1 /*
2 * Copyright (c) 2000-2022 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, 1989, 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 * From: @(#)if.h 8.1 (Berkeley) 6/10/93
61 * $FreeBSD: src/sys/net/if_var.h,v 1.18.2.7 2001/07/24 19:10:18 brooks Exp $
62 */
63
64 #ifndef _NET_IF_VAR_PRIVATE_H_
65 #define _NET_IF_VAR_PRIVATE_H_
66
67 #ifndef DRIVERKIT
68 #ifndef DRIVERKIT_PRIVATE
69 #include <net/if_var_status.h>
70 #endif
71 #include <net/route.h>
72 #include <stdint.h>
73 #include <sys/types.h>
74 #ifdef KERNEL_PRIVATE
75 #include <kern/locks.h>
76 #endif /* KERNEL_PRIVATE */
77
78 struct if_traffic_class {
79 u_int64_t ifi_ibepackets;/* TC_BE packets received on interface */
80 u_int64_t ifi_ibebytes;/* TC_BE bytes received on interface */
81 u_int64_t ifi_obepackets;/* TC_BE packet sent on interface */
82 u_int64_t ifi_obebytes;/* TC_BE bytes sent on interface */
83 u_int64_t ifi_ibkpackets;/* TC_BK packets received on interface */
84 u_int64_t ifi_ibkbytes;/* TC_BK bytes received on interface */
85 u_int64_t ifi_obkpackets;/* TC_BK packet sent on interface */
86 u_int64_t ifi_obkbytes;/* TC_BK bytes sent on interface */
87 u_int64_t ifi_ivipackets;/* TC_VI packets received on interface */
88 u_int64_t ifi_ivibytes;/* TC_VI bytes received on interface */
89 u_int64_t ifi_ovipackets;/* TC_VI packets sent on interface */
90 u_int64_t ifi_ovibytes;/* TC_VI bytes sent on interface */
91 u_int64_t ifi_ivopackets;/* TC_VO packets received on interface */
92 u_int64_t ifi_ivobytes;/* TC_VO bytes received on interface */
93 u_int64_t ifi_ovopackets;/* TC_VO packets sent on interface */
94 u_int64_t ifi_ovobytes;/* TC_VO bytes sent on interface */
95 u_int64_t ifi_ipvpackets;/* TC priv packets received on interface */
96 u_int64_t ifi_ipvbytes;/* TC priv bytes received on interface */
97 u_int64_t ifi_opvpackets;/* TC priv packets sent on interface */
98 u_int64_t ifi_opvbytes;/* TC priv bytes sent on interface */
99 };
100
101 struct if_data_extended {
102 u_int64_t ifi_alignerrs;/* unaligned (32-bit) input pkts */
103 u_int64_t ifi_dt_bytes;/* Data threshold counter */
104 u_int64_t ifi_fpackets;/* forwarded packets on interface */
105 u_int64_t ifi_fbytes; /* forwarded bytes on interface */
106 u_int64_t reserved[12];/* for future */
107 };
108
109 struct if_packet_stats {
110 /* TCP */
111 u_int64_t ifi_tcp_badformat;
112 u_int64_t ifi_tcp_unspecv6;
113 u_int64_t ifi_tcp_synfin;
114 u_int64_t ifi_tcp_badformatipsec;
115 u_int64_t ifi_tcp_noconnnolist;
116 u_int64_t ifi_tcp_noconnlist;
117 u_int64_t ifi_tcp_listbadsyn;
118 u_int64_t ifi_tcp_icmp6unreach;
119 u_int64_t ifi_tcp_deprecate6;
120 u_int64_t ifi_tcp_rstinsynrcv;
121 u_int64_t ifi_tcp_ooopacket;
122 u_int64_t ifi_tcp_dospacket;
123 u_int64_t ifi_tcp_cleanup;
124 u_int64_t ifi_tcp_synwindow;
125 u_int64_t reserved[6];
126 /* UDP */
127 u_int64_t ifi_udp_port_unreach;
128 u_int64_t ifi_udp_faithprefix;
129 u_int64_t ifi_udp_port0;
130 u_int64_t ifi_udp_badlength;
131 u_int64_t ifi_udp_badchksum;
132 u_int64_t ifi_udp_badmcast;
133 u_int64_t ifi_udp_cleanup;
134 u_int64_t ifi_udp_badipsec;
135 u_int64_t _reserved[4];
136 };
137
138 struct if_description {
139 u_int32_t ifd_maxlen; /* must be IF_DESCSIZE */
140 u_int32_t ifd_len; /* actual ifd_desc length */
141 u_int8_t *ifd_desc; /* ptr to desc buffer */
142 };
143
144 struct if_bandwidths {
145 uint64_t eff_bw; /* effective bandwidth */
146 uint64_t max_bw; /* maximum theoretical bandwidth */
147 };
148
149 struct if_latencies {
150 u_int64_t eff_lt; /* effective latency */
151 u_int64_t max_lt; /* maximum theoretical latency */
152 };
153
154 typedef enum {
155 IF_NETEM_MODEL_NULL = 0,
156 IF_NETEM_MODEL_NLC = 1,
157 } if_netem_model_t;
158
159 #define IF_NETEM_PARAMS_PSCALE 100000
160 struct if_netem_params {
161 /* packet scheduler model */
162 if_netem_model_t ifnetem_model;
163
164 /* bandwidth limit */
165 uint64_t ifnetem_bandwidth_bps;
166
167 /* latency (normal distribution with jitter as stdev) */
168 uint32_t ifnetem_latency_ms;
169 uint32_t ifnetem_jitter_ms;
170
171 /*
172 * NetEm probabilistic model parameters has a scaling factor of 100,000
173 * for 5 digits precision. For instance, probability 12.345% is
174 * expressed as uint32_t fixed point 12345 in ifnet_*_p variable below.
175 */
176 /* random packet corruption */
177 uint32_t ifnetem_corruption_p;
178
179 /* random packet duplication */
180 uint32_t ifnetem_duplication_p;
181
182 /* 4 state Markov loss model */
183 uint32_t ifnetem_loss_p_gr_gl;/* P( gap_loss | gap_rx ) */
184 uint32_t ifnetem_loss_p_gr_bl;/* P( burst_loss | gap_rx ) */
185 uint32_t ifnetem_loss_p_bl_br;/* P( burst_rx | burst_loss ) */
186 uint32_t ifnetem_loss_p_bl_gr;/* P( gap_rx | burst_loss ) */
187 uint32_t ifnetem_loss_p_br_bl;/* P( burst_loss | burst_rx ) */
188
189 uint32_t ifnetem_loss_recovery_ms;/* time to recovery loss */
190
191 /* random packet reordering */
192 uint32_t ifnetem_reordering_p;/* reorder probability */
193
194 /*
195 * NetEm output scheduler by default is waken up upon input event as
196 * well as timer interval to avoid excessive delay. If
197 * ifnetem_output_ival is set to non-zero value, it overrides the
198 * default output interval as well as disables output scheduler wakeup
199 * upon input events.
200 */
201 uint32_t ifnetem_output_ival_ms;/* output interval */
202 };
203
204 struct if_rxpoll_stats {
205 u_int32_t ifi_poll_off_req; /* total # of POLL_OFF reqs */
206 u_int32_t ifi_poll_off_err; /* total # of POLL_OFF errors */
207 u_int32_t ifi_poll_on_req; /* total # of POLL_ON reqs */
208 u_int32_t ifi_poll_on_err; /* total # of POLL_ON errors */
209
210 u_int32_t ifi_poll_wakeups_avg;/* avg # of wakeup reqs */
211 u_int32_t ifi_poll_wakeups_lowat;/* wakeups low watermark */
212 u_int32_t ifi_poll_wakeups_hiwat;/* wakeups high watermark */
213
214 u_int64_t ifi_poll_packets; /* total # of polled packets */
215 u_int32_t ifi_poll_packets_avg;/* average polled packets */
216 u_int32_t ifi_poll_packets_min;/* smallest polled packets */
217 u_int32_t ifi_poll_packets_max;/* largest polled packets */
218 u_int32_t ifi_poll_packets_lowat;/* packets low watermark */
219 u_int32_t ifi_poll_packets_hiwat;/* packets high watermark */
220
221 u_int64_t ifi_poll_bytes; /* total # of polled bytes */
222 u_int32_t ifi_poll_bytes_avg; /* average polled bytes */
223 u_int32_t ifi_poll_bytes_min; /* smallest polled bytes */
224 u_int32_t ifi_poll_bytes_max; /* largest polled bytes */
225 u_int32_t ifi_poll_bytes_lowat;/* bytes low watermark */
226 u_int32_t ifi_poll_bytes_hiwat;/* bytes high watermark */
227
228 u_int32_t ifi_poll_packets_limit;/* max packets per poll call */
229 u_int64_t ifi_poll_interval_time;/* poll interval (nsec) */
230 };
231
232 struct if_netif_stats {
233 u_int64_t ifn_rx_mit_interval;/* rx mitigation ival (nsec) */
234 u_int32_t ifn_rx_mit_mode; /* 0: static, 1: dynamic */
235 u_int32_t ifn_rx_mit_packets_avg;/* average # of packets */
236 u_int32_t ifn_rx_mit_packets_min;/* smallest # of packets */
237 u_int32_t ifn_rx_mit_packets_max;/* largest # of packets */
238 u_int32_t ifn_rx_mit_bytes_avg;/* average # of bytes */
239 u_int32_t ifn_rx_mit_bytes_min;/* smallest # of bytes */
240 u_int32_t ifn_rx_mit_bytes_max;/* largest # of bytes */
241 u_int32_t ifn_rx_mit_cfg_idx; /* current config selector */
242 u_int32_t ifn_rx_mit_cfg_packets_lowat;/* pkts low watermark */
243 u_int32_t ifn_rx_mit_cfg_packets_hiwat;/* pkts high watermark */
244 u_int32_t ifn_rx_mit_cfg_bytes_lowat;/* bytes low watermark */
245 u_int32_t ifn_rx_mit_cfg_bytes_hiwat;/* bytes high watermark */
246 u_int32_t ifn_rx_mit_cfg_interval;/* delay interval (nsec) */
247 };
248
249 struct if_tcp_ecn_perf_stat {
250 u_int64_t total_txpkts;
251 u_int64_t total_rxmitpkts;
252 u_int64_t total_rxpkts;
253 u_int64_t total_oopkts;
254 u_int64_t total_reorderpkts;
255 u_int64_t rtt_avg;
256 u_int64_t rtt_var;
257 u_int64_t sack_episodes;
258 u_int64_t rxmit_drop;
259 u_int64_t rst_drop;
260 u_int64_t oo_percent;
261 u_int64_t reorder_percent;
262 u_int64_t rxmit_percent;
263 };
264
265 struct if_tcp_ecn_stat {
266 u_int64_t timestamp;
267 u_int64_t ecn_client_setup;
268 u_int64_t ecn_server_setup;
269 u_int64_t ecn_client_success;
270 u_int64_t ecn_server_success;
271 u_int64_t ecn_peer_nosupport;
272 u_int64_t ecn_syn_lost;
273 u_int64_t ecn_synack_lost;
274 u_int64_t ecn_recv_ce;
275 u_int64_t ecn_recv_ece;
276 u_int64_t ecn_conn_recv_ce;
277 u_int64_t ecn_conn_recv_ece;
278 u_int64_t ecn_conn_plnoce;
279 u_int64_t ecn_conn_plce;
280 u_int64_t ecn_conn_noplce;
281 u_int64_t ecn_fallback_synloss;
282 u_int64_t ecn_fallback_reorder;
283 u_int64_t ecn_fallback_ce;
284 u_int64_t ecn_off_conn;
285 u_int64_t ecn_total_conn;
286 u_int64_t ecn_fallback_droprst;
