driver-bitforce.c 56 KB

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  1. /*
  2. * Copyright 2012-2013 Luke Dashjr
  3. * Copyright 2012 Con Kolivas
  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 "config.h"
  11. #include <ctype.h>
  12. #include <limits.h>
  13. #include <pthread.h>
  14. #include <stdint.h>
  15. #include <stdio.h>
  16. #include <strings.h>
  17. #include <sys/time.h>
  18. #include <unistd.h>
  19. #include "compat.h"
  20. #include "deviceapi.h"
  21. #include "miner.h"
  22. #include "fpgautils.h"
  23. #include "util.h"
  24. #define BITFORCE_SLEEP_MS 500
  25. #define BITFORCE_TIMEOUT_S 7
  26. #define BITFORCE_TIMEOUT_MS (BITFORCE_TIMEOUT_S * 1000)
  27. #define BITFORCE_LONG_TIMEOUT_S 25
  28. #define BITFORCE_LONG_TIMEOUT_MS (BITFORCE_LONG_TIMEOUT_S * 1000)
  29. #define BITFORCE_CHECK_INTERVAL_MS 10
  30. #define WORK_CHECK_INTERVAL_MS 50
  31. #define MAX_START_DELAY_MS 100
  32. #define tv_to_ms(tval) ((unsigned long)(tval.tv_sec * 1000 + tval.tv_usec / 1000))
  33. #define TIME_AVG_CONSTANT 8
  34. #define BITFORCE_QRESULT_LINE_LEN 165
  35. #define BITFORCE_MAX_QUEUED_MAX 40
  36. #define BITFORCE_MIN_QUEUED_MAX 10
  37. #define BITFORCE_MAX_QRESULTS 16
  38. #define BITFORCE_GOAL_QRESULTS 5
  39. #define BITFORCE_MIN_QRESULT_WAIT BITFORCE_CHECK_INTERVAL_MS
  40. #define BITFORCE_MAX_QRESULT_WAIT 1000
  41. #define BITFORCE_MAX_BQUEUE_AT_ONCE 5
  42. enum bitforce_proto {
  43. BFP_WORK,
  44. BFP_RANGE,
  45. BFP_QUEUE,
  46. BFP_BQUEUE,
  47. BFP_PQUEUE,
  48. };
  49. static const char *protonames[] = {
  50. "full work",
  51. "nonce range",
  52. "work queue",
  53. "bulk queue",
  54. "parallel queue",
  55. };
  56. struct device_drv bitforce_drv;
  57. struct device_drv bitforce_queue_api;
  58. // Code must deal with a timeout
  59. #define BFopen(devpath) serial_open(devpath, 0, 250, true)
  60. static void BFgets(char *buf, size_t bufLen, int fd)
  61. {
  62. char *obuf = buf;
  63. do {
  64. buf[0] = '\0';
  65. --bufLen;
  66. } while (likely(bufLen && read(fd, buf, 1) == 1 && (buf++)[0] != '\n'));
  67. buf[0] = '\0';
  68. if (unlikely(opt_dev_protocol))
  69. applog(LOG_DEBUG, "DEVPROTO: GETS (fd=%d): %s", fd, obuf);
  70. }
  71. static ssize_t BFwrite(int fd, const void *buf, ssize_t bufLen)
  72. {
  73. if ((bufLen) != write(fd, buf, bufLen))
  74. return 0;
  75. else
  76. return bufLen;
  77. }
  78. static ssize_t bitforce_send(int fd, int procid, const void *buf, ssize_t bufLen)
  79. {
  80. if (!procid)
  81. return BFwrite(fd, buf, bufLen);
  82. if (bufLen > 255)
  83. return -1;
  84. size_t bufLeft = bufLen + 3;
  85. char realbuf[bufLeft], *bufp;
  86. ssize_t rv;
  87. memcpy(&realbuf[3], buf, bufLen);
  88. realbuf[0] = '@';
  89. realbuf[1] = bufLen;
  90. realbuf[2] = procid;
  91. bufp = realbuf;
  92. do
  93. {
  94. rv = BFwrite(fd, bufp, bufLeft);
  95. if (rv <= 0)
  96. return rv;
  97. bufLeft -= rv;
  98. }
  99. while (bufLeft > 0);
  100. return bufLen;
  101. }
  102. static
  103. void bitforce_cmd1b(int fd, int procid, void *buf, size_t bufsz, const char *cmd, size_t cmdsz)
  104. {
  105. if (unlikely(opt_dev_protocol))
  106. applog(LOG_DEBUG, "DEVPROTO: CMD1 (fd=%d xlink=%d): %s", fd, procid, cmd);
  107. bitforce_send(fd, procid, cmd, cmdsz);
  108. BFgets(buf, bufsz, fd);
  109. }
  110. #define bitforce_cmd1(fd, xlinkid, buf, bufsz, cmd) bitforce_cmd1b(fd, xlinkid, buf, bufsz, cmd, 3)
  111. static
  112. void bitforce_cmd2(int fd, int procid, void *buf, size_t bufsz, const char *cmd, void *data, size_t datasz)
  113. {
  114. bitforce_cmd1(fd, procid, buf, bufsz, cmd);
  115. if (strncasecmp(buf, "OK", 2))
  116. return;
  117. if (unlikely(opt_dev_protocol))
  118. {
  119. char hex[(datasz * 2) + 1];
  120. bin2hex(hex, data, datasz);
  121. applog(LOG_DEBUG, "DEVPROTO: CMD2 (fd=%d xlink=%d): %s", fd, procid, hex);
  122. }
  123. bitforce_send(fd, procid, data, datasz);
  124. BFgets(buf, bufsz, fd);
  125. }
  126. #define BFclose(fd) close(fd)
  127. struct bitforce_init_data {
  128. bool sc;
  129. long devmask;
  130. int *parallels;
  131. };
  132. static
  133. int bitforce_chips_to_plan_for(int parallel, int chipcount) {
  134. if (parallel < 1)
  135. return parallel;
  136. if (chipcount > 15) return 32;
  137. if (chipcount > 7) return 16;
  138. if (chipcount > 3) return 8;
  139. if (chipcount > 1) return 4;
  140. if (chipcount ) return 2;
  141. return 1;
  142. }
  143. static bool bitforce_detect_one(const char *devpath)
  144. {
  145. int fdDev = serial_open(devpath, 0, 10, true);
  146. struct cgpu_info *bitforce;
  147. char pdevbuf[0x100];
  148. size_t pdevbuf_len;
  149. char *s;
  150. int procs = 1, parallel = -1;
  151. long maxchipno = 0;
  152. struct bitforce_init_data *initdata;
  153. applog(LOG_DEBUG, "BFL: Attempting to open %s", devpath);
  154. if (unlikely(fdDev == -1)) {
  155. applog(LOG_DEBUG, "BFL: Failed to open %s", devpath);
  156. return false;
  157. }
  158. bitforce_cmd1(fdDev, 0, pdevbuf, sizeof(pdevbuf), "ZGX");
  159. if (unlikely(!pdevbuf[0])) {
  160. applog(LOG_DEBUG, "BFL: Error reading/timeout (ZGX)");
  161. return 0;
  162. }
  163. if (unlikely(!strstr(pdevbuf, "SHA256"))) {
  164. applog(LOG_DEBUG, "BFL: Didn't recognise BitForce on %s", devpath);
  165. BFclose(fdDev);
  166. return false;
  167. }
  168. if (serial_claim_v(devpath, &bitforce_drv))
  169. return false;
  170. applog(LOG_DEBUG, "Found BitForce device on %s", devpath);
  171. initdata = malloc(sizeof(*initdata));
  172. *initdata = (struct bitforce_init_data){
  173. .sc = false,
  174. };
  175. bitforce_cmd1(fdDev, 0, pdevbuf, sizeof(pdevbuf), "ZCX");
  176. for (int i = 0; (!pdevbuf[0]) && i < 4; ++i)
  177. BFgets(pdevbuf, sizeof(pdevbuf), fdDev);
  178. for ( ;
  179. strncasecmp(pdevbuf, "OK", 2);
  180. BFgets(pdevbuf, sizeof(pdevbuf), fdDev) )
  181. {
  182. pdevbuf_len = strlen(pdevbuf);
  183. if (unlikely(!pdevbuf_len))
  184. continue;
  185. pdevbuf[pdevbuf_len-1] = '\0'; // trim newline
  186. applog(LOG_DEBUG, " %s", pdevbuf);
  187. if (!strncasecmp(pdevbuf, "PROCESSOR ", 10))
  188. maxchipno = max(maxchipno, atoi(&pdevbuf[10]));
  189. else
  190. if (!strncasecmp(pdevbuf, "DEVICES IN CHAIN:", 17))
  191. procs = atoi(&pdevbuf[17]);
  192. else
  193. if (!strncasecmp(pdevbuf, "CHAIN PRESENCE MASK:", 20))
  194. initdata->devmask = strtol(&pdevbuf[20], NULL, 16);
  195. else
  196. if (!strncasecmp(pdevbuf, "DEVICE:", 7) && strstr(pdevbuf, "SC"))
  197. initdata->sc = true;
  198. else
  199. if (!strncasecmp(pdevbuf, "CHIP PARALLELIZATION: YES @", 27))
  200. parallel = atoi(&pdevbuf[27]);
  201. }
  202. parallel = bitforce_chips_to_plan_for(parallel, maxchipno);
  203. initdata->parallels = malloc(sizeof(initdata->parallels[0]) * procs);
  204. initdata->parallels[0] = parallel;
  205. parallel = abs(parallel);
  206. for (int proc = 1; proc < procs; ++proc)
  207. {
  208. applog(LOG_DEBUG, "Slave board %d:", proc);
  209. initdata->parallels[proc] = -1;
  210. maxchipno = 0;
  211. bitforce_cmd1(fdDev, proc, pdevbuf, sizeof(pdevbuf), "ZCX");
  212. for (int i = 0; (!pdevbuf[0]) && i < 4; ++i)
  213. BFgets(pdevbuf, sizeof(pdevbuf), fdDev);
  214. for ( ;
  215. strncasecmp(pdevbuf, "OK", 2);
  216. BFgets(pdevbuf, sizeof(pdevbuf), fdDev) )
  217. {
  218. pdevbuf_len = strlen(pdevbuf);
  219. if (unlikely(!pdevbuf_len))
  220. continue;
  221. pdevbuf[pdevbuf_len-1] = '\0'; // trim newline
  222. applog(LOG_DEBUG, " %s", pdevbuf);
  223. if (!strncasecmp(pdevbuf, "PROCESSOR ", 10))
  224. maxchipno = max(maxchipno, atoi(&pdevbuf[10]));
  225. else
  226. if (!strncasecmp(pdevbuf, "CHIP PARALLELIZATION: YES @", 27))
  227. initdata->parallels[proc] = atoi(&pdevbuf[27]);
  228. }
  229. initdata->parallels[proc] = bitforce_chips_to_plan_for(initdata->parallels[proc], maxchipno);
  230. parallel += abs(initdata->parallels[proc]);
  231. }
  232. BFclose(fdDev);
  233. if (unlikely((procs != 1 || parallel != 1) && !initdata->sc))
  234. {
  235. // Only bitforce_queue supports parallelization and XLINK, so force SC mode and hope for the best
  236. applog(LOG_WARNING, "SC features detected with non-SC device; this is not supported!");
  237. initdata->sc = true;
  238. }
  239. // We have a real BitForce!
