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Revision 259 - (show annotations) (download) (as text)
Wed Jan 12 03:25:32 2011 UTC (13 years, 3 months ago) by notanpe
File MIME type: text/x-csrc
File size: 22294 byte(s)
ubuntsu 9.10 でコンパイルを通すため若干変更。(gettid() だからしょうがないか)
1 /***********************************************************************
2 *
3 * file: mty.c
4 *
5 * まあ、待て屋。
6 *
7 * $Id$
8 *
9 */
10
11 #include <assert.h>
12 #include <stddef.h>
13 #include <stdio.h>
14 #include <time.h>
15 #include <sys/timeb.h>
16
17 #if defined(WIN32)
18
19 #include <windows.h>
20 #include <process.h>
21
22 #elif defined(__GNUC__)
23
24 #include <sys/time.h>
25
26 #endif
27
28 #include "desconst.h"
29 #include "expr_parse.h"
30 #include "hit.h"
31 #include "key.h"
32 #include "log.h"
33 #include "scoreboard.h"
34 #include "synth.h"
35 #include "util.h"
36
37 #ifdef WIN32
38 /* 優先度 */
39 #define PRIO_MIN 0
40 #define PRIO_NORM 0
41 #define PRIO_BELO 1
42 #define PRIO_IDLE 2
43 #define PRIO_MAX 2
44 #define PRIO_DEF 2
45 #endif /* WIN32 */
46
47 /* スレッド数と CPU 数 */
48 #define THREAD_MIN 1
49 #define THREAD_MAX 32
50 int availCPU; /* usage() で使うので大域変数 */
51
52 #define STS_SPAN 5000 /* 速度表示の間隔 (ミリ秒) */
53
54 /* がんばりぐあい */
55 #define GEAR_MAX 10
56 #define GEAR_MIN 1
57 #define GEAR_DEF 10
58 #define GEAR_SLEEP 10
59 #define YOUSUMI 6 /* STS_PAN * YOUSUMI 秒様子見 */
60 int lCntMax;
61
62 /* 塩固定 */
63 char fixedSalt[3]; /* log_print で使うので大域変数 */
64 #define NUMSC 64 /* 塩の文字種数 */
65 static char saltChar[NUMSC] = "abcdefghijklmnopqrstuvwxyz"
66 "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
67 "0123456789./";
68
69 static HANDLE mutex_key;
70
71 /* CRYPT64 記述子 */
72 static
73 struct CRYPT64_DESC const *const crypt64_descs[] =
74 {
75 &crypt64_desc,
76 };
77
78 /* 速度評価用 */
79 static int n_cpus;
80 static uint64_t loop_cpu[1024];
81
82 #define USEC_SEC 1000 /* 1秒 */
83
84 static
85 uint64_t
86 usec(void)
87 {
88 uint32_t sec, msec;
89
90 #if !defined(WIN32)
91 struct timeval tv;
92 gettimeofday(&tv, NULL);
93 sec = tv.tv_sec;
94 msec = tv.tv_usec / (1000000 / USEC_SEC);
95 #else
96 struct timeb tm;
97 ftime(&tm);
98 sec = tm.time;
99 msec = tm.millitm / (1000 / USEC_SEC);
100 #endif
101
102 return (uint64_t)USEC_SEC * sec + msec;
103 }
104
105 /***************************************************************
106 *
107 * CPU capabilities を取得
108 * [XXX] あまりにも古いプロセッサのことは考えない。
109 *
110 * a[4] = {EAX,EBX,ECX,EDX}
111 *
112 */
113
114 #if defined(__GNUC__)
115
116 #define cpuid(n,a,b,c,d) \
117 asm("cpuid" \
118 : "=a"(a), "=b"(b), "=c"(c), "=d"(d) \
119 : "a"(n))
120
121 #elif defined(WIN32)
122
123 #define cpuid(n,a,b,c,d) \
124 do {int r[4]; __cpuid(r,n); \
125 (a) = r[0]; (b) = r[1]; (c) = r[2]; (d) = r[3];} while (0)
126
127 #endif
128
129 static
130 unsigned
131 cpuid_getfflags(void)
132 {
133 unsigned a, b, c, d;
134 cpuid(1, a, b, c, d);
135 return d;
136 }
137
