driver-littlefury.c 10 KB

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  1. /*
  2. * Copyright 2013 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. #include <stdbool.h>
  11. #include <stdint.h>
  12. #include <string.h>
  13. #include <unistd.h>
  14. #include "deviceapi.h"
  15. #include "fpgautils.h"
  16. #include "libbitfury.h"
  17. #include "logging.h"
  18. #include "miner.h"
  19. #include "spidevc.h"
  20. #include "util.h"
  21. enum littlefury_opcode {
  22. LFOP_VERSION = 0,
  23. LFOP_SPI = 1,
  24. LFOP_REGVOLT = 2,
  25. LFOP_REGINFO = 3,
  26. LFOP_REGPWR = 4,
  27. LFOP_TEMP = 5,
  28. LFOP_LED = 6,
  29. LFOP_ADC = 7,
  30. };
  31. struct device_drv littlefury_drv;
  32. static uint16_t crc16tab[] = {
  33. 0x0000,0x1021,0x2042,0x3063,0x4084,0x50a5,0x60c6,0x70e7,
  34. 0x8108,0x9129,0xa14a,0xb16b,0xc18c,0xd1ad,0xe1ce,0xf1ef,
  35. 0x1231,0x0210,0x3273,0x2252,0x52b5,0x4294,0x72f7,0x62d6,
  36. 0x9339,0x8318,0xb37b,0xa35a,0xd3bd,0xc39c,0xf3ff,0xe3de,
  37. 0x2462,0x3443,0x0420,0x1401,0x64e6,0x74c7,0x44a4,0x5485,
  38. 0xa56a,0xb54b,0x8528,0x9509,0xe5ee,0xf5cf,0xc5ac,0xd58d,
  39. 0x3653,0x2672,0x1611,0x0630,0x76d7,0x66f6,0x5695,0x46b4,
  40. 0xb75b,0xa77a,0x9719,0x8738,0xf7df,0xe7fe,0xd79d,0xc7bc,
  41. 0x48c4,0x58e5,0x6886,0x78a7,0x0840,0x1861,0x2802,0x3823,
  42. 0xc9cc,0xd9ed,0xe98e,0xf9af,0x8948,0x9969,0xa90a,0xb92b,
  43. 0x5af5,0x4ad4,0x7ab7,0x6a96,0x1a71,0x0a50,0x3a33,0x2a12,
  44. 0xdbfd,0xcbdc,0xfbbf,0xeb9e,0x9b79,0x8b58,0xbb3b,0xab1a,
  45. 0x6ca6,0x7c87,0x4ce4,0x5cc5,0x2c22,0x3c03,0x0c60,0x1c41,
  46. 0xedae,0xfd8f,0xcdec,0xddcd,0xad2a,0xbd0b,0x8d68,0x9d49,
  47. 0x7e97,0x6eb6,0x5ed5,0x4ef4,0x3e13,0x2e32,0x1e51,0x0e70,
  48. 0xff9f,0xefbe,0xdfdd,0xcffc,0xbf1b,0xaf3a,0x9f59,0x8f78,
  49. 0x9188,0x81a9,0xb1ca,0xa1eb,0xd10c,0xc12d,0xf14e,0xe16f,
  50. 0x1080,0x00a1,0x30c2,0x20e3,0x5004,0x4025,0x7046,0x6067,
  51. 0x83b9,0x9398,0xa3fb,0xb3da,0xc33d,0xd31c,0xe37f,0xf35e,
  52. 0x02b1,0x1290,0x22f3,0x32d2,0x4235,0x5214,0x6277,0x7256,
  53. 0xb5ea,0xa5cb,0x95a8,0x8589,0xf56e,0xe54f,0xd52c,0xc50d,
  54. 0x34e2,0x24c3,0x14a0,0x0481,0x7466,0x6447,0x5424,0x4405,
  55. 0xa7db,0xb7fa,0x8799,0x97b8,0xe75f,0xf77e,0xc71d,0xd73c,
  56. 0x26d3,0x36f2,0x0691,0x16b0,0x6657,0x7676,0x4615,0x5634,
  57. 0xd94c,0xc96d,0xf90e,0xe92f,0x99c8,0x89e9,0xb98a,0xa9ab,
  58. 0x5844,0x4865,0x7806,0x6827,0x18c0,0x08e1,0x3882,0x28a3,
  59. 0xcb7d,0xdb5c,0xeb3f,0xfb1e,0x8bf9,0x9bd8,0xabbb,0xbb9a,
  60. 0x4a75,0x5a54,0x6a37,0x7a16,0x0af1,0x1ad0,0x2ab3,0x3a92,
  61. 0xfd2e,0xed0f,0xdd6c,0xcd4d,0xbdaa,0xad8b,0x9de8,0x8dc9,
  62. 0x7c26,0x6c07,0x5c64,0x4c45,0x3ca2,0x2c83,0x1ce0,0x0cc1,
  63. 0xef1f,0xff3e,0xcf5d,0xdf7c,0xaf9b,0xbfba,0x8fd9,0x9ff8,
  64. 0x6e17,0x7e36,0x4e55,0x5e74,0x2e93,0x3eb2,0x0ed1,0x1ef0,
  65. };
  66. static
  67. uint16_t crc16_floating(uint16_t next_byte, uint16_t seed)
  68. {
  69. return ((seed << 8) ^ crc16tab[(seed >> 8) ^ next_byte]) & 0xFFFF;
  70. }
  71. static
  72. uint16_t crc16(void *p, size_t sz)
