1 /* SPDX-License-Identifier: GPL-2.0+ WITH Linux-syscall-note */ 2 /* SCTP kernel implementation 3 * (C) Copyright IBM Corp. 2001, 2004 4 * Copyright (c) 1999-2000 Cisco, Inc. 5 * Copyright (c) 1999-2001 Motorola, Inc. 6 * Copyright (c) 2002 Intel Corp. 7 * 8 * This file is part of the SCTP kernel implementation 9 * 10 * This header represents the structures and constants needed to support 11 * the SCTP Extension to the Sockets API. 12 * 13 * This SCTP implementation is free software; 14 * you can redistribute it and/or modify it under the terms of 15 * the GNU General Public License as published by 16 * the Free Software Foundation; either version 2, or (at your option) 17 * any later version. 18 * 19 * This SCTP implementation is distributed in the hope that it 20 * will be useful, but WITHOUT ANY WARRANTY; without even the implied 21 * ************************ 22 * warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. 23 * See the GNU General Public License for more details. 24 * 25 * You should have received a copy of the GNU General Public License 26 * along with GNU CC; see the file COPYING. If not, see 27 * <http://www.gnu.org/licenses/>. 28 * 29 * Please send any bug reports or fixes you make to the 30 * email address(es): 31 * lksctp developers <[email protected]> 32 * 33 * Or submit a bug report through the following website: 34 * http://www.sf.net/projects/lksctp 35 * 36 * Written or modified by: 37 * La Monte H.P. Yarroll <[email protected]> 38 * R. Stewart <[email protected]> 39 * K. Morneau <[email protected]> 40 * Q. Xie <[email protected]> 41 * Karl Knutson <[email protected]> 42 * Jon Grimm <[email protected]> 43 * Daisy Chang <[email protected]> 44 * Ryan Layer <[email protected]> 45 * Ardelle Fan <[email protected]> 46 * Sridhar Samudrala <[email protected]> 47 * Inaky Perez-Gonzalez <[email protected]> 48 * Vlad Yasevich <[email protected]> 49 * 50 * Any bugs reported given to us we will try to fix... any fixes shared will 51 * be incorporated into the next SCTP release. 52 */ 53 54 #ifndef _UAPI_SCTP_H 55 #define _UAPI_SCTP_H 56 57 #include <linux/types.h> 58 #include <linux/socket.h> 59 60 typedef __s32 sctp_assoc_t; 61 62 /* The following symbols come from the Sockets API Extensions for 63 * SCTP <draft-ietf-tsvwg-sctpsocket-07.txt>. 64 */ 65 #define SCTP_RTOINFO 0 66 #define SCTP_ASSOCINFO 1 67 #define SCTP_INITMSG 2 68 #define SCTP_NODELAY 3 /* Get/set nodelay option. */ 69 #define SCTP_AUTOCLOSE 4 70 #define SCTP_SET_PEER_PRIMARY_ADDR 5 71 #define SCTP_PRIMARY_ADDR 6 72 #define SCTP_ADAPTATION_LAYER 7 73 #define SCTP_DISABLE_FRAGMENTS 8 74 #define SCTP_PEER_ADDR_PARAMS 9 75 #define SCTP_DEFAULT_SEND_PARAM 10 76 #define SCTP_EVENTS 11 77 #define SCTP_I_WANT_MAPPED_V4_ADDR 12 /* Turn on/off mapped v4 addresses */ 78 #define SCTP_MAXSEG 13 /* Get/set maximum fragment. */ 79 #define SCTP_STATUS 14 80 #define SCTP_GET_PEER_ADDR_INFO 15 81 #define SCTP_DELAYED_ACK_TIME 16 82 #define SCTP_DELAYED_ACK SCTP_DELAYED_ACK_TIME 83 #define SCTP_DELAYED_SACK SCTP_DELAYED_ACK_TIME 84 #define SCTP_CONTEXT 17 85 #define SCTP_FRAGMENT_INTERLEAVE 18 86 #define SCTP_PARTIAL_DELIVERY_POINT 19 /* Set/Get partial delivery point */ 87 #define SCTP_MAX_BURST 20 /* Set/Get max burst */ 88 #define SCTP_AUTH_CHUNK 21 /* Set only: add a chunk type to authenticate */ 89 #define SCTP_HMAC_IDENT 22 90 #define SCTP_AUTH_KEY 23 91 #define SCTP_AUTH_ACTIVE_KEY 24 92 #define SCTP_AUTH_DELETE_KEY 25 93 #define SCTP_PEER_AUTH_CHUNKS 26 /* Read only */ 94 #define SCTP_LOCAL_AUTH_CHUNKS 27 /* Read only */ 95 #define SCTP_GET_ASSOC_NUMBER 28 /* Read only */ 96 #define SCTP_GET_ASSOC_ID_LIST 29 /* Read only */ 97 #define SCTP_AUTO_ASCONF 30 98 #define SCTP_PEER_ADDR_THLDS 31 99 #define SCTP_RECVRCVINFO 32 100 #define SCTP_RECVNXTINFO 33 101 #define SCTP_DEFAULT_SNDINFO 34 102 #define SCTP_AUTH_DEACTIVATE_KEY 35 103 #define SCTP_REUSE_PORT 36 104 105 /* Internal Socket Options. Some of the sctp library functions are 106 * implemented using these socket options. 