driver-icarus.c 29 KB

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  1. /*
  2. * Copyright 2012 Luke Dashjr
  3. * Copyright 2012 Xiangfu <xiangfu@openmobilefree.com>
  4. * Copyright 2012 Andrew Smith
  5. *
  6. * This program is free software; you can redistribute it and/or modify it
  7. * under the terms of the GNU General Public License as published by the Free
  8. * Software Foundation; either version 3 of the License, or (at your option)
  9. * any later version. See COPYING for more details.
  10. */
  11. /*
  12. * Those code should be works fine with V2 and V3 bitstream of Icarus.
  13. * Operation:
  14. * No detection implement.
  15. * Input: 64B = 32B midstate + 20B fill bytes + last 12 bytes of block head.
  16. * Return: send back 32bits immediately when Icarus found a valid nonce.
  17. * no query protocol implemented here, if no data send back in ~11.3
  18. * seconds (full cover time on 32bit nonce range by 380MH/s speed)
  19. * just send another work.
  20. * Notice:
  21. * 1. Icarus will start calculate when you push a work to them, even they
  22. * are busy.
  23. * 2. The 2 FPGAs on Icarus will distribute the job, one will calculate the
  24. * 0 ~ 7FFFFFFF, another one will cover the 80000000 ~ FFFFFFFF.
  25. * 3. It's possible for 2 FPGAs both find valid nonce in the meantime, the 2
  26. * valid nonce will all be send back.
  27. * 4. Icarus will stop work when: a valid nonce has been found or 32 bits
  28. * nonce range is completely calculated.
  29. */
  30. #include "config.h"
  31. #include <limits.h>
  32. #include <pthread.h>
  33. #include <stdio.h>
  34. #include <sys/time.h>
  35. #include <sys/types.h>
  36. #include <dirent.h>
  37. #include <unistd.h>
  38. #ifndef WIN32
  39. #include <termios.h>
  40. #include <sys/stat.h>
  41. #include <fcntl.h>
  42. #ifndef O_CLOEXEC
  43. #define O_CLOEXEC 0
  44. #endif
  45. #else
  46. #include <windows.h>
  47. #include <io.h>
  48. #endif
  49. #ifdef HAVE_SYS_EPOLL_H
  50. #include <sys/epoll.h>
  51. #define HAVE_EPOLL
  52. #endif
  53. #include "dynclock.h"
  54. #include "elist.h"
  55. #include "icarus-common.h"
  56. #include "miner.h"
  57. #include "fpgautils.h"
  58. // The serial I/O speed - Linux uses a define 'B115200' in bits/termios.h
  59. #define ICARUS_IO_SPEED 115200
  60. // The size of a successful nonce read
  61. #define ICARUS_READ_SIZE 4
  62. // Ensure the sizes are correct for the Serial read
  63. #if (ICARUS_READ_SIZE != 4)
  64. #error ICARUS_READ_SIZE must be 4
  65. #endif
  66. #define ASSERT1(condition) __maybe_unused static char sizeof_uint32_t_must_be_4[(condition)?1:-1]
  67. ASSERT1(sizeof(uint32_t) == 4);
  68. #define ICARUS_READ_TIME(baud) ((double)ICARUS_READ_SIZE * (double)8.0 / (double)(baud))
  69. // In timing mode: Default starting value until an estimate can be obtained
  70. // 5 seconds allows for up to a ~840MH/s device
  71. #define ICARUS_READ_COUNT_TIMING (5 * TIME_FACTOR)
  72. // For a standard Icarus REV3
  73. #define ICARUS_REV3_HASH_TIME 0.00000000264083
  74. // Icarus Rev3 doesn't send a completion message when it finishes
  75. // the full nonce range, so to avoid being idle we must abort the
  76. // work (by starting a new work) shortly before it finishes
  77. //
  78. // Thus we need to estimate 2 things:
  79. // 1) How many hashes were done if the work was aborted
  80. // 2) How high can the timeout be before the Icarus is idle,
  81. // to minimise the number of work started
  82. // We set 2) to 'the calculated estimate' - 1
  83. // to ensure the estimate ends before idle
  84. //
  85. // The simple calculation used is:
  86. // Tn = Total time in seconds to calculate n hashes
  87. // Hs = seconds per hash
  88. // Xn = number of hashes
  89. // W = code overhead per work
  90. //
  91. // Rough but reasonable estimate:
  92. // Tn = Hs * Xn + W (of the form y = mx + b)
  93. //
  94. // Thus:
  95. // Line of best fit (using least squares)
