sclfunc.c 46.9 KB
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#include "function.h"
#include "scalar.h"
#include "tdatablock.h"
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#include "ttime.h"
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#include "sclInt.h"
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#include "sclvector.h"
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#include "tjson.h"
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typedef float (*_float_fn)(float);
typedef double (*_double_fn)(double);
typedef double (*_double_fn_2)(double, double);
typedef int (*_conv_fn)(int);
typedef void (*_trim_fn)(char *, char*, int32_t, int32_t);
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typedef int16_t (*_len_fn)(char *, int32_t);
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/** Math functions **/
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static double tlog(double v, double base) {
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  return log(v) / log(base);
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}

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int32_t absFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);
  if (!IS_NUMERIC_TYPE(type)) {
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    return TSDB_CODE_FAILED;
  }
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  switch (type) {
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    case TSDB_DATA_TYPE_FLOAT: {
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      float *in  = (float *)pInputData->pData;
      float *out = (float *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = (in[i] >= 0)? in[i] : -in[i];
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      }
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      break;
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    }

    case TSDB_DATA_TYPE_DOUBLE: {
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      double *in  = (double *)pInputData->pData;
      double *out = (double *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = (in[i] >= 0)? in[i] : -in[i];
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      }
      break;
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    }

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    case TSDB_DATA_TYPE_TINYINT: {
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      int8_t *in  = (int8_t *)pInputData->pData;
      int8_t *out = (int8_t *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = (in[i] >= 0)? in[i] : -in[i];
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      }
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      break;
    }
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    case TSDB_DATA_TYPE_SMALLINT: {
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      int16_t *in  = (int16_t *)pInputData->pData;
      int16_t *out = (int16_t *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = (in[i] >= 0)? in[i] : -in[i];
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      }
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      break;
    }
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    case TSDB_DATA_TYPE_INT: {
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      int32_t *in  = (int32_t *)pInputData->pData;
      int32_t *out = (int32_t *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = (in[i] >= 0)? in[i] : -in[i];
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      }
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      break;
    }
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    case TSDB_DATA_TYPE_BIGINT: {
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      int64_t *in  = (int64_t *)pInputData->pData;
      int64_t *out = (int64_t *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = (in[i] >= 0)? in[i] : -in[i];
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      }
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      break;
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    }

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    default: {
      colDataAssign(pOutputData, pInputData, pInput->numOfRows);
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    }
  }
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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
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}

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static int32_t doScalarFunctionUnique(SScalarParam *pInput, int32_t inputNum, SScalarParam* pOutput, _double_fn valFn) {
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  int32_t type = GET_PARAM_TYPE(pInput);
  if (inputNum != 1 || !IS_NUMERIC_TYPE(type)) {
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    return TSDB_CODE_FAILED;
  }
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  SColumnInfoData *pInputData = pInput->columnData;
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  SColumnInfoData *pOutputData = pOutput->columnData;
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  _getDoubleValue_fn_t getValueFn = getVectorDoubleValueFn(type);
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  double *out = (double *)pOutputData->pData;
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
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    }
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    double result = valFn(getValueFn(pInputData->pData, i));
    if (isinf(result) || isnan(result)) {
      colDataAppendNULL(pOutputData, i);
    } else {
      out[i] = result;
    }
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  }
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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
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}

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static int32_t doScalarFunctionUnique2(SScalarParam *pInput, int32_t inputNum, SScalarParam* pOutput, _double_fn_2 valFn) {
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  if (inputNum != 2 || !IS_NUMERIC_TYPE(GET_PARAM_TYPE(&pInput[0])) || !IS_NUMERIC_TYPE(GET_PARAM_TYPE(&pInput[1]))) {
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    return TSDB_CODE_FAILED;
  }

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  SColumnInfoData *pInputData[2];
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  SColumnInfoData *pOutputData = pOutput->columnData;
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  _getDoubleValue_fn_t getValueFn[2];
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  for (int32_t i = 0; i < inputNum; ++i) {
    pInputData[i] = pInput[i].columnData;
    getValueFn[i]= getVectorDoubleValueFn(GET_PARAM_TYPE(&pInput[i]));
  }
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  double *out = (double *)pOutputData->pData;
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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    if (colDataIsNull_s(pInputData[0], i) ||
        colDataIsNull_s(pInputData[1], 0)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
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    }
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    double result = valFn(getValueFn[0](pInputData[0]->pData, i), getValueFn[1](pInputData[1]->pData, 0));
    if (isinf(result) || isnan(result)) {
      colDataAppendNULL(pOutputData, i);
    } else {
      out[i] = result;
    }
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  }
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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
}

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static int32_t doScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam* pOutput, _float_fn f1, _double_fn d1) {
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  int32_t type = GET_PARAM_TYPE(pInput);
  if (inputNum != 1 || !IS_NUMERIC_TYPE(type)) {
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    return TSDB_CODE_FAILED;
  }

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  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;
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  switch (type) {
    case TSDB_DATA_TYPE_FLOAT: {
      float *in  = (float *)pInputData->pData;
      float *out = (float *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = f1(in[i]);
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      }
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      break;
    }
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    case TSDB_DATA_TYPE_DOUBLE: {
      double *in  = (double *)pInputData->pData;
      double *out = (double *)pOutputData->pData;
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      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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        if (colDataIsNull_s(pInputData, i)) {
          colDataAppendNULL(pOutputData, i);
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          continue;
        }
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        out[i] = d1(in[i]);
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      }
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      break;
    }

    default: {
      colDataAssign(pOutputData, pInputData, pInput->numOfRows);
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    }
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  }

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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
}
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/** String functions **/
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static int16_t tlength(char *input, int32_t type) {
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  return varDataLen(input);
}

