Moved from the old secure/lib/libcrypt area, because of the rewrite to how

the Makefile handles des support by just including the single .c file.

Reviewed by:	Mark Murray
This commit is contained in:
Brandon Gillespie 1999-01-21 13:51:04 +00:00
parent da5c7089a3
commit 6bf154696d
Notes: svn2git 2020-12-20 02:59:44 +00:00
svn path=/head/; revision=42982
5 changed files with 532 additions and 0 deletions

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#
# Hacked Makefile to compile and run the DES-certification program,
# but not install anything.
#
# $Id: Makefile,v 1.5 1996/06/24 20:28:35 markm Exp $
#
LIBCRYPT= -lcrypt
#CFLAGS+= -DHAVE_CRYPT16
CFLAGS+= -ggdb
TARGETS=cert speedcrypt
all: ${TARGETS}
test: all testcrypt testspeed
testcrypt: cert
@./cert -c
testspeed: cryptspeed
cryptspeed: speedcrypt
@./speedcrypt 30 1
@./speedcrypt 30 1
@./speedcrypt 30 0
@./speedcrypt 30 0
cert: cert.c
$(CC) $(CFLAGS) -o cert ${.CURDIR}/cert.c ${LIBCRYPT}
speedcrypt: speedcrypt.c
$(CC) $(CFLAGS) -o speedcrypt ${.CURDIR}/speedcrypt.c ${LIBCRYPT}
clean:
rm -f ${TARGETS}
install:
obj:
.include <bsd.prog.mk>

15
lib/libcrypt/test/README Normal file
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This directory contains test programs to certify DES operation and to
time the crypt() call (of curiosity value).
Simply type `make test` to run the tests.
The normal `make all` and `make install` that get done during library building
and installation will build these programs BUT NOT INSTALL THEM. After all,
they're only for testing...
- David Burren, January 1994
Rewrote 'cert' a bit. It checks many more cases now, and also considers
md5 and sha1. Same with speedcrypt.
- Brandon Gillespie, 1997

226
lib/libcrypt/test/cert.c Normal file
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/*
* This DES validation program shipped with FreeSec is derived from that
* shipped with UFC-crypt which is apparently derived from one distributed
* with Phil Karns PD DES package.
*
* $Id: cert.c,v 1.4 1995/07/25 14:04:10 mark Exp $
*/
#include <stdio.h>
int totfails = 0;
char *crypt();
#ifdef HAVE_CRYPT16
char *crypt16();
#endif /* HAVE_CRYPT16 */
static struct crypt_test {
char *key, *setting, *answer;
} crypt_tests[] = {
{"foob", "arblat", "arlEKn0OzVJn."},
/* only if DEScrypt is installed... */
{"holyhooplasbatman!", "", "hoPVB2cPNzIgc"},
{"holyhooplasbatman!", "_X.......", "_X.......N89y2Z.e4WU"},
{"holyhooplasbatman!", "_X...X...", "_X...X...rSUDQ5Na/QM"},
{"holyhooplasbatman!", "_XX..X...", "_XX..X...P8vb9xU4JAk"},
{"holyhooplasbatman!", "_XX..XX..", "_XX..XX..JDs5IlGLqT2"},
{"holyhooplasbatman!", "_XX..XXa.", "_XX..XXa.bFVsOnCNh8Y"},
{"holyhooplasbatman!", "_XXa.X...", "_XXa.X...Ghsb3QKNaps"},
{"holyhooplasbatman!", "$1$.....$", "$1$.....$0Tf8T5oeUy8eCFrOGJ896/"},
{"holyhooplasbatman!", "$1$ababa$", "$1$ababa$H7GvivY4uBBap2AQHTIdu0"},
{"holyhooplasbatman!", "$1$D4p1.$", "$1$D4p1.$7oaIfQAEilVqtOVPZjd.T0"},
{"holyhooplasbatman!", "$MD5$.....$", "$MD5$.....$F2ZOUu/EHsBSdvnymyml/."},
{"holyhooplasbatman!", "$MD5$ababa$", "$MD5$ababa$TQ2ecNtRba.5dbOfMUrX9."},
