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1 /*
2 * Copyright (c) 2000-2019 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28 /*
29 * Copyright (c) 1982, 1986, 1990, 1993
30 * The Regents of the University of California. All rights reserved.
31 *
32 * Redistribution and use in source and binary forms, with or without
33 * modification, are permitted provided that the following conditions
34 * are met:
35 * 1. Redistributions of source code must retain the above copyright
36 * notice, this list of conditions and the following disclaimer.
37 * 2. Redistributions in binary form must reproduce the above copyright
38 * notice, this list of conditions and the following disclaimer in the
39 * documentation and/or other materials provided with the distribution.
40 * 3. All advertising materials mentioning features or use of this software
41 * must display the following acknowledgement:
42 * This product includes software developed by the University of
43 * California, Berkeley and its contributors.
44 * 4. Neither the name of the University nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 * SUCH DAMAGE.
59 *
60 * @(#)in_pcb.h 8.1 (Berkeley) 6/10/93
61 * $FreeBSD: src/sys/netinet/in_pcb.h,v 1.32.2.4 2001/08/13 16:26:17 ume Exp $
62 */
63 /*
64 * NOTICE: This file was modified by SPARTA, Inc. in 2007 to introduce
65 * support for mandatory and extensible security protections. This notice
66 * is included in support of clause 2.2 (b) of the Apple Public License,
67 * Version 2.0.
68 */
69
70 #ifndef _NETINET_IN_PCB_H_
71 #define _NETINET_IN_PCB_H_
72 #include <sys/appleapiopts.h>
73
74 #include <sys/types.h>
75 #include <sys/queue.h>
76 #ifdef BSD_KERNEL_PRIVATE
77 #include <sys/bitstring.h>
78 #include <sys/tree.h>
79 #include <kern/locks.h>
80 #include <kern/zalloc.h>
81 #include <netinet/in_stat.h>
82 #endif /* BSD_KERNEL_PRIVATE */
83
84 #if IPSEC
85 #include <netinet6/ipsec.h> /* for IPSEC */
86 #endif /* IPSEC */
87
88 #if NECP
89 #include <net/necp.h>
90 #endif
91
92
93 #ifdef BSD_KERNEL_PRIVATE
94 /*
95 * struct inpcb is the common protocol control block structure used in most
96 * IP transport protocols.
97 *
98 * Pointers to local and foreign host table entries, local and foreign socket
99 * numbers, and pointers up (to a socket structure) and down (to a
100 * protocol-specific control block) are stored here.
101 */
102 LIST_HEAD(inpcbhead, inpcb);
103 LIST_HEAD(inpcbporthead, inpcbport);
104 #endif /* BSD_KERNEL_PRIVATE */
105 typedef u_quad_t inp_gen_t;
106
107 /*
108 * PCB with AF_INET6 null bind'ed laddr can receive AF_INET input packet.
109 * So, AF_INET6 null laddr is also used as AF_INET null laddr, by utilizing
110 * the following structure.
111 */
112 struct in_addr_4in6 {
113 u_int32_t ia46_pad32[3];
114 struct in_addr ia46_addr4;
115 };
116
117 #ifdef BSD_KERNEL_PRIVATE
118 /*
119 * NB: the zone allocator is type-stable EXCEPT FOR THE FIRST TWO LONGS
120 * of the structure. Therefore, it is important that the members in
121 * that position not contain any information which is required to be
122 * stable.
123 */
124 struct icmp6_filter;
125 #if CONFIG_MACF_NET
126 struct label;
127 #endif
128 struct ifnet;
129
130 struct inp_stat {
131 u_int64_t rxpackets;
132 u_int64_t rxbytes;
133 u_int64_t txpackets;
134 u_int64_t txbytes;
135 };
136
137 /*
138 * struct inpcb captures the network layer state for TCP, UDP and raw IPv6
139 * and IPv6 sockets. In the case of TCP, further per-connection state is
140 * hung off of inp_ppcb most of the time.
