dccp.h 11 KB

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  1. #ifndef _LINUX_DCCP_H
  2. #define _LINUX_DCCP_H
  3. #include <linux/in.h>
  4. #include <linux/interrupt.h>
  5. #include <linux/ktime.h>
  6. #include <linux/list.h>
  7. #include <linux/uio.h>
  8. #include <linux/workqueue.h>
  9. #include <net/inet_connection_sock.h>
  10. #include <net/inet_sock.h>
  11. #include <net/inet_timewait_sock.h>
  12. #include <net/tcp_states.h>
  13. #include <uapi/linux/dccp.h>
  14. enum dccp_state {
  15. DCCP_OPEN = TCP_ESTABLISHED,
  16. DCCP_REQUESTING = TCP_SYN_SENT,
  17. DCCP_LISTEN = TCP_LISTEN,
  18. DCCP_RESPOND = TCP_SYN_RECV,
  19. /*
  20. * States involved in closing a DCCP connection:
  21. * 1) ACTIVE_CLOSEREQ is entered by a server sending a CloseReq.
  22. *
  23. * 2) CLOSING can have three different meanings (RFC 4340, 8.3):
  24. * a. Client has performed active-close, has sent a Close to the server
  25. * from state OPEN or PARTOPEN, and is waiting for the final Reset
  26. * (in this case, SOCK_DONE == 1).
  27. * b. Client is asked to perform passive-close, by receiving a CloseReq
  28. * in (PART)OPEN state. It sends a Close and waits for final Reset
  29. * (in this case, SOCK_DONE == 0).
  30. * c. Server performs an active-close as in (a), keeps TIMEWAIT state.
  31. *
  32. * 3) The following intermediate states are employed to give passively
  33. * closing nodes a chance to process their unread data:
  34. * - PASSIVE_CLOSE (from OPEN => CLOSED) and
  35. * - PASSIVE_CLOSEREQ (from (PART)OPEN to CLOSING; case (b) above).
  36. */
  37. DCCP_ACTIVE_CLOSEREQ = TCP_FIN_WAIT1,
  38. DCCP_PASSIVE_CLOSE = TCP_CLOSE_WAIT, /* any node receiving a Close */
  39. DCCP_CLOSING = TCP_CLOSING,
  40. DCCP_TIME_WAIT = TCP_TIME_WAIT,
  41. DCCP_CLOSED = TCP_CLOSE,
  42. DCCP_PARTOPEN = TCP_MAX_STATES,
  43. DCCP_PASSIVE_CLOSEREQ, /* clients receiving CloseReq */
  44. DCCP_MAX_STATES
  45. };
  46. enum {
  47. DCCPF_OPEN = TCPF_ESTABLISHED,
  48. DCCPF_REQUESTING = TCPF_SYN_SENT,
  49. DCCPF_LISTEN = TCPF_LISTEN,
  50. DCCPF_RESPOND = TCPF_SYN_RECV,
  51. DCCPF_ACTIVE_CLOSEREQ = TCPF_FIN_WAIT1,
  52. DCCPF_CLOSING = TCPF_CLOSING,
  53. DCCPF_TIME_WAIT = TCPF_TIME_WAIT,
  54. DCCPF_CLOSED = TCPF_CLOSE,
  55. DCCPF_PARTOPEN = (1 << DCCP_PARTOPEN),
  56. };
  57. static inline struct dccp_hdr *dccp_hdr(const struct sk_buff *skb)
  58. {
  59. return (struct dccp_hdr *)skb_transport_header(skb);
  60. }
  61. static inline struct dccp_hdr *dccp_zeroed_hdr(struct sk_buff *skb, int headlen)
  62. {
  63. skb_push(skb, headlen);
  64. skb_reset_transport_header(skb);
  65. return memset(skb_transport_header(skb), 0, headlen);
  66. }
  67. static inline struct dccp_hdr_ext *dccp_hdrx(const struct dccp_hdr *dh)
  68. {
  69. return (struct dccp_hdr_ext *)((unsigned char *)dh + sizeof(*dh));
  70. }
  71. static inline unsigned int __dccp_basic_hdr_len(const struct dccp_hdr *dh)
  72. {
  73. return sizeof(*dh) + (dh->dccph_x ? sizeof(struct dccp_hdr_ext) : 0);
  74. }
