driver-modminer.c 22 KB

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  1. /*
  2. * Copyright 2012 Luke Dashjr
  3. *
  4. * This program is free software; you can redistribute it and/or modify it
  5. * under the terms of the GNU General Public License as published by the Free
  6. * Software Foundation; either version 3 of the License, or (at your option)
  7. * any later version. See COPYING for more details.
  8. */
  9. #include "config.h"
  10. #ifdef WIN32
  11. #define FD_SETSIZE 4096
  12. #endif
  13. #include <stdarg.h>
  14. #include <stdio.h>
  15. #include <unistd.h>
  16. #include "dynclock.h"
  17. #include "logging.h"
  18. #include "miner.h"
  19. #include "fpgautils.h"
  20. #include "util.h"
  21. #define BITSTREAM_FILENAME "fpgaminer_top_fixed7_197MHz.bit"
  22. #define BISTREAM_USER_ID "\2\4$B"
  23. #define MODMINER_MINIMUM_CLOCK 2
  24. #define MODMINER_DEFAULT_CLOCK 200
  25. #define MODMINER_MAXIMUM_CLOCK 210
  26. struct device_api modminer_api;
  27. struct modminer_fpga_state {
  28. bool work_running;
  29. struct work running_work;
  30. struct work last_work;
  31. struct timeval tv_workstart;
  32. uint32_t hashes;
  33. char next_work_cmd[46];
  34. struct dclk_data dclk;
  35. uint8_t freqMaxMaxM;
  36. // Number of nonces didn't meet pdiff 1, ever
  37. int bad_share_counter;
  38. // Number of nonces did meet pdiff 1, ever
  39. int good_share_counter;
  40. // Time the clock was last reduced due to temperature
  41. time_t last_cutoff_reduced;
  42. unsigned char temp;
  43. unsigned char pdone;
  44. };
  45. static inline bool
  46. _bailout(int fd, struct cgpu_info*modminer, int prio, const char *fmt, ...)
  47. {
  48. if (fd != -1)
  49. serial_close(fd);
  50. if (modminer) {
  51. modminer->device_fd = -1;
  52. mutex_unlock(&modminer->device_mutex);
  53. }
  54. va_list ap;
  55. va_start(ap, fmt);
  56. vapplog(prio, fmt, ap);
  57. va_end(ap);
  58. return false;
  59. }
  60. #define bailout(...) return _bailout(fd, NULL, __VA_ARGS__);
  61. static bool
  62. modminer_detect_one(const char *devpath)
  63. {
  64. int fd = serial_open(devpath, 0, 10, true);
  65. if (unlikely(fd == -1))
  66. bailout(LOG_DEBUG, "ModMiner detect: failed to open %s", devpath);
  67. char buf[0x100];
  68. ssize_t len;
  69. // Sending a "ping" first, to workaround bug in new firmware betas (see issue #62)
  70. // Sending 45 noops, just in case the device was left in "start job" reading
  71. (void)(write(fd, "\0\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff\xff", 46) ?:0);
  72. while (serial_read(fd, buf, sizeof(buf)) > 0)
  73. ;
  74. if (1 != write(fd, "\x01", 1)) // Get version
  75. bailout(LOG_DEBUG, "ModMiner detect: write failed on %s (get version)", devpath);
  76. len = serial_read(fd, buf, sizeof(buf)-1);
  77. if (len < 1)
  78. bailout(LOG_DEBUG, "ModMiner detect: no response to version request from %s", devpath);
  79. buf[len] = '\0';
  80. char*devname = strdup(buf);
  81. applog(LOG_DEBUG, "ModMiner identified as: %s", devname);
  82. if (1 != write(fd, "\x02", 1)) // Get FPGA count
  83. bailout(LOG_DEBUG, "ModMiner detect: write failed on %s (get FPGA count)", devpath);
