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1 /* Zebra Policy Based Routing (PBR) main handling.
2 * Copyright (C) 2018 Cumulus Networks, Inc.
3 *
4 * This file is part of FRR.
5 *
6 * FRR is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; either version 2, or (at your option) any
9 * later version.
10 *
11 * FRR is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with FRR; see the file COPYING. If not, write to the Free
18 * Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
19 * 02111-1307, USA.
20 */
21
22 #include <zebra.h>
23
24 #include <jhash.h>
25 #include <hash.h>
26 #include <memory.h>
27 #include <hook.h>
28
29 #include "zebra/zebra_router.h"
30 #include "zebra/zebra_pbr.h"
31 #include "zebra/rt.h"
32 #include "zebra/zapi_msg.h"
33 #include "zebra/zebra_memory.h"
34 #include "zebra/zserv.h"
35
36 /* definitions */
37 DEFINE_MTYPE_STATIC(ZEBRA, PBR_IPTABLE_IFNAME, "PBR interface list")
38
39 /* definitions */
40 static const struct message ipset_type_msg[] = {
41 {IPSET_NET_PORT_NET, "net,port,net"},
42 {IPSET_NET_PORT, "net,port"},
43 {IPSET_NET_NET, "net,net"},
44 {IPSET_NET, "net"},
45 {0}
46 };
47
48 const struct message icmp_typecode_str[] = {
49 { 0 << 8, "echo-reply"},
50 { 0 << 8, "pong"},
51 { 3 << 8, "network-unreachable"},
52 { (3 << 8) + 1, "host-unreachable"},
53 { (3 << 8) + 2, "protocol-unreachable"},
54 { (3 << 8) + 3, "port-unreachable"},
55 { (3 << 8) + 4, "fragmentation-needed"},
56 { (3 << 8) + 5, "source-route-failed"},
57 { (3 << 8) + 6, "network-unknown"},
58 { (3 << 8) + 7, "host-unknown"},
59 { (3 << 8) + 9, "network-prohibited"},
60 { (3 << 8) + 10, "host-prohibited"},
61 { (3 << 8) + 11, "TOS-network-unreachable"},
62 { (3 << 8) + 12, "TOS-host-unreachable"},
63 { (3 << 8) + 13, "communication-prohibited"},
64 { (3 << 8) + 14, "host-precedence-violation"},
65 { (3 << 8) + 15, "precedence-cutoff"},
66 { 4 << 8, "source-quench"},
67 { 5 << 8, "network-redirect"},
68 { (5 << 8) + 1, "host-redirect"},
69 { (5 << 8) + 2, "TOS-network-redirect"},
70 { (5 << 8) + 3, "TOS-host-redirect"},
71 { 8 << 8, "echo-request"},
72 { 8 << 8, "ping"},
73 { 9 << 8, "router-advertisement"},
74 { 10 << 8, "router-solicitation"},
75 { 11 << 8, "ttl-zero-during-transit"},
76 { (11 << 8) + 1, "ttl-zero-during-reassembly"},
77 { 12 << 8, "ip-header-bad"},
78 { (12 << 8) + 1, "required-option-missing"},
79 { 13 << 8, "timestamp-request"},
80 { 14 << 8, "timestamp-reply"},
81 { 17 << 8, "address-mask-request"},
82 { 18 << 8, "address-mask-reply"},
83 {0}
84 };
85
86 /* definitions */
87 static const struct message tcp_value_str[] = {
88 {TCP_HEADER_FIN, "FIN"},
89 {TCP_HEADER_SYN, "SYN"},
90 {TCP_HEADER_RST, "RST"},
91 {TCP_HEADER_PSH, "PSH"},
92 {TCP_HEADER_ACK, "ACK"},
93 {TCP_HEADER_URG, "URG"},
94 {0}
95 };
96
97 static const struct message fragment_value_str[] = {
98 {1, "dont-fragment"},
99 {2, "is-fragment"},
100 {4, "first-fragment"},
101 {8, "last-fragment"},
102 {0}
103 };
104
105 /* static function declarations */
106 DEFINE_HOOK(zebra_pbr_ipset_entry_get_stat,
107 (struct zebra_pbr_ipset_entry *ipset, uint64_t *pkts,
108 uint64_t *bytes),
109 (ipset, pkts, bytes))
110
111 DEFINE_HOOK(zebra_pbr_iptable_get_stat,
112 (struct zebra_pbr_iptable *iptable, uint64_t *pkts,
113 uint64_t *bytes),
114 (iptable, pkts, bytes))
115
116 DEFINE_HOOK(zebra_pbr_iptable_update,
117 (int cmd, struct zebra_pbr_iptable *iptable), (cmd, iptable));
118
119 DEFINE_HOOK(zebra_pbr_ipset_entry_update,
120 (int cmd, struct zebra_pbr_ipset_entry *ipset), (cmd, ipset));
121
122 DEFINE_HOOK(zebra_pbr_ipset_update,
123 (int cmd, struct zebra_pbr_ipset *ipset), (cmd, ipset));
124
125 /* Private functions */
126
127 /* Public functions */
128 void zebra_pbr_rules_free(void *arg)
129 {
130 struct zebra_pbr_rule *rule;
131
132 rule = (struct zebra_pbr_rule *)arg;
133
134 (void)kernel_del_pbr_rule(rule);
135 XFREE(MTYPE_TMP, rule);
136 }
137
138 uint32_t zebra_pbr_rules_hash_key(const void *arg)
139 {
140 const struct zebra_pbr_rule *rule;
141 uint32_t key;
142
143 rule = arg;
144 key = jhash_3words(rule->rule.seq, rule->rule.priority,
145 rule->rule.action.table,
146 prefix_hash_key(&rule->rule.filter.src_ip));
147
148 if (rule->rule.filter.fwmark)
