sclvector.c 59.1 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 "os.h"

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#include "filter.h"
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#include "filterInt.h"
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#include "query.h"
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#include "querynodes.h"
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#include "sclInt.h"
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#include "sclvector.h"
#include "tcompare.h"
#include "tdatablock.h"
#include "ttypes.h"
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#include "ttime.h"
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#define LEFT_COL ((pLeftCol->info.type == TSDB_DATA_TYPE_JSON ? (void*)pLeftCol : pLeftCol->pData))
#define RIGHT_COL ((pRightCol->info.type == TSDB_DATA_TYPE_JSON ? (void*)pRightCol : pRightCol->pData))

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void convertNumberToNumber(const void *inData, void *outData, int8_t inType, int8_t outType){
  switch (outType) {
    case TSDB_DATA_TYPE_BOOL: {
      GET_TYPED_DATA(*((bool *)outData), bool, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_TINYINT: {
      GET_TYPED_DATA(*((int8_t *)outData), int8_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      GET_TYPED_DATA(*((int16_t *)outData), int16_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_INT: {
      GET_TYPED_DATA(*((int32_t *)outData), int32_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_BIGINT:
    case TSDB_DATA_TYPE_TIMESTAMP: {
      GET_TYPED_DATA(*((int64_t *)outData), int64_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_UTINYINT: {
      GET_TYPED_DATA(*((uint8_t *)outData), uint8_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_USMALLINT: {
      GET_TYPED_DATA(*((uint16_t *)outData), uint16_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_UINT: {
      GET_TYPED_DATA(*((uint32_t *)outData), uint32_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_UBIGINT: {
      GET_TYPED_DATA(*((uint64_t *)outData), uint64_t, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
      GET_TYPED_DATA(*((float *)outData), float, inType, inData);
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      GET_TYPED_DATA(*((double *)outData), double, inType, inData);
      break;
    }
    default:{
      ASSERT(0);
    }
  }
}

void convertStringToDouble(const void *inData, void *outData, int8_t inType, int8_t outType){
  char *tmp = taosMemoryMalloc(varDataTLen(inData));
  int len = taosUcs4ToMbs((TdUcs4 *)varDataVal(inData), varDataLen(inData), tmp);
  if (len < 0) {
    sclError("castConvert taosUcs4ToMbs error 1");
  }

  tmp[len] = 0;

  ASSERT(outType == TSDB_DATA_TYPE_DOUBLE);
  double value = strtod(tmp, NULL);

  *((double *)outData) = value;
  taosMemoryFreeClear(tmp);
}

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typedef int64_t (*_getBigintValue_fn_t)(void *src, int32_t index);

int64_t getVectorBigintValue_TINYINT(void *src, int32_t index) {
  return (int64_t)*((int8_t *)src + index);
}
int64_t getVectorBigintValue_UTINYINT(void *src, int32_t index) {
  return (int64_t)*((uint8_t *)src + index);
}
int64_t getVectorBigintValue_SMALLINT(void *src, int32_t index) {
  return (int64_t)*((int16_t *)src + index);
}
int64_t getVectorBigintValue_USMALLINT(void *src, int32_t index) {
  return (int64_t)*((uint16_t *)src + index);
}
int64_t getVectorBigintValue_INT(void *src, int32_t index) {
  return (int64_t)*((int32_t *)src + index);
}
int64_t getVectorBigintValue_UINT(void *src, int32_t index) {
  return (int64_t)*((uint32_t *)src + index);
}
int64_t getVectorBigintValue_BIGINT(void *src, int32_t index) {
  return (int64_t)*((int64_t *)src + index);
}
int64_t getVectorBigintValue_UBIGINT(void *src, int32_t index) {
  return (int64_t)*((uint64_t *)src + index);
}
int64_t getVectorBigintValue_FLOAT(void *src, int32_t index) {
  return (int64_t)*((float *)src + index);
}
int64_t getVectorBigintValue_DOUBLE(void *src, int32_t index) {
  return (int64_t)*((double *)src + index);
}
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int64_t getVectorBigintValue_BOOL(void *src, int32_t index) {
  return (int64_t)*((bool *)src + index);
}

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int64_t getVectorBigintValue_JSON(void *src, int32_t index){
  ASSERT(!colDataIsNull_var(((SColumnInfoData*)src), index));
  char *data = colDataGetVarData((SColumnInfoData*)src, index);
  double out = 0;
  if (*data == TSDB_DATA_TYPE_NULL){
    return 0;
  } else if(*data == TSDB_DATA_TYPE_NCHAR) {   // json inner type can not be BINARY
    convertStringToDouble(data+CHAR_BYTES, &out, *data, TSDB_DATA_TYPE_DOUBLE);
  } else {
    convertNumberToNumber(data+CHAR_BYTES, &out, *data, TSDB_DATA_TYPE_DOUBLE);
  }
  return (int64_t)out;
}

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_getBigintValue_fn_t getVectorBigintValueFn(int32_t srcType) {
    _getBigintValue_fn_t p = NULL;
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    if (srcType==TSDB_DATA_TYPE_TINYINT) {
      p = getVectorBigintValue_TINYINT;
    } else if (srcType==TSDB_DATA_TYPE_UTINYINT) {
      p = getVectorBigintValue_UTINYINT;
    } else if (srcType==TSDB_DATA_TYPE_SMALLINT) {
      p = getVectorBigintValue_SMALLINT;
    } else if (srcType==TSDB_DATA_TYPE_USMALLINT) {
      p = getVectorBigintValue_USMALLINT;
    } else if (srcType==TSDB_DATA_TYPE_INT) {
      p = getVectorBigintValue_INT;
    } else if (srcType==TSDB_DATA_TYPE_UINT) {
      p = getVectorBigintValue_UINT;
    } else if (srcType==TSDB_DATA_TYPE_BIGINT) {
      p = getVectorBigintValue_BIGINT;
    } else if (srcType==TSDB_DATA_TYPE_UBIGINT) {
      p = getVectorBigintValue_UBIGINT;
    } else if (srcType==TSDB_DATA_TYPE_FLOAT) {
      p = getVectorBigintValue_FLOAT;
    } else if (srcType==TSDB_DATA_TYPE_DOUBLE) {
      p = getVectorBigintValue_DOUBLE;
    } else if (srcType==TSDB_DATA_TYPE_TIMESTAMP) {
      p = getVectorBigintValue_BIGINT;
    } else if (srcType==TSDB_DATA_TYPE_BOOL) {
      p = getVectorBigintValue_BOOL;
    } else if (srcType==TSDB_DATA_TYPE_JSON) {
      p = getVectorBigintValue_JSON;
    } else if (srcType==TSDB_DATA_TYPE_NULL){
      p = NULL;
    } else {
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      ASSERT(0);
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    }
    return p;
}

