driver-titan.c 21 KB

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  1. /*
  2. * Copyright 2014 Vitalii Demianets
  3. * Copyright 2014 KnCMiner
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of the GNU General Public License as published by the Free
  7. * Software Foundation; either version 3 of the License, or (at your option)
  8. * any later version. See COPYING for more details.
  9. */
  10. #include <fcntl.h>
  11. #include <sys/ioctl.h>
  12. #include "deviceapi.h"
  13. #include "logging.h"
  14. #include "miner.h"
  15. #include "util.h"
  16. #include "titan-asic.h"
  17. #define KNC_TITAN_DEFAULT_FREQUENCY 275
  18. #define KNC_TITAN_HWERR_DISABLE_SECS 10
  19. #define KNC_POLL_INTERVAL_US 10000
  20. /* Work queue pre-fill level.
  21. * Must be high enough to supply all ASICs with works after a flush */
  22. #define WORK_QUEUE_PREFILL 10
  23. /* Specify here minimum number of leading zeroes in hash */
  24. #define DEFAULT_DIFF_FILTERING_ZEROES 24
  25. #define DEFAULT_DIFF_FILTERING_FLOAT (1. / ((double)(0x00000000FFFFFFFF >> DEFAULT_DIFF_FILTERING_ZEROES)))
  26. #define DEFAULT_DIFF_HASHES_PER_NONCE (1 << DEFAULT_DIFF_FILTERING_ZEROES)
  27. BFG_REGISTER_DRIVER(knc_titan_drv)
  28. /* 3 - default number of threads per core */
  29. static int opt_knc_threads_per_core = 3;
  30. static const struct bfg_set_device_definition knc_titan_set_device_funcs[];
  31. struct knc_titan_core {
  32. int asicno;
  33. int dieno; /* inside asic */
  34. int coreno; /* inside die */
  35. struct knc_titan_die *die;
  36. struct cgpu_info *proc;
  37. int hwerr_in_row;
  38. int hwerr_disable_time;
  39. struct timeval enable_at;
  40. struct timeval first_hwerr;
  41. struct nonce_report last_nonce;
  42. };
  43. struct knc_titan_die {
  44. int asicno;
  45. int dieno; /* inside asic */
  46. int cores;
  47. struct cgpu_info *first_proc;
  48. int freq;
  49. };
  50. struct knc_titan_info {
  51. void *ctx;
  52. struct cgpu_info *cgpu;
  53. int cores;
  54. struct knc_titan_die dies[KNC_TITAN_MAX_ASICS][KNC_TITAN_DIES_PER_ASIC];
  55. /* Per-ASIC data */
  56. bool need_flush[KNC_TITAN_MAX_ASICS];
  57. int next_slot[KNC_TITAN_MAX_ASICS];
  58. /* First slot after flush. If next_slot reaches this, then
  59. * we need to re-flush all the cores to avoid duplicating slot numbers
  60. * for different works */
  61. int first_slot[KNC_TITAN_MAX_ASICS];
  62. struct work *workqueue;
  63. int workqueue_size;
  64. int workqueue_max;
  65. int next_id;
  66. struct work *devicework;
  67. };
  68. static bool knc_titan_detect_one(const char *devpath)
  69. {
  70. static struct cgpu_info *prev_cgpu = NULL;
  71. struct cgpu_info *cgpu;
  72. void *ctx;
  73. struct knc_titan_info *knc;
  74. int cores = 0, asic, die;
  75. struct knc_die_info die_info;
  76. char repr[6];
  77. cgpu = malloc(sizeof(*cgpu));
  78. if (unlikely(!cgpu))
  79. quit(1, "Failed to alloc cgpu_info");
  80. if (!prev_cgpu) {
  81. if (NULL == (ctx = knc_trnsp_new(NULL))) {
  82. free(cgpu);
  83. return false;
  84. }
  85. knc = calloc(1, sizeof(*knc));
  86. if (unlikely(!knc))