  73. {
  74. const uint8_t * const s = p;
  75. uint16_t crc = 0xFFFF;
  76. for (size_t i = 0; i < sz; ++i)
  77. crc = crc16_floating(s[i], crc);
  78. return crc;
  79. }
  80. static
  81. bool bitfury_do_packet(int prio, const char *repr, const int fd, void * const buf, uint8_t * const bufsz, const uint8_t op, const void * const payload, const uint8_t payloadsz)
  82. {
  83. uint16_t crc;
  84. size_t sz;
  85. ssize_t r;
  86. uint8_t pkt[0x106];
  87. bool b;
  88. {
  89. sz = 2 + 1 + 1 + payloadsz + 2;
  90. pkt[0] = 0xab;
  91. pkt[1] = 0xcd;
  92. pkt[2] = op;
  93. pkt[3] = payloadsz;
  94. if (payloadsz)
  95. memcpy(&pkt[4], payload, payloadsz);
  96. crc = crc16(&pkt[2], 2 + (size_t)payloadsz);
  97. pkt[sz - 2] = crc >> 8;
  98. pkt[sz - 1] = crc & 0xff;
  99. if (unlikely(opt_dev_protocol))
  100. {
  101. char hex[(sz * 2) + 1];
  102. bin2hex(hex, pkt, sz);
  103. applog(LOG_DEBUG, "%s: DEVPROTO: SEND %s", repr, hex);
  104. }
  105. r = write(fd, pkt, sz);
  106. if (sz != r)
  107. {
  108. applog(prio, "%s: Failed to write packet (%d bytes succeeded)", repr, (int)r);
  109. return false;
  110. }
  111. }
  112. {
  113. r = read(fd, pkt, 4);
  114. if (4 != r || pkt[0] != 0xab || pkt[1] != 0xcd || pkt[2] != op)
  115. {
  116. char hex[(r * 2) + 1];
  117. bin2hex(hex, pkt, r);
  118. applog(prio, "%s: DEVPROTO: RECV %s", repr, hex);
  119. applog(prio, "%s: Failed to read correct packet header", repr);
  120. return false;
  121. }
  122. sz = pkt[3] + 2;
  123. r = read(fd, &pkt[4], sz);
  124. if (sz != r)
  125. {
  126. char hex[(r * 2) + 1];
  127. bin2hex(hex, pkt, r);
  128. applog(prio, "%s: DEVPROTO: RECV %s", repr, hex);
  129. applog(prio, "%s: Failed to read packet payload (len=%d)", repr, (int)sz);
  130. return false;
  131. }
  132. crc = (pkt[sz + 2] << 8) | pkt[sz + 3];
  133. b = (crc != crc16(&pkt[2], sz));
  134. if (unlikely(opt_dev_protocol || b))
  135. {
  136. char hex[((sz + 4) * 2) + 1];
  137. bin2hex(hex, pkt, sz + 4);
  138. applog(b ? prio : LOG_DEBUG, "%s: DEVPROTO: RECV %s", repr, hex);
  139. if (b)
  140. {
  141. applog(prio, "%s: Packet checksum mismatch", repr);
  142. return false;
  143. }
  144. }
  145. memcpy(buf, &pkt[4], (*bufsz < pkt[3] ? pkt[3] : *bufsz));
  146. *bufsz = pkt[3];
  147. }
  148. return true;
  149. }
  150. static
  151. bool littlefury_txrx(struct spi_port *port)
  152. {
  153. const struct cgpu_info * const cgpu = port->cgpu;
  154. const void *wrbuf = spi_gettxbuf(port);
  155. void *rdbuf = spi_getrxbuf(port);
  156. size_t bufsz = spi_getbufsz(port);
  157. uint8_t rbufsz, xfer;
  158. const int logprio = port->logprio;
  159. const char * const repr = port->repr;
  160. const int fd = cgpu->device->device_fd;
  161. rbufsz = 1;
  162. if (!bitfury_do_packet(logprio, repr, fd, rdbuf, &rbufsz, LFOP_SPI, NULL, 0))
  163. return false;
  164. while (bufsz)
  165. {
  166. xfer = (bufsz > 32) ? 32 : bufsz;