287 u_int64_t ecn_fallback_droprxmt;
288 u_int64_t ecn_fallback_synrst;
289 struct if_tcp_ecn_perf_stat ecn_on;
290 struct if_tcp_ecn_perf_stat ecn_off;
291 };
292
293 struct if_lim_perf_stat {
294 u_int64_t lim_dl_max_bandwidth; /* bits per second */
295 u_int64_t lim_ul_max_bandwidth; /* bits per second */
296 u_int64_t lim_total_txpkts; /* Total transmit packets, count */
297 u_int64_t lim_total_rxpkts; /* Total receive packets, count */
298 u_int64_t lim_total_retxpkts; /* Total retransmit packets */
299 u_int64_t lim_packet_loss_percent; /* Packet loss rate */
300 u_int64_t lim_total_oopkts; /* Total out-of-order packets */
301 u_int64_t lim_packet_ooo_percent; /* Out-of-order packet rate */
302 u_int64_t lim_rtt_variance; /* RTT variance, milliseconds */
303 u_int64_t lim_rtt_average; /* RTT average, milliseconds */
304 u_int64_t lim_rtt_min; /* RTT minimum, milliseconds */
305 u_int64_t lim_conn_timeouts; /* connection timeouts */
306 u_int64_t lim_conn_attempts; /* connection attempts */
307 u_int64_t lim_conn_timeout_percent; /* Rate of connection timeouts */
308 u_int64_t lim_bk_txpkts; /* Transmit packets with BK service class, that use delay based algorithms */
309 u_int64_t lim_dl_detected:1, /* Low internet */
310 lim_ul_detected:1;
311 };
312
313 #define IF_VAR_H_HAS_IFNET_STATS_PER_FLOW 1
314 struct ifnet_stats_per_flow {
315 u_int64_t bk_txpackets;
316 u_int64_t txpackets;
317 u_int64_t rxpackets;
318 u_int32_t txretransmitbytes;
319 u_int32_t rxoutoforderbytes;
320 u_int32_t rxmitpkts;
321 u_int32_t rcvoopack;
322 u_int32_t pawsdrop;
323 u_int32_t sack_recovery_episodes;
324 u_int32_t reordered_pkts;
325 u_int32_t dsack_sent;
326 u_int32_t dsack_recvd;
327 u_int32_t srtt;
328 u_int32_t rttupdated;
329 u_int32_t rttvar;
330 u_int32_t rttmin;
331 u_int32_t bw_sndbw_max;
332 u_int32_t bw_rcvbw_max;
333 u_int32_t ecn_recv_ece;
334 u_int32_t ecn_recv_ce;
335 u_int32_t ecn_flags;
336 u_int16_t ipv4:1,
337 local:1,
338 connreset:1,
339 conntimeout:1,
340 rxmit_drop:1,
341 ecn_fallback_synloss:1,
342 ecn_fallback_droprst:1,
343 ecn_fallback_droprxmt:1,
344 ecn_fallback_ce:1,
345 ecn_fallback_reorder:1;
346 };
347
348 struct if_interface_state {
349 /*
350 * The bitmask tells which of the fields
351 * to consider:
352 * - When setting, to control which fields
353 * are being modified;
354 * - When getting, it tells which fields are set.
355 */
356 u_int8_t valid_bitmask;
357 #define IF_INTERFACE_STATE_RRC_STATE_VALID 0x1
358 #define IF_INTERFACE_STATE_LQM_STATE_VALID 0x2
359 #define IF_INTERFACE_STATE_INTERFACE_AVAILABILITY_VALID 0x4
360
361 /*
362 * Valid only for cellular interface
363 */
364 u_int8_t rrc_state;
365 #define IF_INTERFACE_STATE_RRC_STATE_IDLE 0x0
366 #define IF_INTERFACE_STATE_RRC_STATE_CONNECTED 0x1
367
368 /*
369 * Values normalized to the edge of the following values
370 * that are defined on <net/if.h>:
371 * IFNET_LQM_THRESH_BAD
372 * IFNET_LQM_THRESH_POOR
373 * IFNET_LQM_THRESH_GOOD
374 */
375 int8_t lqm_state;
376
377 /*
378 * Indicate if the underlying link is currently
379 * available
380 */
381 u_int8_t interface_availability;
382 #define IF_INTERFACE_STATE_INTERFACE_AVAILABLE 0x0
383 #define IF_INTERFACE_STATE_INTERFACE_UNAVAILABLE 0x1
384 };
385
386 struct chain_len_stats {
387 uint64_t cls_one;
388 uint64_t cls_two;
389 uint64_t cls_three;
390 uint64_t cls_four;
391 uint64_t cls_five_or_more;
392 } __attribute__((__aligned__(sizeof(uint64_t))));
393
394 #ifdef BSD_KERNEL_PRIVATE
395 #define IFNETS_MAX 64
396
397 /*
398 * Internal storage of if_data. This is bound to change. Various places in the
399 * stack will translate this data structure in to the externally visible
400 * if_data structure above. Note that during interface attach time, the
401 * embedded if_data structure in ifnet is cleared, with the exception of
402 * some non-statistics related fields.
403 */
404 struct if_data_internal {
405 /* generic interface information */
406 u_char ifi_type; /* ethernet, tokenring, etc */
407 u_char ifi_typelen; /* Length of frame type id */
408 u_char ifi_physical; /* e.g., AUI, Thinnet, 10base-T, etc */
409 u_char ifi_addrlen; /* media address length */
410 u_char ifi_hdrlen; /* media header length */
411 u_char ifi_recvquota; /* polling quota for receive intrs */
412 u_char ifi_xmitquota; /* polling quota for xmit intrs */
413 u_char ifi_unused1; /* for future use */
414 u_int32_t ifi_mtu; /* maximum transmission unit */
415 u_int32_t ifi_metric; /* routing metric (external only) */
416 u_int32_t ifi_baudrate; /* linespeed */
417 /* volatile statistics */
418 u_int64_t ifi_ipackets; /* packets received on interface */
419 u_int64_t ifi_ierrors; /* input errors on interface */
420 u_int64_t ifi_opackets; /* packets sent on interface */
421 u_int64_t ifi_oerrors; /* output errors on interface */
422 u_int64_t ifi_collisions; /* collisions on csma interfaces */
423 u_int64_t ifi_ibytes; /* total number of octets received */
424 u_int64_t ifi_obytes; /* total number of octets sent */
425 u_int64_t ifi_imcasts; /* packets received via multicast */
426 u_int64_t ifi_omcasts; /* packets sent via multicast */
427 u_int64_t ifi_iqdrops; /* dropped on input, this interface */
428 u_int64_t ifi_noproto; /* destined for unsupported protocol */
429 u_int32_t ifi_recvtiming; /* usec spent receiving when timing */
430 u_int32_t ifi_xmittiming; /* usec spent xmitting when timing */
431 u_int64_t ifi_alignerrs; /* unaligned (32-bit) input pkts */
432 u_int64_t ifi_dt_bytes; /* Data threshold counter */
433 u_int64_t ifi_fpackets; /* forwarded packets on interface */
434 u_int64_t ifi_fbytes; /* forwarded bytes on interface */
435 struct timeval ifi_lastchange; /* time of last administrative change */
436 struct timeval ifi_lastupdown; /* time of last up/down event */
437 u_int32_t ifi_hwassist; /* HW offload capabilities */
438 u_int32_t ifi_tso_v4_mtu; /* TCP Segment Offload IPv4 maximum segment size */
439 u_int32_t ifi_tso_v6_mtu; /* TCP Segment Offload IPv6 maximum segment size */
440 };
441 #endif /* BSD_KERNEL_PRIVATE */
442
443 #define if_mtu if_data.ifi_mtu
444 #define if_type if_data.ifi_type
445 #define if_typelen if_data.ifi_typelen
446 #define if_physical if_data.ifi_physical
447 #define if_addrlen if_data.ifi_addrlen
448 #define if_hdrlen if_data.ifi_hdrlen
449 #define if_metric if_data.ifi_metric
450 #define if_baudrate if_data.ifi_baudrate
451 #define if_hwassist if_data.ifi_hwassist
452 #define if_ipackets if_data.ifi_ipackets
453 #define if_ierrors if_data.ifi_ierrors
454 #define if_opackets if_data.ifi_opackets
455 #define if_oerrors if_data.ifi_oerrors
456 #define if_collisions if_data.ifi_collisions
457 #define if_ibytes if_data.ifi_ibytes
458 #define if_obytes if_data.ifi_obytes
459 #define if_imcasts if_data.ifi_imcasts
460 #define if_omcasts if_data.ifi_omcasts
461 #define if_iqdrops if_data.ifi_iqdrops
462 #define if_noproto if_data.ifi_noproto
463 #define if_lastchange if_data.ifi_lastchange
464 #define if_recvquota if_data.ifi_recvquota
465 #define if_xmitquota if_data.ifi_xmitquota
466 #ifdef BSD_KERNEL_PRIVATE
467 #define if_tso_v4_mtu if_data.ifi_tso_v4_mtu
468 #define if_tso_v6_mtu if_data.ifi_tso_v6_mtu
469 #define if_alignerrs if_data.ifi_alignerrs
470 #define if_dt_bytes if_data.ifi_dt_bytes
471 #define if_fpackets if_data.ifi_fpackets
472 #define if_fbytes if_data.ifi_fbytes
473 #define if_lastupdown if_data.ifi_lastupdown
474
475 /*
476 * Forward structure declarations for function prototypes [sic].
477 */
478 struct proc;
479 struct rtentry;
480 struct socket;
481 struct ifnet_filter;
482 struct mbuf;
483 struct ifaddr;
484 struct tqdummy;
485 struct proto_hash_entry;
486 struct dlil_threading_info;
487 struct tcpstat_local;
488 struct udpstat_local;
489 #if PF
490 struct pfi_kif;
491 #endif /* PF */
492 #if SKYWALK
493 struct nexus_netif_adapter;
494 #endif /* SKYWALK */
495
496 /* we use TAILQs so that the order of instantiation is preserved in the list */
497 TAILQ_HEAD(ifnethead, ifnet);
498 TAILQ_HEAD(ifaddrhead, ifaddr);
499 LIST_HEAD(ifmultihead, ifmultiaddr);
500 TAILQ_HEAD(tailq_head, tqdummy);
501 TAILQ_HEAD(ifnet_filter_head, ifnet_filter);
502 TAILQ_HEAD(ddesc_head_name, dlil_demux_desc);
503
504 extern bool intcoproc_unrestricted;
505 extern bool management_data_unrestricted;
506 extern bool management_control_unrestricted;
507 extern bool if_management_interface_check_needed;
508 extern int if_management_verbose;
509 #endif /* BSD_KERNEL_PRIVATE */
510
511 /*
512 * All of the following IF_HWASSIST_* flags are defined in kpi_interface.h as
513 * IFNET_* flags. These are redefined here as constants to avoid failures to
514 * build user level programs that can not include kpi_interface.h. It is
515 * important to keep this in sync with the definitions in kpi_interface.h.