149 key = jhash_3words(rule->rule.filter.fwmark, rule->vrf_id,
150 rule->rule.ifindex, key);
151 else
152 key = jhash_2words(rule->vrf_id, rule->rule.ifindex, key);
153
154 return jhash_3words(rule->rule.filter.src_port,
155 rule->rule.filter.dst_port,
156 prefix_hash_key(&rule->rule.filter.dst_ip),
157 jhash_1word(rule->rule.unique, key));
158 }
159
160 bool zebra_pbr_rules_hash_equal(const void *arg1, const void *arg2)
161 {
162 const struct zebra_pbr_rule *r1, *r2;
163
164 r1 = (const struct zebra_pbr_rule *)arg1;
165 r2 = (const struct zebra_pbr_rule *)arg2;
166
167 if (r1->rule.seq != r2->rule.seq)
168 return false;
169
170 if (r1->rule.priority != r2->rule.priority)
171 return false;
172
173 if (r1->rule.unique != r2->rule.unique)
174 return false;
175
176 if (r1->rule.action.table != r2->rule.action.table)
177 return false;
178
179 if (r1->rule.filter.src_port != r2->rule.filter.src_port)
180 return false;
181
182 if (r1->rule.filter.dst_port != r2->rule.filter.dst_port)
183 return false;
184
185 if (r1->rule.filter.fwmark != r2->rule.filter.fwmark)
186 return false;
187
188 if (!prefix_same(&r1->rule.filter.src_ip, &r2->rule.filter.src_ip))
189 return false;
190
191 if (!prefix_same(&r1->rule.filter.dst_ip, &r2->rule.filter.dst_ip))
192 return false;
193
194 if (r1->rule.ifindex != r2->rule.ifindex)
195 return false;
196
197 if (r1->vrf_id != r2->vrf_id)
198 return false;
199
200 return true;
201 }
202
203 struct pbr_rule_unique_lookup {
204 struct zebra_pbr_rule *rule;
205 uint32_t unique;
206 ifindex_t ifindex;
207 vrf_id_t vrf_id;
208 };
209
210 static int pbr_rule_lookup_unique_walker(struct hash_bucket *b, void *data)
211 {
212 struct pbr_rule_unique_lookup *pul = data;
213 struct zebra_pbr_rule *rule = b->data;
214
215 if (pul->unique == rule->rule.unique
216 && pul->ifindex == rule->rule.ifindex
217 && pul->vrf_id == rule->vrf_id) {
218 pul->rule = rule;
219 return HASHWALK_ABORT;
220 }
221
222 return HASHWALK_CONTINUE;
223 }
224
225 static struct zebra_pbr_rule *
226 pbr_rule_lookup_unique(struct zebra_pbr_rule *zrule)
227 {
228 struct pbr_rule_unique_lookup pul;
229
230 pul.unique = zrule->rule.unique;
231 pul.ifindex = zrule->rule.ifindex;
232 pul.rule = NULL;
233 pul.vrf_id = zrule->vrf_id;
234 hash_walk(zrouter.rules_hash, &pbr_rule_lookup_unique_walker, &pul);
235
236 return pul.rule;
237 }
238
239 void zebra_pbr_ipset_free(void *arg)
240 {
241 struct zebra_pbr_ipset *ipset;
242
243 ipset = (struct zebra_pbr_ipset *)arg;
244 hook_call(zebra_pbr_ipset_update, 0, ipset);
245 XFREE(MTYPE_TMP, ipset);
246 }
247
248 uint32_t zebra_pbr_ipset_hash_key(const void *arg)
249 {
250 const struct zebra_pbr_ipset *ipset = arg;
251 uint32_t *pnt = (uint32_t *)&ipset->ipset_name;
252 uint32_t key = jhash_1word(ipset->vrf_id, 0x63ab42de);
253
254 return jhash2(pnt, ZEBRA_IPSET_NAME_HASH_SIZE, key);
255 }
256
257 bool zebra_pbr_ipset_hash_equal(const void *arg1, const void *arg2)
258 {
259 const struct zebra_pbr_ipset *r1, *r2;
260
261 r1 = (const struct zebra_pbr_ipset *)arg1;
262 r2 = (const struct zebra_pbr_ipset *)arg2;
263
264 if (r1->type != r2->type)
265 return false;
266 if (r1->unique != r2->unique)
267 return false;
268 if (r1->vrf_id != r2->vrf_id)
269 return false;
270
271 if (strncmp(r1->ipset_name, r2->ipset_name,
272 ZEBRA_IPSET_NAME_SIZE))
273 return false;
274 return true;
275 }
276
277 void zebra_pbr_ipset_entry_free(void *arg)
278 {
279 struct zebra_pbr_ipset_entry *ipset;
280
281 ipset = (struct zebra_pbr_ipset_entry *)arg;
282
283 hook_call(zebra_pbr_ipset_entry_update, 0, ipset);
284
285 XFREE(MTYPE_TMP, ipset);
286 }
287
288 uint32_t zebra_pbr_ipset_entry_hash_key(const void *arg)
289 {
290 const struct zebra_pbr_ipset_entry *ipset;
291 uint32_t key;
292
293 ipset = arg;
294 key = prefix_hash_key(&ipset->src);
295 key = jhash_1word(ipset->unique, key);
296 key = jhash_1word(prefix_hash_key(&ipset->dst), key);
297 key = jhash(&ipset->dst_port_min, 2, key);
298 key = jhash(&ipset->dst_port_max, 2, key);
299 key = jhash(&ipset->src_port_min, 2, key);
300 key = jhash(&ipset->src_port_max, 2, key);
301 key = jhash(&ipset->proto, 1, key);
302
303 return key;
304 }
305
306 bool zebra_pbr_ipset_entry_hash_equal(const void *arg1, const void *arg2)
307 {
308 const struct zebra_pbr_ipset_entry *r1, *r2;
