8b3d48288a7df411f953e6312c19c43b7e28b472
[hashcat.git] / src / oclHashcat.c
1 /**
2 * Authors.....: Jens Steube <jens.steube@gmail.com>
3 * Gabriele Gristina <matrix@hashcat.net>
4 * magnum <john.magnum@hushmail.com>
5 *
6 * License.....: MIT
7 */
8
9 #ifdef OSX
10 #include <stdio.h>
11 #endif
12
13 #include <common.h>
14 #include <shared.h>
15 #include <rp_kernel_on_cpu.h>
16 #include <getopt.h>
17
18 const char *PROGNAME = "oclHashcat";
19 const uint VERSION_BIN = 210;
20 const uint RESTORE_MIN = 210;
21
22 double TARGET_MS_PROFILE[3] = { 8, 16, 96 };
23
24 #define INCR_RULES 10000
25 #define INCR_SALTS 100000
26 #define INCR_MASKS 1000
27 #define INCR_POT 1000
28
29 #define USAGE 0
30 #define VERSION 0
31 #define QUIET 0
32 #define MARKOV_THRESHOLD 0
33 #define MARKOV_DISABLE 0
34 #define MARKOV_CLASSIC 0
35 #define BENCHMARK 0
36 #define RESTORE 0
37 #define RESTORE_TIMER 60
38 #define RESTORE_DISABLE 0
39 #define STATUS 0
40 #define STATUS_TIMER 10
41 #define STATUS_AUTOMAT 0
42 #define LOOPBACK 0
43 #define WEAK_HASH_THRESHOLD 100
44 #define SHOW 0
45 #define LEFT 0
46 #define USERNAME 0
47 #define REMOVE 0
48 #define REMOVE_TIMER 60
49 #define SKIP 0
50 #define LIMIT 0
51 #define KEYSPACE 0
52 #define POTFILE_DISABLE 0
53 #define DEBUG_MODE 0
54 #define RP_GEN 0
55 #define RP_GEN_FUNC_MIN 1
56 #define RP_GEN_FUNC_MAX 4
57 #define RP_GEN_SEED 0
58 #define RULE_BUF_L ":"
59 #define RULE_BUF_R ":"
60 #define FORCE 0
61 #define RUNTIME 0
62 #define HEX_CHARSET 0
63 #define HEX_SALT 0
64 #define HEX_WORDLIST 0
65 #define OUTFILE_FORMAT 3
66 #define OUTFILE_AUTOHEX 1
67 #define OUTFILE_CHECK_TIMER 5
68 #define ATTACK_MODE 0
69 #define HASH_MODE 0
70 #define SEGMENT_SIZE 32
71 #define INCREMENT 0
72 #define INCREMENT_MIN 1
73 #define INCREMENT_MAX PW_MAX
74 #define SEPARATOR ':'
75 #define BITMAP_MIN 16
76 #define BITMAP_MAX 24
77 #define GPU_TEMP_DISABLE 0
78 #define GPU_TEMP_ABORT 90
79 #define GPU_TEMP_RETAIN 80
80 #define WORKLOAD_PROFILE 2
81 #define KERNEL_ACCEL 0
82 #define KERNEL_LOOPS 0
83 #define KERNEL_RULES 1024
84 #define KERNEL_COMBS 1024
85 #define KERNEL_BFS 1024
86 #define KERNEL_THREADS_MAX 256
87 #define KERNEL_THREADS_MAX_CPU 16
88 #define POWERTUNE_ENABLE 0
89 #define LOGFILE_DISABLE 0
90 #define SCRYPT_TMTO 0
91 #define OPENCL_VECTOR_WIDTH 0
92
93 #define WL_MODE_STDIN 1
94 #define WL_MODE_FILE 2
95 #define WL_MODE_MASK 3
96
97 #define HL_MODE_FILE 4
98 #define HL_MODE_ARG 5
99
100 #define HLFMTS_CNT 11
101 #define HLFMT_HASHCAT 0
102 #define HLFMT_PWDUMP 1
103 #define HLFMT_PASSWD 2
104 #define HLFMT_SHADOW 3
105 #define HLFMT_DCC 4
106 #define HLFMT_DCC2 5
107 #define HLFMT_NETNTLM1 7
108 #define HLFMT_NETNTLM2 8
109 #define HLFMT_NSLDAP 9
110 #define HLFMT_NSLDAPS 10
111
112 #define HLFMT_TEXT_HASHCAT "native hashcat"
113 #define HLFMT_TEXT_PWDUMP "pwdump"
114 #define HLFMT_TEXT_PASSWD "passwd"
115 #define HLFMT_TEXT_SHADOW "shadow"
116 #define HLFMT_TEXT_DCC "DCC"
117 #define HLFMT_TEXT_DCC2 "DCC 2"
118 #define HLFMT_TEXT_NETNTLM1 "NetNTLMv1"
119 #define HLFMT_TEXT_NETNTLM2 "NetNTLMv2"
120 #define HLFMT_TEXT_NSLDAP "nsldap"
121 #define HLFMT_TEXT_NSLDAPS "nsldaps"
122
123 #define ATTACK_MODE_STRAIGHT 0
124 #define ATTACK_MODE_COMBI 1
125 #define ATTACK_MODE_TOGGLE 2
126 #define ATTACK_MODE_BF 3
127 #define ATTACK_MODE_PERM 4
128 #define ATTACK_MODE_TABLE 5
129 #define ATTACK_MODE_HYBRID1 6
130 #define ATTACK_MODE_HYBRID2 7
131 #define ATTACK_MODE_NONE 100
132
133 #define ATTACK_KERN_STRAIGHT 0
134 #define ATTACK_KERN_COMBI 1
135 #define ATTACK_KERN_BF 3
136 #define ATTACK_KERN_NONE 100
137
138 #define ATTACK_EXEC_OUTSIDE_KERNEL 10
139 #define ATTACK_EXEC_INSIDE_KERNEL 11
140
141 #define COMBINATOR_MODE_BASE_LEFT 10001
142 #define COMBINATOR_MODE_BASE_RIGHT 10002
143
144 #define MIN(a,b) (((a) < (b)) ? (a) : (b))
145 #define MAX(a,b) (((a) > (b)) ? (a) : (b))
146
147 #define MAX_CUT_TRIES 4
148
149 #define MAX_DICTSTAT 10000
150
151 #define NUM_DEFAULT_BENCHMARK_ALGORITHMS 136
152
153 #define global_free(attr) \
154 { \
155 myfree ((void *) data.attr); \
156 \
157 data.attr = NULL; \
158 }
159
160 #define local_free(attr) \
161 { \
162 myfree ((void *) attr); \
163 \
164 attr = NULL; \
165 }
166
167 static uint default_benchmark_algorithms[NUM_DEFAULT_BENCHMARK_ALGORITHMS] =
168 {
169 900,
170 0,
171 5100,
172 100,
173 1400,
174 10800,
175 1700,
176 5000,
177 10100,
178 6000,
179 6100,
180 6900,
181 11700,
182 11800,
183 400,
184 8900,
185 11900,
186 12000,
187 10900,
188 12100,
189 23,
190 2500,
191 5300,
192 5400,
193 5500,
194 5600,
195 7300,
196 7500,
197 13100,
198 8300,
199 11100,
200 11200,
201 11400,
202 121,
203 2611,
204 2711,
205 2811,
206 8400,
207 11,
208 2612,
209 7900,
210 21,
211 11000,
212 124,
213 10000,
214 3711,
215 7600,
216 12,
217 131,
218 132,
219 1731,
220 200,
221 300,
222 3100,
223 112,
224 12300,
225 8000,
226 141,
227 1441,
228 1600,
229 12600,
230 1421,
231 101,
232 111,
233 1711,
234 3000,
235 1000,
236 1100,
237 2100,
238 12800,
239 1500,
240 12400,
241 500,
242 3200,
243 7400,
244 1800,
245 122,
246 1722,
247 7100,
248 6300,
249 6700,
250 6400,
251 6500,
252 2400,
253 2410,
254 5700,
255 9200,
256 9300,
257 22,
258 501,
259 5800,
260 8100,
261 8500,
262 7200,
263 9900,
264 7700,
265 7800,
266 10300,
267 8600,
268 8700,
269 9100,
270 133,
271 13500,
272 11600,
273 12500,
274 13000,
275 13200,
276 13300,
277 6211,
278 6221,
279 6231,
280 6241,
281 8800,
282 12900,
283 12200,
284 9700,
285 9710,
286 9800,
287 9810,
288 9400,
289 9500,
290 9600,
291 10400,
292 10410,
293 10500,
294 10600,
295 10700,
296 9000,
297 5200,
298 6800,
299 6600,
300 8200,
301 11300,
302 12700,
303 13400,
304 125
305 };
306
307 /**
308 * types
309 */
310
311 static void (*get_next_word_func) (char *, u32, u32 *, u32 *);
312
313 /**
314 * globals
315 */
316
317 static unsigned int full01 = 0x01010101;
318 static unsigned int full80 = 0x80808080;
319
320 int SUPPRESS_OUTPUT = 0;
321
322 hc_thread_mutex_t mux_adl;
323 hc_thread_mutex_t mux_counter;
324 hc_thread_mutex_t mux_dispatcher;
325 hc_thread_mutex_t mux_display;
326
327 hc_global_data_t data;
328
329 const char *PROMPT = "[s]tatus [p]ause [r]esume [b]ypass [c]heckpoint [q]uit => ";
330
331 const char *USAGE_MINI[] =
332 {
333 "Usage: %s [options]... hash|hashfile|hccapfile [dictionary|mask|directory]...",
334 "",
335 "Try --help for more help.",
336 NULL
337 };
338
339 const char *USAGE_BIG[] =
340 {
341 "%s, advanced password recovery",
342 "",
343 "Usage: %s [options]... hash|hashfile|hccapfile [dictionary|mask|directory]...",
344 "",
345 "=======",
346 "Options",
347 "=======",
348 "",
349 "* General:",
350 "",
351 " -m, --hash-type=NUM Hash-type, see references below",
352 " -a, --attack-mode=NUM Attack-mode, see references below",
353 " -V, --version Print version",
354 " -h, --help Print help",
355 " --quiet Suppress output",
356 "",
357 "* Misc:",
358 "",
359 " --hex-charset Assume charset is given in hex",
360 " --hex-salt Assume salt is given in hex",
361 " --hex-wordlist Assume words in wordlist is given in hex",
362 " --force Ignore warnings",
363 " --status Enable automatic update of the status-screen",
364 " --status-timer=NUM Seconds between status-screen update",
365 " --status-automat Display the status view in a machine readable format",
366 " --loopback Add new plains to induct directory",
367 " --weak-hash-threshold=NUM Threshold when to stop checking for weak hashes, default is 100 salts",
368 "",
369 "* Markov:",
370 "",
371 " --markov-hcstat=FILE Specify hcstat file to use, default is hashcat.hcstat",
372 " --markov-disable Disables markov-chains, emulates classic brute-force",
373 " --markov-classic Enables classic markov-chains, no per-position enhancement",
374 " -t, --markov-threshold=NUM Threshold when to stop accepting new markov-chains",
375 "",
376 "* Session:",
377 "",
378 " --runtime=NUM Abort session after NUM seconds of runtime",
379 " --session=STR Define specific session name",
380 " --restore Restore session from --session",
381 " --restore-disable Do not write restore file",
382 "",
383 "* Files:",
384 "",
385 " -o, --outfile=FILE Define outfile for recovered hash",
386 " --outfile-format=NUM Define outfile-format for recovered hash, see references below",
387 " --outfile-autohex-disable Disable the use of $HEX[] in output plains",
388 " --outfile-check-timer=NUM Seconds between outfile checks",
389 " -p, --separator=CHAR Separator char for hashlists and outfile",
390 " --show Show cracked passwords only",
391 " --left Show un-cracked passwords only",
392 " --username Enable ignoring of usernames in hashfile (recommended: also use --show)",
393 " --remove Enable remove of hash once it is cracked",
394 " --remove-timer=NUM Update input hash file each NUM seconds",
395 " --potfile-disable Do not write potfile",
396 " --potfile-path Specific path to potfile",
397 " --debug-mode=NUM Defines the debug mode (hybrid only by using rules), see references below",
398 " --debug-file=FILE Output file for debugging rules (see also --debug-mode)",
399 " --induction-dir=FOLDER Specify induction directory to use, default is $session.induct",
400 " --outfile-check-dir=FOLDER Specify the outfile directory which should be monitored, default is $session.outfiles",
401 " --logfile-disable Disable the logfile",
402 " --truecrypt-keyfiles=FILE Keyfiles used, separate with comma",
403 "",
404 "* Resources:",
405 "",
406 " -b, --benchmark Run benchmark",
407 " --benchmark-repeats=NUM Repeat the kernel on the device NUM times to increase benchmark accuracy",
408 " -c, --segment-size=NUM Size in MB to cache from the wordfile",
409 " --bitmap-min=NUM Minimum number of bits allowed for bitmaps",
410 " --bitmap-max=NUM Maximum number of bits allowed for bitmaps",
411 " --cpu-affinity=STR Locks to CPU devices, separate with comma",
412 " --opencl-platforms=STR OpenCL platforms to use, separate with comma",
413 " -d, --opencl-devices=STR OpenCL devices to use, separate with comma",
414 " --opencl-device-types=STR OpenCL device-types to use, separate with comma, see references below",
415 " --opencl-vector-width=NUM OpenCL vector-width (either 1, 2, 4, 8 or 16), overrides value from device query",
416 " -w, --workload-profile=NUM Enable a specific workload profile, see references below",
417 " -n, --kernel-accel=NUM Workload tuning, increase the outer-loop step size",
418 " -u, --kernel-loops=NUM Workload tuning, increase the inner-loop step size",
419 " --gpu-temp-disable Disable temperature and fanspeed readings and triggers",
420 #ifdef HAVE_HWMON
421 " --gpu-temp-abort=NUM Abort session if GPU temperature reaches NUM degrees celsius",
422 " --gpu-temp-retain=NUM Try to retain GPU temperature at NUM degrees celsius (AMD only)",
423 #ifdef HAVE_ADL
424 " --powertune-enable Enable automatic power tuning option (AMD OverDrive 6 only)",
425 #endif
426 #endif
427 " --scrypt-tmto=NUM Manually override automatically calculated TMTO value for scrypt",
428 "",
429 "* Distributed:",
430 "",
431 " -s, --skip=NUM Skip number of words",
432 " -l, --limit=NUM Limit number of words",
433 " --keyspace Show keyspace base:mod values and quit",
434 "",
435 "* Rules:",
436 "",
437 " -j, --rule-left=RULE Single rule applied to each word from left dict",
438 " -k, --rule-right=RULE Single rule applied to each word from right dict",
439 " -r, --rules-file=FILE Rules-file, multi use: -r 1.rule -r 2.rule",
440 " -g, --generate-rules=NUM Generate NUM random rules",
441 " --generate-rules-func-min=NUM Force NUM functions per random rule min",
442 " --generate-rules-func-max=NUM Force NUM functions per random rule max",
443 " --generate-rules-seed=NUM Force RNG seed to NUM",
444 "",
445 "* Custom charsets:",
446 "",
447 " -1, --custom-charset1=CS User-defined charsets",
448 " -2, --custom-charset2=CS Example:",
449 " -3, --custom-charset3=CS --custom-charset1=?dabcdef : sets charset ?1 to 0123456789abcdef",
450 " -4, --custom-charset4=CS -2 mycharset.hcchr : sets charset ?2 to chars contained in file",
451 "",
452 "* Increment:",
453 "",
454 " -i, --increment Enable increment mode",
455 " --increment-min=NUM Start incrementing at NUM",
456 " --increment-max=NUM Stop incrementing at NUM",
457 "",
458 "==========",
459 "References",
460 "==========",
461 "",
462 "* Workload Profile:",
463 "",
464 " 1 = Interactive performance profile, kernel execution runtime to 8ms, lower latency desktop, lower speed",
465 " 2 = Default performance profile, kernel execution runtime to 16ms, economic setting",
466 " 3 = Headless performance profile, kernel execution runtime to 96ms, higher latency desktop, higher speed",
467 "",
468 "* OpenCL device-types:",
469 "",
470 " 1 = CPU devices",
471 " 2 = GPU devices",
472 " 3 = Accelerator devices (FPGA, CELL Blade, etc.)",
473 "",
474 "* Outfile Formats:",
475 "",
476 " 1 = hash[:salt]",
477 " 2 = plain",
478 " 3 = hash[:salt]:plain",
479 " 4 = hex_plain",
480 " 5 = hash[:salt]:hex_plain",
481 " 6 = plain:hex_plain",
482 " 7 = hash[:salt]:plain:hex_plain",
483 " 8 = crackpos",
484 " 9 = hash[:salt]:crackpos",
485 " 10 = plain:crackpos",
486 " 11 = hash[:salt]:plain:crackpos",
487 " 12 = hex_plain:crackpos",
488 " 13 = hash[:salt]:hex_plain:crackpos",
489 " 14 = plain:hex_plain:crackpos",
490 " 15 = hash[:salt]:plain:hex_plain:crackpos",
491 "",
492 "* Debug mode output formats (for hybrid mode only, by using rules):",
493 "",
494 " 1 = save finding rule",
495 " 2 = save original word",
496 " 3 = save original word and finding rule",
497 " 4 = save original word, finding rule and modified plain",
498 "",
499 "* Built-in charsets:",
500 "",
501 " ?l = abcdefghijklmnopqrstuvwxyz",
502 " ?u = ABCDEFGHIJKLMNOPQRSTUVWXYZ",
503 " ?d = 0123456789",
504 " ?s = !\"#$%%&'()*+,-./:;<=>?@[\\]^_`{|}~",
505 " ?a = ?l?u?d?s",
506 " ?b = 0x00 - 0xff",
507 "",
508 "* Attack modes:",
509 "",
510 " 0 = Straight",
511 " 1 = Combination",
512 " 3 = Brute-force",
513 " 6 = Hybrid dict + mask",
514 " 7 = Hybrid mask + dict",
515 "",
516 "* Hash types:",
517 "",
518 "[[ Roll-your-own: Raw Hashes ]]",
519 "",
520 " 900 = MD4",
521 " 0 = MD5",
522 " 5100 = Half MD5",
523 " 100 = SHA1",
524 " 10800 = SHA-384",
525 " 1400 = SHA-256",
526 " 1700 = SHA-512",
527 " 5000 = SHA-3(Keccak)",
528 " 10100 = SipHash",
529 " 6000 = RipeMD160",
530 " 6100 = Whirlpool",
531 " 6900 = GOST R 34.11-94",
532 " 11700 = GOST R 34.11-2012 (Streebog) 256-bit",
533 " 11800 = GOST R 34.11-2012 (Streebog) 512-bit",
534 "",
535 "[[ Roll-your-own: Iterated and / or Salted Hashes ]]",
536 "",
537 " 10 = md5($pass.$salt)",
538 " 20 = md5($salt.$pass)",
539 " 30 = md5(unicode($pass).$salt)",
540 " 40 = md5($salt.unicode($pass))",
541 " 3800 = md5($salt.$pass.$salt)",
542 " 3710 = md5($salt.md5($pass))",
543 " 2600 = md5(md5($pass)",
544 " 4300 = md5(strtoupper(md5($pass)))",
545 " 4400 = md5(sha1($pass))",
546 " 110 = sha1($pass.$salt)",
547 " 120 = sha1($salt.$pass)",
548 " 130 = sha1(unicode($pass).$salt)",
549 " 140 = sha1($salt.unicode($pass))",
550 " 4500 = sha1(sha1($pass)",
551 " 4700 = sha1(md5($pass))",
552 " 4900 = sha1($salt.$pass.$salt)",
553 " 1410 = sha256($pass.$salt)",
554 " 1420 = sha256($salt.$pass)",
555 " 1430 = sha256(unicode($pass).$salt)",
556 " 1440 = sha256($salt.unicode($pass))",
557 " 1710 = sha512($pass.$salt)",
558 " 1720 = sha512($salt.$pass)",
559 " 1730 = sha512(unicode($pass).$salt)",
560 " 1740 = sha512($salt.unicode($pass))",
561 "",
562 "[[ Roll-your-own: Authenticated Hashes ]]",
563 "",
564 " 50 = HMAC-MD5 (key = $pass)",
565 " 60 = HMAC-MD5 (key = $salt)",
566 " 150 = HMAC-SHA1 (key = $pass)",
567 " 160 = HMAC-SHA1 (key = $salt)",
568 " 1450 = HMAC-SHA256 (key = $pass)",
569 " 1460 = HMAC-SHA256 (key = $salt)",
570 " 1750 = HMAC-SHA512 (key = $pass)",
571 " 1760 = HMAC-SHA512 (key = $salt)",
572 "",
573 "[[ Generic KDF ]]",
574 "",
575 " 400 = phpass",
576 " 8900 = scrypt",
577 " 11900 = PBKDF2-HMAC-MD5",
578 " 12000 = PBKDF2-HMAC-SHA1",
579 " 10900 = PBKDF2-HMAC-SHA256",
580 " 12100 = PBKDF2-HMAC-SHA512",
581 "",
582 "[[ Network protocols, Challenge-Response ]]",
583 "",
584 " 23 = Skype",
585 " 2500 = WPA/WPA2",
586 " 4800 = iSCSI CHAP authentication, MD5(Chap)",
587 " 5300 = IKE-PSK MD5",
588 " 5400 = IKE-PSK SHA1",
589 " 5500 = NetNTLMv1",
590 " 5500 = NetNTLMv1 + ESS",
591 " 5600 = NetNTLMv2",
592 " 7300 = IPMI2 RAKP HMAC-SHA1",
593 " 7500 = Kerberos 5 AS-REQ Pre-Auth etype 23",
594 " 8300 = DNSSEC (NSEC3)",
595 " 10200 = Cram MD5",
596 " 11100 = PostgreSQL Challenge-Response Authentication (MD5)",
597 " 11200 = MySQL Challenge-Response Authentication (SHA1)",
598 " 11400 = SIP digest authentication (MD5)",
599 " 13100 = Kerberos 5 TGS-REP etype 23",
600 "",
601 "[[ Forums, CMS, E-Commerce, Frameworks, Middleware, Wiki, Management ]]",
602 "",
603 " 121 = SMF (Simple Machines Forum)",
604 " 400 = phpBB3",
605 " 2611 = vBulletin < v3.8.5",
606 " 2711 = vBulletin > v3.8.5",
607 " 2811 = MyBB",
608 " 2811 = IPB (Invison Power Board)",
609 " 8400 = WBB3 (Woltlab Burning Board)",
610 " 11 = Joomla < 2.5.18",
611 " 400 = Joomla > 2.5.18",
612 " 400 = Wordpress",
613 " 2612 = PHPS",
614 " 7900 = Drupal7",
615 " 21 = osCommerce",
616 " 21 = xt:Commerce",
617 " 11000 = PrestaShop",
618 " 124 = Django (SHA-1)",
619 " 10000 = Django (PBKDF2-SHA256)",
620 " 3711 = Mediawiki B type",
621 " 7600 = Redmine",
622 "",
623 "[[ Database Server ]]",
624 "",
625 " 12 = PostgreSQL",
626 " 131 = MSSQL(2000)",
627 " 132 = MSSQL(2005)",
628 " 1731 = MSSQL(2012)",
629 " 1731 = MSSQL(2014)",
630 " 200 = MySQL323",
631 " 300 = MySQL4.1/MySQL5",
632 " 3100 = Oracle H: Type (Oracle 7+)",
633 " 112 = Oracle S: Type (Oracle 11+)",
634 " 12300 = Oracle T: Type (Oracle 12+)",
635 " 8000 = Sybase ASE",
636 "",
637 "[[ HTTP, SMTP, LDAP Server ]]",
638 "",
639 " 141 = EPiServer 6.x < v4",
640 " 1441 = EPiServer 6.x > v4",
641 " 1600 = Apache $apr1$",
642 " 12600 = ColdFusion 10+",
643 " 1421 = hMailServer",
644 " 101 = nsldap, SHA-1(Base64), Netscape LDAP SHA",
645 " 111 = nsldaps, SSHA-1(Base64), Netscape LDAP SSHA",
646 " 1711 = SSHA-512(Base64), LDAP {SSHA512}",
647 "",
648 "[[ Checksums ]]",
649 "",
650 " 11500 = CRC32",
651 "",
652 "[[ Operating-Systems ]]",
653 "",
654 " 3000 = LM",
655 " 1000 = NTLM",
656 " 1100 = Domain Cached Credentials (DCC), MS Cache",
657 " 2100 = Domain Cached Credentials 2 (DCC2), MS Cache 2",
658 " 12800 = MS-AzureSync PBKDF2-HMAC-SHA256",
659 " 1500 = descrypt, DES(Unix), Traditional DES",
660 " 12400 = BSDiCrypt, Extended DES",
661 " 500 = md5crypt $1$, MD5(Unix)",
662 " 3200 = bcrypt $2*$, Blowfish(Unix)",
663 " 7400 = sha256crypt $5$, SHA256(Unix)",
664 " 1800 = sha512crypt $6$, SHA512(Unix)",
665 " 122 = OSX v10.4",
666 " 122 = OSX v10.5",
667 " 122 = OSX v10.6",
668 " 1722 = OSX v10.7",
669 " 7100 = OSX v10.8",
670 " 7100 = OSX v10.9",
671 " 7100 = OSX v10.10",
672 " 6300 = AIX {smd5}",
673 " 6700 = AIX {ssha1}",
674 " 6400 = AIX {ssha256}",
675 " 6500 = AIX {ssha512}",
676 " 2400 = Cisco-PIX",
677 " 2410 = Cisco-ASA",
678 " 500 = Cisco-IOS $1$",
679 " 5700 = Cisco-IOS $4$",
680 " 9200 = Cisco-IOS $8$",
681 " 9300 = Cisco-IOS $9$",
682 " 22 = Juniper Netscreen/SSG (ScreenOS)",
683 " 501 = Juniper IVE",
684 " 5800 = Android PIN",
685 " 8100 = Citrix Netscaler",
686 " 8500 = RACF",
687 " 7200 = GRUB 2",
688 " 9900 = Radmin2",
689 " 125 = ArubaOS",
690 "",
691 "[[ Enterprise Application Software (EAS) ]]",
692 "",
693 " 7700 = SAP CODVN B (BCODE)",
694 " 7800 = SAP CODVN F/G (PASSCODE)",
695 " 10300 = SAP CODVN H (PWDSALTEDHASH) iSSHA-1",
696 " 8600 = Lotus Notes/Domino 5",
697 " 8700 = Lotus Notes/Domino 6",
698 " 9100 = Lotus Notes/Domino 8",
699 " 133 = PeopleSoft",
700 " 13500 = PeopleSoft Token",
701 "",
702 "[[ Archives ]]",
703 "",
704 " 11600 = 7-Zip",
705 " 12500 = RAR3-hp",
706 " 13000 = RAR5",
707 " 13200 = AxCrypt",
708 " 13300 = AxCrypt in memory SHA1",
709 "",
710 "[[ Full-Disk encryptions (FDE) ]]",
711 "",
712 " 62XY = TrueCrypt 5.0+",
713 " X = 1 = PBKDF2-HMAC-RipeMD160",
714 " X = 2 = PBKDF2-HMAC-SHA512",
715 " X = 3 = PBKDF2-HMAC-Whirlpool",
716 " X = 4 = PBKDF2-HMAC-RipeMD160 + boot-mode",
717 " Y = 1 = XTS 512 bit (Ciphers: AES or Serpent or Twofish)",
718 " Y = 2 = XTS 1024 bit (Ciphers: AES or Serpent or Twofish or AES-Twofish or Serpent-AES or Twofish-Serpent)",
719 " Y = 3 = XTS 1536 bit (Ciphers: All)",
720 " 8800 = Android FDE < v4.3",
721 " 12900 = Android FDE (Samsung DEK)",
722 " 12200 = eCryptfs",
723 "",
724 "[[ Documents ]]",
725 "",
726 " 9700 = MS Office <= 2003 MD5 + RC4, oldoffice$0, oldoffice$1",
727 " 9710 = MS Office <= 2003 MD5 + RC4, collider-mode #1",
728 " 9720 = MS Office <= 2003 MD5 + RC4, collider-mode #2",
729 " 9800 = MS Office <= 2003 SHA1 + RC4, oldoffice$3, oldoffice$4",
730 " 9810 = MS Office <= 2003 SHA1 + RC4, collider-mode #1",
731 " 9820 = MS Office <= 2003 SHA1 + RC4, collider-mode #2",
732 " 9400 = MS Office 2007",
733 " 9500 = MS Office 2010",
734 " 9600 = MS Office 2013",
735 " 10400 = PDF 1.1 - 1.3 (Acrobat 2 - 4)",
736 " 10410 = PDF 1.1 - 1.3 (Acrobat 2 - 4) + collider-mode #1",
737 " 10420 = PDF 1.1 - 1.3 (Acrobat 2 - 4) + collider-mode #2",
738 " 10500 = PDF 1.4 - 1.6 (Acrobat 5 - 8)",
739 " 10600 = PDF 1.7 Level 3 (Acrobat 9)",
740 " 10700 = PDF 1.7 Level 8 (Acrobat 10 - 11)",
741 "",
742 "[[ Password Managers ]]",
743 "",
744 " 9000 = Password Safe v2",
745 " 5200 = Password Safe v3",
746 " 6800 = Lastpass",
747 " 6600 = 1Password, agilekeychain",
748 " 8200 = 1Password, cloudkeychain",
749 " 11300 = Bitcoin/Litecoin wallet.dat",
750 " 12700 = Blockchain, My Wallet",
751 " 13400 = Keepass 1 (AES/Twofish) and Keepass 2 (AES)",
752 "",
753 NULL
754 };
755
756 /**
757 * oclHashcat specific functions
758 */
759
760 static double get_avg_exec_time (hc_device_param_t *device_param, const int last_num_entries)
761 {
762 int exec_pos = (int) device_param->exec_pos - last_num_entries;
763
764 if (exec_pos < 0) exec_pos += EXEC_CACHE;
765
766 double exec_ms_sum = 0;
767
768 int exec_ms_cnt = 0;
769
770 for (int i = 0; i < last_num_entries; i++)
771 {
772 double exec_ms = device_param->exec_ms[(exec_pos + i) % EXEC_CACHE];
773
774 if (exec_ms)
775 {
776 exec_ms_sum += exec_ms;
777
778 exec_ms_cnt++;
779 }
780 }
781
782 if (exec_ms_cnt == 0) return 0;
783
784 return exec_ms_sum / exec_ms_cnt;
785 }
786
787 void status_display_automat ()
788 {
789 FILE *out = stdout;
790
791 fprintf (out, "STATUS\t%u\t", data.devices_status);
792
793 /**
794 * speed new
795 */
796
797 fprintf (out, "SPEED\t");
798
799 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
800 {
801 hc_device_param_t *device_param = &data.devices_param[device_id];
802
803 if (device_param->skipped) continue;
804
805 u64 speed_cnt = 0;
806 double speed_ms = 0;
807
808 for (int i = 0; i < SPEED_CACHE; i++)
809 {
810 speed_cnt += device_param->speed_cnt[i];
811 speed_ms += device_param->speed_ms[i];
812 }
813
814 speed_cnt /= SPEED_CACHE;
815 speed_ms /= SPEED_CACHE;
816
817 fprintf (out, "%llu\t%f\t", (unsigned long long int) speed_cnt, speed_ms);
818 }
819
820 /**
821 * exec time
822 */
823
824 fprintf (out, "EXEC_RUNTIME\t");
825
826 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
827 {
828 hc_device_param_t *device_param = &data.devices_param[device_id];
829
830 if (device_param->skipped) continue;
831
832 double exec_ms_avg = get_avg_exec_time (device_param, EXEC_CACHE);
833
834 fprintf (out, "%f\t", exec_ms_avg);
835 }
836
837 /**
838 * words_cur
839 */
840
841 u64 words_cur = get_lowest_words_done ();
842
843 fprintf (out, "CURKU\t%llu\t", (unsigned long long int) words_cur);
844
845 /**
846 * counter
847 */
848
849 u64 progress_total = data.words_cnt * data.salts_cnt;
850
851 u64 all_done = 0;
852 u64 all_rejected = 0;
853 u64 all_restored = 0;
854
855 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
856 {
857 all_done += data.words_progress_done[salt_pos];
858 all_rejected += data.words_progress_rejected[salt_pos];
859 all_restored += data.words_progress_restored[salt_pos];
860 }
861
862 u64 progress_cur = all_restored + all_done + all_rejected;
863 u64 progress_end = progress_total;
864
865 u64 progress_skip = 0;
866
867 if (data.skip)
868 {
869 progress_skip = MIN (data.skip, data.words_base) * data.salts_cnt;
870
871 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_skip *= data.kernel_rules_cnt;
872 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_skip *= data.combs_cnt;
873 else if (data.attack_kern == ATTACK_KERN_BF) progress_skip *= data.bfs_cnt;
874 }
875
876 if (data.limit)
877 {
878 progress_end = MIN (data.limit, data.words_base) * data.salts_cnt;
879
880 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_end *= data.kernel_rules_cnt;
881 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_end *= data.combs_cnt;
882 else if (data.attack_kern == ATTACK_KERN_BF) progress_end *= data.bfs_cnt;
883 }
884
885 u64 progress_cur_relative_skip = progress_cur - progress_skip;
886 u64 progress_end_relative_skip = progress_end - progress_skip;
887
888 fprintf (out, "PROGRESS\t%llu\t%llu\t", (unsigned long long int) progress_cur_relative_skip, (unsigned long long int) progress_end_relative_skip);
889
890 /**
891 * cracks
892 */
893
894 fprintf (out, "RECHASH\t%u\t%u\t", data.digests_done, data.digests_cnt);
895 fprintf (out, "RECSALT\t%u\t%u\t", data.salts_done, data.salts_cnt);
896
897 /**
898 * temperature
899 */
900
901 #ifdef HAVE_HWMON
902 if (data.gpu_temp_disable == 0)
903 {
904 fprintf (out, "TEMP\t");
905
906 hc_thread_mutex_lock (mux_adl);
907
908 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
909 {
910 hc_device_param_t *device_param = &data.devices_param[device_id];
911
912 if (device_param->skipped) continue;
913
914 int temp = hm_get_temperature_with_device_id (device_id);
915
916 fprintf (out, "%d\t", temp);
917 }
918
919 hc_thread_mutex_unlock (mux_adl);
920 }
921 #endif // HAVE_HWMON
922
923 /**
924 * flush
925 */
926
927 #ifdef _WIN
928 fputc ('\r', out);
929 fputc ('\n', out);
930 #endif
931
932 #ifdef _POSIX
933 fputc ('\n', out);
934 #endif
935
936 fflush (out);
937 }
938
939 void status_display ()
940 {
941 if (data.devices_status == STATUS_INIT) return;
942 if (data.devices_status == STATUS_STARTING) return;
943 if (data.devices_status == STATUS_BYPASS) return;
944
945 if (data.status_automat == 1)
946 {
947 status_display_automat ();
948
949 return;
950 }
951
952 char tmp_buf[1000] = { 0 };
953
954 uint tmp_len = 0;
955
956 log_info ("Session.Name...: %s", data.session);
957
958 char *status_type = strstatus (data.devices_status);
959
960 uint hash_mode = data.hash_mode;
961
962 char *hash_type = strhashtype (hash_mode); // not a bug
963
964 log_info ("Status.........: %s", status_type);
965
966 /**
967 * show rules
968 */
969
970 if (data.rp_files_cnt)
971 {
972 uint i;
973
974 for (i = 0, tmp_len = 0; i < data.rp_files_cnt - 1 && tmp_len < sizeof (tmp_buf); i++)
975 {
976 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, "File (%s), ", data.rp_files[i]);
977 }
978
979 snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, "File (%s)", data.rp_files[i]);
980
981 log_info ("Rules.Type.....: %s", tmp_buf);
982
983 tmp_len = 0;
984 }
985
986 if (data.rp_gen)
987 {
988 log_info ("Rules.Type.....: Generated (%u)", data.rp_gen);
989
990 if (data.rp_gen_seed)
991 {
992 log_info ("Rules.Seed.....: %u", data.rp_gen_seed);
993 }
994 }
995
996 /**
997 * show input
998 */
999
1000 if (data.attack_mode == ATTACK_MODE_STRAIGHT)
1001 {
1002 if (data.wordlist_mode == WL_MODE_FILE)
1003 {
1004 if (data.dictfile != NULL) log_info ("Input.Mode.....: File (%s)", data.dictfile);
1005 }
1006 else if (data.wordlist_mode == WL_MODE_STDIN)
1007 {
1008 log_info ("Input.Mode.....: Pipe");
1009 }
1010 }
1011 else if (data.attack_mode == ATTACK_MODE_COMBI)
1012 {
1013 if (data.dictfile != NULL) log_info ("Input.Left.....: File (%s)", data.dictfile);
1014 if (data.dictfile2 != NULL) log_info ("Input.Right....: File (%s)", data.dictfile2);
1015 }
1016 else if (data.attack_mode == ATTACK_MODE_BF)
1017 {
1018 char *mask = data.mask;
1019
1020 if (mask != NULL)
1021 {
1022 uint mask_len = data.css_cnt;
1023
1024 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, "Mask (%s)", mask);
1025
1026 if (mask_len > 0)
1027 {
1028 if (data.opti_type & OPTI_TYPE_SINGLE_HASH)
1029 {
1030 if (data.opti_type & OPTI_TYPE_APPENDED_SALT)
1031 {
1032 mask_len -= data.salts_buf[0].salt_len;
1033 }
1034 }
1035
1036 if (data.opts_type & OPTS_TYPE_PT_UNICODE) mask_len /= 2;
1037
1038 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, " [%i]", mask_len);
1039 }
1040
1041 if (data.maskcnt > 1)
1042 {
1043 float mask_percentage = (float) data.maskpos / (float) data.maskcnt;
1044
1045 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, " (%.02f%%)", mask_percentage * 100);
1046 }
1047
1048 log_info ("Input.Mode.....: %s", tmp_buf);
1049 }
1050
1051 tmp_len = 0;
1052 }
1053 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
1054 {
1055 if (data.dictfile != NULL) log_info ("Input.Left.....: File (%s)", data.dictfile);
1056 if (data.mask != NULL) log_info ("Input.Right....: Mask (%s) [%i]", data.mask, data.css_cnt);
1057 }
1058 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
1059 {
1060 if (data.mask != NULL) log_info ("Input.Left.....: Mask (%s) [%i]", data.mask, data.css_cnt);
1061 if (data.dictfile != NULL) log_info ("Input.Right....: File (%s)", data.dictfile);
1062 }
1063
1064 if (data.digests_cnt == 1)
1065 {
1066 if (data.hash_mode == 2500)
1067 {
1068 wpa_t *wpa = (wpa_t *) data.esalts_buf;
1069
1070 log_info ("Hash.Target....: %s (%02x:%02x:%02x:%02x:%02x:%02x <-> %02x:%02x:%02x:%02x:%02x:%02x)",
1071 (char *) data.salts_buf[0].salt_buf,
1072 wpa->orig_mac1[0],
1073 wpa->orig_mac1[1],
1074 wpa->orig_mac1[2],
1075 wpa->orig_mac1[3],
1076 wpa->orig_mac1[4],
1077 wpa->orig_mac1[5],
1078 wpa->orig_mac2[0],
1079 wpa->orig_mac2[1],
1080 wpa->orig_mac2[2],
1081 wpa->orig_mac2[3],
1082 wpa->orig_mac2[4],
1083 wpa->orig_mac2[5]);
1084 }
1085 else if (data.hash_mode == 5200)
1086 {
1087 log_info ("Hash.Target....: File (%s)", data.hashfile);
1088 }
1089 else if (data.hash_mode == 9000)
1090 {
1091 log_info ("Hash.Target....: File (%s)", data.hashfile);
1092 }
1093 else if ((data.hash_mode >= 6200) && (data.hash_mode <= 6299))
1094 {
1095 log_info ("Hash.Target....: File (%s)", data.hashfile);
1096 }
1097 else
1098 {
1099 char out_buf[HCBUFSIZ] = { 0 };
1100
1101 ascii_digest (out_buf, 0, 0);
1102
1103 // limit length
1104 if (strlen (out_buf) > 40)
1105 {
1106 out_buf[41] = '.';
1107 out_buf[42] = '.';
1108 out_buf[43] = '.';
1109 out_buf[44] = 0;
1110 }
1111
1112 log_info ("Hash.Target....: %s", out_buf);
1113 }
1114 }
1115 else
1116 {
1117 if (data.hash_mode == 3000)
1118 {
1119 char out_buf1[32] = { 0 };
1120 char out_buf2[32] = { 0 };
1121
1122 ascii_digest (out_buf1, 0, 0);
1123 ascii_digest (out_buf2, 0, 1);
1124
1125 log_info ("Hash.Target....: %s, %s", out_buf1, out_buf2);
1126 }
1127 else
1128 {
1129 log_info ("Hash.Target....: File (%s)", data.hashfile);
1130 }
1131 }
1132
1133 log_info ("Hash.Type......: %s", hash_type);
1134
1135 /**
1136 * speed new
1137 */
1138
1139 u64 speed_cnt[DEVICES_MAX] = { 0 };
1140 double speed_ms[DEVICES_MAX] = { 0 };
1141
1142 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1143 {
1144 hc_device_param_t *device_param = &data.devices_param[device_id];
1145
1146 if (device_param->skipped) continue;
1147
1148 speed_cnt[device_id] = 0;
1149 speed_ms[device_id] = 0;
1150
1151 for (int i = 0; i < SPEED_CACHE; i++)
1152 {
1153 speed_cnt[device_id] += device_param->speed_cnt[i];
1154 speed_ms[device_id] += device_param->speed_ms[i];
1155 }
1156
1157 speed_cnt[device_id] /= SPEED_CACHE;
1158 speed_ms[device_id] /= SPEED_CACHE;
1159 }
1160
1161 float hashes_all_ms = 0;
1162
1163 float hashes_dev_ms[DEVICES_MAX] = { 0 };
1164
1165 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1166 {
1167 hc_device_param_t *device_param = &data.devices_param[device_id];
1168
1169 if (device_param->skipped) continue;
1170
1171 hashes_dev_ms[device_id] = 0;
1172
1173 if (speed_ms[device_id])
1174 {
1175 hashes_dev_ms[device_id] = speed_cnt[device_id] / speed_ms[device_id];
1176
1177 hashes_all_ms += hashes_dev_ms[device_id];
1178 }
1179 }
1180
1181 /**
1182 * exec time
1183 */
1184
1185 double exec_all_ms[DEVICES_MAX] = { 0 };
1186
1187 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1188 {
1189 hc_device_param_t *device_param = &data.devices_param[device_id];
1190
1191 if (device_param->skipped) continue;
1192
1193 double exec_ms_avg = get_avg_exec_time (device_param, EXEC_CACHE);
1194
1195 exec_all_ms[device_id] = exec_ms_avg;
1196 }
1197
1198 /**
1199 * timers
1200 */
1201
1202 double ms_running = 0;
1203
1204 hc_timer_get (data.timer_running, ms_running);
1205
1206 double ms_paused = data.ms_paused;
1207
1208 if (data.devices_status == STATUS_PAUSED)
1209 {
1210 double ms_paused_tmp = 0;
1211
1212 hc_timer_get (data.timer_paused, ms_paused_tmp);
1213
1214 ms_paused += ms_paused_tmp;
1215 }
1216
1217 #ifdef WIN
1218
1219 __time64_t sec_run = ms_running / 1000;
1220
1221 #else
1222
1223 time_t sec_run = ms_running / 1000;
1224
1225 #endif
1226
1227 if (sec_run)
1228 {
1229 char display_run[32] = { 0 };
1230
1231 struct tm tm_run;
1232
1233 struct tm *tmp = NULL;
1234
1235 #ifdef WIN
1236
1237 tmp = _gmtime64 (&sec_run);
1238
1239 #else
1240
1241 tmp = gmtime (&sec_run);
1242
1243 #endif
1244
1245 if (tmp != NULL)
1246 {
1247 memset (&tm_run, 0, sizeof (tm_run));
1248
1249 memcpy (&tm_run, tmp, sizeof (tm_run));
1250
1251 format_timer_display (&tm_run, display_run, sizeof (tm_run));
1252
1253 char *start = ctime (&data.proc_start);
1254
1255 size_t start_len = strlen (start);
1256
1257 if (start[start_len - 1] == '\n') start[start_len - 1] = 0;
1258 if (start[start_len - 2] == '\r') start[start_len - 2] = 0;
1259
1260 log_info ("Time.Started...: %s (%s)", start, display_run);
1261 }
1262 }
1263 else
1264 {
1265 log_info ("Time.Started...: 0 secs");
1266 }
1267
1268 /**
1269 * counters
1270 */
1271
1272 u64 progress_total = data.words_cnt * data.salts_cnt;
1273
1274 u64 all_done = 0;
1275 u64 all_rejected = 0;
1276 u64 all_restored = 0;
1277
1278 u64 progress_noneed = 0;
1279
1280 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
1281 {
1282 all_done += data.words_progress_done[salt_pos];
1283 all_rejected += data.words_progress_rejected[salt_pos];
1284 all_restored += data.words_progress_restored[salt_pos];
1285
1286 // Important for ETA only
1287
1288 if (data.salts_shown[salt_pos] == 1)
1289 {
1290 const u64 all = data.words_progress_done[salt_pos]
1291 + data.words_progress_rejected[salt_pos]
1292 + data.words_progress_restored[salt_pos];
1293
1294 const u64 left = data.words_cnt - all;
1295
1296 progress_noneed += left;
1297 }
1298 }
1299
1300 u64 progress_cur = all_restored + all_done + all_rejected;
1301 u64 progress_end = progress_total;
1302
1303 u64 progress_skip = 0;
1304
1305 if (data.skip)
1306 {
1307 progress_skip = MIN (data.skip, data.words_base) * data.salts_cnt;
1308
1309 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_skip *= data.kernel_rules_cnt;
1310 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_skip *= data.combs_cnt;
1311 else if (data.attack_kern == ATTACK_KERN_BF) progress_skip *= data.bfs_cnt;
1312 }
1313
1314 if (data.limit)
1315 {
1316 progress_end = MIN (data.limit, data.words_base) * data.salts_cnt;
1317
1318 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_end *= data.kernel_rules_cnt;
1319 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_end *= data.combs_cnt;
1320 else if (data.attack_kern == ATTACK_KERN_BF) progress_end *= data.bfs_cnt;
1321 }
1322
1323 u64 progress_cur_relative_skip = progress_cur - progress_skip;
1324 u64 progress_end_relative_skip = progress_end - progress_skip;
1325
1326 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
1327 {
1328 if (data.devices_status != STATUS_CRACKED)
1329 {
1330 #ifdef WIN
1331 __time64_t sec_etc = 0;
1332 #else
1333 time_t sec_etc = 0;
1334 #endif
1335
1336 if (hashes_all_ms)
1337 {
1338 u64 progress_left_relative_skip = progress_end_relative_skip - progress_cur_relative_skip;
1339
1340 u64 ms_left = (progress_left_relative_skip - progress_noneed) / hashes_all_ms;
1341
1342 sec_etc = ms_left / 1000;
1343 }
1344
1345 if (sec_etc == 0)
1346 {
1347 //log_info ("Time.Estimated.: 0 secs");
1348 }
1349 else if ((u64) sec_etc > ETC_MAX)
1350 {
1351 log_info ("Time.Estimated.: > 10 Years");
1352 }
1353 else
1354 {
1355 char display_etc[32] = { 0 };
1356
1357 struct tm tm_etc;
1358
1359 struct tm *tmp = NULL;
1360
1361 #ifdef WIN
1362
1363 tmp = _gmtime64 (&sec_etc);
1364
1365 #else
1366
1367 tmp = gmtime (&sec_etc);
1368
1369 #endif
1370
1371 if (tmp != NULL)
1372 {
1373 memset (&tm_etc, 0, sizeof (tm_etc));
1374
1375 memcpy (&tm_etc, tmp, sizeof (tm_etc));
1376
1377 format_timer_display (&tm_etc, display_etc, sizeof (display_etc));
1378
1379 time_t now;
1380
1381 time (&now);
1382
1383 now += sec_etc;
1384
1385 char *etc = ctime (&now);
1386
1387 size_t etc_len = strlen (etc);
1388
1389 if (etc[etc_len - 1] == '\n') etc[etc_len - 1] = 0;
1390 if (etc[etc_len - 2] == '\r') etc[etc_len - 2] = 0;
1391
1392 log_info ("Time.Estimated.: %s (%s)", etc, display_etc);
1393 }
1394 }
1395 }
1396 }
1397
1398 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1399 {
1400 hc_device_param_t *device_param = &data.devices_param[device_id];
1401
1402 if (device_param->skipped) continue;
1403
1404 char display_dev_cur[16] = { 0 };
1405
1406 strncpy (display_dev_cur, "0.00", 4);
1407
1408 format_speed_display (hashes_dev_ms[device_id] * 1000, display_dev_cur, sizeof (display_dev_cur));
1409
1410 log_info ("Speed.Dev.#%d...: %9sH/s (%0.2fms)", device_id + 1, display_dev_cur, exec_all_ms[device_id]);
1411 }
1412
1413 char display_all_cur[16] = { 0 };
1414
1415 strncpy (display_all_cur, "0.00", 4);
1416
1417 format_speed_display (hashes_all_ms * 1000, display_all_cur, sizeof (display_all_cur));
1418
1419 if (data.devices_active > 1) log_info ("Speed.Dev.#*...: %9sH/s", display_all_cur);
1420
1421 const float digests_percent = (float) data.digests_done / data.digests_cnt;
1422 const float salts_percent = (float) data.salts_done / data.salts_cnt;
1423
1424 log_info ("Recovered......: %u/%u (%.2f%%) Digests, %u/%u (%.2f%%) Salts", data.digests_done, data.digests_cnt, digests_percent * 100, data.salts_done, data.salts_cnt, salts_percent * 100);
1425
1426 // crack-per-time
1427
1428 if (data.digests_cnt > 100)
1429 {
1430 time_t now = time (NULL);
1431
1432 int cpt_cur_min = 0;
1433 int cpt_cur_hour = 0;
1434 int cpt_cur_day = 0;
1435
1436 for (int i = 0; i < CPT_BUF; i++)
1437 {
1438 const uint cracked = data.cpt_buf[i].cracked;
1439 const time_t timestamp = data.cpt_buf[i].timestamp;
1440
1441 if ((timestamp + 60) > now)
1442 {
1443 cpt_cur_min += cracked;
1444 }
1445
1446 if ((timestamp + 3600) > now)
1447 {
1448 cpt_cur_hour += cracked;
1449 }
1450
1451 if ((timestamp + 86400) > now)
1452 {
1453 cpt_cur_day += cracked;
1454 }
1455 }
1456
1457 double ms_real = ms_running - ms_paused;
1458
1459 float cpt_avg_min = (float) data.cpt_total / ((ms_real / 1000) / 60);
1460 float cpt_avg_hour = (float) data.cpt_total / ((ms_real / 1000) / 3600);
1461 float cpt_avg_day = (float) data.cpt_total / ((ms_real / 1000) / 86400);
1462
1463 if ((data.cpt_start + 86400) < now)
1464 {
1465 log_info ("Recovered/Time.: CUR:%llu,%llu,%llu AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1466 cpt_cur_min,
1467 cpt_cur_hour,
1468 cpt_cur_day,
1469 cpt_avg_min,
1470 cpt_avg_hour,
1471 cpt_avg_day);
1472 }
1473 else if ((data.cpt_start + 3600) < now)
1474 {
1475 log_info ("Recovered/Time.: CUR:%llu,%llu,N/A AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1476 cpt_cur_min,
1477 cpt_cur_hour,
1478 cpt_avg_min,
1479 cpt_avg_hour,
1480 cpt_avg_day);
1481 }
1482 else if ((data.cpt_start + 60) < now)
1483 {
1484 log_info ("Recovered/Time.: CUR:%llu,N/A,N/A AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1485 cpt_cur_min,
1486 cpt_avg_min,
1487 cpt_avg_hour,
1488 cpt_avg_day);
1489 }
1490 else
1491 {
1492 log_info ("Recovered/Time.: CUR:N/A,N/A,N/A AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1493 cpt_avg_min,
1494 cpt_avg_hour,
1495 cpt_avg_day);
1496 }
1497 }
1498
1499 // Restore point
1500
1501 u64 restore_point = get_lowest_words_done ();
1502
1503 u64 restore_total = data.words_base;
1504
1505 float percent_restore = 0;
1506
1507 if (restore_total != 0) percent_restore = (float) restore_point / (float) restore_total;
1508
1509 if (progress_end_relative_skip)
1510 {
1511 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
1512 {
1513 float percent_finished = (float) progress_cur_relative_skip / (float) progress_end_relative_skip;
1514 float percent_rejected = 0.0;
1515
1516 if (progress_cur)
1517 {
1518 percent_rejected = (float) (all_rejected) / (float) progress_cur;
1519 }
1520
1521 log_info ("Progress.......: %llu/%llu (%.02f%%)", (unsigned long long int) progress_cur_relative_skip, (unsigned long long int) progress_end_relative_skip, percent_finished * 100);
1522 log_info ("Rejected.......: %llu/%llu (%.02f%%)", (unsigned long long int) all_rejected, (unsigned long long int) progress_cur_relative_skip, percent_rejected * 100);
1523
1524 if (data.restore_disable == 0)
1525 {
1526 if (percent_finished != 1)
1527 {
1528 log_info ("Restore.Point..: %llu/%llu (%.02f%%)", (unsigned long long int) restore_point, (unsigned long long int) restore_total, percent_restore * 100);
1529 }
1530 }
1531 }
1532 }
1533 else
1534 {
1535 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
1536 {
1537 log_info ("Progress.......: %llu/%llu (%.02f%%)", (u64) 0, (u64) 0, (float) 100);
1538 log_info ("Rejected.......: %llu/%llu (%.02f%%)", (u64) 0, (u64) 0, (float) 100);
1539
1540 if (data.restore_disable == 0)
1541 {
1542 log_info ("Restore.Point..: %llu/%llu (%.02f%%)", (u64) 0, (u64) 0, (float) 100);
1543 }
1544 }
1545 else
1546 {
1547 log_info ("Progress.......: %llu", (unsigned long long int) progress_cur_relative_skip);
1548 log_info ("Rejected.......: %llu", (unsigned long long int) all_rejected);
1549
1550 // --restore not allowed if stdin is used -- really? why?
1551
1552 //if (data.restore_disable == 0)
1553 //{
1554 // log_info ("Restore.Point..: %llu", (unsigned long long int) restore_point);
1555 //}
1556 }
1557 }
1558
1559 #ifdef HAVE_HWMON
1560 if (data.gpu_temp_disable == 0)
1561 {
1562 hc_thread_mutex_lock (mux_adl);
1563
1564 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1565 {
1566 hc_device_param_t *device_param = &data.devices_param[device_id];
1567
1568 if (device_param->skipped) continue;
1569
1570 #define HM_STR_BUF_SIZE 255
1571
1572 if (data.hm_device[device_id].fan_supported == 1)
1573 {
1574 char utilization[HM_STR_BUF_SIZE] = { 0 };
1575 char temperature[HM_STR_BUF_SIZE] = { 0 };
1576 char fanspeed[HM_STR_BUF_SIZE] = { 0 };
1577
1578 hm_device_val_to_str ((char *) utilization, HM_STR_BUF_SIZE, "%", hm_get_utilization_with_device_id (device_id));
1579 hm_device_val_to_str ((char *) temperature, HM_STR_BUF_SIZE, "c", hm_get_temperature_with_device_id (device_id));
1580
1581 if (device_param->vendor_id == VENDOR_ID_AMD)
1582 {
1583 hm_device_val_to_str ((char *) fanspeed, HM_STR_BUF_SIZE, "%", hm_get_fanspeed_with_device_id (device_id));
1584 }
1585 else if (device_param->vendor_id == VENDOR_ID_NV)
1586 {
1587 hm_device_val_to_str ((char *) fanspeed, HM_STR_BUF_SIZE, "%", hm_get_fanspeed_with_device_id (device_id));
1588 }
1589
1590 log_info ("HWMon.GPU.#%d...: %s Util, %s Temp, %s Fan", device_id + 1, utilization, temperature, fanspeed);
1591 }
1592 else
1593 {
1594 char utilization[HM_STR_BUF_SIZE] = { 0 };
1595 char temperature[HM_STR_BUF_SIZE] = { 0 };
1596
1597 hm_device_val_to_str ((char *) utilization, HM_STR_BUF_SIZE, "%", hm_get_utilization_with_device_id (device_id));
1598 hm_device_val_to_str ((char *) temperature, HM_STR_BUF_SIZE, "c", hm_get_temperature_with_device_id (device_id));
1599
1600 log_info ("HWMon.GPU.#%d...: %s Util, %s Temp, N/A Fan", device_id + 1, utilization, temperature);
1601 }
1602 }
1603
1604 hc_thread_mutex_unlock (mux_adl);
1605 }
1606 #endif // HAVE_HWMON
1607 }
1608
1609 static void status_benchmark ()
1610 {
1611 if (data.devices_status == STATUS_INIT) return;
1612 if (data.devices_status == STATUS_STARTING) return;
1613
1614 if (data.words_cnt == 0) return;
1615
1616 u64 speed_cnt[DEVICES_MAX] = { 0 };
1617 double speed_ms[DEVICES_MAX] = { 0 };
1618
1619 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1620 {
1621 hc_device_param_t *device_param = &data.devices_param[device_id];
1622
1623 if (device_param->skipped) continue;
1624
1625 speed_cnt[device_id] = device_param->speed_cnt[0];
1626 speed_ms[device_id] = device_param->speed_ms[0];
1627 }
1628
1629 float hashes_all_ms = 0;
1630
1631 float hashes_dev_ms[DEVICES_MAX] = { 0 };
1632
1633 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1634 {
1635 hc_device_param_t *device_param = &data.devices_param[device_id];
1636
1637 if (device_param->skipped) continue;
1638
1639 hashes_dev_ms[device_id] = 0;
1640
1641 if (speed_ms[device_id])
1642 {
1643 hashes_dev_ms[device_id] = speed_cnt[device_id] / speed_ms[device_id];
1644
1645 hashes_all_ms += hashes_dev_ms[device_id];
1646 }
1647 }
1648
1649 /**
1650 * exec time
1651 */
1652
1653 double exec_all_ms[DEVICES_MAX] = { 0 };
1654
1655 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1656 {
1657 hc_device_param_t *device_param = &data.devices_param[device_id];
1658
1659 if (device_param->skipped) continue;
1660
1661 double exec_ms_avg = get_avg_exec_time (device_param, EXEC_CACHE);
1662
1663 exec_all_ms[device_id] = exec_ms_avg;
1664 }
1665
1666 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1667 {
1668 hc_device_param_t *device_param = &data.devices_param[device_id];
1669
1670 if (device_param->skipped) continue;
1671
1672 char display_dev_cur[16] = { 0 };
1673
1674 strncpy (display_dev_cur, "0.00", 4);
1675
1676 format_speed_display (hashes_dev_ms[device_id] * 1000, display_dev_cur, sizeof (display_dev_cur));
1677
1678 log_info ("Speed.Dev.#%d.: %9sH/s (%0.2fms)", device_id + 1, display_dev_cur, exec_all_ms[device_id]);
1679 }
1680
1681 char display_all_cur[16] = { 0 };
1682
1683 strncpy (display_all_cur, "0.00", 4);
1684
1685 format_speed_display (hashes_all_ms * 1000, display_all_cur, sizeof (display_all_cur));
1686
1687 if (data.devices_active > 1) log_info ("Speed.Dev.#*.: %9sH/s", display_all_cur);
1688 }
1689
1690 /**
1691 * oclHashcat -only- functions
1692 */
1693
1694 static void generate_source_kernel_filename (const uint attack_exec, const uint attack_kern, const uint kern_type, char *shared_dir, char *source_file)
1695 {
1696 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
1697 {
1698 if (attack_kern == ATTACK_KERN_STRAIGHT)
1699 snprintf (source_file, 255, "%s/OpenCL/m%05d_a0.cl", shared_dir, (int) kern_type);
1700 else if (attack_kern == ATTACK_KERN_COMBI)
1701 snprintf (source_file, 255, "%s/OpenCL/m%05d_a1.cl", shared_dir, (int) kern_type);
1702 else if (attack_kern == ATTACK_KERN_BF)
1703 snprintf (source_file, 255, "%s/OpenCL/m%05d_a3.cl", shared_dir, (int) kern_type);
1704 }
1705 else
1706 snprintf (source_file, 255, "%s/OpenCL/m%05d.cl", shared_dir, (int) kern_type);
1707 }
1708
1709 static void generate_cached_kernel_filename (const uint attack_exec, const uint attack_kern, const uint kern_type, char *profile_dir, const char *device_name_chksum, char *cached_file)
1710 {
1711 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
1712 {
1713 if (attack_kern == ATTACK_KERN_STRAIGHT)
1714 snprintf (cached_file, 255, "%s/kernels/m%05d_a0.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1715 else if (attack_kern == ATTACK_KERN_COMBI)
1716 snprintf (cached_file, 255, "%s/kernels/m%05d_a1.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1717 else if (attack_kern == ATTACK_KERN_BF)
1718 snprintf (cached_file, 255, "%s/kernels/m%05d_a3.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1719 }
1720 else
1721 {
1722 snprintf (cached_file, 255, "%s/kernels/m%05d.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1723 }
1724 }
1725
1726 static void generate_source_kernel_mp_filename (const uint opti_type, const uint opts_type, char *shared_dir, char *source_file)
1727 {
1728 if ((opti_type & OPTI_TYPE_BRUTE_FORCE) && (opts_type & OPTS_TYPE_PT_GENERATE_BE))
1729 {
1730 snprintf (source_file, 255, "%s/OpenCL/markov_be.cl", shared_dir);
1731 }
1732 else
1733 {
1734 snprintf (source_file, 255, "%s/OpenCL/markov_le.cl", shared_dir);
1735 }
1736 }
1737
1738 static void generate_cached_kernel_mp_filename (const uint opti_type, const uint opts_type, char *profile_dir, const char *device_name_chksum, char *cached_file)
1739 {
1740 if ((opti_type & OPTI_TYPE_BRUTE_FORCE) && (opts_type & OPTS_TYPE_PT_GENERATE_BE))
1741 {
1742 snprintf (cached_file, 255, "%s/kernels/markov_be.%s.kernel", profile_dir, device_name_chksum);
1743 }
1744 else
1745 {
1746 snprintf (cached_file, 255, "%s/kernels/markov_le.%s.kernel", profile_dir, device_name_chksum);
1747 }
1748 }
1749
1750 static void generate_source_kernel_amp_filename (const uint attack_kern, char *shared_dir, char *source_file)
1751 {
1752 snprintf (source_file, 255, "%s/OpenCL/amp_a%d.cl", shared_dir, attack_kern);
1753 }
1754
1755 static void generate_cached_kernel_amp_filename (const uint attack_kern, char *profile_dir, const char *device_name_chksum, char *cached_file)
1756 {
1757 snprintf (cached_file, 255, "%s/kernels/amp_a%d.%s.kernel", profile_dir, attack_kern, device_name_chksum);
1758 }
1759
1760 static uint convert_from_hex (char *line_buf, const uint line_len)
1761 {
1762 if (line_len & 1) return (line_len); // not in hex
1763
1764 if (data.hex_wordlist == 1)
1765 {
1766 uint i;
1767 uint j;
1768
1769 for (i = 0, j = 0; j < line_len; i += 1, j += 2)
1770 {
1771 line_buf[i] = hex_to_u8 ((const u8 *) &line_buf[j]);
1772 }
1773
1774 memset (line_buf + i, 0, line_len - i);
1775
1776 return (i);
1777 }
1778 else if (line_len >= 6) // $HEX[] = 6
1779 {
1780 if (line_buf[0] != '$') return (line_len);
1781 if (line_buf[1] != 'H') return (line_len);
1782 if (line_buf[2] != 'E') return (line_len);
1783 if (line_buf[3] != 'X') return (line_len);
1784 if (line_buf[4] != '[') return (line_len);
1785 if (line_buf[line_len - 1] != ']') return (line_len);
1786
1787 uint i;
1788 uint j;
1789
1790 for (i = 0, j = 5; j < line_len - 1; i += 1, j += 2)
1791 {
1792 line_buf[i] = hex_to_u8 ((const u8 *) &line_buf[j]);
1793 }
1794
1795 memset (line_buf + i, 0, line_len - i);
1796
1797 return (i);
1798 }
1799
1800 return (line_len);
1801 }
1802
1803 static void clear_prompt ()
1804 {
1805 fputc ('\r', stdout);
1806
1807 for (size_t i = 0; i < strlen (PROMPT); i++)
1808 {
1809 fputc (' ', stdout);
1810 }
1811
1812 fputc ('\r', stdout);
1813
1814 fflush (stdout);
1815 }
1816
1817 static void gidd_to_pw_t (hc_device_param_t *device_param, const u64 gidd, pw_t *pw)
1818 {
1819 hc_clEnqueueReadBuffer (data.ocl, device_param->command_queue, device_param->d_pws_buf, CL_TRUE, gidd * sizeof (pw_t), sizeof (pw_t), pw, 0, NULL, NULL);
1820 }
1821
1822 static void check_hash (hc_device_param_t *device_param, const uint salt_pos, const uint digest_pos)
1823 {
1824 char *outfile = data.outfile;
1825 uint quiet = data.quiet;
1826 FILE *pot_fp = data.pot_fp;
1827 uint loopback = data.loopback;
1828 uint debug_mode = data.debug_mode;
1829 char *debug_file = data.debug_file;
1830
1831 char debug_rule_buf[BLOCK_SIZE] = { 0 };
1832 int debug_rule_len = 0; // -1 error
1833 uint debug_plain_len = 0;
1834
1835 u8 debug_plain_ptr[BLOCK_SIZE] = { 0 };
1836
1837 // hash
1838
1839 char out_buf[HCBUFSIZ] = { 0 };
1840
1841 ascii_digest (out_buf, salt_pos, digest_pos);
1842
1843 uint idx = data.salts_buf[salt_pos].digests_offset + digest_pos;
1844
1845 // plain
1846
1847 plain_t plain;
1848
1849 hc_clEnqueueReadBuffer (data.ocl, device_param->command_queue, device_param->d_plain_bufs, CL_TRUE, idx * sizeof (plain_t), sizeof (plain_t), &plain, 0, NULL, NULL);
1850
1851 uint gidvid = plain.gidvid;
1852 uint il_pos = plain.il_pos;
1853
1854 u64 crackpos = device_param->words_off;
1855
1856 uint plain_buf[16] = { 0 };
1857
1858 u8 *plain_ptr = (u8 *) plain_buf;
1859 unsigned int plain_len = 0;
1860
1861 if (data.attack_mode == ATTACK_MODE_STRAIGHT)
1862 {
1863 u64 gidd = gidvid;
1864 u64 gidm = 0;
1865
1866 pw_t pw;
1867
1868 gidd_to_pw_t (device_param, gidd, &pw);
1869
1870 for (int i = 0, j = gidm; i < 16; i++, j++)
1871 {
1872 plain_buf[i] = pw.i[j];
1873 }
1874
1875 plain_len = pw.pw_len;
1876
1877 const uint off = device_param->innerloop_pos + il_pos;
1878
1879 if (debug_mode > 0)
1880 {
1881 debug_rule_len = 0;
1882
1883 // save rule
1884 if ((debug_mode == 1) || (debug_mode == 3) || (debug_mode == 4))
1885 {
1886 memset (debug_rule_buf, 0, sizeof (debug_rule_buf));
1887
1888 debug_rule_len = kernel_rule_to_cpu_rule (debug_rule_buf, &data.kernel_rules_buf[off]);
1889 }
1890
1891 // save plain
1892 if ((debug_mode == 2) || (debug_mode == 3) || (debug_mode == 4))
1893 {
1894 memset (debug_plain_ptr, 0, sizeof (debug_plain_ptr));
1895
1896 memcpy (debug_plain_ptr, plain_ptr, plain_len);
1897
1898 debug_plain_len = plain_len;
1899 }
1900 }
1901
1902 plain_len = apply_rules (data.kernel_rules_buf[off].cmds, &plain_buf[0], &plain_buf[4], plain_len);
1903
1904 crackpos += gidvid;
1905 crackpos *= data.kernel_rules_cnt;
1906 crackpos += device_param->innerloop_pos + il_pos;
1907
1908 if (plain_len > data.pw_max) plain_len = data.pw_max;
1909 }
1910 else if (data.attack_mode == ATTACK_MODE_COMBI)
1911 {
1912 u64 gidd = gidvid;
1913 u64 gidm = 0;
1914
1915 pw_t pw;
1916
1917 gidd_to_pw_t (device_param, gidd, &pw);
1918
1919 for (int i = 0, j = gidm; i < 16; i++, j++)
1920 {
1921 plain_buf[i] = pw.i[j];
1922 }
1923
1924 plain_len = pw.pw_len;
1925
1926 char *comb_buf = (char *) device_param->combs_buf[il_pos].i;
1927 uint comb_len = device_param->combs_buf[il_pos].pw_len;
1928
1929 if (data.combs_mode == COMBINATOR_MODE_BASE_LEFT)
1930 {
1931 memcpy (plain_ptr + plain_len, comb_buf, comb_len);
1932 }
1933 else
1934 {
1935 memmove (plain_ptr + comb_len, plain_ptr, plain_len);
1936
1937 memcpy (plain_ptr, comb_buf, comb_len);
1938 }
1939
1940 plain_len += comb_len;
1941
1942 crackpos += gidvid;
1943 crackpos *= data.combs_cnt;
1944 crackpos += device_param->innerloop_pos + il_pos;
1945
1946 if (data.pw_max != PW_DICTMAX1)
1947 {
1948 if (plain_len > data.pw_max) plain_len = data.pw_max;
1949 }
1950 }
1951 else if (data.attack_mode == ATTACK_MODE_BF)
1952 {
1953 u64 l_off = device_param->kernel_params_mp_l_buf64[3] + gidvid;
1954 u64 r_off = device_param->kernel_params_mp_r_buf64[3] + il_pos;
1955
1956 uint l_start = device_param->kernel_params_mp_l_buf32[5];
1957 uint r_start = device_param->kernel_params_mp_r_buf32[5];
1958
1959 uint l_stop = device_param->kernel_params_mp_l_buf32[4];
1960 uint r_stop = device_param->kernel_params_mp_r_buf32[4];
1961
1962 sp_exec (l_off, (char *) plain_ptr + l_start, data.root_css_buf, data.markov_css_buf, l_start, l_start + l_stop);
1963 sp_exec (r_off, (char *) plain_ptr + r_start, data.root_css_buf, data.markov_css_buf, r_start, r_start + r_stop);
1964
1965 plain_len = data.css_cnt;
1966
1967 crackpos += gidvid;
1968 crackpos *= data.bfs_cnt;
1969 crackpos += device_param->innerloop_pos + il_pos;
1970 }
1971 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
1972 {
1973 u64 gidd = gidvid;
1974 u64 gidm = 0;
1975
1976 pw_t pw;
1977
1978 gidd_to_pw_t (device_param, gidd, &pw);
1979
1980 for (int i = 0, j = gidm; i < 16; i++, j++)
1981 {
1982 plain_buf[i] = pw.i[j];
1983 }
1984
1985 plain_len = pw.pw_len;
1986
1987 u64 off = device_param->kernel_params_mp_buf64[3] + il_pos;
1988
1989 uint start = 0;
1990 uint stop = device_param->kernel_params_mp_buf32[4];
1991
1992 sp_exec (off, (char *) plain_ptr + plain_len, data.root_css_buf, data.markov_css_buf, start, start + stop);
1993
1994 plain_len += start + stop;
1995
1996 crackpos += gidvid;
1997 crackpos *= data.combs_cnt;
1998 crackpos += device_param->innerloop_pos + il_pos;
1999
2000 if (data.pw_max != PW_DICTMAX1)
2001 {
2002 if (plain_len > data.pw_max) plain_len = data.pw_max;
2003 }
2004 }
2005 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
2006 {
2007 u64 gidd = gidvid;
2008 u64 gidm = 0;
2009
2010 pw_t pw;
2011
2012 gidd_to_pw_t (device_param, gidd, &pw);
2013
2014 for (int i = 0, j = gidm; i < 16; i++, j++)
2015 {
2016 plain_buf[i] = pw.i[j];
2017 }
2018
2019 plain_len = pw.pw_len;
2020
2021 u64 off = device_param->kernel_params_mp_buf64[3] + il_pos;
2022
2023 uint start = 0;
2024 uint stop = device_param->kernel_params_mp_buf32[4];
2025
2026 memmove (plain_ptr + stop, plain_ptr, plain_len);
2027
2028 sp_exec (off, (char *) plain_ptr, data.root_css_buf, data.markov_css_buf, start, start + stop);
2029
2030 plain_len += start + stop;
2031
2032 crackpos += gidvid;
2033 crackpos *= data.combs_cnt;
2034 crackpos += device_param->innerloop_pos + il_pos;
2035
2036 if (data.pw_max != PW_DICTMAX1)
2037 {
2038 if (plain_len > data.pw_max) plain_len = data.pw_max;
2039 }
2040 }
2041
2042 if (data.attack_mode == ATTACK_MODE_BF)
2043 {
2044 if (data.opti_type & OPTI_TYPE_BRUTE_FORCE) // lots of optimizations can happen here
2045 {
2046 if (data.opti_type & OPTI_TYPE_SINGLE_HASH)
2047 {
2048 if (data.opti_type & OPTI_TYPE_APPENDED_SALT)
2049 {
2050 plain_len = plain_len - data.salts_buf[0].salt_len;
2051 }
2052 }
2053
2054 if (data.opts_type & OPTS_TYPE_PT_UNICODE)
2055 {
2056 for (uint i = 0, j = 0; i < plain_len; i += 2, j += 1)
2057 {
2058 plain_ptr[j] = plain_ptr[i];
2059 }
2060
2061 plain_len = plain_len / 2;
2062 }
2063 }
2064 }
2065
2066 // if enabled, update also the potfile
2067
2068 if (pot_fp)
2069 {
2070 lock_file (pot_fp);
2071
2072 fprintf (pot_fp, "%s:", out_buf);
2073
2074 format_plain (pot_fp, plain_ptr, plain_len, 1);
2075
2076 fputc ('\n', pot_fp);
2077
2078 fflush (pot_fp);
2079
2080 unlock_file (pot_fp);
2081 }
2082
2083 // outfile
2084
2085 FILE *out_fp = NULL;
2086
2087 if (outfile != NULL)
2088 {
2089 if ((out_fp = fopen (outfile, "ab")) == NULL)
2090 {
2091 log_error ("ERROR: %s: %s", outfile, strerror (errno));
2092
2093 out_fp = stdout;
2094 }
2095 lock_file (out_fp);
2096 }
2097 else
2098 {
2099 out_fp = stdout;
2100
2101 if (quiet == 0) clear_prompt ();
2102 }
2103
2104 format_output (out_fp, out_buf, plain_ptr, plain_len, crackpos, NULL, 0);
2105
2106 if (outfile != NULL)
2107 {
2108 if (out_fp != stdout)
2109 {
2110 fclose (out_fp);
2111 }
2112 }
2113 else
2114 {
2115 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
2116 {
2117 if ((data.devices_status != STATUS_CRACKED) && (data.status != 1))
2118 {
2119 if (quiet == 0) fprintf (stdout, "%s", PROMPT);
2120 if (quiet == 0) fflush (stdout);
2121 }
2122 }
2123 }
2124
2125 // loopback
2126
2127 if (loopback)
2128 {
2129 char *loopback_file = data.loopback_file;
2130
2131 FILE *fb_fp = NULL;
2132
2133 if ((fb_fp = fopen (loopback_file, "ab")) != NULL)
2134 {
2135 lock_file (fb_fp);
2136
2137 format_plain (fb_fp, plain_ptr, plain_len, 1);
2138
2139 fputc ('\n', fb_fp);
2140
2141 fclose (fb_fp);
2142 }
2143 }
2144
2145 // (rule) debug mode
2146
2147 // the next check implies that:
2148 // - (data.attack_mode == ATTACK_MODE_STRAIGHT)
2149 // - debug_mode > 0
2150
2151 if ((debug_plain_len > 0) || (debug_rule_len > 0))
2152 {
2153 if (debug_rule_len < 0) debug_rule_len = 0;
2154
2155 if ((quiet == 0) && (debug_file == NULL)) clear_prompt ();
2156
2157 format_debug (debug_file, debug_mode, debug_plain_ptr, debug_plain_len, plain_ptr, plain_len, debug_rule_buf, debug_rule_len);
2158
2159 if ((quiet == 0) && (debug_file == NULL))
2160 {
2161 fprintf (stdout, "%s", PROMPT);
2162 fflush (stdout);
2163 }
2164 }
2165 }
2166
2167 static void check_cracked (hc_device_param_t *device_param, const uint salt_pos)
2168 {
2169 salt_t *salt_buf = &data.salts_buf[salt_pos];
2170
2171 int found = 0;
2172
2173 hc_clEnqueueReadBuffer (data.ocl, device_param->command_queue, device_param->d_result, CL_TRUE, 0, device_param->size_results, device_param->result, 0, NULL, NULL);
2174
2175 for (uint i = 0; i < device_param->kernel_threads; i++) if (device_param->result[i] == 1) found = 1;
2176
2177 if (found == 1)
2178 {
2179 // display hack (for weak hashes etc, it could be that there is still something to clear on the current line)
2180
2181 log_info_nn ("");
2182
2183 hc_clEnqueueReadBuffer (data.ocl, device_param->command_queue, device_param->d_digests_shown, CL_TRUE, salt_buf->digests_offset * sizeof (uint), salt_buf->digests_cnt * sizeof (uint), &data.digests_shown_tmp[salt_buf->digests_offset], 0, NULL, NULL);
2184
2185 uint cpt_cracked = 0;
2186
2187 for (uint digest_pos = 0; digest_pos < salt_buf->digests_cnt; digest_pos++)
2188 {
2189 uint idx = salt_buf->digests_offset + digest_pos;
2190
2191 if (data.digests_shown_tmp[idx] == 0) continue;
2192
2193 if (data.digests_shown[idx] == 1) continue;
2194
2195 if ((data.opts_type & OPTS_TYPE_PT_NEVERCRACK) == 0)
2196 {
2197 data.digests_shown[idx] = 1;
2198
2199 data.digests_done++;
2200
2201 cpt_cracked++;
2202
2203 salt_buf->digests_done++;
2204
2205 if (salt_buf->digests_done == salt_buf->digests_cnt)
2206 {
2207 data.salts_shown[salt_pos] = 1;
2208
2209 data.salts_done++;
2210 }
2211 }
2212
2213 if (data.salts_done == data.salts_cnt) data.devices_status = STATUS_CRACKED;
2214
2215 check_hash (device_param, salt_pos, digest_pos);
2216 }
2217
2218 if (cpt_cracked > 0)
2219 {
2220 data.cpt_buf[data.cpt_pos].timestamp = time (NULL);
2221 data.cpt_buf[data.cpt_pos].cracked = cpt_cracked;
2222
2223 data.cpt_pos++;
2224
2225 data.cpt_total += cpt_cracked;
2226
2227 if (data.cpt_pos == CPT_BUF) data.cpt_pos = 0;
2228 }
2229
2230 if (data.opts_type & OPTS_TYPE_PT_NEVERCRACK)
2231 {
2232 // we need to reset cracked state on the device
2233 // otherwise host thinks again and again the hash was cracked
2234 // and returns invalid password each time
2235
2236 memset (data.digests_shown_tmp, 0, salt_buf->digests_cnt * sizeof (uint));
2237
2238 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_digests_shown, CL_TRUE, salt_buf->digests_offset * sizeof (uint), salt_buf->digests_cnt * sizeof (uint), &data.digests_shown_tmp[salt_buf->digests_offset], 0, NULL, NULL);
2239 }
2240
2241 memset (device_param->result, 0, device_param->size_results);
2242
2243 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_result, CL_TRUE, 0, device_param->size_results, device_param->result, 0, NULL, NULL);
2244 }
2245 }
2246
2247 static void save_hash ()
2248 {
2249 char *hashfile = data.hashfile;
2250
2251 char new_hashfile[256] = { 0 };
2252 char old_hashfile[256] = { 0 };
2253
2254 snprintf (new_hashfile, 255, "%s.new", hashfile);
2255 snprintf (old_hashfile, 255, "%s.old", hashfile);
2256
2257 unlink (new_hashfile);
2258
2259 char separator = data.separator;
2260
2261 FILE *fp = fopen (new_hashfile, "wb");
2262
2263 if (fp == NULL)
2264 {
2265 log_error ("ERROR: %s: %s", new_hashfile, strerror (errno));
2266
2267 exit (-1);
2268 }
2269
2270 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
2271 {
2272 if (data.salts_shown[salt_pos] == 1) continue;
2273
2274 salt_t *salt_buf = &data.salts_buf[salt_pos];
2275
2276 for (uint digest_pos = 0; digest_pos < salt_buf->digests_cnt; digest_pos++)
2277 {
2278 uint idx = salt_buf->digests_offset + digest_pos;
2279
2280 if (data.digests_shown[idx] == 1) continue;
2281
2282 if (data.hash_mode != 2500)
2283 {
2284 char out_buf[HCBUFSIZ] = { 0 };
2285
2286 if (data.username == 1)
2287 {
2288 user_t *user = data.hash_info[idx]->user;
2289
2290 uint i;
2291
2292 for (i = 0; i < user->user_len; i++) fputc (user->user_name[i], fp);
2293
2294 fputc (separator, fp);
2295 }
2296
2297 ascii_digest (out_buf, salt_pos, digest_pos);
2298
2299 fputs (out_buf, fp);
2300
2301 log_out (fp, "");
2302 }
2303 else
2304 {
2305 hccap_t hccap;
2306
2307 to_hccap_t (&hccap, salt_pos, digest_pos);
2308
2309 fwrite (&hccap, sizeof (hccap_t), 1, fp);
2310 }
2311 }
2312 }
2313
2314 fflush (fp);
2315
2316 fclose (fp);
2317
2318 unlink (old_hashfile);
2319
2320 if (rename (hashfile, old_hashfile) != 0)
2321 {
2322 log_error ("ERROR: Rename file '%s' to '%s': %s", hashfile, old_hashfile, strerror (errno));
2323
2324 exit (-1);
2325 }
2326
2327 unlink (hashfile);
2328
2329 if (rename (new_hashfile, hashfile) != 0)
2330 {
2331 log_error ("ERROR: Rename file '%s' to '%s': %s", new_hashfile, hashfile, strerror (errno));
2332
2333 exit (-1);
2334 }
2335
2336 unlink (old_hashfile);
2337 }
2338
2339 static float find_kernel_power_div (const u64 total_left, const uint kernel_power_all)
2340 {
2341 // function called only in case kernel_power_all > words_left
2342
2343 float kernel_power_div = (float) (total_left) / kernel_power_all;
2344
2345 kernel_power_div += kernel_power_div / 100;
2346
2347 u32 kernel_power_new = (u32) (kernel_power_all * kernel_power_div);
2348
2349 while (kernel_power_new < total_left)
2350 {
2351 kernel_power_div += kernel_power_div / 100;
2352
2353 kernel_power_new = (u32) (kernel_power_all * kernel_power_div);
2354 }
2355
2356 if (data.quiet == 0)
2357 {
2358 clear_prompt ();
2359
2360 log_info ("");
2361
2362 log_info ("INFO: approaching final keyspace, workload adjusted");
2363
2364 log_info ("");
2365
2366 fprintf (stdout, "%s", PROMPT);
2367
2368 fflush (stdout);
2369 }
2370
2371 if ((kernel_power_all * kernel_power_div) < 8) return 1;
2372
2373 return kernel_power_div;
2374 }
2375
2376 static void run_kernel (const uint kern_run, hc_device_param_t *device_param, const uint num, const uint event_update)
2377 {
2378 uint num_elements = num;
2379
2380 device_param->kernel_params_buf32[30] = data.combs_mode;
2381 device_param->kernel_params_buf32[31] = num;
2382
2383 uint kernel_threads = device_param->kernel_threads;
2384
2385 while (num_elements % kernel_threads) num_elements++;
2386
2387 cl_kernel kernel = NULL;
2388
2389 switch (kern_run)
2390 {
2391 case KERN_RUN_1: kernel = device_param->kernel1; break;
2392 case KERN_RUN_12: kernel = device_param->kernel12; break;
2393 case KERN_RUN_2: kernel = device_param->kernel2; break;
2394 case KERN_RUN_23: kernel = device_param->kernel23; break;
2395 case KERN_RUN_3: kernel = device_param->kernel3; break;
2396 }
2397
2398 hc_clSetKernelArg (data.ocl, kernel, 21, sizeof (cl_uint), device_param->kernel_params[21]);
2399 hc_clSetKernelArg (data.ocl, kernel, 22, sizeof (cl_uint), device_param->kernel_params[22]);
2400 hc_clSetKernelArg (data.ocl, kernel, 23, sizeof (cl_uint), device_param->kernel_params[23]);
2401 hc_clSetKernelArg (data.ocl, kernel, 24, sizeof (cl_uint), device_param->kernel_params[24]);
2402 hc_clSetKernelArg (data.ocl, kernel, 25, sizeof (cl_uint), device_param->kernel_params[25]);
2403 hc_clSetKernelArg (data.ocl, kernel, 26, sizeof (cl_uint), device_param->kernel_params[26]);
2404 hc_clSetKernelArg (data.ocl, kernel, 27, sizeof (cl_uint), device_param->kernel_params[27]);
2405 hc_clSetKernelArg (data.ocl, kernel, 28, sizeof (cl_uint), device_param->kernel_params[28]);
2406 hc_clSetKernelArg (data.ocl, kernel, 29, sizeof (cl_uint), device_param->kernel_params[29]);
2407 hc_clSetKernelArg (data.ocl, kernel, 30, sizeof (cl_uint), device_param->kernel_params[30]);
2408 hc_clSetKernelArg (data.ocl, kernel, 31, sizeof (cl_uint), device_param->kernel_params[31]);
2409
2410 hc_timer_t timer;
2411
2412 hc_timer_set (&timer);
2413
2414 if ((data.opts_type & OPTS_TYPE_PT_BITSLICE) && (data.attack_mode == ATTACK_MODE_BF))
2415 {
2416 const size_t global_work_size[3] = { num_elements, 32, 1 };
2417 const size_t local_work_size[3] = { kernel_threads / 32, 32, 1 };
2418
2419 hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 2, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2420 }
2421 else
2422 {
2423 size_t workgroup_size = 0;
2424
2425 hc_clGetKernelWorkGroupInfo (data.ocl, kernel, device_param->device, CL_KERNEL_WORK_GROUP_SIZE, sizeof (size_t), &workgroup_size, NULL);
2426
2427 if (kern_run == KERN_RUN_2)
2428 {
2429 if (data.opti_type & OPTI_TYPE_SLOW_HASH_SIMD)
2430 {
2431 num_elements = CEIL ((float) num_elements / device_param->vector_width);
2432 }
2433 }
2434
2435 if (kernel_threads > workgroup_size) kernel_threads = workgroup_size;
2436
2437 while (num_elements % kernel_threads) num_elements++;
2438
2439 const size_t global_work_size[3] = { num_elements, 1, 1 };
2440 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2441
2442 hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2443 }
2444
2445 hc_clFlush (data.ocl, device_param->command_queue);
2446
2447 hc_clFinish (data.ocl, device_param->command_queue);
2448
2449 if (event_update)
2450 {
2451 double exec_time;
2452
2453 hc_timer_get (timer, exec_time);
2454
2455 uint exec_pos = device_param->exec_pos;
2456
2457 device_param->exec_ms[exec_pos] = exec_time;
2458
2459 exec_pos++;
2460
2461 if (exec_pos == EXEC_CACHE)
2462 {
2463 exec_pos = 0;
2464 }
2465
2466 device_param->exec_pos = exec_pos;
2467 }
2468 }
2469
2470 static void run_kernel_mp (const uint kern_run, hc_device_param_t *device_param, const uint num)
2471 {
2472 uint num_elements = num;
2473
2474 switch (kern_run)
2475 {
2476 case KERN_RUN_MP: device_param->kernel_params_mp_buf32[8] = num; break;
2477 case KERN_RUN_MP_R: device_param->kernel_params_mp_r_buf32[8] = num; break;
2478 case KERN_RUN_MP_L: device_param->kernel_params_mp_l_buf32[9] = num; break;
2479 }
2480
2481 // causes problems with special threads like in bcrypt
2482 // const uint kernel_threads = device_param->kernel_threads;
2483
2484 uint kernel_threads = device_param->kernel_threads;
2485
2486 while (num_elements % kernel_threads) num_elements++;
2487
2488 cl_kernel kernel = NULL;
2489
2490 switch (kern_run)
2491 {
2492 case KERN_RUN_MP: kernel = device_param->kernel_mp; break;
2493 case KERN_RUN_MP_R: kernel = device_param->kernel_mp_r; break;
2494 case KERN_RUN_MP_L: kernel = device_param->kernel_mp_l; break;
2495 }
2496
2497 switch (kern_run)
2498 {
2499 case KERN_RUN_MP: hc_clSetKernelArg (data.ocl, kernel, 3, sizeof (cl_ulong), device_param->kernel_params_mp[3]);
2500 hc_clSetKernelArg (data.ocl, kernel, 4, sizeof (cl_uint), device_param->kernel_params_mp[4]);
2501 hc_clSetKernelArg (data.ocl, kernel, 5, sizeof (cl_uint), device_param->kernel_params_mp[5]);
2502 hc_clSetKernelArg (data.ocl, kernel, 6, sizeof (cl_uint), device_param->kernel_params_mp[6]);
2503 hc_clSetKernelArg (data.ocl, kernel, 7, sizeof (cl_uint), device_param->kernel_params_mp[7]);
2504 hc_clSetKernelArg (data.ocl, kernel, 8, sizeof (cl_uint), device_param->kernel_params_mp[8]);
2505 break;
2506 case KERN_RUN_MP_R: hc_clSetKernelArg (data.ocl, kernel, 3, sizeof (cl_ulong), device_param->kernel_params_mp_r[3]);
2507 hc_clSetKernelArg (data.ocl, kernel, 4, sizeof (cl_uint), device_param->kernel_params_mp_r[4]);
2508 hc_clSetKernelArg (data.ocl, kernel, 5, sizeof (cl_uint), device_param->kernel_params_mp_r[5]);
2509 hc_clSetKernelArg (data.ocl, kernel, 6, sizeof (cl_uint), device_param->kernel_params_mp_r[6]);
2510 hc_clSetKernelArg (data.ocl, kernel, 7, sizeof (cl_uint), device_param->kernel_params_mp_r[7]);
2511 hc_clSetKernelArg (data.ocl, kernel, 8, sizeof (cl_uint), device_param->kernel_params_mp_r[8]);
2512 break;
2513 case KERN_RUN_MP_L: hc_clSetKernelArg (data.ocl, kernel, 3, sizeof (cl_ulong), device_param->kernel_params_mp_l[3]);
2514 hc_clSetKernelArg (data.ocl, kernel, 4, sizeof (cl_uint), device_param->kernel_params_mp_l[4]);
2515 hc_clSetKernelArg (data.ocl, kernel, 5, sizeof (cl_uint), device_param->kernel_params_mp_l[5]);
2516 hc_clSetKernelArg (data.ocl, kernel, 6, sizeof (cl_uint), device_param->kernel_params_mp_l[6]);
2517 hc_clSetKernelArg (data.ocl, kernel, 7, sizeof (cl_uint), device_param->kernel_params_mp_l[7]);
2518 hc_clSetKernelArg (data.ocl, kernel, 8, sizeof (cl_uint), device_param->kernel_params_mp_l[8]);
2519 hc_clSetKernelArg (data.ocl, kernel, 9, sizeof (cl_uint), device_param->kernel_params_mp_l[9]);
2520 break;
2521 }
2522
2523 size_t workgroup_size = 0;
2524
2525 hc_clGetKernelWorkGroupInfo (data.ocl, kernel, device_param->device, CL_KERNEL_WORK_GROUP_SIZE, sizeof(size_t), &workgroup_size, NULL);
2526
2527 if (kernel_threads > workgroup_size) kernel_threads = workgroup_size;
2528
2529 const size_t global_work_size[3] = { num_elements, 1, 1 };
2530 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2531
2532 hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2533
2534 hc_clFlush (data.ocl, device_param->command_queue);
2535
2536 hc_clFinish (data.ocl, device_param->command_queue);
2537 }
2538
2539 static void run_kernel_tm (hc_device_param_t *device_param)
2540 {
2541 const uint num_elements = 1024; // fixed
2542
2543 uint kernel_threads = 32;
2544
2545 cl_kernel kernel = device_param->kernel_tm;
2546
2547 size_t workgroup_size = 0;
2548
2549 hc_clGetKernelWorkGroupInfo (data.ocl, kernel, device_param->device, CL_KERNEL_WORK_GROUP_SIZE, sizeof (size_t), &workgroup_size, NULL);
2550
2551 if (kernel_threads > workgroup_size) kernel_threads = workgroup_size;
2552
2553 const size_t global_work_size[3] = { num_elements, 1, 1 };
2554 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2555
2556 hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2557
2558 hc_clFlush (data.ocl, device_param->command_queue);
2559
2560 hc_clFinish (data.ocl, device_param->command_queue);
2561 }
2562
2563 static void run_kernel_amp (hc_device_param_t *device_param, const uint num)
2564 {
2565 uint num_elements = num;
2566
2567 device_param->kernel_params_amp_buf32[5] = data.combs_mode;
2568 device_param->kernel_params_amp_buf32[6] = num_elements;
2569
2570 // causes problems with special threads like in bcrypt
2571 // const uint kernel_threads = device_param->kernel_threads;
2572
2573 uint kernel_threads = device_param->kernel_threads;
2574
2575 while (num_elements % kernel_threads) num_elements++;
2576
2577 cl_kernel kernel = device_param->kernel_amp;
2578
2579 hc_clSetKernelArg (data.ocl, kernel, 5, sizeof (cl_uint), device_param->kernel_params_amp[5]);
2580 hc_clSetKernelArg (data.ocl, kernel, 6, sizeof (cl_uint), device_param->kernel_params_amp[6]);
2581
2582 size_t workgroup_size = 0;
2583
2584 hc_clGetKernelWorkGroupInfo (data.ocl, kernel, device_param->device, CL_KERNEL_WORK_GROUP_SIZE, sizeof (size_t), &workgroup_size, NULL);
2585
2586 if (kernel_threads > workgroup_size) kernel_threads = workgroup_size;
2587
2588 const size_t global_work_size[3] = { num_elements, 1, 1 };
2589 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2590
2591 hc_clEnqueueNDRangeKernel (data.ocl, device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2592
2593 hc_clFlush (data.ocl, device_param->command_queue);
2594
2595 hc_clFinish (data.ocl, device_param->command_queue);
2596 }
2597
2598 static void run_kernel_bzero (hc_device_param_t *device_param, cl_mem buf, const size_t size)
2599 {
2600 int rc = -1;
2601
2602 if (device_param->opencl_v12 && device_param->vendor_id == VENDOR_ID_AMD)
2603 {
2604 // So far tested, amd is the only supporting this OpenCL 1.2 function without segfaulting
2605
2606 const cl_uchar zero = 0;
2607
2608 rc = hc_clEnqueueFillBuffer (data.ocl, device_param->command_queue, buf, &zero, sizeof (cl_uchar), 0, size, 0, NULL, NULL);
2609 }
2610
2611 if (rc != 0)
2612 {
2613 // NOTE: clEnqueueFillBuffer () always fails with -59
2614 // IOW, it's not supported by Nvidia drivers <= 352.21, also pocl segfaults, also on apple
2615 // How's that possible, OpenCL 1.2 support is advertised??