107 */ 108 #define SCTP_SOCKOPT_BINDX_ADD 100 /* BINDX requests for adding addrs */ 109 #define SCTP_SOCKOPT_BINDX_REM 101 /* BINDX requests for removing addrs. */ 110 #define SCTP_SOCKOPT_PEELOFF 102 /* peel off association. */ 111 /* Options 104-106 are deprecated and removed. Do not use this space */ 112 #define SCTP_SOCKOPT_CONNECTX_OLD 107 /* CONNECTX old requests. */ 113 #define SCTP_GET_PEER_ADDRS 108 /* Get all peer address. */ 114 #define SCTP_GET_LOCAL_ADDRS 109 /* Get all local address. */ 115 #define SCTP_SOCKOPT_CONNECTX 110 /* CONNECTX requests. */ 116 #define SCTP_SOCKOPT_CONNECTX3 111 /* CONNECTX requests (updated) */ 117 #define SCTP_GET_ASSOC_STATS 112 /* Read only */ 118 #define SCTP_PR_SUPPORTED 113 119 #define SCTP_DEFAULT_PRINFO 114 120 #define SCTP_PR_ASSOC_STATUS 115 121 #define SCTP_PR_STREAM_STATUS 116 122 #define SCTP_RECONFIG_SUPPORTED 117 123 #define SCTP_ENABLE_STREAM_RESET 118 124 #define SCTP_RESET_STREAMS 119 125 #define SCTP_RESET_ASSOC 120 126 #define SCTP_ADD_STREAMS 121 127 #define SCTP_SOCKOPT_PEELOFF_FLAGS 122 128 #define SCTP_STREAM_SCHEDULER 123 129 #define SCTP_STREAM_SCHEDULER_VALUE 124 130 #define SCTP_INTERLEAVING_SUPPORTED 125 131 #define SCTP_SENDMSG_CONNECT 126 132 133 /* PR-SCTP policies */ 134 #define SCTP_PR_SCTP_NONE 0x0000 135 #define SCTP_PR_SCTP_TTL 0x0010 136 #define SCTP_PR_SCTP_RTX 0x0020 137 #define SCTP_PR_SCTP_PRIO 0x0030 138 #define SCTP_PR_SCTP_MAX SCTP_PR_SCTP_PRIO 139 #define SCTP_PR_SCTP_MASK 0x0030 140 141 #define __SCTP_PR_INDEX(x) ((x >> 4) - 1) 142 #define SCTP_PR_INDEX(x) __SCTP_PR_INDEX(SCTP_PR_SCTP_ ## x) 143 144 #define SCTP_PR_POLICY(x) ((x) & SCTP_PR_SCTP_MASK) 145 #define SCTP_PR_SET_POLICY(flags, x) \ 146 do { \ 147 flags &= ~SCTP_PR_SCTP_MASK; \ 148 flags |= x; \ 149 } while (0) 150 151 #define SCTP_PR_TTL_ENABLED(x) (SCTP_PR_POLICY(x) == SCTP_PR_SCTP_TTL) 152 #define SCTP_PR_RTX_ENABLED(x) (SCTP_PR_POLICY(x) == SCTP_PR_SCTP_RTX) 153 #define SCTP_PR_PRIO_ENABLED(x) (SCTP_PR_POLICY(x) == SCTP_PR_SCTP_PRIO) 154 155 /* For enable stream reset */ 156 #define SCTP_ENABLE_RESET_STREAM_REQ 0x01 157 #define SCTP_ENABLE_RESET_ASSOC_REQ 0x02 158 #define SCTP_ENABLE_CHANGE_ASSOC_REQ 0x04 159 #define SCTP_ENABLE_STRRESET_MASK 0x07 160 161 #define SCTP_STREAM_RESET_INCOMING 0x01 162 #define SCTP_STREAM_RESET_OUTGOING 0x02 163 164 /* These are bit fields for msghdr->msg_flags. See section 5.1. */ 165 /* On user space Linux, these live in <bits/socket.h> as an enum. */ 166 enum sctp_msg_flags { 167 MSG_NOTIFICATION = 0x8000, 168 #define MSG_NOTIFICATION MSG_NOTIFICATION 169 }; 170 171 /* 5.3.1 SCTP Initiation Structure (SCTP_INIT) 172 * 173 * This cmsghdr structure provides information for initializing new 174 * SCTP associations with sendmsg(). The SCTP_INITMSG socket option 175 * uses this same data structure. This structure is not used for 176 * recvmsg(). 177 * 178 * cmsg_level cmsg_type cmsg_data[] 179 * ------------ ------------ ---------------------- 180 * IPPROTO_SCTP SCTP_INIT struct sctp_initmsg 181 */ 182 struct sctp_initmsg { 183 __u16 sinit_num_ostreams; 184 __u16 sinit_max_instreams; 185 __u16 sinit_max_attempts; 186 __u16 sinit_max_init_timeo; 187 }; 188 189 /* 5.3.2 SCTP Header Information Structure (SCTP_SNDRCV) 190 * 191 * This cmsghdr structure specifies SCTP options for sendmsg() and 192 * describes SCTP header information about a received message through 193 * recvmsg(). 194 * 195 * cmsg_level cmsg_type cmsg_data[] 196 * ------------ ------------ ---------------------- 197 * IPPROTO_SCTP SCTP_SNDRCV struct sctp_sndrcvinfo 198 */ 199 struct sctp_sndrcvinfo { 200 __u16 sinfo_stream; 201 __u16 sinfo_ssn; 202 __u16 sinfo_flags; 203 __u32 sinfo_ppid; 204 __u32 sinfo_context; 205 __u32 sinfo_timetolive; 206 __u32 sinfo_tsn; 207 __u32 sinfo_cumtsn; 208 sctp_assoc_t sinfo_assoc_id; 209 }; 210 211 /* 5.3.4 SCTP Send Information Structure (SCTP_SNDINFO) 212 * 213 * This cmsghdr structure specifies SCTP options for sendmsg(). 214 * 215 * cmsg_level cmsg_type cmsg_data[] 216 * ------------ ------------ ------------------- 217 * IPPROTO_SCTP SCTP_SNDINFO struct sctp_sndinfo 218 */ 219 struct sctp_sndinfo { 220 __u16 snd_sid; 221 __u16 snd_flags; 222 __u32 snd_ppid; 223 __u32 snd_context; 224 sctp_assoc_t snd_assoc_id; 225 }; 226 227 /* 5.3.5 SCTP Receive Information Structure (SCTP_RCVINFO) 228 * 229 * This cmsghdr structure describes SCTP receive information 230 * about a received message through recvmsg(). 231 * 232 * cmsg_level cmsg_type cmsg_data[] 233 * ------------ ------------ ------------------- 234 * IPPROTO_SCTP SCTP_RCVINFO struct sctp_rcvinfo 235 */ 236 struct sctp_rcvinfo { 237 __u16 rcv_sid; 238 __u16 rcv_ssn; 239 __u16 rcv_flags; 240 __u32 rcv_ppid; 241 __u32 rcv_tsn; 242 __u32 rcv_cumtsn; 243 __u32 rcv_context; 244 sctp_assoc_t rcv_assoc_id; 245 }; 246 247 /* 5.3.6 SCTP Next Receive Information Structure (SCTP_NXTINFO) 248 * 249 * This cmsghdr structure describes SCTP receive information 250 * of the next message that will be delivered through recvmsg() 251 * if this information is already available when delivering 252 * the current message. 