driver-klondike.c 18 KB

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  1. /*
  2. * Copyright 2013 Andrew Smith
  3. * Copyright 2013 Con Kolivas
  4. * Copyright 2013 Chris Savery
  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 <float.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 <math.h>
  20. #include "config.h"
  21. #ifdef WIN32
  22. #include <windows.h>
  23. #endif
  24. #include "compat.h"
  25. #include "miner.h"
  26. #include "usbutils.h"
  27. #define K1 "K1"
  28. #define K16 "K16"
  29. #define K64 "K64"
  30. #define MIDSTATE_BYTES 32
  31. #define MERKLE_OFFSET 64
  32. #define MERKLE_BYTES 12
  33. #define REPLY_SIZE 15 // adequate for all types of replies
  34. #define REPLY_BUFSIZE 16 // reply + 1 byte to mark used
  35. #define MAX_REPLY_COUNT 32 // more unhandled replies than this will result in data loss
  36. #define REPLY_WAIT_TIME 100 // poll interval for a cmd waiting it's reply
  37. #define CMD_REPLY_RETRIES 8 // how many retries for cmds
  38. #define MAX_WORK_COUNT 4 // for now, must be binary multiple and match firmware
  39. #define TACH_FACTOR 87890 // fan rpm divisor
  40. struct device_drv klondike_drv;
  41. typedef struct klondike_id {
  42. uint8_t version;
  43. uint8_t product[7];
  44. uint32_t serial;
  45. } IDENTITY;
  46. typedef struct klondike_status {
  47. uint8_t state;
  48. uint8_t chipcount;
  49. uint8_t slavecount;
  50. uint8_t workqc;
  51. uint8_t workid;
  52. uint8_t temp;
  53. uint8_t fanspeed;
  54. uint8_t errorcount;
  55. uint16_t hashcount;
  56. uint16_t maxcount;
  57. } WORKSTATUS;
  58. typedef struct _worktask {
  59. uint16_t pad1;
  60. uint8_t pad2;
  61. uint8_t workid;
  62. uint32_t midstate[8];
  63. uint32_t merkle[3];
  64. } WORKTASK;
  65. typedef struct _workresult {
  66. uint16_t pad;
  67. uint8_t device;
  68. uint8_t workid;
  69. uint32_t nonce;
  70. } WORKRESULT;
  71. typedef struct kondike_cfg {
  72. uint16_t hashclock;
  73. uint8_t temptarget;
  74. uint8_t tempcritical;
  75. uint8_t fantarget;
  76. uint8_t pad;
  77. } WORKCFG;
  78. typedef struct device_info {
  79. uint32_t noncecount;
  80. uint32_t nextworkid;
  81. uint16_t lasthashcount;
  82. uint64_t totalhashcount;
  83. uint32_t rangesize;
  84. uint32_t *chipstats;
  85. } DEVINFO;
  86. struct klondike_info {
  87. bool shutdown;
  88. pthread_rwlock_t stat_lock;
  89. struct thr_info replies_thr;
  90. WORKSTATUS *status;
  91. DEVINFO *devinfo;
  92. WORKCFG *cfg;
  93. char *replies;
  94. int nextreply;
  95. };
  96. IDENTITY KlondikeID;
  97. static double cvtKlnToC(uint8_t temp)
  98. {
  99. return (double)1/((double)1/(25+273.15) + log((double)temp*1000/(256-temp)/2200)/3987) - 273.15;
  100. }
  101. static int cvtCToKln(double deg)
  102. {
  103. double R = exp((1/(deg+273.15)-1/(273.15+25))*3987)*2200;
  104. return 256*R/(R+1000);
  105. }
  106. static char *SendCmdGetReply(struct cgpu_info *klncgpu, char Cmd, int device, int datalen, void *data)
  107. {
  108. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  109. char outbuf[64];
  110. int retries = CMD_REPLY_RETRIES;
  111. int chkreply = klninfo->nextreply;
  112. int sent, err;
  113. if (klncgpu->usbinfo.nodev)
  114. return NULL;
  115. outbuf[0] = Cmd;
  116. outbuf[1] = device;
  117. memcpy(outbuf+2, data, datalen);
  118. err = usb_write(klncgpu, outbuf, 2+datalen, &sent, C_REQUESTRESULTS);