  240. bitforce = calloc(1, sizeof(*bitforce));
  241. bitforce->drv = &bitforce_drv;
  242. if (initdata->sc)
  243. bitforce->drv = &bitforce_queue_api;
  244. bitforce->device_path = strdup(devpath);
  245. bitforce->deven = DEV_ENABLED;
  246. bitforce->procs = parallel;
  247. bitforce->threads = 1;
  248. if (likely((!memcmp(pdevbuf, ">>>ID: ", 7)) && (s = strstr(pdevbuf + 3, ">>>")))) {
  249. s[0] = '\0';
  250. bitforce->name = strdup(pdevbuf + 7);
  251. }
  252. bitforce->device_data = initdata;
  253. mutex_init(&bitforce->device_mutex);
  254. return add_cgpu(bitforce);
  255. }
  256. static int bitforce_detect_auto(void)
  257. {
  258. return serial_autodetect(bitforce_detect_one, "BitFORCE", "SHA256");
  259. }
  260. static void bitforce_detect(void)
  261. {
  262. serial_detect_auto(&bitforce_drv, bitforce_detect_one, bitforce_detect_auto);
  263. }
  264. struct bitforce_data {
  265. int xlink_id;
  266. unsigned char next_work_ob[70]; // Data aligned for 32-bit access
  267. unsigned char *next_work_obs; // Start of data to send
  268. unsigned char next_work_obsz;
  269. const char *next_work_cmd;
  270. char noncebuf[14 + ((BITFORCE_MAX_QRESULTS+1) * BITFORCE_QRESULT_LINE_LEN)];
  271. int poll_func;
  272. enum bitforce_proto proto;
  273. bool sc;
  274. int queued;
  275. int queued_max;
  276. int parallel;
  277. bool parallel_protocol;
  278. bool already_have_results;
  279. bool just_flushed;
  280. int ready_to_queue;
  281. bool want_to_send_queue;
  282. unsigned result_busy_polled;
  283. unsigned sleep_ms_default;
  284. struct timeval tv_hashmeter_start;
  285. float temp[2];
  286. long *volts;
  287. int volts_count;
  288. };
  289. struct bitforce_proc_data {
  290. struct cgpu_info *cgpu;
  291. bool handles_board; // The first processor handles the queue for the entire board
  292. };
  293. static void bitforce_clear_buffer(struct cgpu_info *);
  294. static
  295. void bitforce_comm_error(struct thr_info *thr)
  296. {
  297. struct cgpu_info *bitforce = thr->cgpu;
  298. struct bitforce_data *data = bitforce->device_data;
  299. int *p_fdDev = &bitforce->device->device_fd;
  300. data->noncebuf[0] = '\0';
  301. applog(LOG_ERR, "%"PRIpreprv": Comms error", bitforce->proc_repr);
  302. dev_error(bitforce, REASON_DEV_COMMS_ERROR);
  303. inc_hw_errors_only(thr);
  304. BFclose(*p_fdDev);
  305. int fd = *p_fdDev = BFopen(bitforce->device_path);
  306. if (fd == -1)
  307. {
  308. applog(LOG_ERR, "%s: Error reopening %s", bitforce->dev_repr, bitforce->device_path);
  309. return;
  310. }
  311. /* empty read buffer */
  312. bitforce_clear_buffer(bitforce);
  313. }
  314. static bool bitforce_thread_prepare(struct thr_info *thr)
  315. {
  316. struct cgpu_info *bitforce = thr->cgpu;
  317. int fdDev = BFopen(bitforce->device_path);
  318. if (unlikely(fdDev == -1)) {
  319. applog(LOG_ERR, "%s: Failed to open %s", bitforce->dev_repr, bitforce->device_path);
  320. return false;
  321. }
  322. bitforce->device_fd = fdDev;
  323. applog(LOG_INFO, "%s: Opened %s", bitforce->dev_repr, bitforce->device_path);
  324. return true;
  325. }
  326. static void __bitforce_clear_buffer(int fdDev)
  327. {
  328. char pdevbuf[0x100];
  329. int count = 0;
  330. do {
  331. pdevbuf[0] = '\0';
  332. BFgets(pdevbuf, sizeof(pdevbuf), fdDev);
  333. } while (pdevbuf[0] && (++count < 10));
  334. }
  335. static void bitforce_clear_buffer(struct cgpu_info *bitforce)
  336. {
  337. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  338. int fdDev;
  339. mutex_lock(mutexp);
  340. fdDev = bitforce->device->device_fd;
  341. if (fdDev)
  342. {
  343. applog(LOG_DEBUG, "%"PRIpreprv": Clearing read buffer", bitforce->proc_repr);
  344. __bitforce_clear_buffer(fdDev);
  345. }
  346. mutex_unlock(mutexp);
  347. }
  348. void work_list_del(struct work **head, struct work *);
  349. void bitforce_reinit(struct cgpu_info *bitforce)
  350. {
  351. struct bitforce_data *data = bitforce->device_data;
  352. struct thr_info *thr = bitforce->thr[0];
  353. struct bitforce_proc_data *procdata = thr->cgpu_data;
  354. const char *devpath = bitforce->device_path;
  355. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  356. int *p_fdDev = &bitforce->device->device_fd;
  357. int fdDev, retries = 0;
  358. char pdevbuf[0x100];
  359. char *s;
  360. if (!procdata->handles_board)
  361. return;
  362. mutex_lock(mutexp);
  363. fdDev = *p_fdDev;
  364. applog(LOG_WARNING, "%"PRIpreprv": Re-initialising", bitforce->proc_repr);
  365. if (fdDev) {
  366. BFclose(fdDev);
  367. nmsleep(5000);
  368. *p_fdDev = 0;
  369. }
  370. fdDev = BFopen(devpath);
  371. if (unlikely(fdDev == -1)) {
  372. mutex_unlock(mutexp);
  373. applog(LOG_ERR, "%s: Failed to open %s", bitforce->dev_repr, devpath);
  374. return;
  375. }
  376. __bitforce_clear_buffer(fdDev);
  377. do {
  378. bitforce_cmd1(fdDev, 0, pdevbuf, sizeof(pdevbuf), "ZGX");
  379. if (unlikely(!pdevbuf[0])) {
  380. mutex_unlock(mutexp);
  381. BFclose(fdDev);
  382. applog(LOG_ERR, "%s: Error reading/timeout (ZGX)", bitforce->dev_repr);
  383. return;
  384. }
  385. if (retries++)
  386. nmsleep(10);
  387. } while (strstr(pdevbuf, "BUSY") && (retries * 10 < BITFORCE_TIMEOUT_MS));
  388. if (unlikely(!strstr(pdevbuf, "SHA256"))) {
  389. mutex_unlock(mutexp);
  390. BFclose(fdDev);
  391. applog(LOG_ERR, "%s: Didn't recognise BitForce on %s returned: %s", bitforce->dev_repr, devpath, pdevbuf);
  392. return;
  393. }
  394. if (likely((!memcmp(pdevbuf, ">>>ID: ", 7)) && (s = strstr(pdevbuf + 3, ">>>")))) {
  395. s[0] = '\0';
  396. free((void*)bitforce->name);
  397. bitforce->name = strdup(pdevbuf + 7);
  398. }
  399. *p_fdDev = fdDev;
  400. bitforce->sleep_ms = data->sleep_ms_default;
  401. if (bitforce->drv == &bitforce_queue_api)
  402. {
  403. struct work *work, *tmp;
  404. timer_set_delay_from_now(&thr->tv_poll, 0);
  405. notifier_wake(thr->notifier);
  406. bitforce_cmd1(fdDev, data->xlink_id, pdevbuf, sizeof(pdevbuf), "ZQX");
  407. DL_FOREACH_SAFE(thr->work_list, work, tmp)
  408. work_list_del(&thr->work_list, work);
  409. data->queued = 0;
  410. data->ready_to_queue = 0;
  411. data->already_have_results = false;
  412. data->just_flushed = true;
  413. thr->queue_full = false;
  414. }
  415. mutex_unlock(mutexp);
  416. }
  417. static void bitforce_flash_led(struct cgpu_info *bitforce)
  418. {
  419. struct bitforce_data *data = bitforce->device_data;
  420. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  421. int fdDev = bitforce->device->device_fd;
  422. if (!fdDev)
  423. return;
  424. /* Do not try to flash the led if we're polling for a result to
  425. * minimise the chance of interleaved results */
  426. if (bitforce->polling)
  427. return;
  428. /* It is not critical flashing the led so don't get stuck if we
  429. * can't grab the mutex here */
  430. if (mutex_trylock(mutexp))
  431. return;
  432. char pdevbuf[0x100];
  433. bitforce_cmd1(fdDev, data->xlink_id, pdevbuf, sizeof(pdevbuf), "ZMX");
  434. /* Once we've tried - don't do it until told to again */
  435. bitforce->flash_led = false;
  436. /* However, this stops anything else getting a reply
  437. * So best to delay any other access to the BFL */
  438. nmsleep(4000);
  439. mutex_unlock(mutexp);
  440. return; // nothing is returned by the BFL
  441. }
  442. static
  443. float my_strtof(const char *nptr, char **endptr)
  444. {
  445. float f = strtof(nptr, endptr);
  446. /* Cope with older software that breaks and reads nonsense
  447. * values */
  448. if (f > 100)
  449. f = strtod(nptr, endptr);
  450. return f;
  451. }
  452. static
  453. void set_float_if_gt_zero(float *var, float value)
  454. {
  455. if (value > 0)
  456. *var = value;
  457. }
  458. static bool bitforce_get_temp(struct cgpu_info *bitforce)
  459. {
  460. struct bitforce_data *data = bitforce->device_data;
