main.c 143 KB

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  1. /*
  2. * Copyright 2011 Con Kolivas
  3. * Copyright 2010 Jeff Garzik
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of the GNU General Public License as published by the Free
  7. * Software Foundation; either version 2 of the License, or (at your option)
  8. * any later version. See COPYING for more details.
  9. */
  10. #include "config.h"
  11. #include <curses.h>
  12. #include <stdio.h>
  13. #include <stdlib.h>
  14. #include <string.h>
  15. #include <stdbool.h>
  16. #include <stdint.h>
  17. #include <unistd.h>
  18. #include <sys/time.h>
  19. #include <time.h>
  20. #include <math.h>
  21. #include <stdarg.h>
  22. #include <assert.h>
  23. #include <signal.h>
  24. #ifndef WIN32
  25. #include <sys/resource.h>
  26. #endif
  27. #include <ccan/opt/opt.h>
  28. #include <jansson.h>
  29. #include <curl/curl.h>
  30. #include <libgen.h>
  31. #include "compat.h"
  32. #include "miner.h"
  33. #include "findnonce.h"
  34. #include "bench_block.h"
  35. #include "ocl.h"
  36. #include "uthash.h"
  37. #include "adl.h"
  38. #if defined(unix)
  39. #include <errno.h>
  40. #include <fcntl.h>
  41. #include <unistd.h>
  42. #include <sys/wait.h>
  43. #include <sys/types.h>
  44. #endif
  45. #ifdef __linux /* Linux specific policy and affinity management */
  46. #include <sched.h>
  47. static inline void drop_policy(void)
  48. {
  49. struct sched_param param;
  50. #ifdef SCHED_BATCH
  51. #ifdef SCHED_IDLE
  52. if (unlikely(sched_setscheduler(0, SCHED_IDLE, &param) == -1))
  53. #endif
  54. sched_setscheduler(0, SCHED_BATCH, &param);
  55. #endif
  56. }
  57. static inline void affine_to_cpu(int id, int cpu)
  58. {
  59. cpu_set_t set;
  60. CPU_ZERO(&set);
  61. CPU_SET(cpu, &set);
  62. sched_setaffinity(0, sizeof(&set), &set);
  63. applog(LOG_INFO, "Binding cpu mining thread %d to cpu %d", id, cpu);
  64. }
  65. #else
  66. static inline void drop_policy(void)
  67. {
  68. }
  69. static inline void affine_to_cpu(int id, int cpu)
  70. {
  71. }
  72. #endif
  73. enum workio_commands {
  74. WC_GET_WORK,
  75. WC_SUBMIT_WORK,
  76. WC_DIE,
  77. };
  78. struct workio_cmd {
  79. enum workio_commands cmd;
  80. struct thr_info *thr;
  81. union {
  82. struct work *work;
  83. } u;
  84. bool lagging;
  85. };
  86. enum sha256_algos {
  87. ALGO_C, /* plain C */
  88. ALGO_4WAY, /* parallel SSE2 */
  89. ALGO_VIA, /* VIA padlock */
  90. ALGO_CRYPTOPP, /* Crypto++ (C) */
  91. ALGO_CRYPTOPP_ASM32, /* Crypto++ 32-bit assembly */
  92. ALGO_SSE2_32, /* SSE2 for x86_32 */
  93. ALGO_SSE2_64, /* SSE2 for x86_64 */
  94. ALGO_SSE4_64, /* SSE4 for x86_64 */
  95. };
  96. enum pool_strategy {
  97. POOL_FAILOVER,
  98. POOL_ROUNDROBIN,
  99. POOL_ROTATE,
  100. POOL_LOADBALANCE,
  101. };
  102. #define TOP_STRATEGY (POOL_LOADBALANCE)
  103. struct strategies {
  104. const char *s;
  105. } strategies[] = {
  106. { "Failover" },
  107. { "Round Robin" },
  108. { "Rotate" },
  109. { "Load Balance" },
  110. };
  111. static size_t max_name_len = 0;
  112. static char *name_spaces_pad = NULL;
  113. static const char *algo_names[] = {
  114. [ALGO_C] = "c",
  115. #ifdef WANT_SSE2_4WAY
  116. [ALGO_4WAY] = "4way",
  117. #endif
  118. #ifdef WANT_VIA_PADLOCK
  119. [ALGO_VIA] = "via",
  120. #endif
  121. [ALGO_CRYPTOPP] = "cryptopp",
  122. #ifdef WANT_CRYPTOPP_ASM32
  123. [ALGO_CRYPTOPP_ASM32] = "cryptopp_asm32",
  124. #endif
  125. #ifdef WANT_X8632_SSE2
  126. [ALGO_SSE2_32] = "sse2_32",
  127. #endif
  128. #ifdef WANT_X8664_SSE2
  129. [ALGO_SSE2_64] = "sse2_64",
  130. #endif
  131. #ifdef WANT_X8664_SSE4
  132. [ALGO_SSE4_64] = "sse4_64",
  133. #endif
  134. };
  135. typedef void (*sha256_func)();
  136. static const sha256_func sha256_funcs[] = {
  137. [ALGO_C] = (sha256_func)scanhash_c,
  138. #ifdef WANT_SSE2_4WAY
  139. [ALGO_4WAY] = (sha256_func)ScanHash_4WaySSE2,
  140. #endif
  141. #ifdef WANT_VIA_PADLOCK
  142. [ALGO_VIA] = (sha256_func)scanhash_via,
  143. #endif
  144. [ALGO_CRYPTOPP] = (sha256_func)scanhash_cryptopp,
  145. #ifdef WANT_CRYPTOPP_ASM32
  146. [ALGO_CRYPTOPP_ASM32] = (sha256_func)scanhash_asm32,
  147. #endif
  148. #ifdef WANT_X8632_SSE2
  149. [ALGO_SSE2_32] = (sha256_func)scanhash_sse2_32,
  150. #endif
  151. #ifdef WANT_X8664_SSE2
  152. [ALGO_SSE2_64] = (sha256_func)scanhash_sse2_64,
  153. #endif
  154. #ifdef WANT_X8664_SSE4
  155. [ALGO_SSE4_64] = (sha256_func)scanhash_sse4_64
  156. #endif
  157. };
  158. static char packagename[255];
  159. bool opt_debug = false;
  160. bool opt_protocol = false;
  161. static bool want_longpoll = true;
  162. static bool have_longpoll = false;
  163. static bool want_per_device_stats = false;
  164. bool use_syslog = false;
  165. static bool opt_quiet = false;
  166. static bool opt_realquiet = false;
  167. static bool opt_loginput = false;
  168. static int opt_retries = -1;
  169. static int opt_fail_pause = 5;
  170. static int fail_pause = 5;
  171. static int opt_log_interval = 5;
  172. bool opt_log_output = false;
  173. static bool opt_dynamic = true;
  174. static int opt_queue = 1;
  175. int opt_vectors;
  176. int opt_worksize;
  177. int opt_scantime = 60;
  178. int opt_bench_algo = -1;
  179. static const bool opt_time = true;
  180. static bool opt_restart = true;
  181. #if defined(WANT_X8664_SSE2) && defined(__SSE2__)
  182. static enum sha256_algos opt_algo = ALGO_SSE2_64;
  183. #elif defined(WANT_X8632_SSE2) && defined(__SSE2__)
  184. static enum sha256_algos opt_algo = ALGO_SSE2_32;
  185. #else
  186. static enum sha256_algos opt_algo = ALGO_C;
  187. #endif
  188. static int nDevs;
  189. static int opt_g_threads = 2;
  190. static int opt_device;
  191. static int total_devices;
  192. static bool gpu_devices[MAX_GPUDEVICES];
  193. static int gpu_threads;
  194. static bool forced_n_threads;
  195. static int opt_n_threads;
  196. static int mining_threads;
  197. static int num_processors;
  198. static int scan_intensity;
  199. static bool use_curses = true;
  200. static bool opt_submit_stale;
  201. static bool opt_nogpu;
  202. static bool opt_usecpu;
  203. static int opt_shares;
  204. static bool opt_fail_only;
  205. bool opt_autofan;
  206. bool opt_autoengine;
  207. bool opt_noadl;
  208. char *opt_kernel_path;
  209. char *cgminer_path;
  210. #define QUIET (opt_quiet || opt_realquiet)
  211. struct thr_info *thr_info;
  212. static int work_thr_id;
  213. int longpoll_thr_id;
  214. static int stage_thr_id;
  215. static int watchdog_thr_id;
  216. static int input_thr_id;
  217. static int gpur_thr_id;
  218. static int cpur_thr_id;
  219. static int total_threads;
  220. struct work_restart *work_restart = NULL;
  221. static pthread_mutex_t hash_lock;
  222. static pthread_mutex_t qd_lock;
  223. static pthread_mutex_t *stgd_lock;
  224. static pthread_mutex_t curses_lock;
  225. static pthread_rwlock_t blk_lock;
  226. static double total_mhashes_done;
  227. static struct timeval total_tv_start, total_tv_end;
  228. pthread_mutex_t control_lock;
  229. int hw_errors;
  230. static int total_accepted, total_rejected;
  231. static int total_getworks, total_stale, total_discarded;
  232. static int total_queued;
  233. static unsigned int new_blocks;
  234. enum block_change {
  235. BLOCK_NONE,
  236. BLOCK_LP,
  237. BLOCK_DETECT,
  238. BLOCK_FIRST,
  239. };
  240. static enum block_change block_changed = BLOCK_FIRST;
  241. static unsigned int local_work;
  242. static unsigned int total_go, total_ro;
  243. #define MAX_POOLS (32)
  244. static struct pool *pools[MAX_POOLS];
  245. static struct pool *currentpool = NULL;
  246. static int total_pools;
  247. static enum pool_strategy pool_strategy = POOL_FAILOVER;
  248. static int opt_rotate_period;
  249. static int total_urls, total_users, total_passes, total_userpasses;
  250. static bool curses_active = false;
  251. static char current_block[37];
  252. static char *current_hash;
  253. static char datestamp[40];
  254. static char blocktime[30];
  255. struct block {
  256. char hash[37];
  257. UT_hash_handle hh;
  258. };
  259. static struct block *blocks = NULL;
  260. static char *opt_kernel = NULL;
  261. #if defined(unix)
  262. static char *opt_stderr_cmd = NULL;
  263. #endif // defined(unix)
  264. enum cl_kernel chosen_kernel;
  265. static bool ping = true;
  266. struct sigaction termhandler, inthandler;
  267. struct thread_q *getq;
  268. static int total_work;
  269. struct work *staged_work = NULL;
  270. static int staged_clones;
  271. struct schedtime {
  272. bool enable;
  273. struct tm tm;
  274. };
  275. struct schedtime schedstart;
  276. struct schedtime schedstop;
  277. bool sched_paused;
  278. static bool time_before(struct tm *tm1, struct tm *tm2)
  279. {
  280. if (tm1->tm_hour < tm2->tm_hour)
  281. return true;
  282. if (tm1->tm_hour == tm2->tm_hour && tm1->tm_min < tm2->tm_min)
  283. return true;
  284. return false;
  285. }
  286. static bool should_run(void)
  287. {
  288. struct timeval tv;
  289. struct tm tm;
  290. if (!schedstart.enable && !schedstop.enable)
  291. return true;
  292. gettimeofday(&tv, NULL);
  293. localtime_r(&tv.tv_sec, &tm);
  294. if (schedstart.enable) {
  295. if (!schedstop.enable) {
  296. if (time_before(&tm, &schedstart.tm))
  297. return false;
  298. /* This is a once off event with no stop time set */
  299. schedstart.enable = false;
  300. return true;
  301. }
  302. if (time_before(&schedstart.tm, &schedstop.tm)) {
  303. if (time_before(&tm, &schedstop.tm) && !time_before(&tm, &schedstart.tm))
  304. return true;
  305. return false;
  306. } /* Times are reversed */
  307. if (time_before(&tm, &schedstart.tm)) {
  308. if (time_before(&tm, &schedstop.tm))
  309. return true;
  310. return false;
  311. }
  312. return true;
  313. }
  314. /* only schedstop.enable == true */
  315. if (!time_before(&tm, &schedstop.tm))
  316. return false;
  317. return true;
  318. }
  319. void get_datestamp(char *f, struct timeval *tv)
  320. {
  321. struct tm tm;
  322. localtime_r(&tv->tv_sec, &tm);
  323. sprintf(f, "[%d-%02d-%02d %02d:%02d:%02d]",
  324. tm.tm_year + 1900,
  325. tm.tm_mon + 1,
  326. tm.tm_mday,
  327. tm.tm_hour,
  328. tm.tm_min,
  329. tm.tm_sec);
  330. }
  331. void get_timestamp(char *f, struct timeval *tv)
  332. {
  333. struct tm tm;
  334. localtime_r(&tv->tv_sec, &tm);
  335. sprintf(f, "[%02d:%02d:%02d]",
  336. tm.tm_hour,
  337. tm.tm_min,
  338. tm.tm_sec);
  339. }
  340. static void applog_and_exit(const char *fmt, ...)
  341. {
  342. va_list ap;
  343. va_start(ap, fmt);
  344. vapplog(LOG_ERR, fmt, ap);
  345. va_end(ap);
  346. exit(1);
  347. }
  348. static void add_pool(void)
  349. {
  350. struct pool *pool;
  351. pool = calloc(sizeof(struct pool), 1);
  352. if (!pool) {
  353. applog(LOG_ERR, "Failed to malloc pool in add_pool");
  354. exit (1);
  355. }
  356. pool->pool_no = pool->prio = total_pools;
  357. pools[total_pools++] = pool;
  358. if (unlikely(pthread_mutex_init(&pool->pool_lock, NULL))) {
  359. applog(LOG_ERR, "Failed to pthread_mutex_init in add_pool");
  360. exit (1);
  361. }
  362. /* Make sure the pool doesn't think we've been idle since time 0 */
  363. pool->tv_idle.tv_sec = ~0UL;
  364. }
  365. /* Pool variant of test and set */
  366. static bool pool_tset(struct pool *pool, bool *var)
  367. {
  368. bool ret;
  369. mutex_lock(&pool->pool_lock);
  370. ret = *var;
  371. *var = true;
  372. mutex_unlock(&pool->pool_lock);
  373. return ret;
  374. }
  375. static bool pool_tclear(struct pool *pool, bool *var)
  376. {
  377. bool ret;
  378. mutex_lock(&pool->pool_lock);
  379. ret = *var;
  380. *var = false;
  381. mutex_unlock(&pool->pool_lock);
  382. return ret;
  383. }
  384. static struct pool *current_pool(void)
  385. {
  386. struct pool *pool;
  387. mutex_lock(&control_lock);
  388. pool = currentpool;
  389. mutex_unlock(&control_lock);
  390. return pool;
  391. }
  392. // Algo benchmark, crash-prone, system independent stage
  393. static double bench_algo_stage3(
  394. enum sha256_algos algo
  395. )
  396. {
  397. // Use a random work block pulled from a pool
  398. static uint8_t bench_block[] = { CGMINER_BENCHMARK_BLOCK };
  399. struct work work __attribute__((aligned(128)));
  400. size_t bench_size = sizeof(work);
  401. size_t work_size = sizeof(bench_block);
  402. size_t min_size = (work_size < bench_size ? work_size : bench_size);
  403. memset(&work, 0, sizeof(work));
  404. memcpy(&work, &bench_block, min_size);
  405. struct work_restart dummy;
  406. work_restart = &dummy;
  407. struct timeval end;
  408. struct timeval start;
  409. uint32_t max_nonce = (1<<22);
  410. unsigned long hashes_done = 0;
  411. gettimeofday(&start, 0);
  412. #if defined(WANT_VIA_PADLOCK)
  413. // For some reason, the VIA padlock hasher has a different API ...
  414. if (ALGO_VIA==algo) {
  415. (void)scanhash_via(
  416. 0,
  417. work.data,
  418. work.target,
  419. max_nonce,
  420. &hashes_done,
  421. work.blk.nonce
  422. );
  423. } else
  424. #endif
  425. {
  426. sha256_func func = sha256_funcs[algo];
  427. (*func)(
  428. 0,
  429. work.midstate,
  430. work.data + 64,
  431. work.hash1,
  432. work.hash,
  433. work.target,
  434. max_nonce,
  435. &hashes_done,
  436. work.blk.nonce
  437. );
  438. }
  439. gettimeofday(&end, 0);
  440. work_restart = NULL;
  441. uint64_t usec_end = ((uint64_t)end.tv_sec)*1000*1000 + end.tv_usec;
  442. uint64_t usec_start = ((uint64_t)start.tv_sec)*1000*1000 + start.tv_usec;
  443. uint64_t usec_elapsed = usec_end - usec_start;
  444. double rate = -1.0;
  445. if (0<usec_elapsed) {
  446. rate = (1.0*hashes_done)/usec_elapsed;
  447. }
  448. return rate;
  449. }
  450. #if defined(unix)
  451. // Change non-blocking status on a file descriptor
  452. static void set_non_blocking(
  453. int fd,
  454. int yes
  455. )
  456. {
  457. int flags = fcntl(fd, F_GETFL, 0);
  458. if (flags<0) {
  459. perror("fcntl(GET) failed");
  460. exit(1);
  461. }
  462. flags = yes ? (flags|O_NONBLOCK) : (flags&~O_NONBLOCK);
  463. int r = fcntl(fd, F_SETFL, flags);
  464. if (r<0) {
  465. perror("fcntl(SET) failed");
  466. exit(1);
  467. }
  468. }
  469. #endif // defined(unix)
  470. // Algo benchmark, crash-safe, system-dependent stage
  471. static double bench_algo_stage2(
  472. enum sha256_algos algo
  473. )
  474. {
  475. // Here, the gig is to safely run a piece of code that potentially
  476. // crashes. Unfortunately, the Right Way (tm) to do this is rather
  477. // heavily platform dependent :(
  478. double rate = -1.23457;
  479. #if defined(unix)
  480. // Make a pipe: [readFD, writeFD]
  481. int pfd[2];
  482. int r = pipe(pfd);
  483. if (r<0) {
  484. perror("pipe - failed to create pipe for --algo auto");
  485. exit(1);
  486. }
  487. // Make pipe non blocking
  488. set_non_blocking(pfd[0], 1);
  489. set_non_blocking(pfd[1], 1);
  490. // Don't allow a crashing child to kill the main process
  491. sighandler_t sr0 = signal(SIGPIPE, SIG_IGN);
  492. sighandler_t sr1 = signal(SIGPIPE, SIG_IGN);
  493. if (SIG_ERR==sr0 || SIG_ERR==sr1) {
  494. perror("signal - failed to edit signal mask for --algo auto");
  495. exit(1);
  496. }
  497. // Fork a child to do the actual benchmarking
  498. pid_t child_pid = fork();
  499. if (child_pid<0) {
  500. perror("fork - failed to create a child process for --algo auto");
  501. exit(1);
  502. }
  503. // Do the dangerous work in the child, knowing we might crash
  504. if (0==child_pid) {
  505. // TODO: some umask trickery to prevent coredumps
  506. // Benchmark this algorithm
  507. double r = bench_algo_stage3(algo);
  508. // We survived, send result to parent and bail
  509. int loop_count = 0;
  510. while (1) {
  511. ssize_t bytes_written = write(pfd[1], &r, sizeof(r));
  512. int try_again = (0==bytes_written || (bytes_written<0 && EAGAIN==errno));
  513. int success = (sizeof(r)==(size_t)bytes_written);
  514. if (success)
  515. break;
  516. if (!try_again) {
  517. perror("write - child failed to write benchmark result to pipe");
  518. exit(1);
  519. }
  520. if (5<loop_count) {
  521. applog(LOG_ERR, "child tried %d times to communicate with parent, giving up", loop_count);
  522. exit(1);
  523. }
  524. ++loop_count;
  525. sleep(1);
  526. }
  527. exit(0);
  528. }
  529. // Parent waits for a result from child
  530. int loop_count = 0;
  531. while (1) {
  532. // Wait for child to die
  533. int status;
  534. int r = waitpid(child_pid, &status, WNOHANG);
  535. if ((child_pid==r) || (r<0 && ECHILD==errno)) {
  536. // Child died somehow. Grab result and bail
  537. double tmp;
  538. ssize_t bytes_read = read(pfd[0], &tmp, sizeof(tmp));
  539. if (sizeof(tmp)==(size_t)bytes_read)
  540. rate = tmp;
  541. break;
  542. } else if (r<0) {
  543. perror("bench_algo: waitpid failed. giving up.");
  544. exit(1);
  545. }
  546. // Give up on child after a ~60s
  547. if (60<loop_count) {
  548. kill(child_pid, SIGKILL);
  549. waitpid(child_pid, &status, 0);
  550. break;
  551. }
  552. // Wait a bit longer
  553. ++loop_count;
  554. sleep(1);
  555. }
  556. // Close pipe
  557. r = close(pfd[0]);
  558. if (r<0) {
  559. perror("close - failed to close read end of pipe for --algo auto");
  560. exit(1);
  561. }
  562. r = close(pfd[1]);
  563. if (r<0) {
  564. perror("close - failed to close read end of pipe for --algo auto");
  565. exit(1);
  566. }
  567. #elif defined(WIN32)
  568. // Get handle to current exe
  569. HINSTANCE module = GetModuleHandle(0);
  570. if (!module) {
  571. applog(LOG_ERR, "failed to retrieve module handle");
  572. exit(1);
  573. }
  574. // Create a unique name
  575. char unique_name[32];
  576. snprintf(
  577. unique_name,
  578. sizeof(unique_name)-1,
  579. "cgminer-%p",
  580. (void*)module
  581. );
  582. // Create and init a chunked of shared memory
  583. HANDLE map_handle = CreateFileMapping(
  584. INVALID_HANDLE_VALUE, // use paging file
  585. NULL, // default security attributes
  586. PAGE_READWRITE, // read/write access
  587. 0, // size: high 32-bits
  588. 4096, // size: low 32-bits
  589. unique_name // name of map object
  590. );
  591. if (NULL==map_handle) {
  592. applog(LOG_ERR, "could not create shared memory");
  593. exit(1);
  594. }
  595. void *shared_mem = MapViewOfFile(
  596. map_handle, // object to map view of
  597. FILE_MAP_WRITE, // read/write access
  598. 0, // high offset: map from
  599. 0, // low offset: beginning
  600. 0 // default: map entire file
  601. );
  602. if (NULL==shared_mem) {
  603. applog(LOG_ERR, "could not map shared memory");
  604. exit(1);
  605. }
  606. SetEnvironmentVariable("CGMINER_SHARED_MEM", unique_name);
  607. CopyMemory(shared_mem, &rate, sizeof(rate));
  608. // Get path to current exe
  609. char cmd_line[256 + MAX_PATH];
  610. const size_t n = sizeof(cmd_line)-200;
  611. DWORD size = GetModuleFileName(module, cmd_line, n);
  612. if (0==size) {
  613. applog(LOG_ERR, "failed to retrieve module path");
  614. exit(1);
  615. }
  616. // Construct new command line based on that
  617. char *p = strlen(cmd_line) + cmd_line;
  618. sprintf(p, " --bench-algo %d", algo);
  619. SetEnvironmentVariable("CGMINER_BENCH_ALGO", "1");
  620. // Launch a debug copy of cgminer
  621. STARTUPINFO startup_info;
  622. PROCESS_INFORMATION process_info;
  623. ZeroMemory(&startup_info, sizeof(startup_info));
  624. ZeroMemory(&process_info, sizeof(process_info));
  625. startup_info.cb = sizeof(startup_info);
  626. BOOL ok = CreateProcess(
  627. NULL, // No module name (use command line)
  628. cmd_line, // Command line
  629. NULL, // Process handle not inheritable
  630. NULL, // Thread handle not inheritable
  631. FALSE, // Set handle inheritance to FALSE
  632. DEBUG_ONLY_THIS_PROCESS,// We're going to debug the child
  633. NULL, // Use parent's environment block
  634. NULL, // Use parent's starting directory
  635. &startup_info, // Pointer to STARTUPINFO structure
  636. &process_info // Pointer to PROCESS_INFORMATION structure
  637. );
  638. if (!ok) {
  639. applog(LOG_ERR, "CreateProcess failed with error %d\n", GetLastError() );
  640. exit(1);
  641. }
  642. // Debug the child (only clean way to catch exceptions)
  643. while (1) {
  644. // Wait for child to do something
  645. DEBUG_EVENT debug_event;
  646. ZeroMemory(&debug_event, sizeof(debug_event));
  647. BOOL ok = WaitForDebugEvent(&debug_event, 60 * 1000);
  648. if (!ok)
  649. break;
  650. // Decide if event is "normal"
  651. int go_on =
  652. CREATE_PROCESS_DEBUG_EVENT== debug_event.dwDebugEventCode ||
  653. CREATE_THREAD_DEBUG_EVENT == debug_event.dwDebugEventCode ||
  654. EXIT_THREAD_DEBUG_EVENT == debug_event.dwDebugEventCode ||
  655. EXCEPTION_DEBUG_EVENT == debug_event.dwDebugEventCode ||
  656. LOAD_DLL_DEBUG_EVENT == debug_event.dwDebugEventCode ||
  657. OUTPUT_DEBUG_STRING_EVENT == debug_event.dwDebugEventCode ||
  658. UNLOAD_DLL_DEBUG_EVENT == debug_event.dwDebugEventCode;
  659. if (!go_on)
  660. break;
  661. // Some exceptions are also "normal", apparently.