2616 // We need to workaround...
2617
2618 #define FILLSZ 0x100000
2619
2620 char *tmp = (char *) mymalloc (FILLSZ);
2621
2622 for (size_t i = 0; i < size; i += FILLSZ)
2623 {
2624 const size_t left = size - i;
2625
2626 const size_t fillsz = MIN (FILLSZ, left);
2627
2628 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, buf, CL_TRUE, i, fillsz, tmp, 0, NULL, NULL);
2629 }
2630
2631 myfree (tmp);
2632 }
2633 }
2634
2635 static void choose_kernel (hc_device_param_t *device_param, const uint attack_exec, const uint attack_mode, const uint opts_type, const salt_t *salt_buf, const uint highest_pw_len, const uint pws_cnt)
2636 {
2637 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
2638 {
2639 if (attack_mode == ATTACK_MODE_BF)
2640 {
2641 if (opts_type & OPTS_TYPE_PT_BITSLICE)
2642 {
2643 const uint size_tm = 32 * sizeof (bs_word_t);
2644
2645 run_kernel_bzero (device_param, device_param->d_tm_c, size_tm);
2646
2647 run_kernel_tm (device_param);
2648
2649 hc_clEnqueueCopyBuffer (data.ocl, device_param->command_queue, device_param->d_tm_c, device_param->d_bfs_c, 0, 0, size_tm, 0, NULL, NULL);
2650 }
2651 }
2652
2653 if (highest_pw_len < 16)
2654 {
2655 run_kernel (KERN_RUN_1, device_param, pws_cnt, true);
2656 }
2657 else if (highest_pw_len < 32)
2658 {
2659 run_kernel (KERN_RUN_2, device_param, pws_cnt, true);
2660 }
2661 else
2662 {
2663 run_kernel (KERN_RUN_3, device_param, pws_cnt, true);
2664 }
2665 }
2666 else
2667 {
2668 run_kernel_amp (device_param, pws_cnt);
2669
2670 run_kernel (KERN_RUN_1, device_param, pws_cnt, false);
2671
2672 if (opts_type & OPTS_TYPE_HOOK12)
2673 {
2674 run_kernel (KERN_RUN_12, device_param, pws_cnt, false);
2675 }
2676
2677 uint iter = salt_buf->salt_iter;
2678
2679 uint loop_step = device_param->kernel_loops;
2680
2681 for (uint loop_pos = 0; loop_pos < iter; loop_pos += loop_step)
2682 {
2683 uint loop_left = iter - loop_pos;
2684
2685 loop_left = MIN (loop_left, loop_step);
2686
2687 device_param->kernel_params_buf32[25] = loop_pos;
2688 device_param->kernel_params_buf32[26] = loop_left;
2689
2690 run_kernel (KERN_RUN_2, device_param, pws_cnt, true);
2691
2692 if (data.devices_status == STATUS_CRACKED) break;
2693 if (data.devices_status == STATUS_ABORTED) break;
2694 if (data.devices_status == STATUS_QUIT) break;
2695
2696 /**
2697 * speed
2698 */
2699
2700 const float iter_part = (float) (loop_pos + loop_left) / iter;
2701
2702 const u64 perf_sum_all = pws_cnt * iter_part;
2703
2704 double speed_ms;
2705
2706 hc_timer_get (device_param->timer_speed, speed_ms);
2707
2708 const u32 speed_pos = device_param->speed_pos;
2709
2710 device_param->speed_cnt[speed_pos] = perf_sum_all;
2711
2712 device_param->speed_ms[speed_pos] = speed_ms;
2713
2714 if (data.benchmark == 1)
2715 {
2716 if (speed_ms > 4096) data.devices_status = STATUS_ABORTED;
2717 }
2718 }
2719
2720 if (opts_type & OPTS_TYPE_HOOK23)
2721 {
2722 run_kernel (KERN_RUN_23, device_param, pws_cnt, false);
2723
2724 hc_clEnqueueReadBuffer (data.ocl, device_param->command_queue, device_param->d_hooks, CL_TRUE, 0, device_param->size_hooks, device_param->hooks_buf, 0, NULL, NULL);
2725
2726 // do something with data
2727
2728 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_hooks, CL_TRUE, 0, device_param->size_hooks, device_param->hooks_buf, 0, NULL, NULL);
2729 }
2730
2731 run_kernel (KERN_RUN_3, device_param, pws_cnt, false);
2732 }
2733 }
2734
2735 static int run_rule_engine (const int rule_len, const char *rule_buf)
2736 {
2737 if (rule_len == 0)
2738 {
2739 return 0;
2740 }
2741 else if (rule_len == 1)
2742 {
2743 if (rule_buf[0] == RULE_OP_MANGLE_NOOP) return 0;
2744 }
2745
2746 return 1;
2747 }
2748
2749 static void run_copy (hc_device_param_t *device_param, const uint pws_cnt)
2750 {
2751 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
2752 {
2753 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_pws_buf, CL_TRUE, 0, pws_cnt * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2754 }
2755 else if (data.attack_kern == ATTACK_KERN_COMBI)
2756 {
2757 if (data.attack_mode == ATTACK_MODE_HYBRID2)
2758 {
2759 if (data.opts_type & OPTS_TYPE_PT_ADD01)
2760 {
2761 for (u32 i = 0; i < pws_cnt; i++)
2762 {
2763 const u32 pw_len = device_param->pws_buf[i].pw_len;
2764
2765 u8 *ptr = (u8 *) device_param->pws_buf[i].i;
2766
2767 ptr[pw_len] = 0x01;
2768 }
2769 }
2770 else if (data.opts_type & OPTS_TYPE_PT_ADD80)
2771 {
2772 for (u32 i = 0; i < pws_cnt; i++)
2773 {
2774 const u32 pw_len = device_param->pws_buf[i].pw_len;
2775
2776 u8 *ptr = (u8 *) device_param->pws_buf[i].i;
2777
2778 ptr[pw_len] = 0x80;
2779 }
2780 }
2781 }
2782
2783 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_pws_buf, CL_TRUE, 0, pws_cnt * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2784 }
2785 else if (data.attack_kern == ATTACK_KERN_BF)
2786 {
2787 const u64 off = device_param->words_off;
2788
2789 device_param->kernel_params_mp_l_buf64[3] = off;
2790
2791 run_kernel_mp (KERN_RUN_MP_L, device_param, pws_cnt);
2792 }
2793 }
2794
2795 static double try_run (hc_device_param_t *device_param, const u32 kernel_accel, const u32 kernel_loops)
2796 {
2797 const u32 kernel_power = device_param->device_processors * device_param->kernel_threads * kernel_accel;
2798
2799 device_param->kernel_params_buf32[25] = 0;
2800 device_param->kernel_params_buf32[26] = kernel_loops; // not a bug, both need to be set
2801 device_param->kernel_params_buf32[27] = kernel_loops; // because there's two variables for inner iters for slow and fast hashes
2802
2803 // init some fake words
2804
2805 if (data.hash_mode == 10700)
2806 {
2807 // hash mode 10700 hangs on length 0 (unlimited loop)
2808
2809 for (u32 i = 0; i < kernel_power; i++)
2810 {
2811 device_param->pws_buf[i].i[0] = i;
2812 device_param->pws_buf[i].i[1] = i + 0x01234567;
2813 device_param->pws_buf[i].i[2] = i + 0x89abcdef;
2814 device_param->pws_buf[i].i[3] = 0xffffffff;
2815 device_param->pws_buf[i].pw_len = 4 + (i & 3);
2816 }
2817
2818 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_pws_buf, CL_TRUE, 0, kernel_power * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2819
2820 if (data.attack_exec == ATTACK_EXEC_OUTSIDE_KERNEL)
2821 {
2822 run_kernel_amp (device_param, kernel_power);
2823 }
2824 }
2825
2826 if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
2827 {
2828 run_kernel (KERN_RUN_1, device_param, kernel_power, true);
2829 }
2830 else
2831 {
2832 run_kernel (KERN_RUN_2, device_param, kernel_power, true);
2833 }
2834
2835 const double exec_ms_prev = get_avg_exec_time (device_param, 1);
2836
2837 // reset fake words
2838
2839 if (data.hash_mode == 10700)
2840 {
2841 memset (device_param->pws_buf, 0, kernel_power * sizeof (pw_t));
2842
2843 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_pws_buf, CL_TRUE, 0, kernel_power * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2844 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_pws_amp_buf, CL_TRUE, 0, kernel_power * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2845 }
2846
2847 return exec_ms_prev;
2848 }
2849
2850 static void autotune (hc_device_param_t *device_param)
2851 {
2852 const double target_ms = TARGET_MS_PROFILE[data.workload_profile - 1];
2853
2854 const u32 kernel_accel_min = device_param->kernel_accel_min;
2855 const u32 kernel_accel_max = device_param->kernel_accel_max;
2856
2857 const u32 kernel_loops_min = device_param->kernel_loops_min;
2858 const u32 kernel_loops_max = device_param->kernel_loops_max;
2859
2860 u32 kernel_accel = kernel_accel_min;
2861 u32 kernel_loops = kernel_loops_min;
2862
2863 #define STEPS_CNT 10
2864
2865 #define MAX_RETRIES 1
2866
2867 if ((kernel_loops_min == kernel_loops_max) || (kernel_accel_min == kernel_accel_max))
2868 {
2869 // we do this in case the user specified a fixed -u and -n on the commandline
2870 // so we have a cached kernel for benchmark
2871
2872 try_run (device_param, kernel_accel, kernel_loops);
2873 try_run (device_param, kernel_accel, kernel_loops);
2874 try_run (device_param, kernel_accel, kernel_loops);
2875 try_run (device_param, kernel_accel, kernel_loops);
2876 try_run (device_param, kernel_accel, kernel_loops);
2877 }
2878
2879 double exec_ms_final = try_run (device_param, kernel_accel, kernel_loops);
2880
2881 // first find out highest kernel-loops that stays below target_ms
2882
2883 for (kernel_loops = kernel_loops_max; kernel_loops > kernel_loops_min; kernel_loops >>= 1)
2884 {
2885 double exec_ms_best = try_run (device_param, kernel_accel_min, kernel_loops);
2886
2887 for (int i = 0; i < MAX_RETRIES; i++)
2888 {
2889 const double exec_ms_cur = try_run (device_param, kernel_accel_min, kernel_loops);
2890
2891 exec_ms_best = MIN (exec_ms_best, exec_ms_cur);
2892 }
2893
2894 if (exec_ms_best < target_ms) break;
2895 }
2896
2897 // now the same for kernel-accel but with the new kernel-loops from previous loop set
2898
2899 if (kernel_accel_min < kernel_accel_max)
2900 {
2901 for (int i = 0; i < STEPS_CNT; i++)
2902 {
2903 const u32 kernel_accel_try = 1 << i;
2904
2905 if (kernel_accel_try < kernel_accel_min) continue;
2906 if (kernel_accel_try > kernel_accel_max) break;
2907
2908 double exec_ms_best = try_run (device_param, kernel_accel_try, kernel_loops);
2909
2910 for (int i = 0; i < MAX_RETRIES; i++)
2911 {
2912 const double exec_ms_cur = try_run (device_param, kernel_accel_try, kernel_loops);
2913
2914 exec_ms_best = MIN (exec_ms_best, exec_ms_cur);
2915 }
2916
2917 if (exec_ms_best > target_ms) break;
2918
2919 exec_ms_final = exec_ms_best;
2920
2921 kernel_accel = kernel_accel_try;
2922 }
2923 }
2924
2925 // there's a chance that we have a fixed kernel_loops but not a fixed kernel_accel
2926 // in such a case the above function would not create any change
2927 // we'll use the runtime to find out if we're allow to do last improvement
2928
2929 if (exec_ms_final > 0)
2930 {
2931 if ((exec_ms_final * 2) <= target_ms)
2932 {
2933 const double exec_left = target_ms / exec_ms_final;
2934
2935 const double accel_left = kernel_accel_max / kernel_accel;
2936
2937 const int exec_accel_min = MIN (exec_left, accel_left); // we want that to be int
2938
2939 if (exec_accel_min >= 2)
2940 {
2941 kernel_accel *= exec_accel_min;
2942 }
2943 }
2944 }
2945
2946 // sometimes we're in a bad situation that the algorithm is so slow that we can not
2947 // create enough kernel_accel to do both, keep the gpu busy and stay below target_ms.
2948 // however, we need to have a minimum kernel_accel and kernel_loops of 32.
2949 // luckily, at this level of workload, it became a linear function
2950
2951 if (kernel_accel < 32 || kernel_loops < 32)
2952 {
2953 const u32 kernel_power = kernel_accel * kernel_loops;
2954
2955 // find sqrt
2956
2957 u32 sqrtv;
2958
2959 for (sqrtv = 1; sqrtv < 0x100000; sqrtv++)
2960 {
2961 if ((sqrtv * sqrtv) >= kernel_power) break;
2962 }
2963
2964 const u32 kernel_accel_try = sqrtv;
2965 const u32 kernel_loops_try = sqrtv;
2966
2967 if ((kernel_accel_try <= kernel_accel_max) && (kernel_loops_try >= kernel_loops_min))
2968 {
2969 kernel_accel = kernel_accel_try;
2970 kernel_loops = kernel_loops_try;
2971 }
2972 }
2973
2974 // reset timer
2975
2976 device_param->exec_pos = 0;
2977
2978 memset (device_param->exec_ms, 0, EXEC_CACHE * sizeof (double));
2979
2980 // store
2981
2982 device_param->kernel_accel = kernel_accel;
2983 device_param->kernel_loops = kernel_loops;
2984
2985 const u32 kernel_power = device_param->device_processors * device_param->kernel_threads * device_param->kernel_accel;
2986
2987 device_param->kernel_power = kernel_power;
2988
2989 #ifdef DEBUG
2990
2991 if (data.quiet == 0)
2992 {
2993 clear_prompt ();
2994
2995 log_info ("Device #%u: autotuned kernel-accel to %u\n"
2996 "Device #%u: autotuned kernel-loops to %u\n",
2997 device_param->device_id + 1, kernel_accel,
2998 device_param->device_id + 1, kernel_loops);
2999
3000 fprintf (stdout, "%s", PROMPT);
3001
3002 fflush (stdout);
3003 }
3004
3005 #endif
3006 }
3007
3008 static void run_cracker (hc_device_param_t *device_param, const uint pws_cnt)
3009 {
3010 char *line_buf = (char *) mymalloc (HCBUFSIZ);
3011
3012 // init speed timer
3013
3014 uint speed_pos = device_param->speed_pos;
3015
3016 #ifdef _POSIX
3017 if (device_param->timer_speed.tv_sec == 0)
3018 {
3019 hc_timer_set (&device_param->timer_speed);
3020 }
3021 #endif
3022
3023 #ifdef _WIN
3024 if (device_param->timer_speed.QuadPart == 0)
3025 {
3026 hc_timer_set (&device_param->timer_speed);
3027 }
3028 #endif
3029
3030 // find higest password length, this is for optimization stuff
3031
3032 uint highest_pw_len = 0;
3033
3034 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
3035 {
3036 }
3037 else if (data.attack_kern == ATTACK_KERN_COMBI)
3038 {
3039 }
3040 else if (data.attack_kern == ATTACK_KERN_BF)
3041 {
3042 highest_pw_len = device_param->kernel_params_mp_l_buf32[4]
3043 + device_param->kernel_params_mp_l_buf32[5];
3044 }
3045
3046 // iteration type
3047
3048 uint innerloop_step = 0;
3049 uint innerloop_cnt = 0;
3050
3051 if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL) innerloop_step = device_param->kernel_loops;
3052 else innerloop_step = 1;
3053
3054 if (data.attack_kern == ATTACK_KERN_STRAIGHT) innerloop_cnt = data.kernel_rules_cnt;
3055 else if (data.attack_kern == ATTACK_KERN_COMBI) innerloop_cnt = data.combs_cnt;
3056 else if (data.attack_kern == ATTACK_KERN_BF) innerloop_cnt = data.bfs_cnt;
3057
3058 // loop start: most outer loop = salt iteration, then innerloops (if multi)
3059
3060 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
3061 {
3062 while (data.devices_status == STATUS_PAUSED) hc_sleep (1);
3063
3064 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
3065
3066 if (data.devices_status == STATUS_CRACKED) break;
3067 if (data.devices_status == STATUS_ABORTED) break;
3068 if (data.devices_status == STATUS_QUIT) break;
3069 if (data.devices_status == STATUS_BYPASS) break;
3070
3071 salt_t *salt_buf = &data.salts_buf[salt_pos];
3072
3073 device_param->kernel_params_buf32[24] = salt_pos;
3074 device_param->kernel_params_buf32[28] = salt_buf->digests_cnt;
3075 device_param->kernel_params_buf32[29] = salt_buf->digests_offset;
3076
3077 FILE *combs_fp = device_param->combs_fp;
3078
3079 if (data.attack_mode == ATTACK_MODE_COMBI)
3080 {
3081 rewind (combs_fp);
3082 }
3083
3084 // innerloops
3085
3086 for (uint innerloop_pos = 0; innerloop_pos < innerloop_cnt; innerloop_pos += innerloop_step)
3087 {
3088 while (data.devices_status == STATUS_PAUSED) hc_sleep (1);
3089
3090 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
3091
3092 if (data.devices_status == STATUS_CRACKED) break;
3093 if (data.devices_status == STATUS_ABORTED) break;
3094 if (data.devices_status == STATUS_QUIT) break;
3095 if (data.devices_status == STATUS_BYPASS) break;
3096
3097 uint innerloop_left = innerloop_cnt - innerloop_pos;
3098
3099 if (innerloop_left > innerloop_step) innerloop_left = innerloop_step;
3100
3101 device_param->innerloop_pos = innerloop_pos;
3102 device_param->innerloop_left = innerloop_left;
3103
3104 device_param->kernel_params_buf32[27] = innerloop_left;
3105
3106 // i think we can get rid of this
3107 if (innerloop_left == 0)
3108 {
3109 puts ("bug, how should this happen????\n");
3110
3111 continue;
3112 }
3113
3114 if (data.salts_shown[salt_pos] == 1)
3115 {
3116 data.words_progress_done[salt_pos] += (u64) pws_cnt * (u64) innerloop_left;
3117
3118 continue;
3119 }
3120
3121 // initialize amplifiers
3122
3123 if (data.attack_mode == ATTACK_MODE_COMBI)
3124 {
3125 uint i = 0;
3126
3127 while (i < innerloop_left)
3128 {
3129 if (feof (combs_fp)) break;
3130
3131 int line_len = fgetl (combs_fp, line_buf);
3132
3133 if (line_len >= PW_MAX1) continue;
3134
3135 line_len = convert_from_hex (line_buf, line_len);
3136
3137 char *line_buf_new = line_buf;
3138
3139 if (run_rule_engine (data.rule_len_r, data.rule_buf_r))
3140 {
3141 char rule_buf_out[BLOCK_SIZE] = { 0 };
3142
3143 int rule_len_out = _old_apply_rule (data.rule_buf_r, data.rule_len_r, line_buf, line_len, rule_buf_out);
3144
3145 if (rule_len_out < 0)
3146 {
3147 data.words_progress_rejected[salt_pos] += pws_cnt;
3148
3149 continue;
3150 }
3151
3152 line_len = rule_len_out;
3153
3154 line_buf_new = rule_buf_out;
3155 }
3156
3157 line_len = MIN (line_len, PW_DICTMAX);
3158
3159 u8 *ptr = (u8 *) device_param->combs_buf[i].i;
3160
3161 memcpy (ptr, line_buf_new, line_len);
3162
3163 memset (ptr + line_len, 0, PW_DICTMAX1 - line_len);
3164
3165 if (data.opts_type & OPTS_TYPE_PT_UPPER)
3166 {
3167 uppercase (ptr, line_len);
3168 }
3169
3170 if (data.combs_mode == COMBINATOR_MODE_BASE_LEFT)
3171 {
3172 if (data.opts_type & OPTS_TYPE_PT_ADD80)
3173 {
3174 ptr[line_len] = 0x80;
3175 }
3176
3177 if (data.opts_type & OPTS_TYPE_PT_ADD01)
3178 {
3179 ptr[line_len] = 0x01;
3180 }
3181 }
3182
3183 device_param->combs_buf[i].pw_len = line_len;
3184
3185 i++;
3186 }
3187
3188 for (uint j = i; j < innerloop_left; j++)
3189 {
3190 device_param->combs_buf[j].i[0] = 0;
3191 device_param->combs_buf[j].i[1] = 0;
3192 device_param->combs_buf[j].i[2] = 0;
3193 device_param->combs_buf[j].i[3] = 0;
3194 device_param->combs_buf[j].i[4] = 0;
3195 device_param->combs_buf[j].i[5] = 0;
3196 device_param->combs_buf[j].i[6] = 0;
3197 device_param->combs_buf[j].i[7] = 0;
3198
3199 device_param->combs_buf[j].pw_len = 0;
3200 }
3201
3202 innerloop_left = i;
3203 }
3204 else if (data.attack_mode == ATTACK_MODE_BF)
3205 {
3206 u64 off = innerloop_pos;
3207
3208 device_param->kernel_params_mp_r_buf64[3] = off;
3209
3210 run_kernel_mp (KERN_RUN_MP_R, device_param, innerloop_left);
3211 }
3212 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
3213 {
3214 u64 off = innerloop_pos;
3215
3216 device_param->kernel_params_mp_buf64[3] = off;
3217
3218 run_kernel_mp (KERN_RUN_MP, device_param, innerloop_left);
3219 }
3220 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
3221 {
3222 u64 off = innerloop_pos;
3223
3224 device_param->kernel_params_mp_buf64[3] = off;
3225
3226 run_kernel_mp (KERN_RUN_MP, device_param, innerloop_left);
3227 }
3228
3229 // copy amplifiers
3230
3231 if (data.attack_mode == ATTACK_MODE_STRAIGHT)
3232 {
3233 hc_clEnqueueCopyBuffer (data.ocl, device_param->command_queue, device_param->d_rules, device_param->d_rules_c, innerloop_pos * sizeof (kernel_rule_t), 0, innerloop_left * sizeof (kernel_rule_t), 0, NULL, NULL);
3234 }
3235 else if (data.attack_mode == ATTACK_MODE_COMBI)
3236 {
3237 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_combs_c, CL_TRUE, 0, innerloop_left * sizeof (comb_t), device_param->combs_buf, 0, NULL, NULL);
3238 }
3239 else if (data.attack_mode == ATTACK_MODE_BF)
3240 {
3241 hc_clEnqueueCopyBuffer (data.ocl, device_param->command_queue, device_param->d_bfs, device_param->d_bfs_c, 0, 0, innerloop_left * sizeof (bf_t), 0, NULL, NULL);
3242 }
3243 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
3244 {
3245 hc_clEnqueueCopyBuffer (data.ocl, device_param->command_queue, device_param->d_combs, device_param->d_combs_c, 0, 0, innerloop_left * sizeof (comb_t), 0, NULL, NULL);
3246 }
3247 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
3248 {
3249 hc_clEnqueueCopyBuffer (data.ocl, device_param->command_queue, device_param->d_combs, device_param->d_combs_c, 0, 0, innerloop_left * sizeof (comb_t), 0, NULL, NULL);
3250 }
3251
3252 if (data.benchmark == 1)
3253 {
3254 hc_timer_set (&device_param->timer_speed);
3255 }
3256
3257 choose_kernel (device_param, data.attack_exec, data.attack_mode, data.opts_type, salt_buf, highest_pw_len, pws_cnt);
3258
3259 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
3260
3261 if (data.devices_status == STATUS_CRACKED) break;
3262 if (data.devices_status == STATUS_ABORTED) break;
3263 if (data.devices_status == STATUS_QUIT) break;
3264
3265 /**
3266 * result
3267 */
3268
3269 hc_thread_mutex_lock (mux_display);
3270
3271 check_cracked (device_param, salt_pos);
3272
3273 hc_thread_mutex_unlock (mux_display);
3274
3275 /**
3276 * progress
3277 */
3278
3279 u64 perf_sum_all = (u64) pws_cnt * (u64) innerloop_left;
3280
3281 hc_thread_mutex_lock (mux_counter);
3282
3283 data.words_progress_done[salt_pos] += perf_sum_all;
3284
3285 hc_thread_mutex_unlock (mux_counter);
3286
3287 /**
3288 * speed
3289 */
3290
3291 double speed_ms;
3292
3293 hc_timer_get (device_param->timer_speed, speed_ms);
3294
3295 hc_timer_set (&device_param->timer_speed);
3296
3297 hc_thread_mutex_lock (mux_display);
3298
3299 // current speed
3300
3301 device_param->speed_cnt[speed_pos] = perf_sum_all;
3302
3303 device_param->speed_ms[speed_pos] = speed_ms;
3304
3305 hc_thread_mutex_unlock (mux_display);
3306
3307 speed_pos++;
3308
3309 if (speed_pos == SPEED_CACHE)
3310 {
3311 speed_pos = 0;
3312 }
3313
3314 /**
3315 * benchmark
3316 */
3317
3318 if (data.benchmark == 1) break;
3319 }
3320 }
3321
3322 device_param->speed_pos = speed_pos;
3323
3324 myfree (line_buf);
3325 }
3326
3327 static void load_segment (wl_data_t *wl_data, FILE *fd)
3328 {
3329 // NOTE: use (never changing) ->incr here instead of ->avail otherwise the buffer gets bigger and bigger
3330
3331 wl_data->pos = 0;
3332
3333 wl_data->cnt = fread (wl_data->buf, 1, wl_data->incr - 1000, fd);
3334
3335 wl_data->buf[wl_data->cnt] = 0;
3336
3337 if (wl_data->cnt == 0) return;
3338
3339 if (wl_data->buf[wl_data->cnt - 1] == '\n') return;
3340
3341 while (!feof (fd))
3342 {
3343 if (wl_data->cnt == wl_data->avail)
3344 {
3345 wl_data->buf = (char *) myrealloc (wl_data->buf, wl_data->avail, wl_data->incr);
3346
3347 wl_data->avail += wl_data->incr;
3348 }
3349
3350 const int c = fgetc (fd);
3351
3352 if (c == EOF) break;
3353
3354 wl_data->buf[wl_data->cnt] = (char) c;
3355
3356 wl_data->cnt++;
3357
3358 if (c == '\n') break;
3359 }
3360
3361 // ensure stream ends with a newline
3362
3363 if (wl_data->buf[wl_data->cnt - 1] != '\n')
3364 {
3365 wl_data->cnt++;
3366
3367 wl_data->buf[wl_data->cnt - 1] = '\n';
3368 }
3369
3370 return;
3371 }
3372
3373 static void get_next_word_lm (char *buf, u32 sz, u32 *len, u32 *off)
3374 {
3375 char *ptr = buf;
3376
3377 for (u32 i = 0; i < sz; i++, ptr++)
3378 {
3379 if (*ptr >= 'a' && *ptr <= 'z') *ptr -= 0x20;
3380
3381 if (i == 7)
3382 {
3383 *off = i;
3384 *len = i;
3385
3386 return;
3387 }
3388
3389 if (*ptr != '\n') continue;
3390
3391 *off = i + 1;
3392
3393 if ((i > 0) && (buf[i - 1] == '\r')) i--;
3394
3395 *len = i;
3396
3397 return;
3398 }
3399
3400 *off = sz;
3401 *len = sz;
3402 }
3403
3404 static void get_next_word_uc (char *buf, u32 sz, u32 *len, u32 *off)
3405 {
3406 char *ptr = buf;
3407
3408 for (u32 i = 0; i < sz; i++, ptr++)
3409 {
3410 if (*ptr >= 'a' && *ptr <= 'z') *ptr -= 0x20;
3411
3412 if (*ptr != '\n') continue;
3413
3414 *off = i + 1;
3415
3416 if ((i > 0) && (buf[i - 1] == '\r')) i--;
3417
3418 *len = i;
3419
3420 return;
3421 }
3422
3423 *off = sz;
3424 *len = sz;
3425 }
3426
3427 static void get_next_word_std (char *buf, u32 sz, u32 *len, u32 *off)
3428 {
3429 char *ptr = buf;
3430
3431 for (u32 i = 0; i < sz; i++, ptr++)
3432 {
3433 if (*ptr != '\n') continue;
3434
3435 *off = i + 1;
3436
3437 if ((i > 0) && (buf[i - 1] == '\r')) i--;
3438
3439 *len = i;
3440
3441 return;
3442 }
3443
3444 *off = sz;
3445 *len = sz;
3446 }
3447
3448 static void get_next_word (wl_data_t *wl_data, FILE *fd, char **out_buf, uint *out_len)
3449 {
3450 while (wl_data->pos < wl_data->cnt)
3451 {
3452 uint off;
3453 uint len;
3454
3455 char *ptr = wl_data->buf + wl_data->pos;
3456
3457 get_next_word_func (ptr, wl_data->cnt - wl_data->pos, &len, &off);
3458
3459 wl_data->pos += off;
3460
3461 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
3462 {
3463 char rule_buf_out[BLOCK_SIZE] = { 0 };
3464
3465 int rule_len_out = -1;
3466
3467 if (len < BLOCK_SIZE)
3468 {
3469 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, ptr, len, rule_buf_out);
3470 }
3471
3472 if (rule_len_out < 0)
3473 {
3474 continue;
3475 }
3476
3477 if (rule_len_out > PW_MAX)
3478 {
3479 continue;
3480 }
3481 }
3482 else
3483 {
3484 if (len > PW_MAX)
3485 {
3486 continue;
3487 }
3488 }
3489
3490 *out_buf = ptr;
3491 *out_len = len;
3492
3493 return;
3494 }
3495
3496 if (feof (fd))
3497 {
3498 fprintf (stderr, "BUG feof()!!\n");
3499
3500 return;
3501 }
3502
3503 load_segment (wl_data, fd);
3504
3505 get_next_word (wl_data, fd, out_buf, out_len);
3506 }
3507
3508 #ifdef _POSIX
3509 static u64 count_words (wl_data_t *wl_data, FILE *fd, char *dictfile, dictstat_t *dictstat_base, size_t *dictstat_nmemb)
3510 #endif
3511
3512 #ifdef _WIN
3513 static u64 count_words (wl_data_t *wl_data, FILE *fd, char *dictfile, dictstat_t *dictstat_base, uint *dictstat_nmemb)
3514 #endif
3515 {
3516 hc_signal (NULL);
3517
3518 dictstat_t d;
3519
3520 d.cnt = 0;
3521
3522 #ifdef _POSIX
3523 fstat (fileno (fd), &d.stat);
3524 #endif
3525
3526 #ifdef _WIN
3527 _fstat64 (fileno (fd), &d.stat);
3528 #endif
3529
3530 d.stat.st_mode = 0;
3531 d.stat.st_nlink = 0;
3532 d.stat.st_uid = 0;
3533 d.stat.st_gid = 0;
3534 d.stat.st_rdev = 0;
3535 d.stat.st_atime = 0;
3536
3537 #ifdef _POSIX
3538 d.stat.st_blksize = 0;
3539 d.stat.st_blocks = 0;
3540 #endif
3541
3542 if (d.stat.st_size == 0) return 0;
3543
3544 dictstat_t *d_cache = (dictstat_t *) lfind (&d, dictstat_base, dictstat_nmemb, sizeof (dictstat_t), sort_by_dictstat);
3545
3546 if (run_rule_engine (data.rule_len_l, data.rule_buf_l) == 0)
3547 {
3548 if (d_cache)
3549 {
3550 u64 cnt = d_cache->cnt;
3551
3552 u64 keyspace = cnt;
3553
3554 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
3555 {
3556 keyspace *= data.kernel_rules_cnt;
3557 }
3558 else if (data.attack_kern == ATTACK_KERN_COMBI)
3559 {
3560 keyspace *= data.combs_cnt;
3561 }
3562
3563 if (data.quiet == 0) log_info ("Cache-hit dictionary stats %s: %llu bytes, %llu words, %llu keyspace", dictfile, (unsigned long long int) d.stat.st_size, (unsigned long long int) cnt, (unsigned long long int) keyspace);
3564 if (data.quiet == 0) log_info ("");
3565
3566 hc_signal (sigHandler_default);
3567
3568 return (keyspace);
3569 }
3570 }
3571
3572 time_t now = 0;
3573 time_t prev = 0;
3574
3575 u64 comp = 0;
3576 u64 cnt = 0;
3577 u64 cnt2 = 0;
3578
3579 while (!feof (fd))
3580 {
3581 load_segment (wl_data, fd);
3582
3583 comp += wl_data->cnt;
3584
3585 u32 i = 0;
3586
3587 while (i < wl_data->cnt)
3588 {
3589 u32 len;
3590 u32 off;
3591
3592 get_next_word_func (wl_data->buf + i, wl_data->cnt - i, &len, &off);
3593
3594 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
3595 {
3596 char rule_buf_out[BLOCK_SIZE] = { 0 };
3597
3598 int rule_len_out = -1;
3599
3600 if (len < BLOCK_SIZE)
3601 {
3602 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, wl_data->buf + i, len, rule_buf_out);
3603 }
3604
3605 if (rule_len_out < 0)
3606 {
3607 len = PW_MAX1;
3608 }
3609 else
3610 {
3611 len = rule_len_out;
3612 }
3613 }
3614
3615 if (len < PW_MAX1)
3616 {
3617 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
3618 {
3619 cnt += data.kernel_rules_cnt;
3620 }
3621 else if (data.attack_kern == ATTACK_KERN_COMBI)
3622 {
3623 cnt += data.combs_cnt;
3624 }
3625
3626 d.cnt++;
3627 }
3628
3629 i += off;
3630
3631 cnt2++;
3632 }
3633
3634 time (&now);
3635
3636 if ((now - prev) == 0) continue;
3637
3638 float percent = (float) comp / (float) d.stat.st_size;
3639
3640 if (data.quiet == 0) log_info_nn ("Generating dictionary stats for %s: %llu bytes (%.2f%%), %llu words, %llu keyspace", dictfile, (unsigned long long int) comp, percent * 100, (unsigned long long int) cnt2, (unsigned long long int) cnt);
3641
3642 time (&prev);
3643 }
3644
3645 if (data.quiet == 0) log_info ("Generated dictionary stats for %s: %llu bytes, %llu words, %llu keyspace", dictfile, (unsigned long long int) comp, (unsigned long long int) cnt2, (unsigned long long int) cnt);
3646 if (data.quiet == 0) log_info ("");
3647
3648 lsearch (&d, dictstat_base, dictstat_nmemb, sizeof (dictstat_t), sort_by_dictstat);
3649
3650 hc_signal (sigHandler_default);
3651
3652 return (cnt);
3653 }
3654
3655 static void *thread_monitor (void *p)
3656 {
3657 uint runtime_check = 0;
3658 uint remove_check = 0;
3659 uint status_check = 0;
3660 uint restore_check = 0;
3661
3662 uint restore_left = data.restore_timer;
3663 uint remove_left = data.remove_timer;
3664 uint status_left = data.status_timer;
3665
3666 #ifdef HAVE_HWMON
3667 uint hwmon_check = 0;
3668
3669 // these variables are mainly used for fan control (AMD only)
3670
3671 int *fan_speed_chgd = (int *) mycalloc (data.devices_cnt, sizeof (int));
3672
3673 // temperature controller "loopback" values
3674
3675 int *temp_diff_old = (int *) mycalloc (data.devices_cnt, sizeof (int));
3676 int *temp_diff_sum = (int *) mycalloc (data.devices_cnt, sizeof (int));
3677
3678 #ifdef HAVE_ADL
3679 int temp_threshold = 1; // degrees celcius
3680
3681 int fan_speed_min = 15; // in percentage
3682 int fan_speed_max = 100;
3683 #endif // HAVE_ADL
3684
3685 time_t last_temp_check_time;
3686 #endif // HAVE_HWMON
3687
3688 uint sleep_time = 1;
3689
3690 if (data.runtime)
3691 {
3692 runtime_check = 1;
3693 }
3694
3695 if (data.restore_timer)
3696 {
3697 restore_check = 1;
3698 }
3699
3700 if ((data.remove == 1) && (data.hashlist_mode == HL_MODE_FILE))
3701 {
3702 remove_check = 1;
3703 }
3704
3705 if (data.status == 1)
3706 {
3707 status_check = 1;
3708 }
3709
3710 #ifdef HAVE_HWMON
3711 if (data.gpu_temp_disable == 0)
3712 {
3713 time (&last_temp_check_time);
3714
3715 hwmon_check = 1;
3716 }
3717 #endif
3718
3719 if ((runtime_check == 0) && (remove_check == 0) && (status_check == 0) && (restore_check == 0))
3720 {
3721 #ifdef HAVE_HWMON
3722 if (hwmon_check == 0)
3723 #endif
3724 return (p);
3725 }
3726
3727 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
3728 {
3729 hc_sleep (sleep_time);
3730
3731 if (data.devices_status != STATUS_RUNNING) continue;
3732
3733 #ifdef HAVE_HWMON
3734 if (hwmon_check == 1)
3735 {
3736 hc_thread_mutex_lock (mux_adl);
3737
3738 time_t temp_check_time;
3739
3740 time (&temp_check_time);
3741
3742 uint Ta = temp_check_time - last_temp_check_time; // set Ta = sleep_time; is not good enough (see --remove etc)
3743
3744 if (Ta == 0) Ta = 1;
3745
3746 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
3747 {
3748 hc_device_param_t *device_param = &data.devices_param[device_id];
3749
3750 if (device_param->skipped) continue;
3751
3752 if ((data.devices_param[device_id].device_type & CL_DEVICE_TYPE_GPU) == 0) continue;
3753
3754 const int temperature = hm_get_temperature_with_device_id (device_id);
3755
3756 if (temperature > (int) data.gpu_temp_abort)
3757 {
3758 log_error ("ERROR: Temperature limit on GPU %d reached, aborting...", device_id + 1);
3759
3760 if (data.devices_status != STATUS_QUIT) myabort ();
3761
3762 break;
3763 }
3764
3765 #ifdef HAVE_ADL
3766 const int gpu_temp_retain = data.gpu_temp_retain;
3767
3768 if (gpu_temp_retain) // VENDOR_ID_AMD implied
3769 {
3770 if (data.hm_device[device_id].fan_supported == 1)
3771 {
3772 int temp_cur = temperature;
3773
3774 int temp_diff_new = gpu_temp_retain - temp_cur;
3775
3776 temp_diff_sum[device_id] = temp_diff_sum[device_id] + temp_diff_new;
3777
3778 // calculate Ta value (time difference in seconds between the last check and this check)
3779
3780 last_temp_check_time = temp_check_time;
3781
3782 float Kp = 1.8;
3783 float Ki = 0.005;
3784 float Kd = 6;
3785
3786 // PID controller (3-term controller: proportional - Kp, integral - Ki, derivative - Kd)
3787
3788 int fan_diff_required = (int) (Kp * (float)temp_diff_new + Ki * Ta * (float)temp_diff_sum[device_id] + Kd * ((float)(temp_diff_new - temp_diff_old[device_id])) / Ta);
3789
3790 if (abs (fan_diff_required) >= temp_threshold)
3791 {
3792 const int fan_speed_cur = hm_get_fanspeed_with_device_id (device_id);
3793
3794 int fan_speed_level = fan_speed_cur;
3795
3796 if (fan_speed_chgd[device_id] == 0) fan_speed_level = temp_cur;
3797
3798 int fan_speed_new = fan_speed_level - fan_diff_required;
3799
3800 if (fan_speed_new > fan_speed_max) fan_speed_new = fan_speed_max;
3801 if (fan_speed_new < fan_speed_min) fan_speed_new = fan_speed_min;
3802
3803 if (fan_speed_new != fan_speed_cur)
3804 {
3805 int freely_change_fan_speed = (fan_speed_chgd[device_id] == 1);
3806 int fan_speed_must_change = (fan_speed_new > fan_speed_cur);
3807
3808 if ((freely_change_fan_speed == 1) || (fan_speed_must_change == 1))
3809 {
3810 hm_set_fanspeed_with_device_id_amd (device_id, fan_speed_new);
3811
3812 fan_speed_chgd[device_id] = 1;
3813 }
3814
3815 temp_diff_old[device_id] = temp_diff_new;
3816 }
3817 }
3818 }
3819 }
3820 #endif // HAVE_ADL
3821 }
3822
3823 hc_thread_mutex_unlock (mux_adl);
3824 }
3825 #endif // HAVE_HWMON
3826
3827 if (restore_check == 1)
3828 {
3829 restore_left--;
3830
3831 if (restore_left == 0)
3832 {
3833 if (data.restore_disable == 0) cycle_restore ();
3834
3835 restore_left = data.restore_timer;
3836 }
3837 }
3838
3839 if ((runtime_check == 1) && (data.runtime_start > 0))
3840 {
3841 time_t runtime_cur;
3842
3843 time (&runtime_cur);
3844
3845 int runtime_left = data.runtime_start + data.runtime - runtime_cur;
3846
3847 if (runtime_left <= 0)
3848 {
3849 if (data.benchmark == 0)
3850 {
3851 if (data.quiet == 0) log_info ("\nNOTE: Runtime limit reached, aborting...\n");
3852 }
3853
3854 if (data.devices_status != STATUS_QUIT) myabort ();
3855 }
3856 }
3857
3858 if (remove_check == 1)
3859 {
3860 remove_left--;
3861
3862 if (remove_left == 0)
3863 {
3864 if (data.digests_saved != data.digests_done)
3865 {
3866 data.digests_saved = data.digests_done;
3867
3868 save_hash ();
3869 }
3870
3871 remove_left = data.remove_timer;
3872 }
3873 }
3874
3875 if (status_check == 1)
3876 {
3877 status_left--;
3878
3879 if (status_left == 0)
3880 {
3881 hc_thread_mutex_lock (mux_display);
3882
3883 if (data.quiet == 0) clear_prompt ();
3884
3885 if (data.quiet == 0) log_info ("");
3886
3887 status_display ();
3888
3889 if (data.quiet == 0) log_info ("");
3890
3891 hc_thread_mutex_unlock (mux_display);
3892
3893 status_left = data.status_timer;
3894 }
3895 }
3896 }
3897
3898 #ifdef HAVE_HWMON
3899 myfree (fan_speed_chgd);
3900
3901 myfree (temp_diff_old);
3902 myfree (temp_diff_sum);
3903 #endif
3904
3905 p = NULL;
3906
3907 return (p);
3908 }
3909
3910 static void *thread_outfile_remove (void *p)
3911 {
3912 // some hash-dependent constants
3913 char *outfile_dir = data.outfile_check_directory;
3914 uint dgst_size = data.dgst_size;
3915 uint isSalted = data.isSalted;
3916 uint esalt_size = data.esalt_size;
3917 uint hash_mode = data.hash_mode;
3918
3919 uint outfile_check_timer = data.outfile_check_timer;
3920
3921 char separator = data.separator;
3922
3923 // some hash-dependent functions
3924 int (*sort_by_digest) (const void *, const void *) = data.sort_by_digest;
3925 int (*parse_func) (char *, uint, hash_t *) = data.parse_func;
3926
3927 // buffers
3928 hash_t hash_buf = { 0, 0, 0, 0, 0 };
3929
3930 hash_buf.digest = mymalloc (dgst_size);
3931
3932 if (isSalted) hash_buf.salt = (salt_t *) mymalloc (sizeof (salt_t));
3933
3934 if (esalt_size) hash_buf.esalt = (void *) mymalloc (esalt_size);
3935
3936 uint digest_buf[64] = { 0 };
3937
3938 outfile_data_t *out_info = NULL;
3939
3940 char **out_files = NULL;
3941
3942 time_t folder_mtime = 0;
3943
3944 int out_cnt = 0;
3945
3946 uint check_left = outfile_check_timer; // or 1 if we want to check it at startup
3947
3948 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
3949 {
3950 hc_sleep (1);
3951
3952 if (data.devices_status != STATUS_RUNNING) continue;
3953
3954 check_left--;
3955
3956 if (check_left == 0)
3957 {
3958 struct stat outfile_check_stat;
3959
3960 if (stat (outfile_dir, &outfile_check_stat) == 0)
3961 {
3962 uint is_dir = S_ISDIR (outfile_check_stat.st_mode);
3963
3964 if (is_dir == 1)
3965 {
3966 if (outfile_check_stat.st_mtime > folder_mtime)
3967 {
3968 char **out_files_new = scan_directory (outfile_dir);
3969
3970 int out_cnt_new = count_dictionaries (out_files_new);
3971
3972 outfile_data_t *out_info_new = NULL;
3973
3974 if (out_cnt_new > 0)
3975 {
3976 out_info_new = (outfile_data_t *) mycalloc (out_cnt_new, sizeof (outfile_data_t));
3977
3978 for (int i = 0; i < out_cnt_new; i++)
3979 {
3980 out_info_new[i].file_name = out_files_new[i];
3981
3982 // check if there are files that we have seen/checked before (and not changed)
3983
3984 for (int j = 0; j < out_cnt; j++)
3985 {
3986 if (strcmp (out_info[j].file_name, out_info_new[i].file_name) == 0)
3987 {
3988 struct stat outfile_stat;
3989
3990 if (stat (out_info_new[i].file_name, &outfile_stat) == 0)
3991 {
3992 if (outfile_stat.st_ctime == out_info[j].ctime)
3993 {
3994 out_info_new[i].ctime = out_info[j].ctime;
3995 out_info_new[i].seek = out_info[j].seek;
3996 }
3997 }
3998 }
3999 }
4000 }
4001 }
4002
4003 local_free (out_info);
4004 local_free (out_files);
4005
4006 out_files = out_files_new;
4007 out_cnt = out_cnt_new;
4008 out_info = out_info_new;
4009
4010 folder_mtime = outfile_check_stat.st_mtime;
4011 }
4012
4013 for (int j = 0; j < out_cnt; j++)
4014 {
4015 FILE *fp = fopen (out_info[j].file_name, "rb");
4016
4017 if (fp != NULL)
4018 {
4019 //hc_thread_mutex_lock (mux_display);
4020
4021 #ifdef _POSIX
4022 struct stat outfile_stat;
4023
4024 fstat (fileno (fp), &outfile_stat);
4025 #endif
4026
4027 #ifdef _WIN
4028 struct stat64 outfile_stat;
4029
4030 _fstat64 (fileno (fp), &outfile_stat);
4031 #endif
4032
4033 if (outfile_stat.st_ctime > out_info[j].ctime)
4034 {
4035 out_info[j].ctime = outfile_stat.st_ctime;
4036 out_info[j].seek = 0;
4037 }
4038
4039 fseek (fp, out_info[j].seek, SEEK_SET);
4040
4041 char *line_buf = (char *) mymalloc (HCBUFSIZ);
4042
4043 while (!feof (fp))
4044 {
4045 char *ptr = fgets (line_buf, HCBUFSIZ - 1, fp);
4046
4047 if (ptr == NULL) break;
4048
4049 int line_len = strlen (line_buf);
4050
4051 if (line_len <= 0) continue;
4052
4053 int iter = MAX_CUT_TRIES;
4054
4055 for (uint i = line_len - 1; i && iter; i--, line_len--)
4056 {
4057 if (line_buf[i] != separator) continue;
4058
4059 int parser_status = PARSER_OK;
4060
4061 if ((hash_mode != 2500) && (hash_mode != 6800))
4062 {
4063 parser_status = parse_func (line_buf, line_len - 1, &hash_buf);
4064 }
4065
4066 uint found = 0;
4067
4068 if (parser_status == PARSER_OK)
4069 {
4070 for (uint salt_pos = 0; (found == 0) && (salt_pos < data.salts_cnt); salt_pos++)
4071 {
4072 if (data.salts_shown[salt_pos] == 1) continue;
4073
4074 salt_t *salt_buf = &data.salts_buf[salt_pos];
4075
4076 for (uint digest_pos = 0; (found == 0) && (digest_pos < salt_buf->digests_cnt); digest_pos++)
4077 {
4078 uint idx = salt_buf->digests_offset + digest_pos;
4079
4080 if (data.digests_shown[idx] == 1) continue;
4081
4082 uint cracked = 0;
4083
4084 if (hash_mode == 6800)
4085 {
4086 if (i == salt_buf->salt_len)
4087 {
4088 cracked = (memcmp (line_buf, salt_buf->salt_buf, salt_buf->salt_len) == 0);
4089 }
4090 }
4091 else if (hash_mode == 2500)
4092 {
4093 // BSSID : MAC1 : MAC2 (:plain)
4094 if (i == (salt_buf->salt_len + 1 + 12 + 1 + 12))
4095 {
4096 cracked = (memcmp (line_buf, salt_buf->salt_buf, salt_buf->salt_len) == 0);
4097
4098 if (!cracked) continue;
4099
4100 // now compare MAC1 and MAC2 too, since we have this additional info
4101 char *mac1_pos = line_buf + salt_buf->salt_len + 1;
4102 char *mac2_pos = mac1_pos + 12 + 1;
4103
4104 wpa_t *wpas = (wpa_t *) data.esalts_buf;
4105 wpa_t *wpa = &wpas[salt_pos];
4106
4107 // compare hex string(s) vs binary MAC address(es)
4108
4109 for (uint i = 0, j = 0; i < 6; i++, j += 2)
4110 {
4111 if (wpa->orig_mac1[i] != hex_to_u8 ((const u8 *) &mac1_pos[j]))
4112 {
4113 cracked = 0;
4114
4115 break;
4116 }
4117 }
4118
4119 // early skip ;)
4120 if (!cracked) continue;
4121
4122 for (uint i = 0, j = 0; i < 6; i++, j += 2)
4123 {
4124 if (wpa->orig_mac2[i] != hex_to_u8 ((const u8 *) &mac2_pos[j]))
4125 {
4126 cracked = 0;
4127
4128 break;
4129 }
4130 }
4131 }
4132 }
4133 else
4134 {
4135 char *digests_buf_ptr = (char *) data.digests_buf;
4136
4137 memcpy (digest_buf, digests_buf_ptr + (data.salts_buf[salt_pos].digests_offset * dgst_size) + (digest_pos * dgst_size), dgst_size);
4138
4139 cracked = (sort_by_digest (digest_buf, hash_buf.digest) == 0);
4140 }
4141
4142 if (cracked == 1)
4143 {
4144 found = 1;
4145
4146 data.digests_shown[idx] = 1;
4147
4148 data.digests_done++;
4149
4150 salt_buf->digests_done++;
4151
4152 if (salt_buf->digests_done == salt_buf->digests_cnt)
4153 {
4154 data.salts_shown[salt_pos] = 1;
4155
4156 data.salts_done++;
4157
4158 if (data.salts_done == data.salts_cnt) data.devices_status = STATUS_CRACKED;
4159 }
4160 }
4161 }
4162
4163 if (data.devices_status == STATUS_CRACKED) break;
4164 }
4165 }
4166
4167 if (found) break;
4168
4169 if (data.devices_status == STATUS_CRACKED) break;
4170
4171 iter--;
4172 }
4173
4174 if (data.devices_status == STATUS_CRACKED) break;
4175 }
4176
4177 myfree (line_buf);
4178
4179 out_info[j].seek = ftell (fp);
4180
4181 //hc_thread_mutex_unlock (mux_display);
4182
4183 fclose (fp);
4184 }
4185 }
4186 }
4187 }
4188
4189 check_left = outfile_check_timer;
4190 }
4191 }
4192
4193 if (esalt_size) local_free (hash_buf.esalt);
4194
4195 if (isSalted) local_free (hash_buf.salt);
4196
4197 local_free (hash_buf.digest);
4198
4199 local_free (out_info);
4200
4201 local_free (out_files);
4202
4203 p = NULL;
4204
4205 return (p);
4206 }
4207
4208 static void pw_add (hc_device_param_t *device_param, const u8 *pw_buf, const int pw_len)
4209 {
4210 if (device_param->pws_cnt < device_param->kernel_power)
4211 {
4212 pw_t *pw = (pw_t *) device_param->pws_buf + device_param->pws_cnt;
4213
4214 u8 *ptr = (u8 *) pw->i;
4215
4216 memcpy (ptr, pw_buf, pw_len);
4217
4218 memset (ptr + pw_len, 0, sizeof (pw->i) - pw_len);
4219
4220 pw->pw_len = pw_len;
4221
4222 device_param->pws_cnt++;
4223 }
4224 else
4225 {
4226 fprintf (stderr, "BUG pw_add()!!\n");
4227
4228 return;
4229 }
4230 }
4231
4232 static uint get_work (hc_device_param_t *device_param, const u64 max, const bool allow_div)
4233 {
4234 hc_thread_mutex_lock (mux_dispatcher);
4235
4236 const u64 words_cur = data.words_cur;
4237 const u64 words_base = (data.limit == 0) ? data.words_base : data.limit;
4238
4239 device_param->words_off = words_cur;
4240
4241 const u64 words_left = words_base - words_cur;
4242
4243 if (allow_div)
4244 {
4245 if (data.kernel_power_all > words_left)
4246 {
4247 if (data.kernel_power_div == 0)
4248 {
4249 data.kernel_power_div = find_kernel_power_div (words_left, data.kernel_power_all);
4250 }
4251 }
4252
4253 if (data.kernel_power_div)
4254 {
4255 if (device_param->kernel_power == device_param->kernel_power_user)
4256 {
4257 const u32 kernel_power_new = (float) device_param->kernel_power * data.kernel_power_div;
4258
4259 if (kernel_power_new < device_param->kernel_power)
4260 {
4261 device_param->kernel_power = kernel_power_new;
4262 }
4263 }
4264 }
4265 }
4266
4267 const uint kernel_power = device_param->kernel_power;
4268
4269 uint work = MIN (words_left, kernel_power);
4270
4271 work = MIN (work, max);
4272
4273 data.words_cur += work;
4274
4275 hc_thread_mutex_unlock (mux_dispatcher);
4276
4277 return work;
4278 }
4279
4280 static void *thread_calc_stdin (void *p)
4281 {
4282 hc_device_param_t *device_param = (hc_device_param_t *) p;
4283
4284 if (device_param->skipped) return NULL;
4285
4286 autotune (device_param);
4287
4288 char *buf = (char *) mymalloc (HCBUFSIZ);
4289
4290 const uint attack_kern = data.attack_kern;
4291
4292 const uint kernel_power = device_param->kernel_power;
4293
4294 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
4295 {
4296 hc_thread_mutex_lock (mux_dispatcher);
4297
4298 if (feof (stdin) != 0)
4299 {
4300 hc_thread_mutex_unlock (mux_dispatcher);
4301
4302 break;
4303 }
4304
4305 uint words_cur = 0;
4306
4307 while (words_cur < kernel_power)
4308 {
4309 char *line_buf = fgets (buf, HCBUFSIZ - 1, stdin);
4310
4311 if (line_buf == NULL) break;
4312
4313 uint line_len = in_superchop (line_buf);
4314
4315 line_len = convert_from_hex (line_buf, line_len);
4316
4317 // post-process rule engine
4318
4319 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
4320 {
4321 char rule_buf_out[BLOCK_SIZE] = { 0 };
4322
4323 int rule_len_out = -1;
4324
4325 if (line_len < BLOCK_SIZE)
4326 {
4327 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, line_buf, line_len, rule_buf_out);
4328 }
4329
4330 if (rule_len_out < 0) continue;
4331
4332 line_buf = rule_buf_out;
4333 line_len = rule_len_out;
4334 }
4335
4336 if (line_len > PW_MAX)
4337 {
4338 continue;
4339 }
4340
4341 if (attack_kern == ATTACK_KERN_STRAIGHT)
4342 {
4343 if ((line_len < data.pw_min) || (line_len > data.pw_max))
4344 {
4345 hc_thread_mutex_lock (mux_counter);
4346
4347 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4348 {
4349 data.words_progress_rejected[salt_pos] += data.kernel_rules_cnt;
4350 }
4351
4352 hc_thread_mutex_unlock (mux_counter);
4353
4354 continue;
4355 }
4356 }
4357 else if (attack_kern == ATTACK_KERN_COMBI)
4358 {
4359 // do not check if minimum restriction is satisfied (line_len >= data.pw_min) here
4360 // since we still need to combine the plains
4361
4362 if (line_len > data.pw_max)
4363 {
4364 hc_thread_mutex_lock (mux_counter);
4365
4366 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4367 {
4368 data.words_progress_rejected[salt_pos] += data.combs_cnt;
4369 }
4370
4371 hc_thread_mutex_unlock (mux_counter);
4372
4373 continue;
4374 }
4375 }
4376
4377 pw_add (device_param, (u8 *) line_buf, line_len);
4378
4379 words_cur++;
4380
4381 if (data.devices_status == STATUS_CRACKED) break;
4382 if (data.devices_status == STATUS_ABORTED) break;
4383 if (data.devices_status == STATUS_QUIT) break;
4384 if (data.devices_status == STATUS_BYPASS) break;
4385 }
4386
4387 hc_thread_mutex_unlock (mux_dispatcher);
4388
4389 if (data.devices_status == STATUS_CRACKED) break;
4390 if (data.devices_status == STATUS_ABORTED) break;
4391 if (data.devices_status == STATUS_QUIT) break;
4392 if (data.devices_status == STATUS_BYPASS) break;
4393
4394 // flush
4395
4396 const uint pws_cnt = device_param->pws_cnt;
4397
4398 if (pws_cnt)
4399 {
4400 run_copy (device_param, pws_cnt);
4401
4402 run_cracker (device_param, pws_cnt);
4403
4404 device_param->pws_cnt = 0;
4405
4406 if (attack_kern == ATTACK_KERN_STRAIGHT)
4407 {
4408 run_kernel_bzero (device_param, device_param->d_rules_c, device_param->size_rules_c);
4409 }
4410 else if (attack_kern == ATTACK_KERN_COMBI)
4411 {
4412 run_kernel_bzero (device_param, device_param->d_combs_c, device_param->size_combs);
4413 }
4414 }
4415 }
4416
4417 device_param->kernel_accel = 0;
4418 device_param->kernel_loops = 0;
4419
4420 myfree (buf);
4421
4422 return NULL;
4423 }
4424
4425 static void *thread_calc (void *p)
4426 {
4427 hc_device_param_t *device_param = (hc_device_param_t *) p;
4428
4429 if (device_param->skipped) return NULL;
4430
4431 autotune (device_param);
4432
4433 const uint attack_mode = data.attack_mode;
4434 const uint attack_kern = data.attack_kern;
4435
4436 if (attack_mode == ATTACK_MODE_BF)
4437 {
4438 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
4439 {
4440 const uint work = get_work (device_param, -1, true);
4441
4442 if (work == 0) break;
4443
4444 const u64 words_off = device_param->words_off;
4445 const u64 words_fin = words_off + work;
4446
4447 const uint pws_cnt = work;
4448
4449 device_param->pws_cnt = pws_cnt;
4450
4451 if (pws_cnt)
4452 {
4453 run_copy (device_param, pws_cnt);
4454
4455 run_cracker (device_param, pws_cnt);
4456
4457 device_param->pws_cnt = 0;
4458
4459 run_kernel_bzero (device_param, device_param->d_bfs_c, device_param->size_bfs);
4460 }
4461
4462 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4463
4464 if (data.devices_status == STATUS_CRACKED) break;
4465 if (data.devices_status == STATUS_ABORTED) break;
4466 if (data.devices_status == STATUS_QUIT) break;
4467 if (data.devices_status == STATUS_BYPASS) break;
4468
4469 if (data.benchmark == 1) break;
4470
4471 device_param->words_done = words_fin;
4472 }
4473 }
4474 else
4475 {
4476 const uint segment_size = data.segment_size;
4477
4478 char *dictfile = data.dictfile;
4479
4480 if (attack_mode == ATTACK_MODE_COMBI)
4481 {
4482 if (data.combs_mode == COMBINATOR_MODE_BASE_RIGHT)
4483 {
4484 dictfile = data.dictfile2;
4485 }
4486 }
4487
4488 FILE *fd = fopen (dictfile, "rb");
4489
4490 if (fd == NULL)
4491 {
4492 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
4493
4494 return NULL;
4495 }
4496
4497 if (attack_mode == ATTACK_MODE_COMBI)
4498 {
4499 const uint combs_mode = data.combs_mode;
4500
4501 if (combs_mode == COMBINATOR_MODE_BASE_LEFT)
4502 {
4503 const char *dictfilec = data.dictfile2;
4504
4505 FILE *combs_fp = fopen (dictfilec, "rb");
4506
4507 if (combs_fp == NULL)
4508 {
4509 log_error ("ERROR: %s: %s", dictfilec, strerror (errno));
4510
4511 fclose (fd);
4512
4513 return NULL;
4514 }
4515
4516 device_param->combs_fp = combs_fp;
4517 }
4518 else if (combs_mode == COMBINATOR_MODE_BASE_RIGHT)
4519 {
4520 const char *dictfilec = data.dictfile;
4521
4522 FILE *combs_fp = fopen (dictfilec, "rb");
4523
4524 if (combs_fp == NULL)
4525 {
4526 log_error ("ERROR: %s: %s", dictfilec, strerror (errno));
4527
4528 fclose (fd);
4529
4530 return NULL;
4531 }
4532
4533 device_param->combs_fp = combs_fp;
4534 }
4535 }
4536
4537 wl_data_t *wl_data = (wl_data_t *) mymalloc (sizeof (wl_data_t));
4538
4539 wl_data->buf = (char *) mymalloc (segment_size);
4540 wl_data->avail = segment_size;
4541 wl_data->incr = segment_size;
4542 wl_data->cnt = 0;
4543 wl_data->pos = 0;
4544
4545 u64 words_cur = 0;
4546
4547 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
4548 {
4549 u64 words_off = 0;
4550 u64 words_fin = 0;
4551
4552 bool allow_div = true;
4553
4554 u64 max = -1;
4555
4556 while (max)
4557 {
4558 const uint work = get_work (device_param, max, allow_div);
4559
4560 allow_div = false;
4561
4562 if (work == 0) break;
4563
4564 words_off = device_param->words_off;
4565 words_fin = words_off + work;
4566
4567 char *line_buf;
4568 uint line_len;
4569
4570 for ( ; words_cur < words_off; words_cur++) get_next_word (wl_data, fd, &line_buf, &line_len);
4571
4572 max = 0;
4573
4574 for ( ; words_cur < words_fin; words_cur++)
4575 {
4576 get_next_word (wl_data, fd, &line_buf, &line_len);
4577
4578 line_len = convert_from_hex (line_buf, line_len);
4579
4580 // post-process rule engine
4581
4582 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
4583 {
4584 char rule_buf_out[BLOCK_SIZE] = { 0 };
4585
4586 int rule_len_out = -1;
4587
4588 if (line_len < BLOCK_SIZE)
4589 {
4590 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, line_buf, line_len, rule_buf_out);
4591 }
4592
4593 if (rule_len_out < 0) continue;
4594
4595 line_buf = rule_buf_out;
4596 line_len = rule_len_out;
4597 }
4598
4599 if (attack_kern == ATTACK_KERN_STRAIGHT)
4600 {
4601 if ((line_len < data.pw_min) || (line_len > data.pw_max))
4602 {
4603 max++;
4604
4605 hc_thread_mutex_lock (mux_counter);
4606
4607 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4608 {
4609 data.words_progress_rejected[salt_pos] += data.kernel_rules_cnt;
4610 }
4611
4612 hc_thread_mutex_unlock (mux_counter);
4613
4614 continue;
4615 }
4616 }
4617 else if (attack_kern == ATTACK_KERN_COMBI)
4618 {
4619 // do not check if minimum restriction is satisfied (line_len >= data.pw_min) here
4620 // since we still need to combine the plains
4621
4622 if (line_len > data.pw_max)
4623 {
4624 max++;
4625
4626 hc_thread_mutex_lock (mux_counter);
4627
4628 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4629 {
4630 data.words_progress_rejected[salt_pos] += data.combs_cnt;
4631 }
4632
4633 hc_thread_mutex_unlock (mux_counter);
4634
4635 continue;
4636 }
4637 }
4638
4639 pw_add (device_param, (u8 *) line_buf, line_len);
4640
4641 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4642
4643 if (data.devices_status == STATUS_CRACKED) break;
4644 if (data.devices_status == STATUS_ABORTED) break;
4645 if (data.devices_status == STATUS_QUIT) break;
4646 if (data.devices_status == STATUS_BYPASS) break;
4647 }
4648
4649 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4650
4651 if (data.devices_status == STATUS_CRACKED) break;
4652 if (data.devices_status == STATUS_ABORTED) break;
4653 if (data.devices_status == STATUS_QUIT) break;
4654 if (data.devices_status == STATUS_BYPASS) break;
4655 }
4656
4657 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4658
4659 if (data.devices_status == STATUS_CRACKED) break;
4660 if (data.devices_status == STATUS_ABORTED) break;
4661 if (data.devices_status == STATUS_QUIT) break;
4662 if (data.devices_status == STATUS_BYPASS) break;
4663
4664 //
4665 // flush
4666 //
4667
4668 const uint pws_cnt = device_param->pws_cnt;
4669
4670 if (pws_cnt)
4671 {
4672 run_copy (device_param, pws_cnt);
4673
4674 run_cracker (device_param, pws_cnt);
4675
4676 device_param->pws_cnt = 0;
4677
4678 if (attack_kern == ATTACK_KERN_STRAIGHT)
4679 {
4680 run_kernel_bzero (device_param, device_param->d_rules_c, device_param->size_rules_c);
4681 }
4682 else if (attack_kern == ATTACK_KERN_COMBI)
4683 {
4684 run_kernel_bzero (device_param, device_param->d_combs_c, device_param->size_combs);
4685 }
4686 }
4687
4688 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4689
4690 if (data.devices_status == STATUS_CRACKED) break;
4691 if (data.devices_status == STATUS_ABORTED) break;
4692 if (data.devices_status == STATUS_QUIT) break;
4693 if (data.devices_status == STATUS_BYPASS) break;
4694
4695 if (words_fin == 0) break;
4696
4697 device_param->words_done = words_fin;
4698 }
4699
4700 if (attack_mode == ATTACK_MODE_COMBI)
4701 {
4702 fclose (device_param->combs_fp);
4703 }
4704
4705 free (wl_data->buf);
4706 free (wl_data);
4707
4708 fclose (fd);
4709 }
4710
4711 device_param->kernel_accel = 0;
4712 device_param->kernel_loops = 0;
4713
4714 return NULL;
4715 }
4716
4717 static void weak_hash_check (hc_device_param_t *device_param, const uint salt_pos)
4718 {
4719 if (!device_param)
4720 {
4721 log_error ("ERROR: %s : Invalid argument", __func__);
4722
4723 exit (-1);
4724 }
4725
4726 salt_t *salt_buf = &data.salts_buf[salt_pos];
4727
4728 device_param->kernel_params_buf32[24] = salt_pos;
4729 device_param->kernel_params_buf32[27] = 1;
4730 device_param->kernel_params_buf32[28] = salt_buf->digests_cnt;
4731 device_param->kernel_params_buf32[29] = salt_buf->digests_offset;
4732 device_param->kernel_params_buf32[30] = 0;
4733 device_param->kernel_params_buf32[31] = 1;
4734
4735 char *dictfile_old = data.dictfile;
4736
4737 const char *weak_hash_check = "weak-hash-check";
4738
4739 data.dictfile = (char *) weak_hash_check;
4740
4741 uint cmd0_rule_old = data.kernel_rules_buf[0].cmds[0];
4742
4743 data.kernel_rules_buf[0].cmds[0] = 0;
4744
4745 /**
4746 * run the kernel
4747 */
4748
4749 if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
4750 {
4751 run_kernel (KERN_RUN_1, device_param, 1, false);
4752 }
4753 else
4754 {
4755 run_kernel (KERN_RUN_1, device_param, 1, false);
4756
4757 uint loop_step = 16;
4758
4759 const uint iter = salt_buf->salt_iter;
4760
4761 for (uint loop_pos = 0; loop_pos < iter; loop_pos += loop_step)
4762 {
4763 uint loop_left = iter - loop_pos;
4764
4765 loop_left = MIN (loop_left, loop_step);
4766
4767 device_param->kernel_params_buf32[25] = loop_pos;
4768 device_param->kernel_params_buf32[26] = loop_left;
4769
4770 run_kernel (KERN_RUN_2, device_param, 1, false);
4771 }
4772
4773 run_kernel (KERN_RUN_3, device_param, 1, false);
4774 }
4775
4776 /**
4777 * result
4778 */
4779
4780 check_cracked (device_param, salt_pos);
4781
4782 /**
4783 * cleanup
4784 */
4785
4786 device_param->kernel_params_buf32[24] = 0;
4787 device_param->kernel_params_buf32[25] = 0;
4788 device_param->kernel_params_buf32[26] = 0;
4789 device_param->kernel_params_buf32[27] = 0;
4790 device_param->kernel_params_buf32[28] = 0;
4791 device_param->kernel_params_buf32[29] = 0;
4792 device_param->kernel_params_buf32[30] = 0;
4793 device_param->kernel_params_buf32[31] = 0;
4794
4795 data.dictfile = dictfile_old;
4796
4797 data.kernel_rules_buf[0].cmds[0] = cmd0_rule_old;
4798 }
4799
4800 // hlfmt hashcat
4801
4802 static void hlfmt_hash_hashcat (char *line_buf, int line_len, char **hashbuf_pos, int *hashbuf_len)
4803 {
4804 if (data.username == 0)
4805 {
4806 *hashbuf_pos = line_buf;
4807 *hashbuf_len = line_len;
4808 }
4809 else
4810 {
4811 char *pos = line_buf;
4812 int len = line_len;
4813
4814 for (int i = 0; i < line_len; i++, pos++, len--)
4815 {
4816 if (line_buf[i] == data.separator)
4817 {
4818 pos++;
4819
4820 len--;
4821
4822 break;
4823 }
4824 }
4825
4826 *hashbuf_pos = pos;
4827 *hashbuf_len = len;
4828 }
4829 }
4830
4831 static void hlfmt_user_hashcat (char *line_buf, int line_len, char **userbuf_pos, int *userbuf_len)
4832 {
4833 char *pos = NULL;
4834 int len = 0;
4835
4836 int sep_cnt = 0;
4837
4838 for (int i = 0; i < line_len; i++)
4839 {
4840 if (line_buf[i] == data.separator)
4841 {
4842 sep_cnt++;
4843
4844 continue;
4845 }
4846
4847 if (sep_cnt == 0)
4848 {
4849 if (pos == NULL) pos = line_buf + i;
4850
4851 len++;
4852 }
4853 }
4854
4855 *userbuf_pos = pos;
4856 *userbuf_len = len;
4857 }
4858
4859 // hlfmt pwdump
4860
4861 static int hlfmt_detect_pwdump (char *line_buf, int line_len)
4862 {
4863 int sep_cnt = 0;
4864
4865 int sep2_len = 0;
4866 int sep3_len = 0;
4867
4868 for (int i = 0; i < line_len; i++)
4869 {
4870 if (line_buf[i] == ':')
4871 {
4872 sep_cnt++;
4873
4874 continue;
4875 }
4876
4877 if (sep_cnt == 2) sep2_len++;
4878 if (sep_cnt == 3) sep3_len++;
4879 }
4880
4881 if ((sep_cnt == 6) && ((sep2_len == 32) || (sep3_len == 32))) return 1;
4882
4883 return 0;
4884 }
4885
4886 static void hlfmt_hash_pwdump (char *line_buf, int line_len, char **hashbuf_pos, int *hashbuf_len)
4887 {
4888 char *pos = NULL;
4889 int len = 0;
4890
4891 int sep_cnt = 0;
4892
4893 for (int i = 0; i < line_len; i++)
4894 {
4895 if (line_buf[i] == ':')
4896 {
4897 sep_cnt++;
4898
4899 continue;
4900 }
4901
4902 if (data.hash_mode == 1000)
4903 {
4904 if (sep_cnt == 3)
4905 {
4906 if (pos == NULL) pos = line_buf + i;
4907
4908 len++;
4909 }
4910 }
4911 else if (data.hash_mode == 3000)
4912 {
4913 if (sep_cnt == 2)
4914 {
4915 if (pos == NULL) pos = line_buf + i;
4916
4917 len++;
4918 }
4919 }
4920 }
4921
4922 *hashbuf_pos = pos;
4923 *hashbuf_len = len;
4924 }
4925
4926 static void hlfmt_user_pwdump (char *line_buf, int line_len, char **userbuf_pos, int *userbuf_len)
4927 {
4928 char *pos = NULL;
4929 int len = 0;
4930
4931 int sep_cnt = 0;
4932
4933 for (int i = 0; i < line_len; i++)
4934 {
4935 if (line_buf[i] == ':')
4936 {
4937 sep_cnt++;
4938
4939 continue;
4940 }
4941
4942 if (sep_cnt == 0)
4943 {
4944 if (pos == NULL) pos = line_buf + i;
4945
4946 len++;
4947 }
4948 }
4949
4950 *userbuf_pos = pos;
4951 *userbuf_len = len;
4952 }
4953
4954 // hlfmt passwd
4955
4956 static int hlfmt_detect_passwd (char *line_buf, int line_len)
4957 {
4958 int sep_cnt = 0;
4959
4960 char sep5_first = 0;
4961 char sep6_first = 0;
4962
4963 for (int i = 0; i < line_len; i++)
4964 {
4965 if (line_buf[i] == ':')
4966 {
4967 sep_cnt++;
4968
4969 continue;
4970 }
4971
4972 if (sep_cnt == 5) if (sep5_first == 0) sep5_first = line_buf[i];
4973 if (sep_cnt == 6) if (sep6_first == 0) sep6_first = line_buf[i];
4974 }
4975
4976 if ((sep_cnt == 6) && ((sep5_first == '/') || (sep6_first == '/'))) return 1;
4977
4978 return 0;
4979 }
4980
4981 static void hlfmt_hash_passwd (char *line_buf, int line_len, char **hashbuf_pos, int *hashbuf_len)
4982 {
4983 char *pos = NULL;
4984 int len = 0;
4985
4986 int sep_cnt = 0;
4987
4988 for (int i = 0; i < line_len; i++)
4989 {
4990 if (line_buf[i] == ':')
4991 {
4992 sep_cnt++;
4993
4994 continue;
4995 }
4996
4997 if (sep_cnt == 1)
4998 {
4999 if (pos == NULL) pos = line_buf + i;
5000
5001 len++;
5002 }
5003 }
5004
5005 *hashbuf_pos = pos;
5006 *hashbuf_len = len;
5007 }
5008
5009 static void hlfmt_user_passwd (char *line_buf, int line_len, char **userbuf_pos, int *userbuf_len)
5010 {
5011 char *pos = NULL;
5012 int len = 0;
5013
5014 int sep_cnt = 0;
5015
5016 for (int i = 0; i < line_len; i++)
5017 {
5018 if (line_buf[i] == ':')
5019 {
5020 sep_cnt++;
5021
5022 continue;
5023 }
5024
5025 if (sep_cnt == 0)
5026 {
5027 if (pos == NULL) pos = line_buf + i;
5028
5029 len++;
5030 }
5031 }
5032
5033 *userbuf_pos = pos;
5034 *userbuf_len = len;
5035 }
5036
5037 // hlfmt shadow
5038
5039 static int hlfmt_detect_shadow (char *line_buf, int line_len)
5040 {
5041 int sep_cnt = 0;
5042
5043 for (int i = 0; i < line_len; i++)
5044 {
5045 if (line_buf[i] == ':') sep_cnt++;
5046 }
5047
5048 if (sep_cnt == 8) return 1;
5049
5050 return 0;
5051 }
5052
5053 static void hlfmt_hash_shadow (char *line_buf, int line_len, char **hashbuf_pos, int *hashbuf_len)
5054 {
5055 hlfmt_hash_passwd (line_buf, line_len, hashbuf_pos, hashbuf_len);
5056 }
5057
5058 static void hlfmt_user_shadow (char *line_buf, int line_len, char **userbuf_pos, int *userbuf_len)
5059 {
5060 hlfmt_user_passwd (line_buf, line_len, userbuf_pos, userbuf_len);
5061 }
5062
5063 // hlfmt main
5064
5065 static void hlfmt_hash (uint hashfile_format, char *line_buf, int line_len, char **hashbuf_pos, int *hashbuf_len)
5066 {
5067 switch (hashfile_format)
5068 {
5069 case HLFMT_HASHCAT: hlfmt_hash_hashcat (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
5070 case HLFMT_PWDUMP: hlfmt_hash_pwdump (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
5071 case HLFMT_PASSWD: hlfmt_hash_passwd (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
5072 case HLFMT_SHADOW: hlfmt_hash_shadow (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
5073 }
5074 }
5075
5076 static void hlfmt_user (uint hashfile_format, char *line_buf, int line_len, char **userbuf_pos, int *userbuf_len)
5077 {
5078 switch (hashfile_format)
5079 {
5080 case HLFMT_HASHCAT: hlfmt_user_hashcat (line_buf, line_len, userbuf_pos, userbuf_len); break;
5081 case HLFMT_PWDUMP: hlfmt_user_pwdump (line_buf, line_len, userbuf_pos, userbuf_len); break;
5082 case HLFMT_PASSWD: hlfmt_user_passwd (line_buf, line_len, userbuf_pos, userbuf_len); break;