253 * 254 * cmsg_level cmsg_type cmsg_data[] 255 * ------------ ------------ ------------------- 256 * IPPROTO_SCTP SCTP_NXTINFO struct sctp_nxtinfo 257 */ 258 struct sctp_nxtinfo { 259 __u16 nxt_sid; 260 __u16 nxt_flags; 261 __u32 nxt_ppid; 262 __u32 nxt_length; 263 sctp_assoc_t nxt_assoc_id; 264 }; 265 266 /* 5.3.7 SCTP PR-SCTP Information Structure (SCTP_PRINFO) 267 * 268 * This cmsghdr structure specifies SCTP options for sendmsg(). 269 * 270 * cmsg_level cmsg_type cmsg_data[] 271 * ------------ ------------ ------------------- 272 * IPPROTO_SCTP SCTP_PRINFO struct sctp_prinfo 273 */ 274 struct sctp_prinfo { 275 __u16 pr_policy; 276 __u32 pr_value; 277 }; 278 279 /* 5.3.8 SCTP AUTH Information Structure (SCTP_AUTHINFO) 280 * 281 * This cmsghdr structure specifies SCTP options for sendmsg(). 282 * 283 * cmsg_level cmsg_type cmsg_data[] 284 * ------------ ------------ ------------------- 285 * IPPROTO_SCTP SCTP_AUTHINFO struct sctp_authinfo 286 */ 287 struct sctp_authinfo { 288 __u16 auth_keynumber; 289 }; 290 291 /* 292 * sinfo_flags: 16 bits (unsigned integer) 293 * 294 * This field may contain any of the following flags and is composed of 295 * a bitwise OR of these values. 296 */ 297 enum sctp_sinfo_flags { 298 SCTP_UNORDERED = (1 << 0), /* Send/receive message unordered. */ 299 SCTP_ADDR_OVER = (1 << 1), /* Override the primary destination. */ 300 SCTP_ABORT = (1 << 2), /* Send an ABORT message to the peer. */ 301 SCTP_SACK_IMMEDIATELY = (1 << 3), /* SACK should be sent without delay. */ 302 /* 2 bits here have been used by SCTP_PR_SCTP_MASK */ 303 SCTP_SENDALL = (1 << 6), 304 SCTP_NOTIFICATION = MSG_NOTIFICATION, /* Next message is not user msg but notification. */ 305 SCTP_EOF = MSG_FIN, /* Initiate graceful shutdown process. */ 306 }; 307 308 typedef union { 309 __u8 raw; 310 struct sctp_initmsg init; 311 struct sctp_sndrcvinfo sndrcv; 312 } sctp_cmsg_data_t; 313 314 /* These are cmsg_types. */ 315 typedef enum sctp_cmsg_type { 316 SCTP_INIT, /* 5.2.1 SCTP Initiation Structure */ 317 #define SCTP_INIT SCTP_INIT 318 SCTP_SNDRCV, /* 5.2.2 SCTP Header Information Structure */ 319 #define SCTP_SNDRCV SCTP_SNDRCV 320 SCTP_SNDINFO, /* 5.3.4 SCTP Send Information Structure */ 321 #define SCTP_SNDINFO SCTP_SNDINFO 322 SCTP_RCVINFO, /* 5.3.5 SCTP Receive Information Structure */ 323 #define SCTP_RCVINFO SCTP_RCVINFO 324 SCTP_NXTINFO, /* 5.3.6 SCTP Next Receive Information Structure */ 325 #define SCTP_NXTINFO SCTP_NXTINFO 326 SCTP_PRINFO, /* 5.3.7 SCTP PR-SCTP Information Structure */ 327 #define SCTP_PRINFO SCTP_PRINFO 328 SCTP_AUTHINFO, /* 5.3.8 SCTP AUTH Information Structure */ 329 #define SCTP_AUTHINFO SCTP_AUTHINFO 330 SCTP_DSTADDRV4, /* 5.3.9 SCTP Destination IPv4 Address Structure */ 331 #define SCTP_DSTADDRV4 SCTP_DSTADDRV4 332 SCTP_DSTADDRV6, /* 5.3.10 SCTP Destination IPv6 Address Structure */ 333 #define SCTP_DSTADDRV6 SCTP_DSTADDRV6 334 } sctp_cmsg_t; 335 336 /* 337 * 5.3.1.1 SCTP_ASSOC_CHANGE 338 * 339 * Communication notifications inform the ULP that an SCTP association 340 * has either begun or ended. The identifier for a new association is 341 * provided by this notificaion. The notification information has the 342 * following format: 343 * 344 */ 345 struct sctp_assoc_change { 346 __u16 sac_type; 347 __u16 sac_flags; 348 __u32 sac_length; 349 __u16 sac_state; 350 __u16 sac_error; 351 __u16 sac_outbound_streams; 352 __u16 sac_inbound_streams; 353 sctp_assoc_t sac_assoc_id; 354 __u8 sac_info[0]; 355 }; 356 357 /* 358 * sac_state: 32 bits (signed integer) 359 * 360 * This field holds one of a number of values that communicate the 361 * event that happened to the association. They include: 362 * 363 * Note: The following state names deviate from the API draft as 364 * the names clash too easily with other kernel symbols. 365 */ 366 enum sctp_sac_state { 367 SCTP_COMM_UP, 368 SCTP_COMM_LOST, 369 SCTP_RESTART, 370 SCTP_SHUTDOWN_COMP, 371 SCTP_CANT_STR_ASSOC, 372 }; 373 374 /* 375 * 5.3.1.2 SCTP_PEER_ADDR_CHANGE 376 * 377 * When a destination address on a multi-homed peer encounters a change 378 * an interface details event is sent. The information has the 379 * following structure: 380 */ 381 struct sctp_paddr_change { 382 __u16 spc_type; 383 __u16 spc_flags; 384 __u32 spc_length; 385 struct sockaddr_storage spc_aaddr; 386 int spc_state; 387 int spc_error; 388 sctp_assoc_t spc_assoc_id; 389 } __attribute__((packed, aligned(4))); 390 391 /* 392 * spc_state: 32 bits (signed integer) 393 * 394 * This field holds one of a number of values that communicate the 395 * event that happened to the address. They include: 396 */ 397 enum sctp_spc_state { 398 SCTP_ADDR_AVAILABLE, 399 SCTP_ADDR_UNREACHABLE, 400 SCTP_ADDR_REMOVED, 401 SCTP_ADDR_ADDED, 402 SCTP_ADDR_MADE_PRIM, 