OPER_INVALID == op) {
    return 0;
  }

4223 4224 4225 4226 4227 4228 4229
  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
    numOfElems++;
    if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
      colDataAppendNULL(pOutput, i);
      continue;
    }

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    bool    ret = checkStateOp(op, pInputCol, i, pCtx->param[2].param);
4231 4232 4233 4234 4235 4236
    int64_t output = -1;
    if (ret) {
      output = ++pInfo->count;
    } else {
      pInfo->count = 0;
    }
X
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    colDataAppend(pOutput, i, (char*)&output, false);
4238 4239 4240 4241
  }

  return numOfElems;
}
4242 4243 4244 4245 4246 4247

int32_t stateDurationFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SStateInfo*          pInfo = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;
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  TSKEY*                tsList = (int64_t*)pInput->pPTS->pData;
4249 4250 4251

  SColumnInfoData* pInputCol = pInput->pData[0];

X
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4252
  int32_t          numOfElems = 0;
4253 4254
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;

X
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4255
  // TODO: process timeUnit for different db precisions
4256
  int32_t timeUnit = 1000;
X
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4257
  if (pCtx->numOfParams == 5) {  // TODO: param number incorrect
4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270 4271 4272
    timeUnit = pCtx->param[3].param.i;
  }

  int8_t op = getStateOpType(varDataVal(pCtx->param[1].param.pz));
  if (STATE_OPER_INVALID == op) {
    return 0;
  }

  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
    numOfElems++;
    if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
      colDataAppendNULL(pOutput, i);
      continue;
    }

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    bool    ret = checkStateOp(op, pInputCol, i, pCtx->param[2].param);
4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284
    int64_t output = -1;
    if (ret) {
      if (pInfo->durationStart == 0) {
        output = 0;
        pInfo->durationStart = tsList[i];
      } else {
        output = (tsList[i] - pInfo->durationStart) / timeUnit;
      }
    } else {
      pInfo->durationStart = 0;
    }
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    colDataAppend(pOutput, i, (char*)&output, false);
4286 4287 4288 4289
  }

  return numOfElems;
}
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bool getCsumFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SSumRes);
  return true;
}

int32_t csumFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SSumRes*             pSumRes = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;
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  TSKEY*                tsList = (int64_t*)pInput->pPTS->pData;
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  SColumnInfoData* pInputCol = pInput->pData[0];
  SColumnInfoData* pTsOutput = pCtx->pTsOutput;
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;

  int32_t numOfElems = 0;
  int32_t type = pInputCol->info.type;
  int32_t startOffset = pCtx->offset;
  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
    int32_t pos = startOffset + numOfElems;
    if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
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4313
      // colDataAppendNULL(pOutput, i);
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      continue;
    }

    char* data = colDataGetData(pInputCol, i);
    if (IS_SIGNED_NUMERIC_TYPE(type)) {
      int64_t v;
      GET_TYPED_DATA(v, int64_t, type, data);
      pSumRes->isum += v;
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      colDataAppend(pOutput, pos, (char*)&pSumRes->isum, false);
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    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      uint64_t v;
      GET_TYPED_DATA(v, uint64_t, type, data);
      pSumRes->usum += v;
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      colDataAppend(pOutput, pos, (char*)&pSumRes->usum, false);
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    } else if (IS_FLOAT_TYPE(type)) {
      double v;
      GET_TYPED_DATA(v, double, type, data);
      pSumRes->dsum += v;
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      // check for overflow
4333 4334
      if (isinf(pSumRes->dsum) || isnan(pSumRes->dsum)) {
        colDataAppendNULL(pOutput, pos);
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4335 4336
      } else {
        colDataAppend(pOutput, pos, (char*)&pSumRes->dsum, false);
4337
      }
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4338 4339
    }

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4340
    // TODO: remove this after pTsOutput is handled
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    if (pTsOutput != NULL) {
      colDataAppendInt64(pTsOutput, pos, &tsList[i]);
    }

    numOfElems++;
  }

  return numOfElems;
}
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bool getMavgFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SMavgInfo) + MAVG_MAX_POINTS_NUM * sizeof(double);
  return true;
}

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bool mavgFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

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  SMavgInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
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  pInfo->pos = 0;
  pInfo->sum = 0;
  pInfo->numOfPoints = pCtx->param[1].param.i;
  if (pInfo->numOfPoints < 1 || pInfo->numOfPoints > MAVG_MAX_POINTS_NUM) {
    return false;
  }
  pInfo->pointsMeet = false;

  return true;
}

int32_t mavgFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SMavgInfo*           pInfo = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;
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  TSKEY*                tsList = (int64_t*)pInput->pPTS->pData;
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  SColumnInfoData* pInputCol = pInput->pData[0];
  SColumnInfoData* pTsOutput = pCtx->pTsOutput;
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;

  int32_t numOfElems = 0;
  int32_t type = pInputCol->info.type;
  int32_t startOffset = pCtx->offset;
  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
    int32_t pos = startOffset + numOfElems;
    if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
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      // colDataAppendNULL(pOutput, i);
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      continue;
    }

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    char*  data = colDataGetData(pInputCol, i);
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    double v;
    GET_TYPED_DATA(v, double, type, data);

    if (!pInfo->pointsMeet && (pInfo->pos < pInfo->numOfPoints - 1)) {
      pInfo->points[pInfo->pos] = v;
      pInfo->sum += v;
    } else {
      if (!pInfo->pointsMeet && (pInfo->pos == pInfo->numOfPoints - 1)) {
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        pInfo->sum += v;
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        pInfo->pointsMeet = true;
      } else {
        pInfo->sum = pInfo->sum + v - pInfo->points[pInfo->pos];
      }

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      pInfo->points[pInfo->pos] = v;
      double result = pInfo->sum / pInfo->numOfPoints;
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      // check for overflow
4412 4413
      if (isinf(result) || isnan(result)) {
        colDataAppendNULL(pOutput, pos);
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      } else {
        colDataAppend(pOutput, pos, (char*)&result, false);
4416
      }
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      // TODO: remove this after pTsOutput is handled
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      if (pTsOutput != NULL) {
        colDataAppendInt64(pTsOutput, pos, &tsList[i]);
      }
      numOfElems++;
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    }