5083 case HLFMT_SHADOW: hlfmt_user_shadow (line_buf, line_len, userbuf_pos, userbuf_len); break;
5084 }
5085 }
5086
5087 char *strhlfmt (const uint hashfile_format)
5088 {
5089 switch (hashfile_format)
5090 {
5091 case HLFMT_HASHCAT: return ((char *) HLFMT_TEXT_HASHCAT); break;
5092 case HLFMT_PWDUMP: return ((char *) HLFMT_TEXT_PWDUMP); break;
5093 case HLFMT_PASSWD: return ((char *) HLFMT_TEXT_PASSWD); break;
5094 case HLFMT_SHADOW: return ((char *) HLFMT_TEXT_SHADOW); break;
5095 case HLFMT_DCC: return ((char *) HLFMT_TEXT_DCC); break;
5096 case HLFMT_DCC2: return ((char *) HLFMT_TEXT_DCC2); break;
5097 case HLFMT_NETNTLM1: return ((char *) HLFMT_TEXT_NETNTLM1); break;
5098 case HLFMT_NETNTLM2: return ((char *) HLFMT_TEXT_NETNTLM2); break;
5099 case HLFMT_NSLDAP: return ((char *) HLFMT_TEXT_NSLDAP); break;
5100 case HLFMT_NSLDAPS: return ((char *) HLFMT_TEXT_NSLDAPS); break;
5101 }
5102
5103 return ((char *) "Unknown");
5104 }
5105
5106 static uint hlfmt_detect (FILE *fp, uint max_check)
5107 {
5108 // Exception: those formats are wrongly detected as HLFMT_SHADOW, prevent it
5109
5110 if (data.hash_mode == 5300) return HLFMT_HASHCAT;
5111 if (data.hash_mode == 5400) return HLFMT_HASHCAT;
5112
5113 uint *formats_cnt = (uint *) mycalloc (HLFMTS_CNT, sizeof (uint));
5114
5115 uint num_check = 0;
5116
5117 char *line_buf = (char *) mymalloc (HCBUFSIZ);
5118
5119 while (!feof (fp))
5120 {
5121 int line_len = fgetl (fp, line_buf);
5122
5123 if (line_len == 0) continue;
5124
5125 if (hlfmt_detect_pwdump (line_buf, line_len)) formats_cnt[HLFMT_PWDUMP]++;
5126 if (hlfmt_detect_passwd (line_buf, line_len)) formats_cnt[HLFMT_PASSWD]++;
5127 if (hlfmt_detect_shadow (line_buf, line_len)) formats_cnt[HLFMT_SHADOW]++;
5128
5129 if (num_check == max_check) break;
5130
5131 num_check++;
5132 }
5133
5134 myfree (line_buf);
5135
5136 uint hashlist_format = HLFMT_HASHCAT;
5137
5138 for (int i = 1; i < HLFMTS_CNT; i++)
5139 {
5140 if (formats_cnt[i - 1] >= formats_cnt[i]) continue;
5141
5142 hashlist_format = i;
5143 }
5144
5145 free (formats_cnt);
5146
5147 return hashlist_format;
5148 }
5149
5150 /**
5151 * some further helper function
5152 */
5153
5154 // wrapper around mymalloc for ADL
5155
5156 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
5157 void *__stdcall ADL_Main_Memory_Alloc (const int iSize)
5158 {
5159 return mymalloc (iSize);
5160 }
5161 #endif
5162
5163 static uint generate_bitmaps (const uint digests_cnt, const uint dgst_size, const uint dgst_shifts, char *digests_buf_ptr, const uint bitmap_mask, const uint bitmap_size, uint *bitmap_a, uint *bitmap_b, uint *bitmap_c, uint *bitmap_d, const u64 collisions_max)
5164 {
5165 u64 collisions = 0;
5166
5167 const uint dgst_pos0 = data.dgst_pos0;
5168 const uint dgst_pos1 = data.dgst_pos1;
5169 const uint dgst_pos2 = data.dgst_pos2;
5170 const uint dgst_pos3 = data.dgst_pos3;
5171
5172 memset (bitmap_a, 0, bitmap_size);
5173 memset (bitmap_b, 0, bitmap_size);
5174 memset (bitmap_c, 0, bitmap_size);
5175 memset (bitmap_d, 0, bitmap_size);
5176
5177 for (uint i = 0; i < digests_cnt; i++)
5178 {
5179 uint *digest_ptr = (uint *) digests_buf_ptr;
5180
5181 digests_buf_ptr += dgst_size;
5182
5183 const uint val0 = 1u << (digest_ptr[dgst_pos0] & 0x1f);
5184 const uint val1 = 1u << (digest_ptr[dgst_pos1] & 0x1f);
5185 const uint val2 = 1u << (digest_ptr[dgst_pos2] & 0x1f);
5186 const uint val3 = 1u << (digest_ptr[dgst_pos3] & 0x1f);
5187
5188 const uint idx0 = (digest_ptr[dgst_pos0] >> dgst_shifts) & bitmap_mask;
5189 const uint idx1 = (digest_ptr[dgst_pos1] >> dgst_shifts) & bitmap_mask;
5190 const uint idx2 = (digest_ptr[dgst_pos2] >> dgst_shifts) & bitmap_mask;
5191 const uint idx3 = (digest_ptr[dgst_pos3] >> dgst_shifts) & bitmap_mask;
5192
5193 if (bitmap_a[idx0] & val0) collisions++;
5194 if (bitmap_b[idx1] & val1) collisions++;
5195 if (bitmap_c[idx2] & val2) collisions++;
5196 if (bitmap_d[idx3] & val3) collisions++;
5197
5198 bitmap_a[idx0] |= val0;
5199 bitmap_b[idx1] |= val1;
5200 bitmap_c[idx2] |= val2;
5201 bitmap_d[idx3] |= val3;
5202
5203 if (collisions >= collisions_max) return 0x7fffffff;
5204 }
5205
5206 return collisions;
5207 }
5208
5209 /**
5210 * main
5211 */
5212
5213 int main (int argc, char **argv)
5214 {
5215 /**
5216 * To help users a bit
5217 */
5218
5219 char *compute = getenv ("COMPUTE");
5220
5221 if (compute)
5222 {
5223 static char display[100];
5224
5225 snprintf (display, sizeof (display) - 1, "DISPLAY=%s", compute);
5226
5227 putenv (display);
5228 }
5229 else
5230 {
5231 if (getenv ("DISPLAY") == NULL)
5232 putenv ((char *) "DISPLAY=:0");
5233 }
5234
5235 if (getenv ("GPU_MAX_ALLOC_PERCENT") == NULL)
5236 putenv ((char *) "GPU_MAX_ALLOC_PERCENT=100");
5237
5238 if (getenv ("CPU_MAX_ALLOC_PERCENT") == NULL)
5239 putenv ((char *) "CPU_MAX_ALLOC_PERCENT=100");
5240
5241 if (getenv ("GPU_USE_SYNC_OBJECTS") == NULL)
5242 putenv ((char *) "GPU_USE_SYNC_OBJECTS=1");
5243
5244 if (getenv ("CUDA_CACHE_DISABLE") == NULL)
5245 putenv ((char *) "CUDA_CACHE_DISABLE=1");
5246
5247 if (getenv ("POCL_KERNEL_CACHE") == NULL)
5248 putenv ((char *) "POCL_KERNEL_CACHE=0");
5249
5250 /**
5251 * Real init
5252 */
5253
5254 memset (&data, 0, sizeof (hc_global_data_t));
5255
5256 time_t proc_start;
5257
5258 time (&proc_start);
5259
5260 data.proc_start = proc_start;
5261
5262 int myargc = argc;
5263 char **myargv = argv;
5264
5265 hc_thread_mutex_init (mux_dispatcher);
5266 hc_thread_mutex_init (mux_counter);
5267 hc_thread_mutex_init (mux_display);
5268 hc_thread_mutex_init (mux_adl);
5269
5270 /**
5271 * commandline parameters
5272 */
5273
5274 uint usage = USAGE;
5275 uint version = VERSION;
5276 uint quiet = QUIET;
5277 uint benchmark = BENCHMARK;
5278 uint show = SHOW;
5279 uint left = LEFT;
5280 uint username = USERNAME;
5281 uint remove = REMOVE;
5282 uint remove_timer = REMOVE_TIMER;
5283 u64 skip = SKIP;
5284 u64 limit = LIMIT;
5285 uint keyspace = KEYSPACE;
5286 uint potfile_disable = POTFILE_DISABLE;
5287 char *potfile_path = NULL;
5288 uint debug_mode = DEBUG_MODE;
5289 char *debug_file = NULL;
5290 char *induction_dir = NULL;
5291 char *outfile_check_dir = NULL;
5292 uint force = FORCE;
5293 uint runtime = RUNTIME;
5294 uint hash_mode = HASH_MODE;
5295 uint attack_mode = ATTACK_MODE;
5296 uint markov_disable = MARKOV_DISABLE;
5297 uint markov_classic = MARKOV_CLASSIC;
5298 uint markov_threshold = MARKOV_THRESHOLD;
5299 char *markov_hcstat = NULL;
5300 char *outfile = NULL;
5301 uint outfile_format = OUTFILE_FORMAT;
5302 uint outfile_autohex = OUTFILE_AUTOHEX;
5303 uint outfile_check_timer = OUTFILE_CHECK_TIMER;
5304 uint restore = RESTORE;
5305 uint restore_timer = RESTORE_TIMER;
5306 uint restore_disable = RESTORE_DISABLE;
5307 uint status = STATUS;
5308 uint status_timer = STATUS_TIMER;
5309 uint status_automat = STATUS_AUTOMAT;
5310 uint loopback = LOOPBACK;
5311 uint weak_hash_threshold = WEAK_HASH_THRESHOLD;
5312 char *session = NULL;
5313 uint hex_charset = HEX_CHARSET;
5314 uint hex_salt = HEX_SALT;
5315 uint hex_wordlist = HEX_WORDLIST;
5316 uint rp_gen = RP_GEN;
5317 uint rp_gen_func_min = RP_GEN_FUNC_MIN;
5318 uint rp_gen_func_max = RP_GEN_FUNC_MAX;
5319 uint rp_gen_seed = RP_GEN_SEED;
5320 char *rule_buf_l = (char *) RULE_BUF_L;
5321 char *rule_buf_r = (char *) RULE_BUF_R;
5322 uint increment = INCREMENT;
5323 uint increment_min = INCREMENT_MIN;
5324 uint increment_max = INCREMENT_MAX;
5325 char *cpu_affinity = NULL;
5326 OCL_PTR *ocl = NULL;
5327 char *opencl_devices = NULL;
5328 char *opencl_platforms = NULL;
5329 char *opencl_device_types = NULL;
5330 uint opencl_vector_width = OPENCL_VECTOR_WIDTH;
5331 char *truecrypt_keyfiles = NULL;
5332 uint workload_profile = WORKLOAD_PROFILE;
5333 uint kernel_accel = KERNEL_ACCEL;
5334 uint kernel_loops = KERNEL_LOOPS;
5335 uint gpu_temp_disable = GPU_TEMP_DISABLE;
5336 #ifdef HAVE_HWMON
5337 uint gpu_temp_abort = GPU_TEMP_ABORT;
5338 uint gpu_temp_retain = GPU_TEMP_RETAIN;
5339 #ifdef HAVE_ADL
5340 uint powertune_enable = POWERTUNE_ENABLE;
5341 #endif
5342 #endif
5343 uint logfile_disable = LOGFILE_DISABLE;
5344 uint segment_size = SEGMENT_SIZE;
5345 uint scrypt_tmto = SCRYPT_TMTO;
5346 char separator = SEPARATOR;
5347 uint bitmap_min = BITMAP_MIN;
5348 uint bitmap_max = BITMAP_MAX;
5349 char *custom_charset_1 = NULL;
5350 char *custom_charset_2 = NULL;
5351 char *custom_charset_3 = NULL;
5352 char *custom_charset_4 = NULL;
5353
5354 #define IDX_HELP 'h'
5355 #define IDX_VERSION 'V'
5356 #define IDX_VERSION_LOWER 'v'
5357 #define IDX_QUIET 0xff02
5358 #define IDX_SHOW 0xff03
5359 #define IDX_LEFT 0xff04
5360 #define IDX_REMOVE 0xff05
5361 #define IDX_REMOVE_TIMER 0xff37
5362 #define IDX_SKIP 's'
5363 #define IDX_LIMIT 'l'
5364 #define IDX_KEYSPACE 0xff35
5365 #define IDX_POTFILE_DISABLE 0xff06
5366 #define IDX_POTFILE_PATH 0xffe0
5367 #define IDX_DEBUG_MODE 0xff43
5368 #define IDX_DEBUG_FILE 0xff44
5369 #define IDX_INDUCTION_DIR 0xff46
5370 #define IDX_OUTFILE_CHECK_DIR 0xff47
5371 #define IDX_USERNAME 0xff07
5372 #define IDX_FORCE 0xff08
5373 #define IDX_RUNTIME 0xff09
5374 #define IDX_BENCHMARK 'b'
5375 #define IDX_HASH_MODE 'm'
5376 #define IDX_ATTACK_MODE 'a'
5377 #define IDX_RP_FILE 'r'
5378 #define IDX_RP_GEN 'g'
5379 #define IDX_RP_GEN_FUNC_MIN 0xff10
5380 #define IDX_RP_GEN_FUNC_MAX 0xff11
5381 #define IDX_RP_GEN_SEED 0xff34
5382 #define IDX_RULE_BUF_L 'j'
5383 #define IDX_RULE_BUF_R 'k'
5384 #define IDX_INCREMENT 'i'
5385 #define IDX_INCREMENT_MIN 0xff12
5386 #define IDX_INCREMENT_MAX 0xff13
5387 #define IDX_OUTFILE 'o'
5388 #define IDX_OUTFILE_FORMAT 0xff14
5389 #define IDX_OUTFILE_AUTOHEX_DISABLE 0xff39
5390 #define IDX_OUTFILE_CHECK_TIMER 0xff45
5391 #define IDX_RESTORE 0xff15
5392 #define IDX_RESTORE_DISABLE 0xff27
5393 #define IDX_STATUS 0xff17
5394 #define IDX_STATUS_TIMER 0xff18
5395 #define IDX_STATUS_AUTOMAT 0xff50
5396 #define IDX_LOOPBACK 0xff38
5397 #define IDX_WEAK_HASH_THRESHOLD 0xff42
5398 #define IDX_SESSION 0xff19
5399 #define IDX_HEX_CHARSET 0xff20
5400 #define IDX_HEX_SALT 0xff21
5401 #define IDX_HEX_WORDLIST 0xff40
5402 #define IDX_MARKOV_DISABLE 0xff22
5403 #define IDX_MARKOV_CLASSIC 0xff23
5404 #define IDX_MARKOV_THRESHOLD 't'
5405 #define IDX_MARKOV_HCSTAT 0xff24
5406 #define IDX_CPU_AFFINITY 0xff25
5407 #define IDX_OPENCL_DEVICES 'd'
5408 #define IDX_OPENCL_PLATFORMS 0xff72
5409 #define IDX_OPENCL_DEVICE_TYPES 0xff73
5410 #define IDX_OPENCL_VECTOR_WIDTH 0xff74
5411 #define IDX_WORKLOAD_PROFILE 'w'
5412 #define IDX_KERNEL_ACCEL 'n'
5413 #define IDX_KERNEL_LOOPS 'u'
5414 #define IDX_GPU_TEMP_DISABLE 0xff29
5415 #define IDX_GPU_TEMP_ABORT 0xff30
5416 #define IDX_GPU_TEMP_RETAIN 0xff31
5417 #define IDX_POWERTUNE_ENABLE 0xff41
5418 #define IDX_LOGFILE_DISABLE 0xff51
5419 #define IDX_TRUECRYPT_KEYFILES 0xff52
5420 #define IDX_SCRYPT_TMTO 0xff61
5421 #define IDX_SEGMENT_SIZE 'c'
5422 #define IDX_SEPARATOR 'p'
5423 #define IDX_BITMAP_MIN 0xff70
5424 #define IDX_BITMAP_MAX 0xff71
5425 #define IDX_CUSTOM_CHARSET_1 '1'
5426 #define IDX_CUSTOM_CHARSET_2 '2'
5427 #define IDX_CUSTOM_CHARSET_3 '3'
5428 #define IDX_CUSTOM_CHARSET_4 '4'
5429
5430 char short_options[] = "hVvm:a:r:j:k:g:o:t:d:n:u:c:p:s:l:1:2:3:4:ibw:";
5431
5432 struct option long_options[] =
5433 {
5434 {"help", no_argument, 0, IDX_HELP},
5435 {"version", no_argument, 0, IDX_VERSION},
5436 {"quiet", no_argument, 0, IDX_QUIET},
5437 {"show", no_argument, 0, IDX_SHOW},
5438 {"left", no_argument, 0, IDX_LEFT},
5439 {"username", no_argument, 0, IDX_USERNAME},
5440 {"remove", no_argument, 0, IDX_REMOVE},
5441 {"remove-timer", required_argument, 0, IDX_REMOVE_TIMER},
5442 {"skip", required_argument, 0, IDX_SKIP},
5443 {"limit", required_argument, 0, IDX_LIMIT},
5444 {"keyspace", no_argument, 0, IDX_KEYSPACE},
5445 {"potfile-disable", no_argument, 0, IDX_POTFILE_DISABLE},
5446 {"potfile-path", required_argument, 0, IDX_POTFILE_PATH},
5447 {"debug-mode", required_argument, 0, IDX_DEBUG_MODE},
5448 {"debug-file", required_argument, 0, IDX_DEBUG_FILE},
5449 {"induction-dir", required_argument, 0, IDX_INDUCTION_DIR},
5450 {"outfile-check-dir", required_argument, 0, IDX_OUTFILE_CHECK_DIR},
5451 {"force", no_argument, 0, IDX_FORCE},
5452 {"benchmark", no_argument, 0, IDX_BENCHMARK},
5453 {"restore", no_argument, 0, IDX_RESTORE},
5454 {"restore-disable", no_argument, 0, IDX_RESTORE_DISABLE},
5455 {"status", no_argument, 0, IDX_STATUS},
5456 {"status-timer", required_argument, 0, IDX_STATUS_TIMER},
5457 {"status-automat", no_argument, 0, IDX_STATUS_AUTOMAT},
5458 {"loopback", no_argument, 0, IDX_LOOPBACK},
5459 {"weak-hash-threshold",
5460 required_argument, 0, IDX_WEAK_HASH_THRESHOLD},
5461 {"session", required_argument, 0, IDX_SESSION},
5462 {"runtime", required_argument, 0, IDX_RUNTIME},
5463 {"generate-rules", required_argument, 0, IDX_RP_GEN},
5464 {"generate-rules-func-min",
5465 required_argument, 0, IDX_RP_GEN_FUNC_MIN},
5466 {"generate-rules-func-max",
5467 required_argument, 0, IDX_RP_GEN_FUNC_MAX},
5468 {"generate-rules-seed",
5469 required_argument, 0, IDX_RP_GEN_SEED},
5470 {"rule-left", required_argument, 0, IDX_RULE_BUF_L},
5471 {"rule-right", required_argument, 0, IDX_RULE_BUF_R},
5472 {"hash-type", required_argument, 0, IDX_HASH_MODE},
5473 {"attack-mode", required_argument, 0, IDX_ATTACK_MODE},
5474 {"rules-file", required_argument, 0, IDX_RP_FILE},
5475 {"outfile", required_argument, 0, IDX_OUTFILE},
5476 {"outfile-format", required_argument, 0, IDX_OUTFILE_FORMAT},
5477 {"outfile-autohex-disable",
5478 no_argument, 0, IDX_OUTFILE_AUTOHEX_DISABLE},
5479 {"outfile-check-timer",
5480 required_argument, 0, IDX_OUTFILE_CHECK_TIMER},
5481 {"hex-charset", no_argument, 0, IDX_HEX_CHARSET},
5482 {"hex-salt", no_argument, 0, IDX_HEX_SALT},
5483 {"hex-wordlist", no_argument, 0, IDX_HEX_WORDLIST},
5484 {"markov-disable", no_argument, 0, IDX_MARKOV_DISABLE},
5485 {"markov-classic", no_argument, 0, IDX_MARKOV_CLASSIC},
5486 {"markov-threshold", required_argument, 0, IDX_MARKOV_THRESHOLD},
5487 {"markov-hcstat", required_argument, 0, IDX_MARKOV_HCSTAT},
5488 {"cpu-affinity", required_argument, 0, IDX_CPU_AFFINITY},
5489 {"opencl-devices", required_argument, 0, IDX_OPENCL_DEVICES},
5490 {"opencl-platforms", required_argument, 0, IDX_OPENCL_PLATFORMS},
5491 {"opencl-device-types", required_argument, 0, IDX_OPENCL_DEVICE_TYPES},
5492 {"opencl-vector-width", required_argument, 0, IDX_OPENCL_VECTOR_WIDTH},
5493 {"workload-profile", required_argument, 0, IDX_WORKLOAD_PROFILE},
5494 {"kernel-accel", required_argument, 0, IDX_KERNEL_ACCEL},
5495 {"kernel-loops", required_argument, 0, IDX_KERNEL_LOOPS},
5496 {"gpu-temp-disable", no_argument, 0, IDX_GPU_TEMP_DISABLE},
5497 #ifdef HAVE_HWMON
5498 {"gpu-temp-abort", required_argument, 0, IDX_GPU_TEMP_ABORT},
5499 {"gpu-temp-retain", required_argument, 0, IDX_GPU_TEMP_RETAIN},
5500 #ifdef HAVE_ADL
5501 {"powertune-enable", no_argument, 0, IDX_POWERTUNE_ENABLE},
5502 #endif
5503 #endif // HAVE_HWMON
5504 {"logfile-disable", no_argument, 0, IDX_LOGFILE_DISABLE},
5505 {"truecrypt-keyfiles", required_argument, 0, IDX_TRUECRYPT_KEYFILES},
5506 {"segment-size", required_argument, 0, IDX_SEGMENT_SIZE},
5507 {"scrypt-tmto", required_argument, 0, IDX_SCRYPT_TMTO},
5508 // deprecated
5509 {"seperator", required_argument, 0, IDX_SEPARATOR},
5510 {"separator", required_argument, 0, IDX_SEPARATOR},
5511 {"bitmap-min", required_argument, 0, IDX_BITMAP_MIN},
5512 {"bitmap-max", required_argument, 0, IDX_BITMAP_MAX},
5513 {"increment", no_argument, 0, IDX_INCREMENT},
5514 {"increment-min", required_argument, 0, IDX_INCREMENT_MIN},
5515 {"increment-max", required_argument, 0, IDX_INCREMENT_MAX},
5516 {"custom-charset1", required_argument, 0, IDX_CUSTOM_CHARSET_1},
5517 {"custom-charset2", required_argument, 0, IDX_CUSTOM_CHARSET_2},
5518 {"custom-charset3", required_argument, 0, IDX_CUSTOM_CHARSET_3},
5519 {"custom-charset4", required_argument, 0, IDX_CUSTOM_CHARSET_4},
5520
5521 {0, 0, 0, 0}
5522 };
5523
5524 uint rp_files_cnt = 0;
5525
5526 char **rp_files = (char **) mycalloc (argc, sizeof (char *));
5527
5528 int option_index = 0;
5529 int c = -1;
5530
5531 optind = 1;
5532 optopt = 0;
5533
5534 while (((c = getopt_long (argc, argv, short_options, long_options, &option_index)) != -1) && optopt == 0)
5535 {
5536 switch (c)
5537 {
5538 case IDX_HELP: usage = 1; break;
5539 case IDX_VERSION:
5540 case IDX_VERSION_LOWER: version = 1; break;
5541 case IDX_RESTORE: restore = 1; break;
5542 case IDX_SESSION: session = optarg; break;
5543 case IDX_SHOW: show = 1; break;
5544 case IDX_LEFT: left = 1; break;
5545 case '?': return (-1);
5546 }
5547 }
5548
5549 if (optopt != 0)
5550 {
5551 log_error ("ERROR: Invalid argument specified");
5552
5553 return (-1);
5554 }
5555
5556 /**
5557 * exit functions
5558 */
5559
5560 if (version)
5561 {
5562 log_info ("%s (%s)", VERSION_TAG, VERSION_SUM);
5563
5564 return (0);
5565 }
5566
5567 if (usage)
5568 {
5569 usage_big_print (PROGNAME);
5570
5571 return (0);
5572 }
5573
5574 /**
5575 * session needs to be set, always!
5576 */
5577
5578 if (session == NULL) session = (char *) PROGNAME;
5579
5580 /**
5581 * folders, as discussed on https://github.com/hashcat/oclHashcat/issues/20
5582 */
5583
5584 char *exec_path = get_exec_path ();
5585
5586 #ifdef LINUX
5587
5588 char *resolved_install_folder = realpath (INSTALL_FOLDER, NULL);
5589 char *resolved_exec_path = realpath (exec_path, NULL);
5590
5591 char *install_dir = get_install_dir (resolved_exec_path);
5592 char *profile_dir = NULL;
5593 char *session_dir = NULL;
5594 char *shared_dir = NULL;
5595
5596 if (strcmp (install_dir, resolved_install_folder) == 0)
5597 {
5598 struct passwd *pw = getpwuid (getuid ());
5599
5600 const char *homedir = pw->pw_dir;
5601
5602 profile_dir = get_profile_dir (homedir);
5603 session_dir = get_session_dir (profile_dir);
5604 shared_dir = strdup (SHARED_FOLDER);
5605
5606 mkdir (profile_dir, 0700);
5607 mkdir (session_dir, 0700);
5608 }
5609 else
5610 {
5611 profile_dir = install_dir;
5612 session_dir = install_dir;
5613 shared_dir = install_dir;
5614 }
5615
5616 myfree (resolved_install_folder);
5617 myfree (resolved_exec_path);
5618
5619 #else
5620
5621 char *install_dir = get_install_dir (exec_path);
5622 char *profile_dir = install_dir;
5623 char *session_dir = install_dir;
5624 char *shared_dir = install_dir;
5625
5626 #endif
5627
5628 data.install_dir = install_dir;
5629 data.profile_dir = profile_dir;
5630 data.session_dir = session_dir;
5631 data.shared_dir = shared_dir;
5632
5633 myfree (exec_path);
5634
5635 /**
5636 * kernel cache, we need to make sure folder exist
5637 */
5638
5639 int kernels_folder_size = strlen (profile_dir) + 1 + 7 + 1 + 1;
5640
5641 char *kernels_folder = (char *) mymalloc (kernels_folder_size);
5642
5643 snprintf (kernels_folder, kernels_folder_size - 1, "%s/kernels", profile_dir);
5644
5645 mkdir (kernels_folder, 0700);
5646
5647 myfree (kernels_folder);
5648
5649 /**
5650 * session
5651 */
5652
5653 size_t session_size = strlen (session_dir) + 1 + strlen (session) + 32;
5654
5655 data.session = session;
5656
5657 char *eff_restore_file = (char *) mymalloc (session_size);
5658 char *new_restore_file = (char *) mymalloc (session_size);
5659
5660 snprintf (eff_restore_file, session_size - 1, "%s/%s.restore", data.session_dir, session);
5661 snprintf (new_restore_file, session_size - 1, "%s/%s.restore.new", data.session_dir, session);
5662
5663 data.eff_restore_file = eff_restore_file;
5664 data.new_restore_file = new_restore_file;
5665
5666 if (((show == 1) || (left == 1)) && (restore == 1))
5667 {
5668 if (show == 1) log_error ("ERROR: Mixing --restore parameter and --show is not supported");
5669 else log_error ("ERROR: Mixing --restore parameter and --left is not supported");
5670
5671 return (-1);
5672 }
5673
5674 // this allows the user to use --show and --left while cracking (i.e. while another instance of oclHashcat is running)
5675 if ((show == 1) || (left == 1))
5676 {
5677 restore_disable = 1;
5678
5679 restore = 0;
5680 }
5681
5682 data.restore_disable = restore_disable;
5683
5684 restore_data_t *rd = init_restore (argc, argv);
5685
5686 data.rd = rd;
5687
5688 /**
5689 * restore file
5690 */
5691
5692 if (restore == 1)
5693 {
5694 read_restore (eff_restore_file, rd);
5695
5696 if (rd->version_bin < RESTORE_MIN)
5697 {
5698 log_error ("ERROR: Incompatible restore-file version");
5699
5700 return (-1);
5701 }
5702
5703 myargc = rd->argc;
5704 myargv = rd->argv;
5705
5706 #ifdef _POSIX
5707 rd->pid = getpid ();
5708 #elif _WIN
5709 rd->pid = GetCurrentProcessId ();
5710 #endif
5711 }
5712
5713 uint hash_mode_chgd = 0;
5714 uint runtime_chgd = 0;
5715 uint kernel_loops_chgd = 0;
5716 uint kernel_accel_chgd = 0;
5717 uint attack_mode_chgd = 0;
5718 uint outfile_format_chgd = 0;
5719 uint rp_gen_seed_chgd = 0;
5720 uint remove_timer_chgd = 0;
5721 uint increment_min_chgd = 0;
5722 uint increment_max_chgd = 0;
5723 uint workload_profile_chgd = 0;
5724 uint opencl_vector_width_chgd = 0;
5725
5726 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
5727 uint gpu_temp_retain_chgd = 0;
5728 uint gpu_temp_abort_chgd = 0;
5729 #endif
5730
5731 optind = 1;
5732 optopt = 0;
5733 option_index = 0;
5734
5735 while (((c = getopt_long (myargc, myargv, short_options, long_options, &option_index)) != -1) && optopt == 0)
5736 {
5737 switch (c)
5738 {
5739 //case IDX_HELP: usage = 1; break;
5740 //case IDX_VERSION: version = 1; break;
5741 //case IDX_RESTORE: restore = 1; break;
5742 case IDX_QUIET: quiet = 1; break;
5743 //case IDX_SHOW: show = 1; break;
5744 case IDX_SHOW: break;
5745 //case IDX_LEFT: left = 1; break;
5746 case IDX_LEFT: break;
5747 case IDX_USERNAME: username = 1; break;
5748 case IDX_REMOVE: remove = 1; break;
5749 case IDX_REMOVE_TIMER: remove_timer = atoi (optarg);
5750 remove_timer_chgd = 1; break;
5751 case IDX_POTFILE_DISABLE: potfile_disable = 1; break;
5752 case IDX_POTFILE_PATH: potfile_path = optarg; break;
5753 case IDX_DEBUG_MODE: debug_mode = atoi (optarg); break;
5754 case IDX_DEBUG_FILE: debug_file = optarg; break;
5755 case IDX_INDUCTION_DIR: induction_dir = optarg; break;
5756 case IDX_OUTFILE_CHECK_DIR: outfile_check_dir = optarg; break;
5757 case IDX_FORCE: force = 1; break;
5758 case IDX_SKIP: skip = atoll (optarg); break;
5759 case IDX_LIMIT: limit = atoll (optarg); break;
5760 case IDX_KEYSPACE: keyspace = 1; break;
5761 case IDX_BENCHMARK: benchmark = 1; break;
5762 case IDX_RESTORE: break;
5763 case IDX_RESTORE_DISABLE: restore_disable = 1; break;
5764 case IDX_STATUS: status = 1; break;
5765 case IDX_STATUS_TIMER: status_timer = atoi (optarg); break;
5766 case IDX_STATUS_AUTOMAT: status_automat = 1; break;
5767 case IDX_LOOPBACK: loopback = 1; break;
5768 case IDX_WEAK_HASH_THRESHOLD:
5769 weak_hash_threshold = atoi (optarg); break;
5770 //case IDX_SESSION: session = optarg; break;
5771 case IDX_SESSION: break;
5772 case IDX_HASH_MODE: hash_mode = atoi (optarg);
5773 hash_mode_chgd = 1; break;
5774 case IDX_RUNTIME: runtime = atoi (optarg);
5775 runtime_chgd = 1; break;
5776 case IDX_ATTACK_MODE: attack_mode = atoi (optarg);
5777 attack_mode_chgd = 1; break;
5778 case IDX_RP_FILE: rp_files[rp_files_cnt++] = optarg; break;
5779 case IDX_RP_GEN: rp_gen = atoi (optarg); break;
5780 case IDX_RP_GEN_FUNC_MIN: rp_gen_func_min = atoi (optarg); break;
5781 case IDX_RP_GEN_FUNC_MAX: rp_gen_func_max = atoi (optarg); break;
5782 case IDX_RP_GEN_SEED: rp_gen_seed = atoi (optarg);
5783 rp_gen_seed_chgd = 1; break;
5784 case IDX_RULE_BUF_L: rule_buf_l = optarg; break;
5785 case IDX_RULE_BUF_R: rule_buf_r = optarg; break;
5786 case IDX_MARKOV_DISABLE: markov_disable = 1; break;
5787 case IDX_MARKOV_CLASSIC: markov_classic = 1; break;
5788 case IDX_MARKOV_THRESHOLD: markov_threshold = atoi (optarg); break;
5789 case IDX_MARKOV_HCSTAT: markov_hcstat = optarg; break;
5790 case IDX_OUTFILE: outfile = optarg; break;
5791 case IDX_OUTFILE_FORMAT: outfile_format = atoi (optarg);
5792 outfile_format_chgd = 1; break;
5793 case IDX_OUTFILE_AUTOHEX_DISABLE:
5794 outfile_autohex = 0; break;
5795 case IDX_OUTFILE_CHECK_TIMER:
5796 outfile_check_timer = atoi (optarg); break;
5797 case IDX_HEX_CHARSET: hex_charset = 1; break;
5798 case IDX_HEX_SALT: hex_salt = 1; break;
5799 case IDX_HEX_WORDLIST: hex_wordlist = 1; break;
5800 case IDX_CPU_AFFINITY: cpu_affinity = optarg; break;
5801 case IDX_OPENCL_DEVICES: opencl_devices = optarg; break;
5802 case IDX_OPENCL_PLATFORMS: opencl_platforms = optarg; break;
5803 case IDX_OPENCL_DEVICE_TYPES:
5804 opencl_device_types = optarg; break;
5805 case IDX_OPENCL_VECTOR_WIDTH:
5806 opencl_vector_width = atoi (optarg);
5807 opencl_vector_width_chgd = 1; break;
5808 case IDX_WORKLOAD_PROFILE: workload_profile = atoi (optarg);
5809 workload_profile_chgd = 1; break;
5810 case IDX_KERNEL_ACCEL: kernel_accel = atoi (optarg);
5811 kernel_accel_chgd = 1; break;
5812 case IDX_KERNEL_LOOPS: kernel_loops = atoi (optarg);
5813 kernel_loops_chgd = 1; break;
5814 case IDX_GPU_TEMP_DISABLE: gpu_temp_disable = 1; break;
5815 #ifdef HAVE_HWMON
5816 case IDX_GPU_TEMP_ABORT: gpu_temp_abort = atoi (optarg);
5817 #ifdef HAVE_ADL
5818 gpu_temp_abort_chgd = 1;
5819 #endif
5820 break;
5821 case IDX_GPU_TEMP_RETAIN: gpu_temp_retain = atoi (optarg);
5822 #ifdef HAVE_ADL
5823 gpu_temp_retain_chgd = 1;
5824 #endif
5825 break;
5826 #ifdef HAVE_ADL
5827 case IDX_POWERTUNE_ENABLE: powertune_enable = 1; break;
5828 #endif
5829 #endif // HAVE_HWMON
5830 case IDX_LOGFILE_DISABLE: logfile_disable = 1; break;
5831 case IDX_TRUECRYPT_KEYFILES: truecrypt_keyfiles = optarg; break;
5832 case IDX_SEGMENT_SIZE: segment_size = atoi (optarg); break;
5833 case IDX_SCRYPT_TMTO: scrypt_tmto = atoi (optarg); break;
5834 case IDX_SEPARATOR: separator = optarg[0]; break;
5835 case IDX_BITMAP_MIN: bitmap_min = atoi (optarg); break;
5836 case IDX_BITMAP_MAX: bitmap_max = atoi (optarg); break;
5837 case IDX_INCREMENT: increment = 1; break;
5838 case IDX_INCREMENT_MIN: increment_min = atoi (optarg);
5839 increment_min_chgd = 1; break;
5840 case IDX_INCREMENT_MAX: increment_max = atoi (optarg);
5841 increment_max_chgd = 1; break;
5842 case IDX_CUSTOM_CHARSET_1: custom_charset_1 = optarg; break;
5843 case IDX_CUSTOM_CHARSET_2: custom_charset_2 = optarg; break;
5844 case IDX_CUSTOM_CHARSET_3: custom_charset_3 = optarg; break;
5845 case IDX_CUSTOM_CHARSET_4: custom_charset_4 = optarg; break;
5846
5847 default:
5848 log_error ("ERROR: Invalid argument specified");
5849 return (-1);
5850 }
5851 }
5852
5853 if (optopt != 0)
5854 {
5855 log_error ("ERROR: Invalid argument specified");
5856
5857 return (-1);
5858 }
5859
5860 /**
5861 * Inform user things getting started,
5862 * - this is giving us a visual header before preparations start, so we do not need to clear them afterwards
5863 * - we do not need to check algorithm_pos
5864 */
5865
5866 if (quiet == 0)
5867 {
5868 if (benchmark == 1)
5869 {
5870 log_info ("%s %s (%s) starting in benchmark-mode...", PROGNAME, VERSION_TAG, VERSION_SUM);
5871
5872 log_info ("");
5873 }
5874 else if (restore == 1)
5875 {
5876 log_info ("%s %s (%s) starting in restore-mode...", PROGNAME, VERSION_TAG, VERSION_SUM);
5877
5878 log_info ("");
5879 }
5880 else
5881 {
5882 log_info ("%s %s (%s) starting...", PROGNAME, VERSION_TAG, VERSION_SUM);
5883
5884 log_info ("");
5885 }
5886 }
5887
5888 /**
5889 * sanity check
5890 */
5891
5892 if (attack_mode > 7)
5893 {
5894 log_error ("ERROR: Invalid attack-mode specified");
5895
5896 return (-1);
5897 }
5898
5899 if (runtime_chgd && runtime == 0) // just added to remove compiler warnings for runtime_chgd
5900 {
5901 log_error ("ERROR: Invalid runtime specified");
5902
5903 return (-1);
5904 }
5905
5906 if (hash_mode_chgd && hash_mode > 13500) // just added to remove compiler warnings for hash_mode_chgd
5907 {
5908 log_error ("ERROR: Invalid hash-type specified");
5909
5910 return (-1);
5911 }
5912
5913 // renamed hash modes
5914
5915 if (hash_mode_chgd)
5916 {
5917 int n = -1;
5918
5919 switch (hash_mode)
5920 {
5921 case 123: n = 124;
5922 break;
5923 }
5924
5925 if (n >= 0)
5926 {
5927 log_error ("Old -m specified, use -m %d instead", n);
5928
5929 return (-1);
5930 }
5931 }
5932
5933 if (username == 1)
5934 {
5935 if ((hash_mode == 2500) || (hash_mode == 5200) || ((hash_mode >= 6200) && (hash_mode <= 6299)))
5936 {
5937 log_error ("ERROR: Mixing support for user names and hashes of type %s is not supported", strhashtype (hash_mode));
5938
5939 return (-1);
5940 }
5941 }
5942
5943 if (outfile_format > 16)
5944 {
5945 log_error ("ERROR: Invalid outfile-format specified");
5946
5947 return (-1);
5948 }
5949
5950 if (left == 1)
5951 {
5952 if (outfile_format_chgd == 1)
5953 {
5954 if (outfile_format > 1)
5955 {
5956 log_error ("ERROR: Mixing outfile-format > 1 is not allowed together with left parameter");
5957
5958 return (-1);
5959 }
5960 }
5961 else
5962 {
5963 outfile_format = OUTFILE_FMT_HASH;
5964 }
5965 }
5966
5967 if (show == 1)
5968 {
5969 if (outfile_format_chgd == 1)
5970 {
5971 if ((outfile_format > 7) && (outfile_format < 16))
5972 {
5973 log_error ("ERROR: Mixing outfile-format > 7 is not allowed together with show parameter");
5974
5975 return (-1);
5976 }
5977 }
5978 }
5979
5980 if (increment_min < INCREMENT_MIN)
5981 {
5982 log_error ("ERROR: Invalid increment-min specified");
5983
5984 return (-1);
5985 }
5986
5987 if (increment_max > INCREMENT_MAX)
5988 {
5989 log_error ("ERROR: Invalid increment-max specified");
5990
5991 return (-1);
5992 }
5993
5994 if (increment_min > increment_max)
5995 {
5996 log_error ("ERROR: Invalid increment-min specified");
5997
5998 return (-1);
5999 }
6000
6001 if ((increment == 1) && (attack_mode == ATTACK_MODE_STRAIGHT))
6002 {
6003 log_error ("ERROR: increment is not allowed in attack-mode 0");
6004
6005 return (-1);
6006 }
6007
6008 if ((increment == 0) && (increment_min_chgd == 1))
6009 {
6010 log_error ("ERROR: increment-min is only supported together with increment switch");
6011
6012 return (-1);
6013 }
6014
6015 if ((increment == 0) && (increment_max_chgd == 1))
6016 {
6017 log_error ("ERROR: increment-max is only supported together with increment switch");
6018
6019 return (-1);
6020 }
6021
6022 if (rp_files_cnt && rp_gen)
6023 {
6024 log_error ("ERROR: Use of both rules-file and rules-generate is not supported");
6025
6026 return (-1);
6027 }
6028
6029 if (rp_files_cnt || rp_gen)
6030 {
6031 if (attack_mode != ATTACK_MODE_STRAIGHT)
6032 {
6033 log_error ("ERROR: Use of rules-file or rules-generate only allowed in attack-mode 0");
6034
6035 return (-1);
6036 }
6037 }
6038
6039 if (rp_gen_func_min > rp_gen_func_max)
6040 {
6041 log_error ("ERROR: Invalid rp-gen-func-min specified");
6042
6043 return (-1);
6044 }
6045
6046 if (kernel_accel_chgd == 1)
6047 {
6048 if (kernel_accel < 1)
6049 {
6050 log_error ("ERROR: Invalid kernel-accel specified");
6051
6052 return (-1);
6053 }
6054
6055 if (kernel_accel > 1024)
6056 {
6057 log_error ("ERROR: Invalid kernel-accel specified");
6058
6059 return (-1);
6060 }
6061 }
6062
6063 if (kernel_loops_chgd == 1)
6064 {
6065 if (kernel_loops < 1)
6066 {
6067 log_error ("ERROR: Invalid kernel-loops specified");
6068
6069 return (-1);
6070 }
6071
6072 if (kernel_loops > 1024)
6073 {
6074 log_error ("ERROR: Invalid kernel-loops specified");
6075
6076 return (-1);
6077 }
6078 }
6079
6080 if ((workload_profile < 1) || (workload_profile > 3))
6081 {
6082 log_error ("ERROR: workload-profile %i not available", workload_profile);
6083
6084 return (-1);
6085 }
6086
6087 if (opencl_vector_width_chgd && (!is_power_of_2(opencl_vector_width) || opencl_vector_width > 16))
6088 {
6089 log_error ("ERROR: opencl-vector-width %i not allowed", opencl_vector_width);
6090
6091 return (-1);
6092 }
6093
6094 if (show == 1 || left == 1)
6095 {
6096 attack_mode = ATTACK_MODE_NONE;
6097
6098 if (remove == 1)
6099 {
6100 log_error ("ERROR: Mixing remove parameter not allowed with show parameter or left parameter");
6101
6102 return (-1);
6103 }
6104
6105 if (potfile_disable == 1)
6106 {
6107 log_error ("ERROR: Mixing potfile-disable parameter not allowed with show parameter or left parameter");
6108
6109 return (-1);
6110 }
6111 }
6112
6113 uint attack_kern = ATTACK_KERN_NONE;
6114
6115 switch (attack_mode)
6116 {
6117 case ATTACK_MODE_STRAIGHT: attack_kern = ATTACK_KERN_STRAIGHT; break;
6118 case ATTACK_MODE_COMBI: attack_kern = ATTACK_KERN_COMBI; break;
6119 case ATTACK_MODE_BF: attack_kern = ATTACK_KERN_BF; break;
6120 case ATTACK_MODE_HYBRID1: attack_kern = ATTACK_KERN_COMBI; break;
6121 case ATTACK_MODE_HYBRID2: attack_kern = ATTACK_KERN_COMBI; break;
6122 }
6123
6124 if (benchmark == 0)
6125 {
6126 if (keyspace == 1)
6127 {
6128 int num_additional_params = 1;
6129
6130 if (attack_kern == ATTACK_KERN_COMBI)
6131 {
6132 num_additional_params = 2;
6133 }
6134
6135 int keyspace_wordlist_specified = myargc - optind - num_additional_params;
6136
6137 if (keyspace_wordlist_specified == 0) optind--;
6138 }
6139
6140 if (attack_kern == ATTACK_KERN_NONE)
6141 {
6142 if ((optind + 1) != myargc)
6143 {
6144 usage_mini_print (myargv[0]);
6145
6146 return (-1);
6147 }
6148 }
6149 else if (attack_kern == ATTACK_KERN_STRAIGHT)
6150 {
6151 if ((optind + 1) > myargc)
6152 {
6153 usage_mini_print (myargv[0]);
6154
6155 return (-1);
6156 }
6157 }
6158 else if (attack_kern == ATTACK_KERN_COMBI)
6159 {
6160 if ((optind + 3) != myargc)
6161 {
6162 usage_mini_print (myargv[0]);
6163
6164 return (-1);
6165 }
6166 }
6167 else if (attack_kern == ATTACK_KERN_BF)
6168 {
6169 if ((optind + 1) > myargc)
6170 {
6171 usage_mini_print (myargv[0]);
6172
6173 return (-1);
6174 }
6175 }
6176 else
6177 {
6178 usage_mini_print (myargv[0]);
6179
6180 return (-1);
6181 }
6182 }
6183 else
6184 {
6185 if (myargv[optind] != 0)
6186 {
6187 log_error ("ERROR: Invalid argument for benchmark mode specified");
6188
6189 return (-1);
6190 }
6191
6192 if (attack_mode_chgd == 1)
6193 {
6194 if (attack_mode != ATTACK_MODE_BF)
6195 {
6196 log_error ("ERROR: Only attack-mode 3 allowed in benchmark mode");
6197
6198 return (-1);
6199 }
6200 }
6201 }
6202
6203 if (skip != 0 && limit != 0)
6204 {
6205 limit += skip;
6206 }
6207
6208 if (keyspace == 1)
6209 {
6210 if (show == 1)
6211 {
6212 log_error ("ERROR: Mixing show parameter not supported with keyspace parameter");
6213
6214 return (-1);
6215 }
6216 else if (left == 1)
6217 {
6218 log_error ("ERROR: Mixing left parameter not supported wiht keyspace parameter");
6219
6220 return (-1);
6221 }
6222
6223 potfile_disable = 1;
6224
6225 restore_disable = 1;
6226
6227 restore = 0;
6228
6229 weak_hash_threshold = 0;
6230
6231 quiet = 1;
6232 }
6233
6234 if (remove_timer_chgd == 1)
6235 {
6236 if (remove == 0)
6237 {
6238 log_error ("ERROR: Parameter remove-timer require parameter remove enabled");
6239
6240 return (-1);
6241 }
6242
6243 if (remove_timer < 1)
6244 {
6245 log_error ("ERROR: Parameter remove-timer must have a value greater than or equal to 1");
6246
6247 return (-1);
6248 }
6249 }
6250
6251 if (loopback == 1)
6252 {
6253 if (attack_mode == ATTACK_MODE_STRAIGHT)
6254 {
6255 if ((rp_files_cnt == 0) && (rp_gen == 0))
6256 {
6257 log_error ("ERROR: Parameter loopback not allowed without rules-file or rules-generate");
6258
6259 return (-1);
6260 }
6261 }
6262 else
6263 {
6264 log_error ("ERROR: Parameter loopback allowed in attack-mode 0 only");
6265
6266 return (-1);
6267 }
6268 }
6269
6270 if (debug_mode > 0)
6271 {
6272 if (attack_mode != ATTACK_MODE_STRAIGHT)
6273 {
6274 log_error ("ERROR: Parameter debug-mode option is only available with attack-mode 0");
6275
6276 return (-1);
6277 }
6278
6279 if ((rp_files_cnt == 0) && (rp_gen == 0))
6280 {
6281 log_error ("ERROR: Parameter debug-mode not allowed without rules-file or rules-generate");
6282
6283 return (-1);
6284 }
6285 }
6286
6287 if (debug_mode > 4)
6288 {
6289 log_error ("ERROR: Invalid debug-mode specified");
6290
6291 return (-1);
6292 }
6293
6294 if (debug_file != NULL)
6295 {
6296 if (debug_mode < 1)
6297 {
6298 log_error ("ERROR: Parameter debug-file requires parameter debug-mode to be set");
6299
6300 return (-1);
6301 }
6302 }
6303
6304 if (induction_dir != NULL)
6305 {
6306 if (attack_mode == ATTACK_MODE_BF)
6307 {
6308 log_error ("ERROR: Parameter induction-dir not allowed with brute-force attacks");
6309
6310 return (-1);
6311 }
6312 }
6313
6314 if (attack_mode != ATTACK_MODE_STRAIGHT)
6315 {
6316 if ((weak_hash_threshold != WEAK_HASH_THRESHOLD) && (weak_hash_threshold != 0))
6317 {
6318 log_error ("ERROR: setting --weak-hash-threshold allowed only in straight-attack mode");
6319
6320 return (-1);
6321 }
6322
6323 weak_hash_threshold = 0;
6324 }
6325
6326 /**
6327 * induction directory
6328 */
6329
6330 char *induction_directory = NULL;
6331
6332 if (attack_mode != ATTACK_MODE_BF)
6333 {
6334 if (induction_dir == NULL)
6335 {
6336 induction_directory = (char *) mymalloc (session_size);
6337
6338 snprintf (induction_directory, session_size - 1, "%s/%s.%s", session_dir, session, INDUCT_DIR);
6339
6340 // create induction folder if it does not already exist
6341
6342 if (keyspace == 0)
6343 {
6344 if (rmdir (induction_directory) == -1)
6345 {
6346 if (errno == ENOENT)
6347 {
6348 // good, we can ignore
6349 }
6350 else if (errno == ENOTEMPTY)
6351 {
6352 char *induction_directory_mv = (char *) mymalloc (session_size);
6353
6354 snprintf (induction_directory_mv, session_size - 1, "%s/%s.induct.%d", session_dir, session, (int) proc_start);
6355
6356 if (rename (induction_directory, induction_directory_mv) != 0)
6357 {
6358 log_error ("ERROR: Rename directory %s to %s: %s", induction_directory, induction_directory_mv, strerror (errno));
6359
6360 return (-1);
6361 }
6362 }
6363 else
6364 {
6365 log_error ("ERROR: %s: %s", induction_directory, strerror (errno));
6366
6367 return (-1);
6368 }
6369 }
6370
6371 if (mkdir (induction_directory, 0700) == -1)
6372 {
6373 log_error ("ERROR: %s: %s", induction_directory, strerror (errno));
6374
6375 return (-1);
6376 }
6377 }
6378 }
6379 else
6380 {
6381 induction_directory = induction_dir;
6382 }
6383 }
6384
6385 data.induction_directory = induction_directory;
6386
6387 /**
6388 * loopback
6389 */
6390
6391 size_t loopback_size = strlen (session_dir) + 1 + session_size + strlen (LOOPBACK_FILE) + 12;
6392
6393 char *loopback_file = (char *) mymalloc (loopback_size);
6394
6395 /**
6396 * tuning db
6397 */
6398
6399 char tuning_db_file[256] = { 0 };
6400
6401 snprintf (tuning_db_file, sizeof (tuning_db_file) - 1, "%s/%s", shared_dir, TUNING_DB_FILE);
6402
6403 tuning_db_t *tuning_db = tuning_db_init (tuning_db_file);
6404
6405 /**
6406 * outfile-check directory
6407 */
6408
6409 char *outfile_check_directory = NULL;
6410
6411 if (outfile_check_dir == NULL)
6412 {
6413 outfile_check_directory = (char *) mymalloc (session_size);
6414
6415 snprintf (outfile_check_directory, session_size - 1, "%s/%s.%s", session_dir, session, OUTFILES_DIR);
6416 }
6417 else
6418 {
6419 outfile_check_directory = outfile_check_dir;
6420 }
6421
6422 data.outfile_check_directory = outfile_check_directory;
6423
6424 if (keyspace == 0)
6425 {
6426 struct stat outfile_check_stat;
6427
6428 if (stat (outfile_check_directory, &outfile_check_stat) == 0)
6429 {
6430 uint is_dir = S_ISDIR (outfile_check_stat.st_mode);
6431
6432 if (is_dir == 0)
6433 {
6434 log_error ("ERROR: Directory specified in outfile-check '%s' is not a valid directory", outfile_check_directory);
6435
6436 return (-1);
6437 }
6438 }
6439 else if (outfile_check_dir == NULL)
6440 {
6441 if (mkdir (outfile_check_directory, 0700) == -1)
6442 {
6443 log_error ("ERROR: %s: %s", outfile_check_directory, strerror (errno));
6444
6445 return (-1);
6446 }
6447 }
6448 }
6449
6450 /**
6451 * special other stuff
6452 */
6453
6454 if (hash_mode == 9710)
6455 {
6456 outfile_format = 5;
6457 outfile_format_chgd = 1;
6458 }
6459
6460 if (hash_mode == 9810)
6461 {
6462 outfile_format = 5;
6463 outfile_format_chgd = 1;
6464 }
6465
6466 if (hash_mode == 10410)
6467 {
6468 outfile_format = 5;
6469 outfile_format_chgd = 1;
6470 }
6471
6472 /**
6473 * store stuff
6474 */
6475
6476 data.hash_mode = hash_mode;
6477 data.restore = restore;
6478 data.restore_timer = restore_timer;
6479 data.restore_disable = restore_disable;
6480 data.status = status;
6481 data.status_timer = status_timer;
6482 data.status_automat = status_automat;
6483 data.loopback = loopback;
6484 data.runtime = runtime;
6485 data.remove = remove;
6486 data.remove_timer = remove_timer;
6487 data.debug_mode = debug_mode;
6488 data.debug_file = debug_file;
6489 data.username = username;
6490 data.quiet = quiet;
6491 data.outfile = outfile;
6492 data.outfile_format = outfile_format;
6493 data.outfile_autohex = outfile_autohex;
6494 data.hex_charset = hex_charset;
6495 data.hex_salt = hex_salt;
6496 data.hex_wordlist = hex_wordlist;
6497 data.separator = separator;
6498 data.rp_files = rp_files;
6499 data.rp_files_cnt = rp_files_cnt;
6500 data.rp_gen = rp_gen;
6501 data.rp_gen_seed = rp_gen_seed;
6502 data.force = force;
6503 data.benchmark = benchmark;
6504 data.skip = skip;
6505 data.limit = limit;
6506 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
6507 data.powertune_enable = powertune_enable;
6508 #endif
6509 data.logfile_disable = logfile_disable;
6510 data.truecrypt_keyfiles = truecrypt_keyfiles;
6511 data.scrypt_tmto = scrypt_tmto;
6512 data.workload_profile = workload_profile;
6513
6514 /**
6515 * cpu affinity
6516 */
6517
6518 if (cpu_affinity)
6519 {
6520 set_cpu_affinity (cpu_affinity);
6521 }
6522
6523 if (rp_gen_seed_chgd == 0)
6524 {
6525 srand (proc_start);
6526 }
6527 else
6528 {
6529 srand (rp_gen_seed);
6530 }
6531
6532 /**
6533 * logfile init
6534 */
6535
6536 if (logfile_disable == 0)
6537 {
6538 size_t logfile_size = strlen (session_dir) + 1 + strlen (session) + 32;
6539
6540 char *logfile = (char *) mymalloc (logfile_size);
6541
6542 snprintf (logfile, logfile_size - 1, "%s/%s.log", session_dir, session);
6543
6544 data.logfile = logfile;
6545
6546 char *topid = logfile_generate_topid ();
6547
6548 data.topid = topid;
6549 }
6550
6551 // logfile_append() checks for logfile_disable internally to make it easier from here
6552
6553 #define logfile_top_msg(msg) logfile_append ("%s\t%s", data.topid, (msg));
6554 #define logfile_sub_msg(msg) logfile_append ("%s\t%s\t%s", data.topid, data.subid, (msg));
6555 #define logfile_top_var_uint64(var,val) logfile_append ("%s\t%s\t%llu", data.topid, (var), (val));
6556 #define logfile_sub_var_uint64(var,val) logfile_append ("%s\t%s\t%s\t%llu", data.topid, data.subid, (var), (val));
6557 #define logfile_top_var_uint(var,val) logfile_append ("%s\t%s\t%u", data.topid, (var), (val));
6558 #define logfile_sub_var_uint(var,val) logfile_append ("%s\t%s\t%s\t%u", data.topid, data.subid, (var), (val));
6559 #define logfile_top_var_char(var,val) logfile_append ("%s\t%s\t%c", data.topid, (var), (val));
6560 #define logfile_sub_var_char(var,val) logfile_append ("%s\t%s\t%s\t%c", data.topid, data.subid, (var), (val));
6561 #define logfile_top_var_string(var,val) if ((val) != NULL) logfile_append ("%s\t%s\t%s", data.topid, (var), (val));
6562 #define logfile_sub_var_string(var,val) if ((val) != NULL) logfile_append ("%s\t%s\t%s\t%s", data.topid, data.subid, (var), (val));
6563
6564 #define logfile_top_uint64(var) logfile_top_var_uint64 (#var, (var));
6565 #define logfile_sub_uint64(var) logfile_sub_var_uint64 (#var, (var));
6566 #define logfile_top_uint(var) logfile_top_var_uint (#var, (var));
6567 #define logfile_sub_uint(var) logfile_sub_var_uint (#var, (var));
6568 #define logfile_top_char(var) logfile_top_var_char (#var, (var));
6569 #define logfile_sub_char(var) logfile_sub_var_char (#var, (var));
6570 #define logfile_top_string(var) logfile_top_var_string (#var, (var));
6571 #define logfile_sub_string(var) logfile_sub_var_string (#var, (var));
6572
6573 logfile_top_msg ("START");
6574
6575 logfile_top_uint (attack_mode);
6576 logfile_top_uint (attack_kern);
6577 logfile_top_uint (benchmark);
6578 logfile_top_uint (bitmap_min);
6579 logfile_top_uint (bitmap_max);
6580 logfile_top_uint (debug_mode);
6581 logfile_top_uint (force);
6582 logfile_top_uint (kernel_accel);
6583 logfile_top_uint (kernel_loops);
6584 logfile_top_uint (gpu_temp_disable);
6585 #ifdef HAVE_HWMON
6586 logfile_top_uint (gpu_temp_abort);
6587 logfile_top_uint (gpu_temp_retain);
6588 #endif
6589 logfile_top_uint (hash_mode);
6590 logfile_top_uint (hex_charset);
6591 logfile_top_uint (hex_salt);
6592 logfile_top_uint (hex_wordlist);
6593 logfile_top_uint (increment);
6594 logfile_top_uint (increment_max);
6595 logfile_top_uint (increment_min);
6596 logfile_top_uint (keyspace);
6597 logfile_top_uint (left);
6598 logfile_top_uint (logfile_disable);
6599 logfile_top_uint (loopback);
6600 logfile_top_uint (markov_classic);
6601 logfile_top_uint (markov_disable);
6602 logfile_top_uint (markov_threshold);
6603 logfile_top_uint (outfile_autohex);
6604 logfile_top_uint (outfile_check_timer);
6605 logfile_top_uint (outfile_format);
6606 logfile_top_uint (potfile_disable);
6607 logfile_top_string (potfile_path);
6608 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
6609 logfile_top_uint (powertune_enable);
6610 #endif
6611 logfile_top_uint (scrypt_tmto);
6612 logfile_top_uint (quiet);
6613 logfile_top_uint (remove);
6614 logfile_top_uint (remove_timer);
6615 logfile_top_uint (restore);
6616 logfile_top_uint (restore_disable);
6617 logfile_top_uint (restore_timer);
6618 logfile_top_uint (rp_gen);
6619 logfile_top_uint (rp_gen_func_max);
6620 logfile_top_uint (rp_gen_func_min);
6621 logfile_top_uint (rp_gen_seed);
6622 logfile_top_uint (runtime);
6623 logfile_top_uint (segment_size);
6624 logfile_top_uint (show);
6625 logfile_top_uint (status);
6626 logfile_top_uint (status_automat);
6627 logfile_top_uint (status_timer);
6628 logfile_top_uint (usage);
6629 logfile_top_uint (username);
6630 logfile_top_uint (version);
6631 logfile_top_uint (weak_hash_threshold);
6632 logfile_top_uint (workload_profile);
6633 logfile_top_uint64 (limit);
6634 logfile_top_uint64 (skip);
6635 logfile_top_char (separator);
6636 logfile_top_string (cpu_affinity);
6637 logfile_top_string (custom_charset_1);
6638 logfile_top_string (custom_charset_2);
6639 logfile_top_string (custom_charset_3);
6640 logfile_top_string (custom_charset_4);
6641 logfile_top_string (debug_file);
6642 logfile_top_string (opencl_devices);
6643 logfile_top_string (opencl_platforms);
6644 logfile_top_string (opencl_device_types);
6645 logfile_top_uint (opencl_vector_width);
6646 logfile_top_string (induction_dir);
6647 logfile_top_string (markov_hcstat);
6648 logfile_top_string (outfile);
6649 logfile_top_string (outfile_check_dir);
6650 logfile_top_string (rule_buf_l);
6651 logfile_top_string (rule_buf_r);
6652 logfile_top_string (session);
6653 logfile_top_string (truecrypt_keyfiles);
6654
6655 /**
6656 * Init OpenCL library loader
6657 */
6658
6659 if (keyspace == 0)
6660 {
6661 ocl = (OCL_PTR *) mymalloc (sizeof (OCL_PTR));
6662
6663 ocl_init (ocl);
6664
6665 data.ocl = ocl;
6666 }
6667
6668 /**
6669 * OpenCL platform selection
6670 */
6671
6672 u32 opencl_platforms_filter = setup_opencl_platforms_filter (opencl_platforms);
6673
6674 /**
6675 * OpenCL device selection
6676 */
6677
6678 u32 devices_filter = setup_devices_filter (opencl_devices);
6679
6680 /**
6681 * OpenCL device type selection
6682 */
6683
6684 cl_device_type device_types_filter = setup_device_types_filter (opencl_device_types);
6685
6686 /**
6687 * benchmark
6688 */
6689
6690 if (benchmark == 1)
6691 {
6692 /**
6693 * disable useless stuff for benchmark
6694 */
6695
6696 status_timer = 0;
6697 restore_timer = 0;
6698 restore_disable = 1;
6699 potfile_disable = 1;
6700 weak_hash_threshold = 0;
6701 gpu_temp_disable = 1;
6702
6703 data.status_timer = status_timer;
6704 data.restore_timer = restore_timer;
6705 data.restore_disable = restore_disable;
6706
6707 /**
6708 * force attack mode to be bruteforce
6709 */
6710
6711 attack_mode = ATTACK_MODE_BF;
6712 attack_kern = ATTACK_KERN_BF;
6713
6714 if (workload_profile_chgd == 0)
6715 {
6716 workload_profile = 3;
6717
6718 data.workload_profile = workload_profile;
6719 }
6720 }
6721
6722 /**
6723 * config
6724 */
6725
6726 uint hash_type = 0;
6727 uint salt_type = 0;
6728 uint attack_exec = 0;
6729 uint opts_type = 0;
6730 uint kern_type = 0;
6731 uint dgst_size = 0;
6732 uint esalt_size = 0;
6733 uint opti_type = 0;
6734 uint dgst_pos0 = -1;
6735 uint dgst_pos1 = -1;
6736 uint dgst_pos2 = -1;
6737 uint dgst_pos3 = -1;
6738
6739 int (*parse_func) (char *, uint, hash_t *);
6740 int (*sort_by_digest) (const void *, const void *);
6741
6742 uint algorithm_pos = 0;
6743 uint algorithm_max = 1;
6744
6745 uint *algorithms = default_benchmark_algorithms;
6746
6747 if (benchmark == 1 && hash_mode_chgd == 0) algorithm_max = NUM_DEFAULT_BENCHMARK_ALGORITHMS;
6748
6749 for (algorithm_pos = 0; algorithm_pos < algorithm_max; algorithm_pos++)
6750 {
6751 /*
6752 * We need to reset 'rd' in benchmark mode otherwise when the user hits 'bypass'
6753 * the following algos are skipped entirely
6754 */
6755
6756 if (algorithm_pos > 0)
6757 {
6758 local_free (rd);
6759
6760 rd = init_restore (argc, argv);
6761
6762 data.rd = rd;
6763 }
6764
6765 /**
6766 * update hash_mode in case of multihash benchmark
6767 */
6768
6769 if (benchmark == 1)
6770 {
6771 if (hash_mode_chgd == 0)
6772 {
6773 hash_mode = algorithms[algorithm_pos];
6774
6775 data.hash_mode = hash_mode;
6776 }
6777
6778 quiet = 1;
6779
6780 data.quiet = quiet;
6781 }
6782
6783 switch (hash_mode)
6784 {
6785 case 0: hash_type = HASH_TYPE_MD5;
6786 salt_type = SALT_TYPE_NONE;
6787 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6788 opts_type = OPTS_TYPE_PT_GENERATE_LE
6789 | OPTS_TYPE_PT_ADD80
6790 | OPTS_TYPE_PT_ADDBITS14;
6791 kern_type = KERN_TYPE_MD5;
6792 dgst_size = DGST_SIZE_4_4;
6793 parse_func = md5_parse_hash;
6794 sort_by_digest = sort_by_digest_4_4;
6795 opti_type = OPTI_TYPE_ZERO_BYTE
6796 | OPTI_TYPE_PRECOMPUTE_INIT
6797 | OPTI_TYPE_PRECOMPUTE_MERKLE
6798 | OPTI_TYPE_MEET_IN_MIDDLE
6799 | OPTI_TYPE_EARLY_SKIP
6800 | OPTI_TYPE_NOT_ITERATED
6801 | OPTI_TYPE_NOT_SALTED
6802 | OPTI_TYPE_RAW_HASH;
6803 dgst_pos0 = 0;
6804 dgst_pos1 = 3;
6805 dgst_pos2 = 2;
6806 dgst_pos3 = 1;
6807 break;
6808
6809 case 10: hash_type = HASH_TYPE_MD5;
6810 salt_type = SALT_TYPE_INTERN;
6811 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6812 opts_type = OPTS_TYPE_PT_GENERATE_LE
6813 | OPTS_TYPE_ST_ADD80
6814 | OPTS_TYPE_ST_ADDBITS14;
6815 kern_type = KERN_TYPE_MD5_PWSLT;
6816 dgst_size = DGST_SIZE_4_4;
6817 parse_func = md5s_parse_hash;
6818 sort_by_digest = sort_by_digest_4_4;
6819 opti_type = OPTI_TYPE_ZERO_BYTE
6820 | OPTI_TYPE_PRECOMPUTE_INIT
6821 | OPTI_TYPE_PRECOMPUTE_MERKLE
6822 | OPTI_TYPE_MEET_IN_MIDDLE
6823 | OPTI_TYPE_EARLY_SKIP
6824 | OPTI_TYPE_NOT_ITERATED
6825 | OPTI_TYPE_APPENDED_SALT
6826 | OPTI_TYPE_RAW_HASH;
6827 dgst_pos0 = 0;
6828 dgst_pos1 = 3;
6829 dgst_pos2 = 2;
6830 dgst_pos3 = 1;
6831 break;
6832
6833 case 11: hash_type = HASH_TYPE_MD5;
6834 salt_type = SALT_TYPE_INTERN;
6835 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6836 opts_type = OPTS_TYPE_PT_GENERATE_LE
6837 | OPTS_TYPE_ST_ADD80
6838 | OPTS_TYPE_ST_ADDBITS14;
6839 kern_type = KERN_TYPE_MD5_PWSLT;
6840 dgst_size = DGST_SIZE_4_4;
6841 parse_func = joomla_parse_hash;
6842 sort_by_digest = sort_by_digest_4_4;
6843 opti_type = OPTI_TYPE_ZERO_BYTE
6844 | OPTI_TYPE_PRECOMPUTE_INIT
6845 | OPTI_TYPE_PRECOMPUTE_MERKLE
6846 | OPTI_TYPE_MEET_IN_MIDDLE
6847 | OPTI_TYPE_EARLY_SKIP
6848 | OPTI_TYPE_NOT_ITERATED
6849 | OPTI_TYPE_APPENDED_SALT
6850 | OPTI_TYPE_RAW_HASH;
6851 dgst_pos0 = 0;
6852 dgst_pos1 = 3;
6853 dgst_pos2 = 2;
6854 dgst_pos3 = 1;
6855 break;
6856
6857 case 12: hash_type = HASH_TYPE_MD5;
6858 salt_type = SALT_TYPE_INTERN;
6859 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6860 opts_type = OPTS_TYPE_PT_GENERATE_LE
6861 | OPTS_TYPE_ST_ADD80
6862 | OPTS_TYPE_ST_ADDBITS14;
6863 kern_type = KERN_TYPE_MD5_PWSLT;
6864 dgst_size = DGST_SIZE_4_4;
6865 parse_func = postgresql_parse_hash;
6866 sort_by_digest = sort_by_digest_4_4;
6867 opti_type = OPTI_TYPE_ZERO_BYTE
6868 | OPTI_TYPE_PRECOMPUTE_INIT
6869 | OPTI_TYPE_PRECOMPUTE_MERKLE
6870 | OPTI_TYPE_MEET_IN_MIDDLE
6871 | OPTI_TYPE_EARLY_SKIP
6872 | OPTI_TYPE_NOT_ITERATED
6873 | OPTI_TYPE_APPENDED_SALT
6874 | OPTI_TYPE_RAW_HASH;
6875 dgst_pos0 = 0;
6876 dgst_pos1 = 3;
6877 dgst_pos2 = 2;
6878 dgst_pos3 = 1;
6879 break;
6880
6881 case 20: hash_type = HASH_TYPE_MD5;
6882 salt_type = SALT_TYPE_INTERN;
6883 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6884 opts_type = OPTS_TYPE_PT_GENERATE_LE
6885 | OPTS_TYPE_PT_ADD80
6886 | OPTS_TYPE_PT_ADDBITS14;
6887 kern_type = KERN_TYPE_MD5_SLTPW;
6888 dgst_size = DGST_SIZE_4_4;
6889 parse_func = md5s_parse_hash;
6890 sort_by_digest = sort_by_digest_4_4;
6891 opti_type = OPTI_TYPE_ZERO_BYTE
6892 | OPTI_TYPE_PRECOMPUTE_INIT
6893 | OPTI_TYPE_PRECOMPUTE_MERKLE
6894 | OPTI_TYPE_EARLY_SKIP
6895 | OPTI_TYPE_NOT_ITERATED
6896 | OPTI_TYPE_PREPENDED_SALT
6897 | OPTI_TYPE_RAW_HASH;
6898 dgst_pos0 = 0;
6899 dgst_pos1 = 3;
6900 dgst_pos2 = 2;
6901 dgst_pos3 = 1;
6902 break;
6903
6904 case 21: hash_type = HASH_TYPE_MD5;
6905 salt_type = SALT_TYPE_INTERN;
6906 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6907 opts_type = OPTS_TYPE_PT_GENERATE_LE
6908 | OPTS_TYPE_PT_ADD80
6909 | OPTS_TYPE_PT_ADDBITS14;
6910 kern_type = KERN_TYPE_MD5_SLTPW;
6911 dgst_size = DGST_SIZE_4_4;
6912 parse_func = osc_parse_hash;
6913 sort_by_digest = sort_by_digest_4_4;
6914 opti_type = OPTI_TYPE_ZERO_BYTE
6915 | OPTI_TYPE_PRECOMPUTE_INIT
6916 | OPTI_TYPE_PRECOMPUTE_MERKLE
6917 | OPTI_TYPE_EARLY_SKIP
6918 | OPTI_TYPE_NOT_ITERATED
6919 | OPTI_TYPE_PREPENDED_SALT
6920 | OPTI_TYPE_RAW_HASH;
6921 dgst_pos0 = 0;
6922 dgst_pos1 = 3;
6923 dgst_pos2 = 2;
6924 dgst_pos3 = 1;
6925 break;
6926
6927 case 22: hash_type = HASH_TYPE_MD5;
6928 salt_type = SALT_TYPE_EMBEDDED;
6929 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6930 opts_type = OPTS_TYPE_PT_GENERATE_LE
6931 | OPTS_TYPE_PT_ADD80
6932 | OPTS_TYPE_PT_ADDBITS14;
6933 kern_type = KERN_TYPE_MD5_SLTPW;
6934 dgst_size = DGST_SIZE_4_4;
6935 parse_func = netscreen_parse_hash;
6936 sort_by_digest = sort_by_digest_4_4;
6937 opti_type = OPTI_TYPE_ZERO_BYTE
6938 | OPTI_TYPE_PRECOMPUTE_INIT
6939 | OPTI_TYPE_PRECOMPUTE_MERKLE
6940 | OPTI_TYPE_EARLY_SKIP
6941 | OPTI_TYPE_NOT_ITERATED
6942 | OPTI_TYPE_PREPENDED_SALT
6943 | OPTI_TYPE_RAW_HASH;
6944 dgst_pos0 = 0;
6945 dgst_pos1 = 3;
6946 dgst_pos2 = 2;
6947 dgst_pos3 = 1;
6948 break;
6949
6950 case 23: hash_type = HASH_TYPE_MD5;
6951 salt_type = SALT_TYPE_EMBEDDED;
6952 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6953 opts_type = OPTS_TYPE_PT_GENERATE_LE
6954 | OPTS_TYPE_PT_ADD80
6955 | OPTS_TYPE_PT_ADDBITS14;
6956 kern_type = KERN_TYPE_MD5_SLTPW;
6957 dgst_size = DGST_SIZE_4_4;
6958 parse_func = skype_parse_hash;
6959 sort_by_digest = sort_by_digest_4_4;
6960 opti_type = OPTI_TYPE_ZERO_BYTE
6961 | OPTI_TYPE_PRECOMPUTE_INIT
6962 | OPTI_TYPE_PRECOMPUTE_MERKLE
6963 | OPTI_TYPE_EARLY_SKIP
6964 | OPTI_TYPE_NOT_ITERATED
6965 | OPTI_TYPE_PREPENDED_SALT
6966 | OPTI_TYPE_RAW_HASH;
6967 dgst_pos0 = 0;
6968 dgst_pos1 = 3;
6969 dgst_pos2 = 2;
6970 dgst_pos3 = 1;
6971 break;
6972
6973 case 30: hash_type = HASH_TYPE_MD5;
6974 salt_type = SALT_TYPE_INTERN;
6975 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6976 opts_type = OPTS_TYPE_PT_GENERATE_LE
6977 | OPTS_TYPE_PT_UNICODE
6978 | OPTS_TYPE_ST_ADD80
6979 | OPTS_TYPE_ST_ADDBITS14;
6980 kern_type = KERN_TYPE_MD5_PWUSLT;
6981 dgst_size = DGST_SIZE_4_4;
6982 parse_func = md5s_parse_hash;
6983 sort_by_digest = sort_by_digest_4_4;
6984 opti_type = OPTI_TYPE_ZERO_BYTE
6985 | OPTI_TYPE_PRECOMPUTE_INIT
6986 | OPTI_TYPE_PRECOMPUTE_MERKLE
6987 | OPTI_TYPE_MEET_IN_MIDDLE
6988 | OPTI_TYPE_EARLY_SKIP
6989 | OPTI_TYPE_NOT_ITERATED
6990 | OPTI_TYPE_APPENDED_SALT
6991 | OPTI_TYPE_RAW_HASH;
6992 dgst_pos0 = 0;
6993 dgst_pos1 = 3;
6994 dgst_pos2 = 2;
6995 dgst_pos3 = 1;
6996 break;
6997
6998 case 40: hash_type = HASH_TYPE_MD5;
6999 salt_type = SALT_TYPE_INTERN;
7000 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7001 opts_type = OPTS_TYPE_PT_GENERATE_LE
7002 | OPTS_TYPE_PT_ADD80
7003 | OPTS_TYPE_PT_ADDBITS14
7004 | OPTS_TYPE_PT_UNICODE;
7005 kern_type = KERN_TYPE_MD5_SLTPWU;
7006 dgst_size = DGST_SIZE_4_4;
7007 parse_func = md5s_parse_hash;
7008 sort_by_digest = sort_by_digest_4_4;
7009 opti_type = OPTI_TYPE_ZERO_BYTE
7010 | OPTI_TYPE_PRECOMPUTE_INIT
7011 | OPTI_TYPE_PRECOMPUTE_MERKLE
7012 | OPTI_TYPE_EARLY_SKIP
7013 | OPTI_TYPE_NOT_ITERATED
7014 | OPTI_TYPE_PREPENDED_SALT
7015 | OPTI_TYPE_RAW_HASH;
7016 dgst_pos0 = 0;
7017 dgst_pos1 = 3;
7018 dgst_pos2 = 2;
7019 dgst_pos3 = 1;
7020 break;
7021
7022 case 50: hash_type = HASH_TYPE_MD5;
7023 salt_type = SALT_TYPE_INTERN;
7024 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7025 opts_type = OPTS_TYPE_PT_GENERATE_LE
7026 | OPTS_TYPE_ST_ADD80
7027 | OPTS_TYPE_ST_ADDBITS14;
7028 kern_type = KERN_TYPE_HMACMD5_PW;
7029 dgst_size = DGST_SIZE_4_4;
7030 parse_func = hmacmd5_parse_hash;
7031 sort_by_digest = sort_by_digest_4_4;
7032 opti_type = OPTI_TYPE_ZERO_BYTE
7033 | OPTI_TYPE_NOT_ITERATED;
7034 dgst_pos0 = 0;
7035 dgst_pos1 = 3;
7036 dgst_pos2 = 2;
7037 dgst_pos3 = 1;
7038 break;
7039
7040 case 60: hash_type = HASH_TYPE_MD5;
7041 salt_type = SALT_TYPE_INTERN;
7042 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7043 opts_type = OPTS_TYPE_PT_GENERATE_LE
7044 | OPTS_TYPE_PT_ADD80
7045 | OPTS_TYPE_PT_ADDBITS14;
7046 kern_type = KERN_TYPE_HMACMD5_SLT;
7047 dgst_size = DGST_SIZE_4_4;
7048 parse_func = hmacmd5_parse_hash;
7049 sort_by_digest = sort_by_digest_4_4;
7050 opti_type = OPTI_TYPE_ZERO_BYTE
7051 | OPTI_TYPE_NOT_ITERATED;
7052 dgst_pos0 = 0;
7053 dgst_pos1 = 3;
7054 dgst_pos2 = 2;
7055 dgst_pos3 = 1;
7056 break;
7057
7058 case 100: hash_type = HASH_TYPE_SHA1;
7059 salt_type = SALT_TYPE_NONE;
7060 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7061 opts_type = OPTS_TYPE_PT_GENERATE_BE
7062 | OPTS_TYPE_PT_ADD80
7063 | OPTS_TYPE_PT_ADDBITS15;
7064 kern_type = KERN_TYPE_SHA1;
7065 dgst_size = DGST_SIZE_4_5;
7066 parse_func = sha1_parse_hash;
7067 sort_by_digest = sort_by_digest_4_5;
7068 opti_type = OPTI_TYPE_ZERO_BYTE
7069 | OPTI_TYPE_PRECOMPUTE_INIT
7070 | OPTI_TYPE_PRECOMPUTE_MERKLE
7071 | OPTI_TYPE_EARLY_SKIP
7072 | OPTI_TYPE_NOT_ITERATED
7073 | OPTI_TYPE_NOT_SALTED
7074 | OPTI_TYPE_RAW_HASH;
7075 dgst_pos0 = 3;
7076 dgst_pos1 = 4;
7077 dgst_pos2 = 2;
7078 dgst_pos3 = 1;
7079 break;
7080
7081 case 101: hash_type = HASH_TYPE_SHA1;
7082 salt_type = SALT_TYPE_NONE;
7083 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7084 opts_type = OPTS_TYPE_PT_GENERATE_BE
7085 | OPTS_TYPE_PT_ADD80
7086 | OPTS_TYPE_PT_ADDBITS15;
7087 kern_type = KERN_TYPE_SHA1;
7088 dgst_size = DGST_SIZE_4_5;
7089 parse_func = sha1b64_parse_hash;
7090 sort_by_digest = sort_by_digest_4_5;
7091 opti_type = OPTI_TYPE_ZERO_BYTE
7092 | OPTI_TYPE_PRECOMPUTE_INIT
7093 | OPTI_TYPE_PRECOMPUTE_MERKLE
7094 | OPTI_TYPE_EARLY_SKIP
7095 | OPTI_TYPE_NOT_ITERATED
7096 | OPTI_TYPE_NOT_SALTED
7097 | OPTI_TYPE_RAW_HASH;
7098 dgst_pos0 = 3;
7099 dgst_pos1 = 4;
7100 dgst_pos2 = 2;
7101 dgst_pos3 = 1;
7102 break;
7103
7104 case 110: hash_type = HASH_TYPE_SHA1;
7105 salt_type = SALT_TYPE_INTERN;
7106 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7107 opts_type = OPTS_TYPE_PT_GENERATE_BE
7108 | OPTS_TYPE_ST_ADD80
7109 | OPTS_TYPE_ST_ADDBITS15;
7110 kern_type = KERN_TYPE_SHA1_PWSLT;
7111 dgst_size = DGST_SIZE_4_5;
7112 parse_func = sha1s_parse_hash;
7113 sort_by_digest = sort_by_digest_4_5;
7114 opti_type = OPTI_TYPE_ZERO_BYTE
7115 | OPTI_TYPE_PRECOMPUTE_INIT
7116 | OPTI_TYPE_PRECOMPUTE_MERKLE
7117 | OPTI_TYPE_EARLY_SKIP
7118 | OPTI_TYPE_NOT_ITERATED
7119 | OPTI_TYPE_APPENDED_SALT
7120 | OPTI_TYPE_RAW_HASH;
7121 dgst_pos0 = 3;
7122 dgst_pos1 = 4;
7123 dgst_pos2 = 2;
7124 dgst_pos3 = 1;
7125 break;
7126
7127 case 111: hash_type = HASH_TYPE_SHA1;
7128 salt_type = SALT_TYPE_EMBEDDED;
7129 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7130 opts_type = OPTS_TYPE_PT_GENERATE_BE
7131 | OPTS_TYPE_ST_ADD80
7132 | OPTS_TYPE_ST_ADDBITS15;
7133 kern_type = KERN_TYPE_SHA1_PWSLT;
7134 dgst_size = DGST_SIZE_4_5;
7135 parse_func = sha1b64s_parse_hash;
7136 sort_by_digest = sort_by_digest_4_5;
7137 opti_type = OPTI_TYPE_ZERO_BYTE
7138 | OPTI_TYPE_PRECOMPUTE_INIT
7139 | OPTI_TYPE_PRECOMPUTE_MERKLE
7140 | OPTI_TYPE_EARLY_SKIP
7141 | OPTI_TYPE_NOT_ITERATED
7142 | OPTI_TYPE_APPENDED_SALT
7143 | OPTI_TYPE_RAW_HASH;
7144 dgst_pos0 = 3;
7145 dgst_pos1 = 4;
7146 dgst_pos2 = 2;
7147 dgst_pos3 = 1;
7148 break;
7149
7150 case 112: hash_type = HASH_TYPE_SHA1;
7151 salt_type = SALT_TYPE_INTERN;
7152 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7153 opts_type = OPTS_TYPE_PT_GENERATE_BE
7154 | OPTS_TYPE_ST_ADD80
7155 | OPTS_TYPE_ST_ADDBITS15
7156 | OPTS_TYPE_ST_HEX;
7157 kern_type = KERN_TYPE_SHA1_PWSLT;
7158 dgst_size = DGST_SIZE_4_5;
7159 parse_func = oracles_parse_hash;
7160 sort_by_digest = sort_by_digest_4_5;
7161 opti_type = OPTI_TYPE_ZERO_BYTE
7162 | OPTI_TYPE_PRECOMPUTE_INIT
7163 | OPTI_TYPE_PRECOMPUTE_MERKLE
7164 | OPTI_TYPE_EARLY_SKIP
7165 | OPTI_TYPE_NOT_ITERATED
7166 | OPTI_TYPE_APPENDED_SALT
7167 | OPTI_TYPE_RAW_HASH;
7168 dgst_pos0 = 3;
7169 dgst_pos1 = 4;
7170 dgst_pos2 = 2;
7171 dgst_pos3 = 1;
7172 break;
7173
7174 case 120: hash_type = HASH_TYPE_SHA1;
7175 salt_type = SALT_TYPE_INTERN;
7176 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7177 opts_type = OPTS_TYPE_PT_GENERATE_BE
7178 | OPTS_TYPE_PT_ADD80
7179 | OPTS_TYPE_PT_ADDBITS15;
7180 kern_type = KERN_TYPE_SHA1_SLTPW;
7181 dgst_size = DGST_SIZE_4_5;
7182 parse_func = sha1s_parse_hash;
7183 sort_by_digest = sort_by_digest_4_5;
7184 opti_type = OPTI_TYPE_ZERO_BYTE
7185 | OPTI_TYPE_PRECOMPUTE_INIT
7186 | OPTI_TYPE_PRECOMPUTE_MERKLE
7187 | OPTI_TYPE_EARLY_SKIP
7188 | OPTI_TYPE_NOT_ITERATED
7189 | OPTI_TYPE_PREPENDED_SALT
7190 | OPTI_TYPE_RAW_HASH;
7191 dgst_pos0 = 3;