{"holyhooplasbatman!", "$MD5$D4p1.$", "$MD5$D4p1.$L6gLg9tn/P2QTxmUhCebG0"},
{"holyhooplasbatman!", "$MD5$12345678$", "$MD5$12345678$OjLi0vSkTvbIcm/2MqW4O."},
{"holyhooplasbatman!", "$MD5$123456789012$", "$MD5$123456789012$PanjJQOwRD4shvHcEsFms/"},
{"holyhooplasbatman!", "$MD5$1234567890123456789$", "$MD5$1234567890123456$XXJ0C2AviF.UkEqhojYlT1"},
{"holyhooplasbatman!", "$MD5$$", "$MD5$$LiING./7/azVlSHzgErgc1"},
{"holyhooplasbatman!","$SHA1$.....$","$SHA1$.....$AqA7OVFePjxzR3iDGlhT8HTqR56"},
{"holyhooplasbatman!","$SHA1$12345678$","$SHA1$12345678$f3GWs.tBaliuVNkL8i6FLwKDkqD"},
{"holyhooplasbatman!","$SHA1$1234567890123456789$","$SHA1$1234567890123456$xWBUsEoBIqR5ljh8MS.5NFfNBV1"},
{"holyhooplasbatman!","$SHA1$ababa$","$SHA1$ababa$ZzzoL86v1dZ54ZDMNowVHzFu1S1"},
{"holyhooplasbatman!","$SHA1$D4p1.$","$SHA1$D4p1.$7r2mYdgZidt.BC2Ngn.979LfTQA"},
{"holyhooplasbatman!","$SHA1$$","$SHA1$$nulODJKXMzUlhSREYhKZmrfV3XA"},
#ifdef TAKES_TOO_LONG_ON_SOME_CRYPTS
{"holyhooplasbatman!", "_arararar", "_ararararNGMzvpNjeCc"},
#endif
{NULL, NULL, NULL},
};
static struct crypt_test crypt16_tests[] = {
"foob", "ar", "arxo23jZDD5AYbHbqoy9Dalg",
"holyhooplasbatman!", "ar", "arU5FRLJ3kxIoedlmyrOelEw",
NULL, NULL, NULL
};
void good_bye()
{
if(totfails == 0) {
printf(" Passed validation\n");
exit(0);
} else {
printf(" %d failures during validation!!!\n", totfails);
exit(1);
}
}
void put8(cp)
char *cp;
{
int i,j,t;
for(i = 0; i < 8; i++){
t = 0;
for(j = 0; j < 8; j++)
t = t << 1 | *cp++;
printf("%02x", t);
}
}
void print_bits(bits)
unsigned char *bits;
{
int i;
for (i = 0; i < 8; i++) {
printf("%02x", bits[i]);
}
}
int parse_line(buff, salt, key, plain, answer)
char *buff;
long *salt;
char *key, *plain, *answer;
{
char *ptr1, *ptr2;
int val;
int i,j,t;
/*
* Extract salt
*/
if (sscanf(buff, "%lu", salt) != 1)
return(-1);
for (ptr2 = buff; *ptr2 && !isspace(*ptr2); ptr2++)
;
/*
* Extract key
*/
for (ptr1 = ptr2; *ptr1 && isspace(*ptr1); ptr1++)
;
for (ptr2 = ptr1; *ptr2 && !isspace(*ptr2); ptr2++)
;
if (ptr2 - ptr1 != 16)
return(-1);
for (i = 0; i < 8; i++){
if (sscanf(ptr1 + 2*i, "%2x", &t) != 1)
return(-2);
for (j = 0; j < 8; j++)
*key++ = (t & 1 << (7 - j)) != 0;
}
/*
* Extract plain
*/
for (ptr1 = ptr2; *ptr1 && isspace(*ptr1); ptr1++)
;
for (ptr2 = ptr1; *ptr2 && !isspace(*ptr2); ptr2++)
;
if (ptr2 - ptr1 != 16)
return(-1);
for (i = 0; i < 8; i++){
if (sscanf(ptr1 + 2*i, "%2x", &t) != 1)
return(-2);
for (j = 0; j < 8; j++)
*plain++ = (t & 1 << (7 - j)) != 0;
}
/*
* Extract answer
*/
for (ptr1 = ptr2; *ptr1 && isspace(*ptr1); ptr1++)
;
for (ptr2 = ptr1; *ptr2 && !isspace(*ptr2); ptr2++)
;
if (ptr2 - ptr1 != 16)
return(-1);
for (i = 0; i < 8; i++){
if (sscanf(ptr1 + 2*i, "%2x", &t) != 1)
return(-2);
for (j = 0; j < 8; j++)
*answer++ = (t & 1 << (7 - j)) != 0;
}
return(0);
}
void bytes_to_bits(bytes, bits)
char *bytes;
unsigned char *bits;
{
int i, j;
for (i = 0; i < 8; i++) {
bits[i] = 0;
for (j = 0; j < 8; j++) {
bits[i] |= (bytes[i*8+j] & 1) << (7 - j);
}
}
}
/*
* Test the old-style crypt(), the new-style crypt(), and crypt16().