  167. rbufsz = xfer;
  168. if (!bitfury_do_packet(logprio, repr, fd, rdbuf, &rbufsz, LFOP_SPI, wrbuf, xfer))
  169. return false;
  170. if (rbufsz < xfer)
  171. {
  172. applog(port->logprio, "%s: SPI: Got fewer bytes back than sent (%d < %d)",
  173. repr, rbufsz, xfer);
  174. return false;
  175. }
  176. bufsz -= xfer;
  177. rdbuf += xfer;
  178. wrbuf += xfer;
  179. }
  180. return true;
  181. }
  182. static
  183. bool littlefury_detect_one(const char *devpath)
  184. {
  185. int fd, chips;
  186. uint8_t buf[255], bufsz;
  187. struct spi_port spi;
  188. struct cgpu_info dummy;
  189. char *devname;
  190. fd = serial_open(devpath, 0, 10, true);
  191. applog(LOG_DEBUG, "%s: %s %s",
  192. littlefury_drv.dname,
  193. ((fd == -1) ? "Failed to open" : "Successfully opened"),
  194. devpath);
  195. if (unlikely(fd == -1))
  196. goto err;
  197. bufsz = sizeof(buf);
  198. if (!bitfury_do_packet(LOG_DEBUG, littlefury_drv.dname, fd, buf, &bufsz, LFOP_VERSION, NULL, 0))
  199. goto err;
  200. if (bufsz < 4)
  201. {
  202. applog(LOG_DEBUG, "%s: Incomplete version response", littlefury_drv.dname);
  203. goto err;
  204. }
  205. devname = strndup((char*)&buf[4], bufsz - 4);
  206. applog(LOG_DEBUG, "%s: Identified %s %d.%d.%d (features %02x)",
  207. littlefury_drv.dname, devname, buf[0], buf[1], buf[2], buf[3]);
  208. bufsz = sizeof(buf);
  209. if (!(bitfury_do_packet(LOG_DEBUG, littlefury_drv.dname, fd, buf, &bufsz, LFOP_REGPWR, "\1", 1) && bufsz && buf[0]))
  210. applog(LOG_WARNING, "%s: Unable to power on chip(s) for %s",
  211. littlefury_drv.dname, devpath);
  212. dummy.device = &dummy;
  213. dummy.device_fd = fd;
  214. spi = (struct spi_port){
  215. .txrx = littlefury_txrx,
  216. .cgpu = &dummy,
  217. .repr = littlefury_drv.dname,
  218. .logprio = LOG_DEBUG,
  219. };
  220. chips = libbitfury_detectChips(&spi);
  221. if (!chips) {
  222. applog(LOG_WARNING, "%s: No Bitfury chips detected on %s",
  223. littlefury_drv.dname, devpath);
  224. free(devname);
  225. goto err;
  226. } else {
  227. applog(LOG_DEBUG, "%s: %d chips detected",
  228. littlefury_drv.dname, chips);
  229. }
  230. bufsz = sizeof(buf);
  231. bitfury_do_packet(LOG_DEBUG, littlefury_drv.dname, fd, buf, &bufsz, LFOP_REGPWR, "\0", 1);
  232. serial_close(fd);
  233. struct cgpu_info *cgpu;
  234. cgpu = malloc(sizeof(*cgpu));
  235. *cgpu = (struct cgpu_info){
  236. .drv = &littlefury_drv,
  237. .device_path = strdup(devpath),
  238. .device_fd = -1,
  239. .deven = DEV_ENABLED,
  240. .procs = chips,
  241. .threads = 1,
  242. .name = devname,
  243. .cutofftemp = 85,
  244. };
  245. return add_cgpu(cgpu);
  246. err:
  247. return false;
  248. }
  249. static
  250. int littlefury_detect_auto(void)
  251. {
  252. return serial_autodetect(littlefury_detect_one, "LittleFury");
  253. }
  254. static
  255. void littlefury_detect(void)
  256. {
  257. serial_detect_auto(&littlefury_drv, littlefury_detect_one, littlefury_detect_auto);