309
310 r1 = (const struct zebra_pbr_ipset_entry *)arg1;
311 r2 = (const struct zebra_pbr_ipset_entry *)arg2;
312
313 if (r1->unique != r2->unique)
314 return false;
315
316 if (!prefix_same(&r1->src, &r2->src))
317 return false;
318
319 if (!prefix_same(&r1->dst, &r2->dst))
320 return false;
321
322 if (r1->src_port_min != r2->src_port_min)
323 return false;
324
325 if (r1->src_port_max != r2->src_port_max)
326 return false;
327
328 if (r1->dst_port_min != r2->dst_port_min)
329 return false;
330
331 if (r1->dst_port_max != r2->dst_port_max)
332 return false;
333
334 if (r1->proto != r2->proto)
335 return false;
336 return true;
337 }
338
339 void zebra_pbr_iptable_free(void *arg)
340 {
341 struct zebra_pbr_iptable *iptable;
342 struct listnode *node, *nnode;
343 char *name;
344
345 iptable = (struct zebra_pbr_iptable *)arg;
346 hook_call(zebra_pbr_iptable_update, 0, iptable);
347
348 if (iptable->interface_name_list) {
349 for (ALL_LIST_ELEMENTS(iptable->interface_name_list, node,
350 nnode, name)) {
351 XFREE(MTYPE_PBR_IPTABLE_IFNAME, name);
352 list_delete_node(iptable->interface_name_list, node);
353 }
354 list_delete(&iptable->interface_name_list);
355 }
356 XFREE(MTYPE_TMP, iptable);
357 }
358
359 uint32_t zebra_pbr_iptable_hash_key(const void *arg)
360 {
361 const struct zebra_pbr_iptable *iptable = arg;
362 uint32_t *pnt = (uint32_t *)&(iptable->ipset_name);
363 uint32_t key;
364
365 key = jhash2(pnt, ZEBRA_IPSET_NAME_HASH_SIZE,
366 0x63ab42de);
367 key = jhash_1word(iptable->fwmark, key);
368 key = jhash_1word(iptable->pkt_len_min, key);
369 key = jhash_1word(iptable->pkt_len_max, key);
370 key = jhash_1word(iptable->tcp_flags, key);
371 key = jhash_1word(iptable->tcp_mask_flags, key);
372 key = jhash_1word(iptable->dscp_value, key);
373 key = jhash_1word(iptable->protocol, key);
374 key = jhash_1word(iptable->fragment, key);
375 key = jhash_1word(iptable->vrf_id, key);
376
377 return jhash_3words(iptable->filter_bm, iptable->type,
378 iptable->unique, key);
379 }
380
381 bool zebra_pbr_iptable_hash_equal(const void *arg1, const void *arg2)
382 {
383 const struct zebra_pbr_iptable *r1, *r2;
384
385 r1 = (const struct zebra_pbr_iptable *)arg1;
386 r2 = (const struct zebra_pbr_iptable *)arg2;
387
388 if (r1->vrf_id != r2->vrf_id)
389 return false;
390 if (r1->type != r2->type)
391 return false;
392 if (r1->unique != r2->unique)
393 return false;
394 if (r1->filter_bm != r2->filter_bm)
395 return false;
396 if (r1->fwmark != r2->fwmark)
397 return false;
398 if (r1->action != r2->action)
399 return false;
400 if (strncmp(r1->ipset_name, r2->ipset_name,
401 ZEBRA_IPSET_NAME_SIZE))
402 return false;
403 if (r1->pkt_len_min != r2->pkt_len_min)
404 return false;
405 if (r1->pkt_len_max != r2->pkt_len_max)
406 return false;
407 if (r1->tcp_flags != r2->tcp_flags)
408 return false;
409 if (r1->tcp_mask_flags != r2->tcp_mask_flags)
410 return false;
411 if (r1->dscp_value != r2->dscp_value)
412 return false;
413 if (r1->fragment != r2->fragment)
414 return false;
415 if (r1->protocol != r2->protocol)
416 return false;
417 return true;
418 }
419
420 static void *pbr_rule_alloc_intern(void *arg)
421 {
422 struct zebra_pbr_rule *zpr;
423 struct zebra_pbr_rule *new;
424
425 zpr = (struct zebra_pbr_rule *)arg;
426
427 new = XCALLOC(MTYPE_TMP, sizeof(*new));
428
429 memcpy(new, zpr, sizeof(*zpr));
430
431 return new;
432 }
433
434 void zebra_pbr_add_rule(struct zebra_pbr_rule *rule)
435 {
436 struct zebra_pbr_rule *unique =
437 pbr_rule_lookup_unique(rule);
438
439 (void)hash_get(zrouter.rules_hash, rule, pbr_rule_alloc_intern);
440 (void)kernel_add_pbr_rule(rule);
441 /*
442 * Rule Replace semantics, if we have an old, install the
443 * new rule, look above, and then delete the old
444 */
445 if (unique)
446 zebra_pbr_del_rule(unique);
447 }
448
449 void zebra_pbr_del_rule(struct zebra_pbr_rule *rule)
450 {
451 struct zebra_pbr_rule *lookup;
452
453 lookup = hash_lookup(zrouter.rules_hash, rule);
454 (void)kernel_del_pbr_rule(rule);
455
456 if (lookup) {
457 hash_release(zrouter.rules_hash, lookup);
458 XFREE(MTYPE_TMP, lookup);
459 } else
460 zlog_debug("%s: Rule being deleted we know nothing about",
461 __PRETTY_FUNCTION__);
462 }
463