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typedef void* (*_getValueAddr_fn_t)(void *src, int32_t index);

void* getVectorValueAddr_TINYINT(void *src, int32_t index) {
  return (void*)((int8_t *)src + index);
}
void* getVectorValueAddr_UTINYINT(void *src, int32_t index) {
  return (void*)((uint8_t *)src + index);
}
void* getVectorValueAddr_SMALLINT(void *src, int32_t index) {
  return (void*)((int16_t *)src + index);
}
void* getVectorValueAddr_USMALLINT(void *src, int32_t index) {
  return (void*)((uint16_t *)src + index);
}
void* getVectorValueAddr_INT(void *src, int32_t index) {
  return (void*)((int32_t *)src + index);
}
void* getVectorValueAddr_UINT(void *src, int32_t index) {
  return (void*)((uint32_t *)src + index);
}
void* getVectorValueAddr_BIGINT(void *src, int32_t index) {
  return (void*)((int64_t *)src + index);
}
void* getVectorValueAddr_UBIGINT(void *src, int32_t index) {
  return (void*)((uint64_t *)src + index);
}
void* getVectorValueAddr_FLOAT(void *src, int32_t index) {
  return (void*)((float *)src + index);
}
void* getVectorValueAddr_DOUBLE(void *src, int32_t index) {
  return (void*)((double *)src + index);
}
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void* getVectorValueAddr_default(void *src, int32_t index) {
  return src;
}
void* getVectorValueAddr_VAR(void *src, int32_t index) {
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  return colDataGetData((SColumnInfoData *)src, index);
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}
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_getValueAddr_fn_t getVectorValueAddrFn(int32_t srcType) {
    _getValueAddr_fn_t p = NULL;
    if(srcType==TSDB_DATA_TYPE_TINYINT) {
        p = getVectorValueAddr_TINYINT;
    }else if(srcType==TSDB_DATA_TYPE_UTINYINT) {
        p = getVectorValueAddr_UTINYINT;
    }else if(srcType==TSDB_DATA_TYPE_SMALLINT) {
        p = getVectorValueAddr_SMALLINT;
    }else if(srcType==TSDB_DATA_TYPE_USMALLINT) {
        p = getVectorValueAddr_USMALLINT;
    }else if(srcType==TSDB_DATA_TYPE_INT) {
        p = getVectorValueAddr_INT;
    }else if(srcType==TSDB_DATA_TYPE_UINT) {
        p = getVectorValueAddr_UINT;
    }else if(srcType==TSDB_DATA_TYPE_BIGINT) {
        p = getVectorValueAddr_BIGINT;
    }else if(srcType==TSDB_DATA_TYPE_UBIGINT) {
        p = getVectorValueAddr_UBIGINT;
    }else if(srcType==TSDB_DATA_TYPE_FLOAT) {
        p = getVectorValueAddr_FLOAT;
    }else if(srcType==TSDB_DATA_TYPE_DOUBLE) {
        p = getVectorValueAddr_DOUBLE;
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    }else if(srcType==TSDB_DATA_TYPE_BINARY) {
        p = getVectorValueAddr_VAR;
    }else if(srcType==TSDB_DATA_TYPE_NCHAR) {
        p = getVectorValueAddr_VAR;
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    }else {
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        p = getVectorValueAddr_default;
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    }
    return p;
}

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static FORCE_INLINE void varToTimestamp(char *buf, SScalarParam* pOut, int32_t rowIndex) {
  int64_t value = 0;
  if (taosParseTime(buf, &value, strlen(buf), pOut->columnData->info.precision, tsDaylight) != TSDB_CODE_SUCCESS) {
    value = 0;
  }
  
  colDataAppendInt64(pOut->columnData, rowIndex, &value);
}

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static FORCE_INLINE void varToSigned(char *buf, SScalarParam* pOut, int32_t rowIndex) {
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  int64_t value = strtoll(buf, NULL, 10);
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  colDataAppendInt64(pOut->columnData, rowIndex, &value);
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}

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static FORCE_INLINE void varToUnsigned(char *buf, SScalarParam* pOut, int32_t rowIndex) {
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  uint64_t value = strtoull(buf, NULL, 10);
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  colDataAppendInt64(pOut->columnData, rowIndex, (int64_t*) &value);
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}

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static FORCE_INLINE void varToFloat(char *buf, SScalarParam* pOut, int32_t rowIndex) {
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  double value = strtod(buf, NULL);
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  colDataAppendDouble(pOut->columnData, rowIndex, &value);
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}

static FORCE_INLINE void varToBool(char *buf, SScalarParam* pOut, int32_t rowIndex) {
  int64_t value = strtoll(buf, NULL, 10);
  bool v = (value != 0)? true:false;
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  colDataAppendInt8(pOut->columnData, rowIndex, (int8_t*) &v);
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}

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static FORCE_INLINE void varToNchar(char* buf, SScalarParam* pOut, int32_t rowIndex) {
  int32_t len = 0;
  int32_t inputLen = varDataLen(buf);

  char* t = taosMemoryCalloc(1,(inputLen + 1) * TSDB_NCHAR_SIZE + VARSTR_HEADER_SIZE);
  /*int32_t resLen = */taosMbsToUcs4(varDataVal(buf), inputLen, (TdUcs4*) varDataVal(t), pOut->columnData->info.bytes, &len);
  varDataSetLen(t, len);

  colDataAppend(pOut->columnData, rowIndex, t, false);
  taosMemoryFree(t);
}
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//TODO opt performance, tmp is not needed.
int32_t vectorConvertFromVarData(const SScalarParam* pIn, SScalarParam* pOut, int32_t inType, int32_t outType) {
  int32_t bufSize = pIn->columnData->info.bytes;
  char *tmp = taosMemoryMalloc(bufSize + VARSTR_HEADER_SIZE);

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  bool vton = false;
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  _bufConverteFunc func = NULL;
  if (TSDB_DATA_TYPE_BOOL == outType) {
    func = varToBool;
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  } else if (IS_SIGNED_NUMERIC_TYPE(outType)) {
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    func = varToSigned;
  } else if (IS_UNSIGNED_NUMERIC_TYPE(outType)) {
    func = varToUnsigned;
  } else if (IS_FLOAT_TYPE(outType)) {
    func = varToFloat;
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  } else if (outType == TSDB_DATA_TYPE_NCHAR) {   // binary -> nchar
    ASSERT(inType == TSDB_DATA_TYPE_VARCHAR);
    func = varToNchar;
    vton = true;
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  } else if (TSDB_DATA_TYPE_TIMESTAMP == outType) {
    func = varToTimestamp;
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  } else {
    sclError("invalid convert outType:%d", outType);
    return TSDB_CODE_QRY_APP_ERROR;
  }

  pOut->numOfRows = pIn->numOfRows;
  for (int32_t i = 0; i < pIn->numOfRows; ++i) {
    if (colDataIsNull_s(pIn->columnData, i)) {
      colDataAppendNULL(pOut->columnData, i);
      continue;
    }

    char* data = colDataGetVarData(pIn->columnData, i);
    int32_t convertType = inType;
    if(inType == TSDB_DATA_TYPE_JSON){
      if(*data == TSDB_DATA_TYPE_NULL) {
        colDataAppendNULL(pOut->columnData, i);
        continue;
      }
      else if(*data == TSDB_DATA_TYPE_NCHAR) {
        data += CHAR_BYTES;
        convertType = TSDB_DATA_TYPE_NCHAR;
      } else {
        convertNumberToNumber(data+CHAR_BYTES, colDataGetNumData(pOut->columnData, i), *data, outType);
        continue;
      }
    }
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    if (vton) {
      memcpy(tmp, data, varDataTLen(data));
    } else {
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      if (TSDB_DATA_TYPE_VARCHAR == convertType) {
        memcpy(tmp, varDataVal(data), varDataLen(data));
        tmp[varDataLen(data)] = 0;
      } else if (TSDB_DATA_TYPE_NCHAR == convertType){
        ASSERT(varDataLen(data) <= bufSize);

