cpuworker.c 12 KB

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  1. /* Copyright 2003-2004 Roger Dingledine. */
  2. /* See LICENSE for licensing information */
  3. /* $Id$ */
  4. /**
  5. * \file cpuworker.c
  6. * \brief Run computation-intensive tasks (generally for crypto) in
  7. * a separate execution context. [OR only.]
  8. *
  9. * Right now, we only use this for processing onionskins.
  10. **/
  11. #include "or.h"
  12. extern or_options_t options; /* command-line and config-file options */
  13. /** The maximum number of cpuworker processes we will keep around. */
  14. #define MAX_CPUWORKERS 16
  15. /** The minimum number of cpuworker processes we will keep around. */
  16. #define MIN_CPUWORKERS 1
  17. /** The tag specifies which circuit this onionskin was from. */
  18. #define TAG_LEN 8
  19. /** How many bytes are sent from tor to the cpuworker? */
  20. #define LEN_ONION_QUESTION (1+TAG_LEN+ONIONSKIN_CHALLENGE_LEN)
  21. /** How many bytes are sent from the cpuworker back to tor? */
  22. #define LEN_ONION_RESPONSE (1+TAG_LEN+ONIONSKIN_REPLY_LEN+40+32)
  23. /** How many cpuworkers we have running right now. */
  24. static int num_cpuworkers=0;
  25. /** How many of the running cpuworkers have an assigned task right now. */
  26. static int num_cpuworkers_busy=0;
  27. /** We need to spawn new cpuworkers whenever we rotate the onion keys
  28. * on platforms where execution contexts==processes. This variable stores
  29. * the last time we got a key rotation event. */
  30. static time_t last_rotation_time=0;
  31. static int cpuworker_main(void *data);
  32. static int spawn_cpuworker(void);
  33. static void spawn_enough_cpuworkers(void);
  34. static void process_pending_task(connection_t *cpuworker);
  35. /** Initialize the cpuworker subsystem.
  36. */
  37. void cpu_init(void) {
  38. last_rotation_time=time(NULL);
  39. spawn_enough_cpuworkers();
  40. }
  41. /** Called when we're done sending a request to a cpuworker. */
  42. int connection_cpu_finished_flushing(connection_t *conn) {
  43. tor_assert(conn);
  44. tor_assert(conn->type == CONN_TYPE_CPUWORKER);
  45. connection_stop_writing(conn);
  46. return 0;
  47. }
  48. /** Pack addr,port,and circ_id; set *tag to the result. (See note on
  49. * cpuworker_main for wire format.) */
  50. static void tag_pack(char *tag, uint32_t addr, uint16_t port, uint16_t circ_id) {
  51. *(uint32_t *)tag = addr;
  52. *(uint16_t *)(tag+4) = port;
  53. *(uint16_t *)(tag+6) = circ_id;
  54. }
  55. /** Unpack <b>tag</b> into addr, port, and circ_id.
  56. */
  57. static void tag_unpack(const char *tag, uint32_t *addr, uint16_t *port, uint16_t *circ_id) {
  58. struct in_addr in;
  59. *addr = *(const uint32_t *)tag;
  60. *port = *(const uint16_t *)(tag+4);
  61. *circ_id = *(const uint16_t *)(tag+6);
  62. in.s_addr = htonl(*addr);
  63. log_fn(LOG_DEBUG,"onion was from %s:%d, circ_id %d.", inet_ntoa(in), *port, *circ_id);
  64. }
  65. /** Called when the onion key has changed and we need to spawn new
  66. * cpuworkers. Close all currently idle cpuworkers, and mark the last
  67. * rotation time as now.
  68. */
  69. void cpuworkers_rotate(void)
  70. {
  71. connection_t *cpuworker;
  72. while ((cpuworker = connection_get_by_type_state(CONN_TYPE_CPUWORKER,
  73. CPUWORKER_STATE_IDLE))) {
  74. connection_mark_for_close(cpuworker);
  75. --num_cpuworkers;
  76. }
  77. last_rotation_time = time(NULL);
  78. spawn_enough_cpuworkers();
  79. }
  80. /** Called when we get data from a cpuworker. If the answer is not complete,
  81. * wait for a complete answer. If the cpuworker closes the connection,
  82. * mark it as closed and spawn a new one as needed. If the answer is complete,
  83. * process it as appropriate.
