Converted _a3 kernels, use SIMD for CPU and GPU
[hashcat.git] / src / oclHashcat.c
1 /**
2 * Author......: Jens Steube <jens.steube@gmail.com>
3 * License.....: MIT
4 */
5
6 #ifdef OSX
7 #include <stdio.h>
8 #endif
9
10 #include <common.h>
11 #include <shared.h>
12 #include <rp_kernel_on_cpu.h>
13 #include <getopt.h>
14
15 const char *PROGNAME = "oclHashcat";
16 const uint VERSION_BIN = 210;
17 const uint RESTORE_MIN = 210;
18
19 #define INCR_RULES 10000
20 #define INCR_SALTS 100000
21 #define INCR_MASKS 1000
22 #define INCR_POT 1000
23
24 #define USAGE 0
25 #define VERSION 0
26 #define QUIET 0
27 #define MARKOV_THRESHOLD 0
28 #define MARKOV_DISABLE 0
29 #define MARKOV_CLASSIC 0
30 #define BENCHMARK 0
31 #define BENCHMARK_MODE 1
32 #define RESTORE 0
33 #define RESTORE_TIMER 60
34 #define RESTORE_DISABLE 0
35 #define STATUS 0
36 #define STATUS_TIMER 10
37 #define STATUS_AUTOMAT 0
38 #define LOOPBACK 0
39 #define WEAK_HASH_THRESHOLD 100
40 #define SHOW 0
41 #define LEFT 0
42 #define USERNAME 0
43 #define REMOVE 0
44 #define REMOVE_TIMER 60
45 #define SKIP 0
46 #define LIMIT 0
47 #define KEYSPACE 0
48 #define POTFILE_DISABLE 0
49 #define DEBUG_MODE 0
50 #define RP_GEN 0
51 #define RP_GEN_FUNC_MIN 1
52 #define RP_GEN_FUNC_MAX 4
53 #define RP_GEN_SEED 0
54 #define RULE_BUF_L ":"
55 #define RULE_BUF_R ":"
56 #define FORCE 0
57 #define RUNTIME 0
58 #define HEX_CHARSET 0
59 #define HEX_SALT 0
60 #define HEX_WORDLIST 0
61 #define OUTFILE_FORMAT 3
62 #define OUTFILE_AUTOHEX 1
63 #define OUTFILE_CHECK_TIMER 5
64 #define ATTACK_MODE 0
65 #define HASH_MODE 0
66 #define SEGMENT_SIZE 32
67 #define INCREMENT 0
68 #define INCREMENT_MIN 1
69 #define INCREMENT_MAX PW_MAX
70 #define SEPARATOR ':'
71 #define BITMAP_MIN 16
72 #define BITMAP_MAX 24
73 #define GPU_TEMP_DISABLE 0
74 #define GPU_TEMP_ABORT 90
75 #define GPU_TEMP_RETAIN 80
76 #define WORKLOAD_PROFILE 2
77 #define KERNEL_ACCEL 0
78 #define KERNEL_LOOPS 0
79 #define KERNEL_RULES 1024
80 #define KERNEL_COMBS 1024
81 #define KERNEL_BFS 1024
82 #define KERNEL_THREADS 64
83 #define POWERTUNE_ENABLE 0
84 #define LOGFILE_DISABLE 0
85 #define SCRYPT_TMTO 0
86 #define OPENCL_VECTOR_WIDTH 0
87
88 #define WL_MODE_STDIN 1
89 #define WL_MODE_FILE 2
90 #define WL_MODE_MASK 3
91
92 #define HL_MODE_FILE 4
93 #define HL_MODE_ARG 5
94
95 #define HLFMT_HASHCAT 0
96 #define HLFMT_PWDUMP 1
97 #define HLFMT_PASSWD 2
98 #define HLFMT_SHADOW 3
99 #define HLFMT_DCC 4
100 #define HLFMT_DCC2 5
101 #define HLFMT_NETNTLM1 7
102 #define HLFMT_NETNTLM2 8
103 #define HLFMT_NSLDAP 9
104 #define HLFMT_NSLDAPS 10
105 #define HLFMTS_CNT 11
106
107 #define ATTACK_MODE_STRAIGHT 0
108 #define ATTACK_MODE_COMBI 1
109 #define ATTACK_MODE_TOGGLE 2
110 #define ATTACK_MODE_BF 3
111 #define ATTACK_MODE_PERM 4
112 #define ATTACK_MODE_TABLE 5
113 #define ATTACK_MODE_HYBRID1 6
114 #define ATTACK_MODE_HYBRID2 7
115 #define ATTACK_MODE_NONE 100
116
117 #define ATTACK_KERN_STRAIGHT 0
118 #define ATTACK_KERN_COMBI 1
119 #define ATTACK_KERN_BF 3
120 #define ATTACK_KERN_NONE 100
121
122 #define ATTACK_EXEC_OUTSIDE_KERNEL 10
123 #define ATTACK_EXEC_INSIDE_KERNEL 11
124
125 #define COMBINATOR_MODE_BASE_LEFT 10001
126 #define COMBINATOR_MODE_BASE_RIGHT 10002
127
128 #define MIN(a,b) (((a) < (b)) ? (a) : (b))
129 #define MAX(a,b) (((a) > (b)) ? (a) : (b))
130
131 #define MAX_CUT_TRIES 4
132
133 #define MAX_DICTSTAT 10000
134
135 #define NUM_DEFAULT_BENCHMARK_ALGORITHMS 130
136
137 #define global_free(attr) \
138 { \
139 myfree ((void *) data.attr); \
140 \
141 data.attr = NULL; \
142 }
143
144 #define local_free(attr) \
145 { \
146 myfree ((void *) attr); \
147 \
148 attr = NULL; \
149 }
150
151 static uint default_benchmark_algorithms[NUM_DEFAULT_BENCHMARK_ALGORITHMS] =
152 {
153 900,
154 0,
155 5100,
156 100,
157 1400,
158 10800,
159 1700,
160 5000,
161 10100,
162 6000,
163 6100,
164 6900,
165 11700,
166 11800,
167 400,
168 8900,
169 11900,
170 12000,
171 10900,
172 12100,
173 23,
174 2500,
175 5300,
176 5400,
177 5500,
178 5600,
179 7300,
180 7500,
181 8300,
182 11100,
183 11200,
184 11400,
185 121,
186 2611,
187 2711,
188 2811,
189 8400,
190 11,
191 2612,
192 7900,
193 21,
194 11000,
195 124,
196 10000,
197 3711,
198 7600,
199 12,
200 131,
201 132,
202 1731,
203 200,
204 300,
205 3100,
206 112,
207 12300,
208 8000,
209 141,
210 1441,
211 1600,
212 12600,
213 1421,
214 101,
215 111,
216 1711,
217 3000,
218 1000,
219 1100,
220 2100,
221 12800,
222 1500,
223 12400,
224 500,
225 3200,
226 7400,
227 1800,
228 122,
229 1722,
230 7100,
231 6300,
232 6700,
233 6400,
234 6500,
235 2400,
236 2410,
237 5700,
238 9200,
239 9300,
240 22,
241 501,
242 5800,
243 8100,
244 8500,
245 7200,
246 9900,
247 7700,
248 7800,
249 10300,
250 8600,
251 8700,
252 9100,
253 133,
254 11600,
255 12500,
256 13000,
257 6211,
258 6221,
259 6231,
260 6241,
261 8800,
262 12900,
263 12200,
264 9700,
265 9710,
266 9800,
267 9810,
268 9400,
269 9500,
270 9600,
271 10400,
272 10410,
273 10500,
274 10600,
275 10700,
276 9000,
277 5200,
278 6800,
279 6600,
280 8200,
281 11300,
282 12700
283 };
284
285 /**
286 * types
287 */
288
289 static void (*get_next_word_func) (char *, u32, u32 *, u32 *);
290
291 /**
292 * globals
293 */
294
295 static unsigned int full01 = 0x01010101;
296 static unsigned int full80 = 0x80808080;
297
298 int SUPPRESS_OUTPUT = 0;
299
300 hc_thread_mutex_t mux_adl;
301 hc_thread_mutex_t mux_counter;
302 hc_thread_mutex_t mux_dispatcher;
303 hc_thread_mutex_t mux_display;
304
305 hc_global_data_t data;
306
307 const char *PROMPT = "[s]tatus [p]ause [r]esume [b]ypass [c]heckpoint [q]uit => ";
308
309 const char *USAGE_MINI[] =
310 {
311 "Usage: %s [options]... hash|hashfile|hccapfile [dictionary|mask|directory]...",
312 "",
313 "Try --help for more help.",
314 NULL
315 };
316
317 const char *USAGE_BIG[] =
318 {
319 "%s, advanced password recovery",
320 "",
321 "Usage: %s [options]... hash|hashfile|hccapfile [dictionary|mask|directory]...",
322 "",
323 "=======",
324 "Options",
325 "=======",
326 "",
327 "* General:",
328 "",
329 " -m, --hash-type=NUM Hash-type, see references below",
330 " -a, --attack-mode=NUM Attack-mode, see references below",
331 " -V, --version Print version",
332 " -h, --help Print help",
333 " --quiet Suppress output",
334 "",
335 "* Benchmark:",
336 "",
337 " -b, --benchmark Run benchmark",
338 " --benchmark-mode=NUM Benchmark-mode, see references below",
339 "",
340 "* Misc:",
341 "",
342 " --hex-charset Assume charset is given in hex",
343 " --hex-salt Assume salt is given in hex",
344 " --hex-wordlist Assume words in wordlist is given in hex",
345 " --force Ignore warnings",
346 " --status Enable automatic update of the status-screen",
347 " --status-timer=NUM Seconds between status-screen update",
348 " --status-automat Display the status view in a machine readable format",
349 " --loopback Add new plains to induct directory",
350 " --weak-hash-threshold=NUM Threshold when to stop checking for weak hashes, default is 100 salts",
351 "",
352 "* Markov:",
353 "",
354 " --markov-hcstat=FILE Specify hcstat file to use, default is hashcat.hcstat",
355 " --markov-disable Disables markov-chains, emulates classic brute-force",
356 " --markov-classic Enables classic markov-chains, no per-position enhancement",
357 " -t, --markov-threshold=NUM Threshold when to stop accepting new markov-chains",
358 "",
359 "* Session:",
360 "",
361 " --runtime=NUM Abort session after NUM seconds of runtime",
362 " --session=STR Define specific session name",
363 " --restore Restore session from --session",
364 " --restore-disable Do not write restore file",
365 "",
366 "* Files:",
367 "",
368 " -o, --outfile=FILE Define outfile for recovered hash",
369 " --outfile-format=NUM Define outfile-format for recovered hash, see references below",
370 " --outfile-autohex-disable Disable the use of $HEX[] in output plains",
371 " --outfile-check-timer=NUM Seconds between outfile checks",
372 " -p, --separator=CHAR Separator char for hashlists and outfile",
373 " --show Show cracked passwords only",
374 " --left Show un-cracked passwords only",
375 " --username Enable ignoring of usernames in hashfile (recommended: also use --show)",
376 " --remove Enable remove of hash once it is cracked",
377 " --remove-timer=NUM Update input hash file each NUM seconds",
378 " --potfile-disable Do not write potfile",
379 " --debug-mode=NUM Defines the debug mode (hybrid only by using rules), see references below",
380 " --debug-file=FILE Output file for debugging rules (see also --debug-mode)",
381 " --induction-dir=FOLDER Specify induction directory to use, default is $session.induct",
382 " --outfile-check-dir=FOLDER Specify the outfile directory which should be monitored, default is $session.outfiles",
383 " --logfile-disable Disable the logfile",
384 " --truecrypt-keyfiles=FILE Keyfiles used, separate with comma",
385 "",
386 "* Resources:",
387 "",
388 " -c, --segment-size=NUM Size in MB to cache from the wordfile",
389 " --bitmap-min=NUM Minimum number of bits allowed for bitmaps",
390 " --bitmap-max=NUM Maximum number of bits allowed for bitmaps",
391 #ifndef OSX
392 " --cpu-affinity=STR Locks to CPU devices, separate with comma",
393 #else
394 " --cpu-affinity=STR Locks to CPU devices, separate with comma (disabled on OSX)",
395 #endif
396 " --opencl-platforms=STR OpenCL platforms to use, separate with comma",
397 " -d, --opencl-devices=STR OpenCL devices to use, separate with comma",
398 " --opencl-device-types=STR OpenCL device-types to use, separate with comma, see references below",
399 " --opencl-vector-width=NUM OpenCL vector-width (either 1, 2, 4 or 8), overrides value from device query",
400 " -w, --workload-profile=NUM Enable a specific workload profile, see references below",
401 " -n, --kernel-accel=NUM Workload tuning: 1, 8, 40, 80, 160",
402 " -u, --kernel-loops=NUM Workload fine-tuning: 8 - 1024",
403 #ifdef HAVE_HWMON
404 " --gpu-temp-disable Disable temperature and fanspeed readings and triggers",
405 " --gpu-temp-abort=NUM Abort session if GPU temperature reaches NUM degrees celsius",
406 " --gpu-temp-retain=NUM Try to retain GPU temperature at NUM degrees celsius (AMD only)",
407 #ifdef HAVE_ADL
408 " --powertune-enable Enable automatic power tuning option (AMD OverDrive 6 only)",
409 #endif
410 #endif
411 " --scrypt-tmto=NUM Manually override automatically calculated TMTO value for scrypt",
412 "",
413 "* Distributed:",
414 "",
415 " -s, --skip=NUM Skip number of words",
416 " -l, --limit=NUM Limit number of words",
417 " --keyspace Show keyspace base:mod values and quit",
418 "",
419 "* Rules:",
420 "",
421 " -j, --rule-left=RULE Single rule applied to each word from left dict",
422 " -k, --rule-right=RULE Single rule applied to each word from right dict",
423 " -r, --rules-file=FILE Rules-file, multi use: -r 1.rule -r 2.rule",
424 " -g, --generate-rules=NUM Generate NUM random rules",
425 " --generate-rules-func-min=NUM Force NUM functions per random rule min",
426 " --generate-rules-func-max=NUM Force NUM functions per random rule max",
427 " --generate-rules-seed=NUM Force RNG seed to NUM",
428 "",
429 "* Custom charsets:",
430 "",
431 " -1, --custom-charset1=CS User-defined charsets",
432 " -2, --custom-charset2=CS Example:",
433 " -3, --custom-charset3=CS --custom-charset1=?dabcdef : sets charset ?1 to 0123456789abcdef",
434 " -4, --custom-charset4=CS -2 mycharset.hcchr : sets charset ?2 to chars contained in file",
435 "",
436 "* Increment:",
437 "",
438 " -i, --increment Enable increment mode",
439 " --increment-min=NUM Start incrementing at NUM",
440 " --increment-max=NUM Stop incrementing at NUM",
441 "",
442 "==========",
443 "References",
444 "==========",
445 "",
446 "* Workload Profile:",
447 "",
448 " 1 = Reduced performance profile (low latency desktop)",
449 " 2 = Default performance profile",
450 " 3 = Tuned performance profile (high latency desktop)",
451 "",
452 "* Benchmark Settings:",
453 "",
454 " 0 = Manual Tuning",
455 " 1 = Performance Tuning, default",
456 "",
457 "* OpenCL device-types:",
458 "",
459 " 1 = CPU devices",
460 " 2 = GPU devices",
461 " 3 = Accelerator devices (FPGA, CELL Blade, etc.)",
462 "",
463 "* Outfile Formats:",
464 "",
465 " 1 = hash[:salt]",
466 " 2 = plain",
467 " 3 = hash[:salt]:plain",
468 " 4 = hex_plain",
469 " 5 = hash[:salt]:hex_plain",
470 " 6 = plain:hex_plain",
471 " 7 = hash[:salt]:plain:hex_plain",
472 " 8 = crackpos",
473 " 9 = hash[:salt]:crackpos",
474 " 10 = plain:crackpos",
475 " 11 = hash[:salt]:plain:crackpos",
476 " 12 = hex_plain:crackpos",
477 " 13 = hash[:salt]:hex_plain:crackpos",
478 " 14 = plain:hex_plain:crackpos",
479 " 15 = hash[:salt]:plain:hex_plain:crackpos",
480 "",
481 "* Debug mode output formats (for hybrid mode only, by using rules):",
482 "",
483 " 1 = save finding rule",
484 " 2 = save original word",
485 " 3 = save original word and finding rule",
486 " 4 = save original word, finding rule and modified plain",
487 "",
488 "* Built-in charsets:",
489 "",
490 " ?l = abcdefghijklmnopqrstuvwxyz",
491 " ?u = ABCDEFGHIJKLMNOPQRSTUVWXYZ",
492 " ?d = 0123456789",
493 " ?s = !\"#$%&'()*+,-./:;<=>?@[\\]^_`{|}~",
494 " ?a = ?l?u?d?s",
495 " ?b = 0x00 - 0xff",
496 "",
497 "* Attack modes:",
498 "",
499 " 0 = Straight",
500 " 1 = Combination",
501 " 3 = Brute-force",
502 " 6 = Hybrid dict + mask",
503 " 7 = Hybrid mask + dict",
504 "",
505 "* Hash types:",
506 "",
507 "[[ Roll-your-own: Raw Hashes ]]",
508 "",
509 " 900 = MD4",
510 " 0 = MD5",
511 " 5100 = Half MD5",
512 " 100 = SHA1",
513 " 10800 = SHA-384",
514 " 1400 = SHA-256",
515 " 1700 = SHA-512",
516 " 5000 = SHA-3(Keccak)",
517 " 10100 = SipHash",
518 " 6000 = RipeMD160",
519 " 6100 = Whirlpool",
520 " 6900 = GOST R 34.11-94",
521 " 11700 = GOST R 34.11-2012 (Streebog) 256-bit",
522 " 11800 = GOST R 34.11-2012 (Streebog) 512-bit",
523 "",
524 "[[ Roll-your-own: Iterated and / or Salted Hashes ]]",
525 "",
526 " 10 = md5($pass.$salt)",
527 " 20 = md5($salt.$pass)",
528 " 30 = md5(unicode($pass).$salt)",
529 " 40 = md5($salt.unicode($pass))",
530 " 3800 = md5($salt.$pass.$salt)",
531 " 3710 = md5($salt.md5($pass))",
532 " 2600 = md5(md5($pass)",
533 " 4300 = md5(strtoupper(md5($pass)))",
534 " 4400 = md5(sha1($pass))",
535 " 110 = sha1($pass.$salt)",
536 " 120 = sha1($salt.$pass)",
537 " 130 = sha1(unicode($pass).$salt)",
538 " 140 = sha1($salt.unicode($pass))",
539 " 4500 = sha1(sha1($pass)",
540 " 4700 = sha1(md5($pass))",
541 " 4900 = sha1($salt.$pass.$salt)",
542 " 1410 = sha256($pass.$salt)",
543 " 1420 = sha256($salt.$pass)",
544 " 1430 = sha256(unicode($pass).$salt)",
545 " 1440 = sha256($salt.unicode($pass))",
546 " 1710 = sha512($pass.$salt)",
547 " 1720 = sha512($salt.$pass)",
548 " 1730 = sha512(unicode($pass).$salt)",
549 " 1740 = sha512($salt.unicode($pass))",
550 "",
551 "[[ Roll-your-own: Authenticated Hashes ]]",
552 "",
553 " 50 = HMAC-MD5 (key = $pass)",
554 " 60 = HMAC-MD5 (key = $salt)",
555 " 150 = HMAC-SHA1 (key = $pass)",
556 " 160 = HMAC-SHA1 (key = $salt)",
557 " 1450 = HMAC-SHA256 (key = $pass)",
558 " 1460 = HMAC-SHA256 (key = $salt)",
559 " 1750 = HMAC-SHA512 (key = $pass)",
560 " 1760 = HMAC-SHA512 (key = $salt)",
561 "",
562 "[[ Generic KDF ]]",
563 "",
564 " 400 = phpass",
565 " 8900 = scrypt",
566 " 11900 = PBKDF2-HMAC-MD5",
567 " 12000 = PBKDF2-HMAC-SHA1",
568 " 10900 = PBKDF2-HMAC-SHA256",
569 " 12100 = PBKDF2-HMAC-SHA512",
570 "",
571 "[[ Network protocols, Challenge-Response ]]",
572 "",
573 " 23 = Skype",
574 " 2500 = WPA/WPA2",
575 " 4800 = iSCSI CHAP authentication, MD5(Chap)",
576 " 5300 = IKE-PSK MD5",
577 " 5400 = IKE-PSK SHA1",
578 " 5500 = NetNTLMv1",
579 " 5500 = NetNTLMv1 + ESS",
580 " 5600 = NetNTLMv2",
581 " 7300 = IPMI2 RAKP HMAC-SHA1",
582 " 7500 = Kerberos 5 AS-REQ Pre-Auth etype 23",
583 " 8300 = DNSSEC (NSEC3)",
584 " 10200 = Cram MD5",
585 " 11100 = PostgreSQL Challenge-Response Authentication (MD5)",
586 " 11200 = MySQL Challenge-Response Authentication (SHA1)",
587 " 11400 = SIP digest authentication (MD5)",
588 "",
589 "[[ Forums, CMS, E-Commerce, Frameworks, Middleware, Wiki, Management ]]",
590 "",
591 " 121 = SMF (Simple Machines Forum)",
592 " 400 = phpBB3",
593 " 2611 = vBulletin < v3.8.5",
594 " 2711 = vBulletin > v3.8.5",
595 " 2811 = MyBB",
596 " 2811 = IPB (Invison Power Board)",
597 " 8400 = WBB3 (Woltlab Burning Board)",
598 " 11 = Joomla < 2.5.18",
599 " 400 = Joomla > 2.5.18",
600 " 400 = Wordpress",
601 " 2612 = PHPS",
602 " 7900 = Drupal7",
603 " 21 = osCommerce",
604 " 21 = xt:Commerce",
605 " 11000 = PrestaShop",
606 " 124 = Django (SHA-1)",
607 " 10000 = Django (PBKDF2-SHA256)",
608 " 3711 = Mediawiki B type",
609 " 7600 = Redmine",
610 "",
611 "[[ Database Server ]]",
612 "",
613 " 12 = PostgreSQL",
614 " 131 = MSSQL(2000)",
615 " 132 = MSSQL(2005)",
616 " 1731 = MSSQL(2012)",
617 " 1731 = MSSQL(2014)",
618 " 200 = MySQL323",
619 " 300 = MySQL4.1/MySQL5",
620 " 3100 = Oracle H: Type (Oracle 7+)",
621 " 112 = Oracle S: Type (Oracle 11+)",
622 " 12300 = Oracle T: Type (Oracle 12+)",
623 " 8000 = Sybase ASE",
624 "",
625 "[[ HTTP, SMTP, LDAP Server ]]",
626 "",
627 " 141 = EPiServer 6.x < v4",
628 " 1441 = EPiServer 6.x > v4",
629 " 1600 = Apache $apr1$",
630 " 12600 = ColdFusion 10+",
631 " 1421 = hMailServer",
632 " 101 = nsldap, SHA-1(Base64), Netscape LDAP SHA",
633 " 111 = nsldaps, SSHA-1(Base64), Netscape LDAP SSHA",
634 " 1711 = SSHA-512(Base64), LDAP {SSHA512}",
635 "",
636 "[[ Checksums ]]",
637 "",
638 " 11500 = CRC32",
639 "",
640 "[[ Operating-Systems ]]",
641 "",
642 " 3000 = LM",
643 " 1000 = NTLM",
644 " 1100 = Domain Cached Credentials (DCC), MS Cache",
645 " 2100 = Domain Cached Credentials 2 (DCC2), MS Cache 2",
646 " 12800 = MS-AzureSync PBKDF2-HMAC-SHA256",
647 " 1500 = descrypt, DES(Unix), Traditional DES",
648 " 12400 = BSDiCrypt, Extended DES",
649 " 500 = md5crypt $1$, MD5(Unix)",
650 " 3200 = bcrypt $2*$, Blowfish(Unix)",
651 " 7400 = sha256crypt $5$, SHA256(Unix)",
652 " 1800 = sha512crypt $6$, SHA512(Unix)",
653 " 122 = OSX v10.4",
654 " 122 = OSX v10.5",
655 " 122 = OSX v10.6",
656 " 1722 = OSX v10.7",
657 " 7100 = OSX v10.8",
658 " 7100 = OSX v10.9",
659 " 7100 = OSX v10.10",
660 " 6300 = AIX {smd5}",
661 " 6700 = AIX {ssha1}",
662 " 6400 = AIX {ssha256}",
663 " 6500 = AIX {ssha512}",
664 " 2400 = Cisco-PIX",
665 " 2410 = Cisco-ASA",
666 " 500 = Cisco-IOS $1$",
667 " 5700 = Cisco-IOS $4$",
668 " 9200 = Cisco-IOS $8$",
669 " 9300 = Cisco-IOS $9$",
670 " 22 = Juniper Netscreen/SSG (ScreenOS)",
671 " 501 = Juniper IVE",
672 " 5800 = Android PIN",
673 " 8100 = Citrix Netscaler",
674 " 8500 = RACF",
675 " 7200 = GRUB 2",
676 " 9900 = Radmin2",
677 "",
678 "[[ Enterprise Application Software (EAS) ]]",
679 "",
680 " 7700 = SAP CODVN B (BCODE)",
681 " 7800 = SAP CODVN F/G (PASSCODE)",
682 " 10300 = SAP CODVN H (PWDSALTEDHASH) iSSHA-1",
683 " 8600 = Lotus Notes/Domino 5",
684 " 8700 = Lotus Notes/Domino 6",
685 " 9100 = Lotus Notes/Domino 8",
686 " 133 = PeopleSoft",
687 "",
688 "[[ Archives ]]",
689 "",
690 " 11600 = 7-Zip",
691 " 12500 = RAR3-hp",
692 " 13000 = RAR5",
693 "",
694 "[[ Full-Disk encryptions (FDE) ]]",
695 "",
696 " 62XY = TrueCrypt 5.0+",
697 " X = 1 = PBKDF2-HMAC-RipeMD160",
698 " X = 2 = PBKDF2-HMAC-SHA512",
699 " X = 3 = PBKDF2-HMAC-Whirlpool",
700 " X = 4 = PBKDF2-HMAC-RipeMD160 + boot-mode",
701 " Y = 1 = XTS 512 bit (Ciphers: AES or Serpent or Twofish)",
702 " Y = 2 = XTS 1024 bit (Ciphers: AES or Serpent or Twofish or AES-Twofish or Serpent-AES or Twofish-Serpent)",
703 " Y = 3 = XTS 1536 bit (Ciphers: All)",
704 " 8800 = Android FDE < v4.3",
705 " 12900 = Android FDE (Samsung DEK)",
706 " 12200 = eCryptfs",
707 "",
708 "[[ Documents ]]",
709 "",
710 " 9700 = MS Office <= 2003 MD5 + RC4, oldoffice$0, oldoffice$1",
711 " 9710 = MS Office <= 2003 MD5 + RC4, collider-mode #1",
712 " 9720 = MS Office <= 2003 MD5 + RC4, collider-mode #2",
713 " 9800 = MS Office <= 2003 SHA1 + RC4, oldoffice$3, oldoffice$4",
714 " 9810 = MS Office <= 2003 SHA1 + RC4, collider-mode #1",
715 " 9820 = MS Office <= 2003 SHA1 + RC4, collider-mode #2",
716 " 9400 = MS Office 2007",
717 " 9500 = MS Office 2010",
718 " 9600 = MS Office 2013",
719 " 10400 = PDF 1.1 - 1.3 (Acrobat 2 - 4)",
720 " 10410 = PDF 1.1 - 1.3 (Acrobat 2 - 4) + collider-mode #1",
721 " 10420 = PDF 1.1 - 1.3 (Acrobat 2 - 4) + collider-mode #2",
722 " 10500 = PDF 1.4 - 1.6 (Acrobat 5 - 8)",
723 " 10600 = PDF 1.7 Level 3 (Acrobat 9)",
724 " 10700 = PDF 1.7 Level 8 (Acrobat 10 - 11)",
725 "",
726 "[[ Password Managers ]]",
727 "",
728 " 9000 = Password Safe v2",
729 " 5200 = Password Safe v3",
730 " 6800 = Lastpass",
731 " 6600 = 1Password, agilekeychain",
732 " 8200 = 1Password, cloudkeychain",
733 " 11300 = Bitcoin/Litecoin wallet.dat",
734 " 12700 = Blockchain, My Wallet",
735 "",
736 NULL
737 };
738
739 /**
740 * oclHashcat specific functions
741 */
742
743 void status_display_automat ()
744 {
745 FILE *out = stdout;
746
747 fprintf (out, "STATUS\t%u\t", data.devices_status);
748
749 /**
750 * speed new
751 */
752
753 fprintf (out, "SPEED\t");
754
755 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
756 {
757 hc_device_param_t *device_param = &data.devices_param[device_id];
758
759 if (device_param->skipped) continue;
760
761 u64 speed_cnt = 0;
762 float speed_ms = 0;
763
764 for (int i = 0; i < SPEED_CACHE; i++)
765 {
766 float rec_ms;
767
768 hc_timer_get (device_param->speed_rec[i], rec_ms);
769
770 if (rec_ms > SPEED_MAXAGE) continue;
771
772 speed_cnt += device_param->speed_cnt[i];
773 speed_ms += device_param->speed_ms[i];
774 }
775
776 speed_cnt /= SPEED_CACHE;
777 speed_ms /= SPEED_CACHE;
778
779 fprintf (out, "%llu\t%f\t", (unsigned long long int) speed_cnt, speed_ms);
780 }
781
782 /**
783 * words_cur
784 */
785
786 u64 words_cur = get_lowest_words_done ();
787
788 fprintf (out, "CURKU\t%llu\t", (unsigned long long int) words_cur);
789
790 /**
791 * counter
792 */
793
794 uint salts_left = data.salts_cnt - data.salts_done;
795
796 if (salts_left == 0) salts_left = 1;
797
798 u64 progress_total = data.words_cnt * salts_left;
799
800 u64 all_done = 0;
801 u64 all_rejected = 0;
802 u64 all_restored = 0;
803
804 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
805 {
806 if (salts_left > 1)
807 {
808 // otherwise the final cracked status shows 0/XXX progress
809
810 if (data.salts_shown[salt_pos] == 1) continue;
811 }
812
813 all_done += data.words_progress_done[salt_pos];
814 all_rejected += data.words_progress_rejected[salt_pos];
815 all_restored += data.words_progress_restored[salt_pos];
816 }
817
818 u64 progress_cur = all_restored + all_done + all_rejected;
819 u64 progress_end = progress_total;
820
821 u64 progress_skip = 0;
822
823 if (data.skip)
824 {
825 progress_skip = MIN (data.skip, data.words_base) * salts_left;
826
827 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_skip *= data.kernel_rules_cnt;
828 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_skip *= data.combs_cnt;
829 else if (data.attack_kern == ATTACK_KERN_BF) progress_skip *= data.bfs_cnt;
830 }
831
832 if (data.limit)
833 {
834 progress_end = MIN (data.limit, data.words_base) * salts_left;
835
836 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_end *= data.kernel_rules_cnt;
837 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_end *= data.combs_cnt;
838 else if (data.attack_kern == ATTACK_KERN_BF) progress_end *= data.bfs_cnt;
839 }
840
841 u64 progress_cur_relative_skip = progress_cur - progress_skip;
842 u64 progress_end_relative_skip = progress_end - progress_skip;
843
844 fprintf (out, "PROGRESS\t%llu\t%llu\t", (unsigned long long int) progress_cur_relative_skip, (unsigned long long int) progress_end_relative_skip);
845
846 /**
847 * cracks
848 */
849
850 fprintf (out, "RECHASH\t%u\t%u\t", data.digests_done, data.digests_cnt);
851 fprintf (out, "RECSALT\t%u\t%u\t", data.salts_done, data.salts_cnt);
852
853 /**
854 * temperature
855 */
856
857 #ifdef HAVE_HWMON
858 if (data.gpu_temp_disable == 0)
859 {
860 fprintf (out, "TEMP\t");
861
862 hc_thread_mutex_lock (mux_adl);
863
864 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
865 {
866 hc_device_param_t *device_param = &data.devices_param[device_id];
867
868 if (device_param->skipped) continue;
869
870 int temp = hm_get_temperature_with_device_id (device_id);
871
872 fprintf (out, "%d\t", temp);
873 }
874
875 hc_thread_mutex_unlock (mux_adl);
876 }
877 #endif // HAVE_HWMON
878
879 #ifdef _WIN
880 fputc ('\r', out);
881 fputc ('\n', out);
882 #endif
883
884 #ifdef _POSIX
885 fputc ('\n', out);
886 #endif
887
888 fflush (out);
889 }
890
891 void status_display ()
892 {
893 if (data.devices_status == STATUS_INIT) return;
894 if (data.devices_status == STATUS_STARTING) return;
895 if (data.devices_status == STATUS_BYPASS) return;
896
897 if (data.status_automat == 1)
898 {
899 status_display_automat ();
900
901 return;
902 }
903
904 char tmp_buf[1000];
905
906 uint tmp_len = 0;
907
908 log_info ("Session.Name...: %s", data.session);
909
910 char *status_type = strstatus (data.devices_status);
911
912 uint hash_mode = data.hash_mode;
913
914 char *hash_type = strhashtype (hash_mode); // not a bug
915
916 log_info ("Status.........: %s", status_type);
917
918 /**
919 * show rules
920 */
921
922 if (data.rp_files_cnt)
923 {
924 uint i;
925
926 for (i = 0, tmp_len = 0; i < data.rp_files_cnt - 1 && tmp_len < sizeof (tmp_buf); i++)
927 {
928 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, "File (%s), ", data.rp_files[i]);
929 }
930
931 snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, "File (%s)", data.rp_files[i]);
932
933 log_info ("Rules.Type.....: %s", tmp_buf);
934
935 tmp_len = 0;
936 }
937
938 if (data.rp_gen)
939 {
940 log_info ("Rules.Type.....: Generated (%u)", data.rp_gen);
941
942 if (data.rp_gen_seed)
943 {
944 log_info ("Rules.Seed.....: %u", data.rp_gen_seed);
945 }
946 }
947
948 /**
949 * show input
950 */
951
952 if (data.attack_mode == ATTACK_MODE_STRAIGHT)
953 {
954 if (data.wordlist_mode == WL_MODE_FILE)
955 {
956 if (data.dictfile != NULL) log_info ("Input.Mode.....: File (%s)", data.dictfile);
957 }
958 else if (data.wordlist_mode == WL_MODE_STDIN)
959 {
960 log_info ("Input.Mode.....: Pipe");
961 }
962 }
963 else if (data.attack_mode == ATTACK_MODE_COMBI)
964 {
965 if (data.dictfile != NULL) log_info ("Input.Left.....: File (%s)", data.dictfile);
966 if (data.dictfile2 != NULL) log_info ("Input.Right....: File (%s)", data.dictfile2);
967 }
968 else if (data.attack_mode == ATTACK_MODE_BF)
969 {
970 char *mask = data.mask;
971
972 if (mask != NULL)
973 {
974 uint mask_len = data.css_cnt;
975
976 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, "Mask (%s)", mask);
977
978 if (mask_len > 0)
979 {
980 if (data.opti_type & OPTI_TYPE_SINGLE_HASH)
981 {
982 if (data.opti_type & OPTI_TYPE_APPENDED_SALT)
983 {
984 mask_len -= data.salts_buf[0].salt_len;
985 }
986 }
987
988 if (data.opts_type & OPTS_TYPE_PT_UNICODE) mask_len /= 2;
989
990 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, " [%i]", mask_len);
991 }
992
993 if (data.maskcnt > 1)
994 {
995 float mask_percentage = (float) data.maskpos / (float) data.maskcnt;
996
997 tmp_len += snprintf (tmp_buf + tmp_len, sizeof (tmp_buf) - tmp_len, " (%.02f%%)", mask_percentage * 100);
998 }
999
1000 log_info ("Input.Mode.....: %s", tmp_buf);
1001 }
1002
1003 tmp_len = 0;
1004 }
1005 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
1006 {
1007 if (data.dictfile != NULL) log_info ("Input.Left.....: File (%s)", data.dictfile);
1008 if (data.mask != NULL) log_info ("Input.Right....: Mask (%s) [%i]", data.mask, data.css_cnt);
1009 }
1010 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
1011 {
1012 if (data.mask != NULL) log_info ("Input.Left.....: Mask (%s) [%i]", data.mask, data.css_cnt);
1013 if (data.dictfile != NULL) log_info ("Input.Right....: File (%s)", data.dictfile);
1014 }
1015
1016 if (data.digests_cnt == 1)
1017 {
1018 if (data.hash_mode == 2500)
1019 {
1020 wpa_t *wpa = (wpa_t *) data.esalts_buf;
1021
1022 uint pke[25];
1023
1024 char *pke_ptr = (char *) pke;
1025
1026 for (uint i = 0; i < 25; i++)
1027 {
1028 pke[i] = byte_swap_32 (wpa->pke[i]);
1029 }
1030
1031 char mac1[6];
1032 char mac2[6];
1033
1034 memcpy (mac1, pke_ptr + 23, 6);
1035 memcpy (mac2, pke_ptr + 29, 6);
1036
1037 log_info ("Hash.Target....: %s (%02x:%02x:%02x:%02x:%02x:%02x <-> %02x:%02x:%02x:%02x:%02x:%02x)",
1038 (char *) data.salts_buf[0].salt_buf,
1039 mac1[0] & 0xff,
1040 mac1[1] & 0xff,
1041 mac1[2] & 0xff,
1042 mac1[3] & 0xff,
1043 mac1[4] & 0xff,
1044 mac1[5] & 0xff,
1045 mac2[0] & 0xff,
1046 mac2[1] & 0xff,
1047 mac2[2] & 0xff,
1048 mac2[3] & 0xff,
1049 mac2[4] & 0xff,
1050 mac2[5] & 0xff);
1051 }
1052 else if (data.hash_mode == 5200)
1053 {
1054 log_info ("Hash.Target....: File (%s)", data.hashfile);
1055 }
1056 else if (data.hash_mode == 9000)
1057 {
1058 log_info ("Hash.Target....: File (%s)", data.hashfile);
1059 }
1060 else if ((data.hash_mode >= 6200) && (data.hash_mode <= 6299))
1061 {
1062 log_info ("Hash.Target....: File (%s)", data.hashfile);
1063 }
1064 else
1065 {
1066 char out_buf[4096];
1067
1068 ascii_digest (out_buf, 0, 0);
1069
1070 // limit length
1071 if (strlen (out_buf) > 40)
1072 {
1073 out_buf[41] = '.';
1074 out_buf[42] = '.';
1075 out_buf[43] = '.';
1076 out_buf[44] = 0;
1077 }
1078
1079 log_info ("Hash.Target....: %s", out_buf);
1080 }
1081 }
1082 else
1083 {
1084 if (data.hash_mode == 3000)
1085 {
1086 char out_buf1[4096];
1087 char out_buf2[4096];
1088
1089 ascii_digest (out_buf1, 0, 0);
1090 ascii_digest (out_buf2, 0, 1);
1091
1092 log_info ("Hash.Target....: %s, %s", out_buf1, out_buf2);
1093 }
1094 else
1095 {
1096 log_info ("Hash.Target....: File (%s)", data.hashfile);
1097 }
1098 }
1099
1100 log_info ("Hash.Type......: %s", hash_type);
1101
1102 /**
1103 * speed new
1104 */
1105
1106 u64 speed_cnt[DEVICES_MAX];
1107 float speed_ms[DEVICES_MAX];
1108
1109 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1110 {
1111 hc_device_param_t *device_param = &data.devices_param[device_id];
1112
1113 if (device_param->skipped) continue;
1114
1115 // we need to clear values (set to 0) because in case the device does
1116 // not get new candidates it idles around but speed display would
1117 // show it as working.
1118 // if we instantly set it to 0 after reading it happens that the
1119 // speed can be shown as zero if the users refreshes too fast.
1120 // therefore, we add a timestamp when a stat was recorded and if its
1121 // too old we will not use it
1122
1123 speed_cnt[device_id] = 0;
1124 speed_ms[device_id] = 0;
1125
1126 for (int i = 0; i < SPEED_CACHE; i++)
1127 {
1128 float rec_ms;
1129
1130 hc_timer_get (device_param->speed_rec[i], rec_ms);
1131
1132 if (rec_ms > SPEED_MAXAGE) continue;
1133
1134 speed_cnt[device_id] += device_param->speed_cnt[i];
1135 speed_ms[device_id] += device_param->speed_ms[i];
1136 }
1137
1138 speed_cnt[device_id] /= SPEED_CACHE;
1139 speed_ms[device_id] /= SPEED_CACHE;
1140 }
1141
1142 float hashes_all_ms = 0;
1143
1144 float hashes_dev_ms[DEVICES_MAX];
1145
1146 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1147 {
1148 hc_device_param_t *device_param = &data.devices_param[device_id];
1149
1150 if (device_param->skipped) continue;
1151
1152 hashes_dev_ms[device_id] = 0;
1153
1154 if (speed_ms[device_id])
1155 {
1156 hashes_dev_ms[device_id] = speed_cnt[device_id] / speed_ms[device_id];
1157
1158 hashes_all_ms += hashes_dev_ms[device_id];
1159 }
1160 }
1161
1162 /**
1163 * timers
1164 */
1165
1166 float ms_running = 0;
1167
1168 hc_timer_get (data.timer_running, ms_running);
1169
1170 float ms_paused = data.ms_paused;
1171
1172 if (data.devices_status == STATUS_PAUSED)
1173 {
1174 float ms_paused_tmp = 0;
1175
1176 hc_timer_get (data.timer_paused, ms_paused_tmp);
1177
1178 ms_paused += ms_paused_tmp;
1179 }
1180
1181 #ifdef WIN
1182
1183 __time64_t sec_run = ms_running / 1000;
1184
1185 #else
1186
1187 time_t sec_run = ms_running / 1000;
1188
1189 #endif
1190
1191 if (sec_run)
1192 {
1193 char display_run[32];
1194
1195 struct tm tm_run;
1196
1197 struct tm *tmp;
1198
1199 #ifdef WIN
1200
1201 tmp = _gmtime64 (&sec_run);
1202
1203 #else
1204
1205 tmp = gmtime (&sec_run);
1206
1207 #endif
1208
1209 if (tmp != NULL)
1210 {
1211 memcpy (&tm_run, tmp, sizeof (struct tm));
1212
1213 format_timer_display (&tm_run, display_run, sizeof (tm_run));
1214
1215 char *start = ctime (&data.proc_start);
1216
1217 size_t start_len = strlen (start);
1218
1219 if (start[start_len - 1] == '\n') start[start_len - 1] = 0;
1220 if (start[start_len - 2] == '\r') start[start_len - 2] = 0;
1221
1222 log_info ("Time.Started...: %s (%s)", start, display_run);
1223 }
1224 }
1225 else
1226 {
1227 log_info ("Time.Started...: 0 secs");
1228 }
1229
1230 /**
1231 * counters
1232 */
1233
1234 uint salts_left = data.salts_cnt - data.salts_done;
1235
1236 if (salts_left == 0) salts_left = 1;
1237
1238 u64 progress_total = data.words_cnt * salts_left;
1239
1240 u64 all_done = 0;
1241 u64 all_rejected = 0;
1242 u64 all_restored = 0;
1243
1244 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
1245 {
1246 if (salts_left > 1)
1247 {
1248 // otherwise the final cracked status shows 0/XXX progress
1249
1250 if (data.salts_shown[salt_pos] == 1) continue;
1251 }
1252
1253 all_done += data.words_progress_done[salt_pos];
1254 all_rejected += data.words_progress_rejected[salt_pos];
1255 all_restored += data.words_progress_restored[salt_pos];
1256 }
1257
1258 u64 progress_cur = all_restored + all_done + all_rejected;
1259 u64 progress_end = progress_total;
1260
1261 u64 progress_skip = 0;
1262
1263 if (data.skip)
1264 {
1265 progress_skip = MIN (data.skip, data.words_base) * salts_left;
1266
1267 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_skip *= data.kernel_rules_cnt;
1268 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_skip *= data.combs_cnt;
1269 else if (data.attack_kern == ATTACK_KERN_BF) progress_skip *= data.bfs_cnt;
1270 }
1271
1272 if (data.limit)
1273 {
1274 progress_end = MIN (data.limit, data.words_base) * salts_left;
1275
1276 if (data.attack_kern == ATTACK_KERN_STRAIGHT) progress_end *= data.kernel_rules_cnt;
1277 else if (data.attack_kern == ATTACK_KERN_COMBI) progress_end *= data.combs_cnt;
1278 else if (data.attack_kern == ATTACK_KERN_BF) progress_end *= data.bfs_cnt;
1279 }
1280
1281 u64 progress_cur_relative_skip = progress_cur - progress_skip;
1282 u64 progress_end_relative_skip = progress_end - progress_skip;
1283
1284 float speed_ms_real = ms_running - ms_paused;
1285 u64 speed_plains_real = all_done;
1286
1287 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
1288 {
1289 if (data.devices_status != STATUS_CRACKED)
1290 {
1291 u64 words_per_ms = 0;
1292
1293 if (speed_plains_real && speed_ms_real)
1294 {
1295 words_per_ms = speed_plains_real / speed_ms_real;
1296 }
1297
1298 #ifdef WIN
1299 __time64_t sec_etc = 0;
1300 #else
1301 time_t sec_etc = 0;
1302 #endif
1303
1304 if (words_per_ms)
1305 {
1306 u64 progress_left_relative_skip = progress_end_relative_skip - progress_cur_relative_skip;
1307
1308 u64 ms_left = progress_left_relative_skip / words_per_ms;
1309
1310 sec_etc = ms_left / 1000;
1311 }
1312
1313 if (sec_etc == 0)
1314 {
1315 log_info ("Time.Estimated.: 0 secs");
1316 }
1317 else if ((u64) sec_etc > ETC_MAX)
1318 {
1319 log_info ("Time.Estimated.: > 10 Years");
1320 }
1321 else
1322 {
1323 char display_etc[32];
1324
1325 struct tm tm_etc;
1326
1327 struct tm *tmp;
1328
1329 #ifdef WIN
1330
1331 tmp = _gmtime64 (&sec_etc);
1332
1333 #else
1334
1335 tmp = gmtime (&sec_etc);
1336
1337 #endif
1338
1339 if (tmp != NULL)
1340 {
1341 memcpy (&tm_etc, tmp, sizeof (tm_etc));
1342
1343 format_timer_display (&tm_etc, display_etc, sizeof (display_etc));
1344
1345 time_t now;
1346
1347 time (&now);
1348
1349 now += sec_etc;
1350
1351 char *etc = ctime (&now);
1352
1353 size_t etc_len = strlen (etc);
1354
1355 if (etc[etc_len - 1] == '\n') etc[etc_len - 1] = 0;
1356 if (etc[etc_len - 2] == '\r') etc[etc_len - 2] = 0;
1357
1358 log_info ("Time.Estimated.: %s (%s)", etc, display_etc);
1359 }
1360 }
1361 }
1362 }
1363
1364 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1365 {
1366 hc_device_param_t *device_param = &data.devices_param[device_id];
1367
1368 if (device_param->skipped) continue;
1369
1370 char display_dev_cur[16] = { 0 };
1371
1372 strncpy (display_dev_cur, "0.00", 4);
1373
1374 format_speed_display (hashes_dev_ms[device_id] * 1000, display_dev_cur, sizeof (display_dev_cur));
1375
1376 log_info ("Speed.Dev.#%d...: %9sH/s", device_id + 1, display_dev_cur);
1377 }
1378
1379 char display_all_cur[16] = { 0 };
1380
1381 strncpy (display_all_cur, "0.00", 4);
1382
1383 format_speed_display (hashes_all_ms * 1000, display_all_cur, sizeof (display_all_cur));
1384
1385 if (data.devices_active > 1) log_info ("Speed.Dev.#*...: %9sH/s", display_all_cur);
1386
1387 const float digests_percent = (float) data.digests_done / data.digests_cnt;
1388 const float salts_percent = (float) data.salts_done / data.salts_cnt;
1389
1390 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);
1391
1392 // crack-per-time
1393
1394 if (data.digests_cnt > 100)
1395 {
1396 time_t now = time (NULL);
1397
1398 int cpt_cur_min = 0;
1399 int cpt_cur_hour = 0;
1400 int cpt_cur_day = 0;
1401
1402 for (int i = 0; i < CPT_BUF; i++)
1403 {
1404 const uint cracked = data.cpt_buf[i].cracked;
1405 const time_t timestamp = data.cpt_buf[i].timestamp;
1406
1407 if ((timestamp + 60) > now)
1408 {
1409 cpt_cur_min += cracked;
1410 }
1411
1412 if ((timestamp + 3600) > now)
1413 {
1414 cpt_cur_hour += cracked;
1415 }
1416
1417 if ((timestamp + 86400) > now)
1418 {
1419 cpt_cur_day += cracked;
1420 }
1421 }
1422
1423 float cpt_avg_min = (float) data.cpt_total / ((speed_ms_real / 1000) / 60);
1424 float cpt_avg_hour = (float) data.cpt_total / ((speed_ms_real / 1000) / 3600);
1425 float cpt_avg_day = (float) data.cpt_total / ((speed_ms_real / 1000) / 86400);
1426
1427 if ((data.cpt_start + 86400) < now)
1428 {
1429 log_info ("Recovered/Time.: CUR:%llu,%llu,%llu AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1430 cpt_cur_min,
1431 cpt_cur_hour,
1432 cpt_cur_day,
1433 cpt_avg_min,
1434 cpt_avg_hour,
1435 cpt_avg_day);
1436 }
1437 else if ((data.cpt_start + 3600) < now)
1438 {
1439 log_info ("Recovered/Time.: CUR:%llu,%llu,N/A AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1440 cpt_cur_min,
1441 cpt_cur_hour,
1442 cpt_avg_min,
1443 cpt_avg_hour,
1444 cpt_avg_day);
1445 }
1446 else if ((data.cpt_start + 60) < now)
1447 {
1448 log_info ("Recovered/Time.: CUR:%llu,N/A,N/A AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1449 cpt_cur_min,
1450 cpt_avg_min,
1451 cpt_avg_hour,
1452 cpt_avg_day);
1453 }
1454 else
1455 {
1456 log_info ("Recovered/Time.: CUR:N/A,N/A,N/A AVG:%0.2f,%0.2f,%0.2f (Min,Hour,Day)",
1457 cpt_avg_min,
1458 cpt_avg_hour,
1459 cpt_avg_day);
1460 }
1461 }
1462
1463 // Restore point
1464
1465 u64 restore_point = get_lowest_words_done ();
1466
1467 u64 restore_total = data.words_base;
1468
1469 float percent_restore = 0;
1470
1471 if (restore_total != 0) percent_restore = (float) restore_point / (float) restore_total;
1472
1473 if (progress_end_relative_skip)
1474 {
1475 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
1476 {
1477 float percent_finished = (float) progress_cur_relative_skip / (float) progress_end_relative_skip;
1478 float percent_rejected = 0.0;
1479
1480 if (progress_cur)
1481 {
1482 percent_rejected = (float) (all_rejected) / (float) progress_cur;
1483 }
1484
1485 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);
1486 log_info ("Rejected.......: %llu/%llu (%.02f%%)", (unsigned long long int) all_rejected, (unsigned long long int) progress_cur_relative_skip, percent_rejected * 100);
1487
1488 if (data.restore_disable == 0)
1489 {
1490 if (percent_finished != 1)
1491 {
1492 log_info ("Restore.Point..: %llu/%llu (%.02f%%)", (unsigned long long int) restore_point, (unsigned long long int) restore_total, percent_restore * 100);
1493 }
1494 }
1495 }
1496 }
1497 else
1498 {
1499 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
1500 {
1501 log_info ("Progress.......: %llu/%llu (%.02f%%)", (u64) 0, (u64) 0, (float) 100);
1502 log_info ("Rejected.......: %llu/%llu (%.02f%%)", (u64) 0, (u64) 0, (float) 100);
1503
1504 if (data.restore_disable == 0)
1505 {
1506 log_info ("Restore.Point..: %llu/%llu (%.02f%%)", (u64) 0, (u64) 0, (float) 100);
1507 }
1508 }
1509 else
1510 {
1511 log_info ("Progress.......: %llu", (unsigned long long int) progress_cur_relative_skip);
1512 log_info ("Rejected.......: %llu", (unsigned long long int) all_rejected);
1513
1514 // --restore not allowed if stdin is used -- really? why?
1515
1516 //if (data.restore_disable == 0)
1517 //{
1518 // log_info ("Restore.Point..: %llu", (unsigned long long int) restore_point);
1519 //}
1520 }
1521 }
1522
1523 #ifdef HAVE_HWMON
1524 if (data.gpu_temp_disable == 0)
1525 {
1526 hc_thread_mutex_lock (mux_adl);
1527
1528 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1529 {
1530 hc_device_param_t *device_param = &data.devices_param[device_id];
1531
1532 if (device_param->skipped) continue;
1533
1534 #define HM_STR_BUF_SIZE 255
1535
1536 if (data.hm_device[device_id].fan_supported == 1)
1537 {
1538 char utilization[HM_STR_BUF_SIZE];
1539 char temperature[HM_STR_BUF_SIZE];
1540 char fanspeed[HM_STR_BUF_SIZE];
1541
1542 hm_device_val_to_str ((char *) utilization, HM_STR_BUF_SIZE, "%", hm_get_utilization_with_device_id (device_id));
1543 hm_device_val_to_str ((char *) temperature, HM_STR_BUF_SIZE, "c", hm_get_temperature_with_device_id (device_id));
1544
1545 if (device_param->vendor_id == VENDOR_ID_AMD)
1546 {
1547 hm_device_val_to_str ((char *) fanspeed, HM_STR_BUF_SIZE, "%", hm_get_fanspeed_with_device_id (device_id));
1548 }
1549 else if (device_param->vendor_id == VENDOR_ID_NV)
1550 {
1551 #ifdef LINUX
1552 hm_device_val_to_str ((char *) fanspeed, HM_STR_BUF_SIZE, "%", hm_get_fanspeed_with_device_id (device_id));
1553 #else
1554 hm_device_val_to_str ((char *) fanspeed, HM_STR_BUF_SIZE, "rpm", hm_get_fanspeed_with_device_id (device_id));
1555 #endif
1556 }
1557
1558 log_info ("HWMon.GPU.#%d...: %s Util, %s Temp, %s Fan", device_id + 1, utilization, temperature, fanspeed);
1559 }
1560 else
1561 {
1562 char utilization[HM_STR_BUF_SIZE];
1563 char temperature[HM_STR_BUF_SIZE];
1564
1565 hm_device_val_to_str ((char *) utilization, HM_STR_BUF_SIZE, "%", hm_get_utilization_with_device_id (device_id));
1566 hm_device_val_to_str ((char *) temperature, HM_STR_BUF_SIZE, "c", hm_get_temperature_with_device_id (device_id));
1567
1568 log_info ("HWMon.GPU.#%d...: %s Util, %s Temp, N/A Fan", device_id + 1, utilization, temperature);
1569 }
1570 }
1571
1572 hc_thread_mutex_unlock (mux_adl);
1573 }
1574 #endif // HAVE_HWMON
1575 }
1576
1577 static void status_benchmark ()
1578 {
1579 if (data.devices_status == STATUS_INIT) return;
1580 if (data.devices_status == STATUS_STARTING) return;
1581
1582 if (data.words_cnt == 0) return;
1583
1584 u64 speed_cnt[DEVICES_MAX];
1585 float speed_ms[DEVICES_MAX];
1586
1587 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1588 {
1589 hc_device_param_t *device_param = &data.devices_param[device_id];
1590
1591 if (device_param->skipped) continue;
1592
1593 speed_cnt[device_id] = 0;
1594 speed_ms[device_id] = 0;
1595
1596 for (int i = 0; i < SPEED_CACHE; i++)
1597 {
1598 speed_cnt[device_id] += device_param->speed_cnt[i];
1599 speed_ms[device_id] += device_param->speed_ms[i];
1600 }
1601
1602 speed_cnt[device_id] /= SPEED_CACHE;
1603 speed_ms[device_id] /= SPEED_CACHE;
1604 }
1605
1606 float hashes_all_ms = 0;
1607
1608 float hashes_dev_ms[DEVICES_MAX];
1609
1610 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1611 {
1612 hc_device_param_t *device_param = &data.devices_param[device_id];
1613
1614 if (device_param->skipped) continue;
1615
1616 hashes_dev_ms[device_id] = 0;
1617
1618 if (speed_ms[device_id])
1619 {
1620 hashes_dev_ms[device_id] = speed_cnt[device_id] / speed_ms[device_id];
1621
1622 hashes_all_ms += hashes_dev_ms[device_id];
1623 }
1624 }
1625
1626 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
1627 {
1628 hc_device_param_t *device_param = &data.devices_param[device_id];
1629
1630 if (device_param->skipped) continue;
1631
1632 char display_dev_cur[16] = { 0 };
1633
1634 strncpy (display_dev_cur, "0.00", 4);
1635
1636 format_speed_display (hashes_dev_ms[device_id] * 1000, display_dev_cur, sizeof (display_dev_cur));
1637
1638 log_info ("Speed.Dev.#%d.: %9sH/s", device_id + 1, display_dev_cur);
1639 }
1640
1641 char display_all_cur[16] = { 0 };
1642
1643 strncpy (display_all_cur, "0.00", 4);
1644
1645 format_speed_display (hashes_all_ms * 1000, display_all_cur, sizeof (display_all_cur));
1646
1647 if (data.devices_active > 1) log_info ("Speed.Dev.#*.: %9sH/s", display_all_cur);
1648 }
1649
1650 /**
1651 * oclHashcat -only- functions
1652 */
1653
1654 static void generate_source_kernel_filename (const uint attack_exec, const uint attack_kern, const uint kern_type, char *shared_dir, char *source_file)
1655 {
1656 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
1657 {
1658 if (attack_kern == ATTACK_KERN_STRAIGHT)
1659 snprintf (source_file, 255, "%s/OpenCL/m%05d_a0.cl", shared_dir, (int) kern_type);
1660 else if (attack_kern == ATTACK_KERN_COMBI)
1661 snprintf (source_file, 255, "%s/OpenCL/m%05d_a1.cl", shared_dir, (int) kern_type);
1662 else if (attack_kern == ATTACK_KERN_BF)
1663 snprintf (source_file, 255, "%s/OpenCL/m%05d_a3.cl", shared_dir, (int) kern_type);
1664 }
1665 else
1666 snprintf (source_file, 255, "%s/OpenCL/m%05d.cl", shared_dir, (int) kern_type);
1667 }
1668
1669 static void generate_cached_kernel_filename (const uint attack_exec, const uint attack_kern, const uint kern_type, char *profile_dir, char *device_name_chksum, char *cached_file)
1670 {
1671 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
1672 {
1673 if (attack_kern == ATTACK_KERN_STRAIGHT)
1674 snprintf (cached_file, 255, "%s/kernels/m%05d_a0.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1675 else if (attack_kern == ATTACK_KERN_COMBI)
1676 snprintf (cached_file, 255, "%s/kernels/m%05d_a1.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1677 else if (attack_kern == ATTACK_KERN_BF)
1678 snprintf (cached_file, 255, "%s/kernels/m%05d_a3.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1679 }
1680 else
1681 {
1682 snprintf (cached_file, 255, "%s/kernels/m%05d.%s.kernel", profile_dir, (int) kern_type, device_name_chksum);
1683 }
1684 }
1685
1686 static void generate_source_kernel_mp_filename (const uint opti_type, const uint opts_type, char *shared_dir, char *source_file)
1687 {
1688 if ((opti_type & OPTI_TYPE_BRUTE_FORCE) && (opts_type & OPTS_TYPE_PT_GENERATE_BE))
1689 {
1690 snprintf (source_file, 255, "%s/OpenCL/markov_be.cl", shared_dir);
1691 }
1692 else
1693 {
1694 snprintf (source_file, 255, "%s/OpenCL/markov_le.cl", shared_dir);
1695 }
1696 }
1697
1698 static void generate_cached_kernel_mp_filename (const uint opti_type, const uint opts_type, char *profile_dir, char *device_name_chksum, char *cached_file)
1699 {
1700 if ((opti_type & OPTI_TYPE_BRUTE_FORCE) && (opts_type & OPTS_TYPE_PT_GENERATE_BE))
1701 {
1702 snprintf (cached_file, 255, "%s/kernels/markov_be.%s.kernel", profile_dir, device_name_chksum);
1703 }
1704 else
1705 {
1706 snprintf (cached_file, 255, "%s/kernels/markov_le.%s.kernel", profile_dir, device_name_chksum);
1707 }
1708 }
1709
1710 static void generate_source_kernel_amp_filename (const uint attack_kern, char *shared_dir, char *source_file)
1711 {
1712 snprintf (source_file, 255, "%s/OpenCL/amp_a%d.cl", shared_dir, attack_kern);
1713 }
1714
1715 static void generate_cached_kernel_amp_filename (const uint attack_kern, char *profile_dir, char *device_name_chksum, char *cached_file)
1716 {
1717 snprintf (cached_file, 255, "%s/kernels/amp_a%d.%s.kernel", profile_dir, attack_kern, device_name_chksum);
1718 }
1719
1720 static uint convert_from_hex (char *line_buf, const uint line_len)
1721 {
1722 if (line_len & 1) return (line_len); // not in hex
1723
1724 if (data.hex_wordlist == 1)
1725 {
1726 uint i;
1727 uint j;
1728
1729 for (i = 0, j = 0; j < line_len; i += 1, j += 2)
1730 {
1731 line_buf[i] = hex_to_u8 ((const u8 *) &line_buf[j]);
1732 }
1733
1734 memset (line_buf + i, 0, line_len - i);
1735
1736 return (i);
1737 }
1738 else if (line_len >= 6) // $HEX[] = 6
1739 {
1740 if (line_buf[0] != '$') return (line_len);
1741 if (line_buf[1] != 'H') return (line_len);
1742 if (line_buf[2] != 'E') return (line_len);
1743 if (line_buf[3] != 'X') return (line_len);
1744 if (line_buf[4] != '[') return (line_len);
1745 if (line_buf[line_len - 1] != ']') return (line_len);
1746
1747 uint i;
1748 uint j;
1749
1750 for (i = 0, j = 5; j < line_len - 1; i += 1, j += 2)
1751 {
1752 line_buf[i] = hex_to_u8 ((const u8 *) &line_buf[j]);
1753 }
1754
1755 memset (line_buf + i, 0, line_len - i);
1756
1757 return (i);
1758 }
1759
1760 return (line_len);
1761 }
1762
1763 static uint count_lines (FILE *fd)
1764 {
1765 uint cnt = 0;
1766
1767 char *buf = (char *) mymalloc (BUFSIZ + 1);
1768
1769 size_t nread_tmp = 0;
1770
1771 char *ptr = buf;
1772
1773 while (!feof (fd))
1774 {
1775 size_t nread = fread (buf, sizeof (char), BUFSIZ, fd);
1776 nread_tmp = nread;
1777
1778 if (nread < 1) continue;
1779
1780 ptr = buf;
1781
1782 do
1783 {
1784 if (*ptr++ == '\n') cnt++;
1785
1786 } while (nread--);
1787 }
1788
1789 // special case (if last line did not contain a newline char ... at the very end of the file)
1790
1791 if (nread_tmp > 3)
1792 {
1793 ptr -= 2;
1794
1795 if (*ptr != '\n')
1796 {
1797 ptr--;
1798
1799 if (*ptr != '\n') // needed ? different on windows systems?
1800 {
1801 cnt++;
1802 }
1803 }
1804 }
1805
1806 myfree (buf);
1807
1808 return cnt;
1809 }
1810
1811 static void clear_prompt ()
1812 {
1813 fputc ('\r', stdout);
1814
1815 for (size_t i = 0; i < strlen (PROMPT); i++)
1816 {
1817 fputc (' ', stdout);
1818 }
1819
1820 fputc ('\r', stdout);
1821
1822 fflush (stdout);
1823 }
1824
1825 static void gidd_to_pw_t (hc_device_param_t *device_param, const u64 gidd, pw_t *pw)
1826 {
1827 hc_clEnqueueReadBuffer (device_param->command_queue, device_param->d_pws_buf, CL_TRUE, gidd * sizeof (pw_t), sizeof (pw_t), pw, 0, NULL, NULL);
1828 }
1829
1830 static void check_hash (hc_device_param_t *device_param, const uint salt_pos, const uint digest_pos)
1831 {
1832 char *outfile = data.outfile;
1833 uint quiet = data.quiet;
1834 FILE *pot_fp = data.pot_fp;
1835 uint loopback = data.loopback;
1836 uint debug_mode = data.debug_mode;
1837 char *debug_file = data.debug_file;
1838
1839 char debug_rule_buf[BLOCK_SIZE];
1840 int debug_rule_len = 0; // -1 error
1841 uint debug_plain_len = 0;
1842
1843 u8 debug_plain_ptr[BLOCK_SIZE];
1844
1845 // hash
1846
1847 char out_buf[4096] = { 0 };
1848
1849 ascii_digest (out_buf, salt_pos, digest_pos);
1850
1851 uint idx = data.salts_buf[salt_pos].digests_offset + digest_pos;
1852
1853 // plain
1854
1855 plain_t plain;
1856
1857 hc_clEnqueueReadBuffer (device_param->command_queue, device_param->d_plain_bufs, CL_TRUE, idx * sizeof (plain_t), sizeof (plain_t), &plain, 0, NULL, NULL);
1858
1859 uint gidvid = plain.gidvid;
1860 uint il_pos = plain.il_pos;
1861
1862 u64 crackpos = device_param->words_off;
1863
1864 uint plain_buf[16];
1865
1866 u8 *plain_ptr = (u8 *) plain_buf;
1867 unsigned int plain_len = 0;
1868
1869 if (data.attack_mode == ATTACK_MODE_STRAIGHT)
1870 {
1871 u64 gidd = gidvid;
1872 u64 gidm = 0;
1873
1874 pw_t pw;
1875
1876 gidd_to_pw_t (device_param, gidd, &pw);
1877
1878 for (int i = 0, j = gidm; i < 16; i++, j++)
1879 {
1880 plain_buf[i] = pw.hi1[0][j];
1881 }
1882
1883 plain_len = pw.pw_len;
1884
1885 const uint off = device_param->innerloop_pos + il_pos;
1886
1887 if (debug_mode > 0)
1888 {
1889 debug_rule_len = 0;
1890
1891 // save rule
1892 if ((debug_mode == 1) || (debug_mode == 3) || (debug_mode == 4))
1893 {
1894 memset (debug_rule_buf, 0, sizeof (debug_rule_buf));
1895
1896 debug_rule_len = kernel_rule_to_cpu_rule (debug_rule_buf, &data.kernel_rules_buf[off]);
1897 }
1898
1899 // save plain
1900 if ((debug_mode == 2) || (debug_mode == 3) || (debug_mode == 4))
1901 {
1902 memset (debug_plain_ptr, 0, sizeof (debug_plain_ptr));
1903
1904 memcpy (debug_plain_ptr, plain_ptr, plain_len);
1905
1906 debug_plain_len = plain_len;
1907 }
1908 }
1909
1910 plain_len = apply_rules (data.kernel_rules_buf[off].cmds, &plain_buf[0], &plain_buf[4], plain_len);
1911
1912 crackpos += gidvid;
1913 crackpos *= data.kernel_rules_cnt;
1914 crackpos += device_param->innerloop_pos + il_pos;
1915
1916 if (plain_len > data.pw_max) plain_len = data.pw_max;
1917 }
1918 else if (data.attack_mode == ATTACK_MODE_COMBI)
1919 {
1920 u64 gidd = gidvid;
1921 u64 gidm = 0;
1922
1923 pw_t pw;
1924
1925 gidd_to_pw_t (device_param, gidd, &pw);
1926
1927 for (int i = 0, j = gidm; i < 16; i++, j++)
1928 {
1929 plain_buf[i] = pw.hi1[0][j];
1930 }
1931
1932 plain_len = pw.pw_len;
1933
1934 char *comb_buf = (char *) device_param->combs_buf[il_pos].i;
1935 uint comb_len = device_param->combs_buf[il_pos].pw_len;
1936
1937 if (data.combs_mode == COMBINATOR_MODE_BASE_LEFT)
1938 {
1939 memcpy (plain_ptr + plain_len, comb_buf, comb_len);
1940 }
1941 else
1942 {
1943 memmove (plain_ptr + comb_len, plain_ptr, plain_len);
1944
1945 memcpy (plain_ptr, comb_buf, comb_len);
1946 }
1947
1948 plain_len += comb_len;
1949
1950 crackpos += gidvid;
1951 crackpos *= data.combs_cnt;
1952 crackpos += device_param->innerloop_pos + il_pos;
1953
1954 if (data.pw_max != PW_DICTMAX1)
1955 {
1956 if (plain_len > data.pw_max) plain_len = data.pw_max;
1957 }
1958 }
1959 else if (data.attack_mode == ATTACK_MODE_BF)
1960 {
1961 u64 l_off = device_param->kernel_params_mp_l_buf64[3] + gidvid;
1962 u64 r_off = device_param->kernel_params_mp_r_buf64[3] + il_pos;
1963
1964 uint l_start = device_param->kernel_params_mp_l_buf32[5];
1965 uint r_start = device_param->kernel_params_mp_r_buf32[5];
1966
1967 uint l_stop = device_param->kernel_params_mp_l_buf32[4];
1968 uint r_stop = device_param->kernel_params_mp_r_buf32[4];
1969
1970 sp_exec (l_off, (char *) plain_ptr + l_start, data.root_css_buf, data.markov_css_buf, l_start, l_start + l_stop);
1971 sp_exec (r_off, (char *) plain_ptr + r_start, data.root_css_buf, data.markov_css_buf, r_start, r_start + r_stop);
1972
1973 plain_len = data.css_cnt;
1974
1975 crackpos += gidvid;
1976 crackpos *= data.bfs_cnt;
1977 crackpos += device_param->innerloop_pos + il_pos;
1978 }
1979 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
1980 {
1981 u64 gidd = gidvid;
1982 u64 gidm = 0;
1983
1984 pw_t pw;
1985
1986 gidd_to_pw_t (device_param, gidd, &pw);
1987
1988 for (int i = 0, j = gidm; i < 16; i++, j++)
1989 {
1990 plain_buf[i] = pw.hi1[0][j];
1991 }
1992
1993 plain_len = pw.pw_len;
1994
1995 u64 off = device_param->kernel_params_mp_buf64[3] + il_pos;
1996
1997 uint start = 0;
1998 uint stop = device_param->kernel_params_mp_buf32[4];
1999
2000 sp_exec (off, (char *) plain_ptr + plain_len, data.root_css_buf, data.markov_css_buf, start, start + stop);
2001
2002 plain_len += start + stop;
2003
2004 crackpos += gidvid;
2005 crackpos *= data.combs_cnt;
2006 crackpos += device_param->innerloop_pos + il_pos;
2007
2008 if (data.pw_max != PW_DICTMAX1)
2009 {
2010 if (plain_len > data.pw_max) plain_len = data.pw_max;
2011 }
2012 }
2013 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
2014 {
2015 u64 gidd = gidvid;
2016 u64 gidm = 0;
2017
2018 pw_t pw;
2019
2020 gidd_to_pw_t (device_param, gidd, &pw);
2021
2022 for (int i = 0, j = gidm; i < 16; i++, j++)
2023 {
2024 plain_buf[i] = pw.hi1[0][j];
2025 }
2026
2027 plain_len = pw.pw_len;
2028
2029 u64 off = device_param->kernel_params_mp_buf64[3] + il_pos;
2030
2031 uint start = 0;
2032 uint stop = device_param->kernel_params_mp_buf32[4];
2033
2034 memmove (plain_ptr + stop, plain_ptr, plain_len);
2035
2036 sp_exec (off, (char *) plain_ptr, data.root_css_buf, data.markov_css_buf, start, start + stop);
2037
2038 plain_len += start + stop;
2039
2040 crackpos += gidvid;
2041 crackpos *= data.combs_cnt;
2042 crackpos += device_param->innerloop_pos + il_pos;
2043
2044 if (data.pw_max != PW_DICTMAX1)
2045 {
2046 if (plain_len > data.pw_max) plain_len = data.pw_max;
2047 }
2048 }
2049
2050 if (data.attack_mode == ATTACK_MODE_BF)
2051 {
2052 if (data.opti_type & OPTI_TYPE_BRUTE_FORCE) // lots of optimizations can happen here
2053 {
2054 if (data.opti_type & OPTI_TYPE_SINGLE_HASH)
2055 {
2056 if (data.opti_type & OPTI_TYPE_APPENDED_SALT)
2057 {
2058 plain_len = plain_len - data.salts_buf[0].salt_len;
2059 }
2060 }
2061
2062 if (data.opts_type & OPTS_TYPE_PT_UNICODE)
2063 {
2064 for (uint i = 0, j = 0; i < plain_len; i += 2, j += 1)
2065 {
2066 plain_ptr[j] = plain_ptr[i];
2067 }
2068
2069 plain_len = plain_len / 2;
2070 }
2071 }
2072 }
2073
2074 // if enabled, update also the potfile
2075
2076 if (pot_fp)
2077 {
2078 fprintf (pot_fp, "%s:", out_buf);
2079
2080 format_plain (pot_fp, plain_ptr, plain_len, 1);
2081
2082 fputc ('\n', pot_fp);
2083
2084 fflush (pot_fp);
2085 }
2086
2087 // outfile
2088
2089 FILE *out_fp = NULL;
2090
2091 if (outfile != NULL)
2092 {
2093 if ((out_fp = fopen (outfile, "ab")) == NULL)
2094 {
2095 log_error ("ERROR: %s: %s", outfile, strerror (errno));
2096
2097 out_fp = stdout;
2098 }
2099 }
2100 else
2101 {
2102 out_fp = stdout;
2103
2104 if (quiet == 0) clear_prompt ();
2105 }
2106
2107 format_output (out_fp, out_buf, plain_ptr, plain_len, crackpos, NULL, 0);
2108
2109 if (outfile != NULL)
2110 {
2111 if (out_fp != stdout)
2112 {
2113 fclose (out_fp);
2114 }
2115 }
2116 else
2117 {
2118 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
2119 {
2120 if ((data.devices_status != STATUS_CRACKED) && (data.status != 1))
2121 {
2122 if (quiet == 0) fprintf (stdout, "%s", PROMPT);
2123 if (quiet == 0) fflush (stdout);
2124 }
2125 }
2126 }
2127
2128 // loopback
2129
2130 if (loopback)
2131 {
2132 char *loopback_file = data.loopback_file;
2133
2134 FILE *fb_fp = NULL;
2135
2136 if ((fb_fp = fopen (loopback_file, "ab")) != NULL)
2137 {
2138 format_plain (fb_fp, plain_ptr, plain_len, 1);
2139
2140 fputc ('\n', fb_fp);
2141
2142 fclose (fb_fp);
2143 }
2144 }
2145
2146 // (rule) debug mode
2147
2148 // the next check implies that:
2149 // - (data.attack_mode == ATTACK_MODE_STRAIGHT)
2150 // - debug_mode > 0
2151
2152 if ((debug_plain_len > 0) || (debug_rule_len > 0))
2153 {
2154 if (debug_rule_len < 0) debug_rule_len = 0;
2155
2156 if ((quiet == 0) && (debug_file == NULL)) clear_prompt ();
2157
2158 format_debug (debug_file, debug_mode, debug_plain_ptr, debug_plain_len, plain_ptr, plain_len, debug_rule_buf, debug_rule_len);
2159
2160 if ((quiet == 0) && (debug_file == NULL))
2161 {
2162 fprintf (stdout, "%s", PROMPT);
2163 fflush (stdout);
2164 }
2165 }
2166 }
2167
2168 static void check_cracked (hc_device_param_t *device_param, const uint salt_pos)
2169 {
2170 salt_t *salt_buf = &data.salts_buf[salt_pos];
2171
2172 int found = 0;
2173
2174 hc_clEnqueueReadBuffer (device_param->command_queue, device_param->d_result, CL_TRUE, 0, device_param->size_results, device_param->result, 0, NULL, NULL);
2175
2176 for (uint i = 0; i < KERNEL_THREADS; i++) if (device_param->result[i] == 1) found = 1;
2177
2178 if (found == 1)
2179 {
2180 // display hack (for weak hashes etc, it could be that there is still something to clear on the current line)
2181
2182 log_info_nn ("");
2183
2184 hc_clEnqueueReadBuffer (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);
2185
2186 uint cpt_cracked = 0;
2187
2188 for (uint digest_pos = 0; digest_pos < salt_buf->digests_cnt; digest_pos++)
2189 {
2190 uint idx = salt_buf->digests_offset + digest_pos;
2191
2192 if (data.digests_shown_tmp[idx] == 0) continue;
2193
2194 if (data.digests_shown[idx] == 1) continue;
2195
2196 if ((data.opts_type & OPTS_TYPE_PT_NEVERCRACK) == 0)
2197 {
2198 data.digests_shown[idx] = 1;
2199
2200 data.digests_done++;
2201
2202 cpt_cracked++;
2203
2204 salt_buf->digests_done++;
2205
2206 if (salt_buf->digests_done == salt_buf->digests_cnt)
2207 {
2208 data.salts_shown[salt_pos] = 1;
2209
2210 data.salts_done++;
2211 }
2212 }
2213
2214 if (data.salts_done == data.salts_cnt) data.devices_status = STATUS_CRACKED;
2215
2216 check_hash (device_param, salt_pos, digest_pos);
2217 }
2218
2219 if (cpt_cracked > 0)
2220 {
2221 data.cpt_buf[data.cpt_pos].timestamp = time (NULL);
2222 data.cpt_buf[data.cpt_pos].cracked = cpt_cracked;
2223
2224 data.cpt_pos++;
2225
2226 data.cpt_total += cpt_cracked;
2227
2228 if (data.cpt_pos == CPT_BUF) data.cpt_pos = 0;
2229 }
2230
2231 if (data.opts_type & OPTS_TYPE_PT_NEVERCRACK)
2232 {
2233 // we need to reset cracked state on the device
2234 // otherwise host thinks again and again the hash was cracked
2235 // and returns invalid password each time
2236
2237 memset (data.digests_shown_tmp, 0, salt_buf->digests_cnt * sizeof (uint));
2238
2239 hc_clEnqueueWriteBuffer (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);
2240 }
2241
2242 memset (device_param->result, 0, device_param->size_results);
2243
2244 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_result, CL_TRUE, 0, device_param->size_results, device_param->result, 0, NULL, NULL);
2245 }
2246 }
2247
2248 static void save_hash ()
2249 {
2250 char *hashfile = data.hashfile;
2251
2252 char new_hashfile[256] = { 0 };
2253 char old_hashfile[256] = { 0 };
2254
2255 snprintf (new_hashfile, 255, "%s.new", hashfile);
2256 snprintf (old_hashfile, 255, "%s.old", hashfile);
2257
2258 unlink (new_hashfile);
2259
2260 char separator = data.separator;
2261
2262 FILE *fp = fopen (new_hashfile, "wb");
2263
2264 if (fp == NULL)
2265 {
2266 log_error ("ERROR: %s: %s", new_hashfile, strerror (errno));
2267
2268 exit (-1);
2269 }
2270
2271 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
2272 {
2273 if (data.salts_shown[salt_pos] == 1) continue;
2274
2275 salt_t *salt_buf = &data.salts_buf[salt_pos];
2276
2277 for (uint digest_pos = 0; digest_pos < salt_buf->digests_cnt; digest_pos++)
2278 {
2279 uint idx = salt_buf->digests_offset + digest_pos;
2280
2281 if (data.digests_shown[idx] == 1) continue;
2282
2283 if (data.hash_mode != 2500)
2284 {
2285 char out_buf[4096] = { 0 };
2286
2287 if (data.username == 1)
2288 {
2289 user_t *user = data.hash_info[idx]->user;
2290
2291 uint i;
2292
2293 for (i = 0; i < user->user_len; i++) fputc (user->user_name[i], fp);
2294
2295 fputc (separator, fp);
2296 }
2297
2298 ascii_digest (out_buf, salt_pos, digest_pos);
2299
2300 fputs (out_buf, fp);
2301
2302 log_out (fp, "");
2303 }
2304 else
2305 {
2306 hccap_t hccap;
2307
2308 to_hccap_t (&hccap, salt_pos, digest_pos);
2309
2310 fwrite (&hccap, sizeof (hccap_t), 1, fp);
2311 }
2312 }
2313 }
2314
2315 fflush (fp);
2316
2317 fclose (fp);
2318
2319 unlink (old_hashfile);
2320
2321 if (rename (hashfile, old_hashfile) != 0)
2322 {
2323 log_error ("ERROR: Rename file '%s' to '%s': %s", hashfile, old_hashfile, strerror (errno));
2324
2325 exit (-1);
2326 }
2327
2328 unlink (hashfile);
2329
2330 if (rename (new_hashfile, hashfile) != 0)
2331 {
2332 log_error ("ERROR: Rename file '%s' to '%s': %s", new_hashfile, hashfile, strerror (errno));
2333
2334 exit (-1);
2335 }
2336
2337 unlink (old_hashfile);
2338 }
2339
2340 static float find_kernel_blocks_div (const u64 total_left, const uint kernel_blocks_all)
2341 {
2342 // function called only in case kernel_blocks_all > words_left)
2343
2344 float kernel_blocks_div = (float) (total_left) / kernel_blocks_all;
2345
2346 kernel_blocks_div += kernel_blocks_div / 100;
2347
2348 u32 kernel_blocks_new = (u32) (kernel_blocks_all * kernel_blocks_div);
2349
2350 while (kernel_blocks_new < total_left)
2351 {
2352 kernel_blocks_div += kernel_blocks_div / 100;
2353
2354 kernel_blocks_new = (u32) (kernel_blocks_all * kernel_blocks_div);
2355 }
2356
2357 if (data.quiet == 0)
2358 {
2359 clear_prompt ();
2360
2361 log_info ("");
2362
2363 log_info ("INFO: approaching final keyspace, workload adjusted");
2364
2365 log_info ("");
2366
2367 fprintf (stdout, "%s", PROMPT);
2368
2369 fflush (stdout);
2370 }
2371
2372 if ((kernel_blocks_all * kernel_blocks_div) < 8) return 1;
2373
2374 return kernel_blocks_div;
2375 }
2376
2377 static void run_kernel (const uint kern_run, hc_device_param_t *device_param, const uint num)
2378 {
2379 uint num_elements = num;
2380
2381 device_param->kernel_params_buf32[30] = data.combs_mode;
2382 device_param->kernel_params_buf32[31] = num;
2383
2384 uint kernel_threads = device_param->kernel_threads;
2385
2386 while (num_elements % kernel_threads) num_elements++;
2387
2388 cl_kernel kernel = NULL;
2389
2390 switch (kern_run)
2391 {
2392 case KERN_RUN_1: kernel = device_param->kernel1; break;
2393 case KERN_RUN_12: kernel = device_param->kernel12; break;
2394 case KERN_RUN_2: kernel = device_param->kernel2; break;
2395 case KERN_RUN_23: kernel = device_param->kernel23; break;
2396 case KERN_RUN_3: kernel = device_param->kernel3; break;
2397 }
2398
2399 hc_clSetKernelArg (kernel, 21, sizeof (cl_uint), device_param->kernel_params[21]);
2400 hc_clSetKernelArg (kernel, 22, sizeof (cl_uint), device_param->kernel_params[22]);
2401 hc_clSetKernelArg (kernel, 23, sizeof (cl_uint), device_param->kernel_params[23]);
2402 hc_clSetKernelArg (kernel, 24, sizeof (cl_uint), device_param->kernel_params[24]);
2403 hc_clSetKernelArg (kernel, 25, sizeof (cl_uint), device_param->kernel_params[25]);
2404 hc_clSetKernelArg (kernel, 26, sizeof (cl_uint), device_param->kernel_params[26]);
2405 hc_clSetKernelArg (kernel, 27, sizeof (cl_uint), device_param->kernel_params[27]);
2406 hc_clSetKernelArg (kernel, 28, sizeof (cl_uint), device_param->kernel_params[28]);
2407 hc_clSetKernelArg (kernel, 29, sizeof (cl_uint), device_param->kernel_params[29]);
2408 hc_clSetKernelArg (kernel, 30, sizeof (cl_uint), device_param->kernel_params[30]);
2409 hc_clSetKernelArg (kernel, 31, sizeof (cl_uint), device_param->kernel_params[31]);
2410
2411 if ((data.opts_type & OPTS_TYPE_PT_BITSLICE) && (data.attack_mode == ATTACK_MODE_BF))
2412 {
2413 const size_t global_work_size[3] = { num_elements, 32, 1 };
2414 const size_t local_work_size[3] = { kernel_threads / 32, 32, 1 };
2415
2416 hc_clEnqueueNDRangeKernel (device_param->command_queue, kernel, 2, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2417 }
2418 else
2419 {
2420 const size_t global_work_size[3] = { num_elements, 1, 1 };
2421 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2422
2423 hc_clEnqueueNDRangeKernel (device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2424 }
2425
2426 hc_clFlush (device_param->command_queue);
2427
2428 hc_clFinish (device_param->command_queue);
2429 }
2430
2431 static void run_kernel_mp (const uint kern_run, hc_device_param_t *device_param, const uint num)
2432 {
2433 uint num_elements = num;
2434
2435 switch (kern_run)
2436 {
2437 case KERN_RUN_MP: device_param->kernel_params_mp_buf32[8] = num; break;
2438 case KERN_RUN_MP_R: device_param->kernel_params_mp_r_buf32[8] = num; break;
2439 case KERN_RUN_MP_L: device_param->kernel_params_mp_l_buf32[9] = num; break;
2440 }
2441
2442 // causes problems with special threads like in bcrypt
2443 // const uint kernel_threads = device_param->kernel_threads;
2444
2445 const uint kernel_threads = KERNEL_THREADS;
2446
2447 while (num_elements % kernel_threads) num_elements++;
2448
2449 cl_kernel kernel = NULL;
2450
2451 switch (kern_run)
2452 {
2453 case KERN_RUN_MP: kernel = device_param->kernel_mp; break;
2454 case KERN_RUN_MP_R: kernel = device_param->kernel_mp_r; break;
2455 case KERN_RUN_MP_L: kernel = device_param->kernel_mp_l; break;
2456 }
2457
2458 switch (kern_run)
2459 {
2460 case KERN_RUN_MP: hc_clSetKernelArg (kernel, 3, sizeof (cl_ulong), device_param->kernel_params_mp[3]);
2461 hc_clSetKernelArg (kernel, 4, sizeof (cl_uint), device_param->kernel_params_mp[4]);
2462 hc_clSetKernelArg (kernel, 5, sizeof (cl_uint), device_param->kernel_params_mp[5]);
2463 hc_clSetKernelArg (kernel, 6, sizeof (cl_uint), device_param->kernel_params_mp[6]);
2464 hc_clSetKernelArg (kernel, 7, sizeof (cl_uint), device_param->kernel_params_mp[7]);
2465 hc_clSetKernelArg (kernel, 8, sizeof (cl_uint), device_param->kernel_params_mp[8]);
2466 break;
2467 case KERN_RUN_MP_R: hc_clSetKernelArg (kernel, 3, sizeof (cl_ulong), device_param->kernel_params_mp_r[3]);
2468 hc_clSetKernelArg (kernel, 4, sizeof (cl_uint), device_param->kernel_params_mp_r[4]);
2469 hc_clSetKernelArg (kernel, 5, sizeof (cl_uint), device_param->kernel_params_mp_r[5]);
2470 hc_clSetKernelArg (kernel, 6, sizeof (cl_uint), device_param->kernel_params_mp_r[6]);
2471 hc_clSetKernelArg (kernel, 7, sizeof (cl_uint), device_param->kernel_params_mp_r[7]);
2472 hc_clSetKernelArg (kernel, 8, sizeof (cl_uint), device_param->kernel_params_mp_r[8]);
2473 break;
2474 case KERN_RUN_MP_L: hc_clSetKernelArg (kernel, 3, sizeof (cl_ulong), device_param->kernel_params_mp_l[3]);
2475 hc_clSetKernelArg (kernel, 4, sizeof (cl_uint), device_param->kernel_params_mp_l[4]);
2476 hc_clSetKernelArg (kernel, 5, sizeof (cl_uint), device_param->kernel_params_mp_l[5]);
2477 hc_clSetKernelArg (kernel, 6, sizeof (cl_uint), device_param->kernel_params_mp_l[6]);
2478 hc_clSetKernelArg (kernel, 7, sizeof (cl_uint), device_param->kernel_params_mp_l[7]);
2479 hc_clSetKernelArg (kernel, 8, sizeof (cl_uint), device_param->kernel_params_mp_l[8]);
2480 hc_clSetKernelArg (kernel, 9, sizeof (cl_uint), device_param->kernel_params_mp_l[9]);
2481 break;
2482 }
2483
2484 const size_t global_work_size[3] = { num_elements, 1, 1 };
2485 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2486
2487 hc_clEnqueueNDRangeKernel (device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2488
2489 hc_clFlush (device_param->command_queue);
2490
2491 hc_clFinish (device_param->command_queue);
2492 }
2493
2494 static void run_kernel_tb (hc_device_param_t *device_param, const uint num)
2495 {
2496 uint num_elements = num;
2497
2498 uint kernel_threads = device_param->kernel_threads;
2499
2500 while (num_elements % kernel_threads) num_elements++;
2501
2502 cl_kernel kernel = device_param->kernel_tb;
2503
2504 const size_t global_work_size[3] = { num_elements, 1, 1 };
2505 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2506
2507 hc_clEnqueueNDRangeKernel (device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2508
2509 hc_clFlush (device_param->command_queue);
2510
2511 hc_clFinish (device_param->command_queue);
2512 }
2513
2514 static void run_kernel_tm (hc_device_param_t *device_param)
2515 {
2516 const uint num_elements = 1024; // fixed
2517
2518 const uint kernel_threads = 32;
2519
2520 cl_kernel kernel = device_param->kernel_tm;
2521
2522 const size_t global_work_size[3] = { num_elements, 1, 1 };
2523 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2524
2525 hc_clEnqueueNDRangeKernel (device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2526
2527 hc_clFlush (device_param->command_queue);
2528
2529 hc_clFinish (device_param->command_queue);
2530 }
2531
2532 static void run_kernel_amp (hc_device_param_t *device_param, const uint num)
2533 {
2534 uint num_elements = num;
2535
2536 device_param->kernel_params_amp_buf32[5] = data.combs_mode;
2537 device_param->kernel_params_amp_buf32[6] = num_elements;
2538
2539 // causes problems with special threads like in bcrypt
2540 // const uint kernel_threads = device_param->kernel_threads;
2541
2542 const uint kernel_threads = KERNEL_THREADS;
2543
2544 while (num_elements % kernel_threads) num_elements++;
2545
2546 cl_kernel kernel = device_param->kernel_amp;
2547
2548 hc_clSetKernelArg (kernel, 5, sizeof (cl_uint), device_param->kernel_params_amp[5]);
2549 hc_clSetKernelArg (kernel, 6, sizeof (cl_uint), device_param->kernel_params_amp[6]);
2550
2551 const size_t global_work_size[3] = { num_elements, 1, 1 };
2552 const size_t local_work_size[3] = { kernel_threads, 1, 1 };
2553
2554 hc_clEnqueueNDRangeKernel (device_param->command_queue, kernel, 1, NULL, global_work_size, local_work_size, 0, NULL, NULL);
2555
2556 hc_clFlush (device_param->command_queue);
2557
2558 hc_clFinish (device_param->command_queue);
2559 }
2560
2561 static void run_kernel_bzero (hc_device_param_t *device_param, cl_mem buf, const uint size)
2562 {
2563 if (device_param->vendor_id == VENDOR_ID_AMD)
2564 {
2565 // So far tested, amd is the only supporting this OpenCL 1.2 function without segfaulting
2566
2567 const cl_uchar zero = 0;
2568
2569 hc_clEnqueueFillBuffer (device_param->command_queue, buf, &zero, sizeof (cl_uchar), 0, size, 0, NULL, NULL);
2570 }
2571 else
2572 {
2573 // NOTE: clEnqueueFillBuffer () always fails with -59
2574 // IOW, it's not supported by Nvidia ForceWare <= 352.21, also pocl segfaults
2575 // How's that possible, OpenCL 1.2 support is advertised??
