1 /*
2 * Copyright (c) 2016-2022 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 #include <skywalk/os_skywalk_private.h>
30 #include <netinet/tcp_var.h>
31
32 static int kern_packet_clone_internal(const kern_packet_t, kern_packet_t *,
33 uint32_t, kern_packet_copy_mode_t);
34
35 #if (DEBUG || DEVELOPMENT)
36 __attribute__((noreturn))
37 void
pkt_subtype_assert_fail(const kern_packet_t ph,uint64_t type,uint64_t subtype)38 pkt_subtype_assert_fail(const kern_packet_t ph, uint64_t type, uint64_t subtype)
39 {
40 panic("invalid packet handle 0x%llx (type %llu != %llu || "
41 "subtype %llu != %llu)", ph, SK_PTR_TYPE(ph), type,
42 SK_PTR_SUBTYPE(ph), subtype);
43 /* NOTREACHED */
44 __builtin_unreachable();
45 }
46
47 __attribute__((noreturn))
48 void
pkt_type_assert_fail(const kern_packet_t ph,uint64_t type)49 pkt_type_assert_fail(const kern_packet_t ph, uint64_t type)
50 {
51 panic("invalid packet handle 0x%llx (type %llu != %llu)",
52 ph, SK_PTR_TYPE(ph), type);
53 /* NOTREACHED */
54 __builtin_unreachable();
55 }
56 #endif /* DEBUG || DEVELOPMENT */
57
58 errno_t
kern_packet_set_headroom(const kern_packet_t ph,const uint8_t headroom)59 kern_packet_set_headroom(const kern_packet_t ph, const uint8_t headroom)
60 {
61 return __packet_set_headroom(ph, headroom);
62 }
63
64 uint8_t
kern_packet_get_headroom(const kern_packet_t ph)65 kern_packet_get_headroom(const kern_packet_t ph)
66 {
67 return __packet_get_headroom(ph);
68 }
69
70 errno_t
kern_packet_set_link_header_offset(const kern_packet_t ph,const uint8_t off)71 kern_packet_set_link_header_offset(const kern_packet_t ph, const uint8_t off)
72 {
73 return __packet_set_headroom(ph, off);
74 }
75
76 uint16_t
kern_packet_get_link_header_offset(const kern_packet_t ph)77 kern_packet_get_link_header_offset(const kern_packet_t ph)
78 {
79 return __packet_get_headroom(ph);
80 }
81
82 errno_t
kern_packet_set_link_header_length(const kern_packet_t ph,const uint8_t off)83 kern_packet_set_link_header_length(const kern_packet_t ph, const uint8_t off)
84 {
85 return __packet_set_link_header_length(ph, off);
86 }
87
88 uint8_t
kern_packet_get_link_header_length(const kern_packet_t ph)89 kern_packet_get_link_header_length(const kern_packet_t ph)
90 {
91 return __packet_get_link_header_length(ph);
92 }
93
94 errno_t
kern_packet_set_link_broadcast(const kern_packet_t ph)95 kern_packet_set_link_broadcast(const kern_packet_t ph)
96 {
97 return __packet_set_link_broadcast(ph);
98 }
99
100 boolean_t
kern_packet_get_link_broadcast(const kern_packet_t ph)101 kern_packet_get_link_broadcast(const kern_packet_t ph)
102 {
103 return __packet_get_link_broadcast(ph);
104 }
105
106 errno_t
kern_packet_set_link_multicast(const kern_packet_t ph)107 kern_packet_set_link_multicast(const kern_packet_t ph)
108 {
109 return __packet_set_link_multicast(ph);
110 }
111
112 errno_t
kern_packet_set_link_ethfcs(const kern_packet_t ph)113 kern_packet_set_link_ethfcs(const kern_packet_t ph)
114 {
115 return __packet_set_link_ethfcs(ph);
116 }
117
118 boolean_t
kern_packet_get_link_multicast(const kern_packet_t ph)119 kern_packet_get_link_multicast(const kern_packet_t ph)
120 {
121 return __packet_get_link_multicast(ph);
122 }
123
124 boolean_t
kern_packet_get_link_ethfcs(const kern_packet_t ph)125 kern_packet_get_link_ethfcs(const kern_packet_t ph)
126 {
127 return __packet_get_link_ethfcs(ph);
128 }
129
130 /* deprecated -- no effect, use set_link_header_length instead */
131 errno_t
kern_packet_set_network_header_offset(const kern_packet_t ph,const uint16_t off)132 kern_packet_set_network_header_offset(const kern_packet_t ph,
133 const uint16_t off)
134 {
135 #pragma unused(ph, off)
136 return 0;
137 }
138
139 /* deprecated -- use get_link_header_length instead */
140 uint16_t
kern_packet_get_network_header_offset(const kern_packet_t ph)141 kern_packet_get_network_header_offset(const kern_packet_t ph)
142 {
143 return (uint16_t)__packet_get_headroom(ph) +
144 (uint16_t)__packet_get_link_header_length(ph);
145 }
146
147 /* deprecated */
148 errno_t
kern_packet_set_transport_header_offset(const kern_packet_t ph,const uint16_t off)149 kern_packet_set_transport_header_offset(const kern_packet_t ph,
150 const uint16_t off)
