sclfunc.c 88.5 KB
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#include "function.h"
#include "scalar.h"
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#include "sclInt.h"
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#include "sclvector.h"
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#include "tdatablock.h"
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#include "tjson.h"
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#include "ttime.h"
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#include "cJSON.h"
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#include "vnode.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) {
  return log(v);
}

static double tlog2(double v, double base) {
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  double a = log(v);
  double b = log(base);
  if (isnan(a) || isinf(a)) {
    return a;
  } else if (isnan(b) || isinf(b)) {
    return b;
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  } else {
    return a / b;
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  }
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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);
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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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    case TSDB_DATA_TYPE_NULL: {
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        colDataAppendNULL(pOutputData, i);
      }
      break;
    }

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    default: {
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      colDataAssign(pOutputData, pInputData, pInput->numOfRows, NULL);
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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);
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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) || IS_NULL_TYPE(type)) {
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      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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  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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  double result;
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  bool hasNullType = (IS_NULL_TYPE(GET_PARAM_TYPE(&pInput[0])) ||
                      IS_NULL_TYPE(GET_PARAM_TYPE(&pInput[1])));

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  int32_t numOfRows = TMAX(pInput[0].numOfRows, pInput[1].numOfRows);
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  if (pInput[0].numOfRows == pInput[1].numOfRows) {
    for (int32_t i = 0; i < numOfRows; ++i) {
      if (colDataIsNull_s(pInputData[0], i) ||
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          colDataIsNull_s(pInputData[1], i) ||
          hasNullType) {
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        colDataAppendNULL(pOutputData, i);
        continue;
      }
      result = valFn(getValueFn[0](pInputData[0]->pData, i), getValueFn[1](pInputData[1]->pData, i));
      if (isinf(result) || isnan(result)) {
        colDataAppendNULL(pOutputData, i);
      } else {
        out[i] = result;
      }
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    }
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  } else if (pInput[0].numOfRows == 1) { //left operand is constant
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    if (colDataIsNull_s(pInputData[0], 0) || hasNullType) {
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      colDataAppendNNULL(pOutputData, 0, pInput[1].numOfRows);
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    } else {
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      for (int32_t i = 0; i < numOfRows; ++i) {
        if (colDataIsNull_s(pInputData[1], i)) {
          colDataAppendNULL(pOutputData, i);
          continue;
        }
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        result = valFn(getValueFn[0](pInputData[0]->pData, 0), getValueFn[1](pInputData[1]->pData, i));
        if (isinf(result) || isnan(result)) {
          colDataAppendNULL(pOutputData, i);
          continue;
        }

        out[i] = result;
      }
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    }
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  } else if (pInput[1].numOfRows == 1) {
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    if (colDataIsNull_s(pInputData[1], 0) || hasNullType) {
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      colDataAppendNNULL(pOutputData, 0, pInput[0].numOfRows);
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    } else {
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      for (int32_t i = 0; i < numOfRows; ++i) {
        if (colDataIsNull_s(pInputData[0], i)) {
          colDataAppendNULL(pOutputData, i);
          continue;
        }

        result = valFn(getValueFn[0](pInputData[0]->pData, i), getValueFn[1](pInputData[1]->pData, 0));
        if (isinf(result) || isnan(result)) {
          colDataAppendNULL(pOutputData, i);
          continue;
        }

        out[i] = result;
      }
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    }
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  }
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  pOutput->numOfRows = 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);
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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;
    }

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    case TSDB_DATA_TYPE_NULL: {
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        colDataAppendNULL(pOutputData, i);
      }
      break;
    }

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

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

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  ASSERT(pOutputData->info.type == TSDB_DATA_TYPE_BIGINT);
  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)) {
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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) * factor;
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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) ||
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          IS_NULL_TYPE(GET_PARAM_TYPE(&pInput[i]))) {
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        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);

489
  return ret;
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}

492

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493
int32_t concatWsFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
494
  int32_t ret = TSDB_CODE_SUCCESS;
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  SColumnInfoData **pInputData = taosMemoryCalloc(inputNum, sizeof(SColumnInfoData *));
  SColumnInfoData *pOutputData = pOutput->columnData;
497
  char **input = taosMemoryCalloc(inputNum, POINTER_BYTES);
498
  char *outputBuf = NULL;
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500
  int32_t inputLen = 0;
501
  int32_t numOfRows = 0;
502
  bool hasNchar = (GET_PARAM_TYPE(pOutput) == TSDB_DATA_TYPE_NCHAR) ? true : false;
503
  for (int32_t i = 1; i < inputNum; ++i) {
504 505 506 507
    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;
510
    int32_t factor = 1;
511
    if (hasNchar && (GET_PARAM_TYPE(&pInput[i]) == TSDB_DATA_TYPE_VARCHAR)) {
512 513
      factor = TSDB_NCHAR_SIZE;
    }
514 515

    int32_t numOfNulls = getNumOfNullEntries(pInputData[i], pInput[i].numOfRows);
516 517
    if (i == 0) {
      // calculate required separator space
518
      inputLen += (pInputData[0]->varmeta.length - VARSTR_HEADER_SIZE) * (numOfRows - numOfNulls) * (inputNum - 2) * factor;
519
    } else if (pInput[i].numOfRows == 1) {
520
      inputLen += (pInputData[i]->varmeta.length - VARSTR_HEADER_SIZE) * (numOfRows - numOfNulls) * factor;
521
    } else {
522
      inputLen += (pInputData[i]->varmeta.length - (numOfRows - numOfNulls) * VARSTR_HEADER_SIZE) * factor;
523 524 525
    }
  }

526 527 528
  int32_t outputLen = inputLen + numOfRows * VARSTR_HEADER_SIZE;
  outputBuf = taosMemoryCalloc(outputLen, 1);
  char *output = outputBuf;
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530
  for (int32_t k = 0; k < numOfRows; ++k) {
531
    if (colDataIsNull_s(pInputData[0], k) ||
532
        IS_NULL_TYPE(GET_PARAM_TYPE(&pInput[0]))) {
533
      colDataAppendNULL(pOutputData, k);
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      continue;
    }

    int16_t dataLen = 0;
538
    bool hasNull = false;
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    for (int32_t i = 1; i < inputNum; ++i) {
540
      if (colDataIsNull_s(pInputData[i], k) ||
541
          IS_NULL_TYPE(GET_PARAM_TYPE(&pInput[i]))) {
542 543
        hasNull = true;
        break;
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      }

546 547
      int32_t rowIdx = (pInput[i].numOfRows == 1) ? 0 : k;
      input[i] = colDataGetData(pInputData[i], rowIdx);
548

549 550 551
      ret = concatCopyHelper(input[i], output, hasNchar, GET_PARAM_TYPE(&pInput[i]), &dataLen);
      if (ret != TSDB_CODE_SUCCESS) {
        goto DONE;
552
      }
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554

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      if (i < inputNum - 1) {
        //insert the separator
557 558
        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);
559
        if (ret != TSDB_CODE_SUCCESS) {
560
          goto DONE;
561
        }
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      }
    }
564 565 566 567 568 569 570 571 572

    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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  }