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    pInfo->pos++;
    if (pInfo->pos == pInfo->numOfPoints) {
      pInfo->pos = 0;
    }
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  }

  return numOfElems;
}
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bool getSampleFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  SColumnNode* pCol = (SColumnNode*)nodesListGetNode(pFunc->pParameterList, 0);
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  SValueNode*  pVal = (SValueNode*)nodesListGetNode(pFunc->pParameterList, 1);
  int32_t      numOfSamples = pVal->datum.i;
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  pEnv->calcMemSize = sizeof(SSampleInfo) + numOfSamples * (pCol->node.resType.bytes + sizeof(int64_t));
  return true;
}

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bool sampleFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

  taosSeedRand(taosSafeRand());

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  SSampleInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
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  pInfo->samples = pCtx->param[1].param.i;
  pInfo->totalPoints = 0;
  pInfo->numSampled = 0;
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  pInfo->colType = pCtx->resDataInfo.type;
  pInfo->colBytes = pCtx->resDataInfo.bytes;
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  if (pInfo->samples < 1 || pInfo->samples > SAMPLE_MAX_POINTS_NUM) {
    return false;
  }
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  pInfo->data = (char*)pInfo + sizeof(SSampleInfo);
  pInfo->timestamp = (int64_t*)((char*)pInfo + sizeof(SSampleInfo) + pInfo->samples * pInfo->colBytes);
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  return true;
}

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static void sampleAssignResult(SSampleInfo* pInfo, char* data, TSKEY ts, int32_t index) {
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  assignVal(pInfo->data + index * pInfo->colBytes, data, pInfo->colBytes, pInfo->colType);
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  *(pInfo->timestamp + index) = ts;
}

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static void doReservoirSample(SSampleInfo* pInfo, char* data, TSKEY ts, int32_t index) {
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  pInfo->totalPoints++;
  if (pInfo->numSampled < pInfo->samples) {
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    sampleAssignResult(pInfo, data, ts, pInfo->numSampled);
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    pInfo->numSampled++;
  } else {
    int32_t j = taosRand() % (pInfo->totalPoints);
    if (j < pInfo->samples) {
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      sampleAssignResult(pInfo, data, ts, j);
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    }
  }
}

int32_t sampleFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SSampleInfo*         pInfo = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;

4488 4489 4490 4491
  TSKEY* tsList = NULL;
  if (pInput->pPTS != NULL) {
    tsList = (int64_t*)pInput->pPTS->pData;
  }
4492

4493
  SColumnInfoData* pInputCol = pInput->pData[0];
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  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4495
    if (colDataIsNull_s(pInputCol, i)) {
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      continue;
    }

    char* data = colDataGetData(pInputCol, i);
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    doReservoirSample(pInfo, data, /*tsList[i]*/ 0, i);
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  }

4503 4504 4505 4506 4507 4508 4509 4510 4511 4512
  SET_VAL(pResInfo, pInfo->numSampled, pInfo->numSampled);
  return TSDB_CODE_SUCCESS;
}

int32_t sampleFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);

  SSampleInfo* pInfo = GET_ROWCELL_INTERBUF(pEntryInfo);
  pEntryInfo->complete = true;

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  int32_t          slotId = pCtx->pExpr->base.resSchema.slotId;
4514 4515 4516
  SColumnInfoData* pCol = taosArrayGet(pBlock->pDataBlock, slotId);

  int32_t currentRow = pBlock->info.rows;
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  for (int32_t i = 0; i < pInfo->numSampled; ++i) {
4518
    colDataAppend(pCol, currentRow + i, pInfo->data + i * pInfo->colBytes, false);
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  }

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  return pInfo->numSampled;
}

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bool getTailFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  SColumnNode* pCol = (SColumnNode*)nodesListGetNode(pFunc->pParameterList, 0);
  SValueNode*  pVal = (SValueNode*)nodesListGetNode(pFunc->pParameterList, 1);
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  int32_t      numOfPoints = pVal->datum.i;
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  pEnv->calcMemSize = sizeof(STailInfo) + numOfPoints * (POINTER_BYTES + sizeof(STailItem) + pCol->node.resType.bytes);
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  return true;
}

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bool tailFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
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  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

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  STailInfo* pInfo = GET_ROWCELL_INTERBUF(pResultInfo);
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  pInfo->numAdded = 0;
  pInfo->numOfPoints = pCtx->param[1].param.i;
4540 4541 4542 4543 4544
  if (pCtx->numOfParams == 4) {
    pInfo->offset = pCtx->param[2].param.i;
  } else {
    pInfo->offset = 0;
  }
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  pInfo->colType = pCtx->resDataInfo.type;
  pInfo->colBytes = pCtx->resDataInfo.bytes;
  if ((pInfo->numOfPoints < 1 || pInfo->numOfPoints > TAIL_MAX_POINTS_NUM) ||
      (pInfo->numOfPoints < 0 || pInfo->numOfPoints > TAIL_MAX_OFFSET)) {
    return false;
  }

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  pInfo->pItems = (STailItem**)((char*)pInfo + sizeof(STailInfo));
  char* pItem = (char*)pInfo->pItems + pInfo->numOfPoints * POINTER_BYTES;
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  size_t unitSize = sizeof(STailItem) + pInfo->colBytes;
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  for (int32_t i = 0; i < pInfo->numOfPoints; ++i) {
X
Xiaoyu Wang 已提交
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    pInfo->pItems[i] = (STailItem*)(pItem + i * unitSize);
4558
    pInfo->pItems[i]->isNull = false;
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  }

  return true;
}

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static void tailAssignResult(STailItem* pItem, char* data, int32_t colBytes, TSKEY ts, bool isNull) {
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  pItem->timestamp = ts;
4566 4567 4568
  if (isNull) {
    pItem->isNull = true;
  } else {
4569
    pItem->isNull = false;
4570 4571
    memcpy(pItem->data, data, colBytes);
  }
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}