151 {
152 #pragma unused(ph, off)
153 return 0;
154 }
155
156 /* deprecated */
157 uint16_t
kern_packet_get_transport_header_offset(const kern_packet_t ph)158 kern_packet_get_transport_header_offset(const kern_packet_t ph)
159 {
160 #pragma unused(ph)
161 return 0;
162 }
163
164 boolean_t
kern_packet_get_transport_traffic_background(const kern_packet_t ph)165 kern_packet_get_transport_traffic_background(const kern_packet_t ph)
166 {
167 return __packet_get_transport_traffic_background(ph);
168 }
169
170 boolean_t
kern_packet_get_transport_traffic_realtime(const kern_packet_t ph)171 kern_packet_get_transport_traffic_realtime(const kern_packet_t ph)
172 {
173 return __packet_get_transport_traffic_realtime(ph);
174 }
175
176 boolean_t
kern_packet_get_transport_retransmit(const kern_packet_t ph)177 kern_packet_get_transport_retransmit(const kern_packet_t ph)
178 {
179 return __packet_get_transport_retransmit(ph);
180 }
181
182 boolean_t
kern_packet_get_transport_new_flow(const kern_packet_t ph)183 kern_packet_get_transport_new_flow(const kern_packet_t ph)
184 {
185 return __packet_get_transport_new_flow(ph);
186 }
187
188 boolean_t
kern_packet_get_transport_last_packet(const kern_packet_t ph)189 kern_packet_get_transport_last_packet(const kern_packet_t ph)
190 {
191 return __packet_get_transport_last_packet(ph);
192 }
193
194 int
kern_packet_set_service_class(const kern_packet_t ph,const kern_packet_svc_class_t sc)195 kern_packet_set_service_class(const kern_packet_t ph,
196 const kern_packet_svc_class_t sc)
197 {
198 return __packet_set_service_class(ph, sc);
199 }
200
201 kern_packet_svc_class_t
kern_packet_get_service_class(const kern_packet_t ph)202 kern_packet_get_service_class(const kern_packet_t ph)
203 {
204 return __packet_get_service_class(ph);
205 }
206
207 errno_t
kern_packet_set_compression_generation_count(const kern_packet_t ph,uint32_t gencnt)208 kern_packet_set_compression_generation_count(const kern_packet_t ph,
209 uint32_t gencnt)
210 {
211 return __packet_set_comp_gencnt(ph, gencnt);
212 }
213
214 errno_t
kern_packet_get_compression_generation_count(const kern_packet_t ph,uint32_t * pgencnt)215 kern_packet_get_compression_generation_count(const kern_packet_t ph, uint32_t *pgencnt)
216 {
217 return __packet_get_comp_gencnt(ph, pgencnt);
218 }
219
220 errno_t
kern_packet_get_service_class_index(const kern_packet_svc_class_t svc,uint32_t * index)221 kern_packet_get_service_class_index(const kern_packet_svc_class_t svc,
222 uint32_t *index)
223 {
224 if (index == NULL || !KPKT_VALID_SVC(svc)) {
225 return EINVAL;
226 }
227
228 *index = KPKT_SVCIDX(svc);
229 return 0;
230 }
231
232 boolean_t
kern_packet_is_high_priority(const kern_packet_t ph)233 kern_packet_is_high_priority(const kern_packet_t ph)
234 {
235 uint32_t sc;
236 boolean_t is_hi_priority;
237
238 sc = __packet_get_service_class(ph);
239
240 switch (sc) {
241 case PKT_SC_VI:
242 case PKT_SC_SIG:
243 case PKT_SC_VO:
244 case PKT_SC_CTL:
245 is_hi_priority = (PKT_ADDR(ph)->pkt_comp_gencnt == 0 ||
246 PKT_ADDR(ph)->pkt_comp_gencnt == TCP_ACK_COMPRESSION_DUMMY);
247 break;
248
249 case PKT_SC_BK_SYS:
250 case PKT_SC_BK:
251 case PKT_SC_BE:
252 case PKT_SC_RD:
253 case PKT_SC_OAM:
254 case PKT_SC_AV:
255 case PKT_SC_RV:
256 default:
257 is_hi_priority = false;
258 }
259 return is_hi_priority;
260 }
261
262 errno_t
kern_packet_set_traffic_class(const kern_packet_t ph,kern_packet_traffic_class_t tc)263 kern_packet_set_traffic_class(const kern_packet_t ph,
264 kern_packet_traffic_class_t tc)
265 {
266 return __packet_set_traffic_class(ph, tc);
267 }
268
269 kern_packet_traffic_class_t
kern_packet_get_traffic_class(const kern_packet_t ph)270 kern_packet_get_traffic_class(const kern_packet_t ph)
271 {
272 return __packet_get_traffic_class(ph);
273 }
274
275 errno_t
kern_packet_set_inet_checksum(const kern_packet_t ph,const packet_csum_flags_t flags,const uint16_t start,const uint16_t stuff,const boolean_t tx)276 kern_packet_set_inet_checksum(const kern_packet_t ph,
277 const packet_csum_flags_t flags, const uint16_t start,
278 const uint16_t stuff, const boolean_t tx)
279 {
280 return __packet_set_inet_checksum(ph, flags, start, stuff, tx);
281 }
282