403 SCTP_ADDR_CONFIRMED, 404 }; 405 406 407 /* 408 * 5.3.1.3 SCTP_REMOTE_ERROR 409 * 410 * A remote peer may send an Operational Error message to its peer. 411 * This message indicates a variety of error conditions on an 412 * association. The entire error TLV as it appears on the wire is 413 * included in a SCTP_REMOTE_ERROR event. Please refer to the SCTP 414 * specification [SCTP] and any extensions for a list of possible 415 * error formats. SCTP error TLVs have the format: 416 */ 417 struct sctp_remote_error { 418 __u16 sre_type; 419 __u16 sre_flags; 420 __u32 sre_length; 421 __be16 sre_error; 422 sctp_assoc_t sre_assoc_id; 423 __u8 sre_data[0]; 424 }; 425 426 427 /* 428 * 5.3.1.4 SCTP_SEND_FAILED 429 * 430 * If SCTP cannot deliver a message it may return the message as a 431 * notification. 432 */ 433 struct sctp_send_failed { 434 __u16 ssf_type; 435 __u16 ssf_flags; 436 __u32 ssf_length; 437 __u32 ssf_error; 438 struct sctp_sndrcvinfo ssf_info; 439 sctp_assoc_t ssf_assoc_id; 440 __u8 ssf_data[0]; 441 }; 442 443 /* 444 * ssf_flags: 16 bits (unsigned integer) 445 * 446 * The flag value will take one of the following values 447 * 448 * SCTP_DATA_UNSENT - Indicates that the data was never put on 449 * the wire. 450 * 451 * SCTP_DATA_SENT - Indicates that the data was put on the wire. 452 * Note that this does not necessarily mean that the 453 * data was (or was not) successfully delivered. 454 */ 455 enum sctp_ssf_flags { 456 SCTP_DATA_UNSENT, 457 SCTP_DATA_SENT, 458 }; 459 460 /* 461 * 5.3.1.5 SCTP_SHUTDOWN_EVENT 462 * 463 * When a peer sends a SHUTDOWN, SCTP delivers this notification to 464 * inform the application that it should cease sending data. 465 */ 466 struct sctp_shutdown_event { 467 __u16 sse_type; 468 __u16 sse_flags; 469 __u32 sse_length; 470 sctp_assoc_t sse_assoc_id; 471 }; 472 473 /* 474 * 5.3.1.6 SCTP_ADAPTATION_INDICATION 475 * 476 * When a peer sends a Adaptation Layer Indication parameter , SCTP 477 * delivers this notification to inform the application 478 * that of the peers requested adaptation layer. 479 */ 480 struct sctp_adaptation_event { 481 __u16 sai_type; 482 __u16 sai_flags; 483 __u32 sai_length; 484 __u32 sai_adaptation_ind; 485 sctp_assoc_t sai_assoc_id; 486 }; 487 488 /* 489 * 5.3.1.7 SCTP_PARTIAL_DELIVERY_EVENT 490 * 491 * When a receiver is engaged in a partial delivery of a 492 * message this notification will be used to indicate 493 * various events. 494 */ 495 struct sctp_pdapi_event { 496 __u16 pdapi_type; 497 __u16 pdapi_flags; 498 __u32 pdapi_length; 499 __u32 pdapi_indication; 500 sctp_assoc_t pdapi_assoc_id; 501 __u32 pdapi_stream; 502 __u32 pdapi_seq; 503 }; 504 505 enum { SCTP_PARTIAL_DELIVERY_ABORTED=0, }; 506 507 /* 508 * 5.3.1.8. SCTP_AUTHENTICATION_EVENT 509 * 510 * When a receiver is using authentication this message will provide 511 * notifications regarding new keys being made active as well as errors. 512 */ 513 struct sctp_authkey_event { 514 __u16 auth_type; 515 __u16 auth_flags; 516 __u32 auth_length; 517 __u16 auth_keynumber; 518 __u16 auth_altkeynumber; 519 __u32 auth_indication; 520 sctp_assoc_t auth_assoc_id; 521 }; 522 523 enum { 524 SCTP_AUTH_NEW_KEY, 525 #define SCTP_AUTH_NEWKEY SCTP_AUTH_NEW_KEY /* compatible with before */ 526 SCTP_AUTH_FREE_KEY, 527 SCTP_AUTH_NO_AUTH, 528 }; 529 530 /* 531 * 6.1.9. SCTP_SENDER_DRY_EVENT 532 * 533 * When the SCTP stack has no more user data to send or retransmit, this 534 * notification is given to the user. Also, at the time when a user app 535 * subscribes to this event, if there is no data to be sent or 536 * retransmit, the stack will immediately send up this notification. 537 */ 538 struct sctp_sender_dry_event { 539 __u16 sender_dry_type; 540 __u16 sender_dry_flags; 541 __u32 sender_dry_length; 542 sctp_assoc_t sender_dry_assoc_id; 543 }; 544 545 #define SCTP_STREAM_RESET_INCOMING_SSN 0x0001 546 #define SCTP_STREAM_RESET_OUTGOING_SSN 0x0002 547 #define SCTP_STREAM_RESET_DENIED 0x0004 548 #define SCTP_STREAM_RESET_FAILED 0x0008 549 struct sctp_stream_reset_event { 550 __u16 strreset_type; 551 __u16 strreset_flags; 552 __u32 strreset_length; 553 sctp_assoc_t strreset_assoc_id; 554 __u16 strreset_stream_list[]; 555 }; 556 557 #define SCTP_ASSOC_RESET_DENIED 0x0004 558 #define SCTP_ASSOC_RESET_FAILED 0x0008 559 struct sctp_assoc_reset_event { 560 __u16 assocreset_type; 561 __u16 assocreset_flags; 562 __u32 assocreset_length; 563 sctp_assoc_t assocreset_assoc_id; 564 __u32 assocreset_local_tsn; 565 __u32 assocreset_remote_tsn; 566 }; 567 568 #define SCTP_ASSOC_CHANGE_DENIED 0x0004 569 #define SCTP_ASSOC_CHANGE_FAILED 0x0008 570 struct