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static int32_t tailCompFn(const void* p1, const void* p2, const void* param) {
  STailItem* d1 = *(STailItem**)p1;
  STailItem* d2 = *(STailItem**)p2;
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  return compareInt64Val(&d1->timestamp, &d2->timestamp);
}

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static void doTailAdd(STailInfo* pInfo, char* data, TSKEY ts, bool isNull) {
  STailItem** pList = pInfo->pItems;
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  if (pInfo->numAdded < pInfo->numOfPoints) {
4583
    tailAssignResult(pList[pInfo->numAdded], data, pInfo->colBytes, ts, isNull);
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    taosheapsort((void*)pList, sizeof(STailItem**), pInfo->numAdded + 1, NULL, tailCompFn, 0);
G
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    pInfo->numAdded++;
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  } else if (pList[0]->timestamp < ts) {
4587
    tailAssignResult(pList[0], data, pInfo->colBytes, ts, isNull);
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Xiaoyu Wang 已提交
4588
    taosheapadjust((void*)pList, sizeof(STailItem**), 0, pInfo->numOfPoints - 1, NULL, tailCompFn, NULL, 0);
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  }
}

int32_t tailFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  STailInfo*           pInfo = GET_ROWCELL_INTERBUF(pResInfo);
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  SInputColumnInfoData* pInput = &pCtx->input;
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  TSKEY*                tsList = (int64_t*)pInput->pPTS->pData;
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4598 4599 4600 4601 4602

  SColumnInfoData* pInputCol = pInput->pData[0];
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;

  int32_t startOffset = pCtx->offset;
4603 4604 4605
  if (pInfo->offset >= pInput->numOfRows) {
    return 0;
  } else {
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    pInfo->numOfPoints = TMIN(pInfo->numOfPoints, pInput->numOfRows - pInfo->offset);
4607 4608
  }
  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex - pInfo->offset; i += 1) {
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Ganlin Zhao 已提交
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    char* data = colDataGetData(pInputCol, i);
4610
    doTailAdd(pInfo, data, tsList[i], colDataIsNull_s(pInputCol, i));
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  }

4613 4614
  taosqsort(pInfo->pItems, pInfo->numOfPoints, POINTER_BYTES, NULL, tailCompFn);

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  for (int32_t i = 0; i < pInfo->numOfPoints; ++i) {
X
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    int32_t    pos = startOffset + i;
    STailItem* pItem = pInfo->pItems[i];
4618 4619 4620 4621 4622
    if (pItem->isNull) {
      colDataAppendNULL(pOutput, pos);
    } else {
      colDataAppend(pOutput, pos, pItem->data, false);
    }
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  }

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  return pInfo->numOfPoints;
}
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int32_t tailFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pEntryInfo = GET_RES_INFO(pCtx);
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  STailInfo*           pInfo = GET_ROWCELL_INTERBUF(pEntryInfo);
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  pEntryInfo->complete = true;

  int32_t type = pCtx->input.pData[0]->info.type;
  int32_t slotId = pCtx->pExpr->base.resSchema.slotId;

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

  // todo assign the tag value and the corresponding row data
  int32_t currentRow = pBlock->info.rows;
  for (int32_t i = 0; i < pEntryInfo->numOfRes; ++i) {
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    STailItem* pItem = pInfo->pItems[i];
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    colDataAppend(pCol, currentRow, pItem->data, false);
    currentRow += 1;
  }

  return pEntryInfo->numOfRes;
}
4648 4649 4650 4651 4652 4653 4654 4655 4656 4657 4658 4659 4660 4661 4662 4663 4664 4665 4666 4667 4668 4669 4670

bool getUniqueFuncEnv(SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SUniqueInfo) + UNIQUE_MAX_RESULT_SIZE;
  return true;
}

bool uniqueFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResInfo) {
  if (!functionSetup(pCtx, pResInfo)) {
    return false;
  }

  SUniqueInfo* pInfo = GET_ROWCELL_INTERBUF(pResInfo);
  pInfo->numOfPoints = 0;
  pInfo->colType = pCtx->resDataInfo.type;
  pInfo->colBytes = pCtx->resDataInfo.bytes;
  if (pInfo->pHash != NULL) {
    taosHashClear(pInfo->pHash);
  } else {
    pInfo->pHash = taosHashInit(64, taosGetDefaultHashFunction(TSDB_DATA_TYPE_BINARY), true, HASH_NO_LOCK);
  }
  return true;
}

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static void doUniqueAdd(SUniqueInfo* pInfo, char* data, TSKEY ts, bool isNull) {
  // handle null elements
4673
  if (isNull == true) {
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    int32_t      size = sizeof(SUniqueItem) + pInfo->colBytes;
    SUniqueItem* pItem = (SUniqueItem*)(pInfo->pItems + pInfo->numOfPoints * size);
4676
    if (pInfo->hasNull == false && pItem->isNull == false) {
4677 4678 4679
      pItem->timestamp = ts;
      pItem->isNull = true;
      pInfo->numOfPoints++;
4680
      pInfo->hasNull = true;
4681 4682 4683 4684 4685
    } else if (pItem->timestamp > ts && pItem->isNull == true) {
      pItem->timestamp = ts;
    }
    return;
  }
4686

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  int32_t      hashKeyBytes = IS_VAR_DATA_TYPE(pInfo->colType) ? varDataTLen(data) : pInfo->colBytes;
  SUniqueItem* pHashItem = taosHashGet(pInfo->pHash, data, hashKeyBytes);
4689
  if (pHashItem == NULL) {
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    int32_t      size = sizeof(SUniqueItem) + pInfo->colBytes;
    SUniqueItem* pItem = (SUniqueItem*)(pInfo->pItems + pInfo->numOfPoints * size);
4692 4693 4694
    pItem->timestamp = ts;
    memcpy(pItem->data, data, pInfo->colBytes);