283 packet_csum_flags_t
kern_packet_get_inet_checksum(const kern_packet_t ph,uint16_t * start,uint16_t * val,const boolean_t tx)284 kern_packet_get_inet_checksum(const kern_packet_t ph, uint16_t *start,
285 uint16_t *val, const boolean_t tx)
286 {
287 return __packet_get_inet_checksum(ph, start, val, tx);
288 }
289
290 void
kern_packet_set_flow_uuid(const kern_packet_t ph,const uuid_t flow_uuid)291 kern_packet_set_flow_uuid(const kern_packet_t ph, const uuid_t flow_uuid)
292 {
293 __packet_set_flow_uuid(ph, flow_uuid);
294 }
295
296 void
kern_packet_get_flow_uuid(const kern_packet_t ph,uuid_t * flow_uuid)297 kern_packet_get_flow_uuid(const kern_packet_t ph, uuid_t *flow_uuid)
298 {
299 __packet_get_flow_uuid(ph, *flow_uuid);
300 }
301
302 void
kern_packet_clear_flow_uuid(const kern_packet_t ph)303 kern_packet_clear_flow_uuid(const kern_packet_t ph)
304 {
305 __packet_clear_flow_uuid(ph);
306 }
307
308 void
kern_packet_get_euuid(const kern_packet_t ph,uuid_t euuid)309 kern_packet_get_euuid(const kern_packet_t ph, uuid_t euuid)
310 {
311 if (__probable(SK_PTR_TYPE(ph) == NEXUS_META_TYPE_PACKET)) {
312 uuid_copy(euuid, PKT_ADDR(ph)->pkt_policy_euuid);
313 } else {
314 uuid_clear(euuid);
315 }
316 }
317
318 void
kern_packet_set_policy_id(const kern_packet_t ph,uint32_t policy_id)319 kern_packet_set_policy_id(const kern_packet_t ph, uint32_t policy_id)
320 {
321 if (__probable(SK_PTR_TYPE(ph) == NEXUS_META_TYPE_PACKET)) {
322 PKT_ADDR(ph)->pkt_policy_id = policy_id;
323 }
324 }
325
326 uint32_t
kern_packet_get_policy_id(const kern_packet_t ph)327 kern_packet_get_policy_id(const kern_packet_t ph)
328 {
329 if (__probable(SK_PTR_TYPE(ph) == NEXUS_META_TYPE_PACKET)) {
330 return PKT_ADDR(ph)->pkt_policy_id;
331 } else {
332 return 0;
333 }
334 }
335
336 uint32_t
kern_packet_get_data_length(const kern_packet_t ph)337 kern_packet_get_data_length(const kern_packet_t ph)
338 {
339 return __packet_get_data_length(ph);
340 }
341
342 uint32_t
kern_packet_get_buflet_count(const kern_packet_t ph)343 kern_packet_get_buflet_count(const kern_packet_t ph)
344 {
345 return __packet_get_buflet_count(ph);
346 }
347
348 kern_buflet_t
kern_packet_get_next_buflet(const kern_packet_t ph,const kern_buflet_t bprev)349 kern_packet_get_next_buflet(const kern_packet_t ph, const kern_buflet_t bprev)
350 {
351 return __packet_get_next_buflet(ph, bprev);
352 }
353
354 errno_t
kern_packet_finalize(const kern_packet_t ph)355 kern_packet_finalize(const kern_packet_t ph)
356 {
357 return __packet_finalize(ph);
358 }
359
360 kern_packet_idx_t
kern_packet_get_object_index(const kern_packet_t ph)361 kern_packet_get_object_index(const kern_packet_t ph)
362 {
363 return __packet_get_object_index(ph);
364 }
365
366 errno_t
kern_packet_get_timestamp(const kern_packet_t ph,uint64_t * ts,boolean_t * valid)367 kern_packet_get_timestamp(const kern_packet_t ph, uint64_t *ts,
368 boolean_t *valid)
369 {
370 return __packet_get_timestamp(ph, ts, valid);
371 }
372
373 errno_t
kern_packet_set_timestamp(const kern_packet_t ph,uint64_t ts,boolean_t valid)374 kern_packet_set_timestamp(const kern_packet_t ph, uint64_t ts, boolean_t valid)
375 {
376 return __packet_set_timestamp(ph, ts, valid);
377 }
378
379 struct mbuf *
kern_packet_get_mbuf(const kern_packet_t pkt)380 kern_packet_get_mbuf(const kern_packet_t pkt)
381 {
382 struct __kern_packet *kpkt = SK_PTR_ADDR_KPKT(pkt);
383
384 if ((kpkt->pkt_pflags & PKT_F_MBUF_DATA) != 0) {
385 return kpkt->pkt_mbuf;
386 }
387 return NULL;
388 }
389
390 errno_t
kern_packet_get_timestamp_requested(const kern_packet_t ph,boolean_t * requested)391 kern_packet_get_timestamp_requested(const kern_packet_t ph,
392 boolean_t *requested)
393 {
394 return __packet_get_timestamp_requested(ph, requested);
395 }
396
397 void
kern_packet_tx_completion(const kern_packet_t ph,ifnet_t ifp)398 kern_packet_tx_completion(const kern_packet_t ph, ifnet_t ifp)
399 {
400 struct __kern_packet *kpkt = SK_PTR_ADDR_KPKT(ph);
401
402 PKT_TYPE_ASSERT(ph, NEXUS_META_TYPE_PACKET);
403 /*
404 * handling of transmit completion events.
405 */
406 (void) kern_channel_event_transmit_status_with_packet(ph, ifp);
407
408 /*
409 * handling of transmit completion timestamp request callbacks.