141 */
142 struct inpcb {
143 decl_lck_mtx_data(, inpcb_mtx); /* inpcb per-socket mutex */
144 LIST_ENTRY(inpcb) inp_hash; /* hash list */
145 LIST_ENTRY(inpcb) inp_list; /* list for all PCBs of this proto */
146 void *inp_ppcb; /* pointer to per-protocol pcb */
147 struct inpcbinfo *inp_pcbinfo; /* PCB list info */
148 struct socket *inp_socket; /* back pointer to socket */
149 LIST_ENTRY(inpcb) inp_portlist; /* list for this PCB's local port */
150 RB_ENTRY(inpcb) infc_link; /* link for flowhash RB tree */
151 struct inpcbport *inp_phd; /* head of this list */
152 inp_gen_t inp_gencnt; /* generation count of this instance */
153 int inp_hash_element; /* array index of pcb's hash list */
154 int inp_wantcnt; /* wanted count; atomically updated */
155 int inp_state; /* state (INUSE/CACHED/DEAD) */
156 u_short inp_fport; /* foreign port */
157 u_short inp_lport; /* local port */
158 u_int32_t inp_flags; /* generic IP/datagram flags */
159 u_int32_t inp_flags2; /* generic IP/datagram flags #2 */
160 u_int32_t inp_flow; /* IPv6 flow information */
161
162 u_char inp_sndinprog_cnt; /* outstanding send operations */
163 uint32_t inp_sndingprog_waiters;/* waiters for outstanding send */
164 u_char inp_vflag; /* INP_IPV4 or INP_IPV6 */
165
166 u_char inp_ip_ttl; /* time to live proto */
167 u_char inp_ip_p; /* protocol proto */
168
169 struct ifnet *inp_boundifp; /* interface for INP_BOUND_IF */
170 struct ifnet *inp_last_outifp; /* last known outgoing interface */
171 u_int32_t inp_flowhash; /* flow hash */
172
173 /* Protocol-dependent part */
174 union {
175 /* foreign host table entry */
176 struct in_addr_4in6 inp46_foreign;
177 struct in6_addr inp6_foreign;
178 } inp_dependfaddr;
179 union {
180 /* local host table entry */
181 struct in_addr_4in6 inp46_local;
182 struct in6_addr inp6_local;
183 } inp_dependladdr;
184 union {
185 /* placeholder for routing entry */
186 struct route inp4_route;
187 struct route_in6 inp6_route;
188 } inp_dependroute;
189 struct {
190 /* type of service proto */
191 u_char inp4_ip_tos;
192 /* IP options */
193 struct mbuf *inp4_options;
194 /* IP multicast options */
195 struct ip_moptions *inp4_moptions;
196 } inp_depend4;
197 struct {
198 /* IP options */
199 struct mbuf *inp6_options;
200 /* IP6 options for outgoing packets */
201 struct ip6_pktopts *inp6_outputopts;
202 /* IP multicast options */
203 struct ip6_moptions *inp6_moptions;
204 /* ICMPv6 code type filter */
205 struct icmp6_filter *inp6_icmp6filt;
206 /* IPV6_CHECKSUM setsockopt */
207 int inp6_cksum;
208 short inp6_hops;
209 } inp_depend6;
210
211 caddr_t inp_saved_ppcb; /* place to save pointer while cached */
212 #if CONFIG_MACF_NET
213 struct label *inp_label; /* MAC label */
214 #endif
215 #if IPSEC
216 struct inpcbpolicy *inp_sp; /* for IPsec */
217 #endif /* IPSEC */
218 #if NECP
219 struct {
220 char *inp_domain;
221 char *inp_account;
222 } inp_necp_attributes;
223 struct necp_inpcb_result inp_policyresult;
224 uuid_t necp_client_uuid;
225 necp_client_flow_cb necp_cb;
226 #endif
227 u_char *inp_keepalive_data; /* for keepalive offload */
228 u_int8_t inp_keepalive_datalen; /* keepalive data length */
229 u_int8_t inp_keepalive_type; /* type of application */
230 u_int16_t inp_keepalive_interval; /* keepalive interval */
231 uint32_t inp_nstat_refcnt __attribute__((aligned(4)));
232 struct inp_stat *inp_stat;
233 struct inp_stat *inp_cstat; /* cellular data */
234 struct inp_stat *inp_wstat; /* Wi-Fi data */
235 struct inp_stat *inp_Wstat; /* Wired data */
236 u_int8_t inp_stat_store[sizeof(struct inp_stat) + sizeof(u_int64_t)];
237 u_int8_t inp_cstat_store[sizeof(struct inp_stat) + sizeof(u_int64_t)];
238 u_int8_t inp_wstat_store[sizeof(struct inp_stat) + sizeof(u_int64_t)];
239 u_int8_t inp_Wstat_store[sizeof(struct inp_stat) + sizeof(u_int64_t)];
240 activity_bitmap_t inp_nw_activity;
241 u_int64_t inp_start_timestamp;
242
243 char inp_last_proc_name[MAXCOMLEN + 1];
244 char inp_e_proc_name[MAXCOMLEN + 1];
245 };
246
247 #define INP_ADD_STAT(_inp, _cnt_cellular, _cnt_wifi, _cnt_wired, _a, _n) \
248 do { \
249 locked_add_64(&((_inp)->inp_stat->_a), (_n)); \
250 if (_cnt_cellular) \
251 locked_add_64(&((_inp)->inp_cstat->_a), (_n)); \
252 if (_cnt_wifi) \
253 locked_add_64(&((_inp)->inp_wstat->_a), (_n)); \
254 if (_cnt_wired) \
255 locked_add_64(&((_inp)->inp_Wstat->_a), (_n)); \
256 } while (0);
257 #endif /* BSD_KERNEL_PRIVATE */
258
259 /*
260 * Interface exported to userland by various protocols which use
261 * inpcbs. Hack alert -- only define if struct xsocket is in scope.