  96. //
  97. // Hs = (n*Sum(XiTi)-Sum(Xi)*Sum(Ti))/(n*Sum(Xi^2)-Sum(Xi)^2)
  98. // W = Sum(Ti)/n - (Hs*Sum(Xi))/n
  99. //
  100. // N.B. W is less when aborting work since we aren't waiting for the reply
  101. // to be transferred back (ICARUS_READ_TIME)
  102. // Calculating the hashes aborted at n seconds is thus just n/Hs
  103. // (though this is still a slight overestimate due to code delays)
  104. //
  105. // Both below must be exceeded to complete a set of data
  106. // Minimum how long after the first, the last data point must be
  107. #define HISTORY_SEC 60
  108. // Minimum how many points a single ICARUS_HISTORY should have
  109. #define MIN_DATA_COUNT 5
  110. // The value above used is doubled each history until it exceeds:
  111. #define MAX_MIN_DATA_COUNT 100
  112. #if (TIME_FACTOR != 10)
  113. #error TIME_FACTOR must be 10
  114. #endif
  115. static struct timeval history_sec = { HISTORY_SEC, 0 };
  116. static const char *MODE_DEFAULT_STR = "default";
  117. static const char *MODE_SHORT_STR = "short";
  118. static const char *MODE_LONG_STR = "long";
  119. static const char *MODE_VALUE_STR = "value";
  120. static const char *MODE_UNKNOWN_STR = "unknown";
  121. #define END_CONDITION 0x0000ffff
  122. #define DEFAULT_DETECT_THRESHOLD 1
  123. // Looking for options in --icarus-timing and --icarus-options:
  124. //
  125. // Code increments this each time we start to look at a device
  126. // However, this means that if other devices are checked by
  127. // the Icarus code (e.g. BFL) they will count in the option offset
  128. //
  129. // This, however, is deterministic so that's OK
  130. //
  131. // If we were to increment after successfully finding an Icarus
  132. // that would be random since an Icarus may fail and thus we'd
  133. // not be able to predict the option order
  134. //
  135. // This also assumes that serial_detect() checks them sequentially
  136. // and in the order specified on the command line
  137. //
  138. static int option_offset = -1;
  139. struct device_api icarus_api;
  140. extern void convert_icarus_to_cairnsmore(struct cgpu_info *);
  141. static void rev(unsigned char *s, size_t l)
  142. {
  143. size_t i, j;
  144. unsigned char t;
  145. for (i = 0, j = l - 1; i < j; i++, j--) {
  146. t = s[i];
  147. s[i] = s[j];
  148. s[j] = t;
  149. }
  150. }
  151. #define icarus_open2(devpath, baud, purge) serial_open(devpath, baud, ICARUS_READ_FAULT_DECISECONDS, purge)
  152. #define icarus_open(devpath, baud) icarus_open2(devpath, baud, false)
  153. int icarus_gets(unsigned char *buf, int fd, struct timeval *tv_finish, struct thr_info *thr, int read_count)
  154. {
  155. ssize_t ret = 0;
  156. int rc = 0;
  157. int epollfd = -1;
  158. int read_amount = ICARUS_READ_SIZE;
  159. bool first = true;
  160. #ifdef HAVE_EPOLL
  161. struct epoll_event ev = {
  162. .events = EPOLLIN,
  163. .data.fd = fd,
  164. };
  165. struct epoll_event evr[2];
  166. int epoll_timeout = ICARUS_READ_FAULT_DECISECONDS * 100;
  167. epollfd = epoll_create(2);
  168. if (epollfd != -1) {
  169. if (-1 == epoll_ctl(epollfd, EPOLL_CTL_ADD, fd, &ev)) {
  170. close(epollfd);
  171. epollfd = -1;
  172. }
  173. if (thr->work_restart_fd != -1)
  174. {
  175. ev.data.fd = thr->work_restart_fd;
  176. if (-1 == epoll_ctl(epollfd, EPOLL_CTL_ADD, thr->work_restart_fd, &ev))
  177. applog(LOG_ERR, "Icarus: Error adding work restart fd to epoll");
  178. else
  179. {
  180. epoll_timeout *= read_count;
  181. read_count = 1;
  182. }
  183. }
  184. }
  185. else
  186. applog(LOG_ERR, "Icarus: Error creating epoll");
  187. #endif
  188. // Read reply 1 byte at a time to get earliest tv_finish
  189. while (true) {
  190. #ifdef HAVE_EPOLL
  191. if (epollfd != -1 && (ret = epoll_wait(epollfd, evr, 2, epoll_timeout)) != -1)
  192. {
  193. if (ret == 1 && evr[0].data.fd == fd)
  194. ret = read(fd, buf, 1);
  195. else
  196. {
  197. if (ret)
  198. // work restart trigger
