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1#ifndef _LINUX_DCCP_H 2#define _LINUX_DCCP_H 3 4#include <linux/types.h> 5#include <asm/byteorder.h> 6 7/** 8 * struct dccp_hdr - generic part of DCCP packet header 9 * 10 * @dccph_sport - Relevant port on the endpoint that sent this packet 11 * @dccph_dport - Relevant port on the other endpoint 12 * @dccph_doff - Data Offset from the start of the DCCP header, in 32-bit words 13 * @dccph_ccval - Used by the HC-Sender CCID 14 * @dccph_cscov - Parts of the packet that are covered by the Checksum field 15 * @dccph_checksum - Internet checksum, depends on dccph_cscov 16 * @dccph_x - 0 = 24 bit sequence number, 1 = 48 17 * @dccph_type - packet type, see DCCP_PKT_ prefixed macros 18 * @dccph_seq - sequence number high or low order 24 bits, depends on dccph_x 19 */ 20struct dccp_hdr { 21 __be16 dccph_sport, 22 dccph_dport; 23 __u8 dccph_doff; 24#if defined(__LITTLE_ENDIAN_BITFIELD) 25 __u8 dccph_cscov:4, 26 dccph_ccval:4; 27#elif defined(__BIG_ENDIAN_BITFIELD) 28 __u8 dccph_ccval:4, 29 dccph_cscov:4; 30#else 31#error "Adjust your <asm/byteorder.h> defines" 32#endif 33 __sum16 dccph_checksum; 34#if defined(__LITTLE_ENDIAN_BITFIELD) 35 __u8 dccph_x:1, 36 dccph_type:4, 37 dccph_reserved:3; 38#elif defined(__BIG_ENDIAN_BITFIELD) 39 __u8 dccph_reserved:3, 40 dccph_type:4, 41 dccph_x:1; 42#else 43#error "Adjust your <asm/byteorder.h> defines" 44#endif 45 __u8 dccph_seq2; 46 __be16 dccph_seq; 47}; 48 49/** 50 * struct dccp_hdr_ext - the low bits of a 48 bit seq packet 51 * 52 * @dccph_seq_low - low 24 bits of a 48 bit seq packet 53 */ 54struct dccp_hdr_ext { 55 __be32 dccph_seq_low; 56}; 57 58/** 59 * struct dccp_hdr_request - Connection initiation request header 60 * 61 * @dccph_req_service - Service to which the client app wants to connect 62 */ 63struct dccp_hdr_request { 64 __be32 dccph_req_service; 65}; 66/** 67 * struct dccp_hdr_ack_bits - acknowledgment bits common to most packets 68 * 69 * @dccph_resp_ack_nr_high - 48 bit ack number high order bits, contains GSR 70 * @dccph_resp_ack_nr_low - 48 bit ack number low order bits, contains GSR 71 */ 72struct dccp_hdr_ack_bits { 73 __be16 dccph_reserved1; 74 __be16 dccph_ack_nr_high; 75 __be32 dccph_ack_nr_low; 76}; 77/** 78 * struct dccp_hdr_response - Connection initiation response header 79 * 80 * @dccph_resp_ack - 48 bit Acknowledgment Number Subheader (5.3) 81 * @dccph_resp_service - Echoes the Service Code on a received DCCP-Request 82 */ 83struct dccp_hdr_response { 84 struct dccp_hdr_ack_bits dccph_resp_ack; 85 __be32 dccph_resp_service; 86}; 87 88/** 89 * struct dccp_hdr_reset - Unconditionally shut down a connection 90 * 91 * @dccph_reset_ack - 48 bit Acknowledgment Number Subheader (5.6) 92 * @dccph_reset_code - one of %dccp_reset_codes 93 * @dccph_reset_data - the Data 1 ... Data 3 fields from 5.6 94 */ 95struct dccp_hdr_reset { 