262 */
263 #pragma pack(4)
264
265 #if defined(__LP64__)
266 struct _inpcb_list_entry {
267 u_int32_t le_next;
268 u_int32_t le_prev;
269 };
270 #define _INPCB_PTR(x) u_int32_t
271 #define _INPCB_LIST_ENTRY(x) struct _inpcb_list_entry
272 #else /* !__LP64__ */
273 #define _INPCB_PTR(x) x
274 #define _INPCB_LIST_ENTRY(x) LIST_ENTRY(x)
275 #endif /* !__LP64__ */
276
277 #ifdef XNU_KERNEL_PRIVATE
278 /*
279 * This is a copy of the inpcb as it shipped in Panther. This structure
280 * is filled out in a copy function. This allows the inpcb to change
281 * without breaking userland tools.
282 *
283 * CAUTION: Many fields may not be filled out. Fewer may be filled out
284 * in the future. Code defensively.
285 */
286 struct inpcb_compat {
287 #else
288 struct inpcbinfo;
289 struct inpcbport;
290 struct mbuf;
291 struct ip6_pktopts;
292 struct ip6_moptions;
293 struct icmp6_filter;
294 struct inpcbpolicy;
295
296 struct inpcb {
297 #endif /* KERNEL_PRIVATE */
298 _INPCB_LIST_ENTRY(inpcb) inp_hash; /* hash list */
299 struct in_addr reserved1; /* reserved */
300 struct in_addr reserved2; /* reserved */
301 u_short inp_fport; /* foreign port */
302 u_short inp_lport; /* local port */
303 _INPCB_LIST_ENTRY(inpcb) inp_list; /* list for all peer PCBs */
304 _INPCB_PTR(caddr_t) inp_ppcb; /* per-protocol pcb */
305 _INPCB_PTR(struct inpcbinfo *) inp_pcbinfo; /* PCB list info */
306 _INPCB_PTR(void *) inp_socket; /* back pointer to socket */
307 u_char nat_owner; /* Used to NAT TCP/UDP traffic */
308 u_int32_t nat_cookie; /* Cookie stored and returned to NAT */
309 _INPCB_LIST_ENTRY(inpcb) inp_portlist; /* this PCB's local port list */
310 _INPCB_PTR(struct inpcbport *) inp_phd; /* head of this list */
311 inp_gen_t inp_gencnt; /* generation count of this instance */
312 int inp_flags; /* generic IP/datagram flags */
313 u_int32_t inp_flow;
314
315 u_char inp_vflag;
316
317 u_char inp_ip_ttl; /* time to live proto */
318 u_char inp_ip_p; /* protocol proto */
319 /* protocol dependent part */
320 union {
321 /* foreign host table entry */
322 struct in_addr_4in6 inp46_foreign;
323 struct in6_addr inp6_foreign;
324 } inp_dependfaddr;
325 union {
326 /* local host table entry */
327 struct in_addr_4in6 inp46_local;
328 struct in6_addr inp6_local;
329 } inp_dependladdr;
330 union {
331 /* placeholder for routing entry */
332 u_char inp4_route[20];
333 u_char inp6_route[32];
334 } inp_dependroute;
335 struct {
336 /* type of service proto */
337 u_char inp4_ip_tos;
338 /* IP options */
339 _INPCB_PTR(struct mbuf *) inp4_options;
340 /* IP multicast options */
341 _INPCB_PTR(struct ip_moptions *) inp4_moptions;
342 } inp_depend4;
343
344 struct {
345 /* IP options */
346 _INPCB_PTR(struct mbuf *) inp6_options;
347 u_int8_t inp6_hlim;
348 u_int8_t unused_uint8_1;
349 ushort unused_uint16_1;
350 /* IP6 options for outgoing packets */
351 _INPCB_PTR(struct ip6_pktopts *) inp6_outputopts;
352 /* IP multicast options */
353 _INPCB_PTR(struct ip6_moptions *) inp6_moptions;
354 /* ICMPv6 code type filter */
355 _INPCB_PTR(struct icmp6_filter *) inp6_icmp6filt;
356 /* IPV6_CHECKSUM setsockopt */
357 int inp6_cksum;
358 u_short inp6_ifindex;
359 short inp6_hops;
360 } inp_depend6;
361
362 int hash_element; /* Array index of pcb's hash list */
363 _INPCB_PTR(caddr_t) inp_saved_ppcb; /* pointer while cached */
364 _INPCB_PTR(struct inpcbpolicy *) inp_sp;
365 u_int32_t reserved[3]; /* reserved */
366 };
367
368 struct xinpcb {
369 u_int32_t xi_len; /* length of this structure */
370 #ifdef XNU_KERNEL_PRIVATE
371 struct inpcb_compat xi_inp;
372 #else
373 struct inpcb xi_inp;
374 #endif
375 struct xsocket xi_socket;
376 u_quad_t xi_alignment_hack;
377 };
378
379 #if !CONFIG_EMBEDDED
380 struct inpcb64_list_entry {
381 u_int64_t le_next;
382 u_int64_t le_prev;
383 };
384
385 struct xinpcb64 {
386 u_int64_t xi_len; /* length of this structure */
387 u_int64_t xi_inpp;
388 u_short inp_fport; /* foreign port */