2576 // We need to workaround...
2577
2578 #define FILLSZ 0x100000
2579
2580 char *tmp = (char *) mymalloc (FILLSZ);
2581
2582 memset (tmp, 0, FILLSZ);
2583
2584 for (uint i = 0; i < size; i += FILLSZ)
2585 {
2586 const int left = size - i;
2587
2588 const int fillsz = MIN (FILLSZ, left);
2589
2590 hc_clEnqueueWriteBuffer (device_param->command_queue, buf, CL_TRUE, i, fillsz, tmp, 0, NULL, NULL);
2591 }
2592
2593 myfree (tmp);
2594 }
2595 }
2596
2597 static int run_rule_engine (const int rule_len, const char *rule_buf)
2598 {
2599 if (rule_len == 0)
2600 {
2601 return 0;
2602 }
2603 else if (rule_len == 1)
2604 {
2605 if (rule_buf[0] == RULE_OP_MANGLE_NOOP) return 0;
2606 }
2607
2608 return 1;
2609 }
2610
2611 static void run_copy (hc_device_param_t *device_param, const uint pws_cnt)
2612 {
2613 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
2614 {
2615 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_pws_buf, CL_TRUE, 0, pws_cnt * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2616 }
2617 else if (data.attack_kern == ATTACK_KERN_COMBI)
2618 {
2619 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_pws_buf, CL_TRUE, 0, pws_cnt * sizeof (pw_t), device_param->pws_buf, 0, NULL, NULL);
2620 }
2621 else if (data.attack_kern == ATTACK_KERN_BF)
2622 {
2623 const u64 off = device_param->words_off;
2624
2625 device_param->kernel_params_mp_l_buf64[3] = off;
2626
2627 run_kernel_mp (KERN_RUN_MP_L, device_param, pws_cnt);
2628 }
2629 }
2630
2631 static void run_cracker (hc_device_param_t *device_param, const uint pw_cnt, const uint pws_cnt)
2632 {
2633 const uint kernel_loops = data.kernel_loops;
2634
2635 // init speed timer
2636
2637 uint speed_pos = device_param->speed_pos;
2638
2639 #ifdef _POSIX
2640 if (device_param->timer_speed.tv_sec == 0)
2641 {
2642 hc_timer_set (&device_param->timer_speed);
2643 }
2644 #endif
2645
2646 #ifdef _WIN
2647 if (device_param->timer_speed.QuadPart == 0)
2648 {
2649 hc_timer_set (&device_param->timer_speed);
2650 }
2651 #endif
2652
2653 // find higest password length, this is for optimization stuff
2654
2655 uint highest_pw_len = 0;
2656
2657 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
2658 {
2659 }
2660 else if (data.attack_kern == ATTACK_KERN_COMBI)
2661 {
2662 }
2663 else if (data.attack_kern == ATTACK_KERN_BF)
2664 {
2665 highest_pw_len = device_param->kernel_params_mp_l_buf32[4]
2666 + device_param->kernel_params_mp_l_buf32[5];
2667 }
2668
2669 // bitslice optimization stuff
2670
2671 if (data.attack_mode == ATTACK_MODE_BF)
2672 {
2673 if (data.opts_type & OPTS_TYPE_PT_BITSLICE)
2674 {
2675 run_kernel_tb (device_param, pws_cnt);
2676 }
2677 }
2678
2679 // iteration type
2680
2681 uint innerloop_step = 0;
2682 uint innerloop_cnt = 0;
2683
2684 if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL) innerloop_step = kernel_loops;
2685 else innerloop_step = 1;
2686
2687 if (data.attack_kern == ATTACK_KERN_STRAIGHT) innerloop_cnt = data.kernel_rules_cnt;
2688 else if (data.attack_kern == ATTACK_KERN_COMBI) innerloop_cnt = data.combs_cnt;
2689 else if (data.attack_kern == ATTACK_KERN_BF) innerloop_cnt = data.bfs_cnt;
2690
2691 // loop start: most outer loop = salt iteration, then innerloops (if multi)
2692
2693 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
2694 {
2695 while (data.devices_status == STATUS_PAUSED) hc_sleep (1);
2696
2697 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
2698
2699 if (data.devices_status == STATUS_CRACKED) break;
2700 if (data.devices_status == STATUS_ABORTED) break;
2701 if (data.devices_status == STATUS_QUIT) break;
2702 if (data.devices_status == STATUS_BYPASS) break;
2703
2704 if (data.salts_shown[salt_pos] == 1) continue;
2705
2706 salt_t *salt_buf = &data.salts_buf[salt_pos];
2707
2708 device_param->kernel_params_buf32[24] = salt_pos;
2709 device_param->kernel_params_buf32[28] = salt_buf->digests_cnt;
2710 device_param->kernel_params_buf32[29] = salt_buf->digests_offset;
2711
2712 FILE *combs_fp = device_param->combs_fp;
2713
2714 if (data.attack_mode == ATTACK_MODE_COMBI)
2715 {
2716 rewind (combs_fp);
2717 }
2718
2719 // innerloops
2720
2721 for (uint innerloop_pos = 0; innerloop_pos < innerloop_cnt; innerloop_pos += innerloop_step)
2722 {
2723 while (data.devices_status == STATUS_PAUSED) hc_sleep (1);
2724
2725 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
2726
2727 if (data.devices_status == STATUS_CRACKED) break;
2728 if (data.devices_status == STATUS_ABORTED) break;
2729 if (data.devices_status == STATUS_QUIT) break;
2730 if (data.devices_status == STATUS_BYPASS) break;
2731
2732 uint innerloop_left = innerloop_cnt - innerloop_pos;
2733
2734 if (innerloop_left > innerloop_step) innerloop_left = innerloop_step;
2735
2736 device_param->innerloop_pos = innerloop_pos;
2737 device_param->innerloop_left = innerloop_left;
2738
2739 device_param->kernel_params_buf32[27] = innerloop_left;
2740
2741 if (innerloop_left == 0) continue;
2742
2743 // initialize amplifiers
2744
2745 if (data.attack_mode == ATTACK_MODE_COMBI)
2746 {
2747 char line_buf[BUFSIZ];
2748
2749 uint i = 0;
2750
2751 while (i < innerloop_left)
2752 {
2753 if (feof (combs_fp)) break;
2754
2755 int line_len = fgetl (combs_fp, line_buf);
2756
2757 if (line_len >= PW_MAX1) continue;
2758
2759 line_len = convert_from_hex (line_buf, line_len);
2760
2761 char *line_buf_new = line_buf;
2762
2763 if (run_rule_engine (data.rule_len_r, data.rule_buf_r))
2764 {
2765 char rule_buf_out[BLOCK_SIZE] = { 0 };
2766
2767 int rule_len_out = _old_apply_rule (data.rule_buf_r, data.rule_len_r, line_buf, line_len, rule_buf_out);
2768
2769 if (rule_len_out < 0)
2770 {
2771 data.words_progress_rejected[salt_pos] += pw_cnt;
2772
2773 continue;
2774 }
2775
2776 line_len = rule_len_out;
2777
2778 line_buf_new = rule_buf_out;
2779 }
2780
2781 line_len = MIN (line_len, PW_DICTMAX);
2782
2783 u8 *ptr = (u8 *) device_param->combs_buf[i].i;
2784
2785 memcpy (ptr, line_buf_new, line_len);
2786
2787 memset (ptr + line_len, 0, PW_DICTMAX1 - line_len);
2788
2789 if (data.opts_type & OPTS_TYPE_PT_UPPER)
2790 {
2791 uppercase (ptr, line_len);
2792 }
2793
2794 if (data.combs_mode == COMBINATOR_MODE_BASE_LEFT)
2795 {
2796 if (data.opts_type & OPTS_TYPE_PT_ADD80)
2797 {
2798 ptr[line_len] = 0x80;
2799 }
2800
2801 if (data.opts_type & OPTS_TYPE_PT_ADD01)
2802 {
2803 ptr[line_len] = 0x01;
2804 }
2805 }
2806
2807 device_param->combs_buf[i].pw_len = line_len;
2808
2809 i++;
2810 }
2811
2812 for (uint j = i; j < innerloop_left; j++)
2813 {
2814 device_param->combs_buf[j].i[0] = 0;
2815 device_param->combs_buf[j].i[1] = 0;
2816 device_param->combs_buf[j].i[2] = 0;
2817 device_param->combs_buf[j].i[3] = 0;
2818 device_param->combs_buf[j].i[4] = 0;
2819 device_param->combs_buf[j].i[5] = 0;
2820 device_param->combs_buf[j].i[6] = 0;
2821 device_param->combs_buf[j].i[7] = 0;
2822
2823 device_param->combs_buf[j].pw_len = 0;
2824 }
2825
2826 innerloop_left = i;
2827 }
2828 else if (data.attack_mode == ATTACK_MODE_BF)
2829 {
2830 u64 off = innerloop_pos;
2831
2832 device_param->kernel_params_mp_r_buf64[3] = off;
2833
2834 run_kernel_mp (KERN_RUN_MP_R, device_param, innerloop_left);
2835 }
2836 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
2837 {
2838 u64 off = innerloop_pos;
2839
2840 device_param->kernel_params_mp_buf64[3] = off;
2841
2842 run_kernel_mp (KERN_RUN_MP, device_param, innerloop_left);
2843 }
2844 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
2845 {
2846 u64 off = innerloop_pos;
2847
2848 device_param->kernel_params_mp_buf64[3] = off;
2849
2850 run_kernel_mp (KERN_RUN_MP, device_param, innerloop_left);
2851 }
2852
2853 // copy amplifiers
2854
2855 if (data.attack_mode == ATTACK_MODE_STRAIGHT)
2856 {
2857 hc_clEnqueueCopyBuffer (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);
2858 }
2859 else if (data.attack_mode == ATTACK_MODE_COMBI)
2860 {
2861 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_combs_c, CL_TRUE, 0, innerloop_left * sizeof (comb_t), device_param->combs_buf, 0, NULL, NULL);
2862 }
2863 else if (data.attack_mode == ATTACK_MODE_BF)
2864 {
2865 hc_clEnqueueCopyBuffer (device_param->command_queue, device_param->d_bfs, device_param->d_bfs_c, 0, 0, innerloop_left * sizeof (bf_t), 0, NULL, NULL);
2866 }
2867 else if (data.attack_mode == ATTACK_MODE_HYBRID1)
2868 {
2869 hc_clEnqueueCopyBuffer (device_param->command_queue, device_param->d_combs, device_param->d_combs_c, 0, 0, innerloop_left * sizeof (comb_t), 0, NULL, NULL);
2870 }
2871 else if (data.attack_mode == ATTACK_MODE_HYBRID2)
2872 {
2873 hc_clEnqueueCopyBuffer (device_param->command_queue, device_param->d_combs, device_param->d_combs_c, 0, 0, innerloop_left * sizeof (comb_t), 0, NULL, NULL);
2874 }
2875
2876 if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
2877 {
2878 if (data.attack_mode == ATTACK_MODE_BF)
2879 {
2880 if (data.opts_type & OPTS_TYPE_PT_BITSLICE)
2881 {
2882 const uint size_tm = 32 * sizeof (bs_word_t);
2883
2884 run_kernel_bzero (device_param, device_param->d_tm_c, size_tm);
2885
2886 run_kernel_tm (device_param);
2887
2888 hc_clEnqueueCopyBuffer (device_param->command_queue, device_param->d_tm_c, device_param->d_bfs_c, 0, 0, size_tm, 0, NULL, NULL);
2889 }
2890 }
2891
2892 if (highest_pw_len < 16)
2893 {
2894 run_kernel (KERN_RUN_1, device_param, pws_cnt);
2895 }
2896 else if (highest_pw_len < 32)
2897 {
2898 run_kernel (KERN_RUN_2, device_param, pws_cnt);
2899 }
2900 else
2901 {
2902 run_kernel (KERN_RUN_3, device_param, pws_cnt);
2903 }
2904 }
2905 else
2906 {
2907 run_kernel_amp (device_param, pws_cnt);
2908
2909 run_kernel (KERN_RUN_1, device_param, pws_cnt);
2910
2911 if (data.opts_type & OPTS_TYPE_HOOK12)
2912 {
2913 run_kernel (KERN_RUN_12, device_param, pws_cnt);
2914 }
2915
2916 uint iter = salt_buf->salt_iter;
2917
2918 for (uint loop_pos = 0; loop_pos < iter; loop_pos += kernel_loops)
2919 {
2920 uint loop_left = iter - loop_pos;
2921
2922 loop_left = MIN (loop_left, kernel_loops);
2923
2924 device_param->kernel_params_buf32[25] = loop_pos;
2925 device_param->kernel_params_buf32[26] = loop_left;
2926
2927 run_kernel (KERN_RUN_2, device_param, pws_cnt);
2928
2929 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
2930
2931 if (data.devices_status == STATUS_CRACKED) break;
2932 if (data.devices_status == STATUS_ABORTED) break;
2933 if (data.devices_status == STATUS_QUIT) break;
2934 }
2935
2936 if (data.opts_type & OPTS_TYPE_HOOK23)
2937 {
2938 run_kernel (KERN_RUN_23, device_param, pws_cnt);
2939
2940 hc_clEnqueueReadBuffer (device_param->command_queue, device_param->d_hooks, CL_TRUE, 0, device_param->size_hooks, device_param->hooks_buf, 0, NULL, NULL);
2941
2942 // do something with data
2943
2944 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_hooks, CL_TRUE, 0, device_param->size_hooks, device_param->hooks_buf, 0, NULL, NULL);
2945 }
2946
2947 run_kernel (KERN_RUN_3, device_param, pws_cnt);
2948 }
2949
2950 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
2951
2952 if (data.devices_status == STATUS_CRACKED) break;
2953 if (data.devices_status == STATUS_ABORTED) break;
2954 if (data.devices_status == STATUS_QUIT) break;
2955
2956 /**
2957 * result
2958 */
2959
2960 hc_thread_mutex_lock (mux_display);
2961
2962 check_cracked (device_param, salt_pos);
2963
2964 hc_thread_mutex_unlock (mux_display);
2965
2966 /**
2967 * progress
2968 */
2969
2970 u64 perf_sum_all = (u64) pw_cnt * (u64) innerloop_left;
2971
2972 hc_thread_mutex_lock (mux_counter);
2973
2974 data.words_progress_done[salt_pos] += perf_sum_all;
2975
2976 hc_thread_mutex_unlock (mux_counter);
2977
2978 /**
2979 * speed
2980 */
2981
2982 float speed_ms;
2983
2984 hc_timer_get (device_param->timer_speed, speed_ms);
2985
2986 hc_timer_set (&device_param->timer_speed);
2987
2988 hc_thread_mutex_lock (mux_display);
2989
2990 device_param->speed_cnt[speed_pos] = perf_sum_all;
2991
2992 device_param->speed_ms[speed_pos] = speed_ms;
2993
2994 device_param->speed_rec[speed_pos] = device_param->timer_speed;
2995
2996 hc_thread_mutex_unlock (mux_display);
2997
2998 speed_pos++;
2999
3000 if (speed_pos == SPEED_CACHE)
3001 {
3002 speed_pos = 0;
3003 }
3004 }
3005 }
3006
3007 device_param->speed_pos = speed_pos;
3008 }
3009
3010 static void load_segment (wl_data_t *wl_data, FILE *fd)
3011 {
3012 // NOTE: use (never changing) ->incr here instead of ->avail otherwise the buffer gets bigger and bigger
3013
3014 wl_data->pos = 0;
3015
3016 wl_data->cnt = fread (wl_data->buf, 1, wl_data->incr - 1000, fd);
3017
3018 wl_data->buf[wl_data->cnt] = 0;
3019
3020 if (wl_data->cnt == 0) return;
3021
3022 if (wl_data->buf[wl_data->cnt - 1] == '\n') return;
3023
3024 while (!feof (fd))
3025 {
3026 if (wl_data->cnt == wl_data->avail)
3027 {
3028 wl_data->buf = (char *) myrealloc (wl_data->buf, wl_data->avail, wl_data->incr);
3029
3030 wl_data->avail += wl_data->incr;
3031 }
3032
3033 const int c = fgetc (fd);
3034
3035 if (c == EOF) break;
3036
3037 wl_data->buf[wl_data->cnt] = (char) c;
3038
3039 wl_data->cnt++;
3040
3041 if (c == '\n') break;
3042 }
3043
3044 // ensure stream ends with a newline
3045
3046 if (wl_data->buf[wl_data->cnt - 1] != '\n')
3047 {
3048 wl_data->cnt++;
3049
3050 wl_data->buf[wl_data->cnt - 1] = '\n';
3051 }
3052
3053 return;
3054 }
3055
3056 static void get_next_word_lm (char *buf, u32 sz, u32 *len, u32 *off)
3057 {
3058 char *ptr = buf;
3059
3060 for (u32 i = 0; i < sz; i++, ptr++)
3061 {
3062 if (*ptr >= 'a' && *ptr <= 'z') *ptr -= 0x20;
3063
3064 if (i == 7)
3065 {
3066 *off = i;
3067 *len = i;
3068
3069 return;
3070 }
3071
3072 if (*ptr != '\n') continue;
3073
3074 *off = i + 1;
3075
3076 if ((i > 0) && (buf[i - 1] == '\r')) i--;
3077
3078 *len = i;
3079
3080 return;
3081 }
3082
3083 *off = sz;
3084 *len = sz;
3085 }
3086
3087 static void get_next_word_uc (char *buf, u32 sz, u32 *len, u32 *off)
3088 {
3089 char *ptr = buf;
3090
3091 for (u32 i = 0; i < sz; i++, ptr++)
3092 {
3093 if (*ptr >= 'a' && *ptr <= 'z') *ptr -= 0x20;
3094
3095 if (*ptr != '\n') continue;
3096
3097 *off = i + 1;
3098
3099 if ((i > 0) && (buf[i - 1] == '\r')) i--;
3100
3101 *len = i;
3102
3103 return;
3104 }
3105
3106 *off = sz;
3107 *len = sz;
3108 }
3109
3110 static void get_next_word_std (char *buf, u32 sz, u32 *len, u32 *off)
3111 {
3112 char *ptr = buf;
3113
3114 for (u32 i = 0; i < sz; i++, ptr++)
3115 {
3116 if (*ptr != '\n') continue;
3117
3118 *off = i + 1;
3119
3120 if ((i > 0) && (buf[i - 1] == '\r')) i--;
3121
3122 *len = i;
3123
3124 return;
3125 }
3126
3127 *off = sz;
3128 *len = sz;
3129 }
3130
3131 static void get_next_word (wl_data_t *wl_data, FILE *fd, char **out_buf, uint *out_len)
3132 {
3133 while (wl_data->pos < wl_data->cnt)
3134 {
3135 uint off;
3136 uint len;
3137
3138 char *ptr = wl_data->buf + wl_data->pos;
3139
3140 get_next_word_func (ptr, wl_data->cnt - wl_data->pos, &len, &off);
3141
3142 wl_data->pos += off;
3143
3144 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
3145 {
3146 char rule_buf_out[BLOCK_SIZE] = { 0 };
3147
3148 int rule_len_out = -1;
3149
3150 if (len < BLOCK_SIZE)
3151 {
3152 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, ptr, len, rule_buf_out);
3153 }
3154
3155 if (rule_len_out < 0)
3156 {
3157 continue;
3158 }
3159
3160 if (rule_len_out > PW_MAX)
3161 {
3162 continue;
3163 }
3164 }
3165 else
3166 {
3167 if (len > PW_MAX)
3168 {
3169 continue;
3170 }
3171 }
3172
3173 *out_buf = ptr;
3174 *out_len = len;
3175
3176 return;
3177 }
3178
3179 if (feof (fd))
3180 {
3181 fprintf (stderr, "bug!!\n");
3182
3183 return;
3184 }
3185
3186 load_segment (wl_data, fd);
3187
3188 get_next_word (wl_data, fd, out_buf, out_len);
3189 }
3190
3191 #ifdef _POSIX
3192 static u64 count_words (wl_data_t *wl_data, FILE *fd, char *dictfile, dictstat_t *dictstat_base, size_t *dictstat_nmemb)
3193 #endif
3194
3195 #ifdef _WIN
3196 static u64 count_words (wl_data_t *wl_data, FILE *fd, char *dictfile, dictstat_t *dictstat_base, uint *dictstat_nmemb)
3197 #endif
3198 {
3199 hc_signal (NULL);
3200
3201 dictstat_t d;
3202
3203 d.cnt = 0;
3204
3205 #ifdef _POSIX
3206 fstat (fileno (fd), &d.stat);
3207 #endif
3208
3209 #ifdef _WIN
3210 _fstat64 (fileno (fd), &d.stat);
3211 #endif
3212
3213 d.stat.st_mode = 0;
3214 d.stat.st_nlink = 0;
3215 d.stat.st_uid = 0;
3216 d.stat.st_gid = 0;
3217 d.stat.st_rdev = 0;
3218 d.stat.st_atime = 0;
3219
3220 #ifdef _POSIX
3221 d.stat.st_blksize = 0;
3222 d.stat.st_blocks = 0;
3223 #endif
3224
3225 if (d.stat.st_size == 0) return 0;
3226
3227 dictstat_t *d_cache = (dictstat_t *) lfind (&d, dictstat_base, dictstat_nmemb, sizeof (dictstat_t), sort_by_dictstat);
3228
3229 if (run_rule_engine (data.rule_len_l, data.rule_buf_l) == 0)
3230 {
3231 if (d_cache)
3232 {
3233 u64 cnt = d_cache->cnt;
3234
3235 u64 keyspace = cnt;
3236
3237 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
3238 {
3239 keyspace *= data.kernel_rules_cnt;
3240 }
3241 else if (data.attack_kern == ATTACK_KERN_COMBI)
3242 {
3243 keyspace *= data.combs_cnt;
3244 }
3245
3246 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);
3247 if (data.quiet == 0) log_info ("");
3248
3249 hc_signal (sigHandler_default);
3250
3251 return (keyspace);
3252 }
3253 }
3254
3255 time_t now = 0;
3256 time_t prev = 0;
3257
3258 u64 comp = 0;
3259 u64 cnt = 0;
3260 u64 cnt2 = 0;
3261
3262 while (!feof (fd))
3263 {
3264 load_segment (wl_data, fd);
3265
3266 comp += wl_data->cnt;
3267
3268 u32 i = 0;
3269
3270 while (i < wl_data->cnt)
3271 {
3272 u32 len;
3273 u32 off;
3274
3275 get_next_word_func (wl_data->buf + i, wl_data->cnt - i, &len, &off);
3276
3277 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
3278 {
3279 char rule_buf_out[BLOCK_SIZE] = { 0 };
3280
3281 int rule_len_out = -1;
3282
3283 if (len < BLOCK_SIZE)
3284 {
3285 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, wl_data->buf + i, len, rule_buf_out);
3286 }
3287
3288 if (rule_len_out < 0)
3289 {
3290 len = PW_MAX1;
3291 }
3292 else
3293 {
3294 len = rule_len_out;
3295 }
3296 }
3297
3298 if (len < PW_MAX1)
3299 {
3300 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
3301 {
3302 cnt += data.kernel_rules_cnt;
3303 }
3304 else if (data.attack_kern == ATTACK_KERN_COMBI)
3305 {
3306 cnt += data.combs_cnt;
3307 }
3308
3309 d.cnt++;
3310 }
3311
3312 i += off;
3313
3314 cnt2++;
3315 }
3316
3317 time (&now);
3318
3319 if ((now - prev) == 0) continue;
3320
3321 float percent = (float) comp / (float) d.stat.st_size;
3322
3323 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);
3324
3325 time (&prev);
3326 }
3327
3328 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);
3329 if (data.quiet == 0) log_info ("");
3330
3331 lsearch (&d, dictstat_base, dictstat_nmemb, sizeof (dictstat_t), sort_by_dictstat);
3332
3333 hc_signal (sigHandler_default);
3334
3335 return (cnt);
3336 }
3337
3338 static void pw_transpose_to_hi1 (const pw_t *p1, pw_t *p2)
3339 {
3340 memcpy (p2->hi1, p1->hi1, 64 * sizeof (uint));
3341 }
3342
3343 static uint pw_add_to_hc1 (hc_device_param_t *device_param, const u8 *pw_buf, const uint pw_len)
3344 {
3345 if (data.devices_status == STATUS_BYPASS) return 0;
3346
3347 pw_cache_t *pw_cache = device_param->pw_caches + pw_len;
3348
3349 uint cache_cnt = pw_cache->cnt;
3350
3351 u8 *pw_hc1 = pw_cache->pw_buf.hc1[cache_cnt];
3352
3353 memcpy (pw_hc1, pw_buf, pw_len);
3354
3355 memset (pw_hc1 + pw_len, 0, 256 - pw_len);
3356
3357 uint pws_cnt = device_param->pws_cnt;
3358
3359 cache_cnt++;
3360
3361 pw_t *pw = device_param->pws_buf + pws_cnt;
3362
3363 device_param->pw_transpose (&pw_cache->pw_buf, pw);
3364
3365 pw->pw_len = pw_len;
3366
3367 pws_cnt++;
3368
3369 device_param->pws_cnt = pws_cnt;
3370 device_param->pw_cnt = pws_cnt * 1;
3371
3372 cache_cnt = 0;
3373
3374 pw_cache->cnt = cache_cnt;
3375
3376 return pws_cnt;
3377 }
3378
3379 static void *thread_monitor (void *p)
3380 {
3381 uint runtime_check = 0;
3382 uint remove_check = 0;
3383 uint status_check = 0;
3384 uint restore_check = 0;
3385
3386 uint restore_left = data.restore_timer;
3387 uint remove_left = data.remove_timer;
3388 uint status_left = data.status_timer;
3389
3390 #ifdef HAVE_HWMON
3391 uint hwmon_check = 0;
3392
3393 // these variables are mainly used for fan control (AMD only)
3394
3395 int *fan_speed_chgd = (int *) mycalloc (data.devices_cnt, sizeof (int));
3396
3397 // temperature controller "loopback" values
3398
3399 int *temp_diff_old = (int *) mycalloc (data.devices_cnt, sizeof (int));
3400 int *temp_diff_sum = (int *) mycalloc (data.devices_cnt, sizeof (int));
3401
3402 #ifdef HAVE_ADL
3403 int temp_threshold = 1; // degrees celcius
3404
3405 int fan_speed_min = 15; // in percentage
3406 int fan_speed_max = 100;
3407 #endif // HAVE_ADL
3408
3409 time_t last_temp_check_time;
3410 #endif // HAVE_HWMON
3411
3412 uint sleep_time = 1;
3413
3414 if (data.runtime)
3415 {
3416 runtime_check = 1;
3417 }
3418
3419 if (data.restore_timer)
3420 {
3421 restore_check = 1;
3422 }
3423
3424 if ((data.remove == 1) && (data.hashlist_mode == HL_MODE_FILE))
3425 {
3426 remove_check = 1;
3427 }
3428
3429 if (data.status == 1)
3430 {
3431 status_check = 1;
3432 }
3433
3434 #ifdef HAVE_HWMON
3435 if (data.gpu_temp_disable == 0)
3436 {
3437 time (&last_temp_check_time);
3438
3439 hwmon_check = 1;
3440 }
3441 #endif
3442
3443 if ((runtime_check == 0) && (remove_check == 0) && (status_check == 0) && (restore_check == 0))
3444 {
3445 #ifdef HAVE_HWMON
3446 if (hwmon_check == 0)
3447 #endif
3448 return (p);
3449 }
3450
3451 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
3452 {
3453 hc_sleep (sleep_time);
3454
3455 if (data.devices_status != STATUS_RUNNING) continue;
3456
3457 #ifdef HAVE_HWMON
3458 if (hwmon_check == 1)
3459 {
3460 hc_thread_mutex_lock (mux_adl);
3461
3462 time_t temp_check_time;
3463
3464 time (&temp_check_time);
3465
3466 uint Ta = temp_check_time - last_temp_check_time; // set Ta = sleep_time; is not good enough (see --remove etc)
3467
3468 if (Ta == 0) Ta = 1;
3469
3470 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
3471 {
3472 hc_device_param_t *device_param = &data.devices_param[device_id];
3473
3474 if (device_param->skipped) continue;
3475
3476 if ((data.devices_param[device_id].device_type & CL_DEVICE_TYPE_GPU) == 0) continue;
3477
3478 const int temperature = hm_get_temperature_with_device_id (device_id);
3479
3480 if (temperature > (int) data.gpu_temp_abort)
3481 {
3482 log_error ("ERROR: Temperature limit on GPU %d reached, aborting...", device_id + 1);
3483
3484 if (data.devices_status != STATUS_QUIT) myabort ();
3485
3486 break;
3487 }
3488
3489 #ifdef HAVE_ADL
3490 const int gpu_temp_retain = data.gpu_temp_retain;
3491
3492 if (gpu_temp_retain) // VENDOR_ID_AMD implied
3493 {
3494 if (data.hm_device[device_id].fan_supported == 1)
3495 {
3496 int temp_cur = temperature;
3497
3498 int temp_diff_new = gpu_temp_retain - temp_cur;
3499
3500 temp_diff_sum[device_id] = temp_diff_sum[device_id] + temp_diff_new;
3501
3502 // calculate Ta value (time difference in seconds between the last check and this check)
3503
3504 last_temp_check_time = temp_check_time;
3505
3506 float Kp = 1.8;
3507 float Ki = 0.005;
3508 float Kd = 6;
3509
3510 // PID controller (3-term controller: proportional - Kp, integral - Ki, derivative - Kd)
3511
3512 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);
3513
3514 if (abs (fan_diff_required) >= temp_threshold)
3515 {
3516 const int fan_speed_cur = hm_get_fanspeed_with_device_id (device_id);
3517
3518 int fan_speed_level = fan_speed_cur;
3519
3520 if (fan_speed_chgd[device_id] == 0) fan_speed_level = temp_cur;
3521
3522 int fan_speed_new = fan_speed_level - fan_diff_required;
3523
3524 if (fan_speed_new > fan_speed_max) fan_speed_new = fan_speed_max;
3525 if (fan_speed_new < fan_speed_min) fan_speed_new = fan_speed_min;
3526
3527 if (fan_speed_new != fan_speed_cur)
3528 {
3529 int freely_change_fan_speed = (fan_speed_chgd[device_id] == 1);
3530 int fan_speed_must_change = (fan_speed_new > fan_speed_cur);
3531
3532 if ((freely_change_fan_speed == 1) || (fan_speed_must_change == 1))
3533 {
3534 hm_set_fanspeed_with_device_id_amd (device_id, fan_speed_new);
3535
3536 fan_speed_chgd[device_id] = 1;
3537 }
3538
3539 temp_diff_old[device_id] = temp_diff_new;
3540 }
3541 }
3542 }
3543 }
3544 #endif // HAVE_ADL
3545 }
3546
3547 hc_thread_mutex_unlock (mux_adl);
3548 }
3549 #endif // HAVE_HWMON
3550
3551 if (restore_check == 1)
3552 {
3553 restore_left--;
3554
3555 if (restore_left == 0)
3556 {
3557 if (data.restore_disable == 0) cycle_restore ();
3558
3559 restore_left = data.restore_timer;
3560 }
3561 }
3562
3563 if ((runtime_check == 1) && (data.runtime_start > 0))
3564 {
3565 time_t runtime_cur;
3566
3567 time (&runtime_cur);
3568
3569 int runtime_left = data.runtime_start + data.runtime - runtime_cur;
3570
3571 if (runtime_left <= 0)
3572 {
3573 if (data.benchmark == 0)
3574 {
3575 if (data.quiet == 0) log_info ("\nNOTE: Runtime limit reached, aborting...\n");
3576 }
3577
3578 if (data.devices_status != STATUS_QUIT) myabort ();
3579 }
3580 }
3581
3582 if (remove_check == 1)
3583 {
3584 remove_left--;
3585
3586 if (remove_left == 0)
3587 {
3588 if (data.digests_saved != data.digests_done)
3589 {
3590 data.digests_saved = data.digests_done;
3591
3592 save_hash ();
3593 }
3594
3595 remove_left = data.remove_timer;
3596 }
3597 }
3598
3599 if (status_check == 1)
3600 {
3601 status_left--;
3602
3603 if (status_left == 0)
3604 {
3605 hc_thread_mutex_lock (mux_display);
3606
3607 if (data.quiet == 0) clear_prompt ();
3608
3609 if (data.quiet == 0) log_info ("");
3610
3611 status_display ();
3612
3613 if (data.quiet == 0) log_info ("");
3614
3615 hc_thread_mutex_unlock (mux_display);
3616
3617 status_left = data.status_timer;
3618 }
3619 }
3620 }
3621
3622 #ifdef HAVE_HWMON
3623 myfree (fan_speed_chgd);
3624
3625 myfree (temp_diff_old);
3626 myfree (temp_diff_sum);
3627 #endif
3628
3629 p = NULL;
3630
3631 return (p);
3632 }
3633
3634 static void *thread_outfile_remove (void *p)
3635 {
3636 // some hash-dependent constants
3637 char *outfile_dir = data.outfile_check_directory;
3638 uint dgst_size = data.dgst_size;
3639 uint isSalted = data.isSalted;
3640 uint esalt_size = data.esalt_size;
3641 uint hash_mode = data.hash_mode;
3642
3643 uint outfile_check_timer = data.outfile_check_timer;
3644
3645 char separator = data.separator;
3646
3647 // some hash-dependent functions
3648 int (*sort_by_digest) (const void *, const void *) = data.sort_by_digest;
3649 int (*parse_func) (char *, uint, hash_t *) = data.parse_func;
3650
3651 // buffers
3652 hash_t hash_buf = { 0, 0, 0, 0, 0 };
3653
3654 hash_buf.digest = mymalloc (dgst_size);
3655
3656 if (isSalted) hash_buf.salt = (salt_t *) mymalloc (sizeof (salt_t));
3657
3658 if (esalt_size) hash_buf.esalt = (void *) mymalloc (esalt_size);
3659
3660 uint digest_buf[64];
3661
3662 outfile_data_t *out_info = NULL;
3663
3664 char **out_files = NULL;
3665
3666 time_t folder_mtime = 0;
3667
3668 int out_cnt = 0;
3669
3670 uint check_left = outfile_check_timer; // or 1 if we want to check it at startup
3671
3672 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
3673 {
3674 hc_sleep (1);
3675
3676 if (data.devices_status != STATUS_RUNNING) continue;
3677
3678 check_left--;
3679
3680 if (check_left == 0)
3681 {
3682 struct stat outfile_check_stat;
3683
3684 if (stat (outfile_dir, &outfile_check_stat) == 0)
3685 {
3686 uint is_dir = S_ISDIR (outfile_check_stat.st_mode);
3687
3688 if (is_dir == 1)
3689 {
3690 if (outfile_check_stat.st_mtime > folder_mtime)
3691 {
3692 char **out_files_new = scan_directory (outfile_dir);
3693
3694 int out_cnt_new = count_dictionaries (out_files_new);
3695
3696 outfile_data_t *out_info_new = NULL;
3697
3698 if (out_cnt_new > 0)
3699 {
3700 out_info_new = (outfile_data_t *) mycalloc (out_cnt_new, sizeof (outfile_data_t));
3701
3702 for (int i = 0; i < out_cnt_new; i++)
3703 {
3704 out_info_new[i].file_name = out_files_new[i];
3705
3706 // check if there are files that we have seen/checked before (and not changed)
3707
3708 for (int j = 0; j < out_cnt; j++)
3709 {
3710 if (strcmp (out_info[j].file_name, out_info_new[i].file_name) == 0)
3711 {
3712 struct stat outfile_stat;
3713
3714 if (stat (out_info_new[i].file_name, &outfile_stat) == 0)
3715 {
3716 if (outfile_stat.st_ctime == out_info[j].ctime)
3717 {
3718 out_info_new[i].ctime = out_info[j].ctime;
3719 out_info_new[i].seek = out_info[j].seek;
3720 }
3721 }
3722 }
3723 }
3724 }
3725 }
3726
3727 local_free (out_info);
3728 local_free (out_files);
3729
3730 out_files = out_files_new;
3731 out_cnt = out_cnt_new;
3732 out_info = out_info_new;
3733
3734 folder_mtime = outfile_check_stat.st_mtime;
3735 }
3736
3737 for (int j = 0; j < out_cnt; j++)
3738 {
3739 FILE *fp = fopen (out_info[j].file_name, "rb");
3740
3741 if (fp != NULL)
3742 {
3743 //hc_thread_mutex_lock (mux_display);
3744
3745 #ifdef _POSIX
3746 struct stat outfile_stat;
3747
3748 fstat (fileno (fp), &outfile_stat);
3749 #endif
3750
3751 #ifdef _WIN
3752 struct stat64 outfile_stat;
3753
3754 _fstat64 (fileno (fp), &outfile_stat);
3755 #endif
3756
3757 if (outfile_stat.st_ctime > out_info[j].ctime)
3758 {
3759 out_info[j].ctime = outfile_stat.st_ctime;
3760 out_info[j].seek = 0;
3761 }
3762
3763 fseek (fp, out_info[j].seek, SEEK_SET);
3764
3765 while (!feof (fp))
3766 {
3767 char line_buf[BUFSIZ];
3768
3769 memset (line_buf, 0, BUFSIZ);
3770
3771 char *ptr = fgets (line_buf, BUFSIZ - 1, fp);
3772
3773 if (ptr == NULL) break;
3774
3775 int line_len = strlen (line_buf);
3776
3777 if (line_len <= 0) continue;
3778
3779 int iter = MAX_CUT_TRIES;
3780
3781 for (uint i = line_len - 1; i && iter; i--, line_len--)
3782 {
3783 if (line_buf[i] != separator) continue;
3784
3785 int parser_status = PARSER_OK;
3786
3787 if ((hash_mode != 2500) && (hash_mode != 6800))
3788 {
3789 parser_status = parse_func (line_buf, line_len - 1, &hash_buf);
3790 }
3791
3792 uint found = 0;
3793
3794 if (parser_status == PARSER_OK)
3795 {
3796 for (uint salt_pos = 0; (found == 0) && (salt_pos < data.salts_cnt); salt_pos++)
3797 {
3798 if (data.salts_shown[salt_pos] == 1) continue;
3799
3800 salt_t *salt_buf = &data.salts_buf[salt_pos];
3801
3802 for (uint digest_pos = 0; (found == 0) && (digest_pos < salt_buf->digests_cnt); digest_pos++)
3803 {
3804 uint idx = salt_buf->digests_offset + digest_pos;
3805
3806 if (data.digests_shown[idx] == 1) continue;
3807
3808 uint cracked = 0;
3809
3810 if (hash_mode == 6800)
3811 {
3812 if (i == salt_buf->salt_len)
3813 {
3814 cracked = (memcmp (line_buf, salt_buf->salt_buf, salt_buf->salt_len) == 0);
3815 }
3816 }
3817 else if (hash_mode == 2500)
3818 {
3819 // BSSID : MAC1 : MAC2 (:plain)
3820 if (i == (salt_buf->salt_len + 1 + 12 + 1 + 12))
3821 {
3822 cracked = (memcmp (line_buf, salt_buf->salt_buf, salt_buf->salt_len) == 0);
3823
3824 if (!cracked) continue;
3825
3826 // now compare MAC1 and MAC2 too, since we have this additional info
3827 char *mac1_pos = line_buf + salt_buf->salt_len + 1;
3828 char *mac2_pos = mac1_pos + 12 + 1;
3829
3830 wpa_t *wpas = (wpa_t *) data.esalts_buf;
3831 wpa_t *wpa = &wpas[salt_pos];
3832
3833 uint pke[25];
3834
3835 char *pke_ptr = (char *) pke;
3836
3837 for (uint i = 0; i < 25; i++)
3838 {
3839 pke[i] = byte_swap_32 (wpa->pke[i]);
3840 }
3841
3842 u8 mac1[6];
3843 u8 mac2[6];
3844
3845 memcpy (mac1, pke_ptr + 23, 6);
3846 memcpy (mac2, pke_ptr + 29, 6);
3847
3848 // compare hex string(s) vs binary MAC address(es)
3849
3850 for (uint i = 0, j = 0; i < 6; i++, j += 2)
3851 {
3852 if (mac1[i] != hex_to_u8 ((const u8 *) &mac1_pos[j]))
3853 {
3854 cracked = 0;
3855 break;
3856 }
3857 }
3858
3859 // early skip ;)
3860 if (!cracked) continue;
3861
3862 for (uint i = 0, j = 0; i < 6; i++, j += 2)
3863 {
3864 if (mac2[i] != hex_to_u8 ((const u8 *) &mac2_pos[j]))
3865 {
3866 cracked = 0;
3867 break;
3868 }
3869 }
3870 }
3871 }
3872 else
3873 {
3874 char *digests_buf_ptr = (char *) data.digests_buf;
3875
3876 memcpy (digest_buf, digests_buf_ptr + (data.salts_buf[salt_pos].digests_offset * dgst_size) + (digest_pos * dgst_size), dgst_size);
3877
3878 cracked = (sort_by_digest (digest_buf, hash_buf.digest) == 0);
3879 }
3880
3881 if (cracked == 1)
3882 {
3883 found = 1;
3884
3885 data.digests_shown[idx] = 1;
3886
3887 data.digests_done++;
3888
3889 salt_buf->digests_done++;
3890
3891 if (salt_buf->digests_done == salt_buf->digests_cnt)
3892 {
3893 data.salts_shown[salt_pos] = 1;
3894
3895 data.salts_done++;
3896
3897 if (data.salts_done == data.salts_cnt) data.devices_status = STATUS_CRACKED;
3898 }
3899 }
3900 }
3901
3902 if (data.devices_status == STATUS_CRACKED) break;
3903 }
3904 }
3905
3906 if (found) break;
3907
3908 if (data.devices_status == STATUS_CRACKED) break;
3909
3910 iter--;
3911 }
3912
3913 if (data.devices_status == STATUS_CRACKED) break;
3914 }
3915
3916 out_info[j].seek = ftell (fp);
3917
3918 //hc_thread_mutex_unlock (mux_display);
3919
3920 fclose (fp);
3921 }
3922 }
3923 }
3924 }
3925
3926 check_left = outfile_check_timer;
3927 }
3928 }
3929
3930 if (esalt_size) local_free (hash_buf.esalt);
3931
3932 if (isSalted) local_free (hash_buf.salt);
3933
3934 local_free (hash_buf.digest);
3935
3936 local_free (out_info);
3937
3938 local_free (out_files);
3939
3940 p = NULL;
3941
3942 return (p);
3943 }
3944
3945 static uint get_work (hc_device_param_t *device_param, const u64 max)
3946 {
3947 hc_thread_mutex_lock (mux_dispatcher);
3948
3949 const u64 words_cur = data.words_cur;
3950 const u64 words_base = (data.limit == 0) ? data.words_base : data.limit;
3951
3952 device_param->words_off = words_cur;
3953
3954 const u64 words_left = words_base - words_cur;
3955
3956 if (data.kernel_blocks_all > words_left)
3957 {
3958 if (data.kernel_blocks_div == 0)
3959 {
3960 data.kernel_blocks_div = find_kernel_blocks_div (words_left, data.kernel_blocks_all);
3961 }
3962 }
3963
3964 if (data.kernel_blocks_div)
3965 {
3966 if (device_param->kernel_blocks == device_param->kernel_blocks_user)
3967 {
3968 const u32 kernel_blocks_new = (float) device_param->kernel_blocks * data.kernel_blocks_div;
3969 const u32 kernel_power_new = kernel_blocks_new;
3970
3971 if (kernel_blocks_new < device_param->kernel_blocks)
3972 {
3973 device_param->kernel_blocks = kernel_blocks_new;
3974 device_param->kernel_power = kernel_power_new;
3975 }
3976 }
3977 }
3978
3979 const uint kernel_blocks = device_param->kernel_blocks;
3980
3981 uint work = MIN (words_left, kernel_blocks);
3982
3983 work = MIN (work, max);
3984
3985 data.words_cur += work;
3986
3987 hc_thread_mutex_unlock (mux_dispatcher);
3988
3989 return work;
3990 }
3991
3992 static void *thread_calc_stdin (void *p)
3993 {
3994 hc_device_param_t *device_param = (hc_device_param_t *) p;
3995
3996 if (device_param->skipped) return NULL;
3997
3998 const uint attack_kern = data.attack_kern;
3999
4000 const uint kernel_blocks = device_param->kernel_blocks;
4001
4002 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
4003 {
4004 hc_thread_mutex_lock (mux_dispatcher);
4005
4006 if (feof (stdin) != 0)
4007 {
4008 hc_thread_mutex_unlock (mux_dispatcher);
4009
4010 break;
4011 }
4012
4013 uint words_cur = 0;
4014
4015 while (words_cur < kernel_blocks)
4016 {
4017 char buf[BUFSIZ];
4018
4019 char *line_buf = fgets (buf, sizeof (buf), stdin);
4020
4021 if (line_buf == NULL) break;
4022
4023 uint line_len = in_superchop (line_buf);
4024
4025 line_len = convert_from_hex (line_buf, line_len);
4026
4027 // post-process rule engine
4028
4029 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
4030 {
4031 char rule_buf_out[BLOCK_SIZE] = { 0 };
4032
4033 int rule_len_out = -1;
4034
4035 if (line_len < BLOCK_SIZE)
4036 {
4037 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, line_buf, line_len, rule_buf_out);
4038 }
4039
4040 if (rule_len_out < 0) continue;
4041
4042 line_buf = rule_buf_out;
4043 line_len = rule_len_out;
4044 }
4045
4046 if (line_len > PW_MAX)
4047 {
4048 continue;
4049 }
4050
4051 if (attack_kern == ATTACK_KERN_STRAIGHT)
4052 {
4053 if ((line_len < data.pw_min) || (line_len > data.pw_max))
4054 {
4055 hc_thread_mutex_lock (mux_counter);
4056
4057 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4058 {
4059 data.words_progress_rejected[salt_pos] += data.kernel_rules_cnt;
4060 }
4061
4062 hc_thread_mutex_unlock (mux_counter);
4063
4064 continue;
4065 }
4066 }
4067 else if (attack_kern == ATTACK_KERN_COMBI)
4068 {
4069 // do not check if minimum restriction is satisfied (line_len >= data.pw_min) here
4070 // since we still need to combine the plains
4071
4072 if (line_len > data.pw_max)
4073 {
4074 hc_thread_mutex_lock (mux_counter);
4075
4076 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4077 {
4078 data.words_progress_rejected[salt_pos] += data.combs_cnt;
4079 }
4080
4081 hc_thread_mutex_unlock (mux_counter);
4082
4083 continue;
4084 }
4085 }
4086
4087 device_param->pw_add (device_param, (u8 *) line_buf, line_len);
4088
4089 words_cur++;
4090
4091 if (data.devices_status == STATUS_CRACKED) break;
4092 if (data.devices_status == STATUS_ABORTED) break;
4093 if (data.devices_status == STATUS_QUIT) break;
4094 if (data.devices_status == STATUS_BYPASS) break;
4095 }
4096
4097 hc_thread_mutex_unlock (mux_dispatcher);
4098
4099 if (data.devices_status == STATUS_CRACKED) break;
4100 if (data.devices_status == STATUS_ABORTED) break;
4101 if (data.devices_status == STATUS_QUIT) break;
4102 if (data.devices_status == STATUS_BYPASS) break;
4103
4104 // we need 2 flushing because we have two independant caches and it can occur
4105 // that one buffer is already at threshold plus for that length also exists
4106 // more data in the 2nd buffer so it would overflow
4107
4108 // flush session 1
4109
4110 {
4111 for (int pw_len = 0; pw_len < PW_MAX1; pw_len++)
4112 {
4113 pw_cache_t *pw_cache = &device_param->pw_caches[pw_len];
4114
4115 const uint pw_cache_cnt = pw_cache->cnt;
4116
4117 if (pw_cache_cnt == 0) continue;
4118
4119 pw_cache->cnt = 0;
4120
4121 uint pws_cnt = device_param->pws_cnt;
4122
4123 pw_t *pw = device_param->pws_buf + pws_cnt;
4124
4125 device_param->pw_transpose (&pw_cache->pw_buf, pw);
4126
4127 pw->pw_len = pw_len;
4128
4129 uint pw_cnt = device_param->pw_cnt;
4130
4131 pw_cnt += pw_cache_cnt;
4132
4133 device_param->pw_cnt = pw_cnt;
4134
4135 pws_cnt++;
4136
4137 device_param->pws_cnt = pws_cnt;
4138
4139 if (pws_cnt == device_param->kernel_power_user) break;
4140 }
4141
4142 const uint pw_cnt = device_param->pw_cnt;
4143 const uint pws_cnt = device_param->pws_cnt;
4144
4145 if (pws_cnt)
4146 {
4147 run_copy (device_param, pws_cnt);
4148
4149 run_cracker (device_param, pw_cnt, pws_cnt);
4150
4151 device_param->pw_cnt = 0;
4152 device_param->pws_cnt = 0;
4153 }
4154 }
4155
4156 // flush session 2
4157
4158 {
4159 for (int pw_len = 0; pw_len < PW_MAX1; pw_len++)
4160 {
4161 pw_cache_t *pw_cache = &device_param->pw_caches[pw_len];
4162
4163 const uint pw_cache_cnt = pw_cache->cnt;
4164
4165 if (pw_cache_cnt == 0) continue;
4166
4167 pw_cache->cnt = 0;
4168
4169 uint pws_cnt = device_param->pws_cnt;
4170
4171 pw_t *pw = device_param->pws_buf + pws_cnt;
4172
4173 device_param->pw_transpose (&pw_cache->pw_buf, pw);
4174
4175 pw->pw_len = pw_len;
4176
4177 uint pw_cnt = device_param->pw_cnt;
4178
4179 pw_cnt += pw_cache_cnt;
4180
4181 device_param->pw_cnt = pw_cnt;
4182
4183 pws_cnt++;
4184
4185 device_param->pws_cnt = pws_cnt;
4186 }
4187
4188 const uint pw_cnt = device_param->pw_cnt;
4189 const uint pws_cnt = device_param->pws_cnt;
4190
4191 if (pws_cnt)
4192 {
4193 run_copy (device_param, pws_cnt);
4194
4195 run_cracker (device_param, pw_cnt, pws_cnt);
4196
4197 device_param->pw_cnt = 0;
4198 device_param->pws_cnt = 0;
4199 }
4200 }
4201 }
4202
4203 return NULL;
4204 }
4205
4206 static void *thread_calc (void *p)
4207 {
4208 hc_device_param_t *device_param = (hc_device_param_t *) p;
4209
4210 if (device_param->skipped) return NULL;
4211
4212 const uint attack_mode = data.attack_mode;
4213 const uint attack_kern = data.attack_kern;
4214
4215 if (attack_mode == ATTACK_MODE_BF)
4216 {
4217 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
4218 {
4219 const uint work = get_work (device_param, -1);
4220
4221 if (work == 0) break;
4222
4223 const u64 words_off = device_param->words_off;
4224 const u64 words_fin = words_off + work;
4225
4226 const uint pw_cnt = work;
4227 const uint pws_cnt = work;
4228
4229 device_param->pw_cnt = pw_cnt;
4230 device_param->pws_cnt = pws_cnt;
4231
4232 if (pws_cnt)
4233 {
4234 run_copy (device_param, pws_cnt);
4235
4236 run_cracker (device_param, pw_cnt, pws_cnt);
4237
4238 device_param->pw_cnt = 0;
4239 device_param->pws_cnt = 0;
4240 }
4241
4242 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4243
4244 if (data.devices_status == STATUS_CRACKED) break;
4245 if (data.devices_status == STATUS_ABORTED) break;
4246 if (data.devices_status == STATUS_QUIT) break;
4247 if (data.devices_status == STATUS_BYPASS) break;
4248
4249 device_param->words_done = words_fin;
4250 }
4251 }
4252 else
4253 {
4254 const uint segment_size = data.segment_size;
4255
4256 char *dictfile = data.dictfile;
4257
4258 if (attack_mode == ATTACK_MODE_COMBI)
4259 {
4260 if (data.combs_mode == COMBINATOR_MODE_BASE_RIGHT)
4261 {
4262 dictfile = data.dictfile2;
4263 }
4264 }
4265
4266 FILE *fd = fopen (dictfile, "rb");
4267
4268 if (fd == NULL)
4269 {
4270 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
4271
4272 return NULL;
4273 }
4274
4275 if (attack_mode == ATTACK_MODE_COMBI)
4276 {
4277 const uint combs_mode = data.combs_mode;
4278
4279 if (combs_mode == COMBINATOR_MODE_BASE_LEFT)
4280 {
4281 const char *dictfilec = data.dictfile2;
4282
4283 FILE *combs_fp = fopen (dictfilec, "rb");
4284
4285 if (combs_fp == NULL)
4286 {
4287 log_error ("ERROR: %s: %s", dictfilec, strerror (errno));
4288
4289 fclose (fd);
4290
4291 return NULL;
4292 }
4293
4294 device_param->combs_fp = combs_fp;
4295 }
4296 else if (combs_mode == COMBINATOR_MODE_BASE_RIGHT)
4297 {
4298 const char *dictfilec = data.dictfile;
4299
4300 FILE *combs_fp = fopen (dictfilec, "rb");
4301
4302 if (combs_fp == NULL)
4303 {
4304 log_error ("ERROR: %s: %s", dictfilec, strerror (errno));
4305
4306 fclose (fd);
4307
4308 return NULL;
4309 }
4310
4311 device_param->combs_fp = combs_fp;
4312 }
4313 }
4314
4315 wl_data_t *wl_data = (wl_data_t *) mymalloc (sizeof (wl_data_t));
4316
4317 wl_data->buf = (char *) mymalloc (segment_size);
4318 wl_data->avail = segment_size;
4319 wl_data->incr = segment_size;
4320 wl_data->cnt = 0;
4321 wl_data->pos = 0;
4322
4323 u64 words_cur = 0;
4324
4325 while ((data.devices_status != STATUS_EXHAUSTED) && (data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
4326 {
4327 u64 words_off = 0;
4328 u64 words_fin = 0;
4329
4330 u64 max = -1;
4331
4332 while (max)
4333 {
4334 const uint work = get_work (device_param, max);
4335
4336 if (work == 0) break;
4337
4338 words_off = device_param->words_off;
4339 words_fin = words_off + work;
4340
4341 char *line_buf;
4342 uint line_len;
4343
4344 for ( ; words_cur < words_off; words_cur++) get_next_word (wl_data, fd, &line_buf, &line_len);
4345
4346 max = 0;
4347
4348 for ( ; words_cur < words_fin; words_cur++)
4349 {
4350 get_next_word (wl_data, fd, &line_buf, &line_len);
4351
4352 line_len = convert_from_hex (line_buf, line_len);
4353
4354 // post-process rule engine
4355
4356 if (run_rule_engine (data.rule_len_l, data.rule_buf_l))
4357 {
4358 char rule_buf_out[BLOCK_SIZE] = { 0 };
4359
4360 int rule_len_out = -1;
4361
4362 if (line_len < BLOCK_SIZE)
4363 {
4364 rule_len_out = _old_apply_rule (data.rule_buf_l, data.rule_len_l, line_buf, line_len, rule_buf_out);
4365 }
4366
4367 if (rule_len_out < 0) continue;
4368
4369 line_buf = rule_buf_out;
4370 line_len = rule_len_out;
4371 }
4372
4373 if (attack_kern == ATTACK_KERN_STRAIGHT)
4374 {
4375 if ((line_len < data.pw_min) || (line_len > data.pw_max))
4376 {
4377 max++;
4378
4379 hc_thread_mutex_lock (mux_counter);
4380
4381 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4382 {
4383 data.words_progress_rejected[salt_pos] += data.kernel_rules_cnt;
4384 }
4385
4386 hc_thread_mutex_unlock (mux_counter);
4387
4388 continue;
4389 }
4390 }
4391 else if (attack_kern == ATTACK_KERN_COMBI)
4392 {
4393 // do not check if minimum restriction is satisfied (line_len >= data.pw_min) here
4394 // since we still need to combine the plains
4395
4396 if (line_len > data.pw_max)
4397 {
4398 max++;
4399
4400 hc_thread_mutex_lock (mux_counter);
4401
4402 for (uint salt_pos = 0; salt_pos < data.salts_cnt; salt_pos++)
4403 {
4404 data.words_progress_rejected[salt_pos] += data.combs_cnt;
4405 }
4406
4407 hc_thread_mutex_unlock (mux_counter);
4408
4409 continue;
4410 }
4411 }
4412
4413 device_param->pw_add (device_param, (u8 *) line_buf, line_len);
4414
4415 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4416
4417 if (data.devices_status == STATUS_CRACKED) break;
4418 if (data.devices_status == STATUS_ABORTED) break;
4419 if (data.devices_status == STATUS_QUIT) break;
4420 if (data.devices_status == STATUS_BYPASS) break;
4421 }
4422
4423 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4424
4425 if (data.devices_status == STATUS_CRACKED) break;
4426 if (data.devices_status == STATUS_ABORTED) break;
4427 if (data.devices_status == STATUS_QUIT) break;
4428 if (data.devices_status == STATUS_BYPASS) break;
4429 }
4430
4431 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4432
4433 if (data.devices_status == STATUS_CRACKED) break;
4434 if (data.devices_status == STATUS_ABORTED) break;
4435 if (data.devices_status == STATUS_QUIT) break;
4436 if (data.devices_status == STATUS_BYPASS) break;
4437
4438 // we need 2 flushing because we have two independant caches and it can occur
4439 // that one buffer is already at threshold plus for that length also exists
4440 // more data in the 2nd buffer so it would overflow
4441
4442 //
4443 // flush session 1
4444 //
4445
4446 {
4447 for (int pw_len = 0; pw_len < PW_MAX1; pw_len++)
4448 {
4449 pw_cache_t *pw_cache = &device_param->pw_caches[pw_len];
4450
4451 const uint pw_cache_cnt = pw_cache->cnt;
4452
4453 if (pw_cache_cnt == 0) continue;
4454
4455 pw_cache->cnt = 0;
4456
4457 uint pws_cnt = device_param->pws_cnt;
4458
4459 pw_t *pw = device_param->pws_buf + pws_cnt;
4460
4461 device_param->pw_transpose (&pw_cache->pw_buf, pw);
4462
4463 pw->pw_len = pw_len;
4464
4465 uint pw_cnt = device_param->pw_cnt;
4466
4467 pw_cnt += pw_cache_cnt;
4468
4469 device_param->pw_cnt = pw_cnt;
4470
4471 pws_cnt++;
4472
4473 device_param->pws_cnt = pws_cnt;
4474
4475 if (pws_cnt == device_param->kernel_power_user) break;
4476 }
4477
4478 const uint pw_cnt = device_param->pw_cnt;
4479 const uint pws_cnt = device_param->pws_cnt;
4480
4481 if (pws_cnt)
4482 {
4483 run_copy (device_param, pws_cnt);
4484
4485 run_cracker (device_param, pw_cnt, pws_cnt);
4486
4487 device_param->pw_cnt = 0;
4488 device_param->pws_cnt = 0;
4489 }
4490
4491 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4492
4493 if (data.devices_status == STATUS_CRACKED) break;
4494 if (data.devices_status == STATUS_ABORTED) break;
4495 if (data.devices_status == STATUS_QUIT) break;
4496 if (data.devices_status == STATUS_BYPASS) break;
4497 }
4498
4499 //
4500 // flush session 2
4501 //
4502
4503 {
4504 for (int pw_len = 0; pw_len < PW_MAX1; pw_len++)
4505 {
4506 pw_cache_t *pw_cache = &device_param->pw_caches[pw_len];
4507
4508 const uint pw_cache_cnt = pw_cache->cnt;
4509
4510 if (pw_cache_cnt == 0) continue;
4511
4512 pw_cache->cnt = 0;
4513
4514 uint pws_cnt = device_param->pws_cnt;
4515
4516 pw_t *pw = device_param->pws_buf + pws_cnt;
4517
4518 device_param->pw_transpose (&pw_cache->pw_buf, pw);
4519
4520 pw->pw_len = pw_len;
4521
4522 uint pw_cnt = device_param->pw_cnt;
4523
4524 pw_cnt += pw_cache_cnt;
4525
4526 device_param->pw_cnt = pw_cnt;
4527
4528 pws_cnt++;
4529
4530 device_param->pws_cnt = pws_cnt;
4531 }
4532
4533 const uint pw_cnt = device_param->pw_cnt;
4534 const uint pws_cnt = device_param->pws_cnt;
4535
4536 if (pws_cnt)
4537 {
4538 run_copy (device_param, pws_cnt);
4539
4540 run_cracker (device_param, pw_cnt, pws_cnt);
4541
4542 device_param->pw_cnt = 0;
4543 device_param->pws_cnt = 0;
4544 }
4545
4546 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
4547
4548 if (data.devices_status == STATUS_CRACKED) break;
4549 if (data.devices_status == STATUS_ABORTED) break;
4550 if (data.devices_status == STATUS_QUIT) break;
4551 if (data.devices_status == STATUS_BYPASS) break;
4552 }
4553
4554 if (words_fin == 0) break;
4555
4556 device_param->words_done = words_fin;
4557 }
4558
4559 if (attack_mode == ATTACK_MODE_COMBI)
4560 {
4561 fclose (device_param->combs_fp);
4562 }
4563
4564 free (wl_data->buf);
4565 free (wl_data);
4566
4567 fclose (fd);
4568 }
4569
4570 return NULL;
4571 }
4572
4573 static void weak_hash_check (hc_device_param_t *device_param, const uint salt_pos, const uint kernel_loops)
4574 {
4575 salt_t *salt_buf = &data.salts_buf[salt_pos];
4576
4577 device_param->kernel_params_buf32[24] = salt_pos;
4578 device_param->kernel_params_buf32[27] = 1;
4579 device_param->kernel_params_buf32[28] = salt_buf->digests_cnt;
4580 device_param->kernel_params_buf32[29] = salt_buf->digests_offset;
4581 device_param->kernel_params_buf32[30] = 0;
4582 device_param->kernel_params_buf32[31] = 1;
4583
4584 char *dictfile_old = data.dictfile;
4585
4586 const char *weak_hash_check = "weak-hash-check";
4587
4588 data.dictfile = (char *) weak_hash_check;
4589
4590 uint cmd0_rule_old = data.kernel_rules_buf[0].cmds[0];
4591
4592 data.kernel_rules_buf[0].cmds[0] = 0;
4593
4594 /**
4595 * run the kernel
4596 */
4597
4598 if (data.attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
4599 {
4600 run_kernel (KERN_RUN_1, device_param, 1);
4601 }
4602 else
4603 {
4604 run_kernel (KERN_RUN_1, device_param, 1);
4605
4606 const uint iter = salt_buf->salt_iter;
4607
4608 for (uint loop_pos = 0; loop_pos < iter; loop_pos += kernel_loops)
4609 {
4610 uint loop_left = iter - loop_pos;
4611
4612 loop_left = MIN (loop_left, kernel_loops);
4613
4614 device_param->kernel_params_buf32[25] = loop_pos;
4615 device_param->kernel_params_buf32[26] = loop_left;
4616
4617 run_kernel (KERN_RUN_2, device_param, 1);
4618 }
4619
4620 run_kernel (KERN_RUN_3, device_param, 1);
4621 }
4622
4623 /**
4624 * result
4625 */
4626
4627 check_cracked (device_param, salt_pos);
4628
4629 /**
4630 * cleanup
4631 */
4632
4633 device_param->kernel_params_buf32[24] = 0;
4634 device_param->kernel_params_buf32[25] = 0;
4635 device_param->kernel_params_buf32[26] = 0;
4636 device_param->kernel_params_buf32[27] = 0;
4637 device_param->kernel_params_buf32[28] = 0;
4638 device_param->kernel_params_buf32[29] = 0;
4639 device_param->kernel_params_buf32[30] = 0;
4640 device_param->kernel_params_buf32[31] = 0;
4641
4642 data.dictfile = dictfile_old;
4643
4644 data.kernel_rules_buf[0].cmds[0] = cmd0_rule_old;
4645 }
4646
4647 // hlfmt hashcat
4648
4649 static void hlfmt_hash_hashcat (char line_buf[BUFSIZ], int line_len, char **hashbuf_pos, int *hashbuf_len)
4650 {
4651 if (data.username == 0)
4652 {
4653 *hashbuf_pos = line_buf;
4654 *hashbuf_len = line_len;
4655 }
4656 else
4657 {
4658 char *pos = line_buf;
4659 int len = line_len;
4660
4661 for (int i = 0; i < line_len; i++, pos++, len--)
4662 {
4663 if (line_buf[i] == data.separator)
4664 {
4665 pos++;
4666
4667 len--;
4668
4669 break;
4670 }
4671 }
4672
4673 *hashbuf_pos = pos;
4674 *hashbuf_len = len;
4675 }
4676 }
4677
4678 static void hlfmt_user_hashcat (char line_buf[BUFSIZ], int line_len, char **userbuf_pos, int *userbuf_len)
4679 {
4680 char *pos = NULL;
4681 int len = 0;
4682
4683 int sep_cnt = 0;
4684
4685 for (int i = 0; i < line_len; i++)
4686 {
4687 if (line_buf[i] == data.separator)
4688 {
4689 sep_cnt++;
4690
4691 continue;
4692 }
4693
4694 if (sep_cnt == 0)
4695 {
4696 if (pos == NULL) pos = line_buf + i;
4697
4698 len++;
4699 }
4700 }
4701
4702 *userbuf_pos = pos;
4703 *userbuf_len = len;
4704 }
4705
4706 // hlfmt pwdump
4707
4708 static int hlfmt_detect_pwdump (char line_buf[BUFSIZ], int line_len)
4709 {
4710 int sep_cnt = 0;
4711
4712 int sep2_len = 0;
4713 int sep3_len = 0;
4714
4715 for (int i = 0; i < line_len; i++)
4716 {
4717 if (line_buf[i] == ':')
4718 {
4719 sep_cnt++;
4720
4721 continue;
4722 }
4723
4724 if (sep_cnt == 2) sep2_len++;
4725 if (sep_cnt == 3) sep3_len++;
4726 }
4727
4728 if ((sep_cnt == 6) && ((sep2_len == 32) || (sep3_len == 32))) return 1;
4729
4730 return 0;
4731 }
4732
4733 static void hlfmt_hash_pwdump (char line_buf[BUFSIZ], int line_len, char **hashbuf_pos, int *hashbuf_len)
4734 {
4735 char *pos = NULL;
4736 int len = 0;
4737
4738 int sep_cnt = 0;
4739
4740 for (int i = 0; i < line_len; i++)
4741 {
4742 if (line_buf[i] == ':')
4743 {
4744 sep_cnt++;
4745
4746 continue;
4747 }
4748
4749 if (data.hash_mode == 1000)
4750 {
4751 if (sep_cnt == 3)
4752 {
4753 if (pos == NULL) pos = line_buf + i;
4754
4755 len++;
4756 }
4757 }
4758 else if (data.hash_mode == 3000)
4759 {
4760 if (sep_cnt == 2)
4761 {
4762 if (pos == NULL) pos = line_buf + i;
4763
4764 len++;
4765 }
4766 }
4767 }
4768
4769 *hashbuf_pos = pos;
4770 *hashbuf_len = len;
4771 }
4772
4773 static void hlfmt_user_pwdump (char line_buf[BUFSIZ], int line_len, char **userbuf_pos, int *userbuf_len)
4774 {
4775 char *pos = NULL;
4776 int len = 0;
4777
4778 int sep_cnt = 0;
4779
4780 for (int i = 0; i < line_len; i++)
4781 {
4782 if (line_buf[i] == ':')
4783 {
4784 sep_cnt++;
4785
4786 continue;
4787 }
4788
4789 if (sep_cnt == 0)
4790 {
4791 if (pos == NULL) pos = line_buf + i;
4792
4793 len++;
4794 }
4795 }
4796
4797 *userbuf_pos = pos;
4798 *userbuf_len = len;
4799 }
4800
4801 // hlfmt passwd
4802
4803 static int hlfmt_detect_passwd (char line_buf[BUFSIZ], int line_len)
4804 {
4805 int sep_cnt = 0;
4806
4807 char sep5_first = 0;
4808 char sep6_first = 0;
4809
4810 for (int i = 0; i < line_len; i++)
4811 {
4812 if (line_buf[i] == ':')
4813 {
4814 sep_cnt++;
4815
4816 continue;
4817 }
4818
4819 if (sep_cnt == 5) if (sep5_first == 0) sep5_first = line_buf[i];
4820 if (sep_cnt == 6) if (sep6_first == 0) sep6_first = line_buf[i];
4821 }
4822
4823 if ((sep_cnt == 6) && ((sep5_first == '/') || (sep6_first == '/'))) return 1;
4824
4825 return 0;
4826 }
4827
4828 static void hlfmt_hash_passwd (char line_buf[BUFSIZ], int line_len, char **hashbuf_pos, int *hashbuf_len)
4829 {
4830 char *pos = NULL;
4831 int len = 0;
4832
4833 int sep_cnt = 0;
4834
4835 for (int i = 0; i < line_len; i++)
4836 {
4837 if (line_buf[i] == ':')
4838 {
4839 sep_cnt++;
4840
4841 continue;
4842 }
4843
4844 if (sep_cnt == 1)
4845 {
4846 if (pos == NULL) pos = line_buf + i;
4847
4848 len++;
4849 }
4850 }
4851
4852 *hashbuf_pos = pos;
4853 *hashbuf_len = len;
4854 }
4855
4856 static void hlfmt_user_passwd (char line_buf[BUFSIZ], int line_len, char **userbuf_pos, int *userbuf_len)
4857 {
4858 char *pos = NULL;
4859 int len = 0;
4860
4861 int sep_cnt = 0;
4862
4863 for (int i = 0; i < line_len; i++)
4864 {
4865 if (line_buf[i] == ':')
4866 {
4867 sep_cnt++;
4868
4869 continue;
4870 }
4871
4872 if (sep_cnt == 0)
4873 {
4874 if (pos == NULL) pos = line_buf + i;
4875
4876 len++;
4877 }
4878 }
4879
4880 *userbuf_pos = pos;
4881 *userbuf_len = len;
4882 }
4883
4884 // hlfmt shadow
4885
4886 static int hlfmt_detect_shadow (char line_buf[BUFSIZ], int line_len)
4887 {
4888 int sep_cnt = 0;
4889
4890 for (int i = 0; i < line_len; i++)
4891 {
4892 if (line_buf[i] == ':') sep_cnt++;
4893 }
4894
4895 if (sep_cnt == 8) return 1;
4896
4897 return 0;
4898 }
4899
4900 static void hlfmt_hash_shadow (char line_buf[BUFSIZ], int line_len, char **hashbuf_pos, int *hashbuf_len)
4901 {
4902 hlfmt_hash_passwd (line_buf, line_len, hashbuf_pos, hashbuf_len);
4903 }
4904
4905 static void hlfmt_user_shadow (char line_buf[BUFSIZ], int line_len, char **userbuf_pos, int *userbuf_len)
4906 {
4907 hlfmt_user_passwd (line_buf, line_len, userbuf_pos, userbuf_len);
4908 }
4909
4910 // hlfmt main
4911
4912 static void hlfmt_hash (uint hashfile_format, char line_buf[BUFSIZ], int line_len, char **hashbuf_pos, int *hashbuf_len)
4913 {
4914 switch (hashfile_format)
4915 {
4916 case HLFMT_HASHCAT: hlfmt_hash_hashcat (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
4917 case HLFMT_PWDUMP: hlfmt_hash_pwdump (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
4918 case HLFMT_PASSWD: hlfmt_hash_passwd (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
