tunnel_server.cpp 12 KB

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  1. /*
  2. * tunnel.cpp
  3. *
  4. * Created on: Oct 26, 2017
  5. * Author: root
  6. */
  7. #include "tunnel.h"
  8. static void conn_timer_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents);
  9. static void fec_encode_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents);
  10. static void remote_cb(struct ev_loop *loop, struct ev_io *watcher, int revents);
  11. enum tmp_mode_t{is_from_remote=0,is_fec_timeout,is_conn_timer};
  12. void data_from_remote_or_fec_timeout_or_conn_timer(conn_info_t & conn_info,fd64_t fd64,tmp_mode_t mode)
  13. {
  14. int ret;
  15. char data[buf_len];
  16. int data_len;
  17. u32_t conv;
  18. //fd64_t fd64=events[idx].data.u64;
  19. //mylog(log_trace,"events[idx].data.u64 >u32_t(-1),%llu\n",(u64_t)events[idx].data.u64);
  20. //assert(fd_manager.exist_info(fd64));
  21. //ip_port_t ip_port=fd_manager.get_info(fd64).ip_port;
  22. //conn_info_t &conn_info=conn_manager.find(ip_port);
  23. address_t &addr=conn_info.addr;
  24. assert(conn_manager.exist(addr));
  25. int &local_listen_fd=conn_info.local_listen_fd;
  26. int out_n=-2;char **out_arr;int *out_len;my_time_t *out_delay;
  27. dest_t dest;
  28. dest.inner.fd_addr.fd=local_listen_fd;
  29. dest.inner.fd_addr.addr=addr;
  30. dest.type=type_fd_addr;
  31. dest.cook=1;
  32. if(mode==is_fec_timeout)
  33. {
  34. assert(fd64==0);
  35. //uint64_t value;
  36. //if((ret=read(fd_manager.to_fd(fd64), &value, 8))!=8)
  37. //{
  38. // mylog(log_trace,"fd_manager.to_fd(fd64), &value, 8)!=8 ,%d\n",ret);
  39. // continue;
  40. //}
  41. //if(value==0)
  42. //{
  43. // mylog(log_trace,"value==0\n");
  44. // continue;
  45. //}
  46. //assert(value==1);
  47. from_normal_to_fec(conn_info,0,0,out_n,out_arr,out_len,out_delay);
  48. }
  49. else if(mode==is_conn_timer)
  50. {
  51. assert(fd64==0);
  52. //uint64_t value;
  53. //read(conn_info.timer.get_timer_fd(), &value, 8);
  54. conn_info.conv_manager.s.clear_inactive();
  55. if(debug_force_flush_fec)
  56. {
  57. from_normal_to_fec(conn_info,0,0,out_n,out_arr,out_len,out_delay);
  58. }
  59. conn_info.stat.report_as_server(addr);
  60. return;
  61. }
  62. else if(mode==is_from_remote)
  63. {
  64. if(!fd_manager.exist(fd64)) //fd64 has been closed
  65. {
  66. mylog(log_warn,"!fd_manager.exist(fd64)\n");
  67. return;
  68. }
  69. //fd64_t &fd64 =conn_info.remote_fd64;
  70. assert(conn_info.conv_manager.s.is_data_used(fd64));
  71. conv=conn_info.conv_manager.s.find_conv_by_data(fd64);
  72. conn_info.conv_manager.s.update_active_time(conv);
  73. conn_info.update_active_time();
  74. int fd=fd_manager.to_fd(fd64);
  75. data_len=recv(fd,data,max_data_len,0);
  76. mylog(log_trace,"received a packet from udp_fd,len:%d,conv=%d\n",data_len,conv);
  77. if(data_len<0)
  78. {
  79. mylog(log_debug,"udp fd,recv_len<0 continue,%s\n",get_sock_error());
  80. return;
  81. }
  82. if(!disable_mtu_warn&&data_len>=mtu_warn)
  83. {
  84. mylog(log_warn,"huge packet,data len=%d (>=%d).strongly suggested to set a smaller mtu at upper level,to get rid of this warn\n ",data_len,mtu_warn);
  85. }
  86. char * new_data;
  87. int new_len;
  88. put_conv(conv,data,data_len,new_data,new_len);
  89. from_normal_to_fec(conn_info,new_data,new_len,out_n,out_arr,out_len,out_delay);
  90. }
  91. else
  92. {
  93. assert(0==1);
  94. }
  95. mylog(log_trace,"out_n=%d\n",out_n);
  96. for(int i=0;i<out_n;i++)
  97. {
  98. delay_send(out_delay[i],dest,out_arr[i],out_len[i]);