        int len = taosUcs4ToMbs((TdUcs4 *)varDataVal(data), varDataLen(data), tmp);
        if (len < 0) {
          sclError("castConvert taosUcs4ToMbs error 1");
          taosMemoryFreeClear(tmp);
          return TSDB_CODE_QRY_APP_ERROR;
        }

        tmp[len] = 0;
      }
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    }
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    (*func)(tmp, pOut, i);
  }
  
  taosMemoryFreeClear(tmp);
  return TSDB_CODE_SUCCESS;
}

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double getVectorDoubleValue_JSON(void *src, int32_t index){
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  char *data = colDataGetVarData((SColumnInfoData*)src, index);
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  double out = 0;
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  if (*data == TSDB_DATA_TYPE_NULL){
    return out;
  } else if(*data == TSDB_DATA_TYPE_NCHAR) {   // json inner type can not be BINARY
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    convertStringToDouble(data+CHAR_BYTES, &out, *data, TSDB_DATA_TYPE_DOUBLE);
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  } else {
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    convertNumberToNumber(data+CHAR_BYTES, &out, *data, TSDB_DATA_TYPE_DOUBLE);
  }
  return out;
}

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void convertJsonValue(__compar_fn_t *fp, int32_t optr, int8_t typeLeft, int8_t typeRight, char **pLeftData, char **pRightData, void *pLeftOut, void *pRightOut, bool *isNull){
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  if(optr == OP_TYPE_JSON_CONTAINS) {
    return;
  }

  if(typeLeft != TSDB_DATA_TYPE_JSON && typeRight != TSDB_DATA_TYPE_JSON){
    return;
  }

  if(typeLeft == TSDB_DATA_TYPE_JSON){
    typeLeft = **pLeftData;
    (*pLeftData) ++;
  }
  if(typeRight == TSDB_DATA_TYPE_JSON){
    typeRight = **pRightData;
    (*pRightData) ++;
  }
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  if(typeLeft == TSDB_DATA_TYPE_NULL || typeRight == TSDB_DATA_TYPE_NULL){
    *isNull = true;
    return;
  }
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  int8_t type = vectorGetConvertType(typeLeft, typeRight);

  if(type == 0) {
    *fp = filterGetCompFunc(typeLeft, optr);
    return;
  }

  *fp = filterGetCompFunc(type, optr);

  if(typeLeft == TSDB_DATA_TYPE_NCHAR) {
    convertStringToDouble(*pLeftData, pLeftOut, typeLeft, type);
    *pLeftData = pLeftOut;
  } else if(typeLeft != type) {
    convertNumberToNumber(*pLeftData, pLeftOut, typeLeft, type);
    *pLeftData = pLeftOut;
  }

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  if(typeRight == TSDB_DATA_TYPE_NCHAR) {
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    convertStringToDouble(*pRightData, pRightOut, typeRight, type);
    *pRightData = pRightOut;
  } else if(typeRight != type) {
    convertNumberToNumber(*pRightData, pRightOut, typeRight, type);
    *pRightData = pRightOut;
  }
}

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int32_t vectorConvertImpl(const SScalarParam* pIn, SScalarParam* pOut) {
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  SColumnInfoData* pInputCol  = pIn->columnData;
  SColumnInfoData* pOutputCol = pOut->columnData;
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  int16_t inType   = pInputCol->info.type;
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  int16_t outType  = pOutputCol->info.type;
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  if (IS_VAR_DATA_TYPE(inType)) {
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    return vectorConvertFromVarData(pIn, pOut, inType, outType);
  }
  
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  switch (outType) {
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    case TSDB_DATA_TYPE_BOOL: {
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
        }

        bool value = 0;
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        GET_TYPED_DATA(value, bool, inType, colDataGetData(pInputCol, i));
        colDataAppendInt8(pOutputCol, i, (int8_t *)&value);
      }
      break;
    }
    case TSDB_DATA_TYPE_TINYINT: {
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }

        int8_t value = 0;
        GET_TYPED_DATA(value, int8_t, inType, colDataGetData(pInputCol, i));
        colDataAppendInt8(pOutputCol, i, (int8_t *)&value);
      }
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT:{
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }

        int16_t value = 0;
        GET_TYPED_DATA(value, int16_t, inType, colDataGetData(pInputCol, i));
        colDataAppendInt16(pOutputCol, i, (int16_t *)&value);
      }
      break;
    }
    case TSDB_DATA_TYPE_INT:{
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }

        int32_t value = 0;
        GET_TYPED_DATA(value, int32_t, inType, colDataGetData(pInputCol, i));
        colDataAppendInt32(pOutputCol, i, (int32_t *)&value);
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      }
      break;
    }
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    case TSDB_DATA_TYPE_BIGINT:
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    case TSDB_DATA_TYPE_TIMESTAMP: {
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      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
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        }
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        int64_t value = 0;
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        GET_TYPED_DATA(value, int64_t, inType, colDataGetData(pInputCol, i));
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        colDataAppendInt64(pOutputCol, i, (int64_t *)&value);
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      }
      break;
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    }
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    case TSDB_DATA_TYPE_UTINYINT:{
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }
        
        uint8_t value = 0;
        GET_TYPED_DATA(value, uint8_t, inType, colDataGetData(pInputCol, i));
        colDataAppendInt8(pOutputCol, i, (int8_t *)&value);
      }
      break;
    }
    case TSDB_DATA_TYPE_USMALLINT:{
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }
        
        uint16_t value = 0;
        GET_TYPED_DATA(value, uint16_t, inType, colDataGetData(pInputCol, i));
        colDataAppendInt16(pOutputCol, i, (int16_t *)&value);
      }
      break;
    }
    case TSDB_DATA_TYPE_UINT:{
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }
        
        uint32_t value = 0;
        GET_TYPED_DATA(value, uint32_t, inType, colDataGetData(pInputCol, i));
        colDataAppendInt32(pOutputCol, i, (int32_t *)&value);
      }
      break;
    }
    case TSDB_DATA_TYPE_UBIGINT: {
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      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
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        }
        
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        uint64_t value = 0;
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        GET_TYPED_DATA(value, uint64_t, inType, colDataGetData(pInputCol, i));
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        colDataAppendInt64(pOutputCol, i, (int64_t*)&value);
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      }
      break;
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    }
    case TSDB_DATA_TYPE_FLOAT:{
      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;
        }
        
        float value = 0;
        GET_TYPED_DATA(value, float, inType, colDataGetData(pInputCol, i));
        colDataAppendFloat(pOutputCol, i, (float*)&value);
      }
      break;  
    }
    case TSDB_DATA_TYPE_DOUBLE: {
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      for (int32_t i = 0; i < pIn->numOfRows; ++i) {
        if (colDataIsNull_f(pInputCol->nullbitmap, i)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
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        }
        