7192 dgst_pos1 = 4;
7193 dgst_pos2 = 2;
7194 dgst_pos3 = 1;
7195 break;
7196
7197 case 121: hash_type = HASH_TYPE_SHA1;
7198 salt_type = SALT_TYPE_INTERN;
7199 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7200 opts_type = OPTS_TYPE_PT_GENERATE_BE
7201 | OPTS_TYPE_PT_ADD80
7202 | OPTS_TYPE_PT_ADDBITS15
7203 | OPTS_TYPE_ST_LOWER;
7204 kern_type = KERN_TYPE_SHA1_SLTPW;
7205 dgst_size = DGST_SIZE_4_5;
7206 parse_func = smf_parse_hash;
7207 sort_by_digest = sort_by_digest_4_5;
7208 opti_type = OPTI_TYPE_ZERO_BYTE
7209 | OPTI_TYPE_PRECOMPUTE_INIT
7210 | OPTI_TYPE_PRECOMPUTE_MERKLE
7211 | OPTI_TYPE_EARLY_SKIP
7212 | OPTI_TYPE_NOT_ITERATED
7213 | OPTI_TYPE_PREPENDED_SALT
7214 | OPTI_TYPE_RAW_HASH;
7215 dgst_pos0 = 3;
7216 dgst_pos1 = 4;
7217 dgst_pos2 = 2;
7218 dgst_pos3 = 1;
7219 break;
7220
7221 case 122: hash_type = HASH_TYPE_SHA1;
7222 salt_type = SALT_TYPE_EMBEDDED;
7223 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7224 opts_type = OPTS_TYPE_PT_GENERATE_BE
7225 | OPTS_TYPE_PT_ADD80
7226 | OPTS_TYPE_PT_ADDBITS15
7227 | OPTS_TYPE_ST_HEX;
7228 kern_type = KERN_TYPE_SHA1_SLTPW;
7229 dgst_size = DGST_SIZE_4_5;
7230 parse_func = osx1_parse_hash;
7231 sort_by_digest = sort_by_digest_4_5;
7232 opti_type = OPTI_TYPE_ZERO_BYTE
7233 | OPTI_TYPE_PRECOMPUTE_INIT
7234 | OPTI_TYPE_PRECOMPUTE_MERKLE
7235 | OPTI_TYPE_EARLY_SKIP
7236 | OPTI_TYPE_NOT_ITERATED
7237 | OPTI_TYPE_PREPENDED_SALT
7238 | OPTI_TYPE_RAW_HASH;
7239 dgst_pos0 = 3;
7240 dgst_pos1 = 4;
7241 dgst_pos2 = 2;
7242 dgst_pos3 = 1;
7243 break;
7244
7245 case 124: hash_type = HASH_TYPE_SHA1;
7246 salt_type = SALT_TYPE_EMBEDDED;
7247 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7248 opts_type = OPTS_TYPE_PT_GENERATE_BE
7249 | OPTS_TYPE_PT_ADD80
7250 | OPTS_TYPE_PT_ADDBITS15;
7251 kern_type = KERN_TYPE_SHA1_SLTPW;
7252 dgst_size = DGST_SIZE_4_5;
7253 parse_func = djangosha1_parse_hash;
7254 sort_by_digest = sort_by_digest_4_5;
7255 opti_type = OPTI_TYPE_ZERO_BYTE
7256 | OPTI_TYPE_PRECOMPUTE_INIT
7257 | OPTI_TYPE_PRECOMPUTE_MERKLE
7258 | OPTI_TYPE_EARLY_SKIP
7259 | OPTI_TYPE_NOT_ITERATED
7260 | OPTI_TYPE_PREPENDED_SALT
7261 | OPTI_TYPE_RAW_HASH;
7262 dgst_pos0 = 3;
7263 dgst_pos1 = 4;
7264 dgst_pos2 = 2;
7265 dgst_pos3 = 1;
7266 break;
7267
7268 case 125: hash_type = HASH_TYPE_SHA1;
7269 salt_type = SALT_TYPE_EMBEDDED;
7270 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7271 opts_type = OPTS_TYPE_PT_GENERATE_BE
7272 | OPTS_TYPE_PT_ADD80
7273 | OPTS_TYPE_PT_ADDBITS15
7274 | OPTS_TYPE_ST_HEX;
7275 kern_type = KERN_TYPE_SHA1_SLTPW;
7276 dgst_size = DGST_SIZE_4_5;
7277 parse_func = arubaos_parse_hash;
7278 sort_by_digest = sort_by_digest_4_5;
7279 opti_type = OPTI_TYPE_ZERO_BYTE
7280 | OPTI_TYPE_PRECOMPUTE_INIT
7281 | OPTI_TYPE_PRECOMPUTE_MERKLE
7282 | OPTI_TYPE_EARLY_SKIP
7283 | OPTI_TYPE_NOT_ITERATED
7284 | OPTI_TYPE_PREPENDED_SALT
7285 | OPTI_TYPE_RAW_HASH;
7286 dgst_pos0 = 3;
7287 dgst_pos1 = 4;
7288 dgst_pos2 = 2;
7289 dgst_pos3 = 1;
7290 break;
7291
7292 case 130: hash_type = HASH_TYPE_SHA1;
7293 salt_type = SALT_TYPE_INTERN;
7294 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7295 opts_type = OPTS_TYPE_PT_GENERATE_BE
7296 | OPTS_TYPE_PT_UNICODE
7297 | OPTS_TYPE_ST_ADD80
7298 | OPTS_TYPE_ST_ADDBITS15;
7299 kern_type = KERN_TYPE_SHA1_PWUSLT;
7300 dgst_size = DGST_SIZE_4_5;
7301 parse_func = sha1s_parse_hash;
7302 sort_by_digest = sort_by_digest_4_5;
7303 opti_type = OPTI_TYPE_ZERO_BYTE
7304 | OPTI_TYPE_PRECOMPUTE_INIT
7305 | OPTI_TYPE_PRECOMPUTE_MERKLE
7306 | OPTI_TYPE_EARLY_SKIP
7307 | OPTI_TYPE_NOT_ITERATED
7308 | OPTI_TYPE_APPENDED_SALT
7309 | OPTI_TYPE_RAW_HASH;
7310 dgst_pos0 = 3;
7311 dgst_pos1 = 4;
7312 dgst_pos2 = 2;
7313 dgst_pos3 = 1;
7314 break;
7315
7316 case 131: hash_type = HASH_TYPE_SHA1;
7317 salt_type = SALT_TYPE_EMBEDDED;
7318 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7319 opts_type = OPTS_TYPE_PT_GENERATE_BE
7320 | OPTS_TYPE_PT_UNICODE
7321 | OPTS_TYPE_PT_UPPER
7322 | OPTS_TYPE_ST_ADD80
7323 | OPTS_TYPE_ST_ADDBITS15
7324 | OPTS_TYPE_ST_HEX;
7325 kern_type = KERN_TYPE_SHA1_PWUSLT;
7326 dgst_size = DGST_SIZE_4_5;
7327 parse_func = mssql2000_parse_hash;
7328 sort_by_digest = sort_by_digest_4_5;
7329 opti_type = OPTI_TYPE_ZERO_BYTE
7330 | OPTI_TYPE_PRECOMPUTE_INIT
7331 | OPTI_TYPE_PRECOMPUTE_MERKLE
7332 | OPTI_TYPE_EARLY_SKIP
7333 | OPTI_TYPE_NOT_ITERATED
7334 | OPTI_TYPE_APPENDED_SALT
7335 | OPTI_TYPE_RAW_HASH;
7336 dgst_pos0 = 3;
7337 dgst_pos1 = 4;
7338 dgst_pos2 = 2;
7339 dgst_pos3 = 1;
7340 break;
7341
7342 case 132: hash_type = HASH_TYPE_SHA1;
7343 salt_type = SALT_TYPE_EMBEDDED;
7344 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7345 opts_type = OPTS_TYPE_PT_GENERATE_BE
7346 | OPTS_TYPE_PT_UNICODE
7347 | OPTS_TYPE_ST_ADD80
7348 | OPTS_TYPE_ST_ADDBITS15
7349 | OPTS_TYPE_ST_HEX;
7350 kern_type = KERN_TYPE_SHA1_PWUSLT;
7351 dgst_size = DGST_SIZE_4_5;
7352 parse_func = mssql2005_parse_hash;
7353 sort_by_digest = sort_by_digest_4_5;
7354 opti_type = OPTI_TYPE_ZERO_BYTE
7355 | OPTI_TYPE_PRECOMPUTE_INIT
7356 | OPTI_TYPE_PRECOMPUTE_MERKLE
7357 | OPTI_TYPE_EARLY_SKIP
7358 | OPTI_TYPE_NOT_ITERATED
7359 | OPTI_TYPE_APPENDED_SALT
7360 | OPTI_TYPE_RAW_HASH;
7361 dgst_pos0 = 3;
7362 dgst_pos1 = 4;
7363 dgst_pos2 = 2;
7364 dgst_pos3 = 1;
7365 break;
7366
7367 case 133: hash_type = HASH_TYPE_SHA1;
7368 salt_type = SALT_TYPE_EMBEDDED;
7369 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7370 opts_type = OPTS_TYPE_PT_GENERATE_BE
7371 | OPTS_TYPE_PT_UNICODE
7372 | OPTS_TYPE_ST_ADD80
7373 | OPTS_TYPE_ST_ADDBITS15;
7374 kern_type = KERN_TYPE_SHA1_PWUSLT;
7375 dgst_size = DGST_SIZE_4_5;
7376 parse_func = peoplesoft_parse_hash;
7377 sort_by_digest = sort_by_digest_4_5;
7378 opti_type = OPTI_TYPE_ZERO_BYTE
7379 | OPTI_TYPE_PRECOMPUTE_INIT
7380 | OPTI_TYPE_PRECOMPUTE_MERKLE
7381 | OPTI_TYPE_EARLY_SKIP
7382 | OPTI_TYPE_NOT_ITERATED
7383 | OPTI_TYPE_APPENDED_SALT
7384 | OPTI_TYPE_RAW_HASH;
7385 dgst_pos0 = 3;
7386 dgst_pos1 = 4;
7387 dgst_pos2 = 2;
7388 dgst_pos3 = 1;
7389 break;
7390
7391 case 140: hash_type = HASH_TYPE_SHA1;
7392 salt_type = SALT_TYPE_INTERN;
7393 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7394 opts_type = OPTS_TYPE_PT_GENERATE_BE
7395 | OPTS_TYPE_PT_ADD80
7396 | OPTS_TYPE_PT_ADDBITS15
7397 | OPTS_TYPE_PT_UNICODE;
7398 kern_type = KERN_TYPE_SHA1_SLTPWU;
7399 dgst_size = DGST_SIZE_4_5;
7400 parse_func = sha1s_parse_hash;
7401 sort_by_digest = sort_by_digest_4_5;
7402 opti_type = OPTI_TYPE_ZERO_BYTE
7403 | OPTI_TYPE_PRECOMPUTE_INIT
7404 | OPTI_TYPE_PRECOMPUTE_MERKLE
7405 | OPTI_TYPE_EARLY_SKIP
7406 | OPTI_TYPE_NOT_ITERATED
7407 | OPTI_TYPE_PREPENDED_SALT
7408 | OPTI_TYPE_RAW_HASH;
7409 dgst_pos0 = 3;
7410 dgst_pos1 = 4;
7411 dgst_pos2 = 2;
7412 dgst_pos3 = 1;
7413 break;
7414
7415 case 141: hash_type = HASH_TYPE_SHA1;
7416 salt_type = SALT_TYPE_EMBEDDED;
7417 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7418 opts_type = OPTS_TYPE_PT_GENERATE_BE
7419 | OPTS_TYPE_PT_ADD80
7420 | OPTS_TYPE_PT_ADDBITS15
7421 | OPTS_TYPE_PT_UNICODE
7422 | OPTS_TYPE_ST_BASE64;
7423 kern_type = KERN_TYPE_SHA1_SLTPWU;
7424 dgst_size = DGST_SIZE_4_5;
7425 parse_func = episerver_parse_hash;
7426 sort_by_digest = sort_by_digest_4_5;
7427 opti_type = OPTI_TYPE_ZERO_BYTE
7428 | OPTI_TYPE_PRECOMPUTE_INIT
7429 | OPTI_TYPE_PRECOMPUTE_MERKLE
7430 | OPTI_TYPE_EARLY_SKIP
7431 | OPTI_TYPE_NOT_ITERATED
7432 | OPTI_TYPE_PREPENDED_SALT
7433 | OPTI_TYPE_RAW_HASH;
7434 dgst_pos0 = 3;
7435 dgst_pos1 = 4;
7436 dgst_pos2 = 2;
7437 dgst_pos3 = 1;
7438 break;
7439
7440 case 150: hash_type = HASH_TYPE_SHA1;
7441 salt_type = SALT_TYPE_INTERN;
7442 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7443 opts_type = OPTS_TYPE_PT_GENERATE_BE
7444 | OPTS_TYPE_ST_ADD80
7445 | OPTS_TYPE_ST_ADDBITS15;
7446 kern_type = KERN_TYPE_HMACSHA1_PW;
7447 dgst_size = DGST_SIZE_4_5;
7448 parse_func = hmacsha1_parse_hash;
7449 sort_by_digest = sort_by_digest_4_5;
7450 opti_type = OPTI_TYPE_ZERO_BYTE
7451 | OPTI_TYPE_NOT_ITERATED;
7452 dgst_pos0 = 3;
7453 dgst_pos1 = 4;
7454 dgst_pos2 = 2;
7455 dgst_pos3 = 1;
7456 break;
7457
7458 case 160: hash_type = HASH_TYPE_SHA1;
7459 salt_type = SALT_TYPE_INTERN;
7460 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7461 opts_type = OPTS_TYPE_PT_GENERATE_BE
7462 | OPTS_TYPE_PT_ADD80
7463 | OPTS_TYPE_PT_ADDBITS15;
7464 kern_type = KERN_TYPE_HMACSHA1_SLT;
7465 dgst_size = DGST_SIZE_4_5;
7466 parse_func = hmacsha1_parse_hash;
7467 sort_by_digest = sort_by_digest_4_5;
7468 opti_type = OPTI_TYPE_ZERO_BYTE
7469 | OPTI_TYPE_NOT_ITERATED;
7470 dgst_pos0 = 3;
7471 dgst_pos1 = 4;
7472 dgst_pos2 = 2;
7473 dgst_pos3 = 1;
7474 break;
7475
7476 case 190: hash_type = HASH_TYPE_SHA1;
7477 salt_type = SALT_TYPE_NONE;
7478 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7479 opts_type = OPTS_TYPE_PT_GENERATE_BE
7480 | OPTS_TYPE_PT_ADD80
7481 | OPTS_TYPE_PT_ADDBITS15;
7482 kern_type = KERN_TYPE_SHA1_LINKEDIN;
7483 dgst_size = DGST_SIZE_4_5;
7484 parse_func = sha1linkedin_parse_hash;
7485 sort_by_digest = sort_by_digest_4_5;
7486 opti_type = OPTI_TYPE_ZERO_BYTE
7487 | OPTI_TYPE_PRECOMPUTE_INIT
7488 | OPTI_TYPE_EARLY_SKIP
7489 | OPTI_TYPE_NOT_ITERATED
7490 | OPTI_TYPE_NOT_SALTED;
7491 dgst_pos0 = 0;
7492 dgst_pos1 = 4;
7493 dgst_pos2 = 3;
7494 dgst_pos3 = 2;
7495 break;
7496
7497 case 200: hash_type = HASH_TYPE_MYSQL;
7498 salt_type = SALT_TYPE_NONE;
7499 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7500 opts_type = 0;
7501 kern_type = KERN_TYPE_MYSQL;
7502 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
7503 parse_func = mysql323_parse_hash;
7504 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
7505 opti_type = OPTI_TYPE_ZERO_BYTE;
7506 dgst_pos0 = 0;
7507 dgst_pos1 = 1;
7508 dgst_pos2 = 2;
7509 dgst_pos3 = 3;
7510 break;
7511
7512 case 300: hash_type = HASH_TYPE_SHA1;
7513 salt_type = SALT_TYPE_NONE;
7514 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7515 opts_type = OPTS_TYPE_PT_GENERATE_BE
7516 | OPTS_TYPE_PT_ADD80
7517 | OPTS_TYPE_PT_ADDBITS15;
7518 kern_type = KERN_TYPE_MYSQL41;
7519 dgst_size = DGST_SIZE_4_5;
7520 parse_func = sha1_parse_hash;
7521 sort_by_digest = sort_by_digest_4_5;
7522 opti_type = OPTI_TYPE_ZERO_BYTE
7523 | OPTI_TYPE_PRECOMPUTE_INIT
7524 | OPTI_TYPE_PRECOMPUTE_MERKLE
7525 | OPTI_TYPE_EARLY_SKIP
7526 | OPTI_TYPE_NOT_ITERATED
7527 | OPTI_TYPE_NOT_SALTED;
7528 dgst_pos0 = 3;
7529 dgst_pos1 = 4;
7530 dgst_pos2 = 2;
7531 dgst_pos3 = 1;
7532 break;
7533
7534 case 400: hash_type = HASH_TYPE_MD5;
7535 salt_type = SALT_TYPE_EMBEDDED;
7536 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7537 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7538 kern_type = KERN_TYPE_PHPASS;
7539 dgst_size = DGST_SIZE_4_4;
7540 parse_func = phpass_parse_hash;
7541 sort_by_digest = sort_by_digest_4_4;
7542 opti_type = OPTI_TYPE_ZERO_BYTE
7543 | OPTI_TYPE_SLOW_HASH_SIMD;
7544 dgst_pos0 = 0;
7545 dgst_pos1 = 1;
7546 dgst_pos2 = 2;
7547 dgst_pos3 = 3;
7548 break;
7549
7550 case 500: hash_type = HASH_TYPE_MD5;
7551 salt_type = SALT_TYPE_EMBEDDED;
7552 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7553 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7554 kern_type = KERN_TYPE_MD5CRYPT;
7555 dgst_size = DGST_SIZE_4_4;
7556 parse_func = md5crypt_parse_hash;
7557 sort_by_digest = sort_by_digest_4_4;
7558 opti_type = OPTI_TYPE_ZERO_BYTE;
7559 dgst_pos0 = 0;
7560 dgst_pos1 = 1;
7561 dgst_pos2 = 2;
7562 dgst_pos3 = 3;
7563 break;
7564
7565 case 501: hash_type = HASH_TYPE_MD5;
7566 salt_type = SALT_TYPE_EMBEDDED;
7567 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7568 opts_type = OPTS_TYPE_PT_GENERATE_LE
7569 | OPTS_TYPE_HASH_COPY;
7570 kern_type = KERN_TYPE_MD5CRYPT;
7571 dgst_size = DGST_SIZE_4_4;
7572 parse_func = juniper_parse_hash;
7573 sort_by_digest = sort_by_digest_4_4;
7574 opti_type = OPTI_TYPE_ZERO_BYTE;
7575 dgst_pos0 = 0;
7576 dgst_pos1 = 1;
7577 dgst_pos2 = 2;
7578 dgst_pos3 = 3;
7579 break;
7580
7581 case 900: hash_type = HASH_TYPE_MD4;
7582 salt_type = SALT_TYPE_NONE;
7583 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7584 opts_type = OPTS_TYPE_PT_GENERATE_LE
7585 | OPTS_TYPE_PT_ADD80
7586 | OPTS_TYPE_PT_ADDBITS14;
7587 kern_type = KERN_TYPE_MD4;
7588 dgst_size = DGST_SIZE_4_4;
7589 parse_func = md4_parse_hash;
7590 sort_by_digest = sort_by_digest_4_4;
7591 opti_type = OPTI_TYPE_ZERO_BYTE
7592 | OPTI_TYPE_PRECOMPUTE_INIT
7593 | OPTI_TYPE_PRECOMPUTE_MERKLE
7594 | OPTI_TYPE_MEET_IN_MIDDLE
7595 | OPTI_TYPE_EARLY_SKIP
7596 | OPTI_TYPE_NOT_ITERATED
7597 | OPTI_TYPE_NOT_SALTED
7598 | OPTI_TYPE_RAW_HASH;
7599 dgst_pos0 = 0;
7600 dgst_pos1 = 3;
7601 dgst_pos2 = 2;
7602 dgst_pos3 = 1;
7603 break;
7604
7605 case 1000: hash_type = HASH_TYPE_MD4;
7606 salt_type = SALT_TYPE_NONE;
7607 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7608 opts_type = OPTS_TYPE_PT_GENERATE_LE
7609 | OPTS_TYPE_PT_ADD80
7610 | OPTS_TYPE_PT_ADDBITS14
7611 | OPTS_TYPE_PT_UNICODE;
7612 kern_type = KERN_TYPE_MD4_PWU;
7613 dgst_size = DGST_SIZE_4_4;
7614 parse_func = md4_parse_hash;
7615 sort_by_digest = sort_by_digest_4_4;
7616 opti_type = OPTI_TYPE_ZERO_BYTE
7617 | OPTI_TYPE_PRECOMPUTE_INIT
7618 | OPTI_TYPE_PRECOMPUTE_MERKLE
7619 | OPTI_TYPE_MEET_IN_MIDDLE
7620 | OPTI_TYPE_EARLY_SKIP
7621 | OPTI_TYPE_NOT_ITERATED
7622 | OPTI_TYPE_NOT_SALTED
7623 | OPTI_TYPE_RAW_HASH;
7624 dgst_pos0 = 0;
7625 dgst_pos1 = 3;
7626 dgst_pos2 = 2;
7627 dgst_pos3 = 1;
7628 break;
7629
7630 case 1100: hash_type = HASH_TYPE_MD4;
7631 salt_type = SALT_TYPE_INTERN;
7632 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7633 opts_type = OPTS_TYPE_PT_GENERATE_LE
7634 | OPTS_TYPE_PT_ADD80
7635 | OPTS_TYPE_PT_ADDBITS14
7636 | OPTS_TYPE_PT_UNICODE
7637 | OPTS_TYPE_ST_ADD80
7638 | OPTS_TYPE_ST_UNICODE
7639 | OPTS_TYPE_ST_LOWER;
7640 kern_type = KERN_TYPE_MD44_PWUSLT;
7641 dgst_size = DGST_SIZE_4_4;
7642 parse_func = dcc_parse_hash;
7643 sort_by_digest = sort_by_digest_4_4;
7644 opti_type = OPTI_TYPE_ZERO_BYTE
7645 | OPTI_TYPE_PRECOMPUTE_INIT
7646 | OPTI_TYPE_PRECOMPUTE_MERKLE
7647 | OPTI_TYPE_EARLY_SKIP
7648 | OPTI_TYPE_NOT_ITERATED;
7649 dgst_pos0 = 0;
7650 dgst_pos1 = 3;
7651 dgst_pos2 = 2;
7652 dgst_pos3 = 1;
7653 break;
7654
7655 case 1400: hash_type = HASH_TYPE_SHA256;
7656 salt_type = SALT_TYPE_NONE;
7657 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7658 opts_type = OPTS_TYPE_PT_GENERATE_BE
7659 | OPTS_TYPE_PT_ADD80
7660 | OPTS_TYPE_PT_ADDBITS15;
7661 kern_type = KERN_TYPE_SHA256;
7662 dgst_size = DGST_SIZE_4_8;
7663 parse_func = sha256_parse_hash;
7664 sort_by_digest = sort_by_digest_4_8;
7665 opti_type = OPTI_TYPE_ZERO_BYTE
7666 | OPTI_TYPE_PRECOMPUTE_INIT
7667 | OPTI_TYPE_PRECOMPUTE_MERKLE
7668 | OPTI_TYPE_EARLY_SKIP
7669 | OPTI_TYPE_NOT_ITERATED
7670 | OPTI_TYPE_NOT_SALTED
7671 | OPTI_TYPE_RAW_HASH;
7672 dgst_pos0 = 3;
7673 dgst_pos1 = 7;
7674 dgst_pos2 = 2;
7675 dgst_pos3 = 6;
7676 break;
7677
7678 case 1410: hash_type = HASH_TYPE_SHA256;
7679 salt_type = SALT_TYPE_INTERN;
7680 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7681 opts_type = OPTS_TYPE_PT_GENERATE_BE
7682 | OPTS_TYPE_ST_ADD80
7683 | OPTS_TYPE_ST_ADDBITS15;
7684 kern_type = KERN_TYPE_SHA256_PWSLT;
7685 dgst_size = DGST_SIZE_4_8;
7686 parse_func = sha256s_parse_hash;
7687 sort_by_digest = sort_by_digest_4_8;
7688 opti_type = OPTI_TYPE_ZERO_BYTE
7689 | OPTI_TYPE_PRECOMPUTE_INIT
7690 | OPTI_TYPE_PRECOMPUTE_MERKLE
7691 | OPTI_TYPE_EARLY_SKIP
7692 | OPTI_TYPE_NOT_ITERATED
7693 | OPTI_TYPE_APPENDED_SALT
7694 | OPTI_TYPE_RAW_HASH;
7695 dgst_pos0 = 3;
7696 dgst_pos1 = 7;
7697 dgst_pos2 = 2;
7698 dgst_pos3 = 6;
7699 break;
7700
7701 case 1420: hash_type = HASH_TYPE_SHA256;
7702 salt_type = SALT_TYPE_INTERN;
7703 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7704 opts_type = OPTS_TYPE_PT_GENERATE_BE
7705 | OPTS_TYPE_PT_ADD80
7706 | OPTS_TYPE_PT_ADDBITS15;
7707 kern_type = KERN_TYPE_SHA256_SLTPW;
7708 dgst_size = DGST_SIZE_4_8;
7709 parse_func = sha256s_parse_hash;
7710 sort_by_digest = sort_by_digest_4_8;
7711 opti_type = OPTI_TYPE_ZERO_BYTE
7712 | OPTI_TYPE_PRECOMPUTE_INIT
7713 | OPTI_TYPE_PRECOMPUTE_MERKLE
7714 | OPTI_TYPE_EARLY_SKIP
7715 | OPTI_TYPE_NOT_ITERATED
7716 | OPTI_TYPE_PREPENDED_SALT
7717 | OPTI_TYPE_RAW_HASH;
7718 dgst_pos0 = 3;
7719 dgst_pos1 = 7;
7720 dgst_pos2 = 2;
7721 dgst_pos3 = 6;
7722 break;
7723
7724 case 1421: hash_type = HASH_TYPE_SHA256;
7725 salt_type = SALT_TYPE_EMBEDDED;
7726 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7727 opts_type = OPTS_TYPE_PT_GENERATE_BE
7728 | OPTS_TYPE_PT_ADD80
7729 | OPTS_TYPE_PT_ADDBITS15;
7730 kern_type = KERN_TYPE_SHA256_SLTPW;
7731 dgst_size = DGST_SIZE_4_8;
7732 parse_func = hmailserver_parse_hash;
7733 sort_by_digest = sort_by_digest_4_8;
7734 opti_type = OPTI_TYPE_ZERO_BYTE
7735 | OPTI_TYPE_PRECOMPUTE_INIT
7736 | OPTI_TYPE_PRECOMPUTE_MERKLE
7737 | OPTI_TYPE_EARLY_SKIP
7738 | OPTI_TYPE_NOT_ITERATED
7739 | OPTI_TYPE_PREPENDED_SALT
7740 | OPTI_TYPE_RAW_HASH;
7741 dgst_pos0 = 3;
7742 dgst_pos1 = 7;
7743 dgst_pos2 = 2;
7744 dgst_pos3 = 6;
7745 break;
7746
7747 case 1430: hash_type = HASH_TYPE_SHA256;
7748 salt_type = SALT_TYPE_INTERN;
7749 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7750 opts_type = OPTS_TYPE_PT_GENERATE_BE
7751 | OPTS_TYPE_PT_UNICODE
7752 | OPTS_TYPE_ST_ADD80
7753 | OPTS_TYPE_ST_ADDBITS15;
7754 kern_type = KERN_TYPE_SHA256_PWUSLT;
7755 dgst_size = DGST_SIZE_4_8;
7756 parse_func = sha256s_parse_hash;
7757 sort_by_digest = sort_by_digest_4_8;
7758 opti_type = OPTI_TYPE_ZERO_BYTE
7759 | OPTI_TYPE_PRECOMPUTE_INIT
7760 | OPTI_TYPE_PRECOMPUTE_MERKLE
7761 | OPTI_TYPE_EARLY_SKIP
7762 | OPTI_TYPE_NOT_ITERATED
7763 | OPTI_TYPE_APPENDED_SALT
7764 | OPTI_TYPE_RAW_HASH;
7765 dgst_pos0 = 3;
7766 dgst_pos1 = 7;
7767 dgst_pos2 = 2;
7768 dgst_pos3 = 6;
7769 break;
7770
7771 case 1440: hash_type = HASH_TYPE_SHA256;
7772 salt_type = SALT_TYPE_INTERN;
7773 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7774 opts_type = OPTS_TYPE_PT_GENERATE_BE
7775 | OPTS_TYPE_PT_ADD80
7776 | OPTS_TYPE_PT_ADDBITS15
7777 | OPTS_TYPE_PT_UNICODE;
7778 kern_type = KERN_TYPE_SHA256_SLTPWU;
7779 dgst_size = DGST_SIZE_4_8;
7780 parse_func = sha256s_parse_hash;
7781 sort_by_digest = sort_by_digest_4_8;
7782 opti_type = OPTI_TYPE_ZERO_BYTE
7783 | OPTI_TYPE_PRECOMPUTE_INIT
7784 | OPTI_TYPE_PRECOMPUTE_MERKLE
7785 | OPTI_TYPE_EARLY_SKIP
7786 | OPTI_TYPE_NOT_ITERATED
7787 | OPTI_TYPE_PREPENDED_SALT
7788 | OPTI_TYPE_RAW_HASH;
7789 dgst_pos0 = 3;
7790 dgst_pos1 = 7;
7791 dgst_pos2 = 2;
7792 dgst_pos3 = 6;
7793 break;
7794
7795 case 1441: hash_type = HASH_TYPE_SHA256;
7796 salt_type = SALT_TYPE_EMBEDDED;
7797 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7798 opts_type = OPTS_TYPE_PT_GENERATE_BE
7799 | OPTS_TYPE_PT_ADD80
7800 | OPTS_TYPE_PT_ADDBITS15
7801 | OPTS_TYPE_PT_UNICODE
7802 | OPTS_TYPE_ST_BASE64;
7803 kern_type = KERN_TYPE_SHA256_SLTPWU;
7804 dgst_size = DGST_SIZE_4_8;
7805 parse_func = episerver4_parse_hash;
7806 sort_by_digest = sort_by_digest_4_8;
7807 opti_type = OPTI_TYPE_ZERO_BYTE
7808 | OPTI_TYPE_PRECOMPUTE_INIT
7809 | OPTI_TYPE_PRECOMPUTE_MERKLE
7810 | OPTI_TYPE_EARLY_SKIP
7811 | OPTI_TYPE_NOT_ITERATED
7812 | OPTI_TYPE_PREPENDED_SALT
7813 | OPTI_TYPE_RAW_HASH;
7814 dgst_pos0 = 3;
7815 dgst_pos1 = 7;
7816 dgst_pos2 = 2;
7817 dgst_pos3 = 6;
7818 break;
7819
7820 case 1450: hash_type = HASH_TYPE_SHA256;
7821 salt_type = SALT_TYPE_INTERN;
7822 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7823 opts_type = OPTS_TYPE_PT_GENERATE_BE
7824 | OPTS_TYPE_ST_ADD80;
7825 kern_type = KERN_TYPE_HMACSHA256_PW;
7826 dgst_size = DGST_SIZE_4_8;
7827 parse_func = hmacsha256_parse_hash;
7828 sort_by_digest = sort_by_digest_4_8;
7829 opti_type = OPTI_TYPE_ZERO_BYTE
7830 | OPTI_TYPE_NOT_ITERATED;
7831 dgst_pos0 = 3;
7832 dgst_pos1 = 7;
7833 dgst_pos2 = 2;
7834 dgst_pos3 = 6;
7835 break;
7836
7837 case 1460: hash_type = HASH_TYPE_SHA256;
7838 salt_type = SALT_TYPE_INTERN;
7839 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7840 opts_type = OPTS_TYPE_PT_GENERATE_BE
7841 | OPTS_TYPE_PT_ADD80
7842 | OPTS_TYPE_PT_ADDBITS15;
7843 kern_type = KERN_TYPE_HMACSHA256_SLT;
7844 dgst_size = DGST_SIZE_4_8;
7845 parse_func = hmacsha256_parse_hash;
7846 sort_by_digest = sort_by_digest_4_8;
7847 opti_type = OPTI_TYPE_ZERO_BYTE
7848 | OPTI_TYPE_NOT_ITERATED;
7849 dgst_pos0 = 3;
7850 dgst_pos1 = 7;
7851 dgst_pos2 = 2;
7852 dgst_pos3 = 6;
7853 break;
7854
7855 case 1500: hash_type = HASH_TYPE_DESCRYPT;
7856 salt_type = SALT_TYPE_EMBEDDED;
7857 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7858 opts_type = OPTS_TYPE_PT_GENERATE_LE
7859 | OPTS_TYPE_PT_BITSLICE;
7860 kern_type = KERN_TYPE_DESCRYPT;
7861 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
7862 parse_func = descrypt_parse_hash;
7863 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
7864 opti_type = OPTI_TYPE_ZERO_BYTE
7865 | OPTI_TYPE_PRECOMPUTE_PERMUT;
7866 dgst_pos0 = 0;
7867 dgst_pos1 = 1;
7868 dgst_pos2 = 2;
7869 dgst_pos3 = 3;
7870 break;
7871
7872 case 1600: hash_type = HASH_TYPE_MD5;
7873 salt_type = SALT_TYPE_EMBEDDED;
7874 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7875 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7876 kern_type = KERN_TYPE_APR1CRYPT;
7877 dgst_size = DGST_SIZE_4_4;
7878 parse_func = md5apr1_parse_hash;
7879 sort_by_digest = sort_by_digest_4_4;
7880 opti_type = OPTI_TYPE_ZERO_BYTE;
7881 dgst_pos0 = 0;
7882 dgst_pos1 = 1;
7883 dgst_pos2 = 2;
7884 dgst_pos3 = 3;
7885 break;
7886
7887 case 1700: hash_type = HASH_TYPE_SHA512;
7888 salt_type = SALT_TYPE_NONE;
7889 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7890 opts_type = OPTS_TYPE_PT_GENERATE_BE
7891 | OPTS_TYPE_PT_ADD80
7892 | OPTS_TYPE_PT_ADDBITS15;
7893 kern_type = KERN_TYPE_SHA512;
7894 dgst_size = DGST_SIZE_8_8;
7895 parse_func = sha512_parse_hash;
7896 sort_by_digest = sort_by_digest_8_8;
7897 opti_type = OPTI_TYPE_ZERO_BYTE
7898 | OPTI_TYPE_PRECOMPUTE_INIT
7899 | OPTI_TYPE_PRECOMPUTE_MERKLE
7900 | OPTI_TYPE_EARLY_SKIP
7901 | OPTI_TYPE_NOT_ITERATED
7902 | OPTI_TYPE_NOT_SALTED
7903 | OPTI_TYPE_USES_BITS_64
7904 | OPTI_TYPE_RAW_HASH;
7905 dgst_pos0 = 14;
7906 dgst_pos1 = 15;
7907 dgst_pos2 = 6;
7908 dgst_pos3 = 7;
7909 break;
7910
7911 case 1710: hash_type = HASH_TYPE_SHA512;
7912 salt_type = SALT_TYPE_INTERN;
7913 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7914 opts_type = OPTS_TYPE_PT_GENERATE_BE
7915 | OPTS_TYPE_ST_ADD80
7916 | OPTS_TYPE_ST_ADDBITS15;
7917 kern_type = KERN_TYPE_SHA512_PWSLT;
7918 dgst_size = DGST_SIZE_8_8;
7919 parse_func = sha512s_parse_hash;
7920 sort_by_digest = sort_by_digest_8_8;
7921 opti_type = OPTI_TYPE_ZERO_BYTE
7922 | OPTI_TYPE_PRECOMPUTE_INIT
7923 | OPTI_TYPE_PRECOMPUTE_MERKLE
7924 | OPTI_TYPE_EARLY_SKIP
7925 | OPTI_TYPE_NOT_ITERATED
7926 | OPTI_TYPE_APPENDED_SALT
7927 | OPTI_TYPE_USES_BITS_64
7928 | OPTI_TYPE_RAW_HASH;
7929 dgst_pos0 = 14;
7930 dgst_pos1 = 15;
7931 dgst_pos2 = 6;
7932 dgst_pos3 = 7;
7933 break;
7934
7935 case 1711: hash_type = HASH_TYPE_SHA512;
7936 salt_type = SALT_TYPE_EMBEDDED;
7937 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7938 opts_type = OPTS_TYPE_PT_GENERATE_BE
7939 | OPTS_TYPE_ST_ADD80
7940 | OPTS_TYPE_ST_ADDBITS15;
7941 kern_type = KERN_TYPE_SHA512_PWSLT;
7942 dgst_size = DGST_SIZE_8_8;
7943 parse_func = sha512b64s_parse_hash;
7944 sort_by_digest = sort_by_digest_8_8;
7945 opti_type = OPTI_TYPE_ZERO_BYTE
7946 | OPTI_TYPE_PRECOMPUTE_INIT
7947 | OPTI_TYPE_PRECOMPUTE_MERKLE
7948 | OPTI_TYPE_EARLY_SKIP
7949 | OPTI_TYPE_NOT_ITERATED
7950 | OPTI_TYPE_APPENDED_SALT
7951 | OPTI_TYPE_USES_BITS_64
7952 | OPTI_TYPE_RAW_HASH;
7953 dgst_pos0 = 14;
7954 dgst_pos1 = 15;
7955 dgst_pos2 = 6;
7956 dgst_pos3 = 7;
7957 break;
7958
7959 case 1720: hash_type = HASH_TYPE_SHA512;
7960 salt_type = SALT_TYPE_INTERN;
7961 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7962 opts_type = OPTS_TYPE_PT_GENERATE_BE
7963 | OPTS_TYPE_PT_ADD80
7964 | OPTS_TYPE_PT_ADDBITS15;
7965 kern_type = KERN_TYPE_SHA512_SLTPW;
7966 dgst_size = DGST_SIZE_8_8;
7967 parse_func = sha512s_parse_hash;
7968 sort_by_digest = sort_by_digest_8_8;
7969 opti_type = OPTI_TYPE_ZERO_BYTE
7970 | OPTI_TYPE_PRECOMPUTE_INIT
7971 | OPTI_TYPE_PRECOMPUTE_MERKLE
7972 | OPTI_TYPE_EARLY_SKIP
7973 | OPTI_TYPE_NOT_ITERATED
7974 | OPTI_TYPE_PREPENDED_SALT
7975 | OPTI_TYPE_USES_BITS_64
7976 | OPTI_TYPE_RAW_HASH;
7977 dgst_pos0 = 14;
7978 dgst_pos1 = 15;
7979 dgst_pos2 = 6;
7980 dgst_pos3 = 7;
7981 break;
7982
7983 case 1722: hash_type = HASH_TYPE_SHA512;
7984 salt_type = SALT_TYPE_EMBEDDED;
7985 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7986 opts_type = OPTS_TYPE_PT_GENERATE_BE
7987 | OPTS_TYPE_PT_ADD80
7988 | OPTS_TYPE_PT_ADDBITS15
7989 | OPTS_TYPE_ST_HEX;
7990 kern_type = KERN_TYPE_SHA512_SLTPW;
7991 dgst_size = DGST_SIZE_8_8;
7992 parse_func = osx512_parse_hash;
7993 sort_by_digest = sort_by_digest_8_8;
7994 opti_type = OPTI_TYPE_ZERO_BYTE
7995 | OPTI_TYPE_PRECOMPUTE_INIT
7996 | OPTI_TYPE_PRECOMPUTE_MERKLE
7997 | OPTI_TYPE_EARLY_SKIP
7998 | OPTI_TYPE_NOT_ITERATED
7999 | OPTI_TYPE_PREPENDED_SALT
8000 | OPTI_TYPE_USES_BITS_64
8001 | OPTI_TYPE_RAW_HASH;
8002 dgst_pos0 = 14;
8003 dgst_pos1 = 15;
8004 dgst_pos2 = 6;
8005 dgst_pos3 = 7;
8006 break;
8007
8008 case 1730: hash_type = HASH_TYPE_SHA512;
8009 salt_type = SALT_TYPE_INTERN;
8010 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8011 opts_type = OPTS_TYPE_PT_GENERATE_BE
8012 | OPTS_TYPE_PT_UNICODE
8013 | OPTS_TYPE_ST_ADD80
8014 | OPTS_TYPE_ST_ADDBITS15;
8015 kern_type = KERN_TYPE_SHA512_PWSLTU;
8016 dgst_size = DGST_SIZE_8_8;
8017 parse_func = sha512s_parse_hash;
8018 sort_by_digest = sort_by_digest_8_8;
8019 opti_type = OPTI_TYPE_ZERO_BYTE
8020 | OPTI_TYPE_PRECOMPUTE_INIT
8021 | OPTI_TYPE_PRECOMPUTE_MERKLE
8022 | OPTI_TYPE_EARLY_SKIP
8023 | OPTI_TYPE_NOT_ITERATED
8024 | OPTI_TYPE_APPENDED_SALT
8025 | OPTI_TYPE_USES_BITS_64
8026 | OPTI_TYPE_RAW_HASH;
8027 dgst_pos0 = 14;
8028 dgst_pos1 = 15;
8029 dgst_pos2 = 6;
8030 dgst_pos3 = 7;
8031 break;
8032
8033 case 1731: hash_type = HASH_TYPE_SHA512;
8034 salt_type = SALT_TYPE_EMBEDDED;
8035 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8036 opts_type = OPTS_TYPE_PT_GENERATE_BE
8037 | OPTS_TYPE_PT_UNICODE
8038 | OPTS_TYPE_ST_ADD80
8039 | OPTS_TYPE_ST_ADDBITS15
8040 | OPTS_TYPE_ST_HEX;
8041 kern_type = KERN_TYPE_SHA512_PWSLTU;
8042 dgst_size = DGST_SIZE_8_8;
8043 parse_func = mssql2012_parse_hash;
8044 sort_by_digest = sort_by_digest_8_8;
8045 opti_type = OPTI_TYPE_ZERO_BYTE
8046 | OPTI_TYPE_PRECOMPUTE_INIT
8047 | OPTI_TYPE_PRECOMPUTE_MERKLE
8048 | OPTI_TYPE_EARLY_SKIP
8049 | OPTI_TYPE_NOT_ITERATED
8050 | OPTI_TYPE_APPENDED_SALT
8051 | OPTI_TYPE_USES_BITS_64
8052 | OPTI_TYPE_RAW_HASH;
8053 dgst_pos0 = 14;
8054 dgst_pos1 = 15;
8055 dgst_pos2 = 6;
8056 dgst_pos3 = 7;
8057 break;
8058
8059 case 1740: hash_type = HASH_TYPE_SHA512;
8060 salt_type = SALT_TYPE_INTERN;
8061 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8062 opts_type = OPTS_TYPE_PT_GENERATE_BE
8063 | OPTS_TYPE_PT_ADD80
8064 | OPTS_TYPE_PT_ADDBITS15
8065 | OPTS_TYPE_PT_UNICODE;
8066 kern_type = KERN_TYPE_SHA512_SLTPWU;
8067 dgst_size = DGST_SIZE_8_8;
8068 parse_func = sha512s_parse_hash;
8069 sort_by_digest = sort_by_digest_8_8;
8070 opti_type = OPTI_TYPE_ZERO_BYTE
8071 | OPTI_TYPE_PRECOMPUTE_INIT
8072 | OPTI_TYPE_PRECOMPUTE_MERKLE
8073 | OPTI_TYPE_EARLY_SKIP
8074 | OPTI_TYPE_NOT_ITERATED
8075 | OPTI_TYPE_PREPENDED_SALT
8076 | OPTI_TYPE_USES_BITS_64
8077 | OPTI_TYPE_RAW_HASH;
8078 dgst_pos0 = 14;
8079 dgst_pos1 = 15;
8080 dgst_pos2 = 6;
8081 dgst_pos3 = 7;
8082 break;
8083
8084 case 1750: hash_type = HASH_TYPE_SHA512;
8085 salt_type = SALT_TYPE_INTERN;
8086 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8087 opts_type = OPTS_TYPE_PT_GENERATE_BE
8088 | OPTS_TYPE_ST_ADD80;
8089 kern_type = KERN_TYPE_HMACSHA512_PW;
8090 dgst_size = DGST_SIZE_8_8;
8091 parse_func = hmacsha512_parse_hash;
8092 sort_by_digest = sort_by_digest_8_8;
8093 opti_type = OPTI_TYPE_ZERO_BYTE
8094 | OPTI_TYPE_USES_BITS_64
8095 | OPTI_TYPE_NOT_ITERATED;
8096 dgst_pos0 = 14;
8097 dgst_pos1 = 15;
8098 dgst_pos2 = 6;
8099 dgst_pos3 = 7;
8100 break;
8101
8102 case 1760: hash_type = HASH_TYPE_SHA512;
8103 salt_type = SALT_TYPE_INTERN;
8104 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8105 opts_type = OPTS_TYPE_PT_GENERATE_BE
8106 | OPTS_TYPE_PT_ADD80
8107 | OPTS_TYPE_PT_ADDBITS15;
8108 kern_type = KERN_TYPE_HMACSHA512_SLT;
8109 dgst_size = DGST_SIZE_8_8;
8110 parse_func = hmacsha512_parse_hash;
8111 sort_by_digest = sort_by_digest_8_8;
8112 opti_type = OPTI_TYPE_ZERO_BYTE
8113 | OPTI_TYPE_USES_BITS_64
8114 | OPTI_TYPE_NOT_ITERATED;
8115 dgst_pos0 = 14;
8116 dgst_pos1 = 15;
8117 dgst_pos2 = 6;
8118 dgst_pos3 = 7;
8119 break;
8120
8121 case 1800: hash_type = HASH_TYPE_SHA512;
8122 salt_type = SALT_TYPE_EMBEDDED;
8123 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8124 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8125 kern_type = KERN_TYPE_SHA512CRYPT;
8126 dgst_size = DGST_SIZE_8_8;
8127 parse_func = sha512crypt_parse_hash;
8128 sort_by_digest = sort_by_digest_8_8;
8129 opti_type = OPTI_TYPE_ZERO_BYTE
8130 | OPTI_TYPE_USES_BITS_64;
8131 dgst_pos0 = 0;
8132 dgst_pos1 = 1;
8133 dgst_pos2 = 2;
8134 dgst_pos3 = 3;
8135 break;
8136
8137 case 2100: hash_type = HASH_TYPE_DCC2;
8138 salt_type = SALT_TYPE_EMBEDDED;
8139 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8140 opts_type = OPTS_TYPE_PT_GENERATE_LE // should be OPTS_TYPE_PT_GENERATE_BE
8141 | OPTS_TYPE_ST_LOWER
8142 | OPTS_TYPE_ST_UNICODE;
8143 kern_type = KERN_TYPE_DCC2;
8144 dgst_size = DGST_SIZE_4_4;
8145 parse_func = dcc2_parse_hash;
8146 sort_by_digest = sort_by_digest_4_4;
8147 opti_type = OPTI_TYPE_ZERO_BYTE;
8148 dgst_pos0 = 0;
8149 dgst_pos1 = 1;
8150 dgst_pos2 = 2;
8151 dgst_pos3 = 3;
8152 break;
8153
8154 case 2400: hash_type = HASH_TYPE_MD5;
8155 salt_type = SALT_TYPE_NONE;
8156 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8157 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8158 kern_type = KERN_TYPE_MD5PIX;
8159 dgst_size = DGST_SIZE_4_4;
8160 parse_func = md5pix_parse_hash;
8161 sort_by_digest = sort_by_digest_4_4;
8162 opti_type = OPTI_TYPE_ZERO_BYTE
8163 | OPTI_TYPE_PRECOMPUTE_INIT
8164 | OPTI_TYPE_PRECOMPUTE_MERKLE
8165 | OPTI_TYPE_EARLY_SKIP
8166 | OPTI_TYPE_NOT_ITERATED
8167 | OPTI_TYPE_NOT_SALTED;
8168 dgst_pos0 = 0;
8169 dgst_pos1 = 3;
8170 dgst_pos2 = 2;
8171 dgst_pos3 = 1;
8172 break;
8173
8174 case 2410: hash_type = HASH_TYPE_MD5;
8175 salt_type = SALT_TYPE_INTERN;
8176 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8177 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8178 kern_type = KERN_TYPE_MD5ASA;
8179 dgst_size = DGST_SIZE_4_4;
8180 parse_func = md5asa_parse_hash;
8181 sort_by_digest = sort_by_digest_4_4;
8182 opti_type = OPTI_TYPE_ZERO_BYTE
8183 | OPTI_TYPE_PRECOMPUTE_INIT
8184 | OPTI_TYPE_PRECOMPUTE_MERKLE
8185 | OPTI_TYPE_EARLY_SKIP
8186 | OPTI_TYPE_NOT_ITERATED;
8187 dgst_pos0 = 0;
8188 dgst_pos1 = 3;
8189 dgst_pos2 = 2;
8190 dgst_pos3 = 1;
8191 break;
8192
8193 case 2500: hash_type = HASH_TYPE_WPA;
8194 salt_type = SALT_TYPE_EMBEDDED;
8195 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8196 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8197 kern_type = KERN_TYPE_WPA;
8198 dgst_size = DGST_SIZE_4_4;
8199 parse_func = wpa_parse_hash;
8200 sort_by_digest = sort_by_digest_4_4;
8201 opti_type = OPTI_TYPE_ZERO_BYTE;
8202 dgst_pos0 = 0;
8203 dgst_pos1 = 1;
8204 dgst_pos2 = 2;
8205 dgst_pos3 = 3;
8206 break;
8207
8208 case 2600: hash_type = HASH_TYPE_MD5;
8209 salt_type = SALT_TYPE_VIRTUAL;
8210 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8211 opts_type = OPTS_TYPE_PT_GENERATE_LE
8212 | OPTS_TYPE_PT_ADD80
8213 | OPTS_TYPE_PT_ADDBITS14
8214 | OPTS_TYPE_ST_ADD80;
8215 kern_type = KERN_TYPE_MD55_PWSLT1;
8216 dgst_size = DGST_SIZE_4_4;
8217 parse_func = md5md5_parse_hash;
8218 sort_by_digest = sort_by_digest_4_4;
8219 opti_type = OPTI_TYPE_ZERO_BYTE
8220 | OPTI_TYPE_PRECOMPUTE_INIT
8221 | OPTI_TYPE_PRECOMPUTE_MERKLE
8222 | OPTI_TYPE_EARLY_SKIP;
8223 dgst_pos0 = 0;
8224 dgst_pos1 = 3;
8225 dgst_pos2 = 2;
8226 dgst_pos3 = 1;
8227 break;
8228
8229 case 2611: hash_type = HASH_TYPE_MD5;
8230 salt_type = SALT_TYPE_INTERN;
8231 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8232 opts_type = OPTS_TYPE_PT_GENERATE_LE
8233 | OPTS_TYPE_PT_ADD80
8234 | OPTS_TYPE_PT_ADDBITS14
8235 | OPTS_TYPE_ST_ADD80;
8236 kern_type = KERN_TYPE_MD55_PWSLT1;
8237 dgst_size = DGST_SIZE_4_4;
8238 parse_func = vb3_parse_hash;
8239 sort_by_digest = sort_by_digest_4_4;
8240 opti_type = OPTI_TYPE_ZERO_BYTE
8241 | OPTI_TYPE_PRECOMPUTE_INIT
8242 | OPTI_TYPE_PRECOMPUTE_MERKLE
8243 | OPTI_TYPE_EARLY_SKIP;
8244 dgst_pos0 = 0;
8245 dgst_pos1 = 3;
8246 dgst_pos2 = 2;
8247 dgst_pos3 = 1;
8248 break;
8249
8250 case 2612: hash_type = HASH_TYPE_MD5;
8251 salt_type = SALT_TYPE_EMBEDDED;
8252 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8253 opts_type = OPTS_TYPE_PT_GENERATE_LE
8254 | OPTS_TYPE_PT_ADD80
8255 | OPTS_TYPE_PT_ADDBITS14
8256 | OPTS_TYPE_ST_ADD80
8257 | OPTS_TYPE_ST_HEX;
8258 kern_type = KERN_TYPE_MD55_PWSLT1;
8259 dgst_size = DGST_SIZE_4_4;
8260 parse_func = phps_parse_hash;
8261 sort_by_digest = sort_by_digest_4_4;
8262 opti_type = OPTI_TYPE_ZERO_BYTE
8263 | OPTI_TYPE_PRECOMPUTE_INIT
8264 | OPTI_TYPE_PRECOMPUTE_MERKLE
8265 | OPTI_TYPE_EARLY_SKIP;
8266 dgst_pos0 = 0;
8267 dgst_pos1 = 3;
8268 dgst_pos2 = 2;
8269 dgst_pos3 = 1;
8270 break;
8271
8272 case 2711: hash_type = HASH_TYPE_MD5;
8273 salt_type = SALT_TYPE_INTERN;
8274 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8275 opts_type = OPTS_TYPE_PT_GENERATE_LE
8276 | OPTS_TYPE_PT_ADD80
8277 | OPTS_TYPE_PT_ADDBITS14
8278 | OPTS_TYPE_ST_ADD80;
8279 kern_type = KERN_TYPE_MD55_PWSLT2;
8280 dgst_size = DGST_SIZE_4_4;
8281 parse_func = vb30_parse_hash;
8282 sort_by_digest = sort_by_digest_4_4;
8283 opti_type = OPTI_TYPE_ZERO_BYTE
8284 | OPTI_TYPE_PRECOMPUTE_INIT
8285 | OPTI_TYPE_EARLY_SKIP;
8286 dgst_pos0 = 0;
8287 dgst_pos1 = 3;
8288 dgst_pos2 = 2;
8289 dgst_pos3 = 1;
8290 break;
8291
8292 case 2811: hash_type = HASH_TYPE_MD5;
8293 salt_type = SALT_TYPE_INTERN;
8294 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8295 opts_type = OPTS_TYPE_PT_GENERATE_LE
8296 | OPTS_TYPE_PT_ADD80
8297 | OPTS_TYPE_PT_ADDBITS14;
8298 kern_type = KERN_TYPE_MD55_SLTPW;
8299 dgst_size = DGST_SIZE_4_4;
8300 parse_func = ipb2_parse_hash;
8301 sort_by_digest = sort_by_digest_4_4;
8302 opti_type = OPTI_TYPE_ZERO_BYTE
8303 | OPTI_TYPE_PRECOMPUTE_INIT
8304 | OPTI_TYPE_EARLY_SKIP;
8305 dgst_pos0 = 0;
8306 dgst_pos1 = 3;
8307 dgst_pos2 = 2;
8308 dgst_pos3 = 1;
8309 break;
8310
8311 case 3000: hash_type = HASH_TYPE_LM;
8312 salt_type = SALT_TYPE_NONE;
8313 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8314 opts_type = OPTS_TYPE_PT_GENERATE_LE
8315 | OPTS_TYPE_PT_UPPER
8316 | OPTS_TYPE_PT_BITSLICE;
8317 kern_type = KERN_TYPE_LM;
8318 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8319 parse_func = lm_parse_hash;
8320 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8321 opti_type = OPTI_TYPE_ZERO_BYTE
8322 | OPTI_TYPE_PRECOMPUTE_PERMUT;
8323 dgst_pos0 = 0;
8324 dgst_pos1 = 1;
8325 dgst_pos2 = 2;
8326 dgst_pos3 = 3;
8327 break;
8328
8329 case 3100: hash_type = HASH_TYPE_ORACLEH;
8330 salt_type = SALT_TYPE_INTERN;
8331 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8332 opts_type = OPTS_TYPE_PT_GENERATE_LE
8333 | OPTS_TYPE_PT_UPPER
8334 | OPTS_TYPE_ST_UPPER;
8335 kern_type = KERN_TYPE_ORACLEH;
8336 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8337 parse_func = oracleh_parse_hash;
8338 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8339 opti_type = OPTI_TYPE_ZERO_BYTE;
8340 dgst_pos0 = 0;
8341 dgst_pos1 = 1;
8342 dgst_pos2 = 2;
8343 dgst_pos3 = 3;
8344 break;
8345
8346 case 3200: hash_type = HASH_TYPE_BCRYPT;
8347 salt_type = SALT_TYPE_EMBEDDED;
8348 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8349 opts_type = OPTS_TYPE_PT_GENERATE_LE
8350 | OPTS_TYPE_ST_GENERATE_LE;
8351 kern_type = KERN_TYPE_BCRYPT;
8352 dgst_size = DGST_SIZE_4_6;
8353 parse_func = bcrypt_parse_hash;
8354 sort_by_digest = sort_by_digest_4_6;
8355 opti_type = OPTI_TYPE_ZERO_BYTE;
8356 dgst_pos0 = 0;
8357 dgst_pos1 = 1;
8358 dgst_pos2 = 2;
8359 dgst_pos3 = 3;
8360 break;
8361
8362 case 3710: hash_type = HASH_TYPE_MD5;
8363 salt_type = SALT_TYPE_INTERN;
8364 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8365 opts_type = OPTS_TYPE_PT_GENERATE_LE
8366 | OPTS_TYPE_PT_ADD80
8367 | OPTS_TYPE_PT_ADDBITS14;
8368 kern_type = KERN_TYPE_MD5_SLT_MD5_PW;
8369 dgst_size = DGST_SIZE_4_4;
8370 parse_func = md5s_parse_hash;
8371 sort_by_digest = sort_by_digest_4_4;
8372 opti_type = OPTI_TYPE_ZERO_BYTE
8373 | OPTI_TYPE_PRECOMPUTE_INIT
8374 | OPTI_TYPE_PRECOMPUTE_MERKLE
8375 | OPTI_TYPE_EARLY_SKIP;
8376 dgst_pos0 = 0;
8377 dgst_pos1 = 3;
8378 dgst_pos2 = 2;
8379 dgst_pos3 = 1;
8380 break;
8381
8382 case 3711: hash_type = HASH_TYPE_MD5;
8383 salt_type = SALT_TYPE_EMBEDDED;
8384 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8385 opts_type = OPTS_TYPE_PT_GENERATE_LE
8386 | OPTS_TYPE_PT_ADD80
8387 | OPTS_TYPE_PT_ADDBITS14;
8388 kern_type = KERN_TYPE_MD5_SLT_MD5_PW;
8389 dgst_size = DGST_SIZE_4_4;
8390 parse_func = mediawiki_b_parse_hash;
8391 sort_by_digest = sort_by_digest_4_4;
8392 opti_type = OPTI_TYPE_ZERO_BYTE
8393 | OPTI_TYPE_PRECOMPUTE_INIT
8394 | OPTI_TYPE_PRECOMPUTE_MERKLE
8395 | OPTI_TYPE_EARLY_SKIP;
8396 dgst_pos0 = 0;
8397 dgst_pos1 = 3;
8398 dgst_pos2 = 2;
8399 dgst_pos3 = 1;
8400 break;
8401
8402 case 3800: hash_type = HASH_TYPE_MD5;
8403 salt_type = SALT_TYPE_INTERN;
8404 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8405 opts_type = OPTS_TYPE_PT_GENERATE_LE
8406 | OPTS_TYPE_ST_ADDBITS14;
8407 kern_type = KERN_TYPE_MD5_SLT_PW_SLT;
8408 dgst_size = DGST_SIZE_4_4;
8409 parse_func = md5s_parse_hash;
8410 sort_by_digest = sort_by_digest_4_4;
8411 opti_type = OPTI_TYPE_ZERO_BYTE
8412 | OPTI_TYPE_PRECOMPUTE_INIT
8413 | OPTI_TYPE_PRECOMPUTE_MERKLE
8414 | OPTI_TYPE_EARLY_SKIP
8415 | OPTI_TYPE_NOT_ITERATED
8416 | OPTI_TYPE_RAW_HASH;
8417 dgst_pos0 = 0;
8418 dgst_pos1 = 3;
8419 dgst_pos2 = 2;
8420 dgst_pos3 = 1;
8421 break;
8422
8423 case 4300: hash_type = HASH_TYPE_MD5;
8424 salt_type = SALT_TYPE_VIRTUAL;
8425 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8426 opts_type = OPTS_TYPE_PT_GENERATE_LE
8427 | OPTS_TYPE_PT_ADD80
8428 | OPTS_TYPE_PT_ADDBITS14
8429 | OPTS_TYPE_ST_ADD80;
8430 kern_type = KERN_TYPE_MD5U5_PWSLT1;
8431 dgst_size = DGST_SIZE_4_4;
8432 parse_func = md5md5_parse_hash;
8433 sort_by_digest = sort_by_digest_4_4;
8434 opti_type = OPTI_TYPE_ZERO_BYTE
8435 | OPTI_TYPE_PRECOMPUTE_INIT
8436 | OPTI_TYPE_PRECOMPUTE_MERKLE
8437 | OPTI_TYPE_EARLY_SKIP;
8438 dgst_pos0 = 0;
8439 dgst_pos1 = 3;
8440 dgst_pos2 = 2;
8441 dgst_pos3 = 1;
8442 break;
8443
8444
8445 case 4400: hash_type = HASH_TYPE_MD5;
8446 salt_type = SALT_TYPE_NONE;
8447 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8448 opts_type = OPTS_TYPE_PT_GENERATE_BE
8449 | OPTS_TYPE_PT_ADD80
8450 | OPTS_TYPE_PT_ADDBITS15;
8451 kern_type = KERN_TYPE_MD5_SHA1;
8452 dgst_size = DGST_SIZE_4_4;
8453 parse_func = md5_parse_hash;
8454 sort_by_digest = sort_by_digest_4_4;
8455 opti_type = OPTI_TYPE_ZERO_BYTE
8456 | OPTI_TYPE_PRECOMPUTE_INIT
8457 | OPTI_TYPE_PRECOMPUTE_MERKLE
8458 | OPTI_TYPE_EARLY_SKIP
8459 | OPTI_TYPE_NOT_ITERATED
8460 | OPTI_TYPE_NOT_SALTED
8461 | OPTI_TYPE_RAW_HASH;
8462 dgst_pos0 = 0;
8463 dgst_pos1 = 3;
8464 dgst_pos2 = 2;
8465 dgst_pos3 = 1;
8466 break;
8467
8468 case 4500: hash_type = HASH_TYPE_SHA1;
8469 salt_type = SALT_TYPE_NONE;
8470 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8471 opts_type = OPTS_TYPE_PT_GENERATE_BE
8472 | OPTS_TYPE_PT_ADD80
8473 | OPTS_TYPE_PT_ADDBITS15;
8474 kern_type = KERN_TYPE_SHA11;
8475 dgst_size = DGST_SIZE_4_5;
8476 parse_func = sha1_parse_hash;
8477 sort_by_digest = sort_by_digest_4_5;
8478 opti_type = OPTI_TYPE_ZERO_BYTE
8479 | OPTI_TYPE_PRECOMPUTE_INIT
8480 | OPTI_TYPE_PRECOMPUTE_MERKLE
8481 | OPTI_TYPE_EARLY_SKIP
8482 | OPTI_TYPE_NOT_SALTED;
8483 dgst_pos0 = 3;
8484 dgst_pos1 = 4;
8485 dgst_pos2 = 2;
8486 dgst_pos3 = 1;
8487 break;
8488
8489 case 4700: hash_type = HASH_TYPE_SHA1;
8490 salt_type = SALT_TYPE_NONE;
8491 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8492 opts_type = OPTS_TYPE_PT_GENERATE_LE
8493 | OPTS_TYPE_PT_ADD80
8494 | OPTS_TYPE_PT_ADDBITS14;
8495 kern_type = KERN_TYPE_SHA1_MD5;
8496 dgst_size = DGST_SIZE_4_5;
8497 parse_func = sha1_parse_hash;
8498 sort_by_digest = sort_by_digest_4_5;
8499 opti_type = OPTI_TYPE_ZERO_BYTE
8500 | OPTI_TYPE_PRECOMPUTE_INIT
8501 | OPTI_TYPE_PRECOMPUTE_MERKLE
8502 | OPTI_TYPE_EARLY_SKIP
8503 | OPTI_TYPE_NOT_ITERATED
8504 | OPTI_TYPE_NOT_SALTED
8505 | OPTI_TYPE_RAW_HASH;
8506 dgst_pos0 = 3;
8507 dgst_pos1 = 4;
8508 dgst_pos2 = 2;
8509 dgst_pos3 = 1;
8510 break;
8511
8512 case 4800: hash_type = HASH_TYPE_MD5;
8513 salt_type = SALT_TYPE_EMBEDDED;
8514 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8515 opts_type = OPTS_TYPE_PT_GENERATE_LE
8516 | OPTS_TYPE_PT_ADDBITS14;
8517 kern_type = KERN_TYPE_MD5_CHAP;
8518 dgst_size = DGST_SIZE_4_4;
8519 parse_func = chap_parse_hash;
8520 sort_by_digest = sort_by_digest_4_4;
8521 opti_type = OPTI_TYPE_ZERO_BYTE
8522 | OPTI_TYPE_PRECOMPUTE_INIT
8523 | OPTI_TYPE_PRECOMPUTE_MERKLE
8524 | OPTI_TYPE_MEET_IN_MIDDLE
8525 | OPTI_TYPE_EARLY_SKIP
8526 | OPTI_TYPE_NOT_ITERATED
8527 | OPTI_TYPE_RAW_HASH;
8528 dgst_pos0 = 0;
8529 dgst_pos1 = 3;
8530 dgst_pos2 = 2;
8531 dgst_pos3 = 1;
8532 break;
8533
8534 case 4900: hash_type = HASH_TYPE_SHA1;
8535 salt_type = SALT_TYPE_INTERN;
8536 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8537 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8538 kern_type = KERN_TYPE_SHA1_SLT_PW_SLT;
8539 dgst_size = DGST_SIZE_4_5;
8540 parse_func = sha1s_parse_hash;
8541 sort_by_digest = sort_by_digest_4_5;
8542 opti_type = OPTI_TYPE_ZERO_BYTE
8543 | OPTI_TYPE_PRECOMPUTE_INIT
8544 | OPTI_TYPE_PRECOMPUTE_MERKLE
8545 | OPTI_TYPE_EARLY_SKIP;
8546 dgst_pos0 = 3;
8547 dgst_pos1 = 4;
8548 dgst_pos2 = 2;
8549 dgst_pos3 = 1;
8550 break;
8551
8552 case 5000: hash_type = HASH_TYPE_KECCAK;
8553 salt_type = SALT_TYPE_EMBEDDED;
8554 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8555 opts_type = OPTS_TYPE_PT_GENERATE_LE
8556 | OPTS_TYPE_PT_ADD01;
8557 kern_type = KERN_TYPE_KECCAK;
8558 dgst_size = DGST_SIZE_8_25;
8559 parse_func = keccak_parse_hash;
8560 sort_by_digest = sort_by_digest_8_25;
8561 opti_type = OPTI_TYPE_ZERO_BYTE
8562 | OPTI_TYPE_USES_BITS_64
8563 | OPTI_TYPE_RAW_HASH;
8564 dgst_pos0 = 2;
8565 dgst_pos1 = 3;
8566 dgst_pos2 = 4;
8567 dgst_pos3 = 5;
8568 break;
8569
8570 case 5100: hash_type = HASH_TYPE_MD5H;
8571 salt_type = SALT_TYPE_NONE;
8572 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8573 opts_type = OPTS_TYPE_PT_GENERATE_LE
8574 | OPTS_TYPE_PT_ADD80
8575 | OPTS_TYPE_PT_ADDBITS14;
8576 kern_type = KERN_TYPE_MD5H;
8577 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8578 parse_func = md5half_parse_hash;
8579 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8580 opti_type = OPTI_TYPE_ZERO_BYTE
8581 | OPTI_TYPE_RAW_HASH;
8582 dgst_pos0 = 0;
8583 dgst_pos1 = 1;
8584 dgst_pos2 = 2;
8585 dgst_pos3 = 3;
8586 break;
8587
8588 case 5200: hash_type = HASH_TYPE_SHA256;
8589 salt_type = SALT_TYPE_EMBEDDED;
8590 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8591 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8592 kern_type = KERN_TYPE_PSAFE3;
8593 dgst_size = DGST_SIZE_4_8;
8594 parse_func = psafe3_parse_hash;
8595 sort_by_digest = sort_by_digest_4_8;
8596 opti_type = OPTI_TYPE_ZERO_BYTE;
8597 dgst_pos0 = 0;
8598 dgst_pos1 = 1;
8599 dgst_pos2 = 2;
8600 dgst_pos3 = 3;
8601 break;
8602
8603 case 5300: hash_type = HASH_TYPE_MD5;
8604 salt_type = SALT_TYPE_EMBEDDED;
8605 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8606 opts_type = OPTS_TYPE_PT_GENERATE_LE
8607 | OPTS_TYPE_ST_ADD80;
8608 kern_type = KERN_TYPE_IKEPSK_MD5;
8609 dgst_size = DGST_SIZE_4_4;
8610 parse_func = ikepsk_md5_parse_hash;
8611 sort_by_digest = sort_by_digest_4_4;
8612 opti_type = OPTI_TYPE_ZERO_BYTE;
8613 dgst_pos0 = 0;
8614 dgst_pos1 = 3;
8615 dgst_pos2 = 2;
8616 dgst_pos3 = 1;
8617 break;
8618
8619 case 5400: hash_type = HASH_TYPE_SHA1;
8620 salt_type = SALT_TYPE_EMBEDDED;
8621 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8622 opts_type = OPTS_TYPE_PT_GENERATE_BE
8623 | OPTS_TYPE_ST_ADD80;
8624 kern_type = KERN_TYPE_IKEPSK_SHA1;
8625 dgst_size = DGST_SIZE_4_5;
8626 parse_func = ikepsk_sha1_parse_hash;
8627 sort_by_digest = sort_by_digest_4_5;
8628 opti_type = OPTI_TYPE_ZERO_BYTE;
8629 dgst_pos0 = 3;
8630 dgst_pos1 = 4;
8631 dgst_pos2 = 2;
8632 dgst_pos3 = 1;
8633 break;
8634
8635 case 5500: hash_type = HASH_TYPE_NETNTLM;
8636 salt_type = SALT_TYPE_EMBEDDED;
8637 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8638 opts_type = OPTS_TYPE_PT_GENERATE_LE
8639 | OPTS_TYPE_PT_ADD80
8640 | OPTS_TYPE_PT_ADDBITS14
8641 | OPTS_TYPE_PT_UNICODE
8642 | OPTS_TYPE_ST_HEX;
8643 kern_type = KERN_TYPE_NETNTLMv1;
8644 dgst_size = DGST_SIZE_4_4;
8645 parse_func = netntlmv1_parse_hash;
8646 sort_by_digest = sort_by_digest_4_4;
8647 opti_type = OPTI_TYPE_ZERO_BYTE
8648 | OPTI_TYPE_PRECOMPUTE_PERMUT;
8649 dgst_pos0 = 0;
8650 dgst_pos1 = 1;
8651 dgst_pos2 = 2;
8652 dgst_pos3 = 3;
8653 break;
8654
8655 case 5600: hash_type = HASH_TYPE_MD5;
8656 salt_type = SALT_TYPE_EMBEDDED;
8657 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8658 opts_type = OPTS_TYPE_PT_GENERATE_LE
8659 | OPTS_TYPE_PT_ADD80
8660 | OPTS_TYPE_PT_ADDBITS14
8661 | OPTS_TYPE_PT_UNICODE;
8662 kern_type = KERN_TYPE_NETNTLMv2;
8663 dgst_size = DGST_SIZE_4_4;
8664 parse_func = netntlmv2_parse_hash;
8665 sort_by_digest = sort_by_digest_4_4;
8666 opti_type = OPTI_TYPE_ZERO_BYTE;
8667 dgst_pos0 = 0;
8668 dgst_pos1 = 3;
8669 dgst_pos2 = 2;
8670 dgst_pos3 = 1;
8671 break;
8672
8673 case 5700: hash_type = HASH_TYPE_SHA256;
8674 salt_type = SALT_TYPE_NONE;
8675 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8676 opts_type = OPTS_TYPE_PT_GENERATE_BE
8677 | OPTS_TYPE_PT_ADD80
8678 | OPTS_TYPE_PT_ADDBITS15;
8679 kern_type = KERN_TYPE_SHA256;
8680 dgst_size = DGST_SIZE_4_8;
8681 parse_func = cisco4_parse_hash;
8682 sort_by_digest = sort_by_digest_4_8;
8683 opti_type = OPTI_TYPE_ZERO_BYTE
8684 | OPTI_TYPE_PRECOMPUTE_INIT
8685 | OPTI_TYPE_PRECOMPUTE_MERKLE
8686 | OPTI_TYPE_EARLY_SKIP
8687 | OPTI_TYPE_NOT_ITERATED
8688 | OPTI_TYPE_NOT_SALTED
8689 | OPTI_TYPE_RAW_HASH;
8690 dgst_pos0 = 3;
8691 dgst_pos1 = 7;
8692 dgst_pos2 = 2;
8693 dgst_pos3 = 6;
8694 break;
8695
8696 case 5800: hash_type = HASH_TYPE_SHA1;
8697 salt_type = SALT_TYPE_INTERN;
8698 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8699 opts_type = OPTS_TYPE_PT_GENERATE_LE // should be OPTS_TYPE_PT_GENERATE_BE
8700 | OPTS_TYPE_ST_ADD80;
8701 kern_type = KERN_TYPE_ANDROIDPIN;
8702 dgst_size = DGST_SIZE_4_5;
8703 parse_func = androidpin_parse_hash;
8704 sort_by_digest = sort_by_digest_4_5;
8705 opti_type = OPTI_TYPE_ZERO_BYTE;
8706 dgst_pos0 = 0;
8707 dgst_pos1 = 1;
8708 dgst_pos2 = 2;
8709 dgst_pos3 = 3;
8710 break;
8711
8712 case 6000: hash_type = HASH_TYPE_RIPEMD160;
8713 salt_type = SALT_TYPE_NONE;
8714 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8715 opts_type = OPTS_TYPE_PT_GENERATE_LE
8716 | OPTS_TYPE_PT_ADD80;
8717 kern_type = KERN_TYPE_RIPEMD160;
8718 dgst_size = DGST_SIZE_4_5;
8719 parse_func = ripemd160_parse_hash;
8720 sort_by_digest = sort_by_digest_4_5;
8721 opti_type = OPTI_TYPE_ZERO_BYTE;
8722 dgst_pos0 = 0;
8723 dgst_pos1 = 1;
8724 dgst_pos2 = 2;
8725 dgst_pos3 = 3;
8726 break;
8727
8728 case 6100: hash_type = HASH_TYPE_WHIRLPOOL;
8729 salt_type = SALT_TYPE_NONE;
8730 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8731 opts_type = OPTS_TYPE_PT_GENERATE_BE
8732 | OPTS_TYPE_PT_ADD80;
8733 kern_type = KERN_TYPE_WHIRLPOOL;
8734 dgst_size = DGST_SIZE_4_16;
8735 parse_func = whirlpool_parse_hash;
8736 sort_by_digest = sort_by_digest_4_16;
8737 opti_type = OPTI_TYPE_ZERO_BYTE;
8738 dgst_pos0 = 0;
8739 dgst_pos1 = 1;
8740 dgst_pos2 = 2;
8741 dgst_pos3 = 3;
8742 break;
8743
8744 case 6211: hash_type = HASH_TYPE_RIPEMD160;
8745 salt_type = SALT_TYPE_EMBEDDED;
8746 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8747 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8748 kern_type = KERN_TYPE_TCRIPEMD160_XTS512;
8749 dgst_size = DGST_SIZE_4_5;
8750 parse_func = truecrypt_parse_hash_2k;
8751 sort_by_digest = sort_by_digest_4_5;
8752 opti_type = OPTI_TYPE_ZERO_BYTE;
8753 dgst_pos0 = 0;
8754 dgst_pos1 = 1;
8755 dgst_pos2 = 2;
8756 dgst_pos3 = 3;
8757 break;
8758
8759 case 6212: hash_type = HASH_TYPE_RIPEMD160;
8760 salt_type = SALT_TYPE_EMBEDDED;
8761 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8762 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8763 kern_type = KERN_TYPE_TCRIPEMD160_XTS1024;
8764 dgst_size = DGST_SIZE_4_5;
8765 parse_func = truecrypt_parse_hash_2k;
8766 sort_by_digest = sort_by_digest_4_5;
8767 opti_type = OPTI_TYPE_ZERO_BYTE;
8768 dgst_pos0 = 0;
8769 dgst_pos1 = 1;
8770 dgst_pos2 = 2;
8771 dgst_pos3 = 3;
8772 break;
8773
8774 case 6213: hash_type = HASH_TYPE_RIPEMD160;
8775 salt_type = SALT_TYPE_EMBEDDED;
8776 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8777 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8778 kern_type = KERN_TYPE_TCRIPEMD160_XTS1536;
8779 dgst_size = DGST_SIZE_4_5;
8780 parse_func = truecrypt_parse_hash_2k;
8781 sort_by_digest = sort_by_digest_4_5;
8782 opti_type = OPTI_TYPE_ZERO_BYTE;
8783 dgst_pos0 = 0;
8784 dgst_pos1 = 1;
8785 dgst_pos2 = 2;
8786 dgst_pos3 = 3;
8787 break;
8788
8789 case 6221: hash_type = HASH_TYPE_SHA512;
8790 salt_type = SALT_TYPE_EMBEDDED;
8791 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8792 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8793 kern_type = KERN_TYPE_TCSHA512_XTS512;
8794 dgst_size = DGST_SIZE_8_8;
8795 parse_func = truecrypt_parse_hash_1k;
8796 sort_by_digest = sort_by_digest_8_8;
8797 opti_type = OPTI_TYPE_ZERO_BYTE
8798 | OPTI_TYPE_USES_BITS_64;
8799 dgst_pos0 = 0;
8800 dgst_pos1 = 1;
8801 dgst_pos2 = 2;
8802 dgst_pos3 = 3;
8803 break;
8804
8805 case 6222: hash_type = HASH_TYPE_SHA512;
8806 salt_type = SALT_TYPE_EMBEDDED;
8807 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8808 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8809 kern_type = KERN_TYPE_TCSHA512_XTS1024;
8810 dgst_size = DGST_SIZE_8_8;
8811 parse_func = truecrypt_parse_hash_1k;
8812 sort_by_digest = sort_by_digest_8_8;
8813 opti_type = OPTI_TYPE_ZERO_BYTE
8814 | OPTI_TYPE_USES_BITS_64;
8815 dgst_pos0 = 0;
8816 dgst_pos1 = 1;
8817 dgst_pos2 = 2;
8818 dgst_pos3 = 3;
8819 break;
8820
8821 case 6223: hash_type = HASH_TYPE_SHA512;
8822 salt_type = SALT_TYPE_EMBEDDED;
8823 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8824 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8825 kern_type = KERN_TYPE_TCSHA512_XTS1536;
8826 dgst_size = DGST_SIZE_8_8;
8827 parse_func = truecrypt_parse_hash_1k;
8828 sort_by_digest = sort_by_digest_8_8;
8829 opti_type = OPTI_TYPE_ZERO_BYTE
8830 | OPTI_TYPE_USES_BITS_64;
8831 dgst_pos0 = 0;
8832 dgst_pos1 = 1;
8833 dgst_pos2 = 2;
8834 dgst_pos3 = 3;
8835 break;
8836
8837 case 6231: hash_type = HASH_TYPE_WHIRLPOOL;
8838 salt_type = SALT_TYPE_EMBEDDED;
8839 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8840 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8841 kern_type = KERN_TYPE_TCWHIRLPOOL_XTS512;
8842 dgst_size = DGST_SIZE_4_8;
8843 parse_func = truecrypt_parse_hash_1k;
8844 sort_by_digest = sort_by_digest_4_8;
8845 opti_type = OPTI_TYPE_ZERO_BYTE;
8846 dgst_pos0 = 0;
8847 dgst_pos1 = 1;
8848 dgst_pos2 = 2;
8849 dgst_pos3 = 3;
8850 break;
8851
8852 case 6232: hash_type = HASH_TYPE_WHIRLPOOL;
8853 salt_type = SALT_TYPE_EMBEDDED;
8854 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8855 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8856 kern_type = KERN_TYPE_TCWHIRLPOOL_XTS1024;
8857 dgst_size = DGST_SIZE_4_8;
8858 parse_func = truecrypt_parse_hash_1k;
8859 sort_by_digest = sort_by_digest_4_8;
8860 opti_type = OPTI_TYPE_ZERO_BYTE;
8861 dgst_pos0 = 0;
8862 dgst_pos1 = 1;
8863 dgst_pos2 = 2;
8864 dgst_pos3 = 3;
8865 break;
8866
8867 case 6233: hash_type = HASH_TYPE_WHIRLPOOL;
8868 salt_type = SALT_TYPE_EMBEDDED;
8869 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8870 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8871 kern_type = KERN_TYPE_TCWHIRLPOOL_XTS1536;
8872 dgst_size = DGST_SIZE_4_8;
8873 parse_func = truecrypt_parse_hash_1k;
8874 sort_by_digest = sort_by_digest_4_8;
8875 opti_type = OPTI_TYPE_ZERO_BYTE;
8876 dgst_pos0 = 0;
8877 dgst_pos1 = 1;
8878 dgst_pos2 = 2;
8879 dgst_pos3 = 3;
8880 break;
8881
8882 case 6241: hash_type = HASH_TYPE_RIPEMD160;
8883 salt_type = SALT_TYPE_EMBEDDED;
8884 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8885 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8886 kern_type = KERN_TYPE_TCRIPEMD160_XTS512;
8887 dgst_size = DGST_SIZE_4_5;
8888 parse_func = truecrypt_parse_hash_1k;
8889 sort_by_digest = sort_by_digest_4_5;
8890 opti_type = OPTI_TYPE_ZERO_BYTE;
8891 dgst_pos0 = 0;
8892 dgst_pos1 = 1;
8893 dgst_pos2 = 2;
8894 dgst_pos3 = 3;
8895 break;
8896
8897 case 6242: hash_type = HASH_TYPE_RIPEMD160;
8898 salt_type = SALT_TYPE_EMBEDDED;
8899 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8900 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8901 kern_type = KERN_TYPE_TCRIPEMD160_XTS1024;
8902 dgst_size = DGST_SIZE_4_5;
8903 parse_func = truecrypt_parse_hash_1k;
8904 sort_by_digest = sort_by_digest_4_5;
8905 opti_type = OPTI_TYPE_ZERO_BYTE;
8906 dgst_pos0 = 0;
8907 dgst_pos1 = 1;
8908 dgst_pos2 = 2;
8909 dgst_pos3 = 3;
8910 break;
8911
8912 case 6243: hash_type = HASH_TYPE_RIPEMD160;
8913 salt_type = SALT_TYPE_EMBEDDED;
8914 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8915 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8916 kern_type = KERN_TYPE_TCRIPEMD160_XTS1536;
8917 dgst_size = DGST_SIZE_4_5;
8918 parse_func = truecrypt_parse_hash_1k;
8919 sort_by_digest = sort_by_digest_4_5;
8920 opti_type = OPTI_TYPE_ZERO_BYTE;
8921 dgst_pos0 = 0;
8922 dgst_pos1 = 1;
8923 dgst_pos2 = 2;
8924 dgst_pos3 = 3;
8925 break;
8926
8927 case 6300: hash_type = HASH_TYPE_MD5;
8928 salt_type = SALT_TYPE_EMBEDDED;
8929 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8930 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8931 kern_type = KERN_TYPE_MD5AIX;
8932 dgst_size = DGST_SIZE_4_4;
8933 parse_func = md5aix_parse_hash;
8934 sort_by_digest = sort_by_digest_4_4;
8935 opti_type = OPTI_TYPE_ZERO_BYTE;
8936 dgst_pos0 = 0;
8937 dgst_pos1 = 1;
8938 dgst_pos2 = 2;
8939 dgst_pos3 = 3;
8940 break;
8941
8942 case 6400: hash_type = HASH_TYPE_SHA256;
8943 salt_type = SALT_TYPE_EMBEDDED;
8944 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8945 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8946 kern_type = KERN_TYPE_SHA256AIX;
8947 dgst_size = DGST_SIZE_4_8;
8948 parse_func = sha256aix_parse_hash;
8949 sort_by_digest = sort_by_digest_4_8;
8950 opti_type = OPTI_TYPE_ZERO_BYTE;
8951 dgst_pos0 = 0;
8952 dgst_pos1 = 1;
8953 dgst_pos2 = 2;
8954 dgst_pos3 = 3;
8955 break;
8956
8957 case 6500: hash_type = HASH_TYPE_SHA512;
8958 salt_type = SALT_TYPE_EMBEDDED;
8959 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8960 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8961 kern_type = KERN_TYPE_SHA512AIX;
8962 dgst_size = DGST_SIZE_8_8;
8963 parse_func = sha512aix_parse_hash;
8964 sort_by_digest = sort_by_digest_8_8;
8965 opti_type = OPTI_TYPE_ZERO_BYTE
8966 | OPTI_TYPE_USES_BITS_64;
8967 dgst_pos0 = 0;
8968 dgst_pos1 = 1;
8969 dgst_pos2 = 2;
8970 dgst_pos3 = 3;
8971 break;
8972
8973 case 6600: hash_type = HASH_TYPE_AES;
8974 salt_type = SALT_TYPE_EMBEDDED;
8975 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8976 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8977 kern_type = KERN_TYPE_AGILEKEY;
8978 dgst_size = DGST_SIZE_4_5; // because kernel uses _SHA1_
8979 parse_func = agilekey_parse_hash;
8980 sort_by_digest = sort_by_digest_4_5;
8981 opti_type = OPTI_TYPE_ZERO_BYTE;
8982 dgst_pos0 = 0;
8983 dgst_pos1 = 1;
8984 dgst_pos2 = 2;
8985 dgst_pos3 = 3;
8986 break;
8987
8988 case 6700: hash_type = HASH_TYPE_SHA1;
8989 salt_type = SALT_TYPE_EMBEDDED;
8990 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8991 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8992 kern_type = KERN_TYPE_SHA1AIX;
8993 dgst_size = DGST_SIZE_4_5;
8994 parse_func = sha1aix_parse_hash;
8995 sort_by_digest = sort_by_digest_4_5;
8996 opti_type = OPTI_TYPE_ZERO_BYTE;
8997 dgst_pos0 = 0;
8998 dgst_pos1 = 1;
8999 dgst_pos2 = 2;
9000 dgst_pos3 = 3;
9001 break;
9002
9003 case 6800: hash_type = HASH_TYPE_AES;
9004 salt_type = SALT_TYPE_EMBEDDED;
9005 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9006 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9007 kern_type = KERN_TYPE_LASTPASS;
9008 dgst_size = DGST_SIZE_4_8; // because kernel uses _SHA256_
9009 parse_func = lastpass_parse_hash;
9010 sort_by_digest = sort_by_digest_4_8;
9011 opti_type = OPTI_TYPE_ZERO_BYTE;
9012 dgst_pos0 = 0;
9013 dgst_pos1 = 1;
9014 dgst_pos2 = 2;
9015 dgst_pos3 = 3;
9016 break;
9017
9018 case 6900: hash_type = HASH_TYPE_GOST;
9019 salt_type = SALT_TYPE_NONE;
9020 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9021 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9022 kern_type = KERN_TYPE_GOST;
9023 dgst_size = DGST_SIZE_4_8;
9024 parse_func = gost_parse_hash;
9025 sort_by_digest = sort_by_digest_4_8;
9026 opti_type = OPTI_TYPE_ZERO_BYTE;
9027 dgst_pos0 = 0;
9028 dgst_pos1 = 1;
9029 dgst_pos2 = 2;
9030 dgst_pos3 = 3;
9031 break;
9032
9033 case 7100: hash_type = HASH_TYPE_SHA512;
9034 salt_type = SALT_TYPE_EMBEDDED;
9035 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9036 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9037 kern_type = KERN_TYPE_PBKDF2_SHA512;
9038 dgst_size = DGST_SIZE_8_16;
9039 parse_func = sha512osx_parse_hash;
9040 sort_by_digest = sort_by_digest_8_16;
9041 opti_type = OPTI_TYPE_ZERO_BYTE
9042 | OPTI_TYPE_USES_BITS_64;
9043 dgst_pos0 = 0;
9044 dgst_pos1 = 1;
9045 dgst_pos2 = 2;
9046 dgst_pos3 = 3;
9047 break;
9048
9049 case 7200: hash_type = HASH_TYPE_SHA512;
9050 salt_type = SALT_TYPE_EMBEDDED;
9051 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9052 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9053 kern_type = KERN_TYPE_PBKDF2_SHA512;
9054 dgst_size = DGST_SIZE_8_16;
9055 parse_func = sha512grub_parse_hash;
9056 sort_by_digest = sort_by_digest_8_16;
9057 opti_type = OPTI_TYPE_ZERO_BYTE
9058 | OPTI_TYPE_USES_BITS_64;
9059 dgst_pos0 = 0;
9060 dgst_pos1 = 1;
9061 dgst_pos2 = 2;
9062 dgst_pos3 = 3;
9063 break;
9064
9065 case 7300: hash_type = HASH_TYPE_SHA1;
9066 salt_type = SALT_TYPE_EMBEDDED;
9067 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9068 opts_type = OPTS_TYPE_PT_GENERATE_BE
9069 | OPTS_TYPE_ST_ADD80
9070 | OPTS_TYPE_ST_ADDBITS15;
9071 kern_type = KERN_TYPE_RAKP;
9072 dgst_size = DGST_SIZE_4_5;
9073 parse_func = rakp_parse_hash;
9074 sort_by_digest = sort_by_digest_4_5;
9075 opti_type = OPTI_TYPE_ZERO_BYTE
9076 | OPTI_TYPE_NOT_ITERATED;
9077 dgst_pos0 = 3;
9078 dgst_pos1 = 4;
9079 dgst_pos2 = 2;
9080 dgst_pos3 = 1;
9081 break;
9082
9083 case 7400: hash_type = HASH_TYPE_SHA256;
9084 salt_type = SALT_TYPE_EMBEDDED;
9085 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9086 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9087 kern_type = KERN_TYPE_SHA256CRYPT;
9088 dgst_size = DGST_SIZE_4_8;
9089 parse_func = sha256crypt_parse_hash;
9090 sort_by_digest = sort_by_digest_4_8;
9091 opti_type = OPTI_TYPE_ZERO_BYTE;
9092 dgst_pos0 = 0;
9093 dgst_pos1 = 1;
9094 dgst_pos2 = 2;
9095 dgst_pos3 = 3;
9096 break;
9097
9098 case 7500: hash_type = HASH_TYPE_KRB5PA;
9099 salt_type = SALT_TYPE_EMBEDDED;
9100 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9101 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9102 kern_type = KERN_TYPE_KRB5PA;
9103 dgst_size = DGST_SIZE_4_4;
9104 parse_func = krb5pa_parse_hash;
9105 sort_by_digest = sort_by_digest_4_4;
9106 opti_type = OPTI_TYPE_ZERO_BYTE
9107 | OPTI_TYPE_NOT_ITERATED;
9108 dgst_pos0 = 0;
9109 dgst_pos1 = 1;
9110 dgst_pos2 = 2;
9111 dgst_pos3 = 3;
9112 break;
9113
9114 case 7600: hash_type = HASH_TYPE_SHA1;
9115 salt_type = SALT_TYPE_INTERN;
9116 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9117 opts_type = OPTS_TYPE_PT_GENERATE_BE
9118 | OPTS_TYPE_PT_ADD80
9119 | OPTS_TYPE_PT_ADDBITS15;
9120 kern_type = KERN_TYPE_SHA1_SLT_SHA1_PW;
9121 dgst_size = DGST_SIZE_4_5;
9122 parse_func = redmine_parse_hash;
9123 sort_by_digest = sort_by_digest_4_5;
9124 opti_type = OPTI_TYPE_ZERO_BYTE
9125 | OPTI_TYPE_PRECOMPUTE_INIT
9126 | OPTI_TYPE_EARLY_SKIP
9127 | OPTI_TYPE_NOT_ITERATED
9128 | OPTI_TYPE_PREPENDED_SALT;
9129 dgst_pos0 = 3;
9130 dgst_pos1 = 4;
9131 dgst_pos2 = 2;
9132 dgst_pos3 = 1;
9133 break;
9134
9135 case 7700: hash_type = HASH_TYPE_SAPB;
9136 salt_type = SALT_TYPE_EMBEDDED;
9137 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9138 opts_type = OPTS_TYPE_PT_GENERATE_LE
9139 | OPTS_TYPE_PT_UPPER
9140 | OPTS_TYPE_ST_UPPER;
9141 kern_type = KERN_TYPE_SAPB;
9142 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9143 parse_func = sapb_parse_hash;
9144 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9145 opti_type = OPTI_TYPE_ZERO_BYTE
9146 | OPTI_TYPE_PRECOMPUTE_INIT
9147 | OPTI_TYPE_NOT_ITERATED;
9148 dgst_pos0 = 0;
9149 dgst_pos1 = 1;
9150 dgst_pos2 = 2;
9151 dgst_pos3 = 3;
9152 break;
9153
9154 case 7800: hash_type = HASH_TYPE_SAPG;
9155 salt_type = SALT_TYPE_EMBEDDED;
9156 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9157 opts_type = OPTS_TYPE_PT_GENERATE_BE
9158 | OPTS_TYPE_ST_ADD80
9159 | OPTS_TYPE_ST_UPPER;
9160 kern_type = KERN_TYPE_SAPG;
9161 dgst_size = DGST_SIZE_4_5;
9162 parse_func = sapg_parse_hash;
9163 sort_by_digest = sort_by_digest_4_5;
9164 opti_type = OPTI_TYPE_ZERO_BYTE
9165 | OPTI_TYPE_PRECOMPUTE_INIT
9166 | OPTI_TYPE_NOT_ITERATED;
9167 dgst_pos0 = 3;
9168 dgst_pos1 = 4;
9169 dgst_pos2 = 2;
9170 dgst_pos3 = 1;
9171 break;
9172
9173 case 7900: hash_type = HASH_TYPE_SHA512;
9174 salt_type = SALT_TYPE_EMBEDDED;
9175 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9176 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9177 kern_type = KERN_TYPE_DRUPAL7;
