driver-hashbusterusb.c 16 KB

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  1. /*
  2. * Copyright 2013 Luke Dashjr
  3. * Copyright 2013 Vladimir Strinski
  4. * Copyright 2013 HashBuster team
  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. #include "config.h"
  12. #include <stdbool.h>
  13. #include <stdint.h>
  14. #include <string.h>
  15. #include "deviceapi.h"
  16. #include "driver-bitfury.h"
  17. #include "libbitfury.h"
  18. #include "logging.h"
  19. #include "lowlevel.h"
  20. #include "lowl-usb.h"
  21. #include "miner.h"
  22. #define HASHBUSTER_USB_PRODUCT "HashBuster"
  23. #define HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER 61
  24. BFG_REGISTER_DRIVER(hashbusterusb_drv)
  25. static const struct bfg_set_device_definition hashbusterusb_set_device_funcs[];
  26. struct hashbusterusb_state {
  27. uint16_t voltage;
  28. struct timeval identify_started;
  29. bool identify_requested;
  30. };
  31. static
  32. bool hashbusterusb_io(struct lowl_usb_endpoint * const h, unsigned char *buf, unsigned char *cmd)
  33. {
  34. char x[0x81];
  35. bool rv = true;
  36. if (unlikely(opt_dev_protocol))
  37. {
  38. bin2hex(x, cmd, 0x40);
  39. applog(LOG_DEBUG, "%s(%p): SEND: %s", __func__, h, x);
  40. }
  41. do // Workaround for PIC USB buffer corruption. We should repeat last packet if receive FF
  42. {
  43. do
  44. {
  45. usb_write(h, cmd, 64);
  46. } while (usb_read(h, buf, 64) != 64);
  47. } while(buf[0]==0xFF);
  48. if (unlikely(opt_dev_protocol))
  49. {
  50. bin2hex(x, buf, 0x40);
  51. applog(LOG_DEBUG, "%s(%p): RECV: %s", __func__, h, x);
  52. }
  53. return rv;
  54. }
  55. static
  56. bool hashbusterusb_spi_config(struct lowl_usb_endpoint * const h, const uint8_t mode, const uint8_t miso, const uint32_t freq)
  57. {
  58. uint8_t buf[0x40] = {'\x01', '\x01'};
  59. if (!hashbusterusb_io(h, buf, buf))
  60. return false;
  61. return (buf[1] == '\x00');
  62. }
  63. static
  64. bool hashbusterusb_spi_disable(struct lowl_usb_endpoint * const h)
  65. {
  66. uint8_t buf[0x40] = {'\x01', '\x00'};
  67. if (!hashbusterusb_io(h, buf, buf))
  68. return false;
  69. return (buf[1] == '\x00');
  70. }
  71. static
  72. bool hashbusterusb_spi_reset(struct lowl_usb_endpoint * const h, uint8_t chips)
  73. {
  74. uint8_t buf[0x40] = {'\x02', '\x00', chips};
  75. if (!hashbusterusb_io(h, buf, buf))
  76. return false;
  77. return (buf[1] == '\x00');
  78. }
  79. static
  80. bool hashbusterusb_spi_transfer(struct lowl_usb_endpoint * const h, void * const buf, const void * const data, size_t datasz)
  81. {
  82. if (datasz > HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER)
  83. return false;
  84. uint8_t cbuf[0x40] = {'\x03', '\x00', datasz};
  85. memcpy(&cbuf[3], data, datasz);
  86. if (!hashbusterusb_io(h, cbuf, cbuf))
  87. return false;
  88. if (cbuf[2] != datasz)
  89. return false;
  90. memcpy(buf, &cbuf[3], datasz);
  91. return true;
  92. }
  93. static
  94. bool hashbusterusb_spi_txrx(struct spi_port * const port)
  95. {
  96. struct lowl_usb_endpoint * const h = port->userp;
  97. const uint8_t *wrbuf = spi_gettxbuf(port);