  87. quit(1, "Failed to alloc knc_titan_info");
  88. knc->ctx = ctx;
  89. knc->cgpu = cgpu;
  90. knc->workqueue_max = WORK_QUEUE_PREFILL;
  91. } else {
  92. knc = prev_cgpu->device_data;
  93. ctx = knc->ctx;
  94. }
  95. snprintf(repr, sizeof(repr), "%s %s", knc_titan_drv.name, devpath);
  96. asic = atoi(devpath);
  97. for (die = 0; die < KNC_TITAN_DIES_PER_ASIC; ++die) {
  98. die_info.cores = KNC_TITAN_CORES_PER_DIE; /* core hint */
  99. die_info.version = KNC_VERSION_TITAN;
  100. if (!knc_titan_get_info(repr, ctx, asic, die, &die_info))
  101. die_info.cores = -1;
  102. if (0 < die_info.cores) {
  103. knc->dies[asic][die] = (struct knc_titan_die) {
  104. .asicno = asic,
  105. .dieno = die,
  106. .cores = die_info.cores,
  107. .first_proc = cgpu,
  108. .freq = KNC_TITAN_DEFAULT_FREQUENCY,
  109. };
  110. cores += die_info.cores;
  111. } else {
  112. knc->dies[asic][die] = (struct knc_titan_die) {
  113. .asicno = -INT_MAX,
  114. .dieno = -INT_MAX,
  115. .cores = 0,
  116. .first_proc = NULL,
  117. };
  118. }
  119. }
  120. if (0 == cores) {
  121. free(cgpu);
  122. if (!prev_cgpu) {
  123. free(knc);
  124. knc_trnsp_free(ctx);
  125. }
  126. return false;
  127. }
  128. applog(LOG_NOTICE, "%s: Found ASIC with %d cores", repr, cores);
  129. *cgpu = (struct cgpu_info) {
  130. .drv = &knc_titan_drv,
  131. .device_path = strdup(devpath),
  132. .set_device_funcs = knc_titan_set_device_funcs,
  133. .deven = DEV_ENABLED,
  134. .procs = cores,
  135. .threads = prev_cgpu ? 0 : 1,
  136. .extra_work_queue = -1,
  137. .device_data = knc,
  138. };
  139. const bool rv = add_cgpu_slave(cgpu, prev_cgpu);
  140. if (!prev_cgpu)
  141. cgpu->extra_work_queue += WORK_QUEUE_PREFILL;
  142. prev_cgpu = cgpu;
  143. return rv;
  144. }
  145. static int knc_titan_detect_auto(void)
  146. {
  147. const int first = 0, last = KNC_TITAN_MAX_ASICS - 1;
  148. char devpath[256];
  149. int found = 0, i;
  150. for (i = first; i <= last; ++i) {
  151. sprintf(devpath, "%d", i);
  152. if (knc_titan_detect_one(devpath))
  153. ++found;
  154. }
  155. return found;
  156. }
  157. static void knc_titan_detect(void)
  158. {
  159. generic_detect(&knc_titan_drv, knc_titan_detect_one, knc_titan_detect_auto, GDF_REQUIRE_DNAME | GDF_DEFAULT_NOAUTO);
  160. }
  161. static void knc_titan_clean_flush(const char *repr, void * const ctx, int asic, int die)
  162. {
  163. struct knc_report report;
  164. bool unused;
  165. knc_titan_set_work(repr, ctx, asic, die, 0xFFFF, 0, NULL, true, &unused, &report);
  166. }
  167. static uint32_t nonce_tops[KNC_TITAN_DIES_PER_ASIC][KNC_TITAN_CORES_PER_DIE];
  168. static bool nonce_tops_inited = false;
  169. static void get_nonce_range(int dieno, int coreno, uint32_t *nonce_bottom, uint32_t *nonce_top)
  170. {
  171. if (!nonce_tops_inited) {
  172. uint32_t top;
  173. double nonce_f, nonce_step;
  174. int die, core;
  175. nonce_f = 0.0;
  176. nonce_step = 4294967296.0 / KNC_TITAN_CORES_PER_ASIC;
  177. for (die = 0; die < KNC_TITAN_DIES_PER_ASIC; ++die) {
  178. for (core = 0; core < KNC_TITAN_CORES_PER_DIE; ++core) {
  179. nonce_f += nonce_step;
