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Merge pull request #5410 from ton31337/feature/bgp_default-route_with_route-map_set
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1 /*
2 * VRF functions.
3 * Copyright (C) 2014 6WIND S.A.
4 *
5 * This file is part of GNU Zebra.
6 *
7 * GNU Zebra is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published
9 * by the Free Software Foundation; either version 2, or (at your
10 * option) any later version.
11 *
12 * GNU Zebra is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License along
18 * with this program; see the file COPYING; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
22 #include <zebra.h>
23
24 /* for basename */
25 #include <libgen.h>
26
27 #include "if.h"
28 #include "vrf.h"
29 #include "vrf_int.h"
30 #include "prefix.h"
31 #include "table.h"
32 #include "log.h"
33 #include "memory.h"
34 #include "command.h"
35 #include "ns.h"
36 #include "privs.h"
37 #include "nexthop_group.h"
38 #include "lib_errors.h"
39
40 /* default VRF ID value used when VRF backend is not NETNS */
41 #define VRF_DEFAULT_INTERNAL 0
42 #define VRF_DEFAULT_NAME_INTERNAL "default"
43
44 DEFINE_MTYPE_STATIC(LIB, VRF, "VRF")
45 DEFINE_MTYPE_STATIC(LIB, VRF_BITMAP, "VRF bit-map")
46
47 DEFINE_QOBJ_TYPE(vrf)
48
49 static __inline int vrf_id_compare(const struct vrf *, const struct vrf *);
50 static __inline int vrf_name_compare(const struct vrf *, const struct vrf *);
51
52 RB_GENERATE(vrf_id_head, vrf, id_entry, vrf_id_compare);
53 RB_GENERATE(vrf_name_head, vrf, name_entry, vrf_name_compare);
54
55 struct vrf_id_head vrfs_by_id = RB_INITIALIZER(&vrfs_by_id);
56 struct vrf_name_head vrfs_by_name = RB_INITIALIZER(&vrfs_by_name);
57
58 static int vrf_backend;
59 static int vrf_backend_configured;
60 static struct zebra_privs_t *vrf_daemon_privs;
61 static char vrf_default_name[VRF_NAMSIZ] = VRF_DEFAULT_NAME_INTERNAL;
62
63 /*
64 * Turn on/off debug code
65 * for vrf.
66 */
67 static int debug_vrf = 0;
68
69 /* Holding VRF hooks */
70 static struct vrf_master {
71 int (*vrf_new_hook)(struct vrf *);
72 int (*vrf_delete_hook)(struct vrf *);
73 int (*vrf_enable_hook)(struct vrf *);
74 int (*vrf_disable_hook)(struct vrf *);
75 int (*vrf_update_name_hook)(struct vrf *vrf);
76 } vrf_master = {
77 0,
78 };
79
80 static int vrf_is_enabled(struct vrf *vrf);
81
82 /* VRF list existance check by name. */
83 struct vrf *vrf_lookup_by_name(const char *name)
84 {
85 struct vrf vrf;
86 strlcpy(vrf.name, name, sizeof(vrf.name));
87 return (RB_FIND(vrf_name_head, &vrfs_by_name, &vrf));
88 }
89
90 static __inline int vrf_id_compare(const struct vrf *a, const struct vrf *b)
91 {
92 return (a->vrf_id - b->vrf_id);
93 }
94
95 static int vrf_name_compare(const struct vrf *a, const struct vrf *b)
96 {
97 return strcmp(a->name, b->name);
98 }
99
100 /* if ns_id is different and not VRF_UNKNOWN,
101 * then update vrf identifier, and enable VRF
102 */
103 static void vrf_update_vrf_id(ns_id_t ns_id, void *opaqueptr)
104 {
105 ns_id_t vrf_id = (vrf_id_t)ns_id;
106 vrf_id_t old_vrf_id;
107 struct vrf *vrf = (struct vrf *)opaqueptr;
108
109 if (!vrf)
110 return;
111 old_vrf_id = vrf->vrf_id;
112 if (vrf_id == vrf->vrf_id)
113 return;
114 if (vrf->vrf_id != VRF_UNKNOWN)
115 RB_REMOVE(vrf_id_head, &vrfs_by_id, vrf);
116 vrf->vrf_id = vrf_id;
117 RB_INSERT(vrf_id_head, &vrfs_by_id, vrf);
118 if (old_vrf_id == VRF_UNKNOWN)
119 vrf_enable((struct vrf *)vrf);
120 }
121
122 int vrf_switch_to_netns(vrf_id_t vrf_id)
123 {
124 char *name;
125 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
126
127 /* VRF is default VRF. silently ignore */
128 if (!vrf || vrf->vrf_id == VRF_DEFAULT)
129 return 1; /* 1 = default */
130 /* VRF has no NETNS backend. silently ignore */
131 if (vrf->data.l.netns_name[0] == '\0')
132 return 2; /* 2 = no netns */
133 name = ns_netns_pathname(NULL, vrf->data.l.netns_name);
134 if (debug_vrf)
135 zlog_debug("VRF_SWITCH: %s(%u)", name, vrf->vrf_id);
136 return ns_switch_to_netns(name);
137 }
138
139 int vrf_switchback_to_initial(void)
140 {
141 int ret = ns_switchback_to_initial();
142
143 if (ret == 0 && debug_vrf)
144 zlog_debug("VRF_SWITCHBACK");
145 return ret;
146 }
147
148 /* Get a VRF. If not found, create one.