  461. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  462. int fdDev = bitforce->device->device_fd;
  463. char pdevbuf[0x40];
  464. char voltbuf[0x40];
  465. char *s;
  466. struct cgpu_info *chip_cgpu;
  467. if (!fdDev)
  468. return false;
  469. /* Do not try to get the temperature if we're polling for a result to
  470. * minimise the chance of interleaved results */
  471. if (bitforce->polling)
  472. return true;
  473. // Flash instead of Temp - doing both can be too slow
  474. if (bitforce->flash_led) {
  475. bitforce_flash_led(bitforce);
  476. return true;
  477. }
  478. /* It is not critical getting temperature so don't get stuck if we
  479. * can't grab the mutex here */
  480. if (mutex_trylock(mutexp))
  481. return false;
  482. if (data->sc)
  483. bitforce_cmd1(fdDev, data->xlink_id, voltbuf, sizeof(voltbuf), "ZTX");
  484. bitforce_cmd1(fdDev, data->xlink_id, pdevbuf, sizeof(pdevbuf), "ZLX");
  485. mutex_unlock(mutexp);
  486. if (data->sc && likely(voltbuf[0]))
  487. {
  488. // Process voltage info
  489. // "NNNxxx,NNNxxx,NNNxxx"
  490. int n = 1;
  491. for (char *p = voltbuf; p[0]; ++p)
  492. if (p[0] == ',')
  493. ++n;
  494. long *out = malloc(sizeof(long) * n);
  495. if (!out)
  496. goto skipvolts;
  497. n = 0;
  498. char *saveptr, *v;
  499. for (v = strtok_r(voltbuf, ",", &saveptr); v; v = strtok_r(NULL, ",", &saveptr))
  500. out[n++] = strtol(v, NULL, 10);
  501. data->volts_count = 0;
  502. free(data->volts);
  503. data->volts = out;
  504. data->volts_count = n;
  505. }
  506. skipvolts:
  507. if (unlikely(!pdevbuf[0])) {
  508. struct thr_info *thr = bitforce->thr[0];
  509. applog(LOG_ERR, "%"PRIpreprv": Error: Get temp returned empty string/timed out", bitforce->proc_repr);
  510. inc_hw_errors_only(thr);
  511. return false;
  512. }
  513. if ((!strncasecmp(pdevbuf, "TEMP", 4)) && (s = strchr(pdevbuf + 4, ':'))) {
  514. float temp = my_strtof(s + 1, &s);
  515. set_float_if_gt_zero(&data->temp[0], temp);
  516. for ( ; s[0]; ++s)
  517. {
  518. if (!strncasecmp(s, "TEMP", 4) && (s = strchr(&s[4], ':')))
  519. {
  520. float temp2 = my_strtof(s + 1, &s);
  521. set_float_if_gt_zero(&data->temp[1], temp2);
  522. if (temp2 > temp)
  523. temp = temp2;
  524. }
  525. }
  526. if (temp > 0)
  527. {
  528. chip_cgpu = bitforce;
  529. for (int i = 0; i < data->parallel; ++i, (chip_cgpu = chip_cgpu->next_proc))
  530. chip_cgpu->temp = temp;
  531. }
  532. } else {
  533. struct thr_info *thr = bitforce->thr[0];
  534. /* Use the temperature monitor as a kind of watchdog for when
  535. * our responses are out of sync and flush the buffer to
  536. * hopefully recover */
  537. applog(LOG_WARNING, "%"PRIpreprv": Garbled response probably throttling, clearing buffer", bitforce->proc_repr);
  538. dev_error(bitforce, REASON_DEV_THROTTLE);
  539. /* Count throttling episodes as hardware errors */
  540. inc_hw_errors_only(thr);
  541. bitforce_clear_buffer(bitforce);
  542. return false;
  543. }
  544. return true;
  545. }
  546. static inline
  547. void dbg_block_data(struct cgpu_info *bitforce)
  548. {
  549. if (!opt_debug)
  550. return;
  551. struct bitforce_data *data = bitforce->device_data;
  552. char s[89];
  553. bin2hex(s, &data->next_work_ob[8], 44);
  554. applog(LOG_DEBUG, "%"PRIpreprv": block data: %s", bitforce->proc_repr, s);
  555. }
  556. static void bitforce_change_mode(struct cgpu_info *, enum bitforce_proto);
  557. static
  558. bool bitforce_job_prepare(struct thr_info *thr, struct work *work, __maybe_unused uint64_t max_nonce)
  559. {
  560. struct cgpu_info *bitforce = thr->cgpu;
  561. struct bitforce_data *data = bitforce->device_data;
  562. int fdDev = bitforce->device->device_fd;
  563. unsigned char *ob_ms = &data->next_work_ob[8];
  564. unsigned char *ob_dt = &ob_ms[32];
  565. // If polling job_start, cancel it
  566. if (data->poll_func == 1)
  567. {
  568. thr->tv_poll.tv_sec = -1;
  569. data->poll_func = 0;
  570. }
  571. memcpy(ob_ms, work->midstate, 32);
  572. memcpy(ob_dt, work->data + 64, 12);
  573. switch (data->proto)
  574. {
  575. case BFP_BQUEUE:
  576. quithere(1, "%"PRIpreprv": Impossible BFP_BQUEUE", bitforce->proc_repr);
  577. case BFP_PQUEUE:
  578. quithere(1, "%"PRIpreprv": Impossible BFP_PQUEUE", bitforce->proc_repr);
  579. case BFP_RANGE:
  580. {
  581. uint32_t *ob_nonce = (uint32_t*)&(ob_dt[32]);
  582. ob_nonce[0] = htobe32(work->blk.nonce);
  583. ob_nonce[1] = htobe32(work->blk.nonce + bitforce->nonces);
  584. // FIXME: if nonce range fails... we didn't increment enough
  585. work->blk.nonce += bitforce->nonces + 1;
  586. break;
  587. }
  588. case BFP_QUEUE:
  589. if (thr->work)
  590. {
  591. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  592. char pdevbuf[0x100];
  593. if (unlikely(!fdDev))
  594. return false;
  595. mutex_lock(mutexp);
  596. if (data->queued)
  597. bitforce_cmd1(fdDev, data->xlink_id, pdevbuf, sizeof(pdevbuf), "ZQX");
  598. bitforce_cmd2(fdDev, data->xlink_id, pdevbuf, sizeof(pdevbuf), data->next_work_cmd, data->next_work_obs, data->next_work_obsz);
  599. mutex_unlock(mutexp);
  600. if (unlikely(strncasecmp(pdevbuf, "OK", 2))) {
  601. applog(LOG_WARNING, "%"PRIpreprv": Does not support work queue, disabling", bitforce->proc_repr);
  602. bitforce_change_mode(bitforce, BFP_WORK);
  603. }
  604. else
  605. {
  606. dbg_block_data(bitforce);
  607. data->queued = 1;
  608. }
  609. }
  610. // fallthru...
  611. case BFP_WORK:
  612. work->blk.nonce = 0xffffffff;
  613. }
  614. return true;
  615. }
  616. static
  617. void bitforce_change_mode(struct cgpu_info *bitforce, enum bitforce_proto proto)
  618. {
  619. struct bitforce_data *data = bitforce->device_data;
  620. if (data->proto == proto)
  621. return;
  622. if (data->proto == BFP_RANGE)
  623. {
  624. bitforce->nonces = 0xffffffff;
  625. bitforce->sleep_ms *= 5;
  626. data->sleep_ms_default *= 5;
  627. switch (proto)
  628. {
  629. case BFP_WORK:
  630. data->next_work_cmd = "ZDX";
  631. break;
  632. case BFP_QUEUE:
  633. data->next_work_cmd = "ZNX";
  634. default:
  635. ;
  636. }
  637. if (data->sc)
  638. {
  639. // "S|---------- MidState ----------||-DataTail-|E"
  640. data->next_work_ob[7] = 45;
  641. data->next_work_ob[8+32+12] = '\xAA';
  642. data->next_work_obsz = 46;
  643. }
  644. else
  645. {
  646. // ">>>>>>>>|---------- MidState ----------||-DataTail-|>>>>>>>>"
  647. memset(&data->next_work_ob[8+32+12], '>', 8);
  648. data->next_work_obsz = 60;
  649. }
  650. }
  651. else
  652. if (proto == BFP_RANGE)
  653. {
  654. /* Split work up into 1/5th nonce ranges */
  655. bitforce->nonces = 0x33333332;
  656. bitforce->sleep_ms /= 5;
  657. data->sleep_ms_default /= 5;
  658. data->next_work_cmd = "ZPX";
  659. if (data->sc)
  660. {
  661. data->next_work_ob[7] = 53;
  662. data->next_work_obsz = 54;
  663. }
  664. else
  665. data->next_work_obsz = 68;
  666. }
  667. data->proto = proto;
  668. bitforce->kname = protonames[proto];
  669. }
  670. static
  671. void bitforce_job_start(struct thr_info *thr)
  672. {
  673. struct cgpu_info *bitforce = thr->cgpu;
  674. struct bitforce_data *data = bitforce->device_data;
  675. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  676. int fdDev = bitforce->device->device_fd;
  677. unsigned char *ob = data->next_work_obs;
  678. char pdevbuf[0x100];
  679. struct timeval tv_now;
  680. data->result_busy_polled = 0;
  681. if (data->queued)
  682. {
  683. uint32_t delay;
  684. // get_results collected more accurate job start time
  685. mt_job_transition(thr);
  686. job_start_complete(thr);
  687. data->queued = 0;
  688. delay = (uint32_t)bitforce->sleep_ms * 1000;
  689. if (unlikely(data->already_have_results))
  690. delay = 0;
  691. timer_set_delay(&thr->tv_morework, &bitforce->work_start_tv, delay);