  119. if (err < 0 || sent != 2+datalen) {
  120. applog(LOG_ERR, "%s (%s) Cmd:%c Dev:%d, write failed (%d:%d)", klncgpu->drv->dname, klncgpu->device_path, Cmd, device, sent, err);
  121. }
  122. while (retries-- > 0 && klninfo->shutdown == false) {
  123. cgsleep_ms(REPLY_WAIT_TIME);
  124. while (*(klninfo->replies + chkreply*REPLY_BUFSIZE) != Cmd || *(klninfo->replies + chkreply*REPLY_BUFSIZE + 2) != device) {
  125. if (++chkreply == MAX_REPLY_COUNT)
  126. chkreply = 0;
  127. if (chkreply == klninfo->nextreply)
  128. break;
  129. }
  130. if (chkreply == klninfo->nextreply)
  131. continue;
  132. *(klninfo->replies + chkreply*REPLY_BUFSIZE) = '!'; // mark to prevent re-use
  133. return klninfo->replies + chkreply*REPLY_BUFSIZE + 1;
  134. }
  135. return NULL;
  136. }
  137. static bool klondike_get_stats(struct cgpu_info *klncgpu)
  138. {
  139. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  140. int slaves, dev;
  141. if (klncgpu->usbinfo.nodev || klninfo->status == NULL)
  142. return false;
  143. applog(LOG_DEBUG, "Klondike getting status");
  144. slaves = klninfo->status[0].slavecount;
  145. // loop thru devices and get status for each
  146. wr_lock(&(klninfo->stat_lock));
  147. for (dev = 0; dev <= slaves; dev++) {
  148. char *reply = SendCmdGetReply(klncgpu, 'S', dev, 0, NULL);
  149. if (reply != NULL)
  150. klninfo->status[dev] = *(WORKSTATUS *)(reply+2);
  151. }
  152. wr_unlock(&(klninfo->stat_lock));
  153. // todo: detect slavecount change and realloc space
  154. return true;
  155. }
  156. static bool klondike_init(struct cgpu_info *klncgpu)
  157. {
  158. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  159. int slaves, dev;
  160. char *reply = SendCmdGetReply(klncgpu, 'S', 0, 0, NULL);
  161. if (reply == NULL)
  162. return false;
  163. slaves = ((WORKSTATUS *)(reply+2))->slavecount;
  164. if (klninfo->status == NULL) {
  165. applog(LOG_DEBUG, "Klondike initializing data");
  166. // alloc space for status, devinfo and cfg for master and slaves
  167. klninfo->status = calloc(slaves+1, sizeof(WORKSTATUS));
  168. if (unlikely(!klninfo->status))
  169. quit(1, "Failed to calloc status array in klondke_get_stats");
  170. klninfo->devinfo = calloc(slaves+1, sizeof(DEVINFO));
  171. if (unlikely(!klninfo->devinfo))
  172. quit(1, "Failed to calloc devinfo array in klondke_get_stats");
  173. klninfo->cfg = calloc(slaves+1, sizeof(WORKCFG));
  174. if (unlikely(!klninfo->cfg))
  175. quit(1, "Failed to calloc cfg array in klondke_get_stats");
  176. }
  177. WORKCFG cfgset = { 0,0,0,0,0 }; // zero init triggers read back only
  178. double temp1, temp2;
  179. int size = 2;
  180. if (opt_klondike_options != NULL) { // boundaries are checked by device, with valid values returned
  181. sscanf(opt_klondike_options, "%hu:%lf:%lf:%hhu", &cfgset.hashclock, &temp1, &temp2, &cfgset.fantarget);
  182. cfgset.temptarget = cvtCToKln(temp1);
  183. cfgset.tempcritical = cvtCToKln(temp2);
  184. cfgset.fantarget = (int)255*cfgset.fantarget/100;
  185. size = sizeof(cfgset);
  186. }
  187. for (dev = 0; dev <= slaves; dev++) {
  188. char *reply = SendCmdGetReply(klncgpu, 'C', dev, size, &cfgset);
  189. if (reply != NULL) {
  190. klninfo->cfg[dev] = *(WORKCFG *)(reply+2);
  191. applog(LOG_NOTICE, "Klondike config (%d: Clk: %d, T:%.0lf, C:%.0lf, F:%d)",
  192. dev, klninfo->cfg[dev].hashclock,
  193. cvtKlnToC(klninfo->cfg[dev].temptarget),