464 static void zebra_pbr_cleanup_rules(struct hash_bucket *b, void *data)
465 {
466 struct zebra_pbr_rule *rule = b->data;
467 int *sock = data;
468
469 if (rule->sock == *sock) {
470 (void)kernel_del_pbr_rule(rule);
471 if (hash_release(zrouter.rules_hash, rule))
472 XFREE(MTYPE_TMP, rule);
473 else
474 zlog_debug(
475 "%s: Rule seq: %u is being cleaned but we can't find it in our tables",
476 __func__, rule->rule.seq);
477 }
478 }
479
480 static void zebra_pbr_cleanup_ipset(struct hash_bucket *b, void *data)
481 {
482 struct zebra_pbr_ipset *ipset = b->data;
483 int *sock = data;
484
485 if (ipset->sock == *sock) {
486 hook_call(zebra_pbr_ipset_update, 0, ipset);
487 hash_release(zrouter.ipset_hash, ipset);
488 }
489 }
490
491 static void zebra_pbr_cleanup_ipset_entry(struct hash_bucket *b, void *data)
492 {
493 struct zebra_pbr_ipset_entry *ipset = b->data;
494 int *sock = data;
495
496 if (ipset->sock == *sock) {
497 hook_call(zebra_pbr_ipset_entry_update, 0, ipset);
498 hash_release(zrouter.ipset_entry_hash, ipset);
499 }
500 }
501
502 static void zebra_pbr_cleanup_iptable(struct hash_bucket *b, void *data)
503 {
504 struct zebra_pbr_iptable *iptable = b->data;
505 int *sock = data;
506
507 if (iptable->sock == *sock) {
508 hook_call(zebra_pbr_iptable_update, 0, iptable);
509 hash_release(zrouter.iptable_hash, iptable);
510 }
511 }
512
513 static int zebra_pbr_client_close_cleanup(struct zserv *client)
514 {
515 int sock = client->sock;
516
517 if (!sock)
518 return 0;
519 hash_iterate(zrouter.rules_hash, zebra_pbr_cleanup_rules, &sock);
520 hash_iterate(zrouter.iptable_hash, zebra_pbr_cleanup_iptable, &sock);
521 hash_iterate(zrouter.ipset_entry_hash, zebra_pbr_cleanup_ipset_entry,
522 &sock);
523 hash_iterate(zrouter.ipset_hash, zebra_pbr_cleanup_ipset, &sock);
524 return 1;
525 }
526
527 void zebra_pbr_init(void)
528 {
529 hook_register(zserv_client_close, zebra_pbr_client_close_cleanup);
530 }
531
532 static void *pbr_ipset_alloc_intern(void *arg)
533 {
534 struct zebra_pbr_ipset *zpi;
535 struct zebra_pbr_ipset *new;
536
537 zpi = (struct zebra_pbr_ipset *)arg;
538
539 new = XCALLOC(MTYPE_TMP, sizeof(struct zebra_pbr_ipset));
540
541 memcpy(new, zpi, sizeof(*zpi));
542
543 return new;
544 }
545
546 void zebra_pbr_create_ipset(struct zebra_pbr_ipset *ipset)
547 {
548 int ret;
549
550 (void)hash_get(zrouter.ipset_hash, ipset, pbr_ipset_alloc_intern);
551 ret = hook_call(zebra_pbr_ipset_update, 1, ipset);
552 kernel_pbr_ipset_add_del_status(ipset,
553 ret ? ZEBRA_DPLANE_INSTALL_SUCCESS
554 : ZEBRA_DPLANE_INSTALL_FAILURE);
555 }
556
557 void zebra_pbr_destroy_ipset(struct zebra_pbr_ipset *ipset)
558 {
559 struct zebra_pbr_ipset *lookup;
560
561 lookup = hash_lookup(zrouter.ipset_hash, ipset);
562 hook_call(zebra_pbr_ipset_update, 0, ipset);
563 if (lookup) {
564 hash_release(zrouter.ipset_hash, lookup);
565 XFREE(MTYPE_TMP, lookup);
566 } else
567 zlog_debug(
568 "%s: IPSet Entry being deleted we know nothing about",
569 __PRETTY_FUNCTION__);
570 }
571
572 struct pbr_ipset_name_lookup {
573 struct zebra_pbr_ipset *ipset;
574 char ipset_name[ZEBRA_IPSET_NAME_SIZE];
575 };
576
577 const char *zebra_pbr_ipset_type2str(uint32_t type)
578 {
579 return lookup_msg(ipset_type_msg, type,
580 "Unrecognized IPset Type");
581 }
582
583 static int zebra_pbr_ipset_pername_walkcb(struct hash_bucket *bucket, void *arg)
584 {
585 struct pbr_ipset_name_lookup *pinl =
586 (struct pbr_ipset_name_lookup *)arg;
587 struct zebra_pbr_ipset *zpi = (struct zebra_pbr_ipset *)bucket->data;
588
589 if (!strncmp(pinl->ipset_name, zpi->ipset_name,
590 ZEBRA_IPSET_NAME_SIZE)) {
591 pinl->ipset = zpi;
592 return HASHWALK_ABORT;
593 }
594 return HASHWALK_CONTINUE;
595 }
596
597 struct zebra_pbr_ipset *zebra_pbr_lookup_ipset_pername(char *ipsetname)
598 {
599 struct pbr_ipset_name_lookup pinl;
600 struct pbr_ipset_name_lookup *ptr = &pinl;
601
602 if (!ipsetname)
603 return NULL;
604 memset(ptr, 0, sizeof(struct pbr_ipset_name_lookup));
605 snprintf((char *)ptr->ipset_name, ZEBRA_IPSET_NAME_SIZE, "%s",
606 ipsetname);
607 hash_walk(zrouter.ipset_hash, zebra_pbr_ipset_pername_walkcb, ptr);
608 return ptr->ipset;
609 }
610
611 static void *pbr_ipset_entry_alloc_intern(void *arg)
612 {
613 struct zebra_pbr_ipset_entry *zpi;