4919 case HLFMT_SHADOW: hlfmt_hash_shadow (line_buf, line_len, hashbuf_pos, hashbuf_len); break;
4920 }
4921 }
4922
4923 static void hlfmt_user (uint hashfile_format, char line_buf[BUFSIZ], int line_len, char **userbuf_pos, int *userbuf_len)
4924 {
4925 switch (hashfile_format)
4926 {
4927 case HLFMT_HASHCAT: hlfmt_user_hashcat (line_buf, line_len, userbuf_pos, userbuf_len); break;
4928 case HLFMT_PWDUMP: hlfmt_user_pwdump (line_buf, line_len, userbuf_pos, userbuf_len); break;
4929 case HLFMT_PASSWD: hlfmt_user_passwd (line_buf, line_len, userbuf_pos, userbuf_len); break;
4930 case HLFMT_SHADOW: hlfmt_user_shadow (line_buf, line_len, userbuf_pos, userbuf_len); break;
4931 }
4932 }
4933
4934 static uint hlfmt_detect (FILE *fp, uint max_check)
4935 {
4936 // Exception: those formats are wrongly detected as HLFMT_SHADOW, prevent it
4937
4938 if (data.hash_mode == 5300) return HLFMT_HASHCAT;
4939 if (data.hash_mode == 5400) return HLFMT_HASHCAT;
4940
4941 uint *formats_cnt = (uint *) mycalloc (HLFMTS_CNT, sizeof (uint));
4942
4943 uint num_check = 0;
4944
4945 while (!feof (fp))
4946 {
4947 char line_buf[BUFSIZ];
4948
4949 int line_len = fgetl (fp, line_buf);
4950
4951 if (line_len == 0) continue;
4952
4953 if (hlfmt_detect_pwdump (line_buf, line_len)) formats_cnt[HLFMT_PWDUMP]++;
4954 if (hlfmt_detect_passwd (line_buf, line_len)) formats_cnt[HLFMT_PASSWD]++;
4955 if (hlfmt_detect_shadow (line_buf, line_len)) formats_cnt[HLFMT_SHADOW]++;
4956
4957 if (num_check == max_check) break;
4958
4959 num_check++;
4960 }
4961
4962 uint hashlist_format = HLFMT_HASHCAT;
4963
4964 for (int i = 1; i < HLFMTS_CNT; i++)
4965 {
4966 if (formats_cnt[i - 1] >= formats_cnt[i]) continue;
4967
4968 hashlist_format = i;
4969 }
4970
4971 free (formats_cnt);
4972
4973 return hashlist_format;
4974 }
4975
4976 /**
4977 * some further helper function
4978 */
4979
4980 // wrapper around mymalloc for ADL
4981
4982 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
4983 void *__stdcall ADL_Main_Memory_Alloc (const int iSize)
4984 {
4985 return mymalloc (iSize);
4986 }
4987 #endif
4988
4989 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)
4990 {
4991 u64 collisions = 0;
4992
4993 const uint dgst_pos0 = data.dgst_pos0;
4994 const uint dgst_pos1 = data.dgst_pos1;
4995 const uint dgst_pos2 = data.dgst_pos2;
4996 const uint dgst_pos3 = data.dgst_pos3;
4997
4998 memset (bitmap_a, 0, bitmap_size);
4999 memset (bitmap_b, 0, bitmap_size);
5000 memset (bitmap_c, 0, bitmap_size);
5001 memset (bitmap_d, 0, bitmap_size);
5002
5003 for (uint i = 0; i < digests_cnt; i++)
5004 {
5005 uint *digest_ptr = (uint *) digests_buf_ptr;
5006
5007 digests_buf_ptr += dgst_size;
5008
5009 const uint val0 = 1u << (digest_ptr[dgst_pos0] & 0x1f);
5010 const uint val1 = 1u << (digest_ptr[dgst_pos1] & 0x1f);
5011 const uint val2 = 1u << (digest_ptr[dgst_pos2] & 0x1f);
5012 const uint val3 = 1u << (digest_ptr[dgst_pos3] & 0x1f);
5013
5014 const uint idx0 = (digest_ptr[dgst_pos0] >> dgst_shifts) & bitmap_mask;
5015 const uint idx1 = (digest_ptr[dgst_pos1] >> dgst_shifts) & bitmap_mask;
5016 const uint idx2 = (digest_ptr[dgst_pos2] >> dgst_shifts) & bitmap_mask;
5017 const uint idx3 = (digest_ptr[dgst_pos3] >> dgst_shifts) & bitmap_mask;
5018
5019 if (bitmap_a[idx0] & val0) collisions++;
5020 if (bitmap_b[idx1] & val1) collisions++;
5021 if (bitmap_c[idx2] & val2) collisions++;
5022 if (bitmap_d[idx3] & val3) collisions++;
5023
5024 bitmap_a[idx0] |= val0;
5025 bitmap_b[idx1] |= val1;
5026 bitmap_c[idx2] |= val2;
5027 bitmap_d[idx3] |= val3;
5028
5029 if (collisions >= collisions_max) return 0x7fffffff;
5030 }
5031
5032 return collisions;
5033 }
5034
5035 /**
5036 * main
5037 */
5038
5039 int main (int argc, char **argv)
5040 {
5041 /**
5042 * To help users a bit
5043 */
5044
5045 char *compute = getenv ("COMPUTE");
5046
5047 if (compute)
5048 {
5049 char display[100];
5050
5051 snprintf (display, sizeof (display) - 1, "DISPLAY=%s", compute);
5052
5053 putenv (display);
5054 }
5055 else
5056 {
5057 if (getenv ("DISPLAY") == NULL)
5058 putenv ((char *) "DISPLAY=:0");
5059 }
5060
5061 if (getenv ("GPU_MAX_ALLOC_PERCENT") == NULL)
5062 putenv ((char *) "GPU_MAX_ALLOC_PERCENT=100");
5063
5064 if (getenv ("CPU_MAX_ALLOC_PERCENT") == NULL)
5065 putenv ((char *) "CPU_MAX_ALLOC_PERCENT=100");
5066
5067 if (getenv ("GPU_USE_SYNC_OBJECTS") == NULL)
5068 putenv ((char *) "GPU_USE_SYNC_OBJECTS=1");
5069
5070 /**
5071 * Real init
5072 */
5073
5074 memset (&data, 0, sizeof (hc_global_data_t));
5075
5076 time_t proc_start;
5077
5078 time (&proc_start);
5079
5080 data.proc_start = proc_start;
5081
5082 int myargc = argc;
5083 char **myargv = argv;
5084
5085 hc_thread_mutex_init (mux_dispatcher);
5086 hc_thread_mutex_init (mux_counter);
5087 hc_thread_mutex_init (mux_display);
5088 hc_thread_mutex_init (mux_adl);
5089
5090 /**
5091 * commandline parameters
5092 */
5093
5094 uint usage = USAGE;
5095 uint version = VERSION;
5096 uint quiet = QUIET;
5097 uint benchmark = BENCHMARK;
5098 uint benchmark_mode = BENCHMARK_MODE;
5099 uint show = SHOW;
5100 uint left = LEFT;
5101 uint username = USERNAME;
5102 uint remove = REMOVE;
5103 uint remove_timer = REMOVE_TIMER;
5104 u64 skip = SKIP;
5105 u64 limit = LIMIT;
5106 uint keyspace = KEYSPACE;
5107 uint potfile_disable = POTFILE_DISABLE;
5108 uint debug_mode = DEBUG_MODE;
5109 char *debug_file = NULL;
5110 char *induction_dir = NULL;
5111 char *outfile_check_dir = NULL;
5112 uint force = FORCE;
5113 uint runtime = RUNTIME;
5114 uint hash_mode = HASH_MODE;
5115 uint attack_mode = ATTACK_MODE;
5116 uint markov_disable = MARKOV_DISABLE;
5117 uint markov_classic = MARKOV_CLASSIC;
5118 uint markov_threshold = MARKOV_THRESHOLD;
5119 char *markov_hcstat = NULL;
5120 char *outfile = NULL;
5121 uint outfile_format = OUTFILE_FORMAT;
5122 uint outfile_autohex = OUTFILE_AUTOHEX;
5123 uint outfile_check_timer = OUTFILE_CHECK_TIMER;
5124 uint restore = RESTORE;
5125 uint restore_timer = RESTORE_TIMER;
5126 uint restore_disable = RESTORE_DISABLE;
5127 uint status = STATUS;
5128 uint status_timer = STATUS_TIMER;
5129 uint status_automat = STATUS_AUTOMAT;
5130 uint loopback = LOOPBACK;
5131 uint weak_hash_threshold = WEAK_HASH_THRESHOLD;
5132 char *session = NULL;
5133 uint hex_charset = HEX_CHARSET;
5134 uint hex_salt = HEX_SALT;
5135 uint hex_wordlist = HEX_WORDLIST;
5136 uint rp_gen = RP_GEN;
5137 uint rp_gen_func_min = RP_GEN_FUNC_MIN;
5138 uint rp_gen_func_max = RP_GEN_FUNC_MAX;
5139 uint rp_gen_seed = RP_GEN_SEED;
5140 char *rule_buf_l = (char *) RULE_BUF_L;
5141 char *rule_buf_r = (char *) RULE_BUF_R;
5142 uint increment = INCREMENT;
5143 uint increment_min = INCREMENT_MIN;
5144 uint increment_max = INCREMENT_MAX;
5145 #ifndef OSX
5146 char *cpu_affinity = NULL;
5147 #endif
5148 char *opencl_devices = NULL;
5149 char *opencl_platforms = NULL;
5150 char *opencl_device_types = NULL;
5151 uint opencl_vector_width = OPENCL_VECTOR_WIDTH;
5152 char *truecrypt_keyfiles = NULL;
5153 uint workload_profile = WORKLOAD_PROFILE;
5154 uint kernel_accel = KERNEL_ACCEL;
5155 uint kernel_loops = KERNEL_LOOPS;
5156 #ifdef HAVE_HWMON
5157 uint gpu_temp_disable = GPU_TEMP_DISABLE;
5158 uint gpu_temp_abort = GPU_TEMP_ABORT;
5159 uint gpu_temp_retain = GPU_TEMP_RETAIN;
5160 #ifdef HAVE_ADL
5161 uint powertune_enable = POWERTUNE_ENABLE;
5162 #endif
5163 #endif
5164 uint logfile_disable = LOGFILE_DISABLE;
5165 uint segment_size = SEGMENT_SIZE;
5166 uint scrypt_tmto = SCRYPT_TMTO;
5167 char separator = SEPARATOR;
5168 uint bitmap_min = BITMAP_MIN;
5169 uint bitmap_max = BITMAP_MAX;
5170 char *custom_charset_1 = NULL;
5171 char *custom_charset_2 = NULL;
5172 char *custom_charset_3 = NULL;
5173 char *custom_charset_4 = NULL;
5174
5175 #define IDX_HELP 'h'
5176 #define IDX_VERSION 'V'
5177 #define IDX_VERSION_LOWER 'v'
5178 #define IDX_QUIET 0xff02
5179 #define IDX_SHOW 0xff03
5180 #define IDX_LEFT 0xff04
5181 #define IDX_REMOVE 0xff05
5182 #define IDX_REMOVE_TIMER 0xff37
5183 #define IDX_SKIP 's'
5184 #define IDX_LIMIT 'l'
5185 #define IDX_KEYSPACE 0xff35
5186 #define IDX_POTFILE_DISABLE 0xff06
5187 #define IDX_DEBUG_MODE 0xff43
5188 #define IDX_DEBUG_FILE 0xff44
5189 #define IDX_INDUCTION_DIR 0xff46
5190 #define IDX_OUTFILE_CHECK_DIR 0xff47
5191 #define IDX_USERNAME 0xff07
5192 #define IDX_FORCE 0xff08
5193 #define IDX_RUNTIME 0xff09
5194 #define IDX_BENCHMARK 'b'
5195 #define IDX_BENCHMARK_MODE 0xff32
5196 #define IDX_HASH_MODE 'm'
5197 #define IDX_ATTACK_MODE 'a'
5198 #define IDX_RP_FILE 'r'
5199 #define IDX_RP_GEN 'g'
5200 #define IDX_RP_GEN_FUNC_MIN 0xff10
5201 #define IDX_RP_GEN_FUNC_MAX 0xff11
5202 #define IDX_RP_GEN_SEED 0xff34
5203 #define IDX_RULE_BUF_L 'j'
5204 #define IDX_RULE_BUF_R 'k'
5205 #define IDX_INCREMENT 'i'
5206 #define IDX_INCREMENT_MIN 0xff12
5207 #define IDX_INCREMENT_MAX 0xff13
5208 #define IDX_OUTFILE 'o'
5209 #define IDX_OUTFILE_FORMAT 0xff14
5210 #define IDX_OUTFILE_AUTOHEX_DISABLE 0xff39
5211 #define IDX_OUTFILE_CHECK_TIMER 0xff45
5212 #define IDX_RESTORE 0xff15
5213 #define IDX_RESTORE_DISABLE 0xff27
5214 #define IDX_STATUS 0xff17
5215 #define IDX_STATUS_TIMER 0xff18
5216 #define IDX_STATUS_AUTOMAT 0xff50
5217 #define IDX_LOOPBACK 0xff38
5218 #define IDX_WEAK_HASH_THRESHOLD 0xff42
5219 #define IDX_SESSION 0xff19
5220 #define IDX_HEX_CHARSET 0xff20
5221 #define IDX_HEX_SALT 0xff21
5222 #define IDX_HEX_WORDLIST 0xff40
5223 #define IDX_MARKOV_DISABLE 0xff22
5224 #define IDX_MARKOV_CLASSIC 0xff23
5225 #define IDX_MARKOV_THRESHOLD 't'
5226 #define IDX_MARKOV_HCSTAT 0xff24
5227 #define IDX_CPU_AFFINITY 0xff25
5228 #define IDX_OPENCL_DEVICES 'd'
5229 #define IDX_OPENCL_PLATFORMS 0xff72
5230 #define IDX_OPENCL_DEVICE_TYPES 0xff73
5231 #define IDX_OPENCL_VECTOR_WIDTH 0xff74
5232 #define IDX_WORKLOAD_PROFILE 'w'
5233 #define IDX_KERNEL_ACCEL 'n'
5234 #define IDX_KERNEL_LOOPS 'u'
5235 #define IDX_GPU_TEMP_DISABLE 0xff29
5236 #define IDX_GPU_TEMP_ABORT 0xff30
5237 #define IDX_GPU_TEMP_RETAIN 0xff31
5238 #define IDX_POWERTUNE_ENABLE 0xff41
5239 #define IDX_LOGFILE_DISABLE 0xff51
5240 #define IDX_TRUECRYPT_KEYFILES 0xff52
5241 #define IDX_SCRYPT_TMTO 0xff61
5242 #define IDX_SEGMENT_SIZE 'c'
5243 #define IDX_SEPARATOR 'p'
5244 #define IDX_BITMAP_MIN 0xff70
5245 #define IDX_BITMAP_MAX 0xff71
5246 #define IDX_CUSTOM_CHARSET_1 '1'
5247 #define IDX_CUSTOM_CHARSET_2 '2'
5248 #define IDX_CUSTOM_CHARSET_3 '3'
5249 #define IDX_CUSTOM_CHARSET_4 '4'
5250
5251 char short_options[] = "hVvm:a:r:j:k:g:o:t:d:n:u:c:p:s:l:1:2:3:4:ibw:";
5252
5253 struct option long_options[] =
5254 {
5255 {"help", no_argument, 0, IDX_HELP},
5256 {"version", no_argument, 0, IDX_VERSION},
5257 {"quiet", no_argument, 0, IDX_QUIET},
5258 {"show", no_argument, 0, IDX_SHOW},
5259 {"left", no_argument, 0, IDX_LEFT},
5260 {"username", no_argument, 0, IDX_USERNAME},
5261 {"remove", no_argument, 0, IDX_REMOVE},
5262 {"remove-timer", required_argument, 0, IDX_REMOVE_TIMER},
5263 {"skip", required_argument, 0, IDX_SKIP},
5264 {"limit", required_argument, 0, IDX_LIMIT},
5265 {"keyspace", no_argument, 0, IDX_KEYSPACE},
5266 {"potfile-disable", no_argument, 0, IDX_POTFILE_DISABLE},
5267 {"debug-mode", required_argument, 0, IDX_DEBUG_MODE},
5268 {"debug-file", required_argument, 0, IDX_DEBUG_FILE},
5269 {"induction-dir", required_argument, 0, IDX_INDUCTION_DIR},
5270 {"outfile-check-dir", required_argument, 0, IDX_OUTFILE_CHECK_DIR},
5271 {"force", no_argument, 0, IDX_FORCE},
5272 {"benchmark", no_argument, 0, IDX_BENCHMARK},
5273 {"benchmark-mode", required_argument, 0, IDX_BENCHMARK_MODE},
5274 {"restore", no_argument, 0, IDX_RESTORE},
5275 {"restore-disable", no_argument, 0, IDX_RESTORE_DISABLE},
5276 {"status", no_argument, 0, IDX_STATUS},
5277 {"status-timer", required_argument, 0, IDX_STATUS_TIMER},
5278 {"status-automat", no_argument, 0, IDX_STATUS_AUTOMAT},
5279 {"loopback", no_argument, 0, IDX_LOOPBACK},
5280 {"weak-hash-threshold",
5281 required_argument, 0, IDX_WEAK_HASH_THRESHOLD},
5282 {"session", required_argument, 0, IDX_SESSION},
5283 {"runtime", required_argument, 0, IDX_RUNTIME},
5284 {"generate-rules", required_argument, 0, IDX_RP_GEN},
5285 {"generate-rules-func-min",
5286 required_argument, 0, IDX_RP_GEN_FUNC_MIN},
5287 {"generate-rules-func-max",
5288 required_argument, 0, IDX_RP_GEN_FUNC_MAX},
5289 {"generate-rules-seed",
5290 required_argument, 0, IDX_RP_GEN_SEED},
5291 {"rule-left", required_argument, 0, IDX_RULE_BUF_L},
5292 {"rule-right", required_argument, 0, IDX_RULE_BUF_R},
5293 {"hash-type", required_argument, 0, IDX_HASH_MODE},
5294 {"attack-mode", required_argument, 0, IDX_ATTACK_MODE},
5295 {"rules-file", required_argument, 0, IDX_RP_FILE},
5296 {"outfile", required_argument, 0, IDX_OUTFILE},
5297 {"outfile-format", required_argument, 0, IDX_OUTFILE_FORMAT},
5298 {"outfile-autohex-disable",
5299 no_argument, 0, IDX_OUTFILE_AUTOHEX_DISABLE},
5300 {"outfile-check-timer",
5301 required_argument, 0, IDX_OUTFILE_CHECK_TIMER},
5302 {"hex-charset", no_argument, 0, IDX_HEX_CHARSET},
5303 {"hex-salt", no_argument, 0, IDX_HEX_SALT},
5304 {"hex-wordlist", no_argument, 0, IDX_HEX_WORDLIST},
5305 {"markov-disable", no_argument, 0, IDX_MARKOV_DISABLE},
5306 {"markov-classic", no_argument, 0, IDX_MARKOV_CLASSIC},
5307 {"markov-threshold", required_argument, 0, IDX_MARKOV_THRESHOLD},
5308 {"markov-hcstat", required_argument, 0, IDX_MARKOV_HCSTAT},
5309 #ifndef OSX
5310 {"cpu-affinity", required_argument, 0, IDX_CPU_AFFINITY},
5311 #endif
5312 {"opencl-devices", required_argument, 0, IDX_OPENCL_DEVICES},
5313 {"opencl-platforms", required_argument, 0, IDX_OPENCL_PLATFORMS},
5314 {"opencl-device-types", required_argument, 0, IDX_OPENCL_DEVICE_TYPES},
5315 {"opencl-vector-width", required_argument, 0, IDX_OPENCL_VECTOR_WIDTH},
5316 {"workload-profile", required_argument, 0, IDX_WORKLOAD_PROFILE},
5317 {"kernel-accel", required_argument, 0, IDX_KERNEL_ACCEL},
5318 {"kernel-loops", required_argument, 0, IDX_KERNEL_LOOPS},
5319 #ifdef HAVE_HWMON
5320 {"gpu-temp-disable", no_argument, 0, IDX_GPU_TEMP_DISABLE},
5321 {"gpu-temp-abort", required_argument, 0, IDX_GPU_TEMP_ABORT},
5322 {"gpu-temp-retain", required_argument, 0, IDX_GPU_TEMP_RETAIN},
5323 #ifdef HAVE_ADL
5324 {"powertune-enable", no_argument, 0, IDX_POWERTUNE_ENABLE},
5325 #endif
5326 #endif // HAVE_HWMON
5327 {"logfile-disable", no_argument, 0, IDX_LOGFILE_DISABLE},
5328 {"truecrypt-keyfiles", required_argument, 0, IDX_TRUECRYPT_KEYFILES},
5329 {"segment-size", required_argument, 0, IDX_SEGMENT_SIZE},
5330 {"scrypt-tmto", required_argument, 0, IDX_SCRYPT_TMTO},
5331 // deprecated
5332 {"seperator", required_argument, 0, IDX_SEPARATOR},
5333 {"separator", required_argument, 0, IDX_SEPARATOR},
5334 {"bitmap-min", required_argument, 0, IDX_BITMAP_MIN},
5335 {"bitmap-max", required_argument, 0, IDX_BITMAP_MAX},
5336 {"increment", no_argument, 0, IDX_INCREMENT},
5337 {"increment-min", required_argument, 0, IDX_INCREMENT_MIN},
5338 {"increment-max", required_argument, 0, IDX_INCREMENT_MAX},
5339 {"custom-charset1", required_argument, 0, IDX_CUSTOM_CHARSET_1},
5340 {"custom-charset2", required_argument, 0, IDX_CUSTOM_CHARSET_2},
5341 {"custom-charset3", required_argument, 0, IDX_CUSTOM_CHARSET_3},
5342 {"custom-charset4", required_argument, 0, IDX_CUSTOM_CHARSET_4},
5343
5344 {0, 0, 0, 0}
5345 };
5346
5347 uint rp_files_cnt = 0;
5348
5349 char **rp_files = (char **) mycalloc (argc, sizeof (char *));
5350
5351 int option_index = 0;
5352 int c = -1;
5353
5354 optind = 1;
5355 optopt = 0;
5356
5357 while (((c = getopt_long (argc, argv, short_options, long_options, &option_index)) != -1) && optopt == 0)
5358 {
5359 switch (c)
5360 {
5361 case IDX_HELP: usage = 1; break;
5362 case IDX_VERSION:
5363 case IDX_VERSION_LOWER: version = 1; break;
5364 case IDX_RESTORE: restore = 1; break;
5365 case IDX_SESSION: session = optarg; break;
5366 case IDX_SHOW: show = 1; break;
5367 case IDX_LEFT: left = 1; break;
5368 case '?': return (-1);
5369 }
5370 }
5371
5372 if (optopt != 0)
5373 {
5374 log_error ("ERROR: Invalid argument specified");
5375
5376 return (-1);
5377 }
5378
5379 /**
5380 * exit functions
5381 */
5382
5383 if (version)
5384 {
5385 log_info ("%s (%s)", VERSION_TAG, VERSION_SUM);
5386
5387 return (0);
5388 }
5389
5390 if (usage)
5391 {
5392 usage_big_print (PROGNAME);
5393
5394 return (0);
5395 }
5396
5397 /**
5398 * session needs to be set, always!
5399 */
5400
5401 if (session == NULL) session = (char *) PROGNAME;
5402
5403 /**
5404 * folders, as discussed on https://github.com/hashcat/oclHashcat/issues/20
5405 */
5406
5407 char *exec_path = get_exec_path ();
5408
5409 #ifdef LINUX
5410
5411 char *resolved_install_folder = realpath (INSTALL_FOLDER, NULL);
5412 char *resolved_exec_path = realpath (exec_path, NULL);
5413
5414 char *install_dir = get_install_dir (resolved_exec_path);
5415 char *profile_dir = NULL;
5416 char *session_dir = NULL;
5417 char *shared_dir = NULL;
5418
5419 if (strcmp (install_dir, resolved_install_folder) == 0)
5420 {
5421 struct passwd *pw = getpwuid (getuid ());
5422
5423 const char *homedir = pw->pw_dir;
5424
5425 profile_dir = get_profile_dir (homedir);
5426 session_dir = get_session_dir (profile_dir);
5427 shared_dir = strdup (SHARED_FOLDER);
5428
5429 mkdir (profile_dir, 0700);
5430 mkdir (session_dir, 0700);
5431 }
5432 else
5433 {
5434 profile_dir = install_dir;
5435 session_dir = install_dir;
5436 shared_dir = install_dir;
5437 }
5438
5439 myfree (resolved_install_folder);
5440 myfree (resolved_exec_path);
5441
5442 #else
5443
5444 char *install_dir = get_install_dir (exec_path);
5445 char *profile_dir = install_dir;
5446 char *session_dir = install_dir;
5447 char *shared_dir = install_dir;
5448
5449 #endif
5450
5451 data.install_dir = install_dir;
5452 data.profile_dir = profile_dir;
5453 data.session_dir = session_dir;
5454 data.shared_dir = shared_dir;
5455
5456 myfree (exec_path);
5457
5458 /**
5459 * kernel cache, we need to make sure folder exist
5460 */
5461
5462 int kernels_folder_size = strlen (profile_dir) + 1 + 7 + 1 + 1;
5463
5464 char *kernels_folder = (char *) mymalloc (kernels_folder_size);
5465
5466 snprintf (kernels_folder, kernels_folder_size - 1, "%s/kernels", profile_dir);
5467
5468 mkdir (kernels_folder, 0700);
5469
5470 myfree (kernels_folder);
5471
5472 /**
5473 * session
5474 */
5475
5476 size_t session_size = strlen (session_dir) + 1 + strlen (session) + 32;
5477
5478 data.session = session;
5479
5480 char *eff_restore_file = (char *) mymalloc (session_size);
5481 char *new_restore_file = (char *) mymalloc (session_size);
5482
5483 snprintf (eff_restore_file, session_size - 1, "%s/%s.restore", data.session_dir, session);
5484 snprintf (new_restore_file, session_size - 1, "%s/%s.restore.new", data.session_dir, session);
5485
5486 data.eff_restore_file = eff_restore_file;
5487 data.new_restore_file = new_restore_file;
5488
5489 if (((show == 1) || (left == 1)) && (restore == 1))
5490 {
5491 if (show == 1) log_error ("ERROR: Mixing --restore parameter and --show is not supported");
5492 else log_error ("ERROR: Mixing --restore parameter and --left is not supported");
5493
5494 return (-1);
5495 }
5496
5497 // this allows the user to use --show and --left while cracking (i.e. while another instance of oclHashcat is running)
5498 if ((show == 1) || (left == 1))
5499 {
5500 restore_disable = 1;
5501
5502 restore = 0;
5503 }
5504
5505 data.restore_disable = restore_disable;
5506
5507 restore_data_t *rd = init_restore (argc, argv);
5508
5509 data.rd = rd;
5510
5511 /**
5512 * restore file
5513 */
5514
5515 if (restore == 1)
5516 {
5517 read_restore (eff_restore_file, rd);
5518
5519 if (rd->version_bin < RESTORE_MIN)
5520 {
5521 log_error ("ERROR: Incompatible restore-file version");
5522
5523 return (-1);
5524 }
5525
5526 myargc = rd->argc;
5527 myargv = rd->argv;
5528
5529 #ifdef _POSIX
5530 rd->pid = getpid ();
5531 #elif _WIN
5532 rd->pid = GetCurrentProcessId ();
5533 #endif
5534 }
5535
5536 uint hash_mode_chgd = 0;
5537 uint runtime_chgd = 0;
5538 uint kernel_loops_chgd = 0;
5539 uint kernel_accel_chgd = 0;
5540 uint attack_mode_chgd = 0;
5541 uint outfile_format_chgd = 0;
5542 uint rp_gen_seed_chgd = 0;
5543 uint remove_timer_chgd = 0;
5544 uint increment_min_chgd = 0;
5545 uint increment_max_chgd = 0;
5546 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
5547 uint gpu_temp_retain_chgd = 0;
5548 uint gpu_temp_abort_chgd = 0;
5549 #endif
5550
5551 optind = 1;
5552 optopt = 0;
5553 option_index = 0;
5554
5555 while (((c = getopt_long (myargc, myargv, short_options, long_options, &option_index)) != -1) && optopt == 0)
5556 {
5557 switch (c)
5558 {
5559 //case IDX_HELP: usage = 1; break;
5560 //case IDX_VERSION: version = 1; break;
5561 //case IDX_RESTORE: restore = 1; break;
5562 case IDX_QUIET: quiet = 1; break;
5563 //case IDX_SHOW: show = 1; break;
5564 case IDX_SHOW: break;
5565 //case IDX_LEFT: left = 1; break;
5566 case IDX_LEFT: break;
5567 case IDX_USERNAME: username = 1; break;
5568 case IDX_REMOVE: remove = 1; break;
5569 case IDX_REMOVE_TIMER: remove_timer = atoi (optarg);
5570 remove_timer_chgd = 1; break;
5571 case IDX_POTFILE_DISABLE: potfile_disable = 1; break;
5572 case IDX_DEBUG_MODE: debug_mode = atoi (optarg); break;
5573 case IDX_DEBUG_FILE: debug_file = optarg; break;
5574 case IDX_INDUCTION_DIR: induction_dir = optarg; break;
5575 case IDX_OUTFILE_CHECK_DIR: outfile_check_dir = optarg; break;
5576 case IDX_FORCE: force = 1; break;
5577 case IDX_SKIP: skip = atoll (optarg); break;
5578 case IDX_LIMIT: limit = atoll (optarg); break;
5579 case IDX_KEYSPACE: keyspace = 1; break;
5580 case IDX_BENCHMARK: benchmark = 1; break;
5581 case IDX_BENCHMARK_MODE: benchmark_mode = atoi (optarg); break;
5582 case IDX_RESTORE: break;
5583 case IDX_RESTORE_DISABLE: restore_disable = 1; break;
5584 case IDX_STATUS: status = 1; break;
5585 case IDX_STATUS_TIMER: status_timer = atoi (optarg); break;
5586 case IDX_STATUS_AUTOMAT: status_automat = 1; break;
5587 case IDX_LOOPBACK: loopback = 1; break;
5588 case IDX_WEAK_HASH_THRESHOLD:
5589 weak_hash_threshold = atoi (optarg); break;
5590 //case IDX_SESSION: session = optarg; break;
5591 case IDX_SESSION: break;
5592 case IDX_HASH_MODE: hash_mode = atoi (optarg);
5593 hash_mode_chgd = 1; break;
5594 case IDX_RUNTIME: runtime = atoi (optarg);
5595 runtime_chgd = 1; break;
5596 case IDX_ATTACK_MODE: attack_mode = atoi (optarg);
5597 attack_mode_chgd = 1; break;
5598 case IDX_RP_FILE: rp_files[rp_files_cnt++] = optarg; break;
5599 case IDX_RP_GEN: rp_gen = atoi (optarg); break;
5600 case IDX_RP_GEN_FUNC_MIN: rp_gen_func_min = atoi (optarg); break;
5601 case IDX_RP_GEN_FUNC_MAX: rp_gen_func_max = atoi (optarg); break;
5602 case IDX_RP_GEN_SEED: rp_gen_seed = atoi (optarg);
5603 rp_gen_seed_chgd = 1; break;
5604 case IDX_RULE_BUF_L: rule_buf_l = optarg; break;
5605 case IDX_RULE_BUF_R: rule_buf_r = optarg; break;
5606 case IDX_MARKOV_DISABLE: markov_disable = 1; break;
5607 case IDX_MARKOV_CLASSIC: markov_classic = 1; break;
5608 case IDX_MARKOV_THRESHOLD: markov_threshold = atoi (optarg); break;
5609 case IDX_MARKOV_HCSTAT: markov_hcstat = optarg; break;
5610 case IDX_OUTFILE: outfile = optarg; break;
5611 case IDX_OUTFILE_FORMAT: outfile_format = atoi (optarg);
5612 outfile_format_chgd = 1; break;
5613 case IDX_OUTFILE_AUTOHEX_DISABLE:
5614 outfile_autohex = 0; break;
5615 case IDX_OUTFILE_CHECK_TIMER:
5616 outfile_check_timer = atoi (optarg); break;
5617 case IDX_HEX_CHARSET: hex_charset = 1; break;
5618 case IDX_HEX_SALT: hex_salt = 1; break;
5619 case IDX_HEX_WORDLIST: hex_wordlist = 1; break;
5620 #ifndef OSX
5621 case IDX_CPU_AFFINITY: cpu_affinity = optarg; break;
5622 #endif
5623 case IDX_OPENCL_DEVICES: opencl_devices = optarg; break;
5624 case IDX_OPENCL_PLATFORMS: opencl_platforms = optarg; break;
5625 case IDX_OPENCL_DEVICE_TYPES:
5626 opencl_device_types = optarg; break;
5627 case IDX_OPENCL_VECTOR_WIDTH:
5628 opencl_vector_width = atoi (optarg); break;
5629 case IDX_WORKLOAD_PROFILE: workload_profile = atoi (optarg); break;
5630 case IDX_KERNEL_ACCEL: kernel_accel = atoi (optarg);
5631 kernel_accel_chgd = 1; break;
5632 case IDX_KERNEL_LOOPS: kernel_loops = atoi (optarg);
5633 kernel_loops_chgd = 1; break;
5634 #ifdef HAVE_HWMON
5635 case IDX_GPU_TEMP_DISABLE: gpu_temp_disable = 1; break;
5636 case IDX_GPU_TEMP_ABORT: gpu_temp_abort = atoi (optarg);
5637 #ifdef HAVE_ADL
5638 gpu_temp_abort_chgd = 1;
5639 #endif
5640 break;
5641 case IDX_GPU_TEMP_RETAIN: gpu_temp_retain = atoi (optarg);
5642 #ifdef HAVE_ADL
5643 gpu_temp_retain_chgd = 1;
5644 #endif
5645 break;
5646 #ifdef HAVE_ADL
5647 case IDX_POWERTUNE_ENABLE: powertune_enable = 1; break;
5648 #endif
5649 #endif // HAVE_HWMON
5650 case IDX_LOGFILE_DISABLE: logfile_disable = 1; break;
5651 case IDX_TRUECRYPT_KEYFILES: truecrypt_keyfiles = optarg; break;
5652 case IDX_SEGMENT_SIZE: segment_size = atoi (optarg); break;
5653 case IDX_SCRYPT_TMTO: scrypt_tmto = atoi (optarg); break;
5654 case IDX_SEPARATOR: separator = optarg[0]; break;
5655 case IDX_BITMAP_MIN: bitmap_min = atoi (optarg); break;
5656 case IDX_BITMAP_MAX: bitmap_max = atoi (optarg); break;
5657 case IDX_INCREMENT: increment = 1; break;
5658 case IDX_INCREMENT_MIN: increment_min = atoi (optarg);
5659 increment_min_chgd = 1; break;
5660 case IDX_INCREMENT_MAX: increment_max = atoi (optarg);
5661 increment_max_chgd = 1; break;
5662 case IDX_CUSTOM_CHARSET_1: custom_charset_1 = optarg; break;
5663 case IDX_CUSTOM_CHARSET_2: custom_charset_2 = optarg; break;
5664 case IDX_CUSTOM_CHARSET_3: custom_charset_3 = optarg; break;
5665 case IDX_CUSTOM_CHARSET_4: custom_charset_4 = optarg; break;
5666
5667 default:
5668 log_error ("ERROR: Invalid argument specified");
5669 return (-1);
5670 }
5671 }
5672
5673 if (optopt != 0)
5674 {
5675 log_error ("ERROR: Invalid argument specified");
5676
5677 return (-1);
5678 }
5679
5680 /**
5681 * Inform user things getting started,
5682 * - this is giving us a visual header before preparations start, so we do not need to clear them afterwards
5683 * - we do not need to check algorithm_pos
5684 */
5685
5686 if (quiet == 0)
5687 {
5688 if (benchmark == 1)
5689 {
5690 log_info ("%s %s (%s) starting in benchmark-mode...", PROGNAME, VERSION_TAG, VERSION_SUM);
5691
5692 log_info ("");
5693 }
5694 else if (restore == 1)
5695 {
5696 log_info ("%s %s (%s) starting in restore-mode...", PROGNAME, VERSION_TAG, VERSION_SUM);
5697
5698 log_info ("");
5699 }
5700 else
5701 {
5702 log_info ("%s %s (%s) starting...", PROGNAME, VERSION_TAG, VERSION_SUM);
5703
5704 log_info ("");
5705 }
5706 }
5707
5708 /**
5709 * sanity check
5710 */
5711
5712 if (attack_mode > 7)
5713 {
5714 log_error ("ERROR: Invalid attack-mode specified");
5715
5716 return (-1);
5717 }
5718
5719 if (runtime_chgd && runtime == 0) // just added to remove compiler warnings for runtime_chgd
5720 {
5721 log_error ("ERROR: Invalid runtime specified");
5722
5723 return (-1);
5724 }
5725
5726 if (hash_mode_chgd && hash_mode > 13000) // just added to remove compiler warnings for hash_mode_chgd
5727 {
5728 log_error ("ERROR: Invalid hash-type specified");
5729
5730 return (-1);
5731 }
5732
5733 // renamed hash modes
5734
5735 if (hash_mode_chgd)
5736 {
5737 int n = -1;
5738
5739 switch (hash_mode)
5740 {
5741 case 123: n = 124;
5742 break;
5743 }
5744
5745 if (n >= 0)
5746 {
5747 log_error ("Old -m specified, use -m %d instead", n);
5748
5749 return (-1);
5750 }
5751 }
5752
5753 if (username == 1)
5754 {
5755 if ((hash_mode == 2500) || (hash_mode == 5200) || ((hash_mode >= 6200) && (hash_mode <= 6299)))
5756 {
5757 log_error ("ERROR: Mixing support for user names and hashes of type %s is not supported", strhashtype (hash_mode));
5758
5759 return (-1);
5760 }
5761 }
5762
5763 if (outfile_format > 16)
5764 {
5765 log_error ("ERROR: Invalid outfile-format specified");
5766
5767 return (-1);
5768 }
5769
5770 if (left == 1)
5771 {
5772 if (outfile_format_chgd == 1)
5773 {
5774 if (outfile_format > 1)
5775 {
5776 log_error ("ERROR: Mixing outfile-format > 1 is not allowed together with left parameter");
5777
5778 return (-1);
5779 }
5780 }
5781 else
5782 {
5783 outfile_format = OUTFILE_FMT_HASH;
5784 }
5785 }
5786
5787 if (show == 1)
5788 {
5789 if (outfile_format_chgd == 1)
5790 {
5791 if ((outfile_format > 7) && (outfile_format < 16))
5792 {
5793 log_error ("ERROR: Mixing outfile-format > 7 is not allowed together with show parameter");
5794
5795 return (-1);
5796 }
5797 }
5798 }
5799
5800 if (increment_min < INCREMENT_MIN)
5801 {
5802 log_error ("ERROR: Invalid increment-min specified");
5803
5804 return (-1);
5805 }
5806
5807 if (increment_max > INCREMENT_MAX)
5808 {
5809 log_error ("ERROR: Invalid increment-max specified");
5810
5811 return (-1);
5812 }
5813
5814 if (increment_min > increment_max)
5815 {
5816 log_error ("ERROR: Invalid increment-min specified");
5817
5818 return (-1);
5819 }
5820
5821 if ((increment == 1) && (attack_mode == ATTACK_MODE_STRAIGHT))
5822 {
5823 log_error ("ERROR: increment is not allowed in attack-mode 0");
5824
5825 return (-1);
5826 }
5827
5828 if ((increment == 0) && (increment_min_chgd == 1))
5829 {
5830 log_error ("ERROR: increment-min is only supported together with increment switch");
5831
5832 return (-1);
5833 }
5834
5835 if ((increment == 0) && (increment_max_chgd == 1))
5836 {
5837 log_error ("ERROR: increment-max is only supported together with increment switch");
5838
5839 return (-1);
5840 }
5841
5842 if (rp_files_cnt && rp_gen)
5843 {
5844 log_error ("ERROR: Use of both rules-file and rules-generate is not supported");
5845
5846 return (-1);
5847 }
5848
5849 if (rp_files_cnt || rp_gen)
5850 {
5851 if (attack_mode != ATTACK_MODE_STRAIGHT)
5852 {
5853 log_error ("ERROR: Use of rules-file or rules-generate only allowed in attack-mode 0");
5854
5855 return (-1);
5856 }
5857 }
5858
5859 if (rp_gen_func_min > rp_gen_func_max)
5860 {
5861 log_error ("ERROR: Invalid rp-gen-func-min specified");
5862
5863 return (-1);
5864 }
5865
5866 if (kernel_accel_chgd == 1)
5867 {
5868 if (workload_profile != WORKLOAD_PROFILE)
5869 {
5870 log_error ("ERROR: kernel-accel parameter can only be set when workload-profile %i is used", WORKLOAD_PROFILE);
5871
5872 return (-1);
5873 }
5874
5875 if (kernel_accel < 1)
5876 {
5877 log_error ("ERROR: Invalid kernel-accel specified");
5878
5879 return (-1);
5880 }
5881
5882 if (kernel_accel > 800)
5883 {
5884 log_error ("ERROR: Invalid kernel-accel specified");
5885
5886 return (-1);
5887 }
5888 }
5889
5890 if (kernel_loops_chgd == 1)
5891 {
5892 if (workload_profile != WORKLOAD_PROFILE)
5893 {
5894 log_error ("ERROR: kernel-loops parameter can only be set when workload-profile %i is used", WORKLOAD_PROFILE);
5895
5896 return (-1);
5897 }
5898
5899 if (kernel_loops < 1)
5900 {
5901 log_error ("ERROR: Invalid kernel-loops specified");
5902
5903 return (-1);
5904 }
5905
5906 if (kernel_loops > 1024)
5907 {
5908 log_error ("ERROR: Invalid kernel-loops specified");
5909
5910 return (-1);
5911 }
5912 }
5913
5914 if (benchmark == 1)
5915 {
5916 if (workload_profile != WORKLOAD_PROFILE)
5917 {
5918 log_error ("ERROR: Using the workload-profile in benchmark mode is not allowed");
5919
5920 return (-1);
5921 }
5922 }
5923
5924 if ((workload_profile < 1) || (workload_profile > 3))
5925 {
5926 log_error ("ERROR: workload-profile %i not available", workload_profile);
5927
5928 return (-1);
5929 }
5930
5931 if ((opencl_vector_width != 0) && (opencl_vector_width != 1) && (opencl_vector_width != 2) && (opencl_vector_width != 4) && (opencl_vector_width != 8))
5932 {
5933 log_error ("ERROR: opencl-vector-width %i not allowed", opencl_vector_width);
5934
5935 return (-1);
5936 }
5937
5938 if (show == 1 || left == 1)
5939 {
5940 attack_mode = ATTACK_MODE_NONE;
5941
5942 if (remove == 1)
5943 {
5944 log_error ("ERROR: Mixing remove parameter not allowed with show parameter or left parameter");
5945
5946 return (-1);
5947 }
5948
5949 if (potfile_disable == 1)
5950 {
5951 log_error ("ERROR: Mixing potfile-disable parameter not allowed with show parameter or left parameter");
5952
5953 return (-1);
5954 }
5955 }
5956
5957 uint attack_kern = ATTACK_KERN_NONE;
5958
5959 switch (attack_mode)
5960 {
5961 case ATTACK_MODE_STRAIGHT: attack_kern = ATTACK_KERN_STRAIGHT; break;
5962 case ATTACK_MODE_COMBI: attack_kern = ATTACK_KERN_COMBI; break;
5963 case ATTACK_MODE_BF: attack_kern = ATTACK_KERN_BF; break;
5964 case ATTACK_MODE_HYBRID1: attack_kern = ATTACK_KERN_COMBI; break;
5965 case ATTACK_MODE_HYBRID2: attack_kern = ATTACK_KERN_COMBI; break;
5966 }
5967
5968 if (benchmark == 0)
5969 {
5970 if (keyspace == 1)
5971 {
5972 int num_additional_params = 1;
5973
5974 if (attack_kern == ATTACK_KERN_COMBI)
5975 {
5976 num_additional_params = 2;
5977 }
5978
5979 int keyspace_wordlist_specified = myargc - optind - num_additional_params;
5980
5981 if (keyspace_wordlist_specified == 0) optind--;
5982 }
5983
5984 if (attack_kern == ATTACK_KERN_NONE)
5985 {
5986 if ((optind + 1) != myargc)
5987 {
5988 usage_mini_print (myargv[0]);
5989
5990 return (-1);
5991 }
5992 }
5993 else if (attack_kern == ATTACK_KERN_STRAIGHT)
5994 {
5995 if ((optind + 1) > myargc)
5996 {
5997 usage_mini_print (myargv[0]);
5998
5999 return (-1);
6000 }
6001 }
6002 else if (attack_kern == ATTACK_KERN_COMBI)
6003 {
6004 if ((optind + 3) != myargc)
6005 {
6006 usage_mini_print (myargv[0]);
6007
6008 return (-1);
6009 }
6010 }
6011 else if (attack_kern == ATTACK_KERN_BF)
6012 {
6013 if ((optind + 1) > myargc)
6014 {
6015 usage_mini_print (myargv[0]);
6016
6017 return (-1);
6018 }
6019 }
6020 else
6021 {
6022 usage_mini_print (myargv[0]);
6023
6024 return (-1);
6025 }
6026 }
6027 else
6028 {
6029 if (myargv[optind] != 0)
6030 {
6031 log_error ("ERROR: Invalid argument for benchmark mode specified");
6032
6033 return (-1);
6034 }
6035
6036 if (attack_mode_chgd == 1)
6037 {
6038 if (attack_mode != ATTACK_MODE_BF)
6039 {
6040 log_error ("ERROR: Only attack-mode 3 allowed in benchmark mode");
6041
6042 return (-1);
6043 }
6044 }
6045
6046 if (benchmark_mode == 0)
6047 {
6048 // nothing to do
6049 }
6050 else if (benchmark_mode == 1)
6051 {
6052 if (kernel_accel_chgd == 1 || kernel_loops_chgd == 1)
6053 {
6054 log_error ("ERROR: Benchmark-mode 1 does not allow kernel-accel or kernel-loops changed");
6055
6056 return (-1);
6057 }
6058 }
6059 else
6060 {
6061 log_error ("ERROR: Benchmark-mode must be 0 or 1");
6062
6063 return (-1);
6064 }
6065 }
6066
6067 if (skip != 0 && limit != 0)
6068 {
6069 limit += skip;
6070 }
6071
6072 if (keyspace == 1)
6073 {
6074 if (show == 1)
6075 {
6076 log_error ("ERROR: Mixing show parameter not supported with keyspace parameter");
6077
6078 return (-1);
6079 }
6080 else if (left == 1)
6081 {
6082 log_error ("ERROR: Mixing left parameter not supported wiht keyspace parameter");
6083
6084 return (-1);
6085 }
6086
6087 potfile_disable = 1;
6088
6089 restore_disable = 1;
6090
6091 restore = 0;
6092
6093 weak_hash_threshold = 0;
6094
6095 quiet = 1;
6096 }
6097
6098 if (remove_timer_chgd == 1)
6099 {
6100 if (remove == 0)
6101 {
6102 log_error ("ERROR: Parameter remove-timer require parameter remove enabled");
6103
6104 return (-1);
6105 }
6106
6107 if (remove_timer < 1)
6108 {
6109 log_error ("ERROR: Parameter remove-timer must have a value greater than or equal to 1");
6110
6111 return (-1);
6112 }
6113 }
6114
6115 if (loopback == 1)
6116 {
6117 if (attack_mode == ATTACK_MODE_BF)
6118 {
6119 log_error ("ERROR: Parameter loopback not allowed in attack-mode 3");
6120
6121 return (-1);
6122 }
6123 else if (attack_mode == ATTACK_MODE_STRAIGHT)
6124 {
6125 if ((rp_files_cnt == 0) && (rp_gen == 0))
6126 {
6127 log_error ("ERROR: Parameter loopback not allowed without rules-file or rules-generate");
6128
6129 return (-1);
6130 }
6131 }
6132 }
6133
6134 if (debug_mode > 0)
6135 {
6136 if (attack_mode != ATTACK_MODE_STRAIGHT)
6137 {
6138 log_error ("ERROR: Parameter debug-mode option is only available with attack-mode 0");
6139
6140 return (-1);
6141 }
6142
6143 if ((rp_files_cnt == 0) && (rp_gen == 0))
6144 {
6145 log_error ("ERROR: Parameter debug-mode not allowed without rules-file or rules-generate");
6146
6147 return (-1);
6148 }
6149 }
6150
6151 if (debug_mode > 4)
6152 {
6153 log_error ("ERROR: Invalid debug-mode specified");
6154
6155 return (-1);
6156 }
6157
6158 if (debug_file != NULL)
6159 {
6160 if (debug_mode < 1)
6161 {
6162 log_error ("ERROR: Parameter debug-file requires parameter debug-mode to be set");
6163
6164 return (-1);
6165 }
6166 }
6167
6168 if (induction_dir != NULL)
6169 {
6170 if (attack_mode == ATTACK_MODE_BF)
6171 {
6172 log_error ("ERROR: Parameter induction-dir not allowed with brute-force attacks");
6173
6174 return (-1);
6175 }
6176 }
6177
6178 if (attack_mode != ATTACK_MODE_STRAIGHT)
6179 {
6180 if ((weak_hash_threshold != WEAK_HASH_THRESHOLD) && (weak_hash_threshold != 0))
6181 {
6182 log_error ("ERROR: setting --weak-hash-threshold allowed only in straight-attack mode");
6183
6184 return (-1);
6185 }
6186
6187 weak_hash_threshold = 0;
6188 }
6189
6190 /**
6191 * induction directory
6192 */
6193
6194 char *induction_directory = NULL;
6195
6196 if (attack_mode != ATTACK_MODE_BF)
6197 {
6198 if (induction_dir == NULL)
6199 {
6200 induction_directory = (char *) mymalloc (session_size);
6201
6202 snprintf (induction_directory, session_size - 1, "%s/%s.%s", session_dir, session, INDUCT_DIR);
6203
6204 // create induction folder if it does not already exist
6205
6206 if (keyspace == 0)
6207 {
6208 if (rmdir (induction_directory) == -1)
6209 {
6210 if (errno == ENOENT)
6211 {
6212 // good, we can ignore
6213 }
6214 else if (errno == ENOTEMPTY)
6215 {
6216 char *induction_directory_mv = (char *) mymalloc (session_size);
6217
6218 snprintf (induction_directory_mv, session_size - 1, "%s/%s.induct.%d", session_dir, session, (int) proc_start);
6219
6220 if (rename (induction_directory, induction_directory_mv) != 0)
6221 {
6222 log_error ("ERROR: Rename directory %s to %s: %s", induction_directory, induction_directory_mv, strerror (errno));
6223
6224 return (-1);
6225 }
6226 }
6227 else
6228 {
6229 log_error ("ERROR: %s: %s", induction_directory, strerror (errno));
6230
6231 return (-1);
6232 }
6233 }
6234
6235 if (mkdir (induction_directory, 0700) == -1)
6236 {
6237 log_error ("ERROR: %s: %s", induction_directory, strerror (errno));
6238
6239 return (-1);
6240 }
6241 }
6242 }
6243 else
6244 {
6245 induction_directory = induction_dir;
6246 }
6247 }
6248
6249 data.induction_directory = induction_directory;
6250
6251 /**
6252 * loopback
6253 */
6254
6255 size_t loopback_size = strlen (session_dir) + 1 + session_size + strlen (LOOPBACK_FILE) + 12;
6256
6257 char *loopback_file = (char *) mymalloc (loopback_size);
6258
6259 /**
6260 * outfile-check directory
6261 */
6262
6263 char *outfile_check_directory = NULL;
6264
6265 if (outfile_check_dir == NULL)
6266 {
6267 outfile_check_directory = (char *) mymalloc (session_size);
6268
6269 snprintf (outfile_check_directory, session_size - 1, "%s/%s.%s", session_dir, session, OUTFILES_DIR);
6270 }
6271 else
6272 {
6273 outfile_check_directory = outfile_check_dir;
6274 }
6275
6276 data.outfile_check_directory = outfile_check_directory;
6277
6278 if (keyspace == 0)
6279 {
6280 struct stat outfile_check_stat;
6281
6282 if (stat (outfile_check_directory, &outfile_check_stat) == 0)
6283 {
6284 uint is_dir = S_ISDIR (outfile_check_stat.st_mode);
6285
6286 if (is_dir == 0)
6287 {
6288 log_error ("ERROR: Directory specified in outfile-check '%s' is not a valid directory", outfile_check_directory);
6289
6290 return (-1);
6291 }
6292 }
6293 else if (outfile_check_dir == NULL)
6294 {
6295 if (mkdir (outfile_check_directory, 0700) == -1)
6296 {
6297 log_error ("ERROR: %s: %s", outfile_check_directory, strerror (errno));
6298
6299 return (-1);
6300 }
6301 }
6302 }
6303
6304 /**
6305 * special other stuff
6306 */
6307
6308 if (hash_mode == 9710)
6309 {
6310 outfile_format = 5;
6311 outfile_format_chgd = 1;
6312 }
6313
6314 if (hash_mode == 9810)
6315 {
6316 outfile_format = 5;
6317 outfile_format_chgd = 1;
6318 }
6319
6320 if (hash_mode == 10410)
6321 {
6322 outfile_format = 5;
6323 outfile_format_chgd = 1;
6324 }
6325
6326 /**
6327 * store stuff
6328 */
6329
6330 data.hash_mode = hash_mode;
6331 data.restore = restore;
6332 data.restore_timer = restore_timer;
6333 data.restore_disable = restore_disable;
6334 data.status = status;
6335 data.status_timer = status_timer;
6336 data.status_automat = status_automat;
6337 data.loopback = loopback;
6338 data.runtime = runtime;
6339 data.remove = remove;
6340 data.remove_timer = remove_timer;
6341 data.debug_mode = debug_mode;
6342 data.debug_file = debug_file;
6343 data.username = username;
6344 data.quiet = quiet;
6345 data.outfile = outfile;
6346 data.outfile_format = outfile_format;
6347 data.outfile_autohex = outfile_autohex;
6348 data.hex_charset = hex_charset;
6349 data.hex_salt = hex_salt;
6350 data.hex_wordlist = hex_wordlist;
6351 data.separator = separator;
6352 data.rp_files = rp_files;
6353 data.rp_files_cnt = rp_files_cnt;
6354 data.rp_gen = rp_gen;
6355 data.rp_gen_seed = rp_gen_seed;
6356 data.force = force;
6357 data.benchmark = benchmark;
6358 data.skip = skip;
6359 data.limit = limit;
6360 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
6361 data.powertune_enable = powertune_enable;
6362 #endif
6363 data.logfile_disable = logfile_disable;
6364 data.truecrypt_keyfiles = truecrypt_keyfiles;
6365 data.scrypt_tmto = scrypt_tmto;
6366
6367 /**
6368 * cpu affinity
6369 */
6370
6371 #ifndef OSX
6372 if (cpu_affinity)
6373 {
6374 set_cpu_affinity (cpu_affinity);
6375 }
6376 #endif
6377
6378 if (rp_gen_seed_chgd == 0)
6379 {
6380 srand (proc_start);
6381 }
6382 else
6383 {
6384 srand (rp_gen_seed);
6385 }
6386
6387 /**
6388 * logfile init
6389 */
6390
6391 if (logfile_disable == 0)
6392 {
6393 size_t logfile_size = strlen (session_dir) + 1 + strlen (session) + 32;
6394
6395 char *logfile = (char *) mymalloc (logfile_size);
6396
6397 snprintf (logfile, logfile_size - 1, "%s/%s.log", session_dir, session);
6398
6399 data.logfile = logfile;
6400
6401 char *topid = logfile_generate_topid ();
6402
6403 data.topid = topid;
6404 }
6405
6406 // logfile_append() checks for logfile_disable internally to make it easier from here
6407
6408 #define logfile_top_msg(msg) logfile_append ("%s\t%s", data.topid, (msg));
6409 #define logfile_sub_msg(msg) logfile_append ("%s\t%s\t%s", data.topid, data.subid, (msg));
6410 #define logfile_top_var_uint64(var,val) logfile_append ("%s\t%s\t%llu", data.topid, (var), (val));
6411 #define logfile_sub_var_uint64(var,val) logfile_append ("%s\t%s\t%s\t%llu", data.topid, data.subid, (var), (val));
6412 #define logfile_top_var_uint(var,val) logfile_append ("%s\t%s\t%u", data.topid, (var), (val));
6413 #define logfile_sub_var_uint(var,val) logfile_append ("%s\t%s\t%s\t%u", data.topid, data.subid, (var), (val));
6414 #define logfile_top_var_char(var,val) logfile_append ("%s\t%s\t%c", data.topid, (var), (val));
6415 #define logfile_sub_var_char(var,val) logfile_append ("%s\t%s\t%s\t%c", data.topid, data.subid, (var), (val));
6416 #define logfile_top_var_string(var,val) if ((val) != NULL) logfile_append ("%s\t%s\t%s", data.topid, (var), (val));
6417 #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));
6418
6419 #define logfile_top_uint64(var) logfile_top_var_uint64 (#var, (var));
6420 #define logfile_sub_uint64(var) logfile_sub_var_uint64 (#var, (var));
6421 #define logfile_top_uint(var) logfile_top_var_uint (#var, (var));
6422 #define logfile_sub_uint(var) logfile_sub_var_uint (#var, (var));
6423 #define logfile_top_char(var) logfile_top_var_char (#var, (var));
6424 #define logfile_sub_char(var) logfile_sub_var_char (#var, (var));
6425 #define logfile_top_string(var) logfile_top_var_string (#var, (var));
6426 #define logfile_sub_string(var) logfile_sub_var_string (#var, (var));
6427
6428 logfile_top_msg ("START");
6429
6430 logfile_top_uint (attack_mode);
6431 logfile_top_uint (attack_kern);
6432 logfile_top_uint (benchmark);
6433 logfile_top_uint (benchmark_mode);
6434 logfile_top_uint (bitmap_min);
6435 logfile_top_uint (bitmap_max);
6436 logfile_top_uint (debug_mode);
6437 logfile_top_uint (force);
6438 logfile_top_uint (kernel_accel);
6439 logfile_top_uint (kernel_loops);
6440 #ifdef HAVE_HWMON
6441 logfile_top_uint (gpu_temp_abort);
6442 logfile_top_uint (gpu_temp_disable);
6443 logfile_top_uint (gpu_temp_retain);
6444 #endif
6445 logfile_top_uint (hash_mode);
6446 logfile_top_uint (hex_charset);
6447 logfile_top_uint (hex_salt);
6448 logfile_top_uint (hex_wordlist);
6449 logfile_top_uint (increment);
6450 logfile_top_uint (increment_max);
6451 logfile_top_uint (increment_min);
6452 logfile_top_uint (keyspace);
6453 logfile_top_uint (left);
6454 logfile_top_uint (logfile_disable);
6455 logfile_top_uint (loopback);
6456 logfile_top_uint (markov_classic);
6457 logfile_top_uint (markov_disable);
6458 logfile_top_uint (markov_threshold);
6459 logfile_top_uint (outfile_autohex);
6460 logfile_top_uint (outfile_check_timer);
6461 logfile_top_uint (outfile_format);
6462 logfile_top_uint (potfile_disable);
6463 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
6464 logfile_top_uint (powertune_enable);
6465 #endif
6466 logfile_top_uint (scrypt_tmto);
6467 logfile_top_uint (quiet);
6468 logfile_top_uint (remove);
6469 logfile_top_uint (remove_timer);
6470 logfile_top_uint (restore);
6471 logfile_top_uint (restore_disable);
6472 logfile_top_uint (restore_timer);
6473 logfile_top_uint (rp_gen);
6474 logfile_top_uint (rp_gen_func_max);
6475 logfile_top_uint (rp_gen_func_min);
6476 logfile_top_uint (rp_gen_seed);
6477 logfile_top_uint (runtime);
6478 logfile_top_uint (segment_size);
6479 logfile_top_uint (show);
6480 logfile_top_uint (status);
6481 logfile_top_uint (status_automat);
6482 logfile_top_uint (status_timer);
6483 logfile_top_uint (usage);
6484 logfile_top_uint (username);
6485 logfile_top_uint (version);
6486 logfile_top_uint (weak_hash_threshold);
6487 logfile_top_uint (workload_profile);
6488 logfile_top_uint64 (limit);
6489 logfile_top_uint64 (skip);
6490 logfile_top_char (separator);
6491 #ifndef OSX
6492 logfile_top_string (cpu_affinity);
6493 #endif
6494 logfile_top_string (custom_charset_1);
6495 logfile_top_string (custom_charset_2);
6496 logfile_top_string (custom_charset_3);
6497 logfile_top_string (custom_charset_4);
6498 logfile_top_string (debug_file);
6499 logfile_top_string (opencl_devices);
6500 logfile_top_string (opencl_platforms);
6501 logfile_top_string (opencl_device_types);
6502 logfile_top_uint (opencl_vector_width);
6503 logfile_top_string (induction_dir);
6504 logfile_top_string (markov_hcstat);
6505 logfile_top_string (outfile);
6506 logfile_top_string (outfile_check_dir);
6507 logfile_top_string (rule_buf_l);
6508 logfile_top_string (rule_buf_r);
6509 logfile_top_string (session);
6510 logfile_top_string (truecrypt_keyfiles);
6511
6512 /**
6513 * OpenCL platform selection
6514 */
6515
6516 u32 opencl_platforms_filter = setup_opencl_platforms_filter (opencl_platforms);
6517
6518 /**
6519 * OpenCL device selection
6520 */
6521
6522 u32 devices_filter = setup_devices_filter (opencl_devices);
6523
6524 /**
6525 * OpenCL device type selection
6526 */
6527
6528 cl_device_type device_types_filter = setup_device_types_filter (opencl_device_types);
6529
6530 /**
6531 * benchmark
6532 */
6533
6534 if (benchmark == 1)
6535 {
6536 /**
6537 * disable useless stuff for benchmark
6538 */
6539
6540 restore_timer = 0;
6541 status_timer = 0;
6542 restore_disable = 1;
6543 potfile_disable = 1;
6544 weak_hash_threshold = 0;
6545
6546 data.restore_timer = restore_timer;
6547 data.status_timer = status_timer;
6548 data.restore_disable = restore_disable;
6549
6550 if (benchmark_mode == 1)
6551 {
6552 markov_disable = 1;
6553 }
6554
6555 /**
6556 * force attack mode to be bruteforce
6557 */
6558
6559 attack_mode = ATTACK_MODE_BF;
6560 attack_kern = ATTACK_KERN_BF;
6561
6562 if (runtime_chgd == 0)
6563 {
6564 runtime = 4;
6565
6566 if (benchmark_mode == 1) runtime = 17;
6567
6568 data.runtime = runtime;
6569 }
6570 }
6571
6572 /**
6573 * config
6574 */
6575
6576 uint hash_type = 0;
6577 uint salt_type = 0;
6578 uint attack_exec = 0;
6579 uint opts_type = 0;
6580 uint kern_type = 0;
6581 uint dgst_size = 0;
6582 uint esalt_size = 0;
6583 uint opti_type = 0;
6584 uint dgst_pos0 = -1;
6585 uint dgst_pos1 = -1;
6586 uint dgst_pos2 = -1;
6587 uint dgst_pos3 = -1;
6588
6589 int (*parse_func) (char *, uint, hash_t *);
6590 int (*sort_by_digest) (const void *, const void *);
6591
6592 uint algorithm_pos = 0;
6593 uint algorithm_max = 1;
6594
6595 uint *algorithms = default_benchmark_algorithms;
6596
6597 if (benchmark == 1 && hash_mode_chgd == 0) algorithm_max = NUM_DEFAULT_BENCHMARK_ALGORITHMS;
6598
6599 for (algorithm_pos = 0; algorithm_pos < algorithm_max; algorithm_pos++)
6600 {
6601 /*
6602 * We need to reset 'rd' in benchmark mode otherwise when the user hits 'bypass'
6603 * the following algos are skipped entirely
6604 */
6605
6606 if (algorithm_pos > 0)
6607 {
6608 local_free (rd);
6609
6610 rd = init_restore (argc, argv);
6611
6612 data.rd = rd;
6613 }
6614
6615 /**
6616 * update hash_mode in case of multihash benchmark
6617 */
6618
6619 if (benchmark == 1)
6620 {
6621 if (hash_mode_chgd == 0)
6622 {
6623 hash_mode = algorithms[algorithm_pos];
6624
6625 data.hash_mode = hash_mode;
6626 }
6627
6628 quiet = 1;
6629
6630 data.quiet = quiet;
6631 }
6632
6633 switch (hash_mode)
6634 {
6635 case 0: hash_type = HASH_TYPE_MD5;
6636 salt_type = SALT_TYPE_NONE;
6637 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6638 opts_type = OPTS_TYPE_PT_GENERATE_LE
6639 | OPTS_TYPE_PT_ADD80
6640 | OPTS_TYPE_PT_ADDBITS14;
6641 kern_type = KERN_TYPE_MD5;
6642 dgst_size = DGST_SIZE_4_4;
6643 parse_func = md5_parse_hash;
6644 sort_by_digest = sort_by_digest_4_4;
6645 opti_type = OPTI_TYPE_ZERO_BYTE
6646 | OPTI_TYPE_PRECOMPUTE_INIT
6647 | OPTI_TYPE_PRECOMPUTE_MERKLE
6648 | OPTI_TYPE_MEET_IN_MIDDLE
6649 | OPTI_TYPE_EARLY_SKIP
6650 | OPTI_TYPE_NOT_ITERATED
6651 | OPTI_TYPE_NOT_SALTED
6652 | OPTI_TYPE_RAW_HASH;
6653 dgst_pos0 = 0;
6654 dgst_pos1 = 3;
6655 dgst_pos2 = 2;
6656 dgst_pos3 = 1;
6657 break;
6658
6659 case 10: hash_type = HASH_TYPE_MD5;
6660 salt_type = SALT_TYPE_INTERN;
6661 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6662 opts_type = OPTS_TYPE_PT_GENERATE_LE
6663 | OPTS_TYPE_ST_ADD80
6664 | OPTS_TYPE_ST_ADDBITS14;
6665 kern_type = KERN_TYPE_MD5_PWSLT;
6666 dgst_size = DGST_SIZE_4_4;
6667 parse_func = md5s_parse_hash;
6668 sort_by_digest = sort_by_digest_4_4;
6669 opti_type = OPTI_TYPE_ZERO_BYTE
6670 | OPTI_TYPE_PRECOMPUTE_INIT
6671 | OPTI_TYPE_PRECOMPUTE_MERKLE
6672 | OPTI_TYPE_MEET_IN_MIDDLE
6673 | OPTI_TYPE_EARLY_SKIP
6674 | OPTI_TYPE_NOT_ITERATED
6675 | OPTI_TYPE_APPENDED_SALT
6676 | OPTI_TYPE_RAW_HASH;
6677 dgst_pos0 = 0;
6678 dgst_pos1 = 3;
6679 dgst_pos2 = 2;
6680 dgst_pos3 = 1;
6681 break;
6682
6683 case 11: hash_type = HASH_TYPE_MD5;
6684 salt_type = SALT_TYPE_INTERN;
6685 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6686 opts_type = OPTS_TYPE_PT_GENERATE_LE
6687 | OPTS_TYPE_ST_ADD80
6688 | OPTS_TYPE_ST_ADDBITS14;
6689 kern_type = KERN_TYPE_MD5_PWSLT;
6690 dgst_size = DGST_SIZE_4_4;
6691 parse_func = joomla_parse_hash;
6692 sort_by_digest = sort_by_digest_4_4;
6693 opti_type = OPTI_TYPE_ZERO_BYTE
6694 | OPTI_TYPE_PRECOMPUTE_INIT
6695 | OPTI_TYPE_PRECOMPUTE_MERKLE
6696 | OPTI_TYPE_MEET_IN_MIDDLE
6697 | OPTI_TYPE_EARLY_SKIP
6698 | OPTI_TYPE_NOT_ITERATED
6699 | OPTI_TYPE_APPENDED_SALT
6700 | OPTI_TYPE_RAW_HASH;
6701 dgst_pos0 = 0;
6702 dgst_pos1 = 3;
6703 dgst_pos2 = 2;
6704 dgst_pos3 = 1;
6705 break;
6706
6707 case 12: hash_type = HASH_TYPE_MD5;
6708 salt_type = SALT_TYPE_INTERN;
6709 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6710 opts_type = OPTS_TYPE_PT_GENERATE_LE
6711 | OPTS_TYPE_ST_ADD80
6712 | OPTS_TYPE_ST_ADDBITS14;
6713 kern_type = KERN_TYPE_MD5_PWSLT;
6714 dgst_size = DGST_SIZE_4_4;
6715 parse_func = postgresql_parse_hash;
6716 sort_by_digest = sort_by_digest_4_4;
6717 opti_type = OPTI_TYPE_ZERO_BYTE
6718 | OPTI_TYPE_PRECOMPUTE_INIT
6719 | OPTI_TYPE_PRECOMPUTE_MERKLE
6720 | OPTI_TYPE_MEET_IN_MIDDLE
6721 | OPTI_TYPE_EARLY_SKIP
6722 | OPTI_TYPE_NOT_ITERATED
6723 | OPTI_TYPE_APPENDED_SALT
6724 | OPTI_TYPE_RAW_HASH;
6725 dgst_pos0 = 0;
6726 dgst_pos1 = 3;
6727 dgst_pos2 = 2;
6728 dgst_pos3 = 1;
6729 break;
6730
6731 case 20: hash_type = HASH_TYPE_MD5;
6732 salt_type = SALT_TYPE_INTERN;
6733 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6734 opts_type = OPTS_TYPE_PT_GENERATE_LE
6735 | OPTS_TYPE_PT_ADD80
6736 | OPTS_TYPE_PT_ADDBITS14;
6737 kern_type = KERN_TYPE_MD5_SLTPW;
6738 dgst_size = DGST_SIZE_4_4;
6739 parse_func = md5s_parse_hash;
6740 sort_by_digest = sort_by_digest_4_4;
6741 opti_type = OPTI_TYPE_ZERO_BYTE
6742 | OPTI_TYPE_PRECOMPUTE_INIT
6743 | OPTI_TYPE_PRECOMPUTE_MERKLE
6744 | OPTI_TYPE_EARLY_SKIP
6745 | OPTI_TYPE_NOT_ITERATED
6746 | OPTI_TYPE_PREPENDED_SALT
6747 | OPTI_TYPE_RAW_HASH;
6748 dgst_pos0 = 0;
6749 dgst_pos1 = 3;
6750 dgst_pos2 = 2;
6751 dgst_pos3 = 1;
6752 break;
6753
6754 case 21: hash_type = HASH_TYPE_MD5;
6755 salt_type = SALT_TYPE_INTERN;
6756 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6757 opts_type = OPTS_TYPE_PT_GENERATE_LE
6758 | OPTS_TYPE_PT_ADD80
6759 | OPTS_TYPE_PT_ADDBITS14;
6760 kern_type = KERN_TYPE_MD5_SLTPW;
6761 dgst_size = DGST_SIZE_4_4;
6762 parse_func = osc_parse_hash;
6763 sort_by_digest = sort_by_digest_4_4;
6764 opti_type = OPTI_TYPE_ZERO_BYTE
6765 | OPTI_TYPE_PRECOMPUTE_INIT
6766 | OPTI_TYPE_PRECOMPUTE_MERKLE
6767 | OPTI_TYPE_EARLY_SKIP
6768 | OPTI_TYPE_NOT_ITERATED
6769 | OPTI_TYPE_PREPENDED_SALT
6770 | OPTI_TYPE_RAW_HASH;
6771 dgst_pos0 = 0;
6772 dgst_pos1 = 3;
6773 dgst_pos2 = 2;
6774 dgst_pos3 = 1;
6775 break;
6776
6777 case 22: hash_type = HASH_TYPE_MD5;
6778 salt_type = SALT_TYPE_EMBEDDED;
6779 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6780 opts_type = OPTS_TYPE_PT_GENERATE_LE
6781 | OPTS_TYPE_PT_ADD80
6782 | OPTS_TYPE_PT_ADDBITS14;
6783 kern_type = KERN_TYPE_MD5_SLTPW;
6784 dgst_size = DGST_SIZE_4_4;
6785 parse_func = netscreen_parse_hash;
6786 sort_by_digest = sort_by_digest_4_4;
6787 opti_type = OPTI_TYPE_ZERO_BYTE
6788 | OPTI_TYPE_PRECOMPUTE_INIT
6789 | OPTI_TYPE_PRECOMPUTE_MERKLE
6790 | OPTI_TYPE_EARLY_SKIP
6791 | OPTI_TYPE_NOT_ITERATED
6792 | OPTI_TYPE_PREPENDED_SALT
6793 | OPTI_TYPE_RAW_HASH;
6794 dgst_pos0 = 0;
6795 dgst_pos1 = 3;
6796 dgst_pos2 = 2;
6797 dgst_pos3 = 1;
6798 break;
6799
6800 case 23: hash_type = HASH_TYPE_MD5;
6801 salt_type = SALT_TYPE_EMBEDDED;
6802 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6803 opts_type = OPTS_TYPE_PT_GENERATE_LE
6804 | OPTS_TYPE_PT_ADD80
6805 | OPTS_TYPE_PT_ADDBITS14;
6806 kern_type = KERN_TYPE_MD5_SLTPW;
6807 dgst_size = DGST_SIZE_4_4;
6808 parse_func = skype_parse_hash;
6809 sort_by_digest = sort_by_digest_4_4;
6810 opti_type = OPTI_TYPE_ZERO_BYTE
6811 | OPTI_TYPE_PRECOMPUTE_INIT
6812 | OPTI_TYPE_PRECOMPUTE_MERKLE
6813 | OPTI_TYPE_EARLY_SKIP
6814 | OPTI_TYPE_NOT_ITERATED
6815 | OPTI_TYPE_PREPENDED_SALT
6816 | OPTI_TYPE_RAW_HASH;
6817 dgst_pos0 = 0;
6818 dgst_pos1 = 3;
6819 dgst_pos2 = 2;
6820 dgst_pos3 = 1;
6821 break;
6822
6823 case 30: hash_type = HASH_TYPE_MD5;
6824 salt_type = SALT_TYPE_INTERN;
6825 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6826 opts_type = OPTS_TYPE_PT_GENERATE_LE
6827 | OPTS_TYPE_PT_UNICODE
6828 | OPTS_TYPE_ST_ADD80
6829 | OPTS_TYPE_ST_ADDBITS14;
6830 kern_type = KERN_TYPE_MD5_PWUSLT;
6831 dgst_size = DGST_SIZE_4_4;
6832 parse_func = md5s_parse_hash;
6833 sort_by_digest = sort_by_digest_4_4;
6834 opti_type = OPTI_TYPE_ZERO_BYTE
6835 | OPTI_TYPE_PRECOMPUTE_INIT
6836 | OPTI_TYPE_PRECOMPUTE_MERKLE
6837 | OPTI_TYPE_MEET_IN_MIDDLE
6838 | OPTI_TYPE_EARLY_SKIP
6839 | OPTI_TYPE_NOT_ITERATED
6840 | OPTI_TYPE_APPENDED_SALT
6841 | OPTI_TYPE_RAW_HASH;
6842 dgst_pos0 = 0;
6843 dgst_pos1 = 3;
6844 dgst_pos2 = 2;
6845 dgst_pos3 = 1;
6846 break;
6847
6848 case 40: hash_type = HASH_TYPE_MD5;
6849 salt_type = SALT_TYPE_INTERN;
6850 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6851 opts_type = OPTS_TYPE_PT_GENERATE_LE
6852 | OPTS_TYPE_PT_ADD80
6853 | OPTS_TYPE_PT_ADDBITS14
6854 | OPTS_TYPE_PT_UNICODE;
6855 kern_type = KERN_TYPE_MD5_SLTPWU;
6856 dgst_size = DGST_SIZE_4_4;
6857 parse_func = md5s_parse_hash;
6858 sort_by_digest = sort_by_digest_4_4;
6859 opti_type = OPTI_TYPE_ZERO_BYTE