410 */
411 if ((kpkt->pkt_pflags & PKT_F_TX_COMPL_TS_REQ) != 0) {
412 __packet_perform_tx_completion_callbacks(ph, ifp);
413 }
414 }
415
416 errno_t
kern_packet_get_tx_completion_status(const kern_packet_t ph,kern_return_t * status)417 kern_packet_get_tx_completion_status(const kern_packet_t ph,
418 kern_return_t *status)
419 {
420 return __packet_get_tx_completion_status(ph, status);
421 }
422
423 errno_t
kern_packet_set_tx_completion_status(const kern_packet_t ph,kern_return_t status)424 kern_packet_set_tx_completion_status(const kern_packet_t ph,
425 kern_return_t status)
426 {
427 return __packet_set_tx_completion_status(ph, status);
428 }
429
430 void
kern_packet_set_group_start(const kern_packet_t ph)431 kern_packet_set_group_start(const kern_packet_t ph)
432 {
433 (void) __packet_set_group_start(ph);
434 }
435
436 boolean_t
kern_packet_get_group_start(const kern_packet_t ph)437 kern_packet_get_group_start(const kern_packet_t ph)
438 {
439 return __packet_get_group_start(ph);
440 }
441
442 void
kern_packet_set_group_end(const kern_packet_t ph)443 kern_packet_set_group_end(const kern_packet_t ph)
444 {
445 (void) __packet_set_group_end(ph);
446 }
447
448 boolean_t
kern_packet_get_group_end(const kern_packet_t ph)449 kern_packet_get_group_end(const kern_packet_t ph)
450 {
451 return __packet_get_group_end(ph);
452 }
453
454 errno_t
kern_packet_get_expire_time(const kern_packet_t ph,uint64_t * ts)455 kern_packet_get_expire_time(const kern_packet_t ph, uint64_t *ts)
456 {
457 return __packet_get_expire_time(ph, ts);
458 }
459
460 errno_t
kern_packet_set_expire_time(const kern_packet_t ph,const uint64_t ts)461 kern_packet_set_expire_time(const kern_packet_t ph, const uint64_t ts)
462 {
463 return __packet_set_expire_time(ph, ts);
464 }
465
466 errno_t
kern_packet_get_expiry_action(const kern_packet_t ph,packet_expiry_action_t * pea)467 kern_packet_get_expiry_action(const kern_packet_t ph, packet_expiry_action_t *pea)
468 {
469 return __packet_get_expiry_action(ph, pea);
470 }
471
472 errno_t
kern_packet_set_expiry_action(const kern_packet_t ph,packet_expiry_action_t pea)473 kern_packet_set_expiry_action(const kern_packet_t ph, packet_expiry_action_t pea)
474 {
475 return __packet_set_expiry_action(ph, pea);
476 }
477
478 errno_t
kern_packet_get_token(const kern_packet_t ph,void * token,uint16_t * len)479 kern_packet_get_token(const kern_packet_t ph, void *token, uint16_t *len)
480 {
481 return __packet_get_token(ph, token, len);
482 }
483
484 errno_t
kern_packet_set_token(const kern_packet_t ph,const void * token,const uint16_t len)485 kern_packet_set_token(const kern_packet_t ph, const void *token,
486 const uint16_t len)
487 {
488 return __packet_set_token(ph, token, len);
489 }
490
491 errno_t
kern_packet_get_packetid(const kern_packet_t ph,packet_id_t * pktid)492 kern_packet_get_packetid(const kern_packet_t ph, packet_id_t *pktid)
493 {
494 return __packet_get_packetid(ph, pktid);
495 }
496
497 errno_t
kern_packet_set_vlan_tag(const kern_packet_t ph,const uint16_t tag,const boolean_t tag_in_pkt)498 kern_packet_set_vlan_tag(const kern_packet_t ph, const uint16_t tag,
499 const boolean_t tag_in_pkt)
500 {
501 return __packet_set_vlan_tag(ph, tag, tag_in_pkt);
502 }
503
504 errno_t
kern_packet_get_vlan_tag(const kern_packet_t ph,uint16_t * tag,boolean_t * tag_in_pkt)505 kern_packet_get_vlan_tag(const kern_packet_t ph, uint16_t *tag,
506 boolean_t *tag_in_pkt)
507 {
508 return __packet_get_vlan_tag(ph, tag, tag_in_pkt);
509 }
510
511 uint16_t
kern_packet_get_vlan_id(const uint16_t tag)512 kern_packet_get_vlan_id(const uint16_t tag)
513 {
514 return __packet_get_vlan_id(tag);
515 }
516
517 uint8_t
kern_packet_get_vlan_priority(const uint16_t tag)518 kern_packet_get_vlan_priority(const uint16_t tag)
519 {
520 return __packet_get_vlan_priority(tag);
521 }
522
523 errno_t
kern_packet_get_app_metadata(const kern_packet_t ph,packet_app_metadata_type_t * app_type,uint8_t * app_metadata)524 kern_packet_get_app_metadata(const kern_packet_t ph,
525 packet_app_metadata_type_t *app_type, uint8_t *app_metadata)
526 {
527 return __packet_get_app_metadata(ph, app_type, app_metadata);
528 }
529
530 void
kern_packet_set_wake_flag(const kern_packet_t ph)531 kern_packet_set_wake_flag(const kern_packet_t ph)
532 {
533 return __packet_set_wake_flag(ph);
534 }
535
536 boolean_t
kern_packet_get_wake_flag(const kern_packet_t ph)537 kern_packet_get_wake_flag(const kern_packet_t ph)
538 {
539 return __packet_get_wake_flag(ph);
540 }
541
542 uint32_t
kern_inet_checksum(const void * data,uint32_t len,uint32_t sum0)543 kern_inet_checksum(const void *data, uint32_t len, uint32_t sum0)
544 {
545 return __packet_cksum(data, len, sum0);
546 }
547
548 uint32_t
kern_copy_and_inet_checksum(const void * src,void * dst,uint32_t len,uint32_t sum0)549 kern_copy_and_inet_checksum(const void *src, void *dst, uint32_t len,
550 uint32_t sum0)
551 {
552 uint32_t sum = __packet_copy_and_sum(src, dst, len, sum0);
553 return __packet_fold_sum_final(sum);
554 }
555
556 /*
557 * Source packet must be finalized (not dropped); cloned packet does not
558 * inherit the finalized flag, or the classified flag, so caller is
559 * responsible for finalizing it and classifying it (as needed).