  75. static inline unsigned int dccp_basic_hdr_len(const struct sk_buff *skb)
  76. {
  77. const struct dccp_hdr *dh = dccp_hdr(skb);
  78. return __dccp_basic_hdr_len(dh);
  79. }
  80. static inline __u64 dccp_hdr_seq(const struct dccp_hdr *dh)
  81. {
  82. __u64 seq_nr = ntohs(dh->dccph_seq);
  83. if (dh->dccph_x != 0)
  84. seq_nr = (seq_nr << 32) + ntohl(dccp_hdrx(dh)->dccph_seq_low);
  85. else
  86. seq_nr += (u32)dh->dccph_seq2 << 16;
  87. return seq_nr;
  88. }
  89. static inline struct dccp_hdr_request *dccp_hdr_request(struct sk_buff *skb)
  90. {
  91. return (struct dccp_hdr_request *)(skb_transport_header(skb) +
  92. dccp_basic_hdr_len(skb));
  93. }
  94. static inline struct dccp_hdr_ack_bits *dccp_hdr_ack_bits(const struct sk_buff *skb)
  95. {
  96. return (struct dccp_hdr_ack_bits *)(skb_transport_header(skb) +
  97. dccp_basic_hdr_len(skb));
  98. }
  99. static inline u64 dccp_hdr_ack_seq(const struct sk_buff *skb)
  100. {
  101. const struct dccp_hdr_ack_bits *dhack = dccp_hdr_ack_bits(skb);
  102. return ((u64)ntohs(dhack->dccph_ack_nr_high) << 32) + ntohl(dhack->dccph_ack_nr_low);
  103. }
  104. static inline struct dccp_hdr_response *dccp_hdr_response(struct sk_buff *skb)
  105. {
  106. return (struct dccp_hdr_response *)(skb_transport_header(skb) +
  107. dccp_basic_hdr_len(skb));
  108. }
  109. static inline struct dccp_hdr_reset *dccp_hdr_reset(struct sk_buff *skb)
  110. {
  111. return (struct dccp_hdr_reset *)(skb_transport_header(skb) +
  112. dccp_basic_hdr_len(skb));
  113. }
  114. static inline unsigned int __dccp_hdr_len(const struct dccp_hdr *dh)
  115. {
  116. return __dccp_basic_hdr_len(dh) +
  117. dccp_packet_hdr_len(dh->dccph_type);
  118. }
  119. static inline unsigned int dccp_hdr_len(const struct sk_buff *skb)
  120. {
  121. return __dccp_hdr_len(dccp_hdr(skb));
  122. }
  123. /**
  124. * struct dccp_request_sock - represent DCCP-specific connection request
  125. * @dreq_inet_rsk: structure inherited from
  126. * @dreq_iss: initial sequence number, sent on the first Response (RFC 4340, 7.1)
  127. * @dreq_gss: greatest sequence number sent (for retransmitted Responses)
  128. * @dreq_isr: initial sequence number received in the first Request
  129. * @dreq_gsr: greatest sequence number received (for retransmitted Request(s))
  130. * @dreq_service: service code present on the Request (there is just one)
  131. * @dreq_featneg: feature negotiation options for this connection
  132. * The following two fields are analogous to the ones in dccp_sock:
  133. * @dreq_timestamp_echo: last received timestamp to echo (13.1)
  134. * @dreq_timestamp_echo: the time of receiving the last @dreq_timestamp_echo
  135. */
  136. struct dccp_request_sock {
  137. struct inet_request_sock dreq_inet_rsk;
  138. __u64 dreq_iss;
  139. __u64 dreq_gss;
  140. __u64 dreq_isr;
  141. __u64 dreq_gsr;
  142. __be32 dreq_service;
  143. struct list_head dreq_featneg;
  144. __u32 dreq_timestamp_echo;
  145. __u32 dreq_timestamp_time;
  146. };
  147. static inline struct dccp_request_sock *dccp_rsk(const struct request_sock *req)