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        double value = 0;
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        GET_TYPED_DATA(value, double, inType, colDataGetData(pInputCol, i));
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        colDataAppendDouble(pOutputCol, i, (double*)&value);
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      }
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      break;  
    }
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    default:
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      sclError("invalid convert output type:%d", outType);
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      return TSDB_CODE_QRY_APP_ERROR;
  }

  return TSDB_CODE_SUCCESS;
}

int8_t gConvertTypes[TSDB_DATA_TYPE_BLOB+1][TSDB_DATA_TYPE_BLOB+1] = {
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/*         NULL BOOL TINY SMAL INT  BIG  FLOA DOUB VARC TIME NCHA UTIN USMA UINT UBIG JSON VARB DECI BLOB */
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/*NULL*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,
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/*BOOL*/   0,   0,   0,   3,   4,   5,   6,   7,   7,   9,   7,   0,   12,  13,  14,  0,   7,   0,   0,
/*TINY*/   0,   0,   0,   3,   4,   5,   6,   7,   7,   9,   7,   3,   4,   5,   7,   0,   7,   0,   0,
/*SMAL*/   0,   0,   0,   0,   4,   5,   6,   7,   7,   9,   7,   3,   4,   5,   7,   0,   7,   0,   0,
/*INT */   0,   0,   0,   0,   0,   5,   6,   7,   7,   9,   7,   4,   4,   5,   7,   0,   7,   0,   0,
/*BIGI*/   0,   0,   0,   0,   0,   0,   6,   7,   7,   0,   7,   5,   5,   5,   7,   0,   7,   0,   0,
/*FLOA*/   0,   0,   0,   0,   0,   0,   0,   7,   7,   6,   7,   6,   6,   6,   6,   0,   7,   0,   0,
/*DOUB*/   0,   0,   0,   0,   0,   0,   0,   0,   7,   7,   7,   7,   7,   7,   7,   0,   7,   0,   0,
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/*VARC*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   9,   0,   7,   7,   7,   7,   0,   0,   0,   0,
/*TIME*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   9,   9,   9,   9,   7,   0,   7,   0,   0,
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/*NCHA*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   7,   7,   7,   7,   0,   0,   0,   0,
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/*UTIN*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   12,  13,  14,  0,   7,   0,   0,
/*USMA*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   13,  14,  0,   7,   0,   0,
/*UINT*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   14,  0,   7,   0,   0,
/*UBIG*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   7,   0,   0,
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/*JSON*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,
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/*VARB*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,
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/*DECI*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,
/*BLOB*/   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0,   0
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};

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int32_t vectorGetConvertType(int32_t type1, int32_t type2) {
  if (type1 == type2) {
    return 0;
  }

  if (type1 < type2) {
    return gConvertTypes[type1][type2];
  }

  return gConvertTypes[type2][type1];
}

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int32_t vectorConvert(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam* pLeftOut, SScalarParam* pRightOut) {
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  if (pLeft->pHashFilter != NULL || pRight->pHashFilter != NULL) {
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    return TSDB_CODE_SUCCESS;
  }

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  int32_t leftType  = GET_PARAM_TYPE(pLeft);
  int32_t rightType = GET_PARAM_TYPE(pRight);
  if (leftType == rightType) {
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    return TSDB_CODE_SUCCESS;
  }

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  SScalarParam *param1 = NULL, *paramOut1 = NULL; 
  SScalarParam *param2 = NULL, *paramOut2 = NULL;
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  int32_t code = 0;
  
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  if (leftType < rightType) {
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    param1 = pLeft;
    param2 = pRight;
    paramOut1 = pLeftOut;
    paramOut2 = pRightOut;
  } else {
    param1 = pRight;
    param2 = pLeft;
    paramOut1 = pRightOut;
    paramOut2 = pLeftOut;
  }

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  int8_t type = vectorGetConvertType(GET_PARAM_TYPE(param1), GET_PARAM_TYPE(param2));
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  if (0 == type) {
    return TSDB_CODE_SUCCESS;
  }

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  if (type != GET_PARAM_TYPE(param1)) {
    SDataType t = {.type = type, .bytes = tDataTypes[type].bytes};
    paramOut1->numOfRows = param1->numOfRows;

    paramOut1->columnData = createColumnInfoData(&t, param1->numOfRows);
    if (paramOut1->columnData == NULL) {
      return terrno;
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    }
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    code = vectorConvertImpl(param1, paramOut1);
    if (code) {
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//      taosMemoryFreeClear(paramOut1->data);
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      return code;
    }
  }
  
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  if (type != GET_PARAM_TYPE(param2)) {
    SDataType t = {.type = type, .bytes = tDataTypes[type].bytes};
    paramOut2->numOfRows = param2->numOfRows;

    paramOut2->columnData = createColumnInfoData(&t, param2->numOfRows);
    if (paramOut2->columnData == NULL) {
      return terrno;
    }

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    code = vectorConvertImpl(param2, paramOut2);
    if (code) {
      return code;
    }
  }

  return TSDB_CODE_SUCCESS;
}

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enum {
  VECTOR_DO_CONVERT = 0x1,
  VECTOR_UN_CONVERT = 0x2,
};

static int32_t doConvertHelper(SScalarParam* pDest, int32_t* convert, const SScalarParam* pParam, int32_t type) {
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  SColumnInfoData* pCol = pParam->columnData;

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  if (IS_VAR_DATA_TYPE(pCol->info.type) && pCol->info.type != TSDB_DATA_TYPE_JSON) {
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    pDest->numOfRows = pParam->numOfRows;
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    SDataType t = {.type = type, .bytes = tDataTypes[type].bytes};
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    pDest->columnData = createColumnInfoData(&t, pParam->numOfRows);
    if (pDest->columnData == NULL) {
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      sclError("malloc %d failed", (int32_t)(pParam->numOfRows * sizeof(double)));
      return TSDB_CODE_OUT_OF_MEMORY;
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    }

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    int32_t code = vectorConvertImpl(pParam, pDest);
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    if (code != TSDB_CODE_SUCCESS) {
      return code;
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    }
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    *convert = VECTOR_DO_CONVERT;
  } else {
    *convert = VECTOR_UN_CONVERT;
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  }
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  return TSDB_CODE_SUCCESS;
}

// TODO not correct for descending order scan
static void vectorMathAddHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t i) {
  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
  _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);

  double *output = (double *)pOutputCol->pData;

  if (colDataIsNull_f(pRightCol->nullbitmap, 0)) {  // Set pLeft->numOfRows NULL value
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    colDataAppendNNULL(pOutputCol, 0, numOfRows);
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  } else {
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = getVectorDoubleValueFnLeft(LEFT_COL, i)
                + getVectorDoubleValueFnRight(RIGHT_COL, 0);
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    }
  }
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}
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static void vectorMathBigintAddHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t i) {
  _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
  _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);

  int64_t *output = (int64_t *)pOutputCol->pData;

  if (colDataIsNull_f(pRightCol->nullbitmap, 0)) {  // Set pLeft->numOfRows NULL value
    colDataAppendNNULL(pOutputCol, 0, numOfRows);
  } else {
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
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      *output = getVectorBigintValueFnLeft(pLeftCol->pData, i) + getVectorBigintValueFnRight(pRightCol->pData, 0);
    }
  }
}

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static SColumnInfoData* doVectorConvert(SScalarParam* pInput, int32_t* doConvert) {
  SScalarParam convertParam = {0};

  int32_t code = doConvertHelper(&convertParam, doConvert, pInput, TSDB_DATA_TYPE_DOUBLE);
  if (code != TSDB_CODE_SUCCESS) {
    terrno = code;
    return NULL;
  }

  if (*doConvert == VECTOR_DO_CONVERT) {
    return convertParam.columnData;
  } else {
    return pInput->columnData;
  }
}

static void doReleaseVec(SColumnInfoData* pCol, int32_t type) {
  if (type == VECTOR_DO_CONVERT) {
    colDataDestroy(pCol);
  }
}