149 * Arg:
150 * name - The name of the vrf. May be NULL if unknown.
151 * vrf_id - The vrf_id of the vrf. May be VRF_UNKNOWN if unknown
152 * Description: Please note that this routine can be called with just the name
153 * and 0 vrf-id
154 */
155 struct vrf *vrf_get(vrf_id_t vrf_id, const char *name)
156 {
157 struct vrf *vrf = NULL;
158 int new = 0;
159
160 if (debug_vrf)
161 zlog_debug("VRF_GET: %s(%u)", name == NULL ? "(NULL)" : name,
162 vrf_id);
163
164 /* Nothing to see, move along here */
165 if (!name && vrf_id == VRF_UNKNOWN)
166 return NULL;
167
168 /* attempt to find already available VRF
169 */
170 if (name)
171 vrf = vrf_lookup_by_name(name);
172 if (vrf && vrf_id != VRF_UNKNOWN
173 && vrf->vrf_id != VRF_UNKNOWN
174 && vrf->vrf_id != vrf_id) {
175 zlog_debug("VRF_GET: avoid %s creation(%u), same name exists (%u)",
176 name, vrf_id, vrf->vrf_id);
177 return NULL;
178 }
179 /* Try to find VRF both by ID and name */
180 if (!vrf && vrf_id != VRF_UNKNOWN)
181 vrf = vrf_lookup_by_id(vrf_id);
182
183 if (vrf == NULL) {
184 vrf = XCALLOC(MTYPE_VRF, sizeof(struct vrf));
185 vrf->vrf_id = VRF_UNKNOWN;
186 QOBJ_REG(vrf, vrf);
187 new = 1;
188
189 if (debug_vrf)
190 zlog_debug("VRF(%u) %s is created.", vrf_id,
191 (name) ? name : "(NULL)");
192 }
193
194 /* Set identifier */
195 if (vrf_id != VRF_UNKNOWN && vrf->vrf_id == VRF_UNKNOWN) {
196 vrf->vrf_id = vrf_id;
197 RB_INSERT(vrf_id_head, &vrfs_by_id, vrf);
198 }
199
200 /* Set name */
201 if (name && vrf->name[0] != '\0' && strcmp(name, vrf->name)) {
202 /* update the vrf name */
203 RB_REMOVE(vrf_name_head, &vrfs_by_name, vrf);
204 strlcpy(vrf->data.l.netns_name,
205 name, NS_NAMSIZ);
206 strlcpy(vrf->name, name, sizeof(vrf->name));
207 RB_INSERT(vrf_name_head, &vrfs_by_name, vrf);
208 if (vrf->vrf_id == VRF_DEFAULT)
209 vrf_set_default_name(vrf->name, false);
210 } else if (name && vrf->name[0] == '\0') {
211 strlcpy(vrf->name, name, sizeof(vrf->name));
212 RB_INSERT(vrf_name_head, &vrfs_by_name, vrf);
213 }
214 if (new &&vrf_master.vrf_new_hook)
215 (*vrf_master.vrf_new_hook)(vrf);
216
217 return vrf;
218 }
219
220 /* Delete a VRF. This is called when the underlying VRF goes away, a
221 * pre-configured VRF is deleted or when shutting down (vrf_terminate()).