560 */
561 static int
kern_packet_clone_internal(const kern_packet_t ph1,kern_packet_t * ph2,uint32_t skmflag,kern_packet_copy_mode_t mode)562 kern_packet_clone_internal(const kern_packet_t ph1, kern_packet_t *ph2,
563 uint32_t skmflag, kern_packet_copy_mode_t mode)
564 {
565 struct kern_pbufpool *pool;
566 struct __kern_packet *p1 = SK_PTR_ADDR_KPKT(ph1);
567 struct __kern_packet *p2 = NULL;
568 struct __kern_buflet *p1_buf, *p2_buf;
569 uint16_t bufs_cnt_alloc;
570 int m_how;
571 int err;
572
573 /* TODO: Add quantum support */
574 VERIFY(SK_PTR_TYPE(ph1) == NEXUS_META_TYPE_PACKET);
575
576 /* Source needs to be finalized (not dropped) and with 1 buflet */
577 if ((p1->pkt_qum.qum_qflags & QUM_F_DROPPED) != 0 ||
578 p1->pkt_bufs_cnt == 0) {
579 return EINVAL;
580 }
581
582 /* TODO: Add multi-buflet support */
583 VERIFY(p1->pkt_bufs_cnt == 1);
584
585 switch (mode) {
586 case KPKT_COPY_HEAVY:
587 /*
588 * Allocate a packet with the same number of buffers as that
589 * of the source packet's; this cannot be 0 per check above.
590 */
591 bufs_cnt_alloc = p1->pkt_bufs_cnt;
592 break;
593
594 case KPKT_COPY_LIGHT:
595 /*
596 * Allocate an "empty" packet with no buffers attached; this
597 * will work only on pools marked with "on-demand", which is
598 * the case today for device drivers needing shared buffers
599 * support.
600 *
601 * TODO: We could make this generic and applicable to regular
602 * pools, but it would involve detaching the buffer that comes
603 * attached to the constructed packet; this wouldn't be that
604 * lightweight in nature, but whatever. In such a case the
605 * number of buffers requested during allocation is the same
606 * as the that of the source packet's. For now, let it fail
607 * naturally on regular pools, as part of allocation below.
608 *
609 * XXX: This would also fail on quantums as we currently
610 * restrict quantums to have exactly one buffer.
611 */
612 bufs_cnt_alloc = 0;
613 break;
614
615 default:
616 VERIFY(0);
617 /* NOTREACHED */
618 __builtin_unreachable();
619 }
620
621 *ph2 = 0;
622 pool = __DECONST(struct kern_pbufpool *, SK_PTR_ADDR_KQUM(ph1)->qum_pp);
623 if (skmflag & SKMEM_NOSLEEP) {
624 err = kern_pbufpool_alloc_nosleep(pool, bufs_cnt_alloc, ph2);
625 m_how = M_NOWAIT;
626 } else {
627 err = kern_pbufpool_alloc(pool, bufs_cnt_alloc, ph2);
628 ASSERT(err != ENOMEM);
629 m_how = M_WAIT;
630 }
631 if (__improbable(err != 0)) {
632 /* See comments above related to KPKT_COPY_{HEAVY,LIGHT} */
633 goto error;
634 }
635 p2 = SK_PTR_ADDR_KPKT(*ph2);
636
637 /* Copy packet metadata */
638 _QUM_COPY(&(p1)->pkt_qum, &(p2)->pkt_qum);
639 _PKT_COPY(p1, p2);
640 ASSERT(p2->pkt_mbuf == NULL);
641 ASSERT(p2->pkt_bufs_max == p1->pkt_bufs_max);
642
643 /* clear trace id */
644 p2->pkt_trace_id = 0;
645 /* clear finalized and classified bits from clone */
646 p2->pkt_qum.qum_qflags &= ~(QUM_F_FINALIZED | QUM_F_FLOW_CLASSIFIED);
647
648 switch (mode) {
649 case KPKT_COPY_HEAVY:
650 /*
651 * Heavy: Copy buffer contents and extra metadata.
652 */
653 ASSERT(p2->pkt_bufs_cnt == p1->pkt_bufs_cnt);
654 if (__probable(p1->pkt_bufs_cnt != 0)) {
655 uint8_t *saddr, *daddr;
656 uint32_t copy_len;
657 /*
658 * TODO -- [email protected]
659 * Packets from compat driver could have dlen > dlim
660 * for flowswitch flow compatibility, cleanup when we
661 * make them consistent.