  99. }
  100. }
  101. static void local_listen_cb(struct ev_loop *loop, struct ev_io *watcher, int revents)
  102. {
  103. assert(!(revents&EV_ERROR));
  104. int local_listen_fd=watcher->fd;
  105. int ret;
  106. mylog(log_trace,"events[idx].data.u64 == (u64_t)local_listen_fd\n");
  107. char data[buf_len];
  108. int data_len;
  109. address_t::storage_t udp_new_addr_in={0};
  110. socklen_t udp_new_addr_len = sizeof(address_t::storage_t);
  111. if ((data_len = recvfrom(local_listen_fd, data, max_data_len, 0,
  112. (struct sockaddr *) &udp_new_addr_in, &udp_new_addr_len)) == -1) {
  113. mylog(log_error,"recv_from error,this shouldnt happen,err=%s,but we can try to continue\n",get_sock_error());
  114. return;
  115. };
  116. address_t addr;
  117. addr.from_sockaddr((struct sockaddr *) &udp_new_addr_in,udp_new_addr_len);
  118. mylog(log_trace,"Received packet from %s,len: %d\n", addr.get_str(),data_len);
  119. if(!disable_mtu_warn&&data_len>=mtu_warn)///////////////////////delete this for type 0 in furture
  120. {
  121. mylog(log_warn,"huge packet,data len=%d (>=%d).strongly suggested to set a smaller mtu at upper level,to get rid of this warn\n ",data_len,mtu_warn);
  122. }
  123. if(de_cook(data,data_len)!=0)
  124. {
  125. mylog(log_debug,"de_cook error");
  126. return;
  127. }
  128. if(!conn_manager.exist(addr))
  129. {
  130. if(conn_manager.mp.size() >=max_conn_num)
  131. {
  132. mylog(log_warn,"new connection %s ignored bc max_conn_num exceed\n",addr.get_str());
  133. return;
  134. }
  135. //conn_manager.insert(addr);
  136. conn_info_t &conn_info=conn_manager.find_insert(addr);
  137. conn_info.addr=addr;
  138. conn_info.loop=ev_default_loop(0);
  139. conn_info.local_listen_fd=local_listen_fd;
  140. //u64_t fec_fd64=conn_info.fec_encode_manager.get_timer_fd64();
  141. //mylog(log_debug,"fec_fd64=%llu\n",fec_fd64);
  142. //ev.events = EPOLLIN;
  143. //ev.data.u64 = fec_fd64;
  144. //ret = epoll_ctl(epoll_fd, EPOLL_CTL_ADD, fd_manager.to_fd(fec_fd64), &ev);
  145. //fd_manager.get_info(fec_fd64).ip_port=ip_port;
  146. conn_info.timer.data=&conn_info;
  147. ev_init(&conn_info.timer,conn_timer_cb);
  148. ev_timer_set(&conn_info.timer, 0, timer_interval/1000.0 );
  149. ev_timer_start(loop,&conn_info.timer);
  150. //conn_info.timer.add_fd64_to_epoll(epoll_fd);
  151. //conn_info.timer.set_timer_repeat_us(timer_interval*1000);
  152. //mylog(log_debug,"conn_info.timer.get_timer_fd64()=%llu\n",conn_info.timer.get_timer_fd64());
  153. //u64_t timer_fd64=conn_info.timer.get_timer_fd64();
  154. //fd_manager.get_info(timer_fd64).ip_port=ip_port;
  155. conn_info.fec_encode_manager.set_data(&conn_info);
  156. conn_info.fec_encode_manager.set_loop_and_cb(loop,fec_encode_cb);
  157. mylog(log_info,"new connection from %s\n",addr.get_str());
  158. }
  159. conn_info_t &conn_info=conn_manager.find_insert(addr);
  160. conn_info.update_active_time();
  161. int out_n;char **out_arr;int *out_len;my_time_t *out_delay;
  162. from_fec_to_normal(conn_info,data,data_len,out_n,out_arr,out_len,out_delay);
  163. mylog(log_trace,"out_n= %d\n",out_n);
  164. for(int i=0;i<out_n;i++)
  165. {
  166. u32_t conv;
  167. char *new_data;
  168. int new_len;
  169. if(get_conv(conv,out_arr[i],out_len[i],new_data,new_len)!=0)
  170. {
  171. mylog(log_debug,"get_conv failed");
  172. continue;
  173. }
  174. if (!conn_info.conv_manager.s.is_conv_used(conv))
  175. {
  176. if(conn_info.conv_manager.s.get_size() >=max_conv_num)
  177. {
  178. mylog(log_warn,"ignored new udp connect bc max_conv_num exceed\n");