138 static
139 int
140 cpuid_issupported(void)
141 {
142 unsigned m = REQUIRED_CAPS;
143 return !((cpuid_getfflags() ^ m) & m);
144 }
145
146 /***************************************************************
147 *
148 * バッチ処理用パケット
149 *
150 */
151
152 static
153 struct PACKET_CRYPT64 *
154 packet_create(int n, /* パケット数 */
155 int tn, /* 末尾要素にて必要なワーク数 */
156 uint8_t const *ini_key)
157 {
158 int i;
159 int siz;
160 void *p;
161 intptr_t a = 128;
162 struct PACKET_CRYPT64 *pkts;
163 assert(IS_POWER2(sizeof(struct PACKET_CRYPT64)));
164 assert(n >= 1);
165
166 siz = (a - 1
167 + (n - 1) * sizeof(struct PACKET_CRYPT64)
168 + offsetof(struct PACKET_CRYPT64, param64.hit[tn]));
169 p = calloc(siz, 1);
170 /* バンダリあわせ */
171 pkts = (struct PACKET_CRYPT64 *)(((intptr_t)p
172 + a - 1)
173 & -a);
174 #if DEBUG>=1
175 fprintf(stderr,
176 "packet(n=%d,tn=%d) %d allocated; %p aligned to %p\n",
177 n, tn,
178 siz, p, pkts);
179 #endif
180
181 /* 内部の初期化
182 コピーして回るのは、厳密には
183 最終要素のケツを破ってしまうことになるので
184 どうせ速度も要求されないしベタコード */
185 for (i = 0; i < n; i++)
186 {
187 int j, k;
188
189 /* t[16] は、内部演算で使用する、all 1 が入っている */
190 memset(&pkts[i].param64.t[T_INV], -1, sizeof(SLICE));
191
192 /* 固定キーの生成 */
193 key_init_sk(&pkts[i].key64);
194
195 /* キースケジュールをここに押し込めておく
196 従来は crypt64.S 内で完結するように引いていた */
197 for (j = 0; j < 28; j++)
198 for (k = 0; k < N_ALU; k++)
199 pkts[i].key64.ks[j].a[k] = sizeof(WS_T) * ks_ls[j];
200
201 /* 念のため、鍵をここで落ち着けておく(不要?) */
202 for (j = 0; j < 8; j++)
203 key_set64(&pkts[i].key64, j, pkts[i].uk.key[j] = ini_key[j], 0, 0x7F);
204 }
205
206 return pkts;
207 }
208
209 /***************************************************************
210 *
211 * thread
212 *
213 */
214
215 #if defined(__GNUC__)
216
217 typedef int32_t ATOMWORD_T;
218
219 #define LOCK_INC(p) \
220 asm volatile ("lock incl %0" \
221 : "=m"(*(p)) \
222 : /*nil*/ \
223 : "memory")
224
225 #define LOCK_DEC(p) \
226 asm volatile ("lock decl %0" \
227 : "=m"(*(p)) \
228 : /*nil*/ \
229 : "memory")
230
231 #define LOCK_CAS(pd,s,r) \
232 ({ ATOMWORD_T a; \
233 asm volatile ("lock cmpxchg %2,%1" \
234 : "=a"(a) \
235 : "m"(*(pd)), "r"(s), "0"(r) \
236 : "memory");a;})
237
238 #define LOCK_CASP(pd,s,r) \
239 ({ void *a; \
240 asm volatile ("lock cmpxchg %2,%1" \
241 : "=a"(a) \
242 : "m"(*(pd)), "r"(s), "0"(r) \
243 : "memory");a;})
244
245 #elif defined(WIN32)
246
247 typedef LONG ATOMWORD_T;
248
249 #define LOCK_INC(p) InterlockedIncrement((LONG *)(p))
250 #define LOCK_DEC(p) InterlockedDecrement((LONG *)(p))
251 #define LOCK_CAS(pd,s,r) InterlockedCompareExchange((LONG *)(pd), s, r)
252 #define LOCK_CASP(pd,s,r) InterlockedCompareExchangePointer((PVOID *)(pd), (PVOID)(s), (PVOID)r)
253
254 #else
255 #error "configuration not implemented"
256 #endif
257
258 #if defined(WIN32)
259
260 typedef DWORD THREAD_TIMEOUT_T;
261
262 #define THREAD_INFINITE INFINITE
263
264 typedef HANDLE THREAD_TH_T;
265