  98. uint8_t *rdbuf = spi_getrxbuf(port);
  99. size_t bufsz = spi_getbufsz(port);
  100. hashbusterusb_spi_disable(h);
  101. hashbusterusb_spi_reset(h, 0x10);
  102. hashbusterusb_spi_config(h, port->mode, 0, port->speed);
  103. while (bufsz >= HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER)
  104. {
  105. if (!hashbusterusb_spi_transfer(h, rdbuf, wrbuf, HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER))
  106. return false;
  107. rdbuf += HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER;
  108. wrbuf += HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER;
  109. bufsz -= HASHBUSTER_MAX_BYTES_PER_SPI_TRANSFER;
  110. }
  111. if (bufsz > 0)
  112. {
  113. if (!hashbusterusb_spi_transfer(h, rdbuf, wrbuf, bufsz))
  114. return false;
  115. }
  116. return true;
  117. }
  118. static
  119. bool hashbusterusb_lowl_match(const struct lowlevel_device_info * const info)
  120. {
  121. return lowlevel_match_id(info, &lowl_usb, 0xFA04, 0x000D);
  122. }
  123. static
  124. bool hashbusterusb_lowl_probe(const struct lowlevel_device_info * const info)
  125. {
  126. struct cgpu_info *cgpu = NULL;
  127. struct bitfury_device **devicelist, *bitfury;
  128. struct spi_port *port;
  129. int j;
  130. struct cgpu_info dummy_cgpu;
  131. const char * const product = info->product;
  132. char *serial = info->serial;
  133. libusb_device_handle *h;
  134. if (info->lowl != &lowl_usb)
  135. applogr(false, LOG_DEBUG, "%s: Matched \"%s\" %s, but lowlevel driver is not usb_generic!",
  136. __func__, product, info->devid);
  137. if (info->vid != 0xFA04 || info->pid != 0x000D)
  138. applogr(false, LOG_DEBUG, "%s: Wrong VID/PID", __func__);
  139. libusb_device *dev = info->lowl_data;
  140. if ( (j = libusb_open(dev, &h)) )
  141. applogr(false, LOG_ERR, "%s: Failed to open %s: %s",
  142. __func__, info->devid, bfg_strerror(j, BST_LIBUSB));
  143. if ( (j = libusb_set_configuration(h, 1)) )
  144. {
  145. libusb_close(h);
  146. applogr(false, LOG_ERR, "%s: Failed to set configuration 1 on %s: %s",
  147. __func__, info->devid, bfg_strerror(j, BST_LIBUSB));
  148. }
  149. if ( (j = libusb_claim_interface(h, 0)) )
  150. {
  151. libusb_close(h);
  152. applogr(false, LOG_ERR, "%s: Failed to claim interface 0 on %s: %s",
  153. __func__, info->devid, bfg_strerror(j, BST_LIBUSB));
  154. }
  155. struct lowl_usb_endpoint * const ep = usb_open_ep_pair(h, 0x81, 64, 0x01, 64);
  156. usb_ep_set_timeouts_ms(ep, 100, 0);
  157. unsigned char OUTPacket[64];
  158. unsigned char INPacket[64];
  159. OUTPacket[0] = 0xFE;
  160. hashbusterusb_io(ep, INPacket, OUTPacket);
  161. if (INPacket[1] == 0x18)
  162. {
  163. // Turn on miner PSU
  164. OUTPacket[0] = 0x10;
  165. OUTPacket[1] = 0x00;
  166. OUTPacket[2] = 0x01;
  167. hashbusterusb_io(ep, INPacket, OUTPacket);
  168. }
  169. OUTPacket[0] = '\x20';
  170. hashbusterusb_io(ep, INPacket, OUTPacket);
  171. if (!memcmp(INPacket, "\x20\0", 2))
  172. {
  173. // 64-bit BE serial number
  174. uint64_t sernum = 0;
  175. for (j = 0; j < 8; ++j)
  176. sernum |= (uint64_t)INPacket[j + 2] << (j * 8);
  177. serial = malloc((8 * 2) + 1);