  84. len = read(fd, buf, 1);
  85. if (len < 1)
  86. bailout(LOG_ERR, "ModMiner detect: timeout waiting for FPGA count from %s", devpath);
  87. if (!buf[0])
  88. bailout(LOG_ERR, "ModMiner detect: zero FPGAs reported on %s", devpath);
  89. applog(LOG_DEBUG, "ModMiner %s has %u FPGAs", devname, buf[0]);
  90. serial_close(fd);
  91. struct cgpu_info *modminer;
  92. modminer = calloc(1, sizeof(*modminer));
  93. modminer->api = &modminer_api;
  94. mutex_init(&modminer->device_mutex);
  95. modminer->device_path = strdup(devpath);
  96. modminer->device_fd = -1;
  97. modminer->deven = DEV_ENABLED;
  98. modminer->threads = buf[0];
  99. modminer->name = devname;
  100. modminer->cutofftemp = 85;
  101. return add_cgpu(modminer);
  102. }
  103. #undef bailout
  104. static int
  105. modminer_detect_auto()
  106. {
  107. return
  108. serial_autodetect_udev (modminer_detect_one, "*ModMiner*") ?:
  109. serial_autodetect_devserial(modminer_detect_one, "BTCFPGA_ModMiner") ?:
  110. 0;
  111. }
  112. static void
  113. modminer_detect()
  114. {
  115. serial_detect_auto(&modminer_api, modminer_detect_one, modminer_detect_auto);
  116. }
  117. #define bailout(...) return _bailout(-1, modminer, __VA_ARGS__);
  118. #define bailout2(...) return _bailout(fd, modminer, __VA_ARGS__);
  119. #define bailout3(...) _bailout(fd, modminer, __VA_ARGS__);
  120. static bool
  121. modminer_reopen(struct cgpu_info*modminer)
  122. {
  123. close(modminer->device_fd);
  124. int fd = serial_open(modminer->device_path, 0, 10, true);
  125. if (unlikely(-1 == fd)) {
  126. applog(LOG_ERR, "%s %u: Failed to reopen %s", modminer->api->name, modminer->device_id, modminer->device_path);
  127. return false;
  128. }
  129. modminer->device_fd = fd;
  130. return true;
  131. }
  132. #define safebailout() do { \
  133. bool _safebailoutrv; \
  134. state->work_running = false; \
  135. _safebailoutrv = modminer_reopen(modminer); \
  136. mutex_unlock(&modminer->device_mutex); \
  137. return _safebailoutrv ? 0 : -1; \
  138. } while(0)
  139. #define check_magic(L) do { \
  140. if (1 != fread(buf, 1, 1, f)) \
  141. bailout(LOG_ERR, "Error reading ModMiner firmware ('%c')", L); \
  142. if (buf[0] != L) \
  143. bailout(LOG_ERR, "ModMiner firmware has wrong magic ('%c')", L); \
  144. } while(0)
  145. #define read_str(eng) do { \
  146. if (1 != fread(buf, 2, 1, f)) \
  147. bailout(LOG_ERR, "Error reading ModMiner firmware (" eng " len)"); \
  148. len = (ubuf[0] << 8) | ubuf[1]; \
  149. if (len >= sizeof(buf)) \
  150. bailout(LOG_ERR, "ModMiner firmware " eng " too long"); \
  151. if (1 != fread(buf, len, 1, f)) \
  152. bailout(LOG_ERR, "Error reading ModMiner firmware (" eng ")"); \
  153. buf[len] = '\0'; \
  154. } while(0)
  155. #define status_read(eng) do { \
  156. FD_ZERO(&fds); \
  157. FD_SET(fd, &fds); \
  158. select(fd+1, &fds, NULL, NULL, NULL); \
  159. if (1 != read(fd, buf, 1)) \
  160. bailout2(LOG_ERR, "%s %u: Error programming %s (" eng ")", modminer->api->name, modminer->device_id, modminer->device_path); \
  161. if (buf[0] != 1) \
  162. bailout2(LOG_ERR, "%s %u: Wrong " eng " programming %s", modminer->api->name, modminer->device_id, modminer->device_path); \
