util.c 14 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. #define _GNU_SOURCE
  11. #include "config.h"
  12. #include <stdio.h>
  13. #include <stdlib.h>
  14. #include <ctype.h>
  15. #include <stdarg.h>
  16. #include <string.h>
  17. #include <jansson.h>
  18. #include <curl/curl.h>
  19. #include <time.h>
  20. #include <curses.h>
  21. #include <errno.h>
  22. #include <unistd.h>
  23. #include <sys/types.h>
  24. #ifndef WIN32
  25. # include <sys/socket.h>
  26. # include <netinet/in.h>
  27. # include <netinet/tcp.h>
  28. #else
  29. # include <winsock2.h>
  30. # include <mstcpip.h>
  31. #endif
  32. #include "miner.h"
  33. #include "elist.h"
  34. #if JANSSON_MAJOR_VERSION >= 2
  35. #define JSON_LOADS(str, err_ptr) json_loads((str), 0, (err_ptr))
  36. #else
  37. #define JSON_LOADS(str, err_ptr) json_loads((str), (err_ptr))
  38. #endif
  39. bool successful_connect = false;
  40. struct data_buffer {
  41. void *buf;
  42. size_t len;
  43. };
  44. struct upload_buffer {
  45. const void *buf;
  46. size_t len;
  47. };
  48. struct header_info {
  49. char *lp_path;
  50. bool has_rolltime;
  51. };
  52. struct tq_ent {
  53. void *data;
  54. struct list_head q_node;
  55. };
  56. void vapplog(int prio, const char *fmt, va_list ap)
  57. {
  58. #ifdef HAVE_SYSLOG_H
  59. if (use_syslog) {
  60. vsyslog(prio, fmt, ap);
  61. }
  62. #else
  63. if (0) {}
  64. #endif
  65. else if (opt_log_output || prio == LOG_WARNING || prio == LOG_ERR) {
  66. char *f;
  67. int len;
  68. struct timeval tv = { };
  69. struct tm tm;
  70. gettimeofday(&tv, NULL);
  71. localtime_r(&tv.tv_sec, &tm);
  72. len = 40 + strlen(fmt) + 22;
  73. f = alloca(len);
  74. sprintf(f, "[%d-%02d-%02d %02d:%02d:%02d] %s \n",
  75. tm.tm_year + 1900,
  76. tm.tm_mon + 1,
  77. tm.tm_mday,
  78. tm.tm_hour,
  79. tm.tm_min,
  80. tm.tm_sec,
  81. fmt);
  82. /* Only output to stderr if it's not going to the screen as well */
  83. if (!isatty(fileno((FILE *)stderr))) {
  84. va_list apc;
  85. va_copy(apc, ap);
  86. vfprintf(stderr, f, apc); /* atomic write to stderr */
  87. fflush(stderr);
  88. }
  89. log_curses(prio, f, ap);
  90. }
  91. }
  92. void applog(int prio, const char *fmt, ...)
  93. {
  94. va_list ap;
  95. va_start(ap, fmt);
  96. vapplog(prio, fmt, ap);
  97. va_end(ap);
  98. }
  99. static void databuf_free(struct data_buffer *db)
  100. {
  101. if (!db)
  102. return;
  103. free(db->buf);
  104. memset(db, 0, sizeof(*db));
  105. }
  106. static size_t all_data_cb(const void *ptr, size_t size, size_t nmemb,
  107. void *user_data)
  108. {
  109. struct data_buffer *db = user_data;
  110. size_t len = size * nmemb;
  111. size_t oldlen, newlen;
  112. void *newmem;
  113. static const unsigned char zero = 0;
  114. oldlen = db->len;
  115. newlen = oldlen + len;
  116. newmem = realloc(db->buf, newlen + 1);
  117. if (!newmem)
  118. return 0;
  119. db->buf = newmem;
  120. db->len = newlen;
  121. memcpy(db->buf + oldlen, ptr, len);
  122. memcpy(db->buf + newlen, &zero, 1); /* null terminate */
  123. return len;
  124. }
  125. static size_t upload_data_cb(void *ptr, size_t size, size_t nmemb,
  126. void *user_data)
  127. {
  128. struct upload_buffer *ub = user_data;
  129. int len = size * nmemb;
  130. if (len > ub->len)
  131. len = ub->len;
  132. if (len) {
  133. memcpy(ptr, ub->buf, len);
  134. ub->buf += len;
  135. ub->len -= len;
  136. }