222 */
223 void vrf_delete(struct vrf *vrf)
224 {
225 if (debug_vrf)
226 zlog_debug("VRF %u is to be deleted.", vrf->vrf_id);
227
228 if (vrf_is_enabled(vrf))
229 vrf_disable(vrf);
230
231 /* If the VRF is user configured, it'll stick around, just remove
232 * the ID mapping. Interfaces assigned to this VRF should've been
233 * removed already as part of the VRF going down.
234 */
235 if (vrf_is_user_cfged(vrf)) {
236 if (vrf->vrf_id != VRF_UNKNOWN) {
237 /* Delete any VRF interfaces - should be only
238 * the VRF itself, other interfaces should've
239 * been moved out of the VRF.
240 */
241 if_terminate(vrf);
242 RB_REMOVE(vrf_id_head, &vrfs_by_id, vrf);
243 vrf->vrf_id = VRF_UNKNOWN;
244 }
245 return;
246 }
247
248 if (vrf_master.vrf_delete_hook)
249 (*vrf_master.vrf_delete_hook)(vrf);
250
251 QOBJ_UNREG(vrf);
252 if_terminate(vrf);
253
254 if (vrf->vrf_id != VRF_UNKNOWN)
255 RB_REMOVE(vrf_id_head, &vrfs_by_id, vrf);
256 if (vrf->name[0] != '\0')
257 RB_REMOVE(vrf_name_head, &vrfs_by_name, vrf);
258
259 XFREE(MTYPE_VRF, vrf);
260 }
261
262 /* Look up a VRF by identifier. */
263 struct vrf *vrf_lookup_by_id(vrf_id_t vrf_id)
264 {
265 struct vrf vrf;
266 vrf.vrf_id = vrf_id;
267 return (RB_FIND(vrf_id_head, &vrfs_by_id, &vrf));
268 }
269
270 /*
271 * Enable a VRF - that is, let the VRF be ready to use.
272 * The VRF_ENABLE_HOOK callback will be called to inform
273 * that they can allocate resources in this VRF.
274 *
275 * RETURN: 1 - enabled successfully; otherwise, 0.
276 */
277 int vrf_enable(struct vrf *vrf)
278 {
279 if (vrf_is_enabled(vrf))
280 return 1;
281
282 if (debug_vrf)
283 zlog_debug("VRF %u is enabled.", vrf->vrf_id);
284
285 SET_FLAG(vrf->status, VRF_ACTIVE);
286
287 if (vrf_master.vrf_enable_hook)
288 (*vrf_master.vrf_enable_hook)(vrf);
289
290 /*
291 * If we have any nexthop group entries that
292 * are awaiting vrf initialization then
293 * let's let people know about it
294 */
295 nexthop_group_enable_vrf(vrf);
296
297 return 1;
298 }
299
300 /*
301 * Disable a VRF - that is, let the VRF be unusable.
302 * The VRF_DELETE_HOOK callback will be called to inform
303 * that they must release the resources in the VRF.
304 */
305 void vrf_disable(struct vrf *vrf)
306 {
307 if (!vrf_is_enabled(vrf))
308 return;
309
310 UNSET_FLAG(vrf->status, VRF_ACTIVE);
311
312 if (debug_vrf)
313 zlog_debug("VRF %u is to be disabled.", vrf->vrf_id);
314
315 /* Till now, nothing to be done for the default VRF. */
316 // Pending: see why this statement.
317
318 if (vrf_master.vrf_disable_hook)
319 (*vrf_master.vrf_disable_hook)(vrf);
320 }
321
322 const char *vrf_id_to_name(vrf_id_t vrf_id)
323 {
324 struct vrf *vrf;
325
326 vrf = vrf_lookup_by_id(vrf_id);
327 if (vrf)
328 return vrf->name;
329
330 return "n/a";
331 }
332
333 vrf_id_t vrf_name_to_id(const char *name)
334 {
335 struct vrf *vrf;
336 vrf_id_t vrf_id = VRF_DEFAULT; // Pending: need a way to return invalid
337 // id/ routine not used.