266 #define thread_sleep(n) Sleep(n)
267 #define thread_create(th, proc, arg) {(th) = (HANDLE)_beginthread(proc, 8192, arg);}
268 #define thread_get_tid() GetCurrentThread()
269 #define thread_set_priority(tid,n) SetThreadPriority(tid, n)
270 #define thread_set_affinity(tid,m) SetThreadAffinityMask(tid, (DWORD_PTR)1 << (m))
271
272 #elif defined(_POSIX_SOURCE)
273
274 #include <pthread.h>
275 #include <unistd.h>
276
277 typedef int THREAD_TIMEOUT_T;
278
279 #define THREAD_INFINITE INT_MAX
280
281 #if defined(THREAD_PRIORITY_BELOW_NOROMAL) || defined(THREAD_PRIORITY_IDLE)
282 #error "unsupported implementation"
283 #endif
284
285 #define THREAD_PRIORITY_NORMAL 14
286 #define THREAD_PRIORITY_BELOW_NORMAL 15
287 #define THREAD_PRIORITY_IDLE 16
288
289 typedef pthread_t THREAD_TH_T;
290
291 #define thread_sleep(n) (usleep(1000 * (n)) != EINVAL || sleep((n) / 1000))
292 #define thread_create(th, proc, arg) thread_create_p(&(th), proc, arg)
293
294 static
295 void
296 thread_create_p(pthread_t *th, NORETURN (*proc)(void *), void *param)
297 {
298 pthread_create(th, NULL, (void *(*)(void *))proc, param);
299 }
300
301 #if defined(__linux__)
302
303 /* デフォルトスケジューリングポリシーでは
304 優先度設定したりアイドルスレッド起こしても
305 おもしろくないので、そのへんは今後の研究課題。 */
306
307 #if 0
308 #include <linux/unistd.h>
309 _syscall0(pid_t,gettid)
310 #define thread_get_tid() gettid()
311 #endif /* 0 */
312
313 #if 0
314 #include <sys/types.h>
315 #define thread_get_tid() gettid()
316 #endif /* 0 */
317
318 #include <sys/syscall.h>
319 #define thread_get_tid() (pid_t)syscall(SYS_gettid)
320
321 static
322 int thread_set_affinity(pid_t tid, int i)
323 {
324 cpu_set_t m;
325 CPU_ZERO(&m);
326 CPU_SET(i, &m);
327 return sched_setaffinity(tid, sizeof(m), &m);
328 }
329
330 #else
331
332 /* POSIX では、スレッド単位のスケジューリングに介入できない。 */
333
334 #endif
335
336 #else
337 #error "configuration not supported"
338 #endif
339
340 struct THREAD_PARAM
341 {
342 /* 以下は共通情報のコピー */
343 CODE_T *code;
344 long code_cmp;
345 unsigned seed;
346
347 /* 以下はスレッド固有 */
348 #ifdef thread_set_priority
349 int pri;
350 #endif
351 };
352
353 static
354 uint64_t
355 thread_avail(void)
356 {
357 #if !USE_MT
358
359 return 0x1U;
360
361 #elif defined(WIN32) /* Win32 API */
362 DWORD_PTR mask, mask_s;
363 if (!GetProcessAffinityMask(GetCurrentProcess(),
364 &mask,
365 &mask_s)
366 || !mask
367 || !mask_s)
368 return 0x1U;
369 #if DEBUG>=1
370 fprintf(stderr,
371 "m=%08X s=%08X\n",
372 (unsigned)mask,
373 (unsigned)mask_s);
374 #endif
375 #if 0
376 if (popcnt64(mask_s) == 1)
377 /* 何も言うまい */;
378 else if (mask == mask_s)
379 fprintf(stderr,
380 "通常の%d倍とはよく言ったものです。\n",
381 popcnt64(mask));
382 else
383 fprintf(stderr,
384 "最高速力の%g倍の力でてきとうにがんばるよ。\n",
385 (double)popcnt64(mask) / popcnt64(mask_s));
386 #endif /* 0 */
387 return mask;
388
389 #elif defined(__linux__) /* sched.h 拡張 */
390
391 int i;
392 uint64_t m = 0;
393 cpu_set_t am;
394 if (sched_getaffinity(getpid(), sizeof(am), &am) < 0)