662 */
663 PKT_GET_FIRST_BUFLET(p1, p1->pkt_bufs_cnt, p1_buf);
664 PKT_GET_FIRST_BUFLET(p2, p2->pkt_bufs_cnt, p2_buf);
665 saddr = (void *)p1_buf->buf_addr;
666 daddr = (void *)p2_buf->buf_addr;
667 copy_len = MIN(p1_buf->buf_dlen, p1_buf->buf_dlim);
668 if (copy_len != 0) {
669 bcopy(saddr, daddr, copy_len);
670 }
671 *__DECONST(uint32_t *, &p2_buf->buf_dlim) =
672 p1_buf->buf_dlim;
673 p2_buf->buf_dlen = p1_buf->buf_dlen;
674 p2_buf->buf_doff = p1_buf->buf_doff;
675 }
676
677 /* Copy AQM metadata */
678 p2->pkt_flowsrc_type = p1->pkt_flowsrc_type;
679 p2->pkt_flowsrc_fidx = p1->pkt_flowsrc_fidx;
680 _CASSERT((offsetof(struct __flow, flow_src_id) % 8) == 0);
681 _UUID_COPY(p2->pkt_flowsrc_id, p1->pkt_flowsrc_id);
682 _UUID_COPY(p2->pkt_policy_euuid, p1->pkt_policy_euuid);
683 p2->pkt_policy_id = p1->pkt_policy_id;
684
685 p2->pkt_pflags = p1->pkt_pflags;
686 if (p1->pkt_pflags & PKT_F_MBUF_DATA) {
687 ASSERT(p1->pkt_mbuf != NULL);
688 p2->pkt_mbuf = m_dup(p1->pkt_mbuf, m_how);
689 if (p2->pkt_mbuf == NULL) {
690 KPKT_CLEAR_MBUF_DATA(p2);
691 err = ENOBUFS;
692 goto error;
693 }
694 }
695 break;
696
697 case KPKT_COPY_LIGHT:
698 /*
699 * Lightweight: Duplicate buflet(s) and add refs.
700 */
701 ASSERT(p1->pkt_mbuf == NULL);
702 ASSERT(p2->pkt_bufs_cnt == 0);
703 if (__probable(p1->pkt_bufs_cnt != 0)) {
704 PKT_GET_FIRST_BUFLET(p1, p1->pkt_bufs_cnt, p1_buf);
705 p2_buf = &p2->pkt_qum_buf;
706 *__DECONST(uint16_t *, &p2->pkt_bufs_cnt) =
707 p1->pkt_bufs_cnt;
708 _KBUF_COPY(p1_buf, p2_buf);
709 ASSERT(p2_buf->buf_nbft_addr == 0);
710 ASSERT(p2_buf->buf_nbft_idx == OBJ_IDX_NONE);
711 }
712 ASSERT(p2->pkt_bufs_cnt == p1->pkt_bufs_cnt);
713 ASSERT(p2->pkt_bufs_max == p1->pkt_bufs_max);
714 ASSERT(err == 0);
715 break;
716 }
717
718 error:
719 if (err != 0 && p2 != NULL) {
720 uint32_t usecnt = 0;
721
722 ASSERT(p2->pkt_mbuf == NULL);
723 if (__probable(mode == KPKT_COPY_LIGHT)) {
724 /*
725 * This is undoing what _KBUF_COPY() did earlier,
726 * in case this routine is modified to handle regular
727 * pool (not on-demand), which also decrements the
728 * shared buffer's usecnt. For regular pool, calling
729 * kern_pubfpool_free() will not yield a call to
730 * destroy the metadata.
731 */
732 PKT_GET_FIRST_BUFLET(p2, p2->pkt_bufs_cnt, p2_buf);
733 KBUF_DTOR(p2_buf, usecnt);
734 }
735 kern_pbufpool_free(pool, *ph2);
736 *ph2 = 0;
737 }
738
739 return err;
740 }
741
742 errno_t
kern_packet_clone(const kern_packet_t ph1,kern_packet_t * ph2,kern_packet_copy_mode_t mode)743 kern_packet_clone(const kern_packet_t ph1, kern_packet_t *ph2,
744 kern_packet_copy_mode_t mode)
745 {
746 return kern_packet_clone_internal(ph1, ph2, 0, mode);
747 }
748
749 errno_t
kern_packet_clone_nosleep(const kern_packet_t ph1,kern_packet_t * ph2,kern_packet_copy_mode_t mode)750 kern_packet_clone_nosleep(const kern_packet_t ph1, kern_packet_t *ph2,
751 kern_packet_copy_mode_t mode)
752 {
753 return kern_packet_clone_internal(ph1, ph2, SKMEM_NOSLEEP, mode);
754 }
755
756 errno_t
kern_packet_add_buflet(const kern_packet_t ph,const kern_buflet_t bprev,const kern_buflet_t bnew)757 kern_packet_add_buflet(const kern_packet_t ph, const kern_buflet_t bprev,
758 const kern_buflet_t bnew)
759 {
760 return __packet_add_buflet(ph, bprev, bnew);
761 }
762
763 void
kern_packet_append(const kern_packet_t ph1,const kern_packet_t ph2)764 kern_packet_append(const kern_packet_t ph1, const kern_packet_t ph2)
765 {
766 /*
767 * TODO:
768 * Add assert for non-zero ph2 here after changing IOSkywalkFamily
769 * to use kern_packet_set_next() for clearing the next pointer.