  179. continue;
  180. }
  181. int new_udp_fd;
  182. ret=new_connected_socket2(new_udp_fd,remote_addr,has_b,bind_addr,interface_string);
  183. if (ret != 0) {
  184. mylog(log_warn, "[%s]new_connected_socket failed\n",addr.get_str());
  185. continue;
  186. }
  187. fd64_t fd64 = fd_manager.create(new_udp_fd);
  188. //ev.events = EPOLLIN;
  189. //ev.data.u64 = fd64;
  190. //ret = epoll_ctl(epoll_fd, EPOLL_CTL_ADD, new_udp_fd, &ev);
  191. conn_info.conv_manager.s.insert_conv(conv, fd64);
  192. fd_manager.get_info(fd64).addr=addr;
  193. ev_io &io_watcher=fd_manager.get_info(fd64).io_watcher;
  194. io_watcher.u64=fd64;
  195. io_watcher.data=&conn_info;
  196. ev_init(&io_watcher,remote_cb);
  197. ev_io_set(&io_watcher,new_udp_fd,EV_READ);
  198. ev_io_start(conn_info.loop,&io_watcher);
  199. mylog(log_info,"[%s]new conv %x,fd %d created,fd64=%llu\n",addr.get_str(),conv,new_udp_fd,fd64);
  200. }
  201. conn_info.conv_manager.s.update_active_time(conv);
  202. fd64_t fd64= conn_info.conv_manager.s.find_data_by_conv(conv);
  203. dest_t dest;
  204. dest.type=type_fd64;
  205. dest.inner.fd64=fd64;
  206. delay_send(out_delay[i],dest,new_data,new_len);
  207. }
  208. }
  209. static void remote_cb(struct ev_loop *loop, struct ev_io *watcher, int revents)
  210. {
  211. assert(!(revents&EV_ERROR));
  212. conn_info_t & conn_info= *((conn_info_t*)watcher->data);
  213. fd64_t fd64=watcher->u64;
  214. data_from_remote_or_fec_timeout_or_conn_timer(conn_info,fd64,is_from_remote);
  215. }
  216. static void fifo_cb(struct ev_loop *loop, struct ev_io *watcher, int revents)
  217. {
  218. assert(!(revents&EV_ERROR));
  219. int fifo_fd=watcher->fd;
  220. char buf[buf_len];
  221. int len=read (fifo_fd, buf, sizeof (buf));
  222. if(len<0)
  223. {
  224. mylog(log_warn,"fifo read failed len=%d,errno=%s\n",len,get_sock_error());
  225. return;
  226. }
  227. buf[len]=0;
  228. handle_command(buf);
  229. }
  230. static void delay_manager_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents)
  231. {
  232. assert(!(revents&EV_ERROR));
  233. //uint64_t value;
  234. //read(delay_manager.get_timer_fd(), &value, 8);
  235. //mylog(log_trace,"events[idx].data.u64 == (u64_t)delay_manager.get_timer_fd()\n");
  236. //do nothing
  237. }
  238. static void fec_encode_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents)
  239. {
  240. assert(!(revents&EV_ERROR));
  241. conn_info_t & conn_info= *((conn_info_t*)watcher->data);
  242. data_from_remote_or_fec_timeout_or_conn_timer(conn_info,0,is_fec_timeout);
  243. }
  244. static void conn_timer_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents)
  245. {
  246. assert(!(revents&EV_ERROR));
  247. conn_info_t & conn_info= *((conn_info_t*)watcher->data);
  248. data_from_remote_or_fec_timeout_or_conn_timer(conn_info,0,is_conn_timer);
  249. }
  250. static void prepare_cb(struct ev_loop *loop, struct ev_prepare *watcher, int revents)
  251. {
  252. assert(!(revents&EV_ERROR));
  253. delay_manager.check();
  254. }
  255. static void global_timer_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents)
  256. {
  257. assert(!(revents&EV_ERROR));
  258. //uint64_t value;
  259. //read(timer.get_timer_fd(), &value, 8);
  260. conn_manager.clear_inactive();
  261. mylog(log_trace,"events[idx].data.u64==(u64_t)timer.get_timer_fd()\n");
  262. }
  263. int tunnel_server_event_loop()
  264. {
  265. int i, j, k;int ret;
  266. int yes = 1;
  267. //int epoll_fd;
  268. //int remote_fd;
  269. int local_listen_fd;