395 return 0x1U;
396
397 for (i = 0; i < 64 && i < CPU_SETSIZE; i++)
398 if (CPU_ISSET(i, &am))
399 m |= 1ULL << i;
400
401 return m;
402 #else
403
404 /* XXX プロセッサ数を調べ上げてください */
405 return 0x01U;
406
407 #endif
408 }
409
410 static
411 NORETURN
412 thread_crypt64_new(void *a_param)
413 {
414 struct THREAD_PARAM *param = a_param;
415 CODE_T *code = param->code;
416 CODE_T *cmp = code + param->code_cmp;
417 struct KS_KEY key;
418 struct PACKET_CRYPT64 *pkt = packet_create(16, 1024, key.key);
419 uint64_t *ploop;
420 THREAD_TH_T th = thread_get_tid();
421 int lc;
422
423 WaitForSingleObject(mutex_key, INFINITE);
424
425 OLDPRINT( "n_cpus %d\n", n_cpus );
426 ploop = &loop_cpu[n_cpus++];
427 lc = 0;
428
429 OLDPRINT( "(unsigned)th %u\n", (unsigned)th );
430 OLDPRINT( "param->seed %u\n", param->seed );
431 /* th はスレッドが違っても同じ値になってる */
432 srand(usec() ^ param->seed ^ (unsigned)th);
433 key_init(&key);
434
435 ReleaseMutex(mutex_key);
436
437 #ifdef thread_set_priority
438 thread_set_priority(th, param->pri);
439 #endif
440
441 if ( fixedSalt[0] != '\0' ) {
442 int ki;
443
444 key.key[1] = fixedSalt[0];
445 key.key[2] = fixedSalt[1];
446 set_salt(code, crypt64_descs[0], key.key);
447 key.key[7] = '\0';
448 key.key[8] = '\0';
449 for ( ;; ) {
450 for ( ki = 0; ki < 4; ki++ ) {
451 key.key[ki] = rand() % 0x7f + 1;
452 key_set64(&pkt->key64, ki, key.key[ki], key.key[ki] ^ pkt->uk.key[ki], 0);
453 pkt->uk.key[ki] = key.key[ki];
454 }
455 for ( key.key[4] = 0x01; key.key[4] <= 0x7f; key.key[4]++ ) {
456 key_set64(&pkt->key64, 4, key.key[4], key.key[4] ^ pkt->uk.key[4], 0);
457 pkt->uk.key[4] = key.key[4];
458 for ( key.key[5] = 0x01; key.key[5] <= 0x7f; key.key[5]++ ) {
459 key_set64(&pkt->key64, 5, key.key[5], key.key[5] ^ pkt->uk.key[5], 0);
460 pkt->uk.key[5] = key.key[5];
461 for ( key.key[6] = 0x01; key.key[6] <= 0x7f; key.key[6]++ ) {
462 key_set64(&pkt->key64, 6, key.key[6], key.key[6] ^ pkt->uk.key[6], 0);
463 pkt->uk.key[6] = key.key[6];
464 CALL_CRYPT64(code, &pkt->key64, &pkt->param64);
465 CALL_CMP64(cmp, pkt->param64.hit, pkt->param64.lr);
466 check_hit(pkt, pkt->param64.hit);
467 (*ploop)++;
468 #ifdef ENABLE_GEAR
469 lc++;
470 if ( lCntMax != 0 ) {
471 if ( lc > lCntMax ) {
472 OLDPRINT( "before %I64u\n", usec() );
473 Sleep( (DWORD)GEAR_SLEEP );
474 OLDPRINT( "after %I64u\n", usec() );
475 lc = 0;
476 }
477 }
478 #endif /* ENABLE_GEAR */
479 }
480 }
481 }
482 }
483 }
484
485 for (;;)
486 {
487 do
488 {
489 int j;
490 for (j = 0; j < 8; j++)
491 {
492 key_set64(&pkt->key64, j, key.key[j], key.key[j] ^ pkt->uk.key[j], 0);
493 pkt->uk.key[j] = key.key[j];
494 }
495 CALL_CRYPT64(code,
496 &pkt->key64,
497 &pkt->param64);
498 CALL_CMP64(cmp,
499 pkt->param64.hit,
500 pkt->param64.lr);
501 check_hit(pkt, pkt->param64.hit);
502 (*ploop)++;
503 #ifdef ENABLE_GEAR
504 lc++;
505 if ( lCntMax != 0 ) {
506 if ( lc > lCntMax ) {