  163. } while(0)
  164. static bool
  165. modminer_fpga_upload_bitstream(struct cgpu_info*modminer)
  166. {
  167. struct modminer_fpga_state *state = modminer->thr[0]->cgpu_data;
  168. fd_set fds;
  169. char buf[0x100];
  170. unsigned long len, flen;
  171. char fpgaid = 4; // "all FPGAs"
  172. FILE *f = open_xilinx_bitstream(modminer, BITSTREAM_FILENAME, &len);
  173. if (!f)
  174. return false;
  175. flen = len;
  176. int fd = modminer->device_fd;
  177. applog(LOG_WARNING, "%s %u: Programming %s... DO NOT EXIT UNTIL COMPLETE", modminer->api->name, modminer->device_id, modminer->device_path);
  178. buf[0] = '\x05'; // Program Bitstream
  179. buf[1] = fpgaid;
  180. buf[2] = (len >> 0) & 0xff;
  181. buf[3] = (len >> 8) & 0xff;
  182. buf[4] = (len >> 16) & 0xff;
  183. buf[5] = (len >> 24) & 0xff;
  184. if (6 != write(fd, buf, 6))
  185. bailout2(LOG_ERR, "%s %u: Error programming %s (cmd)", modminer->api->name, modminer->device_id, modminer->device_path);
  186. status_read("cmd reply");
  187. ssize_t buflen;
  188. char nextstatus = 10;
  189. while (len) {
  190. buflen = len < 32 ? len : 32;
  191. if (fread(buf, buflen, 1, f) != 1)
  192. bailout2(LOG_ERR, "%s %u: File underrun programming %s (%d bytes left)", modminer->api->name, modminer->device_id, modminer->device_path, len);
  193. if (write(fd, buf, buflen) != buflen)
  194. bailout2(LOG_ERR, "%s %u: Error programming %s (data)", modminer->api->name, modminer->device_id, modminer->device_path);
  195. state->pdone = 100 - ((len * 100) / flen);
  196. if (state->pdone >= nextstatus)
  197. {
  198. nextstatus += 10;
  199. applog(LOG_WARNING, "%s %u: Programming %s... %d%% complete...", modminer->api->name, modminer->device_id, modminer->device_path, state->pdone);
  200. }
  201. status_read("status");
  202. len -= buflen;
  203. }
  204. status_read("final status");
  205. applog(LOG_WARNING, "%s %u: Done programming %s", modminer->api->name, modminer->device_id, modminer->device_path);
  206. return true;
  207. }
  208. static bool
  209. modminer_device_prepare(struct cgpu_info *modminer)
  210. {
  211. int fd = serial_open(modminer->device_path, 0, 10, true);
  212. if (unlikely(-1 == fd))
  213. bailout(LOG_ERR, "%s %u: Failed to open %s", modminer->api->name, modminer->device_id, modminer->device_path);
  214. modminer->device_fd = fd;
  215. applog(LOG_INFO, "%s %u: Opened %s", modminer->api->name, modminer->device_id, modminer->device_path);
  216. struct timeval now;
  217. gettimeofday(&now, NULL);
  218. get_datestamp(modminer->init, &now);
  219. return true;
  220. }
  221. #undef bailout
  222. static bool
  223. modminer_fpga_prepare(struct thr_info *thr)
  224. {
  225. struct cgpu_info *modminer = thr->cgpu;
  226. // Don't need to lock the mutex here, since prepare runs from the main thread before the miner threads start
  227. if (modminer->device_fd == -1 && !modminer_device_prepare(modminer))
  228. return false;
  229. struct modminer_fpga_state *state;
  230. state = thr->cgpu_data = calloc(1, sizeof(struct modminer_fpga_state));
  231. dclk_prepare(&state->dclk);
