Merge pull request #26676 from taosdata/feat/TD-30991-3.0
feat: (errcode) ttime.c geomFunc.c geosWrapper.c
This commit is contained in:
commit
3f79e5b7e3
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@ -86,11 +86,11 @@ void deltaToUtcInitOnce();
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char getPrecisionUnit(int32_t precision);
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int64_t convertTimePrecision(int64_t ts, int32_t fromPrecision, int32_t toPrecision);
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int64_t convertTimeFromPrecisionToUnit(int64_t ts, int32_t fromPrecision, char toUnit);
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int32_t convertTimeFromPrecisionToUnit(int64_t time, int32_t fromPrecision, char toUnit, int64_t* pRes);
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int32_t convertStringToTimestamp(int16_t type, char* inputData, int64_t timePrec, int64_t* timeVal);
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int32_t getDuration(int64_t val, char unit, int64_t* result, int32_t timePrecision);
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void taosFormatUtcTime(char* buf, int32_t bufLen, int64_t ts, int32_t precision);
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int32_t taosFormatUtcTime(char* buf, int32_t bufLen, int64_t ts, int32_t precision);
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struct STm {
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struct tm tm;
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@ -35,7 +35,7 @@ void deltaToUtcInitOnce() {
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// printf("====delta:%lld\n\n", seconds);
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}
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static int64_t parseFraction(char* str, char** end, int32_t timePrec);
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static int32_t parseFraction(char* str, char** end, int32_t timePrec, int64_t* pFraction);
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static int32_t parseTimeWithTz(const char* timestr, int64_t* time, int32_t timePrec, char delim);
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static int32_t parseLocaltime(char* timestr, int32_t len, int64_t* utime, int32_t timePrec, char delim);
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static int32_t parseLocaltimeDst(char* timestr, int32_t len, int64_t* utime, int32_t timePrec, char delim);
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@ -95,7 +95,9 @@ char* forwardToTimeStringEnd(char* str) {
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return &str[i];
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}
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int64_t parseFraction(char* str, char** end, int32_t timePrec) {
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int32_t parseFraction(char* str, char** end, int32_t timePrec, int64_t* pFraction) {
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int32_t code = TSDB_CODE_SUCCESS;
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int32_t i = 0;
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int64_t fraction = 0;
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@ -112,7 +114,7 @@ int64_t parseFraction(char* str, char** end, int32_t timePrec) {
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int32_t totalLen = i;
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if (totalLen <= 0) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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/* parse the fraction */
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@ -134,21 +136,24 @@ int64_t parseFraction(char* str, char** end, int32_t timePrec) {
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}
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times = NANO_SEC_FRACTION_LEN - i;
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} else {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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fraction = strnatoi(str, i) * factor[times];
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*end = str + totalLen;
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*pFraction = fraction;
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return fraction;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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int32_t parseTimezone(char* str, int64_t* tzOffset) {
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int32_t code = TSDB_CODE_SUCCESS;
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int64_t hour = 0;
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int32_t i = 0;
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if (str[i] != '+' && str[i] != '-') {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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i++;
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@ -160,7 +165,7 @@ int32_t parseTimezone(char* str, int64_t* tzOffset) {
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continue;
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}
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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char* sep = strchr(&str[i], ':');
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@ -175,18 +180,18 @@ int32_t parseTimezone(char* str, int64_t* tzOffset) {
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}
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if (hour > 12 || hour < 0) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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// return error if there're illegal charaters after min(2 Digits)