770 */
771 kern_packet_set_next(ph1, ph2);
772 }
773
774 kern_packet_t
kern_packet_get_next(const kern_packet_t ph)775 kern_packet_get_next(const kern_packet_t ph)
776 {
777 struct __kern_packet *p, *next;
778
779 p = SK_PTR_ADDR_KPKT(ph);
780 next = p->pkt_nextpkt;
781 return next == NULL ? 0 : SK_PKT2PH(next);
782 }
783
784 void
kern_packet_set_next(const kern_packet_t ph1,const kern_packet_t ph2)785 kern_packet_set_next(const kern_packet_t ph1, const kern_packet_t ph2)
786 {
787 struct __kern_packet *p1, *p2;
788
789 ASSERT(ph1 != 0);
790 p1 = SK_PTR_ADDR_KPKT(ph1);
791 p2 = (ph2 == 0 ? NULL : SK_PTR_ADDR_KPKT(ph2));
792 p1->pkt_nextpkt = p2;
793 }
794
795 void
kern_packet_set_chain_counts(const kern_packet_t ph,uint32_t count,uint32_t bytes)796 kern_packet_set_chain_counts(const kern_packet_t ph, uint32_t count,
797 uint32_t bytes)
798 {
799 struct __kern_packet *p;
800
801 p = SK_PTR_ADDR_KPKT(ph);
802 p->pkt_chain_count = count;
803 p->pkt_chain_bytes = bytes;
804 }
805
806 void
kern_packet_get_chain_counts(const kern_packet_t ph,uint32_t * count,uint32_t * bytes)807 kern_packet_get_chain_counts(const kern_packet_t ph, uint32_t *count,
808 uint32_t *bytes)
809 {
810 struct __kern_packet *p;
811
812 p = SK_PTR_ADDR_KPKT(ph);
813 *count = p->pkt_chain_count;
814 *bytes = p->pkt_chain_bytes;
815 }
816
817 errno_t
kern_buflet_set_data_offset(const kern_buflet_t buf,const uint32_t doff)818 kern_buflet_set_data_offset(const kern_buflet_t buf, const uint32_t doff)
819 {
820 return __buflet_set_data_offset(buf, doff);
821 }
822
823 uint32_t
kern_buflet_get_data_offset(const kern_buflet_t buf)824 kern_buflet_get_data_offset(const kern_buflet_t buf)
825 {
826 return __buflet_get_data_offset(buf);
827 }
828
829 errno_t
kern_buflet_set_data_length(const kern_buflet_t buf,const uint32_t dlen)830 kern_buflet_set_data_length(const kern_buflet_t buf, const uint32_t dlen)
831 {
832 return __buflet_set_data_length(buf, dlen);
833 }
834
835 uint32_t
kern_buflet_get_data_length(const kern_buflet_t buf)836 kern_buflet_get_data_length(const kern_buflet_t buf)
837 {
838 return __buflet_get_data_length(buf);
839 }
840
841 void *
kern_buflet_get_object_address(const kern_buflet_t buf)842 kern_buflet_get_object_address(const kern_buflet_t buf)
843 {
844 return __buflet_get_object_address(buf);
845 }
846
847 uint32_t
kern_buflet_get_object_limit(const kern_buflet_t buf)848 kern_buflet_get_object_limit(const kern_buflet_t buf)
849 {
850 return __buflet_get_object_limit(buf);
851 }
852
853 void *
kern_buflet_get_data_address(const kern_buflet_t buf)854 kern_buflet_get_data_address(const kern_buflet_t buf)
855 {
856 return __buflet_get_data_address(buf);
857 }
858
859 errno_t
kern_buflet_set_data_address(const kern_buflet_t buf,const void * daddr)860 kern_buflet_set_data_address(const kern_buflet_t buf, const void *daddr)
861 {
862 return __buflet_set_data_address(buf, daddr);
863 }
864
865 errno_t
kern_buflet_set_buffer_offset(const kern_buflet_t buf,const uint32_t off)866 kern_buflet_set_buffer_offset(const kern_buflet_t buf, const uint32_t off)
867 {
868 return __buflet_set_buffer_offset(buf, off);
869 }
870
871 kern_segment_t
kern_buflet_get_object_segment(const kern_buflet_t buf,kern_obj_idx_seg_t * idx)872 kern_buflet_get_object_segment(const kern_buflet_t buf,
873 kern_obj_idx_seg_t *idx)
874 {
875 return __buflet_get_object_segment(buf, idx);
876 }
877
878 uint32_t
kern_buflet_get_data_limit(const kern_buflet_t buf)879 kern_buflet_get_data_limit(const kern_buflet_t buf)
880 {
881 return __buflet_get_data_limit(buf);
882 }
883
884 errno_t
kern_buflet_set_data_limit(const kern_buflet_t buf,const uint32_t dlim)885 kern_buflet_set_data_limit(const kern_buflet_t buf, const uint32_t dlim)
886 {
887 return __buflet_set_data_limit(buf, dlim);
888 }
889
890 packet_trace_id_t
kern_packet_get_trace_id(const kern_packet_t ph)891 kern_packet_get_trace_id(const kern_packet_t ph)
892 {
893 return __packet_get_trace_id(ph);
894 }
895
896 void
kern_packet_set_trace_id(const kern_packet_t ph,packet_trace_id_t trace_id)897 kern_packet_set_trace_id(const kern_packet_t ph, packet_trace_id_t trace_id)
898 {
899 return __packet_set_trace_id(ph, trace_id);
900 }
901
902 void
kern_packet_trace_event(const kern_packet_t ph,uint32_t event)903 kern_packet_trace_event(const kern_packet_t ph, uint32_t event)
904 {
905 return __packet_trace_event(ph, event);
906 }
907
908 errno_t
kern_packet_copy_bytes(kern_packet_t pkt,size_t off,size_t len,void * out_data)909 kern_packet_copy_bytes(kern_packet_t pkt, size_t off, size_t len, void* out_data)