  662. if (EXCEPTION_DEBUG_EVENT== debug_event.dwDebugEventCode) {
  663. int go_on =
  664. EXCEPTION_BREAKPOINT== debug_event.u.Exception.ExceptionRecord.ExceptionCode;
  665. if (!go_on)
  666. break;
  667. }
  668. // If nothing unexpected happened, let child proceed
  669. ContinueDebugEvent(
  670. debug_event.dwProcessId,
  671. debug_event.dwThreadId,
  672. DBG_CONTINUE
  673. );
  674. }
  675. // Clean up child process
  676. TerminateProcess(process_info.hProcess, 1);
  677. CloseHandle(process_info.hProcess);
  678. CloseHandle(process_info.hThread);
  679. // Reap return value and cleanup
  680. CopyMemory(&rate, shared_mem, sizeof(rate));
  681. (void)UnmapViewOfFile(shared_mem);
  682. (void)CloseHandle(map_handle);
  683. #else
  684. // Not linux, not unix, not WIN32 ... do our best
  685. rate = bench_algo_stage3(algo);
  686. #endif // defined(unix)
  687. // Done
  688. return rate;
  689. }
  690. static void bench_algo(
  691. double *best_rate,
  692. enum sha256_algos *best_algo,
  693. enum sha256_algos algo
  694. )
  695. {
  696. size_t n = max_name_len - strlen(algo_names[algo]);
  697. memset(name_spaces_pad, ' ', n);
  698. name_spaces_pad[n] = 0;
  699. applog(
  700. LOG_ERR,
  701. "\"%s\"%s : benchmarking algorithm ...",
  702. algo_names[algo],
  703. name_spaces_pad
  704. );
  705. double rate = bench_algo_stage2(algo);
  706. if (rate<0.0) {
  707. applog(
  708. LOG_ERR,
  709. "\"%s\"%s : algorithm fails on this platform",
  710. algo_names[algo],
  711. name_spaces_pad
  712. );
  713. } else {
  714. applog(
  715. LOG_ERR,
  716. "\"%s\"%s : algorithm runs at %.5f MH/s",
  717. algo_names[algo],
  718. name_spaces_pad,
  719. rate
  720. );
  721. if (*best_rate<rate) {
  722. *best_rate = rate;
  723. *best_algo = algo;
  724. }
  725. }
  726. }
  727. // Figure out the longest algorithm name
  728. static void init_max_name_len()
  729. {
  730. size_t i;
  731. size_t nb_names = sizeof(algo_names)/sizeof(algo_names[0]);
  732. for (i=0; i<nb_names; ++i) {
  733. const char *p = algo_names[i];
  734. size_t name_len = p ? strlen(p) : 0;
  735. if (max_name_len<name_len)
  736. max_name_len = name_len;
  737. }
  738. name_spaces_pad = (char*) malloc(max_name_len+16);
  739. if (0==name_spaces_pad) {
  740. perror("malloc failed");
  741. exit(1);
  742. }
  743. }
  744. // Pick the fastest CPU hasher
  745. static enum sha256_algos pick_fastest_algo()
  746. {
  747. double best_rate = -1.0;
  748. enum sha256_algos best_algo = 0;
  749. applog(LOG_ERR, "benchmarking all sha256 algorithms ...");
  750. bench_algo(&best_rate, &best_algo, ALGO_C);
  751. #if defined(WANT_SSE2_4WAY)
  752. bench_algo(&best_rate, &best_algo, ALGO_4WAY);
  753. #endif
  754. #if defined(WANT_VIA_PADLOCK)
  755. bench_algo(&best_rate, &best_algo, ALGO_VIA);
  756. #endif
  757. bench_algo(&best_rate, &best_algo, ALGO_CRYPTOPP);
  758. #if defined(WANT_CRYPTOPP_ASM32)
  759. bench_algo(&best_rate, &best_algo, ALGO_CRYPTOPP_ASM32);
  760. #endif
  761. #if defined(WANT_X8632_SSE2)
  762. bench_algo(&best_rate, &best_algo, ALGO_SSE2_32);
  763. #endif
  764. #if defined(WANT_X8664_SSE2)
  765. bench_algo(&best_rate, &best_algo, ALGO_SSE2_64);
  766. #endif
  767. #if defined(WANT_X8664_SSE4)
  768. bench_algo(&best_rate, &best_algo, ALGO_SSE4_64);
  769. #endif
  770. size_t n = max_name_len - strlen(algo_names[best_algo]);
  771. memset(name_spaces_pad, ' ', n);
  772. name_spaces_pad[n] = 0;
  773. applog(
  774. LOG_ERR,
  775. "\"%s\"%s : is fastest algorithm at %.5f MH/s",
  776. algo_names[best_algo],
  777. name_spaces_pad,
  778. best_rate
  779. );
  780. return best_algo;
  781. }
  782. /* FIXME: Use asprintf for better errors. */
  783. static char *set_algo(const char *arg, enum sha256_algos *algo)
  784. {
  785. enum sha256_algos i;
  786. if (!strcmp(arg, "auto")) {
  787. *algo = pick_fastest_algo();
  788. return NULL;
  789. }
  790. for (i = 0; i < ARRAY_SIZE(algo_names); i++) {
  791. if (algo_names[i] && !strcmp(arg, algo_names[i])) {
  792. *algo = i;
  793. return NULL;
  794. }
  795. }
  796. return "Unknown algorithm";
  797. }
  798. static void show_algo(char buf[OPT_SHOW_LEN], const enum sha256_algos *algo)
  799. {
  800. strncpy(buf, algo_names[*algo], OPT_SHOW_LEN);
  801. }
  802. static char *set_int_range(const char *arg, int *i, int min, int max)
  803. {
  804. char *err = opt_set_intval(arg, i);
  805. if (err)
  806. return err;
  807. if (*i < min || *i > max)
  808. return "Value out of range";
  809. return NULL;
  810. }
  811. static char *set_int_0_to_9999(const char *arg, int *i)
  812. {
  813. return set_int_range(arg, i, 0, 9999);
  814. }
  815. static char *forced_int_1010(const char *arg, int *i)
  816. {
  817. opt_dynamic = false;
  818. return set_int_range(arg, i, -10, 10);
  819. }
  820. static char *force_nthreads_int(const char *arg, int *i)
  821. {
  822. forced_n_threads = true;
  823. return set_int_range(arg, i, 0, 9999);
  824. }
  825. static char *set_int_0_to_10(const char *arg, int *i)
  826. {
  827. return set_int_range(arg, i, 0, 10);
  828. }
  829. static char *set_int_1_to_10(const char *arg, int *i)
  830. {
  831. return set_int_range(arg, i, 1, 10);
  832. }
  833. static char *set_devices(const char *arg, int *i)
  834. {
  835. char *err = opt_set_intval(arg, i);
  836. if (err)
  837. return err;
  838. if (*i < 0 || *i > 15)
  839. return "Invalid GPU device number";
  840. total_devices++;
  841. gpu_devices[*i] = true;
  842. return NULL;
  843. }
  844. static char *set_loadbalance(enum pool_strategy *strategy)
  845. {
  846. *strategy = POOL_LOADBALANCE;
  847. return NULL;
  848. }
  849. static char *set_rotate(const char *arg, int *i)
  850. {
  851. pool_strategy = POOL_ROTATE;
  852. return set_int_range(arg, i, 0, 9999);
  853. }
  854. static char *set_rr(enum pool_strategy *strategy)
  855. {
  856. *strategy = POOL_ROUNDROBIN;
  857. return NULL;
  858. }
  859. static char *set_url(char *arg)
  860. {
  861. struct pool *pool;
  862. total_urls++;
  863. if (total_urls > total_pools)
  864. add_pool();
  865. pool = pools[total_urls - 1];
  866. opt_set_charp(arg, &pool->rpc_url);
  867. if (strncmp(arg, "http://", 7) &&
  868. strncmp(arg, "https://", 8)) {
  869. char *httpinput;
  870. httpinput = malloc(255);
  871. if (!httpinput)
  872. quit(1, "Failed to malloc httpinput");
  873. strcpy(httpinput, "http://");
  874. strncat(httpinput, arg, 248);
  875. pool->rpc_url = httpinput;
  876. }
  877. return NULL;
  878. }
  879. static char *set_user(const char *arg)
  880. {
  881. struct pool *pool;
  882. if (total_userpasses)
  883. return "Use only user + pass or userpass, but not both";
  884. total_users++;
  885. if (total_users > total_pools)
  886. add_pool();
  887. pool = pools[total_users - 1];
  888. opt_set_charp(arg, &pool->rpc_user);
  889. return NULL;
  890. }
  891. static char *set_pass(const char *arg)
  892. {
  893. struct pool *pool;
  894. if (total_userpasses)
  895. return "Use only user + pass or userpass, but not both";
  896. total_passes++;
  897. if (total_passes > total_pools)
  898. add_pool();
  899. pool = pools[total_passes - 1];
  900. opt_set_charp(arg, &pool->rpc_pass);
  901. return NULL;
  902. }
  903. static char *set_userpass(const char *arg)
  904. {
  905. struct pool *pool;
  906. if (total_users || total_passes)
  907. return "Use only user + pass or userpass, but not both";
  908. total_userpasses++;
  909. if (total_userpasses > total_pools)
  910. add_pool();
  911. pool = pools[total_userpasses - 1];
  912. opt_set_charp(arg, &pool->rpc_userpass);
  913. return NULL;
  914. }
  915. static char *set_vector(const char *arg, int *i)
  916. {
  917. char *err = opt_set_intval(arg, i);
  918. if (err)
  919. return err;
  920. if (*i != 1 && *i != 2 && *i != 4)
  921. return "Valid vectors are 1, 2 or 4";
  922. return NULL;
  923. }
  924. static char *enable_debug(bool *flag)
  925. {
  926. *flag = true;
  927. /* Turn out verbose output, too. */
  928. opt_log_output = true;
  929. return NULL;
  930. }
  931. static char *set_schedtime(const char *arg, struct schedtime *st)
  932. {
  933. if (sscanf(arg, "%d:%d", &st->tm.tm_hour, &st->tm.tm_min) != 2)
  934. return "Invalid time set, should be HH:MM";
  935. if (st->tm.tm_hour > 23 || st->tm.tm_min > 59 || st->tm.tm_hour < 0 || st->tm.tm_min < 0)
  936. return "Invalid time set.";
  937. st->enable = true;
  938. return NULL;
  939. }
  940. #ifdef HAVE_ADL
  941. static void get_intrange(char *arg, int *val1, int *val2)
  942. {
  943. if (sscanf(arg, "%d-%d", val1, val2) == 1) {
  944. *val2 = *val1;
  945. *val1 = 0;
  946. }
  947. }
  948. static char *set_gpu_engine(char *arg)
  949. {
  950. int i, val1 = 0, val2 = 0, device = 0;
  951. char *nextptr;
  952. nextptr = strtok(arg, ",");
  953. if (nextptr == NULL)
  954. return "Invalid parameters for set gpu engine";
  955. get_intrange(nextptr, &val1, &val2);
  956. if (val1 < 0 || val1 > 9999 || val2 <= 0 || val2 > 9999)
  957. return "Invalid value passed to set_gpu_engine";
  958. gpus[device].min_engine = val1;
  959. gpus[device].gpu_engine = val2;
  960. device++;
  961. while ((nextptr = strtok(NULL, ",")) != NULL) {
  962. get_intrange(nextptr, &val1, &val2);
  963. if (val1 < 0 || val1 > 9999 || val2 <= 0 || val2 > 9999)
  964. return "Invalid value passed to set_gpu_engine";
  965. gpus[device].min_engine = val1;
  966. gpus[device].gpu_engine = val2;
  967. device++;
  968. }
  969. if (device == 1) {
  970. for (i = 1; i < MAX_GPUDEVICES; i++) {
  971. gpus[i].min_engine = gpus[0].min_engine;
  972. gpus[i].gpu_engine = gpus[0].gpu_engine;
  973. }
  974. }
  975. return NULL;
  976. }
  977. static char *set_gpu_fan(char *arg)
  978. {
  979. int i, val1 = 0, val2 = 0, device = 0;
  980. char *nextptr;
  981. nextptr = strtok(arg, ",");
  982. if (nextptr == NULL)
  983. return "Invalid parameters for set gpu fan";
  984. get_intrange(nextptr, &val1, &val2);
  985. if (val1 < 0 || val1 > 100 || val2 < 0 || val2 > 100)
  986. return "Invalid value passed to set_gpu_fan";
  987. gpus[device].min_fan = val1;
  988. gpus[device].gpu_fan = val2;
  989. device++;
  990. while ((nextptr = strtok(NULL, ",")) != NULL) {
  991. get_intrange(nextptr, &val1, &val2);
  992. if (val1 < 0 || val1 > 100 || val2 < 0 || val2 > 100)
  993. return "Invalid value passed to set_gpu_fan";
  994. gpus[device].min_fan = val1;
  995. gpus[device].gpu_fan = val2;
  996. device++;
  997. }
  998. if (device == 1) {
  999. for (i = 1; i < MAX_GPUDEVICES; i++) {
  1000. gpus[i].min_fan = gpus[0].min_fan;
  1001. gpus[i].gpu_fan = gpus[0].gpu_fan;
  1002. }
  1003. }
  1004. return NULL;
  1005. }
  1006. static char *set_gpu_memclock(char *arg)
  1007. {
  1008. int i, val = 0, device = 0;
  1009. char *nextptr;
  1010. nextptr = strtok(arg, ",");
  1011. if (nextptr == NULL)
  1012. return "Invalid parameters for set gpu memclock";
  1013. val = atoi(nextptr);
  1014. if (val <= 0 || val >= 9999)
  1015. return "Invalid value passed to set_gpu_memclock";
  1016. gpus[device++].gpu_memclock = val;
  1017. while ((nextptr = strtok(NULL, ",")) != NULL) {
  1018. val = atoi(nextptr);
  1019. if (val <= 0 || val >= 9999)
  1020. return "Invalid value passed to set_gpu_memclock";
  1021. gpus[device++].gpu_memclock = val;
  1022. }
  1023. if (device == 1) {
  1024. for (i = device; i < MAX_GPUDEVICES; i++)
  1025. gpus[i].gpu_memclock = gpus[0].gpu_memclock;
  1026. }
  1027. return NULL;
  1028. }
  1029. static char *set_gpu_powertune(char *arg)
  1030. {
  1031. int i, val = 0, device = 0;
  1032. char *nextptr;
  1033. nextptr = strtok(arg, ",");
  1034. if (nextptr == NULL)
  1035. return "Invalid parameters for set gpu powertune";
  1036. val = atoi(nextptr);
  1037. if (val < -99 || val > 99)
  1038. return "Invalid value passed to set_gpu_powertune";
  1039. gpus[device++].gpu_powertune = val;
  1040. while ((nextptr = strtok(NULL, ",")) != NULL) {
  1041. val = atoi(nextptr);
  1042. if (val < -99 || val > 99)
  1043. return "Invalid value passed to set_gpu_powertune";
  1044. gpus[device++].gpu_powertune = val;
  1045. }
  1046. if (device == 1) {
  1047. for (i = device; i < MAX_GPUDEVICES; i++)
  1048. gpus[i].gpu_powertune = gpus[0].gpu_powertune;
  1049. }
  1050. return NULL;
  1051. }
  1052. static char *set_gpu_vddc(char *arg)
  1053. {
  1054. int i, device = 0;
  1055. float val = 0;
  1056. char *nextptr;
  1057. nextptr = strtok(arg, ",");
  1058. if (nextptr == NULL)
  1059. return "Invalid parameters for set gpu vddc";
  1060. val = atof(nextptr);
  1061. if (val <= 0 || val >= 9999)
  1062. return "Invalid value passed to set_gpu_vddc";
  1063. gpus[device++].gpu_vddc = val;
  1064. while ((nextptr = strtok(NULL, ",")) != NULL) {
  1065. val = atof(nextptr);
  1066. if (val <= 0 || val >= 9999)
  1067. return "Invalid value passed to set_gpu_vddc";
  1068. gpus[device++].gpu_vddc = val;
  1069. }
  1070. if (device == 1) {
  1071. for (i = device; i < MAX_GPUDEVICES; i++)
  1072. gpus[i].gpu_vddc = gpus[0].gpu_vddc;
  1073. }
  1074. return NULL;
  1075. }
  1076. static char *set_temp_cutoff(char *arg)
  1077. {
  1078. int i, val = 0, device = 0, *tco;
  1079. char *nextptr;
  1080. nextptr = strtok(arg, ",");
  1081. if (nextptr == NULL)
  1082. return "Invalid parameters for set temp cutoff";
  1083. val = atoi(nextptr);
  1084. if (val < 0 || val > 200)
  1085. return "Invalid value passed to set temp cutoff";
  1086. tco = &gpus[device++].adl.cutofftemp;
  1087. *tco = val;
  1088. while ((nextptr = strtok(NULL, ",")) != NULL) {
  1089. val = atoi(nextptr);
  1090. if (val < 0 || val > 200)
  1091. return "Invalid value passed to set temp cutoff";
  1092. tco = &gpus[device++].adl.cutofftemp;
  1093. *tco = val;
  1094. }
  1095. if (device == 1) {
  1096. for (i = device; i < MAX_GPUDEVICES; i++) {
  1097. tco = &gpus[i].adl.cutofftemp;
  1098. *tco = val;
  1099. }
  1100. }
  1101. return NULL;
  1102. }
  1103. static char *set_temp_overheat(char *arg)
  1104. {
  1105. int i, val = 0, device = 0, *to;
  1106. char *nextptr;
  1107. nextptr = strtok(arg, ",");
  1108. if (nextptr == NULL)
  1109. return "Invalid parameters for set temp overheat";
  1110. val = atoi(nextptr);
  1111. if (val < 0 || val > 200)
  1112. return "Invalid value passed to set temp overheat";
  1113. to = &gpus[device++].adl.overtemp;
  1114. *to = val;
  1115. while ((nextptr = strtok(NULL, ",")) != NULL) {
  1116. val = atoi(nextptr);
  1117. if (val < 0 || val > 200)
  1118. return "Invalid value passed to set temp overheat";
  1119. to = &gpus[device++].adl.overtemp;
  1120. *to = val;
  1121. }
  1122. if (device == 1) {
  1123. for (i = device; i < MAX_GPUDEVICES; i++) {
  1124. to = &gpus[i].adl.overtemp;
  1125. *to = val;
  1126. }
  1127. }
  1128. return NULL;
  1129. }
  1130. static char *set_temp_target(char *arg)
  1131. {
  1132. int i, val = 0, device = 0, *tt;
  1133. char *nextptr;
  1134. nextptr = strtok(arg, ",");
  1135. if (nextptr == NULL)
  1136. return "Invalid parameters for set temp target";
  1137. val = atoi(nextptr);
  1138. if (val < 0 || val > 200)
  1139. return "Invalid value passed to set temp target";
  1140. tt = &gpus[device++].adl.targettemp;
  1141. *tt = val;
  1142. while ((nextptr = strtok(NULL, ",")) != NULL) {
  1143. val = atoi(nextptr);
  1144. if (val < 0 || val > 200)
  1145. return "Invalid value passed to set temp target";
  1146. tt = &gpus[device++].adl.targettemp;
  1147. *tt = val;
  1148. }
  1149. if (device == 1) {
  1150. for (i = device; i < MAX_GPUDEVICES; i++) {
  1151. tt = &gpus[i].adl.targettemp;
  1152. *tt = val;
  1153. }
  1154. }
  1155. return NULL;
  1156. }
  1157. #endif
  1158. /* These options are available from config file or commandline */
  1159. static struct opt_table opt_config_table[] = {
  1160. OPT_WITH_ARG("--algo|-a",
  1161. set_algo, show_algo, &opt_algo,
  1162. "Specify sha256 implementation for CPU mining:\n"
  1163. "\tauto\t\tBenchmark at startup and pick fastest algorithm"
  1164. "\n\tc\t\tLinux kernel sha256, implemented in C"
  1165. #ifdef WANT_SSE2_4WAY
  1166. "\n\t4way\t\ttcatm's 4-way SSE2 implementation"
  1167. #endif
  1168. #ifdef WANT_VIA_PADLOCK
  1169. "\n\tvia\t\tVIA padlock implementation"
  1170. #endif
  1171. "\n\tcryptopp\tCrypto++ C/C++ implementation"
  1172. #ifdef WANT_CRYPTOPP_ASM32
  1173. "\n\tcryptopp_asm32\tCrypto++ 32-bit assembler implementation"
  1174. #endif
  1175. #ifdef WANT_X8632_SSE2
  1176. "\n\tsse2_32\t\tSSE2 32 bit implementation for i386 machines"
  1177. #endif
  1178. #ifdef WANT_X8664_SSE2
  1179. "\n\tsse2_64\t\tSSE2 64 bit implementation for x86_64 machines"
  1180. #endif
  1181. #ifdef WANT_X8664_SSE4
  1182. "\n\tsse4_64\t\tSSE4.1 64 bit implementation for x86_64 machines"
  1183. #endif
  1184. ),
  1185. #ifdef HAVE_ADL
  1186. OPT_WITHOUT_ARG("--auto-fan",
  1187. opt_set_bool, &opt_autofan,
  1188. "Automatically adjust all GPU fan speeds to maintain a target temperature"),
  1189. OPT_WITHOUT_ARG("--auto-gpu",
  1190. opt_set_bool, &opt_autoengine,
  1191. "Automatically adjust all GPU engine clock speeds to maintain a target temperature"),
  1192. #endif
  1193. OPT_WITH_ARG("--bench-algo|-b",
  1194. set_int_0_to_9999, opt_show_intval, &opt_bench_algo,
  1195. opt_hidden),
  1196. OPT_WITH_ARG("--cpu-threads|-t",
  1197. force_nthreads_int, opt_show_intval, &opt_n_threads,
  1198. "Number of miner CPU threads"),
  1199. OPT_WITHOUT_ARG("--debug|-D",
  1200. enable_debug, &opt_debug,
  1201. "Enable debug output"),
  1202. #ifdef HAVE_OPENCL
  1203. OPT_WITH_ARG("--device|-d",
  1204. set_devices, NULL, &opt_device,
  1205. "Select device to use, (Use repeat -d for multiple devices, default: all)"),
  1206. OPT_WITHOUT_ARG("--disable-gpu|-G",
  1207. opt_set_bool, &opt_nogpu,
  1208. "Disable GPU mining even if suitable devices exist"),
  1209. OPT_WITHOUT_ARG("--enable-cpu|-C",
  1210. opt_set_bool, &opt_usecpu,
  1211. "Enable CPU mining with GPU mining (default: no CPU mining if suitable GPUs exist)"),
  1212. OPT_WITHOUT_ARG("--failover-only",
  1213. opt_set_bool, &opt_fail_only,
  1214. "Don't leak work to backup pools when primary pool is lagging"),
  1215. OPT_WITH_ARG("--gpu-threads|-g",
  1216. set_int_1_to_10, opt_show_intval, &opt_g_threads,
  1217. "Number of threads per GPU (1 - 10)"),
  1218. #ifdef HAVE_ADL
  1219. OPT_WITH_ARG("--gpu-engine",
  1220. set_gpu_engine, NULL, NULL,
  1221. "GPU engine (over)clock range in Mhz - one value, range and/or comma separated list (e.g. 850-900,900,750-850)"),
  1222. OPT_WITH_ARG("--gpu-fan",
  1223. set_gpu_fan, NULL, NULL,
  1224. "GPU fan percentage range - one value, range and/or comma separated list (e.g. 0-85,85,65)"),
  1225. OPT_WITH_ARG("--gpu-memclock",
  1226. set_gpu_memclock, NULL, NULL,
  1227. "Set the GPU memory (over)clock in Mhz - one value for all or separate by commas for per card"),
  1228. OPT_WITH_ARG("--gpu-powertune",
  1229. set_gpu_powertune, NULL, NULL,
  1230. "Set the GPU powertune percentage - one value for all or separate by commas for per card"),
  1231. OPT_WITH_ARG("--gpu-vddc",
  1232. set_gpu_vddc, NULL, NULL,
  1233. "Set the GPU voltage in Volts - one value for all or separate by commas for per card"),
  1234. #endif
  1235. OPT_WITH_ARG("--intensity|-I",
  1236. forced_int_1010, NULL, &scan_intensity,
  1237. "Intensity of GPU scanning (-10 -> 10, default: dynamic to maintain desktop interactivity)"),
  1238. OPT_WITH_ARG("--kernel-path|-K",
  1239. opt_set_charp, opt_show_charp, &opt_kernel_path,
  1240. "Specify a path to where the kernel .cl files are"),
  1241. OPT_WITH_ARG("--kernel|-k",
  1242. opt_set_charp, NULL, &opt_kernel,
  1243. "Select kernel to use (poclbm or phatk - default: auto)"),
  1244. #endif
  1245. OPT_WITHOUT_ARG("--load-balance",
  1246. set_loadbalance, &pool_strategy,
  1247. "Change multipool strategy from failover to even load balance"),
  1248. OPT_WITH_ARG("--log|-l",
  1249. set_int_0_to_9999, opt_show_intval, &opt_log_interval,
  1250. "Interval in seconds between log output"),
  1251. #if defined(unix)
  1252. OPT_WITH_ARG("--monitor|-m",
  1253. opt_set_charp, NULL, &opt_stderr_cmd,
  1254. "Use custom pipe cmd for output messages"),
  1255. #endif // defined(unix)
  1256. #ifdef HAVE_ADL
  1257. OPT_WITHOUT_ARG("--no-adl",
  1258. opt_set_bool, &opt_noadl,
  1259. "Disable the ATI display library used for monitoring and setting GPU parameters"),
  1260. #endif
  1261. OPT_WITHOUT_ARG("--no-longpoll",
  1262. opt_set_invbool, &want_longpoll,
  1263. "Disable X-Long-Polling support"),
  1264. #ifdef HAVE_OPENCL
  1265. OPT_WITHOUT_ARG("--no-restart",
  1266. opt_set_invbool, &opt_restart,
  1267. "Do not attempt to restart GPUs that hang"),
  1268. #endif
  1269. OPT_WITH_ARG("--pass|-p",
  1270. set_pass, NULL, NULL,
  1271. "Password for bitcoin JSON-RPC server"),
  1272. OPT_WITHOUT_ARG("--per-device-stats",
  1273. opt_set_bool, &want_per_device_stats,
  1274. "Force verbose mode and output per-device statistics"),
  1275. OPT_WITHOUT_ARG("--protocol-dump|-P",
  1276. opt_set_bool, &opt_protocol,
  1277. "Verbose dump of protocol-level activities"),
  1278. OPT_WITH_ARG("--queue|-Q",
  1279. set_int_0_to_10, opt_show_intval, &opt_queue,
  1280. "Minimum number of work items to have queued (0 - 10)"),
  1281. OPT_WITHOUT_ARG("--quiet|-q",
  1282. opt_set_bool, &opt_quiet,
  1283. "Disable logging output, display status and errors"),
  1284. OPT_WITHOUT_ARG("--real-quiet",
  1285. opt_set_bool, &opt_realquiet,
  1286. "Disable all output"),
  1287. OPT_WITH_ARG("--retries|-r",
  1288. opt_set_intval, opt_show_intval, &opt_retries,
  1289. "Number of times to retry before giving up, if JSON-RPC call fails (-1 means never)"),
  1290. OPT_WITH_ARG("--retry-pause|-R",
  1291. set_int_0_to_9999, opt_show_intval, &opt_fail_pause,
  1292. "Number of seconds to pause, between retries"),
  1293. OPT_WITH_ARG("--rotate",
  1294. set_rotate, opt_show_intval, &opt_rotate_period,
  1295. "Change multipool strategy from failover to regularly rotate at N minutes"),
  1296. OPT_WITHOUT_ARG("--round-robin",
  1297. set_rr, &pool_strategy,
  1298. "Change multipool strategy from failover to round robin on failure"),