6860 | OPTI_TYPE_PRECOMPUTE_INIT
6861 | OPTI_TYPE_PRECOMPUTE_MERKLE
6862 | OPTI_TYPE_EARLY_SKIP
6863 | OPTI_TYPE_NOT_ITERATED
6864 | OPTI_TYPE_PREPENDED_SALT
6865 | OPTI_TYPE_RAW_HASH;
6866 dgst_pos0 = 0;
6867 dgst_pos1 = 3;
6868 dgst_pos2 = 2;
6869 dgst_pos3 = 1;
6870 break;
6871
6872 case 50: hash_type = HASH_TYPE_MD5;
6873 salt_type = SALT_TYPE_INTERN;
6874 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6875 opts_type = OPTS_TYPE_PT_GENERATE_LE
6876 | OPTS_TYPE_ST_ADD80
6877 | OPTS_TYPE_ST_ADDBITS14;
6878 kern_type = KERN_TYPE_HMACMD5_PW;
6879 dgst_size = DGST_SIZE_4_4;
6880 parse_func = hmacmd5_parse_hash;
6881 sort_by_digest = sort_by_digest_4_4;
6882 opti_type = OPTI_TYPE_ZERO_BYTE
6883 | OPTI_TYPE_NOT_ITERATED;
6884 dgst_pos0 = 0;
6885 dgst_pos1 = 3;
6886 dgst_pos2 = 2;
6887 dgst_pos3 = 1;
6888 break;
6889
6890 case 60: hash_type = HASH_TYPE_MD5;
6891 salt_type = SALT_TYPE_INTERN;
6892 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6893 opts_type = OPTS_TYPE_PT_GENERATE_LE
6894 | OPTS_TYPE_PT_ADD80
6895 | OPTS_TYPE_PT_ADDBITS14;
6896 kern_type = KERN_TYPE_HMACMD5_SLT;
6897 dgst_size = DGST_SIZE_4_4;
6898 parse_func = hmacmd5_parse_hash;
6899 sort_by_digest = sort_by_digest_4_4;
6900 opti_type = OPTI_TYPE_ZERO_BYTE
6901 | OPTI_TYPE_NOT_ITERATED;
6902 dgst_pos0 = 0;
6903 dgst_pos1 = 3;
6904 dgst_pos2 = 2;
6905 dgst_pos3 = 1;
6906 break;
6907
6908 case 100: hash_type = HASH_TYPE_SHA1;
6909 salt_type = SALT_TYPE_NONE;
6910 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6911 opts_type = OPTS_TYPE_PT_GENERATE_BE
6912 | OPTS_TYPE_PT_ADD80
6913 | OPTS_TYPE_PT_ADDBITS15;
6914 kern_type = KERN_TYPE_SHA1;
6915 dgst_size = DGST_SIZE_4_5;
6916 parse_func = sha1_parse_hash;
6917 sort_by_digest = sort_by_digest_4_5;
6918 opti_type = OPTI_TYPE_ZERO_BYTE
6919 | OPTI_TYPE_PRECOMPUTE_INIT
6920 | OPTI_TYPE_PRECOMPUTE_MERKLE
6921 | OPTI_TYPE_EARLY_SKIP
6922 | OPTI_TYPE_NOT_ITERATED
6923 | OPTI_TYPE_NOT_SALTED
6924 | OPTI_TYPE_RAW_HASH;
6925 dgst_pos0 = 3;
6926 dgst_pos1 = 4;
6927 dgst_pos2 = 2;
6928 dgst_pos3 = 1;
6929 break;
6930
6931 case 101: hash_type = HASH_TYPE_SHA1;
6932 salt_type = SALT_TYPE_NONE;
6933 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6934 opts_type = OPTS_TYPE_PT_GENERATE_BE
6935 | OPTS_TYPE_PT_ADD80
6936 | OPTS_TYPE_PT_ADDBITS15;
6937 kern_type = KERN_TYPE_SHA1;
6938 dgst_size = DGST_SIZE_4_5;
6939 parse_func = sha1b64_parse_hash;
6940 sort_by_digest = sort_by_digest_4_5;
6941 opti_type = OPTI_TYPE_ZERO_BYTE
6942 | OPTI_TYPE_PRECOMPUTE_INIT
6943 | OPTI_TYPE_PRECOMPUTE_MERKLE
6944 | OPTI_TYPE_EARLY_SKIP
6945 | OPTI_TYPE_NOT_ITERATED
6946 | OPTI_TYPE_NOT_SALTED
6947 | OPTI_TYPE_RAW_HASH;
6948 dgst_pos0 = 3;
6949 dgst_pos1 = 4;
6950 dgst_pos2 = 2;
6951 dgst_pos3 = 1;
6952 break;
6953
6954 case 110: hash_type = HASH_TYPE_SHA1;
6955 salt_type = SALT_TYPE_INTERN;
6956 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6957 opts_type = OPTS_TYPE_PT_GENERATE_BE
6958 | OPTS_TYPE_ST_ADD80
6959 | OPTS_TYPE_ST_ADDBITS15;
6960 kern_type = KERN_TYPE_SHA1_PWSLT;
6961 dgst_size = DGST_SIZE_4_5;
6962 parse_func = sha1s_parse_hash;
6963 sort_by_digest = sort_by_digest_4_5;
6964 opti_type = OPTI_TYPE_ZERO_BYTE
6965 | OPTI_TYPE_PRECOMPUTE_INIT
6966 | OPTI_TYPE_PRECOMPUTE_MERKLE
6967 | OPTI_TYPE_EARLY_SKIP
6968 | OPTI_TYPE_NOT_ITERATED
6969 | OPTI_TYPE_APPENDED_SALT
6970 | OPTI_TYPE_RAW_HASH;
6971 dgst_pos0 = 3;
6972 dgst_pos1 = 4;
6973 dgst_pos2 = 2;
6974 dgst_pos3 = 1;
6975 break;
6976
6977 case 111: hash_type = HASH_TYPE_SHA1;
6978 salt_type = SALT_TYPE_EMBEDDED;
6979 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
6980 opts_type = OPTS_TYPE_PT_GENERATE_BE
6981 | OPTS_TYPE_ST_ADD80
6982 | OPTS_TYPE_ST_ADDBITS15;
6983 kern_type = KERN_TYPE_SHA1_PWSLT;
6984 dgst_size = DGST_SIZE_4_5;
6985 parse_func = sha1b64s_parse_hash;
6986 sort_by_digest = sort_by_digest_4_5;
6987 opti_type = OPTI_TYPE_ZERO_BYTE
6988 | OPTI_TYPE_PRECOMPUTE_INIT
6989 | OPTI_TYPE_PRECOMPUTE_MERKLE
6990 | OPTI_TYPE_EARLY_SKIP
6991 | OPTI_TYPE_NOT_ITERATED
6992 | OPTI_TYPE_APPENDED_SALT
6993 | OPTI_TYPE_RAW_HASH;
6994 dgst_pos0 = 3;
6995 dgst_pos1 = 4;
6996 dgst_pos2 = 2;
6997 dgst_pos3 = 1;
6998 break;
6999
7000 case 112: hash_type = HASH_TYPE_SHA1;
7001 salt_type = SALT_TYPE_INTERN;
7002 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7003 opts_type = OPTS_TYPE_PT_GENERATE_BE
7004 | OPTS_TYPE_ST_ADD80
7005 | OPTS_TYPE_ST_ADDBITS15
7006 | OPTS_TYPE_ST_HEX;
7007 kern_type = KERN_TYPE_SHA1_PWSLT;
7008 dgst_size = DGST_SIZE_4_5;
7009 parse_func = oracles_parse_hash;
7010 sort_by_digest = sort_by_digest_4_5;
7011 opti_type = OPTI_TYPE_ZERO_BYTE
7012 | OPTI_TYPE_PRECOMPUTE_INIT
7013 | OPTI_TYPE_PRECOMPUTE_MERKLE
7014 | OPTI_TYPE_EARLY_SKIP
7015 | OPTI_TYPE_NOT_ITERATED
7016 | OPTI_TYPE_APPENDED_SALT
7017 | OPTI_TYPE_RAW_HASH;
7018 dgst_pos0 = 3;
7019 dgst_pos1 = 4;
7020 dgst_pos2 = 2;
7021 dgst_pos3 = 1;
7022 break;
7023
7024 case 120: hash_type = HASH_TYPE_SHA1;
7025 salt_type = SALT_TYPE_INTERN;
7026 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7027 opts_type = OPTS_TYPE_PT_GENERATE_BE
7028 | OPTS_TYPE_PT_ADD80
7029 | OPTS_TYPE_PT_ADDBITS15;
7030 kern_type = KERN_TYPE_SHA1_SLTPW;
7031 dgst_size = DGST_SIZE_4_5;
7032 parse_func = sha1s_parse_hash;
7033 sort_by_digest = sort_by_digest_4_5;
7034 opti_type = OPTI_TYPE_ZERO_BYTE
7035 | OPTI_TYPE_PRECOMPUTE_INIT
7036 | OPTI_TYPE_PRECOMPUTE_MERKLE
7037 | OPTI_TYPE_EARLY_SKIP
7038 | OPTI_TYPE_NOT_ITERATED
7039 | OPTI_TYPE_PREPENDED_SALT
7040 | OPTI_TYPE_RAW_HASH;
7041 dgst_pos0 = 3;
7042 dgst_pos1 = 4;
7043 dgst_pos2 = 2;
7044 dgst_pos3 = 1;
7045 break;
7046
7047 case 121: hash_type = HASH_TYPE_SHA1;
7048 salt_type = SALT_TYPE_INTERN;
7049 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7050 opts_type = OPTS_TYPE_PT_GENERATE_BE
7051 | OPTS_TYPE_PT_ADD80
7052 | OPTS_TYPE_PT_ADDBITS15
7053 | OPTS_TYPE_ST_LOWER;
7054 kern_type = KERN_TYPE_SHA1_SLTPW;
7055 dgst_size = DGST_SIZE_4_5;
7056 parse_func = smf_parse_hash;
7057 sort_by_digest = sort_by_digest_4_5;
7058 opti_type = OPTI_TYPE_ZERO_BYTE
7059 | OPTI_TYPE_PRECOMPUTE_INIT
7060 | OPTI_TYPE_PRECOMPUTE_MERKLE
7061 | OPTI_TYPE_EARLY_SKIP
7062 | OPTI_TYPE_NOT_ITERATED
7063 | OPTI_TYPE_PREPENDED_SALT
7064 | OPTI_TYPE_RAW_HASH;
7065 dgst_pos0 = 3;
7066 dgst_pos1 = 4;
7067 dgst_pos2 = 2;
7068 dgst_pos3 = 1;
7069 break;
7070
7071 case 122: hash_type = HASH_TYPE_SHA1;
7072 salt_type = SALT_TYPE_EMBEDDED;
7073 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7074 opts_type = OPTS_TYPE_PT_GENERATE_BE
7075 | OPTS_TYPE_PT_ADD80
7076 | OPTS_TYPE_PT_ADDBITS15
7077 | OPTS_TYPE_ST_HEX;
7078 kern_type = KERN_TYPE_SHA1_SLTPW;
7079 dgst_size = DGST_SIZE_4_5;
7080 parse_func = osx1_parse_hash;
7081 sort_by_digest = sort_by_digest_4_5;
7082 opti_type = OPTI_TYPE_ZERO_BYTE
7083 | OPTI_TYPE_PRECOMPUTE_INIT
7084 | OPTI_TYPE_PRECOMPUTE_MERKLE
7085 | OPTI_TYPE_EARLY_SKIP
7086 | OPTI_TYPE_NOT_ITERATED
7087 | OPTI_TYPE_PREPENDED_SALT
7088 | OPTI_TYPE_RAW_HASH;
7089 dgst_pos0 = 3;
7090 dgst_pos1 = 4;
7091 dgst_pos2 = 2;
7092 dgst_pos3 = 1;
7093 break;
7094
7095 case 124: hash_type = HASH_TYPE_SHA1;
7096 salt_type = SALT_TYPE_EMBEDDED;
7097 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7098 opts_type = OPTS_TYPE_PT_GENERATE_BE
7099 | OPTS_TYPE_PT_ADD80
7100 | OPTS_TYPE_PT_ADDBITS15;
7101 kern_type = KERN_TYPE_SHA1_SLTPW;
7102 dgst_size = DGST_SIZE_4_5;
7103 parse_func = djangosha1_parse_hash;
7104 sort_by_digest = sort_by_digest_4_5;
7105 opti_type = OPTI_TYPE_ZERO_BYTE
7106 | OPTI_TYPE_PRECOMPUTE_INIT
7107 | OPTI_TYPE_PRECOMPUTE_MERKLE
7108 | OPTI_TYPE_EARLY_SKIP
7109 | OPTI_TYPE_NOT_ITERATED
7110 | OPTI_TYPE_PREPENDED_SALT
7111 | OPTI_TYPE_RAW_HASH;
7112 dgst_pos0 = 3;
7113 dgst_pos1 = 4;
7114 dgst_pos2 = 2;
7115 dgst_pos3 = 1;
7116 break;
7117
7118 case 130: hash_type = HASH_TYPE_SHA1;
7119 salt_type = SALT_TYPE_INTERN;
7120 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7121 opts_type = OPTS_TYPE_PT_GENERATE_BE
7122 | OPTS_TYPE_PT_UNICODE
7123 | OPTS_TYPE_ST_ADD80
7124 | OPTS_TYPE_ST_ADDBITS15;
7125 kern_type = KERN_TYPE_SHA1_PWUSLT;
7126 dgst_size = DGST_SIZE_4_5;
7127 parse_func = sha1s_parse_hash;
7128 sort_by_digest = sort_by_digest_4_5;
7129 opti_type = OPTI_TYPE_ZERO_BYTE
7130 | OPTI_TYPE_PRECOMPUTE_INIT
7131 | OPTI_TYPE_PRECOMPUTE_MERKLE
7132 | OPTI_TYPE_EARLY_SKIP
7133 | OPTI_TYPE_NOT_ITERATED
7134 | OPTI_TYPE_APPENDED_SALT
7135 | OPTI_TYPE_RAW_HASH;
7136 dgst_pos0 = 3;
7137 dgst_pos1 = 4;
7138 dgst_pos2 = 2;
7139 dgst_pos3 = 1;
7140 break;
7141
7142 case 131: hash_type = HASH_TYPE_SHA1;
7143 salt_type = SALT_TYPE_EMBEDDED;
7144 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7145 opts_type = OPTS_TYPE_PT_GENERATE_BE
7146 | OPTS_TYPE_PT_UNICODE
7147 | OPTS_TYPE_PT_UPPER
7148 | OPTS_TYPE_ST_ADD80
7149 | OPTS_TYPE_ST_ADDBITS15
7150 | OPTS_TYPE_ST_HEX;
7151 kern_type = KERN_TYPE_SHA1_PWUSLT;
7152 dgst_size = DGST_SIZE_4_5;
7153 parse_func = mssql2000_parse_hash;
7154 sort_by_digest = sort_by_digest_4_5;
7155 opti_type = OPTI_TYPE_ZERO_BYTE
7156 | OPTI_TYPE_PRECOMPUTE_INIT
7157 | OPTI_TYPE_PRECOMPUTE_MERKLE
7158 | OPTI_TYPE_EARLY_SKIP
7159 | OPTI_TYPE_NOT_ITERATED
7160 | OPTI_TYPE_APPENDED_SALT
7161 | OPTI_TYPE_RAW_HASH;
7162 dgst_pos0 = 3;
7163 dgst_pos1 = 4;
7164 dgst_pos2 = 2;
7165 dgst_pos3 = 1;
7166 break;
7167
7168 case 132: hash_type = HASH_TYPE_SHA1;
7169 salt_type = SALT_TYPE_EMBEDDED;
7170 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7171 opts_type = OPTS_TYPE_PT_GENERATE_BE
7172 | OPTS_TYPE_PT_UNICODE
7173 | OPTS_TYPE_ST_ADD80
7174 | OPTS_TYPE_ST_ADDBITS15
7175 | OPTS_TYPE_ST_HEX;
7176 kern_type = KERN_TYPE_SHA1_PWUSLT;
7177 dgst_size = DGST_SIZE_4_5;
7178 parse_func = mssql2005_parse_hash;
7179 sort_by_digest = sort_by_digest_4_5;
7180 opti_type = OPTI_TYPE_ZERO_BYTE
7181 | OPTI_TYPE_PRECOMPUTE_INIT
7182 | OPTI_TYPE_PRECOMPUTE_MERKLE
7183 | OPTI_TYPE_EARLY_SKIP
7184 | OPTI_TYPE_NOT_ITERATED
7185 | OPTI_TYPE_APPENDED_SALT
7186 | OPTI_TYPE_RAW_HASH;
7187 dgst_pos0 = 3;
7188 dgst_pos1 = 4;
7189 dgst_pos2 = 2;
7190 dgst_pos3 = 1;
7191 break;
7192
7193 case 133: hash_type = HASH_TYPE_SHA1;
7194 salt_type = SALT_TYPE_EMBEDDED;
7195 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7196 opts_type = OPTS_TYPE_PT_GENERATE_BE
7197 | OPTS_TYPE_PT_UNICODE
7198 | OPTS_TYPE_ST_ADD80
7199 | OPTS_TYPE_ST_ADDBITS15;
7200 kern_type = KERN_TYPE_SHA1_PWUSLT;
7201 dgst_size = DGST_SIZE_4_5;
7202 parse_func = peoplesoft_parse_hash;
7203 sort_by_digest = sort_by_digest_4_5;
7204 opti_type = OPTI_TYPE_ZERO_BYTE
7205 | OPTI_TYPE_PRECOMPUTE_INIT
7206 | OPTI_TYPE_PRECOMPUTE_MERKLE
7207 | OPTI_TYPE_EARLY_SKIP
7208 | OPTI_TYPE_NOT_ITERATED
7209 | OPTI_TYPE_APPENDED_SALT
7210 | OPTI_TYPE_RAW_HASH;
7211 dgst_pos0 = 3;
7212 dgst_pos1 = 4;
7213 dgst_pos2 = 2;
7214 dgst_pos3 = 1;
7215 break;
7216
7217 case 140: hash_type = HASH_TYPE_SHA1;
7218 salt_type = SALT_TYPE_INTERN;
7219 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7220 opts_type = OPTS_TYPE_PT_GENERATE_BE
7221 | OPTS_TYPE_PT_ADD80
7222 | OPTS_TYPE_PT_ADDBITS15
7223 | OPTS_TYPE_PT_UNICODE;
7224 kern_type = KERN_TYPE_SHA1_SLTPWU;
7225 dgst_size = DGST_SIZE_4_5;
7226 parse_func = sha1s_parse_hash;
7227 sort_by_digest = sort_by_digest_4_5;
7228 opti_type = OPTI_TYPE_ZERO_BYTE
7229 | OPTI_TYPE_PRECOMPUTE_INIT
7230 | OPTI_TYPE_PRECOMPUTE_MERKLE
7231 | OPTI_TYPE_EARLY_SKIP
7232 | OPTI_TYPE_NOT_ITERATED
7233 | OPTI_TYPE_PREPENDED_SALT
7234 | OPTI_TYPE_RAW_HASH;
7235 dgst_pos0 = 3;
7236 dgst_pos1 = 4;
7237 dgst_pos2 = 2;
7238 dgst_pos3 = 1;
7239 break;
7240
7241 case 141: hash_type = HASH_TYPE_SHA1;
7242 salt_type = SALT_TYPE_EMBEDDED;
7243 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7244 opts_type = OPTS_TYPE_PT_GENERATE_BE
7245 | OPTS_TYPE_PT_ADD80
7246 | OPTS_TYPE_PT_ADDBITS15
7247 | OPTS_TYPE_PT_UNICODE
7248 | OPTS_TYPE_ST_BASE64;
7249 kern_type = KERN_TYPE_SHA1_SLTPWU;
7250 dgst_size = DGST_SIZE_4_5;
7251 parse_func = episerver_parse_hash;
7252 sort_by_digest = sort_by_digest_4_5;
7253 opti_type = OPTI_TYPE_ZERO_BYTE
7254 | OPTI_TYPE_PRECOMPUTE_INIT
7255 | OPTI_TYPE_PRECOMPUTE_MERKLE
7256 | OPTI_TYPE_EARLY_SKIP
7257 | OPTI_TYPE_NOT_ITERATED
7258 | OPTI_TYPE_PREPENDED_SALT
7259 | OPTI_TYPE_RAW_HASH;
7260 dgst_pos0 = 3;
7261 dgst_pos1 = 4;
7262 dgst_pos2 = 2;
7263 dgst_pos3 = 1;
7264 break;
7265
7266 case 150: hash_type = HASH_TYPE_SHA1;
7267 salt_type = SALT_TYPE_INTERN;
7268 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7269 opts_type = OPTS_TYPE_PT_GENERATE_BE
7270 | OPTS_TYPE_ST_ADD80
7271 | OPTS_TYPE_ST_ADDBITS15;
7272 kern_type = KERN_TYPE_HMACSHA1_PW;
7273 dgst_size = DGST_SIZE_4_5;
7274 parse_func = hmacsha1_parse_hash;
7275 sort_by_digest = sort_by_digest_4_5;
7276 opti_type = OPTI_TYPE_ZERO_BYTE
7277 | OPTI_TYPE_NOT_ITERATED;
7278 dgst_pos0 = 3;
7279 dgst_pos1 = 4;
7280 dgst_pos2 = 2;
7281 dgst_pos3 = 1;
7282 break;
7283
7284 case 160: hash_type = HASH_TYPE_SHA1;
7285 salt_type = SALT_TYPE_INTERN;
7286 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7287 opts_type = OPTS_TYPE_PT_GENERATE_BE
7288 | OPTS_TYPE_PT_ADD80
7289 | OPTS_TYPE_PT_ADDBITS15;
7290 kern_type = KERN_TYPE_HMACSHA1_SLT;
7291 dgst_size = DGST_SIZE_4_5;
7292 parse_func = hmacsha1_parse_hash;
7293 sort_by_digest = sort_by_digest_4_5;
7294 opti_type = OPTI_TYPE_ZERO_BYTE
7295 | OPTI_TYPE_NOT_ITERATED;
7296 dgst_pos0 = 3;
7297 dgst_pos1 = 4;
7298 dgst_pos2 = 2;
7299 dgst_pos3 = 1;
7300 break;
7301
7302 case 190: hash_type = HASH_TYPE_SHA1;
7303 salt_type = SALT_TYPE_NONE;
7304 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7305 opts_type = OPTS_TYPE_PT_GENERATE_BE
7306 | OPTS_TYPE_PT_ADD80
7307 | OPTS_TYPE_PT_ADDBITS15;
7308 kern_type = KERN_TYPE_SHA1_LINKEDIN;
7309 dgst_size = DGST_SIZE_4_5;
7310 parse_func = sha1linkedin_parse_hash;
7311 sort_by_digest = sort_by_digest_4_5;
7312 opti_type = OPTI_TYPE_ZERO_BYTE
7313 | OPTI_TYPE_PRECOMPUTE_INIT
7314 | OPTI_TYPE_EARLY_SKIP
7315 | OPTI_TYPE_NOT_ITERATED
7316 | OPTI_TYPE_NOT_SALTED;
7317 dgst_pos0 = 0;
7318 dgst_pos1 = 4;
7319 dgst_pos2 = 3;
7320 dgst_pos3 = 2;
7321 break;
7322
7323 case 200: hash_type = HASH_TYPE_MYSQL;
7324 salt_type = SALT_TYPE_NONE;
7325 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7326 opts_type = 0;
7327 kern_type = KERN_TYPE_MYSQL;
7328 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
7329 parse_func = mysql323_parse_hash;
7330 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
7331 opti_type = OPTI_TYPE_ZERO_BYTE;
7332 dgst_pos0 = 0;
7333 dgst_pos1 = 1;
7334 dgst_pos2 = 2;
7335 dgst_pos3 = 3;
7336 break;
7337
7338 case 300: hash_type = HASH_TYPE_SHA1;
7339 salt_type = SALT_TYPE_NONE;
7340 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7341 opts_type = OPTS_TYPE_PT_GENERATE_BE
7342 | OPTS_TYPE_PT_ADD80
7343 | OPTS_TYPE_PT_ADDBITS15;
7344 kern_type = KERN_TYPE_MYSQL41;
7345 dgst_size = DGST_SIZE_4_5;
7346 parse_func = sha1_parse_hash;
7347 sort_by_digest = sort_by_digest_4_5;
7348 opti_type = OPTI_TYPE_ZERO_BYTE
7349 | OPTI_TYPE_PRECOMPUTE_INIT
7350 | OPTI_TYPE_PRECOMPUTE_MERKLE
7351 | OPTI_TYPE_EARLY_SKIP
7352 | OPTI_TYPE_NOT_ITERATED
7353 | OPTI_TYPE_NOT_SALTED;
7354 dgst_pos0 = 3;
7355 dgst_pos1 = 4;
7356 dgst_pos2 = 2;
7357 dgst_pos3 = 1;
7358 break;
7359
7360 case 400: hash_type = HASH_TYPE_MD5;
7361 salt_type = SALT_TYPE_EMBEDDED;
7362 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7363 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7364 kern_type = KERN_TYPE_PHPASS;
7365 dgst_size = DGST_SIZE_4_4;
7366 parse_func = phpass_parse_hash;
7367 sort_by_digest = sort_by_digest_4_4;
7368 opti_type = OPTI_TYPE_ZERO_BYTE;
7369 dgst_pos0 = 0;
7370 dgst_pos1 = 1;
7371 dgst_pos2 = 2;
7372 dgst_pos3 = 3;
7373 break;
7374
7375 case 500: hash_type = HASH_TYPE_MD5;
7376 salt_type = SALT_TYPE_EMBEDDED;
7377 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7378 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7379 kern_type = KERN_TYPE_MD5CRYPT;
7380 dgst_size = DGST_SIZE_4_4;
7381 parse_func = md5crypt_parse_hash;
7382 sort_by_digest = sort_by_digest_4_4;
7383 opti_type = OPTI_TYPE_ZERO_BYTE;
7384 dgst_pos0 = 0;
7385 dgst_pos1 = 1;
7386 dgst_pos2 = 2;
7387 dgst_pos3 = 3;
7388 break;
7389
7390 case 501: hash_type = HASH_TYPE_MD5;
7391 salt_type = SALT_TYPE_EMBEDDED;
7392 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7393 opts_type = OPTS_TYPE_PT_GENERATE_LE
7394 | OPTS_TYPE_HASH_COPY;
7395 kern_type = KERN_TYPE_MD5CRYPT;
7396 dgst_size = DGST_SIZE_4_4;
7397 parse_func = juniper_parse_hash;
7398 sort_by_digest = sort_by_digest_4_4;
7399 opti_type = OPTI_TYPE_ZERO_BYTE;
7400 dgst_pos0 = 0;
7401 dgst_pos1 = 1;
7402 dgst_pos2 = 2;
7403 dgst_pos3 = 3;
7404 break;
7405
7406 case 900: hash_type = HASH_TYPE_MD4;
7407 salt_type = SALT_TYPE_NONE;
7408 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7409 opts_type = OPTS_TYPE_PT_GENERATE_LE
7410 | OPTS_TYPE_PT_ADD80
7411 | OPTS_TYPE_PT_ADDBITS14;
7412 kern_type = KERN_TYPE_MD4;
7413 dgst_size = DGST_SIZE_4_4;
7414 parse_func = md4_parse_hash;
7415 sort_by_digest = sort_by_digest_4_4;
7416 opti_type = OPTI_TYPE_ZERO_BYTE
7417 | OPTI_TYPE_PRECOMPUTE_INIT
7418 | OPTI_TYPE_PRECOMPUTE_MERKLE
7419 | OPTI_TYPE_MEET_IN_MIDDLE
7420 | OPTI_TYPE_EARLY_SKIP
7421 | OPTI_TYPE_NOT_ITERATED
7422 | OPTI_TYPE_NOT_SALTED
7423 | OPTI_TYPE_RAW_HASH;
7424 dgst_pos0 = 0;
7425 dgst_pos1 = 3;
7426 dgst_pos2 = 2;
7427 dgst_pos3 = 1;
7428 break;
7429
7430 case 1000: hash_type = HASH_TYPE_MD4;
7431 salt_type = SALT_TYPE_NONE;
7432 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7433 opts_type = OPTS_TYPE_PT_GENERATE_LE
7434 | OPTS_TYPE_PT_ADD80
7435 | OPTS_TYPE_PT_ADDBITS14
7436 | OPTS_TYPE_PT_UNICODE;
7437 kern_type = KERN_TYPE_MD4_PWU;
7438 dgst_size = DGST_SIZE_4_4;
7439 parse_func = md4_parse_hash;
7440 sort_by_digest = sort_by_digest_4_4;
7441 opti_type = OPTI_TYPE_ZERO_BYTE
7442 | OPTI_TYPE_PRECOMPUTE_INIT
7443 | OPTI_TYPE_PRECOMPUTE_MERKLE
7444 | OPTI_TYPE_MEET_IN_MIDDLE
7445 | OPTI_TYPE_EARLY_SKIP
7446 | OPTI_TYPE_NOT_ITERATED
7447 | OPTI_TYPE_NOT_SALTED
7448 | OPTI_TYPE_RAW_HASH;
7449 dgst_pos0 = 0;
7450 dgst_pos1 = 3;
7451 dgst_pos2 = 2;
7452 dgst_pos3 = 1;
7453 break;
7454
7455 case 1100: hash_type = HASH_TYPE_MD4;
7456 salt_type = SALT_TYPE_INTERN;
7457 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7458 opts_type = OPTS_TYPE_PT_GENERATE_LE
7459 | OPTS_TYPE_PT_ADD80
7460 | OPTS_TYPE_PT_ADDBITS14
7461 | OPTS_TYPE_PT_UNICODE
7462 | OPTS_TYPE_ST_ADD80
7463 | OPTS_TYPE_ST_UNICODE
7464 | OPTS_TYPE_ST_LOWER;
7465 kern_type = KERN_TYPE_MD44_PWUSLT;
7466 dgst_size = DGST_SIZE_4_4;
7467 parse_func = dcc_parse_hash;
7468 sort_by_digest = sort_by_digest_4_4;
7469 opti_type = OPTI_TYPE_ZERO_BYTE
7470 | OPTI_TYPE_PRECOMPUTE_INIT
7471 | OPTI_TYPE_PRECOMPUTE_MERKLE
7472 | OPTI_TYPE_EARLY_SKIP
7473 | OPTI_TYPE_NOT_ITERATED;
7474 dgst_pos0 = 0;
7475 dgst_pos1 = 3;
7476 dgst_pos2 = 2;
7477 dgst_pos3 = 1;
7478 break;
7479
7480 case 1400: hash_type = HASH_TYPE_SHA256;
7481 salt_type = SALT_TYPE_NONE;
7482 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7483 opts_type = OPTS_TYPE_PT_GENERATE_BE
7484 | OPTS_TYPE_PT_ADD80
7485 | OPTS_TYPE_PT_ADDBITS15;
7486 kern_type = KERN_TYPE_SHA256;
7487 dgst_size = DGST_SIZE_4_8;
7488 parse_func = sha256_parse_hash;
7489 sort_by_digest = sort_by_digest_4_8;
7490 opti_type = OPTI_TYPE_ZERO_BYTE
7491 | OPTI_TYPE_PRECOMPUTE_INIT
7492 | OPTI_TYPE_PRECOMPUTE_MERKLE
7493 | OPTI_TYPE_EARLY_SKIP
7494 | OPTI_TYPE_NOT_ITERATED
7495 | OPTI_TYPE_NOT_SALTED
7496 | OPTI_TYPE_RAW_HASH;
7497 dgst_pos0 = 3;
7498 dgst_pos1 = 7;
7499 dgst_pos2 = 2;
7500 dgst_pos3 = 6;
7501 break;
7502
7503 case 1410: hash_type = HASH_TYPE_SHA256;
7504 salt_type = SALT_TYPE_INTERN;
7505 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7506 opts_type = OPTS_TYPE_PT_GENERATE_BE
7507 | OPTS_TYPE_ST_ADD80
7508 | OPTS_TYPE_ST_ADDBITS15;
7509 kern_type = KERN_TYPE_SHA256_PWSLT;
7510 dgst_size = DGST_SIZE_4_8;
7511 parse_func = sha256s_parse_hash;
7512 sort_by_digest = sort_by_digest_4_8;
7513 opti_type = OPTI_TYPE_ZERO_BYTE
7514 | OPTI_TYPE_PRECOMPUTE_INIT
7515 | OPTI_TYPE_PRECOMPUTE_MERKLE
7516 | OPTI_TYPE_EARLY_SKIP
7517 | OPTI_TYPE_NOT_ITERATED
7518 | OPTI_TYPE_APPENDED_SALT
7519 | OPTI_TYPE_RAW_HASH;
7520 dgst_pos0 = 3;
7521 dgst_pos1 = 7;
7522 dgst_pos2 = 2;
7523 dgst_pos3 = 6;
7524 break;
7525
7526 case 1420: hash_type = HASH_TYPE_SHA256;
7527 salt_type = SALT_TYPE_INTERN;
7528 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7529 opts_type = OPTS_TYPE_PT_GENERATE_BE
7530 | OPTS_TYPE_PT_ADD80
7531 | OPTS_TYPE_PT_ADDBITS15;
7532 kern_type = KERN_TYPE_SHA256_SLTPW;
7533 dgst_size = DGST_SIZE_4_8;
7534 parse_func = sha256s_parse_hash;
7535 sort_by_digest = sort_by_digest_4_8;
7536 opti_type = OPTI_TYPE_ZERO_BYTE
7537 | OPTI_TYPE_PRECOMPUTE_INIT
7538 | OPTI_TYPE_PRECOMPUTE_MERKLE
7539 | OPTI_TYPE_EARLY_SKIP
7540 | OPTI_TYPE_NOT_ITERATED
7541 | OPTI_TYPE_PREPENDED_SALT
7542 | OPTI_TYPE_RAW_HASH;
7543 dgst_pos0 = 3;
7544 dgst_pos1 = 7;
7545 dgst_pos2 = 2;
7546 dgst_pos3 = 6;
7547 break;
7548
7549 case 1421: hash_type = HASH_TYPE_SHA256;
7550 salt_type = SALT_TYPE_EMBEDDED;
7551 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7552 opts_type = OPTS_TYPE_PT_GENERATE_BE
7553 | OPTS_TYPE_PT_ADD80
7554 | OPTS_TYPE_PT_ADDBITS15;
7555 kern_type = KERN_TYPE_SHA256_SLTPW;
7556 dgst_size = DGST_SIZE_4_8;
7557 parse_func = hmailserver_parse_hash;
7558 sort_by_digest = sort_by_digest_4_8;
7559 opti_type = OPTI_TYPE_ZERO_BYTE
7560 | OPTI_TYPE_PRECOMPUTE_INIT
7561 | OPTI_TYPE_PRECOMPUTE_MERKLE
7562 | OPTI_TYPE_EARLY_SKIP
7563 | OPTI_TYPE_NOT_ITERATED
7564 | OPTI_TYPE_PREPENDED_SALT
7565 | OPTI_TYPE_RAW_HASH;
7566 dgst_pos0 = 3;
7567 dgst_pos1 = 7;
7568 dgst_pos2 = 2;
7569 dgst_pos3 = 6;
7570 break;
7571
7572 case 1430: hash_type = HASH_TYPE_SHA256;
7573 salt_type = SALT_TYPE_INTERN;
7574 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7575 opts_type = OPTS_TYPE_PT_GENERATE_BE
7576 | OPTS_TYPE_PT_UNICODE
7577 | OPTS_TYPE_ST_ADD80
7578 | OPTS_TYPE_ST_ADDBITS15;
7579 kern_type = KERN_TYPE_SHA256_PWUSLT;
7580 dgst_size = DGST_SIZE_4_8;
7581 parse_func = sha256s_parse_hash;
7582 sort_by_digest = sort_by_digest_4_8;
7583 opti_type = OPTI_TYPE_ZERO_BYTE
7584 | OPTI_TYPE_PRECOMPUTE_INIT
7585 | OPTI_TYPE_PRECOMPUTE_MERKLE
7586 | OPTI_TYPE_EARLY_SKIP
7587 | OPTI_TYPE_NOT_ITERATED
7588 | OPTI_TYPE_APPENDED_SALT
7589 | OPTI_TYPE_RAW_HASH;
7590 dgst_pos0 = 3;
7591 dgst_pos1 = 7;
7592 dgst_pos2 = 2;
7593 dgst_pos3 = 6;
7594 break;
7595
7596 case 1440: hash_type = HASH_TYPE_SHA256;
7597 salt_type = SALT_TYPE_INTERN;
7598 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7599 opts_type = OPTS_TYPE_PT_GENERATE_BE
7600 | OPTS_TYPE_PT_ADD80
7601 | OPTS_TYPE_PT_ADDBITS15
7602 | OPTS_TYPE_PT_UNICODE;
7603 kern_type = KERN_TYPE_SHA256_SLTPWU;
7604 dgst_size = DGST_SIZE_4_8;
7605 parse_func = sha256s_parse_hash;
7606 sort_by_digest = sort_by_digest_4_8;
7607 opti_type = OPTI_TYPE_ZERO_BYTE
7608 | OPTI_TYPE_PRECOMPUTE_INIT
7609 | OPTI_TYPE_PRECOMPUTE_MERKLE
7610 | OPTI_TYPE_EARLY_SKIP
7611 | OPTI_TYPE_NOT_ITERATED
7612 | OPTI_TYPE_PREPENDED_SALT
7613 | OPTI_TYPE_RAW_HASH;
7614 dgst_pos0 = 3;
7615 dgst_pos1 = 7;
7616 dgst_pos2 = 2;
7617 dgst_pos3 = 6;
7618 break;
7619
7620 case 1441: hash_type = HASH_TYPE_SHA256;
7621 salt_type = SALT_TYPE_EMBEDDED;
7622 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7623 opts_type = OPTS_TYPE_PT_GENERATE_BE
7624 | OPTS_TYPE_PT_ADD80
7625 | OPTS_TYPE_PT_ADDBITS15
7626 | OPTS_TYPE_PT_UNICODE
7627 | OPTS_TYPE_ST_BASE64;
7628 kern_type = KERN_TYPE_SHA256_SLTPWU;
7629 dgst_size = DGST_SIZE_4_8;
7630 parse_func = episerver4_parse_hash;
7631 sort_by_digest = sort_by_digest_4_8;
7632 opti_type = OPTI_TYPE_ZERO_BYTE
7633 | OPTI_TYPE_PRECOMPUTE_INIT
7634 | OPTI_TYPE_PRECOMPUTE_MERKLE
7635 | OPTI_TYPE_EARLY_SKIP
7636 | OPTI_TYPE_NOT_ITERATED
7637 | OPTI_TYPE_PREPENDED_SALT
7638 | OPTI_TYPE_RAW_HASH;
7639 dgst_pos0 = 3;
7640 dgst_pos1 = 7;
7641 dgst_pos2 = 2;
7642 dgst_pos3 = 6;
7643 break;
7644
7645 case 1450: hash_type = HASH_TYPE_SHA256;
7646 salt_type = SALT_TYPE_INTERN;
7647 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7648 opts_type = OPTS_TYPE_PT_GENERATE_BE
7649 | OPTS_TYPE_ST_ADD80;
7650 kern_type = KERN_TYPE_HMACSHA256_PW;
7651 dgst_size = DGST_SIZE_4_8;
7652 parse_func = hmacsha256_parse_hash;
7653 sort_by_digest = sort_by_digest_4_8;
7654 opti_type = OPTI_TYPE_ZERO_BYTE
7655 | OPTI_TYPE_NOT_ITERATED;
7656 dgst_pos0 = 3;
7657 dgst_pos1 = 7;
7658 dgst_pos2 = 2;
7659 dgst_pos3 = 6;
7660 break;
7661
7662 case 1460: hash_type = HASH_TYPE_SHA256;
7663 salt_type = SALT_TYPE_INTERN;
7664 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7665 opts_type = OPTS_TYPE_PT_GENERATE_BE
7666 | OPTS_TYPE_PT_ADD80
7667 | OPTS_TYPE_PT_ADDBITS15;
7668 kern_type = KERN_TYPE_HMACSHA256_SLT;
7669 dgst_size = DGST_SIZE_4_8;
7670 parse_func = hmacsha256_parse_hash;
7671 sort_by_digest = sort_by_digest_4_8;
7672 opti_type = OPTI_TYPE_ZERO_BYTE
7673 | OPTI_TYPE_NOT_ITERATED;
7674 dgst_pos0 = 3;
7675 dgst_pos1 = 7;
7676 dgst_pos2 = 2;
7677 dgst_pos3 = 6;
7678 break;
7679
7680 case 1500: hash_type = HASH_TYPE_DESCRYPT;
7681 salt_type = SALT_TYPE_EMBEDDED;
7682 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7683 opts_type = OPTS_TYPE_PT_GENERATE_LE
7684 | OPTS_TYPE_PT_BITSLICE;
7685 kern_type = KERN_TYPE_DESCRYPT;
7686 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
7687 parse_func = descrypt_parse_hash;
7688 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
7689 opti_type = OPTI_TYPE_ZERO_BYTE
7690 | OPTI_TYPE_PRECOMPUTE_PERMUT;
7691 dgst_pos0 = 0;
7692 dgst_pos1 = 1;
7693 dgst_pos2 = 2;
7694 dgst_pos3 = 3;
7695 break;
7696
7697 case 1600: hash_type = HASH_TYPE_MD5;
7698 salt_type = SALT_TYPE_EMBEDDED;
7699 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7700 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7701 kern_type = KERN_TYPE_APR1CRYPT;
7702 dgst_size = DGST_SIZE_4_4;
7703 parse_func = md5apr1_parse_hash;
7704 sort_by_digest = sort_by_digest_4_4;
7705 opti_type = OPTI_TYPE_ZERO_BYTE;
7706 dgst_pos0 = 0;
7707 dgst_pos1 = 1;
7708 dgst_pos2 = 2;
7709 dgst_pos3 = 3;
7710 break;
7711
7712 case 1700: hash_type = HASH_TYPE_SHA512;
7713 salt_type = SALT_TYPE_NONE;
7714 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7715 opts_type = OPTS_TYPE_PT_GENERATE_BE
7716 | OPTS_TYPE_PT_ADD80
7717 | OPTS_TYPE_PT_ADDBITS15;
7718 kern_type = KERN_TYPE_SHA512;
7719 dgst_size = DGST_SIZE_8_8;
7720 parse_func = sha512_parse_hash;
7721 sort_by_digest = sort_by_digest_8_8;
7722 opti_type = OPTI_TYPE_ZERO_BYTE
7723 | OPTI_TYPE_PRECOMPUTE_INIT
7724 | OPTI_TYPE_PRECOMPUTE_MERKLE
7725 | OPTI_TYPE_EARLY_SKIP
7726 | OPTI_TYPE_NOT_ITERATED
7727 | OPTI_TYPE_NOT_SALTED
7728 | OPTI_TYPE_USES_BITS_64
7729 | OPTI_TYPE_RAW_HASH;
7730 dgst_pos0 = 14;
7731 dgst_pos1 = 15;
7732 dgst_pos2 = 6;
7733 dgst_pos3 = 7;
7734 break;
7735
7736 case 1710: hash_type = HASH_TYPE_SHA512;
7737 salt_type = SALT_TYPE_INTERN;
7738 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7739 opts_type = OPTS_TYPE_PT_GENERATE_BE
7740 | OPTS_TYPE_ST_ADD80
7741 | OPTS_TYPE_ST_ADDBITS15;
7742 kern_type = KERN_TYPE_SHA512_PWSLT;
7743 dgst_size = DGST_SIZE_8_8;
7744 parse_func = sha512s_parse_hash;
7745 sort_by_digest = sort_by_digest_8_8;
7746 opti_type = OPTI_TYPE_ZERO_BYTE
7747 | OPTI_TYPE_PRECOMPUTE_INIT
7748 | OPTI_TYPE_PRECOMPUTE_MERKLE
7749 | OPTI_TYPE_EARLY_SKIP
7750 | OPTI_TYPE_NOT_ITERATED
7751 | OPTI_TYPE_APPENDED_SALT
7752 | OPTI_TYPE_USES_BITS_64
7753 | OPTI_TYPE_RAW_HASH;
7754 dgst_pos0 = 14;
7755 dgst_pos1 = 15;
7756 dgst_pos2 = 6;
7757 dgst_pos3 = 7;
7758 break;
7759
7760 case 1711: hash_type = HASH_TYPE_SHA512;
7761 salt_type = SALT_TYPE_EMBEDDED;
7762 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7763 opts_type = OPTS_TYPE_PT_GENERATE_BE
7764 | OPTS_TYPE_ST_ADD80
7765 | OPTS_TYPE_ST_ADDBITS15;
7766 kern_type = KERN_TYPE_SHA512_PWSLT;
7767 dgst_size = DGST_SIZE_8_8;
7768 parse_func = sha512b64s_parse_hash;
7769 sort_by_digest = sort_by_digest_8_8;
7770 opti_type = OPTI_TYPE_ZERO_BYTE
7771 | OPTI_TYPE_PRECOMPUTE_INIT
7772 | OPTI_TYPE_PRECOMPUTE_MERKLE
7773 | OPTI_TYPE_EARLY_SKIP
7774 | OPTI_TYPE_NOT_ITERATED
7775 | OPTI_TYPE_APPENDED_SALT
7776 | OPTI_TYPE_USES_BITS_64
7777 | OPTI_TYPE_RAW_HASH;
7778 dgst_pos0 = 14;
7779 dgst_pos1 = 15;
7780 dgst_pos2 = 6;
7781 dgst_pos3 = 7;
7782 break;
7783
7784 case 1720: hash_type = HASH_TYPE_SHA512;
7785 salt_type = SALT_TYPE_INTERN;
7786 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7787 opts_type = OPTS_TYPE_PT_GENERATE_BE
7788 | OPTS_TYPE_PT_ADD80
7789 | OPTS_TYPE_PT_ADDBITS15;
7790 kern_type = KERN_TYPE_SHA512_SLTPW;
7791 dgst_size = DGST_SIZE_8_8;
7792 parse_func = sha512s_parse_hash;
7793 sort_by_digest = sort_by_digest_8_8;
7794 opti_type = OPTI_TYPE_ZERO_BYTE
7795 | OPTI_TYPE_PRECOMPUTE_INIT
7796 | OPTI_TYPE_PRECOMPUTE_MERKLE
7797 | OPTI_TYPE_EARLY_SKIP
7798 | OPTI_TYPE_NOT_ITERATED
7799 | OPTI_TYPE_PREPENDED_SALT
7800 | OPTI_TYPE_USES_BITS_64
7801 | OPTI_TYPE_RAW_HASH;
7802 dgst_pos0 = 14;
7803 dgst_pos1 = 15;
7804 dgst_pos2 = 6;
7805 dgst_pos3 = 7;
7806 break;
7807
7808 case 1722: hash_type = HASH_TYPE_SHA512;
7809 salt_type = SALT_TYPE_EMBEDDED;
7810 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7811 opts_type = OPTS_TYPE_PT_GENERATE_BE
7812 | OPTS_TYPE_PT_ADD80
7813 | OPTS_TYPE_PT_ADDBITS15
7814 | OPTS_TYPE_ST_HEX;
7815 kern_type = KERN_TYPE_SHA512_SLTPW;
7816 dgst_size = DGST_SIZE_8_8;
7817 parse_func = osx512_parse_hash;
7818 sort_by_digest = sort_by_digest_8_8;
7819 opti_type = OPTI_TYPE_ZERO_BYTE
7820 | OPTI_TYPE_PRECOMPUTE_INIT
7821 | OPTI_TYPE_PRECOMPUTE_MERKLE
7822 | OPTI_TYPE_EARLY_SKIP
7823 | OPTI_TYPE_NOT_ITERATED
7824 | OPTI_TYPE_PREPENDED_SALT
7825 | OPTI_TYPE_USES_BITS_64
7826 | OPTI_TYPE_RAW_HASH;
7827 dgst_pos0 = 14;
7828 dgst_pos1 = 15;
7829 dgst_pos2 = 6;
7830 dgst_pos3 = 7;
7831 break;
7832
7833 case 1730: hash_type = HASH_TYPE_SHA512;
7834 salt_type = SALT_TYPE_INTERN;
7835 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7836 opts_type = OPTS_TYPE_PT_GENERATE_BE
7837 | OPTS_TYPE_PT_UNICODE
7838 | OPTS_TYPE_ST_ADD80
7839 | OPTS_TYPE_ST_ADDBITS15;
7840 kern_type = KERN_TYPE_SHA512_PWSLTU;
7841 dgst_size = DGST_SIZE_8_8;
7842 parse_func = sha512s_parse_hash;
7843 sort_by_digest = sort_by_digest_8_8;
7844 opti_type = OPTI_TYPE_ZERO_BYTE
7845 | OPTI_TYPE_PRECOMPUTE_INIT
7846 | OPTI_TYPE_PRECOMPUTE_MERKLE
7847 | OPTI_TYPE_EARLY_SKIP
7848 | OPTI_TYPE_NOT_ITERATED
7849 | OPTI_TYPE_APPENDED_SALT
7850 | OPTI_TYPE_USES_BITS_64
7851 | OPTI_TYPE_RAW_HASH;
7852 dgst_pos0 = 14;
7853 dgst_pos1 = 15;
7854 dgst_pos2 = 6;
7855 dgst_pos3 = 7;
7856 break;
7857
7858 case 1731: hash_type = HASH_TYPE_SHA512;
7859 salt_type = SALT_TYPE_EMBEDDED;
7860 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7861 opts_type = OPTS_TYPE_PT_GENERATE_BE
7862 | OPTS_TYPE_PT_UNICODE
7863 | OPTS_TYPE_ST_ADD80
7864 | OPTS_TYPE_ST_ADDBITS15
7865 | OPTS_TYPE_ST_HEX;
7866 kern_type = KERN_TYPE_SHA512_PWSLTU;
7867 dgst_size = DGST_SIZE_8_8;
7868 parse_func = mssql2012_parse_hash;
7869 sort_by_digest = sort_by_digest_8_8;
7870 opti_type = OPTI_TYPE_ZERO_BYTE
7871 | OPTI_TYPE_PRECOMPUTE_INIT
7872 | OPTI_TYPE_PRECOMPUTE_MERKLE
7873 | OPTI_TYPE_EARLY_SKIP
7874 | OPTI_TYPE_NOT_ITERATED
7875 | OPTI_TYPE_APPENDED_SALT
7876 | OPTI_TYPE_USES_BITS_64
7877 | OPTI_TYPE_RAW_HASH;
7878 dgst_pos0 = 14;
7879 dgst_pos1 = 15;
7880 dgst_pos2 = 6;
7881 dgst_pos3 = 7;
7882 break;
7883
7884 case 1740: hash_type = HASH_TYPE_SHA512;
7885 salt_type = SALT_TYPE_INTERN;
7886 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7887 opts_type = OPTS_TYPE_PT_GENERATE_BE
7888 | OPTS_TYPE_PT_ADD80
7889 | OPTS_TYPE_PT_ADDBITS15
7890 | OPTS_TYPE_PT_UNICODE;
7891 kern_type = KERN_TYPE_SHA512_SLTPWU;
7892 dgst_size = DGST_SIZE_8_8;
7893 parse_func = sha512s_parse_hash;
7894 sort_by_digest = sort_by_digest_8_8;
7895 opti_type = OPTI_TYPE_ZERO_BYTE
7896 | OPTI_TYPE_PRECOMPUTE_INIT
7897 | OPTI_TYPE_PRECOMPUTE_MERKLE
7898 | OPTI_TYPE_EARLY_SKIP
7899 | OPTI_TYPE_NOT_ITERATED
7900 | OPTI_TYPE_PREPENDED_SALT
7901 | OPTI_TYPE_USES_BITS_64
7902 | OPTI_TYPE_RAW_HASH;
7903 dgst_pos0 = 14;
7904 dgst_pos1 = 15;
7905 dgst_pos2 = 6;
7906 dgst_pos3 = 7;
7907 break;
7908
7909 case 1750: hash_type = HASH_TYPE_SHA512;
7910 salt_type = SALT_TYPE_INTERN;
7911 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7912 opts_type = OPTS_TYPE_PT_GENERATE_BE
7913 | OPTS_TYPE_ST_ADD80;
7914 kern_type = KERN_TYPE_HMACSHA512_PW;
7915 dgst_size = DGST_SIZE_8_8;
7916 parse_func = hmacsha512_parse_hash;
7917 sort_by_digest = sort_by_digest_8_8;
7918 opti_type = OPTI_TYPE_ZERO_BYTE
7919 | OPTI_TYPE_USES_BITS_64
7920 | OPTI_TYPE_NOT_ITERATED;
7921 dgst_pos0 = 14;
7922 dgst_pos1 = 15;
7923 dgst_pos2 = 6;
7924 dgst_pos3 = 7;
7925 break;
7926
7927 case 1760: hash_type = HASH_TYPE_SHA512;
7928 salt_type = SALT_TYPE_INTERN;
7929 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7930 opts_type = OPTS_TYPE_PT_GENERATE_BE
7931 | OPTS_TYPE_PT_ADD80
7932 | OPTS_TYPE_PT_ADDBITS15;
7933 kern_type = KERN_TYPE_HMACSHA512_SLT;
7934 dgst_size = DGST_SIZE_8_8;
7935 parse_func = hmacsha512_parse_hash;
7936 sort_by_digest = sort_by_digest_8_8;
7937 opti_type = OPTI_TYPE_ZERO_BYTE
7938 | OPTI_TYPE_USES_BITS_64
7939 | OPTI_TYPE_NOT_ITERATED;
7940 dgst_pos0 = 14;
7941 dgst_pos1 = 15;
7942 dgst_pos2 = 6;
7943 dgst_pos3 = 7;
7944 break;
7945
7946 case 1800: hash_type = HASH_TYPE_SHA512;
7947 salt_type = SALT_TYPE_EMBEDDED;
7948 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7949 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
7950 kern_type = KERN_TYPE_SHA512CRYPT;
7951 dgst_size = DGST_SIZE_8_8;
7952 parse_func = sha512crypt_parse_hash;
7953 sort_by_digest = sort_by_digest_8_8;
7954 opti_type = OPTI_TYPE_ZERO_BYTE
7955 | OPTI_TYPE_USES_BITS_64;
7956 dgst_pos0 = 0;
7957 dgst_pos1 = 1;
7958 dgst_pos2 = 2;
7959 dgst_pos3 = 3;
7960 break;
7961
7962 case 2100: hash_type = HASH_TYPE_DCC2;
7963 salt_type = SALT_TYPE_EMBEDDED;
7964 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
7965 opts_type = OPTS_TYPE_PT_GENERATE_LE // should be OPTS_TYPE_PT_GENERATE_BE
7966 | OPTS_TYPE_ST_LOWER
7967 | OPTS_TYPE_ST_UNICODE;
7968 kern_type = KERN_TYPE_DCC2;
7969 dgst_size = DGST_SIZE_4_4;
7970 parse_func = dcc2_parse_hash;
7971 sort_by_digest = sort_by_digest_4_4;
7972 opti_type = OPTI_TYPE_ZERO_BYTE;
7973 dgst_pos0 = 0;
7974 dgst_pos1 = 1;
7975 dgst_pos2 = 2;
7976 dgst_pos3 = 3;
7977 break;
7978
7979 case 2400: hash_type = HASH_TYPE_MD5;
7980 salt_type = SALT_TYPE_NONE;
7981 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
7982 opts_type = OPTS_TYPE_PT_GENERATE_LE;
7983 kern_type = KERN_TYPE_MD5PIX;
7984 dgst_size = DGST_SIZE_4_4;
7985 parse_func = md5pix_parse_hash;
7986 sort_by_digest = sort_by_digest_4_4;
7987 opti_type = OPTI_TYPE_ZERO_BYTE
7988 | OPTI_TYPE_PRECOMPUTE_INIT
7989 | OPTI_TYPE_PRECOMPUTE_MERKLE
7990 | OPTI_TYPE_EARLY_SKIP
7991 | OPTI_TYPE_NOT_ITERATED
7992 | OPTI_TYPE_NOT_SALTED;
7993 dgst_pos0 = 0;
7994 dgst_pos1 = 3;
7995 dgst_pos2 = 2;
7996 dgst_pos3 = 1;
7997 break;
7998
7999 case 2410: hash_type = HASH_TYPE_MD5;
8000 salt_type = SALT_TYPE_INTERN;
8001 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8002 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8003 kern_type = KERN_TYPE_MD5ASA;
8004 dgst_size = DGST_SIZE_4_4;
8005 parse_func = md5asa_parse_hash;
8006 sort_by_digest = sort_by_digest_4_4;
8007 opti_type = OPTI_TYPE_ZERO_BYTE
8008 | OPTI_TYPE_PRECOMPUTE_INIT
8009 | OPTI_TYPE_PRECOMPUTE_MERKLE
8010 | OPTI_TYPE_EARLY_SKIP
8011 | OPTI_TYPE_NOT_ITERATED;
8012 dgst_pos0 = 0;
8013 dgst_pos1 = 3;
8014 dgst_pos2 = 2;
8015 dgst_pos3 = 1;
8016 break;
8017
8018 case 2500: hash_type = HASH_TYPE_WPA;
8019 salt_type = SALT_TYPE_EMBEDDED;
8020 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8021 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8022 kern_type = KERN_TYPE_WPA;
8023 dgst_size = DGST_SIZE_4_4;
8024 parse_func = wpa_parse_hash;
8025 sort_by_digest = sort_by_digest_4_4;
8026 opti_type = OPTI_TYPE_ZERO_BYTE;
8027 dgst_pos0 = 0;
8028 dgst_pos1 = 1;
8029 dgst_pos2 = 2;
8030 dgst_pos3 = 3;
8031 break;
8032
8033 case 2600: hash_type = HASH_TYPE_MD5;
8034 salt_type = SALT_TYPE_VIRTUAL;
8035 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8036 opts_type = OPTS_TYPE_PT_GENERATE_LE
8037 | OPTS_TYPE_PT_ADD80
8038 | OPTS_TYPE_PT_ADDBITS14
8039 | OPTS_TYPE_ST_ADD80;
8040 kern_type = KERN_TYPE_MD55_PWSLT1;
8041 dgst_size = DGST_SIZE_4_4;
8042 parse_func = md5md5_parse_hash;
8043 sort_by_digest = sort_by_digest_4_4;
8044 opti_type = OPTI_TYPE_ZERO_BYTE
8045 | OPTI_TYPE_PRECOMPUTE_INIT
8046 | OPTI_TYPE_PRECOMPUTE_MERKLE
8047 | OPTI_TYPE_EARLY_SKIP;
8048 dgst_pos0 = 0;
8049 dgst_pos1 = 3;
8050 dgst_pos2 = 2;
8051 dgst_pos3 = 1;
8052 break;
8053
8054 case 2611: hash_type = HASH_TYPE_MD5;
8055 salt_type = SALT_TYPE_INTERN;
8056 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8057 opts_type = OPTS_TYPE_PT_GENERATE_LE
8058 | OPTS_TYPE_PT_ADD80
8059 | OPTS_TYPE_PT_ADDBITS14
8060 | OPTS_TYPE_ST_ADD80;
8061 kern_type = KERN_TYPE_MD55_PWSLT1;
8062 dgst_size = DGST_SIZE_4_4;
8063 parse_func = vb3_parse_hash;
8064 sort_by_digest = sort_by_digest_4_4;
8065 opti_type = OPTI_TYPE_ZERO_BYTE
8066 | OPTI_TYPE_PRECOMPUTE_INIT
8067 | OPTI_TYPE_PRECOMPUTE_MERKLE
8068 | OPTI_TYPE_EARLY_SKIP;
8069 dgst_pos0 = 0;
8070 dgst_pos1 = 3;
8071 dgst_pos2 = 2;
8072 dgst_pos3 = 1;
8073 break;
8074
8075 case 2612: hash_type = HASH_TYPE_MD5;
8076 salt_type = SALT_TYPE_EMBEDDED;
8077 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8078 opts_type = OPTS_TYPE_PT_GENERATE_LE
8079 | OPTS_TYPE_PT_ADD80
8080 | OPTS_TYPE_PT_ADDBITS14
8081 | OPTS_TYPE_ST_ADD80
8082 | OPTS_TYPE_ST_HEX;
8083 kern_type = KERN_TYPE_MD55_PWSLT1;
8084 dgst_size = DGST_SIZE_4_4;
8085 parse_func = phps_parse_hash;
8086 sort_by_digest = sort_by_digest_4_4;
8087 opti_type = OPTI_TYPE_ZERO_BYTE
8088 | OPTI_TYPE_PRECOMPUTE_INIT
8089 | OPTI_TYPE_PRECOMPUTE_MERKLE
8090 | OPTI_TYPE_EARLY_SKIP;
8091 dgst_pos0 = 0;
8092 dgst_pos1 = 3;
8093 dgst_pos2 = 2;
8094 dgst_pos3 = 1;
8095 break;
8096
8097 case 2711: hash_type = HASH_TYPE_MD5;
8098 salt_type = SALT_TYPE_INTERN;
8099 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8100 opts_type = OPTS_TYPE_PT_GENERATE_LE
8101 | OPTS_TYPE_PT_ADD80
8102 | OPTS_TYPE_PT_ADDBITS14
8103 | OPTS_TYPE_ST_ADD80;
8104 kern_type = KERN_TYPE_MD55_PWSLT2;
8105 dgst_size = DGST_SIZE_4_4;
8106 parse_func = vb30_parse_hash;
8107 sort_by_digest = sort_by_digest_4_4;
8108 opti_type = OPTI_TYPE_ZERO_BYTE
8109 | OPTI_TYPE_PRECOMPUTE_INIT
8110 | OPTI_TYPE_EARLY_SKIP;
8111 dgst_pos0 = 0;
8112 dgst_pos1 = 3;
8113 dgst_pos2 = 2;
8114 dgst_pos3 = 1;
8115 break;
8116
8117 case 2811: hash_type = HASH_TYPE_MD5;
8118 salt_type = SALT_TYPE_INTERN;
8119 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8120 opts_type = OPTS_TYPE_PT_GENERATE_LE
8121 | OPTS_TYPE_PT_ADD80
8122 | OPTS_TYPE_PT_ADDBITS14;
8123 kern_type = KERN_TYPE_MD55_SLTPW;
8124 dgst_size = DGST_SIZE_4_4;
8125 parse_func = ipb2_parse_hash;
8126 sort_by_digest = sort_by_digest_4_4;
8127 opti_type = OPTI_TYPE_ZERO_BYTE
8128 | OPTI_TYPE_PRECOMPUTE_INIT
8129 | OPTI_TYPE_EARLY_SKIP;
8130 dgst_pos0 = 0;
8131 dgst_pos1 = 3;
8132 dgst_pos2 = 2;
8133 dgst_pos3 = 1;
8134 break;
8135
8136 case 3000: hash_type = HASH_TYPE_LM;
8137 salt_type = SALT_TYPE_NONE;
8138 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8139 opts_type = OPTS_TYPE_PT_GENERATE_LE
8140 | OPTS_TYPE_PT_UPPER
8141 | OPTS_TYPE_PT_BITSLICE;
8142 kern_type = KERN_TYPE_LM;
8143 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8144 parse_func = lm_parse_hash;
8145 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8146 opti_type = OPTI_TYPE_ZERO_BYTE
8147 | OPTI_TYPE_PRECOMPUTE_PERMUT;
8148 dgst_pos0 = 0;
8149 dgst_pos1 = 1;
8150 dgst_pos2 = 2;
8151 dgst_pos3 = 3;
8152 break;
8153
8154 case 3100: hash_type = HASH_TYPE_ORACLEH;
8155 salt_type = SALT_TYPE_INTERN;
8156 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8157 opts_type = OPTS_TYPE_PT_GENERATE_LE
8158 | OPTS_TYPE_PT_UPPER
8159 | OPTS_TYPE_ST_UPPER;
8160 kern_type = KERN_TYPE_ORACLEH;
8161 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8162 parse_func = oracleh_parse_hash;
8163 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8164 opti_type = OPTI_TYPE_ZERO_BYTE;
8165 dgst_pos0 = 0;
8166 dgst_pos1 = 1;
8167 dgst_pos2 = 2;
8168 dgst_pos3 = 3;
8169 break;
8170
8171 case 3200: hash_type = HASH_TYPE_BCRYPT;
8172 salt_type = SALT_TYPE_EMBEDDED;
8173 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8174 opts_type = OPTS_TYPE_PT_GENERATE_LE
8175 | OPTS_TYPE_ST_GENERATE_LE;
8176 kern_type = KERN_TYPE_BCRYPT;
8177 dgst_size = DGST_SIZE_4_6;
8178 parse_func = bcrypt_parse_hash;
8179 sort_by_digest = sort_by_digest_4_6;
8180 opti_type = OPTI_TYPE_ZERO_BYTE;
8181 dgst_pos0 = 0;
8182 dgst_pos1 = 1;
8183 dgst_pos2 = 2;
8184 dgst_pos3 = 3;
8185 break;
8186
8187 case 3710: hash_type = HASH_TYPE_MD5;
8188 salt_type = SALT_TYPE_INTERN;
8189 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8190 opts_type = OPTS_TYPE_PT_GENERATE_LE
8191 | OPTS_TYPE_PT_ADD80
8192 | OPTS_TYPE_PT_ADDBITS14;
8193 kern_type = KERN_TYPE_MD5_SLT_MD5_PW;
8194 dgst_size = DGST_SIZE_4_4;
8195 parse_func = md5s_parse_hash;
8196 sort_by_digest = sort_by_digest_4_4;
8197 opti_type = OPTI_TYPE_ZERO_BYTE
8198 | OPTI_TYPE_PRECOMPUTE_INIT
8199 | OPTI_TYPE_PRECOMPUTE_MERKLE
8200 | OPTI_TYPE_EARLY_SKIP;
8201 dgst_pos0 = 0;
8202 dgst_pos1 = 3;
8203 dgst_pos2 = 2;
8204 dgst_pos3 = 1;
8205 break;
8206
8207 case 3711: hash_type = HASH_TYPE_MD5;
8208 salt_type = SALT_TYPE_EMBEDDED;
8209 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8210 opts_type = OPTS_TYPE_PT_GENERATE_LE
8211 | OPTS_TYPE_PT_ADD80
8212 | OPTS_TYPE_PT_ADDBITS14;
8213 kern_type = KERN_TYPE_MD5_SLT_MD5_PW;
8214 dgst_size = DGST_SIZE_4_4;
8215 parse_func = mediawiki_b_parse_hash;
8216 sort_by_digest = sort_by_digest_4_4;
8217 opti_type = OPTI_TYPE_ZERO_BYTE
8218 | OPTI_TYPE_PRECOMPUTE_INIT
8219 | OPTI_TYPE_PRECOMPUTE_MERKLE
8220 | OPTI_TYPE_EARLY_SKIP;
8221 dgst_pos0 = 0;
8222 dgst_pos1 = 3;
8223 dgst_pos2 = 2;
8224 dgst_pos3 = 1;
8225 break;
8226
8227 case 3800: hash_type = HASH_TYPE_MD5;
8228 salt_type = SALT_TYPE_INTERN;
8229 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8230 opts_type = OPTS_TYPE_PT_GENERATE_LE
8231 | OPTS_TYPE_ST_ADDBITS14;
8232 kern_type = KERN_TYPE_MD5_SLT_PW_SLT;
8233 dgst_size = DGST_SIZE_4_4;
8234 parse_func = md5s_parse_hash;
8235 sort_by_digest = sort_by_digest_4_4;
8236 opti_type = OPTI_TYPE_ZERO_BYTE
8237 | OPTI_TYPE_PRECOMPUTE_INIT
8238 | OPTI_TYPE_PRECOMPUTE_MERKLE
8239 | OPTI_TYPE_EARLY_SKIP
8240 | OPTI_TYPE_NOT_ITERATED
8241 | OPTI_TYPE_RAW_HASH;
8242 dgst_pos0 = 0;
8243 dgst_pos1 = 3;
8244 dgst_pos2 = 2;
8245 dgst_pos3 = 1;
8246 break;
8247
8248 case 4300: hash_type = HASH_TYPE_MD5;
8249 salt_type = SALT_TYPE_VIRTUAL;
8250 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8251 opts_type = OPTS_TYPE_PT_GENERATE_LE
8252 | OPTS_TYPE_PT_ADD80
8253 | OPTS_TYPE_PT_ADDBITS14
8254 | OPTS_TYPE_ST_ADD80;
8255 kern_type = KERN_TYPE_MD5U5_PWSLT1;
8256 dgst_size = DGST_SIZE_4_4;
8257 parse_func = md5md5_parse_hash;
8258 sort_by_digest = sort_by_digest_4_4;
8259 opti_type = OPTI_TYPE_ZERO_BYTE
8260 | OPTI_TYPE_PRECOMPUTE_INIT
8261 | OPTI_TYPE_PRECOMPUTE_MERKLE
8262 | OPTI_TYPE_EARLY_SKIP;
8263 dgst_pos0 = 0;
8264 dgst_pos1 = 3;
8265 dgst_pos2 = 2;
8266 dgst_pos3 = 1;
8267 break;
8268
8269
8270 case 4400: hash_type = HASH_TYPE_MD5;
8271 salt_type = SALT_TYPE_NONE;
8272 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8273 opts_type = OPTS_TYPE_PT_GENERATE_BE
8274 | OPTS_TYPE_PT_ADD80
8275 | OPTS_TYPE_PT_ADDBITS15;
8276 kern_type = KERN_TYPE_MD5_SHA1;
8277 dgst_size = DGST_SIZE_4_4;
8278 parse_func = md5_parse_hash;
8279 sort_by_digest = sort_by_digest_4_4;
8280 opti_type = OPTI_TYPE_ZERO_BYTE
8281 | OPTI_TYPE_PRECOMPUTE_INIT
8282 | OPTI_TYPE_PRECOMPUTE_MERKLE
8283 | OPTI_TYPE_EARLY_SKIP
8284 | OPTI_TYPE_NOT_ITERATED
8285 | OPTI_TYPE_NOT_SALTED
8286 | OPTI_TYPE_RAW_HASH;
8287 dgst_pos0 = 0;
8288 dgst_pos1 = 3;
8289 dgst_pos2 = 2;
8290 dgst_pos3 = 1;
8291 break;
8292
8293 case 4500: hash_type = HASH_TYPE_SHA1;
8294 salt_type = SALT_TYPE_NONE;
8295 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8296 opts_type = OPTS_TYPE_PT_GENERATE_BE
8297 | OPTS_TYPE_PT_ADD80
8298 | OPTS_TYPE_PT_ADDBITS15;
8299 kern_type = KERN_TYPE_SHA11;
8300 dgst_size = DGST_SIZE_4_5;
8301 parse_func = sha1_parse_hash;
8302 sort_by_digest = sort_by_digest_4_5;
8303 opti_type = OPTI_TYPE_ZERO_BYTE
8304 | OPTI_TYPE_PRECOMPUTE_INIT
8305 | OPTI_TYPE_PRECOMPUTE_MERKLE
8306 | OPTI_TYPE_EARLY_SKIP
8307 | OPTI_TYPE_NOT_SALTED;
8308 dgst_pos0 = 3;
8309 dgst_pos1 = 4;
8310 dgst_pos2 = 2;
8311 dgst_pos3 = 1;
8312 break;
8313
8314 case 4700: hash_type = HASH_TYPE_SHA1;
8315 salt_type = SALT_TYPE_NONE;
8316 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8317 opts_type = OPTS_TYPE_PT_GENERATE_LE
8318 | OPTS_TYPE_PT_ADD80
8319 | OPTS_TYPE_PT_ADDBITS14;
8320 kern_type = KERN_TYPE_SHA1_MD5;
8321 dgst_size = DGST_SIZE_4_5;
8322 parse_func = sha1_parse_hash;
8323 sort_by_digest = sort_by_digest_4_5;
8324 opti_type = OPTI_TYPE_ZERO_BYTE
8325 | OPTI_TYPE_PRECOMPUTE_INIT
8326 | OPTI_TYPE_PRECOMPUTE_MERKLE
8327 | OPTI_TYPE_EARLY_SKIP
8328 | OPTI_TYPE_NOT_ITERATED
8329 | OPTI_TYPE_NOT_SALTED
8330 | OPTI_TYPE_RAW_HASH;
8331 dgst_pos0 = 3;
8332 dgst_pos1 = 4;
8333 dgst_pos2 = 2;
8334 dgst_pos3 = 1;
8335 break;
8336
8337 case 4800: hash_type = HASH_TYPE_MD5;
8338 salt_type = SALT_TYPE_EMBEDDED;
8339 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8340 opts_type = OPTS_TYPE_PT_GENERATE_LE
8341 | OPTS_TYPE_PT_ADDBITS14;
8342 kern_type = KERN_TYPE_MD5_CHAP;
8343 dgst_size = DGST_SIZE_4_4;
8344 parse_func = chap_parse_hash;
8345 sort_by_digest = sort_by_digest_4_4;
8346 opti_type = OPTI_TYPE_ZERO_BYTE
8347 | OPTI_TYPE_PRECOMPUTE_INIT
8348 | OPTI_TYPE_PRECOMPUTE_MERKLE
8349 | OPTI_TYPE_MEET_IN_MIDDLE
8350 | OPTI_TYPE_EARLY_SKIP
8351 | OPTI_TYPE_NOT_ITERATED
8352 | OPTI_TYPE_RAW_HASH;
8353 dgst_pos0 = 0;
8354 dgst_pos1 = 3;
8355 dgst_pos2 = 2;
8356 dgst_pos3 = 1;
8357 break;
8358
8359 case 4900: hash_type = HASH_TYPE_SHA1;
8360 salt_type = SALT_TYPE_INTERN;
8361 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8362 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8363 kern_type = KERN_TYPE_SHA1_SLT_PW_SLT;
8364 dgst_size = DGST_SIZE_4_5;
8365 parse_func = sha1s_parse_hash;
8366 sort_by_digest = sort_by_digest_4_5;
8367 opti_type = OPTI_TYPE_ZERO_BYTE
8368 | OPTI_TYPE_PRECOMPUTE_INIT
8369 | OPTI_TYPE_PRECOMPUTE_MERKLE
8370 | OPTI_TYPE_EARLY_SKIP;
8371 dgst_pos0 = 3;
8372 dgst_pos1 = 4;
8373 dgst_pos2 = 2;
8374 dgst_pos3 = 1;
8375 break;
8376
8377 case 5000: hash_type = HASH_TYPE_KECCAK;
8378 salt_type = SALT_TYPE_EMBEDDED;
8379 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8380 opts_type = OPTS_TYPE_PT_GENERATE_LE
8381 | OPTS_TYPE_PT_ADD01;
8382 kern_type = KERN_TYPE_KECCAK;
8383 dgst_size = DGST_SIZE_8_25;
8384 parse_func = keccak_parse_hash;
8385 sort_by_digest = sort_by_digest_8_25;
8386 opti_type = OPTI_TYPE_ZERO_BYTE
8387 | OPTI_TYPE_USES_BITS_64
8388 | OPTI_TYPE_RAW_HASH;
8389 dgst_pos0 = 2;
8390 dgst_pos1 = 3;
8391 dgst_pos2 = 4;
8392 dgst_pos3 = 5;
8393 break;
8394
8395 case 5100: hash_type = HASH_TYPE_MD5H;
8396 salt_type = SALT_TYPE_NONE;
8397 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8398 opts_type = OPTS_TYPE_PT_GENERATE_LE
8399 | OPTS_TYPE_PT_ADD80
8400 | OPTS_TYPE_PT_ADDBITS14;
8401 kern_type = KERN_TYPE_MD5H;
8402 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8403 parse_func = md5half_parse_hash;
8404 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8405 opti_type = OPTI_TYPE_ZERO_BYTE
8406 | OPTI_TYPE_RAW_HASH;
8407 dgst_pos0 = 0;
8408 dgst_pos1 = 1;
8409 dgst_pos2 = 2;
8410 dgst_pos3 = 3;
8411 break;
8412
8413 case 5200: hash_type = HASH_TYPE_SHA256;
8414 salt_type = SALT_TYPE_EMBEDDED;
8415 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8416 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8417 kern_type = KERN_TYPE_PSAFE3;
8418 dgst_size = DGST_SIZE_4_8;
8419 parse_func = psafe3_parse_hash;
8420 sort_by_digest = sort_by_digest_4_8;
8421 opti_type = OPTI_TYPE_ZERO_BYTE;
8422 dgst_pos0 = 0;
8423 dgst_pos1 = 1;
8424 dgst_pos2 = 2;
8425 dgst_pos3 = 3;
8426 break;
8427
8428 case 5300: hash_type = HASH_TYPE_MD5;
8429 salt_type = SALT_TYPE_EMBEDDED;
8430 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8431 opts_type = OPTS_TYPE_PT_GENERATE_LE
8432 | OPTS_TYPE_ST_ADD80;
8433 kern_type = KERN_TYPE_IKEPSK_MD5;
8434 dgst_size = DGST_SIZE_4_4;
8435 parse_func = ikepsk_md5_parse_hash;
8436 sort_by_digest = sort_by_digest_4_4;
8437 opti_type = OPTI_TYPE_ZERO_BYTE;
8438 dgst_pos0 = 0;
8439 dgst_pos1 = 3;
8440 dgst_pos2 = 2;
8441 dgst_pos3 = 1;
8442 break;
8443
8444 case 5400: hash_type = HASH_TYPE_SHA1;
8445 salt_type = SALT_TYPE_EMBEDDED;
8446 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8447 opts_type = OPTS_TYPE_PT_GENERATE_BE
8448 | OPTS_TYPE_ST_ADD80;
8449 kern_type = KERN_TYPE_IKEPSK_SHA1;
8450 dgst_size = DGST_SIZE_4_5;
8451 parse_func = ikepsk_sha1_parse_hash;
8452 sort_by_digest = sort_by_digest_4_5;
8453 opti_type = OPTI_TYPE_ZERO_BYTE;
8454 dgst_pos0 = 3;
8455 dgst_pos1 = 4;
8456 dgst_pos2 = 2;
8457 dgst_pos3 = 1;
8458 break;
8459
8460 case 5500: hash_type = HASH_TYPE_NETNTLM;
8461 salt_type = SALT_TYPE_EMBEDDED;
8462 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8463 opts_type = OPTS_TYPE_PT_GENERATE_LE
8464 | OPTS_TYPE_PT_ADD80
8465 | OPTS_TYPE_PT_ADDBITS14
8466 | OPTS_TYPE_PT_UNICODE
8467 | OPTS_TYPE_ST_HEX;
8468 kern_type = KERN_TYPE_NETNTLMv1;
8469 dgst_size = DGST_SIZE_4_4;
8470 parse_func = netntlmv1_parse_hash;
8471 sort_by_digest = sort_by_digest_4_4;
8472 opti_type = OPTI_TYPE_ZERO_BYTE
8473 | OPTI_TYPE_PRECOMPUTE_PERMUT;
8474 dgst_pos0 = 0;
8475 dgst_pos1 = 1;
8476 dgst_pos2 = 2;
8477 dgst_pos3 = 3;
8478 break;
8479
8480 case 5600: hash_type = HASH_TYPE_MD5;
8481 salt_type = SALT_TYPE_EMBEDDED;
8482 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8483 opts_type = OPTS_TYPE_PT_GENERATE_LE
8484 | OPTS_TYPE_PT_ADD80
8485 | OPTS_TYPE_PT_ADDBITS14
8486 | OPTS_TYPE_PT_UNICODE;
8487 kern_type = KERN_TYPE_NETNTLMv2;
8488 dgst_size = DGST_SIZE_4_4;
8489 parse_func = netntlmv2_parse_hash;
8490 sort_by_digest = sort_by_digest_4_4;
8491 opti_type = OPTI_TYPE_ZERO_BYTE;
8492 dgst_pos0 = 0;
8493 dgst_pos1 = 3;
8494 dgst_pos2 = 2;
8495 dgst_pos3 = 1;
8496 break;
8497
8498 case 5700: hash_type = HASH_TYPE_SHA256;
8499 salt_type = SALT_TYPE_NONE;
8500 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8501 opts_type = OPTS_TYPE_PT_GENERATE_BE
8502 | OPTS_TYPE_PT_ADD80
8503 | OPTS_TYPE_PT_ADDBITS15;
8504 kern_type = KERN_TYPE_SHA256;
8505 dgst_size = DGST_SIZE_4_8;
8506 parse_func = cisco4_parse_hash;
8507 sort_by_digest = sort_by_digest_4_8;
8508 opti_type = OPTI_TYPE_ZERO_BYTE
8509 | OPTI_TYPE_PRECOMPUTE_INIT
8510 | OPTI_TYPE_PRECOMPUTE_MERKLE
8511 | OPTI_TYPE_EARLY_SKIP
8512 | OPTI_TYPE_NOT_ITERATED
8513 | OPTI_TYPE_NOT_SALTED
8514 | OPTI_TYPE_RAW_HASH;
8515 dgst_pos0 = 3;
8516 dgst_pos1 = 7;
8517 dgst_pos2 = 2;
8518 dgst_pos3 = 6;
8519 break;
8520
8521 case 5800: hash_type = HASH_TYPE_SHA1;
8522 salt_type = SALT_TYPE_INTERN;
8523 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8524 opts_type = OPTS_TYPE_PT_GENERATE_LE // should be OPTS_TYPE_PT_GENERATE_BE
8525 | OPTS_TYPE_ST_ADD80;
8526 kern_type = KERN_TYPE_ANDROIDPIN;
8527 dgst_size = DGST_SIZE_4_5;
8528 parse_func = androidpin_parse_hash;
8529 sort_by_digest = sort_by_digest_4_5;
8530 opti_type = OPTI_TYPE_ZERO_BYTE;
8531 dgst_pos0 = 0;
8532 dgst_pos1 = 1;
8533 dgst_pos2 = 2;
8534 dgst_pos3 = 3;
8535 break;
8536
8537 case 6000: hash_type = HASH_TYPE_RIPEMD160;
8538 salt_type = SALT_TYPE_NONE;
8539 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8540 opts_type = OPTS_TYPE_PT_GENERATE_LE
8541 | OPTS_TYPE_PT_ADD80;
8542 kern_type = KERN_TYPE_RIPEMD160;
8543 dgst_size = DGST_SIZE_4_5;
8544 parse_func = ripemd160_parse_hash;
8545 sort_by_digest = sort_by_digest_4_5;
8546 opti_type = OPTI_TYPE_ZERO_BYTE;
8547 dgst_pos0 = 0;
8548 dgst_pos1 = 1;
8549 dgst_pos2 = 2;
8550 dgst_pos3 = 3;
8551 break;
8552
8553 case 6100: hash_type = HASH_TYPE_WHIRLPOOL;
8554 salt_type = SALT_TYPE_NONE;
8555 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8556 opts_type = OPTS_TYPE_PT_GENERATE_BE
8557 | OPTS_TYPE_PT_ADD80;
8558 kern_type = KERN_TYPE_WHIRLPOOL;
8559 dgst_size = DGST_SIZE_4_16;
8560 parse_func = whirlpool_parse_hash;
8561 sort_by_digest = sort_by_digest_4_16;
8562 opti_type = OPTI_TYPE_ZERO_BYTE;
8563 dgst_pos0 = 0;
8564 dgst_pos1 = 1;
8565 dgst_pos2 = 2;
8566 dgst_pos3 = 3;
8567 break;
8568
8569 case 6211: hash_type = HASH_TYPE_RIPEMD160;
8570 salt_type = SALT_TYPE_EMBEDDED;
8571 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8572 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8573 kern_type = KERN_TYPE_TCRIPEMD160_XTS512;
8574 dgst_size = DGST_SIZE_4_5;
8575 parse_func = truecrypt_parse_hash_2k;
8576 sort_by_digest = sort_by_digest_4_5;
8577 opti_type = OPTI_TYPE_ZERO_BYTE;
8578 dgst_pos0 = 0;
8579 dgst_pos1 = 1;
8580 dgst_pos2 = 2;
8581 dgst_pos3 = 3;
8582 break;
8583
8584 case 6212: hash_type = HASH_TYPE_RIPEMD160;
8585 salt_type = SALT_TYPE_EMBEDDED;
8586 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8587 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8588 kern_type = KERN_TYPE_TCRIPEMD160_XTS1024;
8589 dgst_size = DGST_SIZE_4_5;
8590 parse_func = truecrypt_parse_hash_2k;
8591 sort_by_digest = sort_by_digest_4_5;
8592 opti_type = OPTI_TYPE_ZERO_BYTE;
8593 dgst_pos0 = 0;
8594 dgst_pos1 = 1;
8595 dgst_pos2 = 2;
8596 dgst_pos3 = 3;
8597 break;
8598
8599 case 6213: hash_type = HASH_TYPE_RIPEMD160;
8600 salt_type = SALT_TYPE_EMBEDDED;
8601 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8602 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8603 kern_type = KERN_TYPE_TCRIPEMD160_XTS1536;
8604 dgst_size = DGST_SIZE_4_5;
8605 parse_func = truecrypt_parse_hash_2k;
8606 sort_by_digest = sort_by_digest_4_5;
8607 opti_type = OPTI_TYPE_ZERO_BYTE;
8608 dgst_pos0 = 0;
8609 dgst_pos1 = 1;
8610 dgst_pos2 = 2;
8611 dgst_pos3 = 3;
8612 break;
8613
8614 case 6221: hash_type = HASH_TYPE_SHA512;
8615 salt_type = SALT_TYPE_EMBEDDED;
8616 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8617 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8618 kern_type = KERN_TYPE_TCSHA512_XTS512;
8619 dgst_size = DGST_SIZE_8_8;
8620 parse_func = truecrypt_parse_hash_1k;
8621 sort_by_digest = sort_by_digest_8_8;
8622 opti_type = OPTI_TYPE_ZERO_BYTE
8623 | OPTI_TYPE_USES_BITS_64;
8624 dgst_pos0 = 0;
8625 dgst_pos1 = 1;
8626 dgst_pos2 = 2;
8627 dgst_pos3 = 3;
8628 break;
8629
8630 case 6222: hash_type = HASH_TYPE_SHA512;
8631 salt_type = SALT_TYPE_EMBEDDED;
8632 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8633 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8634 kern_type = KERN_TYPE_TCSHA512_XTS1024;
8635 dgst_size = DGST_SIZE_8_8;
8636 parse_func = truecrypt_parse_hash_1k;
8637 sort_by_digest = sort_by_digest_8_8;
8638 opti_type = OPTI_TYPE_ZERO_BYTE
8639 | OPTI_TYPE_USES_BITS_64;
8640 dgst_pos0 = 0;
8641 dgst_pos1 = 1;
8642 dgst_pos2 = 2;
8643 dgst_pos3 = 3;
8644 break;
8645
8646 case 6223: hash_type = HASH_TYPE_SHA512;
8647 salt_type = SALT_TYPE_EMBEDDED;
8648 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8649 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8650 kern_type = KERN_TYPE_TCSHA512_XTS1536;
8651 dgst_size = DGST_SIZE_8_8;
8652 parse_func = truecrypt_parse_hash_1k;
8653 sort_by_digest = sort_by_digest_8_8;
8654 opti_type = OPTI_TYPE_ZERO_BYTE
8655 | OPTI_TYPE_USES_BITS_64;
8656 dgst_pos0 = 0;
8657 dgst_pos1 = 1;
8658 dgst_pos2 = 2;
8659 dgst_pos3 = 3;
8660 break;
8661
8662 case 6231: hash_type = HASH_TYPE_WHIRLPOOL;
8663 salt_type = SALT_TYPE_EMBEDDED;
8664 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8665 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8666 kern_type = KERN_TYPE_TCWHIRLPOOL_XTS512;
8667 dgst_size = DGST_SIZE_4_8;
8668 parse_func = truecrypt_parse_hash_1k;
8669 sort_by_digest = sort_by_digest_4_8;
8670 opti_type = OPTI_TYPE_ZERO_BYTE;
8671 dgst_pos0 = 0;
8672 dgst_pos1 = 1;
8673 dgst_pos2 = 2;
8674 dgst_pos3 = 3;
8675 break;
8676
8677 case 6232: hash_type = HASH_TYPE_WHIRLPOOL;
8678 salt_type = SALT_TYPE_EMBEDDED;
