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factor.c revision 1.16.10.1
      1  1.16.10.1    matt /*	$NetBSD: factor.c,v 1.16.10.1 2008/01/09 01:30:47 matt Exp $	*/
      2        1.5     cgd 
      3        1.1     cgd /*
      4        1.5     cgd  * Copyright (c) 1989, 1993
      5        1.5     cgd  *	The Regents of the University of California.  All rights reserved.
      6        1.1     cgd  *
      7        1.1     cgd  * This code is derived from software contributed to Berkeley by
      8        1.1     cgd  * Landon Curt Noll.
      9        1.1     cgd  *
     10        1.1     cgd  * Redistribution and use in source and binary forms, with or without
     11        1.1     cgd  * modification, are permitted provided that the following conditions
     12        1.1     cgd  * are met:
     13        1.1     cgd  * 1. Redistributions of source code must retain the above copyright
     14        1.1     cgd  *    notice, this list of conditions and the following disclaimer.
     15        1.1     cgd  * 2. Redistributions in binary form must reproduce the above copyright
     16        1.1     cgd  *    notice, this list of conditions and the following disclaimer in the
     17        1.1     cgd  *    documentation and/or other materials provided with the distribution.
     18       1.14     agc  * 3. Neither the name of the University nor the names of its contributors
     19        1.1     cgd  *    may be used to endorse or promote products derived from this software
     20        1.1     cgd  *    without specific prior written permission.
     21        1.1     cgd  *
     22        1.1     cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23        1.1     cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24        1.1     cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25        1.1     cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26        1.1     cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27        1.1     cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28        1.1     cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29        1.1     cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30        1.1     cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31        1.1     cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32        1.1     cgd  * SUCH DAMAGE.
     33        1.1     cgd  */
     34        1.1     cgd 
     35        1.7   lukem #include <sys/cdefs.h>
     36        1.1     cgd #ifndef lint
     37        1.7   lukem __COPYRIGHT("@(#) Copyright (c) 1989, 1993\n\
     38        1.7   lukem 	The Regents of the University of California.  All rights reserved.\n");
     39        1.1     cgd #endif /* not lint */
     40        1.1     cgd 
     41        1.1     cgd #ifndef lint
     42        1.5     cgd #if 0
     43        1.6     tls static char sccsid[] = "@(#)factor.c	8.4 (Berkeley) 5/4/95";
     44        1.5     cgd #else
     45  1.16.10.1    matt __RCSID("$NetBSD: factor.c,v 1.16.10.1 2008/01/09 01:30:47 matt Exp $");
     46        1.5     cgd #endif
     47        1.1     cgd #endif /* not lint */
     48        1.1     cgd 
     49        1.1     cgd /*
     50        1.1     cgd  * factor - factor a number into primes
     51        1.1     cgd  *
     52        1.1     cgd  * By: Landon Curt Noll   chongo (at) toad.com,   ...!{sun,tolsoft}!hoptoad!chongo
     53        1.1     cgd  *
     54        1.1     cgd  *   chongo <for a good prime call: 391581 * 2^216193 - 1> /\oo/\
     55        1.1     cgd  *
     56        1.1     cgd  * usage:
     57        1.1     cgd  *	factor [number] ...
     58        1.1     cgd  *
     59        1.1     cgd  * The form of the output is:
     60        1.1     cgd  *
     61        1.1     cgd  *	number: factor1 factor1 factor2 factor3 factor3 factor3 ...
     62        1.1     cgd  *
     63       1.16  rillig  * where factor1 <= factor2 <= factor3 <= ...
     64        1.1     cgd  *
     65        1.1     cgd  * If no args are given, the list of numbers are read from stdin.