516 * The corresponding constant for each definition is mentioned in the comment.
517 *
518 * Bottom 16 bits reserved for hardware checksum
519 */
520 #define IF_HWASSIST_CSUM_IP 0x0001 /* will csum IP, IFNET_CSUM_IP */
521 #define IF_HWASSIST_CSUM_TCP 0x0002 /* will csum TCP, IFNET_CSUM_TCP */
522 #define IF_HWASSIST_CSUM_UDP 0x0004 /* will csum UDP, IFNET_CSUM_UDP */
523 #define IF_HWASSIST_CSUM_IP_FRAGS 0x0008 /* will csum IP fragments, IFNET_CSUM_FRAGMENT */
524 #define IF_HWASSIST_CSUM_FRAGMENT 0x0010 /* will do IP fragmentation, IFNET_IP_FRAGMENT */
525 #define IF_HWASSIST_CSUM_TCPIPV6 0x0020 /* will csum TCPv6, IFNET_CSUM_TCPIPV6 */
526 #define IF_HWASSIST_CSUM_UDPIPV6 0x0040 /* will csum UDPv6, IFNET_CSUM_UDP */
527 #define IF_HWASSIST_CSUM_FRAGMENT_IPV6 0x0080 /* will do IPv6 fragmentation, IFNET_IPV6_FRAGMENT */
528 #define IF_HWASSIST_CSUM_PARTIAL 0x1000 /* simple Sum16 computation, IFNET_CSUM_PARTIAL */
529 #define IF_HWASSIST_CSUM_ZERO_INVERT 0x2000 /* capable of inverting csum of 0 to -0 (0xffff) */
530 #define IF_HWASSIST_CSUM_MASK 0xffff
531 #define IF_HWASSIST_CSUM_FLAGS(hwassist) ((hwassist) & IF_HWASSIST_CSUM_MASK)
532
533 /* VLAN support */
534 #define IF_HWASSIST_VLAN_TAGGING 0x00010000 /* supports VLAN tagging, IFNET_VLAN_TAGGING */
535 #define IF_HWASSIST_VLAN_MTU 0x00020000 /* supports VLAN MTU-sized packet (for software VLAN), IFNET_VLAN_MTU */
536
537 /* TCP Segment Offloading support */
538
539 #define IF_HWASSIST_TSO_V4 0x00200000 /* will do TCP Segment offload for IPv4, IFNET_TSO_IPV4 */
540 #define IF_HWASSIST_TSO_V6 0x00400000 /* will do TCP Segment offload for IPv6, IFNET_TSO_IPV6 */
541
542 #define IFXNAMSIZ (IFNAMSIZ + 8) /* external name (name + unit) */
543 #define IFNET_NETWORK_ID_LEN 32
544
545 #ifdef BSD_KERNEL_PRIVATE
546 /*
547 * ifnet is private to BSD portion of kernel
548 */
549 #include <sys/mcache.h>
550 #include <sys/tree.h>
551 #include <netinet/in.h>
552 #include <net/if_dl.h>
553 #include <net/classq/if_classq.h>
554 #include <net/if_types.h>
555 #include <net/route.h>
556
557 RB_HEAD(ll_reach_tree, if_llreach); /* define struct ll_reach_tree */
558
559 #if SKYWALK
560 struct nexus_ifnet_ops {
561 void (*ni_finalize)(struct nexus_netif_adapter *, struct ifnet *);
562 void (*ni_reap)(struct nexus_netif_adapter *, struct ifnet *,
563 uint32_t, boolean_t);
564 errno_t (*ni_dequeue)(struct nexus_netif_adapter *, uint32_t,
565 uint32_t, uint32_t, classq_pkt_t *, classq_pkt_t *, uint32_t *,
566 uint32_t *, boolean_t, errno_t);
567 errno_t (*ni_get_len)(struct nexus_netif_adapter *, uint32_t,
568 uint32_t *, uint32_t *, errno_t);
569 void (*ni_detach_notify)(struct nexus_netif_adapter *);
570 };
571 typedef struct {
572 uuid_t if_nif_provider;
573 uuid_t if_nif_instance;
574 uuid_t if_nif_attach;
575 } if_nexus_netif, *if_nexus_netif_t;
576
577 typedef struct {
578 uuid_t if_fsw_provider;
579 uuid_t if_fsw_instance;
580 uuid_t if_fsw_device;
581 uint32_t if_fsw_ipaddr_gencnt;
582 } if_nexus_flowswitch, *if_nexus_flowswitch_t;
583 #endif /* SKYWALK */
584
585 typedef errno_t (*dlil_input_func)(ifnet_t ifp, mbuf_t m_head,
586 mbuf_t m_tail, const struct ifnet_stat_increment_param *s,
587 boolean_t poll, struct thread *tp);
588 typedef errno_t (*dlil_output_func)(ifnet_t interface, mbuf_t data);
589
590 typedef u_int8_t ipv6_router_mode_t;
591
592 #define if_name(ifp) ifp->if_xname
593 /*
594 * Structure defining a network interface.
595 *
596 * (Would like to call this struct ``if'', but C isn't PL/1.)
597 */
598 struct ifnet {
599 /*
600 * Lock (RW or mutex) to protect this data structure (static storage.)
601 */
602 decl_lck_rw_data(, if_lock);
603 void *if_softc; /* pointer to driver state */
604 const char *if_name; /* name, e.g. ``en'' or ``lo'' */
605 const char *if_xname; /* external name (name + unit) */
606 struct if_description if_desc; /* extended description */
607 TAILQ_ENTRY(ifnet) if_link; /* all struct ifnets are chained */
608 TAILQ_ENTRY(ifnet) if_detaching_link; /* list of detaching ifnets */
609 TAILQ_ENTRY(ifnet) if_ordered_link; /* list of ordered ifnets */
610
611 decl_lck_mtx_data(, if_ref_lock);
612 u_int32_t if_refflags; /* see IFRF flags below */
613 u_int32_t if_refio; /* number of io ops to the underlying driver */
614 u_int32_t if_threads_pending; /* Threads created but waiting for first run */
615 u_int32_t if_datamov; /* number of threads moving data */
616 u_int32_t if_drainers; /* number of draining threads */
617 u_int32_t if_suspend; /* number of suspend requests */
618
619 #define if_list if_link
620 struct ifaddrhead if_addrhead; /* linked list of addresses per if */
621 #define if_addrlist if_addrhead
622 struct ifaddr *if_lladdr; /* link address (first/permanent) */
623
624 u_int32_t if_qosmarking_mode; /* generation to use with NECP clients */
625
626 int if_pcount; /* number of promiscuous listeners */
627 struct bpf_if *if_bpf; /* packet filter structure */
628 u_short if_index; /* numeric abbreviation for this if */
629 short if_unit; /* sub-unit for lower level driver */
630 short if_timer; /* time 'til if_watchdog called */
631 short if_flags; /* up/down, broadcast, etc. */
632 u_int32_t if_eflags; /* see <net/if.h> */
633 u_int32_t if_xflags; /* see <net/if.h> */
634
635 int if_capabilities; /* interface features & capabilities */
636 int if_capenable; /* enabled features & capabilities */
637
638 void *if_linkmib; /* link-type-specific MIB data */
639 uint32_t if_linkmiblen; /* length of above data */
640
641 struct if_data_internal if_data __attribute__((aligned(8)));
642
643 ifnet_family_t if_family; /* value assigned by Apple */
644 ifnet_subfamily_t if_subfamily; /* value assigned by Apple */
645 uintptr_t if_family_cookie;
646 volatile dlil_input_func if_input_dlil;
647 volatile dlil_output_func if_output_dlil;
648 volatile ifnet_start_func if_start;
649 ifnet_output_func if_output;
650 ifnet_pre_enqueue_func if_pre_enqueue;
651 ifnet_ctl_func if_output_ctl;
652 ifnet_input_poll_func if_input_poll;
653 ifnet_ctl_func if_input_ctl;
654 ifnet_ioctl_func if_ioctl;
655 ifnet_set_bpf_tap if_set_bpf_tap;
656 ifnet_detached_func if_free;
657 ifnet_demux_func if_demux;
658 ifnet_event_func if_event;
659 ifnet_framer_func if_framer_legacy;
660 ifnet_framer_extended_func if_framer;
661 ifnet_add_proto_func if_add_proto;
662 ifnet_del_proto_func if_del_proto;
663 ifnet_check_multi if_check_multi;
664 struct proto_hash_entry *if_proto_hash;
665 ifnet_detached_func if_detach;
666
667 u_int32_t if_flowhash; /* interface flow control ID */
668
669 decl_lck_mtx_data(, if_start_lock);
670 u_int32_t if_start_flags; /* see IFSF flags below */
671 u_int32_t if_start_req;
672 u_int8_t if_start_embryonic;
673 u_int8_t if_start_active; /* output is active */
674 u_int16_t if_start_delayed;
675 u_int16_t if_start_delay_qlen;
676 u_int16_t if_start_delay_idle;
677 u_int64_t if_start_delay_swin;
678 u_int32_t if_start_delay_cnt;
679 u_int32_t if_start_delay_timeout; /* nanoseconds */
680 struct timespec if_start_cycle; /* restart interval */
681 struct thread *if_start_thread;
682
683 struct ifclassq *if_snd; /* transmit queue */
684 u_int32_t if_output_sched_model; /* tx sched model */
685
686 struct if_bandwidths if_output_bw;
687 struct if_bandwidths if_input_bw;
688
689 struct if_latencies if_output_lt;
690 struct if_latencies if_input_lt;
691
692 decl_lck_mtx_data(, if_flt_lock);
693 u_int32_t if_flt_busy;
694 u_int32_t if_flt_waiters;
695 struct ifnet_filter_head if_flt_head;
696 uint32_t if_flt_non_os_count;
697 uint32_t if_flt_no_tso_count;
698
699 struct ifmultihead if_multiaddrs; /* multicast addresses */
700 u_int32_t if_updatemcasts; /* mcast addrs need updating */
701 int if_amcount; /* # of all-multicast reqs */
702 decl_lck_mtx_data(, if_addrconfig_lock); /* for serializing addr config */
703 struct in_multi *if_allhostsinm; /* store all-hosts inm for this ifp */
704
705 /*
706 * Opportunistic polling parameters.