  199. (void)read(thr->work_restart_fd, buf, read_amount);
  200. ret = 0;
  201. }
  202. }
  203. else
  204. #endif
  205. ret = read(fd, buf, 1);
  206. if (first)
  207. gettimeofday(tv_finish, NULL);
  208. if (ret >= read_amount)
  209. {
  210. if (epollfd != -1)
  211. close(epollfd);
  212. return 0;
  213. }
  214. if (ret > 0) {
  215. buf += ret;
  216. read_amount -= ret;
  217. first = false;
  218. continue;
  219. }
  220. rc++;
  221. if (rc >= read_count || thr->work_restart) {
  222. if (epollfd != -1)
  223. close(epollfd);
  224. if (opt_debug) {
  225. rc *= ICARUS_READ_FAULT_DECISECONDS;
  226. applog(LOG_DEBUG,
  227. "Icarus Read: %s %d.%d seconds",
  228. thr->work_restart ? "Work restart at" : "No data in",
  229. rc / 10, rc % 10);
  230. }
  231. return 1;
  232. }
  233. }
  234. }
  235. static int icarus_write(int fd, const void *buf, size_t bufLen)
  236. {
  237. size_t ret;
  238. ret = write(fd, buf, bufLen);
  239. if (unlikely(ret != bufLen))
  240. return 1;
  241. return 0;
  242. }
  243. #define icarus_close(fd) close(fd)
  244. static const char *timing_mode_str(enum timing_mode timing_mode)
  245. {
  246. switch(timing_mode) {
  247. case MODE_DEFAULT:
  248. return MODE_DEFAULT_STR;
  249. case MODE_SHORT:
  250. return MODE_SHORT_STR;
  251. case MODE_LONG:
  252. return MODE_LONG_STR;
  253. case MODE_VALUE:
  254. return MODE_VALUE_STR;
  255. default:
  256. return MODE_UNKNOWN_STR;
  257. }
  258. }
  259. static void set_timing_mode(int this_option_offset, struct cgpu_info *icarus)
  260. {
  261. struct ICARUS_INFO *info = icarus->cgpu_data;
  262. double Hs;
  263. char buf[BUFSIZ+1];
  264. char *ptr, *comma, *eq;
  265. size_t max;
  266. int i;
  267. if (opt_icarus_timing == NULL)
  268. buf[0] = '\0';
  269. else {
  270. ptr = opt_icarus_timing;
  271. for (i = 0; i < this_option_offset; i++) {
  272. comma = strchr(ptr, ',');
  273. if (comma == NULL)
  274. break;
  275. ptr = comma + 1;
  276. }
  277. comma = strchr(ptr, ',');
  278. if (comma == NULL)
  279. max = strlen(ptr);
  280. else
  281. max = comma - ptr;
  282. if (max > BUFSIZ)
  283. max = BUFSIZ;
  284. strncpy(buf, ptr, max);
  285. buf[max] = '\0';
  286. }
  287. info->read_count = 0;
  288. if (strcasecmp(buf, MODE_SHORT_STR) == 0) {
  289. info->read_count = ICARUS_READ_COUNT_TIMING;
  290. info->timing_mode = MODE_SHORT;
  291. info->do_icarus_timing = true;
  292. } else if (strcasecmp(buf, MODE_LONG_STR) == 0) {
  293. info->read_count = ICARUS_READ_COUNT_TIMING;
  294. info->timing_mode = MODE_LONG;
  295. info->do_icarus_timing = true;
  296. } else if ((Hs = atof(buf)) != 0) {
  297. info->Hs = Hs / NANOSEC;
  298. info->fullnonce = info->Hs * (((double)0xffffffff) + 1);
  299. if ((eq = strchr(buf, '=')) != NULL)
  300. info->read_count = atoi(eq+1);
  301. if (info->read_count < 1)
  302. info->read_count = (int)(info->fullnonce * TIME_FACTOR) - 1;
  303. if (unlikely(info->read_count < 1))
  304. info->read_count = 1;
  305. info->timing_mode = MODE_VALUE;
  306. info->do_icarus_timing = false;
  307. } else {
  308. // Anything else in buf just uses DEFAULT mode
  309. info->fullnonce = info->Hs * (((double)0xffffffff) + 1);
  310. if ((eq = strchr(buf, '=')) != NULL)
  311. info->read_count = atoi(eq+1);
  312. int def_read_count = ICARUS_READ_COUNT_TIMING;
  313. if (info->timing_mode == MODE_DEFAULT) {
  314. if (icarus->api == &icarus_api) {
  315. info->do_default_detection = 0x10;
  316. } else {
  317. def_read_count = (int)(info->fullnonce * TIME_FACTOR) - 1;
  318. }
  319. info->do_icarus_timing = false;
  320. }
  321. if (info->read_count < 1)
  322. info->read_count = def_read_count;
  323. }
  324. info->min_data_count = MIN_DATA_COUNT;
  325. applog(LOG_DEBUG, "%s %u: Init: mode=%s read_count=%d Hs=%e",
  326. icarus->api->name,
  327. icarus->device_id, timing_mode_str(info->timing_mode), info->read_count, info->Hs);
  328. }