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static int16_t tcharlength(char *input, int32_t type) {
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  if (type == TSDB_DATA_TYPE_VARCHAR) {
    return varDataLen(input);
  } else { //NCHAR
    return varDataLen(input) / TSDB_NCHAR_SIZE;
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  }
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}
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static void tltrim(char *input, char *output, int32_t type, int32_t charLen) {
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  int32_t numOfSpaces = 0;
  if (type == TSDB_DATA_TYPE_VARCHAR) {
    for (int32_t i = 0; i < charLen; ++i) {
      if (!isspace(*(varDataVal(input) + i))) {
        break;
      }
      numOfSpaces++;
    }
  } else { //NCHAR
    for (int32_t i = 0; i < charLen; ++i) {
      if (!iswspace(*((uint32_t *)varDataVal(input) + i))) {
        break;
      }
      numOfSpaces++;
    }
  }
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  int32_t resLen;
  if (type == TSDB_DATA_TYPE_VARCHAR) {
    resLen = charLen - numOfSpaces;
    memcpy(varDataVal(output), varDataVal(input) + numOfSpaces, resLen);
  } else {
    resLen = (charLen - numOfSpaces) * TSDB_NCHAR_SIZE;
    memcpy(varDataVal(output), varDataVal(input) + numOfSpaces * TSDB_NCHAR_SIZE, resLen);
  }
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  varDataSetLen(output, resLen);
}

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static void trtrim(char *input, char *output, int32_t type, int32_t charLen) {
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  int32_t numOfSpaces = 0;
  if (type == TSDB_DATA_TYPE_VARCHAR) {
    for (int32_t i = charLen - 1; i >= 0; --i) {
      if (!isspace(*(varDataVal(input) + i))) {
        break;
      }
      numOfSpaces++;
    }
  } else { //NCHAR
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    for (int32_t i = charLen - 1; i >= 0; --i) {
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      if (!iswspace(*((uint32_t *)varDataVal(input) + i))) {
        break;
      }
      numOfSpaces++;
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    }
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  }
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  int32_t resLen;
  if (type == TSDB_DATA_TYPE_VARCHAR) {
    resLen = charLen - numOfSpaces;
  } else {
    resLen = (charLen - numOfSpaces) * TSDB_NCHAR_SIZE;
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  }
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  memcpy(varDataVal(output), varDataVal(input), resLen);
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  varDataSetLen(output, resLen);
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}

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static int32_t doLengthFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput, _len_fn lenFn) {
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  int32_t type = GET_PARAM_TYPE(pInput);
  if (inputNum != 1 || !IS_VAR_DATA_TYPE(type)) {
    return TSDB_CODE_FAILED;
  }

  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int16_t *out = (int16_t *)pOutputData->pData;

  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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    if (colDataIsNull_s(pInputData, i)) {
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      colDataAppendNULL(pOutputData, i);
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      continue;
    }

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    char *in = colDataGetData(pInputData, i);
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    out[i] = lenFn(in, type);
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  }

  pOutput->numOfRows = pInput->numOfRows;
  return TSDB_CODE_SUCCESS;
}
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static int32_t concatCopyHelper(const char *input, char *output, bool hasNchar, int32_t type, int16_t *dataLen) {
  if (hasNchar && type == TSDB_DATA_TYPE_VARCHAR) {
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    TdUcs4 *newBuf = taosMemoryCalloc((varDataLen(input) + 1) * TSDB_NCHAR_SIZE, 1);
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    int32_t len = varDataLen(input);
    bool ret = taosMbsToUcs4(varDataVal(input), len, newBuf, (varDataLen(input) + 1) * TSDB_NCHAR_SIZE, &len);
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    if (!ret) {
      taosMemoryFree(newBuf);
      return TSDB_CODE_FAILED;
    }
    memcpy(varDataVal(output) + *dataLen, newBuf, varDataLen(input) * TSDB_NCHAR_SIZE);
    *dataLen += varDataLen(input) * TSDB_NCHAR_SIZE;
    taosMemoryFree(newBuf);
  } else {
    memcpy(varDataVal(output) + *dataLen, varDataVal(input), varDataLen(input));
    *dataLen += varDataLen(input);
  }
  return TSDB_CODE_SUCCESS;
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}
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static int32_t getNumOfNullEntries(SColumnInfoData *pColumnInfoData, int32_t numOfRows) {
  int32_t numOfNulls = 0;
  if (!pColumnInfoData->hasNull) {
    return numOfNulls;
  }
  for (int i = 0; i < numOfRows; ++i) {
    if (pColumnInfoData->varmeta.offset[i] == -1) {
      numOfNulls++;
    }
  }
  return numOfNulls;
}

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int32_t concatFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  int32_t ret = TSDB_CODE_SUCCESS;
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  SColumnInfoData **pInputData = taosMemoryCalloc(inputNum, sizeof(SColumnInfoData *));
  SColumnInfoData *pOutputData = pOutput->columnData;
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  char **input = taosMemoryCalloc(inputNum, POINTER_BYTES);
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  char *outputBuf = NULL;
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  int32_t inputLen = 0;
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  int32_t numOfRows = 0;
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  bool hasNchar = (GET_PARAM_TYPE(pOutput) == TSDB_DATA_TYPE_NCHAR) ? true : false;
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  for (int32_t i = 0; i < inputNum; ++i) {
    if (pInput[i].numOfRows > numOfRows) {
      numOfRows = pInput[i].numOfRows;
    }
  }
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  for (int32_t i = 0; i < inputNum; ++i) {
    pInputData[i] = pInput[i].columnData;
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    int32_t factor = 1;
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    if (hasNchar && (GET_PARAM_TYPE(&pInput[i]) == TSDB_DATA_TYPE_VARCHAR)) {
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      factor = TSDB_NCHAR_SIZE;
    }
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    int32_t numOfNulls = getNumOfNullEntries(pInputData[i], pInput[i].numOfRows);
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    if (pInput[i].numOfRows == 1) {
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      inputLen += (pInputData[i]->varmeta.length - VARSTR_HEADER_SIZE) * factor * (numOfRows - numOfNulls);
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    } else {
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      inputLen += pInputData[i]->varmeta.length - (numOfRows - numOfNulls) * VARSTR_HEADER_SIZE;
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    }
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  }

