1 /*- 2 * SPDX-License-Identifier: BSD-3-Clause 3 * 4 * Copyright (c) 1982, 1986, 1989, 1993 5 * The Regents of the University of California. All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 3. Neither the name of the University nor the names of its contributors 16 * may be used to endorse or promote products derived from this software 17 * without specific prior written permission. 18 * 19 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 * SUCH DAMAGE. 30 * 31 * From: @(#)if.h 8.1 (Berkeley) 6/10/93 32 */ 33 34 #ifndef _NET_IF_VAR_H_ 35 #define _NET_IF_VAR_H_ 36 37 /* 38 * Structures defining a network interface, providing a packet 39 * transport mechanism (ala level 0 of the PUP protocols). 40 * 41 * Each interface accepts output datagrams of a specified maximum 42 * length, and provides higher level routines with input datagrams 43 * received from its medium. 44 * 45 * Output occurs when the routine if_output is called, with three parameters: 46 * (*ifp->if_output)(ifp, m, dst, ro) 47 * Here m is the mbuf chain to be sent and dst is the destination address. 48 * The output routine encapsulates the supplied datagram if necessary, 49 * and then transmits it on its medium. 50 * 51 * On input, each interface unwraps the data received by it, and either 52 * places it on the input queue of an internetwork datagram routine 53 * and posts the associated software interrupt, or passes the datagram to a raw 54 * packet input routine. 55 * 56 * Routines exist for locating interfaces by their addresses 57 * or for locating an interface on a certain network, as well as more general 58 * routing and gateway routines maintaining information used to locate 59 * interfaces. These routines live in the files if.c and route.c 60 */ 61 62 struct rtentry; /* ifa_rtrequest */ 63 struct socket; 64 struct carp_if; 65 struct carp_softc; 66 struct ifvlantrunk; 67 struct route; /* if_output */ 68 struct vnet; 69 struct ifmedia; 70 struct netmap_adapter; 71 struct debugnet_methods; 72 73 #ifdef _KERNEL 74 #include <sys/_eventhandler.h> 75 #include <sys/mbuf.h> /* ifqueue only? */ 76 #include <sys/buf_ring.h> 77 #include <net/vnet.h> 78 #endif /* _KERNEL */ 79 #include <sys/ck.h> 80 #include <sys/counter.h> 81 #include <sys/epoch.h> 82 #include <sys/lock.h> /* XXX */ 83 #include <sys/mutex.h> /* struct ifqueue */ 84 #include <sys/rwlock.h> /* XXX */ 85 #include <sys/sx.h> /* XXX */ 86 #include <sys/_task.h> /* if_link_task */ 87 #define IF_DUNIT_NONE -1 88 89 #include <net/altq/if_altq.h> 90 91 CK_STAILQ_HEAD(ifnethead, ifnet); /* we use TAILQs so that the order of */ 92 CK_STAILQ_HEAD(ifaddrhead, ifaddr); /* instantiation is preserved in the list */ 93 CK_STAILQ_HEAD(ifmultihead, ifmultiaddr); 94 CK_STAILQ_HEAD(ifgrouphead, ifg_group); 95 96 #ifdef _KERNEL 97 VNET_DECLARE(struct pfil_head *, link_pfil_head); 98 #define V_link_pfil_head VNET(link_pfil_head) 99 #define PFIL_ETHER_NAME "ethernet" 100 101 #define HHOOK_IPSEC_INET 0 102 #define HHOOK_IPSEC_INET6 1 103 #define HHOOK_IPSEC_COUNT 2 104 VNET_DECLARE(struct hhook_head *, ipsec_hhh_in[HHOOK_IPSEC_COUNT]); 105 VNET_DECLARE(struct hhook_head *, ipsec_hhh_out[HHOOK_IPSEC_COUNT]); 106 #define V_ipsec_hhh_in VNET(ipsec_hhh_in) 107 #define V_ipsec_hhh_out VNET(ipsec_hhh_out) 108 #endif /* _KERNEL */ 109 110 typedef enum { 111 IFCOUNTER_IPACKETS = 0, 112 IFCOUNTER_IERRORS, 113 IFCOUNTER_OPACKETS, 114 IFCOUNTER_OERRORS, 115 IFCOUNTER_COLLISIONS, 116 IFCOUNTER_IBYTES, 117 IFCOUNTER_OBYTES, 118 IFCOUNTER_IMCASTS, 119 IFCOUNTER_OMCASTS, 120 IFCOUNTER_IQDROPS, 121 IFCOUNTER_OQDROPS, 122 IFCOUNTER_NOPROTO, 123 IFCOUNTERS /* Array size. */ 124 } ift_counter; 125 126 typedef struct ifnet * if_t; 127 128 typedef void (*if_start_fn_t)(if_t); 129 typedef int (*if_ioctl_fn_t)(if_t, u_long, caddr_t); 130 typedef void (*if_init_fn_t)(void *); 131 typedef void (*if_qflush_fn_t)(if_t); 132 typedef int (*if_transmit_fn_t)(if_t, struct mbuf *); 133 typedef uint64_t (*if_get_counter_t)(if_t, ift_counter); 134 135 struct ifnet_hw_tsomax { 136 u_int tsomaxbytes; /* TSO total burst length limit in bytes */ 137 u_int tsomaxsegcount; /* TSO maximum segment count */ 138 u_int tsomaxsegsize; /* TSO maximum segment size in bytes */ 139 }; 140 141 /* Interface encap request types */ 142 typedef enum { 143 IFENCAP_LL = 1 /* pre-calculate link-layer header */ 144 } ife_type; 145 146 /* 147 * The structure below allows to request various pre-calculated L2/L3 headers 148 * for different media. Requests varies by type (rtype field). 