8679 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8680 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8681 kern_type = KERN_TYPE_TCWHIRLPOOL_XTS1024;
8682 dgst_size = DGST_SIZE_4_8;
8683 parse_func = truecrypt_parse_hash_1k;
8684 sort_by_digest = sort_by_digest_4_8;
8685 opti_type = OPTI_TYPE_ZERO_BYTE;
8686 dgst_pos0 = 0;
8687 dgst_pos1 = 1;
8688 dgst_pos2 = 2;
8689 dgst_pos3 = 3;
8690 break;
8691
8692 case 6233: hash_type = HASH_TYPE_WHIRLPOOL;
8693 salt_type = SALT_TYPE_EMBEDDED;
8694 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8695 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8696 kern_type = KERN_TYPE_TCWHIRLPOOL_XTS1536;
8697 dgst_size = DGST_SIZE_4_8;
8698 parse_func = truecrypt_parse_hash_1k;
8699 sort_by_digest = sort_by_digest_4_8;
8700 opti_type = OPTI_TYPE_ZERO_BYTE;
8701 dgst_pos0 = 0;
8702 dgst_pos1 = 1;
8703 dgst_pos2 = 2;
8704 dgst_pos3 = 3;
8705 break;
8706
8707 case 6241: hash_type = HASH_TYPE_RIPEMD160;
8708 salt_type = SALT_TYPE_EMBEDDED;
8709 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8710 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8711 kern_type = KERN_TYPE_TCRIPEMD160_XTS512;
8712 dgst_size = DGST_SIZE_4_5;
8713 parse_func = truecrypt_parse_hash_1k;
8714 sort_by_digest = sort_by_digest_4_5;
8715 opti_type = OPTI_TYPE_ZERO_BYTE;
8716 dgst_pos0 = 0;
8717 dgst_pos1 = 1;
8718 dgst_pos2 = 2;
8719 dgst_pos3 = 3;
8720 break;
8721
8722 case 6242: hash_type = HASH_TYPE_RIPEMD160;
8723 salt_type = SALT_TYPE_EMBEDDED;
8724 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8725 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8726 kern_type = KERN_TYPE_TCRIPEMD160_XTS1024;
8727 dgst_size = DGST_SIZE_4_5;
8728 parse_func = truecrypt_parse_hash_1k;
8729 sort_by_digest = sort_by_digest_4_5;
8730 opti_type = OPTI_TYPE_ZERO_BYTE;
8731 dgst_pos0 = 0;
8732 dgst_pos1 = 1;
8733 dgst_pos2 = 2;
8734 dgst_pos3 = 3;
8735 break;
8736
8737 case 6243: hash_type = HASH_TYPE_RIPEMD160;
8738 salt_type = SALT_TYPE_EMBEDDED;
8739 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8740 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8741 kern_type = KERN_TYPE_TCRIPEMD160_XTS1536;
8742 dgst_size = DGST_SIZE_4_5;
8743 parse_func = truecrypt_parse_hash_1k;
8744 sort_by_digest = sort_by_digest_4_5;
8745 opti_type = OPTI_TYPE_ZERO_BYTE;
8746 dgst_pos0 = 0;
8747 dgst_pos1 = 1;
8748 dgst_pos2 = 2;
8749 dgst_pos3 = 3;
8750 break;
8751
8752 case 6300: hash_type = HASH_TYPE_MD5;
8753 salt_type = SALT_TYPE_EMBEDDED;
8754 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8755 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8756 kern_type = KERN_TYPE_MD5AIX;
8757 dgst_size = DGST_SIZE_4_4;
8758 parse_func = md5aix_parse_hash;
8759 sort_by_digest = sort_by_digest_4_4;
8760 opti_type = OPTI_TYPE_ZERO_BYTE;
8761 dgst_pos0 = 0;
8762 dgst_pos1 = 1;
8763 dgst_pos2 = 2;
8764 dgst_pos3 = 3;
8765 break;
8766
8767 case 6400: hash_type = HASH_TYPE_SHA256;
8768 salt_type = SALT_TYPE_EMBEDDED;
8769 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8770 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8771 kern_type = KERN_TYPE_SHA256AIX;
8772 dgst_size = DGST_SIZE_4_8;
8773 parse_func = sha256aix_parse_hash;
8774 sort_by_digest = sort_by_digest_4_8;
8775 opti_type = OPTI_TYPE_ZERO_BYTE;
8776 dgst_pos0 = 0;
8777 dgst_pos1 = 1;
8778 dgst_pos2 = 2;
8779 dgst_pos3 = 3;
8780 break;
8781
8782 case 6500: hash_type = HASH_TYPE_SHA512;
8783 salt_type = SALT_TYPE_EMBEDDED;
8784 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8785 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8786 kern_type = KERN_TYPE_SHA512AIX;
8787 dgst_size = DGST_SIZE_8_8;
8788 parse_func = sha512aix_parse_hash;
8789 sort_by_digest = sort_by_digest_8_8;
8790 opti_type = OPTI_TYPE_ZERO_BYTE
8791 | OPTI_TYPE_USES_BITS_64;
8792 dgst_pos0 = 0;
8793 dgst_pos1 = 1;
8794 dgst_pos2 = 2;
8795 dgst_pos3 = 3;
8796 break;
8797
8798 case 6600: hash_type = HASH_TYPE_AES;
8799 salt_type = SALT_TYPE_EMBEDDED;
8800 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8801 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8802 kern_type = KERN_TYPE_AGILEKEY;
8803 dgst_size = DGST_SIZE_4_5; // because kernel uses _SHA1_
8804 parse_func = agilekey_parse_hash;
8805 sort_by_digest = sort_by_digest_4_5;
8806 opti_type = OPTI_TYPE_ZERO_BYTE;
8807 dgst_pos0 = 0;
8808 dgst_pos1 = 1;
8809 dgst_pos2 = 2;
8810 dgst_pos3 = 3;
8811 break;
8812
8813 case 6700: hash_type = HASH_TYPE_SHA1;
8814 salt_type = SALT_TYPE_EMBEDDED;
8815 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8816 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8817 kern_type = KERN_TYPE_SHA1AIX;
8818 dgst_size = DGST_SIZE_4_5;
8819 parse_func = sha1aix_parse_hash;
8820 sort_by_digest = sort_by_digest_4_5;
8821 opti_type = OPTI_TYPE_ZERO_BYTE;
8822 dgst_pos0 = 0;
8823 dgst_pos1 = 1;
8824 dgst_pos2 = 2;
8825 dgst_pos3 = 3;
8826 break;
8827
8828 case 6800: hash_type = HASH_TYPE_AES;
8829 salt_type = SALT_TYPE_EMBEDDED;
8830 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8831 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8832 kern_type = KERN_TYPE_LASTPASS;
8833 dgst_size = DGST_SIZE_4_8; // because kernel uses _SHA256_
8834 parse_func = lastpass_parse_hash;
8835 sort_by_digest = sort_by_digest_4_8;
8836 opti_type = OPTI_TYPE_ZERO_BYTE;
8837 dgst_pos0 = 0;
8838 dgst_pos1 = 1;
8839 dgst_pos2 = 2;
8840 dgst_pos3 = 3;
8841 break;
8842
8843 case 6900: hash_type = HASH_TYPE_GOST;
8844 salt_type = SALT_TYPE_NONE;
8845 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8846 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8847 kern_type = KERN_TYPE_GOST;
8848 dgst_size = DGST_SIZE_4_8;
8849 parse_func = gost_parse_hash;
8850 sort_by_digest = sort_by_digest_4_8;
8851 opti_type = OPTI_TYPE_ZERO_BYTE;
8852 dgst_pos0 = 0;
8853 dgst_pos1 = 1;
8854 dgst_pos2 = 2;
8855 dgst_pos3 = 3;
8856 break;
8857
8858 case 7100: hash_type = HASH_TYPE_SHA512;
8859 salt_type = SALT_TYPE_EMBEDDED;
8860 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8861 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8862 kern_type = KERN_TYPE_PBKDF2_SHA512;
8863 dgst_size = DGST_SIZE_8_16;
8864 parse_func = sha512osx_parse_hash;
8865 sort_by_digest = sort_by_digest_8_16;
8866 opti_type = OPTI_TYPE_ZERO_BYTE
8867 | OPTI_TYPE_USES_BITS_64;
8868 dgst_pos0 = 0;
8869 dgst_pos1 = 1;
8870 dgst_pos2 = 2;
8871 dgst_pos3 = 3;
8872 break;
8873
8874 case 7200: hash_type = HASH_TYPE_SHA512;
8875 salt_type = SALT_TYPE_EMBEDDED;
8876 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8877 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8878 kern_type = KERN_TYPE_PBKDF2_SHA512;
8879 dgst_size = DGST_SIZE_8_16;
8880 parse_func = sha512grub_parse_hash;
8881 sort_by_digest = sort_by_digest_8_16;
8882 opti_type = OPTI_TYPE_ZERO_BYTE
8883 | OPTI_TYPE_USES_BITS_64;
8884 dgst_pos0 = 0;
8885 dgst_pos1 = 1;
8886 dgst_pos2 = 2;
8887 dgst_pos3 = 3;
8888 break;
8889
8890 case 7300: hash_type = HASH_TYPE_SHA1;
8891 salt_type = SALT_TYPE_EMBEDDED;
8892 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8893 opts_type = OPTS_TYPE_PT_GENERATE_BE
8894 | OPTS_TYPE_ST_ADD80
8895 | OPTS_TYPE_ST_ADDBITS15;
8896 kern_type = KERN_TYPE_RAKP;
8897 dgst_size = DGST_SIZE_4_5;
8898 parse_func = rakp_parse_hash;
8899 sort_by_digest = sort_by_digest_4_5;
8900 opti_type = OPTI_TYPE_ZERO_BYTE
8901 | OPTI_TYPE_NOT_ITERATED;
8902 dgst_pos0 = 3;
8903 dgst_pos1 = 4;
8904 dgst_pos2 = 2;
8905 dgst_pos3 = 1;
8906 break;
8907
8908 case 7400: hash_type = HASH_TYPE_SHA256;
8909 salt_type = SALT_TYPE_EMBEDDED;
8910 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
8911 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
8912 kern_type = KERN_TYPE_SHA256CRYPT;
8913 dgst_size = DGST_SIZE_4_8;
8914 parse_func = sha256crypt_parse_hash;
8915 sort_by_digest = sort_by_digest_4_8;
8916 opti_type = OPTI_TYPE_ZERO_BYTE;
8917 dgst_pos0 = 0;
8918 dgst_pos1 = 1;
8919 dgst_pos2 = 2;
8920 dgst_pos3 = 3;
8921 break;
8922
8923 case 7500: hash_type = HASH_TYPE_KRB5PA;
8924 salt_type = SALT_TYPE_EMBEDDED;
8925 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8926 opts_type = OPTS_TYPE_PT_GENERATE_LE;
8927 kern_type = KERN_TYPE_KRB5PA;
8928 dgst_size = DGST_SIZE_4_4;
8929 parse_func = krb5pa_parse_hash;
8930 sort_by_digest = sort_by_digest_4_4;
8931 opti_type = OPTI_TYPE_ZERO_BYTE
8932 | OPTI_TYPE_NOT_ITERATED;
8933 dgst_pos0 = 0;
8934 dgst_pos1 = 1;
8935 dgst_pos2 = 2;
8936 dgst_pos3 = 3;
8937 break;
8938
8939 case 7600: hash_type = HASH_TYPE_SHA1;
8940 salt_type = SALT_TYPE_INTERN;
8941 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8942 opts_type = OPTS_TYPE_PT_GENERATE_BE
8943 | OPTS_TYPE_PT_ADD80
8944 | OPTS_TYPE_PT_ADDBITS15;
8945 kern_type = KERN_TYPE_SHA1_SLT_SHA1_PW;
8946 dgst_size = DGST_SIZE_4_5;
8947 parse_func = redmine_parse_hash;
8948 sort_by_digest = sort_by_digest_4_5;
8949 opti_type = OPTI_TYPE_ZERO_BYTE
8950 | OPTI_TYPE_PRECOMPUTE_INIT
8951 | OPTI_TYPE_EARLY_SKIP
8952 | OPTI_TYPE_NOT_ITERATED
8953 | OPTI_TYPE_PREPENDED_SALT;
8954 dgst_pos0 = 3;
8955 dgst_pos1 = 4;
8956 dgst_pos2 = 2;
8957 dgst_pos3 = 1;
8958 break;
8959
8960 case 7700: hash_type = HASH_TYPE_SAPB;
8961 salt_type = SALT_TYPE_EMBEDDED;
8962 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8963 opts_type = OPTS_TYPE_PT_GENERATE_LE
8964 | OPTS_TYPE_PT_UPPER
8965 | OPTS_TYPE_ST_UPPER;
8966 kern_type = KERN_TYPE_SAPB;
8967 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
8968 parse_func = sapb_parse_hash;
8969 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
8970 opti_type = OPTI_TYPE_ZERO_BYTE
8971 | OPTI_TYPE_PRECOMPUTE_INIT
8972 | OPTI_TYPE_NOT_ITERATED;
8973 dgst_pos0 = 0;
8974 dgst_pos1 = 1;
8975 dgst_pos2 = 2;
8976 dgst_pos3 = 3;
8977 break;
8978
8979 case 7800: hash_type = HASH_TYPE_SAPG;
8980 salt_type = SALT_TYPE_EMBEDDED;
8981 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
8982 opts_type = OPTS_TYPE_PT_GENERATE_BE
8983 | OPTS_TYPE_ST_ADD80
8984 | OPTS_TYPE_ST_UPPER;
8985 kern_type = KERN_TYPE_SAPG;
8986 dgst_size = DGST_SIZE_4_5;
8987 parse_func = sapg_parse_hash;
8988 sort_by_digest = sort_by_digest_4_5;
8989 opti_type = OPTI_TYPE_ZERO_BYTE
8990 | OPTI_TYPE_PRECOMPUTE_INIT
8991 | OPTI_TYPE_NOT_ITERATED;
8992 dgst_pos0 = 3;
8993 dgst_pos1 = 4;
8994 dgst_pos2 = 2;
8995 dgst_pos3 = 1;
8996 break;
8997
8998 case 7900: hash_type = HASH_TYPE_SHA512;
8999 salt_type = SALT_TYPE_EMBEDDED;
9000 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9001 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9002 kern_type = KERN_TYPE_DRUPAL7;
9003 dgst_size = DGST_SIZE_8_8;
9004 parse_func = drupal7_parse_hash;
9005 sort_by_digest = sort_by_digest_8_8;
9006 opti_type = OPTI_TYPE_ZERO_BYTE
9007 | OPTI_TYPE_USES_BITS_64;
9008 dgst_pos0 = 0;
9009 dgst_pos1 = 1;
9010 dgst_pos2 = 2;
9011 dgst_pos3 = 3;
9012 break;
9013
9014 case 8000: hash_type = HASH_TYPE_SHA256;
9015 salt_type = SALT_TYPE_EMBEDDED;
9016 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9017 opts_type = OPTS_TYPE_PT_GENERATE_BE
9018 | OPTS_TYPE_PT_UNICODE
9019 | OPTS_TYPE_ST_ADD80
9020 | OPTS_TYPE_ST_HEX;
9021 kern_type = KERN_TYPE_SYBASEASE;
9022 dgst_size = DGST_SIZE_4_8;
9023 parse_func = sybasease_parse_hash;
9024 sort_by_digest = sort_by_digest_4_8;
9025 opti_type = OPTI_TYPE_ZERO_BYTE
9026 | OPTI_TYPE_PRECOMPUTE_INIT
9027 | OPTI_TYPE_EARLY_SKIP
9028 | OPTI_TYPE_NOT_ITERATED
9029 | OPTI_TYPE_RAW_HASH;
9030 dgst_pos0 = 3;
9031 dgst_pos1 = 7;
9032 dgst_pos2 = 2;
9033 dgst_pos3 = 6;
9034 break;
9035
9036 case 8100: hash_type = HASH_TYPE_SHA1;
9037 salt_type = SALT_TYPE_EMBEDDED;
9038 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9039 opts_type = OPTS_TYPE_PT_GENERATE_BE;
9040 kern_type = KERN_TYPE_NETSCALER;
9041 dgst_size = DGST_SIZE_4_5;
9042 parse_func = netscaler_parse_hash;
9043 sort_by_digest = sort_by_digest_4_5;
9044 opti_type = OPTI_TYPE_ZERO_BYTE
9045 | OPTI_TYPE_PRECOMPUTE_INIT
9046 | OPTI_TYPE_PRECOMPUTE_MERKLE
9047 | OPTI_TYPE_EARLY_SKIP
9048 | OPTI_TYPE_NOT_ITERATED
9049 | OPTI_TYPE_PREPENDED_SALT
9050 | OPTI_TYPE_RAW_HASH;
9051 dgst_pos0 = 3;
9052 dgst_pos1 = 4;
9053 dgst_pos2 = 2;
9054 dgst_pos3 = 1;
9055 break;
9056
9057 case 8200: hash_type = HASH_TYPE_SHA256;
9058 salt_type = SALT_TYPE_EMBEDDED;
9059 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9060 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9061 kern_type = KERN_TYPE_CLOUDKEY;
9062 dgst_size = DGST_SIZE_4_8;
9063 parse_func = cloudkey_parse_hash;
9064 sort_by_digest = sort_by_digest_4_8;
9065 opti_type = OPTI_TYPE_ZERO_BYTE;
9066 dgst_pos0 = 0;
9067 dgst_pos1 = 1;
9068 dgst_pos2 = 2;
9069 dgst_pos3 = 3;
9070 break;
9071
9072 case 8300: hash_type = HASH_TYPE_SHA1;
9073 salt_type = SALT_TYPE_EMBEDDED;
9074 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9075 opts_type = OPTS_TYPE_PT_GENERATE_LE
9076 | OPTS_TYPE_ST_HEX
9077 | OPTS_TYPE_ST_ADD80;
9078 kern_type = KERN_TYPE_NSEC3;
9079 dgst_size = DGST_SIZE_4_5;
9080 parse_func = nsec3_parse_hash;
9081 sort_by_digest = sort_by_digest_4_5;
9082 opti_type = OPTI_TYPE_ZERO_BYTE;
9083 dgst_pos0 = 3;
9084 dgst_pos1 = 4;
9085 dgst_pos2 = 2;
9086 dgst_pos3 = 1;
9087 break;
9088
9089 case 8400: hash_type = HASH_TYPE_SHA1;
9090 salt_type = SALT_TYPE_INTERN;
9091 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9092 opts_type = OPTS_TYPE_PT_GENERATE_BE
9093 | OPTS_TYPE_PT_ADD80
9094 | OPTS_TYPE_PT_ADDBITS15;
9095 kern_type = KERN_TYPE_WBB3;
9096 dgst_size = DGST_SIZE_4_5;
9097 parse_func = wbb3_parse_hash;
9098 sort_by_digest = sort_by_digest_4_5;
9099 opti_type = OPTI_TYPE_ZERO_BYTE
9100 | OPTI_TYPE_PRECOMPUTE_INIT
9101 | OPTI_TYPE_NOT_ITERATED;
9102 dgst_pos0 = 3;
9103 dgst_pos1 = 4;
9104 dgst_pos2 = 2;
9105 dgst_pos3 = 1;
9106 break;
9107
9108 case 8500: hash_type = HASH_TYPE_DESRACF;
9109 salt_type = SALT_TYPE_EMBEDDED;
9110 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9111 opts_type = OPTS_TYPE_PT_GENERATE_LE
9112 | OPTS_TYPE_ST_UPPER;
9113 kern_type = KERN_TYPE_RACF;
9114 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9115 parse_func = racf_parse_hash;
9116 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9117 opti_type = OPTI_TYPE_ZERO_BYTE
9118 | OPTI_TYPE_PRECOMPUTE_PERMUT;
9119 dgst_pos0 = 0;
9120 dgst_pos1 = 1;
9121 dgst_pos2 = 2;
9122 dgst_pos3 = 3;
9123 break;
9124
9125 case 8600: hash_type = HASH_TYPE_LOTUS5;
9126 salt_type = SALT_TYPE_NONE;
9127 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9128 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9129 kern_type = KERN_TYPE_LOTUS5;
9130 dgst_size = DGST_SIZE_4_4;
9131 parse_func = lotus5_parse_hash;
9132 sort_by_digest = sort_by_digest_4_4;
9133 opti_type = OPTI_TYPE_EARLY_SKIP
9134 | OPTI_TYPE_NOT_ITERATED
9135 | OPTI_TYPE_NOT_SALTED
9136 | OPTI_TYPE_RAW_HASH;
9137 dgst_pos0 = 0;
9138 dgst_pos1 = 1;
9139 dgst_pos2 = 2;
9140 dgst_pos3 = 3;
9141 break;
9142
9143 case 8700: hash_type = HASH_TYPE_LOTUS6;
9144 salt_type = SALT_TYPE_EMBEDDED;
9145 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9146 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9147 kern_type = KERN_TYPE_LOTUS6;
9148 dgst_size = DGST_SIZE_4_4;
9149 parse_func = lotus6_parse_hash;
9150 sort_by_digest = sort_by_digest_4_4;
9151 opti_type = OPTI_TYPE_EARLY_SKIP
9152 | OPTI_TYPE_NOT_ITERATED
9153 | OPTI_TYPE_RAW_HASH;
9154 dgst_pos0 = 0;
9155 dgst_pos1 = 1;
9156 dgst_pos2 = 2;
9157 dgst_pos3 = 3;
9158 break;
9159
9160 case 8800: hash_type = HASH_TYPE_ANDROIDFDE;
9161 salt_type = SALT_TYPE_EMBEDDED;
9162 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9163 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9164 kern_type = KERN_TYPE_ANDROIDFDE;
9165 dgst_size = DGST_SIZE_4_4;
9166 parse_func = androidfde_parse_hash;
9167 sort_by_digest = sort_by_digest_4_4;
9168 opti_type = OPTI_TYPE_ZERO_BYTE;
9169 dgst_pos0 = 0;
9170 dgst_pos1 = 1;
9171 dgst_pos2 = 2;
9172 dgst_pos3 = 3;
9173 break;
9174
9175 case 8900: hash_type = HASH_TYPE_SCRYPT;
9176 salt_type = SALT_TYPE_EMBEDDED;
9177 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9178 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9179 kern_type = KERN_TYPE_SCRYPT;
9180 dgst_size = DGST_SIZE_4_8;
9181 parse_func = scrypt_parse_hash;
9182 sort_by_digest = sort_by_digest_4_8;
9183 opti_type = OPTI_TYPE_ZERO_BYTE;
9184 dgst_pos0 = 0;
9185 dgst_pos1 = 1;
9186 dgst_pos2 = 2;
9187 dgst_pos3 = 3;
9188 break;
9189
9190 case 9000: hash_type = HASH_TYPE_SHA1;
9191 salt_type = SALT_TYPE_EMBEDDED;
9192 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9193 opts_type = OPTS_TYPE_PT_GENERATE_LE
9194 | OPTS_TYPE_ST_GENERATE_LE;
9195 kern_type = KERN_TYPE_PSAFE2;
9196 dgst_size = DGST_SIZE_4_5;
9197 parse_func = psafe2_parse_hash;
9198 sort_by_digest = sort_by_digest_4_5;
9199 opti_type = OPTI_TYPE_ZERO_BYTE;
9200 dgst_pos0 = 0;
9201 dgst_pos1 = 1;
9202 dgst_pos2 = 2;
9203 dgst_pos3 = 3;
9204 break;
9205
9206 case 9100: hash_type = HASH_TYPE_LOTUS8;
9207 salt_type = SALT_TYPE_EMBEDDED;
9208 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9209 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9210 kern_type = KERN_TYPE_LOTUS8;
9211 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9212 parse_func = lotus8_parse_hash;
9213 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9214 opti_type = OPTI_TYPE_ZERO_BYTE;
9215 dgst_pos0 = 0;
9216 dgst_pos1 = 1;
9217 dgst_pos2 = 2;
9218 dgst_pos3 = 3;
9219 break;
9220
9221 case 9200: hash_type = HASH_TYPE_SHA256;
9222 salt_type = SALT_TYPE_EMBEDDED;
9223 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9224 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9225 kern_type = KERN_TYPE_PBKDF2_SHA256;
9226 dgst_size = DGST_SIZE_4_32;
9227 parse_func = cisco8_parse_hash;
9228 sort_by_digest = sort_by_digest_4_32;
9229 opti_type = OPTI_TYPE_ZERO_BYTE;
9230 dgst_pos0 = 0;
9231 dgst_pos1 = 1;
9232 dgst_pos2 = 2;
9233 dgst_pos3 = 3;
9234 break;
9235
9236 case 9300: hash_type = HASH_TYPE_SCRYPT;
9237 salt_type = SALT_TYPE_EMBEDDED;
9238 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9239 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9240 kern_type = KERN_TYPE_SCRYPT;
9241 dgst_size = DGST_SIZE_4_8;
9242 parse_func = cisco9_parse_hash;
9243 sort_by_digest = sort_by_digest_4_8;
9244 opti_type = OPTI_TYPE_ZERO_BYTE;
9245 dgst_pos0 = 0;
9246 dgst_pos1 = 1;
9247 dgst_pos2 = 2;
9248 dgst_pos3 = 3;
9249 break;
9250
9251 case 9400: hash_type = HASH_TYPE_OFFICE2007;
9252 salt_type = SALT_TYPE_EMBEDDED;
9253 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9254 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9255 kern_type = KERN_TYPE_OFFICE2007;
9256 dgst_size = DGST_SIZE_4_4;
9257 parse_func = office2007_parse_hash;
9258 sort_by_digest = sort_by_digest_4_4;
9259 opti_type = OPTI_TYPE_ZERO_BYTE;
9260 dgst_pos0 = 0;
9261 dgst_pos1 = 1;
9262 dgst_pos2 = 2;
9263 dgst_pos3 = 3;
9264 break;
9265
9266 case 9500: hash_type = HASH_TYPE_OFFICE2010;
9267 salt_type = SALT_TYPE_EMBEDDED;
9268 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9269 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9270 kern_type = KERN_TYPE_OFFICE2010;
9271 dgst_size = DGST_SIZE_4_4;
9272 parse_func = office2010_parse_hash;
9273 sort_by_digest = sort_by_digest_4_4;
9274 opti_type = OPTI_TYPE_ZERO_BYTE;
9275 dgst_pos0 = 0;
9276 dgst_pos1 = 1;
9277 dgst_pos2 = 2;
9278 dgst_pos3 = 3;
9279 break;
9280
9281 case 9600: hash_type = HASH_TYPE_OFFICE2013;
9282 salt_type = SALT_TYPE_EMBEDDED;
9283 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9284 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9285 kern_type = KERN_TYPE_OFFICE2013;
9286 dgst_size = DGST_SIZE_4_4;
9287 parse_func = office2013_parse_hash;
9288 sort_by_digest = sort_by_digest_4_4;
9289 opti_type = OPTI_TYPE_ZERO_BYTE;
9290 dgst_pos0 = 0;
9291 dgst_pos1 = 1;
9292 dgst_pos2 = 2;
9293 dgst_pos3 = 3;
9294 break;
9295
9296 case 9700: hash_type = HASH_TYPE_OLDOFFICE01;
9297 salt_type = SALT_TYPE_EMBEDDED;
9298 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9299 opts_type = OPTS_TYPE_PT_GENERATE_LE
9300 | OPTS_TYPE_PT_ADD80
9301 | OPTS_TYPE_PT_UNICODE;
9302 kern_type = KERN_TYPE_OLDOFFICE01;
9303 dgst_size = DGST_SIZE_4_4;
9304 parse_func = oldoffice01_parse_hash;
9305 sort_by_digest = sort_by_digest_4_4;
9306 opti_type = OPTI_TYPE_ZERO_BYTE
9307 | OPTI_TYPE_PRECOMPUTE_INIT
9308 | OPTI_TYPE_NOT_ITERATED;
9309 dgst_pos0 = 0;
9310 dgst_pos1 = 1;
9311 dgst_pos2 = 2;
9312 dgst_pos3 = 3;
9313 break;
9314
9315 case 9710: hash_type = HASH_TYPE_OLDOFFICE01;
9316 salt_type = SALT_TYPE_EMBEDDED;
9317 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9318 opts_type = OPTS_TYPE_PT_GENERATE_LE
9319 | OPTS_TYPE_PT_ADD80;
9320 kern_type = KERN_TYPE_OLDOFFICE01CM1;
9321 dgst_size = DGST_SIZE_4_4;
9322 parse_func = oldoffice01cm1_parse_hash;
9323 sort_by_digest = sort_by_digest_4_4;
9324 opti_type = OPTI_TYPE_ZERO_BYTE
9325 | OPTI_TYPE_PRECOMPUTE_INIT
9326 | OPTI_TYPE_NOT_ITERATED;
9327 dgst_pos0 = 0;
9328 dgst_pos1 = 1;
9329 dgst_pos2 = 2;
9330 dgst_pos3 = 3;
9331 break;
9332
9333 case 9720: hash_type = HASH_TYPE_OLDOFFICE01;
9334 salt_type = SALT_TYPE_EMBEDDED;
9335 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9336 opts_type = OPTS_TYPE_PT_GENERATE_LE
9337 | OPTS_TYPE_PT_ADD80
9338 | OPTS_TYPE_PT_UNICODE
9339 | OPTS_TYPE_PT_NEVERCRACK;
9340 kern_type = KERN_TYPE_OLDOFFICE01CM2;
9341 dgst_size = DGST_SIZE_4_4;
9342 parse_func = oldoffice01cm2_parse_hash;
9343 sort_by_digest = sort_by_digest_4_4;
9344 opti_type = OPTI_TYPE_ZERO_BYTE
9345 | OPTI_TYPE_PRECOMPUTE_INIT
9346 | OPTI_TYPE_NOT_ITERATED;
9347 dgst_pos0 = 0;
9348 dgst_pos1 = 1;
9349 dgst_pos2 = 2;
9350 dgst_pos3 = 3;
9351 break;
9352
9353 case 9800: hash_type = HASH_TYPE_OLDOFFICE34;
9354 salt_type = SALT_TYPE_EMBEDDED;
9355 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9356 opts_type = OPTS_TYPE_PT_GENERATE_BE
9357 | OPTS_TYPE_PT_ADD80
9358 | OPTS_TYPE_PT_UNICODE;
9359 kern_type = KERN_TYPE_OLDOFFICE34;
9360 dgst_size = DGST_SIZE_4_4;
9361 parse_func = oldoffice34_parse_hash;
9362 sort_by_digest = sort_by_digest_4_4;
9363 opti_type = OPTI_TYPE_ZERO_BYTE
9364 | OPTI_TYPE_PRECOMPUTE_INIT
9365 | OPTI_TYPE_NOT_ITERATED;
9366 dgst_pos0 = 0;
9367 dgst_pos1 = 1;
9368 dgst_pos2 = 2;
9369 dgst_pos3 = 3;
9370 break;
9371
9372 case 9810: hash_type = HASH_TYPE_OLDOFFICE34;
9373 salt_type = SALT_TYPE_EMBEDDED;
9374 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9375 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9376 kern_type = KERN_TYPE_OLDOFFICE34CM1;
9377 dgst_size = DGST_SIZE_4_4;
9378 parse_func = oldoffice34cm1_parse_hash;
9379 sort_by_digest = sort_by_digest_4_4;
9380 opti_type = OPTI_TYPE_ZERO_BYTE
9381 | OPTI_TYPE_PRECOMPUTE_INIT
9382 | OPTI_TYPE_NOT_ITERATED;
9383 dgst_pos0 = 0;
9384 dgst_pos1 = 1;
9385 dgst_pos2 = 2;
9386 dgst_pos3 = 3;
9387 break;
9388
9389 case 9820: hash_type = HASH_TYPE_OLDOFFICE34;
9390 salt_type = SALT_TYPE_EMBEDDED;
9391 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9392 opts_type = OPTS_TYPE_PT_GENERATE_BE
9393 | OPTS_TYPE_PT_ADD80
9394 | OPTS_TYPE_PT_UNICODE
9395 | OPTS_TYPE_PT_NEVERCRACK;
9396 kern_type = KERN_TYPE_OLDOFFICE34CM2;
9397 dgst_size = DGST_SIZE_4_4;
9398 parse_func = oldoffice34cm2_parse_hash;
9399 sort_by_digest = sort_by_digest_4_4;
9400 opti_type = OPTI_TYPE_ZERO_BYTE
9401 | OPTI_TYPE_PRECOMPUTE_INIT
9402 | OPTI_TYPE_NOT_ITERATED;
9403 dgst_pos0 = 0;
9404 dgst_pos1 = 1;
9405 dgst_pos2 = 2;
9406 dgst_pos3 = 3;
9407 break;
9408
9409 case 9900: hash_type = HASH_TYPE_MD5;
9410 salt_type = SALT_TYPE_NONE;
9411 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9412 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9413 kern_type = KERN_TYPE_RADMIN2;
9414 dgst_size = DGST_SIZE_4_4;
9415 parse_func = radmin2_parse_hash;
9416 sort_by_digest = sort_by_digest_4_4;
9417 opti_type = OPTI_TYPE_ZERO_BYTE
9418 | OPTI_TYPE_PRECOMPUTE_INIT
9419 | OPTI_TYPE_EARLY_SKIP
9420 | OPTI_TYPE_NOT_ITERATED
9421 | OPTI_TYPE_NOT_SALTED;
9422 dgst_pos0 = 0;
9423 dgst_pos1 = 3;
9424 dgst_pos2 = 2;
9425 dgst_pos3 = 1;
9426 break;
9427
9428 case 10000: hash_type = HASH_TYPE_SHA256;
9429 salt_type = SALT_TYPE_EMBEDDED;
9430 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9431 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9432 kern_type = KERN_TYPE_PBKDF2_SHA256;
9433 dgst_size = DGST_SIZE_4_32;
9434 parse_func = djangopbkdf2_parse_hash;
9435 sort_by_digest = sort_by_digest_4_32;
9436 opti_type = OPTI_TYPE_ZERO_BYTE;
9437 dgst_pos0 = 0;
9438 dgst_pos1 = 1;
9439 dgst_pos2 = 2;
9440 dgst_pos3 = 3;
9441 break;
9442
9443 case 10100: hash_type = HASH_TYPE_SIPHASH;
9444 salt_type = SALT_TYPE_EMBEDDED;
9445 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9446 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9447 kern_type = KERN_TYPE_SIPHASH;
9448 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9449 parse_func = siphash_parse_hash;
9450 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9451 opti_type = OPTI_TYPE_ZERO_BYTE
9452 | OPTI_TYPE_NOT_ITERATED
9453 | OPTI_TYPE_RAW_HASH;
9454 dgst_pos0 = 0;
9455 dgst_pos1 = 1;
9456 dgst_pos2 = 2;
9457 dgst_pos3 = 3;
9458 break;
9459
9460 case 10200: hash_type = HASH_TYPE_MD5;
9461 salt_type = SALT_TYPE_EMBEDDED;
9462 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9463 opts_type = OPTS_TYPE_PT_GENERATE_LE
9464 | OPTS_TYPE_ST_ADD80
9465 | OPTS_TYPE_ST_ADDBITS14;
9466 kern_type = KERN_TYPE_HMACMD5_PW;
9467 dgst_size = DGST_SIZE_4_4;
9468 parse_func = crammd5_parse_hash;
9469 sort_by_digest = sort_by_digest_4_4;
9470 opti_type = OPTI_TYPE_ZERO_BYTE
9471 | OPTI_TYPE_NOT_ITERATED;
9472 dgst_pos0 = 0;
9473 dgst_pos1 = 3;
9474 dgst_pos2 = 2;
9475 dgst_pos3 = 1;
9476 break;
9477
9478 case 10300: hash_type = HASH_TYPE_SHA1;
9479 salt_type = SALT_TYPE_EMBEDDED;
9480 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9481 opts_type = OPTS_TYPE_PT_GENERATE_LE; // should be OPTS_TYPE_PT_GENERATE_BE
9482 kern_type = KERN_TYPE_SAPH_SHA1;
9483 dgst_size = DGST_SIZE_4_5;
9484 parse_func = saph_sha1_parse_hash;
9485 sort_by_digest = sort_by_digest_4_5;
9486 opti_type = OPTI_TYPE_ZERO_BYTE;
9487 dgst_pos0 = 0;
9488 dgst_pos1 = 1;
9489 dgst_pos2 = 2;
9490 dgst_pos3 = 3;
9491 break;
9492
9493 case 10400: hash_type = HASH_TYPE_PDFU16;
9494 salt_type = SALT_TYPE_EMBEDDED;
9495 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9496 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9497 kern_type = KERN_TYPE_PDF11;
9498 dgst_size = DGST_SIZE_4_4;
9499 parse_func = pdf11_parse_hash;
9500 sort_by_digest = sort_by_digest_4_4;
9501 opti_type = OPTI_TYPE_ZERO_BYTE
9502 | OPTI_TYPE_NOT_ITERATED;
9503 dgst_pos0 = 0;
9504 dgst_pos1 = 1;
9505 dgst_pos2 = 2;
9506 dgst_pos3 = 3;
9507 break;
9508
9509 case 10410: hash_type = HASH_TYPE_PDFU16;
9510 salt_type = SALT_TYPE_EMBEDDED;
9511 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9512 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9513 kern_type = KERN_TYPE_PDF11CM1;
9514 dgst_size = DGST_SIZE_4_4;
9515 parse_func = pdf11cm1_parse_hash;
9516 sort_by_digest = sort_by_digest_4_4;
9517 opti_type = OPTI_TYPE_ZERO_BYTE
9518 | OPTI_TYPE_NOT_ITERATED;
9519 dgst_pos0 = 0;
9520 dgst_pos1 = 1;
9521 dgst_pos2 = 2;
9522 dgst_pos3 = 3;
9523 break;
9524
9525 case 10420: hash_type = HASH_TYPE_PDFU16;
9526 salt_type = SALT_TYPE_EMBEDDED;
9527 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9528 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9529 kern_type = KERN_TYPE_PDF11CM2;
9530 dgst_size = DGST_SIZE_4_4;
9531 parse_func = pdf11cm2_parse_hash;
9532 sort_by_digest = sort_by_digest_4_4;
9533 opti_type = OPTI_TYPE_ZERO_BYTE
9534 | OPTI_TYPE_NOT_ITERATED;
9535 dgst_pos0 = 0;
9536 dgst_pos1 = 1;
9537 dgst_pos2 = 2;
9538 dgst_pos3 = 3;
9539 break;
9540
9541 case 10500: hash_type = HASH_TYPE_PDFU16;
9542 salt_type = SALT_TYPE_EMBEDDED;
9543 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9544 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9545 kern_type = KERN_TYPE_PDF14;
9546 dgst_size = DGST_SIZE_4_4;
9547 parse_func = pdf14_parse_hash;
9548 sort_by_digest = sort_by_digest_4_4;
9549 opti_type = OPTI_TYPE_ZERO_BYTE
9550 | OPTI_TYPE_NOT_ITERATED;
9551 dgst_pos0 = 0;
9552 dgst_pos1 = 1;
9553 dgst_pos2 = 2;
9554 dgst_pos3 = 3;
9555 break;
9556
9557 case 10600: hash_type = HASH_TYPE_SHA256;
9558 salt_type = SALT_TYPE_EMBEDDED;
9559 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9560 opts_type = OPTS_TYPE_PT_GENERATE_BE
9561 | OPTS_TYPE_ST_ADD80
9562 | OPTS_TYPE_ST_ADDBITS15
9563 | OPTS_TYPE_HASH_COPY;
9564 kern_type = KERN_TYPE_SHA256_PWSLT;
9565 dgst_size = DGST_SIZE_4_8;
9566 parse_func = pdf17l3_parse_hash;
9567 sort_by_digest = sort_by_digest_4_8;
9568 opti_type = OPTI_TYPE_ZERO_BYTE
9569 | OPTI_TYPE_PRECOMPUTE_INIT
9570 | OPTI_TYPE_PRECOMPUTE_MERKLE
9571 | OPTI_TYPE_EARLY_SKIP
9572 | OPTI_TYPE_NOT_ITERATED
9573 | OPTI_TYPE_APPENDED_SALT
9574 | OPTI_TYPE_RAW_HASH;
9575 dgst_pos0 = 3;
9576 dgst_pos1 = 7;
9577 dgst_pos2 = 2;
9578 dgst_pos3 = 6;
9579 break;
9580
9581 case 10700: hash_type = HASH_TYPE_PDFU32;
9582 salt_type = SALT_TYPE_EMBEDDED;
9583 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9584 opts_type = OPTS_TYPE_PT_GENERATE_LE
9585 | OPTS_TYPE_HASH_COPY;
9586 kern_type = KERN_TYPE_PDF17L8;
9587 dgst_size = DGST_SIZE_4_8;
9588 parse_func = pdf17l8_parse_hash;
9589 sort_by_digest = sort_by_digest_4_8;
9590 opti_type = OPTI_TYPE_ZERO_BYTE
9591 | OPTI_TYPE_NOT_ITERATED;
9592 dgst_pos0 = 0;
9593 dgst_pos1 = 1;
9594 dgst_pos2 = 2;
9595 dgst_pos3 = 3;
9596 break;
9597
9598 case 10800: hash_type = HASH_TYPE_SHA384;
9599 salt_type = SALT_TYPE_NONE;
9600 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9601 opts_type = OPTS_TYPE_PT_GENERATE_BE
9602 | OPTS_TYPE_PT_ADD80
9603 | OPTS_TYPE_PT_ADDBITS15;
9604 kern_type = KERN_TYPE_SHA384;
9605 dgst_size = DGST_SIZE_8_8;
9606 parse_func = sha384_parse_hash;
9607 sort_by_digest = sort_by_digest_8_8;
9608 opti_type = OPTI_TYPE_ZERO_BYTE
9609 | OPTI_TYPE_PRECOMPUTE_INIT
9610 | OPTI_TYPE_PRECOMPUTE_MERKLE
9611 | OPTI_TYPE_EARLY_SKIP
9612 | OPTI_TYPE_NOT_ITERATED
9613 | OPTI_TYPE_NOT_SALTED
9614 | OPTI_TYPE_USES_BITS_64
9615 | OPTI_TYPE_RAW_HASH;
9616 dgst_pos0 = 6;
9617 dgst_pos1 = 7;
9618 dgst_pos2 = 4;
9619 dgst_pos3 = 5;
9620 break;
9621
9622 case 10900: hash_type = HASH_TYPE_PBKDF2_SHA256;
9623 salt_type = SALT_TYPE_EMBEDDED;
9624 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9625 opts_type = OPTS_TYPE_PT_GENERATE_LE
9626 | OPTS_TYPE_ST_BASE64
9627 | OPTS_TYPE_HASH_COPY;
9628 kern_type = KERN_TYPE_PBKDF2_SHA256;
9629 dgst_size = DGST_SIZE_4_32;
9630 parse_func = pbkdf2_sha256_parse_hash;
9631 sort_by_digest = sort_by_digest_4_32;
9632 opti_type = OPTI_TYPE_ZERO_BYTE;
9633 dgst_pos0 = 0;
9634 dgst_pos1 = 1;
9635 dgst_pos2 = 2;
9636 dgst_pos3 = 3;
9637 break;
9638
9639 case 11000: hash_type = HASH_TYPE_MD5;
9640 salt_type = SALT_TYPE_INTERN;
9641 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9642 opts_type = OPTS_TYPE_PT_GENERATE_LE
9643 | OPTS_TYPE_PT_ADD80;
9644 kern_type = KERN_TYPE_PRESTASHOP;
9645 dgst_size = DGST_SIZE_4_4;
9646 parse_func = prestashop_parse_hash;
9647 sort_by_digest = sort_by_digest_4_4;
9648 opti_type = OPTI_TYPE_ZERO_BYTE
9649 | OPTI_TYPE_PRECOMPUTE_INIT
9650 | OPTI_TYPE_NOT_ITERATED
9651 | OPTI_TYPE_PREPENDED_SALT;
9652 dgst_pos0 = 0;
9653 dgst_pos1 = 3;
9654 dgst_pos2 = 2;
9655 dgst_pos3 = 1;
9656 break;
9657
9658 case 11100: hash_type = HASH_TYPE_MD5;
9659 salt_type = SALT_TYPE_EMBEDDED;
9660 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9661 opts_type = OPTS_TYPE_PT_GENERATE_LE
9662 | OPTS_TYPE_ST_ADD80;
9663 kern_type = KERN_TYPE_POSTGRESQL_AUTH;
9664 dgst_size = DGST_SIZE_4_4;
9665 parse_func = postgresql_auth_parse_hash;
9666 sort_by_digest = sort_by_digest_4_4;
9667 opti_type = OPTI_TYPE_ZERO_BYTE
9668 | OPTI_TYPE_PRECOMPUTE_INIT
9669 | OPTI_TYPE_PRECOMPUTE_MERKLE
9670 | OPTI_TYPE_EARLY_SKIP;
9671 dgst_pos0 = 0;
9672 dgst_pos1 = 3;
9673 dgst_pos2 = 2;
9674 dgst_pos3 = 1;
9675 break;
9676
9677 case 11200: hash_type = HASH_TYPE_SHA1;
9678 salt_type = SALT_TYPE_EMBEDDED;
9679 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9680 opts_type = OPTS_TYPE_PT_GENERATE_BE
9681 | OPTS_TYPE_PT_ADD80
9682 | OPTS_TYPE_ST_HEX;
9683 kern_type = KERN_TYPE_MYSQL_AUTH;
9684 dgst_size = DGST_SIZE_4_5;
9685 parse_func = mysql_auth_parse_hash;
9686 sort_by_digest = sort_by_digest_4_5;
9687 opti_type = OPTI_TYPE_ZERO_BYTE
9688 | OPTI_TYPE_EARLY_SKIP;
9689 dgst_pos0 = 3;
9690 dgst_pos1 = 4;
9691 dgst_pos2 = 2;
9692 dgst_pos3 = 1;
9693 break;
9694
9695 case 11300: hash_type = HASH_TYPE_BITCOIN_WALLET;
9696 salt_type = SALT_TYPE_EMBEDDED;
9697 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9698 opts_type = OPTS_TYPE_PT_GENERATE_LE
9699 | OPTS_TYPE_ST_HEX
9700 | OPTS_TYPE_ST_ADD80;
9701 kern_type = KERN_TYPE_BITCOIN_WALLET;
9702 dgst_size = DGST_SIZE_4_4;
9703 parse_func = bitcoin_wallet_parse_hash;
9704 sort_by_digest = sort_by_digest_4_4;
9705 opti_type = OPTI_TYPE_ZERO_BYTE;
9706 dgst_pos0 = 0;
9707 dgst_pos1 = 1;
9708 dgst_pos2 = 2;
9709 dgst_pos3 = 3;
9710 break;
9711
9712 case 11400: hash_type = HASH_TYPE_MD5;
9713 salt_type = SALT_TYPE_EMBEDDED;
9714 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9715 opts_type = OPTS_TYPE_PT_GENERATE_LE
9716 | OPTS_TYPE_PT_ADD80
9717 | OPTS_TYPE_HASH_COPY;
9718 kern_type = KERN_TYPE_SIP_AUTH;
9719 dgst_size = DGST_SIZE_4_4;
9720 parse_func = sip_auth_parse_hash;
9721 sort_by_digest = sort_by_digest_4_4;
9722 opti_type = OPTI_TYPE_ZERO_BYTE;
9723 dgst_pos0 = 0;
9724 dgst_pos1 = 3;
9725 dgst_pos2 = 2;
9726 dgst_pos3 = 1;
9727 break;
9728
9729 case 11500: hash_type = HASH_TYPE_CRC32;
9730 salt_type = SALT_TYPE_INTERN;
9731 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9732 opts_type = OPTS_TYPE_PT_GENERATE_LE
9733 | OPTS_TYPE_ST_GENERATE_LE
9734 | OPTS_TYPE_ST_HEX;
9735 kern_type = KERN_TYPE_CRC32;
9736 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9737 parse_func = crc32_parse_hash;
9738 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9739 opti_type = OPTI_TYPE_ZERO_BYTE;
9740 dgst_pos0 = 0;
9741 dgst_pos1 = 1;
9742 dgst_pos2 = 2;
9743 dgst_pos3 = 3;
9744 break;
9745
9746 case 11600: hash_type = HASH_TYPE_AES;
9747 salt_type = SALT_TYPE_EMBEDDED;
9748 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9749 opts_type = OPTS_TYPE_PT_GENERATE_LE
9750 | OPTS_TYPE_PT_NEVERCRACK;
9751 kern_type = KERN_TYPE_SEVEN_ZIP;
9752 dgst_size = DGST_SIZE_4_4; // originally DGST_SIZE_4_2
9753 parse_func = seven_zip_parse_hash;
9754 sort_by_digest = sort_by_digest_4_4; // originally sort_by_digest_4_2
9755 opti_type = OPTI_TYPE_ZERO_BYTE;
9756 dgst_pos0 = 0;
9757 dgst_pos1 = 1;
9758 dgst_pos2 = 2;
9759 dgst_pos3 = 3;
9760 break;
9761
9762 case 11700: hash_type = HASH_TYPE_GOST_2012SBOG_256;
9763 salt_type = SALT_TYPE_NONE;
9764 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9765 opts_type = OPTS_TYPE_PT_GENERATE_LE
9766 | OPTS_TYPE_PT_ADD01;
9767 kern_type = KERN_TYPE_GOST_2012SBOG_256;
9768 dgst_size = DGST_SIZE_4_8;
9769 parse_func = gost2012sbog_256_parse_hash;
9770 sort_by_digest = sort_by_digest_4_8;
9771 opti_type = OPTI_TYPE_ZERO_BYTE;
9772 dgst_pos0 = 0;
9773 dgst_pos1 = 1;
9774 dgst_pos2 = 2;
9775 dgst_pos3 = 3;
9776 break;
9777
9778 case 11800: hash_type = HASH_TYPE_GOST_2012SBOG_512;
9779 salt_type = SALT_TYPE_NONE;
9780 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9781 opts_type = OPTS_TYPE_PT_GENERATE_LE
9782 | OPTS_TYPE_PT_ADD01;
9783 kern_type = KERN_TYPE_GOST_2012SBOG_512;
9784 dgst_size = DGST_SIZE_4_16;
9785 parse_func = gost2012sbog_512_parse_hash;
9786 sort_by_digest = sort_by_digest_4_16;
9787 opti_type = OPTI_TYPE_ZERO_BYTE;
9788 dgst_pos0 = 0;
9789 dgst_pos1 = 1;
9790 dgst_pos2 = 2;
9791 dgst_pos3 = 3;
9792 break;
9793
9794 case 11900: hash_type = HASH_TYPE_PBKDF2_MD5;
9795 salt_type = SALT_TYPE_EMBEDDED;
9796 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9797 opts_type = OPTS_TYPE_PT_GENERATE_LE
9798 | OPTS_TYPE_ST_BASE64
9799 | OPTS_TYPE_HASH_COPY;
9800 kern_type = KERN_TYPE_PBKDF2_MD5;
9801 dgst_size = DGST_SIZE_4_32;
9802 parse_func = pbkdf2_md5_parse_hash;
9803 sort_by_digest = sort_by_digest_4_32;
9804 opti_type = OPTI_TYPE_ZERO_BYTE;
9805 dgst_pos0 = 0;
9806 dgst_pos1 = 1;
9807 dgst_pos2 = 2;
9808 dgst_pos3 = 3;
9809 break;
9810
9811 case 12000: hash_type = HASH_TYPE_PBKDF2_SHA1;
9812 salt_type = SALT_TYPE_EMBEDDED;
9813 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9814 opts_type = OPTS_TYPE_PT_GENERATE_LE
9815 | OPTS_TYPE_ST_BASE64
9816 | OPTS_TYPE_HASH_COPY;
9817 kern_type = KERN_TYPE_PBKDF2_SHA1;
9818 dgst_size = DGST_SIZE_4_32;
9819 parse_func = pbkdf2_sha1_parse_hash;
9820 sort_by_digest = sort_by_digest_4_32;
9821 opti_type = OPTI_TYPE_ZERO_BYTE;
9822 dgst_pos0 = 0;
9823 dgst_pos1 = 1;
9824 dgst_pos2 = 2;
9825 dgst_pos3 = 3;
9826 break;
9827
9828 case 12100: hash_type = HASH_TYPE_PBKDF2_SHA512;
9829 salt_type = SALT_TYPE_EMBEDDED;
9830 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9831 opts_type = OPTS_TYPE_PT_GENERATE_LE
9832 | OPTS_TYPE_ST_BASE64
9833 | OPTS_TYPE_HASH_COPY;
9834 kern_type = KERN_TYPE_PBKDF2_SHA512;
9835 dgst_size = DGST_SIZE_8_16;
9836 parse_func = pbkdf2_sha512_parse_hash;
9837 sort_by_digest = sort_by_digest_8_16;
9838 opti_type = OPTI_TYPE_ZERO_BYTE
9839 | OPTI_TYPE_USES_BITS_64;
9840 dgst_pos0 = 0;
9841 dgst_pos1 = 1;
9842 dgst_pos2 = 2;
9843 dgst_pos3 = 3;
9844 break;
9845
9846 case 12200: hash_type = HASH_TYPE_ECRYPTFS;
9847 salt_type = SALT_TYPE_EMBEDDED;
9848 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9849 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9850 kern_type = KERN_TYPE_ECRYPTFS;
9851 dgst_size = DGST_SIZE_8_8;
9852 parse_func = ecryptfs_parse_hash;
9853 sort_by_digest = sort_by_digest_8_8;
9854 opti_type = OPTI_TYPE_ZERO_BYTE
9855 | OPTI_TYPE_USES_BITS_64;
9856 dgst_pos0 = 0;
9857 dgst_pos1 = 1;
9858 dgst_pos2 = 2;
9859 dgst_pos3 = 3;
9860 break;
9861
9862 case 12300: hash_type = HASH_TYPE_ORACLET;
9863 salt_type = SALT_TYPE_EMBEDDED;
9864 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9865 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9866 kern_type = KERN_TYPE_ORACLET;
9867 dgst_size = DGST_SIZE_8_16;
9868 parse_func = oraclet_parse_hash;
9869 sort_by_digest = sort_by_digest_8_16;
9870 opti_type = OPTI_TYPE_ZERO_BYTE
9871 | OPTI_TYPE_USES_BITS_64;
9872 dgst_pos0 = 0;
9873 dgst_pos1 = 1;
9874 dgst_pos2 = 2;
9875 dgst_pos3 = 3;
9876 break;
9877
9878 case 12400: hash_type = HASH_TYPE_BSDICRYPT;
9879 salt_type = SALT_TYPE_EMBEDDED;
9880 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9881 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9882 kern_type = KERN_TYPE_BSDICRYPT;
9883 dgst_size = DGST_SIZE_4_4;
9884 parse_func = bsdicrypt_parse_hash;
9885 sort_by_digest = sort_by_digest_4_4;
9886 opti_type = OPTI_TYPE_ZERO_BYTE
9887 | OPTI_TYPE_PRECOMPUTE_PERMUT;
9888 dgst_pos0 = 0;
9889 dgst_pos1 = 1;
9890 dgst_pos2 = 2;
9891 dgst_pos3 = 3;
9892 break;
9893
9894 case 12500: hash_type = HASH_TYPE_RAR3HP;
9895 salt_type = SALT_TYPE_EMBEDDED;
9896 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9897 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9898 kern_type = KERN_TYPE_RAR3;
9899 dgst_size = DGST_SIZE_4_4;
9900 parse_func = rar3hp_parse_hash;
9901 sort_by_digest = sort_by_digest_4_4;
9902 opti_type = OPTI_TYPE_ZERO_BYTE;
9903 dgst_pos0 = 0;
9904 dgst_pos1 = 1;
9905 dgst_pos2 = 2;
9906 dgst_pos3 = 3;
9907 break;
9908
9909 case 12600: hash_type = HASH_TYPE_SHA256;
9910 salt_type = SALT_TYPE_INTERN;
9911 attack_exec = ATTACK_EXEC_INSIDE_KERNEL;
9912 opts_type = OPTS_TYPE_PT_GENERATE_BE
9913 | OPTS_TYPE_PT_ADD80;
9914 kern_type = KERN_TYPE_CF10;
9915 dgst_size = DGST_SIZE_4_8;
9916 parse_func = cf10_parse_hash;
9917 sort_by_digest = sort_by_digest_4_8;
9918 opti_type = OPTI_TYPE_ZERO_BYTE
9919 | OPTI_TYPE_PRECOMPUTE_INIT
9920 | OPTI_TYPE_EARLY_SKIP
9921 | OPTI_TYPE_NOT_ITERATED;
9922 dgst_pos0 = 3;
9923 dgst_pos1 = 7;
9924 dgst_pos2 = 2;
9925 dgst_pos3 = 6;
9926 break;
9927
9928 case 12700: hash_type = HASH_TYPE_AES;
9929 salt_type = SALT_TYPE_EMBEDDED;
9930 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9931 opts_type = OPTS_TYPE_PT_GENERATE_LE
9932 | OPTS_TYPE_HASH_COPY;
9933 kern_type = KERN_TYPE_MYWALLET;
9934 dgst_size = DGST_SIZE_4_5; // because kernel uses _SHA1_
9935 parse_func = mywallet_parse_hash;
9936 sort_by_digest = sort_by_digest_4_5;
9937 opti_type = OPTI_TYPE_ZERO_BYTE;
9938 dgst_pos0 = 0;
9939 dgst_pos1 = 1;
9940 dgst_pos2 = 2;
9941 dgst_pos3 = 3;
9942 break;
9943
9944 case 12800: hash_type = HASH_TYPE_PBKDF2_SHA256;
9945 salt_type = SALT_TYPE_EMBEDDED;
9946 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9947 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9948 kern_type = KERN_TYPE_MS_DRSR;
9949 dgst_size = DGST_SIZE_4_8;
9950 parse_func = ms_drsr_parse_hash;
9951 sort_by_digest = sort_by_digest_4_8;
9952 opti_type = OPTI_TYPE_ZERO_BYTE;
9953 dgst_pos0 = 0;
9954 dgst_pos1 = 1;
9955 dgst_pos2 = 2;
9956 dgst_pos3 = 3;
9957 break;
9958
9959 case 12900: hash_type = HASH_TYPE_PBKDF2_SHA256;
9960 salt_type = SALT_TYPE_EMBEDDED;
9961 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9962 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9963 kern_type = KERN_TYPE_ANDROIDFDE_SAMSUNG;
9964 dgst_size = DGST_SIZE_4_8;
9965 parse_func = androidfde_samsung_parse_hash;
9966 sort_by_digest = sort_by_digest_4_8;
9967 opti_type = OPTI_TYPE_ZERO_BYTE;
9968 dgst_pos0 = 0;
9969 dgst_pos1 = 1;
9970 dgst_pos2 = 2;
9971 dgst_pos3 = 3;
9972 break;
9973
9974 case 13000: hash_type = HASH_TYPE_PBKDF2_SHA256;
9975 salt_type = SALT_TYPE_EMBEDDED;
9976 attack_exec = ATTACK_EXEC_OUTSIDE_KERNEL;
9977 opts_type = OPTS_TYPE_PT_GENERATE_LE;
9978 kern_type = KERN_TYPE_RAR5;
9979 dgst_size = DGST_SIZE_4_4;
9980 parse_func = rar5_parse_hash;
9981 sort_by_digest = sort_by_digest_4_4;
9982 opti_type = OPTI_TYPE_ZERO_BYTE;
9983 dgst_pos0 = 0;
9984 dgst_pos1 = 1;
9985 dgst_pos2 = 2;
9986 dgst_pos3 = 3;
9987 break;
9988
9989 default: usage_mini_print (PROGNAME); return (-1);
9990 }
9991
9992 /**
9993 * transpose
9994 */
9995
9996 data.parse_func = parse_func;
9997
9998 /**
9999 * misc stuff
10000 */
10001
10002 if (hex_salt)
10003 {
10004 if (salt_type == SALT_TYPE_INTERN)
10005 {
10006 opts_type |= OPTS_TYPE_ST_HEX;
10007 }
10008 else
10009 {
10010 log_error ("ERROR: Parameter hex-salt not valid for hash-type %u", hash_mode);
10011
10012 return (-1);
10013 }
10014 }
10015
10016 uint isSalted = ((salt_type == SALT_TYPE_INTERN)
10017 | (salt_type == SALT_TYPE_EXTERN)
10018 | (salt_type == SALT_TYPE_EMBEDDED)
10019 | (salt_type == SALT_TYPE_VIRTUAL));
10020
10021 sort_by_digest = sort_by_digest_p0p1; // overruled by 64 bit digest
10022
10023 data.hash_type = hash_type;
10024 data.attack_mode = attack_mode;
10025 data.attack_kern = attack_kern;
10026 data.attack_exec = attack_exec;
10027 data.kern_type = kern_type;
10028 data.opts_type = opts_type;
10029 data.dgst_size = dgst_size;
10030 data.salt_type = salt_type;
10031 data.isSalted = isSalted;
10032 data.sort_by_digest = sort_by_digest;
10033 data.dgst_pos0 = dgst_pos0;
10034 data.dgst_pos1 = dgst_pos1;
10035 data.dgst_pos2 = dgst_pos2;
10036 data.dgst_pos3 = dgst_pos3;
10037
10038 esalt_size = 0;
10039
10040 switch (hash_mode)
10041 {
10042 case 2500: esalt_size = sizeof (wpa_t); break;
10043 case 5300: esalt_size = sizeof (ikepsk_t); break;
10044 case 5400: esalt_size = sizeof (ikepsk_t); break;
10045 case 5500: esalt_size = sizeof (netntlm_t); break;
10046 case 5600: esalt_size = sizeof (netntlm_t); break;
10047 case 6211:
10048 case 6212:
10049 case 6213:
10050 case 6221:
10051 case 6222:
10052 case 6223:
10053 case 6231:
10054 case 6232:
10055 case 6233:
10056 case 6241:
10057 case 6242:
10058 case 6243: esalt_size = sizeof (tc_t); break;
10059 case 6600: esalt_size = sizeof (agilekey_t); break;
10060 case 7100: esalt_size = sizeof (pbkdf2_sha512_t); break;
10061 case 7200: esalt_size = sizeof (pbkdf2_sha512_t); break;
10062 case 7300: esalt_size = sizeof (rakp_t); break;
10063 case 7500: esalt_size = sizeof (krb5pa_t); break;
10064 case 8200: esalt_size = sizeof (cloudkey_t); break;
10065 case 8800: esalt_size = sizeof (androidfde_t); break;
10066 case 9200: esalt_size = sizeof (pbkdf2_sha256_t); break;
10067 case 9400: esalt_size = sizeof (office2007_t); break;
10068 case 9500: esalt_size = sizeof (office2010_t); break;
10069 case 9600: esalt_size = sizeof (office2013_t); break;
10070 case 9700: esalt_size = sizeof (oldoffice01_t); break;
10071 case 9710: esalt_size = sizeof (oldoffice01_t); break;
10072 case 9720: esalt_size = sizeof (oldoffice01_t); break;
10073 case 9800: esalt_size = sizeof (oldoffice34_t); break;
10074 case 9810: esalt_size = sizeof (oldoffice34_t); break;
10075 case 9820: esalt_size = sizeof (oldoffice34_t); break;
10076 case 10000: esalt_size = sizeof (pbkdf2_sha256_t); break;
10077 case 10200: esalt_size = sizeof (cram_md5_t); break;
10078 case 10400: esalt_size = sizeof (pdf_t); break;
10079 case 10410: esalt_size = sizeof (pdf_t); break;
10080 case 10420: esalt_size = sizeof (pdf_t); break;
10081 case 10500: esalt_size = sizeof (pdf_t); break;
10082 case 10600: esalt_size = sizeof (pdf_t); break;
10083 case 10700: esalt_size = sizeof (pdf_t); break;
10084 case 10900: esalt_size = sizeof (pbkdf2_sha256_t); break;
10085 case 11300: esalt_size = sizeof (bitcoin_wallet_t); break;
10086 case 11400: esalt_size = sizeof (sip_t); break;
10087 case 11600: esalt_size = sizeof (seven_zip_t); break;
10088 case 11900: esalt_size = sizeof (pbkdf2_md5_t); break;
10089 case 12000: esalt_size = sizeof (pbkdf2_sha1_t); break;
10090 case 12100: esalt_size = sizeof (pbkdf2_sha512_t); break;
10091 case 13000: esalt_size = sizeof (rar5_t); break;
10092 }
10093
10094 data.esalt_size = esalt_size;
10095
10096 /**
10097 * choose dictionary parser
10098 */
10099
10100 if (hash_type == HASH_TYPE_LM)
10101 {
10102 get_next_word_func = get_next_word_lm;
10103 }
10104 else if (opts_type & OPTS_TYPE_PT_UPPER)
10105 {
10106 get_next_word_func = get_next_word_uc;
10107 }
10108 else
10109 {
10110 get_next_word_func = get_next_word_std;
10111 }
10112
10113 /**
10114 * dictstat
10115 */
10116
10117 dictstat_t *dictstat_base = (dictstat_t *) mycalloc (MAX_DICTSTAT, sizeof (dictstat_t));
10118
10119 #ifdef _POSIX
10120 size_t dictstat_nmemb = 0;
10121 #endif
10122
10123 #ifdef _WIN
10124 uint dictstat_nmemb = 0;
10125 #endif
10126
10127 char dictstat[256];
10128
10129 FILE *dictstat_fp = NULL;
10130
10131 if (keyspace == 0)
10132 {
10133 memset (dictstat, 0, sizeof (dictstat));
10134
10135 snprintf (dictstat, sizeof (dictstat) - 1, "%s/hashcat.dictstat", profile_dir);
10136
10137 dictstat_fp = fopen (dictstat, "rb");
10138
10139 if (dictstat_fp)
10140 {
10141 #ifdef _POSIX
10142 struct stat tmpstat;
10143
10144 fstat (fileno (dictstat_fp), &tmpstat);
10145 #endif
10146
10147 #ifdef _WIN
10148 struct stat64 tmpstat;
10149
10150 _fstat64 (fileno (dictstat_fp), &tmpstat);
10151 #endif
10152
10153 if (tmpstat.st_mtime < COMPTIME)
10154 {
10155 /* with v0.15 the format changed so we have to ensure user is using a good version
10156 since there is no version-header in the dictstat file */
10157
10158 fclose (dictstat_fp);
10159
10160 unlink (dictstat);
10161 }
10162 else
10163 {
10164 while (!feof (dictstat_fp))
10165 {
10166 dictstat_t d;
10167
10168 if (fread (&d, sizeof (dictstat_t), 1, dictstat_fp) == 0) continue;
10169
10170 lsearch (&d, dictstat_base, &dictstat_nmemb, sizeof (dictstat_t), sort_by_dictstat);
10171
10172 if (dictstat_nmemb == (MAX_DICTSTAT - 1000))
10173 {
10174 log_error ("ERROR: There are too many entries in the %s database. You have to remove/rename it.", dictstat);
10175
10176 return -1;
10177 }
10178 }
10179
10180 fclose (dictstat_fp);
10181 }
10182 }
10183 }
10184
10185 /**
10186 * potfile
10187 */
10188
10189 char potfile[256] = { 0 };
10190
10191 snprintf (potfile, sizeof (potfile) - 1, "%s/%s.pot", session_dir, session);
10192
10193 data.pot_fp = NULL;
10194
10195 FILE *out_fp = NULL;
10196 FILE *pot_fp = NULL;
10197
10198 if (show == 1 || left == 1)
10199 {
10200 pot_fp = fopen (potfile, "rb");
10201
10202 if (pot_fp == NULL)
10203 {
10204 log_error ("ERROR: %s: %s", potfile, strerror (errno));
10205
10206 return (-1);
10207 }
10208
10209 if (outfile != NULL)
10210 {
10211 if ((out_fp = fopen (outfile, "ab")) == NULL)
10212 {
10213 log_error ("ERROR: %s: %s", outfile, strerror (errno));
10214
10215 fclose (pot_fp);
10216
10217 return (-1);
10218 }
10219 }
10220 else
10221 {
10222 out_fp = stdout;
10223 }
10224 }
10225 else
10226 {
10227 if (potfile_disable == 0)
10228 {
10229 pot_fp = fopen (potfile, "ab");
10230
10231 if (pot_fp == NULL)
10232 {
10233 log_error ("ERROR: %s: %s", potfile, strerror (errno));
10234
10235 return (-1);
10236 }
10237
10238 data.pot_fp = pot_fp;
10239 }
10240 }
10241
10242 pot_t *pot = NULL;
10243
10244 uint pot_cnt = 0;
10245 uint pot_avail = 0;
10246
10247 if (show == 1 || left == 1)
10248 {
10249 SUPPRESS_OUTPUT = 1;
10250
10251 pot_avail = count_lines (pot_fp);
10252
10253 rewind (pot_fp);
10254
10255 pot = (pot_t *) mycalloc (pot_avail, sizeof (pot_t));
10256
10257 uint pot_hashes_avail = 0;
10258
10259 uint line_num = 0;
10260
10261 while (!feof (pot_fp))
10262 {
10263 line_num++;
10264
10265 char line_buf[BUFSIZ];
10266
10267 int line_len = fgetl (pot_fp, line_buf);
10268
10269 if (line_len == 0) continue;
10270
10271 char *plain_buf = line_buf + line_len;
10272
10273 pot_t *pot_ptr = &pot[pot_cnt];
10274
10275 hash_t *hashes_buf = &pot_ptr->hash;
10276
10277 // we do not initialize all hashes_buf->digest etc at the beginning, since many lines may not be
10278 // valid lines of this specific hash type (otherwise it would be more waste of memory than gain)
10279
10280 if (pot_cnt == pot_hashes_avail)
10281 {
10282 uint pos = 0;
10283
10284 for (pos = 0; pos < INCR_POT; pos++)
10285 {
10286 if ((pot_cnt + pos) >= pot_avail) break;
10287
10288 pot_t *tmp_pot = &pot[pot_cnt + pos];
10289
10290 hash_t *tmp_hash = &tmp_pot->hash;
10291
10292 tmp_hash->digest = mymalloc (dgst_size);
10293
10294 if (isSalted)
10295 {
10296 tmp_hash->salt = (salt_t *) mymalloc (sizeof (salt_t));
10297 }
10298
10299 if (esalt_size)
10300 {
10301 tmp_hash->esalt = mymalloc (esalt_size);
10302 }
10303
10304 pot_hashes_avail++;
10305 }
10306 }
10307
10308 int plain_len = 0;
10309
10310 int parser_status;
10311
10312 int iter = MAX_CUT_TRIES;
10313
10314 do
10315 {
10316 for (int i = line_len - 1; i; i--, plain_len++, plain_buf--, line_len--)
10317 {
10318 if (line_buf[i] == ':')
10319 {
10320 line_len--;
10321
10322 break;
10323 }
10324 }
10325
10326 if (data.hash_mode != 2500)
10327 {
10328 parser_status = parse_func (line_buf, line_len, hashes_buf);
10329 }
10330 else
10331 {
10332 int max_salt_size = sizeof (hashes_buf->salt->salt_buf);
10333
10334 if (line_len > max_salt_size)
10335 {
10336 parser_status = PARSER_GLOBAL_LENGTH;
10337 }
10338 else
10339 {
10340 memset (&hashes_buf->salt->salt_buf, 0, max_salt_size);
10341
10342 memcpy (&hashes_buf->salt->salt_buf, line_buf, line_len);
10343
10344 hashes_buf->salt->salt_len = line_len;
10345
10346 parser_status = PARSER_OK;
10347 }
10348 }
10349
10350 // if NOT parsed without error, we add the ":" to the plain
10351
10352 if (parser_status == PARSER_GLOBAL_LENGTH || parser_status == PARSER_HASH_LENGTH || parser_status == PARSER_SALT_LENGTH)
10353 {
10354 plain_len++;
10355 plain_buf--;
10356 }
10357
10358 } while ((parser_status == PARSER_GLOBAL_LENGTH || parser_status == PARSER_HASH_LENGTH || parser_status == PARSER_SALT_LENGTH) && --iter);
10359
10360 if (parser_status < PARSER_GLOBAL_ZERO)
10361 {
10362 // log_info ("WARNING: Potfile '%s' in line %u (%s): %s", potfile, line_num, line_buf, strparser (parser_status));
10363
10364 continue;
10365 }
10366
10367 if (plain_len >= 255) continue;
10368
10369 memcpy (pot_ptr->plain_buf, plain_buf, plain_len);
10370
10371 pot_ptr->plain_len = plain_len;
10372
10373 pot_cnt++;
10374 }
10375
10376 fclose (pot_fp);
10377
10378 SUPPRESS_OUTPUT = 0;
10379
10380 qsort (pot, pot_cnt, sizeof (pot_t), sort_by_pot);
10381 }
10382
10383 /**
10384 * kernel accel and loops auto adjustment
10385 */
10386
10387 if (kernel_accel_chgd == 0) kernel_accel = set_kernel_accel (hash_mode);
10388 if (kernel_loops_chgd == 0) kernel_loops = set_kernel_loops (hash_mode);
10389
10390 if (workload_profile == 1)
10391 {
10392 kernel_loops /= 8;
10393 kernel_accel /= 4;
10394
10395 if (kernel_loops == 0) kernel_loops = 8;
10396 if (kernel_accel == 0) kernel_accel = 2;
10397 }
10398 else if (workload_profile == 3)
10399 {
10400 kernel_loops *= 8;
10401 kernel_accel *= 4;
10402
10403 if (kernel_loops > 1024) kernel_loops = 1024;
10404 if (kernel_accel > 256) kernel_accel = 256; // causes memory problems otherwise
10405 }
10406
10407 // those hashes *must* run at a specific kernel_loops count because of some optimization inside the kernel
10408
10409 if ((opts_type & OPTS_TYPE_PT_BITSLICE) && (attack_mode == ATTACK_MODE_BF))
10410 {
10411 kernel_loops = 1024;
10412 }
10413
10414 if (hash_mode == 12500)
10415 {
10416 kernel_loops = ROUNDS_RAR3 / 16;
10417 }
10418
10419 data.kernel_accel = kernel_accel;
10420 data.kernel_loops = kernel_loops;
10421
10422 /**
10423 * word len
10424 */
10425
10426 uint pw_min = PW_MIN;
10427 uint pw_max = PW_MAX;
10428
10429 switch (hash_mode)
10430 {
10431 case 400: if (pw_max > 40) pw_max = 40;
10432 break;
10433 case 500: if (pw_max > 16) pw_max = 16;
10434 break;
10435 case 1500: if (pw_max > 8) pw_max = 8;
10436 break;
10437 case 1600: if (pw_max > 16) pw_max = 16;
10438 break;
10439 case 1800: if (pw_max > 16) pw_max = 16;
10440 break;
10441 case 2100: if (pw_max > 16) pw_max = 16;
10442 break;
10443 case 2500: if (pw_min < 8) pw_min = 8;
10444 break;
10445 case 3000: if (pw_max > 7) pw_max = 7;
10446 break;
10447 case 5200: if (pw_max > 24) pw_max = 24;
10448 break;
10449 case 5800: if (pw_max > 16) pw_max = 16;
10450 break;
10451 case 6300: if (pw_max > 16) pw_max = 16;
10452 break;
10453 case 7400: if (pw_max > 16) pw_max = 16;
10454 break;
10455 case 7900: if (pw_max > 48) pw_max = 48;
10456 break;
10457 case 8500: if (pw_max > 8) pw_max = 8;
10458 break;
10459 case 8600: if (pw_max > 16) pw_max = 16;
10460 break;
10461 case 9710: pw_min = 5;
10462 pw_max = 5;
10463 break;
10464 case 9810: pw_min = 5;
10465 pw_max = 5;
10466 break;
10467 case 10410: pw_min = 5;
10468 pw_max = 5;
10469 break;
10470 case 10300: if (pw_max < 3) pw_min = 3;
10471 if (pw_max > 40) pw_max = 40;
10472 break;
10473 case 10500: if (pw_max < 3) pw_min = 3;
10474 if (pw_max > 40) pw_max = 40;
10475 break;
10476 case 10700: if (pw_max > 16) pw_max = 16;
10477 break;
10478 case 11300: if (pw_max > 40) pw_max = 40;
10479 break;
10480 case 12500: if (pw_max > 20) pw_max = 20;
10481 break;
10482 case 12800: if (pw_max > 24) pw_max = 24;
10483 break;
10484 }
10485
10486 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
10487 {
10488 switch (attack_kern)
10489 {
10490 case ATTACK_KERN_STRAIGHT: if (pw_max > PW_DICTMAX) pw_max = PW_DICTMAX1;
10491 break;
10492 case ATTACK_KERN_COMBI: if (pw_max > PW_DICTMAX) pw_max = PW_DICTMAX1;
10493 break;
10494 }
10495 }
10496
10497 /**
10498 * charsets : keep them together for more easy maintainnce
10499 */
10500
10501 cs_t mp_sys[6] = { { { 0 }, 0 } };
10502 cs_t mp_usr[4] = { { { 0 }, 0 } };
10503
10504 mp_setup_sys (mp_sys);
10505
10506 if (custom_charset_1) mp_setup_usr (mp_sys, mp_usr, custom_charset_1, 0);
10507 if (custom_charset_2) mp_setup_usr (mp_sys, mp_usr, custom_charset_2, 1);
10508 if (custom_charset_3) mp_setup_usr (mp_sys, mp_usr, custom_charset_3, 2);
10509 if (custom_charset_4) mp_setup_usr (mp_sys, mp_usr, custom_charset_4, 3);
10510
10511 /**
10512 * load hashes, part I: find input mode, count hashes
10513 */
10514
10515 uint hashlist_mode = 0;
10516 uint hashlist_format = HLFMT_HASHCAT;
10517
10518 uint hashes_avail = 0;
10519
10520 if (benchmark == 0)
10521 {
10522 struct stat f;
10523
10524 hashlist_mode = (stat (myargv[optind], &f) == 0) ? HL_MODE_FILE : HL_MODE_ARG;
10525
10526 if ((hash_mode == 2500) ||
10527 (hash_mode == 5200) ||
10528 ((hash_mode >= 6200) && (hash_mode <= 6299)) ||
10529 (hash_mode == 9000))
10530 {
10531 hashlist_mode = HL_MODE_ARG;
10532
10533 char *hashfile = myargv[optind];
10534
10535 data.hashfile = hashfile;
10536