575
  pOutput->numOfRows = numOfRows;
576 577

DONE:
578
  taosMemoryFree(input);
579
  taosMemoryFree(outputBuf);
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  taosMemoryFree(pInputData);

582
  return ret;
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}

585
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);

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

591 592
  int32_t outputLen = pInputData->varmeta.length;
  char *outputBuf = taosMemoryCalloc(outputLen, 1);
593
  char *output = outputBuf;
594

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595
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
596 597
    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
    }

601
    char *input = colDataGetData(pInput[0].columnData, i);
602
    int32_t len = varDataLen(input);
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    if (type == TSDB_DATA_TYPE_VARCHAR) {
      for (int32_t j = 0; j < len; ++j) {
605
        *(varDataVal(output) + j) = convFn(*(varDataVal(input) + j));
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      }
    } else { //NCHAR
      for (int32_t j = 0; j < len / TSDB_NCHAR_SIZE; ++j) {
609
        *((uint32_t *)varDataVal(output) + j) = convFn(*((uint32_t *)varDataVal(input) + j));
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      }
    }
612
    varDataSetLen(output, len);
613
    colDataAppend(pOutputData, i, output, false);
614
    output += varDataTLen(output);
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  }

  pOutput->numOfRows = pInput->numOfRows;
618
  taosMemoryFree(outputBuf);
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  return TSDB_CODE_SUCCESS;
}


624
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);

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

630 631
  int32_t outputLen = pInputData->varmeta.length;
  char *outputBuf = taosMemoryCalloc(outputLen, 1);
632
  char *output = outputBuf;
633

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634
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
635 636
    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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      continue;
    }

640
    char *input = colDataGetData(pInputData, i);
641
    int32_t len = varDataLen(input);
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642
    int32_t charLen = (type == TSDB_DATA_TYPE_VARCHAR) ? len : len / TSDB_NCHAR_SIZE;
643 644
    trimFn(input, output, type, charLen);

645
    colDataAppend(pOutputData, i, output, false);
646
    output += varDataTLen(output);
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  }

  pOutput->numOfRows = pInput->numOfRows;
650
  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);

  int32_t subLen = INT16_MAX;
  if (inputNum == 3) {
    GET_TYPED_DATA(subLen, int32_t, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);
    subLen = (GET_PARAM_TYPE(pInput) == TSDB_DATA_TYPE_VARCHAR) ? subLen : subLen * TSDB_NCHAR_SIZE;
  }

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

668
  int32_t outputLen = pInputData->varmeta.length * pInput->numOfRows;
669
  char *outputBuf = taosMemoryCalloc(outputLen, 1);
670
  char *output = outputBuf;
671 672

  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
673 674
    if (colDataIsNull_s(pInputData, i)) {
      colDataAppendNULL(pOutputData, i);
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Ganlin Zhao 已提交
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      continue;
    }
677
    char *input = colDataGetData(pInput[0].columnData, i);
678
    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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wafwerar 已提交
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      startPosBytes = TMIN(startPosBytes, len);
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Ganlin Zhao 已提交
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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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686
      startPosBytes = TMAX(startPosBytes, 0);
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    }

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689
    int32_t resLen = TMIN(subLen, len - startPosBytes);
690 691
    if (resLen > 0) {
      memcpy(varDataVal(output), varDataVal(input) + startPosBytes, resLen);
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    }

694
    varDataSetLen(output, resLen);
695
    colDataAppend(pOutputData, i , output, false);
696
    output += varDataTLen(output);
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  }

  pOutput->numOfRows = pInput->numOfRows;
700
  taosMemoryFree(outputBuf);
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  return TSDB_CODE_SUCCESS;
}

705
/** Conversion functions **/
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706
int32_t castFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
707
  int16_t inputType  = GET_PARAM_TYPE(&pInput[0]);
708
  int16_t inputLen   = GET_PARAM_BYTES(&pInput[0]);
709 710
  int16_t outputType = GET_PARAM_TYPE(&pOutput[0]);
  int64_t outputLen  = GET_PARAM_BYTES(&pOutput[0]);
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Ganlin Zhao 已提交
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712 713
  int32_t code = TSDB_CODE_SUCCESS;
  char *  convBuf = taosMemoryMalloc(inputLen);
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Haojun Liao 已提交
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  char *  output = taosMemoryCalloc(1, outputLen + TSDB_NCHAR_SIZE);
715 716 717 718 719 720
  char    buf[400] = {0};

  if (convBuf == NULL || output == NULL) {
    code = TSDB_CODE_OUT_OF_MEMORY;
    goto _end;
  }
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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;
    }
727

728
    char *input = colDataGetData(pInput[0].columnData, i);
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Ganlin Zhao 已提交
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    switch(outputType) {
731 732
      case TSDB_DATA_TYPE_TINYINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
733 734 735
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(int8_t *)output = taosStr2Int8(buf, NULL, 10);
736
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
737
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
738
          if (len < 0) {
739 740
            code = TSDB_CODE_FAILED;
            goto _end;
741
          }
742 743 744

          convBuf[len] = 0;
          *(int8_t *)output = taosStr2Int8(convBuf, NULL, 10);
745 746 747 748 749 750 751
        } else {
          GET_TYPED_DATA(*(int8_t *)output, int8_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_SMALLINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
752 753 754
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(int16_t *)output = taosStr2Int16(buf, NULL, 10);
755
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
756
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
757
          if (len < 0) {
758 759
            code = TSDB_CODE_FAILED;
            goto _end;
760
          }
761 762
          convBuf[len] = 0;
          *(int16_t *)output = taosStr2Int16(convBuf, NULL, 10);
763 764 765 766 767 768 769
        } else {
          GET_TYPED_DATA(*(int16_t *)output, int16_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_INT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
770 771 772
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(int32_t *)output = taosStr2Int32(buf, NULL, 10);
773
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
774
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
775
          if (len < 0) {
776 777
            code = TSDB_CODE_FAILED;
            goto _end;
778
          }
779 780 781