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char* minStr = &str[i];
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if (minStr[1] != '\0' && minStr[2] != '\0') {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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int64_t minute = strnatoi(&str[i], 2);
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if (minute > 59 || (hour == 12 && minute > 0)) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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if (str[0] == '+') {
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@ -195,13 +200,13 @@ int32_t parseTimezone(char* str, int64_t* tzOffset) {
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*tzOffset = hour * 3600 + minute * 60;
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}
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return 0;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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int32_t offsetOfTimezone(char* tzStr, int64_t* offset) {
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if (tzStr && (tzStr[0] == 'z' || tzStr[0] == 'Z')) {
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*offset = 0;
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return 0;
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return TSDB_CODE_SUCCESS;
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}
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return parseTimezone(tzStr, offset);
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}
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@ -219,6 +224,8 @@ int32_t offsetOfTimezone(char* tzStr, int64_t* offset) {
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* 2013-04-12T15:52:01.123+0800
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*/
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int32_t parseTimeWithTz(const char* timestr, int64_t* time, int32_t timePrec, char delim) {
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int32_t code = TSDB_CODE_SUCCESS;
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int64_t factor = TSDB_TICK_PER_SECOND(timePrec);
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int64_t tzOffset = 0;
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@ -234,7 +241,7 @@ int32_t parseTimeWithTz(const char* timestr, int64_t* time, int32_t timePrec, ch
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}
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if (str == NULL) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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/* mktime will be affected by TZ, set by using taos_options */
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@ -253,22 +260,18 @@ int32_t parseTimeWithTz(const char* timestr, int64_t* time, int32_t timePrec, ch
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*time = seconds * factor;
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} else if (str[0] == '.') {
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str += 1;
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if ((fraction = parseFraction(str, &str, timePrec)) < 0) {
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return -1;
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}
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TAOS_CHECK_RETURN(parseFraction(str, &str, timePrec, &fraction));
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*time = seconds * factor + fraction;
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char seg = str[0];
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if (seg != 'Z' && seg != 'z' && seg != '+' && seg != '-') {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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} else if ((seg == 'Z' || seg == 'z') && str[1] != '\0') {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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} else if (seg == '+' || seg == '-') {
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// parse the timezone
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if (parseTimezone(str, &tzOffset) == -1) {
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return -1;
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}
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TAOS_CHECK_RETURN(parseTimezone(str, &tzOffset));
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*time += tzOffset * factor;
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}
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@ -277,16 +280,14 @@ int32_t parseTimeWithTz(const char* timestr, int64_t* time, int32_t timePrec, ch
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*time = seconds * factor + fraction;
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// parse the timezone
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if (parseTimezone(str, &tzOffset) == -1) {
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return -1;
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}
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TAOS_CHECK_RETURN(parseTimezone(str, &tzOffset));
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*time += tzOffset * factor;
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} else {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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return 0;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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static FORCE_INLINE bool validateTm(struct tm* pTm) {
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@ -314,6 +315,8 @@ static FORCE_INLINE bool validateTm(struct tm* pTm) {
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}