  692. return;
  693. }
  694. if (!fdDev)
  695. goto commerr;
  696. re_send:
  697. mutex_lock(mutexp);
  698. bitforce_cmd2(fdDev, data->xlink_id, pdevbuf, sizeof(pdevbuf), data->next_work_cmd, ob, data->next_work_obsz);
  699. if (!pdevbuf[0] || !strncasecmp(pdevbuf, "B", 1)) {
  700. mutex_unlock(mutexp);
  701. cgtime(&tv_now);
  702. timer_set_delay(&thr->tv_poll, &tv_now, WORK_CHECK_INTERVAL_MS * 1000);
  703. data->poll_func = 1;
  704. return;
  705. } else if (unlikely(strncasecmp(pdevbuf, "OK", 2))) {
  706. mutex_unlock(mutexp);
  707. switch (data->proto)
  708. {
  709. case BFP_RANGE:
  710. applog(LOG_WARNING, "%"PRIpreprv": Does not support nonce range, disabling", bitforce->proc_repr);
  711. bitforce_change_mode(bitforce, BFP_WORK);
  712. goto re_send;
  713. case BFP_QUEUE:
  714. applog(LOG_WARNING, "%"PRIpreprv": Does not support work queue, disabling", bitforce->proc_repr);
  715. bitforce_change_mode(bitforce, BFP_WORK);
  716. goto re_send;
  717. default:
  718. ;
  719. }
  720. applog(LOG_ERR, "%"PRIpreprv": Error: Send work reports: %s", bitforce->proc_repr, pdevbuf);
  721. goto commerr;
  722. }
  723. mt_job_transition(thr);
  724. mutex_unlock(mutexp);
  725. dbg_block_data(bitforce);
  726. cgtime(&tv_now);
  727. bitforce->work_start_tv = tv_now;
  728. timer_set_delay(&thr->tv_morework, &tv_now, bitforce->sleep_ms * 1000);
  729. job_start_complete(thr);
  730. return;
  731. commerr:
  732. bitforce_comm_error(thr);
  733. job_start_abort(thr, true);
  734. }
  735. static char _discardedbuf[0x10];
  736. static
  737. int bitforce_zox(struct thr_info *thr, const char *cmd)
  738. {
  739. struct cgpu_info *bitforce = thr->cgpu;
  740. struct bitforce_data *data = bitforce->device_data;
  741. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  742. int fd = bitforce->device->device_fd;
  743. char *pdevbuf = &data->noncebuf[0];
  744. int count;
  745. mutex_lock(mutexp);
  746. bitforce_cmd1(fd, data->xlink_id, pdevbuf, sizeof(data->noncebuf), cmd);
  747. if (!strncasecmp(pdevbuf, "INPROCESS:", 10))
  748. BFgets(pdevbuf, sizeof(data->noncebuf), fd);
  749. if (!strncasecmp(pdevbuf, "COUNT:", 6))
  750. {
  751. count = atoi(&pdevbuf[6]);
  752. size_t cls = strlen(pdevbuf);
  753. char *pmorebuf = &pdevbuf[cls];
  754. size_t szleft = sizeof(data->noncebuf) - cls, sz;
  755. if (count && data->queued)
  756. cgtime(&bitforce->work_start_tv);
  757. while (true)
  758. {
  759. BFgets(pmorebuf, szleft, fd);
  760. if (!strncasecmp(pmorebuf, "OK", 2))
  761. {
  762. pmorebuf[0] = '\0'; // process expects only results
  763. break;
  764. }
  765. sz = strlen(pmorebuf);
  766. if (!sz)
  767. {
  768. applog(LOG_ERR, "%"PRIpreprv": Timeout during %s", bitforce->proc_repr, cmd);
  769. break;
  770. }
  771. szleft -= sz;
  772. pmorebuf += sz;
  773. if (unlikely(szleft < BITFORCE_QRESULT_LINE_LEN))
  774. {
  775. // Out of buffer space somehow :(
  776. applog(LOG_ERR, "%"PRIpreprv": Ran out of buffer space for results, discarding extra data", bitforce->proc_repr);
  777. pmorebuf = _discardedbuf;
  778. szleft = sizeof(_discardedbuf);
  779. }
  780. }
  781. }
  782. else
  783. count = -1;
  784. mutex_unlock(mutexp);
  785. return count;
  786. }
  787. static inline char *next_line(char *);
  788. static
  789. void bitforce_job_get_results(struct thr_info *thr, struct work *work)
  790. {
  791. struct cgpu_info *bitforce = thr->cgpu;
  792. struct bitforce_data *data = bitforce->device_data;
  793. int fdDev = bitforce->device->device_fd;
  794. unsigned int delay_time_ms;
  795. struct timeval elapsed;
  796. struct timeval now;
  797. char *pdevbuf = &data->noncebuf[0];
  798. bool stale;
  799. int count;
  800. cgtime(&now);
  801. timersub(&now, &bitforce->work_start_tv, &elapsed);
  802. bitforce->wait_ms = tv_to_ms(elapsed);
  803. bitforce->polling = true;
  804. if (!fdDev)
  805. goto commerr;
  806. stale = stale_work(work, true);
  807. if (unlikely(bitforce->wait_ms < bitforce->sleep_ms))
  808. {
  809. // We're likely here because of a work restart
  810. // Since Bitforce cannot stop a work without losing results, only do it if the current job is finding stale shares
  811. // BFP_QUEUE does not support stopping work at all
  812. if (data->proto == BFP_QUEUE || !stale)
  813. {
  814. delay_time_ms = bitforce->sleep_ms - bitforce->wait_ms;
  815. timer_set_delay(&thr->tv_poll, &now, delay_time_ms * 1000);
  816. data->poll_func = 2;
  817. return;
  818. }
  819. }
  820. while (1) {
  821. if (data->already_have_results)
  822. {
  823. data->already_have_results = false;
  824. strcpy(pdevbuf, "COUNT:0");
  825. count = 1;
  826. break;
  827. }
  828. const char *cmd = (data->proto == BFP_QUEUE) ? "ZOX" : "ZFX";
  829. count = bitforce_zox(thr, cmd);
  830. cgtime(&now);
  831. timersub(&now, &bitforce->work_start_tv, &elapsed);
  832. if (elapsed.tv_sec >= BITFORCE_LONG_TIMEOUT_S) {
  833. applog(LOG_ERR, "%"PRIpreprv": took %lums - longer than %lums", bitforce->proc_repr,
  834. tv_to_ms(elapsed), (unsigned long)BITFORCE_LONG_TIMEOUT_MS);
  835. goto out;
  836. }
  837. if (count > 0)
  838. {
  839. // Check that queue results match the current work
  840. // Also, if there are results from the next work, short-circuit this wait
  841. unsigned char midstate[32], datatail[12];
  842. char *p;
  843. int i;
  844. p = pdevbuf;
  845. for (i = 0; i < count; ++i)
  846. {
  847. p = next_line(p);
  848. hex2bin(midstate, p, 32);
  849. hex2bin(datatail, &p[65], 12);
  850. if (!(memcmp(work->midstate, midstate, 32) || memcmp(&work->data[64], datatail, 12)))
  851. break;
  852. }
  853. if (i == count)
  854. {
  855. // Didn't find the one we're waiting on
  856. // Must be extra stuff in the queue results
  857. char xmid[65];
  858. char xdt[25];
  859. bin2hex(xmid, work->midstate, 32);
  860. bin2hex(xdt, &work->data[64], 12);
  861. applog(LOG_WARNING, "%"PRIpreprv": Found extra garbage in queue results: %s",
  862. bitforce->proc_repr, pdevbuf);
  863. applog(LOG_WARNING, "%"PRIpreprv": ...while waiting on: %s,%s",
  864. bitforce->proc_repr, xmid, xdt);
  865. count = 0;
  866. }
  867. else
  868. if (i == count - 1)
  869. // Last one found is what we're looking for
  870. {}
  871. else
  872. // We finished the next job too!
  873. data->already_have_results = true;
  874. }
  875. if (!count)
  876. goto noqr;
  877. if (pdevbuf[0] && strncasecmp(pdevbuf, "B", 1)) /* BFL does not respond during throttling */
  878. break;
  879. data->result_busy_polled = bitforce->wait_ms;
  880. if (stale && data->proto != BFP_QUEUE)
  881. {
  882. applog(LOG_NOTICE, "%"PRIpreprv": Abandoning stale search to restart",
  883. bitforce->proc_repr);
  884. goto out;
  885. }
  886. noqr:
  887. data->result_busy_polled = bitforce->wait_ms;
  888. /* if BFL is throttling, no point checking so quickly */
  889. delay_time_ms = (pdevbuf[0] ? BITFORCE_CHECK_INTERVAL_MS : 2 * WORK_CHECK_INTERVAL_MS);
  890. timer_set_delay(&thr->tv_poll, &now, delay_time_ms * 1000);
  891. data->poll_func = 2;
  892. return;
  893. }
  894. if (count < 0 && pdevbuf[0] == 'N')
  895. count = strncasecmp(pdevbuf, "NONCE-FOUND", 11) ? 1 : 0;
  896. // At this point, 'count' is:
  897. // negative, in case of some kind of error
  898. // zero, if NO-NONCE (FPGA either completed with no results, or rebooted)
  899. // positive, if at least one job completed successfully
  900. if (elapsed.tv_sec > BITFORCE_TIMEOUT_S) {
  901. applog(LOG_ERR, "%"PRIpreprv": took %lums - longer than %lums", bitforce->proc_repr,
  902. tv_to_ms(elapsed), (unsigned long)BITFORCE_TIMEOUT_MS);
  903. dev_error(bitforce, REASON_DEV_OVER_HEAT);
  904. inc_hw_errors_only(thr);
  905. /* If the device truly throttled, it didn't process the job and there
  906. * are no results. But check first, just in case we're wrong about it
  907. * throttling.