  329. static uint32_t mask(int work_division)
  330. {
  331. char err_buf[BUFSIZ+1];
  332. uint32_t nonce_mask = 0x7fffffff;
  333. // yes we can calculate these, but this way it's easy to see what they are
  334. switch (work_division) {
  335. case 1:
  336. nonce_mask = 0xffffffff;
  337. break;
  338. case 2:
  339. nonce_mask = 0x7fffffff;
  340. break;
  341. case 4:
  342. nonce_mask = 0x3fffffff;
  343. break;
  344. case 8:
  345. nonce_mask = 0x1fffffff;
  346. break;
  347. default:
  348. sprintf(err_buf, "Invalid2 icarus-options for work_division (%d) must be 1, 2, 4 or 8", work_division);
  349. quit(1, err_buf);
  350. }
  351. return nonce_mask;
  352. }
  353. static void get_options(int this_option_offset, struct ICARUS_INFO *info)
  354. {
  355. int *baud = &info->baud;
  356. int *work_division = &info->work_division;
  357. int *fpga_count = &info->fpga_count;
  358. char err_buf[BUFSIZ+1];
  359. char buf[BUFSIZ+1];
  360. char *ptr, *comma, *colon, *colon2;
  361. size_t max;
  362. int i, tmp;
  363. if (opt_icarus_options == NULL)
  364. buf[0] = '\0';
  365. else {
  366. ptr = opt_icarus_options;
  367. for (i = 0; i < this_option_offset; i++) {
  368. comma = strchr(ptr, ',');
  369. if (comma == NULL)
  370. break;
  371. ptr = comma + 1;
  372. }
  373. comma = strchr(ptr, ',');
  374. if (comma == NULL)
  375. max = strlen(ptr);
  376. else
  377. max = comma - ptr;
  378. if (max > BUFSIZ)
  379. max = BUFSIZ;
  380. strncpy(buf, ptr, max);
  381. buf[max] = '\0';
  382. }
  383. if (*buf) {
  384. colon = strchr(buf, ':');
  385. if (colon)
  386. *(colon++) = '\0';
  387. if (*buf) {
  388. tmp = atoi(buf);
  389. switch (tmp) {
  390. case 115200:
  391. *baud = 115200;
  392. break;
  393. case 57600:
  394. *baud = 57600;
  395. break;
  396. default:
  397. sprintf(err_buf, "Invalid icarus-options for baud (%s) must be 115200 or 57600", buf);
  398. quit(1, err_buf);
  399. }
  400. }
  401. if (colon && *colon) {
  402. colon2 = strchr(colon, ':');
  403. if (colon2)
  404. *(colon2++) = '\0';
  405. if (*colon) {
  406. info->user_set |= 1;
  407. tmp = atoi(colon);
  408. if (tmp == 1 || tmp == 2 || tmp == 4 || tmp == 8) {
  409. *work_division = tmp;
  410. *fpga_count = tmp; // default to the same
  411. } else {
  412. sprintf(err_buf, "Invalid icarus-options for work_division (%s) must be 1, 2, 4 or 8", colon);
  413. quit(1, err_buf);
  414. }
  415. }
  416. if (colon2 && *colon2) {
  417. colon = strchr(colon2, ':');
  418. if (colon)
  419. *(colon++) = '\0';
  420. if (*colon2) {
  421. info->user_set |= 2;
  422. tmp = atoi(colon2);
  423. if (tmp > 0 && tmp <= *work_division)
  424. *fpga_count = tmp;
  425. else {
  426. sprintf(err_buf, "Invalid icarus-options for fpga_count (%s) must be >0 and <=work_division (%d)", colon2, *work_division);
  427. quit(1, err_buf);
  428. }
  429. }
  430. if (colon && *colon) {
  431. colon2 = strchr(colon, '-') ?: "";
  432. if (*colon2)
  433. *(colon2++) = '\0';
  434. if (strchr(colon, 'r'))
  435. info->quirk_reopen = 2;
  436. if (strchr(colon2, 'r'))
  437. info->quirk_reopen = 0;
  438. }
  439. }
  440. }
  441. }
  442. }
  443. bool icarus_detect_custom(const char *devpath, struct device_api *api, struct ICARUS_INFO *info)
  444. {
  445. int this_option_offset = ++option_offset;
  446. struct timeval tv_start, tv_finish;
  447. int fd;
  448. // Block 171874 nonce = (0xa2870100) = 0x000187a2
  449. // N.B. golden_ob MUST take less time to calculate
  450. // than the timeout set in icarus_open()
  451. // This one takes ~0.53ms on Rev3 Icarus
  452. const char golden_ob[] =
  453. "4679ba4ec99876bf4bfe086082b40025"
  454. "4df6c356451471139a3afa71e48f544a"
  455. "00000000000000000000000000000000"
  456. "0000000087320b1a1426674f2fa722ce";
  457. /* NOTE: This gets sent to basically every port specified in --scan-serial,
  458. * even ones that aren't Icarus; be sure they can all handle it, when
  459. * this is changed...