389 u_short inp_lport; /* local port */
390 struct inpcb64_list_entry inp_list; /* list for all PCBs */
391 u_int64_t inp_ppcb; /* ptr to per-protocol PCB */
392 u_int64_t inp_pcbinfo; /* PCB list info */
393 struct inpcb64_list_entry inp_portlist; /* this PCB's local port list */
394 u_int64_t inp_phd; /* head of this list */
395 inp_gen_t inp_gencnt; /* current generation count */
396 int inp_flags; /* generic IP/datagram flags */
397 u_int32_t inp_flow;
398 u_char inp_vflag;
399 u_char inp_ip_ttl; /* time to live */
400 u_char inp_ip_p; /* protocol */
401 union { /* foreign host table entry */
402 struct in_addr_4in6 inp46_foreign;
403 struct in6_addr inp6_foreign;
404 } inp_dependfaddr;
405 union { /* local host table entry */
406 struct in_addr_4in6 inp46_local;
407 struct in6_addr inp6_local;
408 } inp_dependladdr;
409 struct {
410 u_char inp4_ip_tos; /* type of service */
411 } inp_depend4;
412 struct {
413 u_int8_t inp6_hlim;
414 int inp6_cksum;
415 u_short inp6_ifindex;
416 short inp6_hops;
417 } inp_depend6;
418 struct xsocket64 xi_socket;
419 u_quad_t xi_alignment_hack;
420 };
421 #endif /* !CONFIG_EMBEDDED */
422
423 #ifdef PRIVATE
424 struct xinpcb_list_entry {
425 u_int64_t le_next;
426 u_int64_t le_prev;
427 };
428
429 struct xinpcb_n {
430 u_int32_t xi_len; /* length of this structure */
431 u_int32_t xi_kind; /* XSO_INPCB */
432 u_int64_t xi_inpp;
433 u_short inp_fport; /* foreign port */
434 u_short inp_lport; /* local port */
435 u_int64_t inp_ppcb; /* pointer to per-protocol pcb */
436 inp_gen_t inp_gencnt; /* generation count of this instance */
437 int inp_flags; /* generic IP/datagram flags */
438 u_int32_t inp_flow;
439 u_char inp_vflag;
440 u_char inp_ip_ttl; /* time to live */
441 u_char inp_ip_p; /* protocol */
442 union { /* foreign host table entry */
443 struct in_addr_4in6 inp46_foreign;
444 struct in6_addr inp6_foreign;
445 } inp_dependfaddr;
446 union { /* local host table entry */
447 struct in_addr_4in6 inp46_local;
448 struct in6_addr inp6_local;
449 } inp_dependladdr;
450 struct {
451 u_char inp4_ip_tos; /* type of service */
452 } inp_depend4;
453 struct {
454 u_int8_t inp6_hlim;
455 int inp6_cksum;
456 u_short inp6_ifindex;
457 short inp6_hops;
458 } inp_depend6;
459 u_int32_t inp_flowhash;
460 u_int32_t inp_flags2;
461 };
462 #endif /* PRIVATE */
463
464 struct xinpgen {
465 u_int32_t xig_len; /* length of this structure */
466 u_int xig_count; /* number of PCBs at this time */
467 inp_gen_t xig_gen; /* generation count at this time */
468 so_gen_t xig_sogen; /* current socket generation count */
469 };
470
471 #pragma pack()
472
473 /*
474 * These defines are for use with the inpcb.
475 */
476 #define INP_IPV4 0x1
477 #define INP_IPV6 0x2
478 #define inp_faddr inp_dependfaddr.inp46_foreign.ia46_addr4
479 #define inp_laddr inp_dependladdr.inp46_local.ia46_addr4
480 #define in6p_faddr inp_dependfaddr.inp6_foreign
481 #define in6p_laddr inp_dependladdr.inp6_local
482
483 #ifdef BSD_KERNEL_PRIVATE
484 #define inp_route inp_dependroute.inp4_route
485 #define inp_ip_tos inp_depend4.inp4_ip_tos
486 #define inp_options inp_depend4.inp4_options
487 #define inp_moptions inp_depend4.inp4_moptions
488 #define in6p_route inp_dependroute.inp6_route
489 #define in6p_ip6_hlim inp_depend6.inp6_hlim
490 #define in6p_hops inp_depend6.inp6_hops /* default hop limit */
491 #define in6p_ip6_nxt inp_ip_p
492 #define in6p_vflag inp_vflag
493 #define in6p_options inp_depend6.inp6_options
494 #define in6p_outputopts inp_depend6.inp6_outputopts
495 #define in6p_moptions inp_depend6.inp6_moptions
496 #define in6p_icmp6filt inp_depend6.inp6_icmp6filt
497 #define in6p_cksum inp_depend6.inp6_cksum
498 #define in6p_ifindex inp_depend6.inp6_ifindex
499 #define in6p_flags inp_flags
500 #define in6p_flags2 inp_flags2
501 #define in6p_socket inp_socket
502 #define in6p_lport inp_lport
503 #define in6p_fport inp_fport
504 #define in6p_ppcb inp_ppcb
505 #define in6p_state inp_state