  908. */
  909. if (count > 0)
  910. goto out;
  911. } else if (count >= 0) {/* Hashing complete (NONCE-FOUND or NO-NONCE) */
  912. /* Simple timing adjustment. Allow a few polls to cope with
  913. * OS timer delays being variably reliable. wait_ms will
  914. * always equal sleep_ms when we've waited greater than or
  915. * equal to the result return time.*/
  916. delay_time_ms = bitforce->sleep_ms;
  917. if (!data->result_busy_polled)
  918. {
  919. // No busy polls before results received
  920. if (bitforce->wait_ms > delay_time_ms + (WORK_CHECK_INTERVAL_MS * 8))
  921. // ... due to poll being rather late; ignore it as an anomaly
  922. applog(LOG_DEBUG, "%"PRIpreprv": Got results on first poll after %ums, later than scheduled %ums (ignoring)",
  923. bitforce->proc_repr, bitforce->wait_ms, delay_time_ms);
  924. else
  925. if (bitforce->sleep_ms > data->sleep_ms_default + (BITFORCE_CHECK_INTERVAL_MS * 0x20))
  926. {
  927. applog(LOG_DEBUG, "%"PRIpreprv": Got results on first poll after %ums, on delayed schedule %ums; Wait time changed to: %ums (default sch)",
  928. bitforce->proc_repr, bitforce->wait_ms, delay_time_ms, data->sleep_ms_default);
  929. bitforce->sleep_ms = data->sleep_ms_default;
  930. }
  931. else
  932. {
  933. applog(LOG_DEBUG, "%"PRIpreprv": Got results on first poll after %ums, on default schedule %ums; Wait time changed to: %ums (check interval)",
  934. bitforce->proc_repr, bitforce->wait_ms, delay_time_ms, BITFORCE_CHECK_INTERVAL_MS);
  935. bitforce->sleep_ms = BITFORCE_CHECK_INTERVAL_MS;
  936. }
  937. }
  938. else
  939. {
  940. if (data->result_busy_polled - bitforce->sleep_ms > WORK_CHECK_INTERVAL_MS)
  941. {
  942. bitforce->sleep_ms = data->result_busy_polled - (WORK_CHECK_INTERVAL_MS / 2);
  943. applog(LOG_DEBUG, "%"PRIpreprv": Got results on Nth poll after %ums (busy poll at %ums, sch'd %ums); Wait time changed to: %ums",
  944. bitforce->proc_repr, bitforce->wait_ms, data->result_busy_polled, delay_time_ms, bitforce->sleep_ms);
  945. }
  946. else
  947. applog(LOG_DEBUG, "%"PRIpreprv": Got results on Nth poll after %ums (busy poll at %ums, sch'd %ums); Wait time unchanged",
  948. bitforce->proc_repr, bitforce->wait_ms, data->result_busy_polled, delay_time_ms);
  949. }
  950. /* Work out the average time taken. Float for calculation, uint for display */
  951. bitforce->avg_wait_f += (tv_to_ms(elapsed) - bitforce->avg_wait_f) / TIME_AVG_CONSTANT;
  952. bitforce->avg_wait_d = (unsigned int) (bitforce->avg_wait_f + 0.5);
  953. }
  954. applog(LOG_DEBUG, "%"PRIpreprv": waited %dms until %s", bitforce->proc_repr, bitforce->wait_ms, pdevbuf);
  955. if (count < 0 && strncasecmp(pdevbuf, "I", 1)) {
  956. inc_hw_errors_only(thr);
  957. applog(LOG_WARNING, "%"PRIpreprv": Error: Get result reports: %s", bitforce->proc_repr, pdevbuf);
  958. bitforce_clear_buffer(bitforce);
  959. }
  960. out:
  961. bitforce->polling = false;
  962. job_results_fetched(thr);
  963. return;
  964. commerr:
  965. bitforce_comm_error(thr);
  966. goto out;
  967. }
  968. static
  969. void bitforce_process_result_nonces(struct thr_info *thr, struct work *work, char *pnoncebuf)
  970. {
  971. struct cgpu_info *bitforce = thr->cgpu;
  972. struct bitforce_data *data = bitforce->device_data;
  973. uint32_t nonce;
  974. while (1) {
  975. hex2bin((void*)&nonce, pnoncebuf, 4);
  976. nonce = be32toh(nonce);
  977. if (unlikely(data->proto == BFP_RANGE && (nonce >= work->blk.nonce ||
  978. /* FIXME: blk.nonce is probably moved on quite a bit now! */
  979. (work->blk.nonce > 0 && nonce < work->blk.nonce - bitforce->nonces - 1)))) {
  980. applog(LOG_WARNING, "%"PRIpreprv": Disabling broken nonce range support", bitforce->proc_repr);
  981. bitforce_change_mode(bitforce, BFP_WORK);
  982. }
  983. submit_nonce(thr, work, nonce);
  984. if (strncmp(&pnoncebuf[8], ",", 1))
  985. break;
  986. pnoncebuf += 9;
  987. }
  988. }
  989. static
  990. bool bitforce_process_qresult_line_i(struct thr_info *thr, char *midstate, char *datatail, char *buf, struct work *work)
  991. {
  992. if (!work)
  993. return false;
  994. if (memcmp(work->midstate, midstate, 32))
  995. return false;
  996. if (memcmp(&work->data[64], datatail, 12))
  997. return false;
  998. char *end;
  999. if (strtol(&buf[90], &end, 10))
  1000. bitforce_process_result_nonces(thr, work, &end[1]);
  1001. return true;
  1002. }
  1003. static
  1004. void bitforce_process_qresult_line(struct thr_info *thr, char *buf, struct work *work)
  1005. {
  1006. struct cgpu_info *bitforce = thr->cgpu;
  1007. char midstate[32], datatail[12];
  1008. hex2bin((void*)midstate, buf, 32);
  1009. hex2bin((void*)datatail, &buf[65], 12);
  1010. if (!( bitforce_process_qresult_line_i(thr, midstate, datatail, buf, work)
  1011. || bitforce_process_qresult_line_i(thr, midstate, datatail, buf, thr->work)
  1012. || bitforce_process_qresult_line_i(thr, midstate, datatail, buf, thr->prev_work)
  1013. || bitforce_process_qresult_line_i(thr, midstate, datatail, buf, thr->next_work) ))
  1014. {
  1015. applog(LOG_ERR, "%"PRIpreprv": Failed to find work for queued results", bitforce->proc_repr);
  1016. inc_hw_errors_only(thr);
  1017. }
  1018. }
  1019. static inline
  1020. char *next_line(char *in)
  1021. {
  1022. while (in[0] && (in++)[0] != '\n')
  1023. {}
  1024. return in;
  1025. }
  1026. static
  1027. int64_t bitforce_job_process_results(struct thr_info *thr, struct work *work, __maybe_unused bool stopping)
  1028. {
  1029. struct cgpu_info *bitforce = thr->cgpu;
  1030. struct bitforce_data *data = bitforce->device_data;
  1031. char *pnoncebuf = &data->noncebuf[0];
  1032. int count;
  1033. if (!strncasecmp(pnoncebuf, "NO-", 3))
  1034. return bitforce->nonces; /* No valid nonce found */
  1035. if (!strncasecmp(pnoncebuf, "NONCE-FOUND", 11))
  1036. {
  1037. bitforce_process_result_nonces(thr, work, &pnoncebuf[12]);
  1038. count = 1;
  1039. }
  1040. else
  1041. if (!strncasecmp(pnoncebuf, "COUNT:", 6))
  1042. {
  1043. count = 0;
  1044. pnoncebuf = next_line(pnoncebuf);
  1045. while (pnoncebuf[0])
  1046. {
  1047. bitforce_process_qresult_line(thr, pnoncebuf, work);
  1048. ++count;
  1049. pnoncebuf = next_line(pnoncebuf);
  1050. }
  1051. }
  1052. else
  1053. return 0;
  1054. // FIXME: This might have changed in the meantime (new job start, or broken)
  1055. return bitforce->nonces * count;
  1056. }
  1057. static void bitforce_shutdown(struct thr_info *thr)
  1058. {
  1059. struct cgpu_info *bitforce = thr->cgpu;
  1060. int *p_fdDev = &bitforce->device->device_fd;
  1061. BFclose(*p_fdDev);
  1062. *p_fdDev = 0;
  1063. }
  1064. static void biforce_thread_enable(struct thr_info *thr)
  1065. {
  1066. struct cgpu_info *bitforce = thr->cgpu;
  1067. bitforce_reinit(bitforce);
  1068. }
  1069. static bool bitforce_get_stats(struct cgpu_info *bitforce)
  1070. {
  1071. struct bitforce_proc_data *procdata = bitforce->thr[0]->cgpu_data;
  1072. if (!procdata->handles_board)
  1073. return true;
  1074. return bitforce_get_temp(bitforce);
  1075. }
  1076. static bool bitforce_identify(struct cgpu_info *bitforce)
  1077. {
  1078. bitforce->flash_led = true;
  1079. return true;
  1080. }
  1081. static bool bitforce_thread_init(struct thr_info *thr)
  1082. {
  1083. struct cgpu_info *bitforce = thr->cgpu;
  1084. unsigned int wait;
  1085. struct bitforce_data *data;
  1086. struct bitforce_proc_data *procdata;
  1087. struct bitforce_init_data *initdata = bitforce->device_data;
  1088. bool sc = initdata->sc;
  1089. int xlink_id = 0, boardno = 0;
  1090. struct bitforce_proc_data *first_on_this_board;
  1091. char buf[100];
  1092. int fd = bitforce->device_fd;
  1093. for ( ; bitforce; bitforce = bitforce->next_proc)
  1094. {
  1095. thr = bitforce->thr[0];
  1096. if (unlikely(xlink_id > 30))
  1097. {
  1098. applog(LOG_ERR, "%"PRIpreprv": Failed to find XLINK address", bitforce->proc_repr);
  1099. dev_error(bitforce, REASON_THREAD_FAIL_INIT);
  1100. bitforce->reinit_backoff = 1e10;
  1101. continue;
  1102. }
  1103. bitforce->sleep_ms = BITFORCE_SLEEP_MS;
  1104. bitforce->device_data = data = malloc(sizeof(*data));
  1105. *data = (struct bitforce_data){
  1106. .xlink_id = xlink_id,
  1107. .next_work_ob = ">>>>>>>>|---------- MidState ----------||-DataTail-||Nonces|>>>>>>>>",
  1108. .proto = BFP_RANGE,
  1109. .sc = sc,
  1110. .sleep_ms_default = BITFORCE_SLEEP_MS,
  1111. .parallel = abs(initdata->parallels[boardno]),
  1112. .parallel_protocol = (initdata->parallels[boardno] != -1),