          convBuf[len] = 0;
          *(int32_t *)output = taosStr2Int32(convBuf, NULL, 10);
782 783 784 785 786
        } else {
          GET_TYPED_DATA(*(int32_t *)output, int32_t, inputType, input);
        }
        break;
      }
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Ganlin Zhao 已提交
787 788
      case TSDB_DATA_TYPE_BIGINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
789 790 791
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(int64_t *)output = taosStr2Int64(buf, NULL, 10);
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Ganlin Zhao 已提交
792
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
793
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
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794
          if (len < 0) {
795 796
            code = TSDB_CODE_FAILED;
            goto _end;
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797
          }
798 799
          convBuf[len] = 0;
          *(int64_t *)output = taosStr2Int64(convBuf, NULL, 10);
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        } else {
          GET_TYPED_DATA(*(int64_t *)output, int64_t, inputType, input);
        }
        break;
      }
805 806
      case TSDB_DATA_TYPE_UTINYINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
807 808 809
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(uint8_t *)output = taosStr2UInt8(buf, NULL, 10);
810
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
811
          int32_t len = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
812
          if (len < 0) {
813 814
            code = TSDB_CODE_FAILED;
            goto _end;
815
          }
816 817
          convBuf[len] = 0;
          *(uint8_t *)output = taosStr2UInt8(convBuf, NULL, 10);
818 819 820 821 822 823 824
        } else {
          GET_TYPED_DATA(*(uint8_t *)output, uint8_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_USMALLINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
825 826 827
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(uint16_t *)output = taosStr2UInt16(buf, NULL, 10);
828
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
829
          int32_t len = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
830
          if (len < 0) {
831 832
            code = TSDB_CODE_FAILED;
            goto _end;
833
          }
834 835
          convBuf[len] = 0;
          *(uint16_t *)output = taosStr2UInt16(convBuf, NULL, 10);
836 837 838 839 840 841 842
        } else {
          GET_TYPED_DATA(*(uint16_t *)output, uint16_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_UINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
843 844 845
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(uint32_t *)output = taosStr2UInt32(buf, NULL, 10);
846
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
847
          int32_t len = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
848
          if (len < 0) {
849 850
            code = TSDB_CODE_FAILED;
            goto _end;
851
          }
852 853
          convBuf[len] = 0;
          *(uint32_t *)output = taosStr2UInt32(convBuf, NULL, 10);
854 855 856 857 858
        } else {
          GET_TYPED_DATA(*(uint32_t *)output, uint32_t, inputType, input);
        }
        break;
      }
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      case TSDB_DATA_TYPE_UBIGINT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
861 862 863
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(uint64_t *)output = taosStr2UInt64(buf, NULL, 10);
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Ganlin Zhao 已提交
864
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
865
          int32_t len = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
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Ganlin Zhao 已提交
866
          if (len < 0) {
867 868
            code = TSDB_CODE_FAILED;
            goto _end;
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Ganlin Zhao 已提交
869
          }
870 871 872

          convBuf[len] = 0;
          *(uint64_t *)output = taosStr2UInt64(convBuf, NULL, 10);
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Ganlin Zhao 已提交
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        } else {
          GET_TYPED_DATA(*(uint64_t *)output, uint64_t, inputType, input);
        }
        break;
      }
878 879
      case TSDB_DATA_TYPE_FLOAT: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
880 881 882
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(float *)output = taosStr2Float(buf, NULL);
883
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
884
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
885
          if (len < 0) {
886 887
            code = TSDB_CODE_FAILED;
            goto _end;
888
          }
889 890
          convBuf[len] = 0;
          *(float *)output = taosStr2Float(convBuf, NULL);
891 892 893 894 895 896 897
        } else {
          GET_TYPED_DATA(*(float *)output, float, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_DOUBLE: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
898 899 900
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(double *)output = taosStr2Double(buf, NULL);
901
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
902
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
903
          if (len < 0) {
904 905
            code = TSDB_CODE_FAILED;
            goto _end;
906
          }
907 908
          convBuf[len] = 0;
          *(double *)output = taosStr2Double(convBuf, NULL);
909 910 911 912 913
        } else {
          GET_TYPED_DATA(*(double *)output, double, inputType, input);
        }
        break;
      }
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Ganlin Zhao 已提交
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      case TSDB_DATA_TYPE_BOOL: {
        if (inputType == TSDB_DATA_TYPE_BINARY) {
916 917 918
          memcpy(buf, varDataVal(input), varDataLen(input));
          buf[varDataLen(input)] = 0;
          *(bool *)output = taosStr2Int8(buf, NULL, 10);
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Ganlin Zhao 已提交
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        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
920
          int32_t len  = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
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Ganlin Zhao 已提交
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          if (len < 0) {
922 923
            code = TSDB_CODE_FAILED;
            goto _end;
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924
          }
925 926
          convBuf[len] = 0;
          *(bool *)output = taosStr2Int8(convBuf, NULL, 10);
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        } else {
          GET_TYPED_DATA(*(bool *)output, bool, inputType, input);
        }
        break;
      }
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Ganlin Zhao 已提交
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      case TSDB_DATA_TYPE_TIMESTAMP: {
933
        int64_t timeVal;
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        if (inputType == TSDB_DATA_TYPE_BINARY || inputType == TSDB_DATA_TYPE_NCHAR) {
935 936 937
          int64_t timePrec;
          GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[1]), pInput[1].columnData->pData);
          int32_t ret = convertStringToTimestamp(inputType, input, timePrec, &timeVal);
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          if (ret != TSDB_CODE_SUCCESS) {
            *(int64_t *)output = 0;
          } else {
            *(int64_t *)output = timeVal;
          }
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        } else {
          GET_TYPED_DATA(*(int64_t *)output, int64_t, inputType, input);
        }
        break;
      }
      case TSDB_DATA_TYPE_BINARY: {
        if (inputType == TSDB_DATA_TYPE_BOOL) {
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          // NOTE: sprintf will append '\0' at the end of string
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          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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          memcpy(varDataVal(output), varDataVal(input), len);
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          varDataSetLen(output, len);
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        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
958
          int32_t len = taosUcs4ToMbs((TdUcs4 *)varDataVal(input), varDataLen(input), convBuf);
959
          if (len < 0) {
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            code = TSDB_CODE_FAILED;
            goto _end;
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          }
          len = TMIN(len, outputLen - VARSTR_HEADER_SIZE);
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          memcpy(varDataVal(output), convBuf, len);
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          varDataSetLen(output, len);
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        } else {
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          NUM_TO_STRING(inputType, input, sizeof(buf), buf);
          int32_t len = (int32_t)strlen(buf);
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          len = (outputLen - VARSTR_HEADER_SIZE) > len ? len : (outputLen - VARSTR_HEADER_SIZE);
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          memcpy(varDataVal(output), buf, len);
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          varDataSetLen(output, len);
        }
        break;
      }
      case TSDB_DATA_TYPE_NCHAR: {
        int32_t outputCharLen = (outputLen - VARSTR_HEADER_SIZE) / TSDB_NCHAR_SIZE;
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        int32_t len;
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        if (inputType == TSDB_DATA_TYPE_BOOL) {
          char tmp[8] = {0};
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          len = sprintf(tmp, "%.*s", outputCharLen, *(int8_t *)input ? "true" : "false" );
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          bool ret = taosMbsToUcs4(tmp, len, (TdUcs4 *)varDataVal(output), outputLen - VARSTR_HEADER_SIZE, &len);
          if (!ret) {
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            code = TSDB_CODE_FAILED;
            goto _end;
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          }
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          varDataSetLen(output, len);
        } else if (inputType == TSDB_DATA_TYPE_BINARY) {
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          len = outputCharLen > varDataLen(input) ? varDataLen(input) : outputCharLen;
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          bool ret = taosMbsToUcs4(input + VARSTR_HEADER_SIZE, len, (TdUcs4 *)varDataVal(output), outputLen - VARSTR_HEADER_SIZE, &len);
          if (!ret) {
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            code = TSDB_CODE_FAILED;
            goto _end;
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          }
          varDataSetLen(output, len);
        } else if (inputType == TSDB_DATA_TYPE_NCHAR) {
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          len = TMIN(outputLen - VARSTR_HEADER_SIZE, varDataLen(input));
          memcpy(output, input, len + VARSTR_HEADER_SIZE);
          varDataSetLen(output, len);
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        } else {
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          NUM_TO_STRING(inputType, input, sizeof(buf), buf);
          len = (int32_t)strlen(buf);
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          len = outputCharLen > len ? len : outputCharLen;
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          bool ret = taosMbsToUcs4(buf, len, (TdUcs4 *)varDataVal(output), outputLen - VARSTR_HEADER_SIZE, &len);
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          if (!ret) {
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            code = TSDB_CODE_FAILED;
            goto _end;
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          }
          varDataSetLen(output, len);
        }
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        //for constant conversion, need to set proper length of pOutput description
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        if (len < outputLen) {
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          pOutput->columnData->info.bytes = len + VARSTR_HEADER_SIZE;
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        }
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        break;
      }
      default: {
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        code = TSDB_CODE_FAILED;
        goto _end;
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      }
    }