9178 dgst_size = DGST_SIZE_8_8;
9179 parse_func = drupal7_parse_hash;
9180 sort_by_digest = sort_by_digest_8_8;
9181 opti_type = OPTI_TYPE_ZERO_BYTE
9182 | OPTI_TYPE_USES_BITS_64;
9183 dgst_pos0 = 0;
9184 dgst_pos1 = 1;
9185 dgst_pos2 = 2;
9186 dgst_pos3 = 3;
9187 break;
9188
9189 case 8000: hash_type = HASH_TYPE_SHA256;
9190 salt_type = SALT_TYPE_EMBEDDED;
9191 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9192 opts_type = OPTS_TYPE_PT_GENERATE_BE
9193 | OPTS_TYPE_PT_UNICODE
9194 | OPTS_TYPE_ST_ADD80
9195 | OPTS_TYPE_ST_HEX;
9196 kern_type = KERN_TYPE_SYBASEASE;
9197 dgst_size = DGST_SIZE_4_8;
9198 parse_func = sybasease_parse_hash;
9199 sort_by_digest = sort_by_digest_4_8;
9200 opti_type = OPTI_TYPE_ZERO_BYTE
9201 | OPTI_TYPE_PRECOMPUTE_INIT
9202 | OPTI_TYPE_EARLY_SKIP
9203 | OPTI_TYPE_NOT_ITERATED
9204 | OPTI_TYPE_RAW_HASH;
9205 dgst_pos0 = 3;
9206 dgst_pos1 = 7;
9207 dgst_pos2 = 2;
9208 dgst_pos3 = 6;
9209 break;
9210
9211 case 8100: hash_type = HASH_TYPE_SHA1;
9212 salt_type = SALT_TYPE_EMBEDDED;
9213 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9214 opts_type = OPTS_TYPE_PT_GENERATE_BE;
9215 kern_type = KERN_TYPE_NETSCALER;
9216 dgst_size = DGST_SIZE_4_5;
9217 parse_func = netscaler_parse_hash;
9218 sort_by_digest = sort_by_digest_4_5;
9219 opti_type = OPTI_TYPE_ZERO_BYTE
9220 | OPTI_TYPE_PRECOMPUTE_INIT
9221 | OPTI_TYPE_PRECOMPUTE_MERKLE
9222 | OPTI_TYPE_EARLY_SKIP
9223 | OPTI_TYPE_NOT_ITERATED
9224 | OPTI_TYPE_PREPENDED_SALT
9225 | OPTI_TYPE_RAW_HASH;
9226 dgst_pos0 = 3;
9227 dgst_pos1 = 4;
9228 dgst_pos2 = 2;
9229 dgst_pos3 = 1;
9230 break;
9231
9232 case 8200: hash_type = HASH_TYPE_SHA256;
9233 salt_type = SALT_TYPE_EMBEDDED;
9234 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9235 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9236 kern_type = KERN_TYPE_CLOUDKEY;
9237 dgst_size = DGST_SIZE_4_8;
9238 parse_func = cloudkey_parse_hash;
9239 sort_by_digest = sort_by_digest_4_8;
9240 opti_type = OPTI_TYPE_ZERO_BYTE;
9241 dgst_pos0 = 0;
9242 dgst_pos1 = 1;
9243 dgst_pos2 = 2;
9244 dgst_pos3 = 3;
9245 break;
9246
9247 case 8300: hash_type = HASH_TYPE_SHA1;
9248 salt_type = SALT_TYPE_EMBEDDED;
9249 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9250 opts_type = OPTS_TYPE_PT_GENERATE_BE
9251 | OPTS_TYPE_ST_HEX
9252 | OPTS_TYPE_ST_ADD80;
9253 kern_type = KERN_TYPE_NSEC3;
9254 dgst_size = DGST_SIZE_4_5;
9255 parse_func = nsec3_parse_hash;
9256 sort_by_digest = sort_by_digest_4_5;
9257 opti_type = OPTI_TYPE_ZERO_BYTE;
9258 dgst_pos0 = 3;
9259 dgst_pos1 = 4;
9260 dgst_pos2 = 2;
9261 dgst_pos3 = 1;
9262 break;
9263
9264 case 8400: hash_type = HASH_TYPE_SHA1;
9265 salt_type = SALT_TYPE_INTERN;
9266 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9267 opts_type = OPTS_TYPE_PT_GENERATE_BE
9268 | OPTS_TYPE_PT_ADD80
9269 | OPTS_TYPE_PT_ADDBITS15;
9270 kern_type = KERN_TYPE_WBB3;
9271 dgst_size = DGST_SIZE_4_5;
9272 parse_func = wbb3_parse_hash;
9273 sort_by_digest = sort_by_digest_4_5;
9274 opti_type = OPTI_TYPE_ZERO_BYTE
9275 | OPTI_TYPE_PRECOMPUTE_INIT
9276 | OPTI_TYPE_NOT_ITERATED;
9277 dgst_pos0 = 3;
9278 dgst_pos1 = 4;
9279 dgst_pos2 = 2;
9280 dgst_pos3 = 1;
9281 break;
9282
9283 case 8500: hash_type = HASH_TYPE_DESRACF;
9284 salt_type = SALT_TYPE_EMBEDDED;
9285 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9286 opts_type = OPTS_TYPE_PT_GENERATE_LE
9287 | OPTS_TYPE_ST_UPPER;
9288 kern_type = KERN_TYPE_RACF;
9289 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9290 parse_func = racf_parse_hash;
9291 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9292 opti_type = OPTI_TYPE_ZERO_BYTE
9293 | OPTI_TYPE_PRECOMPUTE_PERMUT;
9294 dgst_pos0 = 0;
9295 dgst_pos1 = 1;
9296 dgst_pos2 = 2;
9297 dgst_pos3 = 3;
9298 break;
9299
9300 case 8600: hash_type = HASH_TYPE_LOTUS5;
9301 salt_type = SALT_TYPE_NONE;
9302 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9303 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9304 kern_type = KERN_TYPE_LOTUS5;
9305 dgst_size = DGST_SIZE_4_4;
9306 parse_func = lotus5_parse_hash;
9307 sort_by_digest = sort_by_digest_4_4;
9308 opti_type = OPTI_TYPE_EARLY_SKIP
9309 | OPTI_TYPE_NOT_ITERATED
9310 | OPTI_TYPE_NOT_SALTED
9311 | OPTI_TYPE_RAW_HASH;
9312 dgst_pos0 = 0;
9313 dgst_pos1 = 1;
9314 dgst_pos2 = 2;
9315 dgst_pos3 = 3;
9316 break;
9317
9318 case 8700: hash_type = HASH_TYPE_LOTUS6;
9319 salt_type = SALT_TYPE_EMBEDDED;
9320 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9321 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9322 kern_type = KERN_TYPE_LOTUS6;
9323 dgst_size = DGST_SIZE_4_4;
9324 parse_func = lotus6_parse_hash;
9325 sort_by_digest = sort_by_digest_4_4;
9326 opti_type = OPTI_TYPE_EARLY_SKIP
9327 | OPTI_TYPE_NOT_ITERATED
9328 | OPTI_TYPE_RAW_HASH;
9329 dgst_pos0 = 0;
9330 dgst_pos1 = 1;
9331 dgst_pos2 = 2;
9332 dgst_pos3 = 3;
9333 break;
9334
9335 case 8800: hash_type = HASH_TYPE_ANDROIDFDE;
9336 salt_type = SALT_TYPE_EMBEDDED;
9337 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9338 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9339 kern_type = KERN_TYPE_ANDROIDFDE;
9340 dgst_size = DGST_SIZE_4_4;
9341 parse_func = androidfde_parse_hash;
9342 sort_by_digest = sort_by_digest_4_4;
9343 opti_type = OPTI_TYPE_ZERO_BYTE;
9344 dgst_pos0 = 0;
9345 dgst_pos1 = 1;
9346 dgst_pos2 = 2;
9347 dgst_pos3 = 3;
9348 break;
9349
9350 case 8900: hash_type = HASH_TYPE_SCRYPT;
9351 salt_type = SALT_TYPE_EMBEDDED;
9352 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9353 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9354 kern_type = KERN_TYPE_SCRYPT;
9355 dgst_size = DGST_SIZE_4_8;
9356 parse_func = scrypt_parse_hash;
9357 sort_by_digest = sort_by_digest_4_8;
9358 opti_type = OPTI_TYPE_ZERO_BYTE;
9359 dgst_pos0 = 0;
9360 dgst_pos1 = 1;
9361 dgst_pos2 = 2;
9362 dgst_pos3 = 3;
9363 break;
9364
9365 case 9000: hash_type = HASH_TYPE_SHA1;
9366 salt_type = SALT_TYPE_EMBEDDED;
9367 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9368 opts_type = OPTS_TYPE_PT_GENERATE_LE
9369 | OPTS_TYPE_ST_GENERATE_LE;
9370 kern_type = KERN_TYPE_PSAFE2;
9371 dgst_size = DGST_SIZE_4_5;
9372 parse_func = psafe2_parse_hash;
9373 sort_by_digest = sort_by_digest_4_5;
9374 opti_type = OPTI_TYPE_ZERO_BYTE;
9375 dgst_pos0 = 0;
9376 dgst_pos1 = 1;
9377 dgst_pos2 = 2;
9378 dgst_pos3 = 3;
9379 break;
9380
9381 case 9100: hash_type = HASH_TYPE_LOTUS8;
9382 salt_type = SALT_TYPE_EMBEDDED;
9383 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9384 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9385 kern_type = KERN_TYPE_LOTUS8;
9386 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9387 parse_func = lotus8_parse_hash;
9388 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9389 opti_type = OPTI_TYPE_ZERO_BYTE;
9390 dgst_pos0 = 0;
9391 dgst_pos1 = 1;
9392 dgst_pos2 = 2;
9393 dgst_pos3 = 3;
9394 break;
9395
9396 case 9200: hash_type = HASH_TYPE_SHA256;
9397 salt_type = SALT_TYPE_EMBEDDED;
9398 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9399 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9400 kern_type = KERN_TYPE_PBKDF2_SHA256;
9401 dgst_size = DGST_SIZE_4_32;
9402 parse_func = cisco8_parse_hash;
9403 sort_by_digest = sort_by_digest_4_32;
9404 opti_type = OPTI_TYPE_ZERO_BYTE;
9405 dgst_pos0 = 0;
9406 dgst_pos1 = 1;
9407 dgst_pos2 = 2;
9408 dgst_pos3 = 3;
9409 break;
9410
9411 case 9300: hash_type = HASH_TYPE_SCRYPT;
9412 salt_type = SALT_TYPE_EMBEDDED;
9413 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9414 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9415 kern_type = KERN_TYPE_SCRYPT;
9416 dgst_size = DGST_SIZE_4_8;
9417 parse_func = cisco9_parse_hash;
9418 sort_by_digest = sort_by_digest_4_8;
9419 opti_type = OPTI_TYPE_ZERO_BYTE;
9420 dgst_pos0 = 0;
9421 dgst_pos1 = 1;
9422 dgst_pos2 = 2;
9423 dgst_pos3 = 3;
9424 break;
9425
9426 case 9400: hash_type = HASH_TYPE_OFFICE2007;
9427 salt_type = SALT_TYPE_EMBEDDED;
9428 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9429 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9430 kern_type = KERN_TYPE_OFFICE2007;
9431 dgst_size = DGST_SIZE_4_4;
9432 parse_func = office2007_parse_hash;
9433 sort_by_digest = sort_by_digest_4_4;
9434 opti_type = OPTI_TYPE_ZERO_BYTE;
9435 dgst_pos0 = 0;
9436 dgst_pos1 = 1;
9437 dgst_pos2 = 2;
9438 dgst_pos3 = 3;
9439 break;
9440
9441 case 9500: hash_type = HASH_TYPE_OFFICE2010;
9442 salt_type = SALT_TYPE_EMBEDDED;
9443 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9444 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9445 kern_type = KERN_TYPE_OFFICE2010;
9446 dgst_size = DGST_SIZE_4_4;
9447 parse_func = office2010_parse_hash;
9448 sort_by_digest = sort_by_digest_4_4;
9449 opti_type = OPTI_TYPE_ZERO_BYTE;
9450 dgst_pos0 = 0;
9451 dgst_pos1 = 1;
9452 dgst_pos2 = 2;
9453 dgst_pos3 = 3;
9454 break;
9455
9456 case 9600: hash_type = HASH_TYPE_OFFICE2013;
9457 salt_type = SALT_TYPE_EMBEDDED;
9458 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9459 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9460 kern_type = KERN_TYPE_OFFICE2013;
9461 dgst_size = DGST_SIZE_4_4;
9462 parse_func = office2013_parse_hash;
9463 sort_by_digest = sort_by_digest_4_4;
9464 opti_type = OPTI_TYPE_ZERO_BYTE;
9465 dgst_pos0 = 0;
9466 dgst_pos1 = 1;
9467 dgst_pos2 = 2;
9468 dgst_pos3 = 3;
9469 break;
9470
9471 case 9700: hash_type = HASH_TYPE_OLDOFFICE01;
9472 salt_type = SALT_TYPE_EMBEDDED;
9473 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9474 opts_type = OPTS_TYPE_PT_GENERATE_LE
9475 | OPTS_TYPE_PT_ADD80
9476 | OPTS_TYPE_PT_UNICODE;
9477 kern_type = KERN_TYPE_OLDOFFICE01;
9478 dgst_size = DGST_SIZE_4_4;
9479 parse_func = oldoffice01_parse_hash;
9480 sort_by_digest = sort_by_digest_4_4;
9481 opti_type = OPTI_TYPE_ZERO_BYTE
9482 | OPTI_TYPE_PRECOMPUTE_INIT
9483 | OPTI_TYPE_NOT_ITERATED;
9484 dgst_pos0 = 0;
9485 dgst_pos1 = 1;
9486 dgst_pos2 = 2;
9487 dgst_pos3 = 3;
9488 break;
9489
9490 case 9710: hash_type = HASH_TYPE_OLDOFFICE01;
9491 salt_type = SALT_TYPE_EMBEDDED;
9492 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9493 opts_type = OPTS_TYPE_PT_GENERATE_LE
9494 | OPTS_TYPE_PT_ADD80;
9495 kern_type = KERN_TYPE_OLDOFFICE01CM1;
9496 dgst_size = DGST_SIZE_4_4;
9497 parse_func = oldoffice01cm1_parse_hash;
9498 sort_by_digest = sort_by_digest_4_4;
9499 opti_type = OPTI_TYPE_ZERO_BYTE
9500 | OPTI_TYPE_PRECOMPUTE_INIT
9501 | OPTI_TYPE_NOT_ITERATED;
9502 dgst_pos0 = 0;
9503 dgst_pos1 = 1;
9504 dgst_pos2 = 2;
9505 dgst_pos3 = 3;
9506 break;
9507
9508 case 9720: hash_type = HASH_TYPE_OLDOFFICE01;
9509 salt_type = SALT_TYPE_EMBEDDED;
9510 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9511 opts_type = OPTS_TYPE_PT_GENERATE_LE
9512 | OPTS_TYPE_PT_ADD80
9513 | OPTS_TYPE_PT_UNICODE
9514 | OPTS_TYPE_PT_NEVERCRACK;
9515 kern_type = KERN_TYPE_OLDOFFICE01CM2;
9516 dgst_size = DGST_SIZE_4_4;
9517 parse_func = oldoffice01cm2_parse_hash;
9518 sort_by_digest = sort_by_digest_4_4;
9519 opti_type = OPTI_TYPE_ZERO_BYTE
9520 | OPTI_TYPE_PRECOMPUTE_INIT
9521 | OPTI_TYPE_NOT_ITERATED;
9522 dgst_pos0 = 0;
9523 dgst_pos1 = 1;
9524 dgst_pos2 = 2;
9525 dgst_pos3 = 3;
9526 break;
9527
9528 case 9800: hash_type = HASH_TYPE_OLDOFFICE34;
9529 salt_type = SALT_TYPE_EMBEDDED;
9530 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9531 opts_type = OPTS_TYPE_PT_GENERATE_BE
9532 | OPTS_TYPE_PT_ADD80
9533 | OPTS_TYPE_PT_UNICODE;
9534 kern_type = KERN_TYPE_OLDOFFICE34;
9535 dgst_size = DGST_SIZE_4_4;
9536 parse_func = oldoffice34_parse_hash;
9537 sort_by_digest = sort_by_digest_4_4;
9538 opti_type = OPTI_TYPE_ZERO_BYTE
9539 | OPTI_TYPE_PRECOMPUTE_INIT
9540 | OPTI_TYPE_NOT_ITERATED;
9541 dgst_pos0 = 0;
9542 dgst_pos1 = 1;
9543 dgst_pos2 = 2;
9544 dgst_pos3 = 3;
9545 break;
9546
9547 case 9810: hash_type = HASH_TYPE_OLDOFFICE34;
9548 salt_type = SALT_TYPE_EMBEDDED;
9549 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9550 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9551 kern_type = KERN_TYPE_OLDOFFICE34CM1;
9552 dgst_size = DGST_SIZE_4_4;
9553 parse_func = oldoffice34cm1_parse_hash;
9554 sort_by_digest = sort_by_digest_4_4;
9555 opti_type = OPTI_TYPE_ZERO_BYTE
9556 | OPTI_TYPE_PRECOMPUTE_INIT
9557 | OPTI_TYPE_NOT_ITERATED;
9558 dgst_pos0 = 0;
9559 dgst_pos1 = 1;
9560 dgst_pos2 = 2;
9561 dgst_pos3 = 3;
9562 break;
9563
9564 case 9820: hash_type = HASH_TYPE_OLDOFFICE34;
9565 salt_type = SALT_TYPE_EMBEDDED;
9566 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9567 opts_type = OPTS_TYPE_PT_GENERATE_BE
9568 | OPTS_TYPE_PT_ADD80
9569 | OPTS_TYPE_PT_UNICODE
9570 | OPTS_TYPE_PT_NEVERCRACK;
9571 kern_type = KERN_TYPE_OLDOFFICE34CM2;
9572 dgst_size = DGST_SIZE_4_4;
9573 parse_func = oldoffice34cm2_parse_hash;
9574 sort_by_digest = sort_by_digest_4_4;
9575 opti_type = OPTI_TYPE_ZERO_BYTE
9576 | OPTI_TYPE_PRECOMPUTE_INIT
9577 | OPTI_TYPE_NOT_ITERATED;
9578 dgst_pos0 = 0;
9579 dgst_pos1 = 1;
9580 dgst_pos2 = 2;
9581 dgst_pos3 = 3;
9582 break;
9583
9584 case 9900: hash_type = HASH_TYPE_MD5;
9585 salt_type = SALT_TYPE_NONE;
9586 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9587 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9588 kern_type = KERN_TYPE_RADMIN2;
9589 dgst_size = DGST_SIZE_4_4;
9590 parse_func = radmin2_parse_hash;
9591 sort_by_digest = sort_by_digest_4_4;
9592 opti_type = OPTI_TYPE_ZERO_BYTE
9593 | OPTI_TYPE_PRECOMPUTE_INIT
9594 | OPTI_TYPE_EARLY_SKIP
9595 | OPTI_TYPE_NOT_ITERATED
9596 | OPTI_TYPE_NOT_SALTED;
9597 dgst_pos0 = 0;
9598 dgst_pos1 = 3;
9599 dgst_pos2 = 2;
9600 dgst_pos3 = 1;
9601 break;
9602
9603 case 10000: hash_type = HASH_TYPE_SHA256;
9604 salt_type = SALT_TYPE_EMBEDDED;
9605 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9606 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9607 kern_type = KERN_TYPE_PBKDF2_SHA256;
9608 dgst_size = DGST_SIZE_4_32;
9609 parse_func = djangopbkdf2_parse_hash;
9610 sort_by_digest = sort_by_digest_4_32;
9611 opti_type = OPTI_TYPE_ZERO_BYTE;
9612 dgst_pos0 = 0;
9613 dgst_pos1 = 1;
9614 dgst_pos2 = 2;
9615 dgst_pos3 = 3;
9616 break;
9617
9618 case 10100: hash_type = HASH_TYPE_SIPHASH;
9619 salt_type = SALT_TYPE_EMBEDDED;
9620 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9621 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9622 kern_type = KERN_TYPE_SIPHASH;
9623 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9624 parse_func = siphash_parse_hash;
9625 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9626 opti_type = OPTI_TYPE_ZERO_BYTE
9627 | OPTI_TYPE_NOT_ITERATED
9628 | OPTI_TYPE_RAW_HASH;
9629 dgst_pos0 = 0;
9630 dgst_pos1 = 1;
9631 dgst_pos2 = 2;
9632 dgst_pos3 = 3;
9633 break;
9634
9635 case 10200: hash_type = HASH_TYPE_MD5;
9636 salt_type = SALT_TYPE_EMBEDDED;
9637 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9638 opts_type = OPTS_TYPE_PT_GENERATE_LE
9639 | OPTS_TYPE_ST_ADD80
9640 | OPTS_TYPE_ST_ADDBITS14;
9641 kern_type = KERN_TYPE_HMACMD5_PW;
9642 dgst_size = DGST_SIZE_4_4;
9643 parse_func = crammd5_parse_hash;
9644 sort_by_digest = sort_by_digest_4_4;
9645 opti_type = OPTI_TYPE_ZERO_BYTE
9646 | OPTI_TYPE_NOT_ITERATED;
9647 dgst_pos0 = 0;
9648 dgst_pos1 = 3;
9649 dgst_pos2 = 2;
9650 dgst_pos3 = 1;
9651 break;
9652
9653 case 10300: hash_type = HASH_TYPE_SHA1;
9654 salt_type = SALT_TYPE_EMBEDDED;
9655 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9656 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9657 kern_type = KERN_TYPE_SAPH_SHA1;
9658 dgst_size = DGST_SIZE_4_5;
9659 parse_func = saph_sha1_parse_hash;
9660 sort_by_digest = sort_by_digest_4_5;
9661 opti_type = OPTI_TYPE_ZERO_BYTE;
9662 dgst_pos0 = 0;
9663 dgst_pos1 = 1;
9664 dgst_pos2 = 2;
9665 dgst_pos3 = 3;
9666 break;
9667
9668 case 10400: hash_type = HASH_TYPE_PDFU16;
9669 salt_type = SALT_TYPE_EMBEDDED;
9670 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9671 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9672 kern_type = KERN_TYPE_PDF11;
9673 dgst_size = DGST_SIZE_4_4;
9674 parse_func = pdf11_parse_hash;
9675 sort_by_digest = sort_by_digest_4_4;
9676 opti_type = OPTI_TYPE_ZERO_BYTE
9677 | OPTI_TYPE_NOT_ITERATED;
9678 dgst_pos0 = 0;
9679 dgst_pos1 = 1;
9680 dgst_pos2 = 2;
9681 dgst_pos3 = 3;
9682 break;
9683
9684 case 10410: hash_type = HASH_TYPE_PDFU16;
9685 salt_type = SALT_TYPE_EMBEDDED;
9686 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9687 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9688 kern_type = KERN_TYPE_PDF11CM1;
9689 dgst_size = DGST_SIZE_4_4;
9690 parse_func = pdf11cm1_parse_hash;
9691 sort_by_digest = sort_by_digest_4_4;
9692 opti_type = OPTI_TYPE_ZERO_BYTE
9693 | OPTI_TYPE_NOT_ITERATED;
9694 dgst_pos0 = 0;
9695 dgst_pos1 = 1;
9696 dgst_pos2 = 2;
9697 dgst_pos3 = 3;
9698 break;
9699
9700 case 10420: hash_type = HASH_TYPE_PDFU16;
9701 salt_type = SALT_TYPE_EMBEDDED;
9702 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9703 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9704 kern_type = KERN_TYPE_PDF11CM2;
9705 dgst_size = DGST_SIZE_4_4;
9706 parse_func = pdf11cm2_parse_hash;
9707 sort_by_digest = sort_by_digest_4_4;
9708 opti_type = OPTI_TYPE_ZERO_BYTE
9709 | OPTI_TYPE_NOT_ITERATED;
9710 dgst_pos0 = 0;
9711 dgst_pos1 = 1;
9712 dgst_pos2 = 2;
9713 dgst_pos3 = 3;
9714 break;
9715
9716 case 10500: hash_type = HASH_TYPE_PDFU16;
9717 salt_type = SALT_TYPE_EMBEDDED;
9718 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9719 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9720 kern_type = KERN_TYPE_PDF14;
9721 dgst_size = DGST_SIZE_4_4;
9722 parse_func = pdf14_parse_hash;
9723 sort_by_digest = sort_by_digest_4_4;
9724 opti_type = OPTI_TYPE_ZERO_BYTE
9725 | OPTI_TYPE_NOT_ITERATED;
9726 dgst_pos0 = 0;
9727 dgst_pos1 = 1;
9728 dgst_pos2 = 2;
9729 dgst_pos3 = 3;
9730 break;
9731
9732 case 10600: hash_type = HASH_TYPE_SHA256;
9733 salt_type = SALT_TYPE_EMBEDDED;
9734 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9735 opts_type = OPTS_TYPE_PT_GENERATE_BE
9736 | OPTS_TYPE_ST_ADD80
9737 | OPTS_TYPE_ST_ADDBITS15
9738 | OPTS_TYPE_HASH_COPY;
9739 kern_type = KERN_TYPE_SHA256_PWSLT;
9740 dgst_size = DGST_SIZE_4_8;
9741 parse_func = pdf17l3_parse_hash;
9742 sort_by_digest = sort_by_digest_4_8;
9743 opti_type = OPTI_TYPE_ZERO_BYTE
9744 | OPTI_TYPE_PRECOMPUTE_INIT
9745 | OPTI_TYPE_PRECOMPUTE_MERKLE
9746 | OPTI_TYPE_EARLY_SKIP
9747 | OPTI_TYPE_NOT_ITERATED
9748 | OPTI_TYPE_APPENDED_SALT
9749 | OPTI_TYPE_RAW_HASH;
9750 dgst_pos0 = 3;
9751 dgst_pos1 = 7;
9752 dgst_pos2 = 2;
9753 dgst_pos3 = 6;
9754 break;
9755
9756 case 10700: hash_type = HASH_TYPE_PDFU32;
9757 salt_type = SALT_TYPE_EMBEDDED;
9758 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9759 opts_type = OPTS_TYPE_PT_GENERATE_LE
9760 | OPTS_TYPE_HASH_COPY;
9761 kern_type = KERN_TYPE_PDF17L8;
9762 dgst_size = DGST_SIZE_4_8;
9763 parse_func = pdf17l8_parse_hash;
9764 sort_by_digest = sort_by_digest_4_8;
9765 opti_type = OPTI_TYPE_ZERO_BYTE
9766 | OPTI_TYPE_NOT_ITERATED;
9767 dgst_pos0 = 0;
9768 dgst_pos1 = 1;
9769 dgst_pos2 = 2;
9770 dgst_pos3 = 3;
9771 break;
9772
9773 case 10800: hash_type = HASH_TYPE_SHA384;
9774 salt_type = SALT_TYPE_NONE;
9775 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9776 opts_type = OPTS_TYPE_PT_GENERATE_BE
9777 | OPTS_TYPE_PT_ADD80
9778 | OPTS_TYPE_PT_ADDBITS15;
9779 kern_type = KERN_TYPE_SHA384;
9780 dgst_size = DGST_SIZE_8_8;
9781 parse_func = sha384_parse_hash;
9782 sort_by_digest = sort_by_digest_8_8;
9783 opti_type = OPTI_TYPE_ZERO_BYTE
9784 | OPTI_TYPE_PRECOMPUTE_INIT
9785 | OPTI_TYPE_PRECOMPUTE_MERKLE
9786 | OPTI_TYPE_EARLY_SKIP
9787 | OPTI_TYPE_NOT_ITERATED
9788 | OPTI_TYPE_NOT_SALTED
9789 | OPTI_TYPE_USES_BITS_64
9790 | OPTI_TYPE_RAW_HASH;
9791 dgst_pos0 = 6;
9792 dgst_pos1 = 7;
9793 dgst_pos2 = 4;
9794 dgst_pos3 = 5;
9795 break;
9796
9797 case 10900: hash_type = HASH_TYPE_PBKDF2_SHA256;
9798 salt_type = SALT_TYPE_EMBEDDED;
9799 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9800 opts_type = OPTS_TYPE_PT_GENERATE_LE
9801 | OPTS_TYPE_ST_BASE64
9802 | OPTS_TYPE_HASH_COPY;
9803 kern_type = KERN_TYPE_PBKDF2_SHA256;
9804 dgst_size = DGST_SIZE_4_32;
9805 parse_func = pbkdf2_sha256_parse_hash;
9806 sort_by_digest = sort_by_digest_4_32;
9807 opti_type = OPTI_TYPE_ZERO_BYTE;
9808 dgst_pos0 = 0;
9809 dgst_pos1 = 1;
9810 dgst_pos2 = 2;
9811 dgst_pos3 = 3;
9812 break;
9813
9814 case 11000: hash_type = HASH_TYPE_MD5;
9815 salt_type = SALT_TYPE_INTERN;
9816 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9817 opts_type = OPTS_TYPE_PT_GENERATE_LE
9818 | OPTS_TYPE_PT_ADD80;
9819 kern_type = KERN_TYPE_PRESTASHOP;
9820 dgst_size = DGST_SIZE_4_4;
9821 parse_func = prestashop_parse_hash;
9822 sort_by_digest = sort_by_digest_4_4;
9823 opti_type = OPTI_TYPE_ZERO_BYTE
9824 | OPTI_TYPE_PRECOMPUTE_INIT
9825 | OPTI_TYPE_NOT_ITERATED
9826 | OPTI_TYPE_PREPENDED_SALT;
9827 dgst_pos0 = 0;
9828 dgst_pos1 = 3;
9829 dgst_pos2 = 2;
9830 dgst_pos3 = 1;
9831 break;
9832
9833 case 11100: hash_type = HASH_TYPE_MD5;
9834 salt_type = SALT_TYPE_EMBEDDED;
9835 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9836 opts_type = OPTS_TYPE_PT_GENERATE_LE
9837 | OPTS_TYPE_ST_ADD80;
9838 kern_type = KERN_TYPE_POSTGRESQL_AUTH;
9839 dgst_size = DGST_SIZE_4_4;
9840 parse_func = postgresql_auth_parse_hash;
9841 sort_by_digest = sort_by_digest_4_4;
9842 opti_type = OPTI_TYPE_ZERO_BYTE
9843 | OPTI_TYPE_PRECOMPUTE_INIT
9844 | OPTI_TYPE_PRECOMPUTE_MERKLE
9845 | OPTI_TYPE_EARLY_SKIP;
9846 dgst_pos0 = 0;
9847 dgst_pos1 = 3;
9848 dgst_pos2 = 2;
9849 dgst_pos3 = 1;
9850 break;
9851
9852 case 11200: hash_type = HASH_TYPE_SHA1;
9853 salt_type = SALT_TYPE_EMBEDDED;
9854 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9855 opts_type = OPTS_TYPE_PT_GENERATE_BE
9856 | OPTS_TYPE_PT_ADD80
9857 | OPTS_TYPE_ST_HEX;
9858 kern_type = KERN_TYPE_MYSQL_AUTH;
9859 dgst_size = DGST_SIZE_4_5;
9860 parse_func = mysql_auth_parse_hash;
9861 sort_by_digest = sort_by_digest_4_5;
9862 opti_type = OPTI_TYPE_ZERO_BYTE
9863 | OPTI_TYPE_EARLY_SKIP;
9864 dgst_pos0 = 3;
9865 dgst_pos1 = 4;
9866 dgst_pos2 = 2;
9867 dgst_pos3 = 1;
9868 break;
9869
9870 case 11300: hash_type = HASH_TYPE_BITCOIN_WALLET;
9871 salt_type = SALT_TYPE_EMBEDDED;
9872 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9873 opts_type = OPTS_TYPE_PT_GENERATE_LE
9874 | OPTS_TYPE_ST_HEX
9875 | OPTS_TYPE_ST_ADD80;
9876 kern_type = KERN_TYPE_BITCOIN_WALLET;
9877 dgst_size = DGST_SIZE_4_4;
9878 parse_func = bitcoin_wallet_parse_hash;
9879 sort_by_digest = sort_by_digest_4_4;
9880 opti_type = OPTI_TYPE_ZERO_BYTE;
9881 dgst_pos0 = 0;
9882 dgst_pos1 = 1;
9883 dgst_pos2 = 2;
9884 dgst_pos3 = 3;
9885 break;
9886
9887 case 11400: hash_type = HASH_TYPE_MD5;
9888 salt_type = SALT_TYPE_EMBEDDED;
9889 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9890 opts_type = OPTS_TYPE_PT_GENERATE_LE
9891 | OPTS_TYPE_PT_ADD80
9892 | OPTS_TYPE_HASH_COPY;
9893 kern_type = KERN_TYPE_SIP_AUTH;
9894 dgst_size = DGST_SIZE_4_4;
9895 parse_func = sip_auth_parse_hash;
9896 sort_by_digest = sort_by_digest_4_4;
9897 opti_type = OPTI_TYPE_ZERO_BYTE;
9898 dgst_pos0 = 0;
9899 dgst_pos1 = 3;
9900 dgst_pos2 = 2;
9901 dgst_pos3 = 1;
9902 break;
9903
9904 case 11500: hash_type = HASH_TYPE_CRC32;
9905 salt_type = SALT_TYPE_INTERN;
9906 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9907 opts_type = OPTS_TYPE_PT_GENERATE_LE
9908 | OPTS_TYPE_ST_GENERATE_LE
9909 | OPTS_TYPE_ST_HEX;
9910 kern_type = KERN_TYPE_CRC32;
9911 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9912 parse_func = crc32_parse_hash;
9913 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9914 opti_type = OPTI_TYPE_ZERO_BYTE;
9915 dgst_pos0 = 0;
9916 dgst_pos1 = 1;
9917 dgst_pos2 = 2;
9918 dgst_pos3 = 3;
9919 break;
9920
9921 case 11600: hash_type = HASH_TYPE_AES;
9922 salt_type = SALT_TYPE_EMBEDDED;
9923 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9924 opts_type = OPTS_TYPE_PT_GENERATE_LE
9925 | OPTS_TYPE_PT_NEVERCRACK;
9926 kern_type = KERN_TYPE_SEVEN_ZIP;
9927 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9928 parse_func = seven_zip_parse_hash;
9929 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9930 opti_type = OPTI_TYPE_ZERO_BYTE;
9931 dgst_pos0 = 0;
9932 dgst_pos1 = 1;
9933 dgst_pos2 = 2;
9934 dgst_pos3 = 3;
9935 break;
9936
9937 case 11700: hash_type = HASH_TYPE_GOST_2012SBOG_256;
9938 salt_type = SALT_TYPE_NONE;
9939 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9940 opts_type = OPTS_TYPE_PT_GENERATE_LE
9941 | OPTS_TYPE_PT_ADD01;
9942 kern_type = KERN_TYPE_GOST_2012SBOG_256;
9943 dgst_size = DGST_SIZE_4_8;
9944 parse_func = gost2012sbog_256_parse_hash;
9945 sort_by_digest = sort_by_digest_4_8;
9946 opti_type = OPTI_TYPE_ZERO_BYTE;
9947 dgst_pos0 = 0;
9948 dgst_pos1 = 1;
9949 dgst_pos2 = 2;
9950 dgst_pos3 = 3;
9951 break;
9952
9953 case 11800: hash_type = HASH_TYPE_GOST_2012SBOG_512;
9954 salt_type = SALT_TYPE_NONE;
9955 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9956 opts_type = OPTS_TYPE_PT_GENERATE_LE
9957 | OPTS_TYPE_PT_ADD01;
9958 kern_type = KERN_TYPE_GOST_2012SBOG_512;
9959 dgst_size = DGST_SIZE_4_16;
9960 parse_func = gost2012sbog_512_parse_hash;
9961 sort_by_digest = sort_by_digest_4_16;
9962 opti_type = OPTI_TYPE_ZERO_BYTE;
9963 dgst_pos0 = 0;
9964 dgst_pos1 = 1;
9965 dgst_pos2 = 2;
9966 dgst_pos3 = 3;
9967 break;
9968
9969 case 11900: hash_type = HASH_TYPE_PBKDF2_MD5;
9970 salt_type = SALT_TYPE_EMBEDDED;
9971 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9972 opts_type = OPTS_TYPE_PT_GENERATE_LE
9973 | OPTS_TYPE_ST_BASE64
9974 | OPTS_TYPE_HASH_COPY;
9975 kern_type = KERN_TYPE_PBKDF2_MD5;
9976 dgst_size = DGST_SIZE_4_32;
9977 parse_func = pbkdf2_md5_parse_hash;
9978 sort_by_digest = sort_by_digest_4_32;
9979 opti_type = OPTI_TYPE_ZERO_BYTE;
9980 dgst_pos0 = 0;
9981 dgst_pos1 = 1;
9982 dgst_pos2 = 2;
9983 dgst_pos3 = 3;
9984 break;
9985
9986 case 12000: hash_type = HASH_TYPE_PBKDF2_SHA1;
9987 salt_type = SALT_TYPE_EMBEDDED;
9988 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9989 opts_type = OPTS_TYPE_PT_GENERATE_LE
9990 | OPTS_TYPE_ST_BASE64
9991 | OPTS_TYPE_HASH_COPY;
9992 kern_type = KERN_TYPE_PBKDF2_SHA1;
9993 dgst_size = DGST_SIZE_4_32;
9994 parse_func = pbkdf2_sha1_parse_hash;
9995 sort_by_digest = sort_by_digest_4_32;
9996 opti_type = OPTI_TYPE_ZERO_BYTE;
9997 dgst_pos0 = 0;
9998 dgst_pos1 = 1;
9999 dgst_pos2 = 2;
10000 dgst_pos3 = 3;
10001 break;
10002
10003 case 12100: hash_type = HASH_TYPE_PBKDF2_SHA512;
10004 salt_type = SALT_TYPE_EMBEDDED;
10005 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10006 opts_type = OPTS_TYPE_PT_GENERATE_LE
10007 | OPTS_TYPE_ST_BASE64
10008 | OPTS_TYPE_HASH_COPY;
10009 kern_type = KERN_TYPE_PBKDF2_SHA512;
10010 dgst_size = DGST_SIZE_8_16;
10011 parse_func = pbkdf2_sha512_parse_hash;
10012 sort_by_digest = sort_by_digest_8_16;
10013 opti_type = OPTI_TYPE_ZERO_BYTE
10014 | OPTI_TYPE_USES_BITS_64;
10015 dgst_pos0 = 0;
10016 dgst_pos1 = 1;
10017 dgst_pos2 = 2;
10018 dgst_pos3 = 3;
10019 break;
10020
10021 case 12200: hash_type = HASH_TYPE_ECRYPTFS;
10022 salt_type = SALT_TYPE_EMBEDDED;
10023 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10024 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10025 kern_type = KERN_TYPE_ECRYPTFS;
10026 dgst_size = DGST_SIZE_8_8;
10027 parse_func = ecryptfs_parse_hash;
10028 sort_by_digest = sort_by_digest_8_8;
10029 opti_type = OPTI_TYPE_ZERO_BYTE
10030 | OPTI_TYPE_USES_BITS_64;
10031 dgst_pos0 = 0;
10032 dgst_pos1 = 1;
10033 dgst_pos2 = 2;
10034 dgst_pos3 = 3;
10035 break;
10036
10037 case 12300: hash_type = HASH_TYPE_ORACLET;
10038 salt_type = SALT_TYPE_EMBEDDED;
10039 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10040 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10041 kern_type = KERN_TYPE_ORACLET;
10042 dgst_size = DGST_SIZE_8_16;
10043 parse_func = oraclet_parse_hash;
10044 sort_by_digest = sort_by_digest_8_16;
10045 opti_type = OPTI_TYPE_ZERO_BYTE
10046 | OPTI_TYPE_USES_BITS_64;
10047 dgst_pos0 = 0;
10048 dgst_pos1 = 1;
10049 dgst_pos2 = 2;
10050 dgst_pos3 = 3;
10051 break;
10052
10053 case 12400: hash_type = HASH_TYPE_BSDICRYPT;
10054 salt_type = SALT_TYPE_EMBEDDED;
10055 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10056 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10057 kern_type = KERN_TYPE_BSDICRYPT;
10058 dgst_size = DGST_SIZE_4_4;
10059 parse_func = bsdicrypt_parse_hash;
10060 sort_by_digest = sort_by_digest_4_4;
10061 opti_type = OPTI_TYPE_ZERO_BYTE
10062 | OPTI_TYPE_PRECOMPUTE_PERMUT;
10063 dgst_pos0 = 0;
10064 dgst_pos1 = 1;
10065 dgst_pos2 = 2;
10066 dgst_pos3 = 3;
10067 break;
10068
10069 case 12500: hash_type = HASH_TYPE_RAR3HP;
10070 salt_type = SALT_TYPE_EMBEDDED;
10071 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10072 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10073 kern_type = KERN_TYPE_RAR3;
10074 dgst_size = DGST_SIZE_4_4;
10075 parse_func = rar3hp_parse_hash;
10076 sort_by_digest = sort_by_digest_4_4;
10077 opti_type = OPTI_TYPE_ZERO_BYTE;
10078 dgst_pos0 = 0;
10079 dgst_pos1 = 1;
10080 dgst_pos2 = 2;
10081 dgst_pos3 = 3;
10082 break;
10083
10084 case 12600: hash_type = HASH_TYPE_SHA256;
10085 salt_type = SALT_TYPE_INTERN;
10086 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
10087 opts_type = OPTS_TYPE_PT_GENERATE_BE
10088 | OPTS_TYPE_PT_ADD80;
10089 kern_type = KERN_TYPE_CF10;
10090 dgst_size = DGST_SIZE_4_8;
10091 parse_func = cf10_parse_hash;
10092 sort_by_digest = sort_by_digest_4_8;
10093 opti_type = OPTI_TYPE_ZERO_BYTE
10094 | OPTI_TYPE_PRECOMPUTE_INIT
10095 | OPTI_TYPE_EARLY_SKIP
10096 | OPTI_TYPE_NOT_ITERATED;
10097 dgst_pos0 = 3;
10098 dgst_pos1 = 7;
10099 dgst_pos2 = 2;
10100 dgst_pos3 = 6;
10101 break;
10102
10103 case 12700: hash_type = HASH_TYPE_AES;
10104 salt_type = SALT_TYPE_EMBEDDED;
10105 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10106 opts_type = OPTS_TYPE_PT_GENERATE_LE
10107 | OPTS_TYPE_HASH_COPY;
10108 kern_type = KERN_TYPE_MYWALLET;
10109 dgst_size = DGST_SIZE_4_5; // because kernel uses _SHA1_
10110 parse_func = mywallet_parse_hash;
10111 sort_by_digest = sort_by_digest_4_5;
10112 opti_type = OPTI_TYPE_ZERO_BYTE;
10113 dgst_pos0 = 0;
10114 dgst_pos1 = 1;
10115 dgst_pos2 = 2;
10116 dgst_pos3 = 3;
10117 break;
10118
10119 case 12800: hash_type = HASH_TYPE_PBKDF2_SHA256;
10120 salt_type = SALT_TYPE_EMBEDDED;
10121 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10122 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10123 kern_type = KERN_TYPE_MS_DRSR;
10124 dgst_size = DGST_SIZE_4_8;
10125 parse_func = ms_drsr_parse_hash;
10126 sort_by_digest = sort_by_digest_4_8;
10127 opti_type = OPTI_TYPE_ZERO_BYTE;
10128 dgst_pos0 = 0;
10129 dgst_pos1 = 1;
10130 dgst_pos2 = 2;
10131 dgst_pos3 = 3;
10132 break;
10133
10134 case 12900: hash_type = HASH_TYPE_PBKDF2_SHA256;
10135 salt_type = SALT_TYPE_EMBEDDED;
10136 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10137 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10138 kern_type = KERN_TYPE_ANDROIDFDE_SAMSUNG;
10139 dgst_size = DGST_SIZE_4_8;
10140 parse_func = androidfde_samsung_parse_hash;
10141 sort_by_digest = sort_by_digest_4_8;
10142 opti_type = OPTI_TYPE_ZERO_BYTE;
10143 dgst_pos0 = 0;
10144 dgst_pos1 = 1;
10145 dgst_pos2 = 2;
10146 dgst_pos3 = 3;
10147 break;
10148
10149 case 13000: hash_type = HASH_TYPE_PBKDF2_SHA256;
10150 salt_type = SALT_TYPE_EMBEDDED;
10151 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10152 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10153 kern_type = KERN_TYPE_RAR5;
10154 dgst_size = DGST_SIZE_4_4;
10155 parse_func = rar5_parse_hash;
10156 sort_by_digest = sort_by_digest_4_4;
10157 opti_type = OPTI_TYPE_ZERO_BYTE;
10158 dgst_pos0 = 0;
10159 dgst_pos1 = 1;
10160 dgst_pos2 = 2;
10161 dgst_pos3 = 3;
10162 break;
10163
10164 case 13100: hash_type = HASH_TYPE_KRB5TGS;
10165 salt_type = SALT_TYPE_EMBEDDED;
10166 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
10167 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10168 kern_type = KERN_TYPE_KRB5TGS;
10169 dgst_size = DGST_SIZE_4_4;
10170 parse_func = krb5tgs_parse_hash;
10171 sort_by_digest = sort_by_digest_4_4;
10172 opti_type = OPTI_TYPE_ZERO_BYTE
10173 | OPTI_TYPE_NOT_ITERATED;
10174 dgst_pos0 = 0;
10175 dgst_pos1 = 1;
10176 dgst_pos2 = 2;
10177 dgst_pos3 = 3;
10178 break;
10179
10180 case 13200: hash_type = HASH_TYPE_AES;
10181 salt_type = SALT_TYPE_EMBEDDED;
10182 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10183 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10184 kern_type = KERN_TYPE_AXCRYPT;
10185 dgst_size = DGST_SIZE_4_4;
10186 parse_func = axcrypt_parse_hash;
10187 sort_by_digest = sort_by_digest_4_4;
10188 opti_type = OPTI_TYPE_ZERO_BYTE;
10189 dgst_pos0 = 0;
10190 dgst_pos1 = 1;
10191 dgst_pos2 = 2;
10192 dgst_pos3 = 3;
10193 break;
10194
10195 case 13300: hash_type = HASH_TYPE_SHA1;
10196 salt_type = SALT_TYPE_NONE;
10197 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
10198 opts_type = OPTS_TYPE_PT_GENERATE_BE
10199 | OPTS_TYPE_PT_ADD80
10200 | OPTS_TYPE_PT_ADDBITS15;
10201 kern_type = KERN_TYPE_SHA1_AXCRYPT;
10202 dgst_size = DGST_SIZE_4_5;
10203 parse_func = sha1axcrypt_parse_hash;
10204 sort_by_digest = sort_by_digest_4_5;
10205 opti_type = OPTI_TYPE_ZERO_BYTE
10206 | OPTI_TYPE_PRECOMPUTE_INIT
10207 | OPTI_TYPE_EARLY_SKIP
10208 | OPTI_TYPE_NOT_ITERATED
10209 | OPTI_TYPE_NOT_SALTED;
10210 dgst_pos0 = 0;
10211 dgst_pos1 = 4;
10212 dgst_pos2 = 3;
10213 dgst_pos3 = 2;
10214 break;
10215
10216 case 13400: hash_type = HASH_TYPE_AES;
10217 salt_type = SALT_TYPE_EMBEDDED;
10218 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
10219 opts_type = OPTS_TYPE_PT_GENERATE_LE;
10220 kern_type = KERN_TYPE_KEEPASS;
10221 dgst_size = DGST_SIZE_4_4;
10222 parse_func = keepass_parse_hash;
10223 sort_by_digest = sort_by_digest_4_4;
10224 opti_type = OPTI_TYPE_ZERO_BYTE;
10225 dgst_pos0 = 0;
10226 dgst_pos1 = 1;
10227 dgst_pos2 = 2;
10228 dgst_pos3 = 3;
10229 break;
10230
10231 case 13500: hash_type = HASH_TYPE_SHA1;
10232 salt_type = SALT_TYPE_EMBEDDED;
10233 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
10234 opts_type = OPTS_TYPE_PT_GENERATE_BE
10235 | OPTS_TYPE_PT_UNICODE
10236 | OPTS_TYPE_PT_ADD80;
10237 kern_type = KERN_TYPE_PSTOKEN;
10238 dgst_size = DGST_SIZE_4_5;
10239 parse_func = pstoken_parse_hash;
10240 sort_by_digest = sort_by_digest_4_5;
10241 opti_type = OPTI_TYPE_ZERO_BYTE
10242 | OPTI_TYPE_PRECOMPUTE_INIT
10243 | OPTI_TYPE_EARLY_SKIP
10244 | OPTI_TYPE_NOT_ITERATED
10245 | OPTI_TYPE_PREPENDED_SALT
10246 | OPTI_TYPE_RAW_HASH;
10247 dgst_pos0 = 3;
10248 dgst_pos1 = 4;
10249 dgst_pos2 = 2;
10250 dgst_pos3 = 1;
10251 break;
10252
10253 default: usage_mini_print (PROGNAME); return (-1);
10254 }
10255
10256 /**
10257 * parser
10258 */
10259
10260 data.parse_func = parse_func;
10261
10262 /**
10263 * misc stuff
10264 */
10265
10266 if (hex_salt)
10267 {
10268 if (salt_type == SALT_TYPE_INTERN)
10269 {
10270 opts_type |= OPTS_TYPE_ST_HEX;
10271 }
10272 else
10273 {
10274 log_error ("ERROR: Parameter hex-salt not valid for hash-type %u", hash_mode);
10275
10276 return (-1);
10277 }
10278 }
10279
10280 uint isSalted = ((salt_type == SALT_TYPE_INTERN)
10281 | (salt_type == SALT_TYPE_EXTERN)
10282 | (salt_type == SALT_TYPE_EMBEDDED)
10283 | (salt_type == SALT_TYPE_VIRTUAL));
10284
10285 sort_by_digest = sort_by_digest_p0p1; // overruled by 64 bit digest
10286
10287 data.hash_type = hash_type;
10288 data.attack_mode = attack_mode;
10289 data.attack_kern = attack_kern;
10290 data.attack_exec = attack_exec;
10291 data.kern_type = kern_type;
10292 data.opts_type = opts_type;
10293 data.dgst_size = dgst_size;
10294 data.salt_type = salt_type;
10295 data.isSalted = isSalted;
10296 data.sort_by_digest = sort_by_digest;
10297 data.dgst_pos0 = dgst_pos0;
10298 data.dgst_pos1 = dgst_pos1;
10299 data.dgst_pos2 = dgst_pos2;
10300 data.dgst_pos3 = dgst_pos3;
10301
10302 esalt_size = 0;
10303
10304 switch (hash_mode)
10305 {
10306 case 2500: esalt_size = sizeof (wpa_t); break;
10307 case 5300: esalt_size = sizeof (ikepsk_t); break;
10308 case 5400: esalt_size = sizeof (ikepsk_t); break;
10309 case 5500: esalt_size = sizeof (netntlm_t); break;
10310 case 5600: esalt_size = sizeof (netntlm_t); break;
10311 case 6211: esalt_size = sizeof (tc_t); break;
10312 case 6212: esalt_size = sizeof (tc_t); break;
10313 case 6213: esalt_size = sizeof (tc_t); break;
10314 case 6221: esalt_size = sizeof (tc_t); break;
10315 case 6222: esalt_size = sizeof (tc_t); break;
10316 case 6223: esalt_size = sizeof (tc_t); break;
10317 case 6231: esalt_size = sizeof (tc_t); break;
10318 case 6232: esalt_size = sizeof (tc_t); break;
10319 case 6233: esalt_size = sizeof (tc_t); break;
10320 case 6241: esalt_size = sizeof (tc_t); break;
10321 case 6242: esalt_size = sizeof (tc_t); break;
10322 case 6243: esalt_size = sizeof (tc_t); break;
10323 case 6600: esalt_size = sizeof (agilekey_t); break;
10324 case 7100: esalt_size = sizeof (pbkdf2_sha512_t); break;
10325 case 7200: esalt_size = sizeof (pbkdf2_sha512_t); break;
10326 case 7300: esalt_size = sizeof (rakp_t); break;
10327 case 7500: esalt_size = sizeof (krb5pa_t); break;
10328 case 8200: esalt_size = sizeof (cloudkey_t); break;
10329 case 8800: esalt_size = sizeof (androidfde_t); break;
10330 case 9200: esalt_size = sizeof (pbkdf2_sha256_t); break;
10331 case 9400: esalt_size = sizeof (office2007_t); break;
10332 case 9500: esalt_size = sizeof (office2010_t); break;
10333 case 9600: esalt_size = sizeof (office2013_t); break;
10334 case 9700: esalt_size = sizeof (oldoffice01_t); break;
10335 case 9710: esalt_size = sizeof (oldoffice01_t); break;
10336 case 9720: esalt_size = sizeof (oldoffice01_t); break;
10337 case 9800: esalt_size = sizeof (oldoffice34_t); break;
10338 case 9810: esalt_size = sizeof (oldoffice34_t); break;
10339 case 9820: esalt_size = sizeof (oldoffice34_t); break;
10340 case 10000: esalt_size = sizeof (pbkdf2_sha256_t); break;
10341 case 10200: esalt_size = sizeof (cram_md5_t); break;
10342 case 10400: esalt_size = sizeof (pdf_t); break;
10343 case 10410: esalt_size = sizeof (pdf_t); break;
10344 case 10420: esalt_size = sizeof (pdf_t); break;
10345 case 10500: esalt_size = sizeof (pdf_t); break;
10346 case 10600: esalt_size = sizeof (pdf_t); break;
10347 case 10700: esalt_size = sizeof (pdf_t); break;
10348 case 10900: esalt_size = sizeof (pbkdf2_sha256_t); break;
10349 case 11300: esalt_size = sizeof (bitcoin_wallet_t); break;
10350 case 11400: esalt_size = sizeof (sip_t); break;
10351 case 11600: esalt_size = sizeof (seven_zip_t); break;
10352 case 11900: esalt_size = sizeof (pbkdf2_md5_t); break;
10353 case 12000: esalt_size = sizeof (pbkdf2_sha1_t); break;
10354 case 12100: esalt_size = sizeof (pbkdf2_sha512_t); break;
10355 case 13000: esalt_size = sizeof (rar5_t); break;
10356 case 13100: esalt_size = sizeof (krb5tgs_t); break;
10357 case 13400: esalt_size = sizeof (keepass_t); break;
10358 case 13500: esalt_size = sizeof (pstoken_t); break;
10359 }
10360
10361 data.esalt_size = esalt_size;
10362
10363 /**
10364 * choose dictionary parser
10365 */
10366
10367 if (hash_type == HASH_TYPE_LM)
10368 {
10369 get_next_word_func = get_next_word_lm;
10370 }
10371 else if (opts_type & OPTS_TYPE_PT_UPPER)
10372 {
10373 get_next_word_func = get_next_word_uc;
10374 }
10375 else
10376 {
10377 get_next_word_func = get_next_word_std;
10378 }
10379
10380 /**
10381 * dictstat
10382 */
10383
10384 dictstat_t *dictstat_base = (dictstat_t *) mycalloc (MAX_DICTSTAT, sizeof (dictstat_t));
10385
10386 #ifdef _POSIX
10387 size_t dictstat_nmemb = 0;
10388 #endif
10389
10390 #ifdef _WIN
10391 uint dictstat_nmemb = 0;
10392 #endif
10393
10394 char dictstat[256] = { 0 };
10395
10396 FILE *dictstat_fp = NULL;
10397
10398 if (keyspace == 0)
10399 {
10400 snprintf (dictstat, sizeof (dictstat) - 1, "%s/%s", profile_dir, DICTSTAT_FILENAME);
10401
10402 dictstat_fp = fopen (dictstat, "rb");
10403
10404 if (dictstat_fp)
10405 {
10406 #ifdef _POSIX
10407 struct stat tmpstat;
10408
10409 fstat (fileno (dictstat_fp), &tmpstat);
10410 #endif
10411
10412 #ifdef _WIN
10413 struct stat64 tmpstat;
10414
10415 _fstat64 (fileno (dictstat_fp), &tmpstat);
10416 #endif
10417
10418 if (tmpstat.st_mtime < COMPTIME)
10419 {
10420 /* with v0.15 the format changed so we have to ensure user is using a good version
10421 since there is no version-header in the dictstat file */
10422
10423 fclose (dictstat_fp);
10424
10425 unlink (dictstat);
10426 }
10427 else
10428 {
10429 while (!feof (dictstat_fp))
10430 {
10431 dictstat_t d;
10432
10433 if (fread (&d, sizeof (dictstat_t), 1, dictstat_fp) == 0) continue;
10434
10435 lsearch (&d, dictstat_base, &dictstat_nmemb, sizeof (dictstat_t), sort_by_dictstat);
10436
10437 if (dictstat_nmemb == (MAX_DICTSTAT - 1000))
10438 {
10439 log_error ("ERROR: There are too many entries in the %s database. You have to remove/rename it.", dictstat);
10440
10441 return -1;
10442 }
10443 }
10444
10445 fclose (dictstat_fp);
10446 }
10447 }
10448 }
10449
10450 /**
10451 * potfile
10452 */
10453
10454 char potfile[256] = { 0 };
10455
10456 if (potfile_path == NULL)
10457 {
10458 snprintf (potfile, sizeof (potfile) - 1, "%s/%s", profile_dir, POTFILE_FILENAME);
10459 }
10460 else
10461 {
10462 strncpy (potfile, potfile_path, sizeof (potfile) - 1);
10463 }
10464
10465 data.pot_fp = NULL;
10466
10467 FILE *out_fp = NULL;
10468 FILE *pot_fp = NULL;
10469
10470 if (show == 1 || left == 1)
10471 {
10472 pot_fp = fopen (potfile, "rb");
10473
10474 if (pot_fp == NULL)
10475 {
10476 log_error ("ERROR: %s: %s", potfile, strerror (errno));
10477
10478 return (-1);
10479 }
10480
10481 if (outfile != NULL)
10482 {
10483 if ((out_fp = fopen (outfile, "ab")) == NULL)
10484 {
10485 log_error ("ERROR: %s: %s", outfile, strerror (errno));
10486
10487 fclose (pot_fp);
10488
10489 return (-1);
10490 }
10491 }
10492 else
10493 {
10494 out_fp = stdout;
10495 }
10496 }
10497 else
10498 {
10499 if (potfile_disable == 0)
10500 {
10501 pot_fp = fopen (potfile, "ab");
10502
10503 if (pot_fp == NULL)
10504 {
10505 log_error ("ERROR: %s: %s", potfile, strerror (errno));
10506
10507 return (-1);
10508 }
10509
10510 data.pot_fp = pot_fp;
10511 }
10512 }
10513
10514 pot_t *pot = NULL;
10515
10516 uint pot_cnt = 0;
10517 uint pot_avail = 0;
10518
10519 if (show == 1 || left == 1)
10520 {
10521 SUPPRESS_OUTPUT = 1;
10522
10523 pot_avail = count_lines (pot_fp);
10524
10525 rewind (pot_fp);
10526
10527 pot = (pot_t *) mycalloc (pot_avail, sizeof (pot_t));
10528
10529 uint pot_hashes_avail = 0;
10530
10531 uint line_num = 0;
10532
10533 char *line_buf = (char *) mymalloc (HCBUFSIZ);
10534
10535 while (!feof (pot_fp))
10536 {
10537 line_num++;
10538
10539 int line_len = fgetl (pot_fp, line_buf);
10540
10541 if (line_len == 0) continue;
10542
10543 char *plain_buf = line_buf + line_len;
10544
10545 pot_t *pot_ptr = &pot[pot_cnt];
10546
10547 hash_t *hashes_buf = &pot_ptr->hash;
10548
10549 // we do not initialize all hashes_buf->digest etc at the beginning, since many lines may not be
10550 // valid lines of this specific hash type (otherwise it would be more waste of memory than gain)
10551
10552 if (pot_cnt == pot_hashes_avail)
10553 {
10554 uint pos = 0;
10555
10556 for (pos = 0; pos < INCR_POT; pos++)
10557 {
10558 if ((pot_cnt + pos) >= pot_avail) break;
10559
10560 pot_t *tmp_pot = &pot[pot_cnt + pos];
10561
10562 hash_t *tmp_hash = &tmp_pot->hash;
10563
10564 tmp_hash->digest = mymalloc (dgst_size);
10565
10566 if (isSalted)
10567 {
10568 tmp_hash->salt = (salt_t *) mymalloc (sizeof (salt_t));
10569 }
10570
10571 if (esalt_size)
10572 {
10573 tmp_hash->esalt = mymalloc (esalt_size);
10574 }
10575
10576 pot_hashes_avail++;
10577 }
10578 }
10579
10580 int plain_len = 0;
10581
10582 int parser_status;
10583
10584 int iter = MAX_CUT_TRIES;
10585
10586 do
10587 {
10588 for (int i = line_len - 1; i; i--, plain_len++, plain_buf--, line_len--)
10589 {
10590 if (line_buf[i] == ':')
10591 {
10592 line_len--;
10593
10594 break;
10595 }
10596 }
10597
10598 if (data.hash_mode != 2500)
10599 {
10600 parser_status = parse_func (line_buf, line_len, hashes_buf);
10601 }
10602 else
10603 {
10604 int max_salt_size = sizeof (hashes_buf->salt->salt_buf);
10605
10606 if (line_len > max_salt_size)
10607 {
10608 parser_status = PARSER_GLOBAL_LENGTH;
10609 }
10610 else
10611 {
10612 memset (&hashes_buf->salt->salt_buf, 0, max_salt_size);
10613
10614 memcpy (&hashes_buf->salt->salt_buf, line_buf, line_len);
10615
10616 hashes_buf->salt->salt_len = line_len;
10617
10618 parser_status = PARSER_OK;
10619 }
10620 }
10621
10622 // if NOT parsed without error, we add the ":" to the plain
10623
10624 if (parser_status == PARSER_GLOBAL_LENGTH || parser_status == PARSER_HASH_LENGTH || parser_status == PARSER_SALT_LENGTH)
10625 {
10626 plain_len++;
10627 plain_buf--;
10628 }
10629
10630 } while ((parser_status == PARSER_GLOBAL_LENGTH || parser_status == PARSER_HASH_LENGTH || parser_status == PARSER_SALT_LENGTH) && --iter);
10631
10632 if (parser_status < PARSER_GLOBAL_ZERO)
10633 {
10634 // log_info ("WARNING: Potfile '%s' in line %u (%s): %s", potfile, line_num, line_buf, strparser (parser_status));
10635
10636 continue;
10637 }
10638
10639 if (plain_len >= 255) continue;
10640
10641 memcpy (pot_ptr->plain_buf, plain_buf, plain_len);
10642
10643 pot_ptr->plain_len = plain_len;
10644
10645 pot_cnt++;
10646 }
10647
10648 myfree (line_buf);
10649
10650 fclose (pot_fp);
10651
10652 SUPPRESS_OUTPUT = 0;
10653
10654 qsort (pot, pot_cnt, sizeof (pot_t), sort_by_pot);
10655 }
10656
10657 /**
10658 * word len
10659 */
10660
10661 uint pw_min = PW_MIN;
10662 uint pw_max = PW_MAX;
10663
10664 switch (hash_mode)
10665 {
10666 case 125: if (pw_max > 32) pw_max = 32;
10667 break;
10668 case 400: if (pw_max > 40) pw_max = 40;
10669 break;
10670 case 500: if (pw_max > 16) pw_max = 16;
10671 break;
10672 case 1500: if (pw_max > 8) pw_max = 8;
10673 break;
10674 case 1600: if (pw_max > 16) pw_max = 16;
10675 break;
10676 case 1800: if (pw_max > 16) pw_max = 16;
10677 break;
10678 case 2100: if (pw_max > 16) pw_max = 16;
10679 break;
10680 case 2500: if (pw_min < 8) pw_min = 8;
10681 break;
10682 case 3000: if (pw_max > 7) pw_max = 7;
10683 break;
10684 case 5200: if (pw_max > 24) pw_max = 24;
10685 break;
10686 case 5800: if (pw_max > 16) pw_max = 16;
10687 break;
10688 case 6300: if (pw_max > 16) pw_max = 16;
10689 break;
10690 case 7400: if (pw_max > 16) pw_max = 16;
10691 break;
10692 case 7900: if (pw_max > 48) pw_max = 48;
10693 break;
10694 case 8500: if (pw_max > 8) pw_max = 8;
10695 break;
10696 case 8600: if (pw_max > 16) pw_max = 16;
10697 break;
10698 case 9710: pw_min = 5;
10699 pw_max = 5;
10700 break;
10701 case 9810: pw_min = 5;
10702 pw_max = 5;
10703 break;
10704 case 10410: pw_min = 5;
10705 pw_max = 5;
10706 break;
10707 case 10300: if (pw_max < 3) pw_min = 3;
10708 if (pw_max > 40) pw_max = 40;
10709 break;
10710 case 10500: if (pw_max < 3) pw_min = 3;
10711 if (pw_max > 40) pw_max = 40;
10712 break;
10713 case 10700: if (pw_max > 16) pw_max = 16;
10714 break;
10715 case 11300: if (pw_max > 40) pw_max = 40;
10716 break;
10717 case 12500: if (pw_max > 20) pw_max = 20;
10718 break;
10719 case 12800: if (pw_max > 24) pw_max = 24;
10720 break;
10721 }
10722
10723 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
10724 {
10725 switch (attack_kern)
10726 {
10727 case ATTACK_KERN_STRAIGHT: if (pw_max > PW_DICTMAX) pw_max = PW_DICTMAX1;
10728 break;
10729 case ATTACK_KERN_COMBI: if (pw_max > PW_DICTMAX) pw_max = PW_DICTMAX1;
10730 break;
10731 }
10732 }
10733
10734 /**
10735 * charsets : keep them together for more easy maintainnce
10736 */
10737
10738 cs_t mp_sys[6] = { { { 0 }, 0 } };
10739 cs_t mp_usr[4] = { { { 0 }, 0 } };
10740
10741 mp_setup_sys (mp_sys);
10742
10743 if (custom_charset_1) mp_setup_usr (mp_sys, mp_usr, custom_charset_1, 0);
10744 if (custom_charset_2) mp_setup_usr (mp_sys, mp_usr, custom_charset_2, 1);
10745 if (custom_charset_3) mp_setup_usr (mp_sys, mp_usr, custom_charset_3, 2);
10746 if (custom_charset_4) mp_setup_usr (mp_sys, mp_usr, custom_charset_4, 3);
10747
10748 /**
10749 * load hashes, part I: find input mode, count hashes
10750 */
10751
10752 uint hashlist_mode = 0;
10753 uint hashlist_format = HLFMT_HASHCAT;
10754
10755 uint hashes_avail = 0;
10756
10757 if (benchmark == 0)
10758 {
10759 struct stat f;
10760
10761 hashlist_mode = (stat (myargv[optind], &f) == 0) ? HL_MODE_FILE : HL_MODE_ARG;
10762
10763 if ((hash_mode == 2500) ||
10764 (hash_mode == 5200) ||
10765 ((hash_mode >= 6200) && (hash_mode <= 6299)) ||
10766 (hash_mode == 9000))
10767 {
10768 hashlist_mode = HL_MODE_ARG;
10769
10770 char *hashfile = myargv[optind];
10771
10772 data.hashfile = hashfile;
10773
10774 logfile_top_var_string ("target", hashfile);
10775 }
10776
10777 if (hashlist_mode == HL_MODE_ARG)
10778 {
10779 if (hash_mode == 2500)
10780 {
10781 struct stat st;
10782
10783 if (stat (data.hashfile, &st) == -1)
10784 {
10785 log_error ("ERROR: %s: %s", data.hashfile, strerror (errno));
10786
10787 return (-1);
10788 }
10789
10790 hashes_avail = st.st_size / sizeof (hccap_t);
10791 }
10792 else
10793 {
10794 hashes_avail = 1;
10795 }
10796 }
10797 else if (hashlist_mode == HL_MODE_FILE)
10798 {
10799 char *hashfile = myargv[optind];
10800
10801 data.hashfile = hashfile;
10802
10803 logfile_top_var_string ("target", hashfile);
10804
10805 FILE *fp = NULL;
10806
10807 if ((fp = fopen (hashfile, "rb")) == NULL)
10808 {
10809 log_error ("ERROR: %s: %s", hashfile, strerror (errno));
10810
10811 return (-1);
10812 }
10813
10814 if (data.quiet == 0) log_info_nn ("Counting lines in %s", hashfile);
10815
10816 hashes_avail = count_lines (fp);
10817
10818 rewind (fp);
10819
10820 if (hashes_avail == 0)
10821 {
10822 log_error ("ERROR: hashfile is empty or corrupt");
10823
10824 fclose (fp);
10825
10826 return (-1);
10827 }
10828
10829 hashlist_format = hlfmt_detect (fp, 100); // 100 = max numbers to "scan". could be hashes_avail, too
10830
10831 if ((remove == 1) && (hashlist_format != HLFMT_HASHCAT))
10832 {
10833 log_error ("ERROR: remove not supported in native hashfile-format mode");
10834
10835 fclose (fp);
10836
10837 return (-1);
10838 }
10839
10840 fclose (fp);
10841 }
10842 }
10843 else
10844 {
10845 hashlist_mode = HL_MODE_ARG;
10846
10847 hashes_avail = 1;
10848 }
10849
10850 if (hash_mode == 3000) hashes_avail *= 2;
10851
10852 data.hashlist_mode = hashlist_mode;
10853 data.hashlist_format = hashlist_format;
10854
10855 logfile_top_uint (hashlist_mode);
10856 logfile_top_uint (hashlist_format);
10857
10858 /**
10859 * load hashes, part II: allocate required memory, set pointers
10860 */
10861
10862 hash_t *hashes_buf = NULL;
10863 void *digests_buf = NULL;
10864 salt_t *salts_buf = NULL;
10865 void *esalts_buf = NULL;
10866
10867 hashes_buf = (hash_t *) mycalloc (hashes_avail, sizeof (hash_t));
10868
10869 digests_buf = (void *) mycalloc (hashes_avail, dgst_size);
10870
10871 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
10872 {
10873 u32 hash_pos;
10874
10875 for (hash_pos = 0; hash_pos < hashes_avail; hash_pos++)
10876 {
10877 hashinfo_t *hash_info = (hashinfo_t *) mymalloc (sizeof (hashinfo_t));
10878
10879 hashes_buf[hash_pos].hash_info = hash_info;
10880
10881 if (username && (remove || show || left))
10882 {
10883 hash_info->user = (user_t*) mymalloc (sizeof (user_t));
10884 }
10885
10886 if (benchmark)
10887 {
10888 hash_info->orighash = (char *) mymalloc (256);
10889 }
10890 }
10891 }
10892
10893 if (isSalted)
10894 {
10895 salts_buf = (salt_t *) mycalloc (hashes_avail, sizeof (salt_t));
10896
10897 if (esalt_size)
10898 {
10899 esalts_buf = (void *) mycalloc (hashes_avail, esalt_size);
10900 }
10901 }
10902 else
10903 {
10904 salts_buf = (salt_t *) mycalloc (1, sizeof (salt_t));
10905 }
10906
10907 for (uint hash_pos = 0; hash_pos < hashes_avail; hash_pos++)
10908 {
10909 hashes_buf[hash_pos].digest = ((char *) digests_buf) + (hash_pos * dgst_size);
10910
10911 if (isSalted)
10912 {
10913 hashes_buf[hash_pos].salt = &salts_buf[hash_pos];
10914
10915 if (esalt_size)
10916 {
10917 hashes_buf[hash_pos].esalt = ((char *) esalts_buf) + (hash_pos * esalt_size);
10918 }
10919 }
10920 else
10921 {
10922 hashes_buf[hash_pos].salt = &salts_buf[0];
10923 }
10924 }
10925
10926 /**
10927 * load hashes, part III: parse hashes or generate them if benchmark
10928 */
10929
10930 uint hashes_cnt = 0;
10931
10932 if (benchmark == 0)
10933 {
10934 if (keyspace == 1)
10935 {
10936 // useless to read hash file for keyspace, cheat a little bit w/ optind
10937 }
10938 else if (hashes_avail == 0)
10939 {
10940 }
10941 else if (hashlist_mode == HL_MODE_ARG)
10942 {
10943 char *input_buf = myargv[optind];
10944
10945 uint input_len = strlen (input_buf);
10946
10947 logfile_top_var_string ("target", input_buf);
10948
10949 char *hash_buf = NULL;
10950 int hash_len = 0;
10951
10952 hlfmt_hash (hashlist_format, input_buf, input_len, &hash_buf, &hash_len);
10953
10954 bool hash_fmt_error = 0;
10955
10956 if (hash_len < 1) hash_fmt_error = 1;
10957 if (hash_buf == NULL) hash_fmt_error = 1;
10958
10959 if (hash_fmt_error)
10960 {
10961 log_info ("WARNING: failed to parse hashes using the '%s' format", strhlfmt (hashlist_format));
10962 }
10963 else
10964 {
10965 if (opts_type & OPTS_TYPE_HASH_COPY)
10966 {
10967 hashinfo_t *hash_info_tmp = hashes_buf[hashes_cnt].hash_info;
10968
10969 hash_info_tmp->orighash = mystrdup (hash_buf);
10970 }
10971
10972 if (isSalted)
10973 {
10974 memset (hashes_buf[0].salt, 0, sizeof (salt_t));
10975 }
10976
10977 int parser_status = PARSER_OK;
10978
10979 if (hash_mode == 2500)
10980 {
10981 if (hash_len == 0)
10982 {
10983 log_error ("ERROR: hccap file not specified");
10984
10985 return (-1);
10986 }
10987
10988 hashlist_mode = HL_MODE_FILE;
10989
10990 data.hashlist_mode = hashlist_mode;
10991
10992 FILE *fp = fopen (hash_buf, "rb");
10993
10994 if (fp == NULL)
10995 {
10996 log_error ("ERROR: %s: %s", hash_buf, strerror (errno));
10997
10998 return (-1);
10999 }
11000
11001 if (hashes_avail < 1)
11002 {
11003 log_error ("ERROR: hccap file is empty or corrupt");
11004
11005 fclose (fp);
11006
11007 return (-1);
11008 }
11009
11010 uint hccap_size = sizeof (hccap_t);
11011
11012 char *in = (char *) mymalloc (hccap_size);
11013
11014 while (!feof (fp))
11015 {
11016 int n = fread (in, hccap_size, 1, fp);
11017
11018 if (n != 1)
11019 {
11020 if (hashes_cnt < 1) parser_status = PARSER_HCCAP_FILE_SIZE;
11021
11022 break;
11023 }
11024
11025 parser_status = parse_func (in, hccap_size, &hashes_buf[hashes_cnt]);
11026
11027 if (parser_status != PARSER_OK)
11028 {
11029 log_info ("WARNING: Hash '%s': %s", hash_buf, strparser (parser_status));
11030
11031 continue;
11032 }
11033
11034 // hack: append MAC1 and MAC2 s.t. in --show and --left the line matches with the .pot file format (i.e. ESSID:MAC1:MAC2)
11035
11036 if ((show == 1) || (left == 1))
11037 {
11038 salt_t *tmp_salt = hashes_buf[hashes_cnt].salt;
11039
11040 char *salt_ptr = (char *) tmp_salt->salt_buf;
11041
11042 int cur_pos = tmp_salt->salt_len;
11043 int rem_len = sizeof (hashes_buf[hashes_cnt].salt->salt_buf) - cur_pos;
11044
11045 wpa_t *wpa = (wpa_t *) hashes_buf[hashes_cnt].esalt;
11046
11047 // do the appending task
11048
11049 snprintf (salt_ptr + cur_pos,
11050 rem_len,
11051 ":%02x%02x%02x%02x%02x%02x:%02x%02x%02x%02x%02x%02x",
11052 wpa->orig_mac1[0],
11053 wpa->orig_mac1[1],
11054 wpa->orig_mac1[2],
11055 wpa->orig_mac1[3],
11056 wpa->orig_mac1[4],
11057 wpa->orig_mac1[5],
11058 wpa->orig_mac2[0],
11059 wpa->orig_mac2[1],
11060 wpa->orig_mac2[2],
11061 wpa->orig_mac2[3],
11062 wpa->orig_mac2[4],
11063 wpa->orig_mac2[5]);
11064
11065 // memset () the remaining part of the salt
11066
11067 cur_pos = tmp_salt->salt_len + 1 + 12 + 1 + 12;
11068 rem_len = sizeof (hashes_buf[hashes_cnt].salt->salt_buf) - cur_pos;
11069
11070 if (rem_len > 0) memset (salt_ptr + cur_pos, 0, rem_len);
11071
11072 tmp_salt->salt_len += 1 + 12 + 1 + 12;
11073 }
11074
11075 if (show == 1) handle_show_request (pot, pot_cnt, (char *) hashes_buf[hashes_cnt].salt->salt_buf, hashes_buf[hashes_cnt].salt->salt_len, &hashes_buf[hashes_cnt], sort_by_salt_buf, out_fp);
11076 if (left == 1) handle_left_request (pot, pot_cnt, (char *) hashes_buf[hashes_cnt].salt->salt_buf, hashes_buf[hashes_cnt].salt->salt_len, &hashes_buf[hashes_cnt], sort_by_salt_buf, out_fp);
11077
11078 hashes_cnt++;
11079 }
11080
11081 fclose (fp);
11082
11083 myfree (in);
11084 }
11085 else if (hash_mode == 3000)
11086 {
11087 if (hash_len == 32)
11088 {
11089 parser_status = parse_func (hash_buf, 16, &hashes_buf[hashes_cnt]);
11090
11091 hash_t *lm_hash_left = NULL;
11092
11093 if (parser_status == PARSER_OK)
11094 {
11095 lm_hash_left = &hashes_buf[hashes_cnt];
11096
11097 hashes_cnt++;
11098 }
11099 else
11100 {
11101 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
11102 }
11103
11104 parser_status = parse_func (hash_buf + 16, 16, &hashes_buf[hashes_cnt]);
11105
11106 hash_t *lm_hash_right = NULL;
11107
11108 if (parser_status == PARSER_OK)
11109 {
11110 lm_hash_right = &hashes_buf[hashes_cnt];
11111
11112 hashes_cnt++;
11113 }
11114 else
11115 {
11116 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
11117 }
11118
11119 // show / left
11120
11121 if ((lm_hash_left != NULL) && (lm_hash_right != NULL))
11122 {
11123 if (show == 1) handle_show_request_lm (pot, pot_cnt, input_buf, input_len, lm_hash_left, lm_hash_right, sort_by_pot, out_fp);
11124 if (left == 1) handle_left_request_lm (pot, pot_cnt, input_buf, input_len, lm_hash_left, lm_hash_right, sort_by_pot, out_fp);
11125 }
11126 }
11127 else
11128 {
11129 parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
11130
11131 if (parser_status == PARSER_OK)
11132 {
11133 if (show == 1) handle_show_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11134 if (left == 1) handle_left_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11135 }
11136
11137 if (parser_status == PARSER_OK)
11138 {
11139 hashes_cnt++;
11140 }
11141 else
11142 {
11143 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
11144 }
11145 }
11146 }
11147 else
11148 {
11149 parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
11150
11151 if (parser_status == PARSER_OK)
11152 {
11153 if (show == 1) handle_show_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11154 if (left == 1) handle_left_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11155 }
11156
11157 if (parser_status == PARSER_OK)
11158 {
11159 hashes_cnt++;
11160 }
11161 else
11162 {
11163 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
11164 }
11165 }
11166 }
11167 }
11168 else if (hashlist_mode == HL_MODE_FILE)
11169 {
11170 char *hashfile = data.hashfile;
11171
11172 FILE *fp;
11173
11174 if ((fp = fopen (hashfile, "rb")) == NULL)
11175 {
11176 log_error ("ERROR: %s: %s", hashfile, strerror (errno));
11177
11178 return (-1);
11179 }
11180
11181 uint line_num = 0;
11182
11183 char *line_buf = (char *) mymalloc (HCBUFSIZ);
11184
11185 while (!feof (fp))
11186 {
11187 line_num++;
11188
11189 int line_len = fgetl (fp, line_buf);
11190
11191 if (line_len == 0) continue;
11192
11193 char *hash_buf = NULL;
11194 int hash_len = 0;
11195
11196 hlfmt_hash (hashlist_format, line_buf, line_len, &hash_buf, &hash_len);
11197
11198 bool hash_fmt_error = 0;
11199
11200 if (hash_len < 1) hash_fmt_error = 1;
11201 if (hash_buf == NULL) hash_fmt_error = 1;
11202
11203 if (hash_fmt_error)
11204 {
11205 log_info ("WARNING: failed to parse hashes using the '%s' format", strhlfmt (hashlist_format));
11206
11207 continue;
11208 }
11209
11210 if (username)
11211 {
11212 char *user_buf = NULL;
11213 int user_len = 0;
11214
11215 hlfmt_user (hashlist_format, line_buf, line_len, &user_buf, &user_len);
11216
11217 if (remove || show)
11218 {
11219 user_t **user = &hashes_buf[hashes_cnt].hash_info->user;
11220
11221 *user = (user_t *) mymalloc (sizeof (user_t));
11222
11223 user_t *user_ptr = *user;
11224
11225 if (user_buf != NULL)
11226 {
11227 user_ptr->user_name = mystrdup (user_buf);
11228 }
11229 else
11230 {
11231 user_ptr->user_name = mystrdup ("");
11232 }
11233
11234 user_ptr->user_len = user_len;
11235 }
11236 }
11237
11238 if (opts_type & OPTS_TYPE_HASH_COPY)
11239 {
11240 hashinfo_t *hash_info_tmp = hashes_buf[hashes_cnt].hash_info;
11241
11242 hash_info_tmp->orighash = mystrdup (hash_buf);
11243 }
11244
11245 if (isSalted)
11246 {
11247 memset (hashes_buf[hashes_cnt].salt, 0, sizeof (salt_t));
11248 }
11249
11250 if (hash_mode == 3000)
11251 {
11252 if (hash_len == 32)
11253 {
11254 int parser_status = parse_func (hash_buf, 16, &hashes_buf[hashes_cnt]);
11255
11256 if (parser_status < PARSER_GLOBAL_ZERO)
11257 {
11258 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11259
11260 continue;
11261 }
11262
11263 hash_t *lm_hash_left = &hashes_buf[hashes_cnt];
11264
11265 hashes_cnt++;
11266
11267 parser_status = parse_func (hash_buf + 16, 16, &hashes_buf[hashes_cnt]);
11268
11269 if (parser_status < PARSER_GLOBAL_ZERO)
11270 {
11271 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11272
11273 continue;
11274 }
11275
11276 hash_t *lm_hash_right = &hashes_buf[hashes_cnt];
11277
11278 if (data.quiet == 0) if ((hashes_cnt % 0x20000) == 0) log_info_nn ("Parsed Hashes: %u/%u (%0.2f%%)", hashes_cnt, hashes_avail, ((float) hashes_cnt / hashes_avail) * 100);
11279
11280 hashes_cnt++;
11281
11282 // show / left
11283
11284 if (show == 1) handle_show_request_lm (pot, pot_cnt, line_buf, line_len, lm_hash_left, lm_hash_right, sort_by_pot, out_fp);
11285 if (left == 1) handle_left_request_lm (pot, pot_cnt, line_buf, line_len, lm_hash_left, lm_hash_right, sort_by_pot, out_fp);
11286 }
11287 else
11288 {
11289 int parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
11290
11291 if (parser_status < PARSER_GLOBAL_ZERO)
11292 {
11293 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11294
11295 continue;
11296 }
11297
11298 if (data.quiet == 0) if ((hashes_cnt % 0x20000) == 0) log_info_nn ("Parsed Hashes: %u/%u (%0.2f%%)", hashes_cnt, hashes_avail, ((float) hashes_cnt / hashes_avail) * 100);
11299
11300 if (show == 1) handle_show_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11301 if (left == 1) handle_left_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11302