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int32_t parseLocaltime(char* timestr, int32_t len, int64_t* utime, int32_t timePrec, char delim) {
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int32_t code = TSDB_CODE_SUCCESS;
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*utime = 0;
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struct tm tm = {0};
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@ -330,7 +333,7 @@ int32_t parseLocaltime(char* timestr, int32_t len, int64_t* utime, int32_t timeP
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// if parse failed, try "%Y-%m-%d" format
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str = taosStrpTime(timestr, "%Y-%m-%d", &tm);
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if (str == NULL || (((str - timestr) < len) && (*str != '.')) || !validateTm(&tm)) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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}
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@ -347,16 +350,16 @@ int32_t parseLocaltime(char* timestr, int32_t len, int64_t* utime, int32_t timeP
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if (*str == '.') {
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/* parse the second fraction part */
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if ((fraction = parseFraction(str + 1, &str, timePrec)) < 0) {
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return -1;
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}
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TAOS_CHECK_RETURN(parseFraction(str + 1, &str, timePrec, &fraction));
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}
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*utime = TSDB_TICK_PER_SECOND(timePrec) * seconds + fraction;
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return 0;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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int32_t parseLocaltimeDst(char* timestr, int32_t len, int64_t* utime, int32_t timePrec, char delim) {
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int32_t code = TSDB_CODE_SUCCESS;
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*utime = 0;
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struct tm tm = {0};
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tm.tm_isdst = -1;
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@ -374,7 +377,7 @@ int32_t parseLocaltimeDst(char* timestr, int32_t len, int64_t* utime, int32_t ti
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// if parse failed, try "%Y-%m-%d" format
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str = taosStrpTime(timestr, "%Y-%m-%d", &tm);
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if (str == NULL || (((str - timestr) < len) && (*str != '.')) || !validateTm(&tm)) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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}
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@ -384,13 +387,11 @@ int32_t parseLocaltimeDst(char* timestr, int32_t len, int64_t* utime, int32_t ti
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int64_t fraction = 0;
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if (*str == '.') {
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/* parse the second fraction part */
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if ((fraction = parseFraction(str + 1, &str, timePrec)) < 0) {
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return -1;
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}
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TAOS_CHECK_RETURN(parseFraction(str + 1, &str, timePrec, &fraction));
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}
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*utime = TSDB_TICK_PER_SECOND(timePrec) * seconds + fraction;
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return 0;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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char getPrecisionUnit(int32_t precision) {
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@ -482,10 +483,12 @@ int64_t convertTimePrecision(int64_t utime, int32_t fromPrecision, int32_t toPre
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// !!!!notice: double lose precison if time is too large, for example: 1626006833631000000*1.0 = double =
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// 1626006833631000064
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int64_t convertTimeFromPrecisionToUnit(int64_t time, int32_t fromPrecision, char toUnit) {
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int32_t convertTimeFromPrecisionToUnit(int64_t time, int32_t fromPrecision, char toUnit, int64_t* pRes) {
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int32_t code = TSDB_CODE_SUCCESS;
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if (fromPrecision != TSDB_TIME_PRECISION_MILLI && fromPrecision != TSDB_TIME_PRECISION_MICRO &&
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fromPrecision != TSDB_TIME_PRECISION_NANO) {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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int64_t factors[3] = {NANOSECOND_PER_MSEC, NANOSECOND_PER_USEC, 1};
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@ -541,15 +544,23 @@ int64_t convertTimeFromPrecisionToUnit(int64_t time, int32_t fromPrecision, char
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time *= factors[fromPrecision];
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break;
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default: {
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return -1;
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TAOS_RETURN(TSDB_CODE_INVALID_PARA);