  180. if ((core < (KNC_TITAN_CORES_PER_DIE - 1)) || (die < (KNC_TITAN_DIES_PER_ASIC - 1)))
  181. top = nonce_f;
  182. else
  183. top = 0xFFFFFFFF;
  184. nonce_tops[die][core] = top;
  185. }
  186. }
  187. nonce_tops_inited = true;
  188. }
  189. *nonce_top = nonce_tops[dieno][coreno];
  190. if (coreno > 0) {
  191. *nonce_bottom = nonce_tops[dieno][coreno - 1] + 1;
  192. return;
  193. }
  194. if (dieno > 0) {
  195. *nonce_bottom = nonce_tops[dieno - 1][KNC_TITAN_CORES_PER_DIE - 1] + 1;
  196. }
  197. *nonce_bottom = 0;
  198. }
  199. static bool configure_one_die(struct knc_titan_info *knc, int asic, int die)
  200. {
  201. struct cgpu_info *proc;
  202. struct thr_info *mythr;
  203. struct knc_titan_core *knccore;
  204. if ((0 > asic) || (KNC_TITAN_MAX_ASICS <= asic) || (0 > die) || (KNC_TITAN_DIES_PER_ASIC <= die))
  205. return false;
  206. if (0 >= knc->dies[asic][die].cores)
  207. return false;
  208. /* Init nonce ranges for cores */
  209. struct titan_setup_core_params setup_params = {
  210. .bad_address_mask = {0, 0},
  211. .bad_address_match = {0x3FF, 0x3FF},
  212. .difficulty = DEFAULT_DIFF_FILTERING_ZEROES - 1,
  213. .thread_enable = 0xFF,
  214. .thread_base_address = {0, 1, 2, 3, 4, 5, 6, 7},
  215. .lookup_gap_mask = {0x7, 0x7, 0x7, 0x7, 0x7, 0x7, 0x7, 0x7},
  216. .N_mask = {0, 0, 0, 0, 0, 0, 0, 0},
  217. .N_shift = {0, 0, 0, 0, 0, 0, 0, 0},
  218. .nonce_bottom = 0,
  219. .nonce_top = 0xFFFFFFFF,
  220. };
  221. fill_in_thread_params(opt_knc_threads_per_core, &setup_params);
  222. for (proc = knc->dies[asic][die].first_proc; proc; proc = proc->next_proc) {
  223. mythr = proc->thr[0];
  224. knccore = mythr->cgpu_data;
  225. if ((asic != knccore->asicno) || (die != knccore->dieno))
  226. break;
  227. get_nonce_range(knccore->dieno, knccore->coreno, &setup_params.nonce_bottom, &setup_params.nonce_top);
  228. applog(LOG_DEBUG, "%s Setup core %d:%d:%d, nonces 0x%08X - 0x%08X", proc->device->dev_repr, knccore->asicno, knccore->dieno, knccore->coreno, setup_params.nonce_bottom, setup_params.nonce_top);
  229. knc_titan_setup_core_local(proc->device->dev_repr, knc->ctx, knccore->asicno, knccore->dieno, knccore->coreno, &setup_params);
  230. }
  231. return true;
  232. }
  233. static bool knc_titan_init(struct thr_info * const thr)
  234. {
  235. const int max_cores = KNC_TITAN_CORES_PER_ASIC;
  236. struct thr_info *mythr;
  237. struct cgpu_info * const cgpu = thr->cgpu, *proc;
  238. struct knc_titan_core *knccore;
  239. struct knc_titan_info *knc;
  240. int i, asic, die, core_base;
  241. int total_cores = 0;
  242. int asic_cores[KNC_TITAN_MAX_ASICS] = {0};
  243. for (proc = cgpu; proc; ) {
  244. proc->min_nonce_diff = DEFAULT_DIFF_FILTERING_FLOAT;
  245. if (proc->device != proc) {
  246. applog(LOG_WARNING, "%"PRIpreprv": Extra processor?", proc->proc_repr);
  247. proc = proc->next_proc;
  248. continue;
  249. }
  250. asic = atoi(proc->device_path);
  251. knc = proc->device_data;
  252. die = 0;
  253. core_base = 0;
  254. for (i = 0; i < max_cores; ++i) {
  255. while (i >= (core_base + knc->dies[asic][die].cores)) {
  256. core_base += knc->dies[asic][die].cores;