  1113. };
  1114. thr->cgpu_data = procdata = malloc(sizeof(*procdata));
  1115. *procdata = (struct bitforce_proc_data){
  1116. .handles_board = true,
  1117. .cgpu = bitforce,
  1118. };
  1119. if (sc)
  1120. {
  1121. // ".......S|---------- MidState ----------||-DataTail-||Nonces|E"
  1122. data->next_work_ob[8+32+12+8] = '\xAA';
  1123. data->next_work_obs = &data->next_work_ob[7];
  1124. if (bitforce->drv == &bitforce_queue_api)
  1125. {
  1126. bitforce_change_mode(bitforce, data->parallel_protocol ? BFP_PQUEUE : BFP_BQUEUE);
  1127. bitforce->sleep_ms = data->sleep_ms_default = 100;
  1128. timer_set_delay_from_now(&thr->tv_poll, 0);
  1129. data->queued_max = data->parallel * 2;
  1130. if (data->queued_max < BITFORCE_MIN_QUEUED_MAX)
  1131. data->queued_max = BITFORCE_MIN_QUEUED_MAX;
  1132. if (data->queued_max > BITFORCE_MAX_QUEUED_MAX)
  1133. data->queued_max = BITFORCE_MAX_QUEUED_MAX;
  1134. }
  1135. else
  1136. bitforce_change_mode(bitforce, BFP_QUEUE);
  1137. // Clear job queue to start fresh; ignore response
  1138. bitforce_cmd1(fd, data->xlink_id, buf, sizeof(buf), "ZQX");
  1139. }
  1140. else
  1141. {
  1142. data->next_work_obs = &data->next_work_ob[0];
  1143. // Unconditionally change away from cold-initialized BFP_RANGE, to allow for setting up other variables
  1144. bitforce_change_mode(bitforce, BFP_WORK);
  1145. /* Initially enable support for nonce range and disable it later if it
  1146. * fails */
  1147. if (opt_bfl_noncerange)
  1148. bitforce_change_mode(bitforce, BFP_RANGE);
  1149. }
  1150. bitforce->status = LIFE_INIT2;
  1151. first_on_this_board = procdata;
  1152. for (int proc = 1; proc < data->parallel; ++proc)
  1153. {
  1154. bitforce = bitforce->next_proc;
  1155. assert(bitforce);
  1156. thr = bitforce->thr[0];
  1157. thr->queue_full = true;
  1158. thr->cgpu_data = procdata = malloc(sizeof(*procdata));
  1159. *procdata = *first_on_this_board;
  1160. procdata->handles_board = false;
  1161. procdata->cgpu = bitforce;
  1162. bitforce->device_data = data;
  1163. bitforce->status = LIFE_INIT2;
  1164. bitforce->kname = first_on_this_board->cgpu->kname;
  1165. }
  1166. applog(LOG_DEBUG, "%s: Board %d: %"PRIpreprv"-%"PRIpreprv, bitforce->dev_repr, boardno, first_on_this_board->cgpu->proc_repr, bitforce->proc_repr);
  1167. ++boardno;
  1168. while (xlink_id < 31 && !(initdata->devmask & (1 << ++xlink_id)))
  1169. {}
  1170. }
  1171. // NOTE: This doesn't restore the first processor, but it does get us the last one; this is sufficient for the delay debug and start of the next loop below
  1172. bitforce = thr->cgpu;
  1173. free(initdata->parallels);
  1174. free(initdata);
  1175. /* Pause each new thread at least 100ms between initialising
  1176. * so the devices aren't making calls all at the same time. */
  1177. wait = thr->id * MAX_START_DELAY_MS;
  1178. applog(LOG_DEBUG, "%s: Delaying start by %dms", bitforce->dev_repr, wait / 1000);
  1179. nmsleep(wait);
  1180. if (sc)
  1181. {
  1182. // Clear results queue last, to start fresh; ignore response
  1183. for (bitforce = bitforce->device; bitforce; bitforce = bitforce->next_proc)
  1184. bitforce_zox(thr, "ZOX");
  1185. }
  1186. return true;
  1187. }
  1188. #ifdef HAVE_CURSES
  1189. static
  1190. void bitforce_tui_wlogprint_choices(struct cgpu_info *cgpu)
  1191. {
  1192. struct bitforce_data *data = cgpu->device_data;
  1193. if (data->sc)
  1194. wlogprint("[F]an control ");
  1195. }
  1196. static
  1197. const char *bitforce_tui_handle_choice(struct cgpu_info *cgpu, int input)
  1198. {
  1199. struct bitforce_data *data = cgpu->device_data;
  1200. pthread_mutex_t *mutexp;
  1201. int fd;
  1202. static char replybuf[0x100];
  1203. if (!data->sc)
  1204. return NULL;
  1205. switch (input)
  1206. {
  1207. case 'f': case 'F':
  1208. {
  1209. int fanspeed;
  1210. char *intvar;
  1211. intvar = curses_input("Set fan speed (range 0-4 for low to fast or 5 for auto)");
  1212. if (!intvar)
  1213. return "Invalid fan speed\n";
  1214. fanspeed = atoi(intvar);
  1215. free(intvar);
  1216. if (fanspeed < 0 || fanspeed > 5)
  1217. return "Invalid fan speed\n";
  1218. char cmd[4] = "Z0X";
  1219. cmd[1] += fanspeed;
  1220. mutexp = &cgpu->device->device_mutex;
  1221. mutex_lock(mutexp);
  1222. fd = cgpu->device->device_fd;
  1223. bitforce_cmd1(fd, data->xlink_id, replybuf, sizeof(replybuf), cmd);
  1224. mutex_unlock(mutexp);
  1225. return replybuf;
  1226. }
  1227. }
  1228. return NULL;
  1229. }
  1230. static
  1231. void bitforce_wlogprint_status(struct cgpu_info *cgpu)
  1232. {
  1233. struct bitforce_data *data = cgpu->device_data;
  1234. if (data->temp[0] > 0 && data->temp[1] > 0)
  1235. wlogprint("Temperatures: %4.1fC %4.1fC\n", data->temp[0], data->temp[1]);
  1236. if (data->volts_count)
  1237. {
  1238. // -> "NNN.xxx / NNN.xxx / NNN.xxx"
  1239. size_t sz = (data->volts_count * 10) + 1;
  1240. char buf[sz];
  1241. char *s = buf;
  1242. int rv = 0;
  1243. for (int i = 0; i < data->volts_count; ++i)
  1244. {
  1245. long v = data->volts[i];
  1246. _SNP("%ld.%03d / ", v / 1000, (int)(v % 1000));
  1247. }
  1248. if (rv >= 3 && s[-2] == '/')
  1249. s[-3] = '\0';
  1250. wlogprint("Voltages: %s\n", buf);
  1251. }
  1252. }
  1253. #endif
  1254. static struct api_data *bitforce_drv_stats(struct cgpu_info *cgpu)
  1255. {
  1256. struct bitforce_data *data = cgpu->device_data;
  1257. struct api_data *root = NULL;
  1258. // Warning, access to these is not locked - but we don't really
  1259. // care since hashing performance is way more important than
  1260. // locking access to displaying API debug 'stats'
  1261. // If locking becomes an issue for any of them, use copy_data=true also
  1262. root = api_add_uint(root, "Sleep Time", &(cgpu->sleep_ms), false);
  1263. if (data->proto != BFP_BQUEUE && data->proto != BFP_PQUEUE)
  1264. root = api_add_uint(root, "Avg Wait", &(cgpu->avg_wait_d), false);
  1265. if (data->temp[0] > 0 && data->temp[1] > 0)
  1266. {
  1267. root = api_add_temp(root, "Temperature0", &(data->temp[0]), false);
  1268. root = api_add_temp(root, "Temperature1", &(data->temp[1]), false);
  1269. }
  1270. return root;
  1271. }
  1272. void bitforce_poll(struct thr_info *thr)
  1273. {
  1274. struct cgpu_info *bitforce = thr->cgpu;
  1275. struct bitforce_data *data = bitforce->device_data;
  1276. int poll = data->poll_func;
  1277. thr->tv_poll.tv_sec = -1;
  1278. data->poll_func = 0;
  1279. switch (poll)
  1280. {
  1281. case 1:
  1282. bitforce_job_start(thr);
  1283. break;
  1284. case 2:
  1285. bitforce_job_get_results(thr, thr->work);
  1286. break;
  1287. default:
  1288. applog(LOG_ERR, "%"PRIpreprv": Unexpected poll from device API!", thr->cgpu->proc_repr);
  1289. }
  1290. }
  1291. static
  1292. char *bitforce_set_device(struct cgpu_info *proc, char *option, char *setting, char *replybuf)
  1293. {
  1294. struct bitforce_data *data = proc->device_data;
  1295. pthread_mutex_t *mutexp = &proc->device->device_mutex;
  1296. int fd;
  1297. if (!strcasecmp(option, "help"))
  1298. {
  1299. sprintf(replybuf, "fanmode: range 0-4 (low to fast) or 5 (auto)");
  1300. return replybuf;
  1301. }
  1302. if (!strcasecmp(option, "fanmode"))
  1303. {
  1304. if (!setting || !*setting)
  1305. {
  1306. sprintf(replybuf, "missing fanmode setting");
  1307. return replybuf;
  1308. }
  1309. if (setting[1] || ((setting[0] < '0' || setting[0] > '5') && setting[0] != '9'))
  1310. {
  1311. sprintf(replybuf, "invalid fanmode setting");
  1312. return replybuf;
  1313. }
  1314. char cmd[4] = "Z5X";
  1315. cmd[1] = setting[0];
  1316. mutex_lock(mutexp);
  1317. fd = proc->device->device_fd;
  1318. bitforce_cmd1(fd, data->xlink_id, replybuf, 256, cmd);
  1319. mutex_unlock(mutexp);
  1320. return replybuf;
  1321. }
  1322. if (!strcasecmp(option, "_cmd1"))
  1323. {
  1324. mutex_lock(mutexp);
  1325. fd = proc->device->device_fd;
  1326. bitforce_cmd1b(fd, data->xlink_id, replybuf, 8000, setting, strlen(setting));
  1327. mutex_unlock(mutexp);
  1328. return replybuf;
  1329. }
  1330. sprintf(replybuf, "Unknown option: %s", option);
  1331. return replybuf;
  1332. }
  1333. struct device_drv bitforce_drv = {
  1334. .dname = "bitforce",
  1335. .name = "BFL",
  1336. .drv_detect = bitforce_detect,
  1337. #ifdef HAVE_CURSES
  1338. .proc_wlogprint_status = bitforce_wlogprint_status,
  1339. .proc_tui_wlogprint_choices = bitforce_tui_wlogprint_choices,
  1340. .proc_tui_handle_choice = bitforce_tui_handle_choice,
  1341. #endif
