#include #include #include #include #include #include #include #include /* we start with the numeric functions */ int decadd(Numeric *arg1, Numeric *arg2, Numeric *sum) { Numeric *temp_sum = malloc(sizeof(Numeric)) ; int i; if (temp_sum == NULL) return -1211; i = PGTYPESnumeric_add(arg1, arg2, temp_sum); if (i == 0) /* No error */ { if (PGTYPESnumeric_copy(temp_sum, sum) !=0) return -1211; free(temp_sum); return 0; } else { free(temp_sum); if (errno == PGTYPES_NUM_OVERFLOW) return -1200; } return -1201; } int deccmp(Numeric *arg1, Numeric *arg2) { int i = PGTYPESnumeric_cmp(arg1, arg2); return (i); } void deccopy(Numeric *src, Numeric *target) { PGTYPESnumeric_copy(src, target); } static char * strndup(const char *str, size_t len) { int real_len = strlen(str); int use_len = (real_len > len) ? len : real_len; char *new = malloc(use_len + 1); if (new) { memcpy(new, str, use_len); new[use_len] = '\0'; } else errno = ENOMEM; return new; } int deccvasc(char *cp, int len, Numeric *np) { char *str = strndup(cp, len); /* Numeric_in always converts the complete string */ int ret = 0; Numeric *result; if (!str) ret = -1201; else { result = PGTYPESnumeric_from_asc(str, NULL); if (!result) { switch (errno) { case PGTYPES_NUM_OVERFLOW: ret = -1200; break; case PGTYPES_NUM_BAD_NUMERIC: ret = -1213; break; default: ret = -1216; break; } } else { if (PGTYPESnumeric_copy(result, np) !=0) ret = -1211; free(result); } } return ret; } int deccvdbl(double dbl, Numeric *np) { return(PGTYPESnumeric_from_double(dbl, np)); } int deccvint(int in, Numeric *np) { return(PGTYPESnumeric_from_int(in, np)); } int deccvlong(long lng, Numeric *np) { return(PGTYPESnumeric_from_long(lng, np)); } int decdiv(Numeric *n1, Numeric *n2, Numeric *n3) { Numeric *temp = malloc(sizeof(Numeric)); int i, ret = 0; if (temp == NULL) return -1211; i = PGTYPESnumeric_div(n1, n2, temp); if (i != 0) switch (errno) { case PGTYPES_NUM_DIVIDE_ZERO: ret = -1202; break; case PGTYPES_NUM_OVERFLOW: ret = -1200; break; default: ret = -1201; break; } else if (PGTYPESnumeric_copy(temp, n3) !=0) ret = -1211; free(temp); return ret; } int decmul(Numeric *n1, Numeric *n2, Numeric *n3) { Numeric *temp = malloc(sizeof(Numeric)); int i, ret = 0; if (temp == NULL) return -1211; i = PGTYPESnumeric_mul(n1, n2, temp); if (i != 0) switch (errno) { case PGTYPES_NUM_OVERFLOW: ret = -1200; break; default: ret = -1201; break; } else if (PGTYPESnumeric_copy(temp, n3) !=0) ret = -1211; free(temp); return ret; } int decsub(Numeric *n1, Numeric *n2, Numeric *n3) { Numeric *temp = malloc(sizeof(Numeric)); int i, ret = 0; if (temp == NULL) return -1211; i = PGTYPESnumeric_sub(n1, n2, temp); if (i != 0) switch (errno) { case PGTYPES_NUM_OVERFLOW: ret = -1200; break; default: ret = -1201; break; } else if (PGTYPESnumeric_copy(temp, n3) !=0) ret = -1211; free(temp); return ret; } int dectoasc(Numeric *np, char *cp, int len, int right) { char *str; if (right >= 0) str = PGTYPESnumeric_to_asc(np, right); else str = PGTYPESnumeric_to_asc(np, 0); if (!str) return -1; /* TODO: have to take care of len here and create exponatial notion if necessary */ strncpy(cp, str, len); free (str); return 0; } int dectodbl(Numeric *np, double *dblp) { return(PGTYPESnumeric_to_double(np, dblp)); } int dectoint(Numeric *np, int *ip) { int ret = PGTYPESnumeric_to_int(np, ip); if (ret == PGTYPES_NUM_OVERFLOW) ret = -1200; return ret; } int dectolong(Numeric *np, long *lngp) { int ret = PGTYPESnumeric_to_long(np, lngp); if (ret == PGTYPES_NUM_OVERFLOW) ret = -1200; return ret; } /* Now the date functions */ int rdatestr (Date d, char *str) { char *tmp = PGTYPESdate_to_asc(d); if (!tmp) return -1210; /* move to user allocated buffer */ strcpy(tmp, str); free(str); return 0; } int rstrdate (char *str, Date *d) { Date dat = PGTYPESdate_from_asc(str, NULL); if (errno != PGTYPES_DATE_BAD_DATE && dat == 0) return -1218; *d=dat; return 0; } void rtoday (Date *d) { PGTYPESdate_today(d); return; } int rjulmdy (Date d, short mdy[3]) { PGTYPESdate_julmdy(d, (int *)mdy); return 0; } int rdefmtdate (Date *d, char *fmt, char *str) { /* TODO: take care of DBCENTURY environment variable */ /* PGSQL functions allow all centuries */ if (PGTYPESdate_defmt_asc(d, fmt, str) == 0) return 0; switch (errno) { case PGTYPES_DATE_ERR_ENOSHORTDATE: return -1209; case PGTYPES_DATE_ERR_EARGS: case PGTYPES_DATE_ERR_ENOTDMY: return -1212; case PGTYPES_DATE_BAD_DAY: return -1204; case PGTYPES_DATE_BAD_MONTH: return -1205; default: return -1206; } } int rfmtdate (Date d, char *fmt, char *str) { if (PGTYPESdate_fmt_asc(d, fmt, str) == 0) return 0; if (errno == ENOMEM) return -1211; return -1210; } int rmdyjul (short mdy[3], Date *d) { PGTYPESdate_mdyjul((int *)mdy, d); return 0; } /* And the datetime stuff */ void dtcurrent (Timestamp *ts) { PGTYPEStimestamp_current (ts); } int dtcvasc (char *str, Timestamp *ts) { Timestamp ts_tmp; int i; char **endptr = &str; ts_tmp = PGTYPEStimestamp_from_asc(str, endptr); i = errno; if (i) { return i; } if (**endptr) { /* extra characters exist at the end */ return -1264; } /* everything went fine */ *ts = ts_tmp; return 0; } int dtsub (Timestamp *ts1, Timestamp *ts2, Interval *iv) { return PGTYPEStimestamp_sub(ts1, ts2, iv); } int dttoasc (Timestamp *ts, char *output) { return 0; } int dttofmtasc (Timestamp *ts, char *output, int str_len, char *fmtstr) { return PGTYPEStimestamp_fmt_asc(ts, output, str_len, fmtstr); } int intoasc(Interval *i, char *str) { str = PGTYPESinterval_to_asc(i); if (!str) return -errno; return 0; } /*************************************************************************** rfmt.c - description ------------------- begin : Wed Apr 2 2003 copyright : (C) 2003 by Carsten Wolff email : carsten.wolff@credativ.de ***************************************************************************/ static struct { long val; int maxdigits; int digits; int remaining; char sign; char *val_string; } value; /** * initialize the struct, wich holds the different forms * of the long value */ static void initValue(long lng_val) { int i, div, dig; char tmp[2] = " "; // set some obvious things value.val = lng_val >= 0 ? lng_val : lng_val * (-1); value.sign = lng_val >= 0 ? '+' : '-'; value.maxdigits = log10(2)*(8*sizeof(long)-1); // determine the number of digits for(i=1; i <= value.maxdigits; i++) { if ((int)(value.val / pow(10, i)) != 0) { value.digits = i+1; } } value.remaining = value.digits; // convert the long to string value.val_string = (char *)malloc(value.digits + 1); for(i=value.digits; i > 0; i--) { div = pow(10,i); dig = (value.val % div) / (div / 10); tmp[0] = (char)(dig + 48); strcat(value.val_string, tmp); } // safety-net value.val_string[value.digits] = '\0'; // clean up free(tmp); } /* return the position oft the right-most dot in some string */ static int getRightMostDot(char* str) { size_t len = strlen(str); int i,j; j=0; for(i=len-1; i >= 0; i--) { if (str[i] == '.') { return len-j-1; } j++; } return -1; } /* And finally some misc functions */ int rfmtlong(long lng_val, char *fmt, char *outbuf) { size_t fmt_len = strlen(fmt); size_t temp_len; int i, j, k, dotpos; int leftalign = 0, blank = 0, sign = 0, entity = 0, entitydone = 0, signdone = 0, brackets_ok = 0; char temp[fmt_len+1], tmp[2] = " ", lastfmt = ' ', fmtchar = ' '; // put all info about the long in a struct initValue(lng_val); // '<' is the only format, where we have to align left if (strchr(fmt, (int)'<')) { leftalign = 1; } // '(' requires ')' if (strchr(fmt, (int)'(') && strchr(fmt, (int)')')) { brackets_ok = 1; } // get position of the right-most dot in the format-string // and fill the temp-string wit '0's up to there. dotpos = getRightMostDot(fmt); // start to parse the formatstring temp[0] = '\0'; j = 0; // position in temp k = value.digits - 1; // position in the value_string for(i=fmt_len-1, j=0; i>=0; i--, j++) { // qualify, where we are in the value_string if (k < 0) { if (leftalign) { // can't use strncat(,,0) here, Solaris would freek out temp[j] = '\0'; break; } blank = 1; if (k == -2) { entity = 1; } else if (k == -1) { sign = 1; } } // if we're right side of the right-most dot, print '0' if (dotpos >= 0 && dotpos <= i) { if (dotpos < i) { if (fmt[i] == ')') tmp[0] = value.sign == '-' ? ')' : ' '; else tmp[0] = '0'; } else { tmp[0] = '.'; } strcat(temp, tmp); continue; } // the ',' needs special attention, if it is in the blank area if (blank && fmt[i] == ',') fmtchar = lastfmt; else fmtchar = fmt[i]; // analyse this format-char switch(fmtchar) { case ',': tmp[0] = ','; k++; break; case '*': if (blank) tmp[0] = '*'; else tmp[0] = value.val_string[k]; break; case '&': if (blank) tmp[0] = '0'; else tmp[0] = value.val_string[k]; break; case '#': if (blank) tmp[0] = ' '; else tmp[0] = value.val_string[k]; break; case '<': tmp[0] = value.val_string[k]; break; case '-': if (sign && value.sign == '-' && !signdone) { tmp[0] = '-'; signdone = 1; } else if (blank) tmp[0] = ' '; else tmp[0] = value.val_string[k]; break; case '+': if (sign && !signdone) { tmp[0] = value.sign; signdone = 1; } else if (blank) tmp[0] = ' '; else tmp[0] = value.val_string[k]; break; case '(': if (sign && brackets_ok && value.sign == '-') tmp[0] = '('; else if (blank) tmp[0] = ' '; else tmp[0] = value.val_string[k]; break; case ')': if (brackets_ok && value.sign == '-') tmp[0] = ')'; else tmp[0] = ' '; break; case '$': if (blank && !entitydone) { tmp[0] = '$'; entitydone = 1; } else if (blank) tmp[0] = ' '; else tmp[0] = value.val_string[k]; break; default: tmp[0] = fmt[i]; } strcat(temp, tmp); lastfmt = fmt[i]; k--; } // safety-net temp[fmt_len] = '\0'; // reverse the temp-string and put it into the outbuf temp_len = strlen(temp); outbuf[0] = '\0'; for(i=temp_len-1; i>=0; i--) { tmp[0] = temp[i]; strcat(outbuf, tmp); } outbuf[temp_len] = '\0'; // cleaning up free(tmp); free(value.val_string); return 0; } void rupshift(char *str) { for (; *str != '\0'; str++) if (islower(*str)) *str = toupper(*str); return; } int byleng(char *str, int len) { for (len--; str[len] && str[len] == ' '; len--); return (len+1); } void ldchar(char *src, int len, char *dest) { memmove(dest, src, len); dest[len]=0; } int rgetmsg(int msgnum, char *s, int maxsize) { return 0; } int risnull(int vtype, char *pcvar) { return 0; } int rsetnull(int vtype, char *pcvar) { return 0; } int rtypalign(int offset, int type) { return 0; } int rtypmsize(int type, int len) { return 0; } int rtypwidth(int sqltype, int sqllen) { return 0; } int dtcvfmtasc (char *inbuf, char *fmtstr, dtime_t *dtvalue) { return 0; }