506 #define in6p_wantcnt inp_wantcnt
507 #define in6p_last_outifp inp_last_outifp
508 #define in6pcb inpcb
509 #if IPSEC
510 #define in6p_sp inp_sp
511 #endif /* IPSEC */
512 #define INP_INC_IFNET_STAT(_inp_, _stat_) { \
513 if ((_inp_)->inp_last_outifp != NULL) { \
514 if ((_inp_)->inp_vflag & INP_IPV6) { \
515 (_inp_)->inp_last_outifp->if_ipv6_stat->_stat_++;\
516 } else { \
517 (_inp_)->inp_last_outifp->if_ipv4_stat->_stat_++;\
518 }\
519 }\
520 }
521
522 struct inpcbport {
523 LIST_ENTRY(inpcbport) phd_hash;
524 struct inpcbhead phd_pcblist;
525 u_short phd_port;
526 };
527
528 struct intimercount {
529 u_int32_t intimer_lazy; /* lazy requests for timer scheduling */
530 u_int32_t intimer_fast; /* fast requests, can be coalesced */
531 u_int32_t intimer_nodelay; /* fast requests, never coalesced */
532 };
533
534 typedef void (*inpcb_timer_func_t)(struct inpcbinfo *);
535
536 /*
537 * Global data structure for each high-level protocol (UDP, TCP, ...) in both
538 * IPv4 and IPv6. Holds inpcb lists and information for managing them. Each
539 * pcbinfo is protected by a RW lock: ipi_lock.
540 *
541 * All INPCB pcbinfo entries are linked together via ipi_entry.
542 */
543 struct inpcbinfo {
544 /*
545 * Glue to all PCB infos, as well as garbage collector and
546 * timer callbacks, protected by inpcb_lock. Callout request
547 * counts are atomically updated.
548 */
549 TAILQ_ENTRY(inpcbinfo) ipi_entry;
550 inpcb_timer_func_t ipi_gc;
551 inpcb_timer_func_t ipi_timer;
552 struct intimercount ipi_gc_req;
553 struct intimercount ipi_timer_req;
554
555 /*
556 * Per-protocol lock protecting pcb list, pcb count, etc.
557 */
558 lck_rw_t *ipi_lock;
559
560 /*
561 * List and count of pcbs on the protocol.
562 */
563 struct inpcbhead *ipi_listhead;
564 uint32_t ipi_count;
565
566 /*
567 * Count of pcbs marked with INP2_TIMEWAIT flag.
568 */
569 uint32_t ipi_twcount;
570
571 /*
572 * Generation count -- incremented each time a connection is
573 * allocated or freed.
574 */
575 uint64_t ipi_gencnt;
576
577 /*
578 * Fields associated with port lookup and allocation.
579 */
580 uint16_t ipi_lastport;
581 uint16_t ipi_lastlow;
582 uint16_t ipi_lasthi;
583
584 /*
585 * Zone from which inpcbs are allocated for this protocol.
586 */
587 struct zone *ipi_zone;
588
589 /*
590 * Per-protocol hash of pcbs, hashed by local and foreign
591 * addresses and port numbers.
592 */
593 struct inpcbhead *ipi_hashbase;
594 u_long ipi_hashmask;
595
596 /*
597 * Per-protocol hash of pcbs, hashed by only local port number.
598 */
599 struct inpcbporthead *ipi_porthashbase;
600 u_long ipi_porthashmask;
601
602 /*
603 * Misc.
604 */
605 lck_attr_t *ipi_lock_attr;
606 lck_grp_t *ipi_lock_grp;
607 lck_grp_attr_t *ipi_lock_grp_attr;
608
609 #define INPCBINFO_UPDATE_MSS 0x1
610 #define INPCBINFO_HANDLE_LQM_ABORT 0x2
611 u_int32_t ipi_flags;
612 };
613
614 #define INP_PCBHASH(faddr, lport, fport, mask) \
615 (((faddr) ^ ((faddr) >> 16) ^ ntohs((lport) ^ (fport))) & (mask))
616 #define INP_PCBPORTHASH(lport, mask) \
617 (ntohs((lport)) & (mask))
618
619 #define INP_IS_FLOW_CONTROLLED(_inp_) \
620 ((_inp_)->inp_flags & INP_FLOW_CONTROLLED)
621 #define INP_IS_FLOW_SUSPENDED(_inp_) \
622 (((_inp_)->inp_flags & INP_FLOW_SUSPENDED) || \
623 ((_inp_)->inp_socket->so_flags & SOF_SUSPENDED))
624 #define INP_WAIT_FOR_IF_FEEDBACK(_inp_) \
625 (((_inp_)->inp_flags & (INP_FLOW_CONTROLLED | INP_FLOW_SUSPENDED)) != 0)
626
627 #define INP_NO_CELLULAR(_inp) \
628 ((_inp)->inp_flags & INP_NO_IFT_CELLULAR)
629 #define INP_NO_EXPENSIVE(_inp) \
630 ((_inp)->inp_flags2 & INP2_NO_IFF_EXPENSIVE)
631 #define INP_NO_CONSTRAINED(_inp) \
632 ((_inp)->inp_flags2 & INP2_NO_IFF_CONSTRAINED)
633 #define INP_AWDL_UNRESTRICTED(_inp) \
634 ((_inp)->inp_flags2 & INP2_AWDL_UNRESTRICTED)
635 #define INP_INTCOPROC_ALLOWED(_inp) \
636 ((_inp)->inp_flags2 & INP2_INTCOPROC_ALLOWED)
637
638 #endif /* BSD_KERNEL_PRIVATE */
639
640 /*
641 * Flags for inp_flags.