  232. state->next_work_cmd[0] = '\x08'; // Send Job
  233. state->next_work_cmd[1] = thr->device_thread; // FPGA id
  234. return true;
  235. }
  236. static bool
  237. modminer_change_clock(struct thr_info*thr, bool needlock, signed char delta)
  238. {
  239. struct cgpu_info*modminer = thr->cgpu;
  240. struct modminer_fpga_state *state = thr->cgpu_data;
  241. char fpgaid = thr->device_thread;
  242. int fd;
  243. unsigned char cmd[6], buf[1];
  244. unsigned char clk;
  245. clk = (state->dclk.freqM * 2) + delta;
  246. cmd[0] = '\x06'; // set frequency
  247. cmd[1] = fpgaid;
  248. cmd[2] = clk;
  249. cmd[3] = cmd[4] = cmd[5] = '\0';
  250. if (needlock)
  251. mutex_lock(&modminer->device_mutex);
  252. fd = modminer->device_fd;
  253. if (6 != write(fd, cmd, 6))
  254. bailout2(LOG_ERR, "%s %u.%u: Error writing (set frequency)", modminer->api->name, modminer->device_id, fpgaid);
  255. if (serial_read(fd, &buf, 1) != 1)
  256. bailout2(LOG_ERR, "%s %u.%u: Error reading (set frequency)", modminer->api->name, modminer->device_id, fpgaid);
  257. if (needlock)
  258. mutex_unlock(&modminer->device_mutex);
  259. if (buf[0])
  260. state->dclk.freqM = clk / 2;
  261. else
  262. return false;
  263. return true;
  264. }
  265. static bool modminer_dclk_change_clock(struct thr_info*thr, int multiplier)
  266. {
  267. struct cgpu_info *modminer = thr->cgpu;
  268. char fpgaid = thr->device_thread;
  269. struct modminer_fpga_state *state = thr->cgpu_data;
  270. uint8_t oldFreq = state->dclk.freqM;
  271. signed char delta = (multiplier - oldFreq) * 2;
  272. if (unlikely(!modminer_change_clock(thr, true, delta)))
  273. return false;
  274. char repr[0x10];
  275. sprintf(repr, "%s %u.%u", modminer->api->name, modminer->device_id, fpgaid);
  276. dclk_msg_freqchange(repr, oldFreq * 2, state->dclk.freqM * 2, NULL);
  277. return true;
  278. }
  279. static bool
  280. modminer_reduce_clock(struct thr_info*thr, bool needlock)
  281. {
  282. struct modminer_fpga_state *state = thr->cgpu_data;
  283. if (state->dclk.freqM <= MODMINER_MINIMUM_CLOCK / 2)
  284. return false;
  285. return modminer_change_clock(thr, needlock, -2);
  286. }
  287. static bool _modminer_get_nonce(struct cgpu_info*modminer, char fpgaid, uint32_t*nonce)
  288. {
  289. int fd = modminer->device_fd;
  290. char cmd[2] = {'\x09', fpgaid};
  291. if (write(fd, cmd, 2) != 2) {
  292. applog(LOG_ERR, "%s %u: Error writing (get nonce %u)", modminer->api->name, modminer->device_id, fpgaid);
  293. return false;
  294. }
  295. if (4 != serial_read(fd, nonce, 4)) {
  296. applog(LOG_ERR, "%s %u: Short read (get nonce %u)", modminer->api->name, modminer->device_id, fpgaid);
  297. return false;
  298. }
  299. return true;
  300. }
  301. static bool
  302. modminer_fpga_init(struct thr_info *thr)
  303. {
  304. struct cgpu_info *modminer = thr->cgpu;
  305. struct modminer_fpga_state *state = thr->cgpu_data;
  306. int fd;
  307. char fpgaid = thr->device_thread;
  308. uint32_t nonce;
  309. unsigned char cmd[2], buf[4];
  310. mutex_lock(&modminer->device_mutex);
  311. fd = modminer->device_fd;
  312. if (fd == -1) {
  313. // Died in another thread...