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

  pOutput->numOfRows = pInput->numOfRows;
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  _end:
  taosMemoryFree(output);
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  taosMemoryFree(convBuf);
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  return code;
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}
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int32_t toISO8601Function(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t type = GET_PARAM_TYPE(pInput);

1039
  bool tzPresent = (inputNum == 2) ? true : false;
1040 1041
  char* tz;
  int32_t tzLen;
1042 1043 1044 1045
  if (tzPresent) {
    tz = varDataVal(pInput[1].columnData->pData);
    tzLen = varDataLen(pInput[1].columnData->pData);
  }
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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;
    }

1053
    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);
    }

1077 1078 1079
    struct tm tmInfo;
    taosLocalTime((const time_t *)&timeVal, &tmInfo);
    strftime(buf, sizeof(buf), "%Y-%m-%dT%H:%M:%S", &tmInfo);
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    int32_t len = (int32_t)strlen(buf);

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    //add timezone string
    snprintf(buf + len, tzLen + 1, "%s", tz);
    len += tzLen;

1086 1087
    if (hasFraction) {
      int32_t fracLen = (int32_t)strlen(fraction) + 1;
1088 1089 1090 1091

      char *tzInfo;
      if (buf[len - 1] == 'z' || buf[len - 1] == 'Z') {
        tzInfo = &buf[len - 1];
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        memmove(tzInfo + fracLen, tzInfo, strlen(tzInfo));
      } else {
1094 1095 1096 1097 1098 1099 1100 1101 1102 1103
        tzInfo = strchr(buf, '+');
        if (tzInfo) {
          memmove(tzInfo + fracLen, tzInfo, strlen(tzInfo));
        } else {
          //search '-' backwards
          tzInfo = strrchr(buf, '-');
          if (tzInfo) {
            memmove(tzInfo + fracLen, tzInfo, strlen(tzInfo));
          }
        }
1104 1105
      }

1106
      char tmp[32] = {0};
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      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);
1125 1126
  int64_t timePrec;
  GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[1]), pInput[1].columnData->pData);
1127 1128 1129 1130 1131 1132

  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }
1133
    char *input = colDataGetData(pInput[0].columnData, i);
1134 1135

    int64_t timeVal = 0;
1136 1137 1138
    int32_t ret = convertStringToTimestamp(type, input, timePrec, &timeVal);
    if (ret != TSDB_CODE_SUCCESS) {
      colDataAppendNULL(pOutput->columnData, i);
1139 1140
    } else {
      colDataAppend(pOutput->columnData, i, (char *)&timeVal, false);
1141
    }
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  }

  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);

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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) {
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    SArray* pTagVals = taosArrayInit(8, sizeof(STagVal));
    STag*   pTag = NULL;
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    if (colDataIsNull_s(pInput[0].columnData, i)) {
      tTagNew(pTagVals, 1, true, &pTag);
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    }else{
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      char *input = pInput[0].columnData->pData + pInput[0].columnData->varmeta.offset[i];
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      if (varDataLen(input) > (TSDB_MAX_JSON_TAG_LEN - VARSTR_HEADER_SIZE) / TSDB_NCHAR_SIZE){
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        taosArrayDestroy(pTagVals);
        return TSDB_CODE_FAILED;
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      }
      memcpy(tmp, varDataVal(input), varDataLen(input));
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      tmp[varDataLen(input)] = 0;
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      if(parseJsontoTagData(tmp, pTagVals, &pTag, NULL)){
        tTagNew(pTagVals, 1, true, &pTag);
      }
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    }

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    colDataAppend(pOutput->columnData, i, (const char*)pTag, false);
    tTagFree(pTag);
    taosArrayDestroy(pTagVals);
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  }

  pOutput->numOfRows = pInput->numOfRows;
  return TSDB_CODE_SUCCESS;
}

1181
/** Time functions **/
1182 1183 1184
int32_t timeTruncateFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  int32_t type = GET_PARAM_TYPE(&pInput[0]);

1185
  int64_t timeUnit, timePrec, timeVal = 0;
1186
  GET_TYPED_DATA(timeUnit, int64_t, GET_PARAM_TYPE(&pInput[1]), pInput[1].columnData->pData);
1187
  GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);
1188 1189 1190 1191

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

1192
  int64_t unit = timeUnit * 1000 / factor;
1193

1194 1195 1196 1197 1198 1199
  for (int32_t i = 0; i < pInput[0].numOfRows; ++i) {
    if (colDataIsNull_s(pInput[0].columnData, i)) {
      colDataAppendNULL(pOutput->columnData, i);
      continue;
    }

1200 1201
    char *input = colDataGetData(pInput[0].columnData, i);

1202
    if (IS_VAR_DATA_TYPE(type)) { /* datetime format strings */
1203 1204 1205 1206 1207
      int32_t ret = convertStringToTimestamp(type, input, TSDB_TIME_PRECISION_NANO, &timeVal);
      if (ret != TSDB_CODE_SUCCESS) {
        colDataAppendNULL(pOutput->columnData, i);
        continue;
      }
1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226
      //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);

1227 1228
    switch (unit) {
      case 0: { /* 1u or 1b */
1229
        if (tsDigits == TSDB_TIME_PRECISION_NANO_DIGITS) {
1230 1231 1232 1233 1234
          if (timePrec == TSDB_TIME_PRECISION_NANO && timeUnit == 1) {
            timeVal = timeVal * 1;
          } else {
            timeVal = timeVal / 1000 * 1000;
          }
1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251
        } 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 {
1252 1253
          colDataAppendNULL(pOutput->columnData, i);
          continue;
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        }
        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 {
1267 1268
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281
        }
        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 {
1282 1283
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296
        }
        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 {
1297 1298
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311
        }
        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 {
1312 1313
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326
        }
        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 {
1327 1328
          colDataAppendNULL(pOutput->columnData, i);
          continue;
1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
        }
        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) {
1375 1376
  int64_t timeUnit = -1, timePrec, timeVal[2] = {0};
  if (inputNum == 4) {
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    GET_TYPED_DATA(timeUnit, int64_t, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);
1378 1379 1380
    GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[3]), pInput[3].columnData->pData);
  } else {
    GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);
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  }