338
339 if (!name)
340 return vrf_id;
341 vrf = vrf_lookup_by_name(name);
342 if (vrf)
343 vrf_id = vrf->vrf_id;
344
345 return vrf_id;
346 }
347
348 /* Get the data pointer of the specified VRF. If not found, create one. */
349 void *vrf_info_get(vrf_id_t vrf_id)
350 {
351 struct vrf *vrf = vrf_get(vrf_id, NULL);
352 return vrf->info;
353 }
354
355 /* Look up the data pointer of the specified VRF. */
356 void *vrf_info_lookup(vrf_id_t vrf_id)
357 {
358 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
359 return vrf ? vrf->info : NULL;
360 }
361
362 /*
363 * VRF hash for storing set or not.
364 */
365 struct vrf_bit_set {
366 vrf_id_t vrf_id;
367 bool set;
368 };
369
370 static unsigned int vrf_hash_bitmap_key(const void *data)
371 {
372 const struct vrf_bit_set *bit = data;
373
374 return bit->vrf_id;
375 }
376
377 static bool vrf_hash_bitmap_cmp(const void *a, const void *b)
378 {
379 const struct vrf_bit_set *bit1 = a;
380 const struct vrf_bit_set *bit2 = b;
381
382 return bit1->vrf_id == bit2->vrf_id;
383 }
384
385 static void *vrf_hash_bitmap_alloc(void *data)
386 {
387 struct vrf_bit_set *copy = data;
388 struct vrf_bit_set *bit;
389
390 bit = XMALLOC(MTYPE_VRF_BITMAP, sizeof(*bit));
391 bit->vrf_id = copy->vrf_id;
392
393 return bit;
394 }
395
396 static void vrf_hash_bitmap_free(void *data)
397 {
398 struct vrf_bit_set *bit = data;
399
400 XFREE(MTYPE_VRF_BITMAP, bit);
401 }
402
403 vrf_bitmap_t vrf_bitmap_init(void)
404 {
405 return hash_create_size(32, vrf_hash_bitmap_key, vrf_hash_bitmap_cmp,
406 "VRF BIT HASH");
407 }
408
409 void vrf_bitmap_free(vrf_bitmap_t bmap)
410 {
411 struct hash *vrf_hash = bmap;
412
413 if (vrf_hash == NULL)
414 return;
415
416 hash_clean(vrf_hash, vrf_hash_bitmap_free);
417 hash_free(vrf_hash);
418 }
419
420 void vrf_bitmap_set(vrf_bitmap_t bmap, vrf_id_t vrf_id)
421 {
422 struct vrf_bit_set lookup = { .vrf_id = vrf_id };
423 struct hash *vrf_hash = bmap;
424 struct vrf_bit_set *bit;
425
426 if (vrf_hash == NULL || vrf_id == VRF_UNKNOWN)
427 return;
428
429 bit = hash_get(vrf_hash, &lookup, vrf_hash_bitmap_alloc);
430 bit->set = true;
431 }
432
433 void vrf_bitmap_unset(vrf_bitmap_t bmap, vrf_id_t vrf_id)
434 {
435 struct vrf_bit_set lookup = { .vrf_id = vrf_id };
436 struct hash *vrf_hash = bmap;
437 struct vrf_bit_set *bit;
438
439 if (vrf_hash == NULL || vrf_id == VRF_UNKNOWN)
440 return;
441
442 bit = hash_get(vrf_hash, &lookup, vrf_hash_bitmap_alloc);
443 bit->set = false;
444 }
445
446 int vrf_bitmap_check(vrf_bitmap_t bmap, vrf_id_t vrf_id)
447 {
448 struct vrf_bit_set lookup = { .vrf_id = vrf_id };
449 struct hash *vrf_hash = bmap;
450 struct vrf_bit_set *bit;
451
452 if (vrf_hash == NULL || vrf_id == VRF_UNKNOWN)
453 return 0;
454
455 bit = hash_lookup(vrf_hash, &lookup);
456 if (bit)
457 return bit->set;
458
459 return 0;
460 }
461
462 static void vrf_autocomplete(vector comps, struct cmd_token *token)
463 {
464 struct vrf *vrf = NULL;
465
466 RB_FOREACH (vrf, vrf_name_head, &vrfs_by_name)
467 vector_set(comps, XSTRDUP(MTYPE_COMPLETION, vrf->name));
468 }