11303 hashes_cnt++;
11304 }
11305 }
11306 else
11307 {
11308 int parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
11309
11310 if (parser_status < PARSER_GLOBAL_ZERO)
11311 {
11312 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11313
11314 continue;
11315 }
11316
11317 if (data.quiet == 0) if ((hashes_cnt % 0x20000) == 0) log_info_nn ("Parsed Hashes: %u/%u (%0.2f%%)", hashes_cnt, hashes_avail, ((float) hashes_cnt / hashes_avail) * 100);
11318
11319 if (show == 1) handle_show_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11320 if (left == 1) handle_left_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11321
11322 hashes_cnt++;
11323 }
11324 }
11325
11326 myfree (line_buf);
11327
11328 fclose (fp);
11329
11330 if (data.quiet == 0) log_info_nn ("Parsed Hashes: %u/%u (%0.2f%%)", hashes_avail, hashes_avail, 100.00);
11331
11332 if ((out_fp != NULL) && (out_fp != stdout)) fclose (out_fp);
11333 }
11334 }
11335 else
11336 {
11337 if (isSalted)
11338 {
11339 hashes_buf[0].salt->salt_len = 8;
11340
11341 // special salt handling
11342
11343 switch (hash_mode)
11344 {
11345 case 1500: hashes_buf[0].salt->salt_len = 2;
11346 hashes_buf[0].salt->salt_buf[0] = 388; // pure magic
11347 break;
11348 case 1731: hashes_buf[0].salt->salt_len = 4;
11349 break;
11350 case 2410: hashes_buf[0].salt->salt_len = 4;
11351 break;
11352 case 2500: memcpy (hashes_buf[0].salt->salt_buf, "hashcat.net", 11);
11353 break;
11354 case 3100: hashes_buf[0].salt->salt_len = 1;
11355 break;
11356 case 5000: hashes_buf[0].salt->keccak_mdlen = 32;
11357 break;
11358 case 5800: hashes_buf[0].salt->salt_len = 16;
11359 break;
11360 case 6800: hashes_buf[0].salt->salt_len = 32;
11361 break;
11362 case 8400: hashes_buf[0].salt->salt_len = 40;
11363 break;
11364 case 8800: hashes_buf[0].salt->salt_len = 16;
11365 break;
11366 case 8900: hashes_buf[0].salt->salt_len = 16;
11367 hashes_buf[0].salt->scrypt_N = 1024;
11368 hashes_buf[0].salt->scrypt_r = 1;
11369 hashes_buf[0].salt->scrypt_p = 1;
11370 break;
11371 case 9100: hashes_buf[0].salt->salt_len = 16;
11372 break;
11373 case 9300: hashes_buf[0].salt->salt_len = 14;
11374 hashes_buf[0].salt->scrypt_N = 16384;
11375 hashes_buf[0].salt->scrypt_r = 1;
11376 hashes_buf[0].salt->scrypt_p = 1;
11377 break;
11378 case 9400: hashes_buf[0].salt->salt_len = 16;
11379 break;
11380 case 9500: hashes_buf[0].salt->salt_len = 16;
11381 break;
11382 case 9600: hashes_buf[0].salt->salt_len = 16;
11383 break;
11384 case 9700: hashes_buf[0].salt->salt_len = 16;
11385 break;
11386 case 9710: hashes_buf[0].salt->salt_len = 16;
11387 break;
11388 case 9720: hashes_buf[0].salt->salt_len = 16;
11389 break;
11390 case 9800: hashes_buf[0].salt->salt_len = 16;
11391 break;
11392 case 9810: hashes_buf[0].salt->salt_len = 16;
11393 break;
11394 case 9820: hashes_buf[0].salt->salt_len = 16;
11395 break;
11396 case 10300: hashes_buf[0].salt->salt_len = 12;
11397 break;
11398 case 11500: hashes_buf[0].salt->salt_len = 4;
11399 break;
11400 case 11600: hashes_buf[0].salt->salt_len = 4;
11401 break;
11402 case 12400: hashes_buf[0].salt->salt_len = 4;
11403 break;
11404 case 12500: hashes_buf[0].salt->salt_len = 8;
11405 break;
11406 case 12600: hashes_buf[0].salt->salt_len = 64;
11407 break;
11408 }
11409
11410 // special esalt handling
11411
11412 switch (hash_mode)
11413 {
11414 case 2500: ((wpa_t *) hashes_buf[0].esalt)->eapol_size = 128;
11415 break;
11416 case 5300: ((ikepsk_t *) hashes_buf[0].esalt)->nr_len = 1;
11417 ((ikepsk_t *) hashes_buf[0].esalt)->msg_len = 1;
11418 break;
11419 case 5400: ((ikepsk_t *) hashes_buf[0].esalt)->nr_len = 1;
11420 ((ikepsk_t *) hashes_buf[0].esalt)->msg_len = 1;
11421 break;
11422 case 5500: ((netntlm_t *) hashes_buf[0].esalt)->user_len = 1;
11423 ((netntlm_t *) hashes_buf[0].esalt)->domain_len = 1;
11424 ((netntlm_t *) hashes_buf[0].esalt)->srvchall_len = 1;
11425 ((netntlm_t *) hashes_buf[0].esalt)->clichall_len = 1;
11426 break;
11427 case 5600: ((netntlm_t *) hashes_buf[0].esalt)->user_len = 1;
11428 ((netntlm_t *) hashes_buf[0].esalt)->domain_len = 1;
11429 ((netntlm_t *) hashes_buf[0].esalt)->srvchall_len = 1;
11430 ((netntlm_t *) hashes_buf[0].esalt)->clichall_len = 1;
11431 break;
11432 case 7300: ((rakp_t *) hashes_buf[0].esalt)->salt_len = 32;
11433 break;
11434 case 10400: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11435 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11436 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11437 break;
11438 case 10410: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11439 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11440 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11441 break;
11442 case 10420: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11443 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11444 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11445 break;
11446 case 10500: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11447 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11448 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11449 break;
11450 case 10600: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11451 ((pdf_t *) hashes_buf[0].esalt)->o_len = 127;
11452 ((pdf_t *) hashes_buf[0].esalt)->u_len = 127;
11453 break;
11454 case 10700: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11455 ((pdf_t *) hashes_buf[0].esalt)->o_len = 127;
11456 ((pdf_t *) hashes_buf[0].esalt)->u_len = 127;
11457 break;
11458 case 11600: ((seven_zip_t *) hashes_buf[0].esalt)->iv_len = 16;
11459 ((seven_zip_t *) hashes_buf[0].esalt)->data_len = 112;
11460 ((seven_zip_t *) hashes_buf[0].esalt)->unpack_size = 112;
11461 break;
11462 case 13400: ((keepass_t *) hashes_buf[0].esalt)->version = 2;
11463 break;
11464 case 13500: ((pstoken_t *) hashes_buf[0].esalt)->salt_len = 113;
11465 break;
11466 }
11467 }
11468
11469 // set hashfile
11470
11471 switch (hash_mode)
11472 {
11473 case 5200: data.hashfile = mystrdup ("hashcat.psafe3");
11474 break;
11475 case 5300: data.hashfile = mystrdup ("hashcat.ikemd5");
11476 break;
11477 case 5400: data.hashfile = mystrdup ("hashcat.ikesha1");
11478 break;
11479 case 6211: data.hashfile = mystrdup ("hashcat.tc");
11480 break;
11481 case 6212: data.hashfile = mystrdup ("hashcat.tc");
11482 break;
11483 case 6213: data.hashfile = mystrdup ("hashcat.tc");
11484 break;
11485 case 6221: data.hashfile = mystrdup ("hashcat.tc");
11486 break;
11487 case 6222: data.hashfile = mystrdup ("hashcat.tc");
11488 break;
11489 case 6223: data.hashfile = mystrdup ("hashcat.tc");
11490 break;
11491 case 6231: data.hashfile = mystrdup ("hashcat.tc");
11492 break;
11493 case 6232: data.hashfile = mystrdup ("hashcat.tc");
11494 break;
11495 case 6233: data.hashfile = mystrdup ("hashcat.tc");
11496 break;
11497 case 6241: data.hashfile = mystrdup ("hashcat.tc");
11498 break;
11499 case 6242: data.hashfile = mystrdup ("hashcat.tc");
11500 break;
11501 case 6243: data.hashfile = mystrdup ("hashcat.tc");
11502 break;
11503 case 6600: data.hashfile = mystrdup ("hashcat.agilekey");
11504 break;
11505 case 8200: data.hashfile = mystrdup ("hashcat.cloudkey");
11506 break;
11507 case 9000: data.hashfile = mystrdup ("hashcat.psafe2");
11508 break;
11509 }
11510
11511 // set default iterations
11512
11513 switch (hash_mode)
11514 {
11515 case 400: hashes_buf[0].salt->salt_iter = ROUNDS_PHPASS;
11516 break;
11517 case 500: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11518 break;
11519 case 501: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11520 break;
11521 case 1600: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11522 break;
11523 case 1800: hashes_buf[0].salt->salt_iter = ROUNDS_SHA512CRYPT;
11524 break;
11525 case 2100: hashes_buf[0].salt->salt_iter = ROUNDS_DCC2;
11526 break;
11527 case 2500: hashes_buf[0].salt->salt_iter = ROUNDS_WPA2;
11528 break;
11529 case 3200: hashes_buf[0].salt->salt_iter = ROUNDS_BCRYPT;
11530 break;
11531 case 5200: hashes_buf[0].salt->salt_iter = ROUNDS_PSAFE3;
11532 break;
11533 case 5800: hashes_buf[0].salt->salt_iter = ROUNDS_ANDROIDPIN - 1;
11534 break;
11535 case 6211: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_2K;
11536 break;
11537 case 6212: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_2K;
11538 break;
11539 case 6213: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_2K;
11540 break;
11541 case 6221: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11542 break;
11543 case 6222: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11544 break;
11545 case 6223: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11546 break;
11547 case 6231: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11548 break;
11549 case 6232: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11550 break;
11551 case 6233: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11552 break;
11553 case 6241: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11554 break;
11555 case 6242: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11556 break;
11557 case 6243: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11558 break;
11559 case 6300: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11560 break;
11561 case 6400: hashes_buf[0].salt->salt_iter = ROUNDS_SHA256AIX;
11562 break;
11563 case 6500: hashes_buf[0].salt->salt_iter = ROUNDS_SHA512AIX;
11564 break;
11565 case 6700: hashes_buf[0].salt->salt_iter = ROUNDS_SHA1AIX;
11566 break;
11567 case 6600: hashes_buf[0].salt->salt_iter = ROUNDS_AGILEKEY;
11568 break;
11569 case 6800: hashes_buf[0].salt->salt_iter = ROUNDS_LASTPASS;
11570 break;
11571 case 7100: hashes_buf[0].salt->salt_iter = ROUNDS_SHA512OSX;
11572 break;
11573 case 7200: hashes_buf[0].salt->salt_iter = ROUNDS_GRUB;
11574 break;
11575 case 7400: hashes_buf[0].salt->salt_iter = ROUNDS_SHA256CRYPT;
11576 break;
11577 case 7900: hashes_buf[0].salt->salt_iter = ROUNDS_DRUPAL7;
11578 break;
11579 case 8200: hashes_buf[0].salt->salt_iter = ROUNDS_CLOUDKEY;
11580 break;
11581 case 8300: hashes_buf[0].salt->salt_iter = ROUNDS_NSEC3;
11582 break;
11583 case 8800: hashes_buf[0].salt->salt_iter = ROUNDS_ANDROIDFDE;
11584 break;
11585 case 8900: hashes_buf[0].salt->salt_iter = 1;
11586 break;
11587 case 9000: hashes_buf[0].salt->salt_iter = ROUNDS_PSAFE2;
11588 break;
11589 case 9100: hashes_buf[0].salt->salt_iter = ROUNDS_LOTUS8;
11590 break;
11591 case 9200: hashes_buf[0].salt->salt_iter = ROUNDS_CISCO8;
11592 break;
11593 case 9300: hashes_buf[0].salt->salt_iter = 1;
11594 break;
11595 case 9400: hashes_buf[0].salt->salt_iter = ROUNDS_OFFICE2007;
11596 break;
11597 case 9500: hashes_buf[0].salt->salt_iter = ROUNDS_OFFICE2010;
11598 break;
11599 case 9600: hashes_buf[0].salt->salt_iter = ROUNDS_OFFICE2013;
11600 break;
11601 case 10000: hashes_buf[0].salt->salt_iter = ROUNDS_DJANGOPBKDF2;
11602 break;
11603 case 10300: hashes_buf[0].salt->salt_iter = ROUNDS_SAPH_SHA1 - 1;
11604 break;
11605 case 10500: hashes_buf[0].salt->salt_iter = ROUNDS_PDF14;
11606 break;
11607 case 10700: hashes_buf[0].salt->salt_iter = ROUNDS_PDF17L8;
11608 break;
11609 case 10900: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_SHA256 - 1;
11610 break;
11611 case 11300: hashes_buf[0].salt->salt_iter = ROUNDS_BITCOIN_WALLET - 1;
11612 break;
11613 case 11600: hashes_buf[0].salt->salt_iter = ROUNDS_SEVEN_ZIP;
11614 break;
11615 case 11900: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_MD5 - 1;
11616 break;
11617 case 12000: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_SHA1 - 1;
11618 break;
11619 case 12100: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_SHA512 - 1;
11620 break;
11621 case 12200: hashes_buf[0].salt->salt_iter = ROUNDS_ECRYPTFS - 1;
11622 break;
11623 case 12300: hashes_buf[0].salt->salt_iter = ROUNDS_ORACLET - 1;
11624 break;
11625 case 12400: hashes_buf[0].salt->salt_iter = ROUNDS_BSDICRYPT - 1;
11626 break;
11627 case 12500: hashes_buf[0].salt->salt_iter = ROUNDS_RAR3;
11628 break;
11629 case 12700: hashes_buf[0].salt->salt_iter = ROUNDS_MYWALLET;
11630 break;
11631 case 12800: hashes_buf[0].salt->salt_iter = ROUNDS_MS_DRSR - 1;
11632 break;
11633 case 12900: hashes_buf[0].salt->salt_iter = ROUNDS_ANDROIDFDE_SAMSUNG - 1;
11634 break;
11635 case 13000: hashes_buf[0].salt->salt_iter = ROUNDS_RAR5 - 1;
11636 break;
11637 case 13200: hashes_buf[0].salt->salt_iter = ROUNDS_AXCRYPT;
11638 break;
11639 case 13400: hashes_buf[0].salt->salt_iter = ROUNDS_KEEPASS;
11640 break;
11641 }
11642
11643 hashes_cnt = 1;
11644 }
11645
11646 if (show == 1 || left == 1)
11647 {
11648 for (uint i = 0; i < pot_cnt; i++)
11649 {
11650 pot_t *pot_ptr = &pot[i];
11651
11652 hash_t *hashes_buf = &pot_ptr->hash;
11653
11654 local_free (hashes_buf->digest);
11655
11656 if (isSalted)
11657 {
11658 local_free (hashes_buf->salt);
11659 }
11660 }
11661
11662 local_free (pot);
11663
11664 if (data.quiet == 0) log_info_nn ("");
11665
11666 return (0);
11667 }
11668
11669 if (keyspace == 0)
11670 {
11671 if (hashes_cnt == 0)
11672 {
11673 log_error ("ERROR: No hashes loaded");
11674
11675 return (-1);
11676 }
11677 }
11678
11679 /**
11680 * Sanity check for hashfile vs outfile (should not point to the same physical file)
11681 */
11682
11683 if (data.outfile != NULL)
11684 {
11685 if (data.hashfile != NULL)
11686 {
11687 #ifdef _POSIX
11688 struct stat tmpstat_outfile;
11689 struct stat tmpstat_hashfile;
11690 #endif
11691
11692 #ifdef _WIN
11693 struct stat64 tmpstat_outfile;
11694 struct stat64 tmpstat_hashfile;
11695 #endif
11696
11697 FILE *tmp_outfile_fp = fopen (data.outfile, "r");
11698
11699 if (tmp_outfile_fp)
11700 {
11701 #ifdef _POSIX
11702 fstat (fileno (tmp_outfile_fp), &tmpstat_outfile);
11703 #endif
11704
11705 #ifdef _WIN
11706 _fstat64 (fileno (tmp_outfile_fp), &tmpstat_outfile);
11707 #endif
11708
11709 fclose (tmp_outfile_fp);
11710 }
11711
11712 FILE *tmp_hashfile_fp = fopen (data.hashfile, "r");
11713
11714 if (tmp_hashfile_fp)
11715 {
11716 #ifdef _POSIX
11717 fstat (fileno (tmp_hashfile_fp), &tmpstat_hashfile);
11718 #endif
11719
11720 #ifdef _WIN
11721 _fstat64 (fileno (tmp_hashfile_fp), &tmpstat_hashfile);
11722 #endif
11723
11724 fclose (tmp_hashfile_fp);
11725 }
11726
11727 if (tmp_outfile_fp && tmp_outfile_fp)
11728 {
11729 tmpstat_outfile.st_mode = 0;
11730 tmpstat_outfile.st_nlink = 0;
11731 tmpstat_outfile.st_uid = 0;
11732 tmpstat_outfile.st_gid = 0;
11733 tmpstat_outfile.st_rdev = 0;
11734 tmpstat_outfile.st_atime = 0;
11735
11736 tmpstat_hashfile.st_mode = 0;
11737 tmpstat_hashfile.st_nlink = 0;
11738 tmpstat_hashfile.st_uid = 0;
11739 tmpstat_hashfile.st_gid = 0;
11740 tmpstat_hashfile.st_rdev = 0;
11741 tmpstat_hashfile.st_atime = 0;
11742
11743 #ifdef _POSIX
11744 tmpstat_outfile.st_blksize = 0;
11745 tmpstat_outfile.st_blocks = 0;
11746
11747 tmpstat_hashfile.st_blksize = 0;
11748 tmpstat_hashfile.st_blocks = 0;
11749 #endif
11750
11751 #ifdef _POSIX
11752 if (memcmp (&tmpstat_outfile, &tmpstat_hashfile, sizeof (struct stat)) == 0)
11753 {
11754 log_error ("ERROR: Hashfile and Outfile are not allowed to point to the same file");
11755
11756 return (-1);
11757 }
11758 #endif
11759
11760 #ifdef _WIN
11761 if (memcmp (&tmpstat_outfile, &tmpstat_hashfile, sizeof (struct stat64)) == 0)
11762 {
11763 log_error ("ERROR: Hashfile and Outfile are not allowed to point to the same file");
11764
11765 return (-1);
11766 }
11767 #endif
11768 }
11769 }
11770 }
11771
11772 /**
11773 * Remove duplicates
11774 */
11775
11776 if (data.quiet == 0) log_info_nn ("Removing duplicate hashes...");
11777
11778 if (isSalted)
11779 {
11780 qsort (hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash);
11781 }
11782 else
11783 {
11784 qsort (hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_no_salt);
11785 }
11786
11787 uint hashes_cnt_orig = hashes_cnt;
11788
11789 hashes_cnt = 1;
11790
11791 for (uint hashes_pos = 1; hashes_pos < hashes_cnt_orig; hashes_pos++)
11792 {
11793 if (isSalted)
11794 {
11795 if (sort_by_salt (hashes_buf[hashes_pos].salt, hashes_buf[hashes_pos - 1].salt) == 0)
11796 {
11797 if (sort_by_digest (hashes_buf[hashes_pos].digest, hashes_buf[hashes_pos - 1].digest) == 0) continue;
11798 }
11799 }
11800 else
11801 {
11802 if (sort_by_digest (hashes_buf[hashes_pos].digest, hashes_buf[hashes_pos - 1].digest) == 0) continue;
11803 }
11804
11805 if (hashes_pos > hashes_cnt)
11806 {
11807 memcpy (&hashes_buf[hashes_cnt], &hashes_buf[hashes_pos], sizeof (hash_t));
11808 }
11809
11810 hashes_cnt++;
11811 }
11812
11813 /**
11814 * Potfile removes
11815 */
11816
11817 uint potfile_remove_cracks = 0;
11818
11819 if (potfile_disable == 0)
11820 {
11821 hash_t hash_buf;
11822
11823 hash_buf.digest = mymalloc (dgst_size);
11824 hash_buf.salt = NULL;
11825 hash_buf.esalt = NULL;
11826 hash_buf.hash_info = NULL;
11827 hash_buf.cracked = 0;
11828
11829 if (isSalted)
11830 {
11831 hash_buf.salt = (salt_t *) mymalloc (sizeof (salt_t));
11832 }
11833
11834 if (esalt_size)
11835 {
11836 hash_buf.esalt = mymalloc (esalt_size);
11837 }
11838
11839 if (quiet == 0) log_info_nn ("Comparing hashes with potfile entries...");
11840
11841 // no solution for these special hash types (for instane because they use hashfile in output etc)
11842 if ((hash_mode != 5200) &&
11843 !((hash_mode >= 6200) && (hash_mode <= 6299)) &&
11844 (hash_mode != 9000))
11845 {
11846 FILE *fp = fopen (potfile, "rb");
11847
11848 if (fp != NULL)
11849 {
11850 char *line_buf = (char *) mymalloc (HCBUFSIZ);
11851
11852 // to be safe work with a copy (because of line_len loop, i etc)
11853 // moved up here because it's easier to handle continue case
11854 // it's just 64kb
11855
11856 char *line_buf_cpy = (char *) mymalloc (HCBUFSIZ);
11857
11858 while (!feof (fp))
11859 {
11860 char *ptr = fgets (line_buf, HCBUFSIZ - 1, fp);
11861
11862 if (ptr == NULL) break;
11863
11864 int line_len = strlen (line_buf);
11865
11866 if (line_len == 0) continue;
11867
11868 int iter = MAX_CUT_TRIES;
11869
11870 for (int i = line_len - 1; i && iter; i--, line_len--)
11871 {
11872 if (line_buf[i] != ':') continue;
11873
11874 if (isSalted)
11875 {
11876 memset (hash_buf.salt, 0, sizeof (salt_t));
11877 }
11878
11879 hash_t *found = NULL;
11880
11881 if (hash_mode == 6800)
11882 {
11883 if (i < 64) // 64 = 16 * uint in salt_buf[]
11884 {
11885 // manipulate salt_buf
11886 memcpy (hash_buf.salt->salt_buf, line_buf, i);
11887
11888 hash_buf.salt->salt_len = i;
11889
11890 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_t_salt);
11891 }
11892 }
11893 else if (hash_mode == 2500)
11894 {
11895 if (i < 64) // 64 = 16 * uint in salt_buf[]
11896 {
11897 // here we have in line_buf: ESSID:MAC1:MAC2 (without the plain)
11898 // manipulate salt_buf
11899
11900 memcpy (line_buf_cpy, line_buf, i);
11901
11902 char *mac2_pos = strrchr (line_buf_cpy, ':');
11903
11904 if (mac2_pos == NULL) continue;
11905
11906 mac2_pos[0] = 0;
11907 mac2_pos++;
11908
11909 if (strlen (mac2_pos) != 12) continue;
11910
11911 char *mac1_pos = strrchr (line_buf_cpy, ':');
11912
11913 if (mac1_pos == NULL) continue;
11914
11915 mac1_pos[0] = 0;
11916 mac1_pos++;
11917
11918 if (strlen (mac1_pos) != 12) continue;
11919
11920 uint essid_length = mac1_pos - line_buf_cpy - 1;
11921
11922 // here we need the ESSID
11923 memcpy (hash_buf.salt->salt_buf, line_buf_cpy, essid_length);
11924
11925 hash_buf.salt->salt_len = essid_length;
11926
11927 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_t_salt_hccap);
11928
11929 if (found)
11930 {
11931 wpa_t *wpa = (wpa_t *) found->esalt;
11932
11933 // compare hex string(s) vs binary MAC address(es)
11934
11935 for (uint i = 0, j = 0; i < 6; i++, j += 2)
11936 {
11937 if (wpa->orig_mac1[i] != hex_to_u8 ((const u8 *) &mac1_pos[j]))
11938 {
11939 found = NULL;
11940
11941 break;
11942 }
11943 }
11944
11945 // early skip ;)
11946 if (!found) continue;
11947
11948 for (uint i = 0, j = 0; i < 6; i++, j += 2)
11949 {
11950 if (wpa->orig_mac2[i] != hex_to_u8 ((const u8 *) &mac2_pos[j]))
11951 {
11952 found = NULL;
11953
11954 break;
11955 }
11956 }
11957 }
11958 }
11959 }
11960 else
11961 {
11962 int parser_status = parse_func (line_buf, line_len - 1, &hash_buf);
11963
11964 if (parser_status == PARSER_OK)
11965 {
11966 if (isSalted)
11967 {
11968 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash);
11969 }
11970 else
11971 {
11972 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_no_salt);
11973 }
11974 }
11975 }
11976
11977 if (found == NULL) continue;
11978
11979 if (!found->cracked) potfile_remove_cracks++;
11980
11981 found->cracked = 1;
11982
11983 if (found) break;
11984
11985 iter--;
11986 }
11987 }
11988
11989 myfree (line_buf_cpy);
11990
11991 myfree (line_buf);
11992
11993 fclose (fp);
11994 }
11995 }
11996
11997 if (esalt_size)
11998 {
11999 local_free (hash_buf.esalt);
12000 }
12001
12002 if (isSalted)
12003 {
12004 local_free (hash_buf.salt);
12005 }
12006
12007 local_free (hash_buf.digest);
12008 }
12009
12010 /**
12011 * Now generate all the buffers required for later
12012 */
12013
12014 void *digests_buf_new = (void *) mycalloc (hashes_avail, dgst_size);
12015
12016 salt_t *salts_buf_new = NULL;
12017 void *esalts_buf_new = NULL;
12018
12019 if (isSalted)
12020 {
12021 salts_buf_new = (salt_t *) mycalloc (hashes_avail, sizeof (salt_t));
12022
12023 if (esalt_size)
12024 {
12025 esalts_buf_new = (void *) mycalloc (hashes_avail, esalt_size);
12026 }
12027 }
12028 else
12029 {
12030 salts_buf_new = (salt_t *) mycalloc (1, sizeof (salt_t));
12031 }
12032
12033 if (data.quiet == 0) log_info_nn ("Structuring salts for cracking task...");
12034
12035 uint digests_cnt = hashes_cnt;
12036 uint digests_done = 0;
12037
12038 size_t size_digests = digests_cnt * dgst_size;
12039 size_t size_shown = digests_cnt * sizeof (uint);
12040
12041 uint *digests_shown = (uint *) mymalloc (size_shown);
12042 uint *digests_shown_tmp = (uint *) mymalloc (size_shown);
12043
12044 uint salts_cnt = 0;
12045 uint salts_done = 0;
12046
12047 hashinfo_t **hash_info = NULL;
12048
12049 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
12050 {
12051 hash_info = (hashinfo_t**) mymalloc (hashes_cnt * sizeof (hashinfo_t *));
12052
12053 if (username && (remove || show))
12054 {
12055 uint user_pos;
12056
12057 for (user_pos = 0; user_pos < hashes_cnt; user_pos++)
12058 {
12059 hash_info[user_pos] = (hashinfo_t*) mycalloc (hashes_cnt, sizeof (hashinfo_t));
12060
12061 hash_info[user_pos]->user = (user_t*) mymalloc (sizeof (user_t));
12062 }
12063 }
12064 }
12065
12066 uint *salts_shown = (uint *) mymalloc (size_shown);
12067
12068 salt_t *salt_buf;
12069
12070 {
12071 // copied from inner loop
12072
12073 salt_buf = &salts_buf_new[salts_cnt];
12074
12075 memcpy (salt_buf, hashes_buf[0].salt, sizeof (salt_t));
12076
12077 if (esalt_size)
12078 {
12079 memcpy (((char *) esalts_buf_new) + (salts_cnt * esalt_size), hashes_buf[0].esalt, esalt_size);
12080 }
12081
12082 salt_buf->digests_cnt = 0;
12083 salt_buf->digests_done = 0;
12084 salt_buf->digests_offset = 0;
12085
12086 salts_cnt++;
12087 }
12088
12089 if (hashes_buf[0].cracked == 1)
12090 {
12091 digests_shown[0] = 1;
12092
12093 digests_done++;
12094
12095 salt_buf->digests_done++;
12096 }
12097
12098 salt_buf->digests_cnt++;
12099
12100 memcpy (((char *) digests_buf_new) + (0 * dgst_size), hashes_buf[0].digest, dgst_size);
12101
12102 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
12103 {
12104 hash_info[0] = hashes_buf[0].hash_info;
12105 }
12106
12107 // copy from inner loop
12108
12109 for (uint hashes_pos = 1; hashes_pos < hashes_cnt; hashes_pos++)
12110 {
12111 if (isSalted)
12112 {
12113 if (sort_by_salt (hashes_buf[hashes_pos].salt, hashes_buf[hashes_pos - 1].salt) != 0)
12114 {
12115 salt_buf = &salts_buf_new[salts_cnt];
12116
12117 memcpy (salt_buf, hashes_buf[hashes_pos].salt, sizeof (salt_t));
12118
12119 if (esalt_size)
12120 {
12121 memcpy (((char *) esalts_buf_new) + (salts_cnt * esalt_size), hashes_buf[hashes_pos].esalt, esalt_size);
12122 }
12123
12124 salt_buf->digests_cnt = 0;
12125 salt_buf->digests_done = 0;
12126 salt_buf->digests_offset = hashes_pos;
12127
12128 salts_cnt++;
12129 }
12130 }
12131
12132 if (hashes_buf[hashes_pos].cracked == 1)
12133 {
12134 digests_shown[hashes_pos] = 1;
12135
12136 digests_done++;
12137
12138 salt_buf->digests_done++;
12139 }
12140
12141 salt_buf->digests_cnt++;
12142
12143 memcpy (((char *) digests_buf_new) + (hashes_pos * dgst_size), hashes_buf[hashes_pos].digest, dgst_size);
12144
12145 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
12146 {
12147 hash_info[hashes_pos] = hashes_buf[hashes_pos].hash_info;
12148 }
12149 }
12150
12151 for (uint salt_pos = 0; salt_pos < salts_cnt; salt_pos++)
12152 {
12153 salt_t *salt_buf = &salts_buf_new[salt_pos];
12154
12155 if (salt_buf->digests_done == salt_buf->digests_cnt)
12156 {
12157 salts_shown[salt_pos] = 1;
12158
12159 salts_done++;
12160 }
12161
12162 if (salts_done == salts_cnt) data.devices_status = STATUS_CRACKED;
12163 }
12164
12165 local_free (digests_buf);
12166 local_free (salts_buf);
12167 local_free (esalts_buf);
12168
12169 digests_buf = digests_buf_new;
12170 salts_buf = salts_buf_new;
12171 esalts_buf = esalts_buf_new;
12172
12173 local_free (hashes_buf);
12174
12175 /**
12176 * special modification not set from parser
12177 */
12178
12179 switch (hash_mode)
12180 {
12181 case 6211: salts_buf->truecrypt_mdlen = 1 * 512; break;
12182 case 6212: salts_buf->truecrypt_mdlen = 2 * 512; break;
12183 case 6213: salts_buf->truecrypt_mdlen = 3 * 512; break;
12184 case 6221: salts_buf->truecrypt_mdlen = 1 * 512; break;
12185 case 6222: salts_buf->truecrypt_mdlen = 2 * 512; break;
12186 case 6223: salts_buf->truecrypt_mdlen = 3 * 512; break;
12187 case 6231: salts_buf->truecrypt_mdlen = 1 * 512; break;
12188 case 6232: salts_buf->truecrypt_mdlen = 2 * 512; break;
12189 case 6233: salts_buf->truecrypt_mdlen = 3 * 512; break;
12190 case 6241: salts_buf->truecrypt_mdlen = 1 * 512; break;
12191 case 6242: salts_buf->truecrypt_mdlen = 2 * 512; break;
12192 case 6243: salts_buf->truecrypt_mdlen = 3 * 512; break;
12193 }
12194
12195 if (truecrypt_keyfiles)
12196 {
12197 uint *keyfile_buf = ((tc_t *) esalts_buf)->keyfile_buf;
12198
12199 char *keyfiles = strdup (truecrypt_keyfiles);
12200
12201 char *keyfile = strtok (keyfiles, ",");
12202
12203 do
12204 {
12205 truecrypt_crc32 (keyfile, (u8 *) keyfile_buf);
12206
12207 } while ((keyfile = strtok (NULL, ",")) != NULL);
12208
12209 free (keyfiles);
12210 }
12211
12212 data.digests_cnt = digests_cnt;
12213 data.digests_done = digests_done;
12214 data.digests_buf = digests_buf;
12215 data.digests_shown = digests_shown;
12216 data.digests_shown_tmp = digests_shown_tmp;
12217
12218 data.salts_cnt = salts_cnt;
12219 data.salts_done = salts_done;
12220 data.salts_buf = salts_buf;
12221 data.salts_shown = salts_shown;
12222
12223 data.esalts_buf = esalts_buf;
12224 data.hash_info = hash_info;
12225
12226 /**
12227 * Automatic Optimizers
12228 */
12229
12230 if (salts_cnt == 1)
12231 opti_type |= OPTI_TYPE_SINGLE_SALT;
12232
12233 if (digests_cnt == 1)
12234 opti_type |= OPTI_TYPE_SINGLE_HASH;
12235
12236 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
12237 opti_type |= OPTI_TYPE_NOT_ITERATED;
12238
12239 if (attack_mode == ATTACK_MODE_BF)
12240 opti_type |= OPTI_TYPE_BRUTE_FORCE;
12241
12242 data.opti_type = opti_type;
12243
12244 if (opti_type & OPTI_TYPE_BRUTE_FORCE)
12245 {
12246 if (opti_type & OPTI_TYPE_SINGLE_HASH)
12247 {
12248 if (opti_type & OPTI_TYPE_APPENDED_SALT)
12249 {
12250 if (opts_type & OPTS_TYPE_ST_ADD80)
12251 {
12252 opts_type &= ~OPTS_TYPE_ST_ADD80;
12253 opts_type |= OPTS_TYPE_PT_ADD80;
12254 }
12255
12256 if (opts_type & OPTS_TYPE_ST_ADDBITS14)
12257 {
12258 opts_type &= ~OPTS_TYPE_ST_ADDBITS14;
12259 opts_type |= OPTS_TYPE_PT_ADDBITS14;
12260 }
12261
12262 if (opts_type & OPTS_TYPE_ST_ADDBITS15)
12263 {
12264 opts_type &= ~OPTS_TYPE_ST_ADDBITS15;
12265 opts_type |= OPTS_TYPE_PT_ADDBITS15;
12266 }
12267 }
12268 }
12269 }
12270
12271 /**
12272 * Some algorithm, like descrypt, can benefit from JIT compilation
12273 */
12274
12275 int force_jit_compilation = -1;
12276
12277 if (hash_mode == 8900)
12278 {
12279 force_jit_compilation = 8900;
12280 }
12281 else if (hash_mode == 9300)
12282 {
12283 force_jit_compilation = 8900;
12284 }
12285 else if (hash_mode == 1500 && attack_mode == ATTACK_MODE_BF && data.salts_cnt == 1)
12286 {
12287 force_jit_compilation = 1500;
12288 }
12289
12290 /**
12291 * generate bitmap tables
12292 */
12293
12294 const uint bitmap_shift1 = 5;
12295 const uint bitmap_shift2 = 13;
12296
12297 if (bitmap_max < bitmap_min) bitmap_max = bitmap_min;
12298
12299 uint *bitmap_s1_a = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12300 uint *bitmap_s1_b = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12301 uint *bitmap_s1_c = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12302 uint *bitmap_s1_d = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12303 uint *bitmap_s2_a = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12304 uint *bitmap_s2_b = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12305 uint *bitmap_s2_c = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12306 uint *bitmap_s2_d = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12307
12308 uint bitmap_bits;
12309 uint bitmap_nums;
12310 uint bitmap_mask;
12311 uint bitmap_size;
12312
12313 for (bitmap_bits = bitmap_min; bitmap_bits < bitmap_max; bitmap_bits++)
12314 {
12315 if (data.quiet == 0) log_info_nn ("Generating bitmap tables with %u bits...", bitmap_bits);
12316
12317 bitmap_nums = 1 << bitmap_bits;
12318
12319 bitmap_mask = bitmap_nums - 1;
12320
12321 bitmap_size = bitmap_nums * sizeof (uint);
12322
12323 if ((hashes_cnt & bitmap_mask) == hashes_cnt) break;
12324
12325 if (generate_bitmaps (digests_cnt, dgst_size, bitmap_shift1, (char *) data.digests_buf, bitmap_mask, bitmap_size, bitmap_s1_a, bitmap_s1_b, bitmap_s1_c, bitmap_s1_d, digests_cnt / 2) == 0x7fffffff) continue;
12326 if (generate_bitmaps (digests_cnt, dgst_size, bitmap_shift2, (char *) data.digests_buf, bitmap_mask, bitmap_size, bitmap_s1_a, bitmap_s1_b, bitmap_s1_c, bitmap_s1_d, digests_cnt / 2) == 0x7fffffff) continue;
12327
12328 break;
12329 }
12330
12331 bitmap_nums = 1 << bitmap_bits;
12332
12333 bitmap_mask = bitmap_nums - 1;
12334
12335 bitmap_size = bitmap_nums * sizeof (uint);
12336
12337 generate_bitmaps (digests_cnt, dgst_size, bitmap_shift1, (char *) data.digests_buf, bitmap_mask, bitmap_size, bitmap_s1_a, bitmap_s1_b, bitmap_s1_c, bitmap_s1_d, -1);
12338 generate_bitmaps (digests_cnt, dgst_size, bitmap_shift2, (char *) data.digests_buf, bitmap_mask, bitmap_size, bitmap_s2_a, bitmap_s2_b, bitmap_s2_c, bitmap_s2_d, -1);
12339
12340 /**
12341 * prepare quick rule
12342 */
12343
12344 data.rule_buf_l = rule_buf_l;
12345 data.rule_buf_r = rule_buf_r;
12346
12347 int rule_len_l = (int) strlen (rule_buf_l);
12348 int rule_len_r = (int) strlen (rule_buf_r);
12349
12350 data.rule_len_l = rule_len_l;
12351 data.rule_len_r = rule_len_r;
12352
12353 /**
12354 * load rules
12355 */
12356
12357 uint *all_kernel_rules_cnt = NULL;
12358
12359 kernel_rule_t **all_kernel_rules_buf = NULL;
12360
12361 if (rp_files_cnt)
12362 {
12363 all_kernel_rules_cnt = (uint *) mycalloc (rp_files_cnt, sizeof (uint));
12364
12365 all_kernel_rules_buf = (kernel_rule_t **) mycalloc (rp_files_cnt, sizeof (kernel_rule_t *));
12366 }
12367
12368 char *rule_buf = (char *) mymalloc (HCBUFSIZ);
12369
12370 int rule_len = 0;
12371
12372 for (uint i = 0; i < rp_files_cnt; i++)
12373 {
12374 uint kernel_rules_avail = 0;
12375
12376 uint kernel_rules_cnt = 0;
12377
12378 kernel_rule_t *kernel_rules_buf = NULL;
12379
12380 char *rp_file = rp_files[i];
12381
12382 char in[BLOCK_SIZE] = { 0 };
12383 char out[BLOCK_SIZE] = { 0 };
12384
12385 FILE *fp = NULL;
12386
12387 uint rule_line = 0;
12388
12389 if ((fp = fopen (rp_file, "rb")) == NULL)
12390 {
12391 log_error ("ERROR: %s: %s", rp_file, strerror (errno));
12392
12393 return (-1);
12394 }
12395
12396 while (!feof (fp))
12397 {
12398 memset (rule_buf, 0, HCBUFSIZ);
12399
12400 rule_len = fgetl (fp, rule_buf);
12401
12402 rule_line++;
12403
12404 if (rule_len == 0) continue;
12405
12406 if (rule_buf[0] == '#') continue;
12407
12408 if (kernel_rules_avail == kernel_rules_cnt)
12409 {
12410 kernel_rules_buf = (kernel_rule_t *) myrealloc (kernel_rules_buf, kernel_rules_avail * sizeof (kernel_rule_t), INCR_RULES * sizeof (kernel_rule_t));
12411
12412 kernel_rules_avail += INCR_RULES;
12413 }
12414
12415 memset (in, 0, BLOCK_SIZE);
12416 memset (out, 0, BLOCK_SIZE);
12417
12418 int result = _old_apply_rule (rule_buf, rule_len, in, 1, out);
12419
12420 if (result == -1)
12421 {
12422 log_info ("WARNING: Skipping invalid or unsupported rule in file %s in line %u: %s", rp_file, rule_line, rule_buf);
12423
12424 continue;
12425 }
12426
12427 if (cpu_rule_to_kernel_rule (rule_buf, rule_len, &kernel_rules_buf[kernel_rules_cnt]) == -1)
12428 {
12429 log_info ("WARNING: Cannot convert rule for use on device in file %s in line %u: %s", rp_file, rule_line, rule_buf);
12430
12431 memset (&kernel_rules_buf[kernel_rules_cnt], 0, sizeof (kernel_rule_t)); // needs to be cleared otherwise we could have some remaining data
12432
12433 continue;
12434 }
12435
12436 /* its so slow
12437 if (rulefind (&kernel_rules_buf[kernel_rules_cnt], kernel_rules_buf, kernel_rules_cnt, sizeof (kernel_rule_t), sort_by_kernel_rule))
12438 {
12439 log_info ("Duplicate rule for use on device in file %s in line %u: %s", rp_file, rule_line, rule_buf);
12440
12441 continue;
12442 }
12443 */
12444
12445 kernel_rules_cnt++;
12446 }
12447
12448 fclose (fp);
12449
12450 all_kernel_rules_cnt[i] = kernel_rules_cnt;
12451
12452 all_kernel_rules_buf[i] = kernel_rules_buf;
12453 }
12454
12455 /**
12456 * merge rules or automatic rule generator
12457 */
12458
12459 uint kernel_rules_cnt = 0;
12460
12461 kernel_rule_t *kernel_rules_buf = NULL;
12462
12463 if (attack_mode == ATTACK_MODE_STRAIGHT)
12464 {
12465 if (rp_files_cnt)
12466 {
12467 kernel_rules_cnt = 1;
12468
12469 uint *repeats = (uint *) mycalloc (rp_files_cnt + 1, sizeof (uint));
12470
12471 repeats[0] = kernel_rules_cnt;
12472
12473 for (uint i = 0; i < rp_files_cnt; i++)
12474 {
12475 kernel_rules_cnt *= all_kernel_rules_cnt[i];
12476
12477 repeats[i + 1] = kernel_rules_cnt;
12478 }
12479
12480 kernel_rules_buf = (kernel_rule_t *) mycalloc (kernel_rules_cnt, sizeof (kernel_rule_t));
12481
12482 memset (kernel_rules_buf, 0, kernel_rules_cnt * sizeof (kernel_rule_t));
12483
12484 for (uint i = 0; i < kernel_rules_cnt; i++)
12485 {
12486 uint out_pos = 0;
12487
12488 kernel_rule_t *out = &kernel_rules_buf[i];
12489
12490 for (uint j = 0; j < rp_files_cnt; j++)
12491 {
12492 uint in_off = (i / repeats[j]) % all_kernel_rules_cnt[j];
12493 uint in_pos;
12494
12495 kernel_rule_t *in = &all_kernel_rules_buf[j][in_off];
12496
12497 for (in_pos = 0; in->cmds[in_pos]; in_pos++, out_pos++)
12498 {
12499 if (out_pos == RULES_MAX - 1)
12500 {
12501 // log_info ("WARNING: Truncating chaining of rule %d and rule %d as maximum number of function calls per rule exceeded", i, in_off);
12502
12503 break;
12504 }
12505
12506 out->cmds[out_pos] = in->cmds[in_pos];
12507 }
12508 }
12509 }
12510
12511 local_free (repeats);
12512 }
12513 else if (rp_gen)
12514 {
12515 uint kernel_rules_avail = 0;
12516
12517 while (kernel_rules_cnt < rp_gen)
12518 {
12519 if (kernel_rules_avail == kernel_rules_cnt)
12520 {
12521 kernel_rules_buf = (kernel_rule_t *) myrealloc (kernel_rules_buf, kernel_rules_avail * sizeof (kernel_rule_t), INCR_RULES * sizeof (kernel_rule_t));
12522
12523 kernel_rules_avail += INCR_RULES;
12524 }
12525
12526 memset (rule_buf, 0, HCBUFSIZ);
12527
12528 rule_len = (int) generate_random_rule (rule_buf, rp_gen_func_min, rp_gen_func_max);
12529
12530 if (cpu_rule_to_kernel_rule (rule_buf, rule_len, &kernel_rules_buf[kernel_rules_cnt]) == -1) continue;
12531
12532 kernel_rules_cnt++;
12533 }
12534 }
12535 }
12536
12537 myfree (rule_buf);
12538
12539 /**
12540 * generate NOP rules
12541 */
12542
12543 if (kernel_rules_cnt == 0)
12544 {
12545 kernel_rules_buf = (kernel_rule_t *) mymalloc (sizeof (kernel_rule_t));
12546
12547 kernel_rules_buf[kernel_rules_cnt].cmds[0] = RULE_OP_MANGLE_NOOP;
12548
12549 kernel_rules_cnt++;
12550 }
12551
12552 data.kernel_rules_cnt = kernel_rules_cnt;
12553 data.kernel_rules_buf = kernel_rules_buf;
12554
12555 /**
12556 * OpenCL platforms: detect
12557 */
12558
12559 cl_platform_id platforms[CL_PLATFORMS_MAX] = { 0 };
12560 cl_device_id platform_devices[DEVICES_MAX] = { 0 };
12561
12562 cl_uint platforms_cnt = 0;
12563 cl_uint platform_devices_cnt = 0;
12564
12565 if (keyspace == 0)
12566 {
12567 hc_clGetPlatformIDs (data.ocl, CL_PLATFORMS_MAX, platforms, &platforms_cnt);
12568
12569 if (platforms_cnt == 0)
12570 {
12571 log_error ("ERROR: No OpenCL compatible platform found");
12572
12573 return (-1);
12574 }
12575
12576 if (opencl_platforms_filter != (uint) -1)
12577 {
12578 uint platform_cnt_mask = ~(((uint) -1 >> platforms_cnt) << platforms_cnt);
12579
12580 if (opencl_platforms_filter > platform_cnt_mask)
12581 {
12582 log_error ("ERROR: The platform selected by the --opencl-platforms parameter is larger than the number of available platforms (%d)", platforms_cnt);
12583
12584 return (-1);
12585 }
12586 }
12587 }
12588
12589 /**
12590 * OpenCL platforms: For each platform check if we need to unset features that we can not use, eg: temp_retain
12591 */
12592
12593 for (uint platform_id = 0; platform_id < platforms_cnt; platform_id++)
12594 {
12595 cl_platform_id platform = platforms[platform_id];
12596
12597 char platform_vendor[INFOSZ] = { 0 };
12598
12599 hc_clGetPlatformInfo (data.ocl, platform, CL_PLATFORM_VENDOR, sizeof (platform_vendor), platform_vendor, NULL);
12600
12601 #ifdef HAVE_HWMON
12602 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
12603 if (strcmp (platform_vendor, CL_VENDOR_NV) == 0)
12604 {
12605 // make sure that we do not directly control the fan for NVidia
12606
12607 gpu_temp_retain = 0;
12608
12609 data.gpu_temp_retain = gpu_temp_retain;
12610 }
12611 #endif // HAVE_NVML || HAVE_NVAPI
12612 #endif
12613 }
12614
12615 /**
12616 * OpenCL devices: simply push all devices from all platforms into the same device array
12617 */
12618
12619 hc_device_param_t *devices_param = (hc_device_param_t *) mycalloc (DEVICES_MAX, sizeof (hc_device_param_t));
12620
12621 data.devices_param = devices_param;
12622
12623 uint devices_cnt = 0;
12624
12625 uint devices_active = 0;
12626
12627 for (uint platform_id = 0; platform_id < platforms_cnt; platform_id++)
12628 {
12629 if ((opencl_platforms_filter & (1 << platform_id)) == 0) continue;
12630
12631 cl_platform_id platform = platforms[platform_id];
12632
12633 hc_clGetDeviceIDs (data.ocl, platform, CL_DEVICE_TYPE_ALL, DEVICES_MAX, platform_devices, &platform_devices_cnt);
12634
12635 char platform_vendor[INFOSZ] = { 0 };
12636
12637 hc_clGetPlatformInfo (data.ocl, platform, CL_PLATFORM_VENDOR, sizeof (platform_vendor), platform_vendor, NULL);
12638
12639 // find our own platform vendor because pocl and mesa are pushing original vendor_id through opencl
12640 // this causes trouble with vendor id based macros
12641 // we'll assign generic to those without special optimization available
12642
12643 cl_uint vendor_id = 0;
12644
12645 if (strcmp (platform_vendor, CL_VENDOR_AMD) == 0)
12646 {
12647 vendor_id = VENDOR_ID_AMD;
12648 }
12649 else if (strcmp (platform_vendor, CL_VENDOR_APPLE) == 0)
12650 {
12651 vendor_id = VENDOR_ID_GENERIC;
12652 }
12653 else if (strcmp (platform_vendor, CL_VENDOR_INTEL_BEIGNET) == 0)
12654 {
12655 vendor_id = VENDOR_ID_GENERIC;
12656 }
12657 else if (strcmp (platform_vendor, CL_VENDOR_INTEL_SDK) == 0)
12658 {
12659 vendor_id = VENDOR_ID_GENERIC;
12660 }
12661 else if (strcmp (platform_vendor, CL_VENDOR_MESA) == 0)
12662 {
12663 vendor_id = VENDOR_ID_GENERIC;
12664 }
12665 else if (strcmp (platform_vendor, CL_VENDOR_NV) == 0)
12666 {
12667 vendor_id = VENDOR_ID_NV;
12668 }
12669 else if (strcmp (platform_vendor, CL_VENDOR_POCL) == 0)
12670 {
12671 vendor_id = VENDOR_ID_GENERIC;
12672 }
12673 else
12674 {
12675 vendor_id = VENDOR_ID_GENERIC;
12676 }
12677
12678 for (uint platform_devices_id = 0; platform_devices_id < platform_devices_cnt; platform_devices_id++)
12679 {
12680 size_t param_value_size = 0;
12681
12682 const uint device_id = devices_cnt;
12683
12684 hc_device_param_t *device_param = &data.devices_param[device_id];
12685
12686 device_param->vendor_id = vendor_id;
12687
12688 device_param->device = platform_devices[platform_devices_id];
12689
12690 device_param->device_id = device_id;
12691
12692 device_param->platform_devices_id = platform_devices_id;
12693
12694 // device_type
12695
12696 cl_device_type device_type;
12697
12698 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_TYPE, sizeof (device_type), &device_type, NULL);
12699
12700 device_type &= ~CL_DEVICE_TYPE_DEFAULT;
12701
12702 device_param->device_type = device_type;
12703
12704 // device_name
12705
12706 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_NAME, 0, NULL, &param_value_size);
12707
12708 char *device_name = (char *) mymalloc (param_value_size);
12709
12710 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_NAME, param_value_size, device_name, NULL);
12711
12712 device_param->device_name = device_name;
12713
12714 // tuning db
12715
12716 tuning_db_entry_t *tuningdb_entry = tuning_db_search (tuning_db, device_param, attack_mode, hash_mode);
12717
12718 // device_version
12719
12720 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_VERSION, 0, NULL, &param_value_size);
12721
12722 char *device_version = (char *) mymalloc (param_value_size);
12723
12724 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_VERSION, param_value_size, device_version, NULL);
12725
12726 device_param->device_version = device_version;
12727
12728 // device_opencl_version
12729
12730 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_OPENCL_C_VERSION, 0, NULL, &param_value_size);
12731
12732 char *device_opencl_version = (char *) mymalloc (param_value_size);
12733
12734 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_OPENCL_C_VERSION, param_value_size, device_opencl_version, NULL);
12735
12736 device_param->opencl_v12 = device_opencl_version[9] > '1' || device_opencl_version[11] >= '2';
12737
12738 myfree (device_opencl_version);
12739
12740 // vector_width
12741
12742 cl_uint vector_width;
12743
12744 if (opencl_vector_width_chgd == 0)
12745 {
12746 if (tuningdb_entry == NULL || tuningdb_entry->vector_width == -1)
12747 {
12748 if (opti_type & OPTI_TYPE_USES_BITS_64)
12749 {
12750 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_NATIVE_VECTOR_WIDTH_LONG, sizeof (vector_width), &vector_width, NULL);
12751 }
12752 else
12753 {
12754 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_NATIVE_VECTOR_WIDTH_INT, sizeof (vector_width), &vector_width, NULL);
12755 }
12756 }
12757 else
12758 {
12759 vector_width = (cl_uint) tuningdb_entry->vector_width;
12760 }
12761 }
12762 else
12763 {
12764 vector_width = opencl_vector_width;
12765 }
12766
12767 if (vector_width > 16) vector_width = 16;
12768
12769 device_param->vector_width = vector_width;
12770
12771 // max_compute_units
12772
12773 cl_uint device_processors;
12774
12775 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_MAX_COMPUTE_UNITS, sizeof (device_processors), &device_processors, NULL);
12776
12777 device_param->device_processors = device_processors;
12778
12779 // device_maxmem_alloc
12780 // note we'll limit to 2gb, otherwise this causes all kinds of weird errors because of possible integer overflows in opencl runtimes
12781
12782 cl_ulong device_maxmem_alloc;
12783
12784 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_MAX_MEM_ALLOC_SIZE, sizeof (device_maxmem_alloc), &device_maxmem_alloc, NULL);
12785
12786 device_param->device_maxmem_alloc = MIN (device_maxmem_alloc, 0x7fffffff);
12787
12788 // device_global_mem
12789
12790 cl_ulong device_global_mem;
12791
12792 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_GLOBAL_MEM_SIZE, sizeof (device_global_mem), &device_global_mem, NULL);
12793
12794 device_param->device_global_mem = device_global_mem;
12795
12796 // max_work_group_size
12797
12798 size_t device_maxworkgroup_size;
12799
12800 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_MAX_WORK_GROUP_SIZE, sizeof (device_maxworkgroup_size), &device_maxworkgroup_size, NULL);
12801
12802 device_param->device_maxworkgroup_size = device_maxworkgroup_size;
12803
12804 // max_clock_frequency
12805
12806 cl_uint device_maxclock_frequency;
12807
12808 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_MAX_CLOCK_FREQUENCY, sizeof (device_maxclock_frequency), &device_maxclock_frequency, NULL);
12809
12810 device_param->device_maxclock_frequency = device_maxclock_frequency;
12811
12812 // skipped
12813
12814 const u32 skipped1 = ((devices_filter & (1 << device_id)) == 0);
12815 const u32 skipped2 = ((device_types_filter & (device_type)) == 0);
12816
12817 device_param->skipped = (skipped1 || skipped2);
12818
12819 // driver_version
12820 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DRIVER_VERSION, 0, NULL, &param_value_size);
12821
12822 char *driver_version = (char *) mymalloc (param_value_size);
12823
12824 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DRIVER_VERSION, param_value_size, driver_version, NULL);
12825
12826 device_param->driver_version = driver_version;
12827
12828 // device_name_chksum
12829
12830 char *device_name_chksum = (char *) mymalloc (INFOSZ);
12831
12832 #if __x86_64__
12833 snprintf (device_name_chksum, INFOSZ - 1, "%u-%u-%u-%s-%s-%s-%u", 64, device_param->vendor_id, device_param->vector_width, device_param->device_name, device_param->device_version, device_param->driver_version, COMPTIME);
12834 #else
12835 snprintf (device_name_chksum, INFOSZ - 1, "%u-%u-%u-%s-%s-%s-%u", 32, device_param->vendor_id, device_param->vector_width, device_param->device_name, device_param->device_version, device_param->driver_version, COMPTIME);
12836 #endif
12837
12838 uint device_name_digest[4] = { 0 };
12839
12840 md5_64 ((uint *) device_name_chksum, device_name_digest);
12841
12842 snprintf (device_name_chksum, INFOSZ - 1, "%08x", device_name_digest[0]);
12843
12844 device_param->device_name_chksum = device_name_chksum;
12845
12846 // device_processor_cores
12847
12848 if (device_type & CL_DEVICE_TYPE_CPU)
12849 {
12850 cl_uint device_processor_cores = 1;
12851
12852 device_param->device_processor_cores = device_processor_cores;
12853 }
12854
12855 if (device_type & CL_DEVICE_TYPE_GPU)
12856 {
12857 if (vendor_id == VENDOR_ID_AMD)
12858 {
12859 cl_uint device_processor_cores = 0;
12860
12861 #define CL_DEVICE_WAVEFRONT_WIDTH_AMD 0x4043
12862
12863 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_WAVEFRONT_WIDTH_AMD, sizeof (device_processor_cores), &device_processor_cores, NULL);
12864
12865 device_param->device_processor_cores = device_processor_cores;
12866 }
12867 else if (vendor_id == VENDOR_ID_NV)
12868 {
12869 cl_uint kernel_exec_timeout = 0;
12870
12871 #define CL_DEVICE_KERNEL_EXEC_TIMEOUT_NV 0x4005
12872
12873 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_KERNEL_EXEC_TIMEOUT_NV, sizeof (kernel_exec_timeout), &kernel_exec_timeout, NULL);
12874
12875 device_param->kernel_exec_timeout = kernel_exec_timeout;
12876
12877 cl_uint device_processor_cores = 0;
12878
12879 #define CL_DEVICE_WARP_SIZE_NV 0x4003
12880
12881 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_WARP_SIZE_NV, sizeof (device_processor_cores), &device_processor_cores, NULL);
12882
12883 device_param->device_processor_cores = device_processor_cores;
12884
12885 cl_uint sm_minor = 0;
12886 cl_uint sm_major = 0;
12887
12888 #define CL_DEVICE_COMPUTE_CAPABILITY_MAJOR_NV 0x4000
12889 #define CL_DEVICE_COMPUTE_CAPABILITY_MINOR_NV 0x4001
12890
12891 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_COMPUTE_CAPABILITY_MINOR_NV, sizeof (sm_minor), &sm_minor, NULL);
12892 hc_clGetDeviceInfo (data.ocl, device_param->device, CL_DEVICE_COMPUTE_CAPABILITY_MAJOR_NV, sizeof (sm_major), &sm_major, NULL);
12893
12894 device_param->sm_minor = sm_minor;
12895 device_param->sm_major = sm_major;
12896 }
12897 else
12898 {
12899 cl_uint device_processor_cores = 1;
12900
12901 device_param->device_processor_cores = device_processor_cores;
12902 }
12903 }
12904
12905 // display results
12906
12907 if ((benchmark == 1 || quiet == 0) && (algorithm_pos == 0))
12908 {
12909 if (device_param->skipped == 0)
12910 {
12911 log_info ("Device #%u: %s, %lu/%lu MB allocatable, %dMhz, %uMCU",
12912 device_id + 1,
12913 device_name,
12914 (unsigned int) (device_maxmem_alloc / 1024 / 1024),
12915 (unsigned int) (device_global_mem / 1024 / 1024),
12916 (unsigned int) (device_maxclock_frequency),
12917 (unsigned int) device_processors);
12918 }
12919 else
12920 {
12921 log_info ("Device #%u: %s, skipped",
12922 device_id + 1,
12923 device_name);
12924 }
12925 }
12926
12927 // common driver check
12928
12929 if (device_param->skipped == 0)
12930 {
12931 if (device_type & CL_DEVICE_TYPE_GPU)
12932 {
12933 if (vendor_id == VENDOR_ID_AMD)
12934 {
12935 int catalyst_check = (force == 1) ? 0 : 1;
12936
12937 int catalyst_warn = 0;
12938
12939 int catalyst_broken = 0;
12940
12941 if (catalyst_check == 1)
12942 {
12943 catalyst_warn = 1;
12944
12945 // v14.9 and higher
12946 if (atoi (device_param->driver_version) >= 1573)
12947 {
12948 catalyst_warn = 0;
12949 }
12950
12951 catalyst_check = 0;
12952 }
12953
12954 if (catalyst_broken == 1)
12955 {
12956 log_info ("");
12957 log_info ("ATTENTION! The installed catalyst driver in your system is known to be broken!");
12958 log_info ("It will pass over cracked hashes and does not report them as cracked");
12959 log_info ("You are STRONGLY encouraged not to use it");
12960 log_info ("You can use --force to override this but do not post error reports if you do so");
12961 log_info ("");
12962
12963 return (-1);
12964 }
12965
12966 if (catalyst_warn == 1)
12967 {
12968 log_info ("");
12969 log_info ("ATTENTION! Unsupported or incorrect installed catalyst driver detected!");
12970 log_info ("You are STRONGLY encouraged to use the official supported catalyst driver for good reasons");
12971 log_info ("See oclHashcat's homepage for official supported catalyst drivers");
12972 #ifdef _WIN
12973 log_info ("Also see: http://hashcat.net/wiki/doku.php?id=upgrading_amd_drivers_how_to");
12974 #endif
12975 log_info ("You can use --force to override this but do not post error reports if you do so");
12976 log_info ("");
12977
12978 return (-1);
12979 }
12980 }
12981 else if (vendor_id == VENDOR_ID_NV)
12982 {
12983 if (device_param->kernel_exec_timeout != 0)
12984 {
12985 if (data.quiet == 0) log_info ("Device #%u: WARNING! Kernel exec timeout is not disabled, it might cause you errors of code 702", device_id + 1);
12986 if (data.quiet == 0) log_info (" See the wiki on how to disable it: https://hashcat.net/wiki/doku.php?id=timeout_patch");
12987 }
12988 }
12989 }
12990
12991 if (device_type & CL_DEVICE_TYPE_CPU)
12992 {
12993 if (vendor_id == VENDOR_ID_AMD)
12994 {
12995 if (force == 0)
12996 {
12997 log_info ("");
12998 log_info ("ATTENTION! OpenCL support for CPU of catalyst driver is not reliable.");
12999 log_info ("You are STRONGLY encouraged not to use it");
13000 log_info ("You can use --force to override this but do not post error reports if you do so");
13001 log_info ("A good alternative is the free pocl >= v0.13, but make sure to use a LLVM >= v3.8");
13002 log_info ("");
13003
13004 return (-1);
13005 }
13006 }
13007 }
13008
13009 /**
13010 * kernel accel and loops tuning db adjustment
13011 */
13012
13013 device_param->kernel_accel_min = 1;
13014 device_param->kernel_accel_max = 1024;
13015
13016 device_param->kernel_loops_min = 1;
13017 device_param->kernel_loops_max = 1024;
13018
13019 tuning_db_entry_t *tuningdb_entry = tuning_db_search (tuning_db, device_param, attack_mode, hash_mode);
13020
13021 if (tuningdb_entry)
13022 {
13023 u32 _kernel_accel = tuningdb_entry->kernel_accel;
13024 u32 _kernel_loops = tuningdb_entry->kernel_loops;
13025
13026 if (_kernel_accel)
13027 {
13028 device_param->kernel_accel_min = _kernel_accel;
13029 device_param->kernel_accel_max = _kernel_accel;
13030 }
13031
13032 if (_kernel_loops)
13033 {
13034 if (workload_profile == 1)
13035 {
13036 _kernel_loops = (_kernel_loops > 8) ? _kernel_loops / 8 : 1;
13037 }
13038 else if (workload_profile == 2)
13039 {
13040 _kernel_loops = (_kernel_loops > 4) ? _kernel_loops / 4 : 1;
13041 }
13042
13043 device_param->kernel_loops_min = _kernel_loops;
13044 device_param->kernel_loops_max = _kernel_loops;
13045 }
13046 }
13047
13048 // commandline parameters overwrite tuningdb entries
13049
13050 if (kernel_accel)
13051 {
13052 device_param->kernel_accel_min = kernel_accel;
13053 device_param->kernel_accel_max = kernel_accel;
13054 }
13055
13056 if (kernel_loops)
13057 {
13058 device_param->kernel_loops_min = kernel_loops;
13059 device_param->kernel_loops_max = kernel_loops;
13060 }
13061
13062 /**
13063 * activate device
13064 */
13065
13066 devices_active++;
13067 }
13068
13069 // next please
13070
13071 devices_cnt++;
13072 }
13073 }
13074
13075 if (keyspace == 0 && devices_active == 0)
13076 {
13077 log_error ("ERROR: No devices found/left");
13078
13079 return (-1);
13080 }
13081
13082 // additional check to see if the user has chosen a device that is not within the range of available devices (i.e. larger than devices_cnt)
13083
13084 if (devices_filter != (uint) -1)
13085 {
13086 uint devices_cnt_mask = ~(((uint) -1 >> devices_cnt) << devices_cnt);
13087
13088 if (devices_filter > devices_cnt_mask)
13089 {
13090 log_error ("ERROR: The device specified by the --opencl-devices parameter is larger than the number of available devices (%d)", devices_cnt);
13091
13092 return (-1);
13093 }
13094 }
13095
13096 data.devices_cnt = devices_cnt;
13097
13098 data.devices_active = devices_active;
13099
13100 if ((benchmark == 1 || quiet == 0) && (algorithm_pos == 0))
13101 {
13102 log_info ("");
13103 }
13104
13105 /**
13106 * HM devices: init
13107 */
13108
13109 #ifdef HAVE_HWMON
13110 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
13111 hm_attrs_t hm_adapters_nv[DEVICES_MAX] = { { { 0 }, 0, 0 } };
13112 #endif
13113
13114 #ifdef HAVE_ADL
13115 hm_attrs_t hm_adapters_amd[DEVICES_MAX] = { { { 0 }, 0, 0 } };
13116 #endif
13117
13118 if (gpu_temp_disable == 0)
13119 {
13120 #if defined(WIN) && defined(HAVE_NVAPI)
13121 NVAPI_PTR *nvapi = (NVAPI_PTR *) mymalloc (sizeof (NVAPI_PTR));
13122
13123 if (nvapi_init (nvapi) == 0)
13124 data.hm_nv = nvapi;
13125
13126 if (data.hm_nv)
13127 {
13128 if (hm_NvAPI_Initialize (data.hm_nv) == NVAPI_OK)
13129 {
13130 HM_ADAPTER_NV nvGPUHandle[DEVICES_MAX] = { 0 };
13131
13132 int tmp_in = hm_get_adapter_index_nv (nvGPUHandle);
13133
13134 int tmp_out = 0;
13135
13136 for (int i = 0; i < tmp_in; i++)
13137 {
13138 hm_adapters_nv[tmp_out++].adapter_index.nv = nvGPUHandle[i];
13139 }
13140
13141 for (int i = 0; i < tmp_out; i++)
13142 {
13143 NV_GPU_COOLER_SETTINGS pCoolerSettings;
13144
13145 pCoolerSettings.Version = GPU_COOLER_SETTINGS_VER | sizeof (NV_GPU_COOLER_SETTINGS);
13146
13147 if (hm_NvAPI_GPU_GetCoolerSettings (data.hm_nv, hm_adapters_nv[i].adapter_index.nv, 0, &pCoolerSettings) != NVAPI_NOT_SUPPORTED) hm_adapters_nv[i].fan_supported = 1;
13148 }
13149 }
13150 }
13151 #endif // WIN && HAVE_NVAPI
13152
13153 #if defined(LINUX) && defined(HAVE_NVML)
13154 NVML_PTR *nvml = (NVML_PTR *) mymalloc (sizeof (NVML_PTR));
13155
13156 if (nvml_init (nvml) == 0)
13157 data.hm_nv = nvml;
13158
13159 if (data.hm_nv)
13160 {
13161 if (hm_NVML_nvmlInit (data.hm_nv) == NVML_SUCCESS)
13162 {
13163 HM_ADAPTER_NV nvGPUHandle[DEVICES_MAX] = { 0 };
13164
13165 int tmp_in = hm_get_adapter_index_nv (nvGPUHandle);
13166
13167 int tmp_out = 0;
13168
13169 for (int i = 0; i < tmp_in; i++)
13170 {
13171 hm_adapters_nv[tmp_out++].adapter_index.nv = nvGPUHandle[i];
13172 }
13173
13174 for (int i = 0; i < tmp_out; i++)
13175 {
13176 unsigned int speed;
13177
13178 if (hm_NVML_nvmlDeviceGetFanSpeed (data.hm_nv, 1, hm_adapters_nv[i].adapter_index.nv, &speed) != NVML_ERROR_NOT_SUPPORTED) hm_adapters_nv[i].fan_supported = 1;
13179 }
13180 }
13181 }
13182 #endif // LINUX && HAVE_NVML
13183
13184 data.hm_amd = NULL;
13185
13186 #ifdef HAVE_ADL
13187 ADL_PTR *adl = (ADL_PTR *) mymalloc (sizeof (ADL_PTR));
13188
13189 if (adl_init (adl) == 0)
13190 data.hm_amd = adl;
13191
13192 if (data.hm_amd)
13193 {
13194 if (hm_ADL_Main_Control_Create (data.hm_amd, ADL_Main_Memory_Alloc, 0) == ADL_OK)
13195 {
13196 // total number of adapters
13197
13198 int hm_adapters_num;
13199
13200 if (get_adapters_num_amd (data.hm_amd, &hm_adapters_num) != 0) return (-1);
13201
13202 // adapter info
13203
13204 LPAdapterInfo lpAdapterInfo = hm_get_adapter_info_amd (data.hm_amd, hm_adapters_num);
13205
13206 if (lpAdapterInfo == NULL) return (-1);
13207
13208 // get a list (of ids of) valid/usable adapters
13209
13210 int num_adl_adapters = 0;
13211
13212 u32 *valid_adl_device_list = hm_get_list_valid_adl_adapters (hm_adapters_num, &num_adl_adapters, lpAdapterInfo);
13213
13214 if (num_adl_adapters > 0)
13215 {
13216 hc_thread_mutex_lock (mux_adl);
13217
13218 // hm_get_opencl_busid_devid (hm_adapters_amd, devices_all_cnt, devices_all);
13219
13220 hm_get_adapter_index_amd (hm_adapters_amd, valid_adl_device_list, num_adl_adapters, lpAdapterInfo);
13221
13222 hm_get_overdrive_version (data.hm_amd, hm_adapters_amd, valid_adl_device_list, num_adl_adapters, lpAdapterInfo);
13223 hm_check_fanspeed_control (data.hm_amd, hm_adapters_amd, valid_adl_device_list, num_adl_adapters, lpAdapterInfo);
13224
13225 hc_thread_mutex_unlock (mux_adl);
13226 }
13227
13228 myfree (valid_adl_device_list);
13229 myfree (lpAdapterInfo);
13230 }
13231 }
13232 #endif // HAVE_ADL
13233
13234 if (data.hm_amd == NULL && data.hm_nv == NULL)
13235 {
13236 gpu_temp_disable = 1;
13237 }
13238 }
13239
13240 /**
13241 * OpenCL devices: allocate buffer for device specific information
13242 */
13243
13244 #ifdef HAVE_HWMON
13245 int *temp_retain_fanspeed_value = (int *) mycalloc (data.devices_cnt, sizeof (int));
13246
13247 #ifdef HAVE_ADL
13248 ADLOD6MemClockState *od_clock_mem_status = (ADLOD6MemClockState *) mycalloc (data.devices_cnt, sizeof (ADLOD6MemClockState));
13249
13250 int *od_power_control_status = (int *) mycalloc (data.devices_cnt, sizeof (int));
13251 #endif // ADL
13252 #endif
13253
13254 /**
13255 * enable custom signal handler(s)
13256 */
13257
13258 if (benchmark == 0)
13259 {
13260 hc_signal (sigHandler_default);
13261 }
13262 else
13263 {
13264 hc_signal (sigHandler_benchmark);
13265 }
13266
13267 /**
13268 * User-defined GPU temp handling
13269 */
13270
13271 #ifdef HAVE_HWMON
13272 if (gpu_temp_disable == 1)
13273 {
13274 gpu_temp_abort = 0;
13275 gpu_temp_retain = 0;
13276 }
13277
13278 if ((gpu_temp_abort != 0) && (gpu_temp_retain != 0))
13279 {
13280 if (gpu_temp_abort < gpu_temp_retain)
13281 {
13282 log_error ("ERROR: invalid values for gpu-temp-abort. Parameter gpu-temp-abort is less than gpu-temp-retain.");
13283
13284 return (-1);
13285 }
13286 }
13287
13288 data.gpu_temp_disable = gpu_temp_disable;
13289 data.gpu_temp_abort = gpu_temp_abort;
13290 data.gpu_temp_retain = gpu_temp_retain;
13291 #endif
13292
13293 /**
13294 * inform the user
13295 */
13296
13297 if (data.quiet == 0)
13298 {
13299 log_info ("Hashes: %u hashes; %u unique digests, %u unique salts", hashes_cnt_orig, digests_cnt, salts_cnt);
13300
13301 log_info ("Bitmaps: %u bits, %u entries, 0x%08x mask, %u bytes, %u/%u rotates", bitmap_bits, bitmap_nums, bitmap_mask, bitmap_size, bitmap_shift1, bitmap_shift2);
13302
13303 if (attack_mode == ATTACK_MODE_STRAIGHT)
13304 {
13305 log_info ("Rules: %u", kernel_rules_cnt);
13306 }
13307
13308 if (opti_type)
13309 {
13310 log_info ("Applicable Optimizers:");
13311
13312 for (uint i = 0; i < 32; i++)
13313 {
13314 const uint opti_bit = 1u << i;
13315
13316 if (opti_type & opti_bit) log_info ("* %s", stroptitype (opti_bit));
13317 }
13318 }
13319
13320 /**
13321 * Watchdog and Temperature balance
13322 */
13323
13324 #ifdef HAVE_HWMON
13325 if (gpu_temp_disable == 0 && data.hm_amd == NULL && data.hm_nv == NULL)
13326 {
13327 log_info ("Watchdog: Hardware Monitoring Interface not found on your system");
13328 }
13329
13330 if (gpu_temp_abort == 0)
13331 {
13332 log_info ("Watchdog: Temperature abort trigger disabled");
13333 }
13334 else
13335 {
13336 log_info ("Watchdog: Temperature abort trigger set to %uc", gpu_temp_abort);
13337 }
13338
13339 if (gpu_temp_retain == 0)
13340 {
13341 log_info ("Watchdog: Temperature retain trigger disabled");
13342 }
13343 else
13344 {
13345 log_info ("Watchdog: Temperature retain trigger set to %uc", gpu_temp_retain);
13346 }
13347 #endif
13348 }
13349
13350 if (data.quiet == 0) log_info ("");
13351
13352 /**
13353 * HM devices: copy
13354 */
13355
13356 if (gpu_temp_disable == 0)
13357 {
13358 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
13359 {
13360 hc_device_param_t *device_param = &data.devices_param[device_id];
13361
13362 if ((device_param->device_type & CL_DEVICE_TYPE_GPU) == 0) continue;
13363
13364 if (device_param->skipped) continue;
13365
13366 const uint platform_devices_id = device_param->platform_devices_id;
13367
13368 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
13369 if (device_param->vendor_id == VENDOR_ID_NV)
13370 {
13371 memcpy (&data.hm_device[device_id], &hm_adapters_nv[platform_devices_id], sizeof (hm_attrs_t));
13372 }
13373 #endif
13374
13375 #ifdef HAVE_ADL
13376 if (device_param->vendor_id == VENDOR_ID_AMD)
13377 {
13378 memcpy (&data.hm_device[device_id], &hm_adapters_amd[platform_devices_id], sizeof (hm_attrs_t));
13379 }
13380 #endif
13381 }
13382 }
13383
13384 /*
13385 * Temporary fix:
13386 * with AMD r9 295x cards it seems that we need to set the powertune value just AFTER the ocl init stuff
13387 * otherwise after hc_clCreateContext () etc, powertune value was set back to "normal" and cards unfortunately
13388 * were not working @ full speed (setting hm_ADL_Overdrive_PowerControl_Set () here seems to fix the problem)
13389 * Driver / ADL bug?
13390 */
13391
13392 #ifdef HAVE_ADL
13393 if (powertune_enable == 1)
13394 {
13395 hc_thread_mutex_lock (mux_adl);
13396
13397 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
13398 {
13399 hc_device_param_t *device_param = &data.devices_param[device_id];
13400
13401 if (device_param->skipped) continue;
13402
13403 if (data.hm_device[device_id].od_version == 6)
13404 {
13405 // set powertune value only
13406
13407 int powertune_supported = 0;
13408
13409 int ADL_rc = 0;
13410
13411 if ((ADL_rc = hm_ADL_Overdrive6_PowerControl_Caps (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &powertune_supported)) != ADL_OK)
13412 {
13413 log_error ("ERROR: Failed to get ADL PowerControl Capabilities");
13414
13415 return (-1);
13416 }
13417
13418 if (powertune_supported != 0)
13419 {
13420 // powertune set
13421 ADLOD6PowerControlInfo powertune = {0, 0, 0, 0, 0};
13422
13423 if ((ADL_rc = hm_ADL_Overdrive_PowerControlInfo_Get (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &powertune)) != ADL_OK)
13424 {
13425 log_error ("ERROR: Failed to get current ADL PowerControl settings");
13426
13427 return (-1);
13428 }
13429
13430 if ((ADL_rc = hm_ADL_Overdrive_PowerControl_Set (data.hm_amd, data.hm_device[device_id].adapter_index.amd, powertune.iMaxValue)) != ADL_OK)
13431 {
13432 log_error ("ERROR: Failed to set new ADL PowerControl values");
13433
13434 return (-1);
13435 }
13436 }
13437 }
13438 }
13439
13440 hc_thread_mutex_unlock (mux_adl);
13441 }
13442 #endif // HAVE_ADK
13443 #endif // HAVE_HWMON
13444
13445 #ifdef DEBUG
13446 if (benchmark == 1) log_info ("Hashmode: %d", data.hash_mode);
13447 #endif
13448
13449 uint kernel_power_all = 0;
13450
13451 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
13452 {
13453 /**
13454 * host buffer
13455 */
13456
13457 hc_device_param_t *device_param = &data.devices_param[device_id];
13458
13459 if (device_param->skipped) continue;
13460
13461 /**
13462 * device properties
13463 */
13464
13465 const char *device_name_chksum = device_param->device_name_chksum;
13466 const u32 device_processors = device_param->device_processors;
13467 const u32 device_processor_cores = device_param->device_processor_cores;
13468
13469 /**
13470 * create context for each device
13471 */
13472
13473 device_param->context = hc_clCreateContext (data.ocl, NULL, 1, &device_param->device, NULL, NULL);
13474
13475 /**
13476 * create command-queue
13477 */
13478
13479 // not supported with NV
13480 // device_param->command_queue = hc_clCreateCommandQueueWithProperties (device_param->context, device_param->device, NULL);
13481
13482 device_param->command_queue = hc_clCreateCommandQueue (data.ocl, device_param->context, device_param->device, CL_QUEUE_PROFILING_ENABLE);
13483
13484 /**
13485 * kernel threads: some algorithms need a fixed kernel-threads count
13486 * because of shared memory usage or bitslice
13487 * there needs to be some upper limit, otherwise there's too much overhead
13488 */
13489
13490 uint kernel_threads = MIN (KERNEL_THREADS_MAX, device_param->device_maxworkgroup_size);
13491
13492 if (device_param->device_type & CL_DEVICE_TYPE_CPU)
13493 {
13494 kernel_threads = KERNEL_THREADS_MAX_CPU;
13495 }
13496
13497 if (hash_mode == 1500) kernel_threads = 64; // DES
13498 if (hash_mode == 3000) kernel_threads = 64; // DES
13499 if (hash_mode == 3200) kernel_threads = 8; // Blowfish
13500 if (hash_mode == 7500) kernel_threads = 64; // RC4
13501 if (hash_mode == 9000) kernel_threads = 8; // Blowfish
13502 if (hash_mode == 9700) kernel_threads = 64; // RC4
13503 if (hash_mode == 9710) kernel_threads = 64; // RC4
13504 if (hash_mode == 9800) kernel_threads = 64; // RC4
13505 if (hash_mode == 9810) kernel_threads = 64; // RC4
13506 if (hash_mode == 10400) kernel_threads = 64; // RC4
13507 if (hash_mode == 10410) kernel_threads = 64; // RC4
13508 if (hash_mode == 10500) kernel_threads = 64; // RC4
13509 if (hash_mode == 13100) kernel_threads = 64; // RC4
13510
13511 /**
13512 * create input buffers on device : calculate size of fixed memory buffers
13513 */
13514
13515 size_t size_root_css = SP_PW_MAX * sizeof (cs_t);
13516 size_t size_markov_css = SP_PW_MAX * CHARSIZ * sizeof (cs_t);
13517
13518 device_param->size_root_css = size_root_css;
13519 device_param->size_markov_css = size_markov_css;
13520
13521 size_t size_results = kernel_threads * sizeof (uint);
13522
13523 device_param->size_results = size_results;
13524
13525 size_t size_rules = kernel_rules_cnt * sizeof (kernel_rule_t);
13526 size_t size_rules_c = KERNEL_RULES * sizeof (kernel_rule_t);
13527
13528 size_t size_plains = digests_cnt * sizeof (plain_t);
13529 size_t size_salts = salts_cnt * sizeof (salt_t);
13530 size_t size_esalts = salts_cnt * esalt_size;
13531
13532 device_param->size_plains = size_plains;
13533 device_param->size_digests = size_digests;
13534 device_param->size_shown = size_shown;
13535 device_param->size_salts = size_salts;
13536
13537 size_t size_combs = KERNEL_COMBS * sizeof (comb_t);
13538 size_t size_bfs = KERNEL_BFS * sizeof (bf_t);
13539 size_t size_tm = 32 * sizeof (bs_word_t);
13540
13541 // scryptV stuff
13542
13543 size_t size_scryptV = 1;
13544
13545 if ((hash_mode == 8900) || (hash_mode == 9300))
13546 {
13547 uint tmto_start = 0;
13548 uint tmto_stop = 10;
13549
13550 if (scrypt_tmto)
13551 {
13552 tmto_start = scrypt_tmto;
13553 }
13554 else
13555 {
13556 // in case the user did not specify the tmto manually
13557 // use some values known to run best (tested on 290x for AMD and 980ti for NV)
13558 // but set the lower end only in case the user has a device with too less memory
13559
13560 if (hash_mode == 8900)
13561 {
13562 if (device_param->vendor_id == VENDOR_ID_AMD)
13563 {
13564 tmto_start = 1;
13565 }
13566 else if (device_param->vendor_id == VENDOR_ID_NV)
13567 {
13568 tmto_start = 2;
13569 }
13570 }
13571 else if (hash_mode == 9300)
13572 {
13573 if (device_param->vendor_id == VENDOR_ID_AMD)
13574 {
13575 tmto_start = 2;
13576 }
13577 else if (device_param->vendor_id == VENDOR_ID_NV)
13578 {
13579 tmto_start = 2;
13580 }
13581 }
13582 }
13583
13584 if (quiet == 0) log_info ("");
13585
13586 for (uint tmto = tmto_start; tmto < tmto_stop; tmto++)
13587 {
13588 // TODO: in theory the following calculation needs to be done per salt, not global
13589 // we assume all hashes have the same scrypt settings
13590
13591 size_scryptV = (128 * data.salts_buf[0].scrypt_r) * data.salts_buf[0].scrypt_N;
13592
13593 size_scryptV /= 1 << tmto;
13594
13595 size_scryptV *= device_processors * device_processor_cores;
13596
13597 if (size_scryptV > device_param->device_maxmem_alloc)
13598 {
13599 if (quiet == 0) log_info ("WARNING: not enough device memory allocatable to use --scrypt-tmto %d, increasing...", tmto);
13600
13601 continue;
13602 }
13603
13604 for (uint salts_pos = 0; salts_pos < data.salts_cnt; salts_pos++)
13605 {
13606 data.salts_buf[salts_pos].scrypt_tmto = tmto;
13607 data.salts_buf[salts_pos].scrypt_phy = device_processors * device_processor_cores;
13608 }
13609
13610 break;
13611 }
13612
13613 if (data.salts_buf[0].scrypt_phy == 0)
13614 {
13615 log_error ("ERROR: can't allocate enough device memory");
13616
13617 return -1;
13618 }
13619
13620 if (quiet == 0) log_info ("");
13621 if (quiet == 0) log_info ("SCRYPT tmto optimizer value set to: %u, mem: %u\n", data.salts_buf[0].scrypt_tmto, size_scryptV);
13622 }
13623
13624 /**
13625 * some algorithms need a fixed kernel-loops count
13626 */
13627
13628 if (hash_mode == 1500)
13629 {
13630 const u32 kernel_loops_fixed = 1024;
13631
13632 device_param->kernel_loops_min = kernel_loops_fixed;
13633 device_param->kernel_loops_max = kernel_loops_fixed;
13634 }
13635
13636 if (hash_mode == 3000)
13637 {
13638 const u32 kernel_loops_fixed = 1024;
13639
13640 device_param->kernel_loops_min = kernel_loops_fixed;
13641 device_param->kernel_loops_max = kernel_loops_fixed;
13642 }
13643
13644 if (hash_mode == 8900)
13645 {
13646 const u32 kernel_loops_fixed = 1;
13647
13648 device_param->kernel_loops_min = kernel_loops_fixed;
13649 device_param->kernel_loops_max = kernel_loops_fixed;
13650 }
13651
13652 if (hash_mode == 9300)
13653 {
13654 const u32 kernel_loops_fixed = 1;
13655
13656 device_param->kernel_loops_min = kernel_loops_fixed;
13657 device_param->kernel_loops_max = kernel_loops_fixed;
13658 }
13659
13660 if (hash_mode == 12500)
13661 {
13662 const u32 kernel_loops_fixed = ROUNDS_RAR3 / 16;
13663
13664 device_param->kernel_loops_min = kernel_loops_fixed;
13665 device_param->kernel_loops_max = kernel_loops_fixed;
13666 }
13667
13668 /**
13669 * some algorithms have a maximum kernel-loops count
13670 */
13671
13672 if (attack_exec == ATTACK_EXEC_OUTSIDE_KERNEL)
13673 {
13674 if (data.salts_buf[0].salt_iter < device_param->kernel_loops_max)
13675 {
13676 device_param->kernel_loops_max = data.salts_buf[0].salt_iter;
13677 }
13678 }
13679
13680 /**
13681 * some algorithms need a special kernel-accel
13682 */
13683
13684 if (hash_mode == 8900)
13685 {
13686 device_param->kernel_accel_min = 1;
13687 device_param->kernel_accel_max = 64;
13688 }
13689
13690 if (hash_mode == 9300)
13691 {
13692 device_param->kernel_accel_min = 1;
13693 device_param->kernel_accel_max = 64;
13694 }
13695
13696 u32 kernel_accel_min = device_param->kernel_accel_min;
13697 u32 kernel_accel_max = device_param->kernel_accel_max;
13698
13699 // find out if we would request too much memory on memory blocks which are based on kernel_accel
13700
13701 size_t size_pws = 4;
13702 size_t size_tmps = 4;
13703 size_t size_hooks = 4;
13704
13705 while (kernel_accel_max >= kernel_accel_min)
13706 {
13707 const u32 kernel_power_max = device_processors * kernel_threads * kernel_accel_max;
13708
13709 // size_pws
13710
13711 size_pws = kernel_power_max * sizeof (pw_t);
13712
13713 // size_tmps
13714
13715 switch (hash_mode)
13716 {
13717 case 400: size_tmps = kernel_power_max * sizeof (phpass_tmp_t); break;
13718 case 500: size_tmps = kernel_power_max * sizeof (md5crypt_tmp_t); break;
13719 case 501: size_tmps = kernel_power_max * sizeof (md5crypt_tmp_t); break;
13720 case 1600: size_tmps = kernel_power_max * sizeof (md5crypt_tmp_t); break;
13721 case 1800: size_tmps = kernel_power_max * sizeof (sha512crypt_tmp_t); break;
13722 case 2100: size_tmps = kernel_power_max * sizeof (dcc2_tmp_t); break;
13723 case 2500: size_tmps = kernel_power_max * sizeof (wpa_tmp_t); break;
13724 case 3200: size_tmps = kernel_power_max * sizeof (bcrypt_tmp_t); break;
13725 case 5200: size_tmps = kernel_power_max * sizeof (pwsafe3_tmp_t); break;
13726 case 5800: size_tmps = kernel_power_max * sizeof (androidpin_tmp_t); break;
13727 case 6211: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13728 case 6212: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13729 case 6213: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13730 case 6221: size_tmps = kernel_power_max * sizeof (tc64_tmp_t); break;
13731 case 6222: size_tmps = kernel_power_max * sizeof (tc64_tmp_t); break;
13732 case 6223: size_tmps = kernel_power_max * sizeof (tc64_tmp_t); break;
13733 case 6231: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13734 case 6232: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13735 case 6233: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13736 case 6241: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13737 case 6242: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13738 case 6243: size_tmps = kernel_power_max * sizeof (tc_tmp_t); break;
13739 case 6300: size_tmps = kernel_power_max * sizeof (md5crypt_tmp_t); break;
13740 case 6400: size_tmps = kernel_power_max * sizeof (sha256aix_tmp_t); break;
13741 case 6500: size_tmps = kernel_power_max * sizeof (sha512aix_tmp_t); break;
13742 case 6600: size_tmps = kernel_power_max * sizeof (agilekey_tmp_t); break;
13743 case 6700: size_tmps = kernel_power_max * sizeof (sha1aix_tmp_t); break;
13744 case 6800: size_tmps = kernel_power_max * sizeof (lastpass_tmp_t); break;
13745 case 7100: size_tmps = kernel_power_max * sizeof (pbkdf2_sha512_tmp_t); break;
13746 case 7200: size_tmps = kernel_power_max * sizeof (pbkdf2_sha512_tmp_t); break;
13747 case 7400: size_tmps = kernel_power_max * sizeof (sha256crypt_tmp_t); break;
13748 case 7900: size_tmps = kernel_power_max * sizeof (drupal7_tmp_t); break;
13749 case 8200: size_tmps = kernel_power_max * sizeof (pbkdf2_sha512_tmp_t); break;
13750 case 8800: size_tmps = kernel_power_max * sizeof (androidfde_tmp_t); break;
13751 case 8900: size_tmps = kernel_power_max * sizeof (scrypt_tmp_t); break;
13752 case 9000: size_tmps = kernel_power_max * sizeof (pwsafe2_tmp_t); break;
13753 case 9100: size_tmps = kernel_power_max * sizeof (lotus8_tmp_t); break;
13754 case 9200: size_tmps = kernel_power_max * sizeof (pbkdf2_sha256_tmp_t); break;
13755 case 9300: size_tmps = kernel_power_max * sizeof (scrypt_tmp_t); break;
13756 case 9400: size_tmps = kernel_power_max * sizeof (office2007_tmp_t); break;
13757 case 9500: size_tmps = kernel_power_max * sizeof (office2010_tmp_t); break;
13758 case 9600: size_tmps = kernel_power_max * sizeof (office2013_tmp_t); break;
13759 case 10000: size_tmps = kernel_power_max * sizeof (pbkdf2_sha256_tmp_t); break;
13760 case 10200: size_tmps = kernel_power_max * sizeof (cram_md5_t); break;
13761 case 10300: size_tmps = kernel_power_max * sizeof (saph_sha1_tmp_t); break;
13762 case 10500: size_tmps = kernel_power_max * sizeof (pdf14_tmp_t); break;
13763 case 10700: size_tmps = kernel_power_max * sizeof (pdf17l8_tmp_t); break;
13764 case 10900: size_tmps = kernel_power_max * sizeof (pbkdf2_sha256_tmp_t); break;
13765 case 11300: size_tmps = kernel_power_max * sizeof (bitcoin_wallet_tmp_t); break;
13766 case 11600: size_tmps = kernel_power_max * sizeof (seven_zip_tmp_t); break;
13767 case 11900: size_tmps = kernel_power_max * sizeof (pbkdf2_md5_tmp_t); break;
13768 case 12000: size_tmps = kernel_power_max * sizeof (pbkdf2_sha1_tmp_t); break;
13769 case 12100: size_tmps = kernel_power_max * sizeof (pbkdf2_sha512_tmp_t); break;
13770 case 12200: size_tmps = kernel_power_max * sizeof (ecryptfs_tmp_t); break;
13771 case 12300: size_tmps = kernel_power_max * sizeof (oraclet_tmp_t); break;
13772 case 12400: size_tmps = kernel_power_max * sizeof (bsdicrypt_tmp_t); break;
13773 case 12500: size_tmps = kernel_power_max * sizeof (rar3_tmp_t); break;
13774 case 12700: size_tmps = kernel_power_max * sizeof (mywallet_tmp_t); break;
13775 case 12800: size_tmps = kernel_power_max * sizeof (pbkdf2_sha256_tmp_t); break;
13776 case 12900: size_tmps = kernel_power_max * sizeof (pbkdf2_sha256_tmp_t); break;
13777 case 13000: size_tmps = kernel_power_max * sizeof (pbkdf2_sha256_tmp_t); break;
13778 case 13200: size_tmps = kernel_power_max * sizeof (axcrypt_tmp_t); break;
13779 case 13400: size_tmps = kernel_power_max * sizeof (keepass_tmp_t); break;
13780 };
13781
13782 // size_hooks
13783
13784 if ((opts_type & OPTS_TYPE_HOOK12) || (opts_type & OPTS_TYPE_HOOK23))
13785 {
13786 // none yet
13787 }
13788
13789 // now check if all device-memory sizes which depend on the kernel_accel_max amplifier are within its boundaries
13790 // if not, decrease amplifier and try again
13791
13792 int skip = 0;
13793
13794 if (size_pws > device_param->device_maxmem_alloc) skip = 1;
13795 if (size_tmps > device_param->device_maxmem_alloc) skip = 1;
13796 if (size_hooks > device_param->device_maxmem_alloc) skip = 1;
13797
13798 if (( bitmap_size
13799 + bitmap_size
13800 + bitmap_size
13801 + bitmap_size
13802 + bitmap_size
13803 + bitmap_size
13804 + bitmap_size
13805 + bitmap_size
13806 + size_bfs
13807 + size_combs
13808 + size_digests
13809 + size_esalts
13810 + size_hooks
13811 + size_markov_css
13812 + size_plains
13813 + size_pws
13814 + size_pws // not a bug
13815 + size_results
13816 + size_root_css
13817 + size_rules
13818 + size_rules_c
13819 + size_salts
13820 + size_scryptV
13821 + size_shown
13822 + size_tm
13823 + size_tmps) > device_param->device_global_mem) skip = 1;
13824
13825 if (skip == 1)
13826 {
13827 kernel_accel_max--;
13828
13829 continue;
13830 }
13831
13832 break;
13833 }
13834
13835 /*
13836 if (kernel_accel_max == 0)
13837 {
13838 log_error ("Device #%u: Device does not provide enough allocatable device-memory to handle hash-type %u", device_id + 1, data.hash_mode);
13839
13840 return -1;
13841 }
13842 */
13843
13844 device_param->kernel_accel_min = kernel_accel_min;
13845 device_param->kernel_accel_max = kernel_accel_max;
13846
13847 /*
13848 if (kernel_accel_max < kernel_accel)
13849 {
13850 if (quiet == 0) log_info ("Device #%u: Reduced maximum kernel-accel to %u", device_id + 1, kernel_accel_max);
13851
13852 device_param->kernel_accel = kernel_accel_max;
13853 }
13854 */
13855
13856 device_param->size_bfs = size_bfs;
13857 device_param->size_combs = size_combs;
13858 device_param->size_rules = size_rules;
13859 device_param->size_rules_c = size_rules_c;
13860 device_param->size_pws = size_pws;
13861 device_param->size_tmps = size_tmps;
13862 device_param->size_hooks = size_hooks;
13863
13864 // do not confuse kernel_accel_max with kernel_accel here
13865
13866 const u32 kernel_power = device_processors * kernel_threads * kernel_accel_max;
13867
13868 device_param->kernel_threads = kernel_threads;
13869 device_param->kernel_power_user = kernel_power;
13870
13871 kernel_power_all += kernel_power;
13872
13873 /**
13874 * default building options
13875 */
13876
13877 char build_opts[1024] = { 0 };
13878
13879 // we don't have sm_* on vendors not NV but it doesn't matter
13880
13881 snprintf (build_opts, sizeof (build_opts) - 1, "-cl-std=CL1.1 -I\"%s/\" -DVENDOR_ID=%u -DCUDA_ARCH=%d -DVECT_SIZE=%u -DDEVICE_TYPE=%u", shared_dir, device_param->vendor_id, (device_param->sm_major * 100) + device_param->sm_minor, device_param->vector_width, (u32) device_param->device_type);
13882
13883 /**
13884 * main kernel
13885 */
13886
13887 {
13888 /**
13889 * kernel source filename
13890 */
13891
13892 char source_file[256] = { 0 };
13893
13894 generate_source_kernel_filename (attack_exec, attack_kern, kern_type, shared_dir, source_file);
13895
13896 struct stat sst;
13897
13898 if (stat (source_file, &sst) == -1)
13899 {
13900 log_error ("ERROR: %s: %s", source_file, strerror (errno));
13901
13902 return -1;
13903 }
13904
13905 /**
13906 * kernel cached filename
13907 */
13908
13909 char cached_file[256] = { 0 };
13910
13911 generate_cached_kernel_filename (attack_exec, attack_kern, kern_type, profile_dir, device_name_chksum, cached_file);
13912
13913 int cached = 1;
13914
13915 struct stat cst;
13916
13917 if ((stat (cached_file, &cst) == -1) || cst.st_size == 0)
13918 {
13919 cached = 0;
13920 }
13921
13922 /**
13923 * kernel compile or load
13924 */
13925
13926 size_t *kernel_lengths = (size_t *) mymalloc (sizeof (size_t));
13927
13928 const u8 **kernel_sources = (const u8 **) mymalloc (sizeof (u8 *));
13929
13930 if (force_jit_compilation == -1)
13931 {
13932 if (cached == 0)
13933 {
13934 if (quiet == 0) log_info ("Device #%u: Kernel %s not found in cache! Building may take a while...", device_id + 1, cached_file);
13935
13936 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
13937
13938 device_param->program = hc_clCreateProgramWithSource (data.ocl, device_param->context, 1, (const char **) kernel_sources, NULL);
13939
13940 int rc = hc_clBuildProgram (data.ocl, device_param->program, 1, &device_param->device, build_opts, NULL, NULL, false);
13941
13942 #ifdef DEBUG
13943 size_t build_log_size = 0;
13944
13945 hc_clGetProgramBuildInfo (data.ocl, device_param->program, device_param->device, CL_PROGRAM_BUILD_LOG, 0, NULL, &build_log_size);
13946
13947 if (build_log_size > 1)
13948 {
13949 char *build_log = (char *) malloc (build_log_size + 1);
13950
13951 memset (build_log, 0, build_log_size + 1);
13952
13953 hc_clGetProgramBuildInfo (data.ocl, device_param->program, device_param->device, CL_PROGRAM_BUILD_LOG, build_log_size, build_log, NULL);
13954
13955 puts (build_log);
13956
13957 free (build_log);
13958 }
13959 #endif
13960
13961 if (rc != 0)
13962 {
13963 device_param->skipped = true;
13964 log_info ("Device #%u: Kernel %s build failure. Proceed without this device.", device_id + 1, source_file);
13965 continue;
13966 }
13967
13968 size_t binary_size;
13969
13970 hc_clGetProgramInfo (data.ocl, device_param->program, CL_PROGRAM_BINARY_SIZES, sizeof (size_t), &binary_size, NULL);
13971
13972 u8 *binary = (u8 *) mymalloc (binary_size);
13973
13974 hc_clGetProgramInfo (data.ocl, device_param->program, CL_PROGRAM_BINARIES, sizeof (binary), &binary, NULL);
13975
13976 writeProgramBin (cached_file, binary, binary_size);
13977
13978 local_free (binary);
13979 }
13980 else
13981 {
13982 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, cached_file, cst.st_size);
13983
13984 load_kernel (cached_file, 1, kernel_lengths, kernel_sources);
13985
13986 device_param->program = hc_clCreateProgramWithBinary (data.ocl, device_param->context, 1, &device_param->device, kernel_lengths, (const u8 **) kernel_sources, NULL);
13987
13988 hc_clBuildProgram (data.ocl, device_param->program, 1, &device_param->device, build_opts, NULL, NULL, true);
13989 }
13990 }
13991 else
13992 {
13993 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, source_file, sst.st_size);
13994
13995 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
13996
13997 device_param->program = hc_clCreateProgramWithSource (data.ocl, device_param->context, 1, (const char **) kernel_sources, NULL);
13998
13999 char build_opts_update[1024] = { 0 };
14000
14001 if (force_jit_compilation == 1500)
14002 {
14003 snprintf (build_opts_update, sizeof (build_opts_update) - 1, "%s -DDESCRYPT_SALT=%d", build_opts, data.salts_buf[0].salt_buf[0]);
14004 }
14005 else if (force_jit_compilation == 8900)
14006 {
14007 snprintf (build_opts_update, sizeof (build_opts_update) - 1, "%s -DSCRYPT_N=%d -DSCRYPT_R=%d -DSCRYPT_P=%d -DSCRYPT_TMTO=%d", build_opts, data.salts_buf[0].scrypt_N, data.salts_buf[0].scrypt_r, data.salts_buf[0].scrypt_p, 1 << data.salts_buf[0].scrypt_tmto);
14008 }
14009 else
14010 {
14011 snprintf (build_opts_update, sizeof (build_opts_update) - 1, "%s", build_opts);
14012 }
14013
14014 int rc = hc_clBuildProgram (data.ocl, device_param->program, 1, &device_param->device, build_opts_update, NULL, NULL, false);
14015
14016 #ifdef DEBUG
14017 size_t build_log_size = 0;
14018
14019 hc_clGetProgramBuildInfo (data.ocl, device_param->program, device_param->device, CL_PROGRAM_BUILD_LOG, 0, NULL, &build_log_size);
14020
14021 if (build_log_size > 1)
14022 {
14023 char *build_log = (char *) malloc (build_log_size + 1);
14024
14025 memset (build_log, 0, build_log_size + 1);
14026
14027 hc_clGetProgramBuildInfo (data.ocl, device_param->program, device_param->device, CL_PROGRAM_BUILD_LOG, build_log_size, build_log, NULL);
14028
14029 puts (build_log);
14030
14031 free (build_log);
14032 }
14033 #endif
14034
14035 if (rc != 0)
14036 {
14037 device_param->skipped = true;
14038
14039 log_info ("Device #%u: Kernel %s build failure. Proceed without this device.", device_id + 1, source_file);
14040 }
14041 }
14042
14043 local_free (kernel_lengths);
14044 local_free (kernel_sources[0]);
14045 local_free (kernel_sources);
14046 }
14047
14048 /**
14049 * word generator kernel
14050 */
14051
14052 if (attack_mode != ATTACK_MODE_STRAIGHT)
14053 {
14054 /**
14055 * kernel mp source filename
14056 */
14057
14058 char source_file[256] = { 0 };
14059
14060 generate_source_kernel_mp_filename (opti_type, opts_type, shared_dir, source_file);
14061
14062 struct stat sst;
14063
14064 if (stat (source_file, &sst) == -1)
14065 {
14066 log_error ("ERROR: %s: %s", source_file, strerror (errno));
14067
14068 return -1;
14069 }
14070
14071 /**
14072 * kernel mp cached filename
14073 */
14074
14075 char cached_file[256] = { 0 };
14076
14077 generate_cached_kernel_mp_filename (opti_type, opts_type, profile_dir, device_name_chksum, cached_file);
14078
14079 int cached = 1;
14080
14081 struct stat cst;
14082
14083 if (stat (cached_file, &cst) == -1)
14084 {
14085 cached = 0;
14086 }
14087
14088 /**
14089 * kernel compile or load
14090 */
14091
14092 size_t *kernel_lengths = (size_t *) mymalloc (sizeof (size_t));
14093
14094 const u8 **kernel_sources = (const u8 **) mymalloc (sizeof (u8 *));
14095
14096 if (cached == 0)
14097 {
14098 if (quiet == 0) log_info ("Device #%u: Kernel %s not found in cache! Building may take a while...", device_id + 1, cached_file);
14099
14100 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
14101
14102 device_param->program_mp = hc_clCreateProgramWithSource (data.ocl, device_param->context, 1, (const char **) kernel_sources, NULL);
14103
14104 int rc = hc_clBuildProgram (data.ocl, device_param->program_mp, 1, &device_param->device, build_opts, NULL, NULL, false);
14105
14106 if (rc != 0)
14107 {
14108 device_param->skipped = true;
14109 log_info ("Device #%u: Kernel %s build failure. Proceed without this device.", device_id + 1, source_file);
14110 continue;
14111 }
14112
14113 size_t binary_size;
14114
14115 hc_clGetProgramInfo (data.ocl, device_param->program_mp, CL_PROGRAM_BINARY_SIZES, sizeof (size_t), &binary_size, NULL);
14116
14117 u8 *binary = (u8 *) mymalloc (binary_size);
14118
14119 hc_clGetProgramInfo (data.ocl, device_param->program_mp, CL_PROGRAM_BINARIES, sizeof (binary), &binary, NULL);
14120
14121 writeProgramBin (cached_file, binary, binary_size);
14122
14123 local_free (binary);
14124 }
14125 else
14126 {
14127 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, cached_file, cst.st_size);
14128
14129 load_kernel (cached_file, 1, kernel_lengths, kernel_sources);
14130
14131 device_param->program_mp = hc_clCreateProgramWithBinary (data.ocl, device_param->context, 1, &device_param->device, kernel_lengths, (const u8 **) kernel_sources, NULL);
14132
14133 hc_clBuildProgram (data.ocl, device_param->program_mp, 1, &device_param->device, build_opts, NULL, NULL, true);
14134 }
14135
14136 local_free (kernel_lengths);
14137 local_free (kernel_sources[0]);
14138 local_free (kernel_sources);
14139 }
14140
14141 /**
14142 * amplifier kernel
14143 */
14144
14145 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14146 {
14147
14148 }
14149 else
14150 {
14151 /**
14152 * kernel amp source filename
14153 */
14154
14155 char source_file[256] = { 0 };
14156
14157 generate_source_kernel_amp_filename (attack_kern, shared_dir, source_file);
14158
14159 struct stat sst;
14160
14161 if (stat (source_file, &sst) == -1)
14162 {
14163 log_error ("ERROR: %s: %s", source_file, strerror (errno));
14164
14165 return -1;
14166 }
14167
14168 /**
14169 * kernel amp cached filename
14170 */
14171
14172 char cached_file[256] = { 0 };
14173
14174 generate_cached_kernel_amp_filename (attack_kern, profile_dir, device_name_chksum, cached_file);
14175
14176 int cached = 1;
14177
14178 struct stat cst;
14179
14180 if (stat (cached_file, &cst) == -1)
14181 {
14182 cached = 0;
14183 }
14184
14185 /**
14186 * kernel compile or load
14187 */
14188
14189 size_t *kernel_lengths = (size_t *) mymalloc (sizeof (size_t));
14190
14191 const u8 **kernel_sources = (const u8 **) mymalloc (sizeof (u8 *));
14192
14193 if (cached == 0)
14194 {
14195 if (quiet == 0) log_info ("Device #%u: Kernel %s not found in cache! Building may take a while...", device_id + 1, cached_file);
14196
14197 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
14198
14199 device_param->program_amp = hc_clCreateProgramWithSource (data.ocl, device_param->context, 1, (const char **) kernel_sources, NULL);
14200
14201 int rc = hc_clBuildProgram (data.ocl, device_param->program_amp, 1, &device_param->device, build_opts, NULL, NULL, false);
14202
14203 if (rc != 0)
14204 {
14205 device_param->skipped = true;
14206 log_info ("Device #%u: Kernel %s build failure. Proceed without this device.", device_id + 1, source_file);
14207 continue;
14208 }
14209
14210 size_t binary_size;
14211
14212 hc_clGetProgramInfo (data.ocl, device_param->program_amp, CL_PROGRAM_BINARY_SIZES, sizeof (size_t), &binary_size, NULL);
14213
14214 u8 *binary = (u8 *) mymalloc (binary_size);
14215
14216 hc_clGetProgramInfo (data.ocl, device_param->program_amp, CL_PROGRAM_BINARIES, sizeof (binary), &binary, NULL);
14217
14218 writeProgramBin (cached_file, binary, binary_size);
14219
14220 local_free (binary);
14221 }
14222 else
14223 {
14224 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, cached_file, cst.st_size);
14225
14226 load_kernel (cached_file, 1, kernel_lengths, kernel_sources);
14227
14228 device_param->program_amp = hc_clCreateProgramWithBinary (data.ocl, device_param->context, 1, &device_param->device, kernel_lengths, (const u8 **) kernel_sources, NULL);
14229
14230 hc_clBuildProgram (data.ocl, device_param->program_amp, 1, &device_param->device, build_opts, NULL, NULL, true);
14231 }
14232
14233 local_free (kernel_lengths);
14234 local_free (kernel_sources[0]);
14235 local_free (kernel_sources);
14236 }
14237
14238 // some algorithm collide too fast, make that impossible
14239
14240 if (benchmark == 1)
14241 {
14242 ((uint *) digests_buf)[0] = -1;
14243 ((uint *) digests_buf)[1] = -1;
14244 ((uint *) digests_buf)[2] = -1;
14245 ((uint *) digests_buf)[3] = -1;
14246 }
14247
14248 /**
14249 * global buffers
14250 */
14251
14252 device_param->d_pws_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_pws, NULL);
14253 device_param->d_pws_amp_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_pws, NULL);
14254 device_param->d_tmps = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_WRITE, size_tmps, NULL);
14255 device_param->d_hooks = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_WRITE, size_hooks, NULL);
14256 device_param->d_bitmap_s1_a = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14257 device_param->d_bitmap_s1_b = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14258 device_param->d_bitmap_s1_c = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14259 device_param->d_bitmap_s1_d = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14260 device_param->d_bitmap_s2_a = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14261 device_param->d_bitmap_s2_b = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14262 device_param->d_bitmap_s2_c = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14263 device_param->d_bitmap_s2_d = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
14264 device_param->d_plain_bufs = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_WRITE, size_plains, NULL);
14265 device_param->d_digests_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_digests, NULL);
14266 device_param->d_digests_shown = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_WRITE, size_shown, NULL);
14267 device_param->d_salt_bufs = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_salts, NULL);
14268 device_param->d_result = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_WRITE, size_results, NULL);
14269 device_param->d_scryptV_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_WRITE, size_scryptV, NULL);
14270
14271 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s1_a, CL_TRUE, 0, bitmap_size, bitmap_s1_a, 0, NULL, NULL);
14272 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s1_b, CL_TRUE, 0, bitmap_size, bitmap_s1_b, 0, NULL, NULL);
14273 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s1_c, CL_TRUE, 0, bitmap_size, bitmap_s1_c, 0, NULL, NULL);
14274 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s1_d, CL_TRUE, 0, bitmap_size, bitmap_s1_d, 0, NULL, NULL);
14275 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s2_a, CL_TRUE, 0, bitmap_size, bitmap_s2_a, 0, NULL, NULL);
14276 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s2_b, CL_TRUE, 0, bitmap_size, bitmap_s2_b, 0, NULL, NULL);
14277 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s2_c, CL_TRUE, 0, bitmap_size, bitmap_s2_c, 0, NULL, NULL);
14278 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_bitmap_s2_d, CL_TRUE, 0, bitmap_size, bitmap_s2_d, 0, NULL, NULL);
14279 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_digests_buf, CL_TRUE, 0, size_digests, data.digests_buf, 0, NULL, NULL);
14280 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_digests_shown, CL_TRUE, 0, size_shown, data.digests_shown, 0, NULL, NULL);
14281 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_salt_bufs, CL_TRUE, 0, size_salts, data.salts_buf, 0, NULL, NULL);
14282
14283 run_kernel_bzero (device_param, device_param->d_pws_buf, size_pws);
14284 run_kernel_bzero (device_param, device_param->d_pws_amp_buf, size_pws);
14285 run_kernel_bzero (device_param, device_param->d_tmps, size_tmps);
14286 run_kernel_bzero (device_param, device_param->d_hooks, size_hooks);
14287 run_kernel_bzero (device_param, device_param->d_plain_bufs, size_plains);
14288 run_kernel_bzero (device_param, device_param->d_result, size_results);
14289
14290 /**
14291 * special buffers
14292 */
14293
14294 if (attack_kern == ATTACK_KERN_STRAIGHT)
14295 {
14296 device_param->d_rules = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_rules, NULL);
14297 device_param->d_rules_c = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_rules_c, NULL);
14298
14299 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_rules, CL_TRUE, 0, size_rules, kernel_rules_buf, 0, NULL, NULL);
14300
14301 run_kernel_bzero (device_param, device_param->d_rules_c, size_rules_c);
14302 }
14303 else if (attack_kern == ATTACK_KERN_COMBI)
14304 {
14305 device_param->d_combs = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_combs, NULL);
14306 device_param->d_combs_c = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_combs, NULL);
14307 device_param->d_root_css_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_root_css, NULL);
14308 device_param->d_markov_css_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_markov_css, NULL);
14309
14310 run_kernel_bzero (device_param, device_param->d_combs, size_combs);
14311 run_kernel_bzero (device_param, device_param->d_combs_c, size_combs);
14312 run_kernel_bzero (device_param, device_param->d_root_css_buf, size_root_css);
14313 run_kernel_bzero (device_param, device_param->d_markov_css_buf, size_markov_css);
14314 }
14315 else if (attack_kern == ATTACK_KERN_BF)
14316 {
14317 device_param->d_bfs = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_bfs, NULL);
14318 device_param->d_bfs_c = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_bfs, NULL);
14319 device_param->d_tm_c = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_tm, NULL);
14320 device_param->d_root_css_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_root_css, NULL);
14321 device_param->d_markov_css_buf = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_markov_css, NULL);
14322
14323 run_kernel_bzero (device_param, device_param->d_bfs, size_bfs);
14324 run_kernel_bzero (device_param, device_param->d_bfs_c, size_bfs);
14325 run_kernel_bzero (device_param, device_param->d_tm_c, size_tm);
14326 run_kernel_bzero (device_param, device_param->d_root_css_buf, size_root_css);
14327 run_kernel_bzero (device_param, device_param->d_markov_css_buf, size_markov_css);
14328 }
14329
14330 if (size_esalts)
14331 {
14332 device_param->d_esalt_bufs = hc_clCreateBuffer (data.ocl, device_param->context, CL_MEM_READ_ONLY, size_esalts, NULL);
14333
14334 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_esalt_bufs, CL_TRUE, 0, size_esalts, data.esalts_buf, 0, NULL, NULL);
14335 }
14336
14337 /**
14338 * main host data
14339 */
14340
14341 uint *result = (uint *) mymalloc (size_results);
14342
14343 device_param->result = result;
14344
14345 pw_t *pws_buf = (pw_t *) mymalloc (size_pws);
14346
14347 device_param->pws_buf = pws_buf;
14348
14349 comb_t *combs_buf = (comb_t *) mycalloc (KERNEL_COMBS, sizeof (comb_t));
14350
14351 device_param->combs_buf = combs_buf;
14352
14353 void *hooks_buf = mymalloc (size_hooks);
14354
14355 device_param->hooks_buf = hooks_buf;
14356
14357 /**
14358 * kernel args
14359 */
14360
14361 device_param->kernel_params_buf32[21] = bitmap_mask;
14362 device_param->kernel_params_buf32[22] = bitmap_shift1;
14363 device_param->kernel_params_buf32[23] = bitmap_shift2;
14364 device_param->kernel_params_buf32[24] = 0; // salt_pos
14365 device_param->kernel_params_buf32[25] = 0; // loop_pos
14366 device_param->kernel_params_buf32[26] = 0; // loop_cnt
14367 device_param->kernel_params_buf32[27] = 0; // kernel_rules_cnt
14368 device_param->kernel_params_buf32[28] = 0; // digests_cnt
14369 device_param->kernel_params_buf32[29] = 0; // digests_offset
14370 device_param->kernel_params_buf32[30] = 0; // combs_mode
14371 device_param->kernel_params_buf32[31] = 0; // gid_max
14372
14373 device_param->kernel_params[ 0] = (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14374 ? &device_param->d_pws_buf
14375 : &device_param->d_pws_amp_buf;
14376 device_param->kernel_params[ 1] = &device_param->d_rules_c;
14377 device_param->kernel_params[ 2] = &device_param->d_combs_c;
14378 device_param->kernel_params[ 3] = &device_param->d_bfs_c;
14379 device_param->kernel_params[ 4] = &device_param->d_tmps;
14380 device_param->kernel_params[ 5] = &device_param->d_hooks;
14381 device_param->kernel_params[ 6] = &device_param->d_bitmap_s1_a;
14382 device_param->kernel_params[ 7] = &device_param->d_bitmap_s1_b;
14383 device_param->kernel_params[ 8] = &device_param->d_bitmap_s1_c;
14384 device_param->kernel_params[ 9] = &device_param->d_bitmap_s1_d;
14385 device_param->kernel_params[10] = &device_param->d_bitmap_s2_a;
14386 device_param->kernel_params[11] = &device_param->d_bitmap_s2_b;
14387 device_param->kernel_params[12] = &device_param->d_bitmap_s2_c;
14388 device_param->kernel_params[13] = &device_param->d_bitmap_s2_d;
14389 device_param->kernel_params[14] = &device_param->d_plain_bufs;
14390 device_param->kernel_params[15] = &device_param->d_digests_buf;
14391 device_param->kernel_params[16] = &device_param->d_digests_shown;
14392 device_param->kernel_params[17] = &device_param->d_salt_bufs;
14393 device_param->kernel_params[18] = &device_param->d_esalt_bufs;
14394 device_param->kernel_params[19] = &device_param->d_result;
14395 device_param->kernel_params[20] = &device_param->d_scryptV_buf;
14396 device_param->kernel_params[21] = &device_param->kernel_params_buf32[21];
14397 device_param->kernel_params[22] = &device_param->kernel_params_buf32[22];
14398 device_param->kernel_params[23] = &device_param->kernel_params_buf32[23];
14399 device_param->kernel_params[24] = &device_param->kernel_params_buf32[24];
14400 device_param->kernel_params[25] = &device_param->kernel_params_buf32[25];
14401 device_param->kernel_params[26] = &device_param->kernel_params_buf32[26];
14402 device_param->kernel_params[27] = &device_param->kernel_params_buf32[27];
14403 device_param->kernel_params[28] = &device_param->kernel_params_buf32[28];
14404 device_param->kernel_params[29] = &device_param->kernel_params_buf32[29];
14405 device_param->kernel_params[30] = &device_param->kernel_params_buf32[30];
14406 device_param->kernel_params[31] = &device_param->kernel_params_buf32[31];
14407
14408 device_param->kernel_params_mp_buf64[3] = 0;
14409 device_param->kernel_params_mp_buf32[4] = 0;
14410 device_param->kernel_params_mp_buf32[5] = 0;
14411 device_param->kernel_params_mp_buf32[6] = 0;
14412 device_param->kernel_params_mp_buf32[7] = 0;
14413 device_param->kernel_params_mp_buf32[8] = 0;
14414
14415 device_param->kernel_params_mp[0] = NULL;
14416 device_param->kernel_params_mp[1] = NULL;
14417 device_param->kernel_params_mp[2] = NULL;
14418 device_param->kernel_params_mp[3] = &device_param->kernel_params_mp_buf64[3];
14419 device_param->kernel_params_mp[4] = &device_param->kernel_params_mp_buf32[4];
14420 device_param->kernel_params_mp[5] = &device_param->kernel_params_mp_buf32[5];
14421 device_param->kernel_params_mp[6] = &device_param->kernel_params_mp_buf32[6];
14422 device_param->kernel_params_mp[7] = &device_param->kernel_params_mp_buf32[7];
14423 device_param->kernel_params_mp[8] = &device_param->kernel_params_mp_buf32[8];
14424
14425 device_param->kernel_params_mp_l_buf64[3] = 0;
14426 device_param->kernel_params_mp_l_buf32[4] = 0;
14427 device_param->kernel_params_mp_l_buf32[5] = 0;
14428 device_param->kernel_params_mp_l_buf32[6] = 0;
14429 device_param->kernel_params_mp_l_buf32[7] = 0;
14430 device_param->kernel_params_mp_l_buf32[8] = 0;
14431 device_param->kernel_params_mp_l_buf32[9] = 0;
14432
14433 device_param->kernel_params_mp_l[0] = NULL;
14434 device_param->kernel_params_mp_l[1] = NULL;
14435 device_param->kernel_params_mp_l[2] = NULL;
14436 device_param->kernel_params_mp_l[3] = &device_param->kernel_params_mp_l_buf64[3];
14437 device_param->kernel_params_mp_l[4] = &device_param->kernel_params_mp_l_buf32[4];
14438 device_param->kernel_params_mp_l[5] = &device_param->kernel_params_mp_l_buf32[5];
14439 device_param->kernel_params_mp_l[6] = &device_param->kernel_params_mp_l_buf32[6];
14440 device_param->kernel_params_mp_l[7] = &device_param->kernel_params_mp_l_buf32[7];
14441 device_param->kernel_params_mp_l[8] = &device_param->kernel_params_mp_l_buf32[8];
14442 device_param->kernel_params_mp_l[9] = &device_param->kernel_params_mp_l_buf32[9];
14443
14444 device_param->kernel_params_mp_r_buf64[3] = 0;
14445 device_param->kernel_params_mp_r_buf32[4] = 0;
14446 device_param->kernel_params_mp_r_buf32[5] = 0;
14447 device_param->kernel_params_mp_r_buf32[6] = 0;
14448 device_param->kernel_params_mp_r_buf32[7] = 0;
14449 device_param->kernel_params_mp_r_buf32[8] = 0;
14450
14451 device_param->kernel_params_mp_r[0] = NULL;
14452 device_param->kernel_params_mp_r[1] = NULL;
14453 device_param->kernel_params_mp_r[2] = NULL;
14454 device_param->kernel_params_mp_r[3] = &device_param->kernel_params_mp_r_buf64[3];
14455 device_param->kernel_params_mp_r[4] = &device_param->kernel_params_mp_r_buf32[4];
14456 device_param->kernel_params_mp_r[5] = &device_param->kernel_params_mp_r_buf32[5];
14457 device_param->kernel_params_mp_r[6] = &device_param->kernel_params_mp_r_buf32[6];
14458 device_param->kernel_params_mp_r[7] = &device_param->kernel_params_mp_r_buf32[7];
14459 device_param->kernel_params_mp_r[8] = &device_param->kernel_params_mp_r_buf32[8];
14460
14461 device_param->kernel_params_amp_buf32[5] = 0; // combs_mode
14462 device_param->kernel_params_amp_buf32[6] = 0; // gid_max
14463
14464 device_param->kernel_params_amp[0] = &device_param->d_pws_buf;
14465 device_param->kernel_params_amp[1] = &device_param->d_pws_amp_buf;
14466 device_param->kernel_params_amp[2] = &device_param->d_rules_c;
14467 device_param->kernel_params_amp[3] = &device_param->d_combs_c;
14468 device_param->kernel_params_amp[4] = &device_param->d_bfs_c;
14469 device_param->kernel_params_amp[5] = &device_param->kernel_params_amp_buf32[5];
14470 device_param->kernel_params_amp[6] = &device_param->kernel_params_amp_buf32[6];
14471
14472 device_param->kernel_params_tm[0] = &device_param->d_bfs_c;
14473 device_param->kernel_params_tm[1] = &device_param->d_tm_c;
14474
14475 /**
14476 * kernel name
14477 */
14478
14479 char kernel_name[64] = { 0 };
14480
14481 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14482 {
14483 if (opti_type & OPTI_TYPE_SINGLE_HASH)
14484 {
14485 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_s%02d", kern_type, 4);
14486
14487 device_param->kernel1 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14488
14489 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_s%02d", kern_type, 8);
14490
14491 device_param->kernel2 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14492
14493 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_s%02d", kern_type, 16);
14494
14495 device_param->kernel3 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14496 }
14497 else
14498 {
14499 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_m%02d", kern_type, 4);
14500
14501 device_param->kernel1 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14502
14503 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_m%02d", kern_type, 8);
14504
14505 device_param->kernel2 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14506
14507 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_m%02d", kern_type, 16);
14508
14509 device_param->kernel3 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14510 }
14511
14512 if (data.attack_mode == ATTACK_MODE_BF)
14513 {
14514 if (opts_type & OPTS_TYPE_PT_BITSLICE)
14515 {
14516 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_tm", kern_type);
14517
14518 device_param->kernel_tm = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14519 }
14520 }
14521 }
14522 else
14523 {
14524 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_init", kern_type);
14525
14526 device_param->kernel1 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14527
14528 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_loop", kern_type);
14529
14530 device_param->kernel2 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14531
14532 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_comp", kern_type);
14533
14534 device_param->kernel3 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14535
14536 if (opts_type & OPTS_TYPE_HOOK12)
14537 {
14538 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_hook12", kern_type);
14539
14540 device_param->kernel12 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14541 }
14542
14543 if (opts_type & OPTS_TYPE_HOOK23)
14544 {
14545 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_hook23", kern_type);
14546
14547 device_param->kernel23 = hc_clCreateKernel (data.ocl, device_param->program, kernel_name);
14548 }
14549 }
14550
14551 for (uint i = 0; i <= 20; i++)
14552 {
14553 hc_clSetKernelArg (data.ocl, device_param->kernel1, i, sizeof (cl_mem), device_param->kernel_params[i]);
14554 hc_clSetKernelArg (data.ocl, device_param->kernel2, i, sizeof (cl_mem), device_param->kernel_params[i]);
14555 hc_clSetKernelArg (data.ocl, device_param->kernel3, i, sizeof (cl_mem), device_param->kernel_params[i]);
14556
14557 if (opts_type & OPTS_TYPE_HOOK12) hc_clSetKernelArg (data.ocl, device_param->kernel12, i, sizeof (cl_mem), device_param->kernel_params[i]);
14558 if (opts_type & OPTS_TYPE_HOOK23) hc_clSetKernelArg (data.ocl, device_param->kernel23, i, sizeof (cl_mem), device_param->kernel_params[i]);
14559 }
14560
14561 for (uint i = 21; i <= 31; i++)
14562 {
14563 hc_clSetKernelArg (data.ocl, device_param->kernel1, i, sizeof (cl_uint), device_param->kernel_params[i]);
14564 hc_clSetKernelArg (data.ocl, device_param->kernel2, i, sizeof (cl_uint), device_param->kernel_params[i]);
14565 hc_clSetKernelArg (data.ocl, device_param->kernel3, i, sizeof (cl_uint), device_param->kernel_params[i]);
14566
14567 if (opts_type & OPTS_TYPE_HOOK12) hc_clSetKernelArg (data.ocl, device_param->kernel12, i, sizeof (cl_uint), device_param->kernel_params[i]);
14568 if (opts_type & OPTS_TYPE_HOOK23) hc_clSetKernelArg (data.ocl, device_param->kernel23, i, sizeof (cl_uint), device_param->kernel_params[i]);
14569 }
14570
14571 if (attack_mode == ATTACK_MODE_BF)
14572 {
14573 device_param->kernel_mp_l = hc_clCreateKernel (data.ocl, device_param->program_mp, "l_markov");
14574 device_param->kernel_mp_r = hc_clCreateKernel (data.ocl, device_param->program_mp, "r_markov");
14575
14576 if (opts_type & OPTS_TYPE_PT_BITSLICE)
14577 {
14578 hc_clSetKernelArg (data.ocl, device_param->kernel_tm, 0, sizeof (cl_mem), device_param->kernel_params_tm[0]);
14579 hc_clSetKernelArg (data.ocl, device_param->kernel_tm, 1, sizeof (cl_mem), device_param->kernel_params_tm[1]);
14580 }
14581 }
14582 else if (attack_mode == ATTACK_MODE_HYBRID1)
14583 {
14584 device_param->kernel_mp = hc_clCreateKernel (data.ocl, device_param->program_mp, "C_markov");
14585 }
14586 else if (attack_mode == ATTACK_MODE_HYBRID2)
14587 {
14588 device_param->kernel_mp = hc_clCreateKernel (data.ocl, device_param->program_mp, "C_markov");
14589 }
14590
14591 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14592 {
14593 // nothing to do
14594 }
14595 else
14596 {
14597 device_param->kernel_amp = hc_clCreateKernel (data.ocl, device_param->program_amp, "amp");
14598 }
14599
14600 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14601 {
14602 // nothing to do
14603 }
14604 else
14605 {
14606 for (uint i = 0; i < 5; i++)
14607 {
14608 hc_clSetKernelArg (data.ocl, device_param->kernel_amp, i, sizeof (cl_mem), device_param->kernel_params_amp[i]);
14609 }
14610
14611 for (uint i = 5; i < 7; i++)
14612 {
14613 hc_clSetKernelArg (data.ocl, device_param->kernel_amp, i, sizeof (cl_uint), device_param->kernel_params_amp[i]);
14614 }
14615 }
14616
14617 /**
14618 * Store initial fanspeed if gpu_temp_retain is enabled
14619 */
14620
14621 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
14622 int gpu_temp_retain_set = 0;
14623
14624 if (gpu_temp_disable == 0)
14625 {
14626 if (gpu_temp_retain != 0) // VENDOR_ID_AMD implied
14627 {
14628 hc_thread_mutex_lock (mux_adl);
14629
14630 if (data.hm_device[device_id].fan_supported == 1)
14631 {
14632 if (gpu_temp_retain_chgd == 0)
14633 {
14634 uint cur_temp = 0;
14635 uint default_temp = 0;
14636
14637 int ADL_rc = hm_ADL_Overdrive6_TargetTemperatureData_Get (data.hm_amd, data.hm_device[device_id].adapter_index.amd, (int *) &cur_temp, (int *) &default_temp);
14638
14639 if (ADL_rc == ADL_OK)
14640 {
14641 #define GPU_TEMP_RETAIN_ABORT_DIFF 15
14642
14643 const uint gpu_temp_retain_target = default_temp - GPU_TEMP_RETAIN_ABORT_DIFF;
14644
14645 // special case with multi gpu setups: always use minimum retain
14646
14647 if (gpu_temp_retain_set == 0)
14648 {
14649 gpu_temp_retain = gpu_temp_retain_target;
14650 gpu_temp_retain_set = 1;
14651 }
14652 else
14653 {
14654 gpu_temp_retain = MIN (gpu_temp_retain, gpu_temp_retain_target);
14655 }
14656
14657 if (gpu_temp_abort_chgd == 0) gpu_temp_abort = gpu_temp_retain + GPU_TEMP_RETAIN_ABORT_DIFF;
14658 }
14659 }
14660
14661 const int fan_speed = hm_get_fanspeed_with_device_id (device_id);
14662
14663 temp_retain_fanspeed_value[device_id] = fan_speed;
14664
14665 if (fan_speed == -1)
14666 {
14667 log_info ("WARNING: Failed to get current fan speed settings for gpu number: %i:", device_id + 1);
14668
14669 temp_retain_fanspeed_value[device_id] = 0;
14670 }
14671 }
14672
14673 hc_thread_mutex_unlock (mux_adl);
14674 }
14675 }
14676
14677 /**
14678 * Store original powercontrol/clocks settings, set overdrive 6 performance tuning settings
14679 */
14680
14681 if (powertune_enable == 1) // VENDOR_ID_AMD implied
14682 {
14683 hc_thread_mutex_lock (mux_adl);
14684
14685 if (data.hm_device[device_id].od_version == 6)
14686 {
14687 int ADL_rc;
14688
14689 // check powertune capabilities first, if not available then skip device
14690
14691 int powertune_supported = 0;
14692
14693 if ((ADL_rc = hm_ADL_Overdrive6_PowerControl_Caps (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &powertune_supported)) != ADL_OK)
14694 {
14695 log_error ("ERROR: Failed to get ADL PowerControl Capabilities");
14696
14697 return (-1);
14698 }
14699
14700 if (powertune_supported != 0)
14701 {
14702 // powercontrol settings
14703
14704 ADLOD6PowerControlInfo powertune = {0, 0, 0, 0, 0};
14705
14706 if ((ADL_rc = hm_ADL_Overdrive_PowerControlInfo_Get (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &powertune)) == ADL_OK)
14707 {
14708 ADL_rc = hm_ADL_Overdrive_PowerControl_Get (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &od_power_control_status[device_id]);
14709 }
14710
14711 if (ADL_rc != ADL_OK)
14712 {
14713 log_error ("ERROR: Failed to get current ADL PowerControl settings");
14714
14715 return (-1);
14716 }
14717
14718 if ((ADL_rc = hm_ADL_Overdrive_PowerControl_Set (data.hm_amd, data.hm_device[device_id].adapter_index.amd, powertune.iMaxValue)) != ADL_OK)
14719 {
14720 log_error ("ERROR: Failed to set new ADL PowerControl values");
14721
14722 return (-1);
14723 }
14724
14725 // clocks
14726
14727 memset (&od_clock_mem_status[device_id], 0, sizeof (ADLOD6MemClockState));
14728
14729 od_clock_mem_status[device_id].state.iNumberOfPerformanceLevels = 2;
14730
14731 if ((ADL_rc = hm_ADL_Overdrive_StateInfo_Get (data.hm_amd, data.hm_device[device_id].adapter_index.amd, ADL_OD6_GETSTATEINFO_CUSTOM_PERFORMANCE, &od_clock_mem_status[device_id])) != ADL_OK)
14732 {
14733 log_error ("ERROR: Failed to get ADL memory and engine clock frequency");
14734
14735 return (-1);
14736 }
14737
14738 // Query capabilities only to see if profiles were not "damaged", if so output a warning but do accept the users profile settings
14739
14740 ADLOD6Capabilities caps = {0, 0, 0, {0, 0, 0}, {0, 0, 0}, 0, 0};
14741
14742 if ((ADL_rc = hm_ADL_Overdrive_Capabilities_Get (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &caps)) != ADL_OK)
14743 {
14744 log_error ("ERROR: Failed to get ADL device capabilities");
14745
14746 return (-1);
14747 }
14748
14749 int engine_clock_max = caps.sEngineClockRange.iMax * 0.6666;
14750 int memory_clock_max = caps.sMemoryClockRange.iMax * 0.6250;
14751
14752 int warning_trigger_engine = (int) (0.25 * (float) engine_clock_max);
14753 int warning_trigger_memory = (int) (0.25 * (float) memory_clock_max);
14754
14755 int engine_clock_profile_max = od_clock_mem_status[device_id].state.aLevels[1].iEngineClock;
14756 int memory_clock_profile_max = od_clock_mem_status[device_id].state.aLevels[1].iMemoryClock;
14757
14758 // warning if profile has too low max values
14759
14760 if ((engine_clock_max - engine_clock_profile_max) > warning_trigger_engine)
14761 {
14762 log_info ("WARN: the custom profile seems to have too low maximum engine clock values. You therefore may not reach full performance");
14763 }
14764
14765 if ((memory_clock_max - memory_clock_profile_max) > warning_trigger_memory)
14766 {
14767 log_info ("WARN: the custom profile seems to have too low maximum memory clock values. You therefore may not reach full performance");
14768 }
14769
14770 ADLOD6StateInfo *performance_state = (ADLOD6StateInfo*) mycalloc (1, sizeof (ADLOD6StateInfo) + sizeof (ADLOD6PerformanceLevel));
14771
14772 performance_state->iNumberOfPerformanceLevels = 2;
14773
14774 performance_state->aLevels[0].iEngineClock = engine_clock_profile_max;
14775 performance_state->aLevels[1].iEngineClock = engine_clock_profile_max;
14776 performance_state->aLevels[0].iMemoryClock = memory_clock_profile_max;
14777 performance_state->aLevels[1].iMemoryClock = memory_clock_profile_max;
14778
14779 if ((ADL_rc = hm_ADL_Overdrive_State_Set (data.hm_amd, data.hm_device[device_id].adapter_index.amd, ADL_OD6_SETSTATE_PERFORMANCE, performance_state)) != ADL_OK)
14780 {
14781 log_info ("ERROR: Failed to set ADL performance state");
14782
14783 return (-1);
14784 }
14785
14786 local_free (performance_state);
14787 }
14788 }
14789
14790 hc_thread_mutex_unlock (mux_adl);
14791 }
14792 #endif // HAVE_HWMON && HAVE_ADL
14793 }
14794
14795 data.kernel_power_all = kernel_power_all;
14796
14797 if (data.quiet == 0) log_info ("");
14798
14799 /**
14800 * In benchmark-mode, inform user which algorithm is checked
14801 */
14802
14803 if (benchmark == 1)
14804 {
14805 quiet = 0;
14806
14807 data.quiet = quiet;
14808
14809 char *hash_type = strhashtype (data.hash_mode); // not a bug
14810
14811 log_info ("Hashtype: %s", hash_type);
14812 log_info ("");
14813 }
14814
14815 /**
14816 * keep track of the progress
14817 */
14818
14819 data.words_progress_done = (u64 *) mycalloc (data.salts_cnt, sizeof (u64));
14820 data.words_progress_rejected = (u64 *) mycalloc (data.salts_cnt, sizeof (u64));
14821 data.words_progress_restored = (u64 *) mycalloc (data.salts_cnt, sizeof (u64));
14822
14823 /**
14824 * open filehandles
14825 */
14826
14827 #if _WIN
14828 if (_setmode (_fileno (stdin), _O_BINARY) == -1)
14829 {
14830 log_error ("ERROR: %s: %s", "stdin", strerror (errno));
14831
14832 return (-1);
14833 }
14834
14835 if (_setmode (_fileno (stdout), _O_BINARY) == -1)
14836 {
14837 log_error ("ERROR: %s: %s", "stdout", strerror (errno));
14838
14839 return (-1);
14840 }
14841
14842 if (_setmode (_fileno (stderr), _O_BINARY) == -1)
14843 {
14844 log_error ("ERROR: %s: %s", "stderr", strerror (errno));
14845
14846 return (-1);
14847 }
14848 #endif
14849
14850 /**
14851 * dictionary pad
14852 */
14853
14854 segment_size *= (1024 * 1024);
14855
14856 data.segment_size = segment_size;
14857
14858 wl_data_t *wl_data = (wl_data_t *) mymalloc (sizeof (wl_data_t));
14859
14860 wl_data->buf = (char *) mymalloc (segment_size);
14861 wl_data->avail = segment_size;
14862 wl_data->incr = segment_size;
14863 wl_data->cnt = 0;
14864 wl_data->pos = 0;
14865
14866 uint wordlist_mode = ((optind + 1) < myargc) ? WL_MODE_FILE : WL_MODE_STDIN;
14867
14868 data.wordlist_mode = wordlist_mode;
14869
14870 cs_t *css_buf = NULL;
14871 uint css_cnt = 0;
14872 uint dictcnt = 0;
14873 uint maskcnt = 1;
14874 char **masks = NULL;
14875 char **dictfiles = NULL;
14876
14877 uint mask_from_file = 0;
14878
14879 if (attack_mode == ATTACK_MODE_STRAIGHT)
14880 {
14881 if (wordlist_mode == WL_MODE_FILE)
14882 {
14883 int wls_left = myargc - (optind + 1);
14884
14885 for (int i = 0; i < wls_left; i++)
14886 {
14887 char *l0_filename = myargv[optind + 1 + i];
14888
14889 struct stat l0_stat;
14890
14891 if (stat (l0_filename, &l0_stat) == -1)
14892 {
14893 log_error ("ERROR: %s: %s", l0_filename, strerror (errno));
14894
14895 return (-1);
14896 }
14897
14898 uint is_dir = S_ISDIR (l0_stat.st_mode);
14899
14900 if (is_dir == 0)
14901 {
14902 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
14903
14904 dictcnt++;
14905
14906 dictfiles[dictcnt - 1] = l0_filename;
14907 }
14908 else
14909 {
14910 // do not allow --keyspace w/ a directory
14911
14912 if (keyspace == 1)
14913 {
14914 log_error ("ERROR: keyspace parameter is not allowed together with a directory");
14915
14916 return (-1);
14917 }
14918
14919 char **dictionary_files = NULL;
14920
14921 dictionary_files = scan_directory (l0_filename);
14922
14923 if (dictionary_files != NULL)
14924 {
14925 qsort (dictionary_files, count_dictionaries (dictionary_files), sizeof (char *), sort_by_stringptr);
14926
14927 for (int d = 0; dictionary_files[d] != NULL; d++)
14928 {
14929 char *l1_filename = dictionary_files[d];
14930
14931 struct stat l1_stat;
14932
14933 if (stat (l1_filename, &l1_stat) == -1)
14934 {
14935 log_error ("ERROR: %s: %s", l1_filename, strerror (errno));
14936
14937 return (-1);
14938 }
14939
14940 if (S_ISREG (l1_stat.st_mode))
14941 {
14942 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
14943
14944 dictcnt++;
14945
14946 dictfiles[dictcnt - 1] = strdup (l1_filename);
14947 }
14948 }
14949 }
14950
14951 local_free (dictionary_files);
14952 }
14953 }
14954
14955 if (dictcnt < 1)
14956 {
14957 log_error ("ERROR: No usable dictionary file found.");
14958
14959 return (-1);
14960 }
14961 }
14962 else if (wordlist_mode == WL_MODE_STDIN)
14963 {
14964 dictcnt = 1;
14965 }
14966 }
14967 else if (attack_mode == ATTACK_MODE_COMBI)
14968 {
14969 // display
14970
14971 char *dictfile1 = myargv[optind + 1 + 0];
14972 char *dictfile2 = myargv[optind + 1 + 1];
14973
14974 // find the bigger dictionary and use as base
14975
14976 FILE *fp1 = NULL;
14977 FILE *fp2 = NULL;
14978
14979 struct stat tmp_stat;
14980
14981 if ((fp1 = fopen (dictfile1, "rb")) == NULL)
14982 {
14983 log_error ("ERROR: %s: %s", dictfile1, strerror (errno));
14984
14985 return (-1);
14986 }
14987
14988 if (stat (dictfile1, &tmp_stat) == -1)
14989 {
14990 log_error ("ERROR: %s: %s", dictfile1, strerror (errno));
14991
14992 fclose (fp1);
14993
14994 return (-1);
14995 }
14996
14997 if (S_ISDIR (tmp_stat.st_mode))
14998 {
14999 log_error ("ERROR: %s must be a regular file", dictfile1, strerror (errno));
15000
15001 fclose (fp1);
15002
15003 return (-1);
15004 }
15005
15006 if ((fp2 = fopen (dictfile2, "rb")) == NULL)
15007 {
15008 log_error ("ERROR: %s: %s", dictfile2, strerror (errno));
15009
15010 fclose (fp1);
15011
15012 return (-1);
15013 }
15014
15015 if (stat (dictfile2, &tmp_stat) == -1)
15016 {
15017 log_error ("ERROR: %s: %s", dictfile2, strerror (errno));
15018
15019 fclose (fp1);
15020 fclose (fp2);
15021
15022 return (-1);
15023 }
15024
15025 if (S_ISDIR (tmp_stat.st_mode))
15026 {
15027 log_error ("ERROR: %s must be a regular file", dictfile2, strerror (errno));
15028
15029 fclose (fp1);
15030 fclose (fp2);
15031
15032 return (-1);
15033 }
15034
15035 data.combs_cnt = 1;
15036
15037 data.quiet = 1;
15038
15039 const u64 words1_cnt = count_words (wl_data, fp1, dictfile1, dictstat_base, &dictstat_nmemb);
15040
15041 data.quiet = quiet;
15042
15043 if (words1_cnt == 0)
15044 {
15045 log_error ("ERROR: %s: empty file", dictfile1);
15046
15047 fclose (fp1);
15048 fclose (fp2);
15049
15050 return (-1);
15051 }
15052
15053 data.combs_cnt = 1;
15054
15055 data.quiet = 1;
15056
15057 const u64 words2_cnt = count_words (wl_data, fp2, dictfile2, dictstat_base, &dictstat_nmemb);
15058
15059 data.quiet = quiet;
15060
15061 if (words2_cnt == 0)
15062 {
15063 log_error ("ERROR: %s: empty file", dictfile2);
15064
15065 fclose (fp1);
15066 fclose (fp2);
15067
15068 return (-1);
15069 }
15070
15071 fclose (fp1);
15072 fclose (fp2);
15073
15074 data.dictfile = dictfile1;
15075 data.dictfile2 = dictfile2;
15076
15077 if (words1_cnt >= words2_cnt)
15078 {
15079 data.combs_cnt = words2_cnt;
15080 data.combs_mode = COMBINATOR_MODE_BASE_LEFT;
15081
15082 dictfiles = &data.dictfile;
15083
15084 dictcnt = 1;
15085 }
15086 else
15087 {
15088 data.combs_cnt = words1_cnt;
15089 data.combs_mode = COMBINATOR_MODE_BASE_RIGHT;
15090
15091 dictfiles = &data.dictfile2;
15092
15093 dictcnt = 1;
15094
15095 // we also have to switch wordlist related rules!