149 * 150 * IFENCAP_LL type: pre-calculates link header based on address family 151 * and destination lladdr. 152 * 153 * Input data fields: 154 * buf: pointer to destination buffer 155 * bufsize: buffer size 156 * flags: IFENCAP_FLAG_BROADCAST if destination is broadcast 157 * family: address family defined by AF_ constant. 158 * lladdr: pointer to link-layer address 159 * lladdr_len: length of link-layer address 160 * hdata: pointer to L3 header (optional, used for ARP requests). 161 * Output data fields: 162 * buf: encap data is stored here 163 * bufsize: resulting encap length is stored here 164 * lladdr_off: offset of link-layer address from encap hdr start 165 * hdata: L3 header may be altered if necessary 166 */ 167 168 struct if_encap_req { 169 u_char *buf; /* Destination buffer (w) */ 170 size_t bufsize; /* size of provided buffer (r) */ 171 ife_type rtype; /* request type (r) */ 172 uint32_t flags; /* Request flags (r) */ 173 int family; /* Address family AF_* (r) */ 174 int lladdr_off; /* offset from header start (w) */ 175 int lladdr_len; /* lladdr length (r) */ 176 char *lladdr; /* link-level address pointer (r) */ 177 char *hdata; /* Upper layer header data (rw) */ 178 }; 179 180 #define IFENCAP_FLAG_BROADCAST 0x02 /* Destination is broadcast */ 181 182 /* 183 * Network interface send tag support. The storage of "struct 184 * m_snd_tag" comes from the network driver and it is free to allocate 185 * as much additional space as it wants for its own use. 186 */ 187 struct ktls_session; 188 struct m_snd_tag; 189 190 #define IF_SND_TAG_TYPE_RATE_LIMIT 0 191 #define IF_SND_TAG_TYPE_UNLIMITED 1 192 #define IF_SND_TAG_TYPE_TLS 2 193 #define IF_SND_TAG_TYPE_TLS_RATE_LIMIT 3 194 #define IF_SND_TAG_TYPE_MAX 4 195 196 struct if_snd_tag_alloc_header { 197 uint32_t type; /* send tag type, see IF_SND_TAG_XXX */ 198 uint32_t flowid; /* mbuf hash value */ 199 uint32_t flowtype; /* mbuf hash type */ 200 uint8_t numa_domain; /* numa domain of associated inp */ 201 }; 202 203 struct if_snd_tag_alloc_rate_limit { 204 struct if_snd_tag_alloc_header hdr; 205 uint64_t max_rate; /* in bytes/s */ 206 uint32_t flags; /* M_NOWAIT or M_WAITOK */ 207 uint32_t reserved; /* alignment */ 208 }; 209 210 struct if_snd_tag_alloc_tls { 211 struct if_snd_tag_alloc_header hdr; 212 struct inpcb *inp; 213 const struct ktls_session *tls; 214 }; 215 216 struct if_snd_tag_alloc_tls_rate_limit { 217 struct if_snd_tag_alloc_header hdr; 218 struct inpcb *inp; 219 const struct ktls_session *tls; 220 uint64_t max_rate; /* in bytes/s */ 221 }; 222 223 struct if_snd_tag_rate_limit_params { 224 uint64_t max_rate; /* in bytes/s */ 225 uint32_t queue_level; /* 0 (empty) .. 65535 (full) */ 226 #define IF_SND_QUEUE_LEVEL_MIN 0 227 #define IF_SND_QUEUE_LEVEL_MAX 65535 228 uint32_t flags; /* M_NOWAIT or M_WAITOK */ 229 }; 230 231 union if_snd_tag_alloc_params { 232 struct if_snd_tag_alloc_header hdr; 233 struct if_snd_tag_alloc_rate_limit rate_limit; 234 struct if_snd_tag_alloc_rate_limit unlimited; 235 struct if_snd_tag_alloc_tls tls; 236 struct if_snd_tag_alloc_tls_rate_limit tls_rate_limit; 237 }; 238 239 union if_snd_tag_modify_params { 240 struct if_snd_tag_rate_limit_params rate_limit; 241 struct if_snd_tag_rate_limit_params unlimited; 242 struct if_snd_tag_rate_limit_params tls_rate_limit; 243 }; 244 245 union if_snd_tag_query_params { 246 struct if_snd_tag_rate_limit_params rate_limit; 247 struct if_snd_tag_rate_limit_params unlimited; 248 struct if_snd_tag_rate_limit_params tls_rate_limit; 249 }; 250 251 /* Query return flags */ 252 #define RT_NOSUPPORT 0x00000000 /* Not supported */ 253 #define RT_IS_INDIRECT 0x00000001 /* 254 * Interface like a lagg, select 255 * the actual interface for 256 * capabilities. 