1383 1384 1385
  int64_t factor = (timePrec == TSDB_TIME_PRECISION_MILLI) ? 1000 :
                   (timePrec == TSDB_TIME_PRECISION_MICRO ? 1000000 : 1000000000);

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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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      }

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      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 */
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        int32_t ret = convertStringToTimestamp(type, input[k], TSDB_TIME_PRECISION_NANO, &timeVal[k]);
        if (ret != TSDB_CODE_SUCCESS) {
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          hasNull = true;
          break;
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        }
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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 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 {
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          hasNull = true;
          break;
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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 {
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      int64_t unit = timeUnit * 1000 / factor;
      switch(unit) {
        case 0: { /* 1u or 1b */
          if (timePrec == TSDB_TIME_PRECISION_NANO && timeUnit == 1) {
            result = result / 1;
          } else {
            result = result / 1000;
          }
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          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 timePrec;
  GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[0]), pInput[0].columnData->pData);

  int64_t ts = taosGetTimestamp(timePrec);
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    colDataAppendInt64(pOutput->columnData, i, &ts);
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  }
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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
}

int32_t todayFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  int64_t timePrec;
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  GET_TYPED_DATA(timePrec, int64_t, GET_PARAM_TYPE(&pInput[0]), pInput[0].columnData->pData);
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  int64_t ts = taosGetTimestampToday(timePrec);
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    colDataAppendInt64(pOutput->columnData, i, &ts);
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  }
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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
}

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int32_t timezoneFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  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) {
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    colDataAppend(pOutput->columnData, i, output, false);
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  }
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  pOutput->numOfRows = pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
}

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int32_t atanFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, atan);
}
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int32_t sinFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, sin);
}
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int32_t cosFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, cos);
}
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int32_t tanFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, tan);
}
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int32_t asinFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doScalarFunctionUnique(pInput, inputNum, pOutput, asin);
}
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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) {
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  if (inputNum == 1) {
    return doScalarFunctionUnique(pInput, inputNum, pOutput, tlog);
  } else {
    return doScalarFunctionUnique2(pInput, inputNum, pOutput, tlog2);
  }
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}

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

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int32_t lowerFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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#ifdef WINDOWS
  return doCaseConvFunction(pInput, inputNum, pOutput, towlower);
#else
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  return doCaseConvFunction(pInput, inputNum, pOutput, tolower);
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#endif
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}

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int32_t upperFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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#ifdef WINDOWS
  return doCaseConvFunction(pInput, inputNum, pOutput, towupper);
#else
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  return doCaseConvFunction(pInput, inputNum, pOutput, toupper);
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#endif
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}

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

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

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

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#if 0
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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
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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));
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  return TSDB_CODE_SUCCESS;
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}

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

int32_t winDurFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
  colDataAppendInt64(pOutput->columnData, pOutput->numOfRows, (int64_t *)colDataGetData(pInput->columnData, 2));
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  return TSDB_CODE_SUCCESS;
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}

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;
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}
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int32_t qTbnameFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  ASSERT(inputNum == 1);
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  uint64_t uid = *(uint64_t *)colDataGetData(pInput->columnData, 0);

  char str[TSDB_TABLE_FNAME_LEN + VARSTR_HEADER_SIZE] = {0};
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  metaGetTableNameByUid(pInput->param, uid, str);
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  colDataAppendNItems(pOutput->columnData, pOutput->numOfRows, str, pInput->numOfRows);
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  pOutput->numOfRows += pInput->numOfRows;
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  return TSDB_CODE_SUCCESS;
}
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/** Aggregation functions **/
int32_t countScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int64_t *out = (int64_t *)pOutputData->pData;
  *out = 0;
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
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      continue;
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    }
    (*out)++;
  }

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  pOutput->numOfRows = 1;
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  return TSDB_CODE_SUCCESS;
}
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int32_t sumScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);
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  bool hasNull = false;
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
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      hasNull = true;
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      break;
    }

    if (IS_SIGNED_NUMERIC_TYPE(type)) {
      int64_t *in  = (int64_t *)pInputData->pData;
      int64_t *out = (int64_t *)pOutputData->pData;
      *out += in[i];
    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      uint64_t *in  = (uint64_t *)pInputData->pData;
      uint64_t *out = (uint64_t *)pOutputData->pData;
      *out += in[i];
    } else if (IS_FLOAT_TYPE(type)) {
      double *in  = (double *)pInputData->pData;
      double *out = (double *)pOutputData->pData;
      *out += in[i];
    }
  }

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  if (hasNull) {
    colDataAppendNULL(pOutputData, 0);
  }

  pOutput->numOfRows = 1;
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  return TSDB_CODE_SUCCESS;
}
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static int32_t doMinMaxScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput, bool isMinFunc) {
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  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);
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  bool hasNull = false;
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  if (isMinFunc) {
    SET_TYPED_DATA_MAX(pOutputData->pData, type);
  } else {
    SET_TYPED_DATA_MIN(pOutputData->pData, type);
  }
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  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
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      hasNull = true;
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      break;
    }

    switch(type) {
      case TSDB_DATA_TYPE_BOOL:
      case TSDB_DATA_TYPE_TINYINT: {
        int8_t *in  = (int8_t *)pInputData->pData;
        int8_t *out = (int8_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_SMALLINT: {
        int16_t *in  = (int16_t *)pInputData->pData;
        int16_t *out = (int16_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_INT: {
        int32_t *in  = (int32_t *)pInputData->pData;
        int32_t *out = (int32_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_BIGINT: {
        int64_t *in  = (int64_t *)pInputData->pData;
        int64_t *out = (int64_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_UTINYINT: {
        uint8_t *in  = (uint8_t *)pInputData->pData;
        uint8_t *out = (uint8_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_USMALLINT: {
        uint16_t *in  = (uint16_t *)pInputData->pData;
        uint16_t *out = (uint16_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_UINT: {
        uint32_t *in  = (uint32_t *)pInputData->pData;
        uint32_t *out = (uint32_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_UBIGINT: {
        uint64_t *in  = (uint64_t *)pInputData->pData;
        uint64_t *out = (uint64_t *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_FLOAT: {
        float *in  = (float *)pInputData->pData;
        float *out = (float *)pOutputData->pData;
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        if((in[i] > *out) ^ isMinFunc) {
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          *out = in[i];
        }
        break;
      }
      case TSDB_DATA_TYPE_DOUBLE: {
        double *in  = (double *)pInputData->pData;
        double *out = (double *)pOutputData->pData;
1893
        if((in[i] > *out) ^ isMinFunc) {
1894 1895 1896 1897 1898 1899 1900
          *out = in[i];
        }
        break;
      }
    }
  }

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  if (hasNull) {
    colDataAppendNULL(pOutputData, 0);
  }

  pOutput->numOfRows = 1;
1906 1907
  return TSDB_CODE_SUCCESS;
}
1908 1909 1910 1911 1912 1913 1914 1915

int32_t minScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doMinMaxScalarFunction(pInput, inputNum, pOutput, true);
}

int32_t maxScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return doMinMaxScalarFunction(pInput, inputNum, pOutput, false);
}
1916