  194. cvtKlnToC(klninfo->cfg[dev].tempcritical),
  195. (int)100*klninfo->cfg[dev].fantarget/256);
  196. }
  197. }
  198. klondike_get_stats(klncgpu);
  199. for (dev = 0; dev <= slaves; dev++) {
  200. klninfo->devinfo[dev].rangesize = ((uint64_t)1<<32) / klninfo->status[dev].chipcount;
  201. klninfo->devinfo[dev].chipstats = calloc(klninfo->status[dev].chipcount*2 , sizeof(uint32_t));
  202. }
  203. SendCmdGetReply(klncgpu, 'E', 0, 1, "1");
  204. return true;
  205. }
  206. static bool klondike_detect_one(struct libusb_device *dev, struct usb_find_devices *found)
  207. {
  208. struct cgpu_info *klncgpu = usb_alloc_cgpu(&klondike_drv, 1);
  209. struct klondike_info *klninfo = NULL;
  210. if (unlikely(!klncgpu))
  211. quit(1, "Failed to calloc klncgpu in klondike_detect_one");
  212. klninfo = calloc(1, sizeof(*klninfo));
  213. if (unlikely(!klninfo))
  214. quit(1, "Failed to calloc klninfo in klondke_detect_one");
  215. klncgpu->device_data = (FILE *)klninfo;
  216. klninfo->replies = calloc(MAX_REPLY_COUNT, REPLY_BUFSIZE);
  217. if (unlikely(!klninfo->replies))
  218. quit(1, "Failed to calloc replies buffer in klondke_detect_one");
  219. klninfo->nextreply = 0;
  220. if (usb_init(klncgpu, dev, found)) {
  221. int attempts = 0;
  222. while (attempts++ < 3) {
  223. char devpath[20], reply[REPLY_SIZE];
  224. int sent, recd, err;
  225. sprintf(devpath, "%d:%d", (int)(klncgpu->usbinfo.bus_number), (int)(klncgpu->usbinfo.device_address));
  226. err = usb_write(klncgpu, "I", 2, &sent, C_REQUESTRESULTS);
  227. if (err < 0 || sent != 2) {
  228. applog(LOG_ERR, "%s (%s) detect write failed (%d:%d)", klncgpu->drv->dname, devpath, sent, err);
  229. }
  230. cgsleep_ms(REPLY_WAIT_TIME*10);
  231. err = usb_read(klncgpu, reply, REPLY_SIZE, &recd, C_GETRESULTS);
  232. if (err < 0) {
  233. applog(LOG_ERR, "%s (%s) detect read failed (%d:%d)", klncgpu->drv->dname, devpath, recd, err);
  234. } else if (recd < 1) {
  235. applog(LOG_ERR, "%s (%s) detect empty reply (%d)", klncgpu->drv->dname, devpath, recd);
  236. } else if (reply[0] == 'I' && reply[1] == 0) {
  237. applog(LOG_DEBUG, "%s (%s) detect successful", klncgpu->drv->dname, devpath);
  238. KlondikeID = *(IDENTITY *)(&reply[2]);
  239. klncgpu->device_path = strdup(devpath);
  240. update_usb_stats(klncgpu);
  241. if (!add_cgpu(klncgpu))
  242. break;
  243. applog(LOG_DEBUG, "Klondike cgpu added");
  244. return true;
  245. }
  246. }
  247. usb_uninit(klncgpu);
  248. }
  249. free(klninfo->replies);
  250. free(klncgpu);
  251. return false;
  252. }
  253. static void klondike_detect(bool __maybe_unused hotplug)
  254. {
  255. usb_detect(&klondike_drv, klondike_detect_one);
  256. }
  257. static void klondike_identify(__maybe_unused struct cgpu_info *klncgpu)
  258. {
  259. //SendCmdGetReply(klncgpu, 'I', 0, 0, NULL);
  260. }
  261. static void klondike_check_nonce(struct cgpu_info *klncgpu, WORKRESULT *result)
  262. {
  263. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  264. struct work *work, *tmp;
  265. applog(LOG_DEBUG, "Klondike FOUND NONCE (%02x:%08x)", result->workid, result->nonce);
  266. HASH_ITER(hh, klncgpu->queued_work, work, tmp) {
  267. if (work->queued && (work->subid == (result->device*256 + result->workid))) {
  268. wr_lock(&(klninfo->stat_lock));
  269. klninfo->devinfo[result->device].noncecount++;
  270. wr_unlock(&(klninfo->stat_lock));