257 */ 258 #define RT_IS_SELECTABLE 0x00000002 /* 259 * No rate table, you select 260 * rates and the first 261 * number_of_rates are created. 262 */ 263 #define RT_IS_FIXED_TABLE 0x00000004 /* A fixed table is attached */ 264 #define RT_IS_UNUSABLE 0x00000008 /* It is not usable for this */ 265 #define RT_IS_SETUP_REQ 0x00000010 /* The interface setup must be called before use */ 266 267 struct if_ratelimit_query_results { 268 const uint64_t *rate_table; /* Pointer to table if present */ 269 uint32_t flags; /* Flags indicating results */ 270 uint32_t max_flows; /* Max flows using, 0=unlimited */ 271 uint32_t number_of_rates; /* How many unique rates can be created */ 272 uint32_t min_segment_burst; /* The amount the adapter bursts at each send */ 273 }; 274 275 typedef int (if_snd_tag_alloc_t)(struct ifnet *, union if_snd_tag_alloc_params *, 276 struct m_snd_tag **); 277 typedef int (if_snd_tag_modify_t)(struct m_snd_tag *, union if_snd_tag_modify_params *); 278 typedef int (if_snd_tag_query_t)(struct m_snd_tag *, union if_snd_tag_query_params *); 279 typedef void (if_snd_tag_free_t)(struct m_snd_tag *); 280 typedef struct m_snd_tag *(if_next_send_tag_t)(struct m_snd_tag *); 281 typedef void (if_ratelimit_query_t)(struct ifnet *, 282 struct if_ratelimit_query_results *); 283 typedef int (if_ratelimit_setup_t)(struct ifnet *, uint64_t, uint32_t); 284 285 /* 286 * Structure defining a network interface. 287 */ 288 struct ifnet { 289 /* General book keeping of interface lists. */ 290 CK_STAILQ_ENTRY(ifnet) if_link; /* all struct ifnets are chained (CK_) */ 291 LIST_ENTRY(ifnet) if_clones; /* interfaces of a cloner */ 292 CK_STAILQ_HEAD(, ifg_list) if_groups; /* linked list of groups per if (CK_) */ 293 /* protected by if_addr_lock */ 294 u_char if_alloctype; /* if_type at time of allocation */ 295 uint8_t if_numa_domain; /* NUMA domain of device */ 296 /* Driver and protocol specific information that remains stable. */ 297 void *if_softc; /* pointer to driver state */ 298 void *if_llsoftc; /* link layer softc */ 299 void *if_l2com; /* pointer to protocol bits */ 300 const char *if_dname; /* driver name */ 301 int if_dunit; /* unit or IF_DUNIT_NONE */ 302 u_short if_index; /* numeric abbreviation for this if */ 303 short if_index_reserved; /* spare space to grow if_index */ 304 char if_xname[IFNAMSIZ]; /* external name (name + unit) */ 305 char *if_description; /* interface description */ 306 307 /* Variable fields that are touched by the stack and drivers. */ 308 int if_flags; /* up/down, broadcast, etc. */ 309 int if_drv_flags; /* driver-managed status flags */ 310 int if_capabilities; /* interface features & capabilities */ 311 int if_capenable; /* enabled features & capabilities */ 312 void *if_linkmib; /* link-type-specific MIB data */ 313 size_t if_linkmiblen; /* length of above data */ 314 u_int if_refcount; /* reference count */ 315 316 /* These fields are shared with struct if_data. */ 317 uint8_t if_type; /* ethernet, tokenring, etc */ 318 uint8_t if_addrlen; /* media address length */ 319 uint8_t if_hdrlen; /* media header length */ 320 uint8_t if_link_state; /* current link state */ 321 uint32_t if_mtu; /* maximum transmission unit */ 322 uint32_t if_metric; /* routing metric (external only) */ 323 uint64_t if_baudrate; /* linespeed */ 324 uint64_t if_hwassist; /* HW offload capabilities, see IFCAP */ 325 time_t if_epoch; /* uptime at attach or stat reset */ 326 struct timeval if_lastchange; /* time of last administrative change */ 327 328 struct ifaltq if_snd; /* output queue (includes altq) */ 329 struct task if_linktask; /* task for link change events */ 330 struct task if_addmultitask; /* task for SIOCADDMULTI */ 331 332 /* Addresses of different protocol families assigned to this if. */ 333 struct mtx if_addr_lock; /* lock to protect address lists */ 334 /* 335 * if_addrhead is the list of all addresses associated to 336 * an interface. 