1917 1918 1919 1920 1921
int32_t avgScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);
1922
  int64_t count = 0;
1923 1924 1925 1926 1927 1928 1929 1930 1931 1932
  bool hasNull = false;

  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
      hasNull = true;
      break;
    }

    switch(type) {
      case TSDB_DATA_TYPE_TINYINT: {
1933 1934 1935
        int8_t *in   = (int8_t *)pInputData->pData;
        int64_t *out = (int64_t *)pOutputData->pData;
        *out += in[i];
1936 1937 1938 1939 1940
        count++;
        break;
      }
      case TSDB_DATA_TYPE_SMALLINT: {
        int16_t *in  = (int16_t *)pInputData->pData;
1941 1942
        int64_t *out = (int64_t *)pOutputData->pData;
        *out += in[i];
1943 1944 1945 1946 1947
        count++;
        break;
      }
      case TSDB_DATA_TYPE_INT: {
        int32_t *in  = (int32_t *)pInputData->pData;
1948 1949
        int64_t *out = (int64_t *)pOutputData->pData;
        *out += in[i];
1950 1951 1952 1953 1954
        count++;
        break;
      }
      case TSDB_DATA_TYPE_BIGINT: {
        int64_t *in  = (int64_t *)pInputData->pData;
1955 1956
        int64_t *out = (int64_t *)pOutputData->pData;
        *out += in[i];
1957 1958 1959 1960
        count++;
        break;
      }
      case TSDB_DATA_TYPE_UTINYINT: {
1961 1962 1963
        uint8_t *in   = (uint8_t *)pInputData->pData;
        uint64_t *out = (uint64_t *)pOutputData->pData;
        *out += in[i];
1964 1965 1966 1967 1968
        count++;
        break;
      }
      case TSDB_DATA_TYPE_USMALLINT: {
        uint16_t *in  = (uint16_t *)pInputData->pData;
1969 1970
        uint64_t *out = (uint64_t *)pOutputData->pData;
        *out += in[i];
1971 1972 1973 1974 1975
        count++;
        break;
      }
      case TSDB_DATA_TYPE_UINT: {
        uint32_t *in  = (uint32_t *)pInputData->pData;
1976 1977
        uint64_t *out = (uint64_t *)pOutputData->pData;
        *out += in[i];
1978 1979 1980 1981 1982
        count++;
        break;
      }
      case TSDB_DATA_TYPE_UBIGINT: {
        uint64_t *in  = (uint64_t *)pInputData->pData;
1983 1984
        uint64_t *out = (uint64_t *)pOutputData->pData;
        *out += in[i];
1985 1986 1987 1988 1989
        count++;
        break;
      }
      case TSDB_DATA_TYPE_FLOAT: {
        float *in  = (float *)pInputData->pData;
1990 1991
        float *out = (float *)pOutputData->pData;
        *out += in[i];
1992 1993 1994 1995 1996
        count++;
        break;
      }
      case TSDB_DATA_TYPE_DOUBLE: {
        double *in  = (double *)pInputData->pData;
1997 1998
        double *out = (double *)pOutputData->pData;
        *out += in[i];
1999 2000 2001 2002 2003 2004
        count++;
        break;
      }
    }
  }

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  if (hasNull || (count == 0)) {
2006 2007 2008
    colDataAppendNULL(pOutputData, 0);
  } else {
    if (IS_SIGNED_NUMERIC_TYPE(type)) {
2009 2010
      int64_t *out   = (int64_t *)pOutputData->pData;
      *(double *)out = *out / (double)count;
2011
    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
2012 2013
      uint64_t *out  = (uint64_t *)pOutputData->pData;
      *(double *)out = *out / (double)count;
2014
    } else if (IS_FLOAT_TYPE(type)) {
2015 2016
      double *out    = (double *)pOutputData->pData;
      *(double *)out = *out / (double)count;
2017 2018 2019 2020 2021 2022 2023
    }
  }

  pOutput->numOfRows = 1;
  return TSDB_CODE_SUCCESS;
}

2024 2025 2026 2027 2028
int32_t stddevScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);
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  //int64_t count = 0, sum = 0, qSum = 0;
  bool hasNull = false;
2031 2032 2033

  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
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      hasNull = true;
      break;
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    }
#if 0
    switch(type) {
      case TSDB_DATA_TYPE_TINYINT: {
        int8_t *in  = (int8_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_SMALLINT: {
        int16_t *in  = (int16_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_INT: {
        int32_t *in  = (int32_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_BIGINT: {
        int64_t *in  = (int64_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_UTINYINT: {
        uint8_t *in  = (uint8_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_USMALLINT: {
        uint16_t *in  = (uint16_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_UINT: {
        uint32_t *in  = (uint32_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_UBIGINT: {
        uint64_t *in  = (uint64_t *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_FLOAT: {
        float *in  = (float *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
      case TSDB_DATA_TYPE_DOUBLE: {
        double *in  = (double *)pInputData->pData;
        sum += in[i];
        qSum += in[i] * in[i];
        count++;
        break;
      }
    }
#endif
  }

  double *out  = (double *)pOutputData->pData;
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  if (hasNull) {
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    colDataAppendNULL(pOutputData, 0);
  } else {
    *out = 0;
#if 0
    double avg = 0;
    if (IS_SIGNED_NUMERIC_TYPE(type)) {
      avg = (int64_t)sum / (double)count;
      *out =  sqrt(fabs((int64_t)qSum / ((double)count) - avg * avg));
    } else if (IS_UNSIGNED_NUMERIC_TYPE(type)) {
      avg = (uint64_t)sum / (double)count;
      *out =  sqrt(fabs((uint64_t)qSum / ((double)count) - avg * avg));
    } else if (IS_FLOAT_TYPE(type)) {
      avg = (double)sum / (double)count;
      *out =  sqrt(fabs((double)qSum / ((double)count) - avg * avg));
    }
#endif
  }

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  pOutput->numOfRows = 1;
2134 2135
  return TSDB_CODE_SUCCESS;
}
2136

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

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

  double startVal, stepVal;
  double matrix[2][3] = {0};
  GET_TYPED_DATA(startVal, double, GET_PARAM_TYPE(&pInput[1]), pInput[1].columnData->pData);
  GET_TYPED_DATA(stepVal, double, GET_PARAM_TYPE(&pInput[2]), pInput[2].columnData->pData);

  int32_t type = GET_PARAM_TYPE(pInput);
  int64_t count = 0;

  switch(type) {
    case TSDB_DATA_TYPE_TINYINT: {
      int8_t *in   = (int8_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      int16_t *in  = (int16_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_INT: {
      int32_t *in  = (int32_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
      int64_t *in  = (int64_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_UTINYINT: {
      uint8_t *in   = (uint8_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_USMALLINT: {
      uint16_t *in  = (uint16_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_UINT: {
      uint32_t *in  = (uint32_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_UBIGINT: {
      uint64_t *in  = (uint64_t *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
      float *in  = (float *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      double *in  = (double *)pInputData->pData;
      for (int32_t i = 0; i < pInput->numOfRows; ++i) {
        if (colDataIsNull_s(pInputData, i)) {
          continue;
        }

        count++;
        LEASTSQR_CAL(matrix, startVal, in, i, stepVal);
      }
      break;
    }
  }

  if (count == 0) {
    colDataAppendNULL(pOutputData, 0);
  } else {
    matrix[1][1] = (double)count;
    matrix[1][0] = matrix[0][1];

    double matrix00 = matrix[0][0] - matrix[1][0] * (matrix[0][1] / matrix[1][1]);
    double matrix02 = matrix[0][2] - matrix[1][2] * (matrix[0][1] / matrix[1][1]);
    double matrix12 = matrix[1][2] - matrix02 * (matrix[1][0] / matrix00);
    matrix02 /= matrix00;

    matrix12 /= matrix[1][1];

    char   buf[64] = {0};
    size_t len =
        snprintf(varDataVal(buf), sizeof(buf) - VARSTR_HEADER_SIZE, "{slop:%.6lf, intercept:%.6lf}", matrix02, matrix12);
    varDataSetLen(buf, len);
    colDataAppend(pOutputData, 0, buf, false);

