hevent.h 6.9 KB

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  1. #ifndef HV_EVENT_H_
  2. #define HV_EVENT_H_
  3. #include "hloop.h"
  4. #include "iowatcher.h"
  5. #include "rudp.h"
  6. #include "hbuf.h"
  7. #include "hmutex.h"
  8. #include "array.h"
  9. #include "list.h"
  10. #include "heap.h"
  11. #include "queue.h"
  12. #define HLOOP_READ_BUFSIZE 8192 // 8K
  13. #define READ_BUFSIZE_HIGH_WATER 65536 // 64K
  14. #define WRITE_QUEUE_HIGH_WATER (1U << 23) // 8M
  15. // hio_read_flags
  16. #define HIO_READ_ONCE 0x1
  17. #define HIO_READ_UNTIL_LENGTH 0x2
  18. #define HIO_READ_UNTIL_DELIM 0x4
  19. ARRAY_DECL(hio_t*, io_array);
  20. QUEUE_DECL(hevent_t, event_queue);
  21. struct hloop_s {
  22. uint32_t flags;
  23. hloop_status_e status;
  24. uint64_t start_ms; // ms
  25. uint64_t start_hrtime; // us
  26. uint64_t end_hrtime;
  27. uint64_t cur_hrtime;
  28. uint64_t loop_cnt;
  29. long pid;
  30. long tid;
  31. void* userdata;
  32. //private:
  33. // events
  34. uint32_t intern_nevents;
  35. uint32_t nactives;
  36. uint32_t npendings;
  37. // pendings: with priority as array.index
  38. hevent_t* pendings[HEVENT_PRIORITY_SIZE];
  39. // idles
  40. struct list_head idles;
  41. uint32_t nidles;
  42. // timers
  43. struct heap timers;
  44. uint32_t ntimers;
  45. // ios: with fd as array.index
  46. struct io_array ios;
  47. uint32_t nios;
  48. // one loop per thread, so one readbuf per loop is OK.
  49. hbuf_t readbuf;
  50. void* iowatcher;
  51. // custom_events
  52. int sockpair[2];
  53. event_queue custom_events;
  54. hmutex_t custom_events_mutex;
  55. };
  56. uint64_t hloop_next_event_id();
  57. struct hidle_s {
  58. HEVENT_FIELDS
  59. uint32_t repeat;
  60. //private:
  61. struct list_node node;
  62. };
  63. #define HTIMER_FIELDS \
  64. HEVENT_FIELDS \
  65. uint32_t repeat; \
  66. uint64_t next_timeout; \
  67. struct heap_node node;
  68. struct htimer_s {
  69. HTIMER_FIELDS
  70. };
  71. struct htimeout_s {
  72. HTIMER_FIELDS
  73. uint32_t timeout; \
  74. };
  75. struct hperiod_s {
  76. HTIMER_FIELDS
  77. int8_t minute;
  78. int8_t hour;
  79. int8_t day;
  80. int8_t week;
  81. int8_t month;
  82. };
  83. QUEUE_DECL(offset_buf_t, write_queue);
  84. // sizeof(struct hio_s)=360 on linux-x64
  85. struct hio_s {
  86. HEVENT_FIELDS
  87. // flags
  88. unsigned ready :1;
  89. unsigned closed :1;
  90. unsigned accept :1;
  91. unsigned connect :1;
  92. unsigned connectex :1; // for ConnectEx/DisconnectEx
  93. unsigned recv :1;
  94. unsigned send :1;
  95. unsigned recvfrom :1;
  96. unsigned sendto :1;
  97. unsigned close :1;
  98. unsigned alloced_readbuf :1; // for hio_alloc_readbuf
  99. // public:
  100. hio_type_e io_type;
  101. uint32_t id; // fd cannot be used as unique identifier, so we provide an id
  102. int fd;
  103. int error;
  104. int events;
  105. int revents;
  106. struct sockaddr* localaddr;
  107. struct sockaddr* peeraddr;
  108. // read
  109. fifo_buf_t readbuf;
  110. unsigned int read_flags;
  111. // for hio_read_until
  112. union {
  113. unsigned int read_until_length;
  114. unsigned char read_until_delim;
  115. };
  116. uint32_t small_readbytes_cnt; // for readbuf autosize
  117. // write
  118. struct write_queue write_queue;
  119. hrecursive_mutex_t write_mutex; // lock write and write_queue
  120. uint32_t write_queue_bytes;
  121. // callbacks
  122. hread_cb read_cb;
  123. hwrite_cb write_cb;
  124. hclose_cb close_cb;
  125. haccept_cb accept_cb;
  126. hconnect_cb connect_cb;