  178. sprintf(serial, "%08"PRIX64, sernum);
  179. }
  180. else
  181. serial = maybe_strdup(info->serial);
  182. int chip_n;
  183. port = malloc(sizeof(*port));
  184. port->cgpu = &dummy_cgpu;
  185. port->txrx = hashbusterusb_spi_txrx;
  186. port->userp = ep;
  187. port->repr = hashbusterusb_drv.dname;
  188. port->logprio = LOG_DEBUG;
  189. port->speed = 100000;
  190. port->mode = 0;
  191. chip_n = libbitfury_detectChips1(port);
  192. if (unlikely(!chip_n))
  193. chip_n = libbitfury_detectChips1(port);
  194. if (unlikely(!chip_n))
  195. {
  196. applog(LOG_WARNING, "%s: No chips found on %s (serial \"%s\")",
  197. __func__, info->devid, serial);
  198. fail:
  199. usb_close_ep(ep);
  200. free(port);
  201. free(serial);
  202. libusb_release_interface(h, 0);
  203. libusb_close(h);
  204. return false;
  205. }
  206. if (bfg_claim_libusb(&hashbusterusb_drv, true, dev))
  207. goto fail;
  208. {
  209. devicelist = malloc(sizeof(*devicelist) * chip_n);
  210. for (j = 0; j < chip_n; ++j)
  211. {
  212. devicelist[j] = bitfury = malloc(sizeof(*bitfury));
  213. *bitfury = (struct bitfury_device){
  214. .spi = port,
  215. .slot = 0,
  216. .fasync = j,
  217. };
  218. }
  219. cgpu = malloc(sizeof(*cgpu));
  220. *cgpu = (struct cgpu_info){
  221. .drv = &hashbusterusb_drv,
  222. .set_device_funcs = hashbusterusb_set_device_funcs,
  223. .procs = chip_n,
  224. .device_data = devicelist,
  225. .cutofftemp = 200,
  226. .threads = 1,
  227. .device_path = strdup(info->devid),
  228. .dev_manufacturer = maybe_strdup(info->manufacturer),
  229. .dev_product = maybe_strdup(product),
  230. .dev_serial = serial,
  231. .deven = DEV_ENABLED,
  232. };
  233. }
  234. return add_cgpu(cgpu);
  235. }
  236. static
  237. bool hashbusterusb_init(struct thr_info * const thr)
  238. {
  239. struct cgpu_info * const cgpu = thr->cgpu, *proc;
  240. struct bitfury_device **devicelist;
  241. struct bitfury_device *bitfury;
  242. struct hashbusterusb_state * const state = malloc(sizeof(*state));
  243. *state = (struct hashbusterusb_state){
  244. .voltage = 0,
  245. };
  246. cgpu_setup_control_requests(cgpu);
  247. for (proc = thr->cgpu; proc; proc = proc->next_proc)
  248. {
  249. devicelist = proc->device_data;
  250. bitfury = devicelist[proc->proc_id];
  251. proc->device_data = bitfury;
  252. proc->thr[0]->cgpu_data = state;
  253. bitfury->spi->cgpu = proc;
  254. bitfury_init_chip(proc);
  255. bitfury->osc6_bits = 53;
  256. bitfury_send_reinit(bitfury->spi, bitfury->slot, bitfury->fasync, bitfury->osc6_bits);
  257. bitfury_init_freq_stat(&bitfury->chip_stat, 52, 56);
  258. if (proc->proc_id == proc->procs - 1)
  259. free(devicelist);
  260. }
  261. timer_set_now(&thr->tv_poll);
  262. cgpu->status = LIFE_INIT2;
  263. return true;
  264. }
  265. static void hashbusterusb_set_colour(struct cgpu_info *, uint8_t, uint8_t, uint8_t);
  266. static
  267. void hashbusterusb_poll(struct thr_info * const master_thr)
  268. {
  269. struct hashbusterusb_state * const state = master_thr->cgpu_data;
  270. struct cgpu_info * const cgpu = master_thr->cgpu;
  271. if (state->identify_requested)
  272. {