     66        1.1     cgd  */
     67        1.1     cgd 
     68       1.10  simonb #include <ctype.h>
     69        1.5     cgd #include <err.h>
     70        1.5     cgd #include <errno.h>
     71        1.5     cgd #include <limits.h>
     72        1.1     cgd #include <stdio.h>
     73        1.5     cgd #include <stdlib.h>
     74        1.6     tls #include <unistd.h>
     75        1.5     cgd 
     76       1.11  itojun #ifdef HAVE_OPENSSL
     77       1.10  simonb #include <openssl/bn.h>
     78       1.11  itojun #else
     79       1.11  itojun typedef long	BIGNUM;
     80       1.11  itojun typedef u_long	BN_ULONG;
     81       1.13  simonb int	BN_dec2bn(BIGNUM **a, const char *str);
     82       1.13  simonb #define BN_new()		((BIGNUM *)calloc(sizeof(BIGNUM), 1))
     83       1.13  simonb #define BN_is_zero(v)		(*(v) == 0)
     84       1.13  simonb #define BN_is_one(v)		(*(v) == 1)
     85       1.12  simonb #define BN_new()		((BIGNUM *)calloc(sizeof(BIGNUM), 1))
     86       1.12  simonb #define BN_is_zero(v)		(*(v) == 0)
     87       1.12  simonb #define BN_is_one(v)		(*(v) == 1)
     88       1.11  itojun #define BN_mod_word(a, b)	(*(a) % (b))
     89       1.11  itojun #endif
     90       1.10  simonb 
     91        1.1     cgd #include "primes.h"
     92        1.1     cgd 
     93        1.1     cgd /*
     94        1.1     cgd  * prime[i] is the (i-1)th prime.
     95        1.1     cgd  *
     96       1.10  simonb  * We are able to sieve 2^32-1 because this byte table yields all primes
     97        1.1     cgd  * up to 65537 and 65537^2 > 2^32-1.
     98        1.1     cgd  */
     99        1.9     jsm extern const ubig prime[];
    100        1.9     jsm extern const ubig *pr_limit;		/* largest prime in the prime array */
    101        1.1     cgd 
    102       1.10  simonb #define	PRIME_CHECKS	5
    103       1.10  simonb 
    104       1.12  simonb #ifdef HAVE_OPENSSL
    105       1.12  simonb BN_CTX *ctx;				/* just use a global context */
    106       1.12  simonb #endif
    107       1.12  simonb 
    108       1.10  simonb int	main(int, char *[]);
    109       1.12  simonb void	pr_fact(BIGNUM *);		/* print factors of a value */
    110       1.10  simonb void	BN_print_dec_fp(FILE *, const BIGNUM *);
    111  1.16.10.1    matt void	usage(void) __dead;
    112       1.11  itojun #ifdef HAVE_OPENSSL
    113       1.12  simonb void	pollard_pminus1(BIGNUM *);	/* print factors for big numbers */
    114       1.11  itojun #else
    115       1.11  itojun char	*BN_bn2dec(const BIGNUM *);
    116       1.11  itojun BN_ULONG BN_div_word(BIGNUM *, BN_ULONG);
    117       1.13  simonb #endif
    118       1.13  simonb 
    119       1.13  simonb 
    120       1.13  simonb #ifndef HAVE_OPENSSL
    121       1.13  simonb int
    122       1.13  simonb BN_dec2bn(BIGNUM **a, const char *str)
    123       1.13  simonb {
    124       1.13  simonb 	char *p;
    125       1.13  simonb 
    126       1.13  simonb 	errno = 0;
    127       1.13  simonb 	**a = strtoul(str, &p, 10);
    128       1.13  simonb 	if (errno)
    129       1.13  simonb 		err(1, "%s", str);
    130       1.13  simonb 	return (*p == '\n' || *p == '\0');
    131       1.13  simonb }