  257. if (++die >= KNC_TITAN_DIES_PER_ASIC)
  258. break;
  259. }
  260. if (die >= KNC_TITAN_DIES_PER_ASIC)
  261. break;
  262. mythr = proc->thr[0];
  263. mythr->cgpu_data = knccore = malloc(sizeof(*knccore));
  264. if (unlikely(!knccore))
  265. quit(1, "Failed to alloc knc_titan_core");
  266. *knccore = (struct knc_titan_core) {
  267. .asicno = asic,
  268. .dieno = die,
  269. .coreno = i - core_base,
  270. .die = &(knc->dies[asic][die]),
  271. .proc = proc,
  272. .hwerr_in_row = 0,
  273. .hwerr_disable_time = KNC_TITAN_HWERR_DISABLE_SECS,
  274. };
  275. timer_set_now(&knccore->enable_at);
  276. proc->device_data = knc;
  277. ++total_cores;
  278. ++(asic_cores[asic]);
  279. applog(LOG_DEBUG, "%s Allocated core %d:%d:%d", proc->device->dev_repr, asic, die, (i - core_base));
  280. if (0 == knccore->coreno) {
  281. knc->dies[asic][die].first_proc = proc;
  282. knc_titan_clean_flush(proc->device->dev_repr, knc->ctx, knccore->asicno, knccore->dieno);
  283. }
  284. proc = proc->next_proc;
  285. if ((!proc) || proc->device == proc)
  286. break;
  287. }
  288. knc->cores = total_cores;
  289. }
  290. cgpu_set_defaults(cgpu);
  291. if (0 >= total_cores)
  292. return false;
  293. knc = cgpu->device_data;
  294. for (asic = 0; asic < KNC_TITAN_MAX_ASICS; ++asic) {
  295. for (die = 0; die < KNC_TITAN_DIES_PER_ASIC; ++die) {
  296. configure_one_die(knc, asic, die);
  297. }
  298. knc->next_slot[asic] = KNC_TITAN_MIN_WORK_SLOT_NUM;
  299. knc->first_slot[asic] = KNC_TITAN_MIN_WORK_SLOT_NUM;
  300. knc->need_flush[asic] = true;
  301. }
  302. timer_set_now(&thr->tv_poll);
  303. return true;
  304. }
  305. static bool die_test_and_add(struct knc_titan_info * const knc, int asic, int die, char * const errbuf)
  306. {
  307. struct knc_die_info die_info;
  308. char repr[6];
  309. snprintf(repr, sizeof(repr), "%s %d", knc_titan_drv.name, asic);
  310. die_info.cores = KNC_TITAN_CORES_PER_DIE; /* core hint */
  311. die_info.version = KNC_VERSION_TITAN;
  312. if (!knc_titan_get_info(repr, knc->ctx, asic, die, &die_info))
  313. die_info.cores = -1;
  314. if (0 < die_info.cores) {
  315. sprintf(errbuf, "Die[%d:%d] not detected", asic, die);
  316. return false;
  317. }
  318. /* TODO: add procs */
  319. sprintf(errbuf, "Die[%d:%d] has %d cores; was not added (addition not implemented)", asic, die, die_info.cores);
  320. return false;
  321. }
  322. static bool die_enable(struct knc_titan_info * const knc, int asic, int die, char * const errbuf)
  323. {
  324. bool res = true;
  325. cgpu_request_control(knc->cgpu);
  326. if (0 >= knc->dies[asic][die].cores)
  327. res = die_test_and_add(knc, asic, die, errbuf);
  328. if (res) {
  329. knc_titan_clean_flush(knc->dies[asic][die].first_proc->device->dev_repr, knc->ctx, asic, die);
  330. res = configure_one_die(knc, asic, die);
  331. }
  332. cgpu_release_control(knc->cgpu);
  333. return res;
  334. }
  335. static bool die_disable(struct knc_titan_info * const knc, int asic, int die, char * const errbuf)
  336. {
  337. cgpu_request_control(knc->cgpu);
  338. /* TODO: delete procs */