507 OLDPRINT( "before %I64u\n", usec() );
508 Sleep( (DWORD)GEAR_SLEEP );
509 OLDPRINT( "after %I64u\n", usec() );
510 lc = 0;
511 }
512 }
513 #endif /* ENABLE_GEAR */
514 }
515 while (key_inc(&key, 6, 8) || key_inc(&key, KEY_SHUFFLE_POS, 8));
516 OLDPRINT( "saaaaalt chaaaaange\n" );
517
518 WaitForSingleObject(mutex_key, INFINITE);
519 key_reset(&key, 0);
520 ReleaseMutex(mutex_key);
521 }
522
523 /* notreached */
524 }
525
526 char
527 *bname( char *path )
528 {
529 char *p;
530
531 OLDPRINT( "path <%s>\n", path );
532
533 for ( p = path; *p != '\0'; p++ )
534 ;
535 while ( *p != '/' && *p != '\\' && p != path ) {
536 if ( *p == '.' ) {
537 *p = '\0';
538 }
539 p--;
540 }
541 if ( p != path ) {
542 p++;
543 }
544
545 OLDPRINT( "p <%s>\n", p );
546
547 return( p );
548 }
549
550 void
551 usage( path )
552 char *path;
553 {
554 char *myName;
555
556 myName = bname( path );
557 printf( "まあ、待て屋。魔改造版 (%s)\n", KIND );
558 printf( "%s [-h] [-v] [-p num] [-t num|-m mask] [-g num] [-z]\n", myName );
559 printf( " -h : これを表示\n" );
560 printf( " -v : 冗長メッセージ\n" );
561 printf( " -p num : 優先度の設定 ( %d ≦ num ≦ %d, デフォルトは %d )\n",
562 PRIO_MIN, PRIO_MAX, PRIO_DEF );
563 printf( " %d : 通常\n", PRIO_NORM );
564 printf( " %d : 通常以下\n", PRIO_BELO );
565 printf( " %d : 低\n", PRIO_IDLE );
566 printf( " ※ -t と -m は排他 (あとから指定したほうが有効)\n" );
567 printf( " ※ -m で指定できるのは有効な論理 CPU 数分まで\n" );
568 printf( " -t num : 検索スレッド数 ( %d ≦ num ≦ %d, デフォルトは %d )\n",
569 THREAD_MIN, availCPU, availCPU );
570 printf( " -m mask : 実行する CPU を指定するマスク ( 1 ビット ≦ mask のビット数 ≦ %d ビット )\n",
571 THREAD_MAX );
572 printf( " -g num : がんばりぐあい ( %d (やる気なし) ≦ num ≦ %d (フルパワー), デフォルトは、%d )\n", GEAR_MIN, GEAR_MAX, GEAR_DEF );
573 printf( " -z : 全空間モード\n" );
574 }
575
576 /***************************************************************
577 *
578 * メインループとか
579 *
580 */
581
582 int
583 main(int argc, char *argv[])
584 {
585 int i;
586 CODE_T *code = NULL;
587 long code_cmp;
588 FILE *sfp; /* scoreboard */
589 struct ITREE *root_expr;
590 uint64_t proc_mask;
591 int nThread;
592 struct THREAD_PARAM *threads = NULL;
593 int nthreads;
594 int tn;
595 int aveSpeed, spanSpeed, bestSpeed;
596 int gear;
597 int sCnt;
598 int tmplCntMax;
599 int maxSrchCnt;
600
601 /* 鍵文字列 */
602 struct KS_KEY key;
603
604 #define UPDATE_INTERVAL 8 /* 速度表示の間隔 秒 */
605 struct status {
606 uint64_t startTime; /* 開始時刻 ミリ秒 */
607 uint64_t lastTime; /* 最後に表示した時刻 ミリ秒 */
608 uint64_t loop; /* 総検索個数 */
609 uint64_t lastloop; /* 最後に表示した時の loop */
610 } status;
611 uint64_t curTime;
612
613 #ifdef USECTEST
614 {
615 int i;
616 for ( i = 0; i < USECTEST; i++ ) {
617 printf( "%I64u\n", usec() );
618 }
619 }
620 #endif /* USECTEST */
621
622 if (!cpuid_issupported())
623 {
624 fprintf(stderr, "この環境で走らせることが想定されていません。\n");
625 exit(1);
626 }
627
628 {
629 int optChar;
630 extern char *optarg;
631 extern int optind;
632 char *chPtr;
633 uint64_t availMask;
634 uint64_t pmask;