  314. mutex_unlock(&modminer->device_mutex);
  315. return false;
  316. }
  317. cmd[0] = '\x04'; // Read USER code (bitstream id)
  318. cmd[1] = fpgaid;
  319. if (write(fd, cmd, 2) != 2)
  320. bailout2(LOG_ERR, "%s %u.%u: Error writing (read USER code)", modminer->api->name, modminer->device_id, fpgaid);
  321. if (serial_read(fd, buf, 4) != 4)
  322. bailout2(LOG_ERR, "%s %u.%u: Error reading (read USER code)", modminer->api->name, modminer->device_id, fpgaid);
  323. if (memcmp(buf, BISTREAM_USER_ID, 4)) {
  324. applog(LOG_ERR, "%s %u.%u: FPGA not programmed", modminer->api->name, modminer->device_id, fpgaid);
  325. if (!modminer_fpga_upload_bitstream(modminer))
  326. return false;
  327. } else if (opt_force_dev_init && modminer->status == LIFE_INIT) {
  328. applog(LOG_DEBUG, "%s %u.%u: FPGA is already programmed, but --force-dev-init is set",
  329. modminer->api->name, modminer->device_id, fpgaid);
  330. if (!modminer_fpga_upload_bitstream(modminer))
  331. return false;
  332. }
  333. else
  334. applog(LOG_DEBUG, "%s %u.%u: FPGA is already programmed :)", modminer->api->name, modminer->device_id, fpgaid);
  335. state->pdone = 101;
  336. state->dclk.freqM = MODMINER_MAXIMUM_CLOCK / 2 + 1; // Will be reduced immediately
  337. while (1) {
  338. if (state->dclk.freqM <= MODMINER_MINIMUM_CLOCK / 2)
  339. bailout2(LOG_ERR, "%s %u.%u: Hit minimum trying to find acceptable frequencies", modminer->api->name, modminer->device_id, fpgaid);
  340. --state->dclk.freqM;
  341. if (!modminer_change_clock(thr, false, 0))
  342. // MCU rejected assignment
  343. continue;
  344. if (!_modminer_get_nonce(modminer, fpgaid, &nonce))
  345. bailout2(LOG_ERR, "%s %u.%u: Error detecting acceptable frequencies", modminer->api->name, modminer->device_id, fpgaid);
  346. if (!memcmp(&nonce, "\x00\xff\xff\xff", 4))
  347. // MCU took assignment, but disabled FPGA
  348. continue;
  349. break;
  350. }
  351. state->freqMaxMaxM =
  352. state->dclk.freqMaxM = state->dclk.freqM;
  353. if (MODMINER_DEFAULT_CLOCK / 2 < state->dclk.freqM) {
  354. if (!modminer_change_clock(thr, false, -(state->dclk.freqM * 2 - MODMINER_DEFAULT_CLOCK)))
  355. applog(LOG_WARNING, "%s %u.%u: Failed to set desired initial frequency of %u", modminer->api->name, modminer->device_id, fpgaid, MODMINER_DEFAULT_CLOCK);
  356. }
  357. state->dclk.freqMDefault = state->dclk.freqM;
  358. applog(LOG_WARNING, "%s %u.%u: Frequency set to %u MHz (range: %u-%u)", modminer->api->name, modminer->device_id, fpgaid, state->dclk.freqM * 2, MODMINER_MINIMUM_CLOCK, state->dclk.freqMaxM * 2);
  359. mutex_unlock(&modminer->device_mutex);
  360. thr->primary_thread = true;
  361. return true;
  362. }
  363. static void
  364. get_modminer_statline_before(char *buf, struct cgpu_info *modminer)
  365. {
  366. char info[18] = " | ";
  367. int tc = modminer->threads;
  368. bool havetemp = false;
  369. int i;
  370. char pdone = ((struct modminer_fpga_state*)(modminer->thr[0]->cgpu_data))->pdone;
  371. if (pdone != 101) {
  372. sprintf(&info[1], "%3d%%", pdone);
  373. info[5] = ' ';
  374. strcat(buf, info);
  375. return;
  376. }
  377. if (tc > 4)
  378. tc = 4;
  379. for (i = tc - 1; i >= 0; --i) {
  380. struct thr_info*thr = modminer->thr[i];
  381. struct modminer_fpga_state *state = thr->cgpu_data;