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    taosHashPut(pInfo->pHash, data, hashKeyBytes, (char*)pItem, sizeof(SUniqueItem*));
4696 4697 4698 4699 4700 4701 4702 4703 4704 4705 4706
    pInfo->numOfPoints++;
  } else if (pHashItem->timestamp > ts) {
    pHashItem->timestamp = ts;
  }
}

int32_t uniqueFunction(SqlFunctionCtx* pCtx) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  SUniqueInfo*         pInfo = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;
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  TSKEY*                tsList = (int64_t*)pInput->pPTS->pData;
4708 4709 4710 4711 4712 4713 4714 4715 4716 4717 4718 4719 4720 4721 4722 4723 4724

  SColumnInfoData* pInputCol = pInput->pData[0];
  SColumnInfoData* pTsOutput = pCtx->pTsOutput;
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;

  int32_t startOffset = pCtx->offset;
  for (int32_t i = pInput->startRowIndex; i < pInput->numOfRows + pInput->startRowIndex; ++i) {
    char* data = colDataGetData(pInputCol, i);
    doUniqueAdd(pInfo, data, tsList[i], colDataIsNull_s(pInputCol, i));

    if (sizeof(SUniqueInfo) + pInfo->numOfPoints * (sizeof(SUniqueItem) + pInfo->colBytes) >= UNIQUE_MAX_RESULT_SIZE) {
      taosHashCleanup(pInfo->pHash);
      return 0;
    }
  }

  for (int32_t i = 0; i < pInfo->numOfPoints; ++i) {
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    SUniqueItem* pItem = (SUniqueItem*)(pInfo->pItems + i * (sizeof(SUniqueItem) + pInfo->colBytes));
4726 4727 4728 4729 4730
    if (pItem->isNull == true) {
      colDataAppendNULL(pOutput, i);
    } else {
      colDataAppend(pOutput, i, pItem->data, false);
    }
4731 4732 4733 4734 4735 4736 4737 4738 4739 4740
    if (pTsOutput != NULL) {
      colDataAppendInt64(pTsOutput, i, &pItem->timestamp);
    }
  }

  return pInfo->numOfPoints;
}

int32_t uniqueFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
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  SUniqueInfo*         pInfo = GET_ROWCELL_INTERBUF(pResInfo);
  int32_t              slotId = pCtx->pExpr->base.resSchema.slotId;
  SColumnInfoData*     pCol = taosArrayGet(pBlock->pDataBlock, slotId);
4744 4745

  for (int32_t i = 0; i < pResInfo->numOfRes; ++i) {
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    SUniqueItem* pItem = (SUniqueItem*)(pInfo->pItems + i * (sizeof(SUniqueItem) + pInfo->colBytes));
4747
    colDataAppend(pCol, i, pItem->data, false);
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    // TODO: handle ts output
4749 4750 4751 4752 4753
  }

  return pResInfo->numOfRes;
}

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typedef struct STwaInfo {
  double      dOutput;
  SPoint1     p;
  STimeWindow win;
} STwaInfo;

bool getTwaFuncEnv(struct SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(STwaInfo);
  return true;
}

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bool twaFunctionSetup(SqlFunctionCtx* pCtx, SResultRowEntryInfo* pResultInfo) {
4766 4767 4768 4769
  if (!functionSetup(pCtx, pResultInfo)) {
    return false;
  }

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  STwaInfo* pInfo = GET_ROWCELL_INTERBUF(GET_RES_INFO(pCtx));
  pInfo->p.key = INT64_MIN;
  pInfo->win = TSWINDOW_INITIALIZER;
4773 4774 4775 4776
  return true;
}

static double twa_get_area(SPoint1 s, SPoint1 e) {
X
Xiaoyu Wang 已提交
4777
  if ((s.val >= 0 && e.val >= 0) || (s.val <= 0 && e.val <= 0)) {
4778 4779 4780
    return (s.val + e.val) * (e.key - s.key) / 2;
  }

X
Xiaoyu Wang 已提交
4781
  double x = (s.key * e.val - e.key * s.val) / (e.val - s.val);
4782 4783 4784 4785
  double val = (s.val * (x - s.key) + e.val * (e.key - x)) / 2;
  return val;
}

4786
#define INIT_INTP_POINT(_p, _k, _v) \
X
Xiaoyu Wang 已提交
4787 4788 4789
  do {                              \
    (_p).key = (_k);                \
    (_p).val = (_v);                \
4790 4791
  } while (0)

4792 4793
int32_t twaFunction(SqlFunctionCtx* pCtx) {
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
4794
  SColumnInfoData*      pInputCol = pInput->pData[0];
4795 4796 4797

  TSKEY* tsList = (int64_t*)pInput->pPTS->pData;

X
Xiaoyu Wang 已提交
4798
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
4799

X
Xiaoyu Wang 已提交
4800 4801
  STwaInfo* pInfo = GET_ROWCELL_INTERBUF(pResInfo);
  SPoint1*  last = &pInfo->p;
4802
  int32_t   numOfElems = 0;
4803 4804 4805 4806 4807 4808 4809 4810 4811 4812 4813 4814 4815 4816

  int32_t i = pInput->startRowIndex;
  if (pCtx->start.key != INT64_MIN) {
    ASSERT((pCtx->start.key < tsList[i] && pCtx->order == TSDB_ORDER_ASC) ||
           (pCtx->start.key > tsList[i] && pCtx->order == TSDB_ORDER_DESC));

    ASSERT(last->key == INT64_MIN);
    last->key = tsList[i];

    GET_TYPED_DATA(last->val, double, pInputCol->info.type, colDataGetData(pInputCol, i));

    pInfo->dOutput += twa_get_area(pCtx->start, *last);
    pInfo->win.skey = pCtx->start.key;
    numOfElems++;
4817
    i += 1;
4818 4819 4820 4821 4822 4823
  } else if (pInfo->p.key == INT64_MIN) {
    last->key = tsList[i];
    GET_TYPED_DATA(last->val, double, pInputCol->info.type, colDataGetData(pInputCol, i));

    pInfo->win.skey = last->key;
    numOfElems++;
4824
    i += 1;
4825 4826
  }

4827 4828
  SPoint1 st = {0};