*/
void test_crypt()
{
char *result;
struct crypt_test *p;
printf("Testing crypt() family\n");
for (p = crypt_tests; p->key; p++) {
printf(" crypt(\"%s\", \"%s\")\n\texpecting: \"%s\" ..",
p->key, p->setting, p->answer);
fflush(stdout);
result = crypt(p->key, p->setting);
if(!strcmp(result, p->answer)) {
printf(" OK\n");
} else {
printf("\n\tfailed: \"%s\"\n", result);
totfails++;
}
}
#ifdef HAVE_CRYPT16
for (p = crypt16_tests; p->key; p++) {
printf(" crypt16(\"%s\", \"%s\")\n\texpecting: \"%s\" ..",
p->key, p->setting, p->answer);
fflush(stdout);
result = crypt16(p->key, p->setting);
if(!strcmp(result, p->answer)) {
printf(" OK\n");
} else {
printf("\n\tfailed: \"%s\"\n", result);
totfails++;
}
}
#endif /* HAVE_CRYPT16 */
}
main(argc, argv)
int argc;
char *argv[];
{
test_crypt();
good_bye();
}

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# $Id$
#
# Salt, key, plaintext, ciphertext
#
0 0101010101010101 95f8a5e5dd31d900 8000000000000000
0 0101010101010101 dd7f121ca5015619 4000000000000000
0 0101010101010101 2e8653104f3834ea 2000000000000000
0 0101010101010101 4bd388ff6cd81d4f 1000000000000000
0 0101010101010101 20b9e767b2fb1456 0800000000000000
0 0101010101010101 55579380d77138ef 0400000000000000
0 0101010101010101 6cc5defaaf04512f 0200000000000000
0 0101010101010101 0d9f279ba5d87260 0100000000000000
0 0101010101010101 d9031b0271bd5a0a 0080000000000000
0 0101010101010101 424250b37c3dd951 0040000000000000
0 0101010101010101 b8061b7ecd9a21e5 0020000000000000
0 0101010101010101 f15d0f286b65bd28 0010000000000000
0 0101010101010101 add0cc8d6e5deba1 0008000000000000
0 0101010101010101 e6d5f82752ad63d1 0004000000000000
0 0101010101010101 ecbfe3bd3f591a5e 0002000000000000
0 0101010101010101 f356834379d165cd 0001000000000000
0 0101010101010101 2b9f982f20037fa9 0000800000000000
0 0101010101010101 889de068a16f0be6 0000400000000000
0 0101010101010101 e19e275d846a1298 0000200000000000
0 0101010101010101 329a8ed523d71aec 0000100000000000
0 0101010101010101 e7fce22557d23c97 0000080000000000
0 0101010101010101 12a9f5817ff2d65d 0000040000000000
0 0101010101010101 a484c3ad38dc9c19 0000020000000000
0 0101010101010101 fbe00a8a1ef8ad72 0000010000000000
0 0101010101010101 750d079407521363 0000008000000000
0 0101010101010101 64feed9c724c2faf 0000004000000000
0 0101010101010101 f02b263b328e2b60 0000002000000000
0 0101010101010101 9d64555a9a10b852 0000001000000000
0 0101010101010101 d106ff0bed5255d7 0000000800000000
0 0101010101010101 e1652c6b138c64a5 0000000400000000
0 0101010101010101 e428581186ec8f46 0000000200000000
0 0101010101010101 aeb5f5ede22d1a36 0000000100000000
0 0101010101010101 e943d7568aec0c5c 0000000080000000
0 0101010101010101 df98c8276f54b04b 0000000040000000
0 0101010101010101 b160e4680f6c696f 0000000020000000
0 0101010101010101 fa0752b07d9c4ab8 0000000010000000
0 0101010101010101 ca3a2b036dbc8502 0000000008000000
0 0101010101010101 5e0905517bb59bcf 0000000004000000
0 0101010101010101 814eeb3b91d90726 0000000002000000
0 0101010101010101 4d49db1532919c9f 0000000001000000
0 0101010101010101 25eb5fc3f8cf0621 0000000000800000
0 0101010101010101 ab6a20c0620d1c6f 0000000000400000
0 0101010101010101 79e90dbc98f92cca 0000000000200000