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}
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}
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if (tmp >= (double)INT64_MAX) return INT64_MAX;
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if (tmp <= (double)INT64_MIN) return INT64_MIN;
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return time;
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if (tmp >= (double)INT64_MAX) {
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*pRes = INT64_MAX;
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} else if (tmp <= (double)INT64_MIN) {
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*pRes = INT64_MIN;
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} else {
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*pRes = time;
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}
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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int32_t convertStringToTimestamp(int16_t type, char* inputData, int64_t timePrec, int64_t* timeVal) {
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int32_t code = TSDB_CODE_SUCCESS;
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int32_t charLen = varDataLen(inputData);
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char* newColData;
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if (type == TSDB_DATA_TYPE_BINARY || type == TSDB_DATA_TYPE_VARBINARY) {
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@ -558,7 +569,7 @@ int32_t convertStringToTimestamp(int16_t type, char* inputData, int64_t timePrec
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int32_t ret = taosParseTime(newColData, timeVal, charLen, (int32_t)timePrec, tsDaylight);
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if (ret != TSDB_CODE_SUCCESS) {
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taosMemoryFree(newColData);
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return TSDB_CODE_INVALID_TIMESTAMP;
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TAOS_RETURN(TSDB_CODE_INVALID_TIMESTAMP);
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}
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taosMemoryFree(newColData);
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} else if (type == TSDB_DATA_TYPE_NCHAR) {
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@ -566,50 +577,52 @@ int32_t convertStringToTimestamp(int16_t type, char* inputData, int64_t timePrec
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int len = taosUcs4ToMbs((TdUcs4*)varDataVal(inputData), charLen, newColData);
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if (len < 0) {
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taosMemoryFree(newColData);
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return TSDB_CODE_FAILED;
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TAOS_RETURN(TSDB_CODE_FAILED);
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}
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newColData[len] = 0;
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int32_t ret = taosParseTime(newColData, timeVal, len, (int32_t)timePrec, tsDaylight);
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if (ret != TSDB_CODE_SUCCESS) {
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taosMemoryFree(newColData);
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return ret;
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TAOS_RETURN(ret);
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}
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taosMemoryFree(newColData);
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} else {
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return TSDB_CODE_FAILED;
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TAOS_RETURN(TSDB_CODE_FAILED);
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}
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return TSDB_CODE_SUCCESS;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
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}
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int32_t getDuration(int64_t val, char unit, int64_t* result, int32_t timePrecision) {
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int32_t code = TSDB_CODE_SUCCESS;
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switch (unit) {
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case 's':
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if (val > INT64_MAX / MILLISECOND_PER_SECOND) {
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return -1;
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TAOS_RETURN(TSDB_CODE_OUT_OF_RANGE);
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}
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(*result) = convertTimePrecision(val * MILLISECOND_PER_SECOND, TSDB_TIME_PRECISION_MILLI, timePrecision);
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break;
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case 'm':
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if (val > INT64_MAX / MILLISECOND_PER_MINUTE) {
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return -1;
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TAOS_RETURN(TSDB_CODE_OUT_OF_RANGE);
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}
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(*result) = convertTimePrecision(val * MILLISECOND_PER_MINUTE, TSDB_TIME_PRECISION_MILLI, timePrecision);
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break;
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case 'h':
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if (val > INT64_MAX / MILLISECOND_PER_MINUTE) {