4829
  // calculate the value of
X
Xiaoyu Wang 已提交
4830
  switch (pInputCol->info.type) {
4831
    case TSDB_DATA_TYPE_TINYINT: {
X
Xiaoyu Wang 已提交
4832
      int8_t* val = (int8_t*)colDataGetData(pInputCol, 0);
4833
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4834 4835 4836 4837
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4838
        INIT_INTP_POINT(st, tsList[i], val[i]);
4839 4840 4841 4842 4843 4844 4845
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }

    case TSDB_DATA_TYPE_SMALLINT: {
X
Xiaoyu Wang 已提交
4846
      int16_t* val = (int16_t*)colDataGetData(pInputCol, 0);
4847
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4848 4849 4850 4851
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4852
        INIT_INTP_POINT(st, tsList[i], val[i]);
4853 4854 4855 4856 4857 4858
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_INT: {
X
Xiaoyu Wang 已提交
4859
      int32_t* val = (int32_t*)colDataGetData(pInputCol, 0);
4860
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4861 4862 4863 4864
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4865
        INIT_INTP_POINT(st, tsList[i], val[i]);
4866 4867 4868 4869 4870 4871
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
X
Xiaoyu Wang 已提交
4872
      int64_t* val = (int64_t*)colDataGetData(pInputCol, 0);
4873
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4874 4875 4876 4877
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4878
        INIT_INTP_POINT(st, tsList[i], val[i]);
4879 4880 4881 4882 4883 4884
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
X
Xiaoyu Wang 已提交
4885
      float* val = (float*)colDataGetData(pInputCol, 0);
4886
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4887 4888 4889 4890
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4891
        INIT_INTP_POINT(st, tsList[i], val[i]);
4892 4893 4894 4895 4896 4897
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
X
Xiaoyu Wang 已提交
4898
      double* val = (double*)colDataGetData(pInputCol, 0);
4899
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4900 4901 4902 4903
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4904
        INIT_INTP_POINT(st, tsList[i], val[i]);
4905 4906 4907 4908 4909 4910
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_UTINYINT: {
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Xiaoyu Wang 已提交
4911
      uint8_t* val = (uint8_t*)colDataGetData(pInputCol, 0);
4912
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4913 4914 4915 4916
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4917
        INIT_INTP_POINT(st, tsList[i], val[i]);
4918 4919 4920 4921 4922 4923
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_USMALLINT: {
X
Xiaoyu Wang 已提交
4924
      uint16_t* val = (uint16_t*)colDataGetData(pInputCol, 0);
4925
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4926 4927 4928 4929
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4930
        INIT_INTP_POINT(st, tsList[i], val[i]);
4931 4932 4933 4934 4935 4936
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_UINT: {
X
Xiaoyu Wang 已提交
4937
      uint32_t* val = (uint32_t*)colDataGetData(pInputCol, 0);
4938
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4939 4940 4941 4942
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4943
        INIT_INTP_POINT(st, tsList[i], val[i]);
4944 4945 4946 4947 4948 4949
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }
    case TSDB_DATA_TYPE_UBIGINT: {
X
Xiaoyu Wang 已提交
4950
      uint64_t* val = (uint64_t*)colDataGetData(pInputCol, 0);
4951
      for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
4952 4953 4954 4955
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          continue;
        }

4956
        INIT_INTP_POINT(st, tsList[i], val[i]);
4957 4958 4959 4960 4961 4962
        pInfo->dOutput += twa_get_area(pInfo->p, st);
        pInfo->p = st;
      }
      break;
    }

X
Xiaoyu Wang 已提交
4963 4964
    default:
      ASSERT(0);
4965 4966 4967 4968
  }

  // the last interpolated time window value
  if (pCtx->end.key != INT64_MIN) {
X
Xiaoyu Wang 已提交
4969
    pInfo->dOutput += twa_get_area(pInfo->p, pCtx->end);
4970 4971 4972
    pInfo->p = pCtx->end;
  }

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Xiaoyu Wang 已提交
4973
  pInfo->win.ekey = pInfo->p.key;
4974

4975
  SET_VAL(pResInfo, numOfElems, 1);
4976 4977 4978 4979 4980 4981 4982 4983
  return TSDB_CODE_SUCCESS;
}

/*
 * To copy the input to interResBuf to avoid the input buffer space be over writen
 * by next input data. The TWA function only applies to each table, so no merge procedure
 * is required, we simply copy to the resut ot interResBuffer.
 */
X
Xiaoyu Wang 已提交
4984 4985 4986
// void twa_function_copy(SQLFunctionCtx *pCtx) {
//   assert(pCtx->inputType == TSDB_DATA_TYPE_BINARY);
//   SResultRowEntryInfo *pResInfo = GET_RES_INFO(pCtx);
4987
//
X
Xiaoyu Wang 已提交
4988 4989 4990
//   memcpy(GET_ROWCELL_INTERBUF(pResInfo), pCtx->pInput, (size_t)pCtx->inputBytes);
//   pResInfo->hasResult = ((STwaInfo *)pCtx->pInput)->hasResult;
// }
4991

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4992 4993
int32_t twaFinalize(struct SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
4994

X
Xiaoyu Wang 已提交
4995
  STwaInfo* pInfo = (STwaInfo*)GET_ROWCELL_INTERBUF(pResInfo);
4996
  if (pResInfo->numOfRes == 0) {
4997 4998 4999 5000 5001 5002 5003 5004 5005 5006 5007 5008 5009 5010
    pResInfo->isNullRes = 1;
  } else {
    if (pInfo->win.ekey == pInfo->win.skey) {
      pInfo->dOutput = pInfo->p.val;
    } else {
      pInfo->dOutput = pInfo->dOutput / (pInfo->win.ekey - pInfo->win.skey);
    }

    pResInfo->numOfRes = 1;
  }

  return functionFinalize(pCtx, pBlock);
}

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Xiaoyu Wang 已提交
5011
int32_t blockDistFunction(SqlFunctionCtx* pCtx) {
5012
  SInputColumnInfoData* pInput = &pCtx->input;
X
Xiaoyu Wang 已提交
5013
  SColumnInfoData*      pInputCol = pInput->pData[0];
5014