  1342. .get_api_stats = bitforce_drv_stats,
  1343. .minerloop = minerloop_async,
  1344. .reinit_device = bitforce_reinit,
  1345. .get_stats = bitforce_get_stats,
  1346. .set_device = bitforce_set_device,
  1347. .identify_device = bitforce_identify,
  1348. .thread_prepare = bitforce_thread_prepare,
  1349. .thread_init = bitforce_thread_init,
  1350. .job_prepare = bitforce_job_prepare,
  1351. .job_start = bitforce_job_start,
  1352. .job_get_results = bitforce_job_get_results,
  1353. .poll = bitforce_poll,
  1354. .job_process_results = bitforce_job_process_results,
  1355. .thread_shutdown = bitforce_shutdown,
  1356. .thread_enable = biforce_thread_enable
  1357. };
  1358. static inline
  1359. void bitforce_set_queue_full(struct thr_info *thr)
  1360. {
  1361. struct cgpu_info *bitforce = thr->cgpu;
  1362. struct bitforce_data *data = bitforce->device_data;
  1363. thr->queue_full = (data->queued + data->ready_to_queue >= data->queued_max) || (data->ready_to_queue >= BITFORCE_MAX_BQUEUE_AT_ONCE);
  1364. }
  1365. static
  1366. bool bitforce_send_queue(struct thr_info *thr)
  1367. {
  1368. struct cgpu_info *bitforce = thr->cgpu;
  1369. struct bitforce_data *data = bitforce->device_data;
  1370. pthread_mutex_t *mutexp = &bitforce->device->device_mutex;
  1371. int fd = bitforce->device->device_fd;
  1372. struct work *work;
  1373. if (unlikely(!(fd && data->ready_to_queue)))
  1374. return false;
  1375. char buf[0x100];
  1376. int queued_ok;
  1377. size_t qjs_sz = (32 + 12 + 2);
  1378. size_t qjp_sz = 4 + (qjs_sz * data->ready_to_queue);
  1379. uint8_t qjp[qjp_sz], *qjs;
  1380. qjp[0] = qjp_sz - 1;
  1381. qjp[1] = 0xc1;
  1382. qjp[2] = data->ready_to_queue;
  1383. qjp[qjp_sz - 1] = 0xfe;
  1384. qjs = &qjp[qjp_sz - 1];
  1385. work = thr->work_list->prev;
  1386. for (int i = data->ready_to_queue; i > 0; --i, work = work->prev)
  1387. {
  1388. *(--qjs) = 0xaa;
  1389. memcpy(qjs -= 12, work->data + 64, 12);
  1390. memcpy(qjs -= 32, work->midstate, 32);
  1391. *(--qjs) = 45;
  1392. }
  1393. mutex_lock(mutexp);
  1394. bitforce_cmd2(fd, data->xlink_id, buf, sizeof(buf), "ZWX", qjp, qjp_sz);
  1395. mutex_unlock(mutexp);
  1396. if (!strncasecmp(buf, "ERR:QUEUE", 9))
  1397. {
  1398. // Queue full :(
  1399. applog(LOG_DEBUG, "%"PRIpreprv": Device queue full while attempting to append %d jobs (queued<=%d)",
  1400. bitforce->proc_repr,
  1401. data->ready_to_queue, data->queued);
  1402. thr->queue_full = true;
  1403. return false;
  1404. }
  1405. if (strncasecmp(buf, "OK:QUEUED", 9))
  1406. {
  1407. // TODO: ERR:UNKNOWN COMMAND
  1408. applog(LOG_DEBUG, "%"PRIpreprv": Unexpected error attempting to append %d jobs (queued<=%d): %s",
  1409. bitforce->proc_repr,
  1410. data->ready_to_queue, data->queued, buf);
  1411. return false;
  1412. }
  1413. if (!data->queued)
  1414. cgtime(&data->tv_hashmeter_start);
  1415. queued_ok = atoi(&buf[9]);
  1416. data->queued += queued_ok;
  1417. applog(LOG_DEBUG, "%"PRIpreprv": Successfully queued %d/%d jobs on device (queued<=%d)",
  1418. bitforce->proc_repr,
  1419. queued_ok, data->ready_to_queue, data->queued);
  1420. data->ready_to_queue -= queued_ok;
  1421. thr->queue_full = data->ready_to_queue;
  1422. data->just_flushed = false;
  1423. data->want_to_send_queue = false;
  1424. return true;
  1425. }
  1426. void work_list_del(struct work **head, struct work *work)
  1427. {
  1428. DL_DELETE(*head, work);
  1429. free_work(work);
  1430. }
  1431. static
  1432. bool bitforce_queue_do_results(struct thr_info *thr)
  1433. {
  1434. struct cgpu_info *bitforce = thr->cgpu;
  1435. struct bitforce_data *data = bitforce->device_data;
  1436. int fd = bitforce->device->device_fd;
  1437. int count;
  1438. int fcount;
  1439. char *noncebuf, *buf, *end;
  1440. unsigned char midstate[32], datatail[12];
  1441. struct work *work, *tmpwork, *thiswork;
  1442. struct timeval tv_now, tv_elapsed;
  1443. long chipno = 0; // Initialized value is used for non-parallelized boards
  1444. struct cgpu_info *chip_cgpu;
  1445. struct thr_info *chip_thr;
  1446. int counts[data->parallel];
  1447. if (unlikely(!fd))
  1448. return false;
  1449. again:
  1450. noncebuf = &data->noncebuf[0];
  1451. count = bitforce_zox(thr, "ZOX");
  1452. if (unlikely(count < 0))
  1453. {
  1454. applog(LOG_ERR, "%"PRIpreprv": Received unexpected queue result response: %s", bitforce->proc_repr, noncebuf);
  1455. inc_hw_errors_only(thr);
  1456. return false;
  1457. }
  1458. applog(LOG_DEBUG, "%"PRIpreprv": Received %d queue results on poll (max=%d)", bitforce->proc_repr, count, (int)BITFORCE_MAX_QRESULTS);
  1459. if (!count)
  1460. return true;
  1461. fcount = 0;
  1462. for (int i = 0; i < data->parallel; ++i)
  1463. counts[i] = 0;
  1464. noncebuf = next_line(noncebuf);
  1465. while ((buf = noncebuf)[0])
  1466. {
  1467. if ( (noncebuf = next_line(buf)) )
  1468. noncebuf[-1] = '\0';
  1469. if (strlen(buf) <= 90)
  1470. {
  1471. applog(LOG_ERR, "%"PRIpreprv": Gibberish within queue results: %s", bitforce->proc_repr, buf);
  1472. continue;
  1473. }
  1474. hex2bin(midstate, buf, 32);
  1475. hex2bin(datatail, &buf[65], 12);
  1476. thiswork = NULL;
  1477. DL_FOREACH(thr->work_list, work)
  1478. {
  1479. if (unlikely(memcmp(work->midstate, midstate, 32)))
  1480. continue;
  1481. if (unlikely(memcmp(&work->data[64], datatail, 12)))
  1482. continue;
  1483. thiswork = work;
  1484. break;
  1485. }
  1486. end = &buf[89];
  1487. chip_cgpu = bitforce;
  1488. if (data->parallel_protocol)
  1489. {
  1490. chipno = strtol(&end[1], &end, 16);
  1491. if (chipno >= data->parallel)
  1492. {
  1493. applog(LOG_ERR, "%"PRIpreprv": Chip number out of range for queue result: %s", chip_cgpu->proc_repr, buf);
  1494. chipno = 0;
  1495. }
  1496. for (int i = 0; i < chipno; ++i)
  1497. chip_cgpu = chip_cgpu->next_proc;
  1498. }
  1499. chip_thr = chip_cgpu->thr[0];
  1500. applog(LOG_DEBUG, "%"PRIpreprv": Queue result: %s", chip_cgpu->proc_repr, buf);
  1501. if (unlikely(!thiswork))
  1502. {
  1503. applog(LOG_ERR, "%"PRIpreprv": Failed to find work for queue results: %s", chip_cgpu->proc_repr, buf);
  1504. inc_hw_errors_only(chip_thr);
  1505. goto next_qline;
  1506. }
  1507. if (unlikely(!end[0]))
  1508. {
  1509. applog(LOG_ERR, "%"PRIpreprv": Missing nonce count in queue results: %s", chip_cgpu->proc_repr, buf);
  1510. goto finishresult;
  1511. }
  1512. if (strtol(&end[1], &end, 10))
  1513. {
  1514. if (unlikely(!end[0]))
  1515. {
  1516. applog(LOG_ERR, "%"PRIpreprv": Missing nonces in queue results: %s", chip_cgpu->proc_repr, buf);
  1517. goto finishresult;
  1518. }
  1519. bitforce_process_result_nonces(chip_thr, work, &end[1]);
  1520. }
  1521. ++fcount;
  1522. ++counts[chipno];
  1523. finishresult:
  1524. if (data->parallel == 1)
  1525. {
  1526. // Queue results are in order, so anything queued prior this is lost
  1527. // Delete all queued work up to, and including, this one
  1528. DL_FOREACH_SAFE(thr->work_list, work, tmpwork)
  1529. {
  1530. work_list_del(&thr->work_list, work);
  1531. --data->queued;
  1532. if (work == thiswork)
  1533. break;
  1534. }
  1535. }
  1536. else
  1537. {
  1538. // Parallel processors means the results might not be in order
  1539. // This could leak if jobs get lost, hence the sanity checks using "ZqX"
  1540. work_list_del(&thr->work_list, thiswork);
  1541. --data->queued;
  1542. }
  1543. next_qline: (void)0;
  1544. }
  1545. bitforce_set_queue_full(thr);
  1546. if (count >= BITFORCE_MAX_QRESULTS)
  1547. goto again;
  1548. if (data->parallel == 1 && (
  1549. (fcount < BITFORCE_GOAL_QRESULTS && bitforce->sleep_ms < BITFORCE_MAX_QRESULT_WAIT && data->queued > 1)
  1550. || (fcount > BITFORCE_GOAL_QRESULTS && bitforce->sleep_ms > BITFORCE_MIN_QRESULT_WAIT) ))
  1551. {
  1552. unsigned int old_sleep_ms = bitforce->sleep_ms;
  1553. bitforce->sleep_ms = (uint32_t)bitforce->sleep_ms * BITFORCE_GOAL_QRESULTS / (fcount ?: 1);
  1554. if (bitforce->sleep_ms > BITFORCE_MAX_QRESULT_WAIT)
  1555. bitforce->sleep_ms = BITFORCE_MAX_QRESULT_WAIT;
  1556. if (bitforce->sleep_ms < BITFORCE_MIN_QRESULT_WAIT)
  1557. bitforce->sleep_ms = BITFORCE_MIN_QRESULT_WAIT;
  1558. applog(LOG_DEBUG, "%"PRIpreprv": Received %d queue results after %ums; Wait time changed to: %ums (queued<=%d)",
  1559. bitforce->proc_repr, fcount, old_sleep_ms, bitforce->sleep_ms, data->queued);
  1560. }
  1561. else
  1562. applog(LOG_DEBUG, "%"PRIpreprv": Received %d queue results after %ums; Wait time unchanged (queued<=%d)",