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return -1;
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TAOS_RETURN(TSDB_CODE_OUT_OF_RANGE);
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}
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(*result) = convertTimePrecision(val * MILLISECOND_PER_HOUR, TSDB_TIME_PRECISION_MILLI, timePrecision);
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break;
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case 'd':
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if (val > INT64_MAX / MILLISECOND_PER_DAY) {
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return -1;
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TAOS_RETURN(TSDB_CODE_OUT_OF_RANGE);
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}
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(*result) = convertTimePrecision(val * MILLISECOND_PER_DAY, TSDB_TIME_PRECISION_MILLI, timePrecision);
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break;
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case 'w':
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if (val > INT64_MAX / MILLISECOND_PER_WEEK) {
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return -1;
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TAOS_RETURN(TSDB_CODE_OUT_OF_RANGE);
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}
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(*result) = convertTimePrecision(val * MILLISECOND_PER_WEEK, TSDB_TIME_PRECISION_MILLI, timePrecision);
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break;
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@ -623,10 +636,10 @@ int32_t getDuration(int64_t val, char unit, int64_t* result, int32_t timePrecisi
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(*result) = convertTimePrecision(val, TSDB_TIME_PRECISION_NANO, timePrecision);
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break;
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default: {
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return -1;
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||||
TAOS_RETURN(TSDB_CODE_OUT_OF_RANGE);
|
||||
}
|
||||
}
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return 0;
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TAOS_RETURN(TSDB_CODE_SUCCESS);
|
||||
}
|
||||
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||||
/*
|
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@ -645,36 +658,41 @@ int32_t getDuration(int64_t val, char unit, int64_t* result, int32_t timePrecisi
|
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*/
|
||||
int32_t parseAbsoluteDuration(const char* token, int32_t tokenlen, int64_t* duration, char* unit,
|
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int32_t timePrecision) {
|
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int32_t code = TSDB_CODE_SUCCESS;
|
||||
|
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errno = 0;
|
||||
char* endPtr = NULL;
|
||||
|
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/* get the basic numeric value */
|
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int64_t timestamp = taosStr2Int64(token, &endPtr, 10);
|
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if ((timestamp == 0 && token[0] != '0') || errno != 0) {
|
||||
return -1;
|
||||
TAOS_RETURN(TAOS_SYSTEM_ERROR(errno));
|
||||
}
|
||||
|
||||
/* natual month/year are not allowed in absolute duration */
|
||||
*unit = token[tokenlen - 1];
|
||||
if (*unit == 'n' || *unit == 'y') {
|
||||
return -1;
|
||||
TAOS_RETURN(TSDB_CODE_INVALID_PARA);
|
||||
}
|
||||
|
||||
return getDuration(timestamp, *unit, duration, timePrecision);
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}
|
||||
|
||||
int32_t parseNatualDuration(const char* token, int32_t tokenLen, int64_t* duration, char* unit, int32_t timePrecision, bool negativeAllow) {
|
||||
int32_t parseNatualDuration(const char* token, int32_t tokenLen, int64_t* duration, char* unit, int32_t timePrecision,
|
||||
bool negativeAllow) {
|
||||
int32_t code = TSDB_CODE_SUCCESS;
|
||||
|
||||
errno = 0;
|
||||
|
||||
/* get the basic numeric value */
|
||||
*duration = taosStr2Int64(token, NULL, 10);
|
||||
if ((*duration < 0 && !negativeAllow) || errno != 0) {
|
||||
return -1;
|
||||
TAOS_RETURN(TAOS_SYSTEM_ERROR(errno));
|
||||
}
|
||||
|
||||
*unit = token[tokenLen - 1];
|
||||
if (*unit == 'n' || *unit == 'y') {
|
||||
return 0;
|
||||
TAOS_RETURN(TSDB_CODE_SUCCESS);
|
||||
}
|
||||
if (isdigit(*unit)) {
|
||||
*unit = getPrecisionUnit(timePrecision);
|
||||
|
@ -683,9 +701,7 @@ int32_t parseNatualDuration(const char* token, int32_t tokenLen, int64_t* durati
|
|||
return getDuration(*duration, *unit, duration, timePrecision);
|
||||
}
|
||||
|
||||
static bool taosIsLeapYear(int32_t year) {
|
||||
return (year % 4 == 0 && (year % 100 != 0 || year % 400 == 0));
|
||||
}
|
||||
static bool taosIsLeapYear(int32_t year) { return (year % 4 == 0 && (year % 100 != 0 || year % 400 == 0)); }
|
||||
|
||||
int64_t taosTimeAdd(int64_t t, int64_t duration, char unit, int32_t precision) {
|
||||
if (duration == 0) {
|
||||
|
@ -900,7 +916,8 @@ int64_t taosTimeTruncate(int64_t ts, const SInterval* pInterval) {
|
|||
// used together with taosTimeTruncate. when offset is great than zero, slide-start/slide-end is the anchor point
|
||||
int64_t taosTimeGetIntervalEnd(int64_t intervalStart, const SInterval* pInterval) {
|
||||
if (pInterval->offset > 0) {
|
||||
int64_t slideStart = taosTimeAdd(intervalStart, -1 * pInterval->offset, pInterval->offsetUnit, pInterval->precision);
|
||||
int64_t slideStart =
|
||||
taosTimeAdd(intervalStart, -1 * pInterval->offset, pInterval->offsetUnit, pInterval->precision);