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char *getJsonValue(char *json, char *key){    //todo
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  int16_t cols = kvRowNCols(json);
  for (int i = 0; i < cols; ++i) {
    SColIdx *pColIdx = kvRowColIdxAt(json, i);
    char *data = kvRowColVal(json, pColIdx);
800 801 802 803 804
    if(i == 0){
      if(*data == TSDB_DATA_TYPE_NULL) {
        return NULL;
      }
      continue;
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    }
806
    if(memcmp(key, data, varDataTLen(data)) == 0){
807 808 809
      return data + varDataTLen(data);
    }
  }
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  return NULL;
}

void vectorJsonArrow(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;

  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;

  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);

821
  char *pRightData = colDataGetVarData(pRight->columnData, 0);
822
  for (; i >= 0 && i < pLeft->numOfRows; i += step) {
823 824
    if (colDataIsNull_var(pLeft->columnData, i)) {
      colDataSetNull_var(pOutputCol, i);
825 826 827
      pOutputCol->hasNull = true;
      continue;
    }
828
    char *pLeftData = colDataGetVarData(pLeft->columnData, i);
829
    char *value = getJsonValue(pLeftData, pRightData);
830
    if (!value) {
831
      colDataSetNull_var(pOutputCol, i);
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      pOutputCol->hasNull = true;
      continue;
    }
835
    colDataAppend(pOutputCol, i, value, false);
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  }
}

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void vectorMathAdd(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;

  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;

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  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);

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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol   = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol  = doVectorConvert(pRight, &rightConvert);
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  if ((GET_PARAM_TYPE(pLeft) == TSDB_DATA_TYPE_TIMESTAMP && IS_INTEGER_TYPE(GET_PARAM_TYPE(pRight))) ||
      (GET_PARAM_TYPE(pRight) == TSDB_DATA_TYPE_TIMESTAMP && IS_INTEGER_TYPE(GET_PARAM_TYPE(pLeft))) ||
      (GET_PARAM_TYPE(pLeft) == TSDB_DATA_TYPE_TIMESTAMP && GET_PARAM_TYPE(pRight) == TSDB_DATA_TYPE_BOOL) ||
      (GET_PARAM_TYPE(pRight) == TSDB_DATA_TYPE_TIMESTAMP && GET_PARAM_TYPE(pLeft) == TSDB_DATA_TYPE_BOOL)) { //timestamp plus duration
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    int64_t *output = (int64_t *)pOutputCol->pData;
    _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
    _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);
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    if (pLeft->numOfRows == pRight->numOfRows) {
      for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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        if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;  // TODO set null or ignore
        }
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        *output = getVectorBigintValueFnLeft(pLeftCol->pData, i) + getVectorBigintValueFnRight(pRightCol->pData, i);
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      }
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    } else if (pLeft->numOfRows == 1) {
      vectorMathBigintAddHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, i);
    } else if (pRight->numOfRows == 1) {
      vectorMathBigintAddHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, i);
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    }
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  } else {
    double *output = (double *)pOutputCol->pData;
    _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
    _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);
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    if (pLeft->numOfRows == pRight->numOfRows) {
      for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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        if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;  // TODO set null or ignore
        }
        *output = getVectorDoubleValueFnLeft(LEFT_COL, i) + getVectorDoubleValueFnRight(RIGHT_COL, i);
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      }
    } else if (pLeft->numOfRows == 1) {
      vectorMathAddHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, i);
    } else if (pRight->numOfRows == 1) {
      vectorMathAddHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, i);
    }
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  }
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  doReleaseVec(pLeftCol, leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}
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// TODO not correct for descending order scan
static void vectorMathSubHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t factor, int32_t i) {
  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
  _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);

  double *output = (double *)pOutputCol->pData;

  if (colDataIsNull_f(pRightCol->nullbitmap, 0)) {  // Set pLeft->numOfRows NULL value
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    colDataAppendNNULL(pOutputCol, 0, numOfRows);
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  } else {
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = (getVectorDoubleValueFnLeft(LEFT_COL, i)
                 - getVectorDoubleValueFnRight(RIGHT_COL, 0)) * factor;
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    }
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  }
}
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static void vectorMathBigintSubHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t factor, int32_t i) {
  _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
  _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);

  int64_t *output = (int64_t *)pOutputCol->pData;

  if (colDataIsNull_f(pRightCol->nullbitmap, 0)) {  // Set pLeft->numOfRows NULL value
    colDataAppendNNULL(pOutputCol, 0, numOfRows);
  } else {
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
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      *output = (getVectorBigintValueFnLeft(pLeftCol->pData, i) - getVectorBigintValueFnRight(pRightCol->pData, 0)) * factor;
    }
  }
}

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void vectorMathSub(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;
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  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);

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  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;
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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol   = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol  = doVectorConvert(pRight, &rightConvert);
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  if ((GET_PARAM_TYPE(pLeft) == TSDB_DATA_TYPE_TIMESTAMP && GET_PARAM_TYPE(pRight) == TSDB_DATA_TYPE_BIGINT) ||
      (GET_PARAM_TYPE(pRight) == TSDB_DATA_TYPE_TIMESTAMP && GET_PARAM_TYPE(pLeft) == TSDB_DATA_TYPE_BIGINT)) { //timestamp minus duration
    int64_t *output = (int64_t *)pOutputCol->pData;
    _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
    _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);
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    if (pLeft->numOfRows == pRight->numOfRows) {
      for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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        if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;  // TODO set null or ignore
        }
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        *output = getVectorBigintValueFnLeft(pLeftCol->pData, i) - getVectorBigintValueFnRight(pRightCol->pData, i);
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      }
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    } else if (pLeft->numOfRows == 1) {
      vectorMathBigintSubHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, -1, i);
    } else if (pRight->numOfRows == 1) {
      vectorMathBigintSubHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, 1, i);
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    }
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  } else {
    double *output = (double *)pOutputCol->pData;
    _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
    _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);

    if (pLeft->numOfRows == pRight->numOfRows) {
      for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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        if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;  // TODO set null or ignore
        }
        *output = getVectorDoubleValueFnLeft(LEFT_COL, i) - getVectorDoubleValueFnRight(RIGHT_COL, i);
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      }
    } else if (pLeft->numOfRows == 1) {
      vectorMathSubHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, -1, i);
    } else if (pRight->numOfRows == 1) {
      vectorMathSubHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, 1, i);
    }
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  }
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  doReleaseVec(pLeftCol,  leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}

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// TODO not correct for descending order scan
static void vectorMathMultiplyHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t i) {
  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
  _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);
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  double *output = (double *)pOutputCol->pData;
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  if (colDataIsNull_f(pRightCol->nullbitmap, 0)) {  // Set pLeft->numOfRows NULL value
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    colDataAppendNNULL(pOutputCol, 0, numOfRows);
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  } else {
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = getVectorDoubleValueFnLeft(LEFT_COL, i)
                * getVectorDoubleValueFnRight(RIGHT_COL, 0);
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    }
  }
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}

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void vectorMathMultiply(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;
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  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);
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  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;