  148. {
  149. return (struct dccp_request_sock *)req;
  150. }
  151. extern struct inet_timewait_death_row dccp_death_row;
  152. extern int dccp_parse_options(struct sock *sk, struct dccp_request_sock *dreq,
  153. struct sk_buff *skb);
  154. struct dccp_options_received {
  155. u64 dccpor_ndp:48;
  156. u32 dccpor_timestamp;
  157. u32 dccpor_timestamp_echo;
  158. u32 dccpor_elapsed_time;
  159. };
  160. struct ccid;
  161. enum dccp_role {
  162. DCCP_ROLE_UNDEFINED,
  163. DCCP_ROLE_LISTEN,
  164. DCCP_ROLE_CLIENT,
  165. DCCP_ROLE_SERVER,
  166. };
  167. struct dccp_service_list {
  168. __u32 dccpsl_nr;
  169. __be32 dccpsl_list[0];
  170. };
  171. #define DCCP_SERVICE_INVALID_VALUE htonl((__u32)-1)
  172. #define DCCP_SERVICE_CODE_IS_ABSENT 0
  173. static inline int dccp_list_has_service(const struct dccp_service_list *sl,
  174. const __be32 service)
  175. {
  176. if (likely(sl != NULL)) {
  177. u32 i = sl->dccpsl_nr;
  178. while (i--)
  179. if (sl->dccpsl_list[i] == service)
  180. return 1;
  181. }
  182. return 0;
  183. }
  184. struct dccp_ackvec;
  185. /**
  186. * struct dccp_sock - DCCP socket state
  187. *
  188. * @dccps_swl - sequence number window low
  189. * @dccps_swh - sequence number window high
  190. * @dccps_awl - acknowledgement number window low
  191. * @dccps_awh - acknowledgement number window high
  192. * @dccps_iss - initial sequence number sent
  193. * @dccps_isr - initial sequence number received
  194. * @dccps_osr - first OPEN sequence number received
  195. * @dccps_gss - greatest sequence number sent
  196. * @dccps_gsr - greatest valid sequence number received
  197. * @dccps_gar - greatest valid ack number received on a non-Sync; initialized to %dccps_iss
  198. * @dccps_service - first (passive sock) or unique (active sock) service code
  199. * @dccps_service_list - second .. last service code on passive socket
  200. * @dccps_timestamp_echo - latest timestamp received on a TIMESTAMP option
  201. * @dccps_timestamp_time - time of receiving latest @dccps_timestamp_echo
  202. * @dccps_l_ack_ratio - feature-local Ack Ratio
  203. * @dccps_r_ack_ratio - feature-remote Ack Ratio
  204. * @dccps_l_seq_win - local Sequence Window (influences ack number validity)
  205. * @dccps_r_seq_win - remote Sequence Window (influences seq number validity)
  206. * @dccps_pcslen - sender partial checksum coverage (via sockopt)
  207. * @dccps_pcrlen - receiver partial checksum coverage (via sockopt)
  208. * @dccps_send_ndp_count - local Send NDP Count feature (7.7.2)
  209. * @dccps_ndp_count - number of Non Data Packets since last data packet
  210. * @dccps_mss_cache - current value of MSS (path MTU minus header sizes)
  211. * @dccps_rate_last - timestamp for rate-limiting DCCP-Sync (RFC 4340, 7.5.4)
  212. * @dccps_featneg - tracks feature-negotiation state (mostly during handshake)
  213. * @dccps_hc_rx_ackvec - rx half connection ack vector
  214. * @dccps_hc_rx_ccid - CCID used for the receiver (or receiving half-connection)