    132       1.11  itojun #endif
    133        1.1     cgd 
    134        1.5     cgd int
    135       1.10  simonb main(int argc, char *argv[])
    136        1.1     cgd {
    137       1.10  simonb 	BIGNUM *val;
    138        1.5     cgd 	int ch;
    139       1.10  simonb 	char *p, buf[LINE_MAX];		/* > max number of digits. */
    140       1.10  simonb 
    141       1.12  simonb #ifdef HAVE_OPENSSL
    142       1.12  simonb 	ctx = BN_CTX_new();
    143       1.12  simonb #endif
    144       1.10  simonb 	val = BN_new();
    145       1.10  simonb 	if (val == NULL)
    146       1.10  simonb 		errx(1, "can't initialise bignum");
    147        1.5     cgd 
    148        1.7   lukem 	while ((ch = getopt(argc, argv, "")) != -1)
    149        1.5     cgd 		switch (ch) {
    150        1.5     cgd 		case '?':
    151        1.5     cgd 		default:
    152        1.5     cgd 			usage();
    153        1.5     cgd 		}
    154        1.5     cgd 	argc -= optind;
    155        1.5     cgd 	argv += optind;
    156        1.5     cgd 
    157        1.5     cgd 	/* No args supplied, read numbers from stdin. */
    158        1.5     cgd 	if (argc == 0)
    159        1.5     cgd 		for (;;) {
    160        1.5     cgd 			if (fgets(buf, sizeof(buf), stdin) == NULL) {
    161        1.5     cgd 				if (ferror(stdin))
    162        1.5     cgd 					err(1, "stdin");
    163        1.5     cgd 				exit (0);
    164        1.5     cgd 			}
    165        1.5     cgd 			for (p = buf; isblank(*p); ++p);
    166        1.5     cgd 			if (*p == '\n' || *p == '\0')
    167        1.5     cgd 				continue;
    168        1.5     cgd 			if (*p == '-')
    169        1.5     cgd 				errx(1, "negative numbers aren't permitted.");
    170       1.10  simonb 			if (BN_dec2bn(&val, buf) == 0)
    171       1.10  simonb 				errx(1, "%s: illegal numeric format.", argv[0]);
    172        1.5     cgd 			pr_fact(val);
    173        1.5     cgd 		}
    174        1.5     cgd 	/* Factor the arguments. */
    175        1.5     cgd 	else
    176        1.5     cgd 		for (; *argv != NULL; ++argv) {
    177        1.5     cgd 			if (argv[0][0] == '-')
    178        1.5     cgd 				errx(1, "negative numbers aren't permitted.");
    179       1.10  simonb 			if (BN_dec2bn(&val, argv[0]) == 0)
    180        1.5     cgd 				errx(1, "%s: illegal numeric format.", argv[0]);
    181        1.5     cgd 			pr_fact(val);
    182        1.1     cgd 		}
    183        1.1     cgd 	exit(0);
    184        1.1     cgd }
    185        1.1     cgd 
    186        1.1     cgd /*
    187        1.1     cgd  * pr_fact - print the factors of a number
    188        1.1     cgd  *
    189        1.1     cgd  * If the number is 0 or 1, then print the number and return.
    190        1.1     cgd  * If the number is < 0, print -1, negate the number and continue
    191        1.1     cgd  * processing.
    192        1.1     cgd  *
    193        1.1     cgd  * Print the factors of the number, from the lowest to the highest.
    194        1.1     cgd  * A factor will be printed numtiple times if it divides the value
    195        1.1     cgd  * multiple times.
    196        1.1     cgd  *
    197        1.1     cgd  * Factors are printed with leading tabs.