635 DWORD priority;
636 int verbose;
637
638 availMask = thread_avail(); /* 有効なマスク */
639 availCPU = popcnt64( availMask ); /* 有効な CPU 数 */
640
641 priority = PRIO_DEF;
642 nThread = 0;
643 pmask = 0;
644 verbose = 0;
645 gear = GEAR_DEF;
646 fixedSalt[0] = fixedSalt[1] = fixedSalt[2] = '\0';
647
648 /* abcdef ijkl no qrs u wxy 未使用 */
649 /* gh m p t v z 使用済み */
650 while ( (optChar = getopt(argc, argv, "g:hm:p:t:vz")) != EOF ) {
651 switch ( optChar ) {
652 case 'g':
653 #ifdef ENABLE_GEAR
654 gear = atoi( optarg );
655 if ( gear < GEAR_MIN || gear > GEAR_MAX ) {
656 usage( argv[0] );
657 exit( 1 );
658 }
659 #else /* ENABLE_GEAR */
660 printf( "-g オプションは無効化されています\n" );
661 #endif /* ENABLE_GEAR */
662 break;
663 case 'h':
664 usage( argv[0] );
665 exit( 0 );
666 break;
667 case 'm':
668 nThread = 0; /* スレッド数とは排他 */
669 if ( strlen( optarg ) > THREAD_MAX ) {
670 usage( argv[0] );
671 exit( 1 );
672 }
673 for ( chPtr = optarg; *chPtr != '\0'; chPtr++ ) {
674 pmask <<= 1;
675 switch ( *chPtr ) {
676 case '0': /* なにもしない */ break;
677 case '1': pmask |= 1; break;
678 default:
679 usage( argv[0] );
680 exit( 1 );
681 break;
682 }
683 }
684 if ( pmask == 0 ) {
685 usage( argv[0] );
686 exit( 1 );
687 }
688 break;
689 case 'p':
690 priority = atoi( optarg );
691 if ( priority < PRIO_MIN || priority > PRIO_MAX ) {
692 usage( argv[0] );
693 exit( 1 );
694 }
695 break;
696 case 't':
697 pmask = 0; /* マスクとは排他 */
698 nThread = atoi( optarg );
699 if ( nThread < THREAD_MIN || nThread > availCPU ) {
700 usage( argv[0] );
701 exit( 1 );
702 }
703 break;
704 case 'v':
705 verbose = 1;
706 break;
707 case 'z':
708 srand( usec() );
709 fixedSalt[0] = saltChar[rand() % NUMSC];
710 fixedSalt[1] = saltChar[rand() % NUMSC];
711 break;
712 default:
713 usage( argv[0] );
714 exit( 1 );
715 }
716 }
717
718 if ( pmask == 0 && nThread == 0 ) {
719 /* 指定がなければ、使える CPU 全部 */
720 proc_mask = availMask;
721 }
722
723 if ( pmask != 0 ) {
724 /* マスクで指定の場合、そのまんま */
725 if ( (availMask & pmask) != pmask ) {
726 printf( "そんな CPU はねぇ!\n" );
727 exit( 1 );
728 }
729 proc_mask = pmask;
730 }
731
732 if ( nThread != 0 ) {
733 /* スレッド数の場合、マスクに変換 */
734 proc_mask = 0; /* 念のため */
735 for ( i = 0; i < THREAD_MAX; i++ ) {
736 if ( availMask & 1ULL<<i ) {
737 if ( nThread > 0 ) {
738 proc_mask |= 1ULL<<i;
739 }
740 nThread--;
741 }
742 }
743 }
744
745 if ( gear != GEAR_MAX ) {
746 /* CPU 使用率が正しく見えるように、秘孔をついてみる */
747 TIMECAPS tc;
748 if ( timeGetDevCaps( &tc, sizeof( TIMECAPS ) ) == MMSYSERR_NOERROR ) {
749 timeBeginPeriod( tc.wPeriodMin );
750 }
751 }
752
753 nThread = popcnt64( proc_mask );
754 printf( "%d 個の検索スレッドを起動\n", nThread );
755
756 if ( verbose ) {
757 int i;
758 printf( "優先度を" );
759 switch ( priority ) {
760 case PRIO_NORM : printf( "通常" ); break;
761 case PRIO_BELO : printf( "通常以下" ); break;
762 case PRIO_IDLE : printf( "低" ); break;
763 }
764 printf( "に設定\n" );
765 printf( "CPU : " );