614 struct zebra_pbr_ipset_entry *new;
615
616 zpi = (struct zebra_pbr_ipset_entry *)arg;
617
618 new = XCALLOC(MTYPE_TMP, sizeof(struct zebra_pbr_ipset_entry));
619
620 memcpy(new, zpi, sizeof(*zpi));
621
622 return new;
623 }
624
625 void zebra_pbr_add_ipset_entry(struct zebra_pbr_ipset_entry *ipset)
626 {
627 int ret;
628
629 (void)hash_get(zrouter.ipset_entry_hash, ipset,
630 pbr_ipset_entry_alloc_intern);
631 ret = hook_call(zebra_pbr_ipset_entry_update, 1, ipset);
632 kernel_pbr_ipset_entry_add_del_status(ipset,
633 ret ? ZEBRA_DPLANE_INSTALL_SUCCESS
634 : ZEBRA_DPLANE_INSTALL_FAILURE);
635 }
636
637 void zebra_pbr_del_ipset_entry(struct zebra_pbr_ipset_entry *ipset)
638 {
639 struct zebra_pbr_ipset_entry *lookup;
640
641 lookup = hash_lookup(zrouter.ipset_entry_hash, ipset);
642 hook_call(zebra_pbr_ipset_entry_update, 0, ipset);
643 if (lookup) {
644 hash_release(zrouter.ipset_entry_hash, lookup);
645 XFREE(MTYPE_TMP, lookup);
646 } else
647 zlog_debug("%s: IPSet being deleted we know nothing about",
648 __PRETTY_FUNCTION__);
649 }
650
651 static void *pbr_iptable_alloc_intern(void *arg)
652 {
653 struct zebra_pbr_iptable *zpi;
654 struct zebra_pbr_iptable *new;
655 struct listnode *ln;
656 char *ifname;
657
658 zpi = (struct zebra_pbr_iptable *)arg;
659
660 new = XCALLOC(MTYPE_TMP, sizeof(struct zebra_pbr_iptable));
661
662 /* Deep structure copy */
663 memcpy(new, zpi, sizeof(*zpi));
664 new->interface_name_list = list_new();
665
666 if (zpi->interface_name_list) {
667 for (ALL_LIST_ELEMENTS_RO(zpi->interface_name_list, ln, ifname))
668 listnode_add(new->interface_name_list,
669 XSTRDUP(MTYPE_PBR_IPTABLE_IFNAME, ifname));
670 }
671
672 return new;
673 }
674
675 void zebra_pbr_add_iptable(struct zebra_pbr_iptable *iptable)
676 {
677 int ret;
678
679 (void)hash_get(zrouter.iptable_hash, iptable, pbr_iptable_alloc_intern);
680 ret = hook_call(zebra_pbr_iptable_update, 1, iptable);
681 kernel_pbr_iptable_add_del_status(iptable,
682 ret ? ZEBRA_DPLANE_INSTALL_SUCCESS
683 : ZEBRA_DPLANE_INSTALL_FAILURE);
684 }
685
686 void zebra_pbr_del_iptable(struct zebra_pbr_iptable *iptable)
687 {
688 struct zebra_pbr_iptable *lookup;
689
690 lookup = hash_lookup(zrouter.iptable_hash, iptable);
691 hook_call(zebra_pbr_iptable_update, 0, iptable);
692 if (lookup) {
693 struct listnode *node, *nnode;
694 char *name;
695
696 hash_release(zrouter.iptable_hash, lookup);
697 for (ALL_LIST_ELEMENTS(iptable->interface_name_list,
698 node, nnode, name)) {
699 XFREE(MTYPE_PBR_IPTABLE_IFNAME, name);
700 list_delete_node(iptable->interface_name_list,
701 node);
702 }
703 list_delete(&iptable->interface_name_list);
704 XFREE(MTYPE_TMP, lookup);
705 } else
706 zlog_debug("%s: IPTable being deleted we know nothing about",
707 __PRETTY_FUNCTION__);
708 }
709
710 /*
711 * Handle success or failure of rule (un)install in the kernel.
712 */
713 void kernel_pbr_rule_add_del_status(struct zebra_pbr_rule *rule,
714 enum zebra_dplane_status res)
715 {
716 switch (res) {
717 case ZEBRA_DPLANE_INSTALL_SUCCESS:
718 zsend_rule_notify_owner(rule, ZAPI_RULE_INSTALLED);
719 break;
720 case ZEBRA_DPLANE_INSTALL_FAILURE:
721 zsend_rule_notify_owner(rule, ZAPI_RULE_FAIL_INSTALL);
722 break;
723 case ZEBRA_DPLANE_DELETE_SUCCESS:
724 zsend_rule_notify_owner(rule, ZAPI_RULE_REMOVED);
725 break;
726 case ZEBRA_DPLANE_DELETE_FAILURE:
727 zsend_rule_notify_owner(rule, ZAPI_RULE_FAIL_REMOVE);
728 break;
729 case ZEBRA_DPLANE_STATUS_NONE:
730 break;
731 }
732 }
733
734 /*
735 * Handle success or failure of ipset (un)install in the kernel.
736 */
737 void kernel_pbr_ipset_add_del_status(struct zebra_pbr_ipset *ipset,
738 enum zebra_dplane_status res)
739 {
740 switch (res) {
741 case ZEBRA_DPLANE_INSTALL_SUCCESS:
742 zsend_ipset_notify_owner(ipset, ZAPI_IPSET_INSTALLED);
743 break;
744 case ZEBRA_DPLANE_INSTALL_FAILURE:
745 zsend_ipset_notify_owner(ipset, ZAPI_IPSET_FAIL_INSTALL);
746 break;
747 case ZEBRA_DPLANE_DELETE_SUCCESS:
748 zsend_ipset_notify_owner(ipset, ZAPI_IPSET_REMOVED);
749 break;
750 case ZEBRA_DPLANE_DELETE_FAILURE:
751 zsend_ipset_notify_owner(ipset, ZAPI_IPSET_FAIL_REMOVE);
752 break;
753 case ZEBRA_DPLANE_STATUS_NONE:
754 break;
755 }
756 }
757
758 /*
759 * Handle success or failure of ipset (un)install in the kernel.