X
Xiaoyu Wang 已提交
5015
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
5016

5017 5018 5019 5020 5021 5022 5023 5024 5025 5026 5027 5028 5029 5030 5031 5032 5033 5034 5035
  STableBlockDistInfo* pDistInfo = GET_ROWCELL_INTERBUF(pResInfo);

  STableBlockDistInfo p1 = {0};
  tDeserializeBlockDistInfo(varDataVal(pInputCol->pData), varDataLen(pInputCol->pData), &p1);

  pDistInfo->numOfBlocks += p1.numOfBlocks;
  pDistInfo->numOfTables += p1.numOfTables;
  pDistInfo->numOfInmemRows += p1.numOfInmemRows;
  pDistInfo->totalSize += p1.totalSize;
  pDistInfo->totalRows += p1.totalRows;
  pDistInfo->numOfFiles += p1.numOfFiles;

  if (pDistInfo->minRows > p1.minRows) {
    pDistInfo->minRows = p1.minRows;
  }
  if (pDistInfo->maxRows < p1.maxRows) {
    pDistInfo->maxRows = p1.maxRows;
  }

X
Xiaoyu Wang 已提交
5036
  for (int32_t i = 0; i < tListLen(pDistInfo->blockRowsHisto); ++i) {
5037 5038 5039
    pDistInfo->blockRowsHisto[i] += p1.blockRowsHisto[i];
  }

5040 5041 5042 5043 5044 5045 5046 5047 5048 5049 5050 5051 5052 5053 5054 5055 5056 5057 5058 5059 5060 5061 5062 5063
  pResInfo->numOfRes = 1;
  return TSDB_CODE_SUCCESS;
}

int32_t tSerializeBlockDistInfo(void* buf, int32_t bufLen, const STableBlockDistInfo* pInfo) {
  SEncoder encoder = {0};
  tEncoderInit(&encoder, buf, bufLen);

  if (tStartEncode(&encoder) < 0) return -1;
  if (tEncodeU32(&encoder, pInfo->rowSize) < 0) return -1;

  if (tEncodeU16(&encoder, pInfo->numOfFiles) < 0) return -1;
  if (tEncodeU32(&encoder, pInfo->rowSize) < 0) return -1;
  if (tEncodeU32(&encoder, pInfo->numOfTables) < 0) return -1;

  if (tEncodeU64(&encoder, pInfo->totalSize) < 0) return -1;
  if (tEncodeU64(&encoder, pInfo->totalRows) < 0) return -1;
  if (tEncodeI32(&encoder, pInfo->maxRows) < 0) return -1;
  if (tEncodeI32(&encoder, pInfo->minRows) < 0) return -1;
  if (tEncodeI32(&encoder, pInfo->defMaxRows) < 0) return -1;
  if (tEncodeI32(&encoder, pInfo->defMinRows) < 0) return -1;
  if (tEncodeU32(&encoder, pInfo->numOfInmemRows) < 0) return -1;
  if (tEncodeU32(&encoder, pInfo->numOfSmallBlocks) < 0) return -1;

X
Xiaoyu Wang 已提交
5064
  for (int32_t i = 0; i < tListLen(pInfo->blockRowsHisto); ++i) {
5065 5066 5067 5068 5069 5070 5071 5072 5073 5074 5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085 5086 5087 5088 5089 5090 5091 5092 5093 5094
    if (tEncodeI32(&encoder, pInfo->blockRowsHisto[i]) < 0) return -1;
  }

  tEndEncode(&encoder);

  int32_t tlen = encoder.pos;
  tEncoderClear(&encoder);
  return tlen;
}

int32_t tDeserializeBlockDistInfo(void* buf, int32_t bufLen, STableBlockDistInfo* pInfo) {
  SDecoder decoder = {0};
  tDecoderInit(&decoder, buf, bufLen);

  if (tStartDecode(&decoder) < 0) return -1;
  if (tDecodeU32(&decoder, &pInfo->rowSize) < 0) return -1;

  if (tDecodeU16(&decoder, &pInfo->numOfFiles) < 0) return -1;
  if (tDecodeU32(&decoder, &pInfo->rowSize) < 0) return -1;
  if (tDecodeU32(&decoder, &pInfo->numOfTables) < 0) return -1;

  if (tDecodeU64(&decoder, &pInfo->totalSize) < 0) return -1;
  if (tDecodeU64(&decoder, &pInfo->totalRows) < 0) return -1;
  if (tDecodeI32(&decoder, &pInfo->maxRows) < 0) return -1;
  if (tDecodeI32(&decoder, &pInfo->minRows) < 0) return -1;
  if (tDecodeI32(&decoder, &pInfo->defMaxRows) < 0) return -1;
  if (tDecodeI32(&decoder, &pInfo->defMinRows) < 0) return -1;
  if (tDecodeU32(&decoder, &pInfo->numOfInmemRows) < 0) return -1;
  if (tDecodeU32(&decoder, &pInfo->numOfSmallBlocks) < 0) return -1;

X
Xiaoyu Wang 已提交
5095
  for (int32_t i = 0; i < tListLen(pInfo->blockRowsHisto); ++i) {
5096 5097 5098 5099 5100 5101 5102 5103
    if (tDecodeI32(&decoder, &pInfo->blockRowsHisto[i]) < 0) return -1;
  }

  tDecoderClear(&decoder);
  return 0;
}

int32_t blockDistFinalize(SqlFunctionCtx* pCtx, SSDataBlock* pBlock) {
X
Xiaoyu Wang 已提交
5104 5105
  SResultRowEntryInfo* pResInfo = GET_RES_INFO(pCtx);
  char*                pData = GET_ROWCELL_INTERBUF(pResInfo);
5106

5107 5108 5109 5110 5111
  SColumnInfoData* pColInfo = taosArrayGet(pBlock->pDataBlock, 0);

  int32_t row = 0;