469
470 static const struct cmd_variable_handler vrf_var_handlers[] = {
471 {
472 .varname = "vrf",
473 .completions = vrf_autocomplete,
474 },
475 {
476 .varname = "vrf_name",
477 .completions = vrf_autocomplete,
478 },
479 {
480 .varname = "nexthop_vrf",
481 .completions = vrf_autocomplete,
482 },
483 {.completions = NULL},
484 };
485
486 /* Initialize VRF module. */
487 void vrf_init(int (*create)(struct vrf *), int (*enable)(struct vrf *),
488 int (*disable)(struct vrf *), int (*destroy)(struct vrf *),
489 int ((*update)(struct vrf *)))
490 {
491 struct vrf *default_vrf;
492
493 /* initialise NS, in case VRF backend if NETNS */
494 ns_init();
495 if (debug_vrf)
496 zlog_debug("%s: Initializing VRF subsystem",
497 __PRETTY_FUNCTION__);
498
499 vrf_master.vrf_new_hook = create;
500 vrf_master.vrf_enable_hook = enable;
501 vrf_master.vrf_disable_hook = disable;
502 vrf_master.vrf_delete_hook = destroy;
503 vrf_master.vrf_update_name_hook = update;
504
505 /* The default VRF always exists. */
506 default_vrf = vrf_get(VRF_DEFAULT, VRF_DEFAULT_NAME);
507 if (!default_vrf) {
508 flog_err(EC_LIB_VRF_START,
509 "vrf_init: failed to create the default VRF!");
510 exit(1);
511 }
512 if (vrf_is_backend_netns()) {
513 struct ns *ns;
514
515 strlcpy(default_vrf->data.l.netns_name,
516 VRF_DEFAULT_NAME, NS_NAMSIZ);
517 ns = ns_lookup(ns_get_default_id());
518 ns->vrf_ctxt = default_vrf;
519 default_vrf->ns_ctxt = ns;
520 }
521
522 /* Enable the default VRF. */
523 if (!vrf_enable(default_vrf)) {
524 flog_err(EC_LIB_VRF_START,
525 "vrf_init: failed to enable the default VRF!");
526 exit(1);
527 }
528
529 cmd_variable_handler_register(vrf_var_handlers);
530 }
531
532 /* Terminate VRF module. */
533 void vrf_terminate(void)
534 {
535 struct vrf *vrf;
536
537 if (debug_vrf)
538 zlog_debug("%s: Shutting down vrf subsystem",
539 __PRETTY_FUNCTION__);
540
541 while (!RB_EMPTY(vrf_id_head, &vrfs_by_id)) {
542 vrf = RB_ROOT(vrf_id_head, &vrfs_by_id);
543
544 /* Clear configured flag and invoke delete. */
545 UNSET_FLAG(vrf->status, VRF_CONFIGURED);
546 vrf_delete(vrf);
547 }
548
549 while (!RB_EMPTY(vrf_name_head, &vrfs_by_name)) {
550 vrf = RB_ROOT(vrf_name_head, &vrfs_by_name);
551
552 /* Clear configured flag and invoke delete. */
553 UNSET_FLAG(vrf->status, VRF_CONFIGURED);
554 vrf_delete(vrf);
555 }
556 }
557
558 int vrf_socket(int domain, int type, int protocol, vrf_id_t vrf_id,
559 const char *interfacename)
560 {
561 int ret, save_errno, ret2;
562
563 ret = vrf_switch_to_netns(vrf_id);
564 if (ret < 0)
565 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
566 __func__, vrf_id, safe_strerror(errno));
567
568 ret = socket(domain, type, protocol);
569 save_errno = errno;
570 ret2 = vrf_switchback_to_initial();
571 if (ret2 < 0)
572 flog_err_sys(EC_LIB_SOCKET,
573 "%s: Can't switchback from VRF %u (%s)", __func__,
574 vrf_id, safe_strerror(errno));
575 errno = save_errno;
576 if (ret <= 0)
577 return ret;
578 ret2 = vrf_bind(vrf_id, ret, interfacename);
579 if (ret2 < 0) {
580 close(ret);
581 ret = ret2;
582 }