  339. cgpu_release_control(knc->cgpu);
  340. sprintf(errbuf, "die_disable[%d:%d] not imnplemented", asic, die);
  341. return false;
  342. }
  343. static bool die_reconfigure(struct knc_titan_info * const knc, int asic, int die, char * const errbuf)
  344. {
  345. return die_enable(knc, asic, die, errbuf);
  346. }
  347. static bool knc_titan_prepare_work(struct thr_info *thr, struct work *work)
  348. {
  349. struct cgpu_info * const cgpu = thr->cgpu;
  350. work->nonce_diff = cgpu->min_nonce_diff;
  351. return true;
  352. }
  353. static void knc_titan_set_queue_full(struct knc_titan_info * const knc)
  354. {
  355. const bool full = (knc->workqueue_size >= knc->workqueue_max);
  356. struct cgpu_info *proc;
  357. for (proc = knc->cgpu; proc; proc = proc->next_proc) {
  358. struct thr_info * const thr = proc->thr[0];
  359. thr->queue_full = full;
  360. }
  361. }
  362. static void knc_titan_remove_local_queue(struct knc_titan_info * const knc, struct work * const work)
  363. {
  364. DL_DELETE(knc->workqueue, work);
  365. free_work(work);
  366. --knc->workqueue_size;
  367. }
  368. static void knc_titan_prune_local_queue(struct thr_info *thr)
  369. {
  370. struct cgpu_info * const cgpu = thr->cgpu;
  371. struct knc_titan_info * const knc = cgpu->device_data;
  372. struct work *work, *tmp;
  373. DL_FOREACH_SAFE(knc->workqueue, work, tmp) {
  374. if (stale_work(work, false))
  375. knc_titan_remove_local_queue(knc, work);
  376. }
  377. knc_titan_set_queue_full(knc);
  378. }
  379. static bool knc_titan_queue_append(struct thr_info * const thr, struct work * const work)
  380. {
  381. struct cgpu_info * const cgpu = thr->cgpu;
  382. struct knc_titan_info * const knc = cgpu->device_data;
  383. if (knc->workqueue_size >= knc->workqueue_max) {
  384. knc_titan_prune_local_queue(thr);
  385. if (thr->queue_full)
  386. return false;
  387. }
  388. DL_APPEND(knc->workqueue, work);
  389. ++knc->workqueue_size;
  390. knc_titan_set_queue_full(knc);
  391. if (thr->queue_full)
  392. knc_titan_prune_local_queue(thr);
  393. return true;
  394. }
  395. #define HASH_LAST_ADDED(head, out) \
  396. (out = (head) ? (ELMT_FROM_HH((head)->hh.tbl, (head)->hh.tbl->tail)) : NULL)
  397. static void knc_titan_queue_flush(struct thr_info * const thr)
  398. {
  399. struct cgpu_info * const cgpu = thr->cgpu;
  400. struct knc_titan_info * const knc = cgpu->device_data;
  401. struct work *work, *tmp;
  402. if (knc->cgpu != cgpu)
  403. return;
  404. DL_FOREACH_SAFE(knc->workqueue, work, tmp){
  405. knc_titan_remove_local_queue(knc, work);
  406. }
  407. knc_titan_set_queue_full(knc);
  408. HASH_LAST_ADDED(knc->devicework, work);
  409. if (work && stale_work(work, true)) {
  410. int asic;
  411. for (asic = 0; asic < KNC_TITAN_MAX_ASICS; ++asic)
  412. knc->need_flush[asic] = true;
  413. timer_set_now(&thr->tv_poll);
  414. }
  415. }
  416. static void knc_titan_poll(struct thr_info * const thr)
  417. {
  418. struct thr_info *mythr;
  419. struct cgpu_info * const cgpu = thr->cgpu, *proc;
  420. struct knc_titan_info * const knc = cgpu->device_data;
  421. struct knc_titan_core *knccore, *core1;