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  int32_t outputLen = inputLen + numOfRows * VARSTR_HEADER_SIZE;
  outputBuf = taosMemoryCalloc(outputLen, 1);
  char *output = outputBuf;
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  for (int32_t k = 0; k < numOfRows; ++k) {
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    bool hasNull = false;
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    for (int32_t i = 0; i < inputNum; ++i) {
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      if (colDataIsNull_s(pInputData[i], k)) {
        colDataAppendNULL(pOutputData, k);
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        hasNull = true;
        break;
      }
    }

    if (hasNull) {
      continue;
    }

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    int16_t dataLen = 0;
    for (int32_t i = 0; i < inputNum; ++i) {
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      int32_t rowIdx = (pInput[i].numOfRows == 1) ? 0 : k;
      input[i] = colDataGetData(pInputData[i], rowIdx);
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      ret = concatCopyHelper(input[i], output, hasNchar, GET_PARAM_TYPE(&pInput[i]), &dataLen);
      if (ret != TSDB_CODE_SUCCESS) {
        goto DONE;
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      }
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    }
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    varDataSetLen(output, dataLen);
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    colDataAppend(pOutputData, k, output, false);
    output += varDataTLen(output);
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  }

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  pOutput->numOfRows = numOfRows;
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DONE:
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  taosMemoryFree(input);
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  taosMemoryFree(outputBuf);
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  taosMemoryFree(pInputData);

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  return ret;
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}

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int32_t concatWsFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  int32_t ret = TSDB_CODE_SUCCESS;
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  SColumnInfoData **pInputData = taosMemoryCalloc(inputNum, sizeof(SColumnInfoData *));
  SColumnInfoData *pOutputData = pOutput->columnData;
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  char **input = taosMemoryCalloc(inputNum, POINTER_BYTES);
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  char *outputBuf = NULL;
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  int32_t inputLen = 0;
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  int32_t numOfRows = 0;
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  bool hasNchar = (GET_PARAM_TYPE(pOutput) == TSDB_DATA_TYPE_NCHAR) ? true : false;
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  for (int32_t i = 1; i < inputNum; ++i) {
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    if (pInput[i].numOfRows > numOfRows) {
      numOfRows = pInput[i].numOfRows;
    }
  }
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  for (int32_t i = 0; i < inputNum; ++i) {
    pInputData[i] = pInput[i].columnData;
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    int32_t factor = 1;
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    if (hasNchar && (GET_PARAM_TYPE(&pInput[i]) == TSDB_DATA_TYPE_VARCHAR)) {
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      factor = TSDB_NCHAR_SIZE;
    }
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    int32_t numOfNulls = getNumOfNullEntries(pInputData[i], pInput[i].numOfRows);
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    if (i == 0) {
      // calculate required separator space
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      inputLen += (pInputData[0]->varmeta.length - VARSTR_HEADER_SIZE) * (numOfRows - numOfNulls) * (inputNum - 2) * factor;
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    } else if (pInput[i].numOfRows == 1) {
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      inputLen += (pInputData[i]->varmeta.length - VARSTR_HEADER_SIZE) * (numOfRows - numOfNulls) * factor;
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    } else {
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      inputLen += pInputData[i]->varmeta.length - (numOfRows - numOfNulls) * VARSTR_HEADER_SIZE;
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    }
  }

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  int32_t outputLen = inputLen + numOfRows * VARSTR_HEADER_SIZE;
  outputBuf = taosMemoryCalloc(outputLen, 1);
  char *output = outputBuf;
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  for (int32_t k = 0; k < numOfRows; ++k) {
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    if (colDataIsNull_s(pInputData[0], k)) {
      colDataAppendNULL(pOutputData, k);
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      continue;
    }

    int16_t dataLen = 0;
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    bool hasNull = false;
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    for (int32_t i = 1; i < inputNum; ++i) {
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      if (colDataIsNull_s(pInputData[i], k)) {
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        hasNull = true;
        break;
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      }

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      int32_t rowIdx = (pInput[i].numOfRows == 1) ? 0 : k;
      input[i] = colDataGetData(pInputData[i], rowIdx);
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      ret = concatCopyHelper(input[i], output, hasNchar, GET_PARAM_TYPE(&pInput[i]), &dataLen);
      if (ret != TSDB_CODE_SUCCESS) {
        goto DONE;
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      }
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      if (i < inputNum - 1) {
        //insert the separator
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        char *sep = (pInput[0].numOfRows == 1) ? colDataGetData(pInputData[0], 0) : colDataGetData(pInputData[0], k);
         ret = concatCopyHelper(sep, output, hasNchar, GET_PARAM_TYPE(&pInput[0]), &dataLen);
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        if (ret != TSDB_CODE_SUCCESS) {
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          goto DONE;
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        }
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      }
    }
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    if (hasNull) {
      colDataAppendNULL(pOutputData, k);
      memset(output, 0, dataLen);
    } else {
      varDataSetLen(output, dataLen);
      colDataAppend(pOutputData, k, output, false);
      output += varDataTLen(output);
    }
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  }

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  pOutput->numOfRows = numOfRows;
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DONE:
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  taosMemoryFree(input);
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  taosMemoryFree(outputBuf);
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  taosMemoryFree(pInputData);

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  return ret;
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}

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static int32_t doCaseConvFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput, _conv_fn convFn) {
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  int32_t type = GET_PARAM_TYPE(pInput);
  if (inputNum != 1 || !IS_VAR_DATA_TYPE(type)) {
    return TSDB_CODE_FAILED;
  }

  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

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  int32_t outputLen = pInputData->varmeta.length;
  char *outputBuf = taosMemoryCalloc(outputLen, 1);
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  char *output = outputBuf;
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
    }