  }

  pOutput->numOfRows = 1;
  return TSDB_CODE_SUCCESS;
}
2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335

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

  int32_t type = GET_PARAM_TYPE(pInput);

  double val;
  bool hasNull = false;
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
      hasNull = true;
      break;
    }
    char *in = pInputData->pData;
    GET_TYPED_DATA(val, double, type, in);
  }

  if (hasNull) {
    colDataAppendNULL(pOutputData, 0);
  } else {
    colDataAppend(pOutputData, 0, (char *)&val, false);
  }

  pOutput->numOfRows = 1;
  return TSDB_CODE_SUCCESS;
}

int32_t apercentileScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return percentileScalarFunction(pInput, inputNum, pOutput);
}
2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377

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

  int32_t type = GET_PARAM_TYPE(pInput);

  double min, max;
  SET_DOUBLE_VAL(&min, DBL_MAX);
  SET_DOUBLE_VAL(&max, -DBL_MAX);

  bool hasNull = false;
  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
      hasNull = true;
      break;
    }

    char *in = pInputData->pData;

    double val = 0;
    GET_TYPED_DATA(val, double, type, in);

    if (val < GET_DOUBLE_VAL(&min)) {
      SET_DOUBLE_VAL(&min, val);
    }

    if (val > GET_DOUBLE_VAL(&max)) {
      SET_DOUBLE_VAL(&max, val);
    }
  }

  if (hasNull) {
    colDataAppendNULL(pOutputData, 0);
  } else {
    double result = max - min;
    colDataAppend(pOutputData, 0, (char *)&result, false);
  }

  pOutput->numOfRows = 1;
  return TSDB_CODE_SUCCESS;
}
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int32_t nonCalcScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);
  bool hasNull = false;

  for (int32_t i = 0; i < pInput->numOfRows; ++i) {
    if (colDataIsNull_s(pInputData, i)) {
      hasNull = true;
      break;
    }
  }

  double *out  = (double *)pOutputData->pData;
  if (hasNull) {
    colDataAppendNULL(pOutputData, 0);
  } else {
    *out = 0;
  }

  pOutput->numOfRows = 1;
  return TSDB_CODE_SUCCESS;
}
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int32_t derivativeScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return nonCalcScalarFunction(pInput, inputNum, pOutput);
}

int32_t irateScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return nonCalcScalarFunction(pInput, inputNum, pOutput);
}
2411

2412 2413 2414 2415
int32_t diffScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return nonCalcScalarFunction(pInput, inputNum, pOutput);
}

2416 2417 2418
int32_t twaScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return avgScalarFunction(pInput, inputNum, pOutput);
}
2419 2420 2421 2422

int32_t mavgScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return avgScalarFunction(pInput, inputNum, pOutput);
}
2423 2424 2425 2426

int32_t hllScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return countScalarFunction(pInput, inputNum, pOutput);
}
2427 2428 2429 2430

int32_t csumScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return sumScalarFunction(pInput, inputNum, pOutput);
}
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typedef enum {
  STATE_OPER_INVALID = 0,
  STATE_OPER_LT,
  STATE_OPER_GT,
  STATE_OPER_LE,
  STATE_OPER_GE,
  STATE_OPER_NE,
  STATE_OPER_EQ,
} EStateOperType;

#define STATE_COMP(_op, _lval, _rval, _rtype) STATE_COMP_IMPL(_op, _lval, GET_STATE_VAL(_rval, _rtype))

#define GET_STATE_VAL(_val, _type) ((_type == TSDB_DATA_TYPE_BIGINT) ? (*(int64_t *)_val) : (*(double *)_val))

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

static int8_t getStateOpType(char* opStr) {
  int8_t opType;
2474
  if (strncasecmp(opStr, "LT", 2) == 0) {
2475
    opType = STATE_OPER_LT;
2476
  } else if (strncasecmp(opStr, "GT", 2) == 0) {
2477
    opType = STATE_OPER_GT;
2478
  } else if (strncasecmp(opStr, "LE", 2) == 0) {
2479
    opType = STATE_OPER_LE;
2480
  } else if (strncasecmp(opStr, "GE", 2) == 0) {
2481
    opType = STATE_OPER_GE;
2482
  } else if (strncasecmp(opStr, "NE", 2) == 0) {
2483
    opType = STATE_OPER_NE;
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  } else if (strncasecmp(opStr, "EQ", 2) == 0) {
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    opType = STATE_OPER_EQ;
  } else {
    opType = STATE_OPER_INVALID;
  }

  return opType;
}

static bool checkStateOp(int8_t op, SColumnInfoData* pCol, int32_t index, SScalarParam *pCondParam) {
  char* data  = colDataGetData(pCol, index);
  char* param = pCondParam->columnData->pData;
  int32_t paramType = GET_PARAM_TYPE(pCondParam);
  switch (pCol->info.type) {
    case TSDB_DATA_TYPE_TINYINT: {
      int8_t v = *(int8_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_UTINYINT: {
      uint8_t v = *(uint8_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_SMALLINT: {
      int16_t v = *(int16_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_USMALLINT: {
      uint16_t v = *(uint16_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_INT: {
      int32_t v = *(int32_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_UINT: {
      uint32_t v = *(uint32_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_BIGINT: {
      int64_t v = *(int64_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_UBIGINT: {
      uint64_t v = *(uint64_t*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_FLOAT: {
      float v = *(float*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    case TSDB_DATA_TYPE_DOUBLE: {
      double v = *(double*)data;
      STATE_COMP(op, v, param, paramType);
      break;
    }
    default: {
      ASSERT(0);
    }
  }
  return false;
}

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

  int8_t op = getStateOpType(varDataVal(pInput[1].columnData->pData));
  int64_t count = 0;

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

    bool ret = checkStateOp(op, pInputData, i, &pInput[2]);
    int64_t out = -1;
    if (ret) {
      out = ++count;
    } else {
      count = 0;
    }
    colDataAppend(pOutputData, i, (char*)&out, false);
  }

  pOutput->numOfRows = pInput->numOfRows;
  return TSDB_CODE_SUCCESS;
}
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int32_t stateDurationScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int8_t op = getStateOpType(varDataVal(pInput[1].columnData->pData));