583 return ret;
584 }
585
586 int vrf_is_backend_netns(void)
587 {
588 return (vrf_backend == VRF_BACKEND_NETNS);
589 }
590
591 int vrf_get_backend(void)
592 {
593 if (!vrf_backend_configured)
594 return VRF_BACKEND_UNKNOWN;
595 return vrf_backend;
596 }
597
598 void vrf_configure_backend(int vrf_backend_netns)
599 {
600 vrf_backend = vrf_backend_netns;
601 vrf_backend_configured = 1;
602 }
603
604 int vrf_handler_create(struct vty *vty, const char *vrfname,
605 struct vrf **vrf)
606 {
607 struct vrf *vrfp;
608
609 if (strlen(vrfname) > VRF_NAMSIZ) {
610 if (vty)
611 vty_out(vty,
612 "%% VRF name %s invalid: length exceeds %d bytes\n",
613 vrfname, VRF_NAMSIZ);
614 else
615 flog_warn(
616 EC_LIB_VRF_LENGTH,
617 "%% VRF name %s invalid: length exceeds %d bytes\n",
618 vrfname, VRF_NAMSIZ);
619 return CMD_WARNING_CONFIG_FAILED;
620 }
621
622 vrfp = vrf_get(VRF_UNKNOWN, vrfname);
623
624 if (vty)
625 VTY_PUSH_CONTEXT(VRF_NODE, vrfp);
626
627 if (vrf)
628 *vrf = vrfp;
629 return CMD_SUCCESS;
630 }
631
632 int vrf_netns_handler_create(struct vty *vty, struct vrf *vrf, char *pathname,
633 ns_id_t ns_id, ns_id_t internal_ns_id)
634 {
635 struct ns *ns = NULL;
636
637 if (!vrf)
638 return CMD_WARNING_CONFIG_FAILED;
639 if (vrf->vrf_id != VRF_UNKNOWN && vrf->ns_ctxt == NULL) {
640 if (vty)
641 vty_out(vty,
642 "VRF %u is already configured with VRF %s\n",
643 vrf->vrf_id, vrf->name);
644 else
645 zlog_info("VRF %u is already configured with VRF %s",
646 vrf->vrf_id, vrf->name);
647 return CMD_WARNING_CONFIG_FAILED;
648 }
649 if (vrf->ns_ctxt != NULL) {
650 ns = (struct ns *)vrf->ns_ctxt;
651 if (!strcmp(ns->name, pathname)) {
652 if (vty)
653 vty_out(vty,
654 "VRF %u already configured with NETNS %s\n",
655 vrf->vrf_id, ns->name);
656 else
657 zlog_info(
658 "VRF %u already configured with NETNS %s",
659 vrf->vrf_id, ns->name);
660 return CMD_WARNING_CONFIG_FAILED;
661 }
662 }
663 ns = ns_lookup_name(pathname);
664 if (ns && ns->vrf_ctxt) {
665 struct vrf *vrf2 = (struct vrf *)ns->vrf_ctxt;
666
667 if (vrf2 == vrf)
668 return CMD_SUCCESS;
669 if (vty)
670 vty_out(vty,
671 "NS %s is already configured"
672 " with VRF %u(%s)\n",
673 ns->name, vrf2->vrf_id, vrf2->name);
674 else
675 zlog_info("NS %s is already configured with VRF %u(%s)",
676 ns->name, vrf2->vrf_id, vrf2->name);
677 return CMD_WARNING_CONFIG_FAILED;
678 }
679 ns = ns_get_created(ns, pathname, ns_id);
680 ns->internal_ns_id = internal_ns_id;
681 ns->vrf_ctxt = (void *)vrf;
682 vrf->ns_ctxt = (void *)ns;
683 /* update VRF netns NAME */
684 strlcpy(vrf->data.l.netns_name, basename(pathname), NS_NAMSIZ);
685
686 if (!ns_enable(ns, vrf_update_vrf_id)) {
687 if (vty)
688 vty_out(vty, "Can not associate NS %u with NETNS %s\n",
689 ns->ns_id, ns->name);
690 else
691 zlog_info("Can not associate NS %u with NETNS %s",
692 ns->ns_id, ns->name);
693 return CMD_WARNING_CONFIG_FAILED;
694 }
695
696 return CMD_SUCCESS;
697 }
698
699 /* vrf CLI commands */
700 DEFUN_NOSH(vrf_exit,
701 vrf_exit_cmd,
702 "exit-vrf",
703 "Exit current mode and down to previous mode\n")
704 {