337 * Some code in the kernel assumes that first element 338 * of the list has type AF_LINK, and contains sockaddr_dl 339 * addresses which store the link-level address and the name 340 * of the interface. 341 * However, access to the AF_LINK address through this 342 * field is deprecated. Use if_addr or ifaddr_byindex() instead. 343 */ 344 struct ifaddrhead if_addrhead; /* linked list of addresses per if */ 345 struct ifmultihead if_multiaddrs; /* multicast addresses configured */ 346 int if_amcount; /* number of all-multicast requests */ 347 struct ifaddr *if_addr; /* pointer to link-level address */ 348 void *if_hw_addr; /* hardware link-level address */ 349 const u_int8_t *if_broadcastaddr; /* linklevel broadcast bytestring */ 350 struct mtx if_afdata_lock; 351 void *if_afdata[AF_MAX]; 352 int if_afdata_initialized; 353 354 /* Additional features hung off the interface. */ 355 u_int if_fib; /* interface FIB */ 356 struct vnet *if_vnet; /* pointer to network stack instance */ 357 struct vnet *if_home_vnet; /* where this ifnet originates from */ 358 struct ifvlantrunk *if_vlantrunk; /* pointer to 802.1q data */ 359 struct bpf_if *if_bpf; /* packet filter structure */ 360 int if_pcount; /* number of promiscuous listeners */ 361 void *if_bridge; /* bridge glue */ 362 void *if_lagg; /* lagg glue */ 363 void *if_pf_kif; /* pf glue */ 364 struct carp_if *if_carp; /* carp interface structure */ 365 struct label *if_label; /* interface MAC label */ 366 struct netmap_adapter *if_netmap; /* netmap(4) softc */ 367 368 /* Various procedures of the layer2 encapsulation and drivers. */ 369 int (*if_output) /* output routine (enqueue) */ 370 (struct ifnet *, struct mbuf *, const struct sockaddr *, 371 struct route *); 372 void (*if_input) /* input routine (from h/w driver) */ 373 (struct ifnet *, struct mbuf *); 374 struct mbuf *(*if_bridge_input)(struct ifnet *, struct mbuf *); 375 int (*if_bridge_output)(struct ifnet *, struct mbuf *, struct sockaddr *, 376 struct rtentry *); 377 void (*if_bridge_linkstate)(struct ifnet *ifp); 378 if_start_fn_t if_start; /* initiate output routine */ 379 if_ioctl_fn_t if_ioctl; /* ioctl routine */ 380 if_init_fn_t if_init; /* Init routine */ 381 int (*if_resolvemulti) /* validate/resolve multicast */ 382 (struct ifnet *, struct sockaddr **, struct sockaddr *); 383 if_qflush_fn_t if_qflush; /* flush any queue */ 384 if_transmit_fn_t if_transmit; /* initiate output routine */ 385 386 void (*if_reassign) /* reassign to vnet routine */ 387 (struct ifnet *, struct vnet *, char *); 388 if_get_counter_t if_get_counter; /* get counter values */ 389 int (*if_requestencap) /* make link header from request */ 390 (struct ifnet *, struct if_encap_req *); 391 392 /* Statistics. */ 393 counter_u64_t if_counters[IFCOUNTERS]; 394 395 /* Stuff that's only temporary and doesn't belong here. */ 396 397 /* 398 * Network adapter TSO limits: 399 * =========================== 400 * 401 * If the "if_hw_tsomax" field is zero the maximum segment 402 * length limit does not apply. If the "if_hw_tsomaxsegcount" 403 * or the "if_hw_tsomaxsegsize" field is zero the TSO segment 404 * count limit does not apply. If all three fields are zero, 405 * there is no TSO limit. 406 * 407 * NOTE: The TSO limits should reflect the values used in the 408 * BUSDMA tag a network adapter is using to load a mbuf chain 409 * for transmission. The TCP/IP network stack will subtract 410 * space for all linklevel and protocol level headers and 411 * ensure that the full mbuf chain passed to the network 412 * adapter fits within the given limits. 