10537 logfile_top_var_string ("target", hashfile);
10538 }
10539
10540 if (hashlist_mode == HL_MODE_ARG)
10541 {
10542 if (hash_mode == 2500)
10543 {
10544 struct stat st;
10545
10546 if (stat (data.hashfile, &st) == -1)
10547 {
10548 log_error ("ERROR: %s: %s", data.hashfile, strerror (errno));
10549
10550 return (-1);
10551 }
10552
10553 hashes_avail = st.st_size / sizeof (hccap_t);
10554 }
10555 else
10556 {
10557 hashes_avail = 1;
10558 }
10559 }
10560 else if (hashlist_mode == HL_MODE_FILE)
10561 {
10562 char *hashfile = myargv[optind];
10563
10564 data.hashfile = hashfile;
10565
10566 logfile_top_var_string ("target", hashfile);
10567
10568 FILE *fp = NULL;
10569
10570 if ((fp = fopen (hashfile, "rb")) == NULL)
10571 {
10572 log_error ("ERROR: %s: %s", hashfile, strerror (errno));
10573
10574 return (-1);
10575 }
10576
10577 if (data.quiet == 0) log_info_nn ("Counting lines in %s", hashfile);
10578
10579 hashes_avail = count_lines (fp);
10580
10581 rewind (fp);
10582
10583 if (hashes_avail == 0)
10584 {
10585 log_error ("ERROR: hashfile is empty or corrupt");
10586
10587 fclose (fp);
10588
10589 return (-1);
10590 }
10591
10592 hashlist_format = hlfmt_detect (fp, 100); // 100 = max numbers to "scan". could be hashes_avail, too
10593
10594 if ((remove == 1) && (hashlist_format != HLFMT_HASHCAT))
10595 {
10596 log_error ("ERROR: remove not supported in native hashfile-format mode");
10597
10598 fclose (fp);
10599
10600 return (-1);
10601 }
10602
10603 fclose (fp);
10604 }
10605 }
10606 else
10607 {
10608 hashlist_mode = HL_MODE_ARG;
10609
10610 hashes_avail = 1;
10611 }
10612
10613 if (hash_mode == 3000) hashes_avail *= 2;
10614
10615 data.hashlist_mode = hashlist_mode;
10616 data.hashlist_format = hashlist_format;
10617
10618 logfile_top_uint (hashlist_mode);
10619 logfile_top_uint (hashlist_format);
10620
10621 /**
10622 * load hashes, part II: allocate required memory, set pointers
10623 */
10624
10625 hash_t *hashes_buf = NULL;
10626 void *digests_buf = NULL;
10627 salt_t *salts_buf = NULL;
10628 void *esalts_buf = NULL;
10629
10630 hashes_buf = (hash_t *) mycalloc (hashes_avail, sizeof (hash_t));
10631
10632 digests_buf = (void *) mycalloc (hashes_avail, dgst_size);
10633
10634 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
10635 {
10636 u32 hash_pos;
10637
10638 for (hash_pos = 0; hash_pos < hashes_avail; hash_pos++)
10639 {
10640 hashinfo_t *hash_info = (hashinfo_t *) mymalloc (sizeof (hashinfo_t));
10641
10642 hashes_buf[hash_pos].hash_info = hash_info;
10643
10644 if (username && (remove || show || left))
10645 {
10646 hash_info->user = (user_t*) mymalloc (sizeof (user_t));
10647 }
10648
10649 if (benchmark)
10650 {
10651 hash_info->orighash = (char *) mymalloc (256);
10652 }
10653 }
10654 }
10655
10656 if (isSalted)
10657 {
10658 salts_buf = (salt_t *) mycalloc (hashes_avail, sizeof (salt_t));
10659
10660 if (esalt_size)
10661 {
10662 esalts_buf = (void *) mycalloc (hashes_avail, esalt_size);
10663 }
10664 }
10665 else
10666 {
10667 salts_buf = (salt_t *) mycalloc (1, sizeof (salt_t));
10668 }
10669
10670 for (uint hash_pos = 0; hash_pos < hashes_avail; hash_pos++)
10671 {
10672 hashes_buf[hash_pos].digest = ((char *) digests_buf) + (hash_pos * dgst_size);
10673
10674 if (isSalted)
10675 {
10676 hashes_buf[hash_pos].salt = &salts_buf[hash_pos];
10677
10678 if (esalt_size)
10679 {
10680 hashes_buf[hash_pos].esalt = ((char *) esalts_buf) + (hash_pos * esalt_size);
10681 }
10682 }
10683 else
10684 {
10685 hashes_buf[hash_pos].salt = &salts_buf[0];
10686 }
10687 }
10688
10689 /**
10690 * load hashes, part III: parse hashes or generate them if benchmark
10691 */
10692
10693 uint hashes_cnt = 0;
10694
10695 if (benchmark == 0)
10696 {
10697 if (keyspace == 1)
10698 {
10699 // useless to read hash file for keyspace, cheat a little bit w/ optind
10700 }
10701 else if (hashes_avail == 0)
10702 {
10703 }
10704 else if (hashlist_mode == HL_MODE_ARG)
10705 {
10706 char *input_buf = myargv[optind];
10707
10708 uint input_len = strlen (input_buf);
10709
10710 logfile_top_var_string ("target", input_buf);
10711
10712 char *hash_buf = NULL;
10713 int hash_len = 0;
10714
10715 hlfmt_hash (hashlist_format, input_buf, input_len, &hash_buf, &hash_len);
10716
10717 if (hash_len)
10718 {
10719 if (opts_type & OPTS_TYPE_HASH_COPY)
10720 {
10721 hashinfo_t *hash_info_tmp = hashes_buf[hashes_cnt].hash_info;
10722
10723 hash_info_tmp->orighash = mystrdup (hash_buf);
10724 }
10725
10726 if (isSalted)
10727 {
10728 memset (hashes_buf[0].salt, 0, sizeof (salt_t));
10729 }
10730
10731 int parser_status = PARSER_OK;
10732
10733 if (hash_mode == 2500)
10734 {
10735 if (hash_len == 0)
10736 {
10737 log_error ("ERROR: hccap file not specified");
10738
10739 return (-1);
10740 }
10741
10742 hashlist_mode = HL_MODE_FILE;
10743
10744 data.hashlist_mode = hashlist_mode;
10745
10746 FILE *fp = fopen (hash_buf, "rb");
10747
10748 if (fp == NULL)
10749 {
10750 log_error ("ERROR: %s: %s", hash_buf, strerror (errno));
10751
10752 return (-1);
10753 }
10754
10755 if (hashes_avail < 1)
10756 {
10757 log_error ("ERROR: hccap file is empty or corrupt");
10758
10759 fclose (fp);
10760
10761 return (-1);
10762 }
10763
10764 uint hccap_size = sizeof (hccap_t);
10765
10766 char in[hccap_size];
10767
10768 while (!feof (fp))
10769 {
10770 int n = fread (&in, hccap_size, 1, fp);
10771
10772 if (n != 1)
10773 {
10774 if (hashes_cnt < 1) parser_status = PARSER_HCCAP_FILE_SIZE;
10775
10776 break;
10777 }
10778
10779 parser_status = parse_func (in, hccap_size, &hashes_buf[hashes_cnt]);
10780
10781 if (parser_status != PARSER_OK)
10782 {
10783 log_info ("WARNING: Hash '%s': %s", hash_buf, strparser (parser_status));
10784
10785 continue;
10786 }
10787
10788 // hack: append MAC1 and MAC2 s.t. in --show and --left the line matches with the .pot file format (i.e. ESSID:MAC1:MAC2)
10789
10790 if ((show == 1) || (left == 1))
10791 {
10792 salt_t *tmp_salt = hashes_buf[hashes_cnt].salt;
10793
10794 char *salt_ptr = (char *) tmp_salt->salt_buf;
10795
10796 int cur_pos = tmp_salt->salt_len;
10797 int rem_len = sizeof (hashes_buf[hashes_cnt].salt->salt_buf) - cur_pos;
10798
10799 wpa_t *wpa = (wpa_t *) hashes_buf[hashes_cnt].esalt;
10800
10801 u8 *pke_ptr = (u8 *) wpa->pke;
10802
10803 // do the appending task
10804
10805 snprintf (salt_ptr + cur_pos,
10806 rem_len,
10807 ":%02x%02x%02x%02x%02x%02x:%02x%02x%02x%02x%02x%02x",
10808 pke_ptr[20], pke_ptr[27], pke_ptr[26], pke_ptr[25], pke_ptr[24], pke_ptr[31], // MAC1
10809 pke_ptr[30], pke_ptr[29], pke_ptr[28], pke_ptr[35], pke_ptr[34], pke_ptr[33]); // MAC2
10810
10811
10812 // memset () the remaining part of the salt
10813
10814 cur_pos = tmp_salt->salt_len + 1 + 12 + 1 + 12;
10815 rem_len = sizeof (hashes_buf[hashes_cnt].salt->salt_buf) - cur_pos;
10816
10817 if (rem_len > 0) memset (salt_ptr + cur_pos, 0, rem_len);
10818
10819 tmp_salt->salt_len += 1 + 12 + 1 + 12;
10820 }
10821
10822 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);
10823 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);
10824
10825 hashes_cnt++;
10826 }
10827
10828 fclose (fp);
10829 }
10830 else if (hash_mode == 3000)
10831 {
10832 if (hash_len == 32)
10833 {
10834 parser_status = parse_func (hash_buf, 16, &hashes_buf[hashes_cnt]);
10835
10836 hash_t *lm_hash_left = NULL;
10837
10838 if (parser_status == PARSER_OK)
10839 {
10840 lm_hash_left = &hashes_buf[hashes_cnt];
10841
10842 hashes_cnt++;
10843 }
10844 else
10845 {
10846 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
10847 }
10848
10849
10850 parser_status = parse_func (hash_buf + 16, 16, &hashes_buf[hashes_cnt]);
10851
10852 hash_t *lm_hash_right = NULL;
10853
10854 if (parser_status == PARSER_OK)
10855 {
10856 lm_hash_right = &hashes_buf[hashes_cnt];
10857
10858 hashes_cnt++;
10859 }
10860 else
10861 {
10862 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
10863 }
10864
10865 // show / left
10866
10867 if ((lm_hash_left != NULL) && (lm_hash_right != NULL))
10868 {
10869 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);
10870 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);
10871 }
10872 }
10873 else
10874 {
10875 parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
10876
10877 if (parser_status == PARSER_OK)
10878 {
10879 if (show == 1) handle_show_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
10880 if (left == 1) handle_left_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
10881 }
10882
10883 if (parser_status == PARSER_OK)
10884 {
10885 hashes_cnt++;
10886 }
10887 else
10888 {
10889 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
10890 }
10891 }
10892 }
10893 else
10894 {
10895 parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
10896
10897 if (parser_status == PARSER_OK)
10898 {
10899 if (show == 1) handle_show_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
10900 if (left == 1) handle_left_request (pot, pot_cnt, input_buf, input_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
10901 }
10902
10903 if (parser_status == PARSER_OK)
10904 {
10905 hashes_cnt++;
10906 }
10907 else
10908 {
10909 log_info ("WARNING: Hash '%s': %s", input_buf, strparser (parser_status));
10910 }
10911 }
10912 }
10913 }
10914 else if (hashlist_mode == HL_MODE_FILE)
10915 {
10916 char *hashfile = data.hashfile;
10917
10918 FILE *fp;
10919
10920 if ((fp = fopen (hashfile, "rb")) == NULL)
10921 {
10922 log_error ("ERROR: %s: %s", hashfile, strerror (errno));
10923
10924 return (-1);
10925 }
10926
10927 uint line_num = 0;
10928
10929 while (!feof (fp))
10930 {
10931 line_num++;
10932
10933 char line_buf[BUFSIZ];
10934
10935 int line_len = fgetl (fp, line_buf);
10936
10937 if (line_len == 0) continue;
10938
10939 char *hash_buf = NULL;
10940 int hash_len = 0;
10941
10942 hlfmt_hash (hashlist_format, line_buf, line_len, &hash_buf, &hash_len);
10943
10944 if (username)
10945 {
10946 char *user_buf = NULL;
10947 int user_len = 0;
10948
10949 hlfmt_user (hashlist_format, line_buf, line_len, &user_buf, &user_len);
10950
10951 if (remove || show)
10952 {
10953 user_t **user = &hashes_buf[hashes_cnt].hash_info->user;
10954
10955 *user = (user_t *) malloc (sizeof (user_t));
10956
10957 user_t *user_ptr = *user;
10958
10959 if (user_buf != NULL)
10960 {
10961 user_ptr->user_name = mystrdup (user_buf);
10962 }
10963 else
10964 {
10965 user_ptr->user_name = mystrdup ("");
10966 }
10967
10968 user_ptr->user_len = user_len;
10969 }
10970 }
10971
10972 if (opts_type & OPTS_TYPE_HASH_COPY)
10973 {
10974 hashinfo_t *hash_info_tmp = hashes_buf[hashes_cnt].hash_info;
10975
10976 hash_info_tmp->orighash = mystrdup (hash_buf);
10977 }
10978
10979 if (isSalted)
10980 {
10981 memset (hashes_buf[hashes_cnt].salt, 0, sizeof (salt_t));
10982 }
10983
10984 if (hash_mode == 3000)
10985 {
10986 if (hash_len == 32)
10987 {
10988 int parser_status = parse_func (hash_buf, 16, &hashes_buf[hashes_cnt]);
10989
10990 if (parser_status < PARSER_GLOBAL_ZERO)
10991 {
10992 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
10993
10994 continue;
10995 }
10996
10997 hash_t *lm_hash_left = &hashes_buf[hashes_cnt];
10998
10999 hashes_cnt++;
11000
11001 parser_status = parse_func (hash_buf + 16, 16, &hashes_buf[hashes_cnt]);
11002
11003 if (parser_status < PARSER_GLOBAL_ZERO)
11004 {
11005 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11006
11007 continue;
11008 }
11009
11010 hash_t *lm_hash_right = &hashes_buf[hashes_cnt];
11011
11012 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);
11013
11014 hashes_cnt++;
11015
11016 // show / left
11017
11018 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);
11019 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);
11020 }
11021 else
11022 {
11023 int parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
11024
11025 if (parser_status < PARSER_GLOBAL_ZERO)
11026 {
11027 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11028
11029 continue;
11030 }
11031
11032 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);
11033
11034 if (show == 1) handle_show_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11035 if (left == 1) handle_left_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11036
11037 hashes_cnt++;
11038 }
11039 }
11040 else
11041 {
11042 int parser_status = parse_func (hash_buf, hash_len, &hashes_buf[hashes_cnt]);
11043
11044 if (parser_status < PARSER_GLOBAL_ZERO)
11045 {
11046 log_info ("WARNING: Hashfile '%s' in line %u (%s): %s", data.hashfile, line_num, line_buf, strparser (parser_status));
11047
11048 continue;
11049 }
11050
11051 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);
11052
11053 if (show == 1) handle_show_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11054 if (left == 1) handle_left_request (pot, pot_cnt, line_buf, line_len, &hashes_buf[hashes_cnt], sort_by_pot, out_fp);
11055
11056 hashes_cnt++;
11057 }
11058 }
11059
11060 fclose (fp);
11061
11062 if (data.quiet == 0) log_info_nn ("Parsed Hashes: %u/%u (%0.2f%%)", hashes_avail, hashes_avail, 100.00);
11063
11064 if ((out_fp != NULL) && (out_fp != stdout)) fclose (out_fp);
11065 }
11066 }
11067 else
11068 {
11069 if (isSalted)
11070 {
11071 hashes_buf[0].salt->salt_len = 8;
11072
11073 // special salt handling
11074
11075 switch (hash_mode)
11076 {
11077 case 1500: hashes_buf[0].salt->salt_len = 2;
11078 break;
11079 case 1731: hashes_buf[0].salt->salt_len = 4;
11080 break;
11081 case 2410: hashes_buf[0].salt->salt_len = 4;
11082 break;
11083 case 2500: memcpy (hashes_buf[0].salt->salt_buf, "hashcat.net", 11);
11084 break;
11085 case 3100: hashes_buf[0].salt->salt_len = 1;
11086 break;
11087 case 5000: hashes_buf[0].salt->keccak_mdlen = 32;
11088 break;
11089 case 5800: hashes_buf[0].salt->salt_len = 16;
11090 break;
11091 case 6800: hashes_buf[0].salt->salt_len = 32;
11092 break;
11093 case 8400: hashes_buf[0].salt->salt_len = 40;
11094 break;
11095 case 8800: hashes_buf[0].salt->salt_len = 16;
11096 break;
11097 case 8900: hashes_buf[0].salt->salt_len = 16;
11098 hashes_buf[0].salt->scrypt_N = 1024;
11099 hashes_buf[0].salt->scrypt_r = 1;
11100 hashes_buf[0].salt->scrypt_p = 1;
11101 break;
11102 case 9100: hashes_buf[0].salt->salt_len = 16;
11103 break;
11104 case 9300: hashes_buf[0].salt->salt_len = 14;
11105 hashes_buf[0].salt->scrypt_N = 16384;
11106 hashes_buf[0].salt->scrypt_r = 1;
11107 hashes_buf[0].salt->scrypt_p = 1;
11108 break;
11109 case 9400: hashes_buf[0].salt->salt_len = 16;
11110 break;
11111 case 9500: hashes_buf[0].salt->salt_len = 16;
11112 break;
11113 case 9600: hashes_buf[0].salt->salt_len = 16;
11114 break;
11115 case 9700: hashes_buf[0].salt->salt_len = 16;
11116 break;
11117 case 9710: hashes_buf[0].salt->salt_len = 16;
11118 break;
11119 case 9720: hashes_buf[0].salt->salt_len = 16;
11120 break;
11121 case 9800: hashes_buf[0].salt->salt_len = 16;
11122 break;
11123 case 9810: hashes_buf[0].salt->salt_len = 16;
11124 break;
11125 case 9820: hashes_buf[0].salt->salt_len = 16;
11126 break;
11127 case 10300: hashes_buf[0].salt->salt_len = 12;
11128 break;
11129 case 11500: hashes_buf[0].salt->salt_len = 4;
11130 break;
11131 case 11600: hashes_buf[0].salt->salt_len = 4;
11132 break;
11133 case 12400: hashes_buf[0].salt->salt_len = 4;
11134 break;
11135 case 12500: hashes_buf[0].salt->salt_len = 8;
11136 break;
11137 case 12600: hashes_buf[0].salt->salt_len = 64;
11138 break;
11139 }
11140
11141 // special esalt handling
11142
11143 switch (hash_mode)
11144 {
11145 case 2500: ((wpa_t *) hashes_buf[0].esalt)->eapol_size = 128;
11146 break;
11147 case 5300: ((ikepsk_t *) hashes_buf[0].esalt)->nr_len = 1;
11148 ((ikepsk_t *) hashes_buf[0].esalt)->msg_len = 1;
11149 break;
11150 case 5400: ((ikepsk_t *) hashes_buf[0].esalt)->nr_len = 1;
11151 ((ikepsk_t *) hashes_buf[0].esalt)->msg_len = 1;
11152 break;
11153 case 5500: ((netntlm_t *) hashes_buf[0].esalt)->user_len = 1;
11154 ((netntlm_t *) hashes_buf[0].esalt)->domain_len = 1;
11155 ((netntlm_t *) hashes_buf[0].esalt)->srvchall_len = 1;
11156 ((netntlm_t *) hashes_buf[0].esalt)->clichall_len = 1;
11157 break;
11158 case 5600: ((netntlm_t *) hashes_buf[0].esalt)->user_len = 1;
11159 ((netntlm_t *) hashes_buf[0].esalt)->domain_len = 1;
11160 ((netntlm_t *) hashes_buf[0].esalt)->srvchall_len = 1;
11161 ((netntlm_t *) hashes_buf[0].esalt)->clichall_len = 1;
11162 break;
11163 case 7300: ((rakp_t *) hashes_buf[0].esalt)->salt_len = 32;
11164 break;
11165 case 10400: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11166 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11167 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11168 break;
11169 case 10410: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11170 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11171 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11172 break;
11173 case 10420: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11174 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11175 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11176 break;
11177 case 10500: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11178 ((pdf_t *) hashes_buf[0].esalt)->o_len = 32;
11179 ((pdf_t *) hashes_buf[0].esalt)->u_len = 32;
11180 break;
11181 case 10600: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11182 ((pdf_t *) hashes_buf[0].esalt)->o_len = 127;
11183 ((pdf_t *) hashes_buf[0].esalt)->u_len = 127;
11184 break;
11185 case 10700: ((pdf_t *) hashes_buf[0].esalt)->id_len = 16;
11186 ((pdf_t *) hashes_buf[0].esalt)->o_len = 127;
11187 ((pdf_t *) hashes_buf[0].esalt)->u_len = 127;
11188 break;
11189 case 11600: ((seven_zip_t *) hashes_buf[0].esalt)->iv_len = 16;
11190 ((seven_zip_t *) hashes_buf[0].esalt)->data_len = 112;
11191 ((seven_zip_t *) hashes_buf[0].esalt)->unpack_size = 112;
11192 break;
11193 }
11194 }
11195
11196 // set hashfile
11197
11198 switch (hash_mode)
11199 {
11200 case 5200: data.hashfile = mystrdup ("hashcat.psafe3");
11201 break;
11202 case 5300: data.hashfile = mystrdup ("hashcat.ikemd5");
11203 break;
11204 case 5400: data.hashfile = mystrdup ("hashcat.ikesha1");
11205 break;
11206 case 6211:
11207 case 6212:
11208 case 6213:
11209 case 6221:
11210 case 6222:
11211 case 6223:
11212 case 6231:
11213 case 6232:
11214 case 6233:
11215 case 6241:
11216 case 6242:
11217 case 6243: data.hashfile = mystrdup ("hashcat.tc");
11218 break;
11219 case 6600: data.hashfile = mystrdup ("hashcat.agilekey");
11220 break;
11221 case 8200: data.hashfile = mystrdup ("hashcat.cloudkey");
11222 break;
11223 case 9000: data.hashfile = mystrdup ("hashcat.psafe2");
11224 break;
11225 }
11226
11227 // set default iterations
11228
11229 switch (hash_mode)
11230 {
11231 case 400: hashes_buf[0].salt->salt_iter = ROUNDS_PHPASS;
11232 break;
11233 case 500: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11234 break;
11235 case 501: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11236 break;
11237 case 1600: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11238 break;
11239 case 1800: hashes_buf[0].salt->salt_iter = ROUNDS_SHA512CRYPT;
11240 break;
11241 case 2100: hashes_buf[0].salt->salt_iter = ROUNDS_DCC2;
11242 break;
11243 case 2500: hashes_buf[0].salt->salt_iter = ROUNDS_WPA2;
11244 break;
11245 case 3200: hashes_buf[0].salt->salt_iter = ROUNDS_BCRYPT;
11246 break;
11247 case 5200: hashes_buf[0].salt->salt_iter = ROUNDS_PSAFE3;
11248 break;
11249 case 5800: hashes_buf[0].salt->salt_iter = ROUNDS_ANDROIDPIN - 1;
11250 break;
11251 case 6211:
11252 case 6212:
11253 case 6213: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_2K;
11254 break;
11255 case 6221:
11256 case 6222:
11257 case 6223: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11258 break;
11259 case 6231:
11260 case 6232:
11261 case 6233: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11262 break;
11263 case 6241:
11264 case 6242:
11265 case 6243: hashes_buf[0].salt->salt_iter = ROUNDS_TRUECRYPT_1K;
11266 break;
11267 case 6300: hashes_buf[0].salt->salt_iter = ROUNDS_MD5CRYPT;
11268 break;
11269 case 6400: hashes_buf[0].salt->salt_iter = ROUNDS_SHA256AIX;
11270 break;
11271 case 6500: hashes_buf[0].salt->salt_iter = ROUNDS_SHA512AIX;
11272 break;
11273 case 6700: hashes_buf[0].salt->salt_iter = ROUNDS_SHA1AIX;
11274 break;
11275 case 6600: hashes_buf[0].salt->salt_iter = ROUNDS_AGILEKEY;
11276 break;
11277 case 6800: hashes_buf[0].salt->salt_iter = ROUNDS_LASTPASS;
11278 break;
11279 case 7100: hashes_buf[0].salt->salt_iter = ROUNDS_SHA512OSX;
11280 break;
11281 case 7200: hashes_buf[0].salt->salt_iter = ROUNDS_GRUB;
11282 break;
11283 case 7400: hashes_buf[0].salt->salt_iter = ROUNDS_SHA256CRYPT;
11284 break;
11285 case 7900: hashes_buf[0].salt->salt_iter = ROUNDS_DRUPAL7;
11286 break;
11287 case 8200: hashes_buf[0].salt->salt_iter = ROUNDS_CLOUDKEY;
11288 break;
11289 case 8300: hashes_buf[0].salt->salt_iter = ROUNDS_NSEC3;
11290 break;
11291 case 8800: hashes_buf[0].salt->salt_iter = ROUNDS_ANDROIDFDE;
11292 break;
11293 case 8900: hashes_buf[0].salt->salt_iter = 1;
11294 break;
11295 case 9000: hashes_buf[0].salt->salt_iter = ROUNDS_PSAFE2;
11296 break;
11297 case 9100: hashes_buf[0].salt->salt_iter = ROUNDS_LOTUS8;
11298 break;
11299 case 9200: hashes_buf[0].salt->salt_iter = ROUNDS_CISCO8;
11300 break;
11301 case 9300: hashes_buf[0].salt->salt_iter = 1;
11302 break;
11303 case 9400: hashes_buf[0].salt->salt_iter = ROUNDS_OFFICE2007;
11304 break;
11305 case 9500: hashes_buf[0].salt->salt_iter = ROUNDS_OFFICE2010;
11306 break;
11307 case 9600: hashes_buf[0].salt->salt_iter = ROUNDS_OFFICE2013;
11308 break;
11309 case 10000: hashes_buf[0].salt->salt_iter = ROUNDS_DJANGOPBKDF2;
11310 break;
11311 case 10300: hashes_buf[0].salt->salt_iter = ROUNDS_SAPH_SHA1 - 1;
11312 break;
11313 case 10500: hashes_buf[0].salt->salt_iter = ROUNDS_PDF14;
11314 break;
11315 case 10700: hashes_buf[0].salt->salt_iter = ROUNDS_PDF17L8;
11316 break;
11317 case 10900: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_SHA256 - 1;
11318 break;
11319 case 11300: hashes_buf[0].salt->salt_iter = ROUNDS_BITCOIN_WALLET - 1;
11320 break;
11321 case 11600: hashes_buf[0].salt->salt_iter = ROUNDS_SEVEN_ZIP;
11322 break;
11323 case 11900: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_MD5 - 1;
11324 break;
11325 case 12000: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_SHA1 - 1;
11326 break;
11327 case 12100: hashes_buf[0].salt->salt_iter = ROUNDS_PBKDF2_SHA512 - 1;
11328 break;
11329 case 12200: hashes_buf[0].salt->salt_iter = ROUNDS_ECRYPTFS - 1;
11330 break;
11331 case 12300: hashes_buf[0].salt->salt_iter = ROUNDS_ORACLET - 1;
11332 break;
11333 case 12400: hashes_buf[0].salt->salt_iter = ROUNDS_BSDICRYPT - 1;
11334 break;
11335 case 12500: hashes_buf[0].salt->salt_iter = ROUNDS_RAR3;
11336 break;
11337 case 12700: hashes_buf[0].salt->salt_iter = ROUNDS_MYWALLET;
11338 break;
11339 case 12800: hashes_buf[0].salt->salt_iter = ROUNDS_MS_DRSR - 1;
11340 break;
11341 case 12900: hashes_buf[0].salt->salt_iter = ROUNDS_ANDROIDFDE_SAMSUNG - 1;
11342 break;
11343 case 13000: hashes_buf[0].salt->salt_iter = ROUNDS_RAR5 - 1;
11344 break;
11345 }
11346
11347 // set special tuning for benchmark-mode 1
11348
11349 if (benchmark_mode == 1)
11350 {
11351 kernel_loops *= 8;
11352 kernel_accel *= 4;
11353
11354 switch (hash_mode)
11355 {
11356 case 400: kernel_loops = ROUNDS_PHPASS;
11357 kernel_accel = 32;
11358 break;
11359 case 500: kernel_loops = ROUNDS_MD5CRYPT;
11360 kernel_accel = 32;
11361 break;
11362 case 501: kernel_loops = ROUNDS_MD5CRYPT;
11363 kernel_accel = 32;
11364 break;
11365 case 1600: kernel_loops = ROUNDS_MD5CRYPT;
11366 kernel_accel = 32;
11367 break;
11368 case 1800: kernel_loops = ROUNDS_SHA512CRYPT;
11369 kernel_accel = 16;
11370 break;
11371 case 2100: kernel_loops = ROUNDS_DCC2;
11372 kernel_accel = 16;
11373 break;
11374 case 2500: kernel_loops = ROUNDS_WPA2;
11375 kernel_accel = 32;
11376 break;
11377 case 3200: kernel_loops = ROUNDS_BCRYPT;
11378 kernel_accel = 8;
11379 break;
11380 case 5200: kernel_loops = ROUNDS_PSAFE3;
11381 kernel_accel = 16;
11382 break;
11383 case 5800: kernel_loops = ROUNDS_ANDROIDPIN;
11384 kernel_accel = 16;
11385 break;
11386 case 6211: kernel_loops = ROUNDS_TRUECRYPT_2K;
11387 kernel_accel = 64;
11388 break;
11389 case 6212: kernel_loops = ROUNDS_TRUECRYPT_2K;
11390 kernel_accel = 32;
11391 break;
11392 case 6213: kernel_loops = ROUNDS_TRUECRYPT_2K;
11393 kernel_accel = 32;
11394 break;
11395 case 6221: kernel_loops = ROUNDS_TRUECRYPT_1K;
11396 kernel_accel = 8;
11397 break;
11398 case 6222: kernel_loops = ROUNDS_TRUECRYPT_1K;
11399 kernel_accel = 8;
11400 break;
11401 case 6223: kernel_loops = ROUNDS_TRUECRYPT_1K;
11402 kernel_accel = 8;
11403 break;
11404 case 6231: kernel_loops = ROUNDS_TRUECRYPT_1K;
11405 kernel_accel = 8;
11406 break;
11407 case 6232: kernel_loops = ROUNDS_TRUECRYPT_1K;
11408 kernel_accel = 8;
11409 break;
11410 case 6233: kernel_loops = ROUNDS_TRUECRYPT_1K;
11411 kernel_accel = 8;
11412 break;
11413 case 6241: kernel_loops = ROUNDS_TRUECRYPT_1K;
11414 kernel_accel = 128;
11415 break;
11416 case 6242: kernel_loops = ROUNDS_TRUECRYPT_1K;
11417 kernel_accel = 64;
11418 break;
11419 case 6243: kernel_loops = ROUNDS_TRUECRYPT_1K;
11420 kernel_accel = 64;
11421 break;
11422 case 6300: kernel_loops = ROUNDS_MD5CRYPT;
11423 kernel_accel = 32;
11424 break;
11425 case 6700: kernel_loops = ROUNDS_SHA1AIX;
11426 kernel_accel = 128;
11427 break;
11428 case 6400: kernel_loops = ROUNDS_SHA256AIX;
11429 kernel_accel = 128;
11430 break;
11431 case 6500: kernel_loops = ROUNDS_SHA512AIX;
11432 kernel_accel = 32;
11433 break;
11434 case 6600: kernel_loops = ROUNDS_AGILEKEY;
11435 kernel_accel = 64;
11436 break;
11437 case 6800: kernel_loops = ROUNDS_LASTPASS;
11438 kernel_accel = 64;
11439 break;
11440 case 7100: kernel_loops = ROUNDS_SHA512OSX;
11441 kernel_accel = 8;
11442 break;
11443 case 7200: kernel_loops = ROUNDS_GRUB;
11444 kernel_accel = 16;
11445 break;
11446 case 7400: kernel_loops = ROUNDS_SHA256CRYPT;
11447 kernel_accel = 8;
11448 break;
11449 case 7900: kernel_loops = ROUNDS_DRUPAL7;
11450 kernel_accel = 8;
11451 break;
11452 case 8200: kernel_loops = ROUNDS_CLOUDKEY;
11453 kernel_accel = 8;
11454 break;
11455 case 8800: kernel_loops = ROUNDS_ANDROIDFDE;
11456 kernel_accel = 32;
11457 break;
11458 case 8900: kernel_loops = 1;
11459 kernel_accel = 64;
11460 break;
11461 case 9000: kernel_loops = ROUNDS_PSAFE2;
11462 kernel_accel = 16;
11463 break;
11464 case 9100: kernel_loops = ROUNDS_LOTUS8;
11465 kernel_accel = 64;
11466 break;
11467 case 9200: kernel_loops = ROUNDS_CISCO8;
11468 kernel_accel = 8;
11469 break;
11470 case 9300: kernel_loops = 1;
11471 kernel_accel = 4;
11472 break;
11473 case 9400: kernel_loops = ROUNDS_OFFICE2007;
11474 kernel_accel = 32;
11475 break;
11476 case 9500: kernel_loops = ROUNDS_OFFICE2010;
11477 kernel_accel = 32;
11478 break;
11479 case 9600: kernel_loops = ROUNDS_OFFICE2013;
11480 kernel_accel = 8;
11481 break;
11482 case 10000: kernel_loops = ROUNDS_DJANGOPBKDF2;
11483 kernel_accel = 8;
11484 break;
11485 case 10300: kernel_loops = ROUNDS_SAPH_SHA1;
11486 kernel_accel = 16;
11487 break;
11488 case 10500: kernel_loops = ROUNDS_PDF14;
11489 kernel_accel = 256;
11490 break;
11491 case 10700: kernel_loops = ROUNDS_PDF17L8;
11492 kernel_accel = 8;
11493 break;
11494 case 10900: kernel_loops = ROUNDS_PBKDF2_SHA256;
11495 kernel_accel = 8;
11496 break;
11497 case 11300: kernel_loops = ROUNDS_BITCOIN_WALLET;
11498 kernel_accel = 8;
11499 break;
11500 case 11600: kernel_loops = ROUNDS_SEVEN_ZIP;
11501 kernel_accel = 8;
11502 break;
11503 case 11900: kernel_loops = ROUNDS_PBKDF2_MD5;
11504 kernel_accel = 8;
11505 break;
11506 case 12000: kernel_loops = ROUNDS_PBKDF2_SHA1;
11507 kernel_accel = 8;
11508 break;
11509 case 12100: kernel_loops = ROUNDS_PBKDF2_SHA512;
11510 kernel_accel = 8;
11511 break;
11512 case 12200: kernel_loops = ROUNDS_ECRYPTFS;
11513 kernel_accel = 8;
11514 break;
11515 case 12300: kernel_loops = ROUNDS_ORACLET;
11516 kernel_accel = 8;
11517 break;
11518 case 12500: kernel_loops = ROUNDS_RAR3;
11519 kernel_accel = 32;
11520 break;
11521 case 12700: kernel_loops = ROUNDS_MYWALLET;
11522 kernel_accel = 512;
11523 break;
11524 case 12800: kernel_loops = ROUNDS_MS_DRSR;
11525 kernel_accel = 512;
11526 break;
11527 case 12900: kernel_loops = ROUNDS_ANDROIDFDE_SAMSUNG;
11528 kernel_accel = 8;
11529 break;
11530 case 13000: kernel_loops = ROUNDS_RAR5;
11531 kernel_accel = 8;
11532 break;
11533 }
11534
11535 // some algorithm collide too fast, make that impossible
11536
11537 switch (hash_mode)
11538 {
11539 case 11500: ((uint *) digests_buf)[1] = 1;
11540 break;
11541 }
11542
11543 if (kernel_loops > 1024) kernel_loops = 1024;
11544 if (kernel_accel > 256) kernel_accel = 256; // causes memory problems otherwise
11545 }
11546
11547 if ((opts_type & OPTS_TYPE_PT_BITSLICE) && (attack_mode == ATTACK_MODE_BF))
11548 {
11549 kernel_loops = 1024;
11550 }
11551
11552 if (hash_mode == 12500)
11553 {
11554 kernel_loops = ROUNDS_RAR3 / 16;
11555 }
11556
11557 data.kernel_accel = kernel_accel;
11558 data.kernel_loops = kernel_loops;
11559
11560 hashes_cnt = 1;
11561 }
11562
11563 if (show == 1 || left == 1)
11564 {
11565 for (uint i = 0; i < pot_cnt; i++)
11566 {
11567 pot_t *pot_ptr = &pot[i];
11568
11569 hash_t *hashes_buf = &pot_ptr->hash;
11570
11571 local_free (hashes_buf->digest);
11572
11573 if (isSalted)
11574 {
11575 local_free (hashes_buf->salt);
11576 }
11577 }
11578
11579 local_free (pot);
11580
11581 if (data.quiet == 0) log_info_nn ("");
11582
11583 return (0);
11584 }
11585
11586 if (keyspace == 0)
11587 {
11588 if (hashes_cnt == 0)
11589 {
11590 log_error ("ERROR: No hashes loaded");
11591
11592 return (-1);
11593 }
11594 }
11595
11596 /**
11597 * Sanity check for hashfile vs outfile (should not point to the same physical file)
11598 */
11599
11600 if (data.outfile != NULL)
11601 {
11602 if (data.hashfile != NULL)
11603 {
11604 #ifdef _POSIX
11605 struct stat tmpstat_outfile;
11606 struct stat tmpstat_hashfile;
11607 #endif
11608
11609 #ifdef _WIN
11610 struct stat64 tmpstat_outfile;
11611 struct stat64 tmpstat_hashfile;
11612 #endif
11613
11614 FILE *tmp_outfile_fp = fopen (data.outfile, "r");
11615
11616 if (tmp_outfile_fp)
11617 {
11618 #ifdef _POSIX
11619 fstat (fileno (tmp_outfile_fp), &tmpstat_outfile);
11620 #endif
11621
11622 #ifdef _WIN
11623 _fstat64 (fileno (tmp_outfile_fp), &tmpstat_outfile);
11624 #endif
11625
11626 fclose (tmp_outfile_fp);
11627 }
11628
11629 FILE *tmp_hashfile_fp = fopen (data.hashfile, "r");
11630
11631 if (tmp_hashfile_fp)
11632 {
11633 #ifdef _POSIX
11634 fstat (fileno (tmp_hashfile_fp), &tmpstat_hashfile);
11635 #endif
11636
11637 #ifdef _WIN
11638 _fstat64 (fileno (tmp_hashfile_fp), &tmpstat_hashfile);
11639 #endif
11640
11641 fclose (tmp_hashfile_fp);
11642 }
11643
11644 if (tmp_outfile_fp && tmp_outfile_fp)
11645 {
11646 tmpstat_outfile.st_mode = 0;
11647 tmpstat_outfile.st_nlink = 0;
11648 tmpstat_outfile.st_uid = 0;
11649 tmpstat_outfile.st_gid = 0;
11650 tmpstat_outfile.st_rdev = 0;
11651 tmpstat_outfile.st_atime = 0;
11652
11653 tmpstat_hashfile.st_mode = 0;
11654 tmpstat_hashfile.st_nlink = 0;
11655 tmpstat_hashfile.st_uid = 0;
11656 tmpstat_hashfile.st_gid = 0;
11657 tmpstat_hashfile.st_rdev = 0;
11658 tmpstat_hashfile.st_atime = 0;
11659
11660 #ifdef _POSIX
11661 tmpstat_outfile.st_blksize = 0;
11662 tmpstat_outfile.st_blocks = 0;
11663
11664 tmpstat_hashfile.st_blksize = 0;
11665 tmpstat_hashfile.st_blocks = 0;
11666 #endif
11667
11668 #ifdef _POSIX
11669 if (memcmp (&tmpstat_outfile, &tmpstat_hashfile, sizeof (struct stat)) == 0)
11670 {
11671 log_error ("ERROR: Hashfile and Outfile are not allowed to point to the same file");
11672
11673 return (-1);
11674 }
11675 #endif
11676
11677 #ifdef _WIN
11678 if (memcmp (&tmpstat_outfile, &tmpstat_hashfile, sizeof (struct stat64)) == 0)
11679 {
11680 log_error ("ERROR: Hashfile and Outfile are not allowed to point to the same file");
11681
11682 return (-1);
11683 }
11684 #endif
11685 }
11686 }
11687 }
11688
11689 /**
11690 * Remove duplicates
11691 */
11692
11693 if (data.quiet == 0) log_info_nn ("Removing duplicate hashes...");
11694
11695 if (isSalted)
11696 {
11697 qsort (hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash);
11698 }
11699 else
11700 {
11701 qsort (hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_no_salt);
11702 }
11703
11704 uint hashes_cnt_orig = hashes_cnt;
11705
11706 hashes_cnt = 1;
11707
11708 for (uint hashes_pos = 1; hashes_pos < hashes_cnt_orig; hashes_pos++)
11709 {
11710 if (isSalted)
11711 {
11712 if (sort_by_salt (hashes_buf[hashes_pos].salt, hashes_buf[hashes_pos - 1].salt) == 0)
11713 {
11714 if (sort_by_digest (hashes_buf[hashes_pos].digest, hashes_buf[hashes_pos - 1].digest) == 0) continue;
11715 }
11716 }
11717 else
11718 {
11719 if (sort_by_digest (hashes_buf[hashes_pos].digest, hashes_buf[hashes_pos - 1].digest) == 0) continue;
11720 }
11721
11722 if (hashes_pos > hashes_cnt)
11723 {
11724 memcpy (&hashes_buf[hashes_cnt], &hashes_buf[hashes_pos], sizeof (hash_t));
11725 }
11726
11727 hashes_cnt++;
11728 }
11729
11730 /**
11731 * Potfile removes
11732 */
11733
11734 uint potfile_remove_cracks = 0;
11735
11736 if (potfile_disable == 0)
11737 {
11738 hash_t hash_buf;
11739
11740 hash_buf.digest = mymalloc (dgst_size);
11741 hash_buf.salt = NULL;
11742 hash_buf.esalt = NULL;
11743 hash_buf.hash_info = NULL;
11744 hash_buf.cracked = 0;
11745
11746 if (isSalted)
11747 {
11748 hash_buf.salt = (salt_t *) mymalloc (sizeof (salt_t));
11749 }
11750
11751 if (esalt_size)
11752 {
11753 hash_buf.esalt = mymalloc (esalt_size);
11754 }
11755
11756 if (quiet == 0) log_info_nn ("Comparing hashes with potfile entries...");
11757
11758 // no solution for these special hash types (for instane because they use hashfile in output etc)
11759 if ((hash_mode != 5200) &&
11760 !((hash_mode >= 6200) && (hash_mode <= 6299)) &&
11761 (hash_mode != 9000))
11762 {
11763 FILE *fp = fopen (potfile, "rb");
11764
11765 if (fp != NULL)
11766 {
11767 while (!feof (fp))
11768 {
11769 char line_buf[BUFSIZ];
11770
11771 memset (line_buf, 0, BUFSIZ);
11772
11773 char *ptr = fgets (line_buf, BUFSIZ - 1, fp);
11774
11775 if (ptr == NULL) break;
11776
11777 int line_len = strlen (line_buf);
11778
11779 if (line_len == 0) continue;
11780
11781 int iter = MAX_CUT_TRIES;
11782
11783 for (int i = line_len - 1; i && iter; i--, line_len--)
11784 {
11785 if (line_buf[i] != ':') continue;
11786
11787 if (isSalted)
11788 {
11789 memset (hash_buf.salt, 0, sizeof (salt_t));
11790 }
11791
11792 hash_t *found = NULL;
11793
11794 if (hash_mode == 6800)
11795 {
11796 if (i < 48) // 48 = 12 * uint in salt_buf[]
11797 {
11798 // manipulate salt_buf
11799 memcpy (hash_buf.salt->salt_buf, line_buf, i);
11800
11801 hash_buf.salt->salt_len = i;
11802
11803 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_t_salt);
11804 }
11805 }
11806 else if (hash_mode == 2500)
11807 {
11808 if (i < 48) // 48 = 12 * uint in salt_buf[]
11809 {
11810 // here we have in line_buf: ESSID:MAC1:MAC2 (without the plain)
11811 // manipulate salt_buf
11812
11813 // to be safe work with a copy (because of line_len loop, i etc)
11814
11815 char line_buf_cpy[BUFSIZ];
11816 memset (line_buf_cpy, 0, BUFSIZ);
11817
11818 memset (line_buf_cpy, 0, sizeof (line_buf_cpy));
11819
11820 memcpy (line_buf_cpy, line_buf, i);
11821
11822 char *mac2_pos = strrchr (line_buf_cpy, ':');
11823
11824 if (mac2_pos == NULL) continue;
11825
11826 mac2_pos[0] = 0;
11827 mac2_pos++;
11828
11829 if (strlen (mac2_pos) != 12) continue;
11830
11831 char *mac1_pos = strrchr (line_buf_cpy, ':');
11832
11833 if (mac1_pos == NULL) continue;
11834
11835 mac1_pos[0] = 0;
11836 mac1_pos++;
11837
11838 if (strlen (mac1_pos) != 12) continue;
11839
11840 uint essid_length = mac1_pos - line_buf_cpy - 1;
11841
11842 // here we need the ESSID
11843 memcpy (hash_buf.salt->salt_buf, line_buf_cpy, essid_length);
11844
11845 hash_buf.salt->salt_len = essid_length;
11846
11847 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_t_salt_hccap);
11848
11849 if (found)
11850 {
11851 wpa_t *wpa = (wpa_t *) found->esalt;
11852
11853 uint pke[25];
11854
11855 char *pke_ptr = (char *) pke;
11856
11857 for (uint i = 0; i < 25; i++)
11858 {
11859 pke[i] = byte_swap_32 (wpa->pke[i]);
11860 }
11861
11862 u8 mac1[6];
11863 u8 mac2[6];
11864
11865 memcpy (mac1, pke_ptr + 23, 6);
11866 memcpy (mac2, pke_ptr + 29, 6);
11867
11868 // compare hex string(s) vs binary MAC address(es)
11869
11870 for (uint i = 0, j = 0; i < 6; i++, j += 2)
11871 {
11872 if (mac1[i] != hex_to_u8 ((const u8 *) &mac1_pos[j]))
11873 {
11874 found = NULL;
11875 break;
11876 }
11877 }
11878
11879 // early skip ;)
11880 if (!found) continue;
11881
11882 for (uint i = 0, j = 0; i < 6; i++, j += 2)
11883 {
11884 if (mac2[i] != hex_to_u8 ((const u8 *) &mac2_pos[j]))
11885 {
11886 found = NULL;
11887 break;
11888 }
11889 }
11890 }
11891 }
11892 }
11893 else
11894 {
11895 int parser_status = parse_func (line_buf, line_len - 1, &hash_buf);
11896
11897 if (parser_status == PARSER_OK)
11898 {
11899 if (isSalted)
11900 {
11901 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash);
11902 }
11903 else
11904 {
11905 found = (hash_t *) bsearch (&hash_buf, hashes_buf, hashes_cnt, sizeof (hash_t), sort_by_hash_no_salt);
11906 }
11907 }
11908 }
11909
11910 if (found == NULL) continue;
11911
11912 if (!found->cracked) potfile_remove_cracks++;
11913
11914 found->cracked = 1;
11915
11916 if (found) break;
11917
11918 iter--;
11919 }
11920 }
11921
11922 fclose (fp);
11923 }
11924 }
11925
11926 if (esalt_size)
11927 {
11928 local_free (hash_buf.esalt);
11929 }
11930
11931 if (isSalted)
11932 {
11933 local_free (hash_buf.salt);
11934 }
11935
11936 local_free (hash_buf.digest);
11937 }
11938
11939 /**
11940 * Now generate all the buffers required for later
11941 */
11942
11943 void *digests_buf_new = (void *) mycalloc (hashes_avail, dgst_size);
11944
11945 salt_t *salts_buf_new = NULL;
11946 void *esalts_buf_new = NULL;
11947
11948 if (isSalted)
11949 {
11950 salts_buf_new = (salt_t *) mycalloc (hashes_avail, sizeof (salt_t));
11951
11952 if (esalt_size)
11953 {
11954 esalts_buf_new = (void *) mycalloc (hashes_avail, esalt_size);
11955 }
11956 }
11957 else
11958 {
11959 salts_buf_new = (salt_t *) mycalloc (1, sizeof (salt_t));
11960 }
11961
11962 if (data.quiet == 0) log_info_nn ("Structuring salts for cracking task...");
11963
11964 uint digests_cnt = hashes_cnt;
11965 uint digests_done = 0;
11966
11967 uint size_digests = digests_cnt * dgst_size;
11968 uint size_shown = digests_cnt * sizeof (uint);
11969
11970 uint *digests_shown = (uint *) mymalloc (size_shown);
11971 uint *digests_shown_tmp = (uint *) mymalloc (size_shown);
11972
11973 uint salts_cnt = 0;
11974 uint salts_done = 0;
11975
11976 hashinfo_t **hash_info = NULL;
11977
11978 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
11979 {
11980 hash_info = (hashinfo_t**) mymalloc (hashes_cnt * sizeof (hashinfo_t *));
11981
11982 if (username && (remove || show))
11983 {
11984 uint user_pos;
11985
11986 for (user_pos = 0; user_pos < hashes_cnt; user_pos++)
11987 {
11988 hash_info[user_pos] = (hashinfo_t*) mycalloc (hashes_cnt, sizeof (hashinfo_t));
11989
11990 hash_info[user_pos]->user = (user_t*) mymalloc (sizeof (user_t));
11991 }
11992 }
11993 }
11994
11995 uint *salts_shown = (uint *) mymalloc (size_shown);
11996
11997 salt_t *salt_buf;
11998
11999 {
12000 // copied from inner loop
12001
12002 salt_buf = &salts_buf_new[salts_cnt];
12003
12004 memcpy (salt_buf, hashes_buf[0].salt, sizeof (salt_t));
12005
12006 if (esalt_size)
12007 {
12008 memcpy (((char *) esalts_buf_new) + (salts_cnt * esalt_size), hashes_buf[0].esalt, esalt_size);
12009 }
12010
12011 salt_buf->digests_cnt = 0;
12012 salt_buf->digests_done = 0;
12013 salt_buf->digests_offset = 0;
12014
12015 salts_cnt++;
12016 }
12017
12018 if (hashes_buf[0].cracked == 1)
12019 {
12020 digests_shown[0] = 1;
12021
12022 digests_done++;
12023
12024 salt_buf->digests_done++;
12025 }
12026
12027 salt_buf->digests_cnt++;
12028
12029 memcpy (((char *) digests_buf_new) + (0 * dgst_size), hashes_buf[0].digest, dgst_size);
12030
12031 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
12032 {
12033 hash_info[0] = hashes_buf[0].hash_info;
12034 }
12035
12036 // copy from inner loop
12037
12038 for (uint hashes_pos = 1; hashes_pos < hashes_cnt; hashes_pos++)
12039 {
12040 if (isSalted)
12041 {
12042 if (sort_by_salt (hashes_buf[hashes_pos].salt, hashes_buf[hashes_pos - 1].salt) != 0)
12043 {
12044 salt_buf = &salts_buf_new[salts_cnt];
12045
12046 memcpy (salt_buf, hashes_buf[hashes_pos].salt, sizeof (salt_t));
12047
12048 if (esalt_size)
12049 {
12050 memcpy (((char *) esalts_buf_new) + (salts_cnt * esalt_size), hashes_buf[hashes_pos].esalt, esalt_size);
12051 }
12052
12053 salt_buf->digests_cnt = 0;
12054 salt_buf->digests_done = 0;
12055 salt_buf->digests_offset = hashes_pos;
12056
12057 salts_cnt++;
12058 }
12059 }
12060
12061 if (hashes_buf[hashes_pos].cracked == 1)
12062 {
12063 digests_shown[hashes_pos] = 1;
12064
12065 digests_done++;
12066
12067 salt_buf->digests_done++;
12068 }
12069
12070 salt_buf->digests_cnt++;
12071
12072 memcpy (((char *) digests_buf_new) + (hashes_pos * dgst_size), hashes_buf[hashes_pos].digest, dgst_size);
12073
12074 if ((username && (remove || show)) || (opts_type & OPTS_TYPE_HASH_COPY))
12075 {
12076 hash_info[hashes_pos] = hashes_buf[hashes_pos].hash_info;
12077 }
12078 }
12079
12080 for (uint salt_pos = 0; salt_pos < salts_cnt; salt_pos++)
12081 {
12082 salt_t *salt_buf = &salts_buf_new[salt_pos];
12083
12084 if (salt_buf->digests_done == salt_buf->digests_cnt)
12085 {
12086 salts_shown[salt_pos] = 1;
12087
12088 salts_done++;
12089 }
12090
12091 if (salts_done == salts_cnt) data.devices_status = STATUS_CRACKED;
12092 }
12093
12094 local_free (digests_buf);
12095 local_free (salts_buf);
12096 local_free (esalts_buf);
12097
12098 digests_buf = digests_buf_new;
12099 salts_buf = salts_buf_new;
12100 esalts_buf = esalts_buf_new;
12101
12102 local_free (hashes_buf);
12103
12104 /**
12105 * special modification not set from parser
12106 */
12107
12108 switch (hash_mode)
12109 {
12110 case 6211: salts_buf->truecrypt_mdlen = 1 * 512; break;
12111 case 6212: salts_buf->truecrypt_mdlen = 2 * 512; break;
12112 case 6213: salts_buf->truecrypt_mdlen = 3 * 512; break;
12113 case 6221: salts_buf->truecrypt_mdlen = 1 * 512; break;
12114 case 6222: salts_buf->truecrypt_mdlen = 2 * 512; break;
12115 case 6223: salts_buf->truecrypt_mdlen = 3 * 512; break;
12116 case 6231: salts_buf->truecrypt_mdlen = 1 * 512; break;
12117 case 6232: salts_buf->truecrypt_mdlen = 2 * 512; break;
12118 case 6233: salts_buf->truecrypt_mdlen = 3 * 512; break;
12119 case 6241: salts_buf->truecrypt_mdlen = 1 * 512; break;
12120 case 6242: salts_buf->truecrypt_mdlen = 2 * 512; break;
12121 case 6243: salts_buf->truecrypt_mdlen = 3 * 512; break;
12122 }
12123
12124 if (truecrypt_keyfiles)
12125 {
12126 uint *keyfile_buf = ((tc_t *) esalts_buf)->keyfile_buf;
12127
12128 char *keyfiles = strdup (truecrypt_keyfiles);
12129
12130 char *keyfile = strtok (keyfiles, ",");
12131
12132 do
12133 {
12134 truecrypt_crc32 (keyfile, (u8 *) keyfile_buf);
12135
12136 } while ((keyfile = strtok (NULL, ",")) != NULL);
12137
12138 free (keyfiles);
12139 }
12140
12141 data.digests_cnt = digests_cnt;
12142 data.digests_done = digests_done;
12143 data.digests_buf = digests_buf;
12144 data.digests_shown = digests_shown;
12145 data.digests_shown_tmp = digests_shown_tmp;
12146
12147 data.salts_cnt = salts_cnt;
12148 data.salts_done = salts_done;
12149 data.salts_buf = salts_buf;
12150 data.salts_shown = salts_shown;
12151
12152 data.esalts_buf = esalts_buf;
12153 data.hash_info = hash_info;
12154
12155 /**
12156 * Automatic Optimizers
12157 */
12158
12159 if (salts_cnt == 1)
12160 opti_type |= OPTI_TYPE_SINGLE_SALT;
12161
12162 if (digests_cnt == 1)
12163 opti_type |= OPTI_TYPE_SINGLE_HASH;
12164
12165 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
12166 opti_type |= OPTI_TYPE_NOT_ITERATED;
12167
12168 if (attack_mode == ATTACK_MODE_BF)
12169 opti_type |= OPTI_TYPE_BRUTE_FORCE;
12170
12171 data.opti_type = opti_type;
12172
12173 if (opti_type & OPTI_TYPE_BRUTE_FORCE)
12174 {
12175 if (opti_type & OPTI_TYPE_SINGLE_HASH)
12176 {
12177 if (opti_type & OPTI_TYPE_APPENDED_SALT)
12178 {
12179 if (opts_type & OPTS_TYPE_ST_ADD80)
12180 {
12181 opts_type &= ~OPTS_TYPE_ST_ADD80;
12182 opts_type |= OPTS_TYPE_PT_ADD80;
12183 }
12184
12185 if (opts_type & OPTS_TYPE_ST_ADDBITS14)
12186 {
12187 opts_type &= ~OPTS_TYPE_ST_ADDBITS14;
12188 opts_type |= OPTS_TYPE_PT_ADDBITS14;
12189 }
12190
12191 if (opts_type & OPTS_TYPE_ST_ADDBITS15)
12192 {
12193 opts_type &= ~OPTS_TYPE_ST_ADDBITS15;
12194 opts_type |= OPTS_TYPE_PT_ADDBITS15;
12195 }
12196 }
12197 }
12198 }
12199
12200 /**
12201 * Some algorithm, like descrypt, can benefit from JIT compilation
12202 */
12203
12204 int force_jit_compilation = -1;
12205
12206 if (hash_mode == 8900)
12207 {
12208 force_jit_compilation = 8900;
12209 }
12210 else if (hash_mode == 9300)
12211 {
12212 force_jit_compilation = 8900;
12213 }
12214 else if (hash_mode == 1500 && attack_mode == ATTACK_MODE_BF && data.salts_cnt == 1)
12215 {
12216 force_jit_compilation = 1500;
12217 }
12218
12219 /**
12220 * generate bitmap tables
12221 */
12222
12223 const uint bitmap_shift1 = 5;
12224 const uint bitmap_shift2 = 13;
12225
12226 if (bitmap_max < bitmap_min) bitmap_max = bitmap_min;
12227
12228 uint *bitmap_s1_a = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12229 uint *bitmap_s1_b = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12230 uint *bitmap_s1_c = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12231 uint *bitmap_s1_d = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12232 uint *bitmap_s2_a = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12233 uint *bitmap_s2_b = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12234 uint *bitmap_s2_c = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12235 uint *bitmap_s2_d = (uint *) mymalloc ((1 << bitmap_max) * sizeof (uint));
12236
12237 uint bitmap_bits;
12238 uint bitmap_nums;
12239 uint bitmap_mask;
12240 uint bitmap_size;
12241
12242 for (bitmap_bits = bitmap_min; bitmap_bits < bitmap_max; bitmap_bits++)
12243 {
12244 if (data.quiet == 0) log_info_nn ("Generating bitmap tables with %u bits...", bitmap_bits);
12245
12246 bitmap_nums = 1 << bitmap_bits;
12247
12248 bitmap_mask = bitmap_nums - 1;
12249
12250 bitmap_size = bitmap_nums * sizeof (uint);
12251
12252 if ((hashes_cnt & bitmap_mask) == hashes_cnt) break;
12253
12254 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;
12255 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;
12256
12257 break;
12258 }
12259
12260 bitmap_nums = 1 << bitmap_bits;
12261
12262 bitmap_mask = bitmap_nums - 1;
12263
12264 bitmap_size = bitmap_nums * sizeof (uint);
12265
12266 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);
12267 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);
12268
12269 /**
12270 * prepare quick rule
12271 */
12272
12273 data.rule_buf_l = rule_buf_l;
12274 data.rule_buf_r = rule_buf_r;
12275
12276 int rule_len_l = (int) strlen (rule_buf_l);
12277 int rule_len_r = (int) strlen (rule_buf_r);
12278
12279 data.rule_len_l = rule_len_l;
12280 data.rule_len_r = rule_len_r;
12281
12282 /**
12283 * load rules
12284 */
12285
12286 uint *all_kernel_rules_cnt = NULL;
12287
12288 kernel_rule_t **all_kernel_rules_buf = NULL;
12289
12290 if (rp_files_cnt)
12291 {
12292 all_kernel_rules_cnt = (uint *) mycalloc (rp_files_cnt, sizeof (uint));
12293
12294 all_kernel_rules_buf = (kernel_rule_t **) mycalloc (rp_files_cnt, sizeof (kernel_rule_t *));
12295 }
12296
12297 char rule_buf[BUFSIZ];
12298
12299 int rule_len = 0;
12300
12301 for (uint i = 0; i < rp_files_cnt; i++)
12302 {
12303 uint kernel_rules_avail = 0;
12304
12305 uint kernel_rules_cnt = 0;
12306
12307 kernel_rule_t *kernel_rules_buf = NULL;
12308
12309 char *rp_file = rp_files[i];
12310
12311 char in[BLOCK_SIZE];
12312 char out[BLOCK_SIZE];
12313
12314 FILE *fp = NULL;
12315
12316 uint rule_line = 0;
12317
12318 if ((fp = fopen (rp_file, "rb")) == NULL)
12319 {
12320 log_error ("ERROR: %s: %s", rp_file, strerror (errno));
12321
12322 return (-1);
12323 }
12324
12325 while (!feof (fp))
12326 {
12327 memset (rule_buf, 0, BUFSIZ);
12328
12329 rule_len = fgetl (fp, rule_buf);
12330
12331 rule_line++;
12332
12333 if (rule_len == 0) continue;
12334
12335 if (rule_buf[0] == '#') continue;
12336
12337 if (kernel_rules_avail == kernel_rules_cnt)
12338 {
12339 kernel_rules_buf = (kernel_rule_t *) myrealloc (kernel_rules_buf, kernel_rules_avail * sizeof (kernel_rule_t), INCR_RULES * sizeof (kernel_rule_t));
12340
12341 kernel_rules_avail += INCR_RULES;
12342 }
12343
12344 memset (in, 0, BLOCK_SIZE);
12345 memset (out, 0, BLOCK_SIZE);
12346
12347 int result = _old_apply_rule (rule_buf, rule_len, in, 1, out);
12348
12349 if (result == -1)
12350 {
12351 log_info ("WARNING: Skipping invalid or unsupported rule in file %s in line %u: %s", rp_file, rule_line, rule_buf);
12352
12353 continue;
12354 }
12355
12356 if (cpu_rule_to_kernel_rule (rule_buf, rule_len, &kernel_rules_buf[kernel_rules_cnt]) == -1)
12357 {
12358 log_info ("WARNING: Cannot convert rule for use on device in file %s in line %u: %s", rp_file, rule_line, rule_buf);
12359
12360 memset (&kernel_rules_buf[kernel_rules_cnt], 0, sizeof (kernel_rule_t)); // needs to be cleared otherwise we could have some remaining data
12361
12362 continue;
12363 }
12364
12365 /* its so slow
12366 if (rulefind (&kernel_rules_buf[kernel_rules_cnt], kernel_rules_buf, kernel_rules_cnt, sizeof (kernel_rule_t), sort_by_kernel_rule))
12367 {
12368 log_info ("Duplicate rule for use on device in file %s in line %u: %s", rp_file, rule_line, rule_buf);
12369
12370 continue;
12371 }
12372 */
12373
12374 kernel_rules_cnt++;
12375 }
12376
12377 fclose (fp);
12378
12379 all_kernel_rules_cnt[i] = kernel_rules_cnt;
12380
12381 all_kernel_rules_buf[i] = kernel_rules_buf;
12382 }
12383
12384 /**
12385 * merge rules or automatic rule generator
12386 */
12387
12388 uint kernel_rules_cnt = 0;
12389
12390 kernel_rule_t *kernel_rules_buf = NULL;
12391
12392 if (attack_mode == ATTACK_MODE_STRAIGHT)
12393 {
12394 if (rp_files_cnt)
12395 {
12396 kernel_rules_cnt = 1;
12397
12398 uint *repeats = (uint *) mycalloc (rp_files_cnt + 1, sizeof (uint));
12399
12400 repeats[0] = kernel_rules_cnt;
12401
12402 for (uint i = 0; i < rp_files_cnt; i++)
12403 {
12404 kernel_rules_cnt *= all_kernel_rules_cnt[i];
12405
12406 repeats[i + 1] = kernel_rules_cnt;
12407 }
12408
12409 kernel_rules_buf = (kernel_rule_t *) mycalloc (kernel_rules_cnt, sizeof (kernel_rule_t));
12410
12411 memset (kernel_rules_buf, 0, kernel_rules_cnt * sizeof (kernel_rule_t));
12412
12413 for (uint i = 0; i < kernel_rules_cnt; i++)
12414 {
12415 uint out_pos = 0;
12416
12417 kernel_rule_t *out = &kernel_rules_buf[i];
12418
12419 for (uint j = 0; j < rp_files_cnt; j++)
12420 {
12421 uint in_off = (i / repeats[j]) % all_kernel_rules_cnt[j];
12422 uint in_pos;
12423
12424 kernel_rule_t *in = &all_kernel_rules_buf[j][in_off];
12425
12426 for (in_pos = 0; in->cmds[in_pos]; in_pos++, out_pos++)
12427 {
12428 if (out_pos == RULES_MAX - 1)
12429 {
12430 // log_info ("WARNING: Truncating chaining of rule %d and rule %d as maximum number of function calls per rule exceeded", i, in_off);
12431
12432 break;
12433 }
12434
12435 out->cmds[out_pos] = in->cmds[in_pos];
12436 }
12437 }
12438 }
12439
12440 local_free (repeats);
12441 }
12442 else if (rp_gen)
12443 {
12444 uint kernel_rules_avail = 0;
12445
12446 while (kernel_rules_cnt < rp_gen)
12447 {
12448 if (kernel_rules_avail == kernel_rules_cnt)
12449 {
12450 kernel_rules_buf = (kernel_rule_t *) myrealloc (kernel_rules_buf, kernel_rules_avail * sizeof (kernel_rule_t), INCR_RULES * sizeof (kernel_rule_t));
12451
12452 kernel_rules_avail += INCR_RULES;
12453 }
12454
12455 memset (rule_buf, 0, BLOCK_SIZE);
12456
12457 rule_len = (int) generate_random_rule (rule_buf, rp_gen_func_min, rp_gen_func_max);
12458
12459 if (cpu_rule_to_kernel_rule (rule_buf, rule_len, &kernel_rules_buf[kernel_rules_cnt]) == -1) continue;
12460
12461 kernel_rules_cnt++;
12462 }
12463 }
12464 }
12465
12466 /**
12467 * generate NOP rules
12468 */
12469
12470 if (kernel_rules_cnt == 0)
12471 {
12472 kernel_rules_buf = (kernel_rule_t *) mymalloc (sizeof (kernel_rule_t));
12473
12474 kernel_rules_buf[kernel_rules_cnt].cmds[0] = RULE_OP_MANGLE_NOOP;
12475
12476 kernel_rules_cnt++;
12477 }
12478
12479 data.kernel_rules_cnt = kernel_rules_cnt;
12480 data.kernel_rules_buf = kernel_rules_buf;
12481
12482 /**
12483 * OpenCL platforms: detect
12484 */
12485
12486 cl_platform_id platforms[CL_PLATFORMS_MAX];
12487
12488 cl_uint platforms_cnt = 0;
12489
12490 cl_device_id platform_devices[DEVICES_MAX];
12491
12492 cl_uint platform_devices_cnt;
12493
12494 hc_clGetPlatformIDs (CL_PLATFORMS_MAX, platforms, &platforms_cnt);
12495
12496 if (platforms_cnt == 0)
12497 {
12498 log_error ("ERROR: No OpenCL compatible platform found");
12499
12500 return (-1);
12501 }
12502
12503 /**
12504 * OpenCL platforms: For each platform check if we need to unset features that we can not use, eg: temp_retain
12505 */
12506
12507 for (uint platform_id = 0; platform_id < platforms_cnt; platform_id++)
12508 {
12509 cl_platform_id platform = platforms[platform_id];
12510
12511 char platform_vendor[INFOSZ] = { 0 };
12512
12513 hc_clGetPlatformInfo (platform, CL_PLATFORM_VENDOR, sizeof (platform_vendor), platform_vendor, NULL);
12514
12515 #ifdef HAVE_HWMON
12516 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
12517 if (strcmp (platform_vendor, CL_VENDOR_NV) == 0)
12518 {
12519 // make sure that we do not directly control the fan for NVidia
12520
12521 gpu_temp_retain = 0;
12522
12523 data.gpu_temp_retain = gpu_temp_retain;
12524 }
12525 #endif // HAVE_NVML || HAVE_NVAPI
12526 #endif
12527 }
12528
12529 /**
12530 * OpenCL devices: simply push all devices from all platforms into the same device array
12531 */
12532
12533 hc_device_param_t *devices_param = (hc_device_param_t *) mycalloc (DEVICES_MAX, sizeof (hc_device_param_t));
12534
12535 data.devices_param = devices_param;
12536
12537 uint devices_cnt = 0;
12538
12539 uint devices_active = 0;
12540
12541 for (uint platform_id = 0; platform_id < platforms_cnt; platform_id++)
12542 {
12543 if ((opencl_platforms_filter & (1 << platform_id)) == 0) continue;
12544
12545 cl_platform_id platform = platforms[platform_id];
12546
12547 hc_clGetDeviceIDs (platform, CL_DEVICE_TYPE_ALL, DEVICES_MAX, platform_devices, &platform_devices_cnt);
12548
12549 for (uint platform_devices_id = 0; platform_devices_id < platform_devices_cnt; platform_devices_id++)
12550 {
12551 const uint device_id = devices_cnt;
12552
12553 hc_device_param_t *device_param = &data.devices_param[device_id];
12554
12555 device_param->device = platform_devices[platform_devices_id];
12556
12557 device_param->device_id = device_id;
12558
12559 device_param->platform_devices_id = platform_devices_id;
12560
12561 // device_type
12562
12563 cl_device_type device_type;
12564
12565 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_TYPE, sizeof (device_type), &device_type, NULL);
12566
12567 device_type &= ~CL_DEVICE_TYPE_DEFAULT;
12568
12569 device_param->device_type = device_type;
12570
12571 // vendor_id
12572
12573 cl_uint vendor_id = 0;
12574
12575 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_VENDOR_ID, sizeof (vendor_id), &vendor_id, NULL);
12576
12577 device_param->vendor_id = vendor_id;
12578
12579 // device_name
12580
12581 char *device_name = (char *) mymalloc (INFOSZ);
12582
12583 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_NAME, INFOSZ, device_name, NULL);
12584
12585 device_param->device_name = device_name;
12586
12587 // device_version
12588
12589 char *device_version = (char *) mymalloc (INFOSZ);
12590
12591 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_VERSION, INFOSZ, device_version, NULL);
12592
12593 device_param->device_version = device_version;
12594
12595 if (strstr (device_version, "pocl"))
12596 {
12597 // pocl returns the real vendor_id in CL_DEVICE_VENDOR_ID which causes many problems because of hms and missing amd_bfe () etc
12598 // we need to overwrite vendor_id to avoid this. maybe open pocl issue?