910 {
911 kern_buflet_t buflet = NULL;
912 size_t count;
913 uint8_t *addr;
914 uint32_t buflet_len;
915
916 buflet = __packet_get_next_buflet(pkt, buflet);
917 if (buflet == NULL) {
918 return EINVAL;
919 }
920 buflet_len = __buflet_get_data_length(buflet);
921 if (len > buflet_len) {
922 return EINVAL;
923 }
924 if (off > buflet_len) {
925 return EINVAL;
926 }
927 addr = __buflet_get_data_address(buflet);
928 if (addr == NULL) {
929 return EINVAL;
930 }
931 addr += __buflet_get_data_offset(buflet);
932 addr += off;
933 count = MIN(len, buflet_len - off);
934 bcopy((void *) addr, out_data, count);
935
936 return 0;
937 }
938
939
940 errno_t
kern_packet_get_flowid(const kern_packet_t ph,packet_flowid_t * pflowid)941 kern_packet_get_flowid(const kern_packet_t ph, packet_flowid_t *pflowid)
942 {
943 return __packet_get_flowid(ph, pflowid);
944 }
945
946 void
kern_packet_set_trace_tag(const kern_packet_t ph,packet_trace_tag_t tag)947 kern_packet_set_trace_tag(const kern_packet_t ph, packet_trace_tag_t tag)
948 {
949 __packet_set_trace_tag(ph, tag);
950 }
951
952 packet_trace_tag_t
kern_packet_get_trace_tag(const kern_packet_t ph)953 kern_packet_get_trace_tag(const kern_packet_t ph)
954 {
955 return __packet_get_trace_tag(ph);
956 }
957
958 errno_t
kern_packet_get_tx_nexus_port_id(const kern_packet_t ph,uint32_t * nx_port_id)959 kern_packet_get_tx_nexus_port_id(const kern_packet_t ph, uint32_t *nx_port_id)
960 {
961 return __packet_get_tx_nx_port_id(ph, nx_port_id);
962 }
963
964 uint16_t
kern_packet_get_protocol_segment_size(const kern_packet_t ph)965 kern_packet_get_protocol_segment_size(const kern_packet_t ph)
966 {
967 return __packet_get_protocol_segment_size(ph);
968 }
969
970 void
kern_packet_set_segment_count(const kern_packet_t ph,uint8_t segcount)971 kern_packet_set_segment_count(const kern_packet_t ph, uint8_t segcount)
972 {
973 __packet_set_segment_count(ph, segcount);
974 }
975
976 void *
kern_packet_get_priv(const kern_packet_t ph)977 kern_packet_get_priv(const kern_packet_t ph)
978 {
979 return __packet_get_priv(ph);
980 }
981
982 void
kern_packet_set_priv(const kern_packet_t ph,void * priv)983 kern_packet_set_priv(const kern_packet_t ph, void *priv)
984 {
985 return __packet_set_priv(ph, priv);
986 }
987
988 void
kern_packet_get_tso_flags(const kern_packet_t ph,packet_tso_flags_t * flags)989 kern_packet_get_tso_flags(const kern_packet_t ph, packet_tso_flags_t *flags)
990 {
991 return __packet_get_tso_flags(ph, flags);
992 }
993
994 errno_t
kern_packet_check_for_expiry_and_notify(const kern_packet_t ph,ifnet_t ifp,uint16_t origin,uint16_t status)995 kern_packet_check_for_expiry_and_notify(
996 const kern_packet_t ph, ifnet_t ifp, uint16_t origin, uint16_t status)
997 {
998 errno_t err = 0;
999 uint32_t nx_port_id = 0;
1000 packet_expiry_action_t exp_action = PACKET_EXPIRY_ACTION_NONE;
1001 os_channel_event_packet_transmit_expired_t exp_notif = {0};
1002
1003 if (__improbable(!ifp)) {
1004 return EINVAL;
1005 }
1006
1007 err = __packet_get_expire_time(ph, &exp_notif.packet_tx_expiration_deadline);
1008 if (__probable(err)) {
1009 if (err == ENOENT) {
1010 /* Expiration time is not set; can not continue; not an error. */
1011 return 0;
1012 }
1013 return err;
1014 }
1015
1016 err = __packet_get_expiry_action(ph, &exp_action);
1017 if (__probable(err)) {
1018 if (err == ENOENT) {
1019 /* Expiry action is not set; can not continue; not an error. */
1020 return 0;
1021 }
1022 return err;
1023 }
1024
1025 if (exp_action == PACKET_EXPIRY_ACTION_NONE) {
1026 /* Expiry action is no-op; can not continue; not an error. */
1027 return 0;
1028 }
1029
1030 exp_notif.packet_tx_expiration_timestamp = mach_absolute_time();
1031
1032 /* Check whether the packet has expired */
1033 if (exp_notif.packet_tx_expiration_timestamp < exp_notif.packet_tx_expiration_deadline) {
1034 /* The packet hasn't expired yet; can not continue; not an error */
1035 return 0;
1036 }
1037
1038 /* The packet has expired and notification is requested */
1039 err = __packet_get_packetid(ph, &exp_notif.packet_id);
1040 if (__improbable(err)) {
1041 return err;
1042 }
1043
1044 err = __packet_get_tx_nx_port_id(ph, &nx_port_id);
1045 if (__improbable(err)) {
1046 return err;
1047 }
1048
1049 exp_notif.packet_tx_expiration_status = status;
1050 exp_notif.packet_tx_expiration_origin = origin;
1051
1052 /* Send the notification status */
1053 err = kern_channel_event_transmit_expired(
1054 ifp, &exp_notif, nx_port_id);
1055
1056 return err;
1057 }
1058