  STableBlockDistInfo info = {0};
5112 5113
  tDeserializeBlockDistInfo(varDataVal(pData), varDataLen(pData), &info);

X
Xiaoyu Wang 已提交
5114 5115 5116 5117 5118
  char    st[256] = {0};
  int32_t len =
      sprintf(st + VARSTR_HEADER_SIZE, "Blocks=[%d] Size=[%.3fKb] Average_Block_size=[%.3fKb] Compression_Ratio=[%.3f]",
              info.numOfBlocks, info.totalSize / 1024.0, info.totalSize / (info.numOfBlocks * 1024.0),
              info.totalSize / (info.totalRows * info.rowSize * 1.0));
5119 5120 5121

  varDataSetLen(st, len);
  colDataAppend(pColInfo, row++, st, false);
5122

X
Xiaoyu Wang 已提交
5123 5124
  len = sprintf(st + VARSTR_HEADER_SIZE, "Total_Rows=[%ld] MinRows=[%d] MaxRows=[%d] Averge_Rows=[%ld] Inmem_Rows=[%d]",
                info.totalRows, info.minRows, info.maxRows, info.totalRows / info.numOfBlocks, info.numOfInmemRows);
5125

5126 5127
  varDataSetLen(st, len);
  colDataAppend(pColInfo, row++, st, false);
5128

X
Xiaoyu Wang 已提交
5129 5130
  len = sprintf(st + VARSTR_HEADER_SIZE, "Total_Tables=[%d] Total_Files=[%d] Total_Vgroups=[%d]", info.numOfTables,
                info.numOfFiles, 0);
5131 5132 5133 5134

  varDataSetLen(st, len);
  colDataAppend(pColInfo, row++, st, false);

X
Xiaoyu Wang 已提交
5135 5136
  len = sprintf(st + VARSTR_HEADER_SIZE,
                "--------------------------------------------------------------------------------");
5137 5138
  varDataSetLen(st, len);
  colDataAppend(pColInfo, row++, st, false);
5139 5140 5141

  int32_t maxVal = 0;
  int32_t minVal = INT32_MAX;
X
Xiaoyu Wang 已提交
5142
  for (int32_t i = 0; i < sizeof(info.blockRowsHisto) / sizeof(info.blockRowsHisto[0]); ++i) {
5143 5144 5145 5146 5147 5148 5149 5150 5151
    if (maxVal < info.blockRowsHisto[i]) {
      maxVal = info.blockRowsHisto[i];
    }

    if (minVal > info.blockRowsHisto[i]) {
      minVal = info.blockRowsHisto[i];
    }
  }

5152 5153 5154
  int32_t delta = maxVal - minVal;
  int32_t step = delta / 50;

X
Xiaoyu Wang 已提交
5155
  int32_t numOfBuckets = sizeof(info.blockRowsHisto) / sizeof(info.blockRowsHisto[0]);
5156 5157
  int32_t bucketRange = (info.maxRows - info.minRows) / numOfBuckets;

X
Xiaoyu Wang 已提交
5158
  for (int32_t i = 0; i < 20; ++i) {
5159 5160
    len += sprintf(st + VARSTR_HEADER_SIZE, "%04d |", info.defMinRows + bucketRange * (i + 1));

5161
    int32_t num = (info.blockRowsHisto[i] + step - 1) / step;
5162 5163
    for (int32_t j = 0; j < num; ++j) {
      int32_t x = sprintf(st + VARSTR_HEADER_SIZE + len, "%c", '|');
5164 5165 5166
      len += x;
    }

5167
    double v = info.blockRowsHisto[i] * 100.0 / info.numOfBlocks;
X
Xiaoyu Wang 已提交
5168
    len += sprintf(st + VARSTR_HEADER_SIZE + len, "  %d (%.3f%c)", info.blockRowsHisto[i], v, '%');
5169 5170 5171 5172
    printf("%s\n", st);

    varDataSetLen(st, len);
    colDataAppend(pColInfo, row++, st, false);
5173 5174
  }

5175
  return row;
5176
}
5177 5178 5179 5180 5181 5182 5183 5184 5185 5186 5187 5188 5189 5190 5191 5192 5193 5194 5195 5196 5197 5198 5199 5200 5201 5202 5203 5204 5205 5206 5207 5208 5209 5210

typedef struct SDerivInfo {
  double   prevValue;     // previous value
  TSKEY    prevTs;        // previous timestamp
  bool     ignoreNegative;// ignore the negative value
  int64_t  tsWindow;      // time window for derivative
  bool     valueSet;      // the value has been set already
} SDerivInfo;

bool getDerivativeFuncEnv(struct SFunctionNode* pFunc, SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(SDerivInfo);
  return true;
}

bool derivativeFuncSetup(SqlFunctionCtx *pCtx, SResultRowEntryInfo* pResInfo) {
  if (!functionSetup(pCtx, pResInfo)) {
    return false;  // not initialized since it has been initialized
  }

  SDerivInfo* pDerivInfo = GET_ROWCELL_INTERBUF(pResInfo);

  pDerivInfo->ignoreNegative = pCtx->param[2].param.i;
  pDerivInfo->prevTs   = -1;
  pDerivInfo->tsWindow = pCtx->param[1].param.i;
  pDerivInfo->valueSet = false;
  return true;
}

int32_t derivativeFunction(SqlFunctionCtx *pCtx) {
  SResultRowEntryInfo *pResInfo = GET_RES_INFO(pCtx);
  SDerivInfo* pDerivInfo = GET_ROWCELL_INTERBUF(pResInfo);

  SInputColumnInfoData* pInput = &pCtx->input;
  SColumnInfoData* pInputCol = pInput->pData[0];
H
Haojun Liao 已提交
5211

5212 5213 5214 5215 5216 5217 5218
  int32_t numOfElems = 0;
  SColumnInfoData* pOutput = (SColumnInfoData*)pCtx->pOutput;
  SColumnInfoData* pTsOutput = pCtx->pTsOutput;

  int32_t i = pInput->startRowIndex;
  TSKEY* tsList = (int64_t*)pInput->pPTS->pData;