  84. */
  85. int connection_cpu_process_inbuf(connection_t *conn) {
  86. char success;
  87. unsigned char buf[LEN_ONION_RESPONSE];
  88. uint32_t addr;
  89. uint16_t port;
  90. uint16_t circ_id;
  91. connection_t *p_conn;
  92. circuit_t *circ;
  93. tor_assert(conn);
  94. tor_assert(conn->type == CONN_TYPE_CPUWORKER);
  95. if(conn->inbuf_reached_eof) {
  96. log_fn(LOG_WARN,"Read eof. Worker died unexpectedly.");
  97. if(conn->state != CPUWORKER_STATE_IDLE) {
  98. /* the circ associated with this cpuworker will have to wait until
  99. * it gets culled in run_connection_housekeeping(), since we have
  100. * no way to find out which circ it was. */
  101. log_fn(LOG_WARN,"...and it left a circuit queued; abandoning circ.");
  102. num_cpuworkers_busy--;
  103. }
  104. num_cpuworkers--;
  105. spawn_enough_cpuworkers(); /* try to regrow. hope we don't end up spinning. */
  106. connection_mark_for_close(conn);
  107. return 0;
  108. }
  109. if(conn->state == CPUWORKER_STATE_BUSY_ONION) {
  110. if(buf_datalen(conn->inbuf) < LEN_ONION_RESPONSE) /* entire answer available? */
  111. return 0; /* not yet */
  112. tor_assert(buf_datalen(conn->inbuf) == LEN_ONION_RESPONSE);
  113. connection_fetch_from_buf(&success,1,conn);
  114. connection_fetch_from_buf(buf,LEN_ONION_RESPONSE-1,conn);
  115. /* parse out the circ it was talking about */
  116. tag_unpack(buf, &addr, &port, &circ_id);
  117. circ = NULL;
  118. /* XXXX This is actually right: we want a specific port here in
  119. * case there are multiple connections. */
  120. p_conn = connection_exact_get_by_addr_port(addr,port);
  121. if(p_conn)
  122. circ = circuit_get_by_circ_id_conn(circ_id, p_conn);
  123. if(success == 0) {
  124. log_fn(LOG_WARN,"decoding onionskin failed. Closing.");
  125. if(circ)
  126. circuit_mark_for_close(circ);
  127. goto done_processing;
  128. }
  129. if(!circ) {
  130. log_fn(LOG_INFO,"processed onion for a circ that's gone. Dropping.");
  131. goto done_processing;
  132. }
  133. tor_assert(circ->p_conn);
  134. if(onionskin_answer(circ, buf+TAG_LEN, buf+TAG_LEN+ONIONSKIN_REPLY_LEN) < 0) {
  135. log_fn(LOG_WARN,"onionskin_answer failed. Closing.");
  136. circuit_mark_for_close(circ);
  137. goto done_processing;
  138. }
  139. log_fn(LOG_DEBUG,"onionskin_answer succeeded. Yay.");
  140. } else {
  141. tor_assert(0); /* don't ask me to do handshakes yet */
  142. }
  143. done_processing:
  144. conn->state = CPUWORKER_STATE_IDLE;
  145. num_cpuworkers_busy--;
  146. if (conn->timestamp_created < last_rotation_time) {
  147. connection_mark_for_close(conn);
  148. num_cpuworkers--;
  149. spawn_enough_cpuworkers();
  150. } else {
  151. process_pending_task(conn);
  152. }
  153. return 0;
  154. }
  155. /** Implement a cpuworker. 'data' is an fdarray as returned by socketpair.
  156. * Read and writes from fdarray[1]. Reads requests, writes answers.
  157. *
  158. * Request format:
  159. * Task type [1 byte, always CPUWORKER_TASK_ONION]
  160. * Opaque tag TAG_LEN
  161. * Onionskin challenge ONIONSKIN_CHALLENGE_LEN
  162. * Response format:
  163. * Success/failure [1 byte, boolean.]