413 */ 414 u_int if_hw_tsomax; /* TSO maximum size in bytes */ 415 u_int if_hw_tsomaxsegcount; /* TSO maximum segment count */ 416 u_int if_hw_tsomaxsegsize; /* TSO maximum segment size in bytes */ 417 418 /* 419 * Network adapter send tag support: 420 */ 421 if_snd_tag_alloc_t *if_snd_tag_alloc; 422 if_snd_tag_modify_t *if_snd_tag_modify; 423 if_snd_tag_query_t *if_snd_tag_query; 424 if_snd_tag_free_t *if_snd_tag_free; 425 if_next_send_tag_t *if_next_snd_tag; 426 if_ratelimit_query_t *if_ratelimit_query; 427 if_ratelimit_setup_t *if_ratelimit_setup; 428 429 /* Ethernet PCP */ 430 uint8_t if_pcp; 431 432 /* 433 * Debugnet (Netdump) hooks to be called while in db/panic. 434 */ 435 struct debugnet_methods *if_debugnet_methods; 436 struct epoch_context if_epoch_ctx; 437 438 /* 439 * Spare fields to be added before branching a stable branch, so 440 * that structure can be enhanced without changing the kernel 441 * binary interface. 442 */ 443 int if_ispare[4]; /* general use */ 444 }; 445 446 /* for compatibility with other BSDs */ 447 #define if_name(ifp) ((ifp)->if_xname) 448 449 #define IF_NODOM 255 450 /* 451 * Locks for address lists on the network interface. 452 */ 453 #define IF_ADDR_LOCK_INIT(if) mtx_init(&(if)->if_addr_lock, "if_addr_lock", NULL, MTX_DEF) 454 #define IF_ADDR_LOCK_DESTROY(if) mtx_destroy(&(if)->if_addr_lock) 455 456 #define IF_ADDR_WLOCK(if) mtx_lock(&(if)->if_addr_lock) 457 #define IF_ADDR_WUNLOCK(if) mtx_unlock(&(if)->if_addr_lock) 458 #define IF_ADDR_LOCK_ASSERT(if) MPASS(in_epoch(net_epoch_preempt) || mtx_owned(&(if)->if_addr_lock)) 459 #define IF_ADDR_WLOCK_ASSERT(if) mtx_assert(&(if)->if_addr_lock, MA_OWNED) 460 461 #ifdef _KERNEL 462 /* interface link layer address change event */ 463 typedef void (*iflladdr_event_handler_t)(void *, struct ifnet *); 464 EVENTHANDLER_DECLARE(iflladdr_event, iflladdr_event_handler_t); 465 /* interface address change event */ 466 typedef void (*ifaddr_event_handler_t)(void *, struct ifnet *); 467 EVENTHANDLER_DECLARE(ifaddr_event, ifaddr_event_handler_t); 468 typedef void (*ifaddr_event_ext_handler_t)(void *, struct ifnet *, 469 struct ifaddr *, int); 470 EVENTHANDLER_DECLARE(ifaddr_event_ext, ifaddr_event_ext_handler_t); 471 #define IFADDR_EVENT_ADD 0 472 #define IFADDR_EVENT_DEL 1 473 /* new interface arrival event */ 474 typedef void (*ifnet_arrival_event_handler_t)(void *, struct ifnet *); 475 EVENTHANDLER_DECLARE(ifnet_arrival_event, ifnet_arrival_event_handler_t); 476 /* interface departure event */ 477 typedef void (*ifnet_departure_event_handler_t)(void *, struct ifnet *); 478 EVENTHANDLER_DECLARE(ifnet_departure_event, ifnet_departure_event_handler_t); 479 /* Interface link state change event */ 480 typedef void (*ifnet_link_event_handler_t)(void *, struct ifnet *, int); 481 EVENTHANDLER_DECLARE(ifnet_link_event, ifnet_link_event_handler_t); 482 /* Interface up/down event */ 483 #define IFNET_EVENT_UP 0 484 #define IFNET_EVENT_DOWN 1 485 #define IFNET_EVENT_PCP 2 /* priority code point, PCP */ 486 #define IFNET_EVENT_UPDATE_BAUDRATE 3 487 488 typedef void (*ifnet_event_fn)(void *, struct ifnet *ifp, int event); 489 EVENTHANDLER_DECLARE(ifnet_event, ifnet_event_fn); 490 491 /* 492 * interface groups 493 */ 494 struct ifg_group { 495 char ifg_group[IFNAMSIZ]; 496 u_int ifg_refcnt; 497 void *ifg_pf_kif; 498 CK_STAILQ_HEAD(, ifg_member) ifg_members; /* (CK_) */ 499 CK_STAILQ_ENTRY(ifg_group) ifg_next; /* (CK_) */ 500 }; 501 502 struct ifg_member { 503 CK_STAILQ_ENTRY(ifg_member) ifgm_next; /* (CK_) */ 504 struct ifnet *ifgm_ifp; 505 }; 506 507 struct ifg_list { 508 struct ifg_group *ifgl_group; 509 CK_STAILQ_ENTRY(ifg_list) ifgl_next; /* (CK_) */ 510 }; 511 512 #ifdef _SYS_EVENTHANDLER_H_ 513 /* group attach event */ 514 typedef void (*group_attach_event_handler_t)(void *, struct ifg_group *); 515 EVENTHANDLER_DECLARE(group_attach_event, group_attach_event_handler_t); 516 /* group detach event */ 517 typedef void (*group_detach_event_handler_t)(void *, struct ifg_group *); 518 EVENTHANDLER_DECLARE(group_detach_event, group_detach_event_handler_t); 519 /* group change event */ 520 typedef void (*group_change_event_handler_t)(void *, const char *); 521 EVENTHANDLER_DECLARE(group_change_event, group_change_event_handler_t); 522 #endif /* _SYS_EVENTHANDLER_H_ */ 523 524 #define IF_AFDATA_LOCK_INIT(ifp) \ 