5219
  double v = 0;
5220

5221 5222
  if (pCtx->order == TSDB_ORDER_ASC) {
    for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
5223 5224 5225 5226 5227 5228 5229 5230 5231 5232 5233 5234 5235 5236 5237 5238 5239 5240 5241 5242 5243 5244 5245 5246 5247 5248
      if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
        continue;
      }

      char*  d = (char*)pInputCol->pData + pInputCol->info.bytes * i;
      GET_TYPED_DATA(v, double, pInputCol->info.type, d);

      int32_t pos = pCtx->offset + numOfElems;
      if (!pDerivInfo->valueSet) {  // initial value is not set yet
        pDerivInfo->valueSet = true;
      } else {
        double r = ((v - pDerivInfo->prevValue) * pDerivInfo->tsWindow) / (tsList[i] - pDerivInfo->prevTs);
        if (pDerivInfo->ignoreNegative && r < 0) {
        } else {
          colDataAppend(pOutput, pos, (const char*)&r, false);
          if (pTsOutput != NULL) {
            colDataAppendInt64(pTsOutput, pos, &tsList[i]);
          }
          numOfElems++;
        }
      }

      pDerivInfo->prevValue = v;
      pDerivInfo->prevTs = tsList[i];
    }
  } else {
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    for (; i < pInput->numOfRows + pInput->startRowIndex; i += 1) {
      if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
        continue;
      }

      char*  d = (char*)pInputCol->pData + pInputCol->info.bytes * i;
      GET_TYPED_DATA(v, double, pInputCol->info.type, d);

      int32_t pos = pCtx->offset + numOfElems;
      if (!pDerivInfo->valueSet) {  // initial value is not set yet
        pDerivInfo->valueSet = true;
      } else {
        double r = ((pDerivInfo->prevValue - v) * pDerivInfo->tsWindow) / (pDerivInfo->prevTs - tsList[i]);
        if (pDerivInfo->ignoreNegative && r < 0) {
        } else {
          colDataAppend(pOutput, pos, (const char*)&r, false);
          if (pTsOutput != NULL) {
            colDataAppendInt64(pTsOutput, pos, &pDerivInfo->prevTs);
          }
          numOfElems++;
        }
      }
5271

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      pDerivInfo->prevValue = v;
      pDerivInfo->prevTs = tsList[i];
    }
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  }

  return numOfElems;
H
Haojun Liao 已提交
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}

int32_t interpFunction(SqlFunctionCtx *pCtx) {
#if 0
  int32_t fillType = (int32_t) pCtx->param[2].i64;
  //bool ascQuery = (pCtx->order == TSDB_ORDER_ASC);

  if (pCtx->start.key == pCtx->startTs) {
    assert(pCtx->start.key != INT64_MIN);

    COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, &pCtx->start.val);

    goto interp_success_exit;
  } else if (pCtx->end.key == pCtx->startTs && pCtx->end.key != INT64_MIN && fillType == TSDB_FILL_NEXT) {
    COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, &pCtx->end.val);

    goto interp_success_exit;
  }

  switch (fillType) {
    case TSDB_FILL_NULL:
      setNull(pCtx->pOutput, pCtx->outputType, pCtx->outputBytes);
      break;

    case TSDB_FILL_SET_VALUE:
      tVariantDump(&pCtx->param[1], pCtx->pOutput, pCtx->inputType, true);
      break;

    case TSDB_FILL_LINEAR:
      if (pCtx->start.key == INT64_MIN || pCtx->start.key > pCtx->startTs
          || pCtx->end.key == INT64_MIN || pCtx->end.key < pCtx->startTs) {
        goto interp_exit;
      }

      double v1 = -1, v2 = -1;
      GET_TYPED_DATA(v1, double, pCtx->inputType, &pCtx->start.val);
      GET_TYPED_DATA(v2, double, pCtx->inputType, &pCtx->end.val);

      SPoint point1 = {.key = pCtx->start.key, .val = &v1};
      SPoint point2 = {.key = pCtx->end.key, .val = &v2};
      SPoint point  = {.key = pCtx->startTs, .val = pCtx->pOutput};

      int32_t srcType = pCtx->inputType;
      if (isNull((char *)&pCtx->start.val, srcType) || isNull((char *)&pCtx->end.val, srcType)) {
        setNull(pCtx->pOutput, srcType, pCtx->inputBytes);
      } else {
        bool exceedMax = false, exceedMin = false;
        taosGetLinearInterpolationVal(&point, pCtx->outputType, &point1, &point2, TSDB_DATA_TYPE_DOUBLE, &exceedMax, &exceedMin);
        if (exceedMax || exceedMin) {
          __compar_fn_t func = getComparFunc((int32_t)pCtx->inputType, 0);
          if (func(&pCtx->start.val, &pCtx->end.val) <= 0) {
            COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, exceedMax ? &pCtx->start.val : &pCtx->end.val);
          } else {
            COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, exceedMax ? &pCtx->end.val : &pCtx->start.val);
          }
        }
      }
      break;

    case TSDB_FILL_PREV:
      if (pCtx->start.key == INT64_MIN || pCtx->start.key > pCtx->startTs) {
        goto interp_exit;
      }

      COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, &pCtx->start.val);
      break;

    case TSDB_FILL_NEXT:
      if (pCtx->end.key == INT64_MIN || pCtx->end.key < pCtx->startTs) {
        goto interp_exit;
      }

      COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, &pCtx->end.val);
      break;

    case TSDB_FILL_NONE:
      // do nothing
    default:
      goto interp_exit;
  }


  interp_success_exit:
  *(TSKEY*)pCtx->ptsOutputBuf = pCtx->startTs;
  INC_INIT_VAL(pCtx, 1);

  interp_exit:
  pCtx->start.key = INT64_MIN;
  pCtx->end.key = INT64_MIN;
  pCtx->endTs = pCtx->startTs;
#endif

  return TSDB_CODE_SUCCESS;
5371
}