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    char *input = colDataGetData(pInput[0].columnData, i);
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    int32_t len = varDataLen(input);
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    if (type == TSDB_DATA_TYPE_VARCHAR) {
      for (int32_t j = 0; j < len; ++j) {
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        *(varDataVal(output) + j) = convFn(*(varDataVal(input) + j));
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      }
    } else { //NCHAR
      for (int32_t j = 0; j < len / TSDB_NCHAR_SIZE; ++j) {
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        *((uint32_t *)varDataVal(output) + j) = convFn(*((uint32_t *)varDataVal(input) + j));
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      }
    }
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    varDataSetLen(output, len);
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    colDataAppend(pOutputData, i, output, false);
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    output += varDataTLen(output);
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  }

  pOutput->numOfRows = pInput->numOfRows;
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  taosMemoryFree(outputBuf);
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  return TSDB_CODE_SUCCESS;
}


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static int32_t doTrimFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput, _trim_fn trimFn) {
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  int32_t type = GET_PARAM_TYPE(pInput);
  if (inputNum != 1 || !IS_VAR_DATA_TYPE(type)) {
    return TSDB_CODE_FAILED;
  }

  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

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  int32_t outputLen = pInputData->varmeta.length;
  char *outputBuf = taosMemoryCalloc(outputLen, 1);
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  char *output = outputBuf;
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
    }

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    char *input = colDataGetData(pInput[0].columnData, i);
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    int32_t len = varDataLen(input);
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    int32_t charLen = (type == TSDB_DATA_TYPE_VARCHAR) ? len : len / TSDB_NCHAR_SIZE;
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    trimFn(input, output, type, charLen);

    varDataSetLen(output, len);
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    colDataAppend(pOutputData, i, output, false);
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    output += varDataTLen(output);
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  }

  pOutput->numOfRows = pInput->numOfRows;
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  taosMemoryFree(outputBuf);
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  return TSDB_CODE_SUCCESS;
}

int32_t substrFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t subPos = 0;
  GET_TYPED_DATA(subPos, int32_t, GET_PARAM_TYPE(&pInput[1]), pInput[1].columnData->pData);
  if (subPos == 0) { //subPos needs to be positive or negative values;
    return TSDB_CODE_FAILED;
  }

  int32_t subLen = INT16_MAX;
  if (inputNum == 3) {
    GET_TYPED_DATA(subLen, int32_t, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);
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    if (subLen < 0 || subLen > INT16_MAX) { //subLen cannot be negative
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      return TSDB_CODE_FAILED;
    }
    subLen = (GET_PARAM_TYPE(pInput) == TSDB_DATA_TYPE_VARCHAR) ? subLen : subLen * TSDB_NCHAR_SIZE;
  }

  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

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  int32_t outputLen = pInputData->varmeta.length * pInput->numOfRows;
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  char *outputBuf = taosMemoryCalloc(outputLen, 1);
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  char *output = outputBuf;
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
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    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
    }
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    char *input = colDataGetData(pInput[0].columnData, i);
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    int32_t len = varDataLen(input);
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    int32_t startPosBytes;

    if (subPos > 0) {
      startPosBytes = (GET_PARAM_TYPE(pInput) == TSDB_DATA_TYPE_VARCHAR) ? subPos - 1 : (subPos - 1) * TSDB_NCHAR_SIZE;
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      startPosBytes = TMIN(startPosBytes, len);
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    } else {
      startPosBytes = (GET_PARAM_TYPE(pInput) == TSDB_DATA_TYPE_VARCHAR) ? len + subPos : len + subPos * TSDB_NCHAR_SIZE;
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      startPosBytes = TMAX(startPosBytes, 0);
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    }

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    int32_t resLen = TMIN(subLen, len - startPosBytes);
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    if (resLen > 0) {
      memcpy(varDataVal(output), varDataVal(input) + startPosBytes, resLen);
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    }

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    varDataSetLen(output, resLen);
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    colDataAppend(pOutputData, i , output, false);
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    output += varDataTLen(output);
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  }

  pOutput->numOfRows = pInput->numOfRows;
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  taosMemoryFree(outputBuf);
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  return TSDB_CODE_SUCCESS;
}

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int32_t castFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  int16_t inputType  = GET_PARAM_TYPE(&pInput[0]);
  int16_t outputType = GET_PARAM_TYPE(&pOutput[0]);
  int64_t outputLen  = GET_PARAM_BYTES(&pOutput[0]);
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  char *outputBuf = taosMemoryCalloc(outputLen * pInput[0].numOfRows, 1);
  char *output = outputBuf;