  1299. OPT_WITH_ARG("--scan-time|-s",
  1300. set_int_0_to_9999, opt_show_intval, &opt_scantime,
  1301. "Upper bound on time spent scanning current work, in seconds"),
  1302. OPT_WITH_ARG("--sched-start",
  1303. set_schedtime, NULL, &schedstart,
  1304. "Set a time of day in HH:MM to start mining (a once off without a stop time)"),
  1305. OPT_WITH_ARG("--sched-stop",
  1306. set_schedtime, NULL, &schedstop,
  1307. "Set a time of day in HH:MM to stop mining (will quit without a start time)"),
  1308. OPT_WITH_ARG("--shares",
  1309. opt_set_intval, NULL, &opt_shares,
  1310. "Quit after mining N shares (default: unlimited)"),
  1311. OPT_WITHOUT_ARG("--submit-stale",
  1312. opt_set_bool, &opt_submit_stale,
  1313. "Submit shares even if they would normally be considered stale"),
  1314. #ifdef HAVE_SYSLOG_H
  1315. OPT_WITHOUT_ARG("--syslog",
  1316. opt_set_bool, &use_syslog,
  1317. "Use system log for output messages (default: standard error)"),
  1318. #endif
  1319. #ifdef HAVE_ADL
  1320. OPT_WITH_ARG("--temp-cutoff",
  1321. set_temp_cutoff, opt_show_intval, &opt_cutofftemp,
  1322. "Temperature where a GPU device will be automatically disabled, one value or comma separated list"),
  1323. OPT_WITH_ARG("--temp-hysteresis",
  1324. set_int_1_to_10, opt_show_intval, &opt_hysteresis,
  1325. "Set how much the temperature can fluctuate outside limits when automanaging speeds"),
  1326. OPT_WITH_ARG("--temp-overheat",
  1327. set_temp_overheat, opt_show_intval, &opt_overheattemp,
  1328. "Overheat temperature when automatically managing fan and GPU speeds, one value or comma separated list"),
  1329. OPT_WITH_ARG("--temp-target",
  1330. set_temp_target, opt_show_intval, &opt_targettemp,
  1331. "Target temperature when automatically managing fan and GPU speeds, one value or comma separated list"),
  1332. #endif
  1333. OPT_WITHOUT_ARG("--text-only|-T",
  1334. opt_set_invbool, &use_curses,
  1335. "Disable ncurses formatted screen output"),
  1336. OPT_WITH_ARG("--url|-o",
  1337. set_url, NULL, NULL,
  1338. "URL for bitcoin JSON-RPC server"),
  1339. OPT_WITH_ARG("--user|-u",
  1340. set_user, NULL, NULL,
  1341. "Username for bitcoin JSON-RPC server"),
  1342. #ifdef HAVE_OPENCL
  1343. OPT_WITH_ARG("--vectors|-v",
  1344. set_vector, NULL, &opt_vectors,
  1345. "Override detected optimal vector width (1, 2 or 4)"),
  1346. #endif
  1347. OPT_WITHOUT_ARG("--verbose",
  1348. opt_set_bool, &opt_log_output,
  1349. "Log verbose output to stderr as well as status output"),
  1350. #ifdef HAVE_OPENCL
  1351. OPT_WITH_ARG("--worksize|-w",
  1352. set_int_0_to_9999, opt_show_intval, &opt_worksize,
  1353. "Override detected optimal worksize"),
  1354. #endif
  1355. OPT_WITH_ARG("--userpass|-O",
  1356. set_userpass, NULL, NULL,
  1357. "Username:Password pair for bitcoin JSON-RPC server"),
  1358. OPT_ENDTABLE
  1359. };
  1360. static char *parse_config(json_t *config)
  1361. {
  1362. static char err_buf[200];
  1363. json_t *val;
  1364. struct opt_table *opt;
  1365. for (opt = opt_config_table; opt->type != OPT_END; opt++) {
  1366. char *p, *name;
  1367. /* We don't handle subtables. */
  1368. assert(!(opt->type & OPT_SUBTABLE));
  1369. /* Pull apart the option name(s). */
  1370. name = strdup(opt->names);
  1371. for (p = strtok(name, "|"); p; p = strtok(NULL, "|")) {
  1372. char *err;
  1373. /* Ignore short options. */
  1374. if (p[1] != '-')
  1375. continue;
  1376. val = json_object_get(config, p+2);
  1377. if (!val)
  1378. continue;
  1379. if ((opt->type & OPT_HASARG) && json_is_string(val)) {
  1380. err = opt->cb_arg(json_string_value(val),
  1381. opt->u.arg);
  1382. } else if ((opt->type&OPT_NOARG) && json_is_true(val)) {
  1383. err = opt->cb(opt->u.arg);
  1384. } else {
  1385. err = "Invalid value";
  1386. }
  1387. if (err) {
  1388. sprintf(err_buf, "Parsing JSON option %s: %s",
  1389. p, err);
  1390. return err_buf;
  1391. }
  1392. }
  1393. free(name);
  1394. }
  1395. return NULL;
  1396. }
  1397. static char *load_config(const char *arg, void *unused)
  1398. {
  1399. json_error_t err;
  1400. json_t *config;
  1401. config = json_load_file(arg, 0, &err);
  1402. if (!json_is_object(config))
  1403. return "JSON decode of file failed";
  1404. /* Parse the config now, so we can override it. That can keep pointers
  1405. * so don't free config object. */
  1406. return parse_config(config);
  1407. }
  1408. #ifdef HAVE_OPENCL
  1409. static char *print_ndevs_and_exit(int *ndevs)
  1410. {
  1411. printf("%i GPU devices detected\n", *ndevs);
  1412. fflush(stdout);
  1413. exit(*ndevs);
  1414. }
  1415. #endif
  1416. extern const char *opt_argv0;
  1417. static char *opt_verusage_and_exit(const char *extra)
  1418. {
  1419. printf("%s\n"
  1420. #ifdef HAVE_OPENCL
  1421. "Built with CPU and GPU mining support.\n"
  1422. #else
  1423. "Built with CPU mining support only.\n"
  1424. #endif
  1425. , packagename);
  1426. printf("%s", opt_usage(opt_argv0, extra));
  1427. fflush(stdout);
  1428. exit(0);
  1429. }
  1430. /* These options are available from commandline only */
  1431. static struct opt_table opt_cmdline_table[] = {
  1432. OPT_WITH_ARG("--config|-c",
  1433. load_config, NULL, NULL,
  1434. "Load a JSON-format configuration file\n"
  1435. "See example-cfg.json for an example configuration."),
  1436. OPT_WITHOUT_ARG("--help|-h",
  1437. opt_verusage_and_exit, NULL,
  1438. "Print this message"),
  1439. #ifdef HAVE_OPENCL
  1440. OPT_WITHOUT_ARG("--ndevs|-n",
  1441. print_ndevs_and_exit, &nDevs,
  1442. "Enumerate number of detected GPUs and exit"),
  1443. #endif
  1444. OPT_WITHOUT_ARG("--version|-V",
  1445. opt_version_and_exit, packagename,
  1446. "Display version and exit"),
  1447. OPT_ENDTABLE
  1448. };
  1449. static bool jobj_binary(const json_t *obj, const char *key,
  1450. void *buf, size_t buflen)
  1451. {
  1452. const char *hexstr;
  1453. json_t *tmp;
  1454. tmp = json_object_get(obj, key);
  1455. if (unlikely(!tmp)) {
  1456. applog(LOG_ERR, "JSON key '%s' not found", key);
  1457. return false;
  1458. }
  1459. hexstr = json_string_value(tmp);
  1460. if (unlikely(!hexstr)) {
  1461. applog(LOG_ERR, "JSON key '%s' is not a string", key);
  1462. return false;
  1463. }
  1464. if (!hex2bin(buf, hexstr, buflen))
  1465. return false;
  1466. return true;
  1467. }
  1468. static bool work_decode(const json_t *val, struct work *work)
  1469. {
  1470. if (unlikely(!jobj_binary(val, "midstate",
  1471. work->midstate, sizeof(work->midstate)))) {
  1472. applog(LOG_ERR, "JSON inval midstate");
  1473. goto err_out;
  1474. }
  1475. if (unlikely(!jobj_binary(val, "data", work->data, sizeof(work->data)))) {
  1476. applog(LOG_ERR, "JSON inval data");
  1477. goto err_out;
  1478. }
  1479. if (unlikely(!jobj_binary(val, "hash1", work->hash1, sizeof(work->hash1)))) {
  1480. applog(LOG_ERR, "JSON inval hash1");
  1481. goto err_out;
  1482. }
  1483. if (unlikely(!jobj_binary(val, "target", work->target, sizeof(work->target)))) {
  1484. applog(LOG_ERR, "JSON inval target");
  1485. goto err_out;
  1486. }
  1487. memset(work->hash, 0, sizeof(work->hash));
  1488. gettimeofday(&work->tv_staged, NULL);
  1489. return true;
  1490. err_out:
  1491. return false;
  1492. }
  1493. static inline int dev_from_id(int thr_id)
  1494. {
  1495. return thr_info[thr_id].cgpu->cpu_gpu;
  1496. }
  1497. /* Make the change in the recent value adjust dynamically when the difference
  1498. * is large, but damp it when the values are closer together. This allows the
  1499. * value to change quickly, but not fluctuate too dramatically when it has
  1500. * stabilised. */
  1501. static void decay_time(double *f, double fadd)
  1502. {
  1503. double ratio = 0;
  1504. if (likely(*f > 0)) {
  1505. ratio = fadd / *f;
  1506. if (ratio > 1)
  1507. ratio = 1 / ratio;
  1508. }
  1509. if (ratio > 0.9)
  1510. *f = (fadd * 0.1 + *f) / 1.1;
  1511. else
  1512. *f = (fadd + *f * 0.1) / 1.1;
  1513. }
  1514. static int requests_staged(void)
  1515. {
  1516. int ret;
  1517. mutex_lock(stgd_lock);
  1518. ret = HASH_COUNT(staged_work);
  1519. mutex_unlock(stgd_lock);
  1520. return ret;
  1521. }
  1522. static WINDOW *mainwin, *statuswin, *logwin;
  1523. static double total_secs = 0.1;
  1524. static char statusline[256];
  1525. static int cpucursor, gpucursor, logstart, logcursor;
  1526. struct cgpu_info gpus[MAX_GPUDEVICES]; /* Maximum number apparently possible */
  1527. static struct cgpu_info *cpus;
  1528. static inline void unlock_curses(void)
  1529. {
  1530. mutex_unlock(&curses_lock);
  1531. }
  1532. static inline void lock_curses(void)
  1533. {
  1534. mutex_lock(&curses_lock);
  1535. }
  1536. static bool curses_active_locked(void)
  1537. {
  1538. bool ret;
  1539. lock_curses();
  1540. ret = curses_active;
  1541. if (!ret)
  1542. unlock_curses();
  1543. return ret;
  1544. }
  1545. static void tailsprintf(char *f, const char *fmt, ...)
  1546. {
  1547. va_list ap;
  1548. va_start(ap, fmt);
  1549. vsprintf(f + strlen(f), fmt, ap);
  1550. va_end(ap);
  1551. }
  1552. static void get_statline(char *buf, struct cgpu_info *cgpu)
  1553. {
  1554. sprintf(buf, "%sPU%d ", cgpu->is_gpu ? "G" : "C", cgpu->cpu_gpu);
  1555. #ifdef HAVE_ADL
  1556. if (cgpu->has_adl) {
  1557. int gpu = cgpu->cpu_gpu;
  1558. float gt = gpu_temp(gpu);
  1559. int gf = gpu_fanspeed(gpu);
  1560. int gp = gpu_fanpercent(gpu);
  1561. if (gt != -1)
  1562. tailsprintf(buf, "%.1fC ", gt);
  1563. if (gf != -1)
  1564. tailsprintf(buf, "%dRPM ", gf);
  1565. else if (gp != -1)
  1566. tailsprintf(buf, "%d%% ", gp);
  1567. if (gt > -1 || gf > -1 || gp > -1)
  1568. tailsprintf(buf, "| ");
  1569. }
  1570. #endif
  1571. tailsprintf(buf, "(%ds):%.1f (avg):%.1f Mh/s | A:%d R:%d HW:%d U:%.2f/m",
  1572. opt_log_interval,
  1573. cgpu->rolling,
  1574. cgpu->total_mhashes / total_secs,
  1575. cgpu->accepted,
  1576. cgpu->rejected,
  1577. cgpu->hw_errors,
  1578. cgpu->utility);
  1579. }
  1580. static void text_print_status(int thr_id)
  1581. {
  1582. struct cgpu_info *cgpu = thr_info[thr_id].cgpu;
  1583. char logline[255];
  1584. get_statline(logline, cgpu);
  1585. printf("%s\n", logline);
  1586. }
  1587. /* Must be called with curses mutex lock held and curses_active */
  1588. static void curses_print_status(void)
  1589. {
  1590. struct pool *pool = current_pool();
  1591. wattron(statuswin, A_BOLD);
  1592. mvwprintw(statuswin, 0, 0, " " PACKAGE " version " VERSION " - Started: %s", datestamp);
  1593. if (opt_n_threads)
  1594. wprintw(statuswin, " CPU Algo: %s", algo_names[opt_algo]);
  1595. wattroff(statuswin, A_BOLD);
  1596. mvwhline(statuswin, 1, 0, '-', 80);
  1597. mvwprintw(statuswin, 2, 0, " %s", statusline);
  1598. wclrtoeol(statuswin);
  1599. mvwprintw(statuswin, 3, 0, " TQ: %d ST: %d SS: %d DW: %d NB: %d LW: %d GF: %d RF: %d I: %d",
  1600. total_queued, requests_staged(), total_stale, total_discarded, new_blocks,
  1601. local_work, total_go, total_ro, scan_intensity);
  1602. wclrtoeol(statuswin);
  1603. if (pool_strategy == POOL_LOADBALANCE && total_pools > 1)
  1604. mvwprintw(statuswin, 4, 0, " Connected to multiple pools with%s LP",
  1605. have_longpoll ? "": "out");
  1606. else
  1607. mvwprintw(statuswin, 4, 0, " Connected to %s with%s LP as user %s",
  1608. pool->rpc_url, have_longpoll ? "": "out", pool->rpc_user);
  1609. wclrtoeol(statuswin);
  1610. mvwprintw(statuswin, 5, 0, " Block: %s... Started: %s", current_hash, blocktime);
  1611. mvwhline(statuswin, 6, 0, '-', 80);
  1612. mvwhline(statuswin, logstart - 1, 0, '-', 80);
  1613. mvwprintw(statuswin, gpucursor - 1, 1, "[P]ool management %s[S]ettings [D]isplay options [Q]uit",
  1614. opt_g_threads ? "[G]PU management " : "");
  1615. /* The window will be updated once we're done with all the devices */
  1616. wnoutrefresh(statuswin);
  1617. }
  1618. static void curses_print_devstatus(int thr_id)
  1619. {
  1620. if (thr_id >= 0 && thr_id < gpu_threads) {
  1621. int gpu = dev_from_id(thr_id);
  1622. struct cgpu_info *cgpu = &gpus[gpu];
  1623. cgpu->utility = cgpu->accepted / ( total_secs ? total_secs : 1 ) * 60;
  1624. mvwprintw(statuswin, gpucursor + gpu, 0, " GPU %d: ", gpu);
  1625. #ifdef HAVE_ADL
  1626. if (cgpu->has_adl) {
  1627. float gt = gpu_temp(gpu);
  1628. int gf = gpu_fanspeed(gpu);
  1629. int gp = gpu_fanpercent(gpu);
  1630. if (gt != -1)
  1631. wprintw(statuswin, "%.1fC ", gt);
  1632. if (gf != -1)
  1633. wprintw(statuswin, "%4dRPM ", gf);
  1634. else if (gp != -1)
  1635. wprintw(statuswin, "%2d%% ", gp);
  1636. if (gt > -1 || gf > -1 || gp > -1)
  1637. wprintw(statuswin, "| ");
  1638. }
  1639. #endif
  1640. if (cgpu->status == LIFE_DEAD)
  1641. wprintw(statuswin, "DEAD ");
  1642. else if (cgpu->status == LIFE_SICK)
  1643. wprintw(statuswin, "SICK ");
  1644. else if (!gpu_devices[gpu])
  1645. wprintw(statuswin, "DISABLED ");
  1646. else
  1647. wprintw(statuswin, "%.1f", cgpu->rolling);
  1648. wprintw(statuswin, "/%.1fMh/s | A:%d R:%d HW:%d U:%.2f/m",
  1649. cgpu->total_mhashes / total_secs,
  1650. cgpu->accepted, cgpu->rejected, cgpu->hw_errors,
  1651. cgpu->utility);
  1652. wclrtoeol(statuswin);
  1653. } else if (thr_id >= gpu_threads) {
  1654. int cpu = dev_from_id(thr_id);
  1655. struct cgpu_info *cgpu = &cpus[cpu];
  1656. cgpu->utility = cgpu->accepted / ( total_secs ? total_secs : 1 ) * 60;
  1657. mvwprintw(statuswin, cpucursor + cpu, 0, " CPU %d: %.2f/%.2fMh/s | A:%d R:%d U:%.2f/m",
  1658. cpu, cgpu->rolling, cgpu->total_mhashes / total_secs,
  1659. cgpu->accepted, cgpu->rejected,
  1660. cgpu->utility);
  1661. wclrtoeol(statuswin);
  1662. }
  1663. wnoutrefresh(statuswin);
  1664. }
  1665. static void print_status(int thr_id)
  1666. {
  1667. if (!curses_active)
  1668. text_print_status(thr_id);
  1669. }
  1670. /* Check for window resize. Called with curses mutex locked */
  1671. static inline bool change_logwinsize(void)
  1672. {
  1673. int x, y, logx, logy;
  1674. getmaxyx(mainwin, y, x);
  1675. getmaxyx(logwin, logy, logx);
  1676. y -= logcursor;
  1677. /* Detect screen size change */
  1678. if ((x != logx || y != logy) && x >= 80 && y >= 25) {
  1679. wresize(logwin, y, x);
  1680. return true;
  1681. }
  1682. return false;
  1683. }
  1684. /* For mandatory printing when mutex is already locked */
  1685. static void wlog(const char *f, ...)
  1686. {
  1687. va_list ap;
  1688. va_start(ap, f);
  1689. vw_printw(logwin, f, ap);
  1690. va_end(ap);
  1691. }
  1692. /* Mandatory printing */
  1693. void wlogprint(const char *f, ...)
  1694. {
  1695. va_list ap;
  1696. if (curses_active_locked()) {
  1697. va_start(ap, f);
  1698. vw_printw(logwin, f, ap);
  1699. va_end(ap);
  1700. wrefresh(logwin);
  1701. unlock_curses();
  1702. }
  1703. }
  1704. void log_curses(int prio, const char *f, va_list ap)
  1705. {
  1706. if (opt_quiet && prio != LOG_ERR)
  1707. return;
  1708. if (curses_active_locked()) {
  1709. if (!opt_loginput) {
  1710. vw_printw(logwin, f, ap);
  1711. wrefresh(logwin);
  1712. }
  1713. unlock_curses();
  1714. } else
  1715. vprintf(f, ap);
  1716. }
  1717. static void clear_logwin(void)
  1718. {
  1719. if (curses_active_locked()) {
  1720. wclear(logwin);
  1721. wrefresh(logwin);
  1722. unlock_curses();
  1723. }
  1724. }
  1725. static bool submit_upstream_work(const struct work *work)
  1726. {
  1727. char *hexstr = NULL;
  1728. json_t *val, *res;
  1729. char s[345], sd[345];
  1730. bool rc = false;
  1731. int thr_id = work->thr_id;
  1732. struct cgpu_info *cgpu = thr_info[thr_id].cgpu;
  1733. CURL *curl = curl_easy_init();
  1734. struct pool *pool = work->pool;
  1735. bool rolltime;
  1736. if (unlikely(!curl)) {
  1737. applog(LOG_ERR, "CURL initialisation failed");
  1738. return rc;
  1739. }
  1740. /* build hex string */
  1741. hexstr = bin2hex(work->data, sizeof(work->data));
  1742. if (unlikely(!hexstr)) {
  1743. applog(LOG_ERR, "submit_upstream_work OOM");
  1744. goto out_nofree;
  1745. }
  1746. /* build JSON-RPC request */
  1747. sprintf(s,
  1748. "{\"method\": \"getwork\", \"params\": [ \"%s\" ], \"id\":1}\r\n",
  1749. hexstr);
  1750. sprintf(sd,
  1751. "{\"method\": \"getwork\", \"params\": [ \"%s\" ], \"id\":1}",
  1752. hexstr);
  1753. if (opt_debug)
  1754. applog(LOG_DEBUG, "DBG: sending %s submit RPC call: %s", pool->rpc_url, sd);
  1755. /* issue JSON-RPC request */
  1756. val = json_rpc_call(curl, pool->rpc_url, pool->rpc_userpass, s, false, false, &rolltime, pool);
  1757. if (unlikely(!val)) {
  1758. applog(LOG_INFO, "submit_upstream_work json_rpc_call failed");
  1759. if (!pool_tset(pool, &pool->submit_fail)) {
  1760. total_ro++;
  1761. pool->remotefail_occasions++;
  1762. applog(LOG_WARNING, "Pool %d communication failure, caching submissions", pool->pool_no);
  1763. }
  1764. goto out;
  1765. } else if (pool_tclear(pool, &pool->submit_fail))
  1766. applog(LOG_WARNING, "Pool %d communication resumed, submitting work", pool->pool_no);
  1767. res = json_object_get(val, "result");
  1768. /* Theoretically threads could race when modifying accepted and
  1769. * rejected values but the chance of two submits completing at the
  1770. * same time is zero so there is no point adding extra locking */
  1771. if (json_is_true(res)) {
  1772. cgpu->accepted++;
  1773. total_accepted++;
  1774. pool->accepted++;
  1775. if (opt_debug)
  1776. applog(LOG_DEBUG, "PROOF OF WORK RESULT: true (yay!!!)");
  1777. if (!QUIET) {
  1778. if (total_pools > 1)
  1779. applog(LOG_WARNING, "Accepted %.8s %sPU %d thread %d pool %d",
  1780. hexstr + 152, cgpu->is_gpu? "G" : "C", cgpu->cpu_gpu, thr_id, work->pool->pool_no);
  1781. else
  1782. applog(LOG_WARNING, "Accepted %.8s %sPU %d thread %d",
  1783. hexstr + 152, cgpu->is_gpu? "G" : "C", cgpu->cpu_gpu, thr_id);
  1784. }
  1785. if (opt_shares && total_accepted >= opt_shares) {
  1786. applog(LOG_WARNING, "Successfully mined %d accepted shares as requested and exiting.", opt_shares);
  1787. kill_work();
  1788. goto out;
  1789. }
  1790. } else {
  1791. cgpu->rejected++;
  1792. total_rejected++;
  1793. pool->rejected++;
  1794. if (opt_debug)
  1795. applog(LOG_DEBUG, "PROOF OF WORK RESULT: false (booooo)");
  1796. if (!QUIET) {
  1797. if (total_pools > 1)
  1798. applog(LOG_WARNING, "Rejected %.8s %sPU %d thread %d pool %d",
  1799. hexstr + 152, cgpu->is_gpu? "G" : "C", cgpu->cpu_gpu, thr_id, work->pool->pool_no);
  1800. else
  1801. applog(LOG_WARNING, "Rejected %.8s %sPU %d thread %d",
  1802. hexstr + 152, cgpu->is_gpu? "G" : "C", cgpu->cpu_gpu, thr_id);
  1803. }
  1804. }
  1805. cgpu->utility = cgpu->accepted / ( total_secs ? total_secs : 1 ) * 60;
  1806. if (!opt_realquiet)
  1807. print_status(thr_id);
  1808. if (!want_per_device_stats) {
  1809. char logline[255];
  1810. get_statline(logline, cgpu);
  1811. applog(LOG_INFO, "%s", logline);
  1812. }
  1813. json_decref(val);
  1814. rc = true;
  1815. out:
  1816. free(hexstr);
  1817. out_nofree:
  1818. curl_easy_cleanup(curl);
  1819. return rc;
  1820. }
  1821. static const char *rpc_req =
  1822. "{\"method\": \"getwork\", \"params\": [], \"id\":0}\r\n";
  1823. /* Select any active pool in a rotating fashion when loadbalance is chosen */
  1824. static inline struct pool *select_pool(bool lagging)
  1825. {
  1826. static int rotating_pool = 0;
  1827. struct pool *pool, *cp;
  1828. cp = current_pool();
  1829. if (pool_strategy != POOL_LOADBALANCE && !lagging)
  1830. pool = cp;
  1831. else
  1832. pool = NULL;
  1833. while (!pool) {
  1834. if (++rotating_pool >= total_pools)
  1835. rotating_pool = 0;
  1836. pool = pools[rotating_pool];
  1837. if ((!pool->idle && pool->enabled) || pool == cp)
  1838. break;
  1839. pool = NULL;
  1840. }
  1841. return pool;
  1842. }
  1843. static bool get_upstream_work(struct work *work, bool lagging)
  1844. {
  1845. struct pool *pool;
  1846. json_t *val = NULL;
  1847. bool rc = false;
  1848. int retries = 0;
  1849. CURL *curl;
  1850. curl = curl_easy_init();
  1851. if (unlikely(!curl)) {
  1852. applog(LOG_ERR, "CURL initialisation failed");
  1853. return rc;
  1854. }
  1855. pool = select_pool(lagging);
  1856. if (opt_debug)
  1857. applog(LOG_DEBUG, "DBG: sending %s get RPC call: %s", pool->rpc_url, rpc_req);
  1858. retry:
  1859. /* A single failure response here might be reported as a dead pool and
  1860. * there may be temporary denied messages etc. falsely reporting
  1861. * failure so retry a few times before giving up */
  1862. while (!val && retries++ < 3)
  1863. val = json_rpc_call(curl, pool->rpc_url, pool->rpc_userpass, rpc_req,
  1864. false, false, &work->rolltime, pool);
  1865. if (unlikely(!val)) {
  1866. applog(LOG_DEBUG, "Failed json_rpc_call in get_upstream_work");
  1867. goto out;
  1868. }
  1869. rc = work_decode(json_object_get(val, "result"), work);
  1870. if (!rc && retries < 3)
  1871. goto retry;
  1872. work->pool = pool;
  1873. total_getworks++;
  1874. pool->getwork_requested++;
  1875. json_decref(val);
  1876. out:
  1877. curl_easy_cleanup(curl);
  1878. return rc;
  1879. }
  1880. static struct work *make_work(void)
  1881. {
  1882. struct work *work = calloc(1, sizeof(struct work));
  1883. if (unlikely(!work))
  1884. quit(1, "Failed to calloc work in make_work");
  1885. work->id = total_work++;
  1886. return work;
  1887. }
  1888. static void free_work(struct work *work)
  1889. {
  1890. free(work);
  1891. }
  1892. static void workio_cmd_free(struct workio_cmd *wc)
  1893. {
  1894. if (!wc)
  1895. return;
  1896. switch (wc->cmd) {
  1897. case WC_SUBMIT_WORK:
  1898. free_work(wc->u.work);
  1899. break;
  1900. default: /* do nothing */
  1901. break;
  1902. }
  1903. memset(wc, 0, sizeof(*wc)); /* poison */
  1904. free(wc);
  1905. }
  1906. static void disable_curses(void)
  1907. {
  1908. if (curses_active_locked()) {
  1909. curses_active = false;
  1910. leaveok(logwin, false);
  1911. leaveok(statuswin, false);
  1912. leaveok(mainwin, false);
  1913. nocbreak();
  1914. echo();
  1915. delwin(logwin);
  1916. delwin(statuswin);
  1917. delwin(mainwin);
  1918. endwin();
  1919. refresh();
  1920. #ifdef WIN32
  1921. // Move the cursor to after curses output.