sctp_stream_change_event { 571 __u16 strchange_type; 572 __u16 strchange_flags; 573 __u32 strchange_length; 574 sctp_assoc_t strchange_assoc_id; 575 __u16 strchange_instrms; 576 __u16 strchange_outstrms; 577 }; 578 579 /* 580 * Described in Section 7.3 581 * Ancillary Data and Notification Interest Options 582 */ 583 struct sctp_event_subscribe { 584 __u8 sctp_data_io_event; 585 __u8 sctp_association_event; 586 __u8 sctp_address_event; 587 __u8 sctp_send_failure_event; 588 __u8 sctp_peer_error_event; 589 __u8 sctp_shutdown_event; 590 __u8 sctp_partial_delivery_event; 591 __u8 sctp_adaptation_layer_event; 592 __u8 sctp_authentication_event; 593 __u8 sctp_sender_dry_event; 594 __u8 sctp_stream_reset_event; 595 __u8 sctp_assoc_reset_event; 596 __u8 sctp_stream_change_event; 597 }; 598 599 /* 600 * 5.3.1 SCTP Notification Structure 601 * 602 * The notification structure is defined as the union of all 603 * notification types. 604 * 605 */ 606 union sctp_notification { 607 struct { 608 __u16 sn_type; /* Notification type. */ 609 __u16 sn_flags; 610 __u32 sn_length; 611 } sn_header; 612 struct sctp_assoc_change sn_assoc_change; 613 struct sctp_paddr_change sn_paddr_change; 614 struct sctp_remote_error sn_remote_error; 615 struct sctp_send_failed sn_send_failed; 616 struct sctp_shutdown_event sn_shutdown_event; 617 struct sctp_adaptation_event sn_adaptation_event; 618 struct sctp_pdapi_event sn_pdapi_event; 619 struct sctp_authkey_event sn_authkey_event; 620 struct sctp_sender_dry_event sn_sender_dry_event; 621 struct sctp_stream_reset_event sn_strreset_event; 622 struct sctp_assoc_reset_event sn_assocreset_event; 623 struct sctp_stream_change_event sn_strchange_event; 624 }; 625 626 /* Section 5.3.1 627 * All standard values for sn_type flags are greater than 2^15. 628 * Values from 2^15 and down are reserved. 629 */ 630 631 enum sctp_sn_type { 632 SCTP_SN_TYPE_BASE = (1<<15), 633 SCTP_ASSOC_CHANGE, 634 #define SCTP_ASSOC_CHANGE SCTP_ASSOC_CHANGE 635 SCTP_PEER_ADDR_CHANGE, 636 #define SCTP_PEER_ADDR_CHANGE SCTP_PEER_ADDR_CHANGE 637 SCTP_SEND_FAILED, 638 #define SCTP_SEND_FAILED SCTP_SEND_FAILED 639 SCTP_REMOTE_ERROR, 640 #define SCTP_REMOTE_ERROR SCTP_REMOTE_ERROR 641 SCTP_SHUTDOWN_EVENT, 642 #define SCTP_SHUTDOWN_EVENT SCTP_SHUTDOWN_EVENT 643 SCTP_PARTIAL_DELIVERY_EVENT, 644 #define SCTP_PARTIAL_DELIVERY_EVENT SCTP_PARTIAL_DELIVERY_EVENT 645 SCTP_ADAPTATION_INDICATION, 646 #define SCTP_ADAPTATION_INDICATION SCTP_ADAPTATION_INDICATION 647 SCTP_AUTHENTICATION_EVENT, 648 #define SCTP_AUTHENTICATION_INDICATION SCTP_AUTHENTICATION_EVENT 649 SCTP_SENDER_DRY_EVENT, 650 #define SCTP_SENDER_DRY_EVENT SCTP_SENDER_DRY_EVENT 651 SCTP_STREAM_RESET_EVENT, 652 #define SCTP_STREAM_RESET_EVENT SCTP_STREAM_RESET_EVENT 653 SCTP_ASSOC_RESET_EVENT, 654 #define SCTP_ASSOC_RESET_EVENT SCTP_ASSOC_RESET_EVENT 655 SCTP_STREAM_CHANGE_EVENT, 656 #define SCTP_STREAM_CHANGE_EVENT SCTP_STREAM_CHANGE_EVENT 657 }; 658 659 /* Notification error codes used to fill up the error fields in some 660 * notifications. 661 * SCTP_PEER_ADDRESS_CHAGE : spc_error 662 * SCTP_ASSOC_CHANGE : sac_error 663 * These names should be potentially included in the draft 04 of the SCTP 664 * sockets API specification. 665 */ 666 typedef enum sctp_sn_error { 667 SCTP_FAILED_THRESHOLD, 668 SCTP_RECEIVED_SACK, 669 SCTP_HEARTBEAT_SUCCESS, 670 SCTP_RESPONSE_TO_USER_REQ, 671 SCTP_INTERNAL_ERROR, 672 SCTP_SHUTDOWN_GUARD_EXPIRES, 673 SCTP_PEER_FAULTY, 674 } sctp_sn_error_t; 675 676 /* 677 * 7.1.1 Retransmission Timeout Parameters (SCTP_RTOINFO) 678 * 679 * The protocol parameters used to initialize and bound retransmission 680 * timeout (RTO) are tunable. See [SCTP] for more information on how 681 * these parameters are used in RTO calculation. 682 */ 683 struct sctp_rtoinfo { 684 sctp_assoc_t srto_assoc_id; 685 __u32 srto_initial; 686 __u32 srto_max; 687 __u32 srto_min; 688 }; 689 690 /* 691 * 7.1.2 Association Parameters (SCTP_ASSOCINFO) 692 * 693 * This option is used to both examine and set various association and 694 * endpoint parameters. 