760 */
761 void kernel_pbr_ipset_entry_add_del_status(
762 struct zebra_pbr_ipset_entry *ipset,
763 enum zebra_dplane_status res)
764 {
765 switch (res) {
766 case ZEBRA_DPLANE_INSTALL_SUCCESS:
767 zsend_ipset_entry_notify_owner(ipset,
768 ZAPI_IPSET_ENTRY_INSTALLED);
769 break;
770 case ZEBRA_DPLANE_INSTALL_FAILURE:
771 zsend_ipset_entry_notify_owner(ipset,
772 ZAPI_IPSET_ENTRY_FAIL_INSTALL);
773 break;
774 case ZEBRA_DPLANE_DELETE_SUCCESS:
775 zsend_ipset_entry_notify_owner(ipset,
776 ZAPI_IPSET_ENTRY_REMOVED);
777 break;
778 case ZEBRA_DPLANE_DELETE_FAILURE:
779 zsend_ipset_entry_notify_owner(ipset,
780 ZAPI_IPSET_ENTRY_FAIL_REMOVE);
781 break;
782 case ZEBRA_DPLANE_STATUS_NONE:
783 break;
784 }
785 }
786
787 /*
788 * Handle success or failure of ipset (un)install in the kernel.
789 */
790 void kernel_pbr_iptable_add_del_status(struct zebra_pbr_iptable *iptable,
791 enum zebra_dplane_status res)
792 {
793 switch (res) {
794 case ZEBRA_DPLANE_INSTALL_SUCCESS:
795 zsend_iptable_notify_owner(iptable, ZAPI_IPTABLE_INSTALLED);
796 break;
797 case ZEBRA_DPLANE_INSTALL_FAILURE:
798 zsend_iptable_notify_owner(iptable, ZAPI_IPTABLE_FAIL_INSTALL);
799 break;
800 case ZEBRA_DPLANE_DELETE_SUCCESS:
801 zsend_iptable_notify_owner(iptable,
802 ZAPI_IPTABLE_REMOVED);
803 break;
804 case ZEBRA_DPLANE_DELETE_FAILURE:
805 zsend_iptable_notify_owner(iptable,
806 ZAPI_IPTABLE_FAIL_REMOVE);
807 break;
808 case ZEBRA_DPLANE_STATUS_NONE:
809 break;
810 }
811 }
812
813 /*
814 * Handle rule delete notification from kernel.
815 */
816 int kernel_pbr_rule_del(struct zebra_pbr_rule *rule)
817 {
818 return 0;
819 }
820
821 struct zebra_pbr_ipset_entry_unique_display {
822 struct zebra_pbr_ipset *zpi;
823 struct vty *vty;
824 struct zebra_ns *zns;
825 };
826
827 struct zebra_pbr_env_display {
828 struct zebra_ns *zns;
829 struct vty *vty;
830 char *name;
831 };
832
833 static const char *zebra_pbr_prefix2str(union prefixconstptr pu,
834 char *str, int size)
835 {
836 const struct prefix *p = pu.p;
837 char buf[PREFIX2STR_BUFFER];
838
839 if (p->family == AF_INET && p->prefixlen == IPV4_MAX_PREFIXLEN) {
840 snprintf(str, size, "%s", inet_ntop(p->family, &p->u.prefix,
841 buf, PREFIX2STR_BUFFER));
842 return str;
843 }
844 return prefix2str(pu, str, size);
845 }
846
847 static void zebra_pbr_display_icmp(struct vty *vty,
848 struct zebra_pbr_ipset_entry *zpie)
849 {
850 char decoded_str[20];
851 uint16_t port;
852
853 /* range icmp type */
854 if (zpie->src_port_max || zpie->dst_port_max) {
855 vty_out(vty, ":icmp:[type <%d:%d>;code <%d:%d>",
856 zpie->src_port_min, zpie->src_port_max,
857 zpie->dst_port_min, zpie->dst_port_max);
858 } else {
859 port = ((zpie->src_port_min << 8) & 0xff00) +
860 (zpie->dst_port_min & 0xff);
861 memset(decoded_str, 0, sizeof(decoded_str));
862 sprintf(decoded_str, "%d/%d",
863 zpie->src_port_min,
864 zpie->dst_port_min);
865 vty_out(vty, ":icmp:%s",
866 lookup_msg(icmp_typecode_str,
867 port, decoded_str));
868 }
869 }
870
871 static void zebra_pbr_display_port(struct vty *vty, uint32_t filter_bm,
872 uint16_t port_min, uint16_t port_max,
873 uint8_t proto)
874 {
875 if (!(filter_bm & PBR_FILTER_PROTO)) {
876 if (port_max)
877 vty_out(vty, ":udp/tcp:%d-%d",
878 port_min, port_max);
879 else
880 vty_out(vty, ":udp/tcp:%d",
881 port_min);
882 } else {
883 if (port_max)
884 vty_out(vty, ":proto %d:%d-%d",
885 proto, port_min, port_max);
886 else
887 vty_out(vty, ":proto %d:%d",
888 proto, port_min);
889 }
890 }
891
892 static int zebra_pbr_show_ipset_entry_walkcb(struct hash_bucket *bucket,
893 void *arg)
894 {
895 struct zebra_pbr_ipset_entry_unique_display *unique =
896 (struct zebra_pbr_ipset_entry_unique_display *)arg;
897 struct zebra_pbr_ipset *zpi = unique->zpi;
898 struct vty *vty = unique->vty;
899 struct zebra_pbr_ipset_entry *zpie =
900 (struct zebra_pbr_ipset_entry *)bucket->data;
901 uint64_t pkts = 0, bytes = 0;
902 int ret = 0;
903
904 if (zpie->backpointer != zpi)
905 return HASHWALK_CONTINUE;
906
907 if ((zpi->type == IPSET_NET_NET) ||
908 (zpi->type == IPSET_NET_PORT_NET)) {
909 char buf[PREFIX_STRLEN];
910
911 zebra_pbr_prefix2str(&(zpie->src), buf, sizeof(buf));
912 vty_out(vty, "\tfrom %s", buf);
913 if (zpie->filter_bm & PBR_FILTER_SRC_PORT &&