  1922. HANDLE hout = GetStdHandle(STD_OUTPUT_HANDLE);
  1923. CONSOLE_SCREEN_BUFFER_INFO csbi;
  1924. COORD coord;
  1925. if (GetConsoleScreenBufferInfo(hout, &csbi)) {
  1926. coord.X = 0;
  1927. coord.Y = csbi.dwSize.Y - 1;
  1928. SetConsoleCursorPosition(hout, coord);
  1929. }
  1930. #endif
  1931. unlock_curses();
  1932. }
  1933. }
  1934. static void print_summary(void);
  1935. void kill_work(void)
  1936. {
  1937. struct workio_cmd *wc;
  1938. struct thr_info *thr;
  1939. unsigned int i;
  1940. disable_curses();
  1941. applog(LOG_INFO, "Received kill message");
  1942. /* Kill the watchdog thread */
  1943. thr = &thr_info[watchdog_thr_id];
  1944. if (thr && thr->pth)
  1945. pthread_cancel(*thr->pth);
  1946. /* Stop the mining threads*/
  1947. for (i = 0; i < mining_threads; i++) {
  1948. thr = &thr_info[i];
  1949. if (!thr)
  1950. continue;
  1951. if (!thr->pth)
  1952. continue;
  1953. if (thr->q)
  1954. tq_freeze(thr->q);
  1955. /* No need to check if this succeeds or not */
  1956. pthread_cancel(*thr->pth);
  1957. }
  1958. /* Stop the others */
  1959. thr = &thr_info[stage_thr_id];
  1960. if (thr && thr->pth)
  1961. pthread_cancel(*thr->pth);
  1962. thr = &thr_info[longpoll_thr_id];
  1963. if (thr && thr->pth)
  1964. pthread_cancel(*thr->pth);
  1965. wc = calloc(1, sizeof(*wc));
  1966. if (unlikely(!wc)) {
  1967. applog(LOG_ERR, "Failed to calloc wc in kill_work");
  1968. /* We're just trying to die anyway, so forget graceful */
  1969. exit (1);
  1970. }
  1971. wc->cmd = WC_DIE;
  1972. wc->thr = 0;
  1973. if (opt_debug)
  1974. applog(LOG_DEBUG, "Pushing die request to work thread");
  1975. thr = &thr_info[work_thr_id];
  1976. if (thr) {
  1977. if (unlikely(!tq_push(thr->q, wc))) {
  1978. applog(LOG_ERR, "Failed to tq_push work in kill_work");
  1979. exit (1);
  1980. }
  1981. if (thr->pth)
  1982. pthread_cancel(*thr->pth);
  1983. }
  1984. }
  1985. void quit(int status, const char *format, ...);
  1986. static void sighandler(int sig)
  1987. {
  1988. /* Restore signal handlers so we can still quit if kill_work fails */
  1989. sigaction(SIGTERM, &termhandler, NULL);
  1990. sigaction(SIGINT, &inthandler, NULL);
  1991. kill_work();
  1992. quit(sig, "Received interrupt signal.");
  1993. }
  1994. static void *get_work_thread(void *userdata)
  1995. {
  1996. struct workio_cmd *wc = (struct workio_cmd *)userdata;
  1997. struct work *ret_work;
  1998. int failures = 0;
  1999. pthread_detach(pthread_self());
  2000. ret_work = make_work();
  2001. if (wc->thr)
  2002. ret_work->thr = wc->thr;
  2003. else
  2004. ret_work->thr = NULL;
  2005. /* obtain new work from bitcoin via JSON-RPC */
  2006. while (!get_upstream_work(ret_work, wc->lagging)) {
  2007. if (unlikely((opt_retries >= 0) && (++failures > opt_retries))) {
  2008. applog(LOG_ERR, "json_rpc_call failed, terminating workio thread");
  2009. free_work(ret_work);
  2010. kill_work();
  2011. goto out;
  2012. }
  2013. /* pause, then restart work-request loop */
  2014. applog(LOG_DEBUG, "json_rpc_call failed on get work, retry after %d seconds",
  2015. fail_pause);
  2016. sleep(fail_pause);
  2017. fail_pause += opt_fail_pause;
  2018. }
  2019. fail_pause = opt_fail_pause;
  2020. if (opt_debug)
  2021. applog(LOG_DEBUG, "Pushing work to requesting thread");
  2022. /* send work to requesting thread */
  2023. if (unlikely(!tq_push(thr_info[stage_thr_id].q, ret_work))) {
  2024. applog(LOG_ERR, "Failed to tq_push work in workio_get_work");
  2025. kill_work();
  2026. free_work(ret_work);
  2027. }
  2028. out:
  2029. workio_cmd_free(wc);
  2030. return NULL;
  2031. }
  2032. static bool workio_get_work(struct workio_cmd *wc)
  2033. {
  2034. pthread_t get_thread;
  2035. if (unlikely(pthread_create(&get_thread, NULL, get_work_thread, (void *)wc))) {
  2036. applog(LOG_ERR, "Failed to create get_work_thread");
  2037. return false;
  2038. }
  2039. return true;
  2040. }
  2041. static bool stale_work(struct work *work)
  2042. {
  2043. struct timeval now;
  2044. bool ret = false;
  2045. char *hexstr;
  2046. gettimeofday(&now, NULL);
  2047. if ((now.tv_sec - work->tv_staged.tv_sec) >= opt_scantime)
  2048. return true;
  2049. hexstr = bin2hex(work->data, 18);
  2050. if (unlikely(!hexstr)) {
  2051. applog(LOG_ERR, "submit_work_thread OOM");
  2052. return ret;
  2053. }
  2054. if (strcmp(hexstr, current_block))
  2055. ret = true;
  2056. free(hexstr);
  2057. return ret;
  2058. }
  2059. static void *submit_work_thread(void *userdata)
  2060. {
  2061. struct workio_cmd *wc = (struct workio_cmd *)userdata;
  2062. struct work *work = wc->u.work;
  2063. struct pool *pool = work->pool;
  2064. int failures = 0;
  2065. pthread_detach(pthread_self());
  2066. if (!opt_submit_stale && stale_work(work)) {
  2067. applog(LOG_WARNING, "Stale share detected, discarding");
  2068. total_stale++;
  2069. pool->stale_shares++;
  2070. goto out;
  2071. }
  2072. /* submit solution to bitcoin via JSON-RPC */
  2073. while (!submit_upstream_work(work)) {
  2074. if (!opt_submit_stale && stale_work(work)) {
  2075. applog(LOG_WARNING, "Stale share detected, discarding");
  2076. total_stale++;
  2077. pool->stale_shares++;
  2078. break;
  2079. }
  2080. if (unlikely((opt_retries >= 0) && (++failures > opt_retries))) {
  2081. applog(LOG_ERR, "Failed %d retries ...terminating workio thread", opt_retries);
  2082. kill_work();
  2083. break;
  2084. }
  2085. /* pause, then restart work-request loop */
  2086. applog(LOG_INFO, "json_rpc_call failed on submit_work, retry after %d seconds",
  2087. fail_pause);
  2088. sleep(fail_pause);
  2089. fail_pause += opt_fail_pause;
  2090. }
  2091. fail_pause = opt_fail_pause;
  2092. out:
  2093. workio_cmd_free(wc);
  2094. return NULL;
  2095. }
  2096. static bool workio_submit_work(struct workio_cmd *wc)
  2097. {
  2098. pthread_t submit_thread;
  2099. if (unlikely(pthread_create(&submit_thread, NULL, submit_work_thread, (void *)wc))) {
  2100. applog(LOG_ERR, "Failed to create submit_work_thread");
  2101. return false;
  2102. }
  2103. return true;
  2104. }
  2105. /* Find the pool that currently has the highest priority */
  2106. static struct pool *priority_pool(int choice)
  2107. {
  2108. struct pool *ret = NULL;
  2109. int i;
  2110. for (i = 0; i < total_pools; i++) {
  2111. struct pool *pool = pools[i];
  2112. if (pool->prio == choice) {
  2113. ret = pool;
  2114. break;
  2115. }
  2116. }
  2117. if (unlikely(!ret)) {
  2118. applog(LOG_ERR, "WTF No pool %d found!", choice);
  2119. return pools[choice];
  2120. }
  2121. return ret;
  2122. }
  2123. static void restart_longpoll(void);
  2124. static void switch_pools(struct pool *selected)
  2125. {
  2126. struct pool *pool, *last_pool;
  2127. int i, pool_no;
  2128. mutex_lock(&control_lock);
  2129. last_pool = currentpool;
  2130. pool_no = currentpool->pool_no;
  2131. /* Switch selected to pool number 0 and move the rest down */
  2132. if (selected) {
  2133. if (selected->prio != 0) {
  2134. for (i = 0; i < total_pools; i++) {
  2135. pool = pools[i];
  2136. if (pool->prio < selected->prio)
  2137. pool->prio++;
  2138. }
  2139. selected->prio = 0;
  2140. }
  2141. }
  2142. switch (pool_strategy) {
  2143. /* Both of these set to the master pool */
  2144. case POOL_FAILOVER:
  2145. case POOL_LOADBALANCE:
  2146. for (i = 0; i < total_pools; i++) {
  2147. pool = priority_pool(i);
  2148. if (!pool->idle && pool->enabled) {
  2149. pool_no = pool->pool_no;
  2150. break;
  2151. }
  2152. }
  2153. break;
  2154. /* Both of these simply increment and cycle */
  2155. case POOL_ROUNDROBIN:
  2156. case POOL_ROTATE:
  2157. if (selected) {
  2158. pool_no = selected->pool_no;
  2159. break;
  2160. }
  2161. pool_no++;
  2162. if (pool_no >= total_pools)
  2163. pool_no = 0;
  2164. break;
  2165. default:
  2166. break;
  2167. }
  2168. currentpool = pools[pool_no];
  2169. pool = currentpool;
  2170. mutex_unlock(&control_lock);
  2171. if (pool != last_pool) {
  2172. applog(LOG_WARNING, "Switching to %s", pool->rpc_url);
  2173. /* Only switch longpoll if the new pool also supports LP */
  2174. if (pool->hdr_path)
  2175. restart_longpoll();
  2176. }
  2177. /* Reset the queued amount to allow more to be queued for the new pool */
  2178. mutex_lock(&qd_lock);
  2179. total_queued = 0;
  2180. mutex_unlock(&qd_lock);
  2181. }
  2182. static void discard_work(struct work *work)
  2183. {
  2184. if (!work->clone && !work->rolls && !work->mined) {
  2185. if (work->pool)
  2186. work->pool->discarded_work++;
  2187. total_discarded++;
  2188. if (opt_debug)
  2189. applog(LOG_DEBUG, "Discarded work");
  2190. } else if (opt_debug)
  2191. applog(LOG_DEBUG, "Discarded cloned or rolled work");
  2192. free_work(work);
  2193. }
  2194. /* This is overkill, but at least we'll know accurately how much work is
  2195. * queued to prevent ever being left without work */
  2196. static void inc_queued(void)
  2197. {
  2198. mutex_lock(&qd_lock);
  2199. total_queued++;
  2200. mutex_unlock(&qd_lock);
  2201. }
  2202. static void dec_queued(void)
  2203. {
  2204. mutex_lock(&qd_lock);
  2205. if (total_queued > 0)
  2206. total_queued--;
  2207. mutex_unlock(&qd_lock);
  2208. }
  2209. static int requests_queued(void)
  2210. {
  2211. int ret;
  2212. mutex_lock(&qd_lock);
  2213. ret = total_queued;
  2214. mutex_unlock(&qd_lock);
  2215. return ret;
  2216. }
  2217. static int discard_stale(void)
  2218. {
  2219. struct work *work, *tmp;
  2220. int i, stale = 0;
  2221. mutex_lock(stgd_lock);
  2222. HASH_ITER(hh, staged_work, work, tmp) {
  2223. if (stale_work(work)) {
  2224. HASH_DEL(staged_work, work);
  2225. if (work->clone)
  2226. --staged_clones;
  2227. discard_work(work);
  2228. stale++;
  2229. }
  2230. }
  2231. mutex_unlock(stgd_lock);
  2232. if (opt_debug)
  2233. applog(LOG_DEBUG, "Discarded %d stales that didn't match current hash", stale);
  2234. /* Dec queued outside the loop to not have recursive locks */
  2235. for (i = 0; i < stale; i++)
  2236. dec_queued();
  2237. return stale;
  2238. }
  2239. static bool queue_request(struct thr_info *thr, bool needed);
  2240. static void restart_threads(void)
  2241. {
  2242. int i, stale;
  2243. /* Discard staged work that is now stale */
  2244. stale = discard_stale();
  2245. for (i = 0; i < stale; i++)
  2246. queue_request(NULL, true);
  2247. for (i = 0; i < mining_threads; i++)
  2248. work_restart[i].restart = 1;
  2249. }
  2250. static void set_curblock(char *hexstr, unsigned char *hash)
  2251. {
  2252. unsigned char hash_swap[32];
  2253. char *old_hash = NULL;
  2254. struct timeval tv_now;
  2255. /* Don't free current_hash directly to avoid dereferencing it when
  2256. * we might be accessing its data elsewhere */
  2257. if (current_hash)
  2258. old_hash = current_hash;
  2259. strcpy(current_block, hexstr);
  2260. gettimeofday(&tv_now, NULL);
  2261. get_timestamp(blocktime, &tv_now);
  2262. swap256(hash_swap, hash);
  2263. current_hash = bin2hex(hash_swap, 16);
  2264. if (unlikely(!current_hash))
  2265. quit (1, "set_curblock OOM");
  2266. if (old_hash)
  2267. free(old_hash);
  2268. }
  2269. static void test_work_current(struct work *work)
  2270. {
  2271. struct block *s;
  2272. char *hexstr;
  2273. hexstr = bin2hex(work->data, 18);
  2274. if (unlikely(!hexstr)) {
  2275. applog(LOG_ERR, "stage_thread OOM");
  2276. return;
  2277. }
  2278. /* Search to see if this block exists yet and if not, consider it a
  2279. * new block and set the current block details to this one */
  2280. rd_lock(&blk_lock);
  2281. HASH_FIND_STR(blocks, hexstr, s);
  2282. rd_unlock(&blk_lock);
  2283. if (!s) {
  2284. s = calloc(sizeof(struct block), 1);
  2285. if (unlikely(!s))
  2286. quit (1, "test_work_current OOM");
  2287. strcpy(s->hash, hexstr);
  2288. wr_lock(&blk_lock);
  2289. HASH_ADD_STR(blocks, hash, s);
  2290. wr_unlock(&blk_lock);
  2291. set_curblock(hexstr, work->data);
  2292. new_blocks++;
  2293. if (block_changed != BLOCK_LP && block_changed != BLOCK_FIRST) {
  2294. block_changed = BLOCK_DETECT;
  2295. if (have_longpoll)
  2296. applog(LOG_WARNING, "New block detected on network before longpoll, waiting on fresh work");
  2297. else
  2298. applog(LOG_WARNING, "New block detected on network, waiting on fresh work");
  2299. } else
  2300. block_changed = BLOCK_NONE;
  2301. restart_threads();
  2302. }
  2303. free(hexstr);
  2304. }
  2305. static int tv_sort(struct work *worka, struct work *workb)
  2306. {
  2307. return worka->tv_staged.tv_sec - workb->tv_staged.tv_sec;
  2308. }
  2309. static bool hash_push(struct work *work)
  2310. {
  2311. bool rc = true;
  2312. mutex_lock(stgd_lock);
  2313. if (likely(!getq->frozen)) {
  2314. HASH_ADD_INT(staged_work, id, work);
  2315. HASH_SORT(staged_work, tv_sort);
  2316. if (work->clone)
  2317. ++staged_clones;
  2318. } else
  2319. rc = false;
  2320. pthread_cond_signal(&getq->cond);
  2321. mutex_unlock(stgd_lock);
  2322. return rc;
  2323. }
  2324. static void *stage_thread(void *userdata)
  2325. {
  2326. struct thr_info *mythr = userdata;
  2327. bool ok = true;
  2328. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  2329. while (ok) {
  2330. struct work *work = NULL;
  2331. if (opt_debug)
  2332. applog(LOG_DEBUG, "Popping work to stage thread");
  2333. work = tq_pop(mythr->q, NULL);
  2334. if (unlikely(!work)) {
  2335. applog(LOG_ERR, "Failed to tq_pop in stage_thread");
  2336. ok = false;
  2337. break;
  2338. }
  2339. test_work_current(work);
  2340. if (opt_debug)
  2341. applog(LOG_DEBUG, "Pushing work to getwork queue");
  2342. if (unlikely(!hash_push(work))) {
  2343. applog(LOG_WARNING, "Failed to hash_push in stage_thread");
  2344. continue;
  2345. }
  2346. }
  2347. tq_freeze(mythr->q);
  2348. return NULL;
  2349. }
  2350. int curses_int(const char *query)
  2351. {
  2352. int ret;
  2353. char *cvar;
  2354. cvar = curses_input(query);
  2355. ret = atoi(cvar);
  2356. free(cvar);
  2357. return ret;
  2358. }
  2359. static bool input_pool(bool live);
  2360. static int active_pools(void)
  2361. {
  2362. int ret = 0;
  2363. int i;
  2364. for (i = 0; i < total_pools; i++) {
  2365. if ((pools[i])->enabled)
  2366. ret++;
  2367. }
  2368. return ret;
  2369. }
  2370. static void display_pool_summary(struct pool *pool)
  2371. {
  2372. double efficiency = 0.0;
  2373. if (curses_active_locked()) {
  2374. wlog("Pool: %s\n", pool->rpc_url);
  2375. wlog("%s long-poll support\n", pool->hdr_path ? "Has" : "Does not have");
  2376. wlog(" Queued work requests: %d\n", pool->getwork_requested);
  2377. wlog(" Share submissions: %d\n", pool->accepted + pool->rejected);
  2378. wlog(" Accepted shares: %d\n", pool->accepted);
  2379. wlog(" Rejected shares: %d\n", pool->rejected);
  2380. if (pool->accepted || pool->rejected)
  2381. wlog(" Reject ratio: %.1f\n", (double)(pool->rejected * 100) / (double)(pool->accepted + pool->rejected));
  2382. efficiency = pool->getwork_requested ? pool->accepted * 100.0 / pool->getwork_requested : 0.0;
  2383. wlog(" Efficiency (accepted / queued): %.0f%%\n", efficiency);
  2384. wlog(" Discarded work due to new blocks: %d\n", pool->discarded_work);
  2385. wlog(" Stale submissions discarded due to new blocks: %d\n", pool->stale_shares);
  2386. wlog(" Unable to get work from server occasions: %d\n", pool->getfail_occasions);
  2387. wlog(" Submitting work remotely delay occasions: %d\n\n", pool->remotefail_occasions);
  2388. wrefresh(logwin);
  2389. unlock_curses();
  2390. }
  2391. }
  2392. /* We can't remove the memory used for this struct pool because there may
  2393. * still be work referencing it. We just remove it from the pools list */
  2394. static void remove_pool(struct pool *pool)
  2395. {
  2396. int i, last_pool = total_pools - 1;
  2397. struct pool *other;
  2398. /* Boost priority of any lower prio than this one */
  2399. for (i = 0; i < total_pools; i++) {
  2400. other = pools[i];
  2401. if (other->prio > pool->prio)
  2402. other->prio--;
  2403. }
  2404. if (pool->pool_no < last_pool) {
  2405. /* Swap the last pool for this one */
  2406. (pools[last_pool])->pool_no = pool->pool_no;
  2407. pools[pool->pool_no] = pools[last_pool];
  2408. }
  2409. /* Give it an invalid number */
  2410. pool->pool_no = total_pools;
  2411. total_pools--;
  2412. }
  2413. static void display_pools(void)
  2414. {
  2415. struct pool *pool;
  2416. int selected, i;
  2417. char input;
  2418. opt_loginput = true;
  2419. immedok(logwin, true);
  2420. updated:
  2421. clear_logwin();
  2422. for (i = 0; i < total_pools; i++) {
  2423. pool = pools[i];
  2424. if (pool == current_pool())
  2425. wattron(logwin, A_BOLD);
  2426. if (!pool->enabled)
  2427. wattron(logwin, A_DIM);
  2428. wlogprint("%d: %s %s Priority %d: %s User:%s\n",
  2429. pool->pool_no,
  2430. pool->enabled? "Enabled" : "Disabled",
  2431. pool->idle? "Dead" : "Alive",
  2432. pool->prio,
  2433. pool->rpc_url, pool->rpc_user);
  2434. wattroff(logwin, A_BOLD | A_DIM);
  2435. }
  2436. retry:
  2437. wlogprint("\nCurrent pool management strategy: %s\n",
  2438. strategies[pool_strategy]);
  2439. if (pool_strategy == POOL_ROTATE)
  2440. wlogprint("Set to rotate every %d minutes\n", opt_rotate_period);
  2441. wlogprint("[A]dd pool [R]emove pool [D]isable pool [E]nable pool\n");
  2442. wlogprint("[C]hange management strategy [S]witch pool [I]nformation\n");
  2443. wlogprint("Or press any other key to continue\n");
  2444. input = getch();
  2445. if (!strncasecmp(&input, "a", 1)) {
  2446. input_pool(true);
  2447. goto updated;
  2448. } else if (!strncasecmp(&input, "r", 1)) {
  2449. if (total_pools <= 1) {
  2450. wlogprint("Cannot remove last pool");
  2451. goto retry;
  2452. }
  2453. selected = curses_int("Select pool number");
  2454. if (selected < 0 || selected >= total_pools) {
  2455. wlogprint("Invalid selection\n");
  2456. goto retry;
  2457. }
  2458. pool = pools[selected];
  2459. if (pool == current_pool())
  2460. switch_pools(NULL);
  2461. if (pool == current_pool()) {
  2462. wlogprint("Unable to remove pool due to activity\n");
  2463. goto retry;
  2464. }
  2465. pool->enabled = false;
  2466. remove_pool(pool);
  2467. goto updated;
  2468. } else if (!strncasecmp(&input, "s", 1)) {
  2469. selected = curses_int("Select pool number");
  2470. if (selected < 0 || selected >= total_pools) {
  2471. wlogprint("Invalid selection\n");
  2472. goto retry;
  2473. }
  2474. pool = pools[selected];
  2475. pool->enabled = true;
  2476. switch_pools(pool);
  2477. goto updated;
  2478. } else if (!strncasecmp(&input, "d", 1)) {
  2479. if (active_pools() <= 1) {
  2480. wlogprint("Cannot disable last pool");
  2481. goto retry;
  2482. }
  2483. selected = curses_int("Select pool number");
  2484. if (selected < 0 || selected >= total_pools) {
  2485. wlogprint("Invalid selection\n");
  2486. goto retry;
  2487. }
  2488. pool = pools[selected];
  2489. pool->enabled = false;
  2490. if (pool == current_pool())
  2491. switch_pools(NULL);
  2492. goto updated;
  2493. } else if (!strncasecmp(&input, "e", 1)) {
  2494. selected = curses_int("Select pool number");
  2495. if (selected < 0 || selected >= total_pools) {
  2496. wlogprint("Invalid selection\n");
  2497. goto retry;
  2498. }
  2499. pool = pools[selected];
  2500. pool->enabled = true;
  2501. if (pool->prio < current_pool()->prio)
  2502. switch_pools(pool);
  2503. goto updated;
  2504. } else if (!strncasecmp(&input, "c", 1)) {
  2505. for (i = 0; i <= TOP_STRATEGY; i++)
  2506. wlogprint("%d: %s\n", i, strategies[i]);
  2507. selected = curses_int("Select strategy number type");
  2508. if (selected < 0 || selected > TOP_STRATEGY) {
  2509. wlogprint("Invalid selection\n");
  2510. goto retry;
  2511. }
  2512. if (selected == POOL_ROTATE) {
  2513. opt_rotate_period = curses_int("Select interval in minutes");
  2514. if (opt_rotate_period < 0 || opt_rotate_period > 9999) {
  2515. opt_rotate_period = 0;
  2516. wlogprint("Invalid selection\n");
  2517. goto retry;
  2518. }
  2519. }
  2520. pool_strategy = selected;
  2521. switch_pools(NULL);
  2522. goto updated;
  2523. } else if (!strncasecmp(&input, "i", 1)) {
  2524. selected = curses_int("Select pool number");
  2525. if (selected < 0 || selected >= total_pools) {
  2526. wlogprint("Invalid selection\n");
  2527. goto retry;
  2528. }
  2529. pool = pools[selected];
  2530. display_pool_summary(pool);
  2531. goto retry;
  2532. }
  2533. clear_logwin();
  2534. immedok(logwin, false);
  2535. opt_loginput = false;
  2536. }
  2537. static void display_options(void)
  2538. {
  2539. int selected;
  2540. char input;
  2541. opt_loginput = true;
  2542. immedok(logwin, true);
  2543. retry:
  2544. clear_logwin();
  2545. wlogprint("[N]ormal [C]lear [S]ilent mode (disable all output)\n");
  2546. wlogprint("[D]ebug:%s\n[P]er-device:%s\n[Q]uiet:%s\n[V]erbose:%s\n[R]PC debug:%s\n[L]og interval:%d\n",
  2547. opt_debug ? "on" : "off",
  2548. want_per_device_stats? "on" : "off",
  2549. opt_quiet ? "on" : "off",
  2550. opt_log_output ? "on" : "off",
  2551. opt_protocol ? "on" : "off",
  2552. opt_log_interval);
  2553. wlogprint("Select an option or any other key to return\n");