12599
12600 cl_uint vendor_id = VENDOR_ID_GENERIC;
12601
12602 device_param->vendor_id = vendor_id;
12603 }
12604
12605 // max_compute_units
12606
12607 cl_uint vector_width;
12608
12609 if (opencl_vector_width == OPENCL_VECTOR_WIDTH)
12610 {
12611 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_NATIVE_VECTOR_WIDTH_INT, sizeof (vector_width), &vector_width, NULL);
12612
12613 if ((vendor_id == VENDOR_ID_NV) && (strstr (device_name, " Ti") || strstr (device_name, " TI")))
12614 {
12615 // Yeah that's a super bad hack, but there's no other attribute we could use
12616
12617 if (vector_width < 2) vector_width *= 2;
12618 }
12619
12620 if (opti_type & OPTI_TYPE_USES_BITS_64)
12621 {
12622 if (vector_width > 1) vector_width /= 2;
12623 }
12624 }
12625 else
12626 {
12627 vector_width = opencl_vector_width;
12628 }
12629
12630 if (vector_width > 8) vector_width = 8;
12631
12632 device_param->vector_width = vector_width;
12633
12634 // max_compute_units
12635
12636 cl_uint device_processors;
12637
12638 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_MAX_COMPUTE_UNITS, sizeof (device_processors), &device_processors, NULL);
12639
12640 device_param->device_processors = device_processors;
12641
12642 // max_mem_alloc_size
12643
12644 cl_ulong device_maxmem_alloc;
12645
12646 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_MAX_MEM_ALLOC_SIZE, sizeof (device_maxmem_alloc), &device_maxmem_alloc, NULL);
12647
12648 device_param->device_maxmem_alloc = device_maxmem_alloc;
12649
12650 // max_mem_alloc_size
12651
12652 cl_ulong device_global_mem;
12653
12654 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_GLOBAL_MEM_SIZE, sizeof (device_global_mem), &device_global_mem, NULL);
12655
12656 device_param->device_global_mem = device_global_mem;
12657
12658 // max_clock_frequency
12659
12660 cl_uint device_maxclock_frequency;
12661
12662 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_MAX_CLOCK_FREQUENCY, sizeof (device_maxclock_frequency), &device_maxclock_frequency, NULL);
12663
12664 device_param->device_maxclock_frequency = device_maxclock_frequency;
12665
12666 // skipped
12667
12668 const u32 skipped1 = ((devices_filter & (1 << device_id)) == 0);
12669 const u32 skipped2 = ((device_types_filter & (device_type)) == 0);
12670
12671 device_param->skipped = (skipped1 || skipped2);
12672
12673 // driver_version
12674
12675 char *driver_version = (char *) mymalloc (INFOSZ);
12676
12677 hc_clGetDeviceInfo (device_param->device, CL_DRIVER_VERSION, INFOSZ, driver_version, NULL);
12678
12679 device_param->driver_version = driver_version;
12680
12681 // device_name_chksum
12682
12683 char *device_name_chksum = (char *) mymalloc (INFOSZ);
12684
12685 #if __x86_64__
12686 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);
12687 #else
12688 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);
12689 #endif
12690
12691 uint device_name_digest[4];
12692
12693 device_name_digest[0] = 0;
12694 device_name_digest[1] = 0;
12695 device_name_digest[2] = 0;
12696 device_name_digest[3] = 0;
12697
12698 md5_64 ((uint *) device_name_chksum, device_name_digest);
12699
12700 sprintf (device_name_chksum, "%08x", device_name_digest[0]);
12701
12702 device_param->device_name_chksum = device_name_chksum;
12703
12704 // device_processor_cores
12705
12706 if (device_type & CL_DEVICE_TYPE_CPU)
12707 {
12708 cl_uint device_processor_cores = 1;
12709
12710 device_param->device_processor_cores = device_processor_cores;
12711 }
12712
12713 if (device_type & CL_DEVICE_TYPE_GPU)
12714 {
12715 if (vendor_id == VENDOR_ID_AMD)
12716 {
12717 cl_uint device_processor_cores = 0;
12718
12719 #define CL_DEVICE_WAVEFRONT_WIDTH_AMD 0x4043
12720
12721 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_WAVEFRONT_WIDTH_AMD, sizeof (device_processor_cores), &device_processor_cores, NULL);
12722
12723 device_param->device_processor_cores = device_processor_cores;
12724 }
12725 else if (vendor_id == VENDOR_ID_NV)
12726 {
12727 cl_uint kernel_exec_timeout = 0;
12728
12729 #define CL_DEVICE_KERNEL_EXEC_TIMEOUT_NV 0x4005
12730
12731 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_KERNEL_EXEC_TIMEOUT_NV, sizeof (kernel_exec_timeout), &kernel_exec_timeout, NULL);
12732
12733 device_param->kernel_exec_timeout = kernel_exec_timeout;
12734
12735 cl_uint device_processor_cores = 0;
12736
12737 #define CL_DEVICE_WARP_SIZE_NV 0x4003
12738
12739 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_WARP_SIZE_NV, sizeof (device_processor_cores), &device_processor_cores, NULL);
12740
12741 device_param->device_processor_cores = device_processor_cores;
12742
12743 cl_uint sm_minor = 0;
12744 cl_uint sm_major = 0;
12745
12746 #define CL_DEVICE_COMPUTE_CAPABILITY_MAJOR_NV 0x4000
12747 #define CL_DEVICE_COMPUTE_CAPABILITY_MINOR_NV 0x4001
12748
12749 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_COMPUTE_CAPABILITY_MINOR_NV, sizeof (sm_minor), &sm_minor, NULL);
12750 hc_clGetDeviceInfo (device_param->device, CL_DEVICE_COMPUTE_CAPABILITY_MAJOR_NV, sizeof (sm_major), &sm_major, NULL);
12751
12752 device_param->sm_minor = sm_minor;
12753 device_param->sm_major = sm_major;
12754 }
12755 else
12756 {
12757 cl_uint device_processor_cores = 1;
12758
12759 device_param->device_processor_cores = device_processor_cores;
12760 }
12761 }
12762
12763 // display results
12764
12765 if ((benchmark == 1 || quiet == 0) && (algorithm_pos == 0))
12766 {
12767 if (device_param->skipped == 0)
12768 {
12769 log_info ("Device #%u: %s, %lu/%lu MB allocatable, %dMhz, %uMCU",
12770 device_id + 1,
12771 device_name,
12772 (unsigned int) (device_maxmem_alloc / 1024 / 1024),
12773 (unsigned int) (device_global_mem / 1024 / 1024),
12774 (unsigned int) (device_maxclock_frequency),
12775 (unsigned int) device_processors);
12776 }
12777 else
12778 {
12779 log_info ("Device #%u: %s, skipped",
12780 device_id + 1,
12781 device_name);
12782 }
12783 }
12784
12785 // common driver check
12786
12787 if (device_param->skipped == 0)
12788 {
12789 if (strstr (device_version, "pocl"))
12790 {
12791 if (force == 0)
12792 {
12793 log_info ("");
12794 log_info ("ATTENTION! All pocl drivers are known to be broken due to broken LLVM <= 3.7");
12795 log_info ("You are STRONGLY encouraged not to use it");
12796 log_info ("You can use --force to override this but do not post error reports if you do so");
12797 log_info ("");
12798
12799 return (-1);
12800 }
12801 }
12802
12803 if (device_type & CL_DEVICE_TYPE_GPU)
12804 {
12805 if (vendor_id == VENDOR_ID_NV)
12806 {
12807 if (device_param->kernel_exec_timeout != 0)
12808 {
12809 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);
12810 if (data.quiet == 0) log_info (" See the wiki on how to disable it: https://hashcat.net/wiki/doku.php?id=timeout_patch");
12811 }
12812 }
12813 else if (vendor_id == VENDOR_ID_AMD)
12814 {
12815 int catalyst_check = (force == 1) ? 0 : 1;
12816
12817 int catalyst_warn = 0;
12818
12819 int catalyst_broken = 0;
12820
12821 if (catalyst_check == 1)
12822 {
12823 catalyst_warn = 1;
12824
12825 // v14.9 and higher
12826 if (atoi (device_param->driver_version) >= 1573)
12827 {
12828 catalyst_warn = 0;
12829 }
12830
12831 catalyst_check = 0;
12832 }
12833
12834 if (catalyst_broken == 1)
12835 {
12836 log_info ("");
12837 log_info ("ATTENTION! The installed catalyst driver in your system is known to be broken!");
12838 log_info ("It will pass over cracked hashes and does not report them as cracked");
12839 log_info ("You are STRONGLY encouraged not to use it");
12840 log_info ("You can use --force to override this but do not post error reports if you do so");
12841 log_info ("");
12842
12843 return (-1);
12844 }
12845
12846 if (catalyst_warn == 1)
12847 {
12848 log_info ("");
12849 log_info ("ATTENTION! Unsupported or incorrect installed catalyst driver detected!");
12850 log_info ("You are STRONGLY encouraged to use the official supported catalyst driver for good reasons");
12851 log_info ("See oclHashcat's homepage for official supported catalyst drivers");
12852 #ifdef _WIN
12853 log_info ("Also see: http://hashcat.net/wiki/doku.php?id=upgrading_amd_drivers_how_to");
12854 #endif
12855 log_info ("You can use --force to override this but do not post error reports if you do so");
12856 log_info ("");
12857
12858 return (-1);
12859 }
12860 }
12861 }
12862
12863 devices_active++;
12864 }
12865
12866 // next please
12867
12868 devices_cnt++;
12869 }
12870 }
12871
12872 if (devices_active == 0)
12873 {
12874 log_error ("ERROR: No devices found/left");
12875
12876 return (-1);
12877 }
12878
12879 data.devices_cnt = devices_cnt;
12880
12881 data.devices_active = devices_active;
12882
12883 if ((benchmark == 1 || quiet == 0) && (algorithm_pos == 0))
12884 {
12885 log_info ("");
12886 }
12887
12888 /**
12889 * OpenCL devices: allocate buffer for device specific information
12890 */
12891
12892 #ifdef HAVE_HWMON
12893 int *temp_retain_fanspeed_value = (int *) mycalloc (devices_cnt, sizeof (int));
12894
12895 #ifdef HAVE_ADL
12896 ADLOD6MemClockState *od_clock_mem_status = (ADLOD6MemClockState *) mycalloc (devices_cnt, sizeof (ADLOD6MemClockState));
12897
12898 int *od_power_control_status = (int *) mycalloc (devices_cnt, sizeof (int));
12899 #endif // ADL
12900 #endif
12901
12902 /**
12903 * enable custom signal handler(s)
12904 */
12905
12906 if (benchmark == 0)
12907 {
12908 hc_signal (sigHandler_default);
12909 }
12910 else
12911 {
12912 hc_signal (sigHandler_benchmark);
12913 }
12914
12915 /**
12916 * User-defined GPU temp handling
12917 */
12918
12919 #ifdef HAVE_HWMON
12920 if (gpu_temp_disable == 1)
12921 {
12922 gpu_temp_abort = 0;
12923 gpu_temp_retain = 0;
12924 }
12925
12926 if ((gpu_temp_abort != 0) && (gpu_temp_retain != 0))
12927 {
12928 if (gpu_temp_abort < gpu_temp_retain)
12929 {
12930 log_error ("ERROR: invalid values for gpu-temp-abort. Parameter gpu-temp-abort is less than gpu-temp-retain.");
12931
12932 return (-1);
12933 }
12934 }
12935
12936 data.gpu_temp_disable = gpu_temp_disable;
12937 data.gpu_temp_abort = gpu_temp_abort;
12938 data.gpu_temp_retain = gpu_temp_retain;
12939 #endif
12940
12941 /**
12942 * inform the user
12943 */
12944
12945 if (data.quiet == 0)
12946 {
12947 log_info ("Hashes: %u hashes; %u unique digests, %u unique salts", hashes_cnt_orig, digests_cnt, salts_cnt);
12948
12949 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);
12950
12951 if (attack_mode == ATTACK_MODE_STRAIGHT)
12952 {
12953 log_info ("Rules: %u", kernel_rules_cnt);
12954 }
12955
12956 if (opti_type)
12957 {
12958 log_info ("Applicable Optimizers:");
12959
12960 for (uint i = 0; i < 32; i++)
12961 {
12962 const uint opti_bit = 1u << i;
12963
12964 if (opti_type & opti_bit) log_info ("* %s", stroptitype (opti_bit));
12965 }
12966 }
12967
12968 /**
12969 * Watchdog and Temperature balance
12970 */
12971
12972 #ifdef HAVE_HWMON
12973 if (gpu_temp_abort == 0)
12974 {
12975 log_info ("Watchdog: Temperature abort trigger disabled");
12976 }
12977 else
12978 {
12979 log_info ("Watchdog: Temperature abort trigger set to %uc", gpu_temp_abort);
12980 }
12981
12982 if (gpu_temp_retain == 0)
12983 {
12984 log_info ("Watchdog: Temperature retain trigger disabled");
12985 }
12986 else
12987 {
12988 log_info ("Watchdog: Temperature retain trigger set to %uc", gpu_temp_retain);
12989 }
12990 #endif
12991 }
12992
12993 if (data.quiet == 0) log_info ("");
12994
12995 /**
12996 * HM devices: init
12997 */
12998
12999 #ifdef HAVE_HWMON
13000 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
13001 hm_attrs_t hm_adapters_nv[DEVICES_MAX] = { { { 0 }, 0, 0 } };
13002 #endif
13003
13004 #ifdef HAVE_ADL
13005 hm_attrs_t hm_adapters_amd[DEVICES_MAX] = { { { 0 }, 0, 0 } };
13006 #endif
13007
13008 if (gpu_temp_disable == 0)
13009 {
13010 #if defined(WIN) && defined(HAVE_NVAPI)
13011 if (NvAPI_Initialize () == NVAPI_OK)
13012 {
13013 HM_ADAPTER_NV nvGPUHandle[DEVICES_MAX];
13014
13015 int tmp_in = hm_get_adapter_index_nv (nvGPUHandle);
13016
13017 int tmp_out = 0;
13018
13019 for (int i = 0; i < tmp_in; i++)
13020 {
13021 hm_adapters_nv[tmp_out++].adapter_index.nv = nvGPUHandle[i];
13022 }
13023
13024 for (int i = 0; i < tmp_out; i++)
13025 {
13026 NvU32 speed;
13027
13028 if (NvAPI_GPU_GetTachReading (hm_adapters_nv[i].adapter_index.nv, &speed) != NVAPI_NOT_SUPPORTED) hm_adapters_nv[i].fan_supported = 1;
13029 }
13030 }
13031 #endif // WIN && HAVE_NVAPI
13032
13033 #if defined(LINUX) && defined(HAVE_NVML)
13034 HM_LIB hm_dll_nv = hm_init (VENDOR_ID_NV);
13035
13036 data.hm_dll_nv = hm_dll_nv;
13037
13038 if (hm_dll_nv)
13039 {
13040 if (hc_NVML_nvmlInit (hm_dll_nv) == NVML_SUCCESS)
13041 {
13042 HM_ADAPTER_NV nvGPUHandle[DEVICES_MAX];
13043
13044 int tmp_in = hm_get_adapter_index_nv (nvGPUHandle);
13045
13046 int tmp_out = 0;
13047
13048 for (int i = 0; i < tmp_in; i++)
13049 {
13050 hm_adapters_nv[tmp_out++].adapter_index.nv = nvGPUHandle[i];
13051 }
13052
13053 for (int i = 0; i < tmp_out; i++)
13054 {
13055 unsigned int speed;
13056
13057 if (hc_NVML_nvmlDeviceGetFanSpeed (hm_dll_nv, 1, hm_adapters_nv[i].adapter_index.nv, &speed) != NVML_ERROR_NOT_SUPPORTED) hm_adapters_nv[i].fan_supported = 1;
13058 }
13059 }
13060 }
13061 #endif // LINUX && HAVE_NVML
13062
13063 #ifdef HAVE_ADL
13064 HM_LIB hm_dll_amd = hm_init (VENDOR_ID_AMD);
13065
13066 data.hm_dll_amd = hm_dll_amd;
13067
13068 if (hm_dll_amd)
13069 {
13070 if (hc_ADL_Main_Control_Create (hm_dll_amd, ADL_Main_Memory_Alloc, 0) == ADL_OK)
13071 {
13072 // total number of adapters
13073
13074 int hm_adapters_num;
13075
13076 if (get_adapters_num_amd (hm_dll_amd, &hm_adapters_num) != 0) return (-1);
13077
13078 // adapter info
13079
13080 LPAdapterInfo lpAdapterInfo = hm_get_adapter_info_amd (hm_dll_amd, hm_adapters_num);
13081
13082 if (lpAdapterInfo == NULL) return (-1);
13083
13084 // get a list (of ids of) valid/usable adapters
13085
13086 int num_adl_adapters = 0;
13087
13088 u32 *valid_adl_device_list = hm_get_list_valid_adl_adapters (hm_adapters_num, &num_adl_adapters, lpAdapterInfo);
13089
13090 if (num_adl_adapters > 0)
13091 {
13092 hc_thread_mutex_lock (mux_adl);
13093
13094 // hm_get_opencl_busid_devid (hm_adapters_amd, devices_all_cnt, devices_all);
13095
13096 hm_get_adapter_index_amd (hm_adapters_amd, valid_adl_device_list, num_adl_adapters, lpAdapterInfo);
13097
13098 hm_get_overdrive_version (hm_dll_amd, hm_adapters_amd, valid_adl_device_list, num_adl_adapters, lpAdapterInfo);
13099 hm_check_fanspeed_control (hm_dll_amd, hm_adapters_amd, valid_adl_device_list, num_adl_adapters, lpAdapterInfo);
13100
13101 hc_thread_mutex_unlock (mux_adl);
13102 }
13103
13104 myfree (valid_adl_device_list);
13105 myfree (lpAdapterInfo);
13106 }
13107 }
13108 #endif // HAVE_ADL
13109 }
13110
13111 /**
13112 * HM devices: copy
13113 */
13114
13115 if (gpu_temp_disable == 0)
13116 {
13117 for (uint device_id = 0; device_id < devices_cnt; device_id++)
13118 {
13119 hc_device_param_t *device_param = &data.devices_param[device_id];
13120
13121 if ((device_param->device_type & CL_DEVICE_TYPE_GPU) == 0) continue;
13122
13123 if (device_param->skipped) continue;
13124
13125 const uint platform_devices_id = device_param->platform_devices_id;
13126
13127 #if defined(HAVE_NVML) || defined(HAVE_NVAPI)
13128 if (device_param->vendor_id == VENDOR_ID_NV)
13129 {
13130 memcpy (&data.hm_device[device_id], &hm_adapters_nv[platform_devices_id], sizeof (hm_attrs_t));
13131 }
13132 #endif
13133
13134 #ifdef HAVE_ADL
13135 if (device_param->vendor_id == VENDOR_ID_AMD)
13136 {
13137 memcpy (&data.hm_device[device_id], &hm_adapters_amd[platform_devices_id], sizeof (hm_attrs_t));
13138 }
13139 #endif
13140 }
13141 }
13142
13143 /*
13144 * Temporary fix:
13145 * with AMD r9 295x cards it seems that we need to set the powertune value just AFTER the ocl init stuff
13146 * otherwise after hc_clCreateContext () etc, powertune value was set back to "normal" and cards unfortunately
13147 * were not working @ full speed (setting hc_ADL_Overdrive_PowerControl_Set () here seems to fix the problem)
13148 * Driver / ADL bug?
13149 */
13150
13151 #ifdef HAVE_ADL
13152 if (powertune_enable == 1)
13153 {
13154 hc_thread_mutex_lock (mux_adl);
13155
13156 for (uint device_id = 0; device_id < devices_cnt; device_id++)
13157 {
13158 hc_device_param_t *device_param = &data.devices_param[device_id];
13159
13160 if (device_param->skipped) continue;
13161
13162 if (data.hm_device[device_id].od_version == 6)
13163 {
13164 // set powertune value only
13165
13166 int powertune_supported = 0;
13167
13168 int ADL_rc = 0;
13169
13170 if ((ADL_rc = hc_ADL_Overdrive6_PowerControl_Caps (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &powertune_supported)) != ADL_OK)
13171 {
13172 log_error ("ERROR: Failed to get ADL PowerControl Capabilities");
13173
13174 return (-1);
13175 }
13176
13177 if (powertune_supported != 0)
13178 {
13179 // powertune set
13180 ADLOD6PowerControlInfo powertune = {0, 0, 0, 0, 0};
13181
13182 if ((ADL_rc = hc_ADL_Overdrive_PowerControlInfo_Get (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &powertune)) != ADL_OK)
13183 {
13184 log_error ("ERROR: Failed to get current ADL PowerControl settings");
13185
13186 return (-1);
13187 }
13188
13189 if ((ADL_rc = hc_ADL_Overdrive_PowerControl_Set (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, powertune.iMaxValue)) != ADL_OK)
13190 {
13191 log_error ("ERROR: Failed to set new ADL PowerControl values");
13192
13193 return (-1);
13194 }
13195 }
13196 }
13197 }
13198
13199 hc_thread_mutex_unlock (mux_adl);
13200 }
13201 #endif // HAVE_ADK
13202 #endif // HAVE_HWMON
13203
13204 uint kernel_blocks_all = 0;
13205
13206 for (uint device_id = 0; device_id < devices_cnt; device_id++)
13207 {
13208 /**
13209 * host buffer
13210 */
13211
13212 hc_device_param_t *device_param = &data.devices_param[device_id];
13213
13214 if (device_param->skipped) continue;
13215
13216 /**
13217 * device properties
13218 */
13219
13220 char *device_name_chksum = device_param->device_name_chksum;
13221
13222 uint device_processors = device_param->device_processors;
13223
13224 uint device_processor_cores = device_param->device_processor_cores;
13225
13226 cl_device_type device_type = device_param->device_type;
13227
13228 /**
13229 * create context for each device
13230 */
13231
13232 device_param->context = hc_clCreateContext (NULL, 1, &device_param->device, NULL, NULL);
13233
13234 /**
13235 * create command-queue
13236 */
13237
13238 // not supported with NV
13239 // device_param->command_queue = hc_clCreateCommandQueueWithProperties (device_param->context, device_param->device, NULL);
13240
13241 device_param->command_queue = hc_clCreateCommandQueue (device_param->context, device_param->device, 0);
13242
13243 /**
13244 * create input buffers on device
13245 */
13246
13247 uint kernel_threads = KERNEL_THREADS;
13248
13249 // bcrypt
13250 if (hash_mode == 3200) kernel_threads = 8;
13251 if (hash_mode == 9000) kernel_threads = 8;
13252
13253 if (device_type & CL_DEVICE_TYPE_CPU)
13254 {
13255 if (benchmark_mode == 0)
13256 {
13257 if (kernel_accel > 16)
13258 {
13259 kernel_accel = 16;
13260 }
13261 }
13262 else
13263 {
13264 if (kernel_accel > 64)
13265 {
13266 kernel_accel = 64;
13267 }
13268 }
13269 }
13270
13271 uint kernel_power = device_processors * kernel_threads * kernel_accel;
13272 uint kernel_blocks = kernel_power;
13273
13274 device_param->kernel_threads = kernel_threads;
13275 device_param->kernel_power_user = kernel_power;
13276 device_param->kernel_blocks_user = kernel_blocks;
13277
13278 kernel_blocks_all += kernel_blocks;
13279
13280 uint size_pws = kernel_power * sizeof (pw_t);
13281
13282 uint size_tmps = 4;
13283
13284 switch (hash_mode)
13285 {
13286 case 400: size_tmps = kernel_blocks * sizeof (phpass_tmp_t); break;
13287 case 500: size_tmps = kernel_blocks * sizeof (md5crypt_tmp_t); break;
13288 case 501: size_tmps = kernel_blocks * sizeof (md5crypt_tmp_t); break;
13289 case 1600: size_tmps = kernel_blocks * sizeof (md5crypt_tmp_t); break;
13290 case 1800: size_tmps = kernel_blocks * sizeof (sha512crypt_tmp_t); break;
13291 case 2100: size_tmps = kernel_blocks * sizeof (dcc2_tmp_t); break;
13292 case 2500: size_tmps = kernel_blocks * sizeof (wpa_tmp_t); break;
13293 case 3200: size_tmps = kernel_blocks * sizeof (bcrypt_tmp_t); break;
13294 case 5200: size_tmps = kernel_blocks * sizeof (pwsafe3_tmp_t); break;
13295 case 5800: size_tmps = kernel_blocks * sizeof (androidpin_tmp_t); break;
13296 case 6211:
13297 case 6212:
13298 case 6213: size_tmps = kernel_blocks * sizeof (tc_tmp_t); break;
13299 case 6221:
13300 case 6222:
13301 case 6223: size_tmps = kernel_blocks * sizeof (tc64_tmp_t); break;
13302 case 6231:
13303 case 6232:
13304 case 6233: size_tmps = kernel_blocks * sizeof (tc_tmp_t); break;
13305 case 6241:
13306 case 6242:
13307 case 6243: size_tmps = kernel_blocks * sizeof (tc_tmp_t); break;
13308 case 6300: size_tmps = kernel_blocks * sizeof (md5crypt_tmp_t); break;
13309 case 6400: size_tmps = kernel_blocks * sizeof (sha256aix_tmp_t); break;
13310 case 6500: size_tmps = kernel_blocks * sizeof (sha512aix_tmp_t); break;
13311 case 6600: size_tmps = kernel_blocks * sizeof (agilekey_tmp_t); break;
13312 case 6700: size_tmps = kernel_blocks * sizeof (sha1aix_tmp_t); break;
13313 case 6800: size_tmps = kernel_blocks * sizeof (lastpass_tmp_t); break;
13314 case 7100: size_tmps = kernel_blocks * sizeof (pbkdf2_sha512_tmp_t); break;
13315 case 7200: size_tmps = kernel_blocks * sizeof (pbkdf2_sha512_tmp_t); break;
13316 case 7400: size_tmps = kernel_blocks * sizeof (sha256crypt_tmp_t); break;
13317 case 7900: size_tmps = kernel_blocks * sizeof (drupal7_tmp_t); break;
13318 case 8200: size_tmps = kernel_blocks * sizeof (pbkdf2_sha512_tmp_t); break;
13319 case 8800: size_tmps = kernel_blocks * sizeof (androidfde_tmp_t); break;
13320 case 8900: size_tmps = kernel_blocks * sizeof (scrypt_tmp_t); break;
13321 case 9000: size_tmps = kernel_blocks * sizeof (pwsafe2_tmp_t); break;
13322 case 9100: size_tmps = kernel_blocks * sizeof (lotus8_tmp_t); break;
13323 case 9200: size_tmps = kernel_blocks * sizeof (pbkdf2_sha256_tmp_t); break;
13324 case 9300: size_tmps = kernel_blocks * sizeof (scrypt_tmp_t); break;
13325 case 9400: size_tmps = kernel_blocks * sizeof (office2007_tmp_t); break;
13326 case 9500: size_tmps = kernel_blocks * sizeof (office2010_tmp_t); break;
13327 case 9600: size_tmps = kernel_blocks * sizeof (office2013_tmp_t); break;
13328 case 10000: size_tmps = kernel_blocks * sizeof (pbkdf2_sha256_tmp_t); break;
13329 case 10200: size_tmps = kernel_blocks * sizeof (cram_md5_t); break;
13330 case 10300: size_tmps = kernel_blocks * sizeof (saph_sha1_tmp_t); break;
13331 case 10500: size_tmps = kernel_blocks * sizeof (pdf14_tmp_t); break;
13332 case 10700: size_tmps = kernel_blocks * sizeof (pdf17l8_tmp_t); break;
13333 case 10900: size_tmps = kernel_blocks * sizeof (pbkdf2_sha256_tmp_t); break;
13334 case 11300: size_tmps = kernel_blocks * sizeof (bitcoin_wallet_tmp_t); break;
13335 case 11600: size_tmps = kernel_blocks * sizeof (seven_zip_tmp_t); break;
13336 case 11900: size_tmps = kernel_blocks * sizeof (pbkdf2_md5_tmp_t); break;
13337 case 12000: size_tmps = kernel_blocks * sizeof (pbkdf2_sha1_tmp_t); break;
13338 case 12100: size_tmps = kernel_blocks * sizeof (pbkdf2_sha512_tmp_t); break;
13339 case 12200: size_tmps = kernel_blocks * sizeof (ecryptfs_tmp_t); break;
13340 case 12300: size_tmps = kernel_blocks * sizeof (oraclet_tmp_t); break;
13341 case 12400: size_tmps = kernel_blocks * sizeof (bsdicrypt_tmp_t); break;
13342 case 12500: size_tmps = kernel_blocks * sizeof (rar3_tmp_t); break;
13343 case 12700: size_tmps = kernel_blocks * sizeof (mywallet_tmp_t); break;
13344 case 12800: size_tmps = kernel_blocks * sizeof (pbkdf2_sha256_tmp_t); break;
13345 case 12900: size_tmps = kernel_blocks * sizeof (pbkdf2_sha256_tmp_t); break;
13346 case 13000: size_tmps = kernel_blocks * sizeof (pbkdf2_sha256_tmp_t); break;
13347 };
13348
13349 uint size_hooks = 4;
13350
13351 if ((opts_type & OPTS_TYPE_HOOK12) || (opts_type & OPTS_TYPE_HOOK23))
13352 {
13353 // insert correct hook size
13354 }
13355
13356 // we can optimize some stuff here...
13357
13358 device_param->size_pws = size_pws;
13359 device_param->size_tmps = size_tmps;
13360 device_param->size_hooks = size_hooks;
13361
13362 uint size_root_css = SP_PW_MAX * sizeof (cs_t);
13363 uint size_markov_css = SP_PW_MAX * CHARSIZ * sizeof (cs_t);
13364
13365 device_param->size_root_css = size_root_css;
13366 device_param->size_markov_css = size_markov_css;
13367
13368 uint size_results = KERNEL_THREADS * sizeof (uint);
13369
13370 device_param->size_results = size_results;
13371
13372 uint size_rules = kernel_rules_cnt * sizeof (kernel_rule_t);
13373 uint size_rules_c = KERNEL_RULES * sizeof (kernel_rule_t);
13374
13375 uint size_plains = digests_cnt * sizeof (plain_t);
13376 uint size_salts = salts_cnt * sizeof (salt_t);
13377 uint size_esalts = salts_cnt * esalt_size;
13378
13379 device_param->size_plains = size_plains;
13380 device_param->size_digests = size_digests;
13381 device_param->size_shown = size_shown;
13382 device_param->size_salts = size_salts;
13383
13384 uint size_combs = KERNEL_COMBS * sizeof (comb_t);
13385 uint size_bfs = KERNEL_BFS * sizeof (bf_t);
13386 uint size_tm = 32 * sizeof (bs_word_t);
13387
13388 u64 size_scryptV = 1;
13389
13390 if ((hash_mode == 8900) || (hash_mode == 9300))
13391 {
13392 uint tmto_start = 0;
13393 uint tmto_stop = 10;
13394
13395 if (scrypt_tmto)
13396 {
13397 tmto_start = scrypt_tmto;
13398 }
13399 else
13400 {
13401 // in case the user did not specify the tmto manually
13402 // use some values known to run best (tested on 290x for AMD and 980ti for NV)
13403 // but set the lower end only in case the user has a device with too less memory
13404
13405 if (hash_mode == 8900)
13406 {
13407 if (device_param->vendor_id == VENDOR_ID_AMD)
13408 {
13409 tmto_start = 1;
13410 }
13411 else if (device_param->vendor_id == VENDOR_ID_NV)
13412 {
13413 tmto_start = 3;
13414 }
13415 }
13416 else if (hash_mode == 9300)
13417 {
13418 if (device_param->vendor_id == VENDOR_ID_AMD)
13419 {
13420 tmto_start = 3;
13421 }
13422 else if (device_param->vendor_id == VENDOR_ID_NV)
13423 {
13424 tmto_start = 5;
13425 }
13426 }
13427 }
13428
13429 if (quiet == 0) log_info ("");
13430
13431 uint shader_per_mp = 1;
13432
13433 if (device_param->vendor_id == VENDOR_ID_AMD)
13434 {
13435 shader_per_mp = 8;
13436 }
13437 else if (device_param->vendor_id == VENDOR_ID_NV)
13438 {
13439 shader_per_mp = 32;
13440 }
13441
13442 for (uint tmto = tmto_start; tmto < tmto_stop; tmto++)
13443 {
13444 // TODO: in theory the following calculation needs to be done per salt, not global
13445 // we assume all hashes have the same scrypt settings
13446
13447 size_scryptV = (128 * data.salts_buf[0].scrypt_r) * data.salts_buf[0].scrypt_N;
13448
13449 size_scryptV /= 1 << tmto;
13450
13451 size_scryptV *= device_processors * device_processor_cores * shader_per_mp;
13452
13453 if (size_scryptV > device_param->device_maxmem_alloc)
13454 {
13455 if (quiet == 0) log_info ("WARNING: not enough device memory allocatable to use --scrypt-tmto %d, increasing...", tmto);
13456
13457 continue;
13458 }
13459
13460 for (uint salts_pos = 0; salts_pos < data.salts_cnt; salts_pos++)
13461 {
13462 data.salts_buf[salts_pos].scrypt_tmto = tmto;
13463 data.salts_buf[salts_pos].scrypt_phy = device_processors * device_processor_cores * shader_per_mp;
13464 }
13465
13466 break;
13467 }
13468
13469 if (data.salts_buf[0].scrypt_phy == 0)
13470 {
13471 log_error ("ERROR: can't allocate enough device memory");
13472
13473 return -1;
13474 }
13475
13476 if (quiet == 0) log_info ("");
13477 if (quiet == 0) log_info ("SCRYPT tmto optimizer value set to: %u, mem: %u\n", data.salts_buf[0].scrypt_tmto, size_scryptV);
13478 }
13479
13480 /**
13481 * default building options
13482 */
13483
13484 char build_opts[1024];
13485
13486 // we don't have sm_* on vendors not NV but it doesn't matter
13487
13488 sprintf (build_opts, "-I%s/ -DVENDOR_ID=%d -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);
13489
13490 /**
13491 * main kernel
13492 */
13493
13494 {
13495 /**
13496 * kernel source filename
13497 */
13498
13499 char source_file[256] = { 0 };
13500
13501 generate_source_kernel_filename (attack_exec, attack_kern, kern_type, shared_dir, source_file);
13502
13503 struct stat sst;
13504
13505 if (stat (source_file, &sst) == -1)
13506 {
13507 log_error ("ERROR: %s: %s", source_file, strerror (errno));
13508
13509 return -1;
13510 }
13511
13512 /**
13513 * kernel cached filename
13514 */
13515
13516 char cached_file[256] = { 0 };
13517
13518 generate_cached_kernel_filename (attack_exec, attack_kern, kern_type, profile_dir, device_name_chksum, cached_file);
13519
13520 int cached = 1;
13521
13522 struct stat cst;
13523
13524 if (stat (cached_file, &cst) == -1)
13525 {
13526 cached = 0;
13527 }
13528
13529 /**
13530 * kernel compile or load
13531 */
13532
13533 size_t *kernel_lengths = (size_t *) mymalloc (sizeof (size_t));
13534
13535 const u8 **kernel_sources = (const u8 **) mymalloc (sizeof (u8 *));
13536
13537 if (force_jit_compilation == -1)
13538 {
13539 if (cached == 0)
13540 {
13541 if (quiet == 0) log_info ("Device #%u: Kernel %s not found in cache! Building may take a while...", device_id + 1, cached_file);
13542
13543 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
13544
13545 device_param->program = hc_clCreateProgramWithSource (device_param->context, 1, (const char **) kernel_sources, NULL);
13546
13547 hc_clBuildProgram (device_param->program, 1, &device_param->device, build_opts, NULL, NULL);
13548
13549 size_t binary_size;
13550
13551 clGetProgramInfo (device_param->program, CL_PROGRAM_BINARY_SIZES, sizeof (size_t), &binary_size, NULL);
13552
13553 u8 *binary = (u8 *) mymalloc (binary_size);
13554
13555 clGetProgramInfo (device_param->program, CL_PROGRAM_BINARIES, sizeof (binary), &binary, NULL);
13556
13557 writeProgramBin (cached_file, binary, binary_size);
13558
13559 local_free (binary);
13560 }
13561 else
13562 {
13563 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, cached_file, cst.st_size);
13564
13565 load_kernel (cached_file, 1, kernel_lengths, kernel_sources);
13566
13567 device_param->program = hc_clCreateProgramWithBinary (device_param->context, 1, &device_param->device, kernel_lengths, (const u8 **) kernel_sources, NULL);
13568
13569 hc_clBuildProgram (device_param->program, 1, &device_param->device, build_opts, NULL, NULL);
13570 }
13571 }
13572 else
13573 {
13574 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, source_file, sst.st_size);
13575
13576 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
13577
13578 device_param->program = hc_clCreateProgramWithSource (device_param->context, 1, (const char **) kernel_sources, NULL);
13579
13580 if (force_jit_compilation == 1500)
13581 {
13582 sprintf (build_opts, "%s -DDESCRYPT_SALT=%d", build_opts, data.salts_buf[0].salt_buf[0]);
13583 }
13584 else if (force_jit_compilation == 8900)
13585 {
13586 sprintf (build_opts, "%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);
13587 }
13588
13589 hc_clBuildProgram (device_param->program, 1, &device_param->device, build_opts, NULL, NULL);
13590 }
13591
13592 local_free (kernel_lengths);
13593 local_free (kernel_sources[0]);
13594 local_free (kernel_sources);
13595
13596 // this is mostly for debug
13597
13598 size_t ret_val_size = 0;
13599
13600 clGetProgramBuildInfo (device_param->program, device_param->device, CL_PROGRAM_BUILD_LOG, 0, NULL, &ret_val_size);
13601
13602 if (ret_val_size > 2)
13603 {
13604 char *build_log = (char *) mymalloc (ret_val_size + 1);
13605
13606 memset (build_log, 0, ret_val_size + 1);
13607
13608 clGetProgramBuildInfo (device_param->program, device_param->device, CL_PROGRAM_BUILD_LOG, ret_val_size, build_log, NULL);
13609
13610 puts (build_log);
13611
13612 myfree (build_log);
13613 }
13614 }
13615
13616 /**
13617 * word generator kernel
13618 */
13619
13620 if (attack_mode != ATTACK_MODE_STRAIGHT)
13621 {
13622 /**
13623 * kernel mp source filename
13624 */
13625
13626 char source_file[256] = { 0 };
13627
13628 generate_source_kernel_mp_filename (opti_type, opts_type, shared_dir, source_file);
13629
13630 struct stat sst;
13631
13632 if (stat (source_file, &sst) == -1)
13633 {
13634 log_error ("ERROR: %s: %s", source_file, strerror (errno));
13635
13636 return -1;
13637 }
13638
13639 /**
13640 * kernel mp cached filename
13641 */
13642
13643 char cached_file[256] = { 0 };
13644
13645 generate_cached_kernel_mp_filename (opti_type, opts_type, profile_dir, device_name_chksum, cached_file);
13646
13647 int cached = 1;
13648
13649 struct stat cst;
13650
13651 if (stat (cached_file, &cst) == -1)
13652 {
13653 cached = 0;
13654 }
13655
13656 /**
13657 * kernel compile or load
13658 */
13659
13660 size_t *kernel_lengths = (size_t *) mymalloc (sizeof (size_t));
13661
13662 const u8 **kernel_sources = (const u8 **) mymalloc (sizeof (u8 *));
13663
13664 if (cached == 0)
13665 {
13666 if (quiet == 0) log_info ("Device #%u: Kernel %s not found in cache! Building may take a while...", device_id + 1, cached_file);
13667
13668 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
13669
13670 device_param->program_mp = hc_clCreateProgramWithSource (device_param->context, 1, (const char **) kernel_sources, NULL);
13671
13672 hc_clBuildProgram (device_param->program_mp, 1, &device_param->device, build_opts, NULL, NULL);
13673
13674 size_t binary_size;
13675
13676 clGetProgramInfo (device_param->program_mp, CL_PROGRAM_BINARY_SIZES, sizeof (size_t), &binary_size, NULL);
13677
13678 u8 *binary = (u8 *) mymalloc (binary_size);
13679
13680 clGetProgramInfo (device_param->program_mp, CL_PROGRAM_BINARIES, sizeof (binary), &binary, NULL);
13681
13682 writeProgramBin (cached_file, binary, binary_size);
13683
13684 local_free (binary);
13685 }
13686 else
13687 {
13688 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, cached_file, cst.st_size);
13689
13690 load_kernel (cached_file, 1, kernel_lengths, kernel_sources);
13691
13692 device_param->program_mp = hc_clCreateProgramWithBinary (device_param->context, 1, &device_param->device, kernel_lengths, (const u8 **) kernel_sources, NULL);
13693
13694 hc_clBuildProgram (device_param->program_mp, 1, &device_param->device, build_opts, NULL, NULL);
13695 }
13696
13697 local_free (kernel_lengths);
13698 local_free (kernel_sources[0]);
13699 local_free (kernel_sources);
13700
13701 // this is mostly for debug
13702
13703 size_t ret_val_size = 0;
13704
13705 clGetProgramBuildInfo (device_param->program_mp, device_param->device, CL_PROGRAM_BUILD_LOG, 0, NULL, &ret_val_size);
13706
13707 if (ret_val_size > 2)
13708 {
13709 char *build_log = (char *) mymalloc (ret_val_size + 1);
13710
13711 memset (build_log, 0, ret_val_size + 1);
13712
13713 clGetProgramBuildInfo (device_param->program_mp, device_param->device, CL_PROGRAM_BUILD_LOG, ret_val_size, build_log, NULL);
13714
13715 puts (build_log);
13716
13717 myfree (build_log);
13718 }
13719 }
13720
13721 /**
13722 * amplifier kernel
13723 */
13724
13725 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
13726 {
13727
13728 }
13729 else
13730 {
13731 /**
13732 * kernel amp source filename
13733 */
13734
13735 char source_file[256] = { 0 };
13736
13737 generate_source_kernel_amp_filename (attack_kern, shared_dir, source_file);
13738
13739 struct stat sst;
13740
13741 if (stat (source_file, &sst) == -1)
13742 {
13743 log_error ("ERROR: %s: %s", source_file, strerror (errno));
13744
13745 return -1;
13746 }
13747
13748 /**
13749 * kernel amp cached filename
13750 */
13751
13752 char cached_file[256] = { 0 };
13753
13754 generate_cached_kernel_amp_filename (attack_kern, profile_dir, device_name_chksum, cached_file);
13755
13756 int cached = 1;
13757
13758 struct stat cst;
13759
13760 if (stat (cached_file, &cst) == -1)
13761 {
13762 cached = 0;
13763 }
13764
13765 /**
13766 * kernel compile or load
13767 */
13768
13769 size_t *kernel_lengths = (size_t *) mymalloc (sizeof (size_t));
13770
13771 const u8 **kernel_sources = (const u8 **) mymalloc (sizeof (u8 *));
13772
13773 if (cached == 0)
13774 {
13775 if (quiet == 0) log_info ("Device #%u: Kernel %s not found in cache! Building may take a while...", device_id + 1, cached_file);
13776
13777 load_kernel (source_file, 1, kernel_lengths, kernel_sources);
13778
13779 device_param->program_amp = hc_clCreateProgramWithSource (device_param->context, 1, (const char **) kernel_sources, NULL);
13780
13781 hc_clBuildProgram (device_param->program_amp, 1, &device_param->device, build_opts, NULL, NULL);
13782
13783 size_t binary_size;
13784
13785 clGetProgramInfo (device_param->program_amp, CL_PROGRAM_BINARY_SIZES, sizeof (size_t), &binary_size, NULL);
13786
13787 u8 *binary = (u8 *) mymalloc (binary_size);
13788
13789 clGetProgramInfo (device_param->program_amp, CL_PROGRAM_BINARIES, sizeof (binary), &binary, NULL);
13790
13791 writeProgramBin (cached_file, binary, binary_size);
13792
13793 local_free (binary);
13794 }
13795 else
13796 {
13797 if (quiet == 0) log_info ("Device #%u: Kernel %s (%ld bytes)", device_id + 1, cached_file, cst.st_size);
13798
13799 load_kernel (cached_file, 1, kernel_lengths, kernel_sources);
13800
13801 device_param->program_amp = hc_clCreateProgramWithBinary (device_param->context, 1, &device_param->device, kernel_lengths, (const u8 **) kernel_sources, NULL);
13802
13803 hc_clBuildProgram (device_param->program_amp, 1, &device_param->device, build_opts, NULL, NULL);
13804 }
13805
13806 local_free (kernel_lengths);
13807 local_free (kernel_sources[0]);
13808 local_free (kernel_sources);
13809
13810 // this is mostly for debug
13811
13812 size_t ret_val_size = 0;
13813
13814 clGetProgramBuildInfo (device_param->program_amp, device_param->device, CL_PROGRAM_BUILD_LOG, 0, NULL, &ret_val_size);
13815
13816 if (ret_val_size > 2)
13817 {
13818 char *build_log = (char *) mymalloc (ret_val_size + 1);
13819
13820 memset (build_log, 0, ret_val_size + 1);
13821
13822 clGetProgramBuildInfo (device_param->program_amp, device_param->device, CL_PROGRAM_BUILD_LOG, ret_val_size, build_log, NULL);
13823
13824 puts (build_log);
13825
13826 myfree (build_log);
13827 }
13828 }
13829
13830 /**
13831 * global buffers
13832 */
13833
13834 device_param->d_pws_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_pws, NULL);
13835 device_param->d_pws_amp_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_pws, NULL);
13836 device_param->d_tmps = hc_clCreateBuffer (device_param->context, CL_MEM_READ_WRITE, size_tmps, NULL);
13837 device_param->d_hooks = hc_clCreateBuffer (device_param->context, CL_MEM_READ_WRITE, size_hooks, NULL);
13838 device_param->d_bitmap_s1_a = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13839 device_param->d_bitmap_s1_b = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13840 device_param->d_bitmap_s1_c = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13841 device_param->d_bitmap_s1_d = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13842 device_param->d_bitmap_s2_a = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13843 device_param->d_bitmap_s2_b = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13844 device_param->d_bitmap_s2_c = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13845 device_param->d_bitmap_s2_d = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, bitmap_size, NULL);
13846 device_param->d_plain_bufs = hc_clCreateBuffer (device_param->context, CL_MEM_READ_WRITE, size_plains, NULL);
13847 device_param->d_digests_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_digests, NULL);
13848 device_param->d_digests_shown = hc_clCreateBuffer (device_param->context, CL_MEM_READ_WRITE, size_shown, NULL);
13849 device_param->d_salt_bufs = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_salts, NULL);
13850 device_param->d_result = hc_clCreateBuffer (device_param->context, CL_MEM_READ_WRITE, size_results, NULL);
13851 device_param->d_scryptV_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_WRITE, size_scryptV, NULL);
13852
13853 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s1_a, CL_TRUE, 0, bitmap_size, bitmap_s1_a, 0, NULL, NULL);
13854 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s1_b, CL_TRUE, 0, bitmap_size, bitmap_s1_b, 0, NULL, NULL);
13855 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s1_c, CL_TRUE, 0, bitmap_size, bitmap_s1_c, 0, NULL, NULL);
13856 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s1_d, CL_TRUE, 0, bitmap_size, bitmap_s1_d, 0, NULL, NULL);
13857 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s2_a, CL_TRUE, 0, bitmap_size, bitmap_s2_a, 0, NULL, NULL);
13858 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s2_b, CL_TRUE, 0, bitmap_size, bitmap_s2_b, 0, NULL, NULL);
13859 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s2_c, CL_TRUE, 0, bitmap_size, bitmap_s2_c, 0, NULL, NULL);
13860 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_bitmap_s2_d, CL_TRUE, 0, bitmap_size, bitmap_s2_d, 0, NULL, NULL);
13861 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_digests_buf, CL_TRUE, 0, size_digests, data.digests_buf, 0, NULL, NULL);
13862 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_digests_shown, CL_TRUE, 0, size_shown, data.digests_shown, 0, NULL, NULL);
13863 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_salt_bufs, CL_TRUE, 0, size_salts, data.salts_buf, 0, NULL, NULL);
13864
13865 run_kernel_bzero (device_param, device_param->d_pws_buf, size_pws);
13866 run_kernel_bzero (device_param, device_param->d_pws_amp_buf, size_pws);
13867 run_kernel_bzero (device_param, device_param->d_tmps, size_tmps);
13868 run_kernel_bzero (device_param, device_param->d_hooks, size_hooks);
13869 run_kernel_bzero (device_param, device_param->d_plain_bufs, size_plains);
13870 run_kernel_bzero (device_param, device_param->d_result, size_results);
13871
13872 /**
13873 * special buffers
13874 */
13875
13876 if (attack_kern == ATTACK_KERN_STRAIGHT)
13877 {
13878 device_param->d_rules = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_rules, NULL);
13879 device_param->d_rules_c = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_rules_c, NULL);
13880
13881 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_rules, CL_TRUE, 0, size_rules, kernel_rules_buf, 0, NULL, NULL);
13882
13883 run_kernel_bzero (device_param, device_param->d_rules_c, size_rules_c);
13884 }
13885 else if (attack_kern == ATTACK_KERN_COMBI)
13886 {
13887 device_param->d_combs = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_combs, NULL);
13888 device_param->d_combs_c = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_combs, NULL);
13889 device_param->d_root_css_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_root_css, NULL);
13890 device_param->d_markov_css_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_markov_css, NULL);
13891
13892 run_kernel_bzero (device_param, device_param->d_combs, size_combs);
13893 run_kernel_bzero (device_param, device_param->d_combs_c, size_combs);
13894 run_kernel_bzero (device_param, device_param->d_root_css_buf, size_root_css);
13895 run_kernel_bzero (device_param, device_param->d_markov_css_buf, size_markov_css);
13896 }
13897 else if (attack_kern == ATTACK_KERN_BF)
13898 {
13899 device_param->d_bfs = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_bfs, NULL);
13900 device_param->d_bfs_c = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_bfs, NULL);
13901 device_param->d_tm_c = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_tm, NULL);
13902 device_param->d_root_css_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_root_css, NULL);
13903 device_param->d_markov_css_buf = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_markov_css, NULL);
13904
13905 run_kernel_bzero (device_param, device_param->d_bfs, size_bfs);
13906 run_kernel_bzero (device_param, device_param->d_bfs_c, size_bfs);
13907 run_kernel_bzero (device_param, device_param->d_tm_c, size_tm);
13908 run_kernel_bzero (device_param, device_param->d_root_css_buf, size_root_css);
13909 run_kernel_bzero (device_param, device_param->d_markov_css_buf, size_markov_css);
13910 }
13911
13912 if (size_esalts)
13913 {
13914 device_param->d_esalt_bufs = hc_clCreateBuffer (device_param->context, CL_MEM_READ_ONLY, size_esalts, NULL);
13915
13916 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_esalt_bufs, CL_TRUE, 0, size_esalts, data.esalts_buf, 0, NULL, NULL);
13917 }
13918
13919 /**
13920 * main host data
13921 */
13922
13923 uint *result = (uint *) mymalloc (size_results);
13924
13925 memset (result, 0, size_results);
13926
13927 device_param->result = result;
13928
13929 pw_t *pws_buf = (pw_t *) mymalloc (size_pws);
13930
13931 memset (pws_buf, 0, size_pws);
13932
13933 device_param->pws_buf = pws_buf;
13934
13935 pw_cache_t *pw_caches = (pw_cache_t *) mycalloc (64, sizeof (pw_cache_t));
13936
13937 for (int i = 0; i < 64; i++)
13938 {
13939 pw_caches[i].pw_buf.pw_len = i;
13940 pw_caches[i].cnt = 0;
13941 }
13942
13943 device_param->pw_caches = pw_caches;
13944
13945 comb_t *combs_buf = (comb_t *) mycalloc (KERNEL_COMBS, sizeof (comb_t));
13946
13947 device_param->combs_buf = combs_buf;
13948
13949 void *hooks_buf = mymalloc (size_hooks);
13950
13951 device_param->hooks_buf = hooks_buf;
13952
13953 device_param->pw_transpose = pw_transpose_to_hi1;
13954 device_param->pw_add = pw_add_to_hc1;
13955
13956 /**
13957 * kernel args
13958 */
13959
13960 device_param->kernel_params_buf32[21] = bitmap_mask;
13961 device_param->kernel_params_buf32[22] = bitmap_shift1;
13962 device_param->kernel_params_buf32[23] = bitmap_shift2;
13963 device_param->kernel_params_buf32[24] = 0; // salt_pos
13964 device_param->kernel_params_buf32[25] = 0; // loop_pos
13965 device_param->kernel_params_buf32[26] = 0; // loop_cnt
13966 device_param->kernel_params_buf32[27] = 0; // kernel_rules_cnt
13967 device_param->kernel_params_buf32[28] = 0; // digests_cnt
13968 device_param->kernel_params_buf32[29] = 0; // digests_offset
13969 device_param->kernel_params_buf32[30] = 0; // combs_mode
13970 device_param->kernel_params_buf32[31] = 0; // gid_max
13971
13972 device_param->kernel_params[ 0] = (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
13973 ? &device_param->d_pws_buf
13974 : &device_param->d_pws_amp_buf;
13975 device_param->kernel_params[ 1] = &device_param->d_rules_c;
13976 device_param->kernel_params[ 2] = &device_param->d_combs_c;
13977 device_param->kernel_params[ 3] = &device_param->d_bfs_c;
13978 device_param->kernel_params[ 4] = &device_param->d_tmps;
13979 device_param->kernel_params[ 5] = &device_param->d_hooks;
13980 device_param->kernel_params[ 6] = &device_param->d_bitmap_s1_a;
13981 device_param->kernel_params[ 7] = &device_param->d_bitmap_s1_b;
13982 device_param->kernel_params[ 8] = &device_param->d_bitmap_s1_c;
13983 device_param->kernel_params[ 9] = &device_param->d_bitmap_s1_d;
13984 device_param->kernel_params[10] = &device_param->d_bitmap_s2_a;
13985 device_param->kernel_params[11] = &device_param->d_bitmap_s2_b;
13986 device_param->kernel_params[12] = &device_param->d_bitmap_s2_c;
13987 device_param->kernel_params[13] = &device_param->d_bitmap_s2_d;
13988 device_param->kernel_params[14] = &device_param->d_plain_bufs;
13989 device_param->kernel_params[15] = &device_param->d_digests_buf;
13990 device_param->kernel_params[16] = &device_param->d_digests_shown;
13991 device_param->kernel_params[17] = &device_param->d_salt_bufs;
13992 device_param->kernel_params[18] = &device_param->d_esalt_bufs;
13993 device_param->kernel_params[19] = &device_param->d_result;
13994 device_param->kernel_params[20] = &device_param->d_scryptV_buf;
13995 device_param->kernel_params[21] = &device_param->kernel_params_buf32[21];
13996 device_param->kernel_params[22] = &device_param->kernel_params_buf32[22];
13997 device_param->kernel_params[23] = &device_param->kernel_params_buf32[23];
13998 device_param->kernel_params[24] = &device_param->kernel_params_buf32[24];
13999 device_param->kernel_params[25] = &device_param->kernel_params_buf32[25];
14000 device_param->kernel_params[26] = &device_param->kernel_params_buf32[26];
14001 device_param->kernel_params[27] = &device_param->kernel_params_buf32[27];
14002 device_param->kernel_params[28] = &device_param->kernel_params_buf32[28];
14003 device_param->kernel_params[29] = &device_param->kernel_params_buf32[29];
14004 device_param->kernel_params[30] = &device_param->kernel_params_buf32[30];
14005 device_param->kernel_params[31] = &device_param->kernel_params_buf32[31];
14006
14007 device_param->kernel_params_mp_buf64[3] = 0;
14008 device_param->kernel_params_mp_buf32[4] = 0;
14009 device_param->kernel_params_mp_buf32[5] = 0;
14010 device_param->kernel_params_mp_buf32[6] = 0;
14011 device_param->kernel_params_mp_buf32[7] = 0;
14012 device_param->kernel_params_mp_buf32[8] = 0;
14013
14014 device_param->kernel_params_mp[0] = NULL;
14015 device_param->kernel_params_mp[1] = NULL;
14016 device_param->kernel_params_mp[2] = NULL;
14017 device_param->kernel_params_mp[3] = &device_param->kernel_params_mp_buf64[3];
14018 device_param->kernel_params_mp[4] = &device_param->kernel_params_mp_buf32[4];
14019 device_param->kernel_params_mp[5] = &device_param->kernel_params_mp_buf32[5];
14020 device_param->kernel_params_mp[6] = &device_param->kernel_params_mp_buf32[6];
14021 device_param->kernel_params_mp[7] = &device_param->kernel_params_mp_buf32[7];
14022 device_param->kernel_params_mp[8] = &device_param->kernel_params_mp_buf32[8];
14023
14024 device_param->kernel_params_mp_l_buf64[3] = 0;
14025 device_param->kernel_params_mp_l_buf32[4] = 0;
14026 device_param->kernel_params_mp_l_buf32[5] = 0;
14027 device_param->kernel_params_mp_l_buf32[6] = 0;
14028 device_param->kernel_params_mp_l_buf32[7] = 0;
14029 device_param->kernel_params_mp_l_buf32[8] = 0;
14030 device_param->kernel_params_mp_l_buf32[9] = 0;
14031
14032 device_param->kernel_params_mp_l[0] = NULL;
14033 device_param->kernel_params_mp_l[1] = NULL;
14034 device_param->kernel_params_mp_l[2] = NULL;
14035 device_param->kernel_params_mp_l[3] = &device_param->kernel_params_mp_l_buf64[3];
14036 device_param->kernel_params_mp_l[4] = &device_param->kernel_params_mp_l_buf32[4];
14037 device_param->kernel_params_mp_l[5] = &device_param->kernel_params_mp_l_buf32[5];
14038 device_param->kernel_params_mp_l[6] = &device_param->kernel_params_mp_l_buf32[6];
14039 device_param->kernel_params_mp_l[7] = &device_param->kernel_params_mp_l_buf32[7];
14040 device_param->kernel_params_mp_l[8] = &device_param->kernel_params_mp_l_buf32[8];
14041 device_param->kernel_params_mp_l[9] = &device_param->kernel_params_mp_l_buf32[9];
14042
14043 device_param->kernel_params_mp_r_buf64[3] = 0;
14044 device_param->kernel_params_mp_r_buf32[4] = 0;
14045 device_param->kernel_params_mp_r_buf32[5] = 0;
14046 device_param->kernel_params_mp_r_buf32[6] = 0;
14047 device_param->kernel_params_mp_r_buf32[7] = 0;
14048 device_param->kernel_params_mp_r_buf32[8] = 0;
14049
14050 device_param->kernel_params_mp_r[0] = NULL;
14051 device_param->kernel_params_mp_r[1] = NULL;
14052 device_param->kernel_params_mp_r[2] = NULL;
14053 device_param->kernel_params_mp_r[3] = &device_param->kernel_params_mp_r_buf64[3];
14054 device_param->kernel_params_mp_r[4] = &device_param->kernel_params_mp_r_buf32[4];
14055 device_param->kernel_params_mp_r[5] = &device_param->kernel_params_mp_r_buf32[5];
14056 device_param->kernel_params_mp_r[6] = &device_param->kernel_params_mp_r_buf32[6];
14057 device_param->kernel_params_mp_r[7] = &device_param->kernel_params_mp_r_buf32[7];
14058 device_param->kernel_params_mp_r[8] = &device_param->kernel_params_mp_r_buf32[8];
14059
14060 device_param->kernel_params_amp_buf32[5] = 0; // combs_mode
14061 device_param->kernel_params_amp_buf32[6] = 0; // gid_max
14062
14063 device_param->kernel_params_amp[0] = &device_param->d_pws_buf;
14064 device_param->kernel_params_amp[1] = &device_param->d_pws_amp_buf;
14065 device_param->kernel_params_amp[2] = &device_param->d_rules_c;
14066 device_param->kernel_params_amp[3] = &device_param->d_combs_c;
14067 device_param->kernel_params_amp[4] = &device_param->d_bfs_c;
14068 device_param->kernel_params_amp[5] = &device_param->kernel_params_amp_buf32[5];
14069 device_param->kernel_params_amp[6] = &device_param->kernel_params_amp_buf32[6];
14070
14071 device_param->kernel_params_tb[0] = &device_param->d_pws_buf;
14072
14073 device_param->kernel_params_tm[0] = &device_param->d_bfs_c;
14074 device_param->kernel_params_tm[1] = &device_param->d_tm_c;
14075
14076 /**
14077 * kernel name
14078 */
14079
14080 char kernel_name[64] = { 0 };
14081
14082 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14083 {
14084 if (opti_type & OPTI_TYPE_SINGLE_HASH)
14085 {
14086 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_s%02d", kern_type, 4);
14087
14088 device_param->kernel1 = hc_clCreateKernel (device_param->program, kernel_name);
14089
14090 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_s%02d", kern_type, 8);
14091
14092 device_param->kernel2 = hc_clCreateKernel (device_param->program, kernel_name);
14093
14094 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_s%02d", kern_type, 16);
14095
14096 device_param->kernel3 = hc_clCreateKernel (device_param->program, kernel_name);
14097 }
14098 else
14099 {
14100 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_m%02d", kern_type, 4);
14101
14102 device_param->kernel1 = hc_clCreateKernel (device_param->program, kernel_name);
14103
14104 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_m%02d", kern_type, 8);
14105
14106 device_param->kernel2 = hc_clCreateKernel (device_param->program, kernel_name);
14107
14108 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_m%02d", kern_type, 16);
14109
14110 device_param->kernel3 = hc_clCreateKernel (device_param->program, kernel_name);
14111 }
14112
14113 if (data.attack_mode == ATTACK_MODE_BF)
14114 {
14115 if (opts_type & OPTS_TYPE_PT_BITSLICE)
14116 {
14117 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_tb", kern_type);
14118
14119 device_param->kernel_tb = hc_clCreateKernel (device_param->program, kernel_name);
14120
14121 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_tm", kern_type);
14122
14123 device_param->kernel_tm = hc_clCreateKernel (device_param->program, kernel_name);
14124 }
14125 }
14126 }
14127 else
14128 {
14129 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_init", kern_type);
14130
14131 device_param->kernel1 = hc_clCreateKernel (device_param->program, kernel_name);
14132
14133 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_loop", kern_type);
14134
14135 device_param->kernel2 = hc_clCreateKernel (device_param->program, kernel_name);
14136
14137 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_comp", kern_type);
14138
14139 device_param->kernel3 = hc_clCreateKernel (device_param->program, kernel_name);
14140
14141 if (opts_type & OPTS_TYPE_HOOK12)
14142 {
14143 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_hook12", kern_type);
14144
14145 device_param->kernel12 = hc_clCreateKernel (device_param->program, kernel_name);
14146 }
14147
14148 if (opts_type & OPTS_TYPE_HOOK23)
14149 {
14150 snprintf (kernel_name, sizeof (kernel_name) - 1, "m%05d_hook23", kern_type);
14151
14152 device_param->kernel23 = hc_clCreateKernel (device_param->program, kernel_name);
14153 }
14154 }
14155
14156 for (uint i = 0; i <= 20; i++)
14157 {
14158 hc_clSetKernelArg (device_param->kernel1, i, sizeof (cl_mem), device_param->kernel_params[i]);
14159 hc_clSetKernelArg (device_param->kernel2, i, sizeof (cl_mem), device_param->kernel_params[i]);
14160 hc_clSetKernelArg (device_param->kernel3, i, sizeof (cl_mem), device_param->kernel_params[i]);
14161
14162 if (opts_type & OPTS_TYPE_HOOK12) hc_clSetKernelArg (device_param->kernel12, i, sizeof (cl_mem), device_param->kernel_params[i]);
14163 if (opts_type & OPTS_TYPE_HOOK23) hc_clSetKernelArg (device_param->kernel23, i, sizeof (cl_mem), device_param->kernel_params[i]);
14164 }
14165
14166 for (uint i = 21; i <= 31; i++)
14167 {
14168 hc_clSetKernelArg (device_param->kernel1, i, sizeof (cl_uint), device_param->kernel_params[i]);
14169 hc_clSetKernelArg (device_param->kernel2, i, sizeof (cl_uint), device_param->kernel_params[i]);
14170 hc_clSetKernelArg (device_param->kernel3, i, sizeof (cl_uint), device_param->kernel_params[i]);
14171
14172 if (opts_type & OPTS_TYPE_HOOK12) hc_clSetKernelArg (device_param->kernel12, i, sizeof (cl_uint), device_param->kernel_params[i]);
14173 if (opts_type & OPTS_TYPE_HOOK23) hc_clSetKernelArg (device_param->kernel23, i, sizeof (cl_uint), device_param->kernel_params[i]);
14174 }
14175
14176 if (attack_mode == ATTACK_MODE_BF)
14177 {
14178 device_param->kernel_mp_l = hc_clCreateKernel (device_param->program_mp, "l_markov");
14179 device_param->kernel_mp_r = hc_clCreateKernel (device_param->program_mp, "r_markov");
14180
14181 if (opts_type & OPTS_TYPE_PT_BITSLICE)
14182 {
14183 hc_clSetKernelArg (device_param->kernel_tb, 0, sizeof (cl_mem), device_param->kernel_params_tb[0]);
14184
14185 hc_clSetKernelArg (device_param->kernel_tm, 0, sizeof (cl_mem), device_param->kernel_params_tm[0]);
14186 hc_clSetKernelArg (device_param->kernel_tm, 1, sizeof (cl_mem), device_param->kernel_params_tm[1]);
14187 }
14188 }
14189 else if (attack_mode == ATTACK_MODE_HYBRID1)
14190 {
14191 device_param->kernel_mp = hc_clCreateKernel (device_param->program_mp, "C_markov");
14192 }
14193 else if (attack_mode == ATTACK_MODE_HYBRID2)
14194 {
14195 device_param->kernel_mp = hc_clCreateKernel (device_param->program_mp, "C_markov");
14196 }
14197
14198 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14199 {
14200 // nothing to do
14201 }
14202 else
14203 {
14204 device_param->kernel_amp = hc_clCreateKernel (device_param->program_amp, "amp");
14205 }
14206
14207 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
14208 {
14209 // nothing to do
14210 }
14211 else
14212 {
14213 for (uint i = 0; i < 5; i++)
14214 {
14215 hc_clSetKernelArg (device_param->kernel_amp, i, sizeof (cl_mem), device_param->kernel_params_amp[i]);
14216 }
14217
14218 for (uint i = 5; i < 7; i++)
14219 {
14220 hc_clSetKernelArg (device_param->kernel_amp, i, sizeof (cl_uint), device_param->kernel_params_amp[i]);
14221 }
14222 }
14223
14224 /**
14225 * Store initial fanspeed if gpu_temp_retain is enabled
14226 */
14227
14228 #if defined(HAVE_HWMON) && defined(HAVE_ADL)
14229 int gpu_temp_retain_set = 0;
14230
14231 if (gpu_temp_disable == 0)
14232 {
14233 if (gpu_temp_retain != 0) // VENDOR_ID_AMD implied
14234 {
14235 hc_thread_mutex_lock (mux_adl);
14236
14237 if (data.hm_device[device_id].fan_supported == 1)
14238 {
14239 if (gpu_temp_retain_chgd == 0)
14240 {
14241 uint cur_temp = 0;
14242 uint default_temp = 0;
14243
14244 int ADL_rc = hc_ADL_Overdrive6_TargetTemperatureData_Get (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, (int *) &cur_temp, (int *) &default_temp);
14245
14246 if (ADL_rc == ADL_OK)
14247 {
14248 #define GPU_TEMP_RETAIN_ABORT_DIFF 15
14249
14250 const uint gpu_temp_retain_target = default_temp - GPU_TEMP_RETAIN_ABORT_DIFF;
14251
14252 // special case with multi gpu setups: always use minimum retain
14253
14254 if (gpu_temp_retain_set == 0)
14255 {
14256 gpu_temp_retain = gpu_temp_retain_target;
14257 gpu_temp_retain_set = 1;
14258 }
14259 else
14260 {
14261 gpu_temp_retain = MIN (gpu_temp_retain, gpu_temp_retain_target);
14262 }
14263
14264 if (gpu_temp_abort_chgd == 0) gpu_temp_abort = gpu_temp_retain + GPU_TEMP_RETAIN_ABORT_DIFF;
14265 }
14266 }
14267
14268 const int fan_speed = hm_get_fanspeed_with_device_id (device_id);
14269
14270 temp_retain_fanspeed_value[device_id] = fan_speed;
14271
14272 if (fan_speed == -1)
14273 {
14274 log_info ("WARNING: Failed to get current fan speed settings for gpu number: %i:", device_id + 1);
14275
14276 temp_retain_fanspeed_value[device_id] = 0;
14277 }
14278 }
14279
14280 hc_thread_mutex_unlock (mux_adl);
14281 }
14282 }
14283
14284 /**
14285 * Store original powercontrol/clocks settings, set overdrive 6 performance tuning settings
14286 */
14287
14288 if (powertune_enable == 1) // VENDOR_ID_AMD implied
14289 {
14290 hc_thread_mutex_lock (mux_adl);
14291
14292 if (data.hm_device[device_id].od_version == 6)
14293 {
14294 int ADL_rc;
14295
14296 // check powertune capabilities first, if not available then skip device
14297
14298 int powertune_supported = 0;
14299
14300 if ((ADL_rc = hc_ADL_Overdrive6_PowerControl_Caps (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &powertune_supported)) != ADL_OK)
14301 {
14302 log_error ("ERROR: Failed to get ADL PowerControl Capabilities");
14303
14304 return (-1);
14305 }
14306
14307 if (powertune_supported != 0)
14308 {
14309 // powercontrol settings
14310
14311 ADLOD6PowerControlInfo powertune = {0, 0, 0, 0, 0};
14312
14313 if ((ADL_rc = hc_ADL_Overdrive_PowerControlInfo_Get (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &powertune)) == ADL_OK)
14314 {
14315 ADL_rc = hc_ADL_Overdrive_PowerControl_Get (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &od_power_control_status[device_id]);
14316 }
14317
14318 if (ADL_rc != ADL_OK)
14319 {
14320 log_error ("ERROR: Failed to get current ADL PowerControl settings");
14321
14322 return (-1);
14323 }
14324
14325 if ((ADL_rc = hc_ADL_Overdrive_PowerControl_Set (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, powertune.iMaxValue)) != ADL_OK)
14326 {
14327 log_error ("ERROR: Failed to set new ADL PowerControl values");
14328
14329 return (-1);
14330 }
14331
14332 // clocks
14333
14334 memset (&od_clock_mem_status[device_id], 0, sizeof (ADLOD6MemClockState));
14335
14336 od_clock_mem_status[device_id].state.iNumberOfPerformanceLevels = 2;
14337
14338 if ((ADL_rc = hc_ADL_Overdrive_StateInfo_Get (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, ADL_OD6_GETSTATEINFO_CUSTOM_PERFORMANCE, &od_clock_mem_status[device_id])) != ADL_OK)
14339 {
14340 log_error ("ERROR: Failed to get ADL memory and engine clock frequency");
14341
14342 return (-1);
14343 }
14344
14345 // Query capabilities only to see if profiles were not "damaged", if so output a warning but do accept the users profile settings
14346
14347 ADLOD6Capabilities caps = {0, 0, 0, {0, 0, 0}, {0, 0, 0}, 0, 0};
14348
14349 if ((ADL_rc = hc_ADL_Overdrive_Capabilities_Get (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &caps)) != ADL_OK)
14350 {
14351 log_error ("ERROR: Failed to get ADL device capabilities");
14352
14353 return (-1);
14354 }
14355
14356 int engine_clock_max = caps.sEngineClockRange.iMax * 0.6666;
14357 int memory_clock_max = caps.sMemoryClockRange.iMax * 0.6250;
14358
14359 int warning_trigger_engine = (int) (0.25 * (float) engine_clock_max);
14360 int warning_trigger_memory = (int) (0.25 * (float) memory_clock_max);
14361
14362 int engine_clock_profile_max = od_clock_mem_status[device_id].state.aLevels[1].iEngineClock;
14363 int memory_clock_profile_max = od_clock_mem_status[device_id].state.aLevels[1].iMemoryClock;
14364
14365 // warning if profile has too low max values
14366
14367 if ((engine_clock_max - engine_clock_profile_max) > warning_trigger_engine)
14368 {
14369 log_info ("WARN: the custom profile seems to have too low maximum engine clock values. You therefore may not reach full performance");
14370 }
14371
14372 if ((memory_clock_max - memory_clock_profile_max) > warning_trigger_memory)
14373 {
14374 log_info ("WARN: the custom profile seems to have too low maximum memory clock values. You therefore may not reach full performance");
14375 }
14376
14377 ADLOD6StateInfo *performance_state = (ADLOD6StateInfo*) mycalloc (1, sizeof (ADLOD6StateInfo) + sizeof (ADLOD6PerformanceLevel));
14378
14379 performance_state->iNumberOfPerformanceLevels = 2;
14380
14381 performance_state->aLevels[0].iEngineClock = engine_clock_profile_max;
14382 performance_state->aLevels[1].iEngineClock = engine_clock_profile_max;
14383 performance_state->aLevels[0].iMemoryClock = memory_clock_profile_max;
14384 performance_state->aLevels[1].iMemoryClock = memory_clock_profile_max;
14385
14386 if ((ADL_rc = hc_ADL_Overdrive_State_Set (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, ADL_OD6_SETSTATE_PERFORMANCE, performance_state)) != ADL_OK)
14387 {
14388 log_info ("ERROR: Failed to set ADL performance state");
14389
14390 return (-1);
14391 }
14392
14393 local_free (performance_state);
14394 }
14395 }
14396
14397 hc_thread_mutex_unlock (mux_adl);
14398 }
14399 #endif // HAVE_HWMON && HAVE_ADL
14400 }
14401
14402 data.kernel_blocks_all = kernel_blocks_all;
14403
14404 if (data.quiet == 0) log_info ("");
14405
14406 /**
14407 * Inform user which algorithm is checked and at which workload setting
14408 */
14409
14410 if (benchmark == 1)
14411 {
14412 quiet = 0;
14413
14414 data.quiet = quiet;
14415
14416 char *hash_type = strhashtype (data.hash_mode); // not a bug
14417
14418 log_info ("Hashtype: %s", hash_type);
14419 log_info ("Workload: %u loops, %u accel", kernel_loops, kernel_accel);
14420 log_info ("");
14421 }
14422
14423 /**
14424 * keep track of the progress
14425 */
14426
14427 data.words_progress_done = (u64 *) mycalloc (data.salts_cnt, sizeof (u64));
14428 data.words_progress_rejected = (u64 *) mycalloc (data.salts_cnt, sizeof (u64));
14429 data.words_progress_restored = (u64 *) mycalloc (data.salts_cnt, sizeof (u64));
14430
14431 /**
14432 * open filehandles
14433 */
14434
14435 #if _WIN
14436 if (_setmode (_fileno (stdin), _O_BINARY) == -1)
14437 {
14438 log_error ("ERROR: %s: %s", "stdin", strerror (errno));
14439
14440 return (-1);
14441 }
14442
14443 if (_setmode (_fileno (stdout), _O_BINARY) == -1)
14444 {
14445 log_error ("ERROR: %s: %s", "stdout", strerror (errno));
14446
14447 return (-1);
14448 }
14449
14450 if (_setmode (_fileno (stderr), _O_BINARY) == -1)
14451 {
14452 log_error ("ERROR: %s: %s", "stderr", strerror (errno));
14453
14454 return (-1);
14455 }
14456 #endif
14457
14458 /**
14459 * dictionary pad
14460 */
14461
14462 segment_size *= (1024 * 1024);
14463
14464 data.segment_size = segment_size;
14465
14466 wl_data_t *wl_data = (wl_data_t *) mymalloc (sizeof (wl_data_t));
14467
14468 wl_data->buf = (char *) mymalloc (segment_size);
14469 wl_data->avail = segment_size;
14470 wl_data->incr = segment_size;
14471 wl_data->cnt = 0;
14472 wl_data->pos = 0;
14473
14474 uint wordlist_mode = ((optind + 1) < myargc) ? WL_MODE_FILE : WL_MODE_STDIN;
14475
14476 data.wordlist_mode = wordlist_mode;
14477
14478 cs_t *css_buf = NULL;
14479 uint css_cnt = 0;
14480 uint dictcnt = 0;
14481 uint maskcnt = 1;
14482 char **masks = NULL;
14483 char **dictfiles = NULL;
14484
14485 uint mask_from_file = 0;
14486
14487 if (attack_mode == ATTACK_MODE_STRAIGHT)
14488 {
14489 if (wordlist_mode == WL_MODE_FILE)
14490 {
14491 int wls_left = myargc - (optind + 1);
14492
14493 for (int i = 0; i < wls_left; i++)
14494 {
14495 char *l0_filename = myargv[optind + 1 + i];
14496
14497 struct stat l0_stat;
14498
14499 if (stat (l0_filename, &l0_stat) == -1)
14500 {
14501 log_error ("ERROR: %s: %s", l0_filename, strerror (errno));
14502
14503 return (-1);
14504 }
14505
14506 uint is_dir = S_ISDIR (l0_stat.st_mode);
14507
14508 if (is_dir == 0)
14509 {
14510 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
14511
14512 dictcnt++;
14513
14514 dictfiles[dictcnt - 1] = l0_filename;
14515 }
14516 else
14517 {
14518 // do not allow --keyspace w/ a directory
14519
14520 if (keyspace == 1)
14521 {
14522 log_error ("ERROR: keyspace parameter is not allowed together with a directory");
14523
14524 return (-1);
14525 }
14526
14527 char **dictionary_files = NULL;
14528
14529 dictionary_files = scan_directory (l0_filename);
14530
14531 if (dictionary_files != NULL)
14532 {
14533 qsort (dictionary_files, count_dictionaries (dictionary_files), sizeof (char *), sort_by_stringptr);
14534
14535 for (int d = 0; dictionary_files[d] != NULL; d++)
14536 {
14537 char *l1_filename = dictionary_files[d];
14538
14539 struct stat l1_stat;
14540
14541 if (stat (l1_filename, &l1_stat) == -1)
14542 {
14543 log_error ("ERROR: %s: %s", l1_filename, strerror (errno));
14544
14545 return (-1);
14546 }
14547
14548 if (S_ISREG (l1_stat.st_mode))
14549 {
14550 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
14551
14552 dictcnt++;
14553
14554 dictfiles[dictcnt - 1] = strdup (l1_filename);
14555 }
14556 }
14557 }
14558
14559 local_free (dictionary_files);
14560 }
14561 }
14562
14563 if (dictcnt < 1)
14564 {
14565 log_error ("ERROR: No usable dictionary file found.");
14566
14567 return (-1);
14568 }
14569 }
14570 else if (wordlist_mode == WL_MODE_STDIN)
14571 {
14572 dictcnt = 1;
14573 }
14574 }
14575 else if (attack_mode == ATTACK_MODE_COMBI)
14576 {
14577 // display
14578
14579 char *dictfile1 = myargv[optind + 1 + 0];
14580 char *dictfile2 = myargv[optind + 1 + 1];
14581
14582 // find the bigger dictionary and use as base
14583
14584 FILE *fp1;
14585 FILE *fp2;
14586
14587 struct stat tmp_stat;
14588
14589 if ((fp1 = fopen (dictfile1, "rb")) == NULL)
14590 {
14591 log_error ("ERROR: %s: %s", dictfile1, strerror (errno));
14592
14593 return (-1);
14594 }
14595
14596 if (stat (dictfile1, &tmp_stat) == -1)
14597 {
14598 log_error ("ERROR: %s: %s", dictfile1, strerror (errno));
14599
14600 fclose (fp1);
14601
14602 return (-1);
14603 }
14604
14605 if (S_ISDIR (tmp_stat.st_mode))
14606 {
14607 log_error ("ERROR: %s must be a regular file", dictfile1, strerror (errno));
14608
14609 fclose (fp1);
14610
14611 return (-1);
14612 }
14613
14614 if ((fp2 = fopen (dictfile2, "rb")) == NULL)
14615 {
14616 log_error ("ERROR: %s: %s", dictfile2, strerror (errno));
14617
14618 fclose (fp1);
14619
14620 return (-1);
14621 }
14622
14623 if (stat (dictfile2, &tmp_stat) == -1)
14624 {
14625 log_error ("ERROR: %s: %s", dictfile2, strerror (errno));
14626
14627 fclose (fp1);
14628 fclose (fp2);
14629
14630 return (-1);
14631 }
14632
14633 if (S_ISDIR (tmp_stat.st_mode))
14634 {
14635 log_error ("ERROR: %s must be a regular file", dictfile2, strerror (errno));
14636
14637 fclose (fp1);
14638 fclose (fp2);
14639
14640 return (-1);
14641 }
14642
14643 data.combs_cnt = 1;
14644
14645 data.quiet = 1;
14646
14647 const u64 words1_cnt = count_words (wl_data, fp1, dictfile1, dictstat_base, &dictstat_nmemb);
14648
14649 data.quiet = quiet;
14650
14651 if (words1_cnt == 0)
14652 {
14653 log_error ("ERROR: %s: empty file", dictfile1);
14654
14655 fclose (fp1);
14656 fclose (fp2);
14657
14658 return (-1);
14659 }
14660
14661 data.combs_cnt = 1;
14662
14663 data.quiet = 1;
14664
14665 const u64 words2_cnt = count_words (wl_data, fp2, dictfile2, dictstat_base, &dictstat_nmemb);
14666
14667 data.quiet = quiet;
14668
14669 if (words2_cnt == 0)
14670 {
14671 log_error ("ERROR: %s: empty file", dictfile2);
14672
14673 fclose (fp1);
14674 fclose (fp2);
14675
14676 return (-1);
14677 }
14678
14679 fclose (fp1);
14680 fclose (fp2);
14681
14682 data.dictfile = dictfile1;
14683 data.dictfile2 = dictfile2;
14684
14685 if (words1_cnt >= words2_cnt)
14686 {
14687 data.combs_cnt = words2_cnt;
14688 data.combs_mode = COMBINATOR_MODE_BASE_LEFT;
14689
14690 dictfiles = &data.dictfile;
14691
14692 dictcnt = 1;
14693 }
14694 else
14695 {
14696 data.combs_cnt = words1_cnt;
14697 data.combs_mode = COMBINATOR_MODE_BASE_RIGHT;
14698
14699 dictfiles = &data.dictfile2;
14700
14701 dictcnt = 1;
14702
14703 // we also have to switch wordlist related rules!