96 struct dccp_hdr_ack_bits dccph_reset_ack; 97 __u8 dccph_reset_code, 98 dccph_reset_data[3]; 99}; 100 101enum dccp_pkt_type { 102 DCCP_PKT_REQUEST = 0, 103 DCCP_PKT_RESPONSE, 104 DCCP_PKT_DATA, 105 DCCP_PKT_ACK, 106 DCCP_PKT_DATAACK, 107 DCCP_PKT_CLOSEREQ, 108 DCCP_PKT_CLOSE, 109 DCCP_PKT_RESET, 110 DCCP_PKT_SYNC, 111 DCCP_PKT_SYNCACK, 112 DCCP_PKT_INVALID, 113}; 114 115#define DCCP_NR_PKT_TYPES DCCP_PKT_INVALID 116 117static inline unsigned int dccp_packet_hdr_len(const __u8 type) 118{ 119 if (type == DCCP_PKT_DATA) 120 return 0; 121 if (type == DCCP_PKT_DATAACK || 122 type == DCCP_PKT_ACK || 123 type == DCCP_PKT_SYNC || 124 type == DCCP_PKT_SYNCACK || 125 type == DCCP_PKT_CLOSE || 126 type == DCCP_PKT_CLOSEREQ) 127 return sizeof(struct dccp_hdr_ack_bits); 128 if (type == DCCP_PKT_REQUEST) 129 return sizeof(struct dccp_hdr_request); 130 if (type == DCCP_PKT_RESPONSE) 131 return sizeof(struct dccp_hdr_response); 132 return sizeof(struct dccp_hdr_reset); 133} 134enum dccp_reset_codes { 135 DCCP_RESET_CODE_UNSPECIFIED = 0, 136 DCCP_RESET_CODE_CLOSED, 137 DCCP_RESET_CODE_ABORTED, 138 DCCP_RESET_CODE_NO_CONNECTION, 139 DCCP_RESET_CODE_PACKET_ERROR, 140 DCCP_RESET_CODE_OPTION_ERROR, 141 DCCP_RESET_CODE_MANDATORY_ERROR, 142 DCCP_RESET_CODE_CONNECTION_REFUSED, 143 DCCP_RESET_CODE_BAD_SERVICE_CODE, 144 DCCP_RESET_CODE_TOO_BUSY, 145 DCCP_RESET_CODE_BAD_INIT_COOKIE, 146 DCCP_RESET_CODE_AGGRESSION_PENALTY, 147 148 DCCP_MAX_RESET_CODES /* Leave at the end! */ 149}; 150 151/* DCCP options */ 152enum { 153 DCCPO_PADDING = 0, 154 DCCPO_MANDATORY = 1, 155 DCCPO_MIN_RESERVED = 3, 156 DCCPO_MAX_RESERVED = 31, 157 DCCPO_CHANGE_L = 32, 158 DCCPO_CONFIRM_L = 33, 159 DCCPO_CHANGE_R = 34, 160 DCCPO_CONFIRM_R = 35, 161 DCCPO_NDP_COUNT = 37, 162 DCCPO_ACK_VECTOR_0 = 38, 163 DCCPO_ACK_VECTOR_1 = 39, 164 DCCPO_TIMESTAMP = 41, 165 DCCPO_TIMESTAMP_ECHO = 42, 166 DCCPO_ELAPSED_TIME = 43, 167 DCCPO_MAX = 45, 168 DCCPO_MIN_RX_CCID_SPECIFIC = 128, /* from sender to receiver */ 169 DCCPO_MAX_RX_CCID_SPECIFIC = 191, 170 DCCPO_MIN_TX_CCID_SPECIFIC = 192, /* from receiver to sender */ 171 DCCPO_MAX_TX_CCID_SPECIFIC = 255, 172}; 173/* maximum size of a single TLV-encoded DCCP option (sans type/len bytes) */ 174#define DCCP_SINGLE_OPT_MAXLEN 253 175 176/* DCCP CCIDS */ 177enum { 178 DCCPC_CCID2 = 2, 179 DCCPC_CCID3 = 3, 180}; 181 182/* DCCP features (RFC 4340 section 6.4) */ 183enum dccp_feature_numbers { 184 DCCPF_RESERVED = 0, 185 DCCPF_CCID = 1, 186 DCCPF_SHORT_SEQNOS = 2, 187 DCCPF_SEQUENCE_WINDOW = 3, 188 DCCPF_ECN_INCAPABLE = 4, 189 DCCPF_ACK_RATIO = 5, 190 DCCPF_SEND_ACK_VECTOR = 6, 191 DCCPF_SEND_NDP_COUNT = 7, 192 DCCPF_MIN_CSUM_COVER = 8, 193 DCCPF_DATA_CHECKSUM = 9, 194 /* 10-127 reserved */ 195 DCCPF_MIN_CCID_SPECIFIC = 128, 196 DCCPF_SEND_LEV_RATE = 192, /* RFC 4342, sec. 8.4 */ 197 DCCPF_MAX_CCID_SPECIFIC = 255, 198}; 199 200/* DCCP socket options */ 