  137. return len;
  138. }
  139. static size_t resp_hdr_cb(void *ptr, size_t size, size_t nmemb, void *user_data)
  140. {
  141. struct header_info *hi = user_data;
  142. size_t remlen, slen, ptrlen = size * nmemb;
  143. char *rem, *val = NULL, *key = NULL;
  144. void *tmp;
  145. val = calloc(1, ptrlen);
  146. key = calloc(1, ptrlen);
  147. if (!key || !val)
  148. goto out;
  149. tmp = memchr(ptr, ':', ptrlen);
  150. if (!tmp || (tmp == ptr)) /* skip empty keys / blanks */
  151. goto out;
  152. slen = tmp - ptr;
  153. if ((slen + 1) == ptrlen) /* skip key w/ no value */
  154. goto out;
  155. memcpy(key, ptr, slen); /* store & nul term key */
  156. key[slen] = 0;
  157. rem = ptr + slen + 1; /* trim value's leading whitespace */
  158. remlen = ptrlen - slen - 1;
  159. while ((remlen > 0) && (isspace(*rem))) {
  160. remlen--;
  161. rem++;
  162. }
  163. memcpy(val, rem, remlen); /* store value, trim trailing ws */
  164. val[remlen] = 0;
  165. while ((*val) && (isspace(val[strlen(val) - 1]))) {
  166. val[strlen(val) - 1] = 0;
  167. }
  168. if (!*val) /* skip blank value */
  169. goto out;
  170. if (opt_protocol)
  171. applog(LOG_DEBUG, "HTTP hdr(%s): %s", key, val);
  172. if (!strcasecmp("X-Roll-Ntime", key)) {
  173. if (!strcasecmp("Y", val)) {
  174. if (opt_debug)
  175. applog(LOG_DEBUG, "X-Roll-Ntime: Y found");
  176. hi->has_rolltime = true;
  177. } else if (opt_debug)
  178. applog(LOG_DEBUG, "X-Roll-Ntime: N found");
  179. }
  180. if (!strcasecmp("X-Long-Polling", key)) {
  181. hi->lp_path = val; /* steal memory reference */
  182. val = NULL;
  183. }
  184. out:
  185. free(key);
  186. free(val);
  187. return ptrlen;
  188. }
  189. int json_rpc_call_sockopt_cb(void *userdata, curl_socket_t fd, curlsocktype purpose)
  190. {
  191. int keepalive = 1;
  192. int tcp_keepcnt = 5;
  193. int tcp_keepidle = 120;
  194. int tcp_keepintvl = 120;
  195. #ifndef WIN32
  196. if (unlikely(setsockopt(fd, SOL_SOCKET, SO_KEEPALIVE, &keepalive, sizeof(keepalive))))
  197. return 1;
  198. # ifdef __linux
  199. if (unlikely(setsockopt(fd, SOL_TCP, TCP_KEEPCNT, &tcp_keepcnt, sizeof(tcp_keepcnt))))
  200. return 1;
  201. if (unlikely(setsockopt(fd, SOL_TCP, TCP_KEEPIDLE, &tcp_keepidle, sizeof(tcp_keepidle))))
  202. return 1;
  203. if (unlikely(setsockopt(fd, SOL_TCP, TCP_KEEPINTVL, &tcp_keepintvl, sizeof(tcp_keepintvl))))
  204. return 1;
  205. # endif /* __linux */
  206. # ifdef __APPLE_CC__
  207. if (unlikely(setsockopt(fd, IPPROTO_TCP, TCP_KEEPALIVE, &tcp_keepintvl, sizeof(tcp_keepintvl))))
  208. return 1;
  209. # endif /* __APPLE_CC__ */
  210. #else /* WIN32 */
  211. struct tcp_keepalive vals;
  212. vals.onoff = 1;
  213. vals.keepalivetime = tcp_keepidle * 1000;
  214. vals.keepaliveinterval = tcp_keepintvl * 1000;
  215. DWORD outputBytes;
  216. if (unlikely(WSAIoctl(fd, SIO_KEEPALIVE_VALS, &vals, sizeof(vals), NULL, 0, &outputBytes, NULL, NULL)))
  217. return 1;
  218. #endif /* WIN32 */
  219. return 0;
  220. }
  221. json_t *json_rpc_call(CURL *curl, const char *url,
  222. const char *userpass, const char *rpc_req,
  223. bool probe, bool longpoll, bool *rolltime,
  224. struct pool *pool)
  225. {
  226. json_t *val, *err_val, *res_val;
  227. int rc;
  228. struct data_buffer all_data = { };
  229. struct upload_buffer upload_data;
  230. json_error_t err = { };
  231. struct curl_slist *headers = NULL;
  232. char len_hdr[64], user_agent_hdr[128];