  1563. bitforce->proc_repr, fcount, bitforce->sleep_ms, data->queued);
  1564. cgtime(&tv_now);
  1565. timersub(&tv_now, &data->tv_hashmeter_start, &tv_elapsed);
  1566. chip_cgpu = bitforce;
  1567. for (int i = 0; i < data->parallel; ++i, (chip_cgpu = chip_cgpu->next_proc))
  1568. {
  1569. chip_thr = chip_cgpu->thr[0];
  1570. hashes_done(chip_thr, (uint64_t)bitforce->nonces * counts[i], &tv_elapsed, NULL);
  1571. }
  1572. data->tv_hashmeter_start = tv_now;
  1573. return true;
  1574. }
  1575. static
  1576. bool bitforce_queue_append(struct thr_info *thr, struct work *work)
  1577. {
  1578. struct cgpu_info *bitforce = thr->cgpu;
  1579. struct bitforce_data *data = bitforce->device_data;
  1580. bool rv, ndq;
  1581. bitforce_set_queue_full(thr);
  1582. rv = !thr->queue_full;
  1583. if (rv)
  1584. {
  1585. DL_APPEND(thr->work_list, work);
  1586. ++data->ready_to_queue;
  1587. applog(LOG_DEBUG, "%"PRIpreprv": Appending to driver queue (max=%u, ready=%d, queued<=%d)",
  1588. bitforce->proc_repr,
  1589. (unsigned)data->queued_max, data->ready_to_queue, data->queued);
  1590. bitforce_set_queue_full(thr);
  1591. }
  1592. else
  1593. if (!data->ready_to_queue)
  1594. return rv;
  1595. ndq = !data->queued;
  1596. if ((ndq) // Device is idle
  1597. || (data->ready_to_queue >= BITFORCE_MAX_BQUEUE_AT_ONCE) // ...or 5 items ready to go
  1598. || (thr->queue_full) // ...or done filling queue
  1599. || (data->just_flushed) // ...or queue was just flushed (only remaining job is partly done already)
  1600. )
  1601. {
  1602. if (!bitforce_send_queue(thr))
  1603. {
  1604. // Problem sending queue, retry again in a few seconds
  1605. applog(LOG_ERR, "%"PRIpreprv": Failed to send queue", bitforce->proc_repr);
  1606. inc_hw_errors_only(thr);
  1607. data->want_to_send_queue = true;
  1608. }
  1609. }
  1610. return rv;
  1611. }
  1612. struct _jobinfo {
  1613. uint8_t key[32+12];
  1614. int instances;
  1615. UT_hash_handle hh;
  1616. };
  1617. static
  1618. void bitforce_queue_flush(struct thr_info *thr)
  1619. {
  1620. struct bitforce_proc_data *procdata = thr->cgpu_data;
  1621. if (!procdata->handles_board)
  1622. return;
  1623. struct cgpu_info *bitforce = thr->cgpu;
  1624. struct bitforce_data *data = bitforce->device_data;
  1625. char *buf = &data->noncebuf[0], *buf2 = NULL;
  1626. const char *cmd = "ZqX";
  1627. unsigned flushed;
  1628. struct _jobinfo *processing = NULL, *item, *this;
  1629. if (data->parallel == 1)
  1630. // Pre-parallelization neither needs nor supports "ZqX"
  1631. cmd = "ZQX";
  1632. // TODO: Call "ZQX" most of the time: don't need to do sanity checks so often
  1633. bitforce_zox(thr, cmd);
  1634. if (!strncasecmp(buf, "OK:FLUSHED", 10))
  1635. flushed = atoi(&buf[10]);
  1636. else
  1637. if ((!strncasecmp(buf, "COUNT:", 6)) && (buf2 = strstr(buf, "FLUSHED:")) )
  1638. {
  1639. flushed = atoi(&buf2[8]);
  1640. buf2 = next_line(buf2);
  1641. }
  1642. else
  1643. {
  1644. applog(LOG_DEBUG, "%"PRIpreprv": Failed to flush device queue: %s", bitforce->proc_repr, buf);
  1645. flushed = 0;
  1646. }
  1647. data->queued -= flushed;
  1648. applog(LOG_DEBUG, "%"PRIpreprv": Flushed %u jobs from device and %d from driver (queued<=%d)",
  1649. bitforce->proc_repr, flushed, data->ready_to_queue, data->queued);
  1650. flushed += data->ready_to_queue;
  1651. data->ready_to_queue = 0;
  1652. while (flushed--)
  1653. work_list_del(&thr->work_list, thr->work_list->prev);
  1654. bitforce_set_queue_full(thr);
  1655. data->just_flushed = true;
  1656. data->want_to_send_queue = false;
  1657. // "ZqX" returns jobs in progress, allowing us to sanity check
  1658. // NOTE: Must process buffer into hash table BEFORE calling bitforce_queue_do_results, which clobbers it
  1659. // NOTE: Must do actual sanity check AFTER calling bitforce_queue_do_results, to ensure we don't delete completed jobs
  1660. if (buf2)
  1661. {
  1662. // First, turn buf2 into a hash
  1663. for ( ; buf2[0]; buf2 = next_line(buf2))
  1664. {
  1665. this = malloc(sizeof(*this));
  1666. hex2bin(&this->key[ 0], &buf2[ 0], 32);
  1667. hex2bin(&this->key[32], &buf2[65], 12);
  1668. HASH_FIND(hh, processing, &this->key[0], sizeof(this->key), item);
  1669. if (likely(!item))
  1670. {
  1671. this->instances = 1;
  1672. HASH_ADD(hh, processing, key, sizeof(this->key), this);
  1673. }
  1674. else
  1675. {
  1676. // This should really only happen in testing/benchmarking...
  1677. ++item->instances;
  1678. free(this);
  1679. }
  1680. }
  1681. }
  1682. bitforce_queue_do_results(thr);
  1683. if (buf2)
  1684. {
  1685. struct work *work, *tmp;
  1686. uint8_t key[32+12];
  1687. // Now iterate over the work_list and delete anything not in the hash
  1688. DL_FOREACH_SAFE(thr->work_list, work, tmp)
  1689. {
  1690. memcpy(&key[ 0], work->midstate, 32);
  1691. memcpy(&key[32], &work->data[64], 12);
  1692. HASH_FIND(hh, processing, &key[0], sizeof(key), item);
  1693. if (unlikely(!item))
  1694. {
  1695. char hex[89];
  1696. bin2hex(hex, key, 32+12);
  1697. applog(LOG_WARNING, "%"PRIpreprv": Sanity check: Device is missing queued job! %s", bitforce->proc_repr, hex);
  1698. work_list_del(&thr->work_list, work);
  1699. continue;
  1700. }
  1701. if (likely(!--item->instances))
  1702. {
  1703. HASH_DEL(processing, item);
  1704. free(item);
  1705. }
  1706. }
  1707. if (unlikely( (flushed = HASH_COUNT(processing)) ))
  1708. {
  1709. //applog(LOG_WARNING, "%"PRIpreprv": Sanity check: Device is working on %d unknown jobs!", bitforce->proc_repr, flushed);
  1710. // FIXME: Probably these were jobs finished after ZqX, included in the result check we just did
  1711. // NOTE: We need to do that result check first to avoid deleting work_list items for things just solved
  1712. HASH_ITER(hh, processing, item, this)
  1713. {
  1714. HASH_DEL(processing, item);
  1715. free(item);
  1716. }
  1717. }
  1718. }
  1719. }
  1720. static
  1721. void bitforce_queue_poll(struct thr_info *thr)
  1722. {
  1723. struct cgpu_info *bitforce = thr->cgpu;
  1724. struct bitforce_data *data = bitforce->device_data;
  1725. unsigned long sleep_us;
  1726. if (data->queued)
  1727. bitforce_queue_do_results(thr);
  1728. sleep_us = (unsigned long)bitforce->sleep_ms * 1000;
  1729. if (data->want_to_send_queue)
  1730. if (!bitforce_send_queue(thr))
  1731. if (!data->queued)
  1732. {
  1733. applog(LOG_ERR, "%"PRIpreprv": Failed to send queue, and queue empty; retrying after 1 second", bitforce->proc_repr);
  1734. inc_hw_errors_only(thr);
  1735. sleep_us = 1000000;
  1736. }
  1737. timer_set_delay_from_now(&thr->tv_poll, sleep_us);
  1738. }
  1739. static void bitforce_queue_thread_deven(struct thr_info *thr)
  1740. {
  1741. struct cgpu_info *bitforce = thr->cgpu, *thisbf;
  1742. struct bitforce_data *data = bitforce->device_data;
  1743. struct thr_info *thisthr;
  1744. for (thisbf = bitforce; thisbf && thisbf->device_data == data; thisbf = thisbf->next_proc)
  1745. {
  1746. thisthr = bitforce->thr[0];
  1747. thisthr->pause = thr->pause;
  1748. thisbf->deven = bitforce->deven;
  1749. }
  1750. }
  1751. static void bitforce_queue_thread_disable(struct thr_info *thr)
  1752. {
  1753. // Disable other threads sharing the same queue
  1754. bitforce_queue_thread_deven(thr);
  1755. }
  1756. static void bitforce_queue_thread_enable(struct thr_info *thr)
  1757. {
  1758. // TODO: Maybe reinit?
  1759. // Enable other threads sharing the same queue
  1760. bitforce_queue_thread_deven(thr);
  1761. }
  1762. struct device_drv bitforce_queue_api = {
  1763. .dname = "bitforce_queue",
  1764. .name = "BFL",
  1765. .minerloop = minerloop_queue,
  1766. .reinit_device = bitforce_reinit,
  1767. #ifdef HAVE_CURSES
  1768. .proc_wlogprint_status = bitforce_wlogprint_status,
  1769. .proc_tui_wlogprint_choices = bitforce_tui_wlogprint_choices,
  1770. .proc_tui_handle_choice = bitforce_tui_handle_choice,
  1771. #endif
  1772. .get_api_stats = bitforce_drv_stats,
  1773. .get_stats = bitforce_get_stats,
  1774. .set_device = bitforce_set_device,
  1775. .identify_device = bitforce_identify,
  1776. .thread_prepare = bitforce_thread_prepare,
  1777. .thread_init = bitforce_thread_init,
  1778. .queue_append = bitforce_queue_append,
  1779. .queue_flush = bitforce_queue_flush,
  1780. .poll = bitforce_queue_poll,
  1781. .thread_shutdown = bitforce_shutdown,
  1782. .thread_disable = bitforce_queue_thread_disable,
  1783. .thread_enable = bitforce_queue_thread_enable,
  1784. };