695 */ 696 struct sctp_assocparams { 697 sctp_assoc_t sasoc_assoc_id; 698 __u16 sasoc_asocmaxrxt; 699 __u16 sasoc_number_peer_destinations; 700 __u32 sasoc_peer_rwnd; 701 __u32 sasoc_local_rwnd; 702 __u32 sasoc_cookie_life; 703 }; 704 705 /* 706 * 7.1.9 Set Peer Primary Address (SCTP_SET_PEER_PRIMARY_ADDR) 707 * 708 * Requests that the peer mark the enclosed address as the association 709 * primary. The enclosed address must be one of the association's 710 * locally bound addresses. The following structure is used to make a 711 * set primary request: 712 */ 713 struct sctp_setpeerprim { 714 sctp_assoc_t sspp_assoc_id; 715 struct sockaddr_storage sspp_addr; 716 } __attribute__((packed, aligned(4))); 717 718 /* 719 * 7.1.10 Set Primary Address (SCTP_PRIMARY_ADDR) 720 * 721 * Requests that the local SCTP stack use the enclosed peer address as 722 * the association primary. The enclosed address must be one of the 723 * association peer's addresses. The following structure is used to 724 * make a set peer primary request: 725 */ 726 struct sctp_prim { 727 sctp_assoc_t ssp_assoc_id; 728 struct sockaddr_storage ssp_addr; 729 } __attribute__((packed, aligned(4))); 730 731 /* For backward compatibility use, define the old name too */ 732 #define sctp_setprim sctp_prim 733 734 /* 735 * 7.1.11 Set Adaptation Layer Indicator (SCTP_ADAPTATION_LAYER) 736 * 737 * Requests that the local endpoint set the specified Adaptation Layer 738 * Indication parameter for all future INIT and INIT-ACK exchanges. 739 */ 740 struct sctp_setadaptation { 741 __u32 ssb_adaptation_ind; 742 }; 743 744 /* 745 * 7.1.13 Peer Address Parameters (SCTP_PEER_ADDR_PARAMS) 746 * 747 * Applications can enable or disable heartbeats for any peer address 748 * of an association, modify an address's heartbeat interval, force a 749 * heartbeat to be sent immediately, and adjust the address's maximum 750 * number of retransmissions sent before an address is considered 751 * unreachable. The following structure is used to access and modify an 752 * address's parameters: 753 */ 754 enum sctp_spp_flags { 755 SPP_HB_ENABLE = 1<<0, /*Enable heartbeats*/ 756 SPP_HB_DISABLE = 1<<1, /*Disable heartbeats*/ 757 SPP_HB = SPP_HB_ENABLE | SPP_HB_DISABLE, 758 SPP_HB_DEMAND = 1<<2, /*Send heartbeat immediately*/ 759 SPP_PMTUD_ENABLE = 1<<3, /*Enable PMTU discovery*/ 760 SPP_PMTUD_DISABLE = 1<<4, /*Disable PMTU discovery*/ 761 SPP_PMTUD = SPP_PMTUD_ENABLE | SPP_PMTUD_DISABLE, 762 SPP_SACKDELAY_ENABLE = 1<<5, /*Enable SACK*/ 763 SPP_SACKDELAY_DISABLE = 1<<6, /*Disable SACK*/ 764 SPP_SACKDELAY = SPP_SACKDELAY_ENABLE | SPP_SACKDELAY_DISABLE, 765 SPP_HB_TIME_IS_ZERO = 1<<7, /* Set HB delay to 0 */ 766 SPP_IPV6_FLOWLABEL = 1<<8, 767 SPP_DSCP = 1<<9, 768 }; 769 770 struct sctp_paddrparams { 771 sctp_assoc_t spp_assoc_id; 772 struct sockaddr_storage spp_address; 773 __u32 spp_hbinterval; 774 __u16 spp_pathmaxrxt; 775 __u32 spp_pathmtu; 776 __u32 spp_sackdelay; 777 __u32 spp_flags; 778 __u32 spp_ipv6_flowlabel; 779 __u8 spp_dscp; 780 } __attribute__((packed, aligned(4))); 781 782 /* 783 * 7.1.18. Add a chunk that must be authenticated (SCTP_AUTH_CHUNK) 784 * 785 * This set option adds a chunk type that the user is requesting to be 786 * received only in an authenticated way. Changes to the list of chunks 787 * will only effect future associations on the socket. 788 */ 789 struct sctp_authchunk { 790 __u8 sauth_chunk; 791 }; 792 793 /* 794 * 7.1.19. Get or set the list of supported HMAC Identifiers (SCTP_HMAC_IDENT) 795 * 796 * This option gets or sets the list of HMAC algorithms that the local 797 * endpoint requires the peer to use. 798 */ 799 #ifndef __KERNEL__ 800 /* This here is only used by user space as is. It might not be a good idea 801 * to export/reveal the whole structure with reserved fields etc. 802 */ 803 enum { 804 SCTP_AUTH_HMAC_ID_SHA1 = 1, 805 SCTP_AUTH_HMAC_ID_SHA256 = 3, 806 }; 807 #endif 808 809 struct sctp_hmacalgo { 810 __u32 shmac_num_idents; 811 __u16 shmac_idents[]; 812 }; 813 814 /* Sadly, user and kernel space have different names for 815 * this structure member, so this is to not break anything. 816 */ 817 #define shmac_number_of_idents shmac_num_idents 818 819 /* 820 * 7.1.20. Set a shared key (SCTP_AUTH_KEY) 821 * 822 * This option will set a shared secret key which is used to build an 823 * association shared key. 824 */ 825 struct sctp_authkey { 826 sctp_assoc_t sca_assoc_id; 827 __u16 sca_keynumber; 828 __u16 sca_keylength; 829 __u8 sca_key[]; 830 }; 831 832 /* 833 * 7.1.21. Get or set the active shared key (SCTP_AUTH_ACTIVE_KEY) 834 * 835 * This option will get or set the active shared key to be used to build 836 * the association shared key. 837 */ 838 839 struct sctp_authkeyid { 840 sctp_assoc_t scact_assoc_id; 841 __u16 scact_keynumber; 842 }; 843 844 845 /* 846 * 7.1.23. Get or set delayed ack timer (SCTP_DELAYED_SACK) 847 * 848 * This option will effect the way delayed acks are performed. This 849 * option allows you to get or set the delayed ack time, in 850 * milliseconds. It also allows changing the delayed ack frequency. 