  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }
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    char *input = colDataGetData(pInput[0].columnData, i);
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    switch(outputType) {
      case TSDB_DATA_TYPE_BIGINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
          memcpy(output, varDataVal(input), varDataLen(input));
          *(int64_t *)output = strtoll(output, NULL, 10);
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
          char *newBuf = taosMemoryCalloc(1, outputLen * TSDB_NCHAR_SIZE + 1);
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), newBuf);
          if (len < 0) {
            taosMemoryFree(newBuf);
            return TSDB_CODE_FAILED;
          }
          newBuf[len] = 0;
          *(int64_t *)output = strtoll(newBuf, NULL, 10);
          taosMemoryFree(newBuf);
        } else {
          GET_TYPED_DATA(*(int64_t *)output, int64_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_UBIGINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
          memcpy(output, varDataVal(input), varDataLen(input));
          *(uint64_t *)output = strtoull(output, NULL, 10);
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
          char *newBuf = taosMemoryCalloc(1, outputLen * TSDB_NCHAR_SIZE + 1);
          int32_t len = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), newBuf);
          if (len < 0) {
            taosMemoryFree(newBuf);
            return TSDB_CODE_FAILED;
          }
          newBuf[len] = 0;
          *(uint64_t *)output = strtoull(newBuf, NULL, 10);
          taosMemoryFree(newBuf);
        } else {
          GET_TYPED_DATA(*(uint64_t *)output, uint64_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_TIMESTAMP: {
        if (inputType == TSDB_DATA_TYPE_BINARY || inputType == TSDB_DATA_TYPE_NCHAR) {
          //not support
          return TSDB_CODE_FAILED;
        } else {
          GET_TYPED_DATA(*(int64_t *)output, int64_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_BINARY: {
        if (inputType == TSDB_DATA_TYPE_BOOL) {
          int32_t len = sprintf(varDataVal(output), "%.*s", (int32_t)(outputLen - VARSTR_HEADER_SIZE), *(int8_t *)input ? "true" : "false");
          varDataSetLen(output, len);
        } else if (inputType == TSDB_DATA_TYPE_BINARY) {
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          int32_t len = TMIN(varDataLen(input), outputLen - VARSTR_HEADER_SIZE);
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          len = sprintf(varDataVal(output), "%.*s", len, varDataVal(input));
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          varDataSetLen(output, len);
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        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
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          //not support
          return TSDB_CODE_FAILED;
        } else {
          char tmp[400] = {0};
          NUM_TO_STRING(inputType, input, sizeof(tmp), tmp);
          int32_t len = (int32_t)strlen(tmp);
          len = (outputLen - VARSTR_HEADER_SIZE) > len ? len : (outputLen - VARSTR_HEADER_SIZE);
          memcpy(varDataVal(output), tmp, len);
          varDataSetLen(output, len);
        }
        break;
      }
      case TSDB_DATA_TYPE_NCHAR: {
        int32_t outputCharLen = (outputLen - VARSTR_HEADER_SIZE) / TSDB_NCHAR_SIZE;
        if (inputType == TSDB_DATA_TYPE_BOOL) {
          char tmp[8] = {0};
          int32_t len = sprintf(tmp, "%.*s", outputCharLen, *(int8_t *)input ? "true" : "false" );
          bool ret = taosMbsToUcs4(tmp, len, (TdUcs4 *)varDataVal(output), outputLen - VARSTR_HEADER_SIZE, &len);
          if (!ret) {
            return TSDB_CODE_FAILED;
          }
          varDataSetLen(output, len);
        } else if (inputType == TSDB_DATA_TYPE_BINARY) {
          int32_t len = outputCharLen > varDataLen(input) ? varDataLen(input) : outputCharLen;
          bool ret = taosMbsToUcs4(input + VARSTR_HEADER_SIZE, len, (TdUcs4 *)varDataVal(output), outputLen - VARSTR_HEADER_SIZE, &len);
          if (!ret) {
            return TSDB_CODE_FAILED;
          }
          varDataSetLen(output, len);
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
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          int32_t len = TMIN(outputLen, varDataLen(input) + VARSTR_HEADER_SIZE);
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          memcpy(output, input, len);
          varDataSetLen(output, len - VARSTR_HEADER_SIZE);
        } else {
          char tmp[400] = {0};
          NUM_TO_STRING(inputType, input, sizeof(tmp), tmp);
          int32_t len = (int32_t)strlen(tmp);
          len = outputCharLen > len ? len : outputCharLen;
          bool ret = taosMbsToUcs4(tmp, len, (TdUcs4 *)varDataVal(output), outputLen - VARSTR_HEADER_SIZE, &len);
          if (!ret) {
            return TSDB_CODE_FAILED;
          }
          varDataSetLen(output, len);
        }
        break;
      }
      default: {
        return TSDB_CODE_FAILED;
      }
    }

    colDataAppend(pOutput->columnData, i, output, false);
    if (IS_VAR_DATA_TYPE(outputType)) {
      output += varDataTLen(output);
    } else {
      output += tDataTypes[outputType].bytes;
    }
  }

  pOutput->numOfRows = pInput->numOfRows;
  taosMemoryFree(outputBuf);
  return TSDB_CODE_SUCCESS;
}
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int32_t toISO8601Function(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t type = GET_PARAM_TYPE(pInput);

  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }

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    char *input = colDataGetData(pInput[0].columnData, i);
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    char fraction[20] = {0};
    bool hasFraction = false;
    NUM_TO_STRING(type, input, sizeof(fraction), fraction);
    int32_t tsDigits = (int32_t)strlen(fraction);

    char buf[64] = {0};
    int64_t timeVal;
    GET_TYPED_DATA(timeVal, int64_t, type, input);
    if (tsDigits > TSDB_TIME_PRECISION_SEC_DIGITS) {
      if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
        timeVal = timeVal / 1000;
      } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
        timeVal = timeVal / (1000 * 1000);
      } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
        timeVal = timeVal / (1000 * 1000 * 1000);
      } else {
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        colDataAppendNULL(pOutput->columnData, i);
        continue;
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      }
      hasFraction = true;
      memmove(fraction, fraction + TSDB_TIME_PRECISION_SEC_DIGITS, TSDB_TIME_PRECISION_SEC_DIGITS);
    }

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    struct tm *tmInfo = taosLocalTime((const time_t *)&timeVal, NULL);
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    strftime(buf, sizeof(buf), "%Y-%m-%dT%H:%M:%S%z", tmInfo);
    int32_t len = (int32_t)strlen(buf);

    if (hasFraction) {
      int32_t fracLen = (int32_t)strlen(fraction) + 1;
      char *tzInfo = strchr(buf, '+');
      if (tzInfo) {
        memmove(tzInfo + fracLen, tzInfo, strlen(tzInfo));
      } else {
        tzInfo = strchr(buf, '-');
        memmove(tzInfo + fracLen, tzInfo, strlen(tzInfo));
      }

      char tmp[32];
      sprintf(tmp, ".%s", fraction);
      memcpy(tzInfo, tmp, fracLen);
      len += fracLen;
    }

    memmove(buf + VARSTR_HEADER_SIZE, buf, len);
    varDataSetLen(buf, len);

    colDataAppend(pOutput->columnData, i, buf, false);
  }

  pOutput->numOfRows = pInput->numOfRows;

  return TSDB_CODE_SUCCESS;
}

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int32_t toUnixtimestampFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t type = GET_PARAM_TYPE(pInput);
  int32_t timePrec = GET_PARAM_PRECISON(pInput);