  215. * @dccps_hc_tx_ccid - CCID used for the sender (or sending half-connection)
  216. * @dccps_options_received - parsed set of retrieved options
  217. * @dccps_qpolicy - TX dequeueing policy, one of %dccp_packet_dequeueing_policy
  218. * @dccps_tx_qlen - maximum length of the TX queue
  219. * @dccps_role - role of this sock, one of %dccp_role
  220. * @dccps_hc_rx_insert_options - receiver wants to add options when acking
  221. * @dccps_hc_tx_insert_options - sender wants to add options when sending
  222. * @dccps_server_timewait - server holds timewait state on close (RFC 4340, 8.3)
  223. * @dccps_sync_scheduled - flag which signals "send out-of-band message soon"
  224. * @dccps_xmitlet - tasklet scheduled by the TX CCID to dequeue data packets
  225. * @dccps_xmit_timer - used by the TX CCID to delay sending (rate-based pacing)
  226. * @dccps_syn_rtt - RTT sample from Request/Response exchange (in usecs)
  227. */
  228. struct dccp_sock {
  229. /* inet_connection_sock has to be the first member of dccp_sock */
  230. struct inet_connection_sock dccps_inet_connection;
  231. #define dccps_syn_rtt dccps_inet_connection.icsk_ack.lrcvtime
  232. __u64 dccps_swl;
  233. __u64 dccps_swh;
  234. __u64 dccps_awl;
  235. __u64 dccps_awh;
  236. __u64 dccps_iss;
  237. __u64 dccps_isr;
  238. __u64 dccps_osr;
  239. __u64 dccps_gss;
  240. __u64 dccps_gsr;
  241. __u64 dccps_gar;
  242. __be32 dccps_service;
  243. __u32 dccps_mss_cache;
  244. struct dccp_service_list *dccps_service_list;
  245. __u32 dccps_timestamp_echo;
  246. __u32 dccps_timestamp_time;
  247. __u16 dccps_l_ack_ratio;
  248. __u16 dccps_r_ack_ratio;
  249. __u64 dccps_l_seq_win:48;
  250. __u64 dccps_r_seq_win:48;
  251. __u8 dccps_pcslen:4;
  252. __u8 dccps_pcrlen:4;
  253. __u8 dccps_send_ndp_count:1;
  254. __u64 dccps_ndp_count:48;
  255. unsigned long dccps_rate_last;
  256. struct list_head dccps_featneg;
  257. struct dccp_ackvec *dccps_hc_rx_ackvec;
  258. struct ccid *dccps_hc_rx_ccid;
  259. struct ccid *dccps_hc_tx_ccid;
  260. struct dccp_options_received dccps_options_received;
  261. __u8 dccps_qpolicy;
  262. __u32 dccps_tx_qlen;
  263. enum dccp_role dccps_role:2;
  264. __u8 dccps_hc_rx_insert_options:1;
  265. __u8 dccps_hc_tx_insert_options:1;
  266. __u8 dccps_server_timewait:1;
  267. __u8 dccps_sync_scheduled:1;
  268. struct tasklet_struct dccps_xmitlet;
  269. struct timer_list dccps_xmit_timer;
  270. };
  271. static inline struct dccp_sock *dccp_sk(const struct sock *sk)
  272. {
  273. return (struct dccp_sock *)sk;
  274. }
  275. static inline const char *dccp_role(const struct sock *sk)
  276. {
  277. switch (dccp_sk(sk)->dccps_role) {
  278. case DCCP_ROLE_UNDEFINED: return "undefined";
  279. case DCCP_ROLE_LISTEN: return "listen";
  280. case DCCP_ROLE_SERVER: return "server";
  281. case DCCP_ROLE_CLIENT: return "client";
  282. }
  283. return NULL;
  284. }
  285. extern void dccp_syn_ack_timeout(struct sock *sk, struct request_sock *req);
  286. #endif /* _LINUX_DCCP_H */