766 for ( i = 0; i < THREAD_MAX; i++ ) {
767 if ( proc_mask & 1ULL<<i ) {
768 printf( "%d ", i );
769 }
770 }
771 printf( "を使用\n" );
772 if ( gear == GEAR_MAX ) {
773 printf( "CPU を 100%% 使用\n" );
774 } else {
775 printf( "CPU を %d 割ぐらい使用\n", gear );
776 }
777 if ( fixedSalt[0] != '\0' ) {
778 printf( "全空間モード (salt:%c%c)\n", fixedSalt[0], fixedSalt[1] );
779 }
780 }
781
782 #ifdef WIN32
783 switch ( priority ) {
784 case PRIO_NORM : priority = NORMAL_PRIORITY_CLASS; break;
785 case PRIO_BELO : priority = BELOW_NORMAL_PRIORITY_CLASS; break;
786 case PRIO_IDLE : priority = IDLE_PRIORITY_CLASS; break;
787 }
788 SetPriorityClass( GetCurrentProcess(), priority );
789 #endif
790 }
791
792 assert((1 << N_STRIDE) == N_ALU * ALU_BITS);
793
794 mutex_key = CreateMutex(NULL, FALSE, NULL);
795
796 /* タゲ読み込み */
797 root_expr = expr_parse("target.txt");
798
799 /* コードを生成・展開
800 起動予定スレッド数に応じて
801 生成するコードを変える */
802 sfp = scoreboard_open();
803 fwrite(crypt64_descs[0]->pro, 1, crypt64_descs[0]->cmp_pro - crypt64_descs[0]->pro, sfp); /* prologue & コアループ */
804
805 #if 0
806 if (0&&proc_mask == 1U)
807 {
808 /* single */
809 code_cmp = 0;
810 }
811 else
812 #endif
813 {
814 /* multi */
815 fwrite(crypt64_descs[0]->ep, 1, crypt64_descs[0]->ep_end - crypt64_descs[0]->ep, sfp); /* epilogue */
816
817 /* 比較器のみを生成(前半) */
818 code_cmp = ftell(sfp);
819 fseek(sfp, (-code_cmp) & 63, SEEK_CUR);
820 code_cmp = ftell(sfp);
821 fwrite(crypt64_descs[0]->pro, 1, crypt64_descs[0]->crypt - crypt64_descs[0]->pro, sfp); /* prologue */
822 }
823
824 /* 比較部を生成 */
825 fwrite(crypt64_descs[0]->cmp_pro, 1, crypt64_descs[0]->cmp_ep - crypt64_descs[0]->cmp_pro, sfp); /* 比較器準備 */
826 tn = synth_synthesize(sfp, root_expr);
827 fwrite(crypt64_descs[0]->cmp_ep, 1, crypt64_descs[0]->ep_end - crypt64_descs[0]->cmp_ep, sfp); /* epilogue */
828
829 /* コードをメモリに貼り付ける */
830 code = scoreboard_map(sfp);
831
832 /* キーの初期化 */
833 WaitForSingleObject(mutex_key, INFINITE);
834 srand(usec());
835 key_init(&key);
836 ReleaseMutex(mutex_key);
837 set_salt(code, crypt64_descs[0], key.key);
838
839 if (log_open("log.txt") != 0) return 1;
840
841 WaitForSingleObject(mutex_key, INFINITE);
842
843 /* 働くおじさんを量産 */
844 nthreads = 0;
845 if (code_cmp)
846 {
847 THREAD_TH_T h;
848 int ots = -1;
849 threads = calloc(2 * popcnt64(proc_mask), sizeof(*threads));
850 for (i = 0; i < 64; i++)
851 if (proc_mask & (1ULL << i))
852 {
853 if (0&&ots < 0)
854 {
855 /* 自分自身のスケジューリング
856 こーゆー系のアプリは低めに設定するのが吉(かも) */
857 #ifdef WIN32
858 h = GetCurrentProcess();
859 SetPriorityClass(h, BELOW_NORMAL_PRIORITY_CLASS);
860 #endif
861 #if defined(thread_set_priority)
862 /* 心の隙間お埋めします */
863 threads[nthreads].code = code;
864 threads[nthreads].code_cmp = code_cmp;
865 threads[nthreads].seed = rand();
866 threads[nthreads].pri = THREAD_PRIORITY_IDLE;
867 thread_create(h, thread_crypt64_new, &threads[nthreads]);
868 nthreads++;
869 #endif