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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol   = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol  = doVectorConvert(pRight, &rightConvert);
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  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
  _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);

  double *output = (double *)pOutputCol->pData;
  if (pLeft->numOfRows == pRight->numOfRows) {
    for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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      if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
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      *output = getVectorDoubleValueFnLeft(LEFT_COL, i)
                * getVectorDoubleValueFnRight(RIGHT_COL, i);
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    }
  } else if (pLeft->numOfRows == 1) {
    vectorMathMultiplyHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, i);
  } else if (pRight->numOfRows == 1) {
    vectorMathMultiplyHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, i);
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  }
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  doReleaseVec(pLeftCol, leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}

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void vectorMathDivide(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;
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  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);
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  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;

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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol  = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol = doVectorConvert(pRight, &rightConvert);
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  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
  _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);

  double *output = (double *)pOutputCol->pData;
  if (pLeft->numOfRows == pRight->numOfRows) {  // check for the 0 value
    for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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      if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
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      *output = getVectorDoubleValueFnLeft(LEFT_COL, i)
                 /getVectorDoubleValueFnRight(RIGHT_COL, i);
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    }
  } else if (pLeft->numOfRows == 1) {
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    if (colDataIsNull_s(pLeftCol, 0)) {  // Set pLeft->numOfRows NULL value
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      colDataAppendNNULL(pOutputCol, 0, pRight->numOfRows);
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    } else {
      for (; i >= 0 && i < pRight->numOfRows; i += step, output += 1) {
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        if (colDataIsNull_s(pRightCol, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;  // TODO set null or ignore
        }
        *output = getVectorDoubleValueFnLeft(LEFT_COL, 0)
                  / getVectorDoubleValueFnRight(RIGHT_COL, i);
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      }
    }
  } else if (pRight->numOfRows == 1) {
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    if (colDataIsNull_s(pRightCol, 0)) {  // Set pLeft->numOfRows NULL value
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      colDataAppendNNULL(pOutputCol, 0, pLeft->numOfRows);
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    } else {
      for (; i >= 0 && i < pLeft->numOfRows; i += step, output += 1) {
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        if (colDataIsNull_s(pLeftCol, i)) {
          colDataAppendNULL(pOutputCol, i);
          continue;  // TODO set null or ignore
        }
        *output = getVectorDoubleValueFnLeft(LEFT_COL, i)
                  / getVectorDoubleValueFnRight(RIGHT_COL, 0);
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      }
    }
  }
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  doReleaseVec(pLeftCol,  leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}

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void vectorMathRemainder(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;
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  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);
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  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;
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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol  = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol = doVectorConvert(pRight, &rightConvert);
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  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);
  _getDoubleValue_fn_t getVectorDoubleValueFnRight = getVectorDoubleValueFn(pRightCol->info.type);

  double *output = (double *)pOutputCol->pData;
  double zero = 0.0;

  if (pLeft->numOfRows == pRight->numOfRows) {
    for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i) || colDataIsNull_s(pRightCol, i)) {
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        colDataAppendNULL(pOutputCol, i);
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        continue;
      }

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      double lx = getVectorDoubleValueFnLeft(LEFT_COL, i);
      double rx = getVectorDoubleValueFnRight(RIGHT_COL, i);
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      if (isnan(lx) || isinf(lx) || isnan(rx) || isinf(rx)) {
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        colDataAppendNULL(pOutputCol, i);
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        continue;
      }

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      *output = lx - ((int64_t)(lx / rx)) * rx;
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    }
  } else if (pLeft->numOfRows == 1) {
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    double lx = getVectorDoubleValueFnLeft(LEFT_COL, 0);
    if (colDataIsNull_s(pLeftCol, 0) || isnan(lx) || isinf(lx)) {  // Set pLeft->numOfRows NULL value
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      colDataAppendNNULL(pOutputCol, 0, pRight->numOfRows);
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    } else {
      for (; i >= 0 && i < pRight->numOfRows; i += step, output += 1) {
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        if (colDataIsNull_s(pRightCol, i)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
        }

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        double rx = getVectorDoubleValueFnRight(RIGHT_COL, i);
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        if (isnan(rx) || isinf(rx) || FLT_EQUAL(rx, 0)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
        }

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        *output = lx - ((int64_t)(lx / rx)) * rx;
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      }
    }
  } else if (pRight->numOfRows == 1) {
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    double rx = getVectorDoubleValueFnRight(RIGHT_COL, 0);
    if (colDataIsNull_s(pRightCol, 0) || FLT_EQUAL(rx, 0)) {  // Set pLeft->numOfRows NULL value
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      colDataAppendNNULL(pOutputCol, 0, pLeft->numOfRows);
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    } else {
      for (; i >= 0 && i < pLeft->numOfRows; i += step, output += 1) {
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        if (colDataIsNull_s(pLeftCol, i)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
        }

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        double lx = getVectorDoubleValueFnLeft(LEFT_COL, i);
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        if (isnan(lx) || isinf(lx)) {
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          colDataAppendNULL(pOutputCol, i);
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          continue;
        }

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        *output = lx - ((int64_t)(lx / rx)) * rx;
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      }
    }
  }
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  doReleaseVec(pLeftCol, leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}

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void vectorMathMinus(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;

  pOut->numOfRows = pLeft->numOfRows;

  int32_t i = ((_ord) == TSDB_ORDER_ASC)? 0 : (pLeft->numOfRows - 1);
  int32_t step = ((_ord) == TSDB_ORDER_ASC)? 1 : -1;

  int32_t leftConvert = 0;
  SColumnInfoData *pLeftCol   = doVectorConvert(pLeft, &leftConvert);

  _getDoubleValue_fn_t getVectorDoubleValueFnLeft  = getVectorDoubleValueFn(pLeftCol->info.type);

  double *output = (double *)pOutputCol->pData;
  for (; i < pLeft->numOfRows && i >= 0; i += step, output += 1) {
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    if (colDataIsNull_s(pLeft->columnData, i)) {
      colDataAppendNULL(pOutputCol, i);
      continue;  // TODO set null or ignore
    }
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    *output = - getVectorDoubleValueFnLeft(LEFT_COL, i);
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  }

  doReleaseVec(pLeftCol,  leftConvert);
}

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void vectorConcat(SScalarParam* pLeft, SScalarParam* pRight, void *out, int32_t _ord) {
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#if 0
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  int32_t len = pLeft->bytes + pRight->bytes;

1210
  int32_t i = ((_ord) == TSDB_ORDER_ASC) ? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
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  int32_t step = ((_ord) == TSDB_ORDER_ASC) ? 1 : -1;

  char *output = (char *)out;
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  if (pLeft->numOfRows == pRight->numOfRows) {
    for (; i < pRight->numOfRows && i >= 0; i += step, output += len) {
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      char* left = POINTER_SHIFT(pLeft->data, pLeft->bytes * i);
      char* right = POINTER_SHIFT(pRight->data, pRight->bytes * i);

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      if (isNull(left, pLeftCol->info.type) || isNull(right, pRight->info.type)) {
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        setVardataNull(output, TSDB_DATA_TYPE_BINARY);
        continue;
      }