  422. struct work *work, *tmp;
  423. int workaccept = 0;
  424. unsigned long delay_usecs = KNC_POLL_INTERVAL_US;
  425. struct knc_report report;
  426. struct knc_die_info die_info;
  427. int asic;
  428. int die;
  429. int i, tmp_int;
  430. knc_titan_prune_local_queue(thr);
  431. for (asic = 0; asic < KNC_TITAN_MAX_ASICS; ++asic) {
  432. DL_FOREACH_SAFE(knc->workqueue, work, tmp) {
  433. bool work_accepted = false;
  434. bool need_replace;
  435. if (knc->first_slot[asic] > KNC_TITAN_MIN_WORK_SLOT_NUM)
  436. need_replace = ((knc->next_slot[asic] + 1) == knc->first_slot[asic]);
  437. else
  438. need_replace = (knc->next_slot[asic] == KNC_TITAN_MAX_WORK_SLOT_NUM);
  439. knccore = NULL;
  440. for (die = 0; die < KNC_TITAN_DIES_PER_ASIC; ++die) {
  441. if (0 >= knc->dies[asic][die].cores)
  442. continue;
  443. struct cgpu_info *first_proc = knc->dies[asic][die].first_proc;
  444. /* knccore is the core data of the first core in this asic */
  445. if (NULL == knccore)
  446. knccore = first_proc->thr[0]->cgpu_data;
  447. bool die_work_accepted = false;
  448. if (knc->need_flush[asic] || need_replace) {
  449. for (proc = first_proc; proc; proc = proc->next_proc) {
  450. mythr = proc->thr[0];
  451. core1 = mythr->cgpu_data;
  452. bool unused;
  453. if ((core1->dieno != die) || (core1->asicno != asic))
  454. break;
  455. if (knc_titan_set_work(proc->proc_repr, knc->ctx, asic, die, core1->coreno, knc->next_slot[asic], work, true, &unused, &report)) {
  456. core1->last_nonce.slot = report.nonce[0].slot;
  457. core1->last_nonce.nonce = report.nonce[0].nonce;
  458. die_work_accepted = true;
  459. }
  460. }
  461. } else {
  462. if (!knc_titan_set_work(first_proc->dev_repr, knc->ctx, asic, die, 0xFFFF, knc->next_slot[asic], work, false, &die_work_accepted, &report))
  463. die_work_accepted = false;
  464. }
  465. if (die_work_accepted)
  466. work_accepted = true;
  467. }
  468. if ((!work_accepted) || (NULL == knccore))
  469. break;
  470. bool was_flushed = false;
  471. if (knc->need_flush[asic] || need_replace) {
  472. struct work *work1, *tmp1;
  473. applog(LOG_NOTICE, "%s: Flushing stale works (%s)", knccore->proc->dev_repr,
  474. knc->need_flush[asic] ? "New work" : "Slot collision");
  475. knc->need_flush[asic] = false;
  476. knc->first_slot[asic] = knc->next_slot[asic];
  477. HASH_ITER(hh, knc->devicework, work1, tmp1) {
  478. if (asic == ((work1->device_id >> 8) & 0xFF)) {
  479. HASH_DEL(knc->devicework, work1);
  480. free_work(work1);
  481. }
  482. }
  483. delay_usecs = 0;
  484. was_flushed = true;
  485. }
  486. --knc->workqueue_size;
  487. DL_DELETE(knc->workqueue, work);
  488. work->device_id = (asic << 8) | knc->next_slot[asic];
  489. HASH_ADD(hh, knc->devicework, device_id, sizeof(work->device_id), work);
  490. if (++(knc->next_slot[asic]) > KNC_TITAN_MAX_WORK_SLOT_NUM)
  491. knc->next_slot[asic] = KNC_TITAN_MIN_WORK_SLOT_NUM;
  492. ++workaccept;
  493. /* If we know for sure that this work was urgent, then we don't need to hurry up
  494. * with filling next slot, we have plenty of time until current work completes.