  164. * Opaque tag TAG_LEN
  165. * Onionskin challenge ONIONSKIN_REPLY_LEN
  166. * Negotiated keys KEY_LEN*2+DIGEST_LEN*2
  167. *
  168. * (Note: this _should_ be by addr/port, since we're concerned with specific
  169. * connections, not with routers (where we'd use identity).)
  170. */
  171. static int cpuworker_main(void *data) {
  172. unsigned char question[ONIONSKIN_CHALLENGE_LEN];
  173. unsigned char question_type;
  174. int *fdarray = data;
  175. int fd;
  176. /* variables for onion processing */
  177. unsigned char keys[40+32];
  178. unsigned char reply_to_proxy[ONIONSKIN_REPLY_LEN];
  179. unsigned char buf[LEN_ONION_RESPONSE];
  180. char tag[TAG_LEN];
  181. crypto_pk_env_t *onion_key = NULL, *last_onion_key = NULL;
  182. tor_close_socket(fdarray[0]); /* this is the side of the socketpair the parent uses */
  183. fd = fdarray[1]; /* this side is ours */
  184. #ifndef MS_WINDOWS
  185. connection_free_all(); /* so the child doesn't hold the parent's fd's open */
  186. #endif
  187. handle_signals(0); /* ignore interrupts from the keyboard, etc */
  188. dup_onion_keys(&onion_key, &last_onion_key);
  189. for(;;) {
  190. if(recv(fd, &question_type, 1, 0) != 1) {
  191. // log_fn(LOG_ERR,"read type failed. Exiting.");
  192. log_fn(LOG_INFO,"cpuworker exiting because tor process closed connection (either rotated keys or died).");
  193. goto end;
  194. }
  195. tor_assert(question_type == CPUWORKER_TASK_ONION);
  196. if(read_all(fd, tag, TAG_LEN, 1) != TAG_LEN) {
  197. log_fn(LOG_ERR,"read tag failed. Exiting.");
  198. goto end;
  199. }
  200. if(read_all(fd, question, ONIONSKIN_CHALLENGE_LEN, 1) != ONIONSKIN_CHALLENGE_LEN) {
  201. log_fn(LOG_ERR,"read question failed. Exiting.");
  202. goto end;
  203. }
  204. if(question_type == CPUWORKER_TASK_ONION) {
  205. if(onion_skin_server_handshake(question, onion_key, last_onion_key,
  206. reply_to_proxy, keys, 40+32) < 0) {
  207. /* failure */
  208. log_fn(LOG_WARN,"onion_skin_server_handshake failed.");
  209. memset(buf,0,LEN_ONION_RESPONSE); /* send all zeros for failure */
  210. } else {
  211. /* success */
  212. log_fn(LOG_DEBUG,"onion_skin_server_handshake succeeded.");
  213. buf[0] = 1; /* 1 means success */
  214. memcpy(buf+1,tag,TAG_LEN);
  215. memcpy(buf+1+TAG_LEN,reply_to_proxy,ONIONSKIN_REPLY_LEN);
  216. memcpy(buf+1+TAG_LEN+ONIONSKIN_REPLY_LEN,keys,40+32);
  217. }
  218. if(write_all(fd, buf, LEN_ONION_RESPONSE, 1) != LEN_ONION_RESPONSE) {
  219. log_fn(LOG_ERR,"writing response buf failed. Exiting.");
  220. spawn_exit();
  221. }
  222. log_fn(LOG_DEBUG,"finished writing response.");
  223. }
  224. }
  225. end:
  226. if (onion_key)
  227. crypto_free_pk_env(onion_key);
  228. if (last_onion_key)
  229. crypto_free_pk_env(last_onion_key);
  230. spawn_exit();
  231. return 0; /* windows wants this function to return an int */
  232. }
  233. /** Launch a new cpuworker.