707 */
708 decl_lck_mtx_data(, if_poll_lock);
709 struct if_poll_params {
710 u_int16_t poll_req;
711 u_int16_t poll_update; /* link update */
712 u_int32_t poll_flags;
713 #define IF_POLLF_READY 0x1 /* poll thread is ready */
714 #define IF_POLLF_RUNNING 0x2 /* poll thread is running/active */
715 #define IF_POLLF_TERMINATING 0x4 /* poll thread is terminating */
716 #define IF_POLLF_EMBRYONIC 0x8000 /* poll thread is being setup */
717 struct timespec poll_cycle; /* poll interval */
718 struct thread *poll_thread;
719
720 ifnet_model_t poll_mode; /* current mode */
721 struct pktcntr poll_tstats; /* incremental polling statistics */
722 struct if_rxpoll_stats poll_pstats; /* polling statistics */
723 struct pktcntr poll_sstats; /* packets and bytes per sampling */
724 struct timespec poll_mode_holdtime; /* mode holdtime in nsec */
725 struct timespec poll_mode_lasttime; /* last mode change time in nsec */
726 struct timespec poll_sample_holdtime; /* sampling holdtime in nsec */
727 struct timespec poll_sample_lasttime; /* last sampling time in nsec */
728 struct timespec poll_dbg_lasttime; /* last debug message time in nsec */
729 } rxpoll_params;
730 #define if_poll_req rxpoll_params.poll_req
731 #define if_poll_update rxpoll_params.poll_update
732 #define if_poll_flags rxpoll_params.poll_flags
733 #define if_poll_cycle rxpoll_params.poll_cycle
734 #define if_poll_thread rxpoll_params.poll_thread
735 #define if_poll_mode rxpoll_params.poll_mode
736 #define if_poll_tstats rxpoll_params.poll_tstats
737 #define if_poll_sstats rxpoll_params.poll_sstats
738 #define if_poll_pstats rxpoll_params.poll_pstats
739
740 #define if_poll_mode_holdtime rxpoll_params.poll_mode_holdtime
741 #define if_poll_mode_lasttime rxpoll_params.poll_mode_lasttime
742 #define if_poll_sample_holdtime rxpoll_params.poll_sample_holdtime
743 #define if_poll_sample_lasttime rxpoll_params.poll_sample_lasttime
744 #define if_poll_dbg_lasttime rxpoll_params.poll_dbg_lasttime
745
746 #define if_rxpoll_offreq rxpoll_params.poll_pstats.ifi_poll_off_req
747 #define if_rxpoll_offerr rxpoll_params.poll_pstats.ifi_poll_off_err
748 #define if_rxpoll_onreq rxpoll_params.poll_pstats.ifi_poll_on_req
749 #define if_rxpoll_onerr rxpoll_params.poll_pstats.ifi_poll_on_err
750 #define if_rxpoll_wavg rxpoll_params.poll_pstats.ifi_poll_wakeups_avg
751 #define if_rxpoll_wlowat rxpoll_params.poll_pstats.ifi_poll_wakeups_lowat
752 #define if_rxpoll_whiwat rxpoll_params.poll_pstats.ifi_poll_wakeups_hiwat
753 #define if_rxpoll_pavg rxpoll_params.poll_pstats.ifi_poll_packets_avg
754 #define if_rxpoll_pmin rxpoll_params.poll_pstats.ifi_poll_packets_min
755 #define if_rxpoll_pmax rxpoll_params.poll_pstats.ifi_poll_packets_max
756 #define if_rxpoll_plowat rxpoll_params.poll_pstats.ifi_poll_packets_lowat
757 #define if_rxpoll_phiwat rxpoll_params.poll_pstats.ifi_poll_packets_hiwat
758 #define if_rxpoll_bavg rxpoll_params.poll_pstats.ifi_poll_bytes_avg
759 #define if_rxpoll_bmin rxpoll_params.poll_pstats.ifi_poll_bytes_min
760 #define if_rxpoll_bmax rxpoll_params.poll_pstats.ifi_poll_bytes_max
761 #define if_rxpoll_blowat rxpoll_params.poll_pstats.ifi_poll_bytes_lowat
762 #define if_rxpoll_bhiwat rxpoll_params.poll_pstats.ifi_poll_bytes_hiwat
763 #define if_rxpoll_plim rxpoll_params.poll_pstats.ifi_poll_packets_limit
764 #define if_rxpoll_ival rxpoll_params.poll_pstats.ifi_poll_interval_time
765
766 struct dlil_threading_info *if_inp;
767
768 /* allocated once along with dlil_ifnet and is never freed */
769 thread_call_t if_dt_tcall;
770
771 struct {
772 u_int32_t length;
773 union {
774 u_char buffer[8];
775 u_char *ptr;
776 } u;
777 } if_broadcast;
778
779 #if PF
780 struct pfi_kif *if_pf_kif;
781 #endif /* PF */
782 #if SKYWALK
783 struct nexus_ifnet_ops *if_na_ops;
784 struct nexus_netif_adapter *if_na;
785
786 /* compat netif attachment */
787 if_nexus_netif if_nx_netif;
788
789 /* flowswitch attachment */
790 if_nexus_flowswitch if_nx_flowswitch;
791
792 /* headroom space to be reserved in tx packets */
793 uint16_t if_tx_headroom;
794
795 /* trailer space to be reserved in tx packets */
796 uint16_t if_tx_trailer;
797
798 /*
799 * mitigation interval in microseconds for the rx interrupt mitigation
800 * logic while operating in the high throughput mode.
801 */
802 uint32_t if_rx_mit_ival;
803
804 ifnet_start_func if_save_start;
805 ifnet_output_func if_save_output;
806
807 /*
808 * Number of threads waiting for the start callback to be finished;
809 * access is protected by if_start_lock; also serves as wait channel.
810 */
811 uint32_t if_start_waiters;
812 #endif /* SKYWALK */
813
814 decl_lck_mtx_data(, if_cached_route_lock);
815 u_int32_t if_fwd_cacheok;
816 struct route if_fwd_route; /* cached forwarding route */
817 struct route if_src_route; /* cached ipv4 source route */
818 struct route_in6 if_src_route6; /* cached ipv6 source route */
819
820 decl_lck_rw_data(, if_llreach_lock);
821 struct ll_reach_tree if_ll_srcs; /* source link-layer tree */
822
823 void *if_bridge; /* bridge glue */
824
825 u_int32_t if_idle_flags; /* idle flags */
826 u_int32_t if_idle_new_flags; /* temporary idle flags */
827 u_int32_t if_idle_new_flags_mask; /* temporary mask */
828 u_int32_t if_route_refcnt; /* idle: route ref count */
829 u_int32_t if_rt_sendts; /* last of a real time packet */
830
831 struct if_traffic_class if_tc __attribute__((aligned(8)));
832 #if INET
833 struct igmp_ifinfo *if_igi; /* for IGMPv3 */
834 #endif /* INET */
835 struct mld_ifinfo *if_mli; /* for MLDv2 */
836
837 struct tcpstat_local *if_tcp_stat; /* TCP specific stats */
838 struct udpstat_local *if_udp_stat; /* UDP specific stats */
839
840 struct {
841 int32_t level; /* cached logging level */
842 u_int32_t flags; /* cached logging flags */
843 int32_t category; /* cached category */
844 int32_t subcategory; /* cached subcategory */
845 } if_log;
846
847 struct {
848 struct ifnet *ifp; /* delegated ifp */
849 u_int32_t type; /* delegated i/f type */
850 u_int32_t family; /* delegated i/f family */
851 u_int32_t subfamily; /* delegated i/f sub-family */
852 uint32_t expensive:1, /* delegated i/f expensive? */
853 constrained:1; /* delegated i/f constrained? */
854 } if_delegated;
855
856 uuid_t *if_agentids; /* network agents attached to interface */
857 u_int32_t if_agentcount;
858
859 volatile uint32_t if_low_power_gencnt;
860
861 u_int32_t if_generation; /* generation to use with NECP clients */
862 u_int32_t if_fg_sendts; /* last send on a fg socket in seconds */
863
864 u_int64_t if_data_threshold;
865
866 /* Total bytes in send socket buffer */
867 int64_t if_sndbyte_total __attribute__ ((aligned(8)));
868 /* Total unsent bytes in send socket buffer */
869 int64_t if_sndbyte_unsent __attribute__ ((aligned(8)));
870 /* count of times, when there was data to send when sleep is impending */
871 uint32_t if_unsent_data_cnt;
872
873 #if INET
874 decl_lck_rw_data(, if_inetdata_lock);
875 struct in_ifextra *if_inetdata;
876 #endif /* INET */
877 decl_lck_mtx_data(, if_inet6_ioctl_lock);
878 boolean_t if_inet6_ioctl_busy;
879 decl_lck_rw_data(, if_inet6data_lock);
880 struct in6_ifextra *if_inet6data;
881 decl_lck_rw_data(, if_link_status_lock);
882 struct if_link_status *if_link_status;
883 struct if_interface_state if_interface_state;
884 struct if_tcp_ecn_stat *if_ipv4_stat;
885 struct if_tcp_ecn_stat *if_ipv6_stat;
886
887 #if SKYWALK
888 /* Keeps track of local ports bound to this interface
889 * Protected by the global lock in skywalk/netns/netns.c */
890 SLIST_HEAD(, ns_token) if_netns_tokens;
891 #endif /* SKYWALK */
892 struct if_lim_perf_stat if_lim_stat;
893
894 uint32_t if_tcp_kao_max;
895 uint32_t if_tcp_kao_cnt;
896
897 #if SKYWALK
898 struct netem *if_input_netem;
899 #endif /* SKYWALK */
900 struct netem *if_output_netem;
901
902 ipv6_router_mode_t if_ipv6_router_mode; /* see <netinet6/in6_var.h> */
903
904 u_int8_t if_estimated_up_bucket;
905 u_int8_t if_estimated_down_bucket;
906 u_int8_t if_radio_type;
907 u_int8_t if_radio_channel;
908
909 uint8_t network_id[IFNET_NETWORK_ID_LEN];
910 uint8_t network_id_len;
911 uint32_t if_traffic_rule_count;
912 uint32_t if_traffic_rule_genid;
913 };
914
915 /* Interface event handling declarations */
916 extern struct eventhandler_lists_ctxt ifnet_evhdlr_ctxt;
917
918 typedef enum {
919 INTF_EVENT_CODE_CREATED,
920 INTF_EVENT_CODE_REMOVED,
921 INTF_EVENT_CODE_STATUS_UPDATE,
922 INTF_EVENT_CODE_IPADDR_ATTACHED,
923 INTF_EVENT_CODE_IPADDR_DETACHED,
924 INTF_EVENT_CODE_LLADDR_UPDATE,
925 INTF_EVENT_CODE_MTU_CHANGED,
926 INTF_EVENT_CODE_LOW_POWER_UPDATE,
927 } intf_event_code_t;
928
929 typedef void (*ifnet_event_fn)(struct eventhandler_entry_arg, struct ifnet *, struct sockaddr *, intf_event_code_t);
930 EVENTHANDLER_DECLARE(ifnet_event, ifnet_event_fn);
931
932 #define IF_TCP_STATINC(_ifp, _s) do { \
933 if ((_ifp)->if_tcp_stat != NULL) \
934 atomic_add_64(&(_ifp)->if_tcp_stat->_s, 1); \
935 } while (0);
936
937 #define IF_UDP_STATINC(_ifp, _s) do { \
938 if ((_ifp)->if_udp_stat != NULL) \
939 atomic_add_64(&(_ifp)->if_udp_stat->_s, 1); \
940 } while (0);
941
942 /*
943 * Valid values for if_refflags
944 */
945 #define IFRF_EMBRYONIC 0x1 /* ifnet is allocated; awaiting attach */
946 #define IFRF_ATTACHED 0x2 /* ifnet attach is completely done */
947 #define IFRF_DETACHING 0x4 /* detach has been requested */
948 #define IFRF_READY 0x8 /* data path is ready */
949
950 #define IFRF_ATTACH_MASK \
951 (IFRF_EMBRYONIC|IFRF_ATTACHED|IFRF_DETACHING)
952
953 #define IF_FULLY_ATTACHED(_ifp) \
954 (((_ifp)->if_refflags & IFRF_ATTACH_MASK) == IFRF_ATTACHED)
955
956 #define IF_FULLY_ATTACHED_AND_READY(_ifp) \
957 (IF_FULLY_ATTACHED(_ifp) && ((_ifp)->if_refflags & IFRF_READY))
958 /*
959 * Valid values for if_start_flags
960 */
961 #define IFSF_FLOW_CONTROLLED 0x1 /* flow controlled */
962 #define IFSF_TERMINATING 0x2 /* terminating */
963
964 /*
965 * Structure describing a `cloning' interface.