201#define DCCP_SOCKOPT_PACKET_SIZE 1 /* XXX deprecated, without effect */ 202#define DCCP_SOCKOPT_SERVICE 2 203#define DCCP_SOCKOPT_CHANGE_L 3 204#define DCCP_SOCKOPT_CHANGE_R 4 205#define DCCP_SOCKOPT_GET_CUR_MPS 5 206#define DCCP_SOCKOPT_SERVER_TIMEWAIT 6 207#define DCCP_SOCKOPT_SEND_CSCOV 10 208#define DCCP_SOCKOPT_RECV_CSCOV 11 209#define DCCP_SOCKOPT_AVAILABLE_CCIDS 12 210#define DCCP_SOCKOPT_CCID 13 211#define DCCP_SOCKOPT_TX_CCID 14 212#define DCCP_SOCKOPT_RX_CCID 15 213#define DCCP_SOCKOPT_CCID_RX_INFO 128 214#define DCCP_SOCKOPT_CCID_TX_INFO 192 215 216/* maximum number of services provided on the same listening port */ 217#define DCCP_SERVICE_LIST_MAX_LEN 32 218 219#ifdef __KERNEL__ 220 221#include <linux/in.h> 222#include <linux/ktime.h> 223#include <linux/list.h> 224#include <linux/uio.h> 225#include <linux/workqueue.h> 226 227#include <net/inet_connection_sock.h> 228#include <net/inet_sock.h> 229#include <net/inet_timewait_sock.h> 230#include <net/tcp_states.h> 231 232enum dccp_state { 233 DCCP_OPEN = TCP_ESTABLISHED, 234 DCCP_REQUESTING = TCP_SYN_SENT, 235 DCCP_LISTEN = TCP_LISTEN, 236 DCCP_RESPOND = TCP_SYN_RECV, 237 /* 238 * States involved in closing a DCCP connection: 239 * 1) ACTIVE_CLOSEREQ is entered by a server sending a CloseReq. 240 * 241 * 2) CLOSING can have three different meanings (RFC 4340, 8.3): 242 * a. Client has performed active-close, has sent a Close to the server 243 * from state OPEN or PARTOPEN, and is waiting for the final Reset 244 * (in this case, SOCK_DONE == 1). 245 * b. Client is asked to perform passive-close, by receiving a CloseReq 246 * in (PART)OPEN state. It sends a Close and waits for final Reset 247 * (in this case, SOCK_DONE == 0). 248 * c. Server performs an active-close as in (a), keeps TIMEWAIT state. 249 * 250 * 3) The following intermediate states are employed to give passively 251 * closing nodes a chance to process their unread data: 252 * - PASSIVE_CLOSE (from OPEN => CLOSED) and 253 * - PASSIVE_CLOSEREQ (from (PART)OPEN to CLOSING; case (b) above). 254 */ 255 DCCP_ACTIVE_CLOSEREQ = TCP_FIN_WAIT1, 256 DCCP_PASSIVE_CLOSE = TCP_CLOSE_WAIT, /* any node receiving a Close */ 257 DCCP_CLOSING = TCP_CLOSING, 258 DCCP_TIME_WAIT = TCP_TIME_WAIT, 259 DCCP_CLOSED = TCP_CLOSE, 260 DCCP_PARTOPEN = TCP_MAX_STATES, 261 DCCP_PASSIVE_CLOSEREQ, /* clients receiving CloseReq */ 262 DCCP_MAX_STATES 263}; 264 265#define DCCP_STATE_MASK 0x1f 266 267enum { 268 DCCPF_OPEN = TCPF_ESTABLISHED, 269 DCCPF_REQUESTING = TCPF_SYN_SENT, 270 DCCPF_LISTEN = TCPF_LISTEN, 271 DCCPF_RESPOND = TCPF_SYN_RECV, 272 DCCPF_ACTIVE_CLOSEREQ = TCPF_FIN_WAIT1, 273 DCCPF_CLOSING = TCPF_CLOSING, 274 DCCPF_TIME_WAIT = TCPF_TIME_WAIT, 275 DCCPF_CLOSED = TCPF_CLOSE, 276 DCCPF_PARTOPEN = (1 << DCCP_PARTOPEN), 277}; 278 279static inline struct dccp_hdr *dccp_hdr(const struct sk_buff *skb) 280{ 281 return (struct dccp_hdr *)skb_transport_header(skb); 282} 283 284static inline struct dccp_hdr *dccp_zeroed_hdr(struct sk_buff *skb, int headlen) 285{ 286 skb_push(skb, headlen); 287 skb_reset_transport_header(skb); 288 return memset(skb_transport_header(skb), 0, headlen); 289} 290 291static inline struct dccp_hdr_ext *dccp_hdrx(const struct dccp_hdr *dh) 292{ 293 return (struct dccp_hdr_ext *)((unsigned char *)dh + sizeof(*dh)); 294} 295 296static inline unsigned int __dccp_basic_hdr_len(const struct dccp_hdr *dh) 297{ 298 return sizeof(*dh) + (dh->dccph_x ? sizeof(struct dccp_hdr_ext) : 0); 299} 300 301static inline unsigned int dccp_basic_hdr_len(const struct sk_buff *skb) 302{ 303 const struct dccp_hdr *dh = dccp_hdr(skb); 304 return __dccp_basic_hdr_len(dh); 305} 306 307static inline __u64 dccp_hdr_seq(const struct dccp_hdr *dh) 308{ 309 __u64 seq_nr = ntohs(dh->dccph_seq); 310 311 if (dh->dccph_x != 0) 312 seq_nr = (seq_nr << 32) + ntohl(dccp_hdrx(dh)->dccph_seq_low); 313 else 314 seq_nr += (u32)dh->dccph_seq2 << 16; 315 316 return seq_nr; 317} 318 319static inline struct dccp_hdr_request *dccp_hdr_request(struct sk_buff *skb) 320{ 321 return (struct dccp_hdr_request *)(skb_transport_header(skb) + 322 dccp_basic_hdr_len(skb)); 323} 324 325static inline struct dccp_hdr_ack_bits *dccp_hdr_ack_bits(const struct sk_buff *skb) 326{ 327 return (struct dccp_hdr_ack_bits *)(skb_transport_header(skb) + 328 dccp_basic_hdr_len(skb)); 329} 330 331static inline u64 dccp_hdr_ack_seq(const struct sk_buff *skb) 332{ 333 const struct dccp_hdr_ack_bits *dhack = dccp_hdr_ack_bits(skb); 334 return ((u64)ntohs(dhack->dccph_ack_nr_high) << 32) + ntohl(dhack->dccph_ack_nr_low); 335} 336 337static inline struct dccp_hdr_response *dccp_hdr_response(struct sk_buff *skb) 338{ 339 return (struct dccp_hdr_response *)(skb_transport_header(skb) + 340 dccp_basic_hdr_len(skb)); 341} 342 343static inline struct dccp_hdr_reset *dccp_hdr_reset(struct sk_buff *skb) 344{ 345 return (struct dccp_hdr_reset *)(skb_transport_header(skb) + 346 dccp_basic_hdr_len(skb)); 347} 348 349static inline unsigned int __dccp_hdr_len(const struct dccp_hdr *dh) 350{ 351 return __dccp_basic_hdr_len(dh) + 352 dccp_packet_hdr_len(dh->dccph_type); 353} 354 355static inline unsigned int dccp_hdr_len(const struct sk_buff *skb) 356{ 357 return __dccp_hdr_len(dccp_hdr(skb)); 358} 359 360/** 361 * struct dccp_request_sock - represent DCCP-specific connection request 362 * @dreq_inet_rsk: structure inherited from 363 * @dreq_iss: initial sequence number sent on the Response (RFC 4340, 7.1) 364 * @dreq_isr: initial sequence number received on the Request 365 * @dreq_service: service code present on the Request (there is just one) 366 * @dreq_featneg: feature negotiation options for this connection 367 * The following two fields are analogous to the ones in dccp_sock: 368 * @dreq_timestamp_echo: last received timestamp to