705 /* We have to set vrf context to default vrf */
706 VTY_PUSH_CONTEXT(VRF_NODE, vrf_get(VRF_DEFAULT, VRF_DEFAULT_NAME));
707 vty->node = CONFIG_NODE;
708 return CMD_SUCCESS;
709 }
710
711 DEFUN_NOSH (vrf,
712 vrf_cmd,
713 "vrf NAME",
714 "Select a VRF to configure\n"
715 "VRF's name\n")
716 {
717 int idx_name = 1;
718 const char *vrfname = argv[idx_name]->arg;
719
720 return vrf_handler_create(vty, vrfname, NULL);
721 }
722
723 DEFUN (no_vrf,
724 no_vrf_cmd,
725 "no vrf NAME",
726 NO_STR
727 "Delete a pseudo VRF's configuration\n"
728 "VRF's name\n")
729 {
730 const char *vrfname = argv[2]->arg;
731
732 struct vrf *vrfp;
733
734 vrfp = vrf_lookup_by_name(vrfname);
735
736 if (vrfp == NULL) {
737 vty_out(vty, "%% VRF %s does not exist\n", vrfname);
738 return CMD_WARNING_CONFIG_FAILED;
739 }
740
741 if (CHECK_FLAG(vrfp->status, VRF_ACTIVE)) {
742 vty_out(vty, "%% Only inactive VRFs can be deleted\n");
743 return CMD_WARNING_CONFIG_FAILED;
744 }
745
746 /* Clear configured flag and invoke delete. */
747 UNSET_FLAG(vrfp->status, VRF_CONFIGURED);
748 vrf_delete(vrfp);
749
750 return CMD_SUCCESS;
751 }
752
753
754 static struct cmd_node vrf_node = {VRF_NODE, "%s(config-vrf)# ", 1};
755
756 DEFUN_NOSH (vrf_netns,
757 vrf_netns_cmd,
758 "netns NAME",
759 "Attach VRF to a Namespace\n"
760 "The file name in " NS_RUN_DIR ", or a full pathname\n")
761 {
762 int idx_name = 1, ret;
763 char *pathname = ns_netns_pathname(vty, argv[idx_name]->arg);
764
765 VTY_DECLVAR_CONTEXT(vrf, vrf);
766
767 if (!pathname)
768 return CMD_WARNING_CONFIG_FAILED;
769
770 frr_with_privs(vrf_daemon_privs) {
771 ret = vrf_netns_handler_create(vty, vrf, pathname,
772 NS_UNKNOWN, NS_UNKNOWN);
773 }
774 return ret;
775 }
776
777 DEFUN_NOSH (no_vrf_netns,
778 no_vrf_netns_cmd,
779 "no netns [NAME]",
780 NO_STR
781 "Detach VRF from a Namespace\n"
782 "The file name in " NS_RUN_DIR ", or a full pathname\n")
783 {
784 struct ns *ns = NULL;
785
786 VTY_DECLVAR_CONTEXT(vrf, vrf);
787
788 if (!vrf_is_backend_netns()) {
789 vty_out(vty, "VRF backend is not Netns. Aborting\n");
790 return CMD_WARNING_CONFIG_FAILED;
791 }
792 if (!vrf->ns_ctxt) {
793 vty_out(vty, "VRF %s(%u) is not configured with NetNS\n",
794 vrf->name, vrf->vrf_id);
795 return CMD_WARNING_CONFIG_FAILED;
796 }
797
798 ns = (struct ns *)vrf->ns_ctxt;
799
800 ns->vrf_ctxt = NULL;
801 vrf_disable(vrf);
802 /* vrf ID from VRF is necessary for Zebra
803 * so that propagate to other clients is done
804 */
805 ns_delete(ns);
806 vrf->ns_ctxt = NULL;
807 return CMD_SUCCESS;
808 }
809
810 /*
811 * Debug CLI for vrf's
812 */
813 DEFUN (vrf_debug,
814 vrf_debug_cmd,
815 "debug vrf",
816 DEBUG_STR
817 "VRF Debugging\n")
818 {
819 debug_vrf = 1;
820
821 return CMD_SUCCESS;
822 }
823
824 DEFUN (no_vrf_debug,
825 no_vrf_debug_cmd,
826 "no debug vrf",
827 NO_STR
828 DEBUG_STR
829 "VRF Debugging\n")
830 {
831 debug_vrf = 0;
832
833 return CMD_SUCCESS;
834 }
835
836 static int vrf_write_host(struct vty *vty)
837 {
838 if (debug_vrf)
839 vty_out(vty, "debug vrf\n");
840
841 return 1;
842 }
843