  2554. input = getch();
  2555. if (!strncasecmp(&input, "q", 1)) {
  2556. opt_quiet ^= true;
  2557. clear_logwin();
  2558. wlogprint("Quiet mode %s\n", opt_quiet ? "enabled" : "disabled");
  2559. } else if (!strncasecmp(&input, "v", 1)) {
  2560. opt_log_output ^= true;
  2561. if (opt_log_output)
  2562. opt_quiet = false;
  2563. clear_logwin();
  2564. wlogprint("Verbose mode %s\n", opt_log_output ? "enabled" : "disabled");
  2565. } else if (!strncasecmp(&input, "n", 1)) {
  2566. opt_log_output = false;
  2567. opt_debug = false;
  2568. opt_quiet = false;
  2569. opt_protocol = false;
  2570. want_per_device_stats = false;
  2571. clear_logwin();
  2572. wlogprint("Output mode reset to normal\n");
  2573. } else if (!strncasecmp(&input, "d", 1)) {
  2574. opt_debug ^= true;
  2575. opt_log_output = opt_debug;
  2576. if (opt_debug)
  2577. opt_quiet = false;
  2578. clear_logwin();
  2579. wlogprint("Debug mode %s\n", opt_debug ? "enabled" : "disabled");
  2580. } else if (!strncasecmp(&input, "p", 1)) {
  2581. want_per_device_stats ^= true;
  2582. opt_log_output = want_per_device_stats;
  2583. clear_logwin();
  2584. wlogprint("Per-device stats %s\n", want_per_device_stats ? "enabled" : "disabled");
  2585. } else if (!strncasecmp(&input, "r", 1)) {
  2586. opt_protocol ^= true;
  2587. if (opt_protocol)
  2588. opt_quiet = false;
  2589. clear_logwin();
  2590. wlogprint("RPC protocol debugging %s\n", opt_protocol ? "enabled" : "disabled");
  2591. } else if (!strncasecmp(&input, "c", 1))
  2592. clear_logwin();
  2593. else if (!strncasecmp(&input, "l", 1)) {
  2594. selected = curses_int("Interval in seconds");
  2595. if (selected < 0 || selected > 9999) {
  2596. wlogprint("Invalid selection\n");
  2597. goto retry;
  2598. }
  2599. opt_log_interval = selected;
  2600. clear_logwin();
  2601. wlogprint("Log interval set to %d seconds\n", opt_log_interval);
  2602. } else if (!strncasecmp(&input, "s", 1)) {
  2603. opt_realquiet = true;
  2604. clear_logwin();
  2605. } else clear_logwin();
  2606. immedok(logwin, false);
  2607. opt_loginput = false;
  2608. }
  2609. static void set_options(void)
  2610. {
  2611. int selected;
  2612. char input;
  2613. opt_loginput = true;
  2614. immedok(logwin, true);
  2615. retry:
  2616. clear_logwin();
  2617. wlogprint("\n[D]ynamic mode: %s\n[L]ongpoll: %s\n",
  2618. opt_dynamic ? "On" : "Off", want_longpoll ? "On" : "Off");
  2619. if (opt_dynamic)
  2620. wlogprint("[I]ntensity: Dynamic\n");
  2621. else
  2622. wlogprint("[I]ntensity: %d\n", scan_intensity);
  2623. wlogprint("[Q]ueue: %d\n[S]cantime: %d\n[R]etries: %d\n[P]ause: %d\n",
  2624. opt_queue, opt_scantime, opt_retries, opt_fail_pause);
  2625. wlogprint("Select an option or any other key to return\n");
  2626. input = getch();
  2627. if (!strncasecmp(&input, "q", 1)) {
  2628. selected = curses_int("Extra work items to queue");
  2629. if (selected < 0 || selected > 9999) {
  2630. wlogprint("Invalid selection\n");
  2631. goto retry;
  2632. }
  2633. opt_queue = selected;
  2634. goto retry;
  2635. } else if (!strncasecmp(&input, "d", 1)) {
  2636. opt_dynamic ^= true;
  2637. goto retry;
  2638. } else if (!strncasecmp(&input, "l", 1)) {
  2639. want_longpoll ^= true;
  2640. applog(LOG_WARNING, "Longpoll %s", want_longpoll ? "enabled" : "disabled");
  2641. restart_longpoll();
  2642. goto retry;
  2643. } else if (!strncasecmp(&input, "i", 1)) {
  2644. selected = curses_int("Set GPU scan intensity (-10 -> 10)");
  2645. if (selected < -10 || selected > 10) {
  2646. wlogprint("Invalid selection\n");
  2647. goto retry;
  2648. }
  2649. opt_dynamic = false;
  2650. scan_intensity = selected;
  2651. goto retry;
  2652. } else if (!strncasecmp(&input, "s", 1)) {
  2653. selected = curses_int("Set scantime in seconds");
  2654. if (selected < 0 || selected > 9999) {
  2655. wlogprint("Invalid selection\n");
  2656. goto retry;
  2657. }
  2658. opt_scantime = selected;
  2659. goto retry;
  2660. } else if (!strncasecmp(&input, "r", 1)) {
  2661. selected = curses_int("Retries before failing (-1 infinite)");
  2662. if (selected < -1 || selected > 9999) {
  2663. wlogprint("Invalid selection\n");
  2664. goto retry;
  2665. }
  2666. opt_retries = selected;
  2667. goto retry;
  2668. } else if (!strncasecmp(&input, "p", 1)) {
  2669. selected = curses_int("Seconds to pause before network retries");
  2670. if (selected < 1 || selected > 9999) {
  2671. wlogprint("Invalid selection\n");
  2672. goto retry;
  2673. }
  2674. opt_fail_pause = selected;
  2675. goto retry;
  2676. }
  2677. clear_logwin();
  2678. immedok(logwin, false);
  2679. opt_loginput = false;
  2680. }
  2681. #ifdef HAVE_OPENCL
  2682. static void reinit_device(struct cgpu_info *cgpu);
  2683. static void manage_gpu(void)
  2684. {
  2685. struct thr_info *thr;
  2686. int selected, gpu, i;
  2687. char checkin[40];
  2688. char input;
  2689. if (!opt_g_threads)
  2690. return;
  2691. opt_loginput = true;
  2692. immedok(logwin, true);
  2693. clear_logwin();
  2694. retry:
  2695. for (gpu = 0; gpu < nDevs; gpu++) {
  2696. struct cgpu_info *cgpu = &gpus[gpu];
  2697. wlog("GPU %d: %.1f / %.1f Mh/s | A:%d R:%d HW:%d U:%.2f/m\n",
  2698. gpu, cgpu->rolling, cgpu->total_mhashes / total_secs,
  2699. cgpu->accepted, cgpu->rejected, cgpu->hw_errors,
  2700. cgpu->utility);
  2701. #ifdef HAVE_ADL
  2702. if (gpus[gpu].has_adl) {
  2703. int engineclock = 0, memclock = 0, activity = 0, fanspeed = 0, fanpercent = 0, powertune = 0;
  2704. float temp = 0, vddc = 0;
  2705. if (gpu_stats(gpu, &temp, &engineclock, &memclock, &vddc, &activity, &fanspeed, &fanpercent, &powertune)) {
  2706. char logline[255];
  2707. strcpy(logline, ""); // In case it has no data
  2708. if (temp != -1)
  2709. sprintf(logline, "%.1f C ", temp);
  2710. if (fanspeed != -1 || fanpercent != -1) {
  2711. tailsprintf(logline, "F: ");
  2712. if (fanpercent != -1)
  2713. tailsprintf(logline, "%d%% ", fanpercent);
  2714. if (fanspeed != -1)
  2715. tailsprintf(logline, "(%d RPM) ", fanspeed);
  2716. tailsprintf(logline, " ");
  2717. }
  2718. if (engineclock != -1)
  2719. tailsprintf(logline, "E: %d MHz ", engineclock);
  2720. if (memclock != -1)
  2721. tailsprintf(logline, "M: %d Mhz ", memclock);
  2722. if (vddc != -1)
  2723. tailsprintf(logline, "V: %.3fV ", vddc);
  2724. if (activity != -1)
  2725. tailsprintf(logline, "A: %d%% ", activity);
  2726. if (powertune != -1)
  2727. tailsprintf(logline, "P: %d%%", powertune);
  2728. tailsprintf(logline, "\n");
  2729. wlog(logline);
  2730. }
  2731. }
  2732. #endif
  2733. wlog("Last initialised: %s\n", cgpu->init);
  2734. for (i = 0; i < mining_threads; i++) {
  2735. thr = &thr_info[i];
  2736. if (thr->cgpu != cgpu)
  2737. continue;
  2738. get_datestamp(checkin, &thr->last);
  2739. wlog("Thread %d: %.1f Mh/s %s ", i, thr->rolling, gpu_devices[gpu] ? "Enabled" : "Disabled");
  2740. switch (cgpu->status) {
  2741. default:
  2742. case LIFE_WELL:
  2743. wlog("ALIVE");
  2744. break;
  2745. case LIFE_SICK:
  2746. wlog("SICK reported in %s", checkin);
  2747. break;
  2748. case LIFE_DEAD:
  2749. wlog("DEAD reported in %s", checkin);
  2750. break;
  2751. case LIFE_NOSTART:
  2752. wlog("Never started");
  2753. break;
  2754. }
  2755. wlog("\n");
  2756. }
  2757. wlog("\n");
  2758. }
  2759. wlogprint("[E]nable [D]isable [R]estart GPU %s\n",adl_active ? "[C]hange settings" : "");
  2760. wlogprint("Or press any other key to continue\n");
  2761. input = getch();
  2762. if (!strncasecmp(&input, "e", 1)) {
  2763. selected = curses_int("Select GPU to enable");
  2764. if (selected < 0 || selected >= nDevs) {
  2765. wlogprint("Invalid selection\n");
  2766. goto retry;
  2767. }
  2768. if (gpu_devices[selected]) {
  2769. wlogprint("Device already enabled\n");
  2770. goto retry;
  2771. }
  2772. gpu_devices[selected] = true;
  2773. for (i = 0; i < gpu_threads; i++) {
  2774. if (dev_from_id(i) != selected)
  2775. continue;
  2776. thr = &thr_info[i];
  2777. if (thr->cgpu->status != LIFE_WELL) {
  2778. wlogprint("Must restart device before enabling it");
  2779. gpu_devices[selected] = false;
  2780. goto retry;
  2781. }
  2782. if (opt_debug)
  2783. applog(LOG_DEBUG, "Pushing ping to thread %d", thr->id);
  2784. tq_push(thr->q, &ping);
  2785. }
  2786. } if (!strncasecmp(&input, "d", 1)) {
  2787. selected = curses_int("Select GPU to disable");
  2788. if (selected < 0 || selected >= nDevs) {
  2789. wlogprint("Invalid selection\n");
  2790. goto retry;
  2791. }
  2792. if (!gpu_devices[selected]) {
  2793. wlogprint("Device already disabled\n");
  2794. goto retry;
  2795. }
  2796. gpu_devices[selected] = false;
  2797. } else if (!strncasecmp(&input, "r", 1)) {
  2798. selected = curses_int("Select GPU to attempt to restart");
  2799. if (selected < 0 || selected >= nDevs) {
  2800. wlogprint("Invalid selection\n");
  2801. goto retry;
  2802. }
  2803. wlogprint("Attempting to restart threads of GPU %d\n", selected);
  2804. reinit_device(&gpus[selected]);
  2805. } else if (adl_active && (!strncasecmp(&input, "c", 1))) {
  2806. selected = curses_int("Select GPU to change settings on");
  2807. if (selected < 0 || selected >= nDevs) {
  2808. wlogprint("Invalid selection\n");
  2809. goto retry;
  2810. }
  2811. change_gpusettings(selected);
  2812. }
  2813. clear_logwin();
  2814. immedok(logwin, false);
  2815. opt_loginput = false;
  2816. }
  2817. #else
  2818. static void manage_gpu(void)
  2819. {
  2820. }
  2821. #endif
  2822. static void *input_thread(void *userdata)
  2823. {
  2824. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  2825. if (!curses_active)
  2826. return NULL;
  2827. while (1) {
  2828. char input;
  2829. input = getch();
  2830. if (!strncasecmp(&input, "q", 1)) {
  2831. kill_work();
  2832. return NULL;
  2833. } else if (!strncasecmp(&input, "d", 1))
  2834. display_options();
  2835. else if (!strncasecmp(&input, "p", 1))
  2836. display_pools();
  2837. else if (!strncasecmp(&input, "s", 1))
  2838. set_options();
  2839. else if (!strncasecmp(&input, "g", 1))
  2840. manage_gpu();
  2841. if (opt_realquiet) {
  2842. disable_curses();
  2843. break;
  2844. }
  2845. }
  2846. return NULL;
  2847. }
  2848. static void *workio_thread(void *userdata)
  2849. {
  2850. struct thr_info *mythr = userdata;
  2851. bool ok = true;
  2852. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  2853. while (ok) {
  2854. struct workio_cmd *wc;
  2855. if (opt_debug)
  2856. applog(LOG_DEBUG, "Popping work to work thread");
  2857. /* wait for workio_cmd sent to us, on our queue */
  2858. wc = tq_pop(mythr->q, NULL);
  2859. if (unlikely(!wc)) {
  2860. applog(LOG_ERR, "Failed to tq_pop in workio_thread");
  2861. ok = false;
  2862. break;
  2863. }
  2864. /* process workio_cmd */
  2865. switch (wc->cmd) {
  2866. case WC_GET_WORK:
  2867. ok = workio_get_work(wc);
  2868. break;
  2869. case WC_SUBMIT_WORK:
  2870. ok = workio_submit_work(wc);
  2871. break;
  2872. case WC_DIE:
  2873. default:
  2874. ok = false;
  2875. break;
  2876. }
  2877. }
  2878. tq_freeze(mythr->q);
  2879. return NULL;
  2880. }
  2881. static void thread_reportin(struct thr_info *thr)
  2882. {
  2883. gettimeofday(&thr->last, NULL);
  2884. thr->cgpu->status = LIFE_WELL;
  2885. thr->getwork = false;
  2886. }
  2887. static inline void thread_reportout(struct thr_info *thr)
  2888. {
  2889. thr->getwork = true;
  2890. }
  2891. static void hashmeter(int thr_id, struct timeval *diff,
  2892. unsigned long hashes_done)
  2893. {
  2894. struct timeval temp_tv_end, total_diff;
  2895. double secs;
  2896. double local_secs;
  2897. double utility, efficiency = 0.0;
  2898. static double local_mhashes_done = 0;
  2899. static double rolling = 0;
  2900. double local_mhashes = (double)hashes_done / 1000000.0;
  2901. struct cgpu_info *cgpu = thr_info[thr_id].cgpu;
  2902. bool showlog = false;
  2903. /* Update the last time this thread reported in */
  2904. if (thr_id >= 0)
  2905. gettimeofday(&thr_info[thr_id].last, NULL);
  2906. /* Don't bother calculating anything if we're not displaying it */
  2907. if (opt_realquiet || !opt_log_interval)
  2908. return;
  2909. secs = (double)diff->tv_sec + ((double)diff->tv_usec / 1000000.0);
  2910. /* So we can call hashmeter from a non worker thread */
  2911. if (thr_id >= 0) {
  2912. struct thr_info *thr = &thr_info[thr_id];
  2913. double thread_rolling = 0.0;
  2914. int i;
  2915. if (opt_debug)
  2916. applog(LOG_DEBUG, "[thread %d: %lu hashes, %.0f khash/sec]",
  2917. thr_id, hashes_done, hashes_done / secs);
  2918. /* Rolling average for each thread and each device */
  2919. decay_time(&thr->rolling, local_mhashes / secs);
  2920. for (i = 0; i < mining_threads; i++) {
  2921. struct thr_info *th = &thr_info[i];
  2922. if (th->cgpu == cgpu)
  2923. thread_rolling += th->rolling;
  2924. }
  2925. decay_time(&cgpu->rolling, thread_rolling);
  2926. cgpu->total_mhashes += local_mhashes;
  2927. // If needed, output detailed, per-device stats
  2928. if (want_per_device_stats) {
  2929. struct timeval now;
  2930. struct timeval elapsed;
  2931. gettimeofday(&now, NULL);
  2932. timeval_subtract(&elapsed, &now, &thr->cgpu->last_message_tv);
  2933. if (opt_log_interval <= elapsed.tv_sec) {
  2934. struct cgpu_info *cgpu = thr->cgpu;
  2935. char logline[255];
  2936. cgpu->last_message_tv = now;
  2937. get_statline(logline, cgpu);
  2938. if (!curses_active) {
  2939. printf("%s \r", logline);
  2940. fflush(stdout);
  2941. } else
  2942. applog(LOG_INFO, "%s", logline);
  2943. }
  2944. }
  2945. }
  2946. /* Totals are updated by all threads so can race without locking */
  2947. mutex_lock(&hash_lock);
  2948. gettimeofday(&temp_tv_end, NULL);
  2949. timeval_subtract(&total_diff, &temp_tv_end, &total_tv_end);
  2950. total_mhashes_done += local_mhashes;
  2951. local_mhashes_done += local_mhashes;
  2952. if (total_diff.tv_sec < opt_log_interval)
  2953. /* Only update the total every opt_log_interval seconds */
  2954. goto out_unlock;
  2955. showlog = true;
  2956. gettimeofday(&total_tv_end, NULL);
  2957. local_secs = (double)total_diff.tv_sec + ((double)total_diff.tv_usec / 1000000.0);
  2958. decay_time(&rolling, local_mhashes_done / local_secs);
  2959. timeval_subtract(&total_diff, &total_tv_end, &total_tv_start);
  2960. total_secs = (double)total_diff.tv_sec +
  2961. ((double)total_diff.tv_usec / 1000000.0);
  2962. utility = total_accepted / ( total_secs ? total_secs : 1 ) * 60;
  2963. efficiency = total_getworks ? total_accepted * 100.0 / total_getworks : 0.0;
  2964. sprintf(statusline, "%s(%ds):%.1f (avg):%.1f Mh/s | Q:%d A:%d R:%d HW:%d E:%.0f%% U:%.2f/m",
  2965. want_per_device_stats ? "ALL " : "",
  2966. opt_log_interval, rolling, total_mhashes_done / total_secs,
  2967. total_getworks, total_accepted, total_rejected, hw_errors, efficiency, utility);
  2968. local_mhashes_done = 0;
  2969. out_unlock:
  2970. mutex_unlock(&hash_lock);
  2971. if (showlog) {
  2972. if (!curses_active) {
  2973. printf("%s \r", statusline);
  2974. fflush(stdout);
  2975. } else
  2976. applog(LOG_INFO, "%s", statusline);
  2977. }
  2978. }
  2979. static bool pool_active(struct pool *pool, bool pinging)
  2980. {
  2981. bool ret = false;
  2982. json_t *val;
  2983. CURL *curl;
  2984. bool rolltime;
  2985. curl = curl_easy_init();
  2986. if (unlikely(!curl)) {
  2987. applog(LOG_ERR, "CURL initialisation failed");
  2988. return false;
  2989. }
  2990. applog(LOG_INFO, "Testing pool %s", pool->rpc_url);
  2991. val = json_rpc_call(curl, pool->rpc_url, pool->rpc_userpass, rpc_req,
  2992. true, false, &rolltime, pool);
  2993. if (val) {
  2994. struct work *work = make_work();
  2995. bool rc;
  2996. rc = work_decode(json_object_get(val, "result"), work);
  2997. if (rc) {
  2998. applog(LOG_DEBUG, "Successfully retrieved and deciphered work from pool %u %s",
  2999. pool->pool_no, pool->rpc_url);
  3000. work->pool = pool;
  3001. work->rolltime = rolltime;
  3002. if (opt_debug)
  3003. applog(LOG_DEBUG, "Pushing pooltest work to base pool");
  3004. tq_push(thr_info[stage_thr_id].q, work);
  3005. total_getworks++;
  3006. pool->getwork_requested++;
  3007. inc_queued();
  3008. ret = true;
  3009. gettimeofday(&pool->tv_idle, NULL);
  3010. } else {
  3011. applog(LOG_DEBUG, "Successfully retrieved but FAILED to decipher work from pool %u %s",
  3012. pool->pool_no, pool->rpc_url);
  3013. free_work(work);
  3014. }
  3015. json_decref(val);
  3016. } else {
  3017. applog(LOG_DEBUG, "FAILED to retrieve work from pool %u %s",
  3018. pool->pool_no, pool->rpc_url);
  3019. if (!pinging)
  3020. applog(LOG_WARNING, "Pool down, URL or credentials invalid");
  3021. }
  3022. curl_easy_cleanup(curl);
  3023. return ret;
  3024. }
  3025. static void pool_died(struct pool *pool)
  3026. {
  3027. if (!pool_tset(pool, &pool->idle)) {
  3028. applog(LOG_WARNING, "Pool %d %s not responding!", pool->pool_no, pool->rpc_url);
  3029. gettimeofday(&pool->tv_idle, NULL);
  3030. switch_pools(NULL);
  3031. }
  3032. }
  3033. static void pool_resus(struct pool *pool)
  3034. {
  3035. applog(LOG_WARNING, "Pool %d %s recovered", pool->pool_no, pool->rpc_url);
  3036. if (pool->prio < current_pool()->prio && pool_strategy == POOL_FAILOVER)
  3037. switch_pools(NULL);
  3038. }
  3039. static bool queue_request(struct thr_info *thr, bool needed)
  3040. {
  3041. struct workio_cmd *wc;
  3042. int rq = requests_queued();
  3043. if (rq >= mining_threads + staged_clones)
  3044. return true;
  3045. /* fill out work request message */
  3046. wc = calloc(1, sizeof(*wc));
  3047. if (unlikely(!wc)) {
  3048. applog(LOG_ERR, "Failed to calloc wc in queue_request");
  3049. return false;
  3050. }
  3051. wc->cmd = WC_GET_WORK;
  3052. if (thr)
  3053. wc->thr = thr;
  3054. else
  3055. wc->thr = NULL;
  3056. /* If we're queueing work faster than we can stage it, consider the
  3057. * system lagging and allow work to be gathered from another pool if
  3058. * possible */
  3059. if (rq && needed && !requests_staged() && !opt_fail_only)
  3060. wc->lagging = true;
  3061. if (opt_debug)
  3062. applog(LOG_DEBUG, "Queueing getwork request to work thread");
  3063. /* send work request to workio thread */
  3064. if (unlikely(!tq_push(thr_info[work_thr_id].q, wc))) {
  3065. applog(LOG_ERR, "Failed to tq_push in queue_request");
  3066. workio_cmd_free(wc);
  3067. return false;
  3068. }
  3069. inc_queued();
  3070. return true;
  3071. }
  3072. struct work *hash_pop(const struct timespec *abstime)
  3073. {
  3074. struct work *work = NULL;
  3075. int rc;
  3076. mutex_lock(stgd_lock);
  3077. if (HASH_COUNT(staged_work))
  3078. goto pop;
  3079. if (abstime)
  3080. rc = pthread_cond_timedwait(&getq->cond, stgd_lock, abstime);
  3081. else
  3082. rc = pthread_cond_wait(&getq->cond, stgd_lock);
  3083. if (rc)
  3084. goto out;
  3085. if (!HASH_COUNT(staged_work))
  3086. goto out;
  3087. pop:
  3088. work = staged_work;
  3089. HASH_DEL(staged_work, work);
  3090. if (work->clone)
  3091. --staged_clones;
  3092. out:
  3093. mutex_unlock(stgd_lock);
  3094. return work;
  3095. }
  3096. static inline bool should_roll(struct work *work)
  3097. {
  3098. int rs;
  3099. rs = requests_staged();
  3100. if (rs >= mining_threads)
  3101. return false;
  3102. if (work->pool == current_pool() || pool_strategy == POOL_LOADBALANCE || !rs)
  3103. return true;
  3104. return false;
  3105. }
  3106. static inline bool can_roll(struct work *work)
  3107. {
  3108. return (work->pool && !stale_work(work) && work->rolltime &&
  3109. work->rolls < 11 && !work->clone);
  3110. }
  3111. static void roll_work(struct work *work)
  3112. {
  3113. uint32_t *work_ntime;
  3114. uint32_t ntime;
  3115. work_ntime = (uint32_t *)(work->data + 68);
  3116. ntime = be32toh(*work_ntime);
  3117. ntime++;
  3118. *work_ntime = htobe32(ntime);
  3119. local_work++;
  3120. work->rolls++;
  3121. work->blk.nonce = 0;
  3122. if (opt_debug)
  3123. applog(LOG_DEBUG, "Successfully rolled work");
  3124. }
  3125. /* Recycle the work at a higher starting res_nonce if we know the thread we're
  3126. * giving it to will not finish scanning it. We keep the master copy to be
  3127. * recycled more rapidly and discard the clone to avoid repeating work */
  3128. static bool divide_work(struct timeval *now, struct work *work, uint32_t hash_div)
  3129. {
  3130. uint64_t hash_inc;
  3131. if (work->clone)
  3132. return false;
  3133. hash_inc = MAXTHREADS / hash_div * 2;
  3134. if ((uint64_t)work->blk.nonce + hash_inc < MAXTHREADS) {
  3135. /* Okay we can divide it up */
  3136. work->blk.nonce += hash_inc;
  3137. work->cloned = true;
  3138. local_work++;
  3139. if (opt_debug)
  3140. applog(LOG_DEBUG, "Successfully divided work");
  3141. return true;
  3142. } else if (can_roll(work) && should_roll(work)) {
  3143. roll_work(work);
  3144. return true;
  3145. }
  3146. return false;
  3147. }
  3148. static bool get_work(struct work *work, bool requested, struct thr_info *thr,
  3149. const int thr_id, uint32_t hash_div)
  3150. {
  3151. struct timespec abstime = {};
  3152. struct timeval now;
  3153. struct work *work_heap;
  3154. struct pool *pool;