      // todo define a macro
      memcpy(varDataVal(output), varDataVal(left), varDataLen(left));
      memcpy(varDataVal(output) + varDataLen(left), varDataVal(right), varDataLen(right));
      varDataSetLen(output, varDataLen(left) + varDataLen(right));
    }
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  } else if (pLeft->numOfRows == 1) {
    for (; i >= 0 && i < pRight->numOfRows; i += step, output += len) {
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      char *right = POINTER_SHIFT(pRight->data, pRight->bytes * i);
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      if (isNull(pLeft->data, pLeftCol->info.type) || isNull(right, pRight->info.type)) {
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        setVardataNull(output, TSDB_DATA_TYPE_BINARY);
        continue;
      }

      memcpy(varDataVal(output), varDataVal(pLeft->data), varDataLen(pLeft->data));
      memcpy(varDataVal(output) + varDataLen(pLeft->data), varDataVal(right), varDataLen(right));
      varDataSetLen(output, varDataLen(pLeft->data) + varDataLen(right));
    }
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  } else if (pRight->numOfRows == 1) {
    for (; i >= 0 && i < pLeft->numOfRows; i += step, output += len) {
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      char* left = POINTER_SHIFT(pLeft->data, pLeft->bytes * i);
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      if (isNull(left, pLeftCol->info.type) || isNull(pRight->data, pRight->info.type)) {
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        SET_DOUBLE_NULL(output);
        continue;
      }

      memcpy(varDataVal(output), varDataVal(left), varDataLen(pRight->data));
      memcpy(varDataVal(output) + varDataLen(left), varDataVal(pRight->data), varDataLen(pRight->data));
      varDataSetLen(output, varDataLen(left) + varDataLen(pRight->data));
    }
  }
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#endif
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}

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static void vectorBitAndHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t i) {
  _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
  _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);
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  double *output = (double *)pOutputCol->pData;
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  if (colDataIsNull_s(pRightCol, 0)) {  // Set pLeft->numOfRows NULL value
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    colDataAppendNNULL(pOutputCol, 0, numOfRows);
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  } else {
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
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      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = getVectorBigintValueFnLeft(LEFT_COL, i) & getVectorBigintValueFnRight(RIGHT_COL, 0);
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    }
  }
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}
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void vectorBitAnd(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;
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  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);
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  int32_t i = ((_ord) == TSDB_ORDER_ASC) ? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC) ? 1 : -1;
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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol   = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol  = doVectorConvert(pRight, &rightConvert);
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  _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
  _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);
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  int64_t *output = (int64_t *)pOutputCol->pData;
  if (pLeft->numOfRows == pRight->numOfRows) {
    for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
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      if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = getVectorBigintValueFnLeft(LEFT_COL, i) & getVectorBigintValueFnRight(RIGHT_COL, i);
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    }
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  } else if (pLeft->numOfRows == 1) {
    vectorBitAndHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, i);
  } else if (pRight->numOfRows == 1) {
    vectorBitAndHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, i);
  }
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  doReleaseVec(pLeftCol,  leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}

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static void vectorBitOrHelper(SColumnInfoData* pLeftCol, SColumnInfoData* pRightCol, SColumnInfoData* pOutputCol, int32_t numOfRows, int32_t step, int32_t i) {
  _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
  _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);
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  int64_t *output = (int64_t *)pOutputCol->pData;
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1315
  if (colDataIsNull_s(pRightCol, 0)) {  // Set pLeft->numOfRows NULL value
1316
    colDataAppendNNULL(pOutputCol, 0, numOfRows);
1317
  } else {
1318
    int64_t rx = getVectorBigintValueFnRight(RIGHT_COL, 0);
1319
    for (; i >= 0 && i < numOfRows; i += step, output += 1) {
1320 1321 1322 1323 1324
      if (colDataIsNull_s(pLeftCol, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = getVectorBigintValueFnLeft(LEFT_COL, i) | rx;
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    }
  }
1327
}
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1329 1330
void vectorBitOr(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  SColumnInfoData *pOutputCol = pOut->columnData;
1331
  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);
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1333 1334
  int32_t i = ((_ord) == TSDB_ORDER_ASC) ? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t step = ((_ord) == TSDB_ORDER_ASC) ? 1 : -1;
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  int32_t leftConvert = 0, rightConvert = 0;
  SColumnInfoData *pLeftCol   = doVectorConvert(pLeft, &leftConvert);
  SColumnInfoData *pRightCol  = doVectorConvert(pRight, &rightConvert);
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  _getBigintValue_fn_t getVectorBigintValueFnLeft  = getVectorBigintValueFn(pLeftCol->info.type);
  _getBigintValue_fn_t getVectorBigintValueFnRight = getVectorBigintValueFn(pRightCol->info.type);
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1343 1344 1345
  int64_t *output = (int64_t *)pOutputCol->pData;
  if (pLeft->numOfRows == pRight->numOfRows) {
    for (; i < pRight->numOfRows && i >= 0; i += step, output += 1) {
1346 1347 1348 1349 1350
      if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
        colDataAppendNULL(pOutputCol, i);
        continue;  // TODO set null or ignore
      }
      *output = getVectorBigintValueFnLeft(LEFT_COL, i) | getVectorBigintValueFnRight(RIGHT_COL, i);
1351 1352 1353 1354 1355
    }
  } else if (pLeft->numOfRows == 1) {
    vectorBitOrHelper(pRightCol, pLeftCol, pOutputCol, pRight->numOfRows, step, i);
  } else if (pRight->numOfRows == 1) {
    vectorBitOrHelper(pLeftCol, pRightCol, pOutputCol, pLeft->numOfRows, step, i);
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  }
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  doReleaseVec(pLeftCol,  leftConvert);
  doReleaseVec(pRightCol, rightConvert);
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}

1362 1363 1364 1365 1366 1367 1368 1369 1370
void vectorCompareImpl(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord, int32_t optr) {
  int32_t       i = ((_ord) == TSDB_ORDER_ASC) ? 0 : TMAX(pLeft->numOfRows, pRight->numOfRows) - 1;
  int32_t       step = ((_ord) == TSDB_ORDER_ASC) ? 1 : -1;
  __compar_fn_t fp = filterGetCompFunc(GET_PARAM_TYPE(pLeft), optr);

  pOut->numOfRows = TMAX(pLeft->numOfRows, pRight->numOfRows);

  if (pRight->pHashFilter != NULL) {
    for (; i >= 0 && i < pLeft->numOfRows; i += step) {
1371
      if (colDataIsNull_s(pLeft->columnData, i)) {
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        bool  res = false;
        colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
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        continue;
      }

1377 1378
      char *pLeftData = colDataGetData(pLeft->columnData, i);
      bool  res = filterDoCompare(fp, optr, pLeftData, pRight->pHashFilter);
1379
      colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
1380
    }
1381
    return;
1382
  }
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1384 1385
  if (pLeft->numOfRows == pRight->numOfRows) {
    for (; i < pRight->numOfRows && i >= 0; i += step) {
1386
      if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, i)) {
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        bool  res = false;
        colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
1389
        continue;  // TODO set null or ignore
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      }