  495. * So, better to proceed with other ASICs. */
  496. if (was_flushed)
  497. break;
  498. }
  499. }
  500. applog(LOG_DEBUG, "%s: %d jobs accepted to queue (max=%d)", knc_titan_drv.dname, workaccept, knc->workqueue_max);
  501. for (asic = 0; asic < KNC_TITAN_MAX_ASICS; ++asic) {
  502. for (die = 0; die < KNC_TITAN_DIES_PER_ASIC; ++die) {
  503. if (0 >= knc->dies[asic][die].cores)
  504. continue;
  505. die_info.cores = knc->dies[asic][die].cores; /* core hint */
  506. die_info.version = KNC_VERSION_TITAN;
  507. if (!knc_titan_get_info(cgpu->dev_repr, knc->ctx, asic, die, &die_info))
  508. continue;
  509. for (proc = knc->dies[asic][die].first_proc; proc; proc = proc->next_proc) {
  510. mythr = proc->thr[0];
  511. knccore = mythr->cgpu_data;
  512. if ((knccore->dieno != die) || (knccore->asicno != asic))
  513. break;
  514. if (!die_info.has_report[knccore->coreno])
  515. continue;
  516. if (!knc_titan_get_report(proc->proc_repr, knc->ctx, asic, die, knccore->coreno, &report))
  517. continue;
  518. for (i = 0; i < KNC_TITAN_NONCES_PER_REPORT; ++i) {
  519. if ((report.nonce[i].slot == knccore->last_nonce.slot) &&
  520. (report.nonce[i].nonce == knccore->last_nonce.nonce))
  521. break;
  522. tmp_int = (asic << 8) | report.nonce[i].slot;
  523. HASH_FIND_INT(knc->devicework, &tmp_int, work);
  524. if (!work) {
  525. applog(LOG_WARNING, "%"PRIpreprv": Got nonce for unknown work in slot %u (asic %d)", proc->proc_repr, (unsigned)report.nonce[i].slot, asic);
  526. continue;
  527. }
  528. if (submit_nonce(mythr, work, report.nonce[i].nonce)) {
  529. hashes_done2(mythr, DEFAULT_DIFF_HASHES_PER_NONCE, NULL);
  530. knccore->hwerr_in_row = 0;
  531. }
  532. }
  533. knccore->last_nonce.slot = report.nonce[0].slot;
  534. knccore->last_nonce.nonce = report.nonce[0].nonce;
  535. }
  536. }
  537. }
  538. if (workaccept) {
  539. if (workaccept >= knc->workqueue_max) {
  540. knc->workqueue_max = workaccept;
  541. delay_usecs = 0;
  542. }
  543. knc_titan_set_queue_full(knc);
  544. }
  545. timer_set_delay_from_now(&thr->tv_poll, delay_usecs);
  546. }
  547. /*
  548. * specify settings / options via RPC or command line
  549. */
  550. /* support for --set-device
  551. * must be set before probing the device
  552. */
  553. static void knc_titan_set_clock_freq(struct cgpu_info * const device, int const val)
  554. {
  555. }
  556. static const char *knc_titan_set_clock(struct cgpu_info * const device, const char * const option, const char * const setting, char * const replybuf, enum bfg_set_device_replytype * const success)
  557. {
  558. knc_titan_set_clock_freq(device, atoi(setting));
  559. return NULL;
  560. }
  561. static const char *knc_titan_die_ena(struct cgpu_info * const device, const char * const option, const char * const setting, char * const replybuf, enum bfg_set_device_replytype * const success)