  258. }
  259. static
  260. bool littlefury_thread_init(struct thr_info *thr)
  261. {
  262. struct cgpu_info * const cgpu = thr->cgpu;
  263. struct cgpu_info *proc;
  264. struct spi_port *spi;
  265. struct bitfury_device *bitfury;
  266. uint8_t buf[1], bufsz = 1;
  267. int fd;
  268. int i = 0;
  269. for (proc = cgpu; proc; proc = proc->next_proc)
  270. {
  271. spi = malloc(sizeof(*spi));
  272. *spi = (struct spi_port){
  273. .txrx = littlefury_txrx,
  274. .cgpu = proc,
  275. .repr = proc->proc_repr,
  276. .logprio = LOG_ERR,
  277. };
  278. bitfury = malloc(sizeof(*bitfury));
  279. *bitfury = (struct bitfury_device){
  280. .spi = spi,
  281. .chip = i++,
  282. };
  283. proc->device_data = bitfury;
  284. }
  285. fd = cgpu->device_fd = serial_open(cgpu->device_path, 0, 10, true);
  286. if (unlikely(fd == -1))
  287. {
  288. applog(LOG_DEBUG, "%s: %s %s",
  289. cgpu->dev_repr, "Failed to open", cgpu->device_path);
  290. return true;
  291. }
  292. if (!(bitfury_do_packet(LOG_DEBUG, littlefury_drv.dname, fd, buf, &bufsz, LFOP_REGPWR, "\1", 1) && bufsz && buf[0]))
  293. applog(LOG_WARNING, "%s: Unable to power on chip(s)", cgpu->dev_repr);
  294. return true;
  295. }
  296. static
  297. bool littlefury_do_io(struct thr_info *thr)
  298. {
  299. struct bitfury_device * const bitfury = thr->cgpu->device_data;
  300. bitfury->results_n = 0;
  301. libbitfury_sendHashData1(bitfury, thr->work);
  302. if (bitfury->job_switched)
  303. {
  304. mt_job_transition(thr);
  305. job_start_complete(thr);
  306. }
  307. if (thr->work && bitfury->results_n)
  308. for (int i = bitfury->results_n; i--; )
  309. submit_nonce(thr, thr->work, be32toh(bitfury->results[i]));
  310. timer_set_delay_from_now(&thr->tv_poll, 10000);
  311. return true;
  312. }
  313. static
  314. void littlefury_poll(struct thr_info *thr)
  315. {
  316. littlefury_do_io(thr);
  317. }
  318. static
  319. bool littlefury_job_prepare(struct thr_info *thr, struct work *work, __maybe_unused uint64_t max_nonce)
  320. {
  321. struct bitfury_device * const bitfury = thr->cgpu->device_data;
  322. work_to_payload(&bitfury->payload, thr->next_work);
  323. return true;
  324. }
  325. static
  326. void littlefury_job_start(struct thr_info *thr)
  327. {
  328. littlefury_do_io(thr);
  329. }
  330. static
  331. int64_t littlefury_job_process_results(struct thr_info *thr, struct work *work, bool stopping)
  332. {
  333. if (unlikely(stopping))
  334. timer_unset(&thr->tv_poll);
  335. return 0x100000000;
  336. }
  337. struct device_drv littlefury_drv = {
  338. .dname = "littlefury",
  339. .name = "LFY",
  340. .drv_detect = littlefury_detect,
  341. .minerloop = minerloop_async,
  342. .thread_init = littlefury_thread_init,
  343. .job_prepare = littlefury_job_prepare,
  344. .job_start = littlefury_job_start,
  345. .poll = littlefury_poll,
  346. .job_process_results = littlefury_job_process_results,
  347. };