1392
      char *pLeftData = colDataGetData(pLeft->columnData, i);
1393
      char *pRightData = colDataGetData(pRight->columnData, i);
1394 1395 1396

      int64_t leftOut = 0;
      int64_t rightOut = 0;
1397 1398 1399
      bool isJsonnull = false;
      convertJsonValue(&fp, optr, GET_PARAM_TYPE(pLeft), GET_PARAM_TYPE(pRight), &pLeftData, &pRightData, &leftOut, &rightOut, &isJsonnull);
      if(isJsonnull){
1400
        colDataAppendNULL(pOut->columnData, i);
1401 1402
        continue;  // TODO set null or ignore
      }
1403
      bool  res = filterDoCompare(fp, optr, pLeftData, pRightData);
1404
      colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
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    }
1406
  } else if (pRight->numOfRows == 1) {
1407 1408
    ASSERT(pLeft->pHashFilter == NULL);
    for (; i >= 0 && i < pLeft->numOfRows; i += step) {
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      if (colDataIsNull_s(pLeft->columnData, i) || colDataIsNull_s(pRight->columnData, 0)) {
        bool  res = false;
        colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
1412 1413 1414 1415
        continue;
      }

      char *pLeftData = colDataGetData(pLeft->columnData, i);
1416 1417 1418
      char *pRightData = colDataGetData(pRight->columnData, 0);
      int64_t leftOut = 0;
      int64_t rightOut = 0;
1419 1420 1421
      bool isJsonnull = false;
      convertJsonValue(&fp, optr, GET_PARAM_TYPE(pLeft), GET_PARAM_TYPE(pRight), &pLeftData, &pRightData, &leftOut, &rightOut, &isJsonnull);
      if(isJsonnull){
1422
        colDataAppendNULL(pOut->columnData, i);
1423 1424
        continue;  // TODO set null or ignore
      }
1425
      bool  res = filterDoCompare(fp, optr, pLeftData, pRightData);
1426
      colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
1427 1428 1429
    }
  } else if (pLeft->numOfRows == 1) {
    for (; i >= 0 && i < pRight->numOfRows; i += step) {
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      if (colDataIsNull_s(pRight->columnData, i) || colDataIsNull_s(pLeft->columnData, 0)) {
        bool  res = false;
        colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
1433 1434 1435
        continue;
      }

1436
      char *pLeftData = colDataGetData(pLeft->columnData, 0);
1437
      char *pRightData = colDataGetData(pLeft->columnData, i);
1438 1439
      int64_t leftOut = 0;
      int64_t rightOut = 0;
1440 1441 1442
      bool isJsonnull = false;
      convertJsonValue(&fp, optr, GET_PARAM_TYPE(pLeft), GET_PARAM_TYPE(pRight), &pLeftData, &pRightData, &leftOut, &rightOut, &isJsonnull);
      if(isJsonnull){
1443
        colDataAppendNULL(pOut->columnData, i);
1444 1445
        continue;  // TODO set null or ignore
      }
1446
      bool  res = filterDoCompare(fp, optr, pLeftData, pRightData);
1447
      colDataAppendInt8(pOut->columnData, i, (int8_t*)&res);
1448
    }
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  }
}

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void vectorCompare(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord, int32_t optr) {
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  SScalarParam pLeftOut = {0}; 
  SScalarParam pRightOut = {0};
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  vectorConvert(pLeft, pRight, &pLeftOut, &pRightOut);

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  SScalarParam *param1 = NULL; 
  SScalarParam *param2 = NULL;
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1461
  if (pLeftOut.columnData != NULL) {
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    param1 = &pLeftOut;
  } else {
    param1 = pLeft;
  }

1467
  if (pRightOut.columnData != NULL) {
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    param2 = &pRightOut;
  } else {
    param2 = pRight;
  }

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  vectorCompareImpl(param1, param2, pOut, _ord, optr);
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  sclFreeParam(&pLeftOut);
  sclFreeParam(&pRightOut);  
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}

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void vectorGreater(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_GREATER_THAN);
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}

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void vectorGreaterEqual(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_GREATER_EQUAL);
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}

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void vectorLower(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_LOWER_THAN);
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}

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void vectorLowerEqual(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_LOWER_EQUAL);
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}

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void vectorEqual(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_EQUAL);
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}

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void vectorNotEqual(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_NOT_EQUAL);
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}

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void vectorIn(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_IN);
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}

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void vectorNotIn(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_NOT_IN);
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}

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void vectorLike(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_LIKE);
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}

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void vectorNotLike(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_NOT_LIKE);
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}

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void vectorMatch(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_MATCH);
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}

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void vectorNotMatch(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_NMATCH);
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}

1526 1527 1528 1529
void vectorJsonContains(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorCompare(pLeft, pRight, pOut, _ord, OP_TYPE_JSON_CONTAINS);
}

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void vectorIsNull(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
1531
  for(int32_t i = 0; i < pLeft->numOfRows; ++i) {
1532 1533
    int8_t v = colDataIsNull_s(pLeft->columnData, i)? 1:0;
    colDataAppendInt8(pOut->columnData, i, &v);
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1534
  }
1535
  pOut->numOfRows = pLeft->numOfRows;
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1536 1537
}

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void vectorNotNull(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
1539
  for(int32_t i = 0; i < pLeft->numOfRows; ++i) {
1540 1541
    int8_t v = colDataIsNull_s(pLeft->columnData, i)? 0:1;
    colDataAppendInt8(pOut->columnData, i, &v);
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1542
  }
1543
  pOut->numOfRows = pLeft->numOfRows;
D
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1544
}
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1545

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void vectorIsTrue(SScalarParam* pLeft, SScalarParam* pRight, SScalarParam *pOut, int32_t _ord) {
  vectorConvertImpl(pLeft, pOut);
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1548 1549
}

1550 1551
_bin_scalar_fn_t getBinScalarOperatorFn(int32_t binFunctionId) {
  switch (binFunctionId) {
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1552
    case OP_TYPE_ADD:
1553
      return vectorMathAdd;
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1554
    case OP_TYPE_SUB:
1555
      return vectorMathSub;
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    case OP_TYPE_MULTI:
1557
      return vectorMathMultiply;
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1558
    case OP_TYPE_DIV:
1559
      return vectorMathDivide;
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1560
    case OP_TYPE_MOD:
1561
      return vectorMathRemainder;
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    case OP_TYPE_MINUS:
      return vectorMathMinus;
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1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587
    case OP_TYPE_GREATER_THAN:
      return vectorGreater;
    case OP_TYPE_GREATER_EQUAL:
      return vectorGreaterEqual;
    case OP_TYPE_LOWER_THAN:
      return vectorLower;
    case OP_TYPE_LOWER_EQUAL:
      return vectorLowerEqual;
    case OP_TYPE_EQUAL:
      return vectorEqual;
    case OP_TYPE_NOT_EQUAL:
      return vectorNotEqual;
    case OP_TYPE_IN:
      return vectorIn;
    case OP_TYPE_NOT_IN:
      return vectorNotIn;
    case OP_TYPE_LIKE:
      return vectorLike;
    case OP_TYPE_NOT_LIKE:
      return vectorNotLike;
    case OP_TYPE_MATCH:
      return vectorMatch;
    case OP_TYPE_NMATCH:
      return vectorNotMatch;
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    case OP_TYPE_IS_NULL:
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1589
      return vectorIsNull;
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1590
    case OP_TYPE_IS_NOT_NULL:
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1591 1592 1593 1594 1595
      return vectorNotNull;
    case OP_TYPE_BIT_AND:
      return vectorBitAnd;
    case OP_TYPE_BIT_OR:
      return vectorBitOr;
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    case OP_TYPE_IS_TRUE:
      return vectorIsTrue;
1598 1599 1600 1601
    case OP_TYPE_JSON_GET_VALUE:
      return vectorJsonArrow;
    case OP_TYPE_JSON_CONTAINS:
      return vectorJsonContains;
1602
    default:
1603
      ASSERT(0);
1604 1605
      return NULL;
  }
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1606
}
1607