966 */
967 struct if_clone {
968 LIST_ENTRY(if_clone) ifc_list; /* on list of cloners */
969 decl_lck_mtx_data(, ifc_mutex); /* To serialize clone create/delete */
970 u_int32_t ifc_minifs; /* minimum number of interfaces */
971 u_int32_t ifc_maxunit; /* maximum unit number */
972 unsigned char *ifc_units; /* bitmap to handle units */
973 u_int32_t ifc_bmlen; /* bitmap length */
974 int (*ifc_create)(struct if_clone *, u_int32_t, void *);
975 int (*ifc_destroy)(struct ifnet *);
976 uint8_t ifc_namelen; /* length of name */
977 char ifc_name[IFNAMSIZ + 1]; /* name of device, e.g. `vlan' */
978 };
979
980 #define IF_CLONE_INITIALIZER(name, create, destroy, minifs, maxunit) { \
981 .ifc_name = "" name, \
982 .ifc_namelen = (sizeof(name) - 1), \
983 .ifc_minifs = (minifs), \
984 .ifc_maxunit = (maxunit), \
985 .ifc_create = (create), \
986 .ifc_destroy = (destroy) \
987 }
988
989 /*
990 * Macros to manipulate ifqueue. Users of these macros are responsible
991 * for serialization, by holding whatever lock is appropriate for the
992 * corresponding structure that is referring the ifqueue.
993 */
994 #define IF_QFULL(ifq) ((ifq)->ifq_len >= (ifq)->ifq_maxlen)
995 #define IF_DROP(ifq) ((ifq)->ifq_drops++)
996
997 #define IF_ENQUEUE(ifq, m) do { \
998 (m)->m_nextpkt = NULL; \
999 if ((ifq)->ifq_tail == NULL) \
1000 (ifq)->ifq_head = m; \
1001 else \
1002 ((struct mbuf*)(ifq)->ifq_tail)->m_nextpkt = m; \
1003 (ifq)->ifq_tail = m; \
1004 (ifq)->ifq_len++; \
1005 } while (0)
1006
1007 #define IF_PREPEND(ifq, m) do { \
1008 (m)->m_nextpkt = (mbuf_ref_t)(ifq)->ifq_head; \
1009 if ((ifq)->ifq_tail == NULL) \
1010 (ifq)->ifq_tail = (m); \
1011 (ifq)->ifq_head = (m); \
1012 (ifq)->ifq_len++; \
1013 } while (0)
1014
1015 #define IF_DEQUEUE(ifq, m) do { \
1016 (m) = (mbuf_ref_t)(ifq)->ifq_head; \
1017 if (m != NULL) { \
1018 if (((ifq)->ifq_head = (m)->m_nextpkt) == NULL) \
1019 (ifq)->ifq_tail = NULL; \
1020 (m)->m_nextpkt = NULL; \
1021 (ifq)->ifq_len--; \
1022 } \
1023 } while (0)
1024
1025 #define IF_REMQUEUE(ifq, m) do { \
1026 mbuf_ref_t _p = (mbuf_ref_t)(ifq)->ifq_head; \
1027 mbuf_ref_t _n = (m)->m_nextpkt; \
1028 if ((m) == _p) \
1029 _p = NULL; \
1030 while (_p != NULL) { \
1031 if (_p->m_nextpkt == (m)) \
1032 break; \
1033 _p = _p->m_nextpkt; \
1034 } \
1035 VERIFY(_p != NULL || ((m) == (ifq)->ifq_head)); \
1036 if ((m) == (ifq)->ifq_head) \
1037 (ifq)->ifq_head = _n; \
1038 if ((m) == (ifq)->ifq_tail) \
1039 (ifq)->ifq_tail = _p; \
1040 VERIFY((ifq)->ifq_tail != NULL || (ifq)->ifq_head == NULL); \
1041 VERIFY((ifq)->ifq_len != 0); \
1042 --(ifq)->ifq_len; \
1043 if (_p != NULL) \
1044 _p->m_nextpkt = _n; \
1045 (m)->m_nextpkt = NULL; \
1046 } while (0)
1047
1048 #define IF_DRAIN(ifq) do { \
1049 struct mbuf *_m; \
1050 for (;;) { \
1051 IF_DEQUEUE(ifq, _m); \
1052 if (_m == NULL) \
1053 break; \
1054 m_freem(_m); \
1055 } \
1056 } while (0)
1057
1058 /*
1059 * The ifaddr structure contains information about one address
1060 * of an interface. They are maintained by the different address families,
1061 * are allocated and attached when an address is set, and are linked
1062 * together so all addresses for an interface can be located.
1063 */
1064 struct ifaddr {
1065 decl_lck_mtx_data(, ifa_lock); /* lock for ifaddr */
1066 uint32_t ifa_refcnt; /* ref count, use IFA_{ADD,REM}REF */
1067 uint32_t ifa_debug; /* debug flags */
1068 struct sockaddr *ifa_addr; /* address of interface */
1069 struct sockaddr *ifa_dstaddr; /* other end of p-to-p link */
1070 #define ifa_broadaddr ifa_dstaddr /* broadcast address interface */
1071 struct sockaddr *ifa_netmask; /* used to determine subnet */
1072 struct ifnet *ifa_ifp; /* back-pointer to interface */
1073 TAILQ_ENTRY(ifaddr) ifa_link; /* queue macro glue */
1074 void (*ifa_rtrequest) /* check or clean routes (+ or -)'d */
1075 (int, struct rtentry *, struct sockaddr *);
1076 uint32_t ifa_flags; /* mostly rt_flags for cloning */
1077 int32_t ifa_metric; /* cost of going out this interface */
1078 void (*ifa_free)(struct ifaddr *); /* callback fn for freeing */
1079 void (*ifa_trace) /* callback fn for tracing refs */
1080 (struct ifaddr *, int);
1081 void (*ifa_attached)(struct ifaddr *); /* callback fn for attaching */
1082 void (*ifa_detached)(struct ifaddr *); /* callback fn for detaching */
1083 void *ifa_del_wc; /* Wait channel to avoid address deletion races */
1084 int ifa_del_waiters; /* Threads in wait to delete the address */
1085 };
1086
1087 /*
1088 * Valid values for ifa_flags
1089 */
1090 #define IFA_ROUTE RTF_UP /* route installed (0x1) */
1091 #define IFA_CLONING RTF_CLONING /* (0x100) */
1092
1093 /*
1094 * Valid values for ifa_debug
1095 */
1096 #define IFD_ATTACHED 0x1 /* attached to list */
1097 #define IFD_ALLOC 0x2 /* dynamically allocated */
1098 #define IFD_DEBUG 0x4 /* has debugging info */
1099 #define IFD_LINK 0x8 /* link address */
1100 #define IFD_TRASHED 0x10 /* in trash list */
1101 #define IFD_DETACHING 0x20 /* detach is in progress */
1102 #define IFD_NOTREADY 0x40 /* embryonic; not yet ready */
1103
1104 #define IFA_LOCK_ASSERT_HELD(_ifa) \
1105 LCK_MTX_ASSERT(&(_ifa)->ifa_lock, LCK_MTX_ASSERT_OWNED)
1106
1107 #define IFA_LOCK_ASSERT_NOTHELD(_ifa) \
1108 LCK_MTX_ASSERT(&(_ifa)->ifa_lock, LCK_MTX_ASSERT_NOTOWNED)
1109
1110 #define IFA_LOCK(_ifa) \
1111 lck_mtx_lock(&(_ifa)->ifa_lock)
1112
1113 #define IFA_LOCK_SPIN(_ifa) \
1114 lck_mtx_lock_spin(&(_ifa)->ifa_lock)
1115
1116 #define IFA_CONVERT_LOCK(_ifa) do { \
1117 IFA_LOCK_ASSERT_HELD(_ifa); \
1118 lck_mtx_convert_spin(&(_ifa)->ifa_lock); \
1119 } while (0)
1120
1121 #define IFA_UNLOCK(_ifa) \
1122 lck_mtx_unlock(&(_ifa)->ifa_lock)
1123
1124 #define IFA_ADDREF(_ifa) \
1125 ifa_addref(_ifa, 0)
1126
1127 #define IFA_ADDREF_LOCKED(_ifa) \
1128 ifa_addref(_ifa, 1)
1129
1130 #define IFA_REMREF(_ifa) do { \
1131 (void) ifa_remref(_ifa, 0); \
1132 } while (0)
1133
1134 #define IFA_REMREF_LOCKED(_ifa) \
1135 ifa_remref(_ifa, 1)
1136
1137 /*
1138 * Multicast address structure. This is analogous to the ifaddr
1139 * structure except that it keeps track of multicast addresses.
1140 * Also, the request count here is a count of requests for this
1141 * address, not a count of pointers to this structure; anonymous
1142 * membership(s) holds one outstanding request count.