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

    bool ret = checkStateOp(op, pInputData, i, &pInput[2]);
    int64_t out = -1;
    if (ret) {
      out = 0;
    }
    colDataAppend(pOutputData, i, (char*)&out, false);
  }

  pOutput->numOfRows = pInput->numOfRows;
  return TSDB_CODE_SUCCESS;
}
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typedef enum { UNKNOWN_BIN = 0, USER_INPUT_BIN, LINEAR_BIN, LOG_BIN } EHistoBinType;

static int8_t getHistogramBinType(char* binTypeStr) {
  int8_t binType;
  if (strcasecmp(binTypeStr, "user_input") == 0) {
    binType = USER_INPUT_BIN;
  } else if (strcasecmp(binTypeStr, "linear_bin") == 0) {
    binType = LINEAR_BIN;
  } else if (strcasecmp(binTypeStr, "log_bin") == 0) {
    binType = LOG_BIN;
  } else {
    binType = UNKNOWN_BIN;
  }

  return binType;
}

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

static bool getHistogramBinDesc(SHistoFuncBin** bins, int32_t* binNum, char* binDescStr, int8_t binType, bool normalized) {
  cJSON*  binDesc = cJSON_Parse(binDescStr);
  int32_t numOfBins;
  double* intervals;
  if (cJSON_IsObject(binDesc)) { /* linaer/log bins */
    int32_t numOfParams = cJSON_GetArraySize(binDesc);
    int32_t startIndex;
    if (numOfParams != 4) {
      return false;
    }

    cJSON* start = cJSON_GetObjectItem(binDesc, "start");
    cJSON* factor = cJSON_GetObjectItem(binDesc, "factor");
    cJSON* width = cJSON_GetObjectItem(binDesc, "width");
    cJSON* count = cJSON_GetObjectItem(binDesc, "count");
    cJSON* infinity = cJSON_GetObjectItem(binDesc, "infinity");

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

    if (count->valueint <= 0 || count->valueint > 1000) {  // limit count to 1000
      return false;
    }

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

    int32_t counter = (int32_t)count->valueint;
    if (infinity->valueint == false) {
      startIndex = 0;
      numOfBins = counter + 1;
    } else {
      startIndex = 1;
      numOfBins = counter + 3;
    }

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

    if (infinity->valueint == true) {
      intervals[0] = -INFINITY;
      intervals[numOfBins - 1] = INFINITY;
      // in case of desc bin orders, -inf/inf should be swapped
      ASSERT(numOfBins >= 4);
      if (intervals[1] > intervals[numOfBins - 2]) {
        TSWAP(intervals[0], intervals[numOfBins - 1]);
      }
    }
  } else if (cJSON_IsArray(binDesc)) { /* user input bins */
    if (binType != USER_INPUT_BIN) {
      return false;
    }
    numOfBins = cJSON_GetArraySize(binDesc);
    intervals = taosMemoryCalloc(numOfBins, sizeof(double));
    cJSON* bin = binDesc->child;
    if (bin == NULL) {
      taosMemoryFree(intervals);
      return false;
    }
    int i = 0;
    while (bin) {
      intervals[i] = bin->valuedouble;
      if (!cJSON_IsNumber(bin)) {
        taosMemoryFree(intervals);
        return false;
      }
      if (i != 0 && intervals[i] <= intervals[i - 1]) {
        taosMemoryFree(intervals);
        return false;
      }
      bin = bin->next;
      i++;
    }
  } else {
    return false;
  }

  *binNum = numOfBins - 1;
  *bins = taosMemoryCalloc(numOfBins, sizeof(SHistoFuncBin));
  for (int32_t i = 0; i < *binNum; ++i) {
    (*bins)[i].lower = intervals[i] < intervals[i + 1] ? intervals[i] : intervals[i + 1];
    (*bins)[i].upper = intervals[i + 1] > intervals[i] ? intervals[i + 1] : intervals[i];
    (*bins)[i].count = 0;
  }

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  cJSON_Delete(binDesc);
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  taosMemoryFree(intervals);
  return true;
}

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

  SHistoFuncBin *bins;
  int32_t numOfBins  = 0;
  int32_t totalCount = 0;

  int8_t  binType    = getHistogramBinType(varDataVal(pInput[1].columnData->pData));
  char*   binDesc    = varDataVal(pInput[2].columnData->pData);
  int64_t normalized = *(int64_t *)(pInput[3].columnData->pData);

  int32_t type = GET_PARAM_TYPE(pInput);
  if (!getHistogramBinDesc(&bins, &numOfBins, binDesc, binType, (bool)normalized)) {
    return TSDB_CODE_FAILED;
  }

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

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

    for (int32_t k = 0; k < numOfBins; ++k) {
      if (v > bins[k].lower && v <= bins[k].upper) {
        bins[k].count++;
        totalCount++;
        break;
      }
    }
  }

  if (normalized) {
    for (int32_t k = 0; k < numOfBins; ++k) {
      if (totalCount != 0) {
        bins[k].percentage = bins[k].count / (double)totalCount;
      } else {
        bins[k].percentage = 0;
      }
    }
  }

  for (int32_t k = 0; k < numOfBins; ++k) {
    int32_t len;
    char    buf[512] = {0};
    if (!normalized) {
      len = sprintf(varDataVal(buf), "{\"lower_bin\":%g, \"upper_bin\":%g, \"count\":%" PRId64 "}",
                    bins[k].lower, bins[k].upper, bins[k].count);
    } else {
      len = sprintf(varDataVal(buf), "{\"lower_bin\":%g, \"upper_bin\":%g, \"count\":%lf}",
                    bins[k].lower, bins[k].upper, bins[k].percentage);
    }
    varDataSetLen(buf, len);
    colDataAppend(pOutputData, k, buf, false);
  }

  taosMemoryFree(bins);
  pOutput->numOfRows = numOfBins;
  return TSDB_CODE_SUCCESS;
}
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int32_t selectScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  SColumnInfoData *pInputData  = pInput->columnData;
  SColumnInfoData *pOutputData = pOutput->columnData;

  int32_t type = GET_PARAM_TYPE(pInput);

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

    char* data = colDataGetData(pInputData, i);
    colDataAppend(pOutputData, i, data, false);
  }


  pOutput->numOfRows = 1;
  return TSDB_CODE_SUCCESS;
}

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Ganlin Zhao 已提交
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int32_t topBotScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
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  return selectScalarFunction(pInput, inputNum, pOutput);
}
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int32_t firstLastScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return selectScalarFunction(pInput, inputNum, pOutput);
}
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int32_t sampleScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return selectScalarFunction(pInput, inputNum, pOutput);
}

int32_t tailScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return selectScalarFunction(pInput, inputNum, pOutput);
}

int32_t uniqueScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return selectScalarFunction(pInput, inputNum, pOutput);
}

int32_t modeScalarFunction(SScalarParam *pInput, int32_t inputNum, SScalarParam *pOutput) {
  return selectScalarFunction(pInput, inputNum, pOutput);
}