echo (13.1) 369 * @dreq_timestamp_echo: the time of receiving the last @dreq_timestamp_echo 370 */ 371struct dccp_request_sock { 372 struct inet_request_sock dreq_inet_rsk; 373 __u64 dreq_iss; 374 __u64 dreq_isr; 375 __be32 dreq_service; 376 struct list_head dreq_featneg; 377 __u32 dreq_timestamp_echo; 378 __u32 dreq_timestamp_time; 379}; 380 381static inline struct dccp_request_sock *dccp_rsk(const struct request_sock *req) 382{ 383 return (struct dccp_request_sock *)req; 384} 385 386extern struct inet_timewait_death_row dccp_death_row; 387 388extern int dccp_parse_options(struct sock *sk, struct dccp_request_sock *dreq, 389 struct sk_buff *skb); 390 391struct dccp_options_received { 392 u64 dccpor_ndp:48; 393 u32 dccpor_timestamp; 394 u32 dccpor_timestamp_echo; 395 u32 dccpor_elapsed_time; 396}; 397 398struct ccid; 399 400enum dccp_role { 401 DCCP_ROLE_UNDEFINED, 402 DCCP_ROLE_LISTEN, 403 DCCP_ROLE_CLIENT, 404 DCCP_ROLE_SERVER, 405}; 406 407struct dccp_service_list { 408 __u32 dccpsl_nr; 409 __be32 dccpsl_list[0]; 410}; 411 412#define DCCP_SERVICE_INVALID_VALUE htonl((__u32)-1) 413#define DCCP_SERVICE_CODE_IS_ABSENT 0 414 415static inline int dccp_list_has_service(const struct dccp_service_list *sl, 416 const __be32 service) 417{ 418 if (likely(sl != NULL)) { 419 u32 i = sl->dccpsl_nr; 420 while (i--) 421 if (sl->dccpsl_list[i] == service) 422 return 1; 423 } 424 return 0; 425} 426 427struct dccp_ackvec; 428 429/** 430 * struct dccp_sock - DCCP socket state 431 * 432 * @dccps_swl - sequence number window low 433 * @dccps_swh - sequence number window high 434 * @dccps_awl - acknowledgement number window low 435 * @dccps_awh - acknowledgement number window high 436 * @dccps_iss - initial sequence number sent 437 * @dccps_isr - initial sequence number received 438 * @dccps_osr - first OPEN sequence number received 439 * @dccps_gss - greatest sequence number sent 440 * @dccps_gsr - greatest valid sequence number received 441 * @dccps_gar - greatest valid ack number received on a non-Sync; initialized to %dccps_iss 442 * @dccps_service - first (passive sock) or unique (active sock) service code 443 * @dccps_service_list - second .. last service code on passive socket 444 * @dccps_timestamp_echo - latest timestamp received on a TIMESTAMP option 445 * @dccps_timestamp_time - time of receiving latest @dccps_timestamp_echo 446 * @dccps_l_ack_ratio - feature-local Ack Ratio 447 * @dccps_r_ack_ratio - feature-remote Ack Ratio 448 * @dccps_l_seq_win - local Sequence Window (influences ack number validity) 449 * @dccps_r_seq_win - remote Sequence Window (influences seq number validity) 450 * @dccps_pcslen - sender partial checksum coverage (via sockopt) 451 * @dccps_pcrlen - receiver partial checksum coverage (via sockopt) 452 * @dccps_send_ndp_count - local Send NDP Count feature (7.7.2) 453 * @dccps_ndp_count - number of Non Data Packets