  382. unsigned char temp = state->temp;
  383. info[i*3+2] = '/';
  384. if (temp) {
  385. havetemp = true;
  386. if (temp > 9)
  387. info[i*3+0] = 0x30 + (temp / 10);
  388. info[i*3+1] = 0x30 + (temp % 10);
  389. }
  390. }
  391. if (havetemp) {
  392. info[tc*3-1] = ' ';
  393. info[tc*3] = 'C';
  394. strcat(buf, info);
  395. }
  396. else
  397. strcat(buf, " | ");
  398. }
  399. static void modminer_get_temperature(struct cgpu_info *modminer, struct thr_info *thr)
  400. {
  401. struct modminer_fpga_state *state = thr->cgpu_data;
  402. #ifdef WIN32
  403. /* Workaround for bug in Windows driver */
  404. if (!modminer_reopen(modminer))
  405. return;
  406. #endif
  407. int fd = modminer->device_fd;
  408. int fpgaid = thr->device_thread;
  409. char cmd[2] = {'\x0a', fpgaid};
  410. char temperature;
  411. if (2 == write(fd, cmd, 2) && read(fd, &temperature, 1) == 1)
  412. {
  413. state->temp = temperature;
  414. if (temperature > modminer->targettemp + opt_hysteresis) {
  415. {
  416. time_t now = time(NULL);
  417. if (state->last_cutoff_reduced != now) {
  418. state->last_cutoff_reduced = now;
  419. int oldFreq = state->dclk.freqM;
  420. if (modminer_reduce_clock(thr, false))
  421. applog(LOG_NOTICE, "%s %u.%u: Frequency %s from %u to %u MHz (temp: %d)",
  422. modminer->api->name, modminer->device_id, fpgaid,
  423. (oldFreq > state->dclk.freqM ? "dropped" : "raised "),
  424. oldFreq * 2, state->dclk.freqM * 2,
  425. temperature
  426. );
  427. state->dclk.freqMaxM = state->dclk.freqM;
  428. }
  429. }
  430. }
  431. else
  432. if (state->dclk.freqMaxM < state->freqMaxMaxM && temperature < modminer->targettemp) {
  433. if (temperature < modminer->targettemp - opt_hysteresis) {
  434. state->dclk.freqMaxM = state->freqMaxMaxM;
  435. } else {
  436. ++state->dclk.freqMaxM;
  437. }
  438. }
  439. }
  440. }
  441. static bool modminer_get_stats(struct cgpu_info *modminer)
  442. {
  443. int hottest = 0;
  444. bool get_temp = (modminer->deven != DEV_ENABLED);
  445. // Getting temperature more efficiently while enabled
  446. // NOTE: Don't need to mess with mutex here, since the device is disabled
  447. for (int i = modminer->threads; i--; ) {
  448. struct thr_info*thr = modminer->thr[i];
  449. struct modminer_fpga_state *state = thr->cgpu_data;
  450. if (get_temp)
  451. modminer_get_temperature(modminer, thr);
  452. int temp = state->temp;
  453. if (temp > hottest)
  454. hottest = temp;
  455. }
  456. modminer->temp = (float)hottest;
  457. return true;
  458. }
  459. static struct api_data*
  460. get_modminer_api_extra_device_status(struct cgpu_info*modminer)
  461. {
  462. struct api_data*root = NULL;
  463. static char *k[4] = {"Board0", "Board1", "Board2", "Board3"};
  464. int i;
  465. for (i = modminer->threads - 1; i >= 0; --i) {
  466. struct thr_info*thr = modminer->thr[i];
  467. struct modminer_fpga_state *state = thr->cgpu_data;
  468. json_t *o = json_object();
  469. if (state->temp)
  470. json_object_set_new(o, "Temperature", json_integer(state->temp));
  471. json_object_set_new(o, "Frequency", json_real((double)state->dclk.freqM * 2 * 1000000.));
  472. json_object_set_new(o, "Cool Max Frequency", json_real((double)state->dclk.freqMaxM * 2 * 1000000.));
  473. json_object_set_new(o, "Max Frequency", json_real((double)state->freqMaxMaxM * 2 * 1000000.));