851 * Changing the frequency to 1 disables the delayed sack algorithm. If 852 * the assoc_id is 0, then this sets or gets the endpoints default 853 * values. If the assoc_id field is non-zero, then the set or get 854 * effects the specified association for the one to many model (the 855 * assoc_id field is ignored by the one to one model). Note that if 856 * sack_delay or sack_freq are 0 when setting this option, then the 857 * current values will remain unchanged. 858 */ 859 struct sctp_sack_info { 860 sctp_assoc_t sack_assoc_id; 861 uint32_t sack_delay; 862 uint32_t sack_freq; 863 }; 864 865 struct sctp_assoc_value { 866 sctp_assoc_t assoc_id; 867 uint32_t assoc_value; 868 }; 869 870 struct sctp_stream_value { 871 sctp_assoc_t assoc_id; 872 uint16_t stream_id; 873 uint16_t stream_value; 874 }; 875 876 /* 877 * 7.2.2 Peer Address Information 878 * 879 * Applications can retrieve information about a specific peer address 880 * of an association, including its reachability state, congestion 881 * window, and retransmission timer values. This information is 882 * read-only. The following structure is used to access this 883 * information: 884 */ 885 struct sctp_paddrinfo { 886 sctp_assoc_t spinfo_assoc_id; 887 struct sockaddr_storage spinfo_address; 888 __s32 spinfo_state; 889 __u32 spinfo_cwnd; 890 __u32 spinfo_srtt; 891 __u32 spinfo_rto; 892 __u32 spinfo_mtu; 893 } __attribute__((packed, aligned(4))); 894 895 /* Peer addresses's state. */ 896 /* UNKNOWN: Peer address passed by the upper layer in sendmsg or connect[x] 897 * calls. 898 * UNCONFIRMED: Peer address received in INIT/INIT-ACK address parameters. 899 * Not yet confirmed by a heartbeat and not available for data 900 * transfers. 901 * ACTIVE : Peer address confirmed, active and available for data transfers. 902 * INACTIVE: Peer address inactive and not available for data transfers. 903 */ 904 enum sctp_spinfo_state { 905 SCTP_INACTIVE, 906 SCTP_PF, 907 SCTP_ACTIVE, 908 SCTP_UNCONFIRMED, 909 SCTP_UNKNOWN = 0xffff /* Value used for transport state unknown */ 910 }; 911 912 /* 913 * 7.2.1 Association Status (SCTP_STATUS) 914 * 915 * Applications can retrieve current status information about an 916 * association, including association state, peer receiver window size, 917 * number of unacked data chunks, and number of data chunks pending 918 * receipt. This information is read-only. The following structure is 919 * used to access this information: 920 */ 921 struct sctp_status { 922 sctp_assoc_t sstat_assoc_id; 923 __s32 sstat_state; 924 __u32 sstat_rwnd; 925 __u16 sstat_unackdata; 926 __u16 sstat_penddata; 927 __u16 sstat_instrms; 928 __u16 sstat_outstrms; 929 __u32 sstat_fragmentation_point; 930 struct sctp_paddrinfo sstat_primary; 931 }; 932 933 /* 934 * 7.2.3. Get the list of chunks the peer requires to be authenticated 935 * (SCTP_PEER_AUTH_CHUNKS) 936 * 937 * This option gets a list of chunks for a specified association that 938 * the peer requires to be received authenticated only. 939 */ 940 struct sctp_authchunks { 941 sctp_assoc_t gauth_assoc_id; 942 __u32 gauth_number_of_chunks; 943 uint8_t gauth_chunks[]; 944 }; 945 946 /* The broken spelling has been released already in lksctp-tools header, 947 * so don't break anyone, now that it's fixed. 948 */ 949 #define guth_number_of_chunks gauth_number_of_chunks 950 951 /* Association states. */ 952 enum sctp_sstat_state { 953 SCTP_EMPTY = 0, 954 SCTP_CLOSED = 1, 955 SCTP_COOKIE_WAIT = 2, 956 SCTP_COOKIE_ECHOED = 3, 957 SCTP_ESTABLISHED = 4, 958 SCTP_SHUTDOWN_PENDING = 5, 959 SCTP_SHUTDOWN_SENT = 6, 960 SCTP_SHUTDOWN_RECEIVED = 7, 961 SCTP_SHUTDOWN_ACK_SENT = 8, 962 }; 963 964 /* 965 * 8.2.6. Get the Current Identifiers of Associations 966 * (SCTP_GET_ASSOC_ID_LIST) 967 * 968 * This option gets the current list of SCTP association identifiers of 969 * the SCTP associations handled by a one-to-many style socket. 970 */ 971 struct sctp_assoc_ids { 972 __u32 gaids_number_of_ids; 973 sctp_assoc_t gaids_assoc_id[]; 974 }; 975 976 /* 977 * 8.3, 8.5 get all peer/local addresses in an association. 978 * This parameter struct is used by SCTP_GET_PEER_ADDRS and 979 * SCTP_GET_LOCAL_ADDRS socket options used internally to implement 980 * sctp_getpaddrs() and sctp_getladdrs() API. 981 */ 982 struct sctp_getaddrs_old { 983 sctp_assoc_t assoc_id; 984 int addr_num; 985 #ifdef __KERNEL__ 986 struct sockaddr __user *addrs; 987 #else 988 struct sockaddr *addrs; 989 #endif 990 }; 991 992 struct sctp_getaddrs { 993 sctp_assoc_t assoc_id; /*input*/ 994 __u32 addr_num; /*output*/ 995 __u8 addrs[0]; /*output, variable size*/ 996 }; 997 998 /* A socket user request obtained via SCTP_GET_ASSOC_STATS that retrieves 999 * association stats. All stats are counts except sas_maxrto and 1000 * sas_obs_rto_ipaddr. maxrto