  270. new_listen_socket2(local_listen_fd,local_addr);
  271. //epoll_fd = epoll_create1(0);
  272. //assert(epoll_fd>0);
  273. //const int max_events = 4096;
  274. //struct epoll_event ev, events[max_events];
  275. //if (epoll_fd < 0) {
  276. // mylog(log_fatal,"epoll return %d\n", epoll_fd);
  277. // myexit(-1);
  278. //}
  279. struct ev_loop * loop= ev_default_loop(0);
  280. assert(loop != NULL);
  281. //ev.events = EPOLLIN;
  282. //ev.data.u64 = local_listen_fd;
  283. //ret = epoll_ctl(epoll_fd, EPOLL_CTL_ADD, local_listen_fd, &ev);
  284. //if (ret!=0) {
  285. // mylog(log_fatal,"add udp_listen_fd error\n");
  286. // myexit(-1);
  287. //}
  288. struct ev_io local_listen_watcher;
  289. ev_io_init(&local_listen_watcher, local_listen_cb, local_listen_fd, EV_READ);
  290. ev_io_start(loop, &local_listen_watcher);
  291. //ev.events = EPOLLIN;
  292. //ev.data.u64 = delay_manager.get_timer_fd();
  293. //ret = epoll_ctl(epoll_fd, EPOLL_CTL_ADD, delay_manager.get_timer_fd(), &ev);
  294. //if (ret!= 0) {
  295. // mylog(log_fatal,"add delay_manager.get_timer_fd() error\n");
  296. // myexit(-1);
  297. //}
  298. delay_manager.set_loop_and_cb(loop,delay_manager_cb);
  299. //mylog(log_debug," delay_manager.get_timer_fd() =%d\n", delay_manager.get_timer_fd());
  300. mylog(log_info,"now listening at %s\n",local_addr.get_str());
  301. //my_timer_t timer;
  302. //timer.add_fd_to_epoll(epoll_fd);
  303. //timer.set_timer_repeat_us(timer_interval*1000);
  304. ev_timer global_timer;
  305. ev_init(&global_timer,global_timer_cb);
  306. ev_timer_set(&global_timer, 0, timer_interval/1000.0 );
  307. ev_timer_start(loop,&global_timer);
  308. //mylog(log_debug," timer.get_timer_fd() =%d\n",timer.get_timer_fd());
  309. struct ev_io fifo_watcher;
  310. int fifo_fd=-1;
  311. if(fifo_file[0]!=0)
  312. {
  313. fifo_fd=create_fifo(fifo_file);
  314. //ev.events = EPOLLIN;
  315. //ev.data.u64 = fifo_fd;
  316. //ret = epoll_ctl(epoll_fd, EPOLL_CTL_ADD, fifo_fd, &ev);
  317. //if (ret!= 0) {
  318. //mylog(log_fatal,"add fifo_fd to epoll error %s\n",strerror(errno));
  319. //myexit(-1);
  320. //}
  321. ev_io_init(&fifo_watcher, fifo_cb, fifo_fd, EV_READ);
  322. ev_io_start(loop, &fifo_watcher);
  323. mylog(log_info,"fifo_file=%s\n",fifo_file);
  324. }
  325. ev_prepare prepare_watcher;
  326. ev_init(&prepare_watcher,prepare_cb);
  327. ev_prepare_start(loop,&prepare_watcher);
  328. ev_run(loop, 0);
  329. mylog(log_warn,"ev_run returned\n");
  330. myexit(0);
  331. /*
  332. while(1)////////////////////////
  333. {
  334. if(about_to_exit) myexit(0);
  335. int nfds = epoll_wait(epoll_fd, events, max_events, 180 * 1000);
  336. if (nfds < 0) { //allow zero
  337. if(errno==EINTR )
  338. {
  339. mylog(log_info,"epoll interrupted by signal,continue\n");
  340. }
  341. else
  342. {
  343. mylog(log_fatal,"epoll_wait return %d,%s\n", nfds,strerror(errno));
  344. myexit(-1);
  345. }
  346. }
  347. int idx;
  348. for (idx = 0; idx < nfds; ++idx)
  349. {
  350. if(events[idx].data.u64==(u64_t)timer.get_timer_fd())
  351. {
  352. }
  353. else if (events[idx].data.u64 == (u64_t)fifo_fd)
  354. {
  355. }
  356. else if (events[idx].data.u64 == (u64_t)local_listen_fd)
  357. {
  358. }
  359. else if (events[idx].data.u64 == (u64_t)delay_manager.get_timer_fd()) {
  360. }
  361. else if (events[idx].data.u64 >u32_t(-1))
  362. {
  363. }
  364. else
  365. {
  366. mylog(log_fatal,"unknown fd,this should never happen\n");
  367. myexit(-1);
  368. }
  369. }
  370. }*/
  371. return 0;
  372. }