  474. json_object_set_new(o, "Hardware Errors", json_integer(state->bad_share_counter));
  475. json_object_set_new(o, "Valid Nonces", json_integer(state->good_share_counter));
  476. root = api_add_json(root, k[i], o, false);
  477. json_decref(o);
  478. }
  479. return root;
  480. }
  481. static bool
  482. modminer_prepare_next_work(struct modminer_fpga_state*state, struct work*work)
  483. {
  484. char *midstate = state->next_work_cmd + 2;
  485. char *taildata = midstate + 32;
  486. if (!(memcmp(midstate, work->midstate, 32) || memcmp(taildata, work->data + 64, 12)))
  487. return false;
  488. memcpy(midstate, work->midstate, 32);
  489. memcpy(taildata, work->data + 64, 12);
  490. return true;
  491. }
  492. static bool
  493. modminer_start_work(struct thr_info*thr)
  494. {
  495. fd_set fds;
  496. struct cgpu_info*modminer = thr->cgpu;
  497. struct modminer_fpga_state *state = thr->cgpu_data;
  498. char fpgaid = thr->device_thread;
  499. int fd;
  500. char buf[1];
  501. mutex_lock(&modminer->device_mutex);
  502. fd = modminer->device_fd;
  503. if (unlikely(fd == -1)) {
  504. if (!modminer_reopen(modminer)) {
  505. mutex_unlock(&modminer->device_mutex);
  506. return false;
  507. }
  508. fd = modminer->device_fd;
  509. }
  510. if (46 != write(fd, state->next_work_cmd, 46))
  511. bailout2(LOG_ERR, "%s %u.%u: Error writing (start work)", modminer->api->name, modminer->device_id, fpgaid);
  512. gettimeofday(&state->tv_workstart, NULL);
  513. state->hashes = 0;
  514. status_read("start work");
  515. mutex_unlock(&modminer->device_mutex);
  516. if (opt_debug) {
  517. char *xdata = bin2hex(state->running_work.data, 80);
  518. applog(LOG_DEBUG, "%s %u.%u: Started work: %s",
  519. modminer->api->name, modminer->device_id, fpgaid, xdata);
  520. free(xdata);
  521. }
  522. return true;
  523. }
  524. #define work_restart(thr) thr->work_restart
  525. #define NONCE_CHARS(nonce) \
  526. (int)((unsigned char*)&nonce)[3], \
  527. (int)((unsigned char*)&nonce)[2], \
  528. (int)((unsigned char*)&nonce)[1], \
  529. (int)((unsigned char*)&nonce)[0]
  530. static int64_t
  531. modminer_process_results(struct thr_info*thr)
  532. {
  533. struct cgpu_info*modminer = thr->cgpu;
  534. struct modminer_fpga_state *state = thr->cgpu_data;
  535. char fpgaid = thr->device_thread;
  536. struct work *work = &state->running_work;
  537. uint32_t nonce;
  538. long iter;
  539. int immediate_bad_nonces = 0, immediate_nonces = 0;
  540. bool bad;
  541. mutex_lock(&modminer->device_mutex);
  542. modminer_get_temperature(modminer, thr);
  543. iter = 200;
  544. while (1) {
  545. if (!_modminer_get_nonce(modminer, fpgaid, &nonce))
  546. safebailout();
  547. mutex_unlock(&modminer->device_mutex);
  548. if (memcmp(&nonce, "\xff\xff\xff\xff", 4)) {
  549. nonce = le32toh(nonce);
  550. bad = !test_nonce(work, nonce, false);
  551. ++immediate_nonces;
  552. if (!bad)
  553. applog(LOG_DEBUG, "%s %u.%u: Nonce for current work: %02x%02x%02x%02x",
  554. modminer->api->name, modminer->device_id, fpgaid,
  555. NONCE_CHARS(nonce));
  556. else
  557. if (test_nonce(&state->last_work, nonce, false))
  558. {
  559. applog(LOG_DEBUG, "%s %u.%u: Nonce for previous work: %02x%02x%02x%02x",
  560. modminer->api->name, modminer->device_id, fpgaid,