  233. char curl_err_str[CURL_ERROR_SIZE];
  234. long timeout = longpoll ? (60 * 60) : 60;
  235. struct header_info hi = { };
  236. bool probing = false;
  237. /* it is assumed that 'curl' is freshly [re]initialized at this pt */
  238. if (probe) {
  239. probing = !pool->probed;
  240. /* Probe for only 15 seconds */
  241. timeout = 15;
  242. }
  243. curl_easy_setopt(curl, CURLOPT_TIMEOUT, timeout);
  244. #if 0 /* Disable curl debugging since it spews to stderr */
  245. if (opt_protocol)
  246. curl_easy_setopt(curl, CURLOPT_VERBOSE, 1);
  247. #endif
  248. curl_easy_setopt(curl, CURLOPT_NOSIGNAL, 1);
  249. curl_easy_setopt(curl, CURLOPT_URL, url);
  250. curl_easy_setopt(curl, CURLOPT_ENCODING, "");
  251. curl_easy_setopt(curl, CURLOPT_FAILONERROR, 1);
  252. curl_easy_setopt(curl, CURLOPT_TCP_NODELAY, 1);
  253. curl_easy_setopt(curl, CURLOPT_WRITEFUNCTION, all_data_cb);
  254. curl_easy_setopt(curl, CURLOPT_WRITEDATA, &all_data);
  255. curl_easy_setopt(curl, CURLOPT_READFUNCTION, upload_data_cb);
  256. curl_easy_setopt(curl, CURLOPT_READDATA, &upload_data);
  257. curl_easy_setopt(curl, CURLOPT_ERRORBUFFER, curl_err_str);
  258. curl_easy_setopt(curl, CURLOPT_FOLLOWLOCATION, 1);
  259. curl_easy_setopt(curl, CURLOPT_HEADERFUNCTION, resp_hdr_cb);
  260. curl_easy_setopt(curl, CURLOPT_HEADERDATA, &hi);
  261. if (userpass) {
  262. curl_easy_setopt(curl, CURLOPT_USERPWD, userpass);
  263. curl_easy_setopt(curl, CURLOPT_HTTPAUTH, CURLAUTH_BASIC);
  264. }
  265. #ifdef CURL_HAS_SOCKOPT
  266. if (longpoll)
  267. curl_easy_setopt(curl, CURLOPT_SOCKOPTFUNCTION, json_rpc_call_sockopt_cb);
  268. #endif
  269. curl_easy_setopt(curl, CURLOPT_POST, 1);
  270. if (opt_protocol)
  271. applog(LOG_DEBUG, "JSON protocol request:\n%s", rpc_req);
  272. upload_data.buf = rpc_req;
  273. upload_data.len = strlen(rpc_req);
  274. sprintf(len_hdr, "Content-Length: %lu",
  275. (unsigned long) upload_data.len);
  276. sprintf(user_agent_hdr, "User-Agent: %s", PACKAGE_STRING);
  277. headers = curl_slist_append(headers,
  278. "Content-type: application/json");
  279. headers = curl_slist_append(headers, len_hdr);
  280. headers = curl_slist_append(headers, user_agent_hdr);
  281. headers = curl_slist_append(headers, "Expect:"); /* disable Expect hdr*/
  282. curl_easy_setopt(curl, CURLOPT_HTTPHEADER, headers);
  283. rc = curl_easy_perform(curl);
  284. if (rc) {
  285. applog(LOG_INFO, "HTTP request failed: %s", curl_err_str);
  286. goto err_out;
  287. }
  288. if (!all_data.buf) {
  289. if (opt_debug)
  290. applog(LOG_DEBUG, "Empty data received in json_rpc_call.");
  291. goto err_out;
  292. }
  293. if (probing) {
  294. pool->probed = true;
  295. /* If X-Long-Polling was found, activate long polling */
  296. if (hi.lp_path)
  297. pool->hdr_path = hi.lp_path;
  298. else
  299. pool->hdr_path = NULL;
  300. }
  301. *rolltime = hi.has_rolltime;
  302. val = JSON_LOADS(all_data.buf, &err);
  303. if (!val) {
  304. applog(LOG_INFO, "JSON decode failed(%d): %s", err.line, err.text);
  305. if (opt_protocol)
  306. applog(LOG_DEBUG, "JSON protocol response:\n%s", all_data.buf);
  307. goto err_out;
  308. }
  309. if (opt_protocol) {
  310. char *s = json_dumps(val, JSON_INDENT(3));
  311. applog(LOG_DEBUG, "JSON protocol response:\n%s", s);
  312. free(s);
  313. }
  314. /* JSON-RPC valid response returns a non-null 'result',
  315. * and a null 'error'.