  271. result->nonce = le32toh(result->nonce - 0xC0);
  272. applog(LOG_DEBUG, "Klondike SUBMIT NONCE (%02x:%08x)", result->workid, result->nonce);
  273. bool ok = submit_nonce(klncgpu->thr[0], work, result->nonce);
  274. applog(LOG_DEBUG, "Klondike chip stats %d, %08x, %d, %d", result->device, result->nonce, klninfo->devinfo[result->device].rangesize, klninfo->status[result->device].chipcount);
  275. klninfo->devinfo[result->device].chipstats[(result->nonce / klninfo->devinfo[result->device].rangesize) + (ok ? 0 : klninfo->status[result->device].chipcount)]++;
  276. return;
  277. }
  278. }
  279. applog(LOG_ERR, "%s%i:%d unknown work (%02x:%08x) - ignored",
  280. klncgpu->drv->name, klncgpu->device_id, result->device, result->workid, result->nonce);
  281. //inc_hw_errors(klncgpu->thr[0]);
  282. }
  283. // thread to keep looking for replies
  284. static void *klondike_get_replies(void *userdata)
  285. {
  286. struct cgpu_info *klncgpu = (struct cgpu_info *)userdata;
  287. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  288. char *replybuf;
  289. int err, recd;
  290. applog(LOG_DEBUG, "Klondike listening for replies");
  291. while (klninfo->shutdown == false) {
  292. if (klncgpu->usbinfo.nodev)
  293. return NULL;
  294. replybuf = klninfo->replies + klninfo->nextreply * REPLY_BUFSIZE;
  295. replybuf[0] = 0;
  296. err = usb_read(klncgpu, replybuf+1, REPLY_SIZE, &recd, C_GETRESULTS);
  297. if (!err && recd == REPLY_SIZE) {
  298. if (opt_log_level <= LOG_DEBUG) {
  299. char *hexdata = bin2hex((unsigned char *)(replybuf+1), recd);
  300. applog(LOG_DEBUG, "%s (%s) reply [%s:%s]", klncgpu->drv->dname, klncgpu->device_path, replybuf+1, hexdata);
  301. free(hexdata);
  302. }
  303. if (++klninfo->nextreply == MAX_REPLY_COUNT)
  304. klninfo->nextreply = 0;
  305. replybuf[0] = replybuf[1];
  306. if (replybuf[0] == '=')
  307. klondike_check_nonce(klncgpu, (WORKRESULT *)replybuf);
  308. }
  309. }
  310. return NULL;
  311. }
  312. static void klondike_flush_work(struct cgpu_info *klncgpu)
  313. {
  314. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  315. int dev;
  316. applog(LOG_DEBUG, "Klondike flushing work");
  317. for (dev = 0; dev <= klninfo->status->slavecount; dev++) {
  318. char *reply = SendCmdGetReply(klncgpu, 'A', dev, 0, NULL);
  319. if (reply != NULL) {
  320. wr_lock(&(klninfo->stat_lock));
  321. klninfo->status[dev] = *(WORKSTATUS *)(reply+2);
  322. wr_unlock(&(klninfo->stat_lock));
  323. }
  324. }
  325. }
  326. static bool klondike_thread_prepare(struct thr_info *thr)
  327. {
  328. struct cgpu_info *klncgpu = thr->cgpu;
  329. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  330. if (thr_info_create(&(klninfo->replies_thr), NULL, klondike_get_replies, (void *)klncgpu)) {
  331. applog(LOG_ERR, "%s%i: thread create failed", klncgpu->drv->name, klncgpu->device_id);
  332. return false;
  333. }
  334. pthread_detach(klninfo->replies_thr.pth);
  335. // let the listening get started
  336. cgsleep_ms(100);
  337. return klondike_init(klncgpu);
  338. }
  339. static bool klondike_thread_init(struct thr_info *thr)
  340. {
  341. struct cgpu_info *klncgpu = thr->cgpu;
  342. if (klncgpu->usbinfo.nodev)
  343. return false;
  344. klondike_flush_work(klncgpu);
  345. return true;
  346. }
  347. static void klondike_shutdown(struct thr_info *thr)
  348. {
  349. struct cgpu_info *klncgpu = thr->cgpu;