642 *
643 * Some of these are publicly defined for legacy reasons, as they are
644 * (unfortunately) used by certain applications to determine, at compile
645 * time, whether or not the OS supports certain features.
646 */
647 #ifdef BSD_KERNEL_PRIVATE
648 #define INP_RECVOPTS 0x00000001 /* receive incoming IP options */
649 #define INP_RECVRETOPTS 0x00000002 /* receive IP options for reply */
650 #define INP_RECVDSTADDR 0x00000004 /* receive IP dst address */
651 #define INP_HDRINCL 0x00000008 /* user supplies entire IP header */
652 #define INP_HIGHPORT 0x00000010 /* user wants "high" port binding */
653 #define INP_LOWPORT 0x00000020 /* user wants "low" port binding */
654 #endif /* BSD_KERNEL_PRIVATE */
655
656 #define INP_ANONPORT 0x00000040 /* port chosen for user */
657
658 #ifdef BSD_KERNEL_PRIVATE
659 #define INP_RECVIF 0x00000080 /* receive incoming interface */
660 #define INP_MTUDISC 0x00000100 /* unused */
661 #define INP_STRIPHDR 0x00000200 /* strip hdrs in raw_ip (for OT) */
662 #define INP_RECV_ANYIF 0x00000400 /* don't restrict inbound iface */
663 #define INP_INADDR_ANY 0x00000800 /* local address wasn't specified */
664 #define INP_IN6ADDR_ANY INP_INADDR_ANY
665 #define INP_RECVTTL 0x00001000 /* receive incoming IP TTL */
666 #define INP_UDP_NOCKSUM 0x00002000 /* turn off outbound UDP checksum */
667 #define INP_BOUND_IF 0x00004000 /* bind socket to an interface */
668 #endif /* BSD_KERNEL_PRIVATE */
669
670 #define IN6P_IPV6_V6ONLY 0x00008000 /* restrict AF_INET6 socket for v6 */
671
672 #ifdef BSD_KERNEL_PRIVATE
673 #define IN6P_PKTINFO 0x00010000 /* receive IP6 dst and I/F */
674 #define IN6P_HOPLIMIT 0x00020000 /* receive hoplimit */
675 #define IN6P_HOPOPTS 0x00040000 /* receive hop-by-hop options */
676 #define IN6P_DSTOPTS 0x00080000 /* receive dst options after rthdr */
677 #define IN6P_RTHDR 0x00100000 /* receive routing header */
678 #define IN6P_RTHDRDSTOPTS 0x00200000 /* receive dstoptions before rthdr */
679 #define IN6P_TCLASS 0x00400000 /* receive traffic class value */
680 #define INP_RECVTOS IN6P_TCLASS /* receive incoming IP TOS */
681 #define IN6P_AUTOFLOWLABEL 0x00800000 /* attach flowlabel automatically */
682 #endif /* BSD_KERNEL_PRIVATE */
683
684 #define IN6P_BINDV6ONLY 0x01000000 /* do not grab IPv4 traffic */
685
686 #ifdef BSD_KERNEL_PRIVATE
687 #define IN6P_RFC2292 0x02000000 /* used RFC2292 API on the socket */
688 #define IN6P_MTU 0x04000000 /* receive path MTU */
689 #define INP_PKTINFO 0x08000000 /* rcv and snd PKTINFO for IPv4 */
690 #define INP_FLOW_SUSPENDED 0x10000000 /* flow suspended */
691 #define INP_NO_IFT_CELLULAR 0x20000000 /* do not use cellular interface */
692 #define INP_FLOW_CONTROLLED 0x40000000 /* flow controlled */
693 #define INP_FC_FEEDBACK 0x80000000 /* got interface flow adv feedback */
694
695 #define INP_CONTROLOPTS \
696 (INP_RECVOPTS|INP_RECVRETOPTS|INP_RECVDSTADDR|INP_RECVIF|INP_RECVTTL| \
697 INP_PKTINFO|IN6P_PKTINFO|IN6P_HOPLIMIT|IN6P_HOPOPTS|IN6P_DSTOPTS| \
698 IN6P_RTHDR|IN6P_RTHDRDSTOPTS|IN6P_TCLASS|IN6P_RFC2292|IN6P_MTU)
699
700 #define INP_UNMAPPABLEOPTS \
701 (IN6P_HOPOPTS|IN6P_DSTOPTS|IN6P_RTHDR|IN6P_AUTOFLOWLABEL)
702
703 /*
704 * Flags for inp_flags2.