  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }
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    char *input = colDataGetData(pInput[0].columnData, i);
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    int64_t timeVal = 0;
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    int32_t ret = convertStringToTimestamp(type, input, timePrec, &timeVal);
    if (ret != TSDB_CODE_SUCCESS) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }
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    colDataAppend(pOutput->columnData, i, (char *)&timeVal, false);
  }

  pOutput->numOfRows = pInput->numOfRows;

  return TSDB_CODE_SUCCESS;
}

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int32_t toJsonFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t type = GET_PARAM_TYPE(pInput);
  if (type != TSDB_DATA_TYPE_BINARY && type != TSDB_DATA_TYPE_NCHAR) {
    return TSDB_CODE_FAILED;
  }

  if (inputNum != 1) {
    return TSDB_CODE_FAILED;
  }

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  char tmp[TSDB_MAX_JSON_TAG_LEN] = {0};
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  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }
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    char *input = pInput[0].columnData->pData + pInput[0].columnData->varmeta.offset[i];
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    if(type == TSDB_DATA_TYPE_NCHAR){
      if (varDataTLen(input) > TSDB_MAX_JSON_TAG_LEN){
        colDataAppendNULL(pOutput->columnData, i);
        continue;
      }
      int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), tmp);
      if (len < 0) {
        colDataAppendNULL(pOutput->columnData, i);
        continue;
      }
      tmp[len] = 0;
    }else{
      if (varDataLen(input) > (TSDB_MAX_JSON_TAG_LEN - VARSTR_HEADER_SIZE) / TSDB_NCHAR_SIZE){
        colDataAppendNULL(pOutput->columnData, i);
        continue;
      }
      memcpy(tmp, varDataVal(input), varDataLen(input));
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      tmp[varDataLen(input)] = 0;
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    }

    if(!tjsonValidateJson(tmp)){
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }

    colDataAppend(pOutput->columnData, i, input, false);
  }

  pOutput->numOfRows = pInput->numOfRows;

  return TSDB_CODE_SUCCESS;
}

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int32_t timeTruncateFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t type = GET_PARAM_TYPE(&pInput[0]);
  int32_t timePrec = GET_PARAM_PRECISON(&pInput[0]);

  int64_t timeUnit, timeVal = 0;
  GET_TYPED_DATA(timeUnit, int64_t, GET_PARAM_TYPE(&pInput[1]), pInput[1].columnData->pData);

  int64_t factor = (timePrec == TSDB_TIME_PRECISION_MILLI) ? 1000 :
                   (timePrec == TSDB_TIME_PRECISION_MICRO ? 1000000 : 1000000000);

  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }

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    char *input = colDataGetData(pInput[0].columnData, i);

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    if (IS_VAR_DATA_TYPE(type)) { /* datetime format strings */
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      int32_t ret = convertStringToTimestamp(type, input, TSDB_TIME_PRECISION_NANO, &timeVal);
      if (ret != TSDB_CODE_SUCCESS) {
        colDataAppendNULL(pOutput->columnData, i);
        continue;
      }
957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999
      //If converted value is less than 10digits in second, use value in second instead
      int64_t timeValSec = timeVal / 1000000000;
      if (timeValSec < 1000000000) {
        timeVal = timeValSec;
      }
    } else if (type == TSDB_DATA_TYPE_BIGINT) { /* unix timestamp */
      GET_TYPED_DATA(timeVal, int64_t, type, input);
    } else if (type == TSDB_DATA_TYPE_TIMESTAMP) { /* timestamp column*/
      GET_TYPED_DATA(timeVal, int64_t, type, input);
      int64_t timeValSec = timeVal / factor;
      if (timeValSec < 1000000000) {
        timeVal = timeValSec;
      }
    }

    char buf[20] = {0};
    NUM_TO_STRING(TSDB_DATA_TYPE_BIGINT, &timeVal, sizeof(buf), buf);
    int32_t tsDigits = (int32_t)strlen(buf);
    timeUnit = timeUnit * 1000 / factor;

    switch (timeUnit) {
      case 0: { /* 1u */
        if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000 * 1000;
        //} else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
        //  //timeVal = timeVal / 1000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal = timeVal * factor;
        } else {
          timeVal = timeVal * 1;
        }
        break;
      }
      case 1: { /* 1a */
        if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal * 1;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000 * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000 * 1000000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS){
          timeVal = timeVal * factor;
        } else {
1000 1001
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014
        }
        break;
      }
      case 1000: { /* 1s */
        if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal / 1000 * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000000 * 1000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000000 * 1000000000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal = timeVal * factor;
        } else {
1015 1016
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
        }
        break;
      }
      case 60000: { /* 1m */
        if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal / 1000 / 60 * 60 * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000000 / 60 * 60 * 1000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000000 / 60 * 60 * 1000000000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal = timeVal * factor / factor / 60 * 60 * factor;
        } else {
1030 1031
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044
        }
        break;
      }
      case 3600000: { /* 1h */
        if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal / 1000 / 3600 * 3600 * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000000 / 3600 * 3600 * 1000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000000 / 3600 * 3600 * 1000000000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal = timeVal * factor / factor / 3600 * 3600 * factor;
        } else {
1045 1046
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
        }
        break;
      }
      case 86400000: { /* 1d */
        if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal / 1000 / 86400 * 86400 * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000000 / 86400 * 86400 * 1000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000000 / 86400 * 86400 * 1000000000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal = timeVal * factor / factor / 86400* 86400 * factor;
        } else {
1060 1061
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074
        }
        break;
      }
      case 604800000: { /* 1w */
        if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal / 1000 / 604800 * 604800 * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000000 / 604800 * 604800 * 1000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000000 / 604800 * 604800 * 1000000000;
        } else if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal = timeVal * factor / factor / 604800 * 604800* factor;
        } else {
1075 1076
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121
        }
        break;
      }
      default: {
        timeVal = timeVal * 1;
        break;
      }
    }