14704
14705 char *tmpc = data.rule_buf_l;
14706
14707 data.rule_buf_l = data.rule_buf_r;
14708 data.rule_buf_r = tmpc;
14709
14710 int tmpi = data.rule_len_l;
14711
14712 data.rule_len_l = data.rule_len_r;
14713 data.rule_len_r = tmpi;
14714 }
14715 }
14716 else if (attack_mode == ATTACK_MODE_BF)
14717 {
14718 char *mask = NULL;
14719
14720 maskcnt = 0;
14721
14722 if (benchmark == 0)
14723 {
14724 mask = myargv[optind + 1];
14725
14726 masks = (char **) mymalloc (INCR_MASKS * sizeof (char *));
14727
14728 if ((optind + 2) <= myargc)
14729 {
14730 struct stat file_stat;
14731
14732 if (stat (mask, &file_stat) == -1)
14733 {
14734 maskcnt = 1;
14735
14736 masks[maskcnt - 1] = mystrdup (mask);
14737 }
14738 else
14739 {
14740 int wls_left = myargc - (optind + 1);
14741
14742 uint masks_avail = INCR_MASKS;
14743
14744 for (int i = 0; i < wls_left; i++)
14745 {
14746 if (i != 0)
14747 {
14748 mask = myargv[optind + 1 + i];
14749
14750 if (stat (mask, &file_stat) == -1)
14751 {
14752 log_error ("ERROR: %s: %s", mask, strerror (errno));
14753
14754 return (-1);
14755 }
14756 }
14757
14758 uint is_file = S_ISREG (file_stat.st_mode);
14759
14760 if (is_file == 1)
14761 {
14762 FILE *mask_fp;
14763
14764 if ((mask_fp = fopen (mask, "r")) == NULL)
14765 {
14766 log_error ("ERROR: %s: %s", mask, strerror (errno));
14767
14768 return (-1);
14769 }
14770
14771 char line_buf[BUFSIZ];
14772
14773 while (!feof (mask_fp))
14774 {
14775 memset (line_buf, 0, BUFSIZ);
14776
14777 int line_len = fgetl (mask_fp, line_buf);
14778
14779 if (line_len == 0) continue;
14780
14781 if (line_buf[0] == '#') continue;
14782
14783 if (masks_avail == maskcnt)
14784 {
14785 masks = (char **) myrealloc (masks, masks_avail * sizeof (char *), INCR_MASKS * sizeof (char *));
14786
14787 masks_avail += INCR_MASKS;
14788 }
14789
14790 masks[maskcnt] = mystrdup (line_buf);
14791
14792 maskcnt++;
14793 }
14794
14795 fclose (mask_fp);
14796 }
14797 else
14798 {
14799 log_error ("ERROR: %s: unsupported file-type", mask);
14800
14801 return (-1);
14802 }
14803 }
14804
14805 mask_from_file = 1;
14806 }
14807 }
14808 else
14809 {
14810 custom_charset_1 = (char *) "?l?d?u";
14811 custom_charset_2 = (char *) "?l?d";
14812 custom_charset_3 = (char *) "?l?d*!$@_";
14813
14814 mp_setup_usr (mp_sys, mp_usr, custom_charset_1, 0);
14815 mp_setup_usr (mp_sys, mp_usr, custom_charset_2, 1);
14816 mp_setup_usr (mp_sys, mp_usr, custom_charset_3, 2);
14817
14818 masks[maskcnt] = mystrdup ("?1?2?2?2?2?2?2?3?3?3?3?d?d?d?d");
14819
14820 wordlist_mode = WL_MODE_MASK;
14821
14822 data.wordlist_mode = wordlist_mode;
14823
14824 increment = 1;
14825
14826 maskcnt = 1;
14827 }
14828 }
14829 else
14830 {
14831 /**
14832 * generate full masks and charsets
14833 */
14834
14835 masks = (char **) mymalloc (sizeof (char *));
14836
14837 switch (hash_mode)
14838 {
14839 case 1731: pw_min = 5;
14840 pw_max = 5;
14841 mask = mystrdup ("?b?b?b?b?b");
14842 break;
14843 case 12500: pw_min = 5;
14844 pw_max = 5;
14845 mask = mystrdup ("?b?b?b?b?b");
14846 break;
14847 default: pw_min = 7;
14848 pw_max = 7;
14849 mask = mystrdup ("?b?b?b?b?b?b?b");
14850 break;
14851 }
14852
14853 maskcnt = 1;
14854
14855 masks[maskcnt - 1] = mystrdup (mask);
14856
14857 wordlist_mode = WL_MODE_MASK;
14858
14859 data.wordlist_mode = wordlist_mode;
14860
14861 increment = 1;
14862 }
14863
14864 dictfiles = (char **) mycalloc (pw_max, sizeof (char *));
14865
14866 if (increment)
14867 {
14868 if (increment_min > pw_min) pw_min = increment_min;
14869
14870 if (increment_max < pw_max) pw_max = increment_max;
14871 }
14872 }
14873 else if (attack_mode == ATTACK_MODE_HYBRID1)
14874 {
14875 data.combs_mode = COMBINATOR_MODE_BASE_LEFT;
14876
14877 // display
14878
14879 char *mask = myargv[myargc - 1];
14880
14881 maskcnt = 0;
14882
14883 masks = (char **) mymalloc (1 * sizeof (char *));
14884
14885 // mod
14886
14887 struct stat file_stat;
14888
14889 if (stat (mask, &file_stat) == -1)
14890 {
14891 maskcnt = 1;
14892
14893 masks[maskcnt - 1] = mystrdup (mask);
14894 }
14895 else
14896 {
14897 uint is_file = S_ISREG (file_stat.st_mode);
14898
14899 if (is_file == 1)
14900 {
14901 FILE *mask_fp;
14902
14903 if ((mask_fp = fopen (mask, "r")) == NULL)
14904 {
14905 log_error ("ERROR: %s: %s", mask, strerror (errno));
14906
14907 return (-1);
14908 }
14909
14910 char line_buf[BUFSIZ];
14911
14912 uint masks_avail = 1;
14913
14914 while (!feof (mask_fp))
14915 {
14916 memset (line_buf, 0, BUFSIZ);
14917
14918 int line_len = fgetl (mask_fp, line_buf);
14919
14920 if (line_len == 0) continue;
14921
14922 if (line_buf[0] == '#') continue;
14923
14924 if (masks_avail == maskcnt)
14925 {
14926 masks = (char **) myrealloc (masks, masks_avail * sizeof (char *), INCR_MASKS * sizeof (char *));
14927
14928 masks_avail += INCR_MASKS;
14929 }
14930
14931 masks[maskcnt] = mystrdup (line_buf);
14932
14933 maskcnt++;
14934 }
14935
14936 fclose (mask_fp);
14937
14938 mask_from_file = 1;
14939 }
14940 else
14941 {
14942 maskcnt = 1;
14943
14944 masks[maskcnt - 1] = mystrdup (mask);
14945 }
14946 }
14947
14948 // base
14949
14950 int wls_left = myargc - (optind + 2);
14951
14952 for (int i = 0; i < wls_left; i++)
14953 {
14954 char *filename = myargv[optind + 1 + i];
14955
14956 struct stat file_stat;
14957
14958 if (stat (filename, &file_stat) == -1)
14959 {
14960 log_error ("ERROR: %s: %s", filename, strerror (errno));
14961
14962 return (-1);
14963 }
14964
14965 uint is_dir = S_ISDIR (file_stat.st_mode);
14966
14967 if (is_dir == 0)
14968 {
14969 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
14970
14971 dictcnt++;
14972
14973 dictfiles[dictcnt - 1] = filename;
14974 }
14975 else
14976 {
14977 // do not allow --keyspace w/ a directory
14978
14979 if (keyspace == 1)
14980 {
14981 log_error ("ERROR: keyspace parameter is not allowed together with a directory");
14982
14983 return (-1);
14984 }
14985
14986 char **dictionary_files = NULL;
14987
14988 dictionary_files = scan_directory (filename);
14989
14990 if (dictionary_files != NULL)
14991 {
14992 qsort (dictionary_files, count_dictionaries (dictionary_files), sizeof (char *), sort_by_stringptr);
14993
14994 for (int d = 0; dictionary_files[d] != NULL; d++)
14995 {
14996 char *l1_filename = dictionary_files[d];
14997
14998 struct stat l1_stat;
14999
15000 if (stat (l1_filename, &l1_stat) == -1)
15001 {
15002 log_error ("ERROR: %s: %s", l1_filename, strerror (errno));
15003
15004 return (-1);
15005 }
15006
15007 if (S_ISREG (l1_stat.st_mode))
15008 {
15009 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15010
15011 dictcnt++;
15012
15013 dictfiles[dictcnt - 1] = strdup (l1_filename);
15014 }
15015 }
15016 }
15017
15018 local_free (dictionary_files);
15019 }
15020 }
15021
15022 if (dictcnt < 1)
15023 {
15024 log_error ("ERROR: No usable dictionary file found.");
15025
15026 return (-1);
15027 }
15028
15029 if (increment)
15030 {
15031 maskcnt = 0;
15032
15033 uint mask_min = increment_min; // we can't reject smaller masks here
15034 uint mask_max = (increment_max < pw_max) ? increment_max : pw_max;
15035
15036 for (uint mask_cur = mask_min; mask_cur <= mask_max; mask_cur++)
15037 {
15038 char *cur_mask = mp_get_truncated_mask (mask, strlen (mask), mask_cur);
15039
15040 if (cur_mask == NULL) break;
15041
15042 masks[maskcnt] = cur_mask;
15043
15044 maskcnt++;
15045
15046 masks = (char **) myrealloc (masks, maskcnt * sizeof (char *), sizeof (char *));
15047 }
15048 }
15049 }
15050 else if (attack_mode == ATTACK_MODE_HYBRID2)
15051 {
15052 data.combs_mode = COMBINATOR_MODE_BASE_RIGHT;
15053
15054 // display
15055
15056 char *mask = myargv[optind + 1 + 0];
15057
15058 maskcnt = 0;
15059
15060 masks = (char **) mymalloc (1 * sizeof (char *));
15061
15062 // mod
15063
15064 struct stat file_stat;
15065
15066 if (stat (mask, &file_stat) == -1)
15067 {
15068 maskcnt = 1;
15069
15070 masks[maskcnt - 1] = mystrdup (mask);
15071 }
15072 else
15073 {
15074 uint is_file = S_ISREG (file_stat.st_mode);
15075
15076 if (is_file == 1)
15077 {
15078 FILE *mask_fp;
15079
15080 if ((mask_fp = fopen (mask, "r")) == NULL)
15081 {
15082 log_error ("ERROR: %s: %s", mask, strerror (errno));
15083
15084 return (-1);
15085 }
15086
15087 char line_buf[BUFSIZ];
15088
15089 uint masks_avail = 1;
15090
15091 while (!feof (mask_fp))
15092 {
15093 memset (line_buf, 0, BUFSIZ);
15094
15095 int line_len = fgetl (mask_fp, line_buf);
15096
15097 if (line_len == 0) continue;
15098
15099 if (line_buf[0] == '#') continue;
15100
15101 if (masks_avail == maskcnt)
15102 {
15103 masks = (char **) myrealloc (masks, masks_avail * sizeof (char *), INCR_MASKS * sizeof (char *));
15104
15105 masks_avail += INCR_MASKS;
15106 }
15107
15108 masks[maskcnt] = mystrdup (line_buf);
15109
15110 maskcnt++;
15111 }
15112
15113 fclose (mask_fp);
15114
15115 mask_from_file = 1;
15116 }
15117 else
15118 {
15119 maskcnt = 1;
15120
15121 masks[maskcnt - 1] = mystrdup (mask);
15122 }
15123 }
15124
15125 // base
15126
15127 int wls_left = myargc - (optind + 2);
15128
15129 for (int i = 0; i < wls_left; i++)
15130 {
15131 char *filename = myargv[optind + 2 + i];
15132
15133 struct stat file_stat;
15134
15135 if (stat (filename, &file_stat) == -1)
15136 {
15137 log_error ("ERROR: %s: %s", filename, strerror (errno));
15138
15139 return (-1);
15140 }
15141
15142 uint is_dir = S_ISDIR (file_stat.st_mode);
15143
15144 if (is_dir == 0)
15145 {
15146 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15147
15148 dictcnt++;
15149
15150 dictfiles[dictcnt - 1] = filename;
15151 }
15152 else
15153 {
15154 // do not allow --keyspace w/ a directory
15155
15156 if (keyspace == 1)
15157 {
15158 log_error ("ERROR: keyspace parameter is not allowed together with a directory");
15159
15160 return (-1);
15161 }
15162
15163 char **dictionary_files = NULL;
15164
15165 dictionary_files = scan_directory (filename);
15166
15167 if (dictionary_files != NULL)
15168 {
15169 qsort (dictionary_files, count_dictionaries (dictionary_files), sizeof (char *), sort_by_stringptr);
15170
15171 for (int d = 0; dictionary_files[d] != NULL; d++)
15172 {
15173 char *l1_filename = dictionary_files[d];
15174
15175 struct stat l1_stat;
15176
15177 if (stat (l1_filename, &l1_stat) == -1)
15178 {
15179 log_error ("ERROR: %s: %s", l1_filename, strerror (errno));
15180
15181 return (-1);
15182 }
15183
15184 if (S_ISREG (l1_stat.st_mode))
15185 {
15186 dictfiles = (char **) myrealloc (dictfiles, dictcnt * sizeof (char *), sizeof (char *));
15187
15188 dictcnt++;
15189
15190 dictfiles[dictcnt - 1] = strdup (l1_filename);
15191 }
15192 }
15193 }
15194
15195 local_free (dictionary_files);
15196 }
15197 }
15198
15199 if (dictcnt < 1)
15200 {
15201 log_error ("ERROR: No usable dictionary file found.");
15202
15203 return (-1);
15204 }
15205
15206 if (increment)
15207 {
15208 maskcnt = 0;
15209
15210 uint mask_min = increment_min; // we can't reject smaller masks here
15211 uint mask_max = (increment_max < pw_max) ? increment_max : pw_max;
15212
15213 for (uint mask_cur = mask_min; mask_cur <= mask_max; mask_cur++)
15214 {
15215 char *cur_mask = mp_get_truncated_mask (mask, strlen (mask), mask_cur);
15216
15217 if (cur_mask == NULL) break;
15218
15219 masks[maskcnt] = cur_mask;
15220
15221 maskcnt++;
15222
15223 masks = (char **) myrealloc (masks, maskcnt * sizeof (char *), sizeof (char *));
15224 }
15225 }
15226 }
15227
15228 data.pw_min = pw_min;
15229 data.pw_max = pw_max;
15230
15231 /**
15232 * weak hash check
15233 */
15234
15235 if (weak_hash_threshold >= salts_cnt)
15236 {
15237 uint first_device_id = 0;
15238
15239 for (uint device_id = 0; device_id < devices_cnt; device_id++)
15240 {
15241 hc_device_param_t *device_param = &data.devices_param[device_id];
15242
15243 if (device_param->skipped) continue;
15244
15245 first_device_id = device_id;
15246
15247 break;
15248 }
15249
15250 if (data.quiet == 0) log_info_nn ("Checking for weak hashes...");
15251
15252 for (uint salt_pos = 0; salt_pos < salts_cnt; salt_pos++)
15253 {
15254 weak_hash_check (&data.devices_param[first_device_id], salt_pos, kernel_loops);
15255 }
15256 }
15257
15258 // Display hack, guarantee that there is at least one \r before real start
15259
15260 if (data.quiet == 0) log_info_nn ("");
15261
15262 /**
15263 * status and monitor threads
15264 */
15265
15266 if (data.devices_status != STATUS_CRACKED) data.devices_status = STATUS_STARTING;
15267
15268 hc_thread_t i_thread = 0;
15269
15270 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
15271 {
15272 hc_thread_create (i_thread, thread_keypress, &benchmark);
15273 }
15274
15275 if (wordlist_mode == WL_MODE_STDIN) data.status = 1;
15276
15277 uint ni_threads_cnt = 0;
15278
15279 hc_thread_t *ni_threads = (hc_thread_t *) mycalloc (10, sizeof (hc_thread_t));
15280
15281 hc_thread_create (ni_threads[ni_threads_cnt], thread_monitor, NULL);
15282
15283 ni_threads_cnt++;
15284
15285 /**
15286 * Outfile remove
15287 */
15288
15289 if (keyspace == 0)
15290 {
15291 if (outfile_check_timer != 0)
15292 {
15293 if (data.outfile_check_directory != NULL)
15294 {
15295 if ((hash_mode != 5200) &&
15296 !((hash_mode >= 6200) && (hash_mode <= 6299)) &&
15297 (hash_mode != 9000))
15298 {
15299 hc_thread_create (ni_threads[ni_threads_cnt], thread_outfile_remove, NULL);
15300
15301 ni_threads_cnt++;
15302 }
15303 else
15304 {
15305 outfile_check_timer = 0;
15306 }
15307 }
15308 else
15309 {
15310 outfile_check_timer = 0;
15311 }
15312 }
15313 }
15314
15315 /**
15316 * Inform the user if we got some hashes remove because of the pot file remove feature
15317 */
15318
15319 if (data.quiet == 0)
15320 {
15321 if (potfile_remove_cracks > 0)
15322 {
15323 if (potfile_remove_cracks == 1) log_info ("INFO: removed 1 hash found in pot file\n");
15324 else log_info ("INFO: removed %u hashes found in pot file\n", potfile_remove_cracks);
15325 }
15326 }
15327
15328 data.outfile_check_timer = outfile_check_timer;
15329
15330 /**
15331 * main loop
15332 */
15333
15334 char **induction_dictionaries = NULL;
15335
15336 int induction_dictionaries_cnt = 0;
15337
15338 hcstat_table_t *root_table_buf = NULL;
15339 hcstat_table_t *markov_table_buf = NULL;
15340
15341 uint initial_restore_done = 0;
15342
15343 data.maskcnt = maskcnt;
15344
15345 for (uint maskpos = rd->maskpos; maskpos < maskcnt; maskpos++)
15346 {
15347 if (data.devices_status == STATUS_CRACKED) break;
15348
15349 data.devices_status = STATUS_INIT;
15350
15351 if (maskpos > rd->maskpos)
15352 {
15353 rd->dictpos = 0;
15354 }
15355
15356 rd->maskpos = maskpos;
15357 data.maskpos = maskpos;
15358
15359 if (attack_mode == ATTACK_MODE_HYBRID1 || attack_mode == ATTACK_MODE_HYBRID2 || attack_mode == ATTACK_MODE_BF)
15360 {
15361 char *mask = masks[maskpos];
15362
15363 if (mask_from_file == 1)
15364 {
15365 if (mask[0] == '\\' && mask[1] == '#') mask++; // escaped comment sign (sharp) "\#"
15366
15367 char *str_ptr;
15368 uint str_pos;
15369
15370 uint mask_offset = 0;
15371
15372 uint separator_cnt;
15373
15374 for (separator_cnt = 0; separator_cnt < 4; separator_cnt++)
15375 {
15376 str_ptr = strstr (mask + mask_offset, ",");
15377
15378 if (str_ptr == NULL) break;
15379
15380 str_pos = str_ptr - mask;
15381
15382 // escaped separator, i.e. "\,"
15383
15384 if (str_pos > 0)
15385 {
15386 if (mask[str_pos - 1] == '\\')
15387 {
15388 separator_cnt --;
15389
15390 mask_offset = str_pos + 1;
15391
15392 continue;
15393 }
15394 }
15395
15396 // reset the offset
15397
15398 mask_offset = 0;
15399
15400 mask[str_pos] = '\0';
15401
15402 switch (separator_cnt)
15403 {
15404 case 0:
15405 mp_reset_usr (mp_usr, 0);
15406
15407 custom_charset_1 = mask;
15408 mp_setup_usr (mp_sys, mp_usr, custom_charset_1, 0);
15409 break;
15410
15411 case 1:
15412 mp_reset_usr (mp_usr, 1);
15413
15414 custom_charset_2 = mask;
15415 mp_setup_usr (mp_sys, mp_usr, custom_charset_2, 1);
15416 break;
15417
15418 case 2:
15419 mp_reset_usr (mp_usr, 2);
15420
15421 custom_charset_3 = mask;
15422 mp_setup_usr (mp_sys, mp_usr, custom_charset_3, 2);
15423 break;
15424
15425 case 3:
15426 mp_reset_usr (mp_usr, 3);
15427
15428 custom_charset_4 = mask;
15429 mp_setup_usr (mp_sys, mp_usr, custom_charset_4, 3);
15430 break;
15431 }
15432
15433 mask = mask + str_pos + 1;
15434 }
15435 }
15436
15437 if ((attack_mode == ATTACK_MODE_HYBRID1) || (attack_mode == ATTACK_MODE_HYBRID2))
15438 {
15439 if (maskpos > 0)
15440 {
15441 local_free (css_buf);
15442 local_free (data.root_css_buf);
15443 local_free (data.markov_css_buf);
15444
15445 local_free (masks[maskpos - 1]);
15446 }
15447
15448 css_buf = mp_gen_css (mask, strlen (mask), mp_sys, mp_usr, &css_cnt);
15449
15450 data.mask = mask;
15451 data.css_cnt = css_cnt;
15452 data.css_buf = css_buf;
15453
15454 uint uniq_tbls[SP_PW_MAX][CHARSIZ] = { { 0 } };
15455
15456 mp_css_to_uniq_tbl (css_cnt, css_buf, uniq_tbls);
15457
15458 if (root_table_buf == NULL) root_table_buf = (hcstat_table_t *) mycalloc (SP_ROOT_CNT, sizeof (hcstat_table_t));
15459 if (markov_table_buf == NULL) markov_table_buf = (hcstat_table_t *) mycalloc (SP_MARKOV_CNT, sizeof (hcstat_table_t));
15460
15461 sp_setup_tbl (shared_dir, markov_hcstat, markov_disable, markov_classic, root_table_buf, markov_table_buf);
15462
15463 markov_threshold = (markov_threshold != 0) ? markov_threshold : CHARSIZ;
15464
15465 cs_t *root_css_buf = (cs_t *) mycalloc (SP_PW_MAX, sizeof (cs_t));
15466 cs_t *markov_css_buf = (cs_t *) mycalloc (SP_PW_MAX * CHARSIZ, sizeof (cs_t));
15467
15468 data.root_css_buf = root_css_buf;
15469 data.markov_css_buf = markov_css_buf;
15470
15471 sp_tbl_to_css (root_table_buf, markov_table_buf, root_css_buf, markov_css_buf, markov_threshold, uniq_tbls);
15472
15473 data.combs_cnt = sp_get_sum (0, css_cnt, root_css_buf);
15474
15475 local_free (root_table_buf);
15476 local_free (markov_table_buf);
15477
15478 // args
15479
15480 for (uint device_id = 0; device_id < devices_cnt; device_id++)
15481 {
15482 hc_device_param_t *device_param = &data.devices_param[device_id];
15483
15484 if (device_param->skipped) continue;
15485
15486 device_param->kernel_params_mp[0] = &device_param->d_combs;
15487 device_param->kernel_params_mp[1] = &device_param->d_root_css_buf;
15488 device_param->kernel_params_mp[2] = &device_param->d_markov_css_buf;
15489
15490 device_param->kernel_params_mp_buf64[3] = 0;
15491 device_param->kernel_params_mp_buf32[4] = css_cnt;
15492 device_param->kernel_params_mp_buf32[5] = 0;
15493 device_param->kernel_params_mp_buf32[6] = 0;
15494 device_param->kernel_params_mp_buf32[7] = 0;
15495
15496 if (attack_mode == ATTACK_MODE_HYBRID1)
15497 {
15498 if (opts_type & OPTS_TYPE_PT_ADD01) device_param->kernel_params_mp_buf32[5] = full01;
15499 if (opts_type & OPTS_TYPE_PT_ADD80) device_param->kernel_params_mp_buf32[5] = full80;
15500 if (opts_type & OPTS_TYPE_PT_ADDBITS14) device_param->kernel_params_mp_buf32[6] = 1;
15501 if (opts_type & OPTS_TYPE_PT_ADDBITS15) device_param->kernel_params_mp_buf32[7] = 1;
15502 }
15503 else if (attack_mode == ATTACK_MODE_HYBRID2)
15504 {
15505 device_param->kernel_params_mp_buf32[5] = 0;
15506 device_param->kernel_params_mp_buf32[6] = 0;
15507 device_param->kernel_params_mp_buf32[7] = 0;
15508 }
15509
15510 for (uint i = 0; i < 3; i++) hc_clSetKernelArg (device_param->kernel_mp, i, sizeof (cl_mem), (void *) device_param->kernel_params_mp[i]);
15511 for (uint i = 3; i < 4; i++) hc_clSetKernelArg (device_param->kernel_mp, i, sizeof (cl_ulong), (void *) device_param->kernel_params_mp[i]);
15512 for (uint i = 4; i < 8; i++) hc_clSetKernelArg (device_param->kernel_mp, i, sizeof (cl_uint), (void *) device_param->kernel_params_mp[i]);
15513
15514 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_root_css_buf, CL_TRUE, 0, device_param->size_root_css, root_css_buf, 0, NULL, NULL);
15515 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_markov_css_buf, CL_TRUE, 0, device_param->size_markov_css, markov_css_buf, 0, NULL, NULL);
15516 }
15517 }
15518 else if (attack_mode == ATTACK_MODE_BF)
15519 {
15520 dictcnt = 0; // number of "sub-masks", i.e. when using incremental mode
15521
15522 if (increment)
15523 {
15524 for (uint i = 0; i < dictcnt; i++)
15525 {
15526 local_free (dictfiles[i]);
15527 }
15528
15529 for (uint pw_len = MAX (1, pw_min); pw_len <= pw_max; pw_len++)
15530 {
15531 char *l1_filename = mp_get_truncated_mask (mask, strlen (mask), pw_len);
15532
15533 if (l1_filename == NULL) break;
15534
15535 dictcnt++;
15536
15537 dictfiles[dictcnt - 1] = l1_filename;
15538 }
15539 }
15540 else
15541 {
15542 dictcnt++;
15543
15544 dictfiles[dictcnt - 1] = mask;
15545 }
15546
15547 if (dictcnt == 0)
15548 {
15549 log_error ("ERROR: Mask is too small");
15550
15551 return (-1);
15552 }
15553 }
15554 }
15555
15556 free (induction_dictionaries);
15557
15558 // induction_dictionaries_cnt = 0; // implied
15559
15560 if (attack_mode != ATTACK_MODE_BF)
15561 {
15562 if (keyspace == 0)
15563 {
15564 induction_dictionaries = scan_directory (induction_directory);
15565
15566 induction_dictionaries_cnt = count_dictionaries (induction_dictionaries);
15567 }
15568 }
15569
15570 if (induction_dictionaries_cnt)
15571 {
15572 qsort (induction_dictionaries, induction_dictionaries_cnt, sizeof (char *), sort_by_mtime);
15573 }
15574
15575 /**
15576 * prevent the user from using --keyspace together w/ maskfile and or dictfile
15577 */
15578 if (keyspace == 1)
15579 {
15580 if ((maskcnt > 1) || (dictcnt > 1))
15581 {
15582 log_error ("ERROR: --keyspace is not supported with --increment or mask files");
15583
15584 return (-1);
15585 }
15586 }
15587
15588 for (uint dictpos = rd->dictpos; dictpos < dictcnt; )
15589 {
15590 char *subid = logfile_generate_subid ();
15591
15592 data.subid = subid;
15593
15594 logfile_sub_msg ("START");
15595
15596 data.devices_status = STATUS_INIT;
15597
15598 memset (data.words_progress_done, 0, data.salts_cnt * sizeof (u64));
15599 memset (data.words_progress_rejected, 0, data.salts_cnt * sizeof (u64));
15600 memset (data.words_progress_restored, 0, data.salts_cnt * sizeof (u64));
15601
15602 memset (data.cpt_buf, 0, CPT_BUF * sizeof (cpt_t));
15603
15604 data.cpt_pos = 0;
15605
15606 data.cpt_start = time (NULL);
15607
15608 data.cpt_total = 0;
15609
15610 if (data.restore == 0)
15611 {
15612 rd->words_cur = skip;
15613
15614 skip = 0;
15615
15616 data.skip = 0;
15617 }
15618
15619 data.ms_paused = 0;
15620
15621 data.words_cur = rd->words_cur;
15622
15623 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
15624 {
15625 hc_device_param_t *device_param = &data.devices_param[device_id];
15626
15627 if (device_param->skipped) continue;
15628
15629 device_param->speed_pos = 0;
15630
15631 memset (device_param->speed_cnt, 0, SPEED_CACHE * sizeof (u64));
15632 memset (device_param->speed_ms, 0, SPEED_CACHE * sizeof (float));
15633 memset (device_param->speed_rec, 0, SPEED_CACHE * sizeof (hc_timer_t));
15634
15635 device_param->kernel_power = device_param->kernel_power_user;
15636 device_param->kernel_blocks = device_param->kernel_blocks_user;
15637
15638 device_param->outerloop_pos = 0;
15639 device_param->outerloop_left = 0;
15640 device_param->innerloop_pos = 0;
15641 device_param->innerloop_left = 0;
15642
15643 // some more resets:
15644
15645 memset (device_param->pw_caches, 0, 64 * sizeof (pw_cache_t));
15646
15647 memset (device_param->pws_buf, 0, device_param->size_pws);
15648
15649 device_param->pw_cnt = 0;
15650 device_param->pws_cnt = 0;
15651
15652 device_param->words_off = 0;
15653 device_param->words_done = 0;
15654 }
15655
15656 data.kernel_blocks_div = 0;
15657
15658 // figure out some workload
15659
15660 if (attack_mode == ATTACK_MODE_STRAIGHT)
15661 {
15662 if (data.wordlist_mode == WL_MODE_FILE)
15663 {
15664 char *dictfile = NULL;
15665
15666 if (induction_dictionaries_cnt)
15667 {
15668 dictfile = induction_dictionaries[0];
15669 }
15670 else
15671 {
15672 dictfile = dictfiles[dictpos];
15673 }
15674
15675 data.dictfile = dictfile;
15676
15677 logfile_sub_string (dictfile);
15678
15679 for (uint i = 0; i < rp_files_cnt; i++)
15680 {
15681 logfile_sub_var_string ("rulefile", rp_files[i]);
15682 }
15683
15684 FILE *fd2 = fopen (dictfile, "rb");
15685
15686 if (fd2 == NULL)
15687 {
15688 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
15689
15690 return (-1);
15691 }
15692
15693 data.words_cnt = count_words (wl_data, fd2, dictfile, dictstat_base, &dictstat_nmemb);
15694
15695 fclose (fd2);
15696
15697 if (data.words_cnt == 0)
15698 {
15699 if (data.devices_status == STATUS_CRACKED) break;
15700 if (data.devices_status == STATUS_ABORTED) break;
15701
15702 dictpos++;
15703
15704 continue;
15705 }
15706 }
15707 }
15708 else if (attack_mode == ATTACK_MODE_COMBI)
15709 {
15710 char *dictfile = data.dictfile;
15711 char *dictfile2 = data.dictfile2;
15712
15713 logfile_sub_string (dictfile);
15714 logfile_sub_string (dictfile2);
15715
15716 if (data.combs_mode == COMBINATOR_MODE_BASE_LEFT)
15717 {
15718 FILE *fd2 = fopen (dictfile, "rb");
15719
15720 if (fd2 == NULL)
15721 {
15722 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
15723
15724 return (-1);
15725 }
15726
15727 data.words_cnt = count_words (wl_data, fd2, dictfile, dictstat_base, &dictstat_nmemb);
15728
15729 fclose (fd2);
15730 }
15731 else if (data.combs_mode == COMBINATOR_MODE_BASE_RIGHT)
15732 {
15733 FILE *fd2 = fopen (dictfile2, "rb");
15734
15735 if (fd2 == NULL)
15736 {
15737 log_error ("ERROR: %s: %s", dictfile2, strerror (errno));
15738
15739 return (-1);
15740 }
15741
15742 data.words_cnt = count_words (wl_data, fd2, dictfile2, dictstat_base, &dictstat_nmemb);
15743
15744 fclose (fd2);
15745 }
15746
15747 if (data.words_cnt == 0)
15748 {
15749 if (data.devices_status == STATUS_CRACKED) break;
15750 if (data.devices_status == STATUS_ABORTED) break;
15751
15752 dictpos++;
15753
15754 continue;
15755 }
15756 }
15757 else if ((attack_mode == ATTACK_MODE_HYBRID1) || (attack_mode == ATTACK_MODE_HYBRID2))
15758 {
15759 char *dictfile = NULL;
15760
15761 if (induction_dictionaries_cnt)
15762 {
15763 dictfile = induction_dictionaries[0];
15764 }
15765 else
15766 {
15767 dictfile = dictfiles[dictpos];
15768 }
15769
15770 data.dictfile = dictfile;
15771
15772 char *mask = data.mask;
15773
15774 logfile_sub_string (dictfile);
15775 logfile_sub_string (mask);
15776
15777 FILE *fd2 = fopen (dictfile, "rb");
15778
15779 if (fd2 == NULL)
15780 {
15781 log_error ("ERROR: %s: %s", dictfile, strerror (errno));
15782
15783 return (-1);
15784 }
15785
15786 data.words_cnt = count_words (wl_data, fd2, dictfile, dictstat_base, &dictstat_nmemb);
15787
15788 fclose (fd2);
15789
15790 if (data.words_cnt == 0)
15791 {
15792 if (data.devices_status == STATUS_CRACKED) break;
15793 if (data.devices_status == STATUS_ABORTED) break;
15794
15795 dictpos++;
15796
15797 continue;
15798 }
15799 }
15800 else if (attack_mode == ATTACK_MODE_BF)
15801 {
15802 local_free (css_buf);
15803 local_free (data.root_css_buf);
15804 local_free (data.markov_css_buf);
15805
15806 char *mask = dictfiles[dictpos];
15807
15808 logfile_sub_string (mask);
15809
15810 // base
15811
15812 css_buf = mp_gen_css (mask, strlen (mask), mp_sys, mp_usr, &css_cnt);
15813
15814 if (opts_type & OPTS_TYPE_PT_UNICODE)
15815 {
15816 uint css_cnt_unicode = css_cnt * 2;
15817
15818 cs_t *css_buf_unicode = (cs_t *) mycalloc (css_cnt_unicode, sizeof (cs_t));
15819
15820 for (uint i = 0, j = 0; i < css_cnt; i += 1, j += 2)
15821 {
15822 memcpy (&css_buf_unicode[j + 0], &css_buf[i], sizeof (cs_t));
15823
15824 css_buf_unicode[j + 1].cs_buf[0] = 0;
15825 css_buf_unicode[j + 1].cs_len = 1;
15826 }
15827
15828 free (css_buf);
15829
15830 css_buf = css_buf_unicode;
15831 css_cnt = css_cnt_unicode;
15832 }
15833
15834 // check if mask is not too large or too small for pw_min/pw_max (*2 if unicode)
15835
15836 uint mask_min = pw_min;
15837 uint mask_max = pw_max;
15838
15839 if (opts_type & OPTS_TYPE_PT_UNICODE)
15840 {
15841 mask_min *= 2;
15842 mask_max *= 2;
15843 }
15844
15845 if ((css_cnt < mask_min) || (css_cnt > mask_max))
15846 {
15847 if (css_cnt < mask_min)
15848 {
15849 log_info ("WARNING: skipping mask '%s' because it is smaller than the minimum password length", mask);
15850 }
15851
15852 if (css_cnt > mask_max)
15853 {
15854 log_info ("WARNING: skipping mask '%s' because it is larger than the maximum password length", mask);
15855 }
15856
15857 // skip to next mask
15858
15859 dictpos++;
15860
15861 rd->dictpos = dictpos;
15862
15863 logfile_sub_msg ("STOP");
15864
15865 continue;
15866 }
15867
15868 uint save_css_cnt = css_cnt;
15869
15870 if (opti_type & OPTI_TYPE_SINGLE_HASH)
15871 {
15872 if (opti_type & OPTI_TYPE_APPENDED_SALT)
15873 {
15874 uint salt_len = (uint) data.salts_buf[0].salt_len;
15875 char *salt_buf = (char *) data.salts_buf[0].salt_buf;
15876
15877 uint css_cnt_salt = css_cnt + salt_len;
15878
15879 cs_t *css_buf_salt = (cs_t *) mycalloc (css_cnt_salt, sizeof (cs_t));
15880
15881 memcpy (css_buf_salt, css_buf, css_cnt * sizeof (cs_t));
15882
15883 for (uint i = 0, j = css_cnt; i < salt_len; i++, j++)
15884 {
15885 css_buf_salt[j].cs_buf[0] = salt_buf[i];
15886 css_buf_salt[j].cs_len = 1;
15887 }
15888
15889 free (css_buf);
15890
15891 css_buf = css_buf_salt;
15892 css_cnt = css_cnt_salt;
15893 }
15894 }
15895
15896 data.mask = mask;
15897 data.css_cnt = css_cnt;
15898 data.css_buf = css_buf;
15899
15900 if (maskpos > 0 && dictpos == 0) free (masks[maskpos - 1]);
15901
15902 uint uniq_tbls[SP_PW_MAX][CHARSIZ] = { { 0 } };
15903
15904 mp_css_to_uniq_tbl (css_cnt, css_buf, uniq_tbls);
15905
15906 if (root_table_buf == NULL) root_table_buf = (hcstat_table_t *) mycalloc (SP_ROOT_CNT, sizeof (hcstat_table_t));
15907 if (markov_table_buf == NULL) markov_table_buf = (hcstat_table_t *) mycalloc (SP_MARKOV_CNT, sizeof (hcstat_table_t));
15908
15909 sp_setup_tbl (shared_dir, markov_hcstat, markov_disable, markov_classic, root_table_buf, markov_table_buf);
15910
15911 markov_threshold = (markov_threshold != 0) ? markov_threshold : CHARSIZ;
15912
15913 cs_t *root_css_buf = (cs_t *) mycalloc (SP_PW_MAX, sizeof (cs_t));
15914 cs_t *markov_css_buf = (cs_t *) mycalloc (SP_PW_MAX * CHARSIZ, sizeof (cs_t));
15915
15916 data.root_css_buf = root_css_buf;
15917 data.markov_css_buf = markov_css_buf;
15918
15919 sp_tbl_to_css (root_table_buf, markov_table_buf, root_css_buf, markov_css_buf, markov_threshold, uniq_tbls);
15920
15921 data.words_cnt = sp_get_sum (0, css_cnt, root_css_buf);
15922
15923 local_free (root_table_buf);
15924 local_free (markov_table_buf);
15925
15926 // copy + args
15927
15928 uint css_cnt_l = css_cnt;
15929 uint css_cnt_r;
15930
15931 if (attack_exec == ATTACK_EXEC_INSIDE_KERNEL)
15932 {
15933 if (save_css_cnt < 6)
15934 {
15935 css_cnt_r = 1;
15936 }
15937 else if (save_css_cnt == 6)
15938 {
15939 css_cnt_r = 2;
15940 }
15941 else
15942 {
15943 if (opts_type & OPTS_TYPE_PT_UNICODE)
15944 {
15945 if (save_css_cnt == 8 || save_css_cnt == 10)
15946 {
15947 css_cnt_r = 2;
15948 }
15949 else
15950 {
15951 css_cnt_r = 4;
15952 }
15953 }
15954 else
15955 {
15956 if ((css_buf[0].cs_len * css_buf[1].cs_len * css_buf[2].cs_len) > 256)
15957 {
15958 css_cnt_r = 3;
15959 }
15960 else
15961 {
15962 css_cnt_r = 4;
15963 }
15964 }
15965 }
15966 }
15967 else
15968 {
15969 css_cnt_r = 1;
15970
15971 /* unfinished code?
15972 int sum = css_buf[css_cnt_r - 1].cs_len;
15973
15974 for (uint i = 1; i < 4 && i < css_cnt; i++)
15975 {
15976 if (sum > 1) break; // we really don't need alot of amplifier them for slow hashes
15977
15978 css_cnt_r++;
15979
15980 sum *= css_buf[css_cnt_r - 1].cs_len;
15981 }
15982 */
15983 }
15984
15985 css_cnt_l -= css_cnt_r;
15986
15987 data.bfs_cnt = sp_get_sum (0, css_cnt_r, root_css_buf);
15988
15989 for (uint device_id = 0; device_id < devices_cnt; device_id++)
15990 {
15991 hc_device_param_t *device_param = &data.devices_param[device_id];
15992
15993 if (device_param->skipped) continue;
15994
15995 device_param->kernel_params_mp_l[0] = &device_param->d_pws_buf;
15996 device_param->kernel_params_mp_l[1] = &device_param->d_root_css_buf;
15997 device_param->kernel_params_mp_l[2] = &device_param->d_markov_css_buf;
15998
15999 device_param->kernel_params_mp_l_buf64[3] = 0;
16000 device_param->kernel_params_mp_l_buf32[4] = css_cnt_l;
16001 device_param->kernel_params_mp_l_buf32[5] = css_cnt_r;
16002 device_param->kernel_params_mp_l_buf32[6] = 0;
16003 device_param->kernel_params_mp_l_buf32[7] = 0;
16004 device_param->kernel_params_mp_l_buf32[8] = 0;
16005
16006 if (opts_type & OPTS_TYPE_PT_ADD01) device_param->kernel_params_mp_l_buf32[6] = full01;
16007 if (opts_type & OPTS_TYPE_PT_ADD80) device_param->kernel_params_mp_l_buf32[6] = full80;
16008 if (opts_type & OPTS_TYPE_PT_ADDBITS14) device_param->kernel_params_mp_l_buf32[7] = 1;
16009 if (opts_type & OPTS_TYPE_PT_ADDBITS15) device_param->kernel_params_mp_l_buf32[8] = 1;
16010
16011 device_param->kernel_params_mp_r[0] = &device_param->d_bfs;
16012 device_param->kernel_params_mp_r[1] = &device_param->d_root_css_buf;
16013 device_param->kernel_params_mp_r[2] = &device_param->d_markov_css_buf;
16014
16015 device_param->kernel_params_mp_r_buf64[3] = 0;
16016 device_param->kernel_params_mp_r_buf32[4] = css_cnt_r;
16017 device_param->kernel_params_mp_r_buf32[5] = 0;
16018 device_param->kernel_params_mp_r_buf32[6] = 0;
16019 device_param->kernel_params_mp_r_buf32[7] = 0;
16020
16021 for (uint i = 0; i < 3; i++) hc_clSetKernelArg (device_param->kernel_mp_l, i, sizeof (cl_mem), (void *) device_param->kernel_params_mp_l[i]);
16022 for (uint i = 3; i < 4; i++) hc_clSetKernelArg (device_param->kernel_mp_l, i, sizeof (cl_ulong), (void *) device_param->kernel_params_mp_l[i]);
16023 for (uint i = 4; i < 9; i++) hc_clSetKernelArg (device_param->kernel_mp_l, i, sizeof (cl_uint), (void *) device_param->kernel_params_mp_l[i]);
16024
16025 for (uint i = 0; i < 3; i++) hc_clSetKernelArg (device_param->kernel_mp_r, i, sizeof (cl_mem), (void *) device_param->kernel_params_mp_r[i]);
16026 for (uint i = 3; i < 4; i++) hc_clSetKernelArg (device_param->kernel_mp_r, i, sizeof (cl_ulong), (void *) device_param->kernel_params_mp_r[i]);
16027 for (uint i = 4; i < 8; i++) hc_clSetKernelArg (device_param->kernel_mp_r, i, sizeof (cl_uint), (void *) device_param->kernel_params_mp_r[i]);
16028
16029 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_root_css_buf, CL_TRUE, 0, device_param->size_root_css, root_css_buf, 0, NULL, NULL);
16030 hc_clEnqueueWriteBuffer (device_param->command_queue, device_param->d_markov_css_buf, CL_TRUE, 0, device_param->size_markov_css, markov_css_buf, 0, NULL, NULL);
16031 }
16032 }
16033
16034 u64 words_base = data.words_cnt;
16035
16036 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
16037 {
16038 if (data.kernel_rules_cnt)
16039 {
16040 words_base /= data.kernel_rules_cnt;
16041 }
16042 }
16043 else if (data.attack_kern == ATTACK_KERN_COMBI)
16044 {
16045 if (data.combs_cnt)
16046 {
16047 words_base /= data.combs_cnt;
16048 }
16049 }
16050 else if (data.attack_kern == ATTACK_KERN_BF)
16051 {
16052 if (data.bfs_cnt)
16053 {
16054 words_base /= data.bfs_cnt;
16055 }
16056 }
16057
16058 data.words_base = words_base;
16059
16060 if (keyspace == 1)
16061 {
16062 log_info ("%llu", (unsigned long long int) words_base);
16063
16064 return (0);
16065 }
16066
16067 if (data.words_cur > data.words_base)
16068 {
16069 log_error ("ERROR: restore value greater keyspace");
16070
16071 return (-1);
16072 }
16073
16074 if (data.words_cur)
16075 {
16076 if (data.attack_kern == ATTACK_KERN_STRAIGHT)
16077 {
16078 for (uint i = 0; i < data.salts_cnt; i++)
16079 {
16080 data.words_progress_restored[i] = data.words_cur * data.kernel_rules_cnt;
16081 }
16082 }
16083 else if (data.attack_kern == ATTACK_KERN_COMBI)
16084 {
16085 for (uint i = 0; i < data.salts_cnt; i++)
16086 {
16087 data.words_progress_restored[i] = data.words_cur * data.combs_cnt;
16088 }
16089 }
16090 else if (data.attack_kern == ATTACK_KERN_BF)
16091 {
16092 for (uint i = 0; i < data.salts_cnt; i++)
16093 {
16094 data.words_progress_restored[i] = data.words_cur * data.bfs_cnt;
16095 }
16096 }
16097 }
16098
16099 /*
16100 * Inform user about possible slow speeds
16101 */
16102
16103 if ((wordlist_mode == WL_MODE_FILE) || (wordlist_mode == WL_MODE_MASK))
16104 {
16105 if (data.words_base < kernel_blocks_all)
16106 {
16107 if (quiet == 0)
16108 {
16109 log_info ("");
16110 log_info ("ATTENTION!");
16111 log_info (" The wordlist or mask you are using is too small.");
16112 log_info (" Therefore, oclHashcat is unable to utilize the full parallelization power of your device(s).");
16113 log_info (" The cracking speed will drop.");
16114 log_info (" Workaround: https://hashcat.net/wiki/doku.php?id=frequently_asked_questions#how_to_create_more_work_for_full_speed");
16115 log_info ("");
16116 }
16117 }
16118 }
16119
16120 /*
16121 * Update loopback file
16122 */
16123
16124 if (loopback == 1)
16125 {
16126 time_t now;
16127
16128 time (&now);
16129
16130 uint random_num = get_random_num (0, 9999);
16131
16132 snprintf (loopback_file, loopback_size - 1, "%s/%s.%d_%i", induction_directory, LOOPBACK_FILE, (int) now, random_num);
16133
16134 data.loopback_file = loopback_file;
16135 }
16136
16137 /*
16138 * Update dictionary statistic
16139 */
16140
16141 if (keyspace == 0)
16142 {
16143 dictstat_fp = fopen (dictstat, "wb");
16144
16145 if (dictstat_fp)
16146 {
16147 fwrite (dictstat_base, sizeof (dictstat_t), dictstat_nmemb, dictstat_fp);
16148
16149 fclose (dictstat_fp);
16150 }
16151 }
16152
16153 data.devices_status = STATUS_RUNNING;
16154
16155 if (initial_restore_done == 0)
16156 {
16157 if (data.restore_disable == 0) cycle_restore ();
16158
16159 initial_restore_done = 1;
16160 }
16161
16162 hc_timer_set (&data.timer_running);
16163
16164 if ((wordlist_mode == WL_MODE_FILE) || (wordlist_mode == WL_MODE_MASK))
16165 {
16166 if ((quiet == 0) && (status == 0) && (benchmark == 0))
16167 {
16168 if (quiet == 0) fprintf (stdout, "%s", PROMPT);
16169 if (quiet == 0) fflush (stdout);
16170 }
16171 }
16172 else if (wordlist_mode == WL_MODE_STDIN)
16173 {
16174 if (data.quiet == 0) log_info ("Starting attack in stdin mode...");
16175 if (data.quiet == 0) log_info ("");
16176 }
16177
16178 time_t runtime_start;
16179
16180 time (&runtime_start);
16181
16182 data.runtime_start = runtime_start;
16183
16184 /**
16185 * create cracker threads
16186 */
16187
16188 hc_thread_t *c_threads = (hc_thread_t *) mycalloc (devices_cnt, sizeof (hc_thread_t));
16189
16190 for (uint device_id = 0; device_id < devices_cnt; device_id++)
16191 {
16192 hc_device_param_t *device_param = &devices_param[device_id];
16193
16194 if (wordlist_mode == WL_MODE_STDIN)
16195 {
16196 hc_thread_create (c_threads[device_id], thread_calc_stdin, device_param);
16197 }
16198 else
16199 {
16200 hc_thread_create (c_threads[device_id], thread_calc, device_param);
16201 }
16202 }
16203
16204 // wait for crack threads to exit
16205
16206 hc_thread_wait (devices_cnt, c_threads);
16207
16208 local_free (c_threads);
16209
16210 data.restore = 0;
16211
16212 // finalize task
16213
16214 logfile_sub_var_uint ("status-after-work", data.devices_status);
16215
16216 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
16217
16218 if (data.devices_status == STATUS_CRACKED) break;
16219 if (data.devices_status == STATUS_ABORTED) break;
16220
16221 if (data.devices_status == STATUS_BYPASS)
16222 {
16223 data.devices_status = STATUS_RUNNING;
16224 }
16225
16226 if (induction_dictionaries_cnt)
16227 {
16228 unlink (induction_dictionaries[0]);
16229 }
16230
16231 free (induction_dictionaries);
16232
16233 if (attack_mode != ATTACK_MODE_BF)
16234 {
16235 induction_dictionaries = scan_directory (induction_directory);
16236
16237 induction_dictionaries_cnt = count_dictionaries (induction_dictionaries);
16238 }
16239
16240 if (benchmark == 0)
16241 {
16242 if (((dictpos + 1) < dictcnt) || ((maskpos + 1) < maskcnt) || induction_dictionaries_cnt)
16243 {
16244 if (quiet == 0) clear_prompt ();
16245
16246 if (quiet == 0) log_info ("");
16247
16248 if (status == 1)
16249 {
16250 status_display ();
16251 }
16252 else
16253 {
16254 if (quiet == 0) status_display ();
16255 }
16256
16257 if (quiet == 0) log_info ("");
16258 }
16259 }
16260
16261 if (attack_mode == ATTACK_MODE_BF)
16262 {
16263 dictpos++;
16264
16265 rd->dictpos = dictpos;
16266 }
16267 else
16268 {
16269 if (induction_dictionaries_cnt)
16270 {
16271 qsort (induction_dictionaries, induction_dictionaries_cnt, sizeof (char *), sort_by_mtime);
16272 }
16273 else
16274 {
16275 dictpos++;
16276
16277 rd->dictpos = dictpos;
16278 }
16279 }
16280
16281 time_t runtime_stop;
16282
16283 time (&runtime_stop);
16284
16285 data.runtime_stop = runtime_stop;
16286
16287 logfile_sub_uint (runtime_start);
16288 logfile_sub_uint (runtime_stop);
16289
16290 logfile_sub_msg ("STOP");
16291
16292 global_free (subid);
16293 }
16294
16295 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) check_checkpoint ();
16296
16297 if (data.devices_status == STATUS_CRACKED) break;
16298 if (data.devices_status == STATUS_ABORTED) break;
16299 if (data.devices_status == STATUS_QUIT) break;
16300
16301 if (data.devices_status == STATUS_BYPASS)
16302 {
16303 data.devices_status = STATUS_RUNNING;
16304 }
16305 }
16306
16307 // 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
16308
16309 if (attack_mode == ATTACK_MODE_STRAIGHT)
16310 {
16311 if (data.wordlist_mode == WL_MODE_FILE)
16312 {
16313 if (data.dictfile == NULL)
16314 {
16315 if (dictfiles != NULL)
16316 {
16317 data.dictfile = dictfiles[0];
16318
16319 hc_timer_set (&data.timer_running);
16320 }
16321 }
16322 }
16323 }
16324 // NOTE: combi is okay because it is already set beforehand
16325 else if (attack_mode == ATTACK_MODE_HYBRID1 || attack_mode == ATTACK_MODE_HYBRID2)
16326 {
16327 if (data.dictfile == NULL)
16328 {
16329 if (dictfiles != NULL)
16330 {
16331 hc_timer_set (&data.timer_running);
16332
16333 data.dictfile = dictfiles[0];
16334 }
16335 }
16336 }
16337 else if (attack_mode == ATTACK_MODE_BF)
16338 {
16339 if (data.mask == NULL)
16340 {
16341 hc_timer_set (&data.timer_running);
16342
16343 data.mask = masks[0];
16344 }
16345 }
16346
16347 if ((data.devices_status != STATUS_CRACKED) && (data.devices_status != STATUS_ABORTED) && (data.devices_status != STATUS_QUIT))
16348 {
16349 data.devices_status = STATUS_EXHAUSTED;
16350 }
16351
16352 // if cracked / aborted remove last induction dictionary
16353
16354 for (int file_pos = 0; file_pos < induction_dictionaries_cnt; file_pos++)
16355 {
16356 struct stat induct_stat;
16357
16358 if (stat (induction_dictionaries[file_pos], &induct_stat) == 0)
16359 {
16360 unlink (induction_dictionaries[file_pos]);
16361 }
16362 }
16363
16364 // wait for non-interactive threads
16365
16366 for (uint thread_idx = 0; thread_idx < ni_threads_cnt; thread_idx++)
16367 {
16368 hc_thread_wait (1, &ni_threads[thread_idx]);
16369 }
16370
16371 local_free (ni_threads);
16372
16373 // wait for interactive threads
16374
16375 if ((data.wordlist_mode == WL_MODE_FILE) || (data.wordlist_mode == WL_MODE_MASK))
16376 {
16377 hc_thread_wait (1, &i_thread);
16378 }
16379
16380 // we dont need restore file anymore
16381 if (data.restore_disable == 0)
16382 {
16383 if ((data.devices_status == STATUS_EXHAUSTED) || (data.devices_status == STATUS_CRACKED))
16384 {
16385 unlink (eff_restore_file);
16386 unlink (new_restore_file);
16387 }
16388 else
16389 {
16390 cycle_restore ();
16391 }
16392 }
16393
16394 // finally save left hashes
16395
16396 if ((hashlist_mode == HL_MODE_FILE) && (remove == 1) && (data.digests_saved != data.digests_done))
16397 {
16398 save_hash ();
16399 }
16400
16401 /**
16402 * Clean up
16403 */
16404
16405 if (benchmark == 1)
16406 {
16407 status_benchmark ();
16408
16409 log_info ("");
16410 }
16411 else
16412 {
16413 if (quiet == 0) clear_prompt ();
16414
16415 if (quiet == 0) log_info ("");
16416
16417 if (status == 1)
16418 {
16419 status_display ();
16420 }
16421 else
16422 {
16423 if (quiet == 0) status_display ();
16424 }
16425
16426 if (quiet == 0) log_info ("");
16427 }
16428
16429 for (uint device_id = 0; device_id < devices_cnt; device_id++)
16430 {
16431 hc_device_param_t *device_param = &data.devices_param[device_id];
16432
16433 if (device_param->skipped) continue;
16434
16435 local_free (device_param->result);
16436
16437 local_free (device_param->pw_caches);
16438
16439 local_free (device_param->combs_buf);
16440
16441 local_free (device_param->hooks_buf);
16442
16443 local_free (device_param->device_name);
16444
16445 local_free (device_param->device_name_chksum);
16446
16447 local_free (device_param->device_version);
16448
16449 local_free (device_param->driver_version);
16450
16451 if (device_param->pws_buf) myfree (device_param->pws_buf);
16452 if (device_param->d_pws_buf) hc_clReleaseMemObject (device_param->d_pws_buf);
16453 if (device_param->d_pws_amp_buf) hc_clReleaseMemObject (device_param->d_pws_amp_buf);
16454 if (device_param->d_rules) hc_clReleaseMemObject (device_param->d_rules);
16455 if (device_param->d_rules_c) hc_clReleaseMemObject (device_param->d_rules_c);
16456 if (device_param->d_combs) hc_clReleaseMemObject (device_param->d_combs);
16457 if (device_param->d_combs_c) hc_clReleaseMemObject (device_param->d_combs_c);
16458 if (device_param->d_bfs) hc_clReleaseMemObject (device_param->d_bfs);
16459 if (device_param->d_bfs_c) hc_clReleaseMemObject (device_param->d_bfs_c);
16460 if (device_param->d_bitmap_s1_a) hc_clReleaseMemObject (device_param->d_bitmap_s1_a);
16461 if (device_param->d_bitmap_s1_b) hc_clReleaseMemObject (device_param->d_bitmap_s1_b);
16462 if (device_param->d_bitmap_s1_c) hc_clReleaseMemObject (device_param->d_bitmap_s1_c);
16463 if (device_param->d_bitmap_s1_d) hc_clReleaseMemObject (device_param->d_bitmap_s1_d);
16464 if (device_param->d_bitmap_s2_a) hc_clReleaseMemObject (device_param->d_bitmap_s2_a);
16465 if (device_param->d_bitmap_s2_b) hc_clReleaseMemObject (device_param->d_bitmap_s2_b);
16466 if (device_param->d_bitmap_s2_c) hc_clReleaseMemObject (device_param->d_bitmap_s2_c);
16467 if (device_param->d_bitmap_s2_d) hc_clReleaseMemObject (device_param->d_bitmap_s2_d);
16468 if (device_param->d_plain_bufs) hc_clReleaseMemObject (device_param->d_plain_bufs);
16469 if (device_param->d_digests_buf) hc_clReleaseMemObject (device_param->d_digests_buf);
16470 if (device_param->d_digests_shown) hc_clReleaseMemObject (device_param->d_digests_shown);
16471 if (device_param->d_salt_bufs) hc_clReleaseMemObject (device_param->d_salt_bufs);
16472 if (device_param->d_esalt_bufs) hc_clReleaseMemObject (device_param->d_esalt_bufs);
16473 if (device_param->d_tmps) hc_clReleaseMemObject (device_param->d_tmps);
16474 if (device_param->d_hooks) hc_clReleaseMemObject (device_param->d_hooks);
16475 if (device_param->d_result) hc_clReleaseMemObject (device_param->d_result);
16476 if (device_param->d_scryptV_buf) hc_clReleaseMemObject (device_param->d_scryptV_buf);
16477 if (device_param->d_root_css_buf) hc_clReleaseMemObject (device_param->d_root_css_buf);
16478 if (device_param->d_markov_css_buf) hc_clReleaseMemObject (device_param->d_markov_css_buf);
16479 if (device_param->d_tm_c) hc_clReleaseMemObject (device_param->d_tm_c);
16480
16481 if (device_param->kernel1) hc_clReleaseKernel (device_param->kernel1);
16482 if (device_param->kernel12) hc_clReleaseKernel (device_param->kernel12);
16483 if (device_param->kernel2) hc_clReleaseKernel (device_param->kernel2);
16484 if (device_param->kernel23) hc_clReleaseKernel (device_param->kernel23);
16485 if (device_param->kernel3) hc_clReleaseKernel (device_param->kernel3);
16486 if (device_param->kernel_mp) hc_clReleaseKernel (device_param->kernel_mp);
16487 if (device_param->kernel_mp_l) hc_clReleaseKernel (device_param->kernel_mp_l);
16488 if (device_param->kernel_mp_r) hc_clReleaseKernel (device_param->kernel_mp_r);
16489 if (device_param->kernel_tb) hc_clReleaseKernel (device_param->kernel_tb);
16490 if (device_param->kernel_tm) hc_clReleaseKernel (device_param->kernel_tm);
16491 if (device_param->kernel_amp) hc_clReleaseKernel (device_param->kernel_amp);
16492
16493 if (device_param->program) hc_clReleaseProgram (device_param->program);
16494 if (device_param->program_mp) hc_clReleaseProgram (device_param->program_mp);
16495 if (device_param->program_amp) hc_clReleaseProgram (device_param->program_amp);
16496
16497 if (device_param->command_queue) hc_clReleaseCommandQueue (device_param->command_queue);
16498 if (device_param->context) hc_clReleaseContext (device_param->context);
16499 }
16500
16501 // reset default fan speed
16502
16503 #ifdef HAVE_HWMON
16504 if (gpu_temp_disable == 0)
16505 {
16506 #ifdef HAVE_ADL
16507 if (gpu_temp_retain != 0) // VENDOR_ID_AMD is implied here
16508 {
16509 hc_thread_mutex_lock (mux_adl);
16510
16511 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16512 {
16513 hc_device_param_t *device_param = &data.devices_param[device_id];
16514
16515 if (device_param->skipped) continue;
16516
16517 if (data.hm_device[device_id].fan_supported == 1)
16518 {
16519 int fanspeed = temp_retain_fanspeed_value[device_id];
16520
16521 if (fanspeed == -1) continue;
16522
16523 int rc = hm_set_fanspeed_with_device_id_amd (device_id, fanspeed);
16524
16525 if (rc == -1) log_info ("WARNING: Failed to restore default fan speed for gpu number: %i:", device_id);
16526 }
16527 }
16528
16529 hc_thread_mutex_unlock (mux_adl);
16530 }
16531 #endif // HAVE_ADL
16532 }
16533
16534 // reset power tuning
16535
16536 #ifdef HAVE_ADL
16537 if (powertune_enable == 1) // VENDOR_ID_AMD is implied here
16538 {
16539 hc_thread_mutex_lock (mux_adl);
16540
16541 for (uint device_id = 0; device_id < data.devices_cnt; device_id++)
16542 {
16543 hc_device_param_t *device_param = &data.devices_param[device_id];
16544
16545 if (device_param->skipped) continue;
16546
16547 if (data.hm_device[device_id].od_version == 6)
16548 {
16549 // check powertune capabilities first, if not available then skip device
16550
16551 int powertune_supported = 0;
16552
16553 if ((hc_ADL_Overdrive6_PowerControl_Caps (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, &powertune_supported)) != ADL_OK)
16554 {
16555 log_error ("ERROR: Failed to get ADL PowerControl Capabilities");
16556
16557 return (-1);
16558 }
16559
16560 if (powertune_supported != 0)
16561 {
16562 // powercontrol settings
16563
16564 if ((hc_ADL_Overdrive_PowerControl_Set (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, od_power_control_status[device_id])) != ADL_OK)
16565 {
16566 log_info ("ERROR: Failed to restore the ADL PowerControl values");
16567
16568 return (-1);
16569 }
16570
16571 // clocks
16572
16573 ADLOD6StateInfo *performance_state = (ADLOD6StateInfo*) mycalloc (1, sizeof (ADLOD6StateInfo) + sizeof (ADLOD6PerformanceLevel));
16574
16575 performance_state->iNumberOfPerformanceLevels = 2;
16576
16577 performance_state->aLevels[0].iEngineClock = od_clock_mem_status[device_id].state.aLevels[0].iEngineClock;
16578 performance_state->aLevels[1].iEngineClock = od_clock_mem_status[device_id].state.aLevels[1].iEngineClock;
16579 performance_state->aLevels[0].iMemoryClock = od_clock_mem_status[device_id].state.aLevels[0].iMemoryClock;
16580 performance_state->aLevels[1].iMemoryClock = od_clock_mem_status[device_id].state.aLevels[1].iMemoryClock;
16581
16582 if ((hc_ADL_Overdrive_State_Set (data.hm_dll_amd, data.hm_device[device_id].adapter_index.amd, ADL_OD6_SETSTATE_PERFORMANCE, performance_state)) != ADL_OK)
16583 {
16584 log_info ("ERROR: Failed to restore ADL performance state");
16585
16586 return (-1);
16587 }
16588
16589 local_free (performance_state);
16590 }
16591 }
16592 }
16593
16594 hc_thread_mutex_unlock (mux_adl);
16595 }
16596 #endif // HAVE_ADL
16597
16598 if (gpu_temp_disable == 0)
16599 {
16600 #if defined(LINUX) && defined(HAVE_NVML)
16601 if (data.hm_dll_nv)
16602 {
16603 hc_NVML_nvmlShutdown (data.hm_dll_nv);
16604
16605 hm_close (data.hm_dll_nv);
16606 }
16607 #endif
16608
16609 #if defined(WIN) && (HAVE_NVAPI)
16610 NvAPI_Unload ();
16611 #endif
16612
16613 #ifdef HAVE_ADL
16614 if (data.hm_dll_amd)
16615 {
16616 hc_ADL_Main_Control_Destroy (data.hm_dll_amd);
16617
16618 hm_close (data.hm_dll_amd);
16619 }
16620 #endif
16621 }
16622 #endif // HAVE_HWMON
16623
16624 // free memory
16625
16626 local_free (masks);
16627
16628 local_free (dictstat_base);
16629
16630 for (uint pot_pos = 0; pot_pos < pot_cnt; pot_pos++)
16631 {
16632 pot_t *pot_ptr = &pot[pot_pos];
16633
16634 hash_t *hash = &pot_ptr->hash;
16635
16636 local_free (hash->digest);
16637
16638 if (isSalted)
16639 {
16640 local_free (hash->salt);
16641 }
16642 }
16643
16644 local_free (pot);
16645
16646 local_free (all_kernel_rules_cnt);
16647 local_free (all_kernel_rules_buf);
16648
16649 local_free (wl_data->buf);
16650 local_free (wl_data);
16651
16652 local_free (bitmap_s1_a);
16653 local_free (bitmap_s1_b);
16654 local_free (bitmap_s1_c);
16655 local_free (bitmap_s1_d);
16656 local_free (bitmap_s2_a);
16657 local_free (bitmap_s2_b);
16658 local_free (bitmap_s2_c);
16659 local_free (bitmap_s2_d);
16660
16661 #ifdef HAVE_HWMON
16662 local_free (temp_retain_fanspeed_value);
16663 #ifdef HAVE_ADL
16664 local_free (od_clock_mem_status);
16665 local_free (od_power_control_status);
16666 #endif // ADL
16667 #endif
16668
16669 global_free (devices_param);
16670
16671 global_free (kernel_rules_buf);
16672
16673 global_free (root_css_buf);
16674 global_free (markov_css_buf);
16675
16676 global_free (digests_buf);
16677 global_free (digests_shown);
16678 global_free (digests_shown_tmp);
16679
16680 global_free (salts_buf);
16681 global_free (salts_shown);
16682
16683 global_free (esalts_buf);
16684
16685 global_free (words_progress_done);
16686 global_free (words_progress_rejected);
16687 global_free (words_progress_restored);
16688
16689 if (pot_fp) fclose (pot_fp);
16690
16691 if (data.devices_status == STATUS_QUIT) break;
16692 }
16693
16694 // destroy others mutex
16695
16696 hc_thread_mutex_delete (mux_dispatcher);
16697 hc_thread_mutex_delete (mux_counter);
16698 hc_thread_mutex_delete (mux_display);
16699 hc_thread_mutex_delete (mux_adl);
16700
16701 // free memory
16702
16703 local_free (eff_restore_file);
16704 local_free (new_restore_file);
16705
16706 local_free (rd);
16707
16708 // loopback
16709
16710 local_free (loopback_file);
16711
16712 if (loopback == 1) unlink (loopback_file);
16713
16714 // induction directory
16715
16716 if (induction_dir == NULL)
16717 {
16718 if (attack_mode != ATTACK_MODE_BF)
16719 {
16720 if (rmdir (induction_directory) == -1)
16721 {
16722 if (errno == ENOENT)
16723 {
16724 // good, we can ignore
16725 }
16726 else if (errno == ENOTEMPTY)
16727 {
16728 // good, we can ignore
16729 }
16730 else
16731 {
16732 log_error ("ERROR: %s: %s", induction_directory, strerror (errno));
16733
16734 return (-1);
16735 }
16736 }
16737
16738 local_free (induction_directory);
16739 }
16740 }
16741
16742 // outfile-check directory
16743
16744 if (outfile_check_dir == NULL)
16745 {
16746 if (rmdir (outfile_check_directory) == -1)
16747 {
16748 if (errno == ENOENT)
16749 {
16750 // good, we can ignore
16751 }
16752 else if (errno == ENOTEMPTY)
16753 {
16754 // good, we can ignore
16755 }
16756 else
16757 {
16758 log_error ("ERROR: %s: %s", outfile_check_directory, strerror (errno));
16759
16760 return (-1);
16761 }
16762 }
16763
16764 local_free (outfile_check_directory);
16765 }
16766
16767 time_t proc_stop;
16768
16769 time (&proc_stop);
16770
16771 logfile_top_uint (proc_start);
16772 logfile_top_uint (proc_stop);
16773
16774 logfile_top_msg ("STOP");
16775
16776 if (quiet == 0) log_info_nn ("Started: %s", ctime (&proc_start));
16777 if (quiet == 0) log_info_nn ("Stopped: %s", ctime (&proc_stop));
16778
16779 if (data.devices_status == STATUS_ABORTED) return 2;
16780 if (data.devices_status == STATUS_QUIT) return 2;
16781 if (data.devices_status == STATUS_STOP_AT_CHECKPOINT) return 2;
16782 if (data.devices_status == STATUS_EXHAUSTED) return 1;
16783 if (data.devices_status == STATUS_CRACKED) return 0;
16784
16785 return -1;
16786 }