    198        1.1     cgd  */
    199        1.1     cgd void
    200       1.10  simonb pr_fact(BIGNUM *val)
    201        1.1     cgd {
    202        1.9     jsm 	const ubig *fact;		/* The factor found. */
    203        1.1     cgd 
    204        1.5     cgd 	/* Firewall - catch 0 and 1. */
    205       1.10  simonb 	if (BN_is_zero(val))	/* Historical practice; 0 just exits. */
    206        1.1     cgd 		exit(0);
    207       1.10  simonb 	if (BN_is_one(val)) {
    208       1.10  simonb 		printf("1: 1\n");
    209        1.1     cgd 		return;
    210        1.1     cgd 	}
    211        1.1     cgd 
    212        1.5     cgd 	/* Factor value. */
    213       1.10  simonb 
    214       1.10  simonb 	BN_print_dec_fp(stdout, val);
    215       1.10  simonb 	putchar(':');
    216       1.10  simonb 	for (fact = &prime[0]; !BN_is_one(val); ++fact) {
    217        1.5     cgd 		/* Look for the smallest factor. */
    218        1.1     cgd 		do {
    219       1.10  simonb 			if (BN_mod_word(val, (BN_ULONG)*fact) == 0)
    220        1.1     cgd 				break;
    221        1.1     cgd 		} while (++fact <= pr_limit);
    222        1.1     cgd 
    223        1.5     cgd 		/* Watch for primes larger than the table. */
    224        1.1     cgd 		if (fact > pr_limit) {
    225       1.11  itojun #ifdef HAVE_OPENSSL
    226       1.12  simonb 			BIGNUM *bnfact;
    227       1.12  simonb 
    228       1.12  simonb 			bnfact = BN_new();
    229       1.12  simonb 			BN_set_word(bnfact, *(fact - 1));
    230       1.12  simonb 			BN_sqr(bnfact, bnfact, ctx);
    231       1.15     jsm 			if (BN_cmp(bnfact, val) > 0
    232       1.15     jsm 			    || BN_is_prime(val, PRIME_CHECKS, NULL, NULL,
    233       1.15     jsm 					   NULL) == 1) {
    234       1.12  simonb 				putchar(' ');
    235       1.12  simonb 				BN_print_dec_fp(stdout, val);
    236       1.12  simonb 			} else
    237       1.12  simonb 				pollard_pminus1(val);
    238       1.11  itojun #else
    239       1.12  simonb 			printf(" %s", BN_bn2dec(val));
    240       1.11  itojun #endif
    241        1.5     cgd 			break;
    242        1.1     cgd 		}
    243        1.1     cgd 
    244        1.5     cgd 		/* Divide factor out until none are left. */
    245        1.1     cgd 		do {
    246       1.10  simonb 			printf(" %lu", *fact);
    247       1.10  simonb 			BN_div_word(val, (BN_ULONG)*fact);
    248       1.10  simonb 		} while (BN_mod_word(val, (BN_ULONG)*fact) == 0);
    249        1.5     cgd 
    250        1.5     cgd 		/* Let the user know we're doing something. */
    251       1.10  simonb 		fflush(stdout);
    252        1.1     cgd 	}
    253       1.10  simonb 	putchar('\n');
    254       1.10  simonb }
    255       1.10  simonb 
    256       1.10  simonb /*
    257       1.10  simonb  * Sigh..  No _decimal_ output to file functions in BN.