  350. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  351. int dev;
  352. applog(LOG_DEBUG, "Klondike shutting down work");
  353. for (dev = 0; dev <= klninfo->status->slavecount; dev++) {
  354. SendCmdGetReply(klncgpu, 'E', dev, 1, "0");
  355. }
  356. klncgpu->shutdown = klninfo->shutdown = true;
  357. }
  358. static void klondike_thread_enable(struct thr_info *thr)
  359. {
  360. struct cgpu_info *klncgpu = thr->cgpu;
  361. if (klncgpu->usbinfo.nodev)
  362. return;
  363. //SendCmdGetReply(klncgpu, 'E', 0, 1, "0");
  364. }
  365. static bool klondike_send_work(struct cgpu_info *klncgpu, int dev, struct work *work)
  366. {
  367. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  368. struct work *tmp;
  369. WORKTASK data;
  370. if (klncgpu->usbinfo.nodev)
  371. return false;
  372. memcpy(data.midstate, work->midstate, MIDSTATE_BYTES);
  373. memcpy(data.merkle, work->data + MERKLE_OFFSET, MERKLE_BYTES);
  374. data.workid = (uint8_t)(klninfo->devinfo[dev].nextworkid++ & 0xFF);
  375. work->subid = dev*256 + data.workid;
  376. if (opt_log_level <= LOG_DEBUG) {
  377. char *hexdata = bin2hex(&data.workid, sizeof(data)-3);
  378. applog(LOG_DEBUG, "WORKDATA: %s", hexdata);
  379. free(hexdata);
  380. }
  381. applog(LOG_DEBUG, "Klondike sending work (%d:%02x)", dev, data.workid);
  382. char *reply = SendCmdGetReply(klncgpu, 'W', dev, sizeof(data)-3, &data.workid);
  383. if (reply != NULL) {
  384. wr_lock(&(klninfo->stat_lock));
  385. klninfo->status[dev] = *(WORKSTATUS *)(reply+2);
  386. wr_unlock(&(klninfo->stat_lock));
  387. // remove old work
  388. HASH_ITER(hh, klncgpu->queued_work, work, tmp) {
  389. if (work->queued && (work->subid == (int)(dev*256 + ((klninfo->devinfo[dev].nextworkid-2*MAX_WORK_COUNT) & 0xFF))))
  390. work_completed(klncgpu, work);
  391. }
  392. return true;
  393. }
  394. return false;
  395. }
  396. static bool klondike_queue_full(struct cgpu_info *klncgpu)
  397. {
  398. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  399. struct work *work = NULL;
  400. int dev, queued;
  401. for (queued = 0; queued < MAX_WORK_COUNT-1; queued++)
  402. for (dev = 0; dev <= klninfo->status->slavecount; dev++)
  403. if (klninfo->status[dev].workqc <= queued) {
  404. if (!work)
  405. work = get_queued(klncgpu);
  406. if (unlikely(!work))
  407. return false;
  408. if (klondike_send_work(klncgpu, dev, work)) {
  409. work = NULL;
  410. break;
  411. }
  412. }
  413. return true;
  414. }
  415. static int64_t klondike_scanwork(struct thr_info *thr)
  416. {
  417. struct cgpu_info *klncgpu = thr->cgpu;
  418. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  419. int64_t newhashcount = 0;
  420. int dev;
  421. if (klncgpu->usbinfo.nodev)
  422. return -1;
  423. restart_wait(thr, 200);
  424. if (klninfo->status != NULL) {
  425. rd_lock(&(klninfo->stat_lock));
  426. for (dev = 0; dev <= klninfo->status->slavecount; dev++) {
  427. uint64_t newhashdev = 0;
  428. if (klninfo->devinfo[dev].lasthashcount > klninfo->status[dev].hashcount) // todo: chg this to check workid for wrapped instead
  429. newhashdev += klninfo->status[dev].maxcount; // hash counter wrapped
  430. newhashdev += klninfo->status[dev].hashcount - klninfo->devinfo[dev].lasthashcount;
  431. klninfo->devinfo[dev].lasthashcount = klninfo->status[dev].hashcount;
  432. newhashcount += (newhashdev << 32) / klninfo->status[dev].maxcount;