  3155. bool ret = false;
  3156. int failures = 0;
  3157. /* Tell the watchdog thread this thread is waiting on getwork and
  3158. * should not be restarted */
  3159. thread_reportout(thr);
  3160. retry:
  3161. pool = current_pool();
  3162. if (unlikely((!requested || requests_queued() < opt_queue) && !queue_request(thr, true))) {
  3163. applog(LOG_WARNING, "Failed to queue_request in get_work");
  3164. goto out;
  3165. }
  3166. if (!requests_staged()) {
  3167. if (can_roll(work)) {
  3168. roll_work(work);
  3169. ret = true;
  3170. goto out;
  3171. }
  3172. if (requested && requests_queued() >= mining_threads &&
  3173. !pool_tset(pool, &pool->lagging)) {
  3174. applog(LOG_WARNING, "Pool %d not providing work fast enough",
  3175. pool->pool_no);
  3176. pool->getfail_occasions++;
  3177. total_go++;
  3178. }
  3179. }
  3180. requested = false;
  3181. gettimeofday(&now, NULL);
  3182. abstime.tv_sec = now.tv_sec + 60;
  3183. if (opt_debug)
  3184. applog(LOG_DEBUG, "Popping work from get queue to get work");
  3185. /* wait for 1st response, or get cached response */
  3186. work_heap = hash_pop(&abstime);
  3187. if (unlikely(!work_heap)) {
  3188. /* Attempt to switch pools if this one times out */
  3189. pool_died(pool);
  3190. goto retry;
  3191. }
  3192. if (stale_work(work_heap)) {
  3193. dec_queued();
  3194. discard_work(work_heap);
  3195. goto retry;
  3196. }
  3197. pool = work_heap->pool;
  3198. /* If we make it here we have succeeded in getting fresh work */
  3199. if (!work_heap->mined) {
  3200. pool_tclear(pool, &pool->lagging);
  3201. if (pool_tclear(pool, &pool->idle))
  3202. pool_resus(pool);
  3203. }
  3204. memcpy(work, work_heap, sizeof(*work));
  3205. /* Copy the res nonce back so we know to start at a higher baseline
  3206. * should we divide the same work up again. Make the work we're
  3207. * handing out be clone */
  3208. if (divide_work(&now, work_heap, hash_div)) {
  3209. if (opt_debug)
  3210. applog(LOG_DEBUG, "Pushing divided work to get queue head");
  3211. hash_push(work_heap);
  3212. work->clone = true;
  3213. } else {
  3214. dec_queued();
  3215. free_work(work_heap);
  3216. }
  3217. ret = true;
  3218. out:
  3219. if (unlikely(ret == false)) {
  3220. if ((opt_retries >= 0) && (++failures > opt_retries)) {
  3221. applog(LOG_ERR, "Failed %d times to get_work");
  3222. return ret;
  3223. }
  3224. applog(LOG_DEBUG, "Retrying after %d seconds", fail_pause);
  3225. sleep(fail_pause);
  3226. fail_pause += opt_fail_pause;
  3227. goto retry;
  3228. }
  3229. fail_pause = opt_fail_pause;
  3230. work->thr_id = thr_id;
  3231. thread_reportin(thr);
  3232. if (ret)
  3233. work->mined = true;
  3234. return ret;
  3235. }
  3236. static bool submit_work_sync(struct thr_info *thr, const struct work *work_in)
  3237. {
  3238. struct workio_cmd *wc;
  3239. /* fill out work request message */
  3240. wc = calloc(1, sizeof(*wc));
  3241. if (unlikely(!wc)) {
  3242. applog(LOG_ERR, "Failed to calloc wc in submit_work_sync");
  3243. return false;
  3244. }
  3245. wc->u.work = make_work();
  3246. wc->cmd = WC_SUBMIT_WORK;
  3247. wc->thr = thr;
  3248. memcpy(wc->u.work, work_in, sizeof(*work_in));
  3249. if (opt_debug)
  3250. applog(LOG_DEBUG, "Pushing submit work to work thread");
  3251. /* send solution to workio thread */
  3252. if (unlikely(!tq_push(thr_info[work_thr_id].q, wc))) {
  3253. applog(LOG_ERR, "Failed to tq_push work in submit_work_sync");
  3254. goto err_out;
  3255. }
  3256. return true;
  3257. err_out:
  3258. workio_cmd_free(wc);
  3259. return false;
  3260. }
  3261. bool submit_nonce(struct thr_info *thr, struct work *work, uint32_t nonce)
  3262. {
  3263. work->data[64+12+0] = (nonce>>0) & 0xff;
  3264. work->data[64+12+1] = (nonce>>8) & 0xff;
  3265. work->data[64+12+2] = (nonce>>16) & 0xff;
  3266. work->data[64+12+3] = (nonce>>24) & 0xff;
  3267. /* Do one last check before attempting to submit the work */
  3268. if (!fulltest(work->data + 64, work->target))
  3269. return true;
  3270. return submit_work_sync(thr, work);
  3271. }
  3272. static void *miner_thread(void *userdata)
  3273. {
  3274. struct work *work = make_work();
  3275. struct thr_info *mythr = userdata;
  3276. const int thr_id = mythr->id;
  3277. uint32_t max_nonce = 0xffffff, total_hashes = 0;
  3278. unsigned long hashes_done = max_nonce;
  3279. bool needs_work = true;
  3280. /* Try to cycle approximately 5 times before each log update */
  3281. const unsigned long cycle = opt_log_interval / 5 ? : 1;
  3282. unsigned const int request_interval = opt_scantime * 2 / 3 ? : 1;
  3283. bool requested = false;
  3284. uint32_t nonce_inc = max_nonce, hash_div = 1;
  3285. double hash_divfloat = 1.0;
  3286. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  3287. /* Set worker threads to nice 19 and then preferentially to SCHED_IDLE
  3288. * and if that fails, then SCHED_BATCH. No need for this to be an
  3289. * error if it fails */
  3290. setpriority(PRIO_PROCESS, 0, 19);
  3291. drop_policy();
  3292. /* Cpu affinity only makes sense if the number of threads is a multiple
  3293. * of the number of CPUs */
  3294. if (!(opt_n_threads % num_processors))
  3295. affine_to_cpu(thr_id - gpu_threads, dev_from_id(thr_id));
  3296. /* Invalidate pool so it fails can_roll() test */
  3297. work->pool = NULL;
  3298. while (1) {
  3299. struct timeval tv_workstart, tv_start, tv_end, diff;
  3300. uint64_t max64;
  3301. bool rc;
  3302. if (needs_work) {
  3303. gettimeofday(&tv_workstart, NULL);
  3304. /* obtain new work from internal workio thread */
  3305. if (unlikely(!get_work(work, requested, mythr, thr_id, hash_div))) {
  3306. applog(LOG_ERR, "work retrieval failed, exiting "
  3307. "mining thread %d", thr_id);
  3308. goto out;
  3309. }
  3310. needs_work = requested = false;
  3311. total_hashes = 0;
  3312. max_nonce = work->blk.nonce + hashes_done;
  3313. }
  3314. hashes_done = 0;
  3315. gettimeofday(&tv_start, NULL);
  3316. /* scan nonces for a proof-of-work hash */
  3317. switch (opt_algo) {
  3318. case ALGO_C:
  3319. rc = scanhash_c(thr_id, work->midstate, work->data + 64,
  3320. work->hash1, work->hash, work->target,
  3321. max_nonce, &hashes_done,
  3322. work->blk.nonce);
  3323. break;
  3324. #ifdef WANT_X8632_SSE2
  3325. case ALGO_SSE2_32: {
  3326. unsigned int rc5 =
  3327. scanhash_sse2_32(thr_id, work->midstate, work->data + 64,
  3328. work->hash1, work->hash,
  3329. work->target,
  3330. max_nonce, &hashes_done,
  3331. work->blk.nonce);
  3332. rc = (rc5 == -1) ? false : true;
  3333. }
  3334. break;
  3335. #endif
  3336. #ifdef WANT_X8664_SSE2
  3337. case ALGO_SSE2_64: {
  3338. unsigned int rc5 =
  3339. scanhash_sse2_64(thr_id, work->midstate, work->data + 64,
  3340. work->hash1, work->hash,
  3341. work->target,
  3342. max_nonce, &hashes_done,
  3343. work->blk.nonce);
  3344. rc = (rc5 == -1) ? false : true;
  3345. }
  3346. break;
  3347. #endif
  3348. #ifdef WANT_X8664_SSE4
  3349. case ALGO_SSE4_64: {
  3350. unsigned int rc5 =
  3351. scanhash_sse4_64(thr_id, work->midstate, work->data + 64,
  3352. work->hash1, work->hash,
  3353. work->target,
  3354. max_nonce, &hashes_done,
  3355. work->blk.nonce);
  3356. rc = (rc5 == -1) ? false : true;
  3357. }
  3358. break;
  3359. #endif
  3360. #ifdef WANT_SSE2_4WAY
  3361. case ALGO_4WAY: {
  3362. unsigned int rc4 =
  3363. ScanHash_4WaySSE2(thr_id, work->midstate, work->data + 64,
  3364. work->hash1, work->hash,
  3365. work->target,
  3366. max_nonce, &hashes_done,
  3367. work->blk.nonce);
  3368. rc = (rc4 == -1) ? false : true;
  3369. }
  3370. break;
  3371. #endif
  3372. #ifdef WANT_VIA_PADLOCK
  3373. case ALGO_VIA:
  3374. rc = scanhash_via(thr_id, work->data, work->target,
  3375. max_nonce, &hashes_done,
  3376. work->blk.nonce);
  3377. break;
  3378. #endif
  3379. case ALGO_CRYPTOPP:
  3380. rc = scanhash_cryptopp(thr_id, work->midstate, work->data + 64,
  3381. work->hash1, work->hash, work->target,
  3382. max_nonce, &hashes_done,
  3383. work->blk.nonce);
  3384. break;
  3385. #ifdef WANT_CRYPTOPP_ASM32
  3386. case ALGO_CRYPTOPP_ASM32:
  3387. rc = scanhash_asm32(thr_id, work->midstate, work->data + 64,
  3388. work->hash1, work->hash, work->target,
  3389. max_nonce, &hashes_done,
  3390. work->blk.nonce);
  3391. break;
  3392. #endif
  3393. default:
  3394. /* should never happen */
  3395. goto out;
  3396. }
  3397. /* record scanhash elapsed time */
  3398. gettimeofday(&tv_end, NULL);
  3399. timeval_subtract(&diff, &tv_end, &tv_start);
  3400. hashes_done -= work->blk.nonce;
  3401. hashmeter(thr_id, &diff, hashes_done);
  3402. total_hashes += hashes_done;
  3403. work->blk.nonce += hashes_done;
  3404. /* adjust max_nonce to meet target cycle time */
  3405. if (diff.tv_usec > 500000)
  3406. diff.tv_sec++;
  3407. if (diff.tv_sec && diff.tv_sec != cycle) {
  3408. uint64_t next_inc = ((uint64_t)hashes_done * (uint64_t)cycle) / (uint64_t)diff.tv_sec;
  3409. if (next_inc > (uint64_t)nonce_inc / 2 * 3)
  3410. next_inc = nonce_inc / 2 * 3;
  3411. nonce_inc = next_inc;
  3412. } else if (!diff.tv_sec)
  3413. nonce_inc = hashes_done * 2;
  3414. if (nonce_inc < 4)
  3415. nonce_inc = 0xffffff;
  3416. max64 = work->blk.nonce + nonce_inc;
  3417. if (max64 > 0xfffffffaULL)
  3418. max64 = 0xfffffffaULL;
  3419. max_nonce = max64;
  3420. /* if nonce found, submit work */
  3421. if (unlikely(rc)) {
  3422. if (opt_debug)
  3423. applog(LOG_DEBUG, "CPU %d found something?", dev_from_id(thr_id));
  3424. if (unlikely(!submit_work_sync(mythr, work))) {
  3425. applog(LOG_ERR, "Failed to submit_work_sync in miner_thread %d", thr_id);
  3426. break;
  3427. }
  3428. work->blk.nonce += 4;
  3429. }
  3430. timeval_subtract(&diff, &tv_end, &tv_workstart);
  3431. if (!requested && (diff.tv_sec >= request_interval)) {
  3432. thread_reportout(mythr);
  3433. if (unlikely(!queue_request(mythr, false))) {
  3434. applog(LOG_ERR, "Failed to queue_request in miner_thread %d", thr_id);
  3435. goto out;
  3436. }
  3437. thread_reportin(mythr);
  3438. requested = true;
  3439. }
  3440. if (diff.tv_sec > opt_scantime) {
  3441. decay_time(&hash_divfloat , (double)((MAXTHREADS / total_hashes) ? : 1));
  3442. hash_div = hash_divfloat;
  3443. needs_work = true;
  3444. } else if (work_restart[thr_id].restart || stale_work(work) ||
  3445. work->blk.nonce >= MAXTHREADS - hashes_done)
  3446. needs_work = true;
  3447. if (unlikely(mythr->pause)) {
  3448. applog(LOG_WARNING, "Thread %d being disabled", thr_id);
  3449. mythr->rolling = mythr->cgpu->rolling = 0;
  3450. if (opt_debug)
  3451. applog(LOG_DEBUG, "Popping wakeup ping in miner thread");
  3452. thread_reportout(mythr);
  3453. tq_pop(mythr->q, NULL); /* Ignore ping that's popped */
  3454. thread_reportin(mythr);
  3455. applog(LOG_WARNING, "Thread %d being re-enabled", thr_id);
  3456. }
  3457. }
  3458. out:
  3459. thread_reportin(mythr);
  3460. applog(LOG_ERR, "Thread %d failure, exiting", thr_id);
  3461. tq_freeze(mythr->q);
  3462. return NULL;
  3463. }
  3464. enum {
  3465. STAT_SLEEP_INTERVAL = 1,
  3466. STAT_CTR_INTERVAL = 10000000,
  3467. FAILURE_INTERVAL = 30,
  3468. };
  3469. #ifdef HAVE_OPENCL
  3470. static _clState *clStates[MAX_GPUDEVICES];
  3471. static cl_int queue_poclbm_kernel(_clState *clState, dev_blk_ctx *blk)
  3472. {
  3473. cl_kernel *kernel = &clState->kernel;
  3474. cl_int status = 0;
  3475. int num = 0;
  3476. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_a);
  3477. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_b);
  3478. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_c);
  3479. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_d);
  3480. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_e);
  3481. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_f);
  3482. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_g);
  3483. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_h);
  3484. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_b);
  3485. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_c);
  3486. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_d);
  3487. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_f);
  3488. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_g);
  3489. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_h);
  3490. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->nonce);
  3491. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fW0);
  3492. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fW1);
  3493. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fW2);
  3494. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fW3);
  3495. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fW15);
  3496. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fW01r);
  3497. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fcty_e);
  3498. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->fcty_e2);
  3499. status |= clSetKernelArg(*kernel, num++, sizeof(clState->outputBuffer),
  3500. (void *)&clState->outputBuffer);
  3501. return status;
  3502. }
  3503. static cl_int queue_phatk_kernel(_clState *clState, dev_blk_ctx *blk)
  3504. {
  3505. cl_uint vwidth = clState->preferred_vwidth;
  3506. cl_kernel *kernel = &clState->kernel;
  3507. cl_int status = 0;
  3508. int i, num = 0;
  3509. uint *nonces;
  3510. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_a);
  3511. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_b);
  3512. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_c);
  3513. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_d);
  3514. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_e);
  3515. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_f);
  3516. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_g);
  3517. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->ctx_h);
  3518. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_b);
  3519. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_c);
  3520. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_d);
  3521. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_f);
  3522. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_g);
  3523. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->cty_h);
  3524. nonces = alloca(sizeof(uint) * vwidth);
  3525. for (i = 0; i < vwidth; i++)
  3526. nonces[i] = blk->nonce + i;
  3527. status |= clSetKernelArg(*kernel, num++, vwidth * sizeof(uint), (void *)nonces);
  3528. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->W16);
  3529. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->W17);
  3530. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->PreVal4_2);
  3531. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->PreVal0);
  3532. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->PreW18);
  3533. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->PreW19);
  3534. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->PreW31);
  3535. status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->PreW32);
  3536. status |= clSetKernelArg(*kernel, num++, sizeof(clState->outputBuffer),
  3537. (void *)&clState->outputBuffer);
  3538. return status;
  3539. }
  3540. static void set_threads_hashes(unsigned int vectors, unsigned int *threads,
  3541. unsigned int *hashes, size_t *globalThreads,
  3542. unsigned int minthreads)
  3543. {
  3544. *threads = 1 << (15 + scan_intensity);
  3545. if (*threads < minthreads)
  3546. *threads = minthreads;
  3547. *globalThreads = *threads;
  3548. *hashes = *threads * vectors;
  3549. }
  3550. static void *gpuminer_thread(void *userdata)
  3551. {
  3552. cl_int (*queue_kernel_parameters)(_clState *, dev_blk_ctx *);
  3553. const unsigned long cycle = opt_log_interval / 5 ? : 1;
  3554. struct timeval tv_start, tv_end, diff, tv_workstart;
  3555. struct thr_info *mythr = userdata;
  3556. const int thr_id = mythr->id;
  3557. uint32_t *res, *blank_res;
  3558. double gpu_ms_average = 7;
  3559. int gpu = dev_from_id(thr_id);
  3560. size_t globalThreads[1];
  3561. size_t localThreads[1];
  3562. cl_int status;
  3563. _clState *clState = clStates[thr_id];
  3564. const cl_kernel *kernel = &clState->kernel;
  3565. struct work *work = make_work();
  3566. unsigned int threads;
  3567. unsigned const int vectors = clState->preferred_vwidth;
  3568. unsigned int hashes;
  3569. unsigned int hashes_done = 0;
  3570. /* Request the next work item at 2/3 of the scantime */
  3571. unsigned const int request_interval = opt_scantime * 2 / 3 ? : 1;
  3572. unsigned const long request_nonce = MAXTHREADS / 3 * 2;
  3573. bool requested = false;
  3574. uint32_t total_hashes = 0, hash_div = 1;
  3575. switch (chosen_kernel) {
  3576. case KL_POCLBM:
  3577. queue_kernel_parameters = &queue_poclbm_kernel;
  3578. break;
  3579. case KL_PHATK:
  3580. default:
  3581. queue_kernel_parameters = &queue_phatk_kernel;
  3582. break;
  3583. }
  3584. if (opt_dynamic) {
  3585. /* Minimise impact on desktop if we want dynamic mode */
  3586. setpriority(PRIO_PROCESS, 0, 19);
  3587. drop_policy();
  3588. }
  3589. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  3590. res = calloc(BUFFERSIZE, 1);
  3591. blank_res = calloc(BUFFERSIZE, 1);
  3592. if (!res || !blank_res) {
  3593. applog(LOG_ERR, "Failed to calloc in gpuminer_thread");
  3594. goto out;
  3595. }
  3596. gettimeofday(&tv_start, NULL);
  3597. localThreads[0] = clState->work_size;
  3598. set_threads_hashes(vectors, &threads, &hashes, &globalThreads[0],
  3599. localThreads[0]);
  3600. diff.tv_sec = 0;
  3601. gettimeofday(&tv_end, NULL);
  3602. work->pool = NULL;
  3603. status = clEnqueueWriteBuffer(clState->commandQueue, clState->outputBuffer, CL_TRUE, 0,
  3604. BUFFERSIZE, blank_res, 0, NULL, NULL);
  3605. if (unlikely(status != CL_SUCCESS))
  3606. { applog(LOG_ERR, "Error: clEnqueueWriteBuffer failed."); goto out; }
  3607. mythr->cgpu->status = LIFE_WELL;
  3608. if (opt_debug)
  3609. applog(LOG_DEBUG, "Popping ping in gpuminer thread");
  3610. tq_pop(mythr->q, NULL); /* Wait for a ping to start */
  3611. gettimeofday(&tv_workstart, NULL);
  3612. /* obtain new work from internal workio thread */
  3613. if (unlikely(!get_work(work, requested, mythr, thr_id, hash_div))) {
  3614. applog(LOG_ERR, "work retrieval failed, exiting "
  3615. "gpu mining thread %d", thr_id);
  3616. goto out;
  3617. }
  3618. requested = false;
  3619. precalc_hash(&work->blk, (uint32_t *)(work->midstate), (uint32_t *)(work->data + 64));
  3620. work->blk.nonce = 0;
  3621. while (1) {
  3622. struct timeval tv_gpustart, tv_gpuend;
  3623. suseconds_t gpu_us;
  3624. gettimeofday(&tv_gpustart, NULL);
  3625. timeval_subtract(&diff, &tv_gpustart, &tv_gpuend);
  3626. /* This finish flushes the readbuffer set with CL_FALSE later */
  3627. clFinish(clState->commandQueue);
  3628. gettimeofday(&tv_gpuend, NULL);
  3629. timeval_subtract(&diff, &tv_gpuend, &tv_gpustart);
  3630. gpu_us = diff.tv_sec * 1000000 + diff.tv_usec;
  3631. decay_time(&gpu_ms_average, gpu_us / 1000);
  3632. if (opt_dynamic) {
  3633. /* Try to not let the GPU be out for longer than 6ms, but
  3634. * increase intensity when the system is idle, unless
  3635. * dynamic is disabled. */
  3636. if (gpu_ms_average > 7) {
  3637. if (scan_intensity > -10)
  3638. scan_intensity--;
  3639. } else if (gpu_ms_average < 3) {
  3640. if (scan_intensity < 10)
  3641. scan_intensity++;
  3642. }
  3643. }
  3644. set_threads_hashes(vectors, &threads, &hashes, globalThreads, localThreads[0]);
  3645. if (diff.tv_sec > opt_scantime ||
  3646. work->blk.nonce >= MAXTHREADS - hashes ||
  3647. work_restart[thr_id].restart ||
  3648. stale_work(work)) {
  3649. /* Ignore any reads since we're getting new work and queue a clean buffer */
  3650. status = clEnqueueWriteBuffer(clState->commandQueue, clState->outputBuffer, CL_FALSE, 0,
  3651. BUFFERSIZE, blank_res, 0, NULL, NULL);
  3652. if (unlikely(status != CL_SUCCESS))
  3653. { applog(LOG_ERR, "Error: clEnqueueWriteBuffer failed."); goto out; }
  3654. memset(res, 0, BUFFERSIZE);
  3655. gettimeofday(&tv_workstart, NULL);
  3656. if (opt_debug)
  3657. applog(LOG_DEBUG, "getwork thread %d", thr_id);
  3658. /* obtain new work from internal workio thread */
  3659. if (unlikely(!get_work(work, requested, mythr, thr_id, hash_div))) {
  3660. applog(LOG_ERR, "work retrieval failed, exiting "
  3661. "gpu mining thread %d", thr_id);
  3662. goto out;
  3663. }
  3664. requested = false;
  3665. precalc_hash(&work->blk, (uint32_t *)(work->midstate), (uint32_t *)(work->data + 64));
  3666. work_restart[thr_id].restart = 0;
  3667. /* Flushes the writebuffer set with CL_FALSE above */
  3668. clFinish(clState->commandQueue);
  3669. }
  3670. status = queue_kernel_parameters(clState, &work->blk);
  3671. if (unlikely(status != CL_SUCCESS))
  3672. { applog(LOG_ERR, "Error: clSetKernelArg of all params failed."); goto out; }
  3673. /* MAXBUFFERS entry is used as a flag to say nonces exist */
  3674. if (res[FOUND]) {
  3675. /* Clear the buffer again */
  3676. status = clEnqueueWriteBuffer(clState->commandQueue, clState->outputBuffer, CL_FALSE, 0,
  3677. BUFFERSIZE, blank_res, 0, NULL, NULL);
  3678. if (unlikely(status != CL_SUCCESS))
