dpnode.cc 6.9 KB

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  1. extern "C" {
  2. #include <event2/listener.h>
  3. #include <event2/bufferevent.h>
  4. #include <event2/buffer.h>
  5. }
  6. #include <sys/socket.h>
  7. #include <netinet/in.h>
  8. #include <arpa/inet.h>
  9. #include <set>
  10. #include <map>
  11. #include <stdlib.h>
  12. #include <string.h>
  13. #include "evutils.h"
  14. #include "subproblem.h"
  15. typedef map<std::string, pair<ZZ,ZZ> > DTable;
  16. typedef enum {
  17. DPSTATE_START,
  18. DPSTATE_END
  19. } DPState;
  20. struct DPNodeConnInfo {
  21. DPState state;
  22. DPNodeConnInfo() : state(DPSTATE_START) {}
  23. };
  24. static struct DPControllerState {
  25. struct bufferevent *controller_bev;
  26. Subproblem *current_problem;
  27. struct evconnlistener *listener;
  28. std::set<struct bufferevent *> workers;
  29. DTable table;
  30. unsigned long long numdps;
  31. DPControllerState() : controller_bev(NULL), current_problem(NULL),
  32. listener(NULL) {}
  33. } dpctrlstate;
  34. static void dpnode_event_cb(struct bufferevent *bev, short events,
  35. void *ctx)
  36. {
  37. if (events & (BEV_EVENT_EOF|BEV_EVENT_ERROR)) {
  38. fprintf(stderr, "Closing connection\n");
  39. DPNodeConnInfo *info = (DPNodeConnInfo*)ctx;
  40. delete info;
  41. bufferevent_free(bev);
  42. }
  43. }
  44. static void stop_problem(void);
  45. static void dpnode_reader(struct bufferevent *bev, void *ctx)
  46. {
  47. struct evbuffer *input = bufferevent_get_input(bev);
  48. unsigned int dp[WORDS+6];
  49. while(1) {
  50. size_t len = evbuffer_get_length(input);
  51. if (len < ((WORDS+6)*sizeof(unsigned int))) break;
  52. bufferevent_read(bev, dp, (WORDS+6)*sizeof(unsigned int));
  53. // The (WORDS+6) unsigned ints we read are:
  54. // - WORDS words for the value of the dp
  55. // - 3 words for a
  56. // - 3 words for b
  57. ZZ zz_a, zz_b;
  58. ZZFromBytes(zz_a, (const unsigned char *)(dp+WORDS),
  59. 3*sizeof(unsigned int));
  60. ZZFromBytes(zz_b, (const unsigned char *)(dp+WORDS+3),
  61. 3*sizeof(unsigned int));
  62. string x((const char *)(dp), WORDS*sizeof(unsigned int));
  63. pair<ZZ,ZZ> ab(zz_a,zz_b);
  64. pair<DTable::iterator, bool> res =
  65. dpctrlstate.table.insert(DTable::value_type(x,ab));
  66. if (!res.second) {
  67. const ZZ& order = dpctrlstate.current_problem->order;
  68. // Collision!
  69. ZZ adiff = to_ZZ(res.first->second.first) - zz_a;
  70. ZZ bdiff = zz_b - to_ZZ(res.first->second.second);
  71. while (bdiff < 0) bdiff += order;
  72. while (bdiff >= order) bdiff -= order;
  73. while (adiff < 0) adiff += order;
  74. while (adiff >= order) adiff -= order;
  75. ZZ binv;
  76. if (InvModStatus(binv, bdiff, order) == 0) {
  77. ZZ expon = MulMod(binv, adiff, order);
  78. cerr << "Collision after " << dpctrlstate.numdps << " DPs\n";
  79. unsigned char exponbytes[3*sizeof(unsigned int)];
  80. BytesFromZZ(exponbytes, expon, 3*sizeof(unsigned int));
  81. bufferevent_write(dpctrlstate.controller_bev, exponbytes,
  82. 3*sizeof(unsigned int));
  83. stop_problem();
  84. }
  85. }
  86. ++dpctrlstate.numdps;
  87. }
  88. }
  89. static void dpnode_accept_cb(struct evconnlistener *listener,
  90. evutil_socket_t fd, struct sockaddr *address, int socklen,
  91. void *ctx)
  92. {
  93. DPNodeConnInfo *info = new DPNodeConnInfo();
  94. // Create a bufferevent for the new connection
  95. struct event_base *base = evconnlistener_get_base(listener);
  96. struct bufferevent *bev = bufferevent_socket_new(
  97. base, fd, BEV_OPT_CLOSE_ON_FREE);
  98. bufferevent_setcb(bev, dpnode_reader, NULL,
  99. dpnode_event_cb, info);
  100. bufferevent_enable(bev, EV_READ);
  101. }
  102. // Create a new DPnode socket. ip and boundport are set to the IP and
  103. // port of the socket, in network byte order.