525 mtx_init(&(ifp)->if_afdata_lock, "if_afdata", NULL, MTX_DEF) 526 527 #define IF_AFDATA_WLOCK(ifp) mtx_lock(&(ifp)->if_afdata_lock) 528 #define IF_AFDATA_WUNLOCK(ifp) mtx_unlock(&(ifp)->if_afdata_lock) 529 #define IF_AFDATA_LOCK(ifp) IF_AFDATA_WLOCK(ifp) 530 #define IF_AFDATA_UNLOCK(ifp) IF_AFDATA_WUNLOCK(ifp) 531 #define IF_AFDATA_TRYLOCK(ifp) mtx_trylock(&(ifp)->if_afdata_lock) 532 #define IF_AFDATA_DESTROY(ifp) mtx_destroy(&(ifp)->if_afdata_lock) 533 534 #define IF_AFDATA_LOCK_ASSERT(ifp) MPASS(in_epoch(net_epoch_preempt) || mtx_owned(&(ifp)->if_afdata_lock)) 535 #define IF_AFDATA_WLOCK_ASSERT(ifp) mtx_assert(&(ifp)->if_afdata_lock, MA_OWNED) 536 #define IF_AFDATA_UNLOCK_ASSERT(ifp) mtx_assert(&(ifp)->if_afdata_lock, MA_NOTOWNED) 537 538 /* 539 * 72 was chosen below because it is the size of a TCP/IP 540 * header (40) + the minimum mss (32). 541 */ 542 #define IF_MINMTU 72 543 #define IF_MAXMTU 65535 544 545 #define TOEDEV(ifp) ((ifp)->if_llsoftc) 546 547 /* 548 * The ifaddr structure contains information about one address 549 * of an interface. They are maintained by the different address families, 550 * are allocated and attached when an address is set, and are linked 551 * together so all addresses for an interface can be located. 552 * 553 * NOTE: a 'struct ifaddr' is always at the beginning of a larger 554 * chunk of malloc'ed memory, where we store the three addresses 555 * (ifa_addr, ifa_dstaddr and ifa_netmask) referenced here. 556 */ 557 struct ifaddr { 558 struct sockaddr *ifa_addr; /* address of interface */ 559 struct sockaddr *ifa_dstaddr; /* other end of p-to-p link */ 560 #define ifa_broadaddr ifa_dstaddr /* broadcast address interface */ 561 struct sockaddr *ifa_netmask; /* used to determine subnet */ 562 struct ifnet *ifa_ifp; /* back-pointer to interface */ 563 struct carp_softc *ifa_carp; /* pointer to CARP data */ 564 CK_STAILQ_ENTRY(ifaddr) ifa_link; /* queue macro glue */ 565 u_short ifa_flags; /* mostly rt_flags for cloning */ 566 #define IFA_ROUTE RTF_UP /* route installed */ 567 #define IFA_RTSELF RTF_HOST /* loopback route to self installed */ 568 u_int ifa_refcnt; /* references to this structure */ 569 570 counter_u64_t ifa_ipackets; 571 counter_u64_t ifa_opackets; 572 counter_u64_t ifa_ibytes; 573 counter_u64_t ifa_obytes; 574 struct epoch_context ifa_epoch_ctx; 575 }; 576 577 struct ifaddr * ifa_alloc(size_t size, int flags); 578 void ifa_free(struct ifaddr *ifa); 579 void ifa_ref(struct ifaddr *ifa); 580 int __result_use_check ifa_try_ref(struct ifaddr *ifa); 581 582 /* 583 * Multicast address structure. This is analogous to the ifaddr 584 * structure except that it keeps track of multicast addresses. 585 */ 586 #define IFMA_F_ENQUEUED 0x1 587 struct ifmultiaddr { 588 CK_STAILQ_ENTRY(ifmultiaddr) ifma_link; /* queue macro glue */ 589 struct sockaddr *ifma_addr; /* address this membership is for */ 590 struct sockaddr *ifma_lladdr; /* link-layer translation, if any */ 591 struct ifnet *ifma_ifp; /* back-pointer to interface */ 592 u_int ifma_refcount; /* reference count */ 593 int ifma_flags; 594 void *ifma_protospec; /* protocol-specific state, if any */ 595 struct ifmultiaddr *ifma_llifma; /* pointer to ifma for ifma_lladdr */ 596 struct epoch_context ifma_epoch_ctx; 597 }; 598 599 extern struct sx ifnet_sxlock; 600 601 #define IFNET_WLOCK() sx_xlock(&ifnet_sxlock) 602 #define IFNET_WUNLOCK() sx_xunlock(&ifnet_sxlock) 603 #define IFNET_RLOCK_ASSERT() sx_assert(&ifnet_sxlock, SA_SLOCKED) 604 #define IFNET_WLOCK_ASSERT() sx_assert(&ifnet_sxlock, SA_XLOCKED) 605 #define IFNET_RLOCK() sx_slock(&ifnet_sxlock) 606 #define IFNET_RUNLOCK() sx_sunlock(&ifnet_sxlock) 607 608 /* 609 * Look up an ifnet given its index; the _ref variant also acquires a 610 * reference that must be freed using if_rele(). It is almost always a bug 611 * to call ifnet_byindex() instead of ifnet_byindex_ref(). 