  3679. { applog(LOG_ERR, "Error: clEnqueueWriteBuffer failed."); goto out; }
  3680. if (opt_debug)
  3681. applog(LOG_DEBUG, "GPU %d found something?", gpu);
  3682. postcalc_hash_async(mythr, work, res);
  3683. memset(res, 0, BUFFERSIZE);
  3684. clFinish(clState->commandQueue);
  3685. }
  3686. status = clEnqueueNDRangeKernel(clState->commandQueue, *kernel, 1, NULL,
  3687. globalThreads, localThreads, 0, NULL, NULL);
  3688. if (unlikely(status != CL_SUCCESS))
  3689. { applog(LOG_ERR, "Error: Enqueueing kernel onto command queue. (clEnqueueNDRangeKernel)"); goto out; }
  3690. status = clEnqueueReadBuffer(clState->commandQueue, clState->outputBuffer, CL_FALSE, 0,
  3691. BUFFERSIZE, res, 0, NULL, NULL);
  3692. if (unlikely(status != CL_SUCCESS))
  3693. { applog(LOG_ERR, "Error: clEnqueueReadBuffer failed. (clEnqueueReadBuffer)"); goto out;}
  3694. gettimeofday(&tv_end, NULL);
  3695. timeval_subtract(&diff, &tv_end, &tv_start);
  3696. hashes_done += hashes;
  3697. total_hashes += hashes;
  3698. work->blk.nonce += hashes;
  3699. if (diff.tv_sec >= cycle) {
  3700. hashmeter(thr_id, &diff, hashes_done);
  3701. gettimeofday(&tv_start, NULL);
  3702. hashes_done = 0;
  3703. }
  3704. timeval_subtract(&diff, &tv_end, &tv_workstart);
  3705. if (!requested) {
  3706. #if 0
  3707. if (diff.tv_sec > request_interval)
  3708. hash_div = (MAXTHREADS / total_hashes) ? : 1;
  3709. #endif
  3710. if (diff.tv_sec > request_interval || work->blk.nonce > request_nonce) {
  3711. thread_reportout(mythr);
  3712. if (unlikely(!queue_request(mythr, false))) {
  3713. applog(LOG_ERR, "Failed to queue_request in gpuminer_thread %d", thr_id);
  3714. goto out;
  3715. }
  3716. thread_reportin(mythr);
  3717. requested = true;
  3718. }
  3719. }
  3720. if (unlikely(!gpu_devices[gpu] || mythr->pause)) {
  3721. applog(LOG_WARNING, "Thread %d being disabled", thr_id);
  3722. mythr->rolling = mythr->cgpu->rolling = 0;
  3723. if (opt_debug)
  3724. applog(LOG_DEBUG, "Popping wakeup ping in gpuminer thread");
  3725. thread_reportout(mythr);
  3726. tq_pop(mythr->q, NULL); /* Ignore ping that's popped */
  3727. thread_reportin(mythr);
  3728. applog(LOG_WARNING, "Thread %d being re-enabled", thr_id);
  3729. }
  3730. }
  3731. out:
  3732. clReleaseCommandQueue(clState->commandQueue);
  3733. clReleaseKernel(clState->kernel);
  3734. clReleaseProgram(clState->program);
  3735. clReleaseContext(clState->context);
  3736. thread_reportin(mythr);
  3737. applog(LOG_ERR, "Thread %d failure, exiting", thr_id);
  3738. tq_freeze(mythr->q);
  3739. return NULL;
  3740. }
  3741. #endif /* HAVE_OPENCL */
  3742. /* Stage another work item from the work returned in a longpoll */
  3743. static void convert_to_work(json_t *val, bool rolltime)
  3744. {
  3745. struct work *work;
  3746. bool rc;
  3747. work = make_work();
  3748. rc= work_decode(json_object_get(val, "result"), work);
  3749. if (unlikely(!rc)) {
  3750. applog(LOG_ERR, "Could not convert longpoll data to work");
  3751. return;
  3752. }
  3753. work->pool = current_pool();
  3754. work->rolltime = rolltime;
  3755. /* We'll be checking this work item twice, but we already know it's
  3756. * from a new block so explicitly force the new block detection now
  3757. * rather than waiting for it to hit the stage thread */
  3758. test_work_current(work);
  3759. if (opt_debug)
  3760. applog(LOG_DEBUG, "Pushing converted work to stage thread");
  3761. if (unlikely(!tq_push(thr_info[stage_thr_id].q, work)))
  3762. applog(LOG_ERR, "Could not tq_push work in convert_to_work");
  3763. else if (opt_debug)
  3764. applog(LOG_DEBUG, "Converted longpoll data to work");
  3765. }
  3766. static void *longpoll_thread(void *userdata)
  3767. {
  3768. struct thr_info *mythr = userdata;
  3769. CURL *curl = NULL;
  3770. char *copy_start, *hdr_path, *lp_url = NULL;
  3771. bool need_slash = false;
  3772. int failures = 0;
  3773. struct pool *pool = current_pool();
  3774. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  3775. pthread_detach(pthread_self());
  3776. curl = curl_easy_init();
  3777. if (unlikely(!curl)) {
  3778. applog(LOG_ERR, "CURL initialisation failed");
  3779. goto out;
  3780. }
  3781. tq_pop(mythr->q, NULL);
  3782. if (!pool->hdr_path) {
  3783. applog(LOG_WARNING, "No long-poll found on this server");
  3784. goto out;
  3785. }
  3786. hdr_path = pool->hdr_path;
  3787. /* full URL */
  3788. if (strstr(hdr_path, "://")) {
  3789. lp_url = hdr_path;
  3790. hdr_path = NULL;
  3791. }
  3792. /* absolute path, on current server */
  3793. else {
  3794. copy_start = (*hdr_path == '/') ? (hdr_path + 1) : hdr_path;
  3795. if (pool->rpc_url[strlen(pool->rpc_url) - 1] != '/')
  3796. need_slash = true;
  3797. lp_url = malloc(strlen(pool->rpc_url) + strlen(copy_start) + 2);
  3798. if (!lp_url)
  3799. goto out;
  3800. sprintf(lp_url, "%s%s%s", pool->rpc_url, need_slash ? "/" : "", copy_start);
  3801. }
  3802. have_longpoll = true;
  3803. applog(LOG_WARNING, "Long-polling activated for %s", lp_url);
  3804. while (1) {
  3805. struct timeval start, end;
  3806. bool rolltime;
  3807. json_t *val;
  3808. gettimeofday(&start, NULL);
  3809. val = json_rpc_call(curl, lp_url, pool->rpc_userpass, rpc_req,
  3810. false, true, &rolltime, pool);
  3811. if (likely(val)) {
  3812. /* Keep track of who ordered a restart_threads to make
  3813. * sure it's only done once per new block */
  3814. if (block_changed != BLOCK_DETECT) {
  3815. block_changed = BLOCK_LP;
  3816. applog(LOG_WARNING, "LONGPOLL detected new block on network, waiting on fresh work");
  3817. } else {
  3818. applog(LOG_INFO, "LONGPOLL received after new block already detected");
  3819. block_changed = BLOCK_NONE;
  3820. }
  3821. convert_to_work(val, rolltime);
  3822. failures = 0;
  3823. json_decref(val);
  3824. } else {
  3825. /* Some pools regularly drop the longpoll request so
  3826. * only see this as longpoll failure if it happens
  3827. * immediately and just restart it the rest of the
  3828. * time. */
  3829. gettimeofday(&end, NULL);
  3830. if (end.tv_sec - start.tv_sec > 30)
  3831. continue;
  3832. if (failures++ < 10) {
  3833. sleep(30);
  3834. applog(LOG_WARNING,
  3835. "longpoll failed for %s, sleeping for 30s", lp_url);
  3836. } else {
  3837. applog(LOG_ERR,
  3838. "longpoll failed for %s, ending thread", lp_url);
  3839. goto out;
  3840. }
  3841. }
  3842. }
  3843. out:
  3844. have_longpoll = false;
  3845. tq_freeze(mythr->q);
  3846. if (curl)
  3847. curl_easy_cleanup(curl);
  3848. return NULL;
  3849. }
  3850. static void stop_longpoll(void)
  3851. {
  3852. struct thr_info *thr = &thr_info[longpoll_thr_id];
  3853. tq_freeze(thr->q);
  3854. if (thr->pth)
  3855. pthread_cancel(*thr->pth);
  3856. have_longpoll = false;
  3857. }
  3858. static void start_longpoll(void)
  3859. {
  3860. struct thr_info *thr = &thr_info[longpoll_thr_id];
  3861. tq_thaw(thr->q);
  3862. if (unlikely(thr_info_create(thr, NULL, longpoll_thread, thr)))
  3863. quit(1, "longpoll thread create failed");
  3864. if (opt_debug)
  3865. applog(LOG_DEBUG, "Pushing ping to longpoll thread");
  3866. tq_push(thr_info[longpoll_thr_id].q, &ping);
  3867. }
  3868. static void restart_longpoll(void)
  3869. {
  3870. stop_longpoll();
  3871. if (want_longpoll)
  3872. start_longpoll();
  3873. }
  3874. static void *reinit_cpu(void *userdata)
  3875. {
  3876. pthread_detach(pthread_self());
  3877. #if 0
  3878. struct cgpu_info *cgpu = (struct cgpu_info *)userdata;
  3879. int cpu = cgpu->cpu_gpu;
  3880. long thr_id = ....(long)userdata;
  3881. struct thr_info *thr = &thr_info[thr_id];
  3882. int cpu = dev_from_id(thr_id);
  3883. cpus[cpu].alive = false;
  3884. thr->rolling = thr->cgpu->rolling = 0;
  3885. tq_freeze(thr->q);
  3886. if (!pthread_cancel(*thr->pth))
  3887. pthread_join(*thr->pth, NULL);
  3888. free(thr->q);
  3889. thr->q = tq_new();
  3890. if (!thr->q)
  3891. quit(1, "Failed to tq_new in reinit_cputhread");
  3892. applog(LOG_INFO, "Reinit CPU thread %d", thr_id);
  3893. if (unlikely(thr_info_create(thr, NULL, miner_thread, thr))) {
  3894. applog(LOG_ERR, "thread %d create failed", thr_id);
  3895. return NULL;
  3896. }
  3897. tq_push(thr->q, &ping);
  3898. applog(LOG_WARNING, "Thread %d restarted", thr_id);
  3899. #endif
  3900. return NULL;
  3901. }
  3902. #ifdef HAVE_OPENCL
  3903. /* We have only one thread that ever re-initialises GPUs, thus if any GPU
  3904. * init command fails due to a completely wedged GPU, the thread will never
  3905. * return, unable to harm other GPUs. If it does return, it means we only had
  3906. * a soft failure and then the reinit_gpu thread is ready to tackle another
  3907. * GPU */
  3908. static void *reinit_gpu(void *userdata)
  3909. {
  3910. struct thr_info *mythr = userdata;
  3911. struct cgpu_info *cgpu;
  3912. struct thr_info *thr;
  3913. struct timeval now;
  3914. char name[256];
  3915. int thr_id;
  3916. int gpu;
  3917. pthread_detach(pthread_self());
  3918. select_cgpu:
  3919. cgpu = tq_pop(mythr->q, NULL);
  3920. if (!cgpu)
  3921. goto out;
  3922. if (clDevicesNum() != nDevs) {
  3923. applog(LOG_WARNING, "Hardware not reporting same number of active devices, will not attempt to restart GPU");
  3924. goto out;
  3925. }
  3926. gpu = cgpu->cpu_gpu;
  3927. gpu_devices[gpu] = false;
  3928. for (thr_id = 0; thr_id < gpu_threads; thr_id ++) {
  3929. if (dev_from_id(thr_id) != gpu)
  3930. continue;
  3931. thr = &thr_info[thr_id];
  3932. thr->rolling = thr->cgpu->rolling = 0;
  3933. /* Reports the last time we tried to revive a sick GPU */
  3934. gettimeofday(&thr->sick, NULL);
  3935. if (!pthread_cancel(*thr->pth)) {
  3936. applog(LOG_WARNING, "Thread %d still exists, killing it off", thr_id);
  3937. } else
  3938. applog(LOG_WARNING, "Thread %d no longer exists", thr_id);
  3939. }
  3940. gpu_devices[gpu] = true;
  3941. for (thr_id = 0; thr_id < gpu_threads; thr_id ++) {
  3942. if (dev_from_id(thr_id) != gpu)
  3943. continue;
  3944. thr = &thr_info[thr_id];
  3945. /* Lose this ram cause we may get stuck here! */
  3946. //tq_freeze(thr->q);
  3947. thr->q = tq_new();
  3948. if (!thr->q)
  3949. quit(1, "Failed to tq_new in reinit_gpu");
  3950. /* Lose this ram cause we may dereference in the dying thread! */
  3951. //free(clState);
  3952. applog(LOG_INFO, "Reinit GPU thread %d", thr_id);
  3953. clStates[thr_id] = initCl(gpu, name, sizeof(name));
  3954. if (!clStates[thr_id]) {
  3955. applog(LOG_ERR, "Failed to reinit GPU thread %d", thr_id);
  3956. goto select_cgpu;
  3957. }
  3958. applog(LOG_INFO, "initCl() finished. Found %s", name);
  3959. if (unlikely(thr_info_create(thr, NULL, gpuminer_thread, thr))) {
  3960. applog(LOG_ERR, "thread %d create failed", thr_id);
  3961. return NULL;
  3962. }
  3963. applog(LOG_WARNING, "Thread %d restarted", thr_id);
  3964. }
  3965. gettimeofday(&now, NULL);
  3966. get_datestamp(cgpu->init, &now);
  3967. for (thr_id = 0; thr_id < gpu_threads; thr_id ++) {
  3968. if (dev_from_id(thr_id) != gpu)
  3969. continue;
  3970. thr = &thr_info[thr_id];
  3971. tq_push(thr->q, &ping);
  3972. }
  3973. goto select_cgpu;
  3974. out:
  3975. return NULL;
  3976. }
  3977. #else
  3978. static void *reinit_gpu(void *userdata)
  3979. {
  3980. }
  3981. #endif
  3982. static void reinit_device(struct cgpu_info *cgpu)
  3983. {
  3984. if (cgpu->is_gpu)
  3985. tq_push(thr_info[gpur_thr_id].q, cgpu);
  3986. else
  3987. tq_push(thr_info[cpur_thr_id].q, cgpu);
  3988. }
  3989. /* Determine which are the first threads belonging to a device and if they're
  3990. * active */
  3991. static bool active_device(int thr_id)
  3992. {
  3993. if (thr_id < gpu_threads) {
  3994. if (thr_id >= total_devices)
  3995. return false;
  3996. if (!gpu_devices[dev_from_id(thr_id)])
  3997. return false;
  3998. } else if (thr_id > gpu_threads + num_processors)
  3999. return false;
  4000. return true;
  4001. }
  4002. /* Makes sure the hashmeter keeps going even if mining threads stall, updates
  4003. * the screen at regular intervals, and restarts threads if they appear to have
  4004. * died. */
  4005. static void *watchdog_thread(void *userdata)
  4006. {
  4007. const unsigned int interval = opt_log_interval / 2 ? : 1;
  4008. static struct timeval rotate_tv;
  4009. struct timeval zero_tv;
  4010. pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, NULL);
  4011. memset(&zero_tv, 0, sizeof(struct timeval));
  4012. gettimeofday(&rotate_tv, NULL);
  4013. while (1) {
  4014. int i;
  4015. struct timeval now;
  4016. sleep(interval);
  4017. if (requests_queued() < opt_queue)
  4018. queue_request(NULL, false);
  4019. hashmeter(-1, &zero_tv, 0);
  4020. if (curses_active_locked()) {
  4021. change_logwinsize();
  4022. curses_print_status();
  4023. for (i = 0; i < mining_threads; i++)
  4024. curses_print_devstatus(i);
  4025. clearok(statuswin, true);
  4026. doupdate();
  4027. unlock_curses();
  4028. }
  4029. gettimeofday(&now, NULL);
  4030. for (i = 0; i < total_pools; i++) {
  4031. struct pool *pool = pools[i];
  4032. if (!pool->enabled)
  4033. continue;
  4034. /* Test pool is idle once every minute */
  4035. if (pool->idle && now.tv_sec - pool->tv_idle.tv_sec > 60) {
  4036. gettimeofday(&pool->tv_idle, NULL);
  4037. if (pool_active(pool, true) && pool_tclear(pool, &pool->idle))
  4038. pool_resus(pool);
  4039. }
  4040. }
  4041. if (pool_strategy == POOL_ROTATE && now.tv_sec - rotate_tv.tv_sec > 60 * opt_rotate_period) {
  4042. gettimeofday(&rotate_tv, NULL);
  4043. switch_pools(NULL);
  4044. }
  4045. if (!sched_paused && !should_run()) {
  4046. applog(LOG_WARNING, "Pausing execution as per stop time %02d:%02d scheduled",
  4047. schedstop.tm.tm_hour, schedstop.tm.tm_min);
  4048. if (!schedstart.enable) {
  4049. quit(0, "Terminating execution as planned");
  4050. break;
  4051. }
  4052. applog(LOG_WARNING, "Will restart execution as scheduled at %02d:%02d",
  4053. schedstart.tm.tm_hour, schedstart.tm.tm_min);
  4054. sched_paused = true;
  4055. for (i = 0; i < mining_threads; i++) {
  4056. struct thr_info *thr;
  4057. thr = &thr_info[i];
  4058. thr->pause = true;
  4059. }
  4060. } else if (sched_paused && should_run()) {
  4061. applog(LOG_WARNING, "Restarting execution as per start time %02d:%02d scheduled",
  4062. schedstart.tm.tm_hour, schedstart.tm.tm_min);
  4063. if (schedstop.enable)
  4064. applog(LOG_WARNING, "Will pause execution as scheduled at %02d:%02d",
  4065. schedstop.tm.tm_hour, schedstop.tm.tm_min);
  4066. sched_paused = false;
  4067. for (i = 0; i < mining_threads; i++) {
  4068. struct thr_info *thr;
  4069. thr = &thr_info[i];
  4070. /* Don't touch disabled GPUs */
  4071. if (thr->cgpu->is_gpu && !gpu_devices[thr->cgpu->cpu_gpu])
  4072. continue;
  4073. thr->pause = false;
  4074. tq_push(thr->q, &ping);
  4075. }
  4076. }
  4077. for (i = 0; i < gpu_threads; i++) {
  4078. struct thr_info *thr;
  4079. bool *enable;
  4080. int gpu;
  4081. /* Use only one thread per device to determine if the GPU is healthy */
  4082. if (i >= nDevs)
  4083. break;
  4084. thr = &thr_info[i];
  4085. gpu = thr->cgpu->cpu_gpu;
  4086. enable = &gpu_devices[gpu];
  4087. #ifdef HAVE_ADL
  4088. if (adl_active && gpus[gpu].has_adl && *enable)
  4089. gpu_autotune(gpu, enable);
  4090. if (opt_debug && gpus[gpu].has_adl) {
  4091. int engineclock = 0, memclock = 0, activity = 0, fanspeed = 0, fanpercent = 0, powertune = 0;
  4092. float temp = 0, vddc = 0;
  4093. if (gpu_stats(gpu, &temp, &engineclock, &memclock, &vddc, &activity, &fanspeed, &fanpercent, &powertune))
  4094. applog(LOG_DEBUG, "%.1f C F: %d%%(%dRPM) E: %dMHz M: %dMhz V: %.3fV A: %d%% P: %d%%",
  4095. temp, fanpercent, fanspeed, engineclock, memclock, vddc, activity, powertune);
  4096. }
  4097. #endif
  4098. /* Thread is waiting on getwork or disabled */
  4099. if (thr->getwork || !*enable)
  4100. continue;
  4101. if (gpus[gpu].status != LIFE_WELL && now.tv_sec - thr->last.tv_sec < 60) {
  4102. applog(LOG_ERR, "Thread %d recovered, GPU %d declared WELL!", i, gpu);
  4103. gpus[gpu].status = LIFE_WELL;
  4104. } else if (now.tv_sec - thr->last.tv_sec > 60 && gpus[gpu].status == LIFE_WELL) {
  4105. thr->rolling = thr->cgpu->rolling = 0;
  4106. gpus[gpu].status = LIFE_SICK;
  4107. applog(LOG_ERR, "Thread %d idle for more than 60 seconds, GPU %d declared SICK!", i, gpu);
  4108. gettimeofday(&thr->sick, NULL);
  4109. if (opt_restart) {
  4110. applog(LOG_ERR, "Attempting to restart GPU");
  4111. reinit_device(thr->cgpu);
  4112. }
  4113. } else if (now.tv_sec - thr->last.tv_sec > 600 && gpus[i].status == LIFE_SICK) {
  4114. gpus[gpu].status = LIFE_DEAD;
  4115. applog(LOG_ERR, "Thread %d not responding for more than 10 minutes, GPU %d declared DEAD!", i, gpu);
  4116. } else if (now.tv_sec - thr->sick.tv_sec > 60 && gpus[i].status == LIFE_SICK) {
  4117. /* Attempt to restart a GPU once every minute */
  4118. gettimeofday(&thr->sick, NULL);
  4119. if (opt_restart)
  4120. reinit_device(thr->cgpu);
  4121. }
  4122. }
  4123. }
  4124. return NULL;
  4125. }
  4126. static void log_print_status(int thr_id)
  4127. {
  4128. struct cgpu_info *cgpu;
  4129. char logline[255];
  4130. cgpu = thr_info[thr_id].cgpu;
  4131. get_statline(logline, cgpu);
  4132. applog(LOG_WARNING, "%s", logline);
  4133. }
  4134. static void print_summary(void)
  4135. {
  4136. struct timeval diff;
  4137. int hours, mins, secs, i;
  4138. double utility, efficiency = 0.0;
  4139. timeval_subtract(&diff, &total_tv_end, &total_tv_start);
  4140. hours = diff.tv_sec / 3600;
  4141. mins = (diff.tv_sec % 3600) / 60;
  4142. secs = diff.tv_sec % 60;
  4143. utility = total_accepted / ( total_secs ? total_secs : 1 ) * 60;
  4144. efficiency = total_getworks ? total_accepted * 100.0 / total_getworks : 0.0;
  4145. applog(LOG_WARNING, "\nSummary of runtime statistics:\n");
  4146. applog(LOG_WARNING, "Started at %s", datestamp);
  4147. if (opt_n_threads)
  4148. applog(LOG_WARNING, "CPU hasher algorithm used: %s", algo_names[opt_algo]);
  4149. applog(LOG_WARNING, "Runtime: %d hrs : %d mins : %d secs", hours, mins, secs);
  4150. if (total_secs)
  4151. applog(LOG_WARNING, "Average hashrate: %.1f Megahash/s", total_mhashes_done / total_secs);
  4152. applog(LOG_WARNING, "Queued work requests: %d", total_getworks);
  4153. applog(LOG_WARNING, "Share submissions: %d", total_accepted + total_rejected);
  4154. applog(LOG_WARNING, "Accepted shares: %d", total_accepted);
  4155. applog(LOG_WARNING, "Rejected shares: %d", total_rejected);
  4156. if (total_accepted || total_rejected)
  4157. applog(LOG_WARNING, "Reject ratio: %.1f", (double)(total_rejected * 100) / (double)(total_accepted + total_rejected));
  4158. applog(LOG_WARNING, "Hardware errors: %d", hw_errors);
  4159. applog(LOG_WARNING, "Efficiency (accepted / queued): %.0f%%", efficiency);
  4160. applog(LOG_WARNING, "Utility (accepted shares / min): %.2f/min\n", utility);
  4161. applog(LOG_WARNING, "Discarded work due to new blocks: %d", total_discarded);
  4162. applog(LOG_WARNING, "Stale submissions discarded due to new blocks: %d", total_stale);
  4163. applog(LOG_WARNING, "Unable to get work from server occasions: %d", total_go);
  4164. applog(LOG_WARNING, "Work items generated locally: %d", local_work);
  4165. applog(LOG_WARNING, "Submitting work remotely delay occasions: %d", total_ro);
  4166. applog(LOG_WARNING, "New blocks detected on network: %d\n", new_blocks);
  4167. if (total_pools > 1) {
  4168. for (i = 0; i < total_pools; i++) {
  4169. struct pool *pool = pools[i];
  4170. applog(LOG_WARNING, "Pool: %s", pool->rpc_url);
  4171. applog(LOG_WARNING, " Queued work requests: %d", pool->getwork_requested);
  4172. applog(LOG_WARNING, " Share submissions: %d", pool->accepted + pool->rejected);
  4173. applog(LOG_WARNING, " Accepted shares: %d", pool->accepted);
  4174. applog(LOG_WARNING, " Rejected shares: %d", pool->rejected);
  4175. if (pool->accepted || pool->rejected)
  4176. applog(LOG_WARNING, " Reject ratio: %.1f", (double)(pool->rejected * 100) / (double)(pool->accepted + pool->rejected));
  4177. efficiency = pool->getwork_requested ? pool->accepted * 100.0 / pool->getwork_requested : 0.0;
  4178. applog(LOG_WARNING, " Efficiency (accepted / queued): %.0f%%", efficiency);
  4179. applog(LOG_WARNING, " Discarded work due to new blocks: %d", pool->discarded_work);
  4180. applog(LOG_WARNING, " Stale submissions discarded due to new blocks: %d", pool->stale_shares);
  4181. applog(LOG_WARNING, " Unable to get work from server occasions: %d", pool->getfail_occasions);
  4182. applog(LOG_WARNING, " Submitting work remotely delay occasions: %d\n", pool->remotefail_occasions);
  4183. }
  4184. }
  4185. applog(LOG_WARNING, "Summary of per device statistics:\n");
  4186. for (i = 0; i < mining_threads; i++) {
  4187. if (active_device(i))
  4188. log_print_status(i);
  4189. }
  4190. if (opt_shares)
  4191. applog(LOG_WARNING, "Mined %d accepted shares of %d requested\n", total_accepted, opt_shares);
  4192. fflush(stdout);
  4193. fflush(stderr);
  4194. if (opt_shares > total_accepted)
  4195. quit(1, "Did not successfully mine as many shares as were requested.");
  4196. }
  4197. void quit(int status, const char *format, ...)