since last data packet 454 * @dccps_mss_cache - current value of MSS (path MTU minus header sizes) 455 * @dccps_rate_last - timestamp for rate-limiting DCCP-Sync (RFC 4340, 7.5.4) 456 * @dccps_featneg - tracks feature-negotiation state (mostly during handshake) 457 * @dccps_hc_rx_ackvec - rx half connection ack vector 458 * @dccps_hc_rx_ccid - CCID used for the receiver (or receiving half-connection) 459 * @dccps_hc_tx_ccid - CCID used for the sender (or sending half-connection) 460 * @dccps_options_received - parsed set of retrieved options 461 * @dccps_role - role of this sock, one of %dccp_role 462 * @dccps_hc_rx_insert_options - receiver wants to add options when acking 463 * @dccps_hc_tx_insert_options - sender wants to add options when sending 464 * @dccps_server_timewait - server holds timewait state on close (RFC 4340, 8.3) 465 * @dccps_xmitlet - tasklet scheduled by the TX CCID to dequeue data packets 466 * @dccps_xmit_timer - used by the TX CCID to delay sending (rate-based pacing) 467 * @dccps_syn_rtt - RTT sample from Request/Response exchange (in usecs) 468 */ 469struct dccp_sock { 470 /* inet_connection_sock has to be the first member of dccp_sock */ 471 struct inet_connection_sock dccps_inet_connection; 472#define dccps_syn_rtt dccps_inet_connection.icsk_ack.lrcvtime 473 __u64 dccps_swl; 474 __u64 dccps_swh; 475 __u64 dccps_awl; 476 __u64 dccps_awh; 477 __u64 dccps_iss; 478 __u64 dccps_isr; 479 __u64 dccps_osr; 480 __u64 dccps_gss; 481 __u64 dccps_gsr; 482 __u64 dccps_gar; 483 __be32 dccps_service; 484 __u32 dccps_mss_cache; 485 struct dccp_service_list *dccps_service_list; 486 __u32 dccps_timestamp_echo; 487 __u32 dccps_timestamp_time; 488 __u16 dccps_l_ack_ratio; 489 __u16 dccps_r_ack_ratio; 490 __u64 dccps_l_seq_win:48; 491 __u64 dccps_r_seq_win:48; 492 __u8 dccps_pcslen:4; 493 __u8 dccps_pcrlen:4; 494 __u8 dccps_send_ndp_count:1; 495 __u64 dccps_ndp_count:48; 496 unsigned long dccps_rate_last; 497 struct list_head dccps_featneg; 498 struct dccp_ackvec *dccps_hc_rx_ackvec; 499 struct ccid *dccps_hc_rx_ccid; 500 struct ccid *dccps_hc_tx_ccid; 501 struct dccp_options_received dccps_options_received; 502 enum dccp_role dccps_role:2; 503 __u8 dccps_hc_rx_insert_options:1; 504 __u8 dccps_hc_tx_insert_options:1; 505 __u8 dccps_server_timewait:1; 506 struct tasklet_struct dccps_xmitlet; 507 struct timer_list dccps_xmit_timer; 508}; 509 510static inline struct dccp_sock *dccp_sk(const struct sock *sk) 511{ 512 return (struct dccp_sock *)sk; 513} 514 515static inline const char *dccp_role(const struct sock *sk) 516{ 517 switch (dccp_sk(sk)->dccps_role) { 518 case DCCP_ROLE_UNDEFINED: return "undefined"; 519 case DCCP_ROLE_LISTEN: return "listen"; 520 case DCCP_ROLE_SERVER: return "server"; 521 case DCCP_ROLE_CLIENT: return "client"; 522 } 523 return NULL; 524} 525 526#endif /* __KERNEL__ */ 527 528#endif /* _LINUX_DCCP_H */