705 *
706 * Overflowed INP flags; use INP2 prefix to avoid misuse.
707 */
708 #define INP2_TIMEWAIT 0x00000001 /* in TIMEWAIT */
709 #define INP2_IN_FCTREE 0x00000002 /* in inp_fc_tree */
710 #define INP2_WANT_APP_POLICY 0x00000004 /* necp app policy check is desired */
711 #define INP2_NO_IFF_EXPENSIVE 0x00000008 /* do not use expensive interface */
712 #define INP2_INHASHLIST 0x00000010 /* pcb is in inp_hash list */
713 #define INP2_AWDL_UNRESTRICTED 0x00000020 /* AWDL restricted mode allowed */
714 #define INP2_KEEPALIVE_OFFLOAD 0x00000040 /* Enable UDP or TCP keepalive offload */
715 #define INP2_INTCOPROC_ALLOWED 0x00000080 /* Allow communication via internal co-processor interfaces */
716 #define INP2_CONNECT_IN_PROGRESS 0x00000100 /* A connect call is in progress, so binds are intermediate steps */
717 #define INP2_CLAT46_FLOW 0x00000200 /* The flow is going to use CLAT46 path */
718 #define INP2_EXTERNAL_PORT 0x00000400 /* The port is registered externally, for NECP listeners */
719 #define INP2_NO_IFF_CONSTRAINED 0x00000800 /* do not use constrained interface */
720
721 /*
722 * Flags passed to in_pcblookup*() functions.
723 */
724 #define INPLOOKUP_WILDCARD 1
725
726 #define sotoinpcb(so) ((struct inpcb *)(so)->so_pcb)
727 #define sotoin6pcb(so) sotoinpcb(so)
728
729 struct sysctl_req;
730
731 extern int ipport_lowfirstauto;
732 extern int ipport_lowlastauto;
733 extern int ipport_firstauto;
734 extern int ipport_lastauto;
735 extern int ipport_hifirstauto;
736 extern int ipport_hilastauto;
737
738 /* freshly allocated PCB, it's in use */
739 #define INPCB_STATE_INUSE 0x1
740 /* this pcb is sitting in a a cache */
741 #define INPCB_STATE_CACHED 0x2
742 /* should treat as gone, will be garbage collected and freed */
743 #define INPCB_STATE_DEAD 0x3
744
745 /* marked as ready to be garbaged collected, should be treated as not found */
746 #define WNT_STOPUSING 0xffff
747 /* that pcb is being acquired, do not recycle this time */
748 #define WNT_ACQUIRE 0x1
749 /* release acquired mode, can be garbage collected when wantcnt is null */
750 #define WNT_RELEASE 0x2
751
752 extern void in_pcbinit(void);
753 extern void in_pcbinfo_attach(struct inpcbinfo *);
754 extern int in_pcbinfo_detach(struct inpcbinfo *);
755
756 /* type of timer to be scheduled by inpcb_gc_sched and inpcb_timer_sched */
757 enum {
758 INPCB_TIMER_LAZY = 0x1,
759 INPCB_TIMER_FAST,
760 INPCB_TIMER_NODELAY
761 };
762 extern void inpcb_gc_sched(struct inpcbinfo *, u_int32_t type);
763 extern void inpcb_timer_sched(struct inpcbinfo *, u_int32_t type);
764
765 extern void in_losing(struct inpcb *);
766 extern void in_rtchange(struct inpcb *, int);
767 extern int in_pcballoc(struct socket *, struct inpcbinfo *, struct proc *);
768 extern int in_pcbbind(struct inpcb *, struct sockaddr *, struct proc *);
769 extern int in_pcbconnect(struct inpcb *, struct sockaddr *, struct proc *,
770 unsigned int, struct ifnet **);
771 extern void in_pcbdetach(struct inpcb *);
772 extern void in_pcbdispose(struct inpcb *);
773 extern void in_pcbdisconnect(struct inpcb *);
774 extern int in_pcbinshash(struct inpcb *, int);
775 extern int in_pcbladdr(struct inpcb *, struct sockaddr *, struct in_addr *,
776 unsigned int, struct ifnet **, int);
777 extern struct inpcb *in_pcblookup_local(struct inpcbinfo *, struct in_addr,
778 u_int, int);
779 extern struct inpcb *in_pcblookup_local_and_cleanup(struct inpcbinfo *,
780 struct in_addr, u_int, int);
781 extern struct inpcb *in_pcblookup_hash(struct inpcbinfo *, struct in_addr,
782 u_int, struct in_addr, u_int, int, struct ifnet *);
783 extern int in_pcblookup_hash_exists(struct inpcbinfo *, struct in_addr,
784 u_int, struct in_addr, u_int, int, uid_t *, gid_t *, struct ifnet *);
785 extern void in_pcbnotifyall(struct inpcbinfo *, struct in_addr, int,
786 void (*)(struct inpcb *, int));
787 extern void in_pcbrehash(struct inpcb *);