  460. * BitForce: Ignores entirely
  461. * ModMiner: Starts (useless) work, gets back to clean state
  462. */
  463. const char golden_nonce[] = "000187a2";
  464. const uint32_t golden_nonce_val = 0x000187a2;
  465. unsigned char ob_bin[64], nonce_bin[ICARUS_READ_SIZE];
  466. char *nonce_hex;
  467. get_options(this_option_offset, info);
  468. int baud = info->baud;
  469. int work_division = info->work_division;
  470. int fpga_count = info->fpga_count;
  471. applog(LOG_DEBUG, "Icarus Detect: Attempting to open %s", devpath);
  472. fd = icarus_open2(devpath, baud, true);
  473. if (unlikely(fd == -1)) {
  474. applog(LOG_DEBUG, "Icarus Detect: Failed to open %s", devpath);
  475. return false;
  476. }
  477. hex2bin(ob_bin, golden_ob, sizeof(ob_bin));
  478. icarus_write(fd, ob_bin, sizeof(ob_bin));
  479. gettimeofday(&tv_start, NULL);
  480. memset(nonce_bin, 0, sizeof(nonce_bin));
  481. struct thr_info dummy = {
  482. .work_restart = false,
  483. .work_restart_fd = -1,
  484. };
  485. icarus_gets(nonce_bin, fd, &tv_finish, &dummy, 1);
  486. icarus_close(fd);
  487. nonce_hex = bin2hex(nonce_bin, sizeof(nonce_bin));
  488. if (nonce_hex) {
  489. if (strncmp(nonce_hex, golden_nonce, 8)) {
  490. applog(LOG_DEBUG,
  491. "Icarus Detect: "
  492. "Test failed at %s: get %s, should: %s",
  493. devpath, nonce_hex, golden_nonce);
  494. free(nonce_hex);
  495. return false;
  496. }
  497. applog(LOG_DEBUG,
  498. "Icarus Detect: "
  499. "Test succeeded at %s: got %s",
  500. devpath, nonce_hex);
  501. free(nonce_hex);
  502. } else
  503. return false;
  504. if (serial_claim(devpath, api)) {
  505. const char *claimedby = serial_claim(devpath, api)->dname;
  506. applog(LOG_DEBUG, "Icarus device %s already claimed by other driver: %s", devpath, claimedby);
  507. return false;
  508. }
  509. /* We have a real Icarus! */
  510. struct cgpu_info *icarus;
  511. icarus = calloc(1, sizeof(struct cgpu_info));
  512. icarus->api = api;
  513. icarus->device_path = strdup(devpath);
  514. icarus->threads = 1;
  515. add_cgpu(icarus);
  516. applog(LOG_INFO, "Found %s %u at %s",
  517. icarus->api->name, icarus->device_id,
  518. devpath);
  519. applog(LOG_DEBUG, "%s %u: Init: baud=%d work_division=%d fpga_count=%d",
  520. icarus->api->name,
  521. icarus->device_id, baud, work_division, fpga_count);
  522. icarus->cgpu_data = info;
  523. info->nonce_mask = mask(work_division);
  524. info->golden_hashes = (golden_nonce_val & info->nonce_mask) * fpga_count;
  525. timersub(&tv_finish, &tv_start, &(info->golden_tv));
  526. set_timing_mode(this_option_offset, icarus);
  527. return true;
  528. }
  529. static bool icarus_detect_one(const char *devpath)
  530. {
  531. struct ICARUS_INFO *info = calloc(1, sizeof(struct ICARUS_INFO));
  532. if (unlikely(!info))
  533. quit(1, "Failed to malloc ICARUS_INFO");
  534. info->baud = ICARUS_IO_SPEED;
  535. info->work_division = 2;
  536. info->fpga_count = 2;
  537. info->quirk_reopen = 1;
  538. info->Hs = ICARUS_REV3_HASH_TIME;
  539. info->timing_mode = MODE_DEFAULT;
  540. if (!icarus_detect_custom(devpath, &icarus_api, info)) {
  541. free(info);
  542. return false;
  543. }
  544. return true;
  545. }
  546. static void icarus_detect()
  547. {
  548. serial_detect(&icarus_api, icarus_detect_one);
  549. }
  550. static bool icarus_prepare(struct thr_info *thr)
  551. {
  552. struct cgpu_info *icarus = thr->cgpu;
  553. struct ICARUS_INFO *info = icarus->cgpu_data;
  554. struct timeval now;
  555. int fd = icarus_open2(icarus->device_path, info->baud, true);
  556. if (unlikely(-1 == fd)) {
  557. applog(LOG_ERR, "Failed to open Icarus on %s",
  558. icarus->device_path);
  559. return false;
  560. }
  561. icarus->device_fd = fd;
  562. applog(LOG_INFO, "Opened Icarus on %s", icarus->device_path);
  563. gettimeofday(&now, NULL);
  564. get_datestamp(icarus->init, &now);
  565. struct icarus_state *state;
  566. thr->cgpu_data = state = calloc(1, sizeof(*state));
  567. state->firstrun = true;
  568. #ifdef HAVE_EPOLL
  569. int epollfd = epoll_create(2);
  570. if (epollfd != -1)
  571. {
  572. close(epollfd);
  573. thr->work_restart_fd = 0;
  574. }
  575. #endif
  576. return true;
  577. }
  578. static bool icarus_reopen(struct cgpu_info *icarus, struct icarus_state *state, int *fdp)
  579. {
  580. struct ICARUS_INFO *info = icarus->cgpu_data;
  581. // Reopen the serial port to workaround a USB-host-chipset-specific issue with the Icarus's buggy USB-UART