  273. if (!timer_isset(&state->identify_started))
  274. hashbusterusb_set_colour(cgpu, 0xff, 0, 0xff);
  275. timer_set_delay_from_now(&state->identify_started, 5000000);
  276. state->identify_requested = false;
  277. }
  278. bitfury_do_io(master_thr);
  279. if (timer_passed(&state->identify_started, NULL))
  280. {
  281. hashbusterusb_set_colour(cgpu, 0, 0x7e, 0);
  282. timer_unset(&state->identify_started);
  283. }
  284. }
  285. static
  286. bool hashbusterusb_get_stats(struct cgpu_info * const cgpu)
  287. {
  288. bool rv = false;
  289. struct cgpu_info *proc;
  290. if (cgpu != cgpu->device)
  291. return true;
  292. struct bitfury_device * const bitfury = cgpu->device_data;
  293. struct spi_port * const spi = bitfury->spi;
  294. struct lowl_usb_endpoint * const h = spi->userp;
  295. uint8_t buf[0x40] = {'\x04'};
  296. if (hashbusterusb_io(h, buf, buf))
  297. {
  298. if (buf[1])
  299. {
  300. rv = true;
  301. for (proc = cgpu; proc; proc = proc->next_proc)
  302. proc->temp = buf[1];
  303. }
  304. }
  305. buf[0] = '\x15';
  306. if (hashbusterusb_io(h, buf, buf))
  307. {
  308. if (!memcmp(buf, "\x15\0", 2))
  309. {
  310. rv = true;
  311. const uint16_t voltage = (buf[3] << 8) | buf[2];
  312. for (proc = cgpu; proc; proc = proc->next_proc)
  313. {
  314. struct hashbusterusb_state * const state = proc->thr[0]->cgpu_data;
  315. state->voltage = voltage;
  316. }
  317. }
  318. }
  319. return rv;
  320. }
  321. static
  322. void hashbusterusb_shutdown(struct thr_info *thr)
  323. {
  324. struct cgpu_info *cgpu = thr->cgpu;
  325. struct bitfury_device * const bitfury = cgpu->device_data;
  326. struct spi_port * const spi = bitfury->spi;
  327. struct lowl_usb_endpoint * const h = spi->userp;
  328. // Shutdown PSU
  329. unsigned char OUTPacket[64];
  330. unsigned char INPacket[64];
  331. OUTPacket[0] = 0x10;
  332. OUTPacket[1] = 0x00;
  333. OUTPacket[2] = 0x00;
  334. hashbusterusb_io(h, INPacket, OUTPacket);
  335. }
  336. static
  337. void hashbusterusb_set_colour(struct cgpu_info * const cgpu, const uint8_t red, const uint8_t green, const uint8_t blue)
  338. {
  339. struct bitfury_device * const bitfury = cgpu->device_data;
  340. struct spi_port * const spi = bitfury->spi;
  341. struct lowl_usb_endpoint * const h = spi->userp;
  342. uint8_t buf[0x40] = {'\x30', 0, red, green, blue};
  343. hashbusterusb_io(h, buf, buf);
  344. applog(LOG_DEBUG, "%s: Set LED colour to r=0x%x g=0x%x b=0x%x",
  345. cgpu->dev_repr, (unsigned)red, (unsigned)green, (unsigned)blue);
  346. }
  347. static
  348. bool hashbusterusb_identify(struct cgpu_info * const proc)
  349. {
  350. struct hashbusterusb_state * const state = proc->thr[0]->cgpu_data;
  351. state->identify_requested = true;
  352. return true;
  353. }
  354. static
  355. bool hashbusterusb_set_voltage(struct cgpu_info * const proc, const uint16_t nv)
  356. {
  357. struct bitfury_device * const bitfury = proc->device_data;
  358. struct spi_port * const spi = bitfury->spi;
  359. struct lowl_usb_endpoint * const h = spi->userp;
  360. unsigned char buf[0x40] = {0x11, 0, (nv & 0xff), (nv >> 8)};
  361. hashbusterusb_io(h, buf, buf);