is the max observed rto + transport since 1001 * the last call. Will return 0 when RTO was not update since last call 1002 */ 1003 struct sctp_assoc_stats { 1004 sctp_assoc_t sas_assoc_id; /* Input */ 1005 /* Transport of observed max RTO */ 1006 struct sockaddr_storage sas_obs_rto_ipaddr; 1007 __u64 sas_maxrto; /* Maximum Observed RTO for period */ 1008 __u64 sas_isacks; /* SACKs received */ 1009 __u64 sas_osacks; /* SACKs sent */ 1010 __u64 sas_opackets; /* Packets sent */ 1011 __u64 sas_ipackets; /* Packets received */ 1012 __u64 sas_rtxchunks; /* Retransmitted Chunks */ 1013 __u64 sas_outofseqtsns;/* TSN received > next expected */ 1014 __u64 sas_idupchunks; /* Dups received (ordered+unordered) */ 1015 __u64 sas_gapcnt; /* Gap Acknowledgements Received */ 1016 __u64 sas_ouodchunks; /* Unordered data chunks sent */ 1017 __u64 sas_iuodchunks; /* Unordered data chunks received */ 1018 __u64 sas_oodchunks; /* Ordered data chunks sent */ 1019 __u64 sas_iodchunks; /* Ordered data chunks received */ 1020 __u64 sas_octrlchunks; /* Control chunks sent */ 1021 __u64 sas_ictrlchunks; /* Control chunks received */ 1022 }; 1023 1024 /* 1025 * 8.1 sctp_bindx() 1026 * 1027 * The flags parameter is formed from the bitwise OR of zero or more of the 1028 * following currently defined flags: 1029 */ 1030 #define SCTP_BINDX_ADD_ADDR 0x01 1031 #define SCTP_BINDX_REM_ADDR 0x02 1032 1033 /* This is the structure that is passed as an argument(optval) to 1034 * getsockopt(SCTP_SOCKOPT_PEELOFF). 1035 */ 1036 typedef struct { 1037 sctp_assoc_t associd; 1038 int sd; 1039 } sctp_peeloff_arg_t; 1040 1041 typedef struct { 1042 sctp_peeloff_arg_t p_arg; 1043 unsigned flags; 1044 } sctp_peeloff_flags_arg_t; 1045 1046 /* 1047 * Peer Address Thresholds socket option 1048 */ 1049 struct sctp_paddrthlds { 1050 sctp_assoc_t spt_assoc_id; 1051 struct sockaddr_storage spt_address; 1052 __u16 spt_pathmaxrxt; 1053 __u16 spt_pathpfthld; 1054 }; 1055 1056 /* 1057 * Socket Option for Getting the Association/Stream-Specific PR-SCTP Status 1058 */ 1059 struct sctp_prstatus { 1060 sctp_assoc_t sprstat_assoc_id; 1061 __u16 sprstat_sid; 1062 __u16 sprstat_policy; 1063 __u64 sprstat_abandoned_unsent; 1064 __u64 sprstat_abandoned_sent; 1065 }; 1066 1067 struct sctp_default_prinfo { 1068 sctp_assoc_t pr_assoc_id; 1069 __u32 pr_value; 1070 __u16 pr_policy; 1071 }; 1072 1073 struct sctp_info { 1074 __u32 sctpi_tag; 1075 __u32 sctpi_state; 1076 __u32 sctpi_rwnd; 1077 __u16 sctpi_unackdata; 1078 __u16 sctpi_penddata; 1079 __u16 sctpi_instrms; 1080 __u16 sctpi_outstrms; 1081 __u32 sctpi_fragmentation_point; 1082 __u32 sctpi_inqueue; 1083 __u32 sctpi_outqueue; 1084 __u32 sctpi_overall_error; 1085 __u32 sctpi_max_burst; 1086 __u32 sctpi_maxseg; 1087 __u32 sctpi_peer_rwnd; 1088 __u32 sctpi_peer_tag; 1089 __u8 sctpi_peer_capable; 1090 __u8 sctpi_peer_sack; 1091 __u16 __reserved1; 1092 1093 /* assoc status info */ 1094 __u64 sctpi_isacks; 1095 __u64 sctpi_osacks; 1096 __u64 sctpi_opackets; 1097 __u64 sctpi_ipackets; 1098 __u64 sctpi_rtxchunks; 1099 __u64 sctpi_outofseqtsns; 1100 __u64 sctpi_idupchunks; 1101 __u64 sctpi_gapcnt; 1102 __u64 sctpi_ouodchunks; 1103 __u64 sctpi_iuodchunks; 1104 __u64 sctpi_oodchunks; 1105 __u64 sctpi_iodchunks; 1106 __u64 sctpi_octrlchunks; 1107 __u64 sctpi_ictrlchunks; 1108 1109 /* primary transport info */ 1110 struct sockaddr_storage sctpi_p_address; 1111 __s32 sctpi_p_state; 1112 __u32 sctpi_p_cwnd; 1113 __u32 sctpi_p_srtt; 1114 __u32 sctpi_p_rto; 1115 __u32 sctpi_p_hbinterval; 1116 __u32 sctpi_p_pathmaxrxt; 1117 __u32 sctpi_p_sackdelay; 1118 __u32 sctpi_p_sackfreq; 1119 __u32 sctpi_p_ssthresh; 1120 __u32 sctpi_p_partial_bytes_acked; 1121 __u32 sctpi_p_flight_size; 1122 __u16 sctpi_p_error; 1123 __u16 __reserved2; 1124 1125 /* sctp sock info */ 1126 __u32 sctpi_s_autoclose; 1127 __u32 sctpi_s_adaptation_ind; 1128 __u32 sctpi_s_pd_point; 1129 __u8 sctpi_s_nodelay; 1130 __u8 sctpi_s_disable_fragments; 1131 __u8 sctpi_s_v4mapped; 1132 __u8 sctpi_s_frag_interleave; 1133 __u32 sctpi_s_type; 1134 __u32 __reserved3; 1135 }; 1136 1137 struct sctp_reset_streams { 1138 sctp_assoc_t srs_assoc_id; 1139 uint16_t srs_flags; 1140 uint16_t srs_number_streams; /* 0 == ALL */ 1141 uint16_t srs_stream_list[]; /* list if srs_num_streams is not 0 */ 1142 }; 1143 1144 struct sctp_add_streams { 1145 sctp_assoc_t sas_assoc_id; 1146 uint16_t sas_instrms; 1147 uint16_t sas_outstrms; 1148 }; 1149 1150 /* SCTP Stream schedulers */ 1151 enum sctp_sched_type { 1152 SCTP_SS_FCFS, 1153 SCTP_SS_PRIO, 1154 SCTP_SS_RR, 1155 SCTP_SS_MAX = SCTP_SS_RR 1156 }; 1157 1158 #endif /* _UAPI_SCTP_H */ 1159