870 if (!code_cmp)
871 break;
872
873 /* 自分自身の残りの設定を、あとでやる */
874 ots = i;
875 }
876 else
877 {
878 /* 他スレッドは、やや低めの優先度で。 */
879 threads[nthreads].code = code;
880 threads[nthreads].code_cmp = code_cmp;
881 threads[nthreads].seed = rand();
882 #ifdef thread_set_priority
883 //threads[nthreads].pri = THREAD_PRIORITY_BELOW_NORMAL;
884 threads[nthreads].pri = THREAD_PRIORITY_LOWEST;
885 #endif
886 thread_create(h, thread_crypt64_new, &threads[nthreads]);
887 #ifdef thread_get_tid
888 thread_set_affinity(h, i);
889 #endif
890 nthreads++;
891 #if 0
892 /* IDLE */
893 threads[nthreads].code = code;
894 threads[nthreads].code_cmp = code_cmp;
895 threads[nthreads].seed = rand();
896 #ifdef thread_set_priority
897 threads[nthreads].pri = THREAD_PRIORITY_IDLE;
898 #endif
899 thread_create(h, thread_crypt64_new, &threads[nthreads]);
900 #ifdef thread_get_tid
901 SetThreadAffinityMask(h, proc_mask);
902 #endif
903 nthreads++;
904 #endif
905 }
906 }
907 #ifdef thread_get_tid
908 if (ots)
909 thread_set_affinity(thread_get_tid(), ots);
910 #endif
911 }
912
913 fprintf(stderr, "検索開始!\n");
914 ReleaseMutex(mutex_key);
915
916 memset( &status, 0, sizeof( struct status ) );
917 status.startTime = status.lastTime = usec();
918
919 bestSpeed = 0;
920 sCnt = 0;
921 lCntMax = 0;
922 maxSrchCnt = 0;
923 for ( ;; ) {
924 uint64_t diffTime;
925 uint64_t spanLoop;
926
927 Sleep(STS_SPAN);
928
929 #ifdef OLDEBUG
930 putchar( '\n' );
931 #endif /* DEBUG */
932 status.loop = 0;
933 for (i = 0; i < n_cpus; i++) {
934 OLDPRINT( "loop_cpu[%d] %d\n", i, loop_cpu[i] );
935 status.loop += loop_cpu[i];
936 }
937 status.loop *= N_ALU * ALU_BITS;
938
939 spanLoop = status.loop - status.lastloop;
940 if ( spanLoop > maxSrchCnt ) {
941 maxSrchCnt = spanLoop;
942 }
943
944 curTime = usec();
945
946 /* 通算 (単位 trips/usec = ktrips/sec) */
947 diffTime = curTime - status.startTime;
948 aveSpeed = status.loop / diffTime;
949
950 /* 区間 (単位 trips/usec = ktrips/sec) */
951 diffTime = curTime - status.lastTime;
952 spanSpeed = spanLoop / diffTime;
953
954 /* 最速 */
955 if ( spanSpeed > bestSpeed ) {
956 bestSpeed = spanSpeed;
957 if ( gear != GEAR_MAX ) {
958 tmplCntMax = ((maxSrchCnt / (N_ALU * ALU_BITS)) * gear / 10) / ((STS_SPAN - (STS_SPAN * gear / 10)) / GEAR_SLEEP) / nThread;
959 }
960 }
961
962 if ( gear != GEAR_MAX ) {
963 if ( sCnt == YOUSUMI && lCntMax == 0 ) {
964 if ( tmplCntMax < 1 ) {
965 lCntMax = 1;
966 } else {
967 lCntMax = tmplCntMax;
968 }
969 OLDPRINT( "lCntMax = %d\n", lCntMax );
970 printf( "\nCPU 使用率制限モード開始\n" );
971 }
972 }
973 sCnt++;
974
975 status.lastTime = curTime;
976 status.lastloop = status.loop;
977
978 fprintf(stderr,
979 "通算 %dktrips/s [区間 %dktrips/s] {最速 %dktrips/s}\r",
980 aveSpeed, spanSpeed, bestSpeed );
981 }
982
983 return 0;
984 }
985
986 /*
987 * Local Variables:
988 * tab-width: 4
989 * End:
990 *
991 * EOF */

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