  433. // todo: check stats for critical conditions
  434. }
  435. rd_unlock(&(klninfo->stat_lock));
  436. }
  437. return newhashcount;
  438. }
  439. static void get_klondike_statline_before(char *buf, size_t siz, struct cgpu_info *klncgpu)
  440. {
  441. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  442. uint8_t temp = 0xFF;
  443. uint16_t fan = 0;
  444. int dev;
  445. if (klninfo->status == NULL)
  446. return;
  447. rd_lock(&(klninfo->stat_lock));
  448. for (dev = 0; dev <= klninfo->status->slavecount; dev++) {
  449. if (klninfo->status[dev].temp < temp)
  450. temp = klninfo->status[dev].temp;
  451. fan += klninfo->cfg[dev].fantarget;
  452. }
  453. fan /= klninfo->status->slavecount+1;
  454. rd_unlock(&(klninfo->stat_lock));
  455. tailsprintf(buf, siz, " %3.0fC %3d%% | ", cvtKlnToC(temp), fan*100/255);
  456. }
  457. static struct api_data *klondike_api_stats(struct cgpu_info *klncgpu)
  458. {
  459. struct klondike_info *klninfo = (struct klondike_info *)(klncgpu->device_data);
  460. struct api_data *root = NULL;
  461. char buf[32];
  462. int dev;
  463. if (klninfo->status == NULL)
  464. return NULL;
  465. rd_lock(&(klninfo->stat_lock));
  466. for (dev = 0; dev <= klninfo->status->slavecount; dev++) {
  467. float fTemp = cvtKlnToC(klninfo->status[dev].temp);
  468. sprintf(buf, "Temp %d", dev);
  469. root = api_add_temp(root, buf, &fTemp, true);
  470. double dClk = (double)klninfo->cfg[dev].hashclock;
  471. sprintf(buf, "Clock %d", dev);
  472. root = api_add_freq(root, buf, &dClk, true);
  473. unsigned int iFan = (unsigned int)100 * klninfo->cfg[dev].fantarget / 255;
  474. sprintf(buf, "Fan Percent %d", dev);
  475. root = api_add_int(root, buf, (int *)(&iFan), true);
  476. iFan = 0;
  477. if (klninfo->status[dev].fanspeed > 0)
  478. iFan = (unsigned int)TACH_FACTOR / klninfo->status[dev].fanspeed;
  479. sprintf(buf, "Fan RPM %d", dev);
  480. root = api_add_int(root, buf, (int *)(&iFan), true);
  481. if (klninfo->devinfo[dev].chipstats != NULL) {
  482. char data[128];
  483. int n;
  484. sprintf(buf, "Nonces / Chip %d", dev);
  485. for (n = 0; n < klninfo->status[dev].chipcount; n++)
  486. sprintf(data+n*8, "%07d ", klninfo->devinfo[dev].chipstats[n]);
  487. data[127] = 0;
  488. root = api_add_string(root, buf, data, true);
  489. sprintf(buf, "Errors / Chip %d", dev);
  490. for (n = 0; n < klninfo->status[dev].chipcount; n++)
  491. sprintf(data+n*8, "%07d ", klninfo->devinfo[dev].chipstats[n + klninfo->status[dev].chipcount]);
  492. data[127] = 0;
  493. root = api_add_string(root, buf, data, true);
  494. }
  495. }
  496. rd_unlock(&(klninfo->stat_lock));
  497. return root;
  498. }
  499. struct device_drv klondike_drv = {
  500. .drv_id = DRIVER_klondike,
  501. .dname = "Klondike",
  502. .name = "KLN",
  503. .drv_detect = klondike_detect,
  504. .get_api_stats = klondike_api_stats,
  505. .get_statline_before = get_klondike_statline_before,
  506. .get_stats = klondike_get_stats,
  507. .identify_device = klondike_identify,
  508. .thread_prepare = klondike_thread_prepare,
  509. .thread_init = klondike_thread_init,
  510. .hash_work = hash_queued_work,
  511. .scanwork = klondike_scanwork,
  512. .queue_full = klondike_queue_full,
  513. .flush_work = klondike_flush_work,
  514. .thread_shutdown = klondike_shutdown,
  515. .thread_enable = klondike_thread_enable
  516. };