1143 */
1144 struct ifmultiaddr {
1145 decl_lck_mtx_data(, ifma_lock);
1146 u_int32_t ifma_refcount; /* reference count */
1147 u_int32_t ifma_anoncnt; /* # of anonymous requests */
1148 u_int32_t ifma_reqcnt; /* total requests for this address */
1149 u_int32_t ifma_debug; /* see ifa_debug flags */
1150 u_int32_t ifma_flags; /* see below */
1151 LIST_ENTRY(ifmultiaddr) ifma_link; /* queue macro glue */
1152 struct sockaddr *ifma_addr; /* address this membership is for */
1153 struct ifmultiaddr *ifma_ll; /* link-layer translation, if any */
1154 struct ifnet *ifma_ifp; /* back-pointer to interface */
1155 void *ifma_protospec; /* protocol-specific state, if any */
1156 void (*ifma_trace) /* callback fn for tracing refs */
1157 (struct ifmultiaddr *, int);
1158 };
1159
1160 /*
1161 * Values for ifma_flags
1162 */
1163 #define IFMAF_ANONYMOUS 0x1 /* has anonymous request ref(s) held */
1164
1165 #define IFMA_LOCK_ASSERT_HELD(_ifma) \
1166 LCK_MTX_ASSERT(&(_ifma)->ifma_lock, LCK_MTX_ASSERT_OWNED)
1167
1168 #define IFMA_LOCK_ASSERT_NOTHELD(_ifma) \
1169 LCK_MTX_ASSERT(&(_ifma)->ifma_lock, LCK_MTX_ASSERT_NOTOWNED)
1170
1171 #define IFMA_LOCK(_ifma) \
1172 lck_mtx_lock(&(_ifma)->ifma_lock)
1173
1174 #define IFMA_LOCK_SPIN(_ifma) \
1175 lck_mtx_lock_spin(&(_ifma)->ifma_lock)
1176
1177 #define IFMA_CONVERT_LOCK(_ifma) do { \
1178 IFMA_LOCK_ASSERT_HELD(_ifma); \
1179 lck_mtx_convert_spin(&(_ifma)->ifma_lock); \
1180 } while (0)
1181
1182 #define IFMA_UNLOCK(_ifma) \
1183 lck_mtx_unlock(&(_ifma)->ifma_lock)
1184
1185 #define IFMA_ADDREF(_ifma) \
1186 ifma_addref(_ifma, 0)
1187
1188 #define IFMA_ADDREF_LOCKED(_ifma) \
1189 ifma_addref(_ifma, 1)
1190
1191 #define IFMA_REMREF(_ifma) \
1192 ifma_remref(_ifma)
1193
1194 /*
1195 * Indicate whether or not the immediate interface, or the interface delegated
1196 * by it, is a cellular interface (IFT_CELLULAR). Delegated interface type is
1197 * set/cleared along with the delegated ifp; we cache the type for performance
1198 * to avoid dereferencing delegated ifp each time.
1199 *
1200 * Note that this is meant to be used only for accounting and policy purposes;
1201 * certain places need to explicitly know the immediate interface type, and
1202 * this macro should not be used there.
1203 *
1204 * The test is done against IFT_CELLULAR instead of IFNET_FAMILY_CELLULAR to
1205 * handle certain cases where the family isn't set to the latter.
1206 *
1207 * This macro also handles the case of IFNET_FAMILY_ETHERNET with
1208 * IFNET_SUBFAMILY_SIMCELL which is used to simulate a cellular interface
1209 * for testing purposes. The underlying interface is Ethernet but we treat
1210 * it as cellular for accounting and policy purposes.
1211 */
1212 #define IFNET_IS_CELLULAR(_ifp) \
1213 ((_ifp)->if_type == IFT_CELLULAR || \
1214 (_ifp)->if_delegated.type == IFT_CELLULAR || \
1215 (((_ifp)->if_family == IFNET_FAMILY_ETHERNET && \
1216 (_ifp)->if_subfamily == IFNET_SUBFAMILY_SIMCELL)) || \
1217 ((_ifp)->if_delegated.family == IFNET_FAMILY_ETHERNET && \
1218 (_ifp)->if_delegated.subfamily == IFNET_SUBFAMILY_SIMCELL))
1219
1220 /*
1221 * Indicate whether or not the immediate interface, or the interface delegated
1222 * by it, is an ETHERNET interface.
1223 */
1224 #define IFNET_IS_ETHERNET(_ifp) \
1225 ((_ifp)->if_family == IFNET_FAMILY_ETHERNET || \
1226 (_ifp)->if_delegated.family == IFNET_FAMILY_ETHERNET)
1227 /*
1228 * Indicate whether or not the immediate interface, or the interface delegated
1229 * by it, is a Wi-Fi interface (IFNET_SUBFAMILY_WIFI). Delegated interface
1230 * subfamily is set/cleared along with the delegated ifp; we cache the subfamily
1231 * for performance to avoid dereferencing delegated ifp each time.
1232 *
1233 * Note that this is meant to be used only for accounting and policy purposes;
1234 * certain places need to explicitly know the immediate interface type, and
1235 * this macro should not be used there.
1236 *
1237 * The test is done against IFNET_SUBFAMILY_WIFI as the family may be set to
1238 * IFNET_FAMILY_ETHERNET (as well as type to IFT_ETHER) which is too generic.
1239 */
1240 #define IFNET_IS_WIFI(_ifp) \
1241 (((_ifp)->if_family == IFNET_FAMILY_ETHERNET && \
1242 (_ifp)->if_subfamily == IFNET_SUBFAMILY_WIFI) || \
1243 ((_ifp)->if_delegated.family == IFNET_FAMILY_ETHERNET && \
1244 (_ifp)->if_delegated.subfamily == IFNET_SUBFAMILY_WIFI))
1245
1246 /*
1247 * Indicate whether or not the immediate interface, or the interface delegated
1248 * by it, is a Wired interface (several families). Delegated interface
1249 * family is set/cleared along with the delegated ifp; we cache the family
1250 * for performance to avoid dereferencing delegated ifp each time.
1251 *
1252 * Note that this is meant to be used only for accounting and policy purposes;
1253 * certain places need to explicitly know the immediate interface type, and
1254 * this macro should not be used there.
1255 */
1256 #define IFNET_IS_WIRED(_ifp) \
1257 ((_ifp)->if_family == IFNET_FAMILY_ETHERNET || \
1258 (_ifp)->if_delegated.family == IFNET_FAMILY_ETHERNET || \
1259 (_ifp)->if_family == IFNET_FAMILY_FIREWIRE || \
1260 (_ifp)->if_delegated.family == IFNET_FAMILY_FIREWIRE)
1261
1262 /*
1263 * Indicate whether or not the immediate WiFi interface is on an infrastructure
1264 * network
1265 */
1266 #define IFNET_IS_WIFI_INFRA(_ifp) \
1267 ((_ifp)->if_family == IFNET_FAMILY_ETHERNET && \
1268 (_ifp)->if_subfamily == IFNET_SUBFAMILY_WIFI && \
1269 !((_ifp)->if_eflags & IFEF_AWDL) && \
1270 !((_ifp)->if_xflags & IFXF_LOW_LATENCY))
1271
1272 /*
1273 * Indicate whether or not the immediate interface is a companion link
1274 * interface.
1275 */
1276 #define IFNET_IS_COMPANION_LINK(_ifp) \
1277 ((_ifp)->if_family == IFNET_FAMILY_IPSEC && \
1278 ((_ifp)->if_subfamily == IFNET_SUBFAMILY_BLUETOOTH || \
1279 (_ifp)->if_subfamily == IFNET_SUBFAMILY_WIFI || \
1280 (_ifp)->if_subfamily == IFNET_SUBFAMILY_QUICKRELAY || \
1281 (_ifp)->if_subfamily == IFNET_SUBFAMILY_DEFAULT))
1282
1283 /*
1284 * Indicate whether or not the immediate interface, or the interface delegated
1285 * by it, is marked as expensive. The delegated interface is set/cleared
1286 * along with the delegated ifp; we cache the flag for performance to avoid
1287 * dereferencing delegated ifp each time.
1288 *
1289 * Note that this is meant to be used only for policy purposes.
1290 */
1291 #define IFNET_IS_EXPENSIVE(_ifp) \
1292 ((_ifp)->if_eflags & IFEF_EXPENSIVE || \
1293 (_ifp)->if_delegated.expensive)
1294
1295 #define IFNET_IS_LOW_POWER(_ifp) \
1296 (if_low_power_restricted != 0 && \
1297 ((_ifp)->if_xflags & IFXF_LOW_POWER) || \
1298 ((_ifp)->if_delegated.ifp != NULL && \
1299 ((_ifp)->if_delegated.ifp->if_xflags & IFXF_LOW_POWER)))
1300
1301 #define IFNET_IS_CONSTRAINED(_ifp) \
1302 ((_ifp)->if_xflags & IFXF_CONSTRAINED || \
1303 (_ifp)->if_delegated.constrained)
1304
1305 /*
1306 * We don't support AWDL interface delegation.
1307 */
1308 #define IFNET_IS_AWDL_RESTRICTED(_ifp) \
1309 (((_ifp)->if_eflags & (IFEF_AWDL|IFEF_AWDL_RESTRICTED)) == \
1310 (IFEF_AWDL|IFEF_AWDL_RESTRICTED))
1311
1312 #define IFNET_IS_INTCOPROC(_ifp) \
1313 ((_ifp)->if_family == IFNET_FAMILY_ETHERNET && \
1314 (_ifp)->if_subfamily == IFNET_SUBFAMILY_INTCOPROC)
1315
1316 #define IFNET_IS_VMNET(_ifp) \
1317 ((_ifp)->if_family == IFNET_FAMILY_ETHERNET && \
1318 (_ifp)->if_subfamily == IFNET_SUBFAMILY_VMNET)
1319
1320 #define IFNET_IS_MANAGEMENT(_ifp) \
1321 (((_ifp)->if_xflags & IFXF_MANAGEMENT) != 0)
1322
1323 /*
1324 * Indicate whether or not the immediate interface is IP over Thunderbolt.
