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/*-------------------------------------------------------------------------
 *
 *	  Functions for the built-in integer types.
 *
 * Copyright (c) 1994, Regents of the University of California
 *
 *
 * IDENTIFICATION
 *	  $Header: /cvsroot/pgsql/src/backend/utils/adt/int.c,v 1.31 2000/01/10 16:13:14 momjian Exp $
 *
 *-------------------------------------------------------------------------
 */
/*
 * OLD COMMENTS
 *		 int2in, int2out, int2vectorin, int2vectorout, int4in, int4out
 *		 itoi, int2_text, int4_text
 *		Boolean operators:
 *		 inteq, intne, intlt, intle, intgt, intge
 *		Arithmetic operators:
 *		 intpl, intmi, int4mul, intdiv
 *		Arithmetic operators:
 *		 intmod, int4fac
 *
 * XXX makes massive and possibly unwarranted type promotion assumptions.
 * fix me when we figure out what we want to do about ANSIfication...
 */
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#include "postgres.h"
#ifdef HAVE_LIMITS_H
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#include "utils/builtins.h"
#ifndef SHRT_MAX
#define SHRT_MAX (0x7FFF)
#endif
#ifndef SHRT_MIN
#define SHRT_MIN (-0x8000)
#endif

/*****************************************************************************
 *	 USER I/O ROUTINES														 *
 *****************************************************************************/

/*
 *		int2in			- converts "num" to short
	return (int32) pg_atoi(num, sizeof(int16), '\0');
 *		int2out			- converts short to "num"

	result = (char *) palloc(7);/* assumes sign, 5 digits, '\0' */
	itoa((int) sh, result);
	return result;
 *		int2vectorin			- converts "num num ..." to internal form
 *		Note:
 *				Fills any nonexistent digits with NULLs.
	int16	   *result;
	int			slot;
	if (intString == NULL)
		return NULL;
	result = (int16 *) palloc(sizeof(int16[INDEX_MAX_KEYS]));

	for (slot=0; *intString && slot < INDEX_MAX_KEYS; slot++)
		if (sscanf(intString, "%hd", &result[slot]) != 1)
			break;
		while (*intString && isspace(*intString))
			intString++;
		while (*intString && !isspace(*intString))
			intString++;
	while (*intString && isspace(*intString))
		intString++;
	if (*intString)
		elog(ERROR,"int2vector value has too many values");
	while (slot < INDEX_MAX_KEYS)
		result[slot++] = 0;

	return result;
 *		int2vectorout		- converts internal form to "num num ..."
	{
		result = (char *) palloc(2);
		result[0] = '-';
		result[1] = '\0';
		return result;

	/* find last non-zero value in vector */
	for (maxnum = INDEX_MAX_KEYS-1; maxnum >= 0; maxnum--)
		if (int2Array[maxnum] != 0)
			break;

	/* assumes sign, 5 digits, ' ' */
	rp = result = (char *) palloc((maxnum+1) * 7 + 1);
	for (num = 0; num <= maxnum; num++)
		if (num != 0)
			*rp++ = ' ';
		ltoa(int2Array[num], rp);
	return result;
 *		int44in			- converts "num num ..." to internal form
 *		Note:
 *				Fills any nonexistent digits with NULLs.
int44in(char *input_string)
{
	int32	   *foo = (int32 *) palloc(4 * sizeof(int32));

	i = sscanf(input_string,
			   "%d, %d, %d, %d",
			   &foo[0],
			   &foo[1],
			   &foo[2],
			   &foo[3]);
	while (i < 4)
		foo[i++] = 0;

	return foo;
 *		int2vectorout		- converts internal form to "num num ..."
int44out(int32 *an_array)

		output_string = (char *) palloc(16 * temp);		/* assume 15 digits +
														 * sign */
		walk = output_string;
		for (i = 0; i < temp; i++)
		{
			itoa(an_array[i], walk);
			while (*++walk != '\0')
				;
			*walk++ = ' ';
		}
		*--walk = '\0';
	return output_string;
/*****************************************************************************
 *	 PUBLIC ROUTINES														 *
 *****************************************************************************/