914 zpie->proto != IPPROTO_ICMP)
915 zebra_pbr_display_port(vty, zpie->filter_bm,
916 zpie->src_port_min,
917 zpie->src_port_max,
918 zpie->proto);
919 vty_out(vty, " to ");
920 zebra_pbr_prefix2str(&(zpie->dst), buf, sizeof(buf));
921 vty_out(vty, "%s", buf);
922 if (zpie->filter_bm & PBR_FILTER_DST_PORT &&
923 zpie->proto != IPPROTO_ICMP)
924 zebra_pbr_display_port(vty, zpie->filter_bm,
925 zpie->dst_port_min,
926 zpie->dst_port_max,
927 zpie->proto);
928 if (zpie->proto == IPPROTO_ICMP)
929 zebra_pbr_display_icmp(vty, zpie);
930 } else if ((zpi->type == IPSET_NET) ||
931 (zpi->type == IPSET_NET_PORT)) {
932 char buf[PREFIX_STRLEN];
933
934 if (zpie->filter_bm & PBR_FILTER_SRC_IP) {
935 zebra_pbr_prefix2str(&(zpie->src), buf, sizeof(buf));
936 vty_out(vty, "\tfrom %s", buf);
937 }
938 if (zpie->filter_bm & PBR_FILTER_SRC_PORT &&
939 zpie->proto != IPPROTO_ICMP)
940 zebra_pbr_display_port(vty, zpie->filter_bm,
941 zpie->src_port_min,
942 zpie->src_port_max,
943 zpie->proto);
944 if (zpie->filter_bm & PBR_FILTER_DST_IP) {
945 zebra_pbr_prefix2str(&(zpie->dst), buf, sizeof(buf));
946 vty_out(vty, "\tto %s", buf);
947 }
948 if (zpie->filter_bm & PBR_FILTER_DST_PORT &&
949 zpie->proto != IPPROTO_ICMP)
950 zebra_pbr_display_port(vty, zpie->filter_bm,
951 zpie->dst_port_min,
952 zpie->dst_port_max,
953 zpie->proto);
954 if (zpie->proto == IPPROTO_ICMP)
955 zebra_pbr_display_icmp(vty, zpie);
956 }
957 vty_out(vty, " (%u)\n", zpie->unique);
958
959 ret = hook_call(zebra_pbr_ipset_entry_get_stat, zpie, &pkts,
960 &bytes);
961 if (ret && pkts > 0)
962 vty_out(vty, "\t pkts %" PRIu64 ", bytes %" PRIu64"\n",
963 pkts, bytes);
964 return HASHWALK_CONTINUE;
965 }
966
967 static int zebra_pbr_show_ipset_walkcb(struct hash_bucket *bucket, void *arg)
968 {
969 struct zebra_pbr_env_display *uniqueipset =
970 (struct zebra_pbr_env_display *)arg;
971 struct zebra_pbr_ipset *zpi = (struct zebra_pbr_ipset *)bucket->data;
972 struct zebra_pbr_ipset_entry_unique_display unique;
973 struct vty *vty = uniqueipset->vty;
974 struct zebra_ns *zns = uniqueipset->zns;
975
976 vty_out(vty, "IPset %s type %s\n", zpi->ipset_name,
977 zebra_pbr_ipset_type2str(zpi->type));
978 unique.vty = vty;
979 unique.zpi = zpi;
980 unique.zns = zns;
981 hash_walk(zrouter.ipset_entry_hash, zebra_pbr_show_ipset_entry_walkcb,
982 &unique);
983 vty_out(vty, "\n");
984 return HASHWALK_CONTINUE;
985 }
986
987 size_t zebra_pbr_tcpflags_snprintf(char *buffer, size_t len,
988 uint16_t tcp_val)
989 {
990 size_t len_written = 0;
991 static struct message nt = {0};
992 const struct message *pnt;
993 int incr = 0;
994
995 for (pnt = tcp_value_str;
996 memcmp(pnt, &nt, sizeof(struct message)); pnt++)
997 if (pnt->key & tcp_val) {
998 len_written += snprintf(buffer + len_written,
999 len - len_written,
1000 "%s%s", incr ?
1001 ",":"", pnt->str);
1002 incr++;
1003 }
1004 return len_written;
1005 }
1006
1007 /*
1008 */
1009 void zebra_pbr_show_ipset_list(struct vty *vty, char *ipsetname)
1010 {
1011 struct zebra_pbr_ipset *zpi;
1012 struct zebra_ns *zns = zebra_ns_lookup(NS_DEFAULT);
1013 struct zebra_pbr_ipset_entry_unique_display unique;
1014 struct zebra_pbr_env_display uniqueipset;
1015
1016 if (ipsetname) {
1017 zpi = zebra_pbr_lookup_ipset_pername(ipsetname);
1018 if (!zpi) {
1019 vty_out(vty, "No IPset %s found\n", ipsetname);
1020 return;
1021 }
1022 vty_out(vty, "IPset %s type %s\n", ipsetname,
1023 zebra_pbr_ipset_type2str(zpi->type));
1024
1025 unique.vty = vty;
1026 unique.zpi = zpi;
1027 unique.zns = zns;
1028 hash_walk(zrouter.ipset_entry_hash,
1029 zebra_pbr_show_ipset_entry_walkcb, &unique);
1030 return;
1031 }
1032 uniqueipset.zns = zns;
1033 uniqueipset.vty = vty;
1034 uniqueipset.name = NULL;
1035 hash_walk(zrouter.ipset_hash, zebra_pbr_show_ipset_walkcb,
1036 &uniqueipset);
1037 }
1038
1039 struct pbr_rule_fwmark_lookup {
1040 struct zebra_pbr_rule *ptr;
1041 uint32_t fwmark;
1042 };
1043
1044 static int zebra_pbr_rule_lookup_fwmark_walkcb(struct hash_bucket *bucket,
1045 void *arg)
1046 {
1047 struct pbr_rule_fwmark_lookup *iprule =
1048 (struct pbr_rule_fwmark_lookup *)arg;
1049 struct zebra_pbr_rule *zpr = (struct zebra_pbr_rule *)bucket->data;
1050