1325 */
1326 #define IFNET_IS_THUNDERBOLT_IP(_ifp) \
1327 ((_ifp)->if_family == IFNET_FAMILY_ETHERNET && \
1328 (_ifp)->if_subfamily == IFNET_SUBFAMILY_THUNDERBOLT)
1329
1330 extern int if_index;
1331 extern struct ifnethead ifnet_head;
1332 extern struct ifnethead ifnet_ordered_head;
1333 extern struct ifnet **__counted_by(if_index) ifindex2ifnet;
1334 extern u_int32_t if_sndq_maxlen;
1335 extern u_int32_t if_rcvq_maxlen;
1336 extern struct ifaddr **ifnet_addrs;
1337 extern lck_attr_t ifa_mtx_attr;
1338 extern lck_grp_t ifa_mtx_grp;
1339 extern lck_grp_t ifnet_lock_group;
1340 extern lck_attr_t ifnet_lock_attr;
1341 extern ifnet_t lo_ifp;
1342 extern uint32_t net_wake_pkt_debug;
1343
1344 extern int if_addmulti(struct ifnet *, const struct sockaddr *,
1345 struct ifmultiaddr **);
1346 extern int if_addmulti_anon(struct ifnet *, const struct sockaddr *,
1347 struct ifmultiaddr **);
1348 extern int if_allmulti(struct ifnet *, int);
1349 extern int if_delmulti(struct ifnet *, const struct sockaddr *);
1350 extern int if_delmulti_ifma(struct ifmultiaddr *);
1351 extern int if_delmulti_anon(struct ifnet *, const struct sockaddr *);
1352 extern void if_down(struct ifnet *);
1353 extern int if_down_all(void);
1354 extern void if_up(struct ifnet *);
1355 __private_extern__ void if_updown(struct ifnet *ifp, int up);
1356 extern int ifioctl(struct socket *, u_long, caddr_t, struct proc *);
1357 extern int ifioctllocked(struct socket *, u_long, caddr_t, struct proc *);
1358 extern struct ifnet *ifunit(const char *);
1359 extern struct ifnet *ifunit_ref(const char *);
1360 extern int ifunit_extract(const char *src, char *dst, size_t dstlen, int *unit);
1361 extern struct ifnet *if_withname(struct sockaddr *);
1362 extern void if_qflush(struct ifnet *, struct ifclassq *, bool);
1363 extern void if_qflush_snd(struct ifnet *, bool);
1364 extern void if_qflush_sc(struct ifnet *, mbuf_svc_class_t, u_int32_t,
1365 u_int32_t *, u_int32_t *, int);
1366
1367 extern struct if_clone *if_clone_lookup(const char *, u_int32_t *);
1368 extern int if_clone_attach(struct if_clone *);
1369 extern void if_clone_detach(struct if_clone *);
1370 extern u_int32_t if_functional_type(struct ifnet *, bool);
1371
1372 extern errno_t if_mcasts_update(struct ifnet *);
1373
1374 typedef enum {
1375 IFNET_LCK_ASSERT_EXCLUSIVE, /* RW: held as writer */
1376 IFNET_LCK_ASSERT_SHARED, /* RW: held as reader */
1377 IFNET_LCK_ASSERT_OWNED, /* RW: writer/reader, MTX: held */
1378 IFNET_LCK_ASSERT_NOTOWNED /* not held */
1379 } ifnet_lock_assert_t;
1380
1381 #define IF_LLADDR(_ifp) \
1382 (LLADDR(SDL(((_ifp)->if_lladdr)->ifa_addr)))
1383
1384 #define IF_INDEX_IN_RANGE(_ind_) ((_ind_) > 0 && \
1385 (unsigned int)(_ind_) <= (unsigned int)if_index)
1386
1387 __private_extern__ void ifnet_lock_assert(struct ifnet *, ifnet_lock_assert_t);
1388 __private_extern__ void ifnet_lock_shared(struct ifnet *ifp);
1389 __private_extern__ void ifnet_lock_exclusive(struct ifnet *ifp);
1390 __private_extern__ void ifnet_lock_done(struct ifnet *ifp);
1391
1392 #if INET
1393 __private_extern__ void if_inetdata_lock_shared(struct ifnet *ifp);
1394 __private_extern__ void if_inetdata_lock_exclusive(struct ifnet *ifp);
1395 __private_extern__ void if_inetdata_lock_done(struct ifnet *ifp);
1396 #endif
1397
1398 __private_extern__ void if_inet6data_lock_shared(struct ifnet *ifp);
1399 __private_extern__ void if_inet6data_lock_exclusive(struct ifnet *ifp);
1400 __private_extern__ void if_inet6data_lock_done(struct ifnet *ifp);
1401
1402 __private_extern__ void ifnet_head_lock_shared(void);
1403 __private_extern__ void ifnet_head_lock_exclusive(void);
1404 __private_extern__ void ifnet_head_done(void);
1405 __private_extern__ void ifnet_head_assert_exclusive(void);
1406
1407 __private_extern__ errno_t ifnet_set_idle_flags_locked(ifnet_t, u_int32_t,
1408 u_int32_t);
1409 __private_extern__ int ifnet_is_attached(struct ifnet *, int refio);
1410 __private_extern__ void ifnet_incr_pending_thread_count(struct ifnet *);
1411 __private_extern__ void ifnet_decr_pending_thread_count(struct ifnet *);
1412 __private_extern__ void ifnet_incr_iorefcnt(struct ifnet *);
1413 __private_extern__ void ifnet_decr_iorefcnt(struct ifnet *);
1414 __private_extern__ boolean_t ifnet_datamov_begin(struct ifnet *);
1415 __private_extern__ void ifnet_datamov_end(struct ifnet *);
1416 __private_extern__ void ifnet_datamov_suspend(struct ifnet *);
1417 __private_extern__ boolean_t ifnet_datamov_suspend_if_needed(struct ifnet *);
1418 __private_extern__ void ifnet_datamov_drain(struct ifnet *);
1419 __private_extern__ void ifnet_datamov_suspend_and_drain(struct ifnet *);
1420 __private_extern__ void ifnet_datamov_resume(struct ifnet *);
1421 __private_extern__ void ifnet_set_start_cycle(struct ifnet *,
1422 struct timespec *);
1423 __private_extern__ void ifnet_set_poll_cycle(struct ifnet *,
1424 struct timespec *);
1425
1426 __private_extern__ void if_attach_ifa(struct ifnet *, struct ifaddr *);
1427 __private_extern__ void if_attach_link_ifa(struct ifnet *, struct ifaddr *);
1428 __private_extern__ void if_detach_ifa(struct ifnet *, struct ifaddr *);
1429 __private_extern__ void if_detach_link_ifa(struct ifnet *, struct ifaddr *);
1430
1431 __private_extern__ void dlil_if_lock(void);
1432 __private_extern__ void dlil_if_unlock(void);
1433 __private_extern__ void dlil_if_lock_assert(void);
1434
1435 extern struct ifaddr *ifa_ifwithaddr(const struct sockaddr *);
1436 extern struct ifaddr *ifa_ifwithaddr_locked(const struct sockaddr *);
1437 extern struct ifaddr *ifa_ifwithaddr_scoped(const struct sockaddr *,
1438 unsigned int);
1439 extern struct ifaddr *ifa_ifwithaddr_scoped_locked(const struct sockaddr *,
1440 unsigned int);
1441 extern struct ifaddr *ifa_ifwithdstaddr(const struct sockaddr *);
1442 extern struct ifaddr *ifa_ifwithnet(const struct sockaddr *);
1443 extern struct ifaddr *ifa_ifwithnet_scoped(const struct sockaddr *,
1444 unsigned int);
1445 extern struct ifaddr *ifa_ifwithroute(int, const struct sockaddr *,
1446 const struct sockaddr *);
1447 extern struct ifaddr *ifa_ifwithroute_locked(int, const struct sockaddr *,
1448 const struct sockaddr *);
1449 extern struct ifaddr *ifa_ifwithroute_scoped_locked(int,
1450 const struct sockaddr *, const struct sockaddr *, unsigned int);
1451 extern struct ifaddr *ifaof_ifpforaddr_select(const struct sockaddr *, struct ifnet *);
1452 extern struct ifaddr *ifaof_ifpforaddr(const struct sockaddr *, struct ifnet *);
1453 __private_extern__ struct ifaddr *ifa_ifpgetprimary(struct ifnet *, int);
1454 extern void ifa_addref(struct ifaddr *, int);
1455 extern struct ifaddr *ifa_remref(struct ifaddr *, int);
1456 extern void ifa_lock_init(struct ifaddr *);
1457 extern void ifa_lock_destroy(struct ifaddr *);
1458 extern void ifma_addref(struct ifmultiaddr *, int);
1459 extern void ifma_remref(struct ifmultiaddr *);
1460
1461 extern void ifa_init(void);
1462
1463 __private_extern__ struct in_ifaddr *ifa_foraddr(unsigned int);
1464 __private_extern__ struct in_ifaddr *ifa_foraddr_scoped(unsigned int,
1465 unsigned int);
1466
1467 struct ifreq;
1468 extern errno_t ifnet_getset_opportunistic(struct ifnet *, u_long,
1469 struct ifreq *, struct proc *);
1470 extern int ifnet_get_throttle(struct ifnet *, u_int32_t *);
1471 extern int ifnet_set_throttle(struct ifnet *, u_int32_t);
1472 extern errno_t ifnet_getset_log(struct ifnet *, u_long,
1473 struct ifreq *, struct proc *);
1474 extern int ifnet_set_log(struct ifnet *, int32_t, uint32_t, int32_t, int32_t);
1475 extern int ifnet_get_log(struct ifnet *, int32_t *, uint32_t *, int32_t *,
1476 int32_t *);
1477 extern int ifnet_notify_address(struct ifnet *, int);
1478 extern void ifnet_notify_data_threshold(struct ifnet *);
1479
1480 #define IF_AFDATA_RLOCK if_afdata_rlock
1481 #define IF_AFDATA_RUNLOCK if_afdata_unlock
1482 #define IF_AFDATA_WLOCK if_afdata_wlock
1483 #define IF_AFDATA_WUNLOCK if_afdata_unlock
1484 #define IF_AFDATA_WLOCK_ASSERT if_afdata_wlock_assert
1485 #define IF_AFDATA_LOCK_ASSERT if_afdata_lock_assert
1486 #define IF_AFDATA_UNLOCK_ASSERT if_afdata_unlock_assert
1487
1488 static inline void
if_afdata_rlock(struct ifnet * ifp,int af)1489 if_afdata_rlock(struct ifnet *ifp, int af)
1490 {
1491 switch (af) {
1492 #if INET
1493 case AF_INET:
1494 lck_rw_lock_shared(&ifp->if_inetdata_lock);
1495 break;
1496 #endif
1497 case AF_INET6:
1498 lck_rw_lock_shared(&ifp->if_inet6data_lock);
1499 break;
1500 default:
1501 VERIFY(0);
1502 /* NOTREACHED */
1503 }
1504 return;
1505 }
1506
1507 static inline void
if_afdata_runlock(struct ifnet * ifp,int af)1508 if_afdata_runlock(struct ifnet *ifp, int af)
1509 {
1510 switch (af) {
1511 #if INET
1512 case AF_INET:
1513 lck_rw_done(&ifp->if_inetdata_lock);
1514 break;
1515 #endif
1516 case AF_INET6:
1517 lck_rw_done(&ifp->if_inet6data_lock);
1518 break;
1519 default:
1520 VERIFY(0);
1521 /* NOTREACHED */
1522 }
1523 return;
1524 }
1525
1526 static inline void
if_afdata_wlock(struct ifnet * ifp,int af)1527 if_afdata_wlock(struct ifnet *ifp, int af)
1528 {
1529 switch (af) {
1530 #if INET
1531 case AF_INET:
1532 lck_rw_lock_exclusive(&ifp->if_inetdata_lock);
1533 break;
1534 #endif
1535 case AF_INET6:
1536 lck_rw_lock_exclusive(&ifp->if_inet6data_lock);
1537 break;
1538 default:
1539 VERIFY(0);
1540 /* NOTREACHED */
1541 }
1542 return;
1543 }
1544
1545 static inline void
if_afdata_unlock(struct ifnet * ifp,int af)1546 if_afdata_unlock(struct ifnet *ifp, int af)