    258       1.10  simonb  */
    259       1.10  simonb void
    260       1.10  simonb BN_print_dec_fp(FILE *fp, const BIGNUM *num)
    261       1.10  simonb {
    262       1.10  simonb 	char *buf;
    263       1.10  simonb 
    264       1.10  simonb 	buf = BN_bn2dec(num);
    265       1.10  simonb 	if (buf == NULL)
    266       1.10  simonb 		return;	/* XXX do anything here? */
    267       1.10  simonb 	fprintf(fp, buf);
    268       1.10  simonb 	free(buf);
    269        1.5     cgd }
    270        1.5     cgd 
    271        1.5     cgd void
    272       1.10  simonb usage(void)
    273        1.5     cgd {
    274       1.10  simonb 	fprintf(stderr, "usage: factor [value ...]\n");
    275        1.5     cgd 	exit (0);
    276       1.10  simonb }
    277       1.10  simonb 
    278       1.10  simonb 
    279       1.10  simonb 
    280       1.10  simonb 
    281       1.11  itojun #ifdef HAVE_OPENSSL
    282       1.15     jsm /* pollard p-1, algorithm from Jim Gillogly, May 2000 */
    283       1.10  simonb 
    284       1.10  simonb void
    285       1.10  simonb pollard_pminus1(BIGNUM *val)
    286       1.10  simonb {
    287       1.15     jsm 	BIGNUM *base, *rbase, *num, *i, *x;
    288       1.10  simonb 
    289       1.10  simonb 	base = BN_new();
    290       1.15     jsm 	rbase = BN_new();
    291       1.10  simonb 	num = BN_new();
    292       1.10  simonb 	i = BN_new();
    293       1.10  simonb 	x = BN_new();
    294       1.10  simonb 
    295       1.15     jsm 	BN_set_word(rbase, 1);
    296       1.15     jsm  newbase:
    297       1.15     jsm 	BN_add_word(rbase, 1);
    298       1.10  simonb 	BN_set_word(i, 2);
    299       1.15     jsm 	BN_copy(base, rbase);
    300       1.10  simonb 
    301       1.10  simonb 	for (;;) {
    302       1.10  simonb 		BN_mod_exp(base, base, i, val, ctx);
    303       1.15     jsm 		if (BN_is_one(base))
    304       1.15     jsm 			goto newbase;
    305       1.10  simonb 
    306       1.10  simonb 		BN_copy(x, base);
    307       1.10  simonb 		BN_sub_word(x, 1);
    308       1.10  simonb 		BN_gcd(x, x, val, ctx);
    309       1.10  simonb 
    310       1.10  simonb 		if (!BN_is_one(x)) {
    311       1.10  simonb 			if (BN_is_prime(x, PRIME_CHECKS, NULL, NULL,
    312       1.10  simonb 			    NULL) == 1) {
    313       1.10  simonb 				putchar(' ');
    314       1.10  simonb 				BN_print_dec_fp(stdout, x);
    315       1.10  simonb 			} else
    316       1.10  simonb 				pollard_pminus1(x);
    317       1.10  simonb 			fflush(stdout);
    318       1.10  simonb 
    319       1.10  simonb 			BN_div(num, NULL, val, x, ctx);
    320       1.10  simonb 			if (BN_is_one(num))
    321       1.10  simonb 				return;
    322       1.10  simonb 			if (BN_is_prime(num, PRIME_CHECKS, NULL, NULL,
    323       1.10  simonb 			    NULL) == 1) {
    324       1.10  simonb 				putchar(' ');
    325       1.10  simonb 				BN_print_dec_fp(stdout, num);
    326       1.10  simonb 				fflush(stdout);
    327       1.10  simonb 				return;
    328       1.10  simonb 			}
    329       1.10  simonb 			BN_copy(val, num);
    330       1.10  simonb 		}
    331       1.10  simonb 		BN_add_word(i, 1);
    332       1.10  simonb 	}
    333        1.1     cgd }
    334       1.11  itojun #else
    335       1.11  itojun char *
    336       1.11  itojun BN_bn2dec(const BIGNUM *val)
    337       1.11  itojun {
    338       1.11  itojun 	char *buf;
    339       1.11  itojun 
    340       1.11  itojun 	buf = malloc(100);
    341       1.11  itojun 	if (!buf)
    342       1.11  itojun 		return buf;
    343       1.11  itojun 	snprintf(buf, 100, "%ld", (long)*val);
    344       1.11  itojun 	return buf;
    345       1.11  itojun }
    346       1.11  itojun 
    347       1.11  itojun BN_ULONG
    348       1.11  itojun BN_div_word(BIGNUM *a, BN_ULONG b)
    349       1.11  itojun {
    350       1.11  itojun 	BN_ULONG mod;
    351       1.11  itojun 
    352       1.11  itojun 	mod = *a % b;
    353       1.11  itojun 	*a /= b;
    354       1.11  itojun 	return mod;
    355       1.11  itojun }
    356       1.11  itojun #endif
    357