788 extern int in_getpeeraddr(struct socket *, struct sockaddr **);
789 extern int in_getsockaddr(struct socket *, struct sockaddr **);
790 extern int in_getsockaddr_s(struct socket *, struct sockaddr_in *);
791 extern int in_pcb_checkstate(struct inpcb *, int, int);
792 extern void in_pcbremlists(struct inpcb *);
793 extern void inpcb_to_compat(struct inpcb *, struct inpcb_compat *);
794 #if !CONFIG_EMBEDDED
795 extern void inpcb_to_xinpcb64(struct inpcb *, struct xinpcb64 *);
796 #endif
797
798 extern int get_pcblist_n(short, struct sysctl_req *, struct inpcbinfo *);
799 #define INPCB_GET_PORTS_USED_WILDCARDOK 0x01
800 #define INPCB_GET_PORTS_USED_NOWAKEUPOK 0x02
801 #define INPCB_GET_PORTS_USED_RECVANYIFONLY 0x04
802 #define INPCB_GET_PORTS_USED_EXTBGIDLEONLY 0x08
803 #define INPCB_GET_PORTS_USED_ACTIVEONLY 0x10
804
805 extern void inpcb_get_ports_used(u_int32_t, int, u_int32_t, bitstr_t *,
806 struct inpcbinfo *);
807 #define INPCB_OPPORTUNISTIC_THROTTLEON 0x0001
808 #define INPCB_OPPORTUNISTIC_SETCMD 0x0002
809 extern uint32_t inpcb_count_opportunistic(unsigned int, struct inpcbinfo *,
810 u_int32_t);
811 extern uint32_t inpcb_find_anypcb_byaddr(struct ifaddr *, struct inpcbinfo *);
812 extern void inp_route_copyout(struct inpcb *, struct route *);
813 extern void inp_route_copyin(struct inpcb *, struct route *);
814 extern int inp_bindif(struct inpcb *, unsigned int, struct ifnet **);
815 extern void inp_set_nocellular(struct inpcb *);
816 extern void inp_clear_nocellular(struct inpcb *);
817 extern void inp_set_noexpensive(struct inpcb *);
818 extern void inp_set_noconstrained(struct inpcb *);
819 extern void inp_set_awdl_unrestricted(struct inpcb *);
820 extern boolean_t inp_get_awdl_unrestricted(struct inpcb *);
821 extern void inp_clear_awdl_unrestricted(struct inpcb *);
822 extern void inp_set_intcoproc_allowed(struct inpcb *);
823 extern boolean_t inp_get_intcoproc_allowed(struct inpcb *);
824 extern void inp_clear_intcoproc_allowed(struct inpcb *);
825 #if NECP
826 extern void inp_update_necp_policy(struct inpcb *, struct sockaddr *, struct sockaddr *, u_int);
827 extern void inp_set_want_app_policy(struct inpcb *);
828 extern void inp_clear_want_app_policy(struct inpcb *);
829 #endif /* NECP */
830 extern u_int32_t inp_calc_flowhash(struct inpcb *);
831 extern void inp_reset_fc_state(struct inpcb *);
832 extern int inp_set_fc_state(struct inpcb *, int advcode);
833 extern void inp_fc_unthrottle_tcp(struct inpcb *);
834 extern void inp_flowadv(uint32_t);
835 extern int inp_flush(struct inpcb *, int);
836 extern int inp_findinpcb_procinfo(struct inpcbinfo *, uint32_t, struct so_procinfo *);
837 extern void inp_get_soprocinfo(struct inpcb *, struct so_procinfo *);
838 extern int inp_update_policy(struct inpcb *);
839 extern boolean_t inp_restricted_recv(struct inpcb *, struct ifnet *);
840 extern boolean_t inp_restricted_send(struct inpcb *, struct ifnet *);
841 extern void inp_incr_sndbytes_total(struct socket *, int);
842 extern void inp_decr_sndbytes_total(struct socket *, int);
843 extern void inp_count_sndbytes(struct inpcb *, u_int32_t);
844 extern void inp_incr_sndbytes_unsent(struct socket *, int32_t);
845 extern void inp_decr_sndbytes_unsent(struct socket *, int32_t);
846 extern int32_t inp_get_sndbytes_allunsent(struct socket *, u_int32_t);
847 extern void inp_decr_sndbytes_allunsent(struct socket *, u_int32_t);
848 extern void inp_set_activity_bitmap(struct inpcb *inp);
849 extern void inp_get_activity_bitmap(struct inpcb *inp, activity_bitmap_t *b);
850 extern void inp_update_last_owner(struct socket *so, struct proc *p, struct proc *ep);
851 extern void inp_copy_last_owner(struct socket *so, struct socket *head);
852 #endif /* BSD_KERNEL_PRIVATE */
853 #ifdef KERNEL_PRIVATE
854 /* exported for PPP */
855 extern void inp_clear_INP_INADDR_ANY(struct socket *);
856 #endif /* KERNEL_PRIVATE */
857 #endif /* !_NETINET_IN_PCB_H_ */