  316. */
  317. res_val = json_object_get(val, "result");
  318. err_val = json_object_get(val, "error");
  319. if (!res_val || json_is_null(res_val) ||
  320. (err_val && !json_is_null(err_val))) {
  321. char *s;
  322. if (err_val)
  323. s = json_dumps(err_val, JSON_INDENT(3));
  324. else
  325. s = strdup("(unknown reason)");
  326. applog(LOG_INFO, "JSON-RPC call failed: %s", s);
  327. free(s);
  328. goto err_out;
  329. }
  330. successful_connect = true;
  331. databuf_free(&all_data);
  332. curl_slist_free_all(headers);
  333. curl_easy_reset(curl);
  334. return val;
  335. err_out:
  336. databuf_free(&all_data);
  337. curl_slist_free_all(headers);
  338. curl_easy_reset(curl);
  339. if (!successful_connect)
  340. applog(LOG_DEBUG, "Failed to connect in json_rpc_call");
  341. return NULL;
  342. }
  343. char *bin2hex(const unsigned char *p, size_t len)
  344. {
  345. int i;
  346. char *s = malloc((len * 2) + 1);
  347. if (!s)
  348. return NULL;
  349. for (i = 0; i < len; i++)
  350. sprintf(s + (i * 2), "%02x", (unsigned int) p[i]);
  351. return s;
  352. }
  353. bool hex2bin(unsigned char *p, const char *hexstr, size_t len)
  354. {
  355. while (*hexstr && len) {
  356. char hex_byte[3];
  357. unsigned int v;
  358. if (!hexstr[1]) {
  359. applog(LOG_ERR, "hex2bin str truncated");
  360. return false;
  361. }
  362. hex_byte[0] = hexstr[0];
  363. hex_byte[1] = hexstr[1];
  364. hex_byte[2] = 0;
  365. if (sscanf(hex_byte, "%x", &v) != 1) {
  366. applog(LOG_ERR, "hex2bin sscanf '%s' failed", hex_byte);
  367. return false;
  368. }
  369. *p = (unsigned char) v;
  370. p++;
  371. hexstr += 2;
  372. len--;
  373. }
  374. return (len == 0 && *hexstr == 0) ? true : false;
  375. }
  376. /* Subtract the `struct timeval' values X and Y,
  377. storing the result in RESULT.
  378. Return 1 if the difference is negative, otherwise 0. */
  379. int
  380. timeval_subtract (
  381. struct timeval *result, struct timeval *x, struct timeval *y)
  382. {
  383. /* Perform the carry for the later subtraction by updating Y. */
  384. if (x->tv_usec < y->tv_usec) {
  385. int nsec = (y->tv_usec - x->tv_usec) / 1000000 + 1;
  386. y->tv_usec -= 1000000 * nsec;
  387. y->tv_sec += nsec;
  388. }
  389. if (x->tv_usec - y->tv_usec > 1000000) {
  390. int nsec = (x->tv_usec - y->tv_usec) / 1000000;
  391. y->tv_usec += 1000000 * nsec;
  392. y->tv_sec -= nsec;
  393. }
  394. /* Compute the time remaining to wait.