|
||||
int64_t slideEnd = taosTimeAdd(slideStart, pInterval->interval, pInterval->intervalUnit, pInterval->precision) - 1;
|
||||
int64_t result = taosTimeAdd(slideEnd, pInterval->offset, pInterval->offsetUnit, pInterval->precision);
|
||||
return result;
|
||||
|
@ -960,7 +977,9 @@ const char* fmtts(int64_t ts) {
|
|||
return buf;
|
||||
}
|
||||
|
||||
void taosFormatUtcTime(char* buf, int32_t bufLen, int64_t t, int32_t precision) {
|
||||
int32_t taosFormatUtcTime(char* buf, int32_t bufLen, int64_t t, int32_t precision) {
|
||||
int32_t code = TSDB_CODE_SUCCESS;
|
||||
|
||||
char ts[40] = {0};
|
||||
struct tm ptm;
|
||||
|
||||
|
@ -996,17 +1015,18 @@ void taosFormatUtcTime(char* buf, int32_t bufLen, int64_t t, int32_t precision)
|
|||
|
||||
default:
|
||||
fractionLen = 0;
|
||||
return;
|
||||
TAOS_RETURN(TSDB_CODE_INVALID_PARA);
|
||||
}
|
||||
|
||||
if (taosLocalTime(", &ptm, buf) == NULL) {
|
||||
return;
|
||||
TAOS_RETURN(TAOS_SYSTEM_ERROR(errno));
|
||||
}
|
||||
int32_t length = (int32_t)strftime(ts, 40, "%Y-%m-%dT%H:%M:%S", &ptm);
|
||||
length += snprintf(ts + length, fractionLen, format, mod);
|
||||
length += (int32_t)strftime(ts + length, 40 - length, "%z", &ptm);
|
||||
|
||||
tstrncpy(buf, ts, bufLen);
|
||||
TAOS_RETURN(TSDB_CODE_SUCCESS);
|
||||
}
|
||||
|
||||
int32_t taosTs2Tm(int64_t ts, int32_t precision, struct STm* tm) {
|
||||
|
@ -1923,8 +1943,8 @@ int32_t taosTs2Char(const char* format, SArray** formats, int64_t ts, int32_t pr
|
|||
return tm2char(*formats, &tm, out, outLen);
|
||||
}
|
||||
|
||||
int32_t taosChar2Ts(const char* format, SArray** formats, const char* tsStr, int64_t* ts, int32_t precision, char* errMsg,
|
||||
int32_t errMsgLen) {
|
||||
int32_t taosChar2Ts(const char* format, SArray** formats, const char* tsStr, int64_t* ts, int32_t precision,
|
||||
char* errMsg, int32_t errMsgLen) {
|
||||
const char* sErrPos;
|
||||
int32_t fErrIdx;
|
||||
if (!*formats) {
|
||||
|
@ -1989,7 +2009,8 @@ static int64_t UNIT_MATRIX[10][11] = { /* ns, us, ms, s, min, h,
|
|||
/*mon*/ {0, 0, 0, 0, 0, 0, 0, 0, 1, 12, 0},
|
||||
/*y*/ {0, 0, 0, 0, 0, 0, 0, 0, 12, 1, 0}};
|
||||
|
||||
static bool recursiveTsmaCheckRecursive(int64_t baseInterval, int8_t baseIdx, int64_t interval, int8_t idx, bool checkEq) {
|
||||
static bool recursiveTsmaCheckRecursive(int64_t baseInterval, int8_t baseIdx, int64_t interval, int8_t idx,
|
||||
bool checkEq) {
|
||||
if (UNIT_MATRIX[baseIdx][idx] == -1) return false;
|
||||
if (baseIdx == idx) {
|
||||
if (interval < baseInterval) return false;
|
||||
|
@ -2021,7 +2042,8 @@ static bool recursiveTsmaCheckRecursive(int64_t baseInterval, int8_t baseIdx, in
|
|||
return false;
|
||||
}
|
||||
|
||||
static bool recursiveTsmaCheckRecursiveReverse(int64_t baseInterval, int8_t baseIdx, int64_t interval, int8_t idx, bool checkEq) {
|
||||
static bool recursiveTsmaCheckRecursiveReverse(int64_t baseInterval, int8_t baseIdx, int64_t interval, int8_t idx,
|
||||
bool checkEq) {
|
||||
if (UNIT_MATRIX[baseIdx][idx] == -1) return false;
|
||||
|
||||
if (baseIdx == idx) {
|
||||
|
@ -2041,18 +2063,27 @@ static bool recursiveTsmaCheckRecursiveReverse(int64_t baseInterval, int8_t base
|
|||
/*
|
||||
* @breif check if tsma with param [interval], [unit] can create based on base tsma with baseInterval and baseUnit
|
||||
* @param baseInterval, baseUnit, interval/unit of base tsma
|
||||
* @param interval the tsma interval going to create. Not that if unit is not calander unit, then interval has already been
|
||||
* translated to TICKS of [precision]
|
||||
* @param interval the tsma interval going to create. Not that if unit is not calander unit, then interval has already
|
||||
* been translated to TICKS of [precision]
|
||||
* @param unit the tsma unit going to create
|
||||
* @param precision the precision of this db
|
||||
* @param checkEq pass true if same interval is not acceptable, false if acceptable.
|
||||
* @ret true the tsma can be created, else cannot
|
||||
* */
|
||||
bool checkRecursiveTsmaInterval(int64_t baseInterval, int8_t baseUnit, int64_t interval, int8_t unit, int8_t precision, bool checkEq) {
|
||||
bool checkRecursiveTsmaInterval(int64_t baseInterval, int8_t baseUnit, int64_t interval, int8_t unit, int8_t precision,
|
||||
bool checkEq) {
|
||||
bool baseIsCalendarDuration = IS_CALENDAR_TIME_DURATION(baseUnit);
|
||||
if (!baseIsCalendarDuration) baseInterval = convertTimeFromPrecisionToUnit(baseInterval, precision, baseUnit);
|
||||
if (!baseIsCalendarDuration) {
|
||||
if (TSDB_CODE_SUCCESS != convertTimeFromPrecisionToUnit(baseInterval, precision, baseUnit, &baseInterval)) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
bool isCalendarDuration = IS_CALENDAR_TIME_DURATION(unit);
|
||||
if (!isCalendarDuration) interval = convertTimeFromPrecisionToUnit(interval, precision, unit);
|
||||
if (!isCalendarDuration) {
|
||||
if (TSDB_CODE_SUCCESS != convertTimeFromPrecisionToUnit(interval, precision, unit, &interval)) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
bool needCheckEq = baseIsCalendarDuration == isCalendarDuration && checkEq;
|
||||
|
||||
|
|
|
@ -616,7 +616,12 @@ static int32_t mndCreateSma(SMnode *pMnode, SRpcMsg *pReq, SMCreateSmaReq *pCrea
|
|||
|
||||
// check the maxDelay
|
||||
if (streamObj.conf.triggerParam < TSDB_MIN_ROLLUP_MAX_DELAY) {
|
||||
int64_t msInterval = convertTimeFromPrecisionToUnit(pCreate->interval, pDb->cfg.precision, TIME_UNIT_MILLISECOND);
|
||||
int64_t msInterval = -1;
|
||||
int32_t code = convertTimeFromPrecisionToUnit(pCreate->interval, pDb->cfg.precision, TIME_UNIT_MILLISECOND, &msInterval);
|
||||
if (TSDB_CODE_SUCCESS != code) {
|
||||