15096
15097 char *tmpc = data.rule_buf_l;
15098
15099 data.rule_buf_l = data.rule_buf_r;
15100 data.rule_buf_r = tmpc;
15101
15102 int tmpi = data.rule_len_l;
15103
15104 data.rule_len_l = data.rule_len_r;
15105 data.rule_len_r = tmpi;
15106 }
15107 }
15108 else if (attack_mode == ATTACK_MODE_BF)
15109 {
15110 char *mask = NULL;
15111
15112 maskcnt = 0;
15113
15114 if (benchmark == 0)
15115 {
15116 mask = myargv[optind + 1];
15117
15118 masks = (char **) mymalloc (INCR_MASKS * sizeof (char *));
15119
15120 if ((optind + 2) <= myargc)
15121 {
15122 struct stat file_stat;
15123
15124 if (stat (mask, &file_stat) == -1)
15125 {
15126 maskcnt = 1;
15127
15128 masks[maskcnt - 1] = mystrdup (mask);
15129 }
15130 else
15131 {
15132 int wls_left = myargc - (optind + 1);
15133
15134 uint masks_avail = INCR_MASKS;
15135
15136 for (int i = 0; i < wls_left; i++)
15137 {
15138 if (i != 0)
15139 {
15140 mask = myargv[optind + 1 + i];
15141
15142 if (stat (mask, &file_stat) == -1)
15143 {
15144 log_error ("ERROR: %s: %s", mask, strerror (errno));
15145
15146 return (-1);
15147 }
15148 }
15149
15150 uint is_file = S_ISREG (file_stat.st_mode);
15151
15152 if (is_file == 1)
15153 {
15154 FILE *mask_fp;
15155
15156 if ((mask_fp = fopen (mask, "r")) == NULL)
15157 {
15158 log_error ("ERROR: %s: %s", mask, strerror (errno));
15159
15160 return (-1);
15161 }
15162
15163 char *line_buf = (char *) mymalloc (HCBUFSIZ);
15164
15165 while (!feof (mask_fp))
15166 {
15167 memset (line_buf, 0, HCBUFSIZ);
15168
15169 int line_len = fgetl (mask_fp, line_buf);
15170
15171 if (line_len == 0) continue;
15172
15173 if (line_buf[0] == '#') continue;
15174
15175 if (masks_avail == maskcnt)
15176 {
15177 masks = (char **) myrealloc (masks, masks_avail * sizeof (char *), INCR_MASKS * sizeof (char *));
15178
15179 masks_avail += INCR_MASKS;
15180 }
15181
15182 masks[maskcnt] = mystrdup (line_buf);
15183
15184 maskcnt++;
15185 }
15186
15187 myfree (line_buf);
15188
15189 fclose (mask_fp);
15190 }
15191 else
15192 {
15193 log_error ("ERROR: %s: unsupported file-type", mask);
15194
15195 return (-1);
15196 }
15197 }
15198
15199 mask_from_file = 1;
15200 }
15201 }
15202 else
15203 {
15204 custom_charset_1 = (char *) "?l?d?u";
15205 custom_charset_2 = (char *) "?l?d";
15206 custom_charset_3 = (char *) "?l?d*!$@_";
15207
15208 mp_setup_usr (mp_sys, mp_usr, custom_charset_1, 0);
15209 mp_setup_usr (mp_sys, mp_usr, custom_charset_2, 1);
15210 mp_setup_usr (mp_sys, mp_usr, custom_charset_3, 2);
15211
15212 masks[maskcnt] = mystrdup ("?1?2?2?2?2?2?2?3?3?3?3?d?d?d?d");
15213
15214 wordlist_mode = WL_MODE_MASK;
15215
15216 data.wordlist_mode = wordlist_mode;
15217
15218 increment = 1;
15219
15220 maskcnt = 1;
15221 }
15222 }
15223 else
15224 {
15225 /**
15226 * generate full masks and charsets
15227 */
15228
15229 masks = (char **) mymalloc (sizeof (char *));
15230
15231 switch (hash_mode)
15232 {
15233 case 1731: pw_min = 5;
15234 pw_max = 5;
15235 mask = mystrdup ("?b?b?b?b?b");
15236 break;
15237 case 12500: pw_min = 5;
15238 pw_max = 5;
15239 mask = mystrdup ("?b?b?b?b?b");
15240 break;
15241 default: pw_min = 7;
15242 pw_max = 7;
15243 mask = mystrdup ("?b?b?b?b?b?b?b");
15244 break;
15245 }
15246
15247 maskcnt = 1;
15248
15249 masks[maskcnt - 1] = mystrdup (mask);
15250
15251 wordlist_mode = WL_MODE_MASK;
15252
15253 data.wordlist_mode = wordlist_mode;
15254
15255 increment = 1;
15256 }
15257
15258 dictfiles = (char **) mycalloc (pw_max, sizeof (char *));
15259
15260 if (increment)
15261 {
15262 if (increment_min > pw_min) pw_min = increment_min;
15263
15264 if (increment_max < pw_max) pw_max = increment_max;
15265 }
15266 }
15267 else if (attack_mode == ATTACK_MODE_HYBRID1)
15268 {
15269 data.combs_mode = COMBINATOR_MODE_BASE_LEFT;
15270
15271 // display
15272
15273 char *mask = myargv[myargc - 1];
15274
15275 maskcnt = 0;
15276
15277 masks = (char **) mymalloc (1 * sizeof (char *));
15278
15279 // mod
15280
15281 struct stat file_stat;
15282
15283 if (stat (mask, &file_stat) == -1)
15284 {
15285 maskcnt = 1;
15286
15287 masks[maskcnt - 1] = mystrdup (mask);
15288 }
15289 else
15290 {
15291 uint is_file = S_ISREG (file_stat.st_mode);
15292
15293 if (is_file == 1)
15294 {
15295 FILE *mask_fp;
15296
15297 if ((mask_fp = fopen (mask, "r")) == NULL)
15298 {
15299 log_error ("ERROR: %s: %s", mask, strerror (errno));
15300
15301 return (-1);
15302 }
15303
15304 char *line_buf = (char *) mymalloc (HCBUFSIZ);
15305
15306 uint masks_avail = 1;
15307
15308 while (!feof (mask_fp))
15309 {
15310 memset (line_buf, 0, HCBUFSIZ);
15311
15312 int line_len = fgetl (mask_fp, line_buf);
15313
15314 if (line_len == 0) continue;
15315
15316 if (line_buf[0] == '#') continue;
15317
15318 if (masks_avail == maskcnt)
15319 {
15320 masks = (char **) myrealloc (masks, masks_avail * sizeof (char *), INCR_MASKS * sizeof (char *));
15321
15322 masks_avail += INCR_MASKS;
15323 }
15324
15325 masks[maskcnt] = mystrdup (line_buf);
15326
15327 maskcnt++;
15328 }
15329
15330 myfree (line_buf);
15331
15332 fclose (mask_fp);
15333
15334 mask_from_file = 1;
15335 }
15336 else
15337 {
15338 maskcnt = 1;
15339
15340 masks[maskcnt - 1] = mystrdup (mask);
15341 }
15342 }
15343
15344 // base
15345
15346 int wls_left = myargc - (optind + 2);
15347
15348 for (int i = 0; i < wls_left; i++)
15349 {
15350 char *filename = myargv[optind + 1 + i];
15351
15352 struct stat file_stat;
15353
15354 if (stat (filename, &file_stat) == -1)
15355 {
15356 log_error ("ERROR: %s: %s", filename, strerror (errno));
15357
15358 return (-1);
15359 }
15360
15361 uint is_dir = S_ISDIR (file_stat.st_mode);
15362
15363 if (is_dir == 0)
15364 {
15365 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15366
15367 dictcnt++;
15368
15369 dictfiles[dictcnt - 1] = filename;
15370 }
15371 else
15372 {
15373 // do not allow --keyspace w/ a directory
15374
15375 if (keyspace == 1)
15376 {
15377 log_error ("ERROR: keyspace parameter is not allowed together with a directory");
15378
15379 return (-1);
15380 }
15381
15382 char **dictionary_files = NULL;
15383
15384 dictionary_files = scan_directory (filename);
15385
15386 if (dictionary_files != NULL)
15387 {
15388 qsort (dictionary_files, count_dictionaries (dictionary_files), sizeof (char *), sort_by_stringptr);
15389
15390 for (int d = 0; dictionary_files[d] != NULL; d++)
15391 {
15392 char *l1_filename = dictionary_files[d];
15393
15394 struct stat l1_stat;
15395
15396 if (stat (l1_filename, &l1_stat) == -1)
15397 {
15398 log_error ("ERROR: %s: %s", l1_filename, strerror (errno));
15399
15400 return (-1);
15401 }
15402
15403 if (S_ISREG (l1_stat.st_mode))
15404 {
15405 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15406
15407 dictcnt++;
15408
15409 dictfiles[dictcnt - 1] = strdup (l1_filename);
15410 }
15411 }
15412 }
15413
15414 local_free (dictionary_files);
15415 }
15416 }
15417
15418 if (dictcnt < 1)
15419 {
15420 log_error ("ERROR: No usable dictionary file found.");
15421
15422 return (-1);
15423 }
15424
15425 if (increment)
15426 {
15427 maskcnt = 0;
15428
15429 uint mask_min = increment_min; // we can't reject smaller masks here
15430 uint mask_max = (increment_max < pw_max) ? increment_max : pw_max;
15431
15432 for (uint mask_cur = mask_min; mask_cur <= mask_max; mask_cur++)
15433 {
15434 char *cur_mask = mp_get_truncated_mask (mask, strlen (mask), mask_cur);
15435
15436 if (cur_mask == NULL) break;
15437
15438 masks[maskcnt] = cur_mask;
15439
15440 maskcnt++;
15441
15442 masks = (char **) myrealloc (masks, maskcnt * sizeof (char *), sizeof (char *));
15443 }
15444 }
15445 }
15446 else if (attack_mode == ATTACK_MODE_HYBRID2)
15447 {
15448 data.combs_mode = COMBINATOR_MODE_BASE_RIGHT;
15449
15450 // display
15451
15452 char *mask = myargv[optind + 1 + 0];
15453
15454 maskcnt = 0;
15455
15456 masks = (char **) mymalloc (1 * sizeof (char *));
15457
15458 // mod
15459
15460 struct stat file_stat;
15461
15462 if (stat (mask, &file_stat) == -1)
15463 {
15464 maskcnt = 1;
15465
15466 masks[maskcnt - 1] = mystrdup (mask);
15467 }
15468 else
15469 {
15470 uint is_file = S_ISREG (file_stat.st_mode);
15471
15472 if (is_file == 1)
15473 {
15474 FILE *mask_fp;
15475
15476 if ((mask_fp = fopen (mask, "r")) == NULL)
15477 {
15478 log_error ("ERROR: %s: %s", mask, strerror (errno));
15479
15480 return (-1);
15481 }
15482
15483 char *line_buf = (char *) mymalloc (HCBUFSIZ);
15484
15485 uint masks_avail = 1;
15486
15487 while (!feof (mask_fp))
15488 {
15489 memset (line_buf, 0, HCBUFSIZ);
15490
15491 int line_len = fgetl (mask_fp, line_buf);
15492
15493 if (line_len == 0) continue;
15494
15495 if (line_buf[0] == '#') continue;
15496
15497 if (masks_avail == maskcnt)
15498 {
15499 masks = (char **) myrealloc (masks, masks_avail * sizeof (char *), INCR_MASKS * sizeof (char *));
15500
15501 masks_avail += INCR_MASKS;
15502 }
15503
15504 masks[maskcnt] = mystrdup (line_buf);
15505
15506 maskcnt++;
15507 }
15508
15509 myfree (line_buf);
15510
15511 fclose (mask_fp);
15512
15513 mask_from_file = 1;
15514 }
15515 else
15516 {
15517 maskcnt = 1;
15518
15519 masks[maskcnt - 1] = mystrdup (mask);
15520 }
15521 }
15522
15523 // base
15524
15525 int wls_left = myargc - (optind + 2);
15526
15527 for (int i = 0; i < wls_left; i++)
15528 {
15529 char *filename = myargv[optind + 2 + i];
15530
15531 struct stat file_stat;
15532
15533 if (stat (filename, &file_stat) == -1)
15534 {
15535 log_error ("ERROR: %s: %s", filename, strerror (errno));
15536
15537 return (-1);
15538 }
15539
15540 uint is_dir = S_ISDIR (file_stat.st_mode);
15541
15542 if (is_dir == 0)
15543 {
15544 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15545
15546 dictcnt++;
15547
15548 dictfiles[dictcnt - 1] = filename;
15549 }
15550 else
15551 {
15552 // do not allow --keyspace w/ a directory
15553
15554 if (keyspace == 1)
15555 {
15556 log_error ("ERROR: keyspace parameter is not allowed together with a directory");
15557
15558 return (-1);
15559 }
15560
15561 char **dictionary_files = NULL;
15562
15563 dictionary_files = scan_directory (filename);
15564
15565 if (dictionary_files != NULL)
15566 {
15567 qsort (dictionary_files, count_dictionaries (dictionary_files), sizeof (char *), sort_by_stringptr);
15568
15569 for (int d = 0; dictionary_files[d] != NULL; d++)
15570 {
15571 char *l1_filename = dictionary_files[d];
15572
15573 struct stat l1_stat;
15574
15575 if (stat (l1_filename, &l1_stat) == -1)
15576 {
15577 log_error ("ERROR: %s: %s", l1_filename, strerror (errno));
15578
15579 return (-1);
15580 }
15581
15582 if (S_ISREG (l1_stat.st_mode))
15583 {
15584 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15585
15586 dictcnt++;
15587
15588 dictfiles[dictcnt - 1] = strdup (l1_filename);
15589 }
15590 }
15591 }
15592
15593 local_free (dictionary_files);
15594 }
15595 }
15596
15597 if (dictcnt < 1)
15598 {
15599 log_error ("ERROR: No usable dictionary file found.");
15600
15601 return (-1);
15602 }
15603
15604 if (increment)
15605 {
15606 maskcnt = 0;
15607
15608 uint mask_min = increment_min; // we can't reject smaller masks here
15609 uint mask_max = (increment_max < pw_max) ? increment_max : pw_max;
15610
15611 for (uint mask_cur = mask_min; mask_cur <= mask_max; mask_cur++)
15612 {
15613 char *cur_mask = mp_get_truncated_mask (mask, strlen (mask), mask_cur);
15614
15615 if (cur_mask == NULL) break;
15616
15617 masks[maskcnt] = cur_mask;
15618
15619 maskcnt++;
15620
15621 masks = (char **) myrealloc (masks, maskcnt * sizeof (char *), sizeof (char *));
15622 }
15623 }
15624 }
15625
15626 data.pw_min = pw_min;
15627 data.pw_max = pw_max;
15628
15629 /**
15630 * weak hash check
15631 */
15632
15633 if (weak_hash_threshold >= salts_cnt)
15634 {
15635 hc_device_param_t *device_param = NULL;
15636
15637 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
15638 {
15639 device_param = &data.devices_param[device_id];
15640
15641 if (device_param->skipped) continue;
15642
15643 break;
15644 }
15645
15646 if (data.quiet == 0) log_info_nn ("Checking for weak hashes...");
15647
15648 for (uint salt_pos = 0; salt_pos < salts_cnt; salt_pos++)
15649 {
15650 weak_hash_check (device_param, salt_pos);
15651 }
15652 }
15653
15654 // Display hack, guarantee that there is at least one \r before real start
15655
15656 if (data.quiet == 0) log_info_nn ("");
15657
15658 /**
15659 * status and monitor threads
15660 */
15661
15662 if (data.devices_status != STATUS_CRACKED) data.devices_status = STATUS_STARTING;
15663
15664 hc_thread_t i_thread = 0;
15665
15666 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
15667 {
15668 hc_thread_create (i_thread, thread_keypress, &benchmark);
15669 }
15670
15671 if (wordlist_mode == WL_MODE_STDIN) data.status = 1;
15672
15673 uint ni_threads_cnt = 0;
15674
15675 hc_thread_t *ni_threads = (hc_thread_t *) mycalloc (10, sizeof (hc_thread_t));
15676
15677 hc_thread_create (ni_threads[ni_threads_cnt], thread_monitor, NULL);
15678
15679 ni_threads_cnt++;
15680
15681 /**
15682 * Outfile remove
15683 */
15684
15685 if (keyspace == 0)
15686 {
15687 if (outfile_check_timer != 0)
15688 {
15689 if (data.outfile_check_directory != NULL)
15690 {
15691 if ((hash_mode != 5200) &&
15692 !((hash_mode >= 6200) && (hash_mode <= 6299)) &&
15693 (hash_mode != 9000))
15694 {
15695 hc_thread_create (ni_threads[ni_threads_cnt], thread_outfile_remove, NULL);
15696
15697 ni_threads_cnt++;
15698 }
15699 else
15700 {
15701 outfile_check_timer = 0;
15702 }
15703 }
15704 else
15705 {
15706 outfile_check_timer = 0;
15707 }
15708 }
15709 }
15710
15711 /**
15712 * Inform the user if we got some hashes remove because of the pot file remove feature
15713 */
15714
15715 if (data.quiet == 0)
15716 {
15717 if (potfile_remove_cracks > 0)
15718 {
15719 if (potfile_remove_cracks == 1) log_info ("INFO: removed 1 hash found in pot file\n");
15720 else log_info ("INFO: removed %u hashes found in pot file\n", potfile_remove_cracks);
15721 }
15722 }
15723
15724 data.outfile_check_timer = outfile_check_timer;
15725
15726 /**
15727 * main loop
15728 */
15729
15730 char **induction_dictionaries = NULL;
15731
15732 int induction_dictionaries_cnt = 0;
15733
15734 hcstat_table_t *root_table_buf = NULL;
15735 hcstat_table_t *markov_table_buf = NULL;
15736
15737 uint initial_restore_done = 0;
15738
15739 data.maskcnt = maskcnt;
15740
15741 for (uint maskpos = rd->maskpos; maskpos < maskcnt; maskpos++)
15742 {
15743 if (data.devices_status == STATUS_CRACKED) break;
15744
15745 data.devices_status = STATUS_INIT;
15746
15747 if (maskpos > rd->maskpos)
15748 {
15749 rd->dictpos = 0;
15750 }
15751
15752 rd->maskpos = maskpos;
15753 data.maskpos = maskpos;
15754
15755 if (attack_mode == ATTACK_MODE_HYBRID1 || attack_mode == ATTACK_MODE_HYBRID2 || attack_mode == ATTACK_MODE_BF)
15756 {
15757 char *mask = masks[maskpos];
15758
15759 if (mask_from_file == 1)
15760 {
15761 if (mask[0] == '\\' && mask[1] == '#') mask++; // escaped comment sign (sharp) "\#"
15762
15763 char *str_ptr;
15764 uint str_pos;
15765
15766 uint mask_offset = 0;
15767
15768 uint separator_cnt;
15769
15770 for (separator_cnt = 0; separator_cnt < 4; separator_cnt++)
15771 {
15772 str_ptr = strstr (mask + mask_offset, ",");
15773
15774 if (str_ptr == NULL) break;
15775
15776 str_pos = str_ptr - mask;
15777
15778 // escaped separator, i.e. "\,"
15779
15780 if (str_pos > 0)
15781 {
15782 if (mask[str_pos - 1] == '\\')
15783 {
15784 separator_cnt --;
15785
15786 mask_offset = str_pos + 1;
15787
15788 continue;
15789 }
15790 }
15791
15792 // reset the offset
15793
15794 mask_offset = 0;
15795
15796 mask[str_pos] = '\0';
15797
15798 switch (separator_cnt)
15799 {
15800 case 0:
15801 mp_reset_usr (mp_usr, 0);
15802
15803 custom_charset_1 = mask;
15804 mp_setup_usr (mp_sys, mp_usr, custom_charset_1, 0);
15805 break;
15806
15807 case 1:
15808 mp_reset_usr (mp_usr, 1);
15809
15810 custom_charset_2 = mask;
15811 mp_setup_usr (mp_sys, mp_usr, custom_charset_2, 1);
15812 break;
15813
15814 case 2:
15815 mp_reset_usr (mp_usr, 2);
15816
15817 custom_charset_3 = mask;
15818 mp_setup_usr (mp_sys, mp_usr, custom_charset_3, 2);
15819 break;
15820
15821 case 3:
15822 mp_reset_usr (mp_usr, 3);
15823
15824 custom_charset_4 = mask;
15825 mp_setup_usr (mp_sys, mp_usr, custom_charset_4, 3);
15826 break;
15827 }
15828
15829 mask = mask + str_pos + 1;
15830 }
15831 }
15832
15833 if ((attack_mode == ATTACK_MODE_HYBRID1) || (attack_mode == ATTACK_MODE_HYBRID2))
15834 {
15835 if (maskpos > 0)
15836 {
15837 local_free (css_buf);
15838 local_free (data.root_css_buf);
15839 local_free (data.markov_css_buf);
15840
15841 local_free (masks[maskpos - 1]);
15842 }
15843
15844 css_buf = mp_gen_css (mask, strlen (mask), mp_sys, mp_usr, &css_cnt);
15845
15846 data.mask = mask;
15847 data.css_cnt = css_cnt;
15848 data.css_buf = css_buf;
15849
15850 uint uniq_tbls[SP_PW_MAX][CHARSIZ] = { { 0 } };
15851
15852 mp_css_to_uniq_tbl (css_cnt, css_buf, uniq_tbls);
15853
15854 if (root_table_buf == NULL) root_table_buf = (hcstat_table_t *) mycalloc (SP_ROOT_CNT, sizeof (hcstat_table_t));
15855 if (markov_table_buf == NULL) markov_table_buf = (hcstat_table_t *) mycalloc (SP_MARKOV_CNT, sizeof (hcstat_table_t));
15856
15857 sp_setup_tbl (shared_dir, markov_hcstat, markov_disable, markov_classic, root_table_buf, markov_table_buf);
15858
15859 markov_threshold = (markov_threshold != 0) ? markov_threshold : CHARSIZ;
15860
15861 cs_t *root_css_buf = (cs_t *) mycalloc (SP_PW_MAX, sizeof (cs_t));
15862 cs_t *markov_css_buf = (cs_t *) mycalloc (SP_PW_MAX * CHARSIZ, sizeof (cs_t));
15863
15864 data.root_css_buf = root_css_buf;
15865 data.markov_css_buf = markov_css_buf;
15866
15867 sp_tbl_to_css (root_table_buf, markov_table_buf, root_css_buf, markov_css_buf, markov_threshold, uniq_tbls);
15868
15869 data.combs_cnt = sp_get_sum (0, css_cnt, root_css_buf);
15870
15871 local_free (root_table_buf);
15872 local_free (markov_table_buf);
15873
15874 // args
15875
15876 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
15877 {
15878 hc_device_param_t *device_param = &data.devices_param[device_id];
15879
15880 if (device_param->skipped) continue;
15881
15882 device_param->kernel_params_mp[0] = &device_param->d_combs;
15883 device_param->kernel_params_mp[1] = &device_param->d_root_css_buf;
15884 device_param->kernel_params_mp[2] = &device_param->d_markov_css_buf;
15885
15886 device_param->kernel_params_mp_buf64[3] = 0;
15887 device_param->kernel_params_mp_buf32[4] = css_cnt;
15888 device_param->kernel_params_mp_buf32[5] = 0;
15889 device_param->kernel_params_mp_buf32[6] = 0;
15890 device_param->kernel_params_mp_buf32[7] = 0;
15891
15892 if (attack_mode == ATTACK_MODE_HYBRID1)
15893 {
15894 if (opts_type & OPTS_TYPE_PT_ADD01) device_param->kernel_params_mp_buf32[5] = full01;
15895 if (opts_type & OPTS_TYPE_PT_ADD80) device_param->kernel_params_mp_buf32[5] = full80;
15896 if (opts_type & OPTS_TYPE_PT_ADDBITS14) device_param->kernel_params_mp_buf32[6] = 1;
15897 if (opts_type & OPTS_TYPE_PT_ADDBITS15) device_param->kernel_params_mp_buf32[7] = 1;
15898 }
15899 else if (attack_mode == ATTACK_MODE_HYBRID2)
15900 {
15901 device_param->kernel_params_mp_buf32[5] = 0;
15902 device_param->kernel_params_mp_buf32[6] = 0;
15903 device_param->kernel_params_mp_buf32[7] = 0;
15904 }
15905
15906 for (uint i = 0; i < 3; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp, i, sizeof (cl_mem), (void *) device_param->kernel_params_mp[i]);
15907 for (uint i = 3; i < 4; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp, i, sizeof (cl_ulong), (void *) device_param->kernel_params_mp[i]);
15908 for (uint i = 4; i < 8; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp, i, sizeof (cl_uint), (void *) device_param->kernel_params_mp[i]);
15909
15910 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_root_css_buf, CL_TRUE, 0, device_param->size_root_css, root_css_buf, 0, NULL, NULL);
15911 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_markov_css_buf, CL_TRUE, 0, device_param->size_markov_css, markov_css_buf, 0, NULL, NULL);
15912 }
15913 }
15914 else if (attack_mode == ATTACK_MODE_BF)
15915 {
15916 dictcnt = 0; // number of "sub-masks", i.e. when using incremental mode
15917
15918 if (increment)
15919 {
15920 for (uint i = 0; i < dictcnt; i++)
15921 {
15922 local_free (dictfiles[i]);
15923 }
15924
15925 for (uint pw_len = MAX (1, pw_min); pw_len <= pw_max; pw_len++)
15926 {
15927 char *l1_filename = mp_get_truncated_mask (mask, strlen (mask), pw_len);
15928
15929 if (l1_filename == NULL) break;
15930
15931 dictcnt++;
15932
15933 dictfiles[dictcnt - 1] = l1_filename;
15934 }
15935 }
15936 else
15937 {
15938 dictcnt++;
15939
15940 dictfiles[dictcnt - 1] = mask;
15941 }
15942
15943 if (dictcnt == 0)
15944 {
15945 log_error ("ERROR: Mask is too small");
15946
15947 return (-1);
15948 }
15949 }
15950 }
15951
15952 free (induction_dictionaries);
15953
15954 // induction_dictionaries_cnt = 0; // implied
15955
15956 if (attack_mode != ATTACK_MODE_BF)
15957 {
15958 if (keyspace == 0)
15959 {
15960 induction_dictionaries = scan_directory (induction_directory);
15961
15962 induction_dictionaries_cnt = count_dictionaries (induction_dictionaries);
15963 }
15964 }
15965
15966 if (induction_dictionaries_cnt)
15967 {
15968 qsort (induction_dictionaries, induction_dictionaries_cnt, sizeof (char *), sort_by_mtime);
15969 }
15970
15971 /**
15972 * prevent the user from using --keyspace together w/ maskfile and or dictfile
15973 */
15974 if (keyspace == 1)
15975 {
15976 if ((maskcnt > 1) || (dictcnt > 1))
15977 {
15978 log_error ("ERROR: --keyspace is not supported with --increment or mask files");
15979
15980 return (-1);
15981 }
15982 }
15983
15984 for (uint dictpos = rd->dictpos; dictpos < dictcnt; )
15985 {
15986 char *subid = logfile_generate_subid ();
15987
15988 data.subid = subid;
15989
15990 logfile_sub_msg ("START");
15991
15992 data.devices_status = STATUS_INIT;
15993
15994 memset (data.words_progress_done, 0, data.salts_cnt * sizeof (u64));
15995 memset (data.words_progress_rejected, 0, data.salts_cnt * sizeof (u64));
15996 memset (data.words_progress_restored, 0, data.salts_cnt * sizeof (u64));
15997
15998 memset (data.cpt_buf, 0, CPT_BUF * sizeof (cpt_t));
15999
16000 data.cpt_pos = 0;
16001
16002 data.cpt_start = time (NULL);
16003
16004 data.cpt_total = 0;
16005
16006 if (data.restore == 0)
16007 {
16008 rd->words_cur = skip;
16009
16010 skip = 0;
16011
16012 data.skip = 0;
16013 }
16014
16015 data.ms_paused = 0;
16016
16017 data.words_cur = rd->words_cur;
16018
16019 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16020 {
16021 hc_device_param_t *device_param = &data.devices_param[device_id];
16022
16023 if (device_param->skipped) continue;
16024
16025 device_param->speed_pos = 0;
16026
16027 memset (device_param->speed_cnt, 0, SPEED_CACHE * sizeof (u64));
16028 memset (device_param->speed_ms, 0, SPEED_CACHE * sizeof (double));
16029
16030 device_param->exec_pos = 0;
16031
16032 memset (device_param->exec_ms, 0, EXEC_CACHE * sizeof (double));
16033
16034 device_param->kernel_power = device_param->kernel_power_user;
16035
16036 device_param->outerloop_pos = 0;
16037 device_param->outerloop_left = 0;
16038 device_param->innerloop_pos = 0;
16039 device_param->innerloop_left = 0;
16040
16041 // some more resets:
16042
16043 if (device_param->pws_buf) memset (device_param->pws_buf, 0, device_param->size_pws);
16044
16045 device_param->pws_cnt = 0;
16046
16047 device_param->words_off = 0;
16048 device_param->words_done = 0;
16049 }
16050
16051 data.kernel_power_div = 0;
16052
16053 // figure out some workload
16054
16055 if (attack_mode == ATTACK_MODE_STRAIGHT)
16056 {
16057 if (data.wordlist_mode == WL_MODE_FILE)
16058 {
16059 char *dictfile = NULL;
16060
16061 if (induction_dictionaries_cnt)
16062 {
16063 dictfile = induction_dictionaries[0];
16064 }
16065 else
16066 {
16067 dictfile = dictfiles[dictpos];
16068 }
16069
16070 data.dictfile = dictfile;
16071
16072 logfile_sub_string (dictfile);
16073
16074 for (uint i = 0; i < rp_files_cnt; i++)
16075 {
16076 logfile_sub_var_string ("rulefile", rp_files[i]);
16077 }
16078
16079 FILE *fd2 = fopen (dictfile, "rb");
16080
16081 if (fd2 == NULL)
16082 {
16083 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
16084
16085 return (-1);
16086 }
16087
16088 data.words_cnt = count_words (wl_data, fd2, dictfile, dictstat_base, &dictstat_nmemb);
16089
16090 fclose (fd2);
16091
16092 if (data.words_cnt == 0)
16093 {
16094 if (data.devices_status == STATUS_CRACKED) break;
16095 if (data.devices_status == STATUS_ABORTED) break;
16096
16097 dictpos++;
16098
16099 continue;
16100 }
16101 }
16102 }
16103 else if (attack_mode == ATTACK_MODE_COMBI)
16104 {
16105 char *dictfile = data.dictfile;
16106 char *dictfile2 = data.dictfile2;
16107
16108 logfile_sub_string (dictfile);
16109 logfile_sub_string (dictfile2);
16110
16111 if (data.combs_mode == COMBINATOR_MODE_BASE_LEFT)
16112 {
16113 FILE *fd2 = fopen (dictfile, "rb");
16114
16115 if (fd2 == NULL)
16116 {
16117 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
16118
16119 return (-1);
16120 }
16121
16122 data.words_cnt = count_words (wl_data, fd2, dictfile, dictstat_base, &dictstat_nmemb);
16123
16124 fclose (fd2);
16125 }
16126 else if (data.combs_mode == COMBINATOR_MODE_BASE_RIGHT)
16127 {
16128 FILE *fd2 = fopen (dictfile2, "rb");
16129
16130 if (fd2 == NULL)
16131 {
16132 log_error ("ERROR: %s: %s", dictfile2, strerror (errno));
16133
16134 return (-1);
16135 }
16136
16137 data.words_cnt = count_words (wl_data, fd2, dictfile2, dictstat_base, &dictstat_nmemb);
16138
16139 fclose (fd2);
16140 }
16141
16142 if (data.words_cnt == 0)
16143 {
16144 if (data.devices_status == STATUS_CRACKED) break;
16145 if (data.devices_status == STATUS_ABORTED) break;
16146
16147 dictpos++;
16148
16149 continue;
16150 }
16151 }
16152 else if ((attack_mode == ATTACK_MODE_HYBRID1) || (attack_mode == ATTACK_MODE_HYBRID2))
16153 {
16154 char *dictfile = NULL;
16155
16156 if (induction_dictionaries_cnt)
16157 {
16158 dictfile = induction_dictionaries[0];
16159 }
16160 else
16161 {
16162 dictfile = dictfiles[dictpos];
16163 }
16164
16165 data.dictfile = dictfile;
16166
16167 char *mask = data.mask;
16168
16169 logfile_sub_string (dictfile);
16170 logfile_sub_string (mask);
16171
16172 FILE *fd2 = fopen (dictfile, "rb");
16173
16174 if (fd2 == NULL)
16175 {
16176 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
16177
16178 return (-1);
16179 }
16180
16181 data.words_cnt = count_words (wl_data, fd2, dictfile, dictstat_base, &dictstat_nmemb);
16182
16183 fclose (fd2);
16184
16185 if (data.words_cnt == 0)
16186 {
16187 if (data.devices_status == STATUS_CRACKED) break;
16188 if (data.devices_status == STATUS_ABORTED) break;
16189
16190 dictpos++;
16191
16192 continue;
16193 }
16194 }
16195 else if (attack_mode == ATTACK_MODE_BF)
16196 {
16197 local_free (css_buf);
16198 local_free (data.root_css_buf);
16199 local_free (data.markov_css_buf);
16200
16201 char *mask = dictfiles[dictpos];
16202
16203 logfile_sub_string (mask);
16204
16205 // base
16206
16207 css_buf = mp_gen_css (mask, strlen (mask), mp_sys, mp_usr, &css_cnt);
16208
16209 if (opts_type & OPTS_TYPE_PT_UNICODE)
16210 {
16211 uint css_cnt_unicode = css_cnt * 2;
16212
16213 cs_t *css_buf_unicode = (cs_t *) mycalloc (css_cnt_unicode, sizeof (cs_t));
16214
16215 for (uint i = 0, j = 0; i < css_cnt; i += 1, j += 2)
16216 {
16217 memcpy (&css_buf_unicode[j + 0], &css_buf[i], sizeof (cs_t));
16218
16219 css_buf_unicode[j + 1].cs_buf[0] = 0;
16220 css_buf_unicode[j + 1].cs_len = 1;
16221 }
16222
16223 free (css_buf);
16224
16225 css_buf = css_buf_unicode;
16226 css_cnt = css_cnt_unicode;
16227 }
16228
16229 // check if mask is not too large or too small for pw_min/pw_max (*2 if unicode)
16230
16231 uint mask_min = pw_min;
16232 uint mask_max = pw_max;
16233
16234 if (opts_type & OPTS_TYPE_PT_UNICODE)
16235 {
16236 mask_min *= 2;
16237 mask_max *= 2;
16238 }
16239
16240 if ((css_cnt < mask_min) || (css_cnt > mask_max))
16241 {
16242 if (css_cnt < mask_min)
16243 {
16244 log_info ("WARNING: skipping mask '%s' because it is smaller than the minimum password length", mask);
16245 }
16246
16247 if (css_cnt > mask_max)
16248 {
16249 log_info ("WARNING: skipping mask '%s' because it is larger than the maximum password length", mask);
16250 }
16251
16252 // skip to next mask
16253
16254 dictpos++;
16255
16256 rd->dictpos = dictpos;
16257
16258 logfile_sub_msg ("STOP");
16259
16260 continue;
16261 }
16262
16263 uint save_css_cnt = css_cnt;
16264
16265 if (opti_type & OPTI_TYPE_SINGLE_HASH)
16266 {
16267 if (opti_type & OPTI_TYPE_APPENDED_SALT)
16268 {
16269 uint salt_len = (uint) data.salts_buf[0].salt_len;
16270 char *salt_buf = (char *) data.salts_buf[0].salt_buf;
16271
16272 uint css_cnt_salt = css_cnt + salt_len;
16273
16274 cs_t *css_buf_salt = (cs_t *) mycalloc (css_cnt_salt, sizeof (cs_t));
16275
16276 memcpy (css_buf_salt, css_buf, css_cnt * sizeof (cs_t));
16277
16278 for (uint i = 0, j = css_cnt; i < salt_len; i++, j++)
16279 {
16280 css_buf_salt[j].cs_buf[0] = salt_buf[i];
16281 css_buf_salt[j].cs_len = 1;
16282 }
16283
16284 free (css_buf);
16285
16286 css_buf = css_buf_salt;
16287 css_cnt = css_cnt_salt;
16288 }
16289 }
16290
16291 data.mask = mask;
16292 data.css_cnt = css_cnt;
16293 data.css_buf = css_buf;
16294
16295 if (maskpos > 0 && dictpos == 0) free (masks[maskpos - 1]);
16296
16297 uint uniq_tbls[SP_PW_MAX][CHARSIZ] = { { 0 } };
16298
16299 mp_css_to_uniq_tbl (css_cnt, css_buf, uniq_tbls);
16300
16301 if (root_table_buf == NULL) root_table_buf = (hcstat_table_t *) mycalloc (SP_ROOT_CNT, sizeof (hcstat_table_t));
16302 if (markov_table_buf == NULL) markov_table_buf = (hcstat_table_t *) mycalloc (SP_MARKOV_CNT, sizeof (hcstat_table_t));
16303
16304 sp_setup_tbl (shared_dir, markov_hcstat, markov_disable, markov_classic, root_table_buf, markov_table_buf);
16305
16306 markov_threshold = (markov_threshold != 0) ? markov_threshold : CHARSIZ;
16307
16308 cs_t *root_css_buf = (cs_t *) mycalloc (SP_PW_MAX, sizeof (cs_t));
16309 cs_t *markov_css_buf = (cs_t *) mycalloc (SP_PW_MAX * CHARSIZ, sizeof (cs_t));
16310
16311 data.root_css_buf = root_css_buf;
16312 data.markov_css_buf = markov_css_buf;
16313
16314 sp_tbl_to_css (root_table_buf, markov_table_buf, root_css_buf, markov_css_buf, markov_threshold, uniq_tbls);
16315
16316 data.words_cnt = sp_get_sum (0, css_cnt, root_css_buf);
16317
16318 local_free (root_table_buf);
16319 local_free (markov_table_buf);
16320
16321 // copy + args
16322
16323 uint css_cnt_l = css_cnt;
16324 uint css_cnt_r;
16325
16326 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
16327 {
16328 if (save_css_cnt < 6)
16329 {
16330 css_cnt_r = 1;
16331 }
16332 else if (save_css_cnt == 6)
16333 {
16334 css_cnt_r = 2;
16335 }
16336 else
16337 {
16338 if (opts_type & OPTS_TYPE_PT_UNICODE)
16339 {
16340 if (save_css_cnt == 8 || save_css_cnt == 10)
16341 {
16342 css_cnt_r = 2;
16343 }
16344 else
16345 {
16346 css_cnt_r = 4;
16347 }
16348 }
16349 else
16350 {
16351 if ((css_buf[0].cs_len * css_buf[1].cs_len * css_buf[2].cs_len) > 256)
16352 {
16353 css_cnt_r = 3;
16354 }
16355 else
16356 {
16357 css_cnt_r = 4;
16358 }
16359 }
16360 }
16361 }
16362 else
16363 {
16364 css_cnt_r = 1;
16365
16366 /* unfinished code?
16367 int sum = css_buf[css_cnt_r - 1].cs_len;
16368
16369 for (uint i = 1; i < 4 && i < css_cnt; i++)
16370 {
16371 if (sum > 1) break; // we really don't need alot of amplifier them for slow hashes
16372
16373 css_cnt_r++;
16374
16375 sum *= css_buf[css_cnt_r - 1].cs_len;
16376 }
16377 */
16378 }
16379
16380 css_cnt_l -= css_cnt_r;
16381
16382 data.bfs_cnt = sp_get_sum (0, css_cnt_r, root_css_buf);
16383
16384 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16385 {
16386 hc_device_param_t *device_param = &data.devices_param[device_id];
16387
16388 if (device_param->skipped) continue;
16389
16390 device_param->kernel_params_mp_l[0] = &device_param->d_pws_buf;
16391 device_param->kernel_params_mp_l[1] = &device_param->d_root_css_buf;
16392 device_param->kernel_params_mp_l[2] = &device_param->d_markov_css_buf;
16393
16394 device_param->kernel_params_mp_l_buf64[3] = 0;
16395 device_param->kernel_params_mp_l_buf32[4] = css_cnt_l;
16396 device_param->kernel_params_mp_l_buf32[5] = css_cnt_r;
16397 device_param->kernel_params_mp_l_buf32[6] = 0;
16398 device_param->kernel_params_mp_l_buf32[7] = 0;
16399 device_param->kernel_params_mp_l_buf32[8] = 0;
16400
16401 if (opts_type & OPTS_TYPE_PT_ADD01) device_param->kernel_params_mp_l_buf32[6] = full01;
16402 if (opts_type & OPTS_TYPE_PT_ADD80) device_param->kernel_params_mp_l_buf32[6] = full80;
16403 if (opts_type & OPTS_TYPE_PT_ADDBITS14) device_param->kernel_params_mp_l_buf32[7] = 1;
16404 if (opts_type & OPTS_TYPE_PT_ADDBITS15) device_param->kernel_params_mp_l_buf32[8] = 1;
16405
16406 device_param->kernel_params_mp_r[0] = &device_param->d_bfs;
16407 device_param->kernel_params_mp_r[1] = &device_param->d_root_css_buf;
16408 device_param->kernel_params_mp_r[2] = &device_param->d_markov_css_buf;
16409
16410 device_param->kernel_params_mp_r_buf64[3] = 0;
16411 device_param->kernel_params_mp_r_buf32[4] = css_cnt_r;
16412 device_param->kernel_params_mp_r_buf32[5] = 0;
16413 device_param->kernel_params_mp_r_buf32[6] = 0;
16414 device_param->kernel_params_mp_r_buf32[7] = 0;
16415
16416 for (uint i = 0; i < 3; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp_l, i, sizeof (cl_mem), (void *) device_param->kernel_params_mp_l[i]);
16417 for (uint i = 3; i < 4; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp_l, i, sizeof (cl_ulong), (void *) device_param->kernel_params_mp_l[i]);
16418 for (uint i = 4; i < 9; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp_l, i, sizeof (cl_uint), (void *) device_param->kernel_params_mp_l[i]);
16419
16420 for (uint i = 0; i < 3; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp_r, i, sizeof (cl_mem), (void *) device_param->kernel_params_mp_r[i]);
16421 for (uint i = 3; i < 4; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp_r, i, sizeof (cl_ulong), (void *) device_param->kernel_params_mp_r[i]);
16422 for (uint i = 4; i < 8; i++) hc_clSetKernelArg (data.ocl, device_param->kernel_mp_r, i, sizeof (cl_uint), (void *) device_param->kernel_params_mp_r[i]);
16423
16424 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_root_css_buf, CL_TRUE, 0, device_param->size_root_css, root_css_buf, 0, NULL, NULL);
16425 hc_clEnqueueWriteBuffer (data.ocl, device_param->command_queue, device_param->d_markov_css_buf, CL_TRUE, 0, device_param->size_markov_css, markov_css_buf, 0, NULL, NULL);
16426 }
16427 }
16428
16429 u64 words_base = data.words_cnt;
16430
16431 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
16432 {
16433 if (data.kernel_rules_cnt)
16434 {
16435 words_base /= data.kernel_rules_cnt;
16436 }
16437 }
16438 else if (data.attack_kern == ATTACK_KERN_COMBI)
16439 {
16440 if (data.combs_cnt)
16441 {
16442 words_base /= data.combs_cnt;
16443 }
16444 }
16445 else if (data.attack_kern == ATTACK_KERN_BF)
16446 {
16447 if (data.bfs_cnt)
16448 {
16449 words_base /= data.bfs_cnt;
16450 }
16451 }
16452
16453 data.words_base = words_base;
16454
16455 if (keyspace == 1)
16456 {
16457 log_info ("%llu", (unsigned long long int) words_base);
16458
16459 return (0);
16460 }
16461
16462 if (data.words_cur > data.words_base)
16463 {
16464 log_error ("ERROR: restore value greater keyspace");
16465
16466 return (-1);
16467 }
16468
16469 if (data.words_cur)
16470 {
16471 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
16472 {
16473 for (uint i = 0; i < data.salts_cnt; i++)
16474 {
16475 data.words_progress_restored[i] = data.words_cur * data.kernel_rules_cnt;
16476 }
16477 }
16478 else if (data.attack_kern == ATTACK_KERN_COMBI)
16479 {
16480 for (uint i = 0; i < data.salts_cnt; i++)
16481 {
16482 data.words_progress_restored[i] = data.words_cur * data.combs_cnt;
16483 }
16484 }
16485 else if (data.attack_kern == ATTACK_KERN_BF)
16486 {
16487 for (uint i = 0; i < data.salts_cnt; i++)
16488 {
16489 data.words_progress_restored[i] = data.words_cur * data.bfs_cnt;
16490 }
16491 }
16492 }
16493
16494 /*
16495 * Inform user about possible slow speeds
16496 */
16497
16498 if ((wordlist_mode == WL_MODE_FILE) || (wordlist_mode == WL_MODE_MASK))
16499 {
16500 if (data.words_base < kernel_power_all)
16501 {
16502 if (quiet == 0)
16503 {
16504 log_info ("");
16505 log_info ("ATTENTION!");
16506 log_info (" The wordlist or mask you are using is too small.");
16507 log_info (" Therefore, oclHashcat is unable to utilize the full parallelization power of your device(s).");
16508 log_info (" The cracking speed will drop.");
16509 log_info (" Workaround: https://hashcat.net/wiki/doku.php?id=frequently_asked_questions#how_to_create_more_work_for_full_speed");
16510 log_info ("");
16511 }
16512 }
16513 }
16514
16515 /*
16516 * Update loopback file
16517 */
16518
16519 if (loopback == 1)
16520 {
16521 time_t now;
16522
16523 time (&now);
16524
16525 uint random_num = get_random_num (0, 9999);
16526
16527 snprintf (loopback_file, loopback_size - 1, "%s/%s.%d_%i", induction_directory, LOOPBACK_FILE, (int) now, random_num);
16528
16529 data.loopback_file = loopback_file;
16530 }
16531
16532 /*
16533 * Update dictionary statistic
16534 */
16535
16536 if (keyspace == 0)
16537 {
16538 dictstat_fp = fopen (dictstat, "wb");
16539
16540 if (dictstat_fp)
16541 {
16542 lock_file (dictstat_fp);
16543
16544 fwrite (dictstat_base, sizeof (dictstat_t), dictstat_nmemb, dictstat_fp);
16545
16546 fclose (dictstat_fp);
16547 }
16548 }
16549
16550 data.devices_status = STATUS_RUNNING;
16551
16552 if (initial_restore_done == 0)
16553 {
16554 if (data.restore_disable == 0) cycle_restore ();
16555
16556 initial_restore_done = 1;
16557 }
16558
16559 hc_timer_set (&data.timer_running);
16560
16561 if ((wordlist_mode == WL_MODE_FILE) || (wordlist_mode == WL_MODE_MASK))
16562 {
16563 if ((quiet == 0) && (status == 0) && (benchmark == 0))
16564 {
16565 if (quiet == 0) fprintf (stdout, "%s", PROMPT);
16566 if (quiet == 0) fflush (stdout);
16567 }
16568 }
16569 else if (wordlist_mode == WL_MODE_STDIN)
16570 {
16571 if (data.quiet == 0) log_info ("Starting attack in stdin mode...");
16572 if (data.quiet == 0) log_info ("");
16573 }
16574
16575 time_t runtime_start;
16576
16577 time (&runtime_start);
16578
16579 data.runtime_start = runtime_start;
16580
16581 /**
16582 * create cracker threads
16583 */
16584
16585 hc_thread_t *c_threads = (hc_thread_t *) mycalloc (data.devices_cnt, sizeof (hc_thread_t));
16586
16587 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16588 {
16589 hc_device_param_t *device_param = &devices_param[device_id];
16590
16591 if (wordlist_mode == WL_MODE_STDIN)
16592 {
16593 hc_thread_create (c_threads[device_id], thread_calc_stdin, device_param);
16594 }
16595 else
16596 {
16597 hc_thread_create (c_threads[device_id], thread_calc, device_param);
16598 }
16599 }
16600
16601 // wait for crack threads to exit
16602
16603 hc_thread_wait (data.devices_cnt, c_threads);
16604
16605 local_free (c_threads);
16606
16607 data.restore = 0;
16608
16609 // finalize task
16610
16611 logfile_sub_var_uint ("status-after-work", data.devices_status);
16612
16613 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
16614
16615 if (data.devices_status == STATUS_CRACKED) break;
16616 if (data.devices_status == STATUS_ABORTED) break;
16617
16618 if (data.devices_status == STATUS_BYPASS)
16619 {
16620 data.devices_status = STATUS_RUNNING;
16621 }
16622
16623 if (induction_dictionaries_cnt)
16624 {
16625 unlink (induction_dictionaries[0]);
16626 }
16627
16628 free (induction_dictionaries);
16629
16630 if (attack_mode != ATTACK_MODE_BF)
16631 {
16632 induction_dictionaries = scan_directory (induction_directory);
16633
16634 induction_dictionaries_cnt = count_dictionaries (induction_dictionaries);
16635 }
16636
16637 if (benchmark == 0)
16638 {
16639 if (((dictpos + 1) < dictcnt) || ((maskpos + 1) < maskcnt) || induction_dictionaries_cnt)
16640 {
16641 if (quiet == 0) clear_prompt ();
16642
16643 if (quiet == 0) log_info ("");
16644
16645 if (status == 1)
16646 {
16647 status_display ();
16648 }
16649 else
16650 {
16651 if (quiet == 0) status_display ();
16652 }
16653
16654 if (quiet == 0) log_info ("");
16655 }
16656 }
16657
16658 if (attack_mode == ATTACK_MODE_BF)
16659 {
16660 dictpos++;
16661
16662 rd->dictpos = dictpos;
16663 }
16664 else
16665 {
16666 if (induction_dictionaries_cnt)
16667 {
16668 qsort (induction_dictionaries, induction_dictionaries_cnt, sizeof (char *), sort_by_mtime);
16669 }
16670 else
16671 {
16672 dictpos++;
16673
16674 rd->dictpos = dictpos;
16675 }
16676 }
16677
16678 time_t runtime_stop;
16679
16680 time (&runtime_stop);
16681
16682 data.runtime_stop = runtime_stop;
16683
16684 logfile_sub_uint (runtime_start);
16685 logfile_sub_uint (runtime_stop);
16686
16687 logfile_sub_msg ("STOP");
16688
16689 global_free (subid);
16690 }
16691
16692 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
16693
16694 if (data.devices_status == STATUS_CRACKED) break;
16695 if (data.devices_status == STATUS_ABORTED) break;
16696 if (data.devices_status == STATUS_QUIT) break;
16697
16698 if (data.devices_status == STATUS_BYPASS)
16699 {
16700 data.devices_status = STATUS_RUNNING;
16701 }
16702 }
16703
16704 // problems could occur if already at startup everything was cracked (because of .pot file reading etc), we must set some variables here to avoid NULL pointers
16705
16706 if (attack_mode == ATTACK_MODE_STRAIGHT)
16707 {
16708 if (data.wordlist_mode == WL_MODE_FILE)
16709 {
16710 if (data.dictfile == NULL)
16711 {
16712 if (dictfiles != NULL)
16713 {
16714 data.dictfile = dictfiles[0];
16715
16716 hc_timer_set (&data.timer_running);
16717 }
16718 }
16719 }
16720 }
16721 // NOTE: combi is okay because it is already set beforehand
16722 else if (attack_mode == ATTACK_MODE_HYBRID1 || attack_mode == ATTACK_MODE_HYBRID2)
16723 {
16724 if (data.dictfile == NULL)
16725 {
16726 if (dictfiles != NULL)
16727 {
16728 hc_timer_set (&data.timer_running);
16729
16730 data.dictfile = dictfiles[0];
16731 }
16732 }
16733 }
16734 else if (attack_mode == ATTACK_MODE_BF)
16735 {
16736 if (data.mask == NULL)
16737 {
16738 hc_timer_set (&data.timer_running);
16739
16740 data.mask = masks[0];
16741 }
16742 }
16743
16744 if ((data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
16745 {
16746 data.devices_status = STATUS_EXHAUSTED;
16747 }
16748
16749 // if cracked / aborted remove last induction dictionary
16750
16751 for (int file_pos = 0; file_pos < induction_dictionaries_cnt; file_pos++)
16752 {
16753 struct stat induct_stat;
16754
16755 if (stat (induction_dictionaries[file_pos], &induct_stat) == 0)
16756 {
16757 unlink (induction_dictionaries[file_pos]);
16758 }
16759 }
16760
16761 // wait for non-interactive threads
16762
16763 for (uint thread_idx = 0; thread_idx < ni_threads_cnt; thread_idx++)
16764 {
16765 hc_thread_wait (1, &ni_threads[thread_idx]);
16766 }
16767
16768 local_free (ni_threads);
16769
16770 // wait for interactive threads
16771
16772 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
16773 {
16774 hc_thread_wait (1, &i_thread);
16775 }
16776
16777 // we dont need restore file anymore
16778 if (data.restore_disable == 0)
16779 {
16780 if ((data.devices_status == STATUS_EXHAUSTED) || (data.devices_status == STATUS_CRACKED))
16781 {
16782 unlink (eff_restore_file);
16783 unlink (new_restore_file);
16784 }
16785 else
16786 {
16787 cycle_restore ();
16788 }
16789 }
16790
16791 // finally save left hashes
16792
16793 if ((hashlist_mode == HL_MODE_FILE) && (remove == 1) && (data.digests_saved != data.digests_done))
16794 {
16795 save_hash ();
16796 }
16797
16798 /**
16799 * Clean up
16800 */
16801
16802 if (benchmark == 1)
16803 {
16804 status_benchmark ();
16805
16806 log_info ("");
16807 }
16808 else
16809 {
16810 if (quiet == 0) clear_prompt ();
16811
16812 if (quiet == 0) log_info ("");
16813
16814 if (status == 1)
16815 {
16816 status_display ();
16817 }
16818 else
16819 {
16820 if (quiet == 0) status_display ();
16821 }
16822
16823 if (quiet == 0) log_info ("");
16824 }
16825
16826 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16827 {
16828 hc_device_param_t *device_param = &data.devices_param[device_id];
16829
16830 if (device_param->skipped) continue;
16831
16832 local_free (device_param->result);
16833
16834 local_free (device_param->combs_buf);
16835
16836 local_free (device_param->hooks_buf);
16837
16838 local_free (device_param->device_name);
16839
16840 local_free (device_param->device_name_chksum);
16841
16842 local_free (device_param->device_version);
16843
16844 local_free (device_param->driver_version);
16845
16846 if (device_param->pws_buf) myfree (device_param->pws_buf);
16847 if (device_param->d_pws_buf) hc_clReleaseMemObject (data.ocl, device_param->d_pws_buf);
16848 if (device_param->d_pws_amp_buf) hc_clReleaseMemObject (data.ocl, device_param->d_pws_amp_buf);
16849 if (device_param->d_rules) hc_clReleaseMemObject (data.ocl, device_param->d_rules);
16850 if (device_param->d_rules_c) hc_clReleaseMemObject (data.ocl, device_param->d_rules_c);
16851 if (device_param->d_combs) hc_clReleaseMemObject (data.ocl, device_param->d_combs);
16852 if (device_param->d_combs_c) hc_clReleaseMemObject (data.ocl, device_param->d_combs_c);
16853 if (device_param->d_bfs) hc_clReleaseMemObject (data.ocl, device_param->d_bfs);
16854 if (device_param->d_bfs_c) hc_clReleaseMemObject (data.ocl, device_param->d_bfs_c);
16855 if (device_param->d_bitmap_s1_a) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s1_a);
16856 if (device_param->d_bitmap_s1_b) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s1_b);
16857 if (device_param->d_bitmap_s1_c) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s1_c);
16858 if (device_param->d_bitmap_s1_d) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s1_d);
16859 if (device_param->d_bitmap_s2_a) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s2_a);
16860 if (device_param->d_bitmap_s2_b) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s2_b);
16861 if (device_param->d_bitmap_s2_c) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s2_c);
16862 if (device_param->d_bitmap_s2_d) hc_clReleaseMemObject (data.ocl, device_param->d_bitmap_s2_d);
16863 if (device_param->d_plain_bufs) hc_clReleaseMemObject (data.ocl, device_param->d_plain_bufs);
16864 if (device_param->d_digests_buf) hc_clReleaseMemObject (data.ocl, device_param->d_digests_buf);
16865 if (device_param->d_digests_shown) hc_clReleaseMemObject (data.ocl, device_param->d_digests_shown);
16866 if (device_param->d_salt_bufs) hc_clReleaseMemObject (data.ocl, device_param->d_salt_bufs);
16867 if (device_param->d_esalt_bufs) hc_clReleaseMemObject (data.ocl, device_param->d_esalt_bufs);
16868 if (device_param->d_tmps) hc_clReleaseMemObject (data.ocl, device_param->d_tmps);
16869 if (device_param->d_hooks) hc_clReleaseMemObject (data.ocl, device_param->d_hooks);
16870 if (device_param->d_result) hc_clReleaseMemObject (data.ocl, device_param->d_result);
16871 if (device_param->d_scryptV_buf) hc_clReleaseMemObject (data.ocl, device_param->d_scryptV_buf);
16872 if (device_param->d_root_css_buf) hc_clReleaseMemObject (data.ocl, device_param->d_root_css_buf);
16873 if (device_param->d_markov_css_buf) hc_clReleaseMemObject (data.ocl, device_param->d_markov_css_buf);
16874 if (device_param->d_tm_c) hc_clReleaseMemObject (data.ocl, device_param->d_tm_c);
16875
16876 if (device_param->kernel1) hc_clReleaseKernel (data.ocl, device_param->kernel1);
16877 if (device_param->kernel12) hc_clReleaseKernel (data.ocl, device_param->kernel12);
16878 if (device_param->kernel2) hc_clReleaseKernel (data.ocl, device_param->kernel2);
16879 if (device_param->kernel23) hc_clReleaseKernel (data.ocl, device_param->kernel23);
16880 if (device_param->kernel3) hc_clReleaseKernel (data.ocl, device_param->kernel3);
16881 if (device_param->kernel_mp) hc_clReleaseKernel (data.ocl, device_param->kernel_mp);
16882 if (device_param->kernel_mp_l) hc_clReleaseKernel (data.ocl, device_param->kernel_mp_l);
16883 if (device_param->kernel_mp_r) hc_clReleaseKernel (data.ocl, device_param->kernel_mp_r);
16884 if (device_param->kernel_tm) hc_clReleaseKernel (data.ocl, device_param->kernel_tm);
16885 if (device_param->kernel_amp) hc_clReleaseKernel (data.ocl, device_param->kernel_amp);
16886
16887 if (device_param->program) hc_clReleaseProgram (data.ocl, device_param->program);
16888 if (device_param->program_mp) hc_clReleaseProgram (data.ocl, device_param->program_mp);
16889 if (device_param->program_amp) hc_clReleaseProgram (data.ocl, device_param->program_amp);
16890
16891 if (device_param->command_queue) hc_clReleaseCommandQueue (data.ocl, device_param->command_queue);
16892 if (device_param->context) hc_clReleaseContext (data.ocl, device_param->context);
16893 }
16894
16895 // reset default fan speed
16896
16897 #ifdef HAVE_HWMON
16898 if (gpu_temp_disable == 0)
16899 {
16900 #ifdef HAVE_ADL
16901 if (gpu_temp_retain != 0) // VENDOR_ID_AMD is implied here
16902 {
16903 hc_thread_mutex_lock (mux_adl);
16904
16905 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16906 {
16907 hc_device_param_t *device_param = &data.devices_param[device_id];
16908
16909 if (device_param->skipped) continue;
16910
16911 if (data.hm_device[device_id].fan_supported == 1)
16912 {
16913 int fanspeed = temp_retain_fanspeed_value[device_id];
16914
16915 if (fanspeed == -1) continue;
16916
16917 int rc = hm_set_fanspeed_with_device_id_amd (device_id, fanspeed);
16918
16919 if (rc == -1) log_info ("WARNING: Failed to restore default fan speed for gpu number: %i:", device_id);
16920 }
16921 }
16922
16923 hc_thread_mutex_unlock (mux_adl);
16924 }
16925 #endif // HAVE_ADL
16926 }
16927
16928 #ifdef HAVE_ADL
16929 // reset power tuning
16930
16931 if (powertune_enable == 1) // VENDOR_ID_AMD is implied here
16932 {
16933 hc_thread_mutex_lock (mux_adl);
16934
16935 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16936 {
16937 hc_device_param_t *device_param = &data.devices_param[device_id];
16938
16939 if (device_param->skipped) continue;
16940
16941 if (data.hm_device[device_id].od_version == 6)
16942 {
16943 // check powertune capabilities first, if not available then skip device
16944
16945 int powertune_supported = 0;
16946
16947 if ((hm_ADL_Overdrive6_PowerControl_Caps (data.hm_amd, data.hm_device[device_id].adapter_index.amd, &powertune_supported)) != ADL_OK)
16948 {
16949 log_error ("ERROR: Failed to get ADL PowerControl Capabilities");
16950
16951 return (-1);
16952 }
16953
16954 if (powertune_supported != 0)
16955 {
16956 // powercontrol settings
16957
16958 if ((hm_ADL_Overdrive_PowerControl_Set (data.hm_amd, data.hm_device[device_id].adapter_index.amd, od_power_control_status[device_id])) != ADL_OK)
16959 {
16960 log_info ("ERROR: Failed to restore the ADL PowerControl values");
16961
16962 return (-1);
16963 }
16964
16965 // clocks
16966
16967 ADLOD6StateInfo *performance_state = (ADLOD6StateInfo*) mycalloc (1, sizeof (ADLOD6StateInfo) + sizeof (ADLOD6PerformanceLevel));
16968
16969 performance_state->iNumberOfPerformanceLevels = 2;
16970
16971 performance_state->aLevels[0].iEngineClock = od_clock_mem_status[device_id].state.aLevels[0].iEngineClock;
16972 performance_state->aLevels[1].iEngineClock = od_clock_mem_status[device_id].state.aLevels[1].iEngineClock;
16973 performance_state->aLevels[0].iMemoryClock = od_clock_mem_status[device_id].state.aLevels[0].iMemoryClock;
16974 performance_state->aLevels[1].iMemoryClock = od_clock_mem_status[device_id].state.aLevels[1].iMemoryClock;
16975
16976 if ((hm_ADL_Overdrive_State_Set (data.hm_amd, data.hm_device[device_id].adapter_index.amd, ADL_OD6_SETSTATE_PERFORMANCE, performance_state)) != ADL_OK)
16977 {
16978 log_info ("ERROR: Failed to restore ADL performance state");
16979
16980 return (-1);
16981 }
16982
16983 local_free (performance_state);
16984 }
16985 }
16986 }
16987
16988 hc_thread_mutex_unlock (mux_adl);
16989 }
16990 #endif // HAVE_ADL
16991
16992 if (gpu_temp_disable == 0)
16993 {
16994 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
16995 if (data.hm_nv)
16996 {
16997 #if defined(LINUX) && defined(HAVE_NVML)
16998
16999 hm_NVML_nvmlShutdown (data.hm_nv);
17000
17001 nvml_close (data.hm_nv);
17002
17003 #elif defined(WIN) && (HAVE_NVAPI)
17004
17005 hm_NvAPI_Unload (data.hm_nv);
17006
17007 nvapi_close (data.hm_nv);
17008
17009 #endif
17010
17011 data.hm_nv = NULL;
17012 }
17013 #endif
17014
17015 #ifdef HAVE_ADL
17016 if (data.hm_amd)
17017 {
17018 hm_ADL_Main_Control_Destroy (data.hm_amd);
17019
17020 adl_close (data.hm_amd);
17021 data.hm_amd = NULL;
17022 }
17023 #endif
17024 }
17025 #endif // HAVE_HWMON
17026
17027 // free memory
17028
17029 local_free (masks);
17030
17031 local_free (dictstat_base);
17032
17033 for (uint pot_pos = 0; pot_pos < pot_cnt; pot_pos++)
17034 {
17035 pot_t *pot_ptr = &pot[pot_pos];
17036
17037 hash_t *hash = &pot_ptr->hash;
17038
17039 local_free (hash->digest);
17040
17041 if (isSalted)
17042 {
17043 local_free (hash->salt);
17044 }
17045 }
17046
17047 local_free (pot);
17048
17049 local_free (all_kernel_rules_cnt);
17050 local_free (all_kernel_rules_buf);
17051
17052 local_free (wl_data->buf);
17053 local_free (wl_data);
17054
17055 local_free (bitmap_s1_a);
17056 local_free (bitmap_s1_b);
17057 local_free (bitmap_s1_c);
17058 local_free (bitmap_s1_d);
17059 local_free (bitmap_s2_a);
17060 local_free (bitmap_s2_b);
17061 local_free (bitmap_s2_c);
17062 local_free (bitmap_s2_d);
17063
17064 #ifdef HAVE_HWMON
17065 local_free (temp_retain_fanspeed_value);
17066 #ifdef HAVE_ADL
17067 local_free (od_clock_mem_status);
17068 local_free (od_power_control_status);
17069 #endif // ADL
17070 #endif
17071
17072 global_free (devices_param);
17073
17074 global_free (kernel_rules_buf);
17075
17076 global_free (root_css_buf);
17077 global_free (markov_css_buf);
17078
17079 global_free (digests_buf);
17080 global_free (digests_shown);
17081 global_free (digests_shown_tmp);
17082
17083 global_free (salts_buf);
17084 global_free (salts_shown);
17085
17086 global_free (esalts_buf);
17087
17088 global_free (words_progress_done);
17089 global_free (words_progress_rejected);
17090 global_free (words_progress_restored);
17091
17092 if (pot_fp) fclose (pot_fp);
17093
17094 if (data.devices_status == STATUS_QUIT) break;
17095 }
17096
17097 // destroy others mutex
17098
17099 hc_thread_mutex_delete (mux_dispatcher);
17100 hc_thread_mutex_delete (mux_counter);
17101 hc_thread_mutex_delete (mux_display);
17102 hc_thread_mutex_delete (mux_adl);
17103
17104 // free memory
17105
17106 local_free (eff_restore_file);
17107 local_free (new_restore_file);
17108
17109 local_free (rd);
17110
17111 // tuning db
17112
17113 tuning_db_destroy (tuning_db);
17114
17115 // loopback
17116
17117 local_free (loopback_file);
17118
17119 if (loopback == 1) unlink (loopback_file);
17120
17121 // induction directory
17122
17123 if (induction_dir == NULL)
17124 {
17125 if (attack_mode != ATTACK_MODE_BF)
17126 {
17127 if (rmdir (induction_directory) == -1)
17128 {
17129 if (errno == ENOENT)
17130 {
17131 // good, we can ignore
17132 }
17133 else if (errno == ENOTEMPTY)
17134 {
17135 // good, we can ignore
17136 }
17137 else
17138 {
17139 log_error ("ERROR: %s: %s", induction_directory, strerror (errno));
17140
17141 return (-1);
17142 }
17143 }
17144
17145 local_free (induction_directory);
17146 }
17147 }
17148
17149 // outfile-check directory
17150
17151 if (outfile_check_dir == NULL)
17152 {
17153 if (rmdir (outfile_check_directory) == -1)
17154 {
17155 if (errno == ENOENT)
17156 {
17157 // good, we can ignore
17158 }
17159 else if (errno == ENOTEMPTY)
17160 {
17161 // good, we can ignore
17162 }
17163 else
17164 {
17165 log_error ("ERROR: %s: %s", outfile_check_directory, strerror (errno));
17166
17167 return (-1);
17168 }
17169 }
17170
17171 local_free (outfile_check_directory);
17172 }
17173
17174 time_t proc_stop;
17175
17176 time (&proc_stop);
17177
17178 logfile_top_uint (proc_start);
17179 logfile_top_uint (proc_stop);
17180
17181 logfile_top_msg ("STOP");
17182
17183 if (quiet == 0) log_info_nn ("Started: %s", ctime (&proc_start));
17184 if (quiet == 0) log_info_nn ("Stopped: %s", ctime (&proc_stop));
17185
17186 if (data.ocl) ocl_close (data.ocl);
17187
17188 if (data.devices_status == STATUS_ABORTED) return 2;
17189 if (data.devices_status == STATUS_QUIT) return 2;
17190 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) return 2;
17191 if (data.devices_status == STATUS_EXHAUSTED) return 1;
17192 if (data.devices_status == STATUS_CRACKED) return 0;
17193
17194 return -1;
17195 }