  362. return !memcmp(buf, "\x11\0", 2);
  363. }
  364. static
  365. bool hashbusterusb_vrm_unlock(struct cgpu_info * const proc, const char * const code)
  366. {
  367. struct bitfury_device * const bitfury = proc->device_data;
  368. struct spi_port * const spi = bitfury->spi;
  369. struct lowl_usb_endpoint * const h = spi->userp;
  370. unsigned char buf[0x40] = {0x12};
  371. size_t size;
  372. size = strlen(code) >> 1;
  373. if (size > 63)
  374. size = 63;
  375. hex2bin(&buf[1], code, size);
  376. hashbusterusb_io(h, buf, buf);
  377. return !memcmp(buf, "\x12\0", 2);
  378. }
  379. static
  380. void hashbusterusb_vrm_lock(struct cgpu_info * const proc)
  381. {
  382. struct bitfury_device * const bitfury = proc->device_data;
  383. struct spi_port * const spi = bitfury->spi;
  384. struct lowl_usb_endpoint * const h = spi->userp;
  385. unsigned char buf[0x40] = {0x14};
  386. hashbusterusb_io(h, buf, buf);
  387. }
  388. static
  389. struct api_data *hashbusterusb_api_extra_device_stats(struct cgpu_info * const cgpu)
  390. {
  391. struct hashbusterusb_state * const state = cgpu->thr[0]->cgpu_data;
  392. struct api_data *root = bitfury_api_device_status(cgpu);
  393. float volts = state->voltage;
  394. volts /= 1000.;
  395. root = api_add_volts(root, "Voltage", &volts, true);
  396. return root;
  397. }
  398. static
  399. const char *hashbusterusb_rpcset_vrmlock(struct cgpu_info * const proc, const char * const option, const char * const setting, char * const replybuf, enum bfg_set_device_replytype * const success)
  400. {
  401. cgpu_request_control(proc->device);
  402. hashbusterusb_vrm_lock(proc);
  403. cgpu_release_control(proc->device);
  404. return NULL;
  405. }
  406. static
  407. const char *hashbusterusb_rpcset_vrmunlock(struct cgpu_info * const proc, const char * const option, const char * const setting, char * const replybuf, enum bfg_set_device_replytype * const success)
  408. {
  409. cgpu_request_control(proc->device);
  410. const bool rv = hashbusterusb_vrm_unlock(proc, setting);
  411. cgpu_release_control(proc->device);
  412. if (!rv)
  413. return "Unlock error";
  414. return NULL;
  415. }
  416. static
  417. const char *hashbusterusb_rpcset_voltage(struct cgpu_info * const proc, const char * const option, const char * const setting, char * const replybuf, enum bfg_set_device_replytype * const success)
  418. {
  419. const int val = atof(setting) * 1000;
  420. if (val < 600 || val > 1100)
  421. return "Invalid PSU voltage value";
  422. cgpu_request_control(proc->device);
  423. const bool rv = hashbusterusb_set_voltage(proc, val);
  424. cgpu_release_control(proc->device);
  425. if (!rv)
  426. return "Voltage change error";
  427. return NULL;
  428. }
  429. static const struct bfg_set_device_definition hashbusterusb_set_device_funcs[] = {
  430. {"baud" , bitfury_set_baud , "SPI baud rate"},
  431. {"osc6_bits", bitfury_set_osc6_bits , "range 1-"BITFURY_MAX_OSC6_BITS_S" (slow to fast)"},
  432. {"vrmlock" , hashbusterusb_rpcset_vrmlock , "Lock the VRM voltage to safe range"},
  433. {"vrmunlock", hashbusterusb_rpcset_vrmunlock, "Allow setting potentially unsafe voltages (requires unlock code)"},