mError("sma:%s, failed to create since convert time failed: %s", smaObj.name, tstrerror(code));
|
||||
return code;
|
||||
}
|
||||
streamObj.conf.triggerParam = msInterval > TSDB_MIN_ROLLUP_MAX_DELAY ? msInterval : TSDB_MIN_ROLLUP_MAX_DELAY;
|
||||
}
|
||||
if (streamObj.conf.triggerParam > TSDB_MAX_ROLLUP_MAX_DELAY) {
|
||||
|
|
|
@ -23,7 +23,9 @@ static int32_t rsmaRestore(SSma *pSma);
|
|||
#define SMA_SET_KEEP_CFG(v, l) \
|
||||
do { \
|
||||
SRetention *r = &pCfg->retentions[l]; \
|
||||
pKeepCfg->keep2 = convertTimeFromPrecisionToUnit(r->keep, pCfg->precision, TIME_UNIT_MINUTE); \
|
||||
int64_t keep = -1; \
|
||||
convertTimeFromPrecisionToUnit(r->keep, pCfg->precision, TIME_UNIT_MINUTE, &keep); \
|
||||
pKeepCfg->keep2 = (int32_t)keep; \
|
||||
pKeepCfg->keep0 = pKeepCfg->keep2; \
|
||||
pKeepCfg->keep1 = pKeepCfg->keep2; \
|
||||
pKeepCfg->days = smaEvalDays(v, pCfg->retentions, l, pCfg->precision, pCfg->days); \
|
||||
|
@ -60,8 +62,12 @@ static int32_t rsmaRestore(SSma *pSma);
|
|||
* @return int32_t
|
||||
*/
|
||||
static int32_t smaEvalDays(SVnode *pVnode, SRetention *r, int8_t level, int8_t precision, int32_t duration) {
|
||||
int32_t freqDuration = convertTimeFromPrecisionToUnit((r + TSDB_RETENTION_L0)->freq, precision, TIME_UNIT_MINUTE);
|
||||
int32_t keepDuration = convertTimeFromPrecisionToUnit((r + TSDB_RETENTION_L0)->keep, precision, TIME_UNIT_MINUTE);
|
||||
int32_t code = TSDB_CODE_SUCCESS;
|
||||
|
||||
int64_t freqDuration = -1;
|
||||
int64_t keepDuration = -1;
|
||||
code = convertTimeFromPrecisionToUnit((r + TSDB_RETENTION_L0)->freq, precision, TIME_UNIT_MINUTE, &freqDuration);
|
||||
code = convertTimeFromPrecisionToUnit((r + TSDB_RETENTION_L0)->keep, precision, TIME_UNIT_MINUTE, &keepDuration);
|
||||
int32_t days = duration; // min
|
||||
|
||||
if (days < freqDuration) {
|
||||
|
@ -76,8 +82,8 @@ static int32_t smaEvalDays(SVnode *pVnode, SRetention *r, int8_t level, int8_t p
|
|||
goto _exit;
|
||||
}
|
||||
|
||||
freqDuration = convertTimeFromPrecisionToUnit((r + level)->freq, precision, TIME_UNIT_MINUTE);
|
||||
keepDuration = convertTimeFromPrecisionToUnit((r + level)->keep, precision, TIME_UNIT_MINUTE);
|
||||
code = convertTimeFromPrecisionToUnit((r + level)->freq, precision, TIME_UNIT_MINUTE, &freqDuration);
|
||||
code = convertTimeFromPrecisionToUnit((r + level)->keep, precision, TIME_UNIT_MINUTE, &keepDuration);
|
||||
|
||||
int32_t nFreqTimes = (r + level)->freq / (60 * 1000); // use 60s for freq of 1st level
|
||||
days *= (nFreqTimes > 1 ? nFreqTimes : 1);
|
||||
|
|
|
@ -335,8 +335,9 @@ static int32_t tdSetRSmaInfoItemParams(SSma *pSma, SRSmaParam *param, SRSmaStat
|
|||
}
|
||||
|
||||
if (param->maxdelay[idx] < TSDB_MIN_ROLLUP_MAX_DELAY) {
|
||||
int64_t msInterval =
|
||||
convertTimeFromPrecisionToUnit(pRetention[idx + 1].freq, pTsdbCfg->precision, TIME_UNIT_MILLISECOND);
|
||||
int64_t msInterval = -1;
|
||||
TAOS_CHECK_RETURN(convertTimeFromPrecisionToUnit(pRetention[idx + 1].freq, pTsdbCfg->precision,
|
||||
TIME_UNIT_MILLISECOND, &msInterval));
|
||||
pItem->maxDelay = (int32_t)msInterval;
|
||||
} else {
|
||||
pItem->maxDelay = (int32_t)param->maxdelay[idx];
|
||||
|
|
|
@ -69,8 +69,9 @@ static int32_t tdProcessTSmaGetDaysImpl(SVnodeCfg *pCfg, void *pCont, uint32_t c
|
|||
}
|
||||
|
||||
STsdbCfg *pTsdbCfg = &pCfg->tsdbCfg;
|
||||
int64_t sInterval = convertTimeFromPrecisionToUnit(tsma.interval, pTsdbCfg->precision, TIME_UNIT_SECOND);
|
||||
if (sInterval <= 0) {
|
||||
int64_t sInterval = -1;
|
||||
code = convertTimeFromPrecisionToUnit(tsma.interval, pTsdbCfg->precision, TIME_UNIT_SECOND, &sInterval);
|
||||
if (TSDB_CODE_SUCCESS != code || 0 == sInterval) {
|
||||
*days = pTsdbCfg->days;
|
||||
goto _exit;
|
||||
}
|
||||
|
@ -78,7 +79,11 @@ static int32_t tdProcessTSmaGetDaysImpl(SVnodeCfg *pCfg, void *pCont, uint32_t c
|
|||
if (records >= SMA_STORAGE_SPLIT_FACTOR) {
|
||||
*days = pTsdbCfg->days;
|
||||
} else {
|
||||
int64_t mInterval = convertTimeFromPrecisionToUnit(tsma.interval, pTsdbCfg->precision, TIME_UNIT_MINUTE);
|
||||
int64_t mInterval = -1;
|
||||
code = convertTimeFromPrecisionToUnit(tsma.interval, pTsdbCfg->precision, TIME_UNIT_MINUTE, &mInterval);
|
||||
if (TSDB_CODE_SUCCESS != code) {
|
||||
goto _exit;
|
||||
}
|
||||
int64_t daysPerFile = mInterval * SMA_STORAGE_MINUTES_DAY * 2;
|
||||
|
||||
if (daysPerFile > SMA_STORAGE_MINUTES_MAX) {
|
||||
|
|
|
@ -176,7 +176,14 @@ typedef struct SExplainCtx {
|
|||
#define EXPLAIN_JOIN_STRING(_type) ((JOIN_TYPE_INNER == _type) ? "Inner join" : "Join")
|
||||
#define EXPLAIN_MERGE_MODE_STRING(_mode) ((_mode) == MERGE_TYPE_SORT ? "sort" : ((_mode) == MERGE_TYPE_NON_SORT ? "merge" : "column"))
|
||||
|
||||
#define INVERAL_TIME_FROM_PRECISION_TO_UNIT(_t, _u, _p) (((_u) == 'n' || (_u) == 'y') ? (_t) : (convertTimeFromPrecisionToUnit(_t, _p, _u)))
|
||||
#define INVERAL_TIME_FROM_PRECISION_TO_UNIT(_t, _u, _p, _r) \
|
||||
do { \
|
||||
if ((_u) == 'n' || (_u) == 'y') { \
|
||||
_r = (_t); \
|
||||
} else { \
|
||||
code = convertTimeFromPrecisionToUnit(_t, _p, _u, &_r); \
|
||||
} \
|
||||
} while(0)
|
||||
|
||||
#define EXPLAIN_ROW_NEW(level, ...) \
|
||||
do { \
|
||||
|
|
|
@ -991,10 +991,17 @@ int32_t qExplainResNodeToRowsImpl(SExplainResNode *pResNode, SExplainCtx *ctx, i
|
|||
EXPLAIN_ROW_END();
|
||||
QRY_ERR_RET(qExplainResAppendRow(ctx, tbuf, tlen, level + 1));
|
||||
uint8_t precision = qExplainGetIntervalPrecision(pIntNode);
|
||||
int64_t time1 = -1;
|
||||
int64_t time2 = -1;
|
||||
int32_t code = TSDB_CODE_SUCCESS;
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->interval, pIntNode->intervalUnit, precision, time1);
|
||||
QRY_ERR_RET(code);
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->sliding, pIntNode->slidingUnit, precision, time2);
