480 lines
8.8 KiB
C
480 lines
8.8 KiB
C
/*-------------------------------------------------------------------------
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*
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* numutils.c
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* utility functions for I/O of built-in numeric types.
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*
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* integer: pg_itoa, pg_ltoa
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* floating point: ftoa, atof1
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*
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* Portions Copyright (c) 1996-2001, PostgreSQL Global Development Group
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* Portions Copyright (c) 1994, Regents of the University of California
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*
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*
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* IDENTIFICATION
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* $Header: /cvsroot/pgsql/src/backend/utils/adt/numutils.c,v 1.48 2001/11/05 17:46:29 momjian Exp $
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*
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*-------------------------------------------------------------------------
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*/
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#include "postgres.h"
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#include <errno.h>
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#include <math.h>
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#include <limits.h>
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#include "utils/builtins.h"
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#ifndef INT_MAX
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#define INT_MAX (0x7FFFFFFFL)
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#endif
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#ifndef INT_MIN
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#define INT_MIN (-INT_MAX-1)
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#endif
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#ifndef SHRT_MAX
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#define SHRT_MAX (0x7FFF)
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#endif
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#ifndef SHRT_MIN
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#define SHRT_MIN (-SHRT_MAX-1)
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#endif
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#ifndef SCHAR_MAX
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#define SCHAR_MAX (0x7F)
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#endif
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#ifndef SCHAR_MIN
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#define SCHAR_MIN (-SCHAR_MAX-1)
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#endif
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int32
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pg_atoi(char *s, int size, int c)
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{
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long l = 0;
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char *badp = (char *) NULL;
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Assert(s);
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errno = 0;
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/*
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* Some versions of strtol treat the empty string as an error. This
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* code will explicitly return 0 for an empty string.
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*/
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if (s == (char *) NULL)
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elog(ERROR, "pg_atoi: NULL pointer!");
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else if (*s == 0)
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l = (long) 0;
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else
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l = strtol(s, &badp, 10);
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/*
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* strtol() normally only sets ERANGE. On some systems it also may
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* set EINVAL, which simply means it couldn't parse the input string.
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* This is handled by the second "if" consistent across platforms.
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*/
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if (errno && errno != EINVAL)
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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if (badp && *badp && (*badp != c))
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elog(ERROR, "pg_atoi: error in \"%s\": can\'t parse \"%s\"", s, badp);
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switch (size)
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{
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case sizeof(int32):
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#if defined(HAVE_LONG_INT_64)
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/* won't get ERANGE on these with 64-bit longs... */
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if (l < INT_MIN)
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{
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errno = ERANGE;
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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}
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if (l > INT_MAX)
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{
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errno = ERANGE;
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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}
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#endif /* HAVE_LONG_INT_64 */
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break;
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case sizeof(int16):
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if (l < SHRT_MIN)
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{
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errno = ERANGE;
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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}
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if (l > SHRT_MAX)
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{
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errno = ERANGE;
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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}
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break;
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case sizeof(int8):
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if (l < SCHAR_MIN)
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{
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errno = ERANGE;
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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}
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if (l > SCHAR_MAX)
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{
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errno = ERANGE;
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elog(ERROR, "pg_atoi: error reading \"%s\": %m", s);
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}
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break;
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default:
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elog(ERROR, "pg_atoi: invalid result size: %d", size);
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}
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return (int32) l;
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}
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/*
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* pg_itoa - converts a short int to its string represention
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*
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* Note:
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* previously based on ~ingres/source/gutil/atoi.c
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* now uses vendor's sprintf conversion
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*/
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void
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pg_itoa(int16 i, char *a)
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{
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sprintf(a, "%hd", (short) i);
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}
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/*
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* pg_ltoa - converts a long int to its string represention
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*
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* Note:
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* previously based on ~ingres/source/gutil/atoi.c
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* now uses vendor's sprintf conversion
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*/
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void
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pg_ltoa(int32 l, char *a)
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{
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sprintf(a, "%d", l);
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}
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/*
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** ftoa - FLOATING POINT TO ASCII CONVERSION
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**
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** CODE derived from ingres, ~ingres/source/gutil/ftoa.c
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**
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** 'Value' is converted to an ascii character string and stored
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** into 'ascii'. Ascii should have room for at least 'width' + 1
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** characters. 'Width' is the width of the output field (max).
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** 'Prec' is the number of characters to put after the decimal
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** point. The format of the output string is controlled by
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** 'format'.
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**
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** 'Format' can be:
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** e or E: "E" format output
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** f or F: "F" format output
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** g or G: "F" format output if it will fit, otherwise
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** use "E" format.
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** n or N: same as G, but decimal points will not always
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** be aligned.
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**
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** If 'format' is upper case, the "E" comes out in upper case;
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** otherwise it comes out in lower case.
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**
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** When the field width is not big enough, it fills the field with
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** stars ("*****") and returns zero. Normal return is the width
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** of the output field (sometimes shorter than 'width').