    //truncate the timestamp to db precision
    switch (timePrec) {
      case TSDB_TIME_PRECISION_MILLI: {
        if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal / 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000000;
        }
        break;
      }
      case TSDB_TIME_PRECISION_MICRO: {
        if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal = timeVal / 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal * 1000;
        }
        break;
      }
      case TSDB_TIME_PRECISION_NANO: {
        if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal = timeVal * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal = timeVal * 1000000;
        }
        break;
      }
    }

    colDataAppend(pOutput->columnData, i, (char *)&timeVal, false);
  }

  pOutput->numOfRows = pInput->numOfRows;

  return TSDB_CODE_SUCCESS;
}

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int32_t timeDiffFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t timePrec = GET_PARAM_PRECISON(&pInput[0]);
  int64_t timeUnit = -1, timeVal[2] = {0};
  if (inputNum == 3) {
    GET_TYPED_DATA(timeUnit, int64_t, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);
  }

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  int32_t numOfRows = 0;
  for (int32_t i = 0; i < inputNum; ++i) {
    if (pInput[i].numOfRows > numOfRows) {
      numOfRows = pInput[i].numOfRows;
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    }
  }

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  char *input[2];
  for (int32_t i = 0; i < numOfRows; ++i) {
    bool hasNull = false;
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    for (int32_t k = 0; k < 2; ++k) {
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      if (colDataIsNull_s(pInput[k].columnData, i)) {
        hasNull = true;
        break;
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      }

1145 1146 1147
      int32_t rowIdx = (pInput[k].numOfRows == 1) ? 0 : i;
      input[k] = colDataGetData(pInput[k].columnData, rowIdx);

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      int32_t type = GET_PARAM_TYPE(&pInput[k]);
      if (IS_VAR_DATA_TYPE(type)) { /* datetime format strings */
1150 1151 1152 1153 1154
        int32_t ret = convertStringToTimestamp(type, input[k], TSDB_TIME_PRECISION_NANO, &timeVal[k]);
        if (ret != TSDB_CODE_SUCCESS) {
          colDataAppendNULL(pOutput->columnData, i);
          continue;
        }
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      } else if (type == TSDB_DATA_TYPE_BIGINT || type == TSDB_DATA_TYPE_TIMESTAMP) { /* unix timestamp or ts column*/
        GET_TYPED_DATA(timeVal[k], int64_t, type, input[k]);
        if (type == TSDB_DATA_TYPE_TIMESTAMP) {
          int64_t factor = (timePrec == TSDB_TIME_PRECISION_MILLI) ? 1000 :
                           (timePrec == TSDB_TIME_PRECISION_MICRO ? 1000000 : 1000000000);
          int64_t timeValSec = timeVal[k] / factor;
          if (timeValSec < 1000000000) {
            timeVal[k] = timeValSec;
          }
        }

        char buf[20] = {0};
        NUM_TO_STRING(TSDB_DATA_TYPE_BIGINT, &timeVal[k], sizeof(buf), buf);
        int32_t tsDigits = (int32_t)strlen(buf);
        if (tsDigits <= TSDB_TIME_PRECISION_SEC_DIGITS) {
          timeVal[k] = timeVal[k] * 1000000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MILLI_DIGITS) {
          timeVal[k] = timeVal[k] * 1000000;
        } else if (tsDigits == TSDB_TIME_PRECISION_MICRO_DIGITS) {
          timeVal[k] = timeVal[k] * 1000;
        } else if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
          timeVal[k] = timeVal[k];
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        } else {
1178 1179
          colDataAppendNULL(pOutput->columnData, i);
          continue;
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        }
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      }
    }

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    if (hasNull) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }

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    int64_t result = (timeVal[0] >= timeVal[1]) ? (timeVal[0] - timeVal[1]) :
                                                  (timeVal[1] - timeVal[0]);

    if (timeUnit < 0) { // if no time unit given use db precision
      switch(timePrec) {
        case TSDB_TIME_PRECISION_MILLI: {
          result = result / 1000000;
          break;
        }
        case TSDB_TIME_PRECISION_MICRO: {
          result = result / 1000;
          break;
        }
        case TSDB_TIME_PRECISION_NANO: {
          result = result / 1;
          break;
        }
      }
    } else {
      int64_t factor = (timePrec == TSDB_TIME_PRECISION_MILLI) ? 1000 :
                       (timePrec == TSDB_TIME_PRECISION_MICRO ? 1000000 : 1000000000);
      timeUnit = timeUnit * 1000 / factor;
      switch(timeUnit) {
        case 0: { /* 1u */
          result = result / 1000;
          break;
        }
        case 1: { /* 1a */
          result = result / 1000000;
          break;
        }
        case 1000: { /* 1s */
          result = result / 1000000000;
          break;
        }
        case 60000: { /* 1m */
          result = result / 1000000000 / 60;
          break;
        }
        case 3600000: { /* 1h */
          result = result / 1000000000 / 3600;
          break;
        }
        case 86400000: { /* 1d */
          result = result / 1000000000 / 86400;
          break;
        }
        case 604800000: { /* 1w */
          result = result / 1000000000 / 604800;
          break;
        }
        default: {
          break;
        }
      }
    }

    colDataAppend(pOutput->columnData, i, (char *)&result, false);
  }

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  pOutput->numOfRows = numOfRows;
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  return TSDB_CODE_SUCCESS;
}

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int32_t nowFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  int64_t ts = taosGetTimestamp(TSDB_TIME_PRECISION_MILLI);
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    colDataAppendInt64(pOutput->columnData, i, &ts);
1258
  }
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  pOutput->numOfRows = pInput->numOfRows;
1260 1261 1262 1263
  return TSDB_CODE_SUCCESS;
}

int32_t todayFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  int64_t ts = taosGetTimestampToday(TSDB_TIME_PRECISION_MILLI);
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    colDataAppendInt64(pOutput->columnData, i, &ts);
1267
  }
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  pOutput->numOfRows = pInput->numOfRows;
1269 1270 1271
  return TSDB_CODE_SUCCESS;
}