|
||||
QRY_ERR_RET(code);
|
||||
EXPLAIN_ROW_NEW(level + 1, EXPLAIN_TIME_WINDOWS_FORMAT,
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->interval, pIntNode->intervalUnit, precision),
|
||||
time1,
|
||||
pIntNode->intervalUnit, pIntNode->offset, getPrecisionUnit(precision),
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->sliding, pIntNode->slidingUnit, precision),
|
||||
time2,
|
||||
pIntNode->slidingUnit);
|
||||
EXPLAIN_ROW_END();
|
||||
QRY_ERR_RET(qExplainResAppendRow(ctx, tbuf, tlen, level + 1));
|
||||
|
@ -1043,10 +1050,17 @@ int32_t qExplainResNodeToRowsImpl(SExplainResNode *pResNode, SExplainCtx *ctx, i
|
|||
EXPLAIN_ROW_END();
|
||||
QRY_ERR_RET(qExplainResAppendRow(ctx, tbuf, tlen, level + 1));
|
||||
uint8_t precision = qExplainGetIntervalPrecision(pIntNode);
|
||||
int64_t time1 = -1;
|
||||
int64_t time2 = -1;
|
||||
int32_t code = TSDB_CODE_SUCCESS;
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->interval, pIntNode->intervalUnit, precision, time1);
|
||||
QRY_ERR_RET(code);
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->sliding, pIntNode->slidingUnit, precision, time2);
|
||||
QRY_ERR_RET(code);
|
||||
EXPLAIN_ROW_NEW(level + 1, EXPLAIN_TIME_WINDOWS_FORMAT,
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->interval, pIntNode->intervalUnit, precision),
|
||||
time1,
|
||||
pIntNode->intervalUnit, pIntNode->offset, getPrecisionUnit(precision),
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->sliding, pIntNode->slidingUnit, precision),
|
||||
time2,
|
||||
pIntNode->slidingUnit);
|
||||
EXPLAIN_ROW_END();
|
||||
QRY_ERR_RET(qExplainResAppendRow(ctx, tbuf, tlen, level + 1));
|
||||
|
@ -1563,10 +1577,17 @@ int32_t qExplainResNodeToRowsImpl(SExplainResNode *pResNode, SExplainCtx *ctx, i
|
|||
EXPLAIN_ROW_END();
|
||||
QRY_ERR_RET(qExplainResAppendRow(ctx, tbuf, tlen, level + 1));
|
||||
uint8_t precision = qExplainGetIntervalPrecision(pIntNode);
|
||||
int64_t time1 = -1;
|
||||
int64_t time2 = -1;
|
||||
int32_t code = TSDB_CODE_SUCCESS;
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->interval, pIntNode->intervalUnit, precision, time1);
|
||||
QRY_ERR_RET(code);
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->sliding, pIntNode->slidingUnit, precision, time2);
|
||||
QRY_ERR_RET(code);
|
||||
EXPLAIN_ROW_NEW(level + 1, EXPLAIN_TIME_WINDOWS_FORMAT,
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->interval, pIntNode->intervalUnit, precision),
|
||||
time1,
|
||||
pIntNode->intervalUnit, pIntNode->offset, getPrecisionUnit(precision),
|
||||
INVERAL_TIME_FROM_PRECISION_TO_UNIT(pIntNode->sliding, pIntNode->slidingUnit, precision),
|
||||
time2,
|
||||
pIntNode->slidingUnit);
|
||||
EXPLAIN_ROW_END();
|
||||
QRY_ERR_RET(qExplainResAppendRow(ctx, tbuf, tlen, level + 1));
|
||||
|
|
|
@ -180,7 +180,7 @@ int32_t executeGeomFromTextFunc(SColumnInfoData *pInputData, int32_t i, SColumnI
|
|||
goto _exit;
|
||||
}
|
||||
|
||||
colDataSetVal(pOutputData, i, output, (output == NULL));
|
||||
code = colDataSetVal(pOutputData, i, output, (output == NULL));
|
||||
|
||||
_exit:
|
||||
if (output) {
|
||||
|
@ -200,7 +200,7 @@ int32_t executeAsTextFunc(SColumnInfoData *pInputData, int32_t i, SColumnInfoDat
|
|||
goto _exit;
|
||||
}
|
||||
|
||||
colDataSetVal(pOutputData, i, output, (output == NULL));
|
||||
code = colDataSetVal(pOutputData, i, output, (output == NULL));
|
||||
|
||||
_exit:
|
||||
if (output) {
|
||||
|
@ -228,7 +228,7 @@ int32_t executeRelationFunc(const GEOSGeometry *geom1, const GEOSPreparedGeometr
|
|||
}
|
||||
}
|
||||
|
||||
colDataSetVal(pOutputData, i, &res, (res==-1));
|
||||
code = colDataSetVal(pOutputData, i, &res, (res==-1));
|
||||
|
||||
return code;
|
||||
}
|
||||
|
|
|
@ -86,8 +86,8 @@ _exit:
|
|||
return code;
|
||||
}
|
||||
|
||||
static int initWktRegex(pcre2_code **ppRegex, pcre2_match_data **ppMatchData) {
|
||||
int ret = 0;
|
||||
static int32_t initWktRegex(pcre2_code **ppRegex, pcre2_match_data **ppMatchData) {
|
||||
int32_t code = 0;
|
||||
char *wktPatternWithSpace = taosMemoryCalloc(4, 1024);
|
||||
sprintf(
|
||||
wktPatternWithSpace,
|
||||
|
@ -142,9 +142,9 @@ static int initWktRegex(pcre2_code **ppRegex, pcre2_match_data **ppMatchData) {
|
|||
"*)(([-+]?[0-9]+\\.?[0-9]*)|([-+]?[0-9]*\\.?[0-9]+))(e[-+]?[0-9]+)?){1,3}( *))*( *)\\)))( *))*( *)\\)))( *))*( "
|
||||
"*)\\)))|(GEOCOLLECTION\\((?R)(( *)(,)( *)(?R))*( *)\\))( *)$");
|
||||
|
||||
ret = doRegComp(ppRegex, ppMatchData, wktPatternWithSpace);
|
||||
code = doRegComp(ppRegex, ppMatchData, wktPatternWithSpace);
|
||||
taosMemoryFree(wktPatternWithSpace);
|
||||
return ret;
|
||||
return code;
|
||||
}
|
||||
|
||||
int32_t initCtxGeomFromText() {
|
||||
|
|
|
@ -5233,7 +5233,8 @@ static int32_t translateFill(STranslateContext* pCxt, SSelectStmt* pSelect, SInt
|
|||
}
|
||||
|
||||
static int64_t getMonthsFromTimeVal(int64_t val, int32_t fromPrecision, char unit) {
|
||||
int64_t days = convertTimeFromPrecisionToUnit(val, fromPrecision, 'd');
|
||||
int64_t days = -1;
|
||||
convertTimeFromPrecisionToUnit(val, fromPrecision, 'd', &days);
|
||||
switch (unit) {
|
||||
case 'b':
|
||||
case 'u':
|
||||
|
@ -8232,7 +8233,8 @@ static SNode* makeIntervalVal(SRetention* pRetension, int8_t precision) {
|
|||
if (NULL == pVal) {
|
||||
return NULL;
|
||||
}
|
||||
int64_t timeVal = convertTimeFromPrecisionToUnit(pRetension->freq, precision, pRetension->freqUnit);
|
||||
int64_t timeVal = -1;
|
||||
convertTimeFromPrecisionToUnit(pRetension->freq, precision, pRetension->freqUnit, &timeVal);
|
||||
char buf[20] = {0};
|
||||
int32_t len = snprintf(buf, sizeof(buf), "%" PRId64 "%c", timeVal, pRetension->freqUnit);
|
||||
pVal->literal = strndup(buf, len);
|
||||
|
|
Loading…
Reference in New Issue