  582. icarus_close(icarus->device_fd);
  583. *fdp = icarus->device_fd = icarus_open(icarus->device_path, info->baud);
  584. if (unlikely(-1 == *fdp)) {
  585. applog(LOG_ERR, "%s %u: Failed to reopen on %s", icarus->api->name, icarus->device_id, icarus->device_path);
  586. state->firstrun = true;
  587. return false;
  588. }
  589. return true;
  590. }
  591. static int64_t icarus_scanhash(struct thr_info *thr, struct work *work,
  592. __maybe_unused int64_t max_nonce)
  593. {
  594. struct cgpu_info *icarus;
  595. int fd;
  596. int ret, lret;
  597. struct ICARUS_INFO *info;
  598. unsigned char ob_bin[64] = {0}, nonce_bin[ICARUS_READ_SIZE] = {0};
  599. char *ob_hex;
  600. uint32_t nonce;
  601. int64_t hash_count;
  602. struct timeval tv_start, elapsed;
  603. struct timeval tv_history_start, tv_history_finish;
  604. double Ti, Xi;
  605. int curr_hw_errors, i;
  606. bool was_hw_error;
  607. struct ICARUS_HISTORY *history0, *history;
  608. int count;
  609. double Hs, W, fullnonce;
  610. int read_count;
  611. int64_t estimate_hashes;
  612. uint32_t values;
  613. int64_t hash_count_range;
  614. elapsed.tv_sec = elapsed.tv_usec = 0;
  615. icarus = thr->cgpu;
  616. struct icarus_state *state = thr->cgpu_data;
  617. // Prepare the next work immediately
  618. memcpy(ob_bin, work->midstate, 32);
  619. memcpy(ob_bin + 52, work->data + 64, 12);
  620. if (!(memcmp(&ob_bin[56], "\xff\xff\xff\xff", 4)
  621. || memcmp(&ob_bin, "\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0", 32))) {
  622. // This sequence is used on cairnsmore bitstreams for commands, NEVER send it otherwise
  623. applog(LOG_WARNING, "%s %u: Received job attempting to send a command, corrupting it!",
  624. icarus->api->name, icarus->device_id);
  625. ob_bin[56] = 0;
  626. }
  627. rev(ob_bin, 32);
  628. rev(ob_bin + 52, 12);
  629. // Wait for the previous run's result
  630. fd = icarus->device_fd;
  631. info = icarus->cgpu_data;
  632. if (!state->firstrun) {
  633. if (state->changework)
  634. {
  635. state->changework = false;
  636. lret = 1;
  637. }
  638. else
  639. {
  640. /* Icarus will return 4 bytes (ICARUS_READ_SIZE) nonces or nothing */
  641. lret = icarus_gets(nonce_bin, fd, &state->tv_workfinish, thr, info->read_count);
  642. if (lret) {
  643. if (thr->work_restart) {
  644. // The prepared work is invalid, and the current work is abandoned
  645. // Go back to the main loop to get the next work, and stuff
  646. // Returning to the main loop will clear work_restart, so use a flag...
  647. state->changework = true;
  648. return 0;
  649. }
  650. if (info->quirk_reopen == 1 && !icarus_reopen(icarus, state, &fd))
  651. return -1;
  652. }
  653. }
  654. tv_start = state->tv_workstart;
  655. timersub(&state->tv_workfinish, &tv_start, &elapsed);
  656. }
  657. else
  658. if (fd == -1 && !icarus_reopen(icarus, state, &fd))
  659. return -1;
  660. #ifndef WIN32
  661. tcflush(fd, TCOFLUSH);
  662. #endif
  663. memcpy(&nonce, nonce_bin, sizeof(nonce_bin));
  664. nonce = be32toh(nonce);
  665. // Handle dynamic clocking for "subclass" devices
  666. // This needs to run before sending next job, since it hashes the command too
  667. if (info->dclk.freqM && likely(!state->firstrun)) {
  668. int qsec = ((4 * elapsed.tv_sec) + (elapsed.tv_usec / 250000)) ?: 1;
  669. for (int n = qsec; n; --n)
  670. dclk_gotNonces(&info->dclk);
  671. if (nonce && !test_nonce(&state->last_work, nonce, false))
  672. dclk_errorCount(&info->dclk, qsec);
  673. dclk_preUpdate(&info->dclk);
  674. dclk_updateFreq(&info->dclk, info->dclk_change_clock_func, thr);
  675. }
  676. gettimeofday(&state->tv_workstart, NULL);
  677. ret = icarus_write(fd, ob_bin, sizeof(ob_bin));
  678. if (ret) {
  679. icarus_close(fd);
  680. return -1; /* This should never happen */
  681. }
  682. if (opt_debug) {
  683. ob_hex = bin2hex(ob_bin, sizeof(ob_bin));
  684. if (ob_hex) {
  685. applog(LOG_DEBUG, "%s %u sent: %s",
  686. icarus->api->name,
  687. icarus->device_id, ob_hex);
  688. free(ob_hex);
  689. }
  690. }
  691. if (info->quirk_reopen == 2 && !icarus_reopen(icarus, state, &fd))
  692. return -1;
  693. work->blk.nonce = 0xffffffff;
  694. if (state->firstrun) {
  695. state->firstrun = false;
  696. memcpy(&state->last_work, work, sizeof(state->last_work));
  697. return 0;
  698. }
  699. // OK, done starting Icarus's next job... now process the last run's result!