  234. */
  235. static int spawn_cpuworker(void) {
  236. int fd[2];
  237. connection_t *conn;
  238. if(tor_socketpair(AF_UNIX, SOCK_STREAM, 0, fd) < 0) {
  239. log(LOG_ERR, "Couldn't construct socketpair: %s",
  240. tor_socket_strerror(tor_socket_errno(-1)));
  241. tor_cleanup();
  242. exit(1);
  243. }
  244. spawn_func(cpuworker_main, (void*)fd);
  245. log_fn(LOG_DEBUG,"just spawned a worker.");
  246. tor_close_socket(fd[1]); /* we don't need the worker's side of the pipe */
  247. conn = connection_new(CONN_TYPE_CPUWORKER);
  248. set_socket_nonblocking(fd[0]);
  249. /* set up conn so it's got all the data we need to remember */
  250. conn->s = fd[0];
  251. conn->address = tor_strdup("localhost");
  252. if(connection_add(conn) < 0) { /* no space, forget it */
  253. log_fn(LOG_WARN,"connection_add failed. Giving up.");
  254. connection_free(conn); /* this closes fd[0] */
  255. return -1;
  256. }
  257. conn->state = CPUWORKER_STATE_IDLE;
  258. connection_start_reading(conn);
  259. return 0; /* success */
  260. }
  261. /** If we have too few or too many active cpuworkers, try to spawn new ones
  262. * or kill idle ones.
  263. */
  264. static void spawn_enough_cpuworkers(void) {
  265. int num_cpuworkers_needed = options.NumCpus;
  266. if(num_cpuworkers_needed < MIN_CPUWORKERS)
  267. num_cpuworkers_needed = MIN_CPUWORKERS;
  268. if(num_cpuworkers_needed > MAX_CPUWORKERS)
  269. num_cpuworkers_needed = MAX_CPUWORKERS;
  270. while(num_cpuworkers < num_cpuworkers_needed) {
  271. if(spawn_cpuworker() < 0) {
  272. log_fn(LOG_WARN,"spawn failed!");
  273. return;
  274. }
  275. num_cpuworkers++;
  276. }
  277. }
  278. /** Take a pending task from the queue and assign it to 'cpuworker'. */
  279. static void process_pending_task(connection_t *cpuworker) {
  280. circuit_t *circ;
  281. tor_assert(cpuworker);
  282. /* for now only process onion tasks */
  283. circ = onion_next_task();
  284. if(!circ)
  285. return;
  286. if(assign_to_cpuworker(cpuworker, CPUWORKER_TASK_ONION, circ) < 0)
  287. log_fn(LOG_WARN,"assign_to_cpuworker failed. Ignoring.");
  288. }
  289. /** if cpuworker is defined, assert that he's idle, and use him. else,
  290. * look for an idle cpuworker and use him. if none idle, queue task onto
  291. * the pending onion list and return.
  292. * If question_type is CPUWORKER_TASK_ONION then task is a circ.
  293. * No other question_types are allowed.
  294. */
  295. int assign_to_cpuworker(connection_t *cpuworker, unsigned char question_type,
  296. void *task) {
  297. circuit_t *circ;
  298. char tag[TAG_LEN];
  299. tor_assert(question_type == CPUWORKER_TASK_ONION);
  300. if(question_type == CPUWORKER_TASK_ONION) {
  301. circ = task;
  302. if(num_cpuworkers_busy == num_cpuworkers) {
  303. log_fn(LOG_DEBUG,"No idle cpuworkers. Queuing.");
  304. if(onion_pending_add(circ) < 0)
  305. return -1;
  306. return 0;
  307. }
  308. if (!cpuworker)
  309. cpuworker = connection_get_by_type_state(CONN_TYPE_CPUWORKER, CPUWORKER_STATE_IDLE);
  310. tor_assert(cpuworker);
  311. if(!circ->p_conn) {
  312. log_fn(LOG_INFO,"circ->p_conn gone. Failing circ.");
  313. return -1;
  314. }
  315. tag_pack(tag, circ->p_conn->addr, circ->p_conn->port, circ->p_circ_id);
  316. cpuworker->state = CPUWORKER_STATE_BUSY_ONION;
  317. num_cpuworkers_busy++;
  318. connection_write_to_buf(&question_type, 1, cpuworker);
  319. connection_write_to_buf(tag, sizeof(tag), cpuworker);
  320. connection_write_to_buf(circ->onionskin, ONIONSKIN_CHALLENGE_LEN, cpuworker);
  321. }
  322. return 0;
  323. }
  324. /*
  325. Local Variables:
  326. mode:c
  327. indent-tabs-mode:nil
  328. c-basic-offset:2
  329. End:
  330. */