612 */ 613 struct ifnet *ifnet_byindex(u_short idx); 614 struct ifnet *ifnet_byindex_ref(u_short idx); 615 616 /* 617 * Given the index, ifaddr_byindex() returns the one and only 618 * link-level ifaddr for the interface. You are not supposed to use 619 * it to traverse the list of addresses associated to the interface. 620 */ 621 struct ifaddr *ifaddr_byindex(u_short idx); 622 623 VNET_DECLARE(struct ifnethead, ifnet); 624 VNET_DECLARE(struct ifgrouphead, ifg_head); 625 VNET_DECLARE(int, if_index); 626 VNET_DECLARE(struct ifnet *, loif); /* first loopback interface */ 627 628 #define V_ifnet VNET(ifnet) 629 #define V_ifg_head VNET(ifg_head) 630 #define V_if_index VNET(if_index) 631 #define V_loif VNET(loif) 632 633 #ifdef MCAST_VERBOSE 634 #define MCDPRINTF printf 635 #else 636 #define MCDPRINTF(...) 637 #endif 638 639 int if_addgroup(struct ifnet *, const char *); 640 int if_delgroup(struct ifnet *, const char *); 641 int if_addmulti(struct ifnet *, struct sockaddr *, struct ifmultiaddr **); 642 int if_allmulti(struct ifnet *, int); 643 struct ifnet* if_alloc(u_char); 644 struct ifnet* if_alloc_dev(u_char, device_t dev); 645 struct ifnet* if_alloc_domain(u_char, int numa_domain); 646 void if_attach(struct ifnet *); 647 void if_dead(struct ifnet *); 648 int if_delmulti(struct ifnet *, struct sockaddr *); 649 void if_delmulti_ifma(struct ifmultiaddr *); 650 void if_delmulti_ifma_flags(struct ifmultiaddr *, int flags); 651 void if_detach(struct ifnet *); 652 void if_purgeaddrs(struct ifnet *); 653 void if_delallmulti(struct ifnet *); 654 void if_down(struct ifnet *); 655 struct ifmultiaddr * 656 if_findmulti(struct ifnet *, const struct sockaddr *); 657 void if_freemulti(struct ifmultiaddr *ifma); 658 void if_free(struct ifnet *); 659 void if_initname(struct ifnet *, const char *, int); 660 void if_link_state_change(struct ifnet *, int); 661 int if_printf(struct ifnet *, const char *, ...) __printflike(2, 3); 662 int if_log(struct ifnet *, int, const char *, ...) __printflike(3, 4); 663 void if_ref(struct ifnet *); 664 void if_rele(struct ifnet *); 665 bool __result_use_check if_try_ref(struct ifnet *); 666 int if_setlladdr(struct ifnet *, const u_char *, int); 667 int if_tunnel_check_nesting(struct ifnet *, struct mbuf *, uint32_t, int); 668 void if_up(struct ifnet *); 669 int ifioctl(struct socket *, u_long, caddr_t, struct thread *); 670 int ifpromisc(struct ifnet *, int); 671 struct ifnet *ifunit(const char *); 672 struct ifnet *ifunit_ref(const char *); 673 674 int ifa_add_loopback_route(struct ifaddr *, struct sockaddr *); 675 int ifa_del_loopback_route(struct ifaddr *, struct sockaddr *); 676 int ifa_switch_loopback_route(struct ifaddr *, struct sockaddr *); 677 678 struct ifaddr *ifa_ifwithaddr(const struct sockaddr *); 679 int ifa_ifwithaddr_check(const struct sockaddr *); 680 struct ifaddr *ifa_ifwithbroadaddr(const struct sockaddr *, int); 681 struct ifaddr *ifa_ifwithdstaddr(const struct sockaddr *, int); 682 struct ifaddr *ifa_ifwithnet(const struct sockaddr *, int, int); 683 struct ifaddr *ifa_ifwithroute(int, const struct sockaddr *, 684 const struct sockaddr *, u_int); 685 struct ifaddr *ifaof_ifpforaddr(const struct sockaddr *, struct ifnet *); 686 int ifa_preferred(struct ifaddr *, struct ifaddr *); 687 688 int if_simloop(struct ifnet *ifp, struct mbuf *m, int af, int hlen); 689 690 typedef void *if_com_alloc_t(u_char type, struct ifnet *ifp); 691 typedef void if_com_free_t(void *com, u_char type); 692 void if_register_com_alloc(u_char type, if_com_alloc_t *a, if_com_free_t *f); 693 void if_deregister_com_alloc(u_char type); 694 void if_data_copy(struct ifnet *, struct if_data *); 695 uint64_t if_get_counter_default(struct ifnet *, ift_counter); 696 void if_inc_counter(struct ifnet *, ift_counter, int64_t); 697 698 #define IF_LLADDR(ifp) \ 699 LLADDR((struct sockaddr_dl *)((ifp)->if_addr->ifa_addr)) 700 701 uint64_t if_setbaudrate(if_t ifp, uint64_t baudrate); 702 uint64_t if_getbaudrate(if_t ifp); 703 int if_setcapabilities(if_t ifp, int capabilities); 704 int if_setcapabilitiesbit(if_t ifp, int setbit, int clearbit); 705 int if_getcapabilities(if_t ifp); 706 int