1547 {
1548 switch (af) {
1549 #if INET
1550 case AF_INET:
1551 lck_rw_done(&ifp->if_inetdata_lock);
1552 break;
1553 #endif
1554 case AF_INET6:
1555 lck_rw_done(&ifp->if_inet6data_lock);
1556 break;
1557 default:
1558 VERIFY(0);
1559 /* NOTREACHED */
1560 }
1561 return;
1562 }
1563
1564 static inline void
if_afdata_wlock_assert(struct ifnet * ifp,int af)1565 if_afdata_wlock_assert(struct ifnet *ifp, int af)
1566 {
1567 #if !MACH_ASSERT
1568 #pragma unused(ifp)
1569 #endif
1570 switch (af) {
1571 #if INET
1572 case AF_INET:
1573 LCK_RW_ASSERT(&ifp->if_inetdata_lock, LCK_RW_ASSERT_EXCLUSIVE);
1574 break;
1575 #endif
1576 case AF_INET6:
1577 LCK_RW_ASSERT(&ifp->if_inet6data_lock, LCK_RW_ASSERT_EXCLUSIVE);
1578 break;
1579 default:
1580 VERIFY(0);
1581 /* NOTREACHED */
1582 }
1583 return;
1584 }
1585
1586 static inline void
if_afdata_unlock_assert(struct ifnet * ifp,int af)1587 if_afdata_unlock_assert(struct ifnet *ifp, int af)
1588 {
1589 #if !MACH_ASSERT
1590 #pragma unused(ifp)
1591 #endif
1592 switch (af) {
1593 #if INET
1594 case AF_INET:
1595 LCK_RW_ASSERT(&ifp->if_inetdata_lock, LCK_RW_ASSERT_NOTHELD);
1596 break;
1597 #endif
1598 case AF_INET6:
1599 LCK_RW_ASSERT(&ifp->if_inet6data_lock, LCK_RW_ASSERT_NOTHELD);
1600 break;
1601 default:
1602 VERIFY(0);
1603 /* NOTREACHED */
1604 }
1605 return;
1606 }
1607
1608 static inline void
if_afdata_lock_assert(struct ifnet * ifp,int af)1609 if_afdata_lock_assert(struct ifnet *ifp, int af)
1610 {
1611 #if !MACH_ASSERT
1612 #pragma unused(ifp)
1613 #endif
1614 switch (af) {
1615 #if INET
1616 case AF_INET:
1617 LCK_RW_ASSERT(&ifp->if_inetdata_lock, LCK_RW_ASSERT_HELD);
1618 break;
1619 #endif
1620 case AF_INET6:
1621 LCK_RW_ASSERT(&ifp->if_inet6data_lock, LCK_RW_ASSERT_HELD);
1622 break;
1623 default:
1624 VERIFY(0);
1625 /* NOTREACHED */
1626 }
1627 return;
1628 }
1629
1630 struct in6_addr;
1631 __private_extern__ struct in6_ifaddr *ifa_foraddr6(struct in6_addr *);
1632 __private_extern__ struct in6_ifaddr *ifa_foraddr6_scoped(struct in6_addr *,
1633 unsigned int);
1634
1635 __private_extern__ void if_data_internal_to_if_data(struct ifnet *ifp,
1636 const struct if_data_internal *if_data_int, struct if_data *if_data);
1637 __private_extern__ void if_data_internal_to_if_data64(struct ifnet *ifp,
1638 const struct if_data_internal *if_data_int, struct if_data64 *if_data64);
1639 __private_extern__ void if_copy_traffic_class(struct ifnet *ifp,
1640 struct if_traffic_class *if_tc);
1641 __private_extern__ void if_copy_data_extended(struct ifnet *ifp,
1642 struct if_data_extended *if_de);
1643 __private_extern__ void if_copy_packet_stats(struct ifnet *ifp,
1644 struct if_packet_stats *if_ps);
1645 __private_extern__ void if_copy_rxpoll_stats(struct ifnet *ifp,
1646 struct if_rxpoll_stats *if_rs);
1647 __private_extern__ void if_copy_netif_stats(struct ifnet *ifp,
1648 struct if_netif_stats *if_ns);
1649
1650 __private_extern__ struct rtentry *ifnet_cached_rtlookup_inet(struct ifnet *,
1651 struct in_addr);
1652 __private_extern__ struct rtentry *ifnet_cached_rtlookup_inet6(struct ifnet *,
1653 struct in6_addr *);
1654
1655 __private_extern__ u_int32_t if_get_protolist(struct ifnet * ifp,
1656 u_int32_t *protolist, u_int32_t count);
1657 __private_extern__ void if_free_protolist(u_int32_t *list);
1658 __private_extern__ errno_t if_state_update(struct ifnet *,
1659 struct if_interface_state *);
1660 __private_extern__ void if_get_state(struct ifnet *,
1661 struct if_interface_state *);
1662 __private_extern__ errno_t if_probe_connectivity(struct ifnet *ifp,
1663 u_int32_t conn_probe);
1664 __private_extern__ void if_lqm_update(struct ifnet *, int32_t, int);
1665 __private_extern__ void ifnet_update_sndq(struct ifclassq *, cqev_t);
1666 __private_extern__ void ifnet_update_rcv(struct ifnet *, cqev_t);
1667
1668 __private_extern__ void ifnet_flowadv(uint32_t);
1669
1670 __private_extern__ errno_t ifnet_set_input_bandwidths(struct ifnet *,
1671 struct if_bandwidths *);
1672 __private_extern__ errno_t ifnet_set_output_bandwidths(struct ifnet *,
1673 struct if_bandwidths *, boolean_t);
1674 __private_extern__ u_int64_t ifnet_output_linkrate(struct ifnet *);
1675 __private_extern__ u_int64_t ifnet_input_linkrate(struct ifnet *);
1676
1677 __private_extern__ errno_t ifnet_set_input_latencies(struct ifnet *,
1678 struct if_latencies *);
1679 __private_extern__ errno_t ifnet_set_output_latencies(struct ifnet *,
1680 struct if_latencies *, boolean_t);
1681
1682 __private_extern__ void ifnet_clear_netagent(uuid_t);
1683
1684 __private_extern__ int ifnet_set_netsignature(struct ifnet *, uint8_t,
1685 uint8_t, uint16_t, uint8_t *);
1686 __private_extern__ int ifnet_get_netsignature(struct ifnet *, uint8_t,
1687 uint8_t *, uint16_t *, uint8_t *);
1688
1689 struct ipv6_prefix;
1690 __private_extern__ int ifnet_set_nat64prefix(struct ifnet *,
1691 struct ipv6_prefix *);
1692 __private_extern__ int ifnet_get_nat64prefix(struct ifnet *,
1693 struct ipv6_prefix *);
1694
1695 /* Required exclusive ifnet_head lock */
1696 __private_extern__ void ifnet_remove_from_ordered_list(struct ifnet *);
1697
1698 __private_extern__ void ifnet_increment_generation(struct ifnet *);
1699 __private_extern__ u_int32_t ifnet_get_generation(struct ifnet *);
1700
1701 /* Adding and deleting netagents will take ifnet lock */
1702 __private_extern__ int if_add_netagent(struct ifnet *, uuid_t);
1703 __private_extern__ int if_add_netagent_locked(struct ifnet *, uuid_t);
1704 __private_extern__ int if_delete_netagent(struct ifnet *, uuid_t);
1705 __private_extern__ boolean_t if_check_netagent(struct ifnet *, uuid_t);
1706
1707 #if SKYWALK
1708 extern unsigned int if_enable_fsw_ip_netagent;
1709 static inline boolean_t
if_is_fsw_ip_netagent_enabled(void)1710 if_is_fsw_ip_netagent_enabled(void)
1711 {
1712 return if_enable_fsw_ip_netagent != 0;
1713 }
1714 extern unsigned int if_enable_fsw_transport_netagent;
1715 static inline boolean_t
if_is_fsw_transport_netagent_enabled(void)1716 if_is_fsw_transport_netagent_enabled(void)
1717 {
1718 return if_enable_fsw_transport_netagent != 0;
1719 }
1720 static inline boolean_t
if_is_fsw_netagent_enabled(void)1721 if_is_fsw_netagent_enabled(void)
1722 {
1723 return if_is_fsw_transport_netagent_enabled() ||
1724 if_is_fsw_ip_netagent_enabled();
1725 }
1726 #endif /* SKYWALK */
1727
1728 extern int if_set_qosmarking_mode(struct ifnet *, u_int32_t);
1729 __private_extern__ uint32_t ifnet_mbuf_packetpreamblelen(struct ifnet *);
1730 __private_extern__ void intf_event_enqueue_nwk_wq_entry(struct ifnet *ifp,
1731 struct sockaddr *addrp, uint32_t intf_event_code);
1732 __private_extern__ void ifnet_update_stats_per_flow(struct ifnet_stats_per_flow *,
1733 struct ifnet *);
1734 __private_extern__ int if_get_tcp_kao_max(struct ifnet *);
1735 #if XNU_TARGET_OS_OSX
1736 __private_extern__ errno_t ifnet_framer_stub(struct ifnet *, struct mbuf **,
1737 const struct sockaddr *, const char *, const char *, u_int32_t *,
1738 u_int32_t *);
1739 #endif /* XNU_TARGET_OS_OSX */
1740 __private_extern__ void ifnet_enqueue_multi_setup(struct ifnet *, uint16_t,
1741 uint16_t);
1742 __private_extern__ errno_t ifnet_enqueue_mbuf(struct ifnet *, struct mbuf *,
1743 boolean_t, boolean_t *);
1744 __private_extern__ errno_t ifnet_enqueue_mbuf_chain(struct ifnet *,
1745 struct mbuf *, struct mbuf *, uint32_t, uint32_t, boolean_t, boolean_t *);
1746 __private_extern__ int ifnet_enqueue_netem(void *handle, pktsched_pkt_t *pkts,
1747 uint32_t n_pkts);
1748 #if SKYWALK
1749 struct __kern_packet;
1750 extern errno_t ifnet_enqueue_pkt(struct ifnet *,
1751 struct __kern_packet *, boolean_t, boolean_t *);
1752 extern errno_t ifnet_enqueue_ifcq_pkt(struct ifnet *, struct ifclassq *,
1753 struct __kern_packet *, boolean_t, boolean_t *);
1754 extern errno_t ifnet_enqueue_pkt_chain(struct ifnet *, struct __kern_packet *,
1755 struct __kern_packet *, uint32_t, uint32_t, boolean_t, boolean_t *);
1756 extern errno_t ifnet_enqueue_ifcq_pkt_chain(struct ifnet *, struct ifclassq *,
1757 struct __kern_packet *, struct __kern_packet *, uint32_t, uint32_t, boolean_t,
1758 boolean_t *);
1759 extern errno_t ifnet_set_output_handler(struct ifnet *, ifnet_output_func);
1760 extern void ifnet_reset_output_handler(struct ifnet *);
1761 extern errno_t ifnet_set_start_handler(struct ifnet *, ifnet_start_func);
1762 extern void ifnet_reset_start_handler(struct ifnet *);
1763
1764 #define SK_NXS_MS_IF_ADDR_GENCNT_INC(ifp) \
1765 atomic_add_32(&(ifp)->if_nx_flowswitch.if_fsw_ipaddr_gencnt, 1);
1766 #endif /* SKYWALK */
1767
1768 extern int if_low_power_verbose;
1769 extern int if_low_power_restricted;
1770 extern void if_low_power_evhdlr_init(void);
1771 extern int if_set_low_power(struct ifnet *, bool);
1772 extern u_int32_t if_set_eflags(ifnet_t, u_int32_t);
1773 extern void if_clear_eflags(ifnet_t, u_int32_t);
1774 extern u_int32_t if_set_xflags(ifnet_t, u_int32_t);
1775 extern void if_clear_xflags(ifnet_t, u_int32_t);
1776 extern boolean_t sa_equal(const struct sockaddr *, const struct sockaddr *);
1777 extern void ifnet_update_traffic_rule_genid(struct ifnet *);
1778 extern boolean_t ifnet_sync_traffic_rule_genid(struct ifnet *, uint32_t *);
1779 extern void ifnet_update_traffic_rule_count(struct ifnet *, uint32_t);
1780
1781 #endif /* BSD_KERNEL_PRIVATE */
1782 #endif /* DRIVERKIT */
1783
1784 #endif /* !_NET_IF_VAR_PRIVATE_H_ */
1785