  395. `tv_usec' is certainly positive. */
  396. result->tv_sec = x->tv_sec - y->tv_sec;
  397. result->tv_usec = x->tv_usec - y->tv_usec;
  398. /* Return 1 if result is negative. */
  399. return x->tv_sec < y->tv_sec;
  400. }
  401. bool fulltest(const unsigned char *hash, const unsigned char *target)
  402. {
  403. unsigned char hash_swap[32], target_swap[32];
  404. uint32_t *hash32 = (uint32_t *) hash_swap;
  405. uint32_t *target32 = (uint32_t *) target_swap;
  406. int i;
  407. bool rc = true;
  408. char *hash_str, *target_str;
  409. swap256(hash_swap, hash);
  410. swap256(target_swap, target);
  411. for (i = 0; i < 32/4; i++) {
  412. uint32_t h32tmp = swab32(hash32[i]);
  413. uint32_t t32tmp = target32[i];
  414. target32[i] = swab32(target32[i]); /* for printing */
  415. if (h32tmp > t32tmp) {
  416. rc = false;
  417. break;
  418. }
  419. if (h32tmp < t32tmp) {
  420. rc = true;
  421. break;
  422. }
  423. }
  424. if (opt_debug) {
  425. hash_str = bin2hex(hash_swap, 32);
  426. target_str = bin2hex(target_swap, 32);
  427. applog(LOG_DEBUG, " Proof: %s\nTarget: %s\nTrgVal? %s",
  428. hash_str,
  429. target_str,
  430. rc ? "YES (hash < target)" :
  431. "no (false positive; hash > target)");
  432. free(hash_str);
  433. free(target_str);
  434. }
  435. return rc;
  436. }
  437. struct thread_q *tq_new(void)
  438. {
  439. struct thread_q *tq;
  440. tq = calloc(1, sizeof(*tq));
  441. if (!tq)
  442. return NULL;
  443. INIT_LIST_HEAD(&tq->q);
  444. pthread_mutex_init(&tq->mutex, NULL);
  445. pthread_cond_init(&tq->cond, NULL);
  446. return tq;
  447. }
  448. void tq_free(struct thread_q *tq)
  449. {
  450. struct tq_ent *ent, *iter;
  451. if (!tq)
  452. return;
  453. list_for_each_entry_safe(ent, iter, &tq->q, q_node) {
  454. list_del(&ent->q_node);
  455. free(ent);
  456. }
  457. pthread_cond_destroy(&tq->cond);
  458. pthread_mutex_destroy(&tq->mutex);
  459. memset(tq, 0, sizeof(*tq)); /* poison */
  460. free(tq);
  461. }
  462. static void tq_freezethaw(struct thread_q *tq, bool frozen)
  463. {
  464. mutex_lock(&tq->mutex);
  465. tq->frozen = frozen;
  466. pthread_cond_signal(&tq->cond);
  467. mutex_unlock(&tq->mutex);
  468. }
  469. void tq_freeze(struct thread_q *tq)
  470. {
  471. tq_freezethaw(tq, true);
  472. }
  473. void tq_thaw(struct thread_q *tq)
  474. {
  475. tq_freezethaw(tq, false);
  476. }
  477. bool tq_push(struct thread_q *tq, void *data)
  478. {
  479. struct tq_ent *ent;
  480. bool rc = true;
  481. ent = calloc(1, sizeof(*ent));
  482. if (!ent)
  483. return false;
  484. ent->data = data;
  485. INIT_LIST_HEAD(&ent->q_node);
  486. mutex_lock(&tq->mutex);
  487. if (!tq->frozen) {
  488. list_add_tail(&ent->q_node, &tq->q);
  489. } else {
  490. free(ent);
  491. rc = false;
  492. }
  493. pthread_cond_signal(&tq->cond);
  494. mutex_unlock(&tq->mutex);
  495. return rc;
  496. }
  497. void *tq_pop(struct thread_q *tq, const struct timespec *abstime)
  498. {
  499. struct tq_ent *ent;
  500. void *rval = NULL;
  501. int rc;
  502. mutex_lock(&tq->mutex);
  503. if (!list_empty(&tq->q))
  504. goto pop;
  505. if (abstime)
  506. rc = pthread_cond_timedwait(&tq->cond, &tq->mutex, abstime);
  507. else
  508. rc = pthread_cond_wait(&tq->cond, &tq->mutex);
  509. if (rc)
  510. goto out;
  511. if (list_empty(&tq->q))
  512. goto out;
  513. pop:
  514. ent = list_entry(tq->q.next, struct tq_ent, q_node);
  515. rval = ent->data;
  516. list_del(&ent->q_node);
  517. free(ent);
  518. out:
  519. mutex_unlock(&tq->mutex);
  520. return rval;
  521. }
  522. inline int thr_info_create(struct thr_info *thr, pthread_attr_t *attr, void *(*start) (void *), void *arg)
  523. {
  524. int ret = 0;
  525. thr->pth = malloc(sizeof(pthread_t));
  526. ret = pthread_create(thr->pth, attr, start, arg);
  527. if (unlikely(ret)) {
  528. free(thr->pth);
  529. thr->pth = 0;
  530. }
  531. return ret;
  532. }