  700. // aborted before becoming idle, get new work
  701. if (nonce == 0 && lret) {
  702. memcpy(&state->last_work, work, sizeof(state->last_work));
  703. // ONLY up to just when it aborted
  704. // We didn't read a reply so we don't subtract ICARUS_READ_TIME
  705. estimate_hashes = ((double)(elapsed.tv_sec)
  706. + ((double)(elapsed.tv_usec))/((double)1000000)) / info->Hs;
  707. // If some Serial-USB delay allowed the full nonce range to
  708. // complete it can't have done more than a full nonce
  709. if (unlikely(estimate_hashes > 0xffffffff))
  710. estimate_hashes = 0xffffffff;
  711. if (opt_debug) {
  712. applog(LOG_DEBUG, "%s %u no nonce = 0x%08llx hashes (%ld.%06lds)",
  713. icarus->api->name,
  714. icarus->device_id, estimate_hashes,
  715. elapsed.tv_sec, elapsed.tv_usec);
  716. }
  717. return estimate_hashes;
  718. }
  719. curr_hw_errors = icarus->hw_errors;
  720. submit_nonce(thr, &state->last_work, nonce);
  721. was_hw_error = (curr_hw_errors > icarus->hw_errors);
  722. memcpy(&state->last_work, work, sizeof(state->last_work));
  723. hash_count = (nonce & info->nonce_mask);
  724. hash_count++;
  725. hash_count *= info->fpga_count;
  726. if (opt_debug) {
  727. applog(LOG_DEBUG, "%s %u nonce = 0x%08x = 0x%08llx hashes (%ld.%06lds)",
  728. icarus->api->name,
  729. icarus->device_id, nonce, hash_count, elapsed.tv_sec, elapsed.tv_usec);
  730. }
  731. if (info->do_default_detection && elapsed.tv_sec >= DEFAULT_DETECT_THRESHOLD) {
  732. int MHs = (double)hash_count / ((double)elapsed.tv_sec * 1e6 + (double)elapsed.tv_usec);
  733. --info->do_default_detection;
  734. applog(LOG_DEBUG, "%s %u: Autodetect device speed: %d MH/s", icarus->api->name, icarus->device_id, MHs);
  735. if (MHs <= 370 || MHs > 420) {
  736. // Not a real Icarus: enable short timing
  737. applog(LOG_WARNING, "%s %u: Seems too %s to be an Icarus; calibrating with short timing", icarus->api->name, icarus->device_id, MHs>380?"fast":"slow");
  738. info->timing_mode = MODE_SHORT;
  739. info->do_icarus_timing = true;
  740. info->do_default_detection = 0;
  741. }
  742. else
  743. if (MHs <= 380) {
  744. // Real Icarus?
  745. if (!info->do_default_detection) {
  746. applog(LOG_DEBUG, "%s %u: Seems to be a real Icarus", icarus->api->name, icarus->device_id);
  747. info->read_count = (int)(info->fullnonce * TIME_FACTOR) - 1;
  748. }
  749. }
  750. else
  751. if (MHs <= 420) {
  752. // Enterpoint Cairnsmore1
  753. const char *old_name = icarus->api->name;
  754. int old_devid = icarus->device_id;
  755. convert_icarus_to_cairnsmore(icarus);
  756. info->do_default_detection = 0;
  757. applog(LOG_WARNING, "%s %u: Detected Cairnsmore1 device, upgrading driver to %s %u", old_name, old_devid, icarus->api->name, icarus->device_id);
  758. }
  759. }
  760. // ignore possible end condition values ... and hw errors
  761. if (info->do_icarus_timing
  762. && !was_hw_error
  763. && ((nonce & info->nonce_mask) > END_CONDITION)
  764. && ((nonce & info->nonce_mask) < (info->nonce_mask & ~END_CONDITION))) {
  765. gettimeofday(&tv_history_start, NULL);
  766. history0 = &(info->history[0]);
  767. if (history0->values == 0)
  768. timeradd(&tv_start, &history_sec, &(history0->finish));
  769. Ti = (double)(elapsed.tv_sec)
  770. + ((double)(elapsed.tv_usec))/((double)1000000)
  771. - ((double)ICARUS_READ_TIME(info->baud));
  772. Xi = (double)hash_count;
  773. history0->sumXiTi += Xi * Ti;
  774. history0->sumXi += Xi;
  775. history0->sumTi += Ti;
  776. history0->sumXi2 += Xi * Xi;
  777. history0->values++;
  778. if (history0->hash_count_max < hash_count)
  779. history0->hash_count_max = hash_count;
  780. if (history0->hash_count_min > hash_count || history0->hash_count_min == 0)
  781. history0->hash_count_min = hash_count;
  782. if (history0->values >= info->min_data_count
  783. && timercmp(&tv_start, &(history0->finish), >)) {
  784. for (i = INFO_HISTORY; i > 0; i--)
  785. memcpy(&(info->history[i]),
  786. &(info->history[i-1]),
  787. sizeof(struct ICARUS_HISTORY));
  788. // Initialise history0 to zero for summary calculation
  789. memset(history0, 0, sizeof(struct ICARUS_HISTORY));
  790. // We just completed a history data set
  791. // So now recalc read_count based on the whole history thus we will
  792. // initially get more accurate until it completes INFO_HISTORY
  793. // total data sets
  794. count = 0;
  795. for (i = 1 ; i <= INFO_HISTORY; i++) {
  796. history = &(info->history[i]);