  561. NONCE_CHARS(nonce));
  562. work = &state->last_work;
  563. bad = false;
  564. }
  565. if (!bad)
  566. {
  567. ++state->good_share_counter;
  568. submit_nonce(thr, work, nonce);
  569. }
  570. else {
  571. applog(LOG_DEBUG, "%s %u.%u: Nonce with H not zero : %02x%02x%02x%02x",
  572. modminer->api->name, modminer->device_id, fpgaid,
  573. NONCE_CHARS(nonce));
  574. ++hw_errors;
  575. ++modminer->hw_errors;
  576. ++state->bad_share_counter;
  577. ++immediate_bad_nonces;
  578. }
  579. }
  580. if (work_restart(thr) || !--iter)
  581. break;
  582. usleep(1000);
  583. if (work_restart(thr))
  584. break;
  585. mutex_lock(&modminer->device_mutex);
  586. }
  587. struct timeval tv_workend, elapsed;
  588. gettimeofday(&tv_workend, NULL);
  589. timersub(&tv_workend, &state->tv_workstart, &elapsed);
  590. uint64_t hashes = (uint64_t)state->dclk.freqM * 2 * (((uint64_t)elapsed.tv_sec * 1000000) + elapsed.tv_usec);
  591. if (hashes > 0xffffffff)
  592. {
  593. applog(LOG_WARNING, "%s %u.%u: Finished work before new one sent", modminer->api->name, modminer->device_id, fpgaid);
  594. hashes = 0xffffffff;
  595. }
  596. if (hashes <= state->hashes)
  597. hashes = 1;
  598. else
  599. hashes -= state->hashes;
  600. state->hashes += hashes;
  601. dclk_gotNonces(&state->dclk);
  602. if (immediate_bad_nonces)
  603. dclk_errorCount(&state->dclk, ((double)immediate_bad_nonces) / (double)immediate_nonces);
  604. dclk_preUpdate(&state->dclk);
  605. if (!dclk_updateFreq(&state->dclk, modminer_dclk_change_clock, thr))
  606. {} // TODO: handle error
  607. return hashes;
  608. }
  609. static int64_t
  610. modminer_scanhash(struct thr_info*thr, struct work*work, int64_t __maybe_unused max_nonce)
  611. {
  612. struct modminer_fpga_state *state = thr->cgpu_data;
  613. int64_t hashes = 0;
  614. bool startwork;
  615. startwork = modminer_prepare_next_work(state, work);
  616. if (startwork) {
  617. /* HACK: For some reason, this is delayed a bit
  618. * Let last_work handle the end of the work,
  619. * and start the next one immediately
  620. */
  621. }
  622. else
  623. if (state->work_running) {
  624. hashes = modminer_process_results(thr);
  625. if (work_restart(thr)) {
  626. state->work_running = false;
  627. return hashes;
  628. }
  629. } else
  630. state->work_running = true;
  631. if (startwork) {
  632. clear_work(&state->last_work);
  633. memcpy(&state->last_work, &state->running_work, sizeof(state->last_work));
  634. workcpy(&state->running_work, work);
  635. if (!modminer_start_work(thr))
  636. return -1;
  637. }
  638. // This is intentionally early
  639. work->blk.nonce += hashes;
  640. return hashes;
  641. }
  642. static void
  643. modminer_fpga_shutdown(struct thr_info *thr)
  644. {
  645. free(thr->cgpu_data);
  646. }
  647. struct device_api modminer_api = {
  648. .dname = "modminer",
  649. .name = "MMQ",
  650. .api_detect = modminer_detect,
  651. .get_statline_before = get_modminer_statline_before,
  652. .get_stats = modminer_get_stats,
  653. .get_api_extra_device_status = get_modminer_api_extra_device_status,
  654. .thread_prepare = modminer_fpga_prepare,
  655. .thread_init = modminer_fpga_init,
  656. .scanhash = modminer_scanhash,
  657. .thread_shutdown = modminer_fpga_shutdown,
  658. };