  127. // timers
  128. int connect_timeout; // ms
  129. int close_timeout; // ms
  130. int keepalive_timeout; // ms
  131. int heartbeat_interval; // ms
  132. hio_send_heartbeat_fn heartbeat_fn;
  133. htimer_t* connect_timer;
  134. htimer_t* close_timer;
  135. htimer_t* keepalive_timer;
  136. htimer_t* heartbeat_timer;
  137. // upstream
  138. struct hio_s* upstream_io; // for hio_setup_upstream
  139. // unpack
  140. unpack_setting_t* unpack_setting; // for hio_set_unpack
  141. // ssl
  142. void* ssl; // for hio_enable_ssl / hio_set_ssl
  143. // context
  144. void* ctx; // for hio_context / hio_set_context
  145. // private:
  146. #if defined(EVENT_POLL) || defined(EVENT_KQUEUE)
  147. int event_index[2]; // for poll,kqueue
  148. #endif
  149. #ifdef EVENT_IOCP
  150. void* hovlp; // for iocp/overlapio
  151. #endif
  152. #if WITH_RUDP
  153. rudp_t rudp;
  154. #if WITH_KCP
  155. kcp_setting_t* kcp_setting;
  156. #endif
  157. #endif
  158. };
  159. /*
  160. * hio lifeline:
  161. *
  162. * fd =>
  163. * hio_get => HV_ALLOC_SIZEOF(io) => hio_init =>
  164. *
  165. * hio_ready => hio_add => hio_read_cb/hio_write_cb =>
  166. * hio_close => hio_done => hio_close_cb =>
  167. *
  168. * hloop_stop => hloop_free => hio_free => HV_FREE(io)
  169. */
  170. void hio_init(hio_t* io);
  171. void hio_ready(hio_t* io);
  172. void hio_done(hio_t* io);
  173. void hio_free(hio_t* io);
  174. uint32_t hio_next_id();
  175. void hio_accept_cb(hio_t* io);
  176. void hio_connect_cb(hio_t* io);
  177. void hio_handle_read(hio_t* io, void* buf, int readbytes);
  178. void hio_read_cb(hio_t* io, void* buf, int len);
  179. void hio_write_cb(hio_t* io, const void* buf, int len);
  180. void hio_close_cb(hio_t* io);
  181. void hio_del_connect_timer(hio_t* io);
  182. void hio_del_close_timer(hio_t* io);
  183. void hio_del_keepalive_timer(hio_t* io);
  184. void hio_del_heartbeat_timer(hio_t* io);
  185. static inline bool hio_is_loop_readbuf(hio_t* io) {
  186. return io->readbuf.base == io->loop->readbuf.base;
  187. }
  188. static inline bool hio_is_alloced_readbuf(hio_t* io) {
  189. return io->alloced_readbuf;
  190. }
  191. void hio_alloc_readbuf(hio_t* io, int len);
  192. void hio_free_readbuf(hio_t* io);
  193. #define EVENT_ENTRY(p) container_of(p, hevent_t, pending_node)
  194. #define IDLE_ENTRY(p) container_of(p, hidle_t, node)
  195. #define TIMER_ENTRY(p) container_of(p, htimer_t, node)
  196. #define EVENT_ACTIVE(ev) \
  197. if (!ev->active) {\
  198. ev->active = 1;\
  199. ev->loop->nactives++;\
  200. }\
  201. #define EVENT_INACTIVE(ev) \
  202. if (ev->active) {\
  203. ev->active = 0;\
  204. ev->loop->nactives--;\
  205. }\
  206. #define EVENT_PENDING(ev) \
  207. do {\
  208. if (!ev->pending) {\
  209. ev->pending = 1;\
  210. ev->loop->npendings++;\
  211. hevent_t** phead = &ev->loop->pendings[HEVENT_PRIORITY_INDEX(ev->priority)];\
  212. ev->pending_next = *phead;\
  213. *phead = (hevent_t*)ev;\
  214. }\
  215. } while(0)
  216. #define EVENT_ADD(loop, ev, cb) \
  217. do {\
  218. ev->loop = loop;\
  219. ev->event_id = hloop_next_event_id();\
  220. ev->cb = (hevent_cb)cb;\
  221. EVENT_ACTIVE(ev);\
  222. } while(0)
  223. #define EVENT_DEL(ev) \
  224. do {\
  225. EVENT_INACTIVE(ev);\
  226. if (!ev->pending) {\
  227. HV_FREE(ev);\
  228. }\
  229. } while(0)
  230. #define EVENT_RESET(ev) \
  231. do {\
  232. ev->destroy = 0;\
  233. EVENT_ACTIVE(ev);\
  234. ev->pending = 0;\
  235. } while(0)
  236. #endif // HV_EVENT_H_