  797. if (history->values >= MIN_DATA_COUNT) {
  798. count++;
  799. history0->sumXiTi += history->sumXiTi;
  800. history0->sumXi += history->sumXi;
  801. history0->sumTi += history->sumTi;
  802. history0->sumXi2 += history->sumXi2;
  803. history0->values += history->values;
  804. if (history0->hash_count_max < history->hash_count_max)
  805. history0->hash_count_max = history->hash_count_max;
  806. if (history0->hash_count_min > history->hash_count_min || history0->hash_count_min == 0)
  807. history0->hash_count_min = history->hash_count_min;
  808. }
  809. }
  810. // All history data
  811. Hs = (history0->values*history0->sumXiTi - history0->sumXi*history0->sumTi)
  812. / (history0->values*history0->sumXi2 - history0->sumXi*history0->sumXi);
  813. W = history0->sumTi/history0->values - Hs*history0->sumXi/history0->values;
  814. hash_count_range = history0->hash_count_max - history0->hash_count_min;
  815. values = history0->values;
  816. // Initialise history0 to zero for next data set
  817. memset(history0, 0, sizeof(struct ICARUS_HISTORY));
  818. fullnonce = W + Hs * (((double)0xffffffff) + 1);
  819. read_count = (int)(fullnonce * TIME_FACTOR) - 1;
  820. info->Hs = Hs;
  821. info->read_count = read_count;
  822. info->fullnonce = fullnonce;
  823. info->count = count;
  824. info->W = W;
  825. info->values = values;
  826. info->hash_count_range = hash_count_range;
  827. if (info->min_data_count < MAX_MIN_DATA_COUNT)
  828. info->min_data_count *= 2;
  829. else if (info->timing_mode == MODE_SHORT)
  830. info->do_icarus_timing = false;
  831. // applog(LOG_DEBUG, "%s %u Re-estimate: read_count=%d fullnonce=%fs history count=%d Hs=%e W=%e values=%d hash range=0x%08lx min data count=%u", icarus->api->name, icarus->device_id, read_count, fullnonce, count, Hs, W, values, hash_count_range, info->min_data_count);
  832. applog(LOG_DEBUG, "%s %u Re-estimate: Hs=%e W=%e read_count=%d fullnonce=%.3fs",
  833. icarus->api->name,
  834. icarus->device_id, Hs, W, read_count, fullnonce);
  835. }
  836. info->history_count++;
  837. gettimeofday(&tv_history_finish, NULL);
  838. timersub(&tv_history_finish, &tv_history_start, &tv_history_finish);
  839. timeradd(&tv_history_finish, &(info->history_time), &(info->history_time));
  840. }
  841. return hash_count;
  842. }
  843. static struct api_data *icarus_api_stats(struct cgpu_info *cgpu)
  844. {
  845. struct api_data *root = NULL;
  846. struct ICARUS_INFO *info = cgpu->cgpu_data;
  847. // Warning, access to these is not locked - but we don't really
  848. // care since hashing performance is way more important than
  849. // locking access to displaying API debug 'stats'
  850. // If locking becomes an issue for any of them, use copy_data=true also
  851. root = api_add_int(root, "read_count", &(info->read_count), false);
  852. root = api_add_double(root, "fullnonce", &(info->fullnonce), false);
  853. root = api_add_int(root, "count", &(info->count), false);
  854. root = api_add_hs(root, "Hs", &(info->Hs), false);
  855. root = api_add_double(root, "W", &(info->W), false);
  856. root = api_add_uint(root, "total_values", &(info->values), false);
  857. root = api_add_uint64(root, "range", &(info->hash_count_range), false);
  858. root = api_add_uint64(root, "history_count", &(info->history_count), false);
  859. root = api_add_timeval(root, "history_time", &(info->history_time), false);
  860. root = api_add_uint(root, "min_data_count", &(info->min_data_count), false);
  861. root = api_add_uint(root, "timing_values", &(info->history[0].values), false);
  862. root = api_add_const(root, "timing_mode", timing_mode_str(info->timing_mode), false);
  863. root = api_add_bool(root, "is_timing", &(info->do_icarus_timing), false);
  864. root = api_add_int(root, "baud", &(info->baud), false);
  865. root = api_add_int(root, "work_division", &(info->work_division), false);
  866. root = api_add_int(root, "fpga_count", &(info->fpga_count), false);
  867. return root;
  868. }
  869. static void icarus_shutdown(struct thr_info *thr)
  870. {
  871. struct cgpu_info *icarus = thr->cgpu;
  872. icarus_close(icarus->device_fd);
  873. free(thr->cgpu_data);
  874. }
  875. struct device_api icarus_api = {
  876. .dname = "icarus",
  877. .name = "ICA",
  878. .api_detect = icarus_detect,
  879. .get_api_stats = icarus_api_stats,
  880. .thread_prepare = icarus_prepare,
  881. .scanhash = icarus_scanhash,
  882. .thread_shutdown = icarus_shutdown,
  883. };