/*
 *		int4in			- converts "num" to int4
	return pg_atoi(num, sizeof(int32), '\0');
 *		int4out			- converts int4 to "num"

	result = (char *) palloc(12);		/* assumes sign, 10 digits, '\0' */
	ltoa(l, result);
	return result;
 *		===================
 *		CONVERSION ROUTINES
 *		===================
	return (int32) arg1;
		elog(ERROR, "i4toi2: '%d' causes int2 underflow", arg1);
		elog(ERROR, "i4toi2: '%d' causes int2 overflow", arg1);
	return (int16) arg1;

	str = int2out(arg1);
	len = (strlen(str) + VARHDRSZ);


	VARSIZE(result) = len;
	memmove(VARDATA(result), str, (len - VARHDRSZ));

	return result;

	len = (VARSIZE(string) - VARHDRSZ);

	memmove(str, VARDATA(string), len);
	return result;

	str = int4out(arg1);
	len = (strlen(str) + VARHDRSZ);


	VARSIZE(result) = len;
	memmove(VARDATA(result), str, (len - VARHDRSZ));

	return result;

	len = (VARSIZE(string) - VARHDRSZ);

	memmove(str, VARDATA(string), len);
	return result;
 *		=========================
 *		BOOLEAN OPERATOR ROUTINES
 *		=========================
 *		inteq			- returns 1 iff arg1 == arg2
 *		intne			- returns 1 iff arg1 != arg2
 *		intlt			- returns 1 iff arg1 < arg2
 *		intle			- returns 1 iff arg1 <= arg2
 *		intgt			- returns 1 iff arg1 > arg2
 *		intge			- returns 1 iff arg1 >= arg2
	return arg1 == arg2;
	return arg1 != arg2;
	return arg1 < arg2;
	return arg1 <= arg2;
	return arg1 > arg2;
	return arg1 >= arg2;
	return arg1 == arg2;
	return arg1 != arg2;
	return arg1 < arg2;
	return arg1 <= arg2;
	return arg1 > arg2;
	return arg1 >= arg2;
	return arg1 == arg2;
	return arg1 != arg2;
	return arg1 < arg2;
	return arg1 <= arg2;
	return arg1 > arg2;
	return arg1 >= arg2;
	return arg1 == arg2;
	return arg1 != arg2;
	return arg1 < arg2;
	return arg1 <= arg2;
	return arg1 > arg2;
	return arg1 >= arg2;
keyfirsteq(int16 *arg1, int16 arg2)
	return *arg1 == arg2;
 *		int[24]pl		- returns arg1 + arg2
 *		int[24]mi		- returns arg1 - arg2
 *		int[24]mul		- returns arg1 * arg2
 *		int[24]div		- returns arg1 / arg2
	return -arg;
	return arg1 + arg2;
	return arg1 - arg2;
	return arg1 * arg2;
	return arg1 / arg2;
	return arg + (int32) 1;
	return -arg;
	return arg1 + arg2;
	return arg1 - arg2;
	return arg1 * arg2;
	return arg1 / arg2;
	return arg + (int16) 1;
	return arg1 + arg2;
	return arg1 - arg2;
	return arg1 * arg2;
	return arg1 / arg2;
	return arg1 + arg2;
	return arg1 - arg2;
	return arg1 * arg2;
	return arg1 / arg2;
 *		int[24]mod		- returns arg1 mod arg2
	return arg1 % arg2;
	return arg1 % arg2;
	return arg1 % arg2;
	return arg1 % arg2;
 *		int[24]fac		- returns arg1!

	if (arg1 < 1)
		result = 0;
	else
		for (result = 1; arg1 > 0; --arg1)
			result *= arg1;
	return result;

	if (arg1 < 1)
		result = 0;
	else
		for (result = 1; arg1 > 0; --arg1)
			result *= arg1;
	return result;
int16
int2larger(int16 arg1, int16 arg2)
	return (arg1 > arg2) ? arg1 : arg2;
int16
int2smaller(int16 arg1, int16 arg2)
	return (arg1 < arg2) ? arg1 : arg2;
int32
int4larger(int32 arg1, int32 arg2)
	return (arg1 > arg2) ? arg1 : arg2;
int32
int4smaller(int32 arg1, int32 arg2)
	return (arg1 < arg2) ? arg1 : arg2;