  104. struct evconnlistener *dpnode_create(struct event_base *evbase,
  105. unsigned int *ip, unsigned short *boundport)
  106. {
  107. return listener_create(evbase, 0, dpnode_accept_cb, NULL,
  108. ip, boundport, false);
  109. }
  110. typedef enum {
  111. DPCCSTATE_AWAITCMD,
  112. DPCCSTATE_RDPROBLEM,
  113. DPCCSTATE_END
  114. } DPCCState;
  115. struct DPControllerConnInfo {
  116. DPCCState state;
  117. DPControllerConnInfo() : state(DPCCSTATE_AWAITCMD) {}
  118. };
  119. static void stop_problem(void)
  120. {
  121. if (dpctrlstate.current_problem) {
  122. dpctrlstate.current_problem = NULL;
  123. }
  124. if (dpctrlstate.listener) {
  125. evconnlistener_free(dpctrlstate.listener);
  126. dpctrlstate.listener = NULL;
  127. }
  128. std::set<struct bufferevent *>::iterator wit;
  129. for (wit = dpctrlstate.workers.begin(); wit != dpctrlstate.workers.end();
  130. ++wit) {
  131. bufferevent_free(*wit);
  132. }
  133. dpctrlstate.workers.clear();
  134. dpctrlstate.table.clear();
  135. dpctrlstate.numdps = 0;
  136. }
  137. static void start_problem(struct bufferevent *bev,
  138. const unsigned char *subproblem)
  139. {
  140. unsigned int myip;
  141. unsigned short myport;
  142. stop_problem();
  143. dpctrlstate.current_problem = new Subproblem(subproblem);
  144. dpctrlstate.current_problem->dump(cerr);
  145. // Create the DPNode server socket
  146. dpctrlstate.listener = dpnode_create(bufferevent_get_base(bev),
  147. &myip, &myport);
  148. struct in_addr myaddr = { myip };
  149. fprintf(stderr, "Bound to %s:%d\n", inet_ntoa(myaddr), ntohs(myport));
  150. unsigned char idstring[7];
  151. idstring[0] = 'L';
  152. memmove(idstring+1, &myip, 4);
  153. memmove(idstring+5, &myport, 2);
  154. bufferevent_write(bev, idstring, 7);
  155. }
  156. static void controllerconn_reader(struct bufferevent *bev, void *ctx)
  157. {
  158. struct evbuffer *input = bufferevent_get_input(bev);
  159. DPControllerConnInfo *info = (DPControllerConnInfo *)ctx;
  160. unsigned char cmd[1];
  161. unsigned char subproblem[SUBPROBLEM_DESC_LEN];
  162. while(1) {
  163. size_t len = evbuffer_get_length(input);
  164. switch(info->state) {
  165. case DPCCSTATE_AWAITCMD:
  166. if (len < 1) return;
  167. bufferevent_read(bev, cmd, 1);
  168. switch(cmd[0]) {
  169. case 'P':
  170. info->state = DPCCSTATE_RDPROBLEM;
  171. break;
  172. case 'S':
  173. stop_problem();
  174. break;
  175. default:
  176. /* Unknown command received */
  177. fprintf(stderr, "Unknown command in "
  178. "controllerconn_reader: %c\n", cmd[0]);
  179. info->state = DPCCSTATE_END;
  180. break;
  181. }
  182. break;
  183. case DPCCSTATE_RDPROBLEM:
  184. if (len < SUBPROBLEM_DESC_LEN) return;
  185. bufferevent_read(bev, subproblem, SUBPROBLEM_DESC_LEN);
  186. start_problem(bev, subproblem);
  187. info->state = DPCCSTATE_AWAITCMD;
  188. break;
  189. case DPCCSTATE_END:
  190. // Shut down
  191. delete info;
  192. event_base_loopbreak(bufferevent_get_base(bev));
  193. bufferevent_free(bev);
  194. return;
  195. }
  196. }
  197. }
  198. static void controllerconn_event_cb(struct bufferevent *bev, short events,
  199. void *ctx)
  200. {
  201. if (events & BEV_EVENT_CONNECTED) {
  202. // We have successfully connected to the controller
  203. char id[1] = { 'D' };
  204. bufferevent_enable(bev, EV_READ|EV_WRITE);
  205. bufferevent_write(bev, id, 1);
  206. bufferevent_setcb(bev, controllerconn_reader, NULL,
  207. controllerconn_event_cb, new DPControllerConnInfo());
  208. dpctrlstate.controller_bev = bev;
  209. } else if (events & (BEV_EVENT_EOF|BEV_EVENT_ERROR)) {
  210. fprintf(stderr, "Closing connection to controller and exiting\n");
  211. event_base_loopbreak(bufferevent_get_base(bev));
  212. bufferevent_free(bev);
  213. }
  214. }
  215. int main(int argc, char **argv)
  216. {
  217. if (argc != 3) {
  218. fprintf(stderr, "Usage: %s controller_host controller_port\n", argv[0]);
  219. return 1;
  220. }
  221. unsigned short controller_port = strtoul(argv[2], NULL, 10);
  222. return controller_client(argv[1], controller_port,
  223. controllerconn_event_cb, false);
  224. }