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*/
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#ifdef NOT_USED
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int
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ftoa(double value, char *ascii, int width, int prec1, char format)
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{
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#ifndef HAVE_FCVT
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char out[256];
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char fmt[256];
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int ret;
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sprintf(fmt, "%%%d.%d%c", width, prec1, format);
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sprintf(out, fmt, value);
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if ((ret = strlen(out)) > width)
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{
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MemSet(ascii, '*', width - 2);
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ascii[width] = 0;
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return 0;
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}
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strcpy(ascii, out);
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return ret;
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#else
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auto int expon;
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auto int sign;
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int avail = 0;
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char *a = NULL;
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char *p = NULL;
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char mode;
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int lowercase;
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int prec;
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/* extern char *ecvt(), *fcvt();*/
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prec = prec1;
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mode = format;
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lowercase = 'a' - 'A';
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if (mode >= 'a')
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mode -= 'a' - 'A';
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else
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lowercase = 0;
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if (mode != 'E')
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{
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/* try 'F' style output */
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p = fcvt(value, prec, &expon, &sign);
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avail = width;
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a = ascii;
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/* output sign */
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if (sign)
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{
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avail--;
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*a++ = '-';
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}
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/* output '0' before the decimal point */
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if (expon <= 0)
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{
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*a++ = '0';
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avail--;
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}
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/* compute space length left after dec pt and fraction */
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avail -= prec + 1;
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if (mode == 'G')
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avail -= 4;
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if (avail >= expon)
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{
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/* it fits. output */
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while (expon > 0)
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{
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/* output left of dp */
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expon--;
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if (*p)
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*a++ = *p++;
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else
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*a++ = '0';
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}
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/* output fraction (right of dec pt) */
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avail = expon;
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goto frac_out;
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}
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/* won't fit; let's hope for G format */
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}
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if (mode != 'F')
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{
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/* try to do E style output */
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p = ecvt(value, prec + 1, &expon, &sign);
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avail = width - 5;
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a = ascii;
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/* output the sign */
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if (sign)
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{
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*a++ = '-';
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avail--;
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}
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}
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/* check for field too small */
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if (mode == 'F' || avail < prec)
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{
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/* sorry joker, you lose */
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a = ascii;
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for (avail = width; avail > 0; avail--)
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*a++ = '*';
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*a = 0;
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return 0;
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}
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/* it fits; output the number */
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mode = 'E';
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/* output the LHS single digit */
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*a++ = *p++;
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expon--;
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/* output the rhs */
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avail = 1;
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frac_out:
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*a++ = '.';
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while (prec > 0)
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{
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prec--;
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if (avail < 0)
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{
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avail++;
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*a++ = '0';
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}
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else
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{
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if (*p)
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*a++ = *p++;
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else
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*a++ = '0';
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}
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}
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/* output the exponent */
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if (mode == 'E')
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{
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*a++ = 'E' + lowercase;
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if (expon < 0)
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{
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*a++ = '-';
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expon = -expon;
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}
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else
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*a++ = '+';
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*a++ = (expon / 10) % 10 + '0';
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*a++ = expon % 10 + '0';
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}
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/* output spaces on the end in G format */
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if (mode == 'G')
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{
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*a++ = ' ';
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*a++ = ' ';
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*a++ = ' ';
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*a++ = ' ';
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}
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/* finally, we can return */
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*a = 0;
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avail = a - ascii;
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return avail;
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#endif
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}
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#endif
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/*
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** atof1 - ASCII TO FLOATING CONVERSION
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**
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** CODE derived from ~ingres/source/gutil/atof.c
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**
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** Converts the string 'str' to floating point and stores the
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** result into the cell pointed to by 'val'.
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**
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** The syntax which it accepts is pretty much what you would
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** expect. Basically, it is:
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** {<sp>} [+|-] {<sp>} {<digit>} [.{digit}] {<sp>} [<exp>]
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** where <exp> is "e" or "E" followed by an integer, <sp> is a
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** space character, <digit> is zero through nine, [] is zero or
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** one, and {} is zero or more.
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**
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** Parameters:
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** str -- string to convert.
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** val -- pointer to place to put the result (which
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** must be type double).
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**
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** Returns:
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** zero -- ok.
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** -1 -- syntax error.
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** +1 -- overflow (not implemented).
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**
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** Side Effects:
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** clobbers *val.
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*/
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#ifdef NOT_USED
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int
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atof1(char *str, double *val)
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{
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char *p;
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double v;
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double fact;
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int minus;
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char c;
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int expon;
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int gotmant;
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v = 0.0;
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p = str;
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minus = 0;
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/* skip leading blanks */
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while ((c = *p) != '\0')
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{
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if (c != ' ')
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break;
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p++;
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}
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/* handle possible sign */
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switch (c)
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{
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case '-':
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minus++;
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case '+':
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p++;
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}
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/* skip blanks after sign */
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while ((c = *p) != '\0')
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{
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if (c != ' ')
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break;
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p++;
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}
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/* start collecting the number to the decimal point */
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gotmant = 0;
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for (;;)
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{
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c = *p;
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if (c < '0' || c > '9')
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break;
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v = v * 10.0 + (c - '0');
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gotmant++;
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p++;
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}
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/* check for fractional part */
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if (c == '.')
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{
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fact = 1.0;
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for (;;)
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{
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c = *++p;
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if (c < '0' || c > '9')
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break;
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fact *= 0.1;
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v += (c - '0') * fact;
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gotmant++;
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}
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}
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/* skip blanks before possible exponent */
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while ((c = *p) != '\0')
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{
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if (c != ' ')
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break;
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p++;
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}
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/* test for exponent */
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if (c == 'e' || c == 'E')
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{
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p++;
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expon = pg_atoi(p, sizeof(expon), '\0');
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if (!gotmant)
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v = 1.0;
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fact = expon;
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v *= pow(10.0, fact);
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}
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else
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{
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/* if no exponent, then nothing */
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if (c != 0)
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return -1;
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}
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/* store the result and exit */
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if (minus)
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v = -v;
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*val = v;
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return 0;
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}
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#endif
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