0 0101010101010101 866ecedd8072bb0e 0000000000100000
0 0101010101010101 8b54536f2f3e64a8 0000000000080000
0 0101010101010101 ea51d3975595b86b 0000000000040000
0 0101010101010101 caffc6ac4542de31 0000000000020000
0 0101010101010101 8dd45a2ddf90796c 0000000000010000
0 0101010101010101 1029d55e880ec2d0 0000000000008000
0 0101010101010101 5d86cb23639dbea9 0000000000004000
0 0101010101010101 1d1ca853ae7c0c5f 0000000000002000
0 0101010101010101 ce332329248f3228 0000000000001000
0 0101010101010101 8405d1abe24fb942 0000000000000800
0 0101010101010101 e643d78090ca4207 0000000000000400
0 0101010101010101 48221b9937748a23 0000000000000200
0 0101010101010101 dd7c0bbd61fafd54 0000000000000100
0 0101010101010101 2fbc291a570db5c4 0000000000000080
0 0101010101010101 e07c30d7e4e26e12 0000000000000040
0 0101010101010101 0953e2258e8e90a1 0000000000000020
0 0101010101010101 5b711bc4ceebf2ee 0000000000000010
0 0101010101010101 cc083f1e6d9e85f6 0000000000000008
0 0101010101010101 d2fd8867d50d2dfe 0000000000000004
0 0101010101010101 06e7ea22ce92708f 0000000000000002
0 0101010101010101 166b40b44aba4bd6 0000000000000001
0 8001010101010101 0000000000000000 95a8d72813daa94d
0 4001010101010101 0000000000000000 0eec1487dd8c26d5
0 2001010101010101 0000000000000000 7ad16ffb79c45926
0 1001010101010101 0000000000000000 d3746294ca6a6cf3
0 0801010101010101 0000000000000000 809f5f873c1fd761
0 0401010101010101 0000000000000000 c02faffec989d1fc
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0 018310dc409b26d6 1d9d5c5018f728c2 5f4c038ed12b2e41
0 1c587f1c13924fef 305532286d6f295a 63fac0d034d9f793
1 1c587f1c13924fef 305532286d6f295a 400d307ca24fee60
57 1c587f1c13924fef 305532286d6f295a 28b568f40e7d43ae
1 8001010101010101 0000000000000000 f501029f268e45dc
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#include <sys/types.h>
#include <sys/time.h>
#include <sys/resource.h>
#include <signal.h>
#include <stdio.h>
int keep_going, count, seconds;
struct rusage prior, now;
void
finish()
{
keep_going = 0;
}
main(int argc, char *argv[])
{
struct itimerval itv;
u_long msecs, key1[8], key2[8];
char *k1, *k2;
char *token, deftok[] = "eek";
if (argc < 2 || sscanf(argv[1], "%d", &seconds) != 1)
seconds = 20;
if (argc < 3) {
token = &deftok[0];
} else {
token = argv[2];
}
printf ("Running crypt for %d seconds of vtime\n", seconds);
bzero(&itv, sizeof (itv));
signal (SIGVTALRM, finish);
itv.it_value.tv_sec = seconds;
itv.it_value.tv_usec = 0;
setitimer(ITIMER_VIRTUAL, &itv, NULL);
keep_going = 1;
k1 = (char *) key1;
k2 = (char *) key2;
strcpy(k1, "fredfredfredfredfred");
strcpy(k2, "joejoejoejoejoejoejo");
printf("Dry run (to verify seed token):\n\tcrypt(\"test\", \"%s\")\n",
token);
printf("\t=> \"%s\"\nTesting...", crypt("test", token));
fflush(stdout);
if (getrusage(0, &prior) < 0) {
perror("getrusage");
exit(1);
}
for (count = 0; keep_going; count++) {
crypt((count & 1) ? k1 : k2, token);
}
if (getrusage(0, &now) < 0) {
perror("getrusage");
exit(1);
}
msecs = (now.ru_utime.tv_sec - prior.ru_utime.tv_sec) * 1000
+ (now.ru_utime.tv_usec - prior.ru_utime.tv_usec) / 1000;
printf ("\tDid %d crypt()s per second.\n", 1000 * count / msecs);
exit(0);
}