  434. {"voltage" , hashbusterusb_rpcset_voltage , "Set voltage"},
  435. {NULL},
  436. };
  437. #ifdef HAVE_CURSES
  438. void hashbusterusb_tui_wlogprint_choices(struct cgpu_info * const proc)
  439. {
  440. wlogprint("[V]oltage ");
  441. wlogprint("[O]scillator bits ");
  442. //wlogprint("[F]an speed "); // To be implemented
  443. wlogprint("[U]nlock VRM ");
  444. wlogprint("[L]ock VRM ");
  445. }
  446. const char *hashbusterusb_tui_handle_choice(struct cgpu_info * const proc, const int input)
  447. {
  448. switch (input)
  449. {
  450. case 'v': case 'V':
  451. {
  452. const int val = curses_int("Set PSU voltage (range 600mV-1100mV. VRM unlock is required for over 870mV)");
  453. if (val < 600 || val > 1100)
  454. return "Invalid PSU voltage value\n";
  455. cgpu_request_control(proc->device);
  456. const bool rv = hashbusterusb_set_voltage(proc, val);
  457. cgpu_release_control(proc->device);
  458. if (!rv)
  459. return "Voltage change error\n";
  460. return "Voltage change successful\n";
  461. }
  462. case 'u': case 'U':
  463. {
  464. char *input = curses_input("VRM unlock code");
  465. if (!input)
  466. input = calloc(1, 1);
  467. cgpu_request_control(proc->device);
  468. const bool rv = hashbusterusb_vrm_unlock(proc, input);
  469. cgpu_release_control(proc->device);
  470. free(input);
  471. if (!rv)
  472. return "Unlock error\n";
  473. return "Unlocking PSU\n";
  474. }
  475. case 'o': case 'O':
  476. return bitfury_tui_handle_choice(proc, input);
  477. case 'l': case 'L':
  478. {
  479. cgpu_request_control(proc->device);
  480. hashbusterusb_vrm_lock(proc);
  481. cgpu_release_control(proc->device);
  482. return "VRM lock\n";
  483. }
  484. }
  485. return NULL;
  486. }
  487. void hashbusterusb_wlogprint_status(struct cgpu_info * const proc)
  488. {
  489. struct hashbusterusb_state * const state = proc->thr[0]->cgpu_data;
  490. bitfury_wlogprint_status(proc);
  491. wlogprint("PSU voltage: %umV\n", (unsigned)state->voltage);
  492. }
  493. #endif
  494. struct device_drv hashbusterusb_drv = {
  495. .dname = "hashbusterusb",
  496. .name = "HBR",
  497. .lowl_match = hashbusterusb_lowl_match,
  498. .lowl_probe = hashbusterusb_lowl_probe,
  499. .thread_init = hashbusterusb_init,
  500. .thread_disable = bitfury_disable,
  501. .thread_enable = bitfury_enable,
  502. .thread_shutdown = hashbusterusb_shutdown,
  503. .minerloop = minerloop_async,
  504. .job_prepare = bitfury_job_prepare,
  505. .job_start = bitfury_noop_job_start,
  506. .poll = hashbusterusb_poll,
  507. .job_process_results = bitfury_job_process_results,
  508. .get_stats = hashbusterusb_get_stats,
  509. .get_api_extra_device_detail = bitfury_api_device_detail,
  510. .get_api_extra_device_status = hashbusterusb_api_extra_device_stats,
  511. .identify_device = hashbusterusb_identify,
  512. #ifdef HAVE_CURSES
  513. .proc_wlogprint_status = hashbusterusb_wlogprint_status,
  514. .proc_tui_wlogprint_choices = hashbusterusb_tui_wlogprint_choices,
  515. .proc_tui_handle_choice = hashbusterusb_tui_handle_choice,
  516. #endif
  517. };