  4198. {
  4199. va_list ap;
  4200. disable_curses();
  4201. if (!opt_realquiet && successful_connect)
  4202. print_summary();
  4203. if (format) {
  4204. va_start(ap, format);
  4205. vfprintf(stderr, format, ap);
  4206. va_end(ap);
  4207. }
  4208. fprintf(stderr, "\n");
  4209. fflush(stderr);
  4210. exit(status);
  4211. }
  4212. char *curses_input(const char *query)
  4213. {
  4214. char *input;
  4215. echo();
  4216. input = malloc(255);
  4217. if (!input)
  4218. quit(1, "Failed to malloc input");
  4219. leaveok(logwin, false);
  4220. wlogprint("%s: ", query);
  4221. wgetnstr(logwin, input, 255);
  4222. if (!strlen(input))
  4223. strcpy(input, "-1");
  4224. leaveok(logwin, true);
  4225. noecho();
  4226. return input;
  4227. }
  4228. static bool input_pool(bool live)
  4229. {
  4230. char *url = NULL, *user = NULL, *pass = NULL;
  4231. struct pool *pool = NULL;
  4232. bool ret = false;
  4233. immedok(logwin, true);
  4234. if (total_pools == MAX_POOLS) {
  4235. wlogprint("Reached maximum number of pools.\n");
  4236. goto out;
  4237. }
  4238. wlogprint("Input server details.\n");
  4239. url = curses_input("URL");
  4240. if (!url)
  4241. goto out;
  4242. if (strncmp(url, "http://", 7) &&
  4243. strncmp(url, "https://", 8)) {
  4244. char *httpinput;
  4245. httpinput = malloc(255);
  4246. if (!httpinput)
  4247. quit(1, "Failed to malloc httpinput");
  4248. strcpy(httpinput, "http://");
  4249. strncat(httpinput, url, 248);
  4250. free(url);
  4251. url = httpinput;
  4252. }
  4253. user = curses_input("Username");
  4254. if (!user)
  4255. goto out;
  4256. pass = curses_input("Password");
  4257. if (!pass)
  4258. goto out;
  4259. pool = calloc(sizeof(struct pool), 1);
  4260. if (!pool)
  4261. quit(1, "Failed to realloc pools in input_pool");
  4262. pool->pool_no = total_pools;
  4263. pool->prio = total_pools;
  4264. if (unlikely(pthread_mutex_init(&pool->pool_lock, NULL)))
  4265. quit (1, "Failed to pthread_mutex_init in input_pool");
  4266. pool->rpc_url = url;
  4267. pool->rpc_user = user;
  4268. pool->rpc_pass = pass;
  4269. pool->rpc_userpass = malloc(strlen(pool->rpc_user) + strlen(pool->rpc_pass) + 2);
  4270. if (!pool->rpc_userpass)
  4271. quit(1, "Failed to malloc userpass");
  4272. sprintf(pool->rpc_userpass, "%s:%s", pool->rpc_user, pool->rpc_pass);
  4273. pool->tv_idle.tv_sec = ~0UL;
  4274. /* Test the pool is not idle if we're live running, otherwise
  4275. * it will be tested separately */
  4276. ret = true;
  4277. pool->enabled = true;
  4278. if (live && !pool_active(pool, false))
  4279. pool->idle = true;
  4280. pools[total_pools++] = pool;
  4281. out:
  4282. immedok(logwin, false);
  4283. if (!ret) {
  4284. if (url)
  4285. free(url);
  4286. if (user)
  4287. free(user);
  4288. if (pass)
  4289. free(pass);
  4290. if (pool)
  4291. free(pool);
  4292. }
  4293. return ret;
  4294. }
  4295. #if defined(unix)
  4296. static void fork_monitor()
  4297. {
  4298. // Make a pipe: [readFD, writeFD]
  4299. int pfd[2];
  4300. int r = pipe(pfd);
  4301. if (r<0) {
  4302. perror("pipe - failed to create pipe for --monitor");
  4303. exit(1);
  4304. }
  4305. // Make stderr write end of pipe
  4306. fflush(stderr);
  4307. r = dup2(pfd[1], 2);
  4308. if (r<0) {
  4309. perror("dup2 - failed to alias stderr to write end of pipe for --monitor");
  4310. exit(1);
  4311. }
  4312. r = close(pfd[1]);
  4313. if (r<0) {
  4314. perror("close - failed to close write end of pipe for --monitor");
  4315. exit(1);
  4316. }
  4317. // Don't allow a dying monitor to kill the main process
  4318. sighandler_t sr0 = signal(SIGPIPE, SIG_IGN);
  4319. sighandler_t sr1 = signal(SIGPIPE, SIG_IGN);
  4320. if (SIG_ERR==sr0 || SIG_ERR==sr1) {
  4321. perror("signal - failed to edit signal mask for --monitor");
  4322. exit(1);
  4323. }
  4324. // Fork a child process
  4325. r = fork();
  4326. if (r<0) {
  4327. perror("fork - failed to fork child process for --monitor");
  4328. exit(1);
  4329. }
  4330. // Child: launch monitor command
  4331. if (0==r) {
  4332. // Make stdin read end of pipe
  4333. r = dup2(pfd[0], 0);
  4334. if (r<0) {
  4335. perror("dup2 - in child, failed to alias read end of pipe to stdin for --monitor");
  4336. exit(1);
  4337. }
  4338. close(pfd[0]);
  4339. if (r<0) {
  4340. perror("close - in child, failed to close read end of pipe for --monitor");
  4341. exit(1);
  4342. }
  4343. // Launch user specified command
  4344. execl("/bin/bash", "/bin/bash", "-c", opt_stderr_cmd, (char*)NULL);
  4345. perror("execl - in child failed to exec user specified command for --monitor");
  4346. exit(1);
  4347. }
  4348. // Parent: clean up unused fds and bail
  4349. r = close(pfd[0]);
  4350. if (r<0) {
  4351. perror("close - failed to close read end of pipe for --monitor");
  4352. exit(1);
  4353. }
  4354. }
  4355. #endif // defined(unix)
  4356. static void enable_curses(void) {
  4357. int x,y;
  4358. lock_curses();
  4359. if (curses_active) {
  4360. unlock_curses();
  4361. return;
  4362. }
  4363. mainwin = initscr();
  4364. getmaxyx(mainwin, y, x);
  4365. statuswin = newwin(logstart, x, 0, 0);
  4366. leaveok(statuswin, true);
  4367. logwin = newwin(y - logcursor, 0, logcursor, 0);
  4368. idlok(logwin, true);
  4369. scrollok(logwin, true);
  4370. leaveok(logwin, true);
  4371. cbreak();
  4372. noecho();
  4373. curses_active = true;
  4374. unlock_curses();
  4375. }
  4376. int main (int argc, char *argv[])
  4377. {
  4378. unsigned int i, pools_active = 0;
  4379. struct block *block, *tmpblock;
  4380. struct work *work, *tmpwork;
  4381. struct sigaction handler;
  4382. struct thr_info *thr;
  4383. char name[256];
  4384. /* This dangerous functions tramples random dynamically allocated
  4385. * variables so do it before anything at all */
  4386. if (unlikely(curl_global_init(CURL_GLOBAL_ALL)))
  4387. quit(1, "Failed to curl_global_init");
  4388. if (unlikely(pthread_mutex_init(&hash_lock, NULL)))
  4389. quit(1, "Failed to pthread_mutex_init");
  4390. if (unlikely(pthread_mutex_init(&qd_lock, NULL)))
  4391. quit(1, "Failed to pthread_mutex_init");
  4392. if (unlikely(pthread_mutex_init(&curses_lock, NULL)))
  4393. quit(1, "Failed to pthread_mutex_init");
  4394. if (unlikely(pthread_mutex_init(&control_lock, NULL)))
  4395. quit(1, "Failed to pthread_mutex_init");
  4396. if (unlikely(pthread_rwlock_init(&blk_lock, NULL)))
  4397. quit(1, "Failed to pthread_rwlock_init");
  4398. sprintf(packagename, "%s %s", PACKAGE, VERSION);
  4399. init_max_name_len();
  4400. handler.sa_handler = &sighandler;
  4401. sigaction(SIGTERM, &handler, &termhandler);
  4402. sigaction(SIGINT, &handler, &inthandler);
  4403. opt_kernel_path = alloca(PATH_MAX);
  4404. strcpy(opt_kernel_path, CGMINER_PREFIX);
  4405. cgminer_path = alloca(PATH_MAX);
  4406. strcpy(cgminer_path, dirname(argv[0]));
  4407. strcat(cgminer_path, "/");
  4408. // Hack to make cgminer silent when called recursively on WIN32
  4409. int skip_to_bench = 0;
  4410. #if defined(WIN32)
  4411. char buf[32];
  4412. if (GetEnvironmentVariable("CGMINER_BENCH_ALGO", buf, 16))
  4413. skip_to_bench = 1;
  4414. #endif // defined(WIN32)
  4415. block = calloc(sizeof(struct block), 1);
  4416. if (unlikely(!block))
  4417. quit (1, "main OOM");
  4418. for (i = 0; i < 36; i++)
  4419. strcat(block->hash, "0");
  4420. HASH_ADD_STR(blocks, hash, block);
  4421. strcpy(current_block, block->hash);
  4422. // Reckon number of cores in the box
  4423. #if defined(WIN32)
  4424. DWORD system_am;
  4425. DWORD process_am;
  4426. BOOL ok = GetProcessAffinityMask(
  4427. GetCurrentProcess(),
  4428. &system_am,
  4429. &process_am
  4430. );
  4431. if (!ok) {
  4432. applog(LOG_ERR, "couldn't figure out number of processors :(");
  4433. num_processors = 1;
  4434. } else {
  4435. size_t n = 32;
  4436. num_processors = 0;
  4437. while (n--)
  4438. if (process_am & (1<<n))
  4439. ++num_processors;
  4440. }
  4441. #else
  4442. num_processors = sysconf(_SC_NPROCESSORS_ONLN);
  4443. #endif /* !WIN32 */
  4444. opt_n_threads = num_processors;
  4445. #ifdef HAVE_OPENCL
  4446. if (!skip_to_bench) {
  4447. for (i = 0; i < MAX_GPUDEVICES; i++)
  4448. gpu_devices[i] = false;
  4449. nDevs = clDevicesNum();
  4450. if (nDevs < 0) {
  4451. applog(LOG_ERR, "clDevicesNum returned error, none usable");
  4452. nDevs = 0;
  4453. }
  4454. }
  4455. #endif
  4456. /* parse command line */
  4457. opt_register_table(opt_config_table,
  4458. "Options for both config file and command line");
  4459. opt_register_table(opt_cmdline_table,
  4460. "Options for command line only");
  4461. opt_parse(&argc, argv, applog_and_exit);
  4462. if (argc != 1)
  4463. quit(1, "Unexpected extra commandline arguments");
  4464. applog(LOG_WARNING, "Started %s", packagename);
  4465. if (opt_nogpu)
  4466. nDevs = 0;
  4467. if (nDevs && !opt_usecpu)
  4468. opt_n_threads = 0;
  4469. strcat(opt_kernel_path, "/");
  4470. if (want_per_device_stats)
  4471. opt_log_output = true;
  4472. if (0<=opt_bench_algo) {
  4473. double rate = bench_algo_stage3(opt_bench_algo);
  4474. if (!skip_to_bench) {
  4475. printf("%.5f (%s)\n", rate, algo_names[opt_bench_algo]);
  4476. } else {
  4477. // Write result to shared memory for parent
  4478. #if defined(WIN32)
  4479. char unique_name[64];
  4480. if (GetEnvironmentVariable("CGMINER_SHARED_MEM", unique_name, 32)) {
  4481. HANDLE map_handle = CreateFileMapping(
  4482. INVALID_HANDLE_VALUE, // use paging file
  4483. NULL, // default security attributes
  4484. PAGE_READWRITE, // read/write access
  4485. 0, // size: high 32-bits
  4486. 4096, // size: low 32-bits
  4487. unique_name // name of map object
  4488. );
  4489. if (NULL!=map_handle) {
  4490. void *shared_mem = MapViewOfFile(
  4491. map_handle, // object to map view of
  4492. FILE_MAP_WRITE, // read/write access
  4493. 0, // high offset: map from
  4494. 0, // low offset: beginning
  4495. 0 // default: map entire file
  4496. );
  4497. if (NULL!=shared_mem)
  4498. CopyMemory(shared_mem, &rate, sizeof(rate));
  4499. (void)UnmapViewOfFile(shared_mem);
  4500. }
  4501. (void)CloseHandle(map_handle);
  4502. }
  4503. #endif
  4504. }
  4505. exit(0);
  4506. }
  4507. if (opt_kernel) {
  4508. if (strcmp(opt_kernel, "poclbm") && strcmp(opt_kernel, "phatk"))
  4509. quit(1, "Invalid kernel name specified - must be poclbm or phatk");
  4510. if (!strcmp(opt_kernel, "poclbm"))
  4511. chosen_kernel = KL_POCLBM;
  4512. else
  4513. chosen_kernel = KL_PHATK;
  4514. } else
  4515. chosen_kernel = KL_NONE;
  4516. gpu_threads = nDevs * opt_g_threads;
  4517. if (total_devices) {
  4518. if (total_devices > nDevs)
  4519. quit(1, "More devices specified than exist");
  4520. for (i = 0; i < MAX_GPUDEVICES; i++)
  4521. if (gpu_devices[i] && i + 1 > nDevs)
  4522. quit (1, "Command line options set a device that doesn't exist");
  4523. } else {
  4524. for (i = 0; i < nDevs; i++)
  4525. gpu_devices[i] = true;
  4526. total_devices = nDevs;
  4527. }
  4528. if (!gpu_threads && !forced_n_threads) {
  4529. /* Maybe they turned GPU off; restore default CPU threads. */
  4530. opt_n_threads = num_processors;
  4531. }
  4532. if (!opt_n_threads && ! gpu_threads)
  4533. quit(1, "All devices disabled, cannot mine!");
  4534. logcursor = 8;
  4535. gpucursor = logcursor;
  4536. cpucursor = gpucursor + nDevs;
  4537. logstart = cpucursor + (opt_n_threads ? num_processors : 0) + 1;
  4538. logcursor = logstart + 1;
  4539. if (opt_realquiet)
  4540. use_curses = false;
  4541. if (!total_pools) {
  4542. enable_curses();
  4543. applog(LOG_WARNING, "Need to specify at least one pool server.");
  4544. if (!input_pool(false))
  4545. quit(1, "Pool setup failed");
  4546. if (!use_curses)
  4547. disable_curses();
  4548. }
  4549. for (i = 0; i < total_pools; i++) {
  4550. struct pool *pool = pools[i];
  4551. if (!pool->rpc_userpass) {
  4552. if (!pool->rpc_user || !pool->rpc_pass)
  4553. quit(1, "No login credentials supplied for pool %u %s", i, pool->rpc_url);
  4554. pool->rpc_userpass = malloc(strlen(pool->rpc_user) + strlen(pool->rpc_pass) + 2);
  4555. if (!pool->rpc_userpass)
  4556. quit(1, "Failed to malloc userpass");
  4557. sprintf(pool->rpc_userpass, "%s:%s", pool->rpc_user, pool->rpc_pass);
  4558. } else {
  4559. pool->rpc_user = malloc(strlen(pool->rpc_userpass));
  4560. if (!pool->rpc_user)
  4561. quit(1, "Failed to malloc user");
  4562. strcpy(pool->rpc_user, pool->rpc_userpass);
  4563. pool->rpc_user = strtok(pool->rpc_user, ":");
  4564. if (!pool->rpc_user)
  4565. quit(1, "Failed to find colon delimiter in userpass");
  4566. }
  4567. }
  4568. /* Set the currentpool to pool 0 */
  4569. currentpool = pools[0];
  4570. #ifdef HAVE_SYSLOG_H
  4571. if (use_syslog)
  4572. openlog(PACKAGE, LOG_PID, LOG_USER);
  4573. #endif
  4574. #if defined(unix)
  4575. if (opt_stderr_cmd)
  4576. fork_monitor();
  4577. #endif // defined(unix)
  4578. mining_threads = opt_n_threads + gpu_threads;
  4579. total_threads = mining_threads + 7;
  4580. work_restart = calloc(total_threads, sizeof(*work_restart));
  4581. if (!work_restart)
  4582. quit(1, "Failed to calloc work_restart");
  4583. thr_info = calloc(total_threads, sizeof(*thr));
  4584. if (!thr_info)
  4585. quit(1, "Failed to calloc thr_info");
  4586. /* init workio thread info */
  4587. work_thr_id = mining_threads;
  4588. thr = &thr_info[work_thr_id];
  4589. thr->id = work_thr_id;
  4590. thr->q = tq_new();
  4591. if (!thr->q)
  4592. quit(1, "Failed to tq_new");
  4593. /* start work I/O thread */
  4594. if (thr_info_create(thr, NULL, workio_thread, thr))
  4595. quit(1, "workio thread create failed");
  4596. /* init longpoll thread info */
  4597. longpoll_thr_id = mining_threads + 1;
  4598. thr = &thr_info[longpoll_thr_id];
  4599. thr->id = longpoll_thr_id;
  4600. thr->q = tq_new();
  4601. if (!thr->q)
  4602. quit(1, "Failed to tq_new");
  4603. if (opt_n_threads ) {
  4604. cpus = calloc(num_processors, sizeof(struct cgpu_info));
  4605. if (unlikely(!cpus))
  4606. quit(1, "Failed to calloc cpus");
  4607. }
  4608. stage_thr_id = mining_threads + 3;
  4609. thr = &thr_info[stage_thr_id];
  4610. thr->q = tq_new();
  4611. if (!thr->q)
  4612. quit(1, "Failed to tq_new");
  4613. /* start stage thread */
  4614. if (thr_info_create(thr, NULL, stage_thread, thr))
  4615. quit(1, "stage thread create failed");
  4616. pthread_detach(*thr->pth);
  4617. /* Create a unique get work queue */
  4618. getq = tq_new();
  4619. if (!getq)
  4620. quit(1, "Failed to create getq");
  4621. /* We use the getq mutex as the staged lock */
  4622. stgd_lock = &getq->mutex;
  4623. /* Test each pool to see if we can retrieve and use work and for what
  4624. * it supports */
  4625. for (i = 0; i < total_pools; i++) {
  4626. struct pool *pool;
  4627. pool = pools[i];
  4628. pool->enabled = true;
  4629. if (pool_active(pool, false)) {
  4630. if (!currentpool)
  4631. currentpool = pool;
  4632. applog(LOG_INFO, "Pool %d %s active", pool->pool_no, pool->rpc_url);
  4633. pools_active++;
  4634. } else {
  4635. if (pool == currentpool)
  4636. currentpool = NULL;
  4637. applog(LOG_WARNING, "Unable to get work from pool %d %s", pool->pool_no, pool->rpc_url);
  4638. pool->idle = true;
  4639. }
  4640. }
  4641. if (!pools_active) {
  4642. enable_curses();
  4643. applog(LOG_ERR, "No servers were found that could be used to get work from.");
  4644. applog(LOG_ERR, "Please check the details from the list below of the servers you have input");
  4645. applog(LOG_ERR, "Most likely you have input the wrong URL, forgotten to add a port, or have not set up workers");
  4646. for (i = 0; i < total_pools; i++) {
  4647. struct pool *pool;
  4648. pool = pools[i];
  4649. applog(LOG_WARNING, "Pool: %d URL: %s User: %s Password: %s",
  4650. i, pool->rpc_url, pool->rpc_user, pool->rpc_pass);
  4651. }
  4652. curses_input("Press enter to exit");
  4653. quit(0, "No servers could be used! Exiting.");
  4654. }
  4655. /* If we want longpoll, enable it for the chosen default pool, or, if
  4656. * the pool does not support longpoll, find the first one that does
  4657. * and use its longpoll support */
  4658. if (want_longpoll) {
  4659. if (currentpool->hdr_path)
  4660. start_longpoll();
  4661. else {
  4662. for (i = 0; i < total_pools; i++) {
  4663. struct pool *pool;
  4664. pool = pools[i];
  4665. if (pool->hdr_path) {
  4666. struct pool *temp = currentpool;
  4667. currentpool = pool;
  4668. start_longpoll();
  4669. /* Not real blocking, but good enough */
  4670. sleep(1);
  4671. currentpool = temp;
  4672. break;
  4673. }
  4674. }
  4675. }
  4676. }
  4677. gettimeofday(&total_tv_start, NULL);
  4678. gettimeofday(&total_tv_end, NULL);
  4679. get_datestamp(datestamp, &total_tv_start);
  4680. #ifdef HAVE_OPENCL
  4681. if (!opt_noadl)
  4682. init_adl(nDevs);
  4683. bool failmessage = false;
  4684. /* start GPU mining threads */
  4685. for (i = 0; i < nDevs * opt_g_threads; i++) {
  4686. int gpu = i % nDevs;
  4687. struct cgpu_info *cgpu;
  4688. struct timeval now;
  4689. gpus[gpu].is_gpu = 1;
  4690. gpus[gpu].cpu_gpu = gpu;
  4691. thr = &thr_info[i];
  4692. thr->id = i;
  4693. cgpu = thr->cgpu = &gpus[gpu];
  4694. thr->q = tq_new();
  4695. if (!thr->q)
  4696. quit(1, "tq_new failed in starting gpu mining threads");
  4697. /* Enable threads for devices set not to mine but disable
  4698. * their queue in case we wish to enable them later*/
  4699. if (gpu_devices[gpu]) {
  4700. if (opt_debug)
  4701. applog(LOG_DEBUG, "Pushing ping to thread %d", thr->id);
  4702. tq_push(thr->q, &ping);
  4703. }
  4704. applog(LOG_INFO, "Init GPU thread %i", i);
  4705. clStates[i] = initCl(gpu, name, sizeof(name));
  4706. if (!clStates[i]) {
  4707. enable_curses();
  4708. applog(LOG_ERR, "Failed to init GPU thread %d, disabling device %d", i, gpu);
  4709. if (!failmessage) {
  4710. char *buf;
  4711. applog(LOG_ERR, "The most common reason for this failure is cgminer being unable to read the kernel .cl files");
  4712. applog(LOG_ERR, "Alternatively if it has failed on different GPUs, restarting might help.");
  4713. failmessage = true;
  4714. buf = curses_input("Press enter to continue");
  4715. if (buf)
  4716. free(buf);
  4717. }
  4718. gpu_devices[gpu] = false;
  4719. cgpu->status = LIFE_NOSTART;
  4720. continue;
  4721. }
  4722. applog(LOG_INFO, "initCl() finished. Found %s", name);
  4723. gettimeofday(&now, NULL);
  4724. get_datestamp(cgpu->init, &now);
  4725. if (unlikely(thr_info_create(thr, NULL, gpuminer_thread, thr)))
  4726. quit(1, "thread %d create failed", i);
  4727. }
  4728. applog(LOG_INFO, "%d gpu miner threads started", gpu_threads);
  4729. #else
  4730. opt_g_threads = 0;
  4731. #endif
  4732. /* start CPU mining threads */
  4733. for (i = gpu_threads; i < mining_threads; i++) {
  4734. int cpu = (i - gpu_threads) % num_processors;
  4735. thr = &thr_info[i];
  4736. thr->id = i;
  4737. cpus[cpu].cpu_gpu = cpu;
  4738. thr->cgpu = &cpus[cpu];
  4739. thr->q = tq_new();
  4740. if (!thr->q)
  4741. quit(1, "tq_new failed in starting cpu mining threads");
  4742. thread_reportin(thr);
  4743. if (unlikely(thr_info_create(thr, NULL, miner_thread, thr)))
  4744. quit(1, "thread %d create failed", i);
  4745. }
  4746. applog(LOG_INFO, "%d cpu miner threads started, "
  4747. "using SHA256 '%s' algorithm.",
  4748. opt_n_threads,
  4749. algo_names[opt_algo]);
  4750. if (use_curses)
  4751. enable_curses();
  4752. watchdog_thr_id = mining_threads + 2;
  4753. thr = &thr_info[watchdog_thr_id];
  4754. /* start wakeup thread */
  4755. if (thr_info_create(thr, NULL, watchdog_thread, NULL))
  4756. quit(1, "wakeup thread create failed");
  4757. /* Create curses input thread for keyboard input */
  4758. input_thr_id = mining_threads + 4;
  4759. thr = &thr_info[input_thr_id];
  4760. if (thr_info_create(thr, NULL, input_thread, thr))
  4761. quit(1, "input thread create failed");
  4762. pthread_detach(*thr->pth);
  4763. /* Create reinit cpu thread */
  4764. cpur_thr_id = mining_threads + 5;
  4765. thr = &thr_info[cpur_thr_id];
  4766. thr->q = tq_new();
  4767. if (!thr->q)
  4768. quit(1, "tq_new failed for cpur_thr_id");
  4769. if (thr_info_create(thr, NULL, reinit_cpu, thr))
  4770. quit(1, "reinit_cpu thread create failed");
  4771. /* Create reinit gpu thread */
  4772. gpur_thr_id = mining_threads + 6;
  4773. thr = &thr_info[gpur_thr_id];
  4774. thr->q = tq_new();
  4775. if (!thr->q)
  4776. quit(1, "tq_new failed for gpur_thr_id");
  4777. if (thr_info_create(thr, NULL, reinit_gpu, thr))
  4778. quit(1, "reinit_gpu thread create failed");
  4779. /* main loop - simply wait for workio thread to exit */
  4780. pthread_join(*thr_info[work_thr_id].pth, NULL);
  4781. applog(LOG_INFO, "workio thread dead, exiting.");
  4782. gettimeofday(&total_tv_end, NULL);
  4783. disable_curses();
  4784. if (!opt_realquiet && successful_connect)
  4785. print_summary();
  4786. #ifdef HAVE_OPENCL
  4787. clear_adl(nDevs);
  4788. #endif
  4789. if (opt_n_threads)
  4790. free(cpus);
  4791. HASH_ITER(hh, staged_work, work, tmpwork) {
  4792. HASH_DEL(staged_work, work);
  4793. free_work(work);
  4794. }
  4795. HASH_ITER(hh, blocks, block, tmpblock) {
  4796. HASH_DEL(blocks, block);
  4797. free(block);
  4798. }
  4799. curl_global_cleanup();
  4800. return 0;
  4801. }