if_togglecapenable(if_t ifp, int togglecap); 707 int if_setcapenable(if_t ifp, int capenable); 708 int if_setcapenablebit(if_t ifp, int setcap, int clearcap); 709 int if_getcapenable(if_t ifp); 710 const char *if_getdname(if_t ifp); 711 void if_setdescr(if_t ifp, char *descrbuf); 712 char *if_allocdescr(size_t sz, int malloc_flag); 713 void if_freedescr(char *descrbuf); 714 int if_setdev(if_t ifp, void *dev); 715 int if_setdrvflagbits(if_t ifp, int if_setflags, int clear_flags); 716 int if_getdrvflags(if_t ifp); 717 int if_setdrvflags(if_t ifp, int flags); 718 int if_clearhwassist(if_t ifp); 719 int if_sethwassistbits(if_t ifp, int toset, int toclear); 720 int if_sethwassist(if_t ifp, int hwassist_bit); 721 int if_gethwassist(if_t ifp); 722 int if_setsoftc(if_t ifp, void *softc); 723 void *if_getsoftc(if_t ifp); 724 int if_setflags(if_t ifp, int flags); 725 int if_gethwaddr(if_t ifp, struct ifreq *); 726 int if_setmtu(if_t ifp, int mtu); 727 int if_getmtu(if_t ifp); 728 int if_getmtu_family(if_t ifp, int family); 729 int if_setflagbits(if_t ifp, int set, int clear); 730 int if_getflags(if_t ifp); 731 int if_sendq_empty(if_t ifp); 732 int if_setsendqready(if_t ifp); 733 int if_setsendqlen(if_t ifp, int tx_desc_count); 734 int if_sethwtsomax(if_t ifp, u_int if_hw_tsomax); 735 int if_sethwtsomaxsegcount(if_t ifp, u_int if_hw_tsomaxsegcount); 736 int if_sethwtsomaxsegsize(if_t ifp, u_int if_hw_tsomaxsegsize); 737 u_int if_gethwtsomax(if_t ifp); 738 u_int if_gethwtsomaxsegcount(if_t ifp); 739 u_int if_gethwtsomaxsegsize(if_t ifp); 740 int if_input(if_t ifp, struct mbuf* sendmp); 741 int if_sendq_prepend(if_t ifp, struct mbuf *m); 742 struct mbuf *if_dequeue(if_t ifp); 743 int if_setifheaderlen(if_t ifp, int len); 744 void if_setrcvif(struct mbuf *m, if_t ifp); 745 void if_setvtag(struct mbuf *m, u_int16_t tag); 746 u_int16_t if_getvtag(struct mbuf *m); 747 int if_vlantrunkinuse(if_t ifp); 748 caddr_t if_getlladdr(if_t ifp); 749 void *if_gethandle(u_char); 750 void if_bpfmtap(if_t ifp, struct mbuf *m); 751 void if_etherbpfmtap(if_t ifp, struct mbuf *m); 752 void if_vlancap(if_t ifp); 753 754 /* 755 * Traversing through interface address lists. 756 */ 757 struct sockaddr_dl; 758 typedef u_int iflladdr_cb_t(void *, struct sockaddr_dl *, u_int); 759 u_int if_foreach_lladdr(if_t, iflladdr_cb_t, void *); 760 u_int if_foreach_llmaddr(if_t, iflladdr_cb_t, void *); 761 u_int if_lladdr_count(if_t); 762 u_int if_llmaddr_count(if_t); 763 764 struct ifaddr * if_getifaddr(if_t ifp); 765 766 /* Functions */ 767 void if_setinitfn(if_t ifp, void (*)(void *)); 768 void if_setioctlfn(if_t ifp, int (*)(if_t, u_long, caddr_t)); 769 void if_setstartfn(if_t ifp, void (*)(if_t)); 770 void if_settransmitfn(if_t ifp, if_transmit_fn_t); 771 void if_setqflushfn(if_t ifp, if_qflush_fn_t); 772 void if_setgetcounterfn(if_t ifp, if_get_counter_t); 773 774 /* Revisit the below. These are inline functions originally */ 775 int drbr_inuse_drv(if_t ifp, struct buf_ring *br); 776 struct mbuf* drbr_dequeue_drv(if_t ifp, struct buf_ring *br); 777 int drbr_needs_enqueue_drv(if_t ifp, struct buf_ring *br); 778 int drbr_enqueue_drv(if_t ifp, struct buf_ring *br, struct mbuf *m); 779 780 /* TSO */ 781 void if_hw_tsomax_common(if_t ifp, struct ifnet_hw_tsomax *); 782 int if_hw_tsomax_update(if_t ifp, struct ifnet_hw_tsomax *); 783 784 /* accessors for struct ifreq */ 785 void *ifr_data_get_ptr(void *ifrp); 786 void *ifr_buffer_get_buffer(void *data); 787 size_t ifr_buffer_get_length(void *data); 788 789 int ifhwioctl(u_long, struct ifnet *, caddr_t, struct thread *); 790 791 #ifdef DEVICE_POLLING 792 enum poll_cmd { POLL_ONLY, POLL_AND_CHECK_STATUS }; 793 794 typedef int poll_handler_t(if_t ifp, enum poll_cmd cmd, int count); 795 int ether_poll_register(poll_handler_t *h, if_t ifp); 796 int ether_poll_deregister(if_t ifp); 797 #endif /* DEVICE_POLLING */ 798 799 #endif /* _KERNEL */ 800 801 #include <net/ifq.h> /* XXXAO: temporary unconditional include */ 802 803 #endif /* !_NET_IF_VAR_H_ */ 804