  562. {
  563. int asic, die;
  564. char str[256];
  565. /* command format: ASIC:N;DIE:N;MODE:ENABLE|DISABLE|RECONFIGURE */
  566. if (3 != sscanf(setting, "ASIC:%d;DIE:%d;MODE:%255s", &asic, &die, str)) {
  567. error_bad_params:
  568. sprintf(replybuf, "Die setup failed, bad parameters");
  569. return replybuf;
  570. }
  571. if (0 == strncasecmp(str, "enable", sizeof(str) - 1)) {
  572. if (!die_enable(device->device_data, asic, die, replybuf))
  573. return replybuf;
  574. } else if (0 == strncasecmp(str, "disable", sizeof(str) - 1)) {
  575. if (!die_disable(device->device_data, asic, die, replybuf))
  576. return replybuf;
  577. } else if (0 == strncasecmp(str, "reconfigure", sizeof(str) - 1)) {
  578. if (!die_reconfigure(device->device_data, asic, die, replybuf))
  579. return replybuf;
  580. } else
  581. goto error_bad_params;
  582. sprintf(replybuf, "Die setup Ok; asic %d die %d cmd %s", asic, die, str);
  583. *success = SDR_OK;
  584. return replybuf;
  585. }
  586. static const struct bfg_set_device_definition knc_titan_set_device_funcs[] = {
  587. { "clock", knc_titan_set_clock, NULL },
  588. { "die", knc_titan_die_ena, NULL },
  589. { NULL },
  590. };
  591. /*
  592. * specify settings / options via TUI
  593. */
  594. #ifdef HAVE_CURSES
  595. static void knc_titan_tui_wlogprint_choices(struct cgpu_info * const proc)
  596. {
  597. wlogprint("[C]lock speed ");
  598. }
  599. static const char *knc_titan_tui_handle_choice(struct cgpu_info * const proc, const int input)
  600. {
  601. static char buf[0x100]; /* Static for replies */
  602. switch (input)
  603. {
  604. case 'c': case 'C':
  605. {
  606. sprintf(buf, "Set clock speed");
  607. char * const setting = curses_input(buf);
  608. knc_titan_set_clock_freq(proc->device, atoi(setting));
  609. return "Clock speed changed\n";
  610. }
  611. }
  612. return NULL;
  613. }
  614. static void knc_titan_wlogprint_status(struct cgpu_info * const proc)
  615. {
  616. wlogprint("Clock speed: N/A\n");
  617. }
  618. #endif
  619. struct device_drv knc_titan_drv =
  620. {
  621. /* metadata */
  622. .dname = "titan",
  623. .name = "KNC",
  624. .supported_algos = POW_SCRYPT,
  625. .drv_detect = knc_titan_detect,
  626. .thread_init = knc_titan_init,
  627. /* specify mining type - queue */
  628. .minerloop = minerloop_queue,
  629. .queue_append = knc_titan_queue_append,
  630. .queue_flush = knc_titan_queue_flush,
  631. .poll = knc_titan_poll,
  632. .prepare_work = knc_titan_prepare_work,
  633. /* TUI support - e.g. setting clock via UI */
  634. #ifdef HAVE_CURSES
  635. .proc_wlogprint_status = knc_titan_wlogprint_status,
  636. .proc_tui_wlogprint_choices = knc_titan_tui_wlogprint_choices,
  637. .proc_tui_handle_choice = knc_titan_tui_handle_choice,
  638. #endif
  639. };