1272
int32_t timezoneFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
1273 1274 1275
  char output[TD_TIMEZONE_LEN + VARSTR_HEADER_SIZE] = {0};
  memcpy(varDataVal(output), tsTimezoneStr, TD_TIMEZONE_LEN);
  varDataSetLen(output, strlen(tsTimezoneStr));
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
1277
    colDataAppend(pOutput->columnData, i, output, false);
1278
  }
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  pOutput->numOfRows = pInput->numOfRows;
1280 1281 1282
  return TSDB_CODE_SUCCESS;
}

1283 1284 1285
int32_t atanFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, atan);
}
1286

1287 1288 1289
int32_t sinFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, sin);
}
1290

1291 1292 1293
int32_t cosFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, cos);
}
1294

1295 1296 1297
int32_t tanFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, tan);
}
1298

1299 1300 1301
int32_t asinFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, asin);
}
1302

1303 1304 1305
int32_t acosFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, acos);
}
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int32_t powFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique2(pInput, inputNum, pOutput, pow);
}

int32_t logFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique2(pInput, inputNum, pOutput, tlog);
}

1315 1316 1317
int32_t sqrtFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, sqrt);
}
1318

1319 1320 1321 1322 1323 1324 1325 1326 1327 1328
int32_t ceilFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunction(pInput, inputNum, pOutput, ceilf, ceil);
}

int32_t floorFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunction(pInput, inputNum, pOutput, floorf, floor);
}

int32_t roundFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunction(pInput, inputNum, pOutput, roundf, round);
1329 1330
}

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int32_t lowerFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doCaseConvFunction(pInput, inputNum, pOutput, tolower);
1333 1334
}

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int32_t upperFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doCaseConvFunction(pInput, inputNum, pOutput, toupper);
1337 1338
}

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int32_t ltrimFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doTrimFunction(pInput, inputNum, pOutput, tltrim);
1341 1342
}

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int32_t rtrimFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doTrimFunction(pInput, inputNum, pOutput, trtrim);
1345 1346
}

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int32_t lengthFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doLengthFunction(pInput, inputNum, pOutput, tlength);
}
1350

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int32_t charLengthFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doLengthFunction(pInput, inputNum, pOutput, tcharlength);
1353 1354
}

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#if 0
1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419
static void reverseCopy(char* dest, const char* src, int16_t type, int32_t numOfRows) {
  switch(type) {
    case TSDB_DATA_TYPE_TINYINT:
    case TSDB_DATA_TYPE_UTINYINT:{
      int8_t* p = (int8_t*) dest;
      int8_t* pSrc = (int8_t*) src;

      for(int32_t i = 0; i < numOfRows; ++i) {
        p[i] = pSrc[numOfRows - i - 1];
      }
      return;
    }

    case TSDB_DATA_TYPE_SMALLINT:
    case TSDB_DATA_TYPE_USMALLINT:{
      int16_t* p = (int16_t*) dest;
      int16_t* pSrc = (int16_t*) src;

      for(int32_t i = 0; i < numOfRows; ++i) {
        p[i] = pSrc[numOfRows - i - 1];
      }
      return;
    }
    case TSDB_DATA_TYPE_INT:
    case TSDB_DATA_TYPE_UINT: {
      int32_t* p = (int32_t*) dest;
      int32_t* pSrc = (int32_t*) src;

      for(int32_t i = 0; i < numOfRows; ++i) {
        p[i] = pSrc[numOfRows - i - 1];
      }
      return;
    }
    case TSDB_DATA_TYPE_BIGINT:
    case TSDB_DATA_TYPE_UBIGINT: {
      int64_t* p = (int64_t*) dest;
      int64_t* pSrc = (int64_t*) src;

      for(int32_t i = 0; i < numOfRows; ++i) {
        p[i] = pSrc[numOfRows - i - 1];
      }
      return;
    }
    case TSDB_DATA_TYPE_FLOAT: {
      float* p = (float*) dest;
      float* pSrc = (float*) src;

      for(int32_t i = 0; i < numOfRows; ++i) {
        p[i] = pSrc[numOfRows - i - 1];
      }
      return;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      double* p = (double*) dest;
      double* pSrc = (double*) src;

      for(int32_t i = 0; i < numOfRows; ++i) {
        p[i] = pSrc[numOfRows - i - 1];
      }
      return;
    }
    default: assert(0);
  }
}
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#endif
1421

1422 1423 1424 1425 1426 1427 1428 1429
bool getTimePseudoFuncEnv(SFunctionNode* UNUSED_PARAM(pFunc), SFuncExecEnv* pEnv) {
  pEnv->calcMemSize = sizeof(int64_t);
  return true;
}

int32_t qStartTsFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
  colDataAppendInt64(pOutput->columnData, pOutput->numOfRows, (int64_t *)colDataGetData(pInput->columnData, 0));
1430
  return TSDB_CODE_SUCCESS;
1431 1432 1433 1434 1435
}

int32_t qEndTsFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
  colDataAppendInt64(pOutput->columnData, pOutput->numOfRows, (int64_t *)colDataGetData(pInput->columnData, 1));
1436
  return TSDB_CODE_SUCCESS;
1437 1438 1439 1440 1441
}

int32_t winDurFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
  colDataAppendInt64(pOutput->columnData, pOutput->numOfRows, (int64_t *)colDataGetData(pInput->columnData, 2));
1442
  return TSDB_CODE_SUCCESS;
1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454
}

int32_t winStartTsFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
  colDataAppendInt64(pOutput->columnData, pOutput->numOfRows, (int64_t*) colDataGetData(pInput->columnData, 3));
  return TSDB_CODE_SUCCESS;
}

int32_t winEndTsFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
  colDataAppendInt64(pOutput->columnData, pOutput->numOfRows, (int64_t*) colDataGetData(pInput->columnData, 4));
  return TSDB_CODE_SUCCESS;
1455
}