1051 if (iprule->fwmark == zpr->rule.filter.fwmark) {
1052 iprule->ptr = zpr;
1053 return HASHWALK_ABORT;
1054 }
1055 return HASHWALK_CONTINUE;
1056 }
1057
1058 static void zebra_pbr_show_iptable_unit(struct zebra_pbr_iptable *iptable,
1059 struct vty *vty,
1060 struct zebra_ns *zns)
1061 {
1062 int ret;
1063 uint64_t pkts = 0, bytes = 0;
1064
1065 vty_out(vty, "IPtable %s action %s (%u)\n", iptable->ipset_name,
1066 iptable->action == ZEBRA_IPTABLES_DROP ? "drop" : "redirect",
1067 iptable->unique);
1068 if (iptable->type == IPSET_NET_PORT ||
1069 iptable->type == IPSET_NET_PORT_NET) {
1070 if (!(iptable->filter_bm & MATCH_ICMP_SET)) {
1071 if (iptable->filter_bm & PBR_FILTER_DST_PORT)
1072 vty_out(vty, "\t lookup dst port\n");
1073 else if (iptable->filter_bm & PBR_FILTER_SRC_PORT)
1074 vty_out(vty, "\t lookup src port\n");
1075 }
1076 }
1077 if (iptable->pkt_len_min || iptable->pkt_len_max) {
1078 if (!iptable->pkt_len_max)
1079 vty_out(vty, "\t pkt len %u\n",
1080 iptable->pkt_len_min);
1081 else
1082 vty_out(vty, "\t pkt len [%u;%u]\n",
1083 iptable->pkt_len_min,
1084 iptable->pkt_len_max);
1085 }
1086 if (iptable->tcp_flags || iptable->tcp_mask_flags) {
1087 char tcp_flag_str[64];
1088 char tcp_flag_mask_str[64];
1089
1090 zebra_pbr_tcpflags_snprintf(tcp_flag_str,
1091 sizeof(tcp_flag_str),
1092 iptable->tcp_flags);
1093 zebra_pbr_tcpflags_snprintf(tcp_flag_mask_str,
1094 sizeof(tcp_flag_mask_str),
1095 iptable->tcp_mask_flags);
1096 vty_out(vty, "\t tcpflags [%s/%s]\n",
1097 tcp_flag_str, tcp_flag_mask_str);
1098 }
1099 if (iptable->filter_bm & (MATCH_DSCP_SET | MATCH_DSCP_INVERSE_SET)) {
1100 vty_out(vty, "\t dscp %s %d\n",
1101 iptable->filter_bm & MATCH_DSCP_INVERSE_SET ?
1102 "not" : "", iptable->dscp_value);
1103 }
1104 if (iptable->fragment) {
1105 char val_str[10];
1106
1107 sprintf(val_str, "%d", iptable->fragment);
1108 vty_out(vty, "\t fragment%s %s\n",
1109 iptable->filter_bm & MATCH_FRAGMENT_INVERSE_SET ?
1110 " not" : "", lookup_msg(fragment_value_str,
1111 iptable->fragment, val_str));
1112 }
1113 if (iptable->protocol) {
1114 vty_out(vty, "\t protocol %d\n",
1115 iptable->protocol);
1116 }
1117 ret = hook_call(zebra_pbr_iptable_get_stat, iptable, &pkts,
1118 &bytes);
1119 if (ret && pkts > 0)
1120 vty_out(vty, "\t pkts %" PRIu64 ", bytes %" PRIu64"\n",
1121 pkts, bytes);
1122 if (iptable->action != ZEBRA_IPTABLES_DROP) {
1123 struct pbr_rule_fwmark_lookup prfl;
1124
1125 prfl.fwmark = iptable->fwmark;
1126 prfl.ptr = NULL;
1127 hash_walk(zrouter.rules_hash,
1128 &zebra_pbr_rule_lookup_fwmark_walkcb, &prfl);
1129 if (prfl.ptr) {
1130 struct zebra_pbr_rule *zpr = prfl.ptr;
1131
1132 vty_out(vty, "\t table %u, fwmark %u\n",
1133 zpr->rule.action.table,
1134 prfl.fwmark);
1135 }
1136 }
1137 }
1138
1139 static int zebra_pbr_show_iptable_walkcb(struct hash_bucket *bucket, void *arg)
1140 {
1141 struct zebra_pbr_iptable *iptable =
1142 (struct zebra_pbr_iptable *)bucket->data;
1143 struct zebra_pbr_env_display *env = (struct zebra_pbr_env_display *)arg;
1144 struct vty *vty = env->vty;
1145 struct zebra_ns *zns = env->zns;
1146 char *iptable_name = env->name;
1147
1148 if (!iptable_name)
1149 zebra_pbr_show_iptable_unit(iptable, vty, zns);
1150 else if (!strncmp(iptable_name,
1151 iptable->ipset_name,
1152 ZEBRA_IPSET_NAME_SIZE))
1153 zebra_pbr_show_iptable_unit(iptable, vty, zns);
1154 return HASHWALK_CONTINUE;
1155 }
1156
1157 void zebra_pbr_show_iptable(struct vty *vty, char *iptable_name)
1158 {
1159 struct zebra_ns *zns = zebra_ns_lookup(NS_DEFAULT);
1160 struct zebra_pbr_env_display env;
1161
1162 env.vty = vty;
1163 env.zns = zns;
1164 env.name = iptable_name;
1165 hash_walk(zrouter.iptable_hash, zebra_pbr_show_iptable_walkcb, &env);
1166 }
1167
1168 void zebra_pbr_iptable_update_interfacelist(struct stream *s,
1169 struct zebra_pbr_iptable *zpi)
1170 {
1171 uint32_t i = 0, index;
1172 struct interface *ifp;
1173 char *name;
1174
1175 for (i = 0; i < zpi->nb_interface; i++) {
1176 STREAM_GETL(s, index);
1177 ifp = if_lookup_by_index(index, zpi->vrf_id);
1178 if (!ifp)
1179 continue;
1180 name = XSTRDUP(MTYPE_PBR_IPTABLE_IFNAME, ifp->name);
1181 listnode_add(zpi->interface_name_list, name);
1182 }
1183 stream_failure:
1184 return;
1185 }