844 static struct cmd_node vrf_debug_node = {VRF_DEBUG_NODE, "", 1};
845
846 void vrf_install_commands(void)
847 {
848 install_node(&vrf_debug_node, vrf_write_host);
849
850 install_element(CONFIG_NODE, &vrf_debug_cmd);
851 install_element(ENABLE_NODE, &vrf_debug_cmd);
852 install_element(CONFIG_NODE, &no_vrf_debug_cmd);
853 install_element(ENABLE_NODE, &no_vrf_debug_cmd);
854 }
855
856 void vrf_cmd_init(int (*writefunc)(struct vty *vty),
857 struct zebra_privs_t *daemon_privs)
858 {
859 install_element(CONFIG_NODE, &vrf_cmd);
860 install_element(CONFIG_NODE, &no_vrf_cmd);
861 install_node(&vrf_node, writefunc);
862 install_default(VRF_NODE);
863 install_element(VRF_NODE, &vrf_exit_cmd);
864 if (vrf_is_backend_netns() && ns_have_netns()) {
865 /* Install NS commands. */
866 vrf_daemon_privs = daemon_privs;
867 install_element(VRF_NODE, &vrf_netns_cmd);
868 install_element(VRF_NODE, &no_vrf_netns_cmd);
869 }
870 }
871
872 void vrf_set_default_name(const char *default_name, bool force)
873 {
874 struct vrf *def_vrf;
875 static bool def_vrf_forced;
876
877 def_vrf = vrf_lookup_by_id(VRF_DEFAULT);
878 assert(default_name);
879 if (def_vrf && !force && def_vrf_forced) {
880 zlog_debug("VRF: %s, avoid changing name to %s, previously forced (%u)",
881 def_vrf->name, default_name,
882 def_vrf->vrf_id);
883 return;
884 }
885 if (strmatch(vrf_default_name, default_name))
886 return;
887 snprintf(vrf_default_name, VRF_NAMSIZ, "%s", default_name);
888 if (def_vrf) {
889 if (force)
890 def_vrf_forced = true;
891 RB_REMOVE(vrf_name_head, &vrfs_by_name, def_vrf);
892 strlcpy(def_vrf->data.l.netns_name,
893 vrf_default_name, NS_NAMSIZ);
894 strlcpy(def_vrf->name, vrf_default_name, sizeof(def_vrf->name));
895 RB_INSERT(vrf_name_head, &vrfs_by_name, def_vrf);
896 if (vrf_master.vrf_update_name_hook)
897 (*vrf_master.vrf_update_name_hook)(def_vrf);
898 }
899 }
900
901 const char *vrf_get_default_name(void)
902 {
903 return vrf_default_name;
904 }
905
906 vrf_id_t vrf_get_default_id(void)
907 {
908 /* backend netns is only known by zebra
909 * for other daemons, we return VRF_DEFAULT_INTERNAL
910 */
911 if (vrf_is_backend_netns())
912 return ns_get_default_id();
913 else
914 return VRF_DEFAULT_INTERNAL;
915 }
916
917 int vrf_bind(vrf_id_t vrf_id, int fd, const char *name)
918 {
919 int ret = 0;
920 struct interface *ifp;
921
922 if (fd < 0 || name == NULL)
923 return fd;
924 /* the device should exist
925 * otherwise we should return
926 * case ifname = vrf in netns mode => return
927 */
928 ifp = if_lookup_by_name(name, vrf_id);
929 if (!ifp)
930 return fd;
931 #ifdef SO_BINDTODEVICE
932 ret = setsockopt(fd, SOL_SOCKET, SO_BINDTODEVICE, name, strlen(name)+1);
933 if (ret < 0)
934 zlog_debug("bind to interface %s failed, errno=%d", name,
935 errno);
936 #endif /* SO_BINDTODEVICE */
937 return ret;
938 }
939 int vrf_getaddrinfo(const char *node, const char *service,
940 const struct addrinfo *hints, struct addrinfo **res,
941 vrf_id_t vrf_id)
942 {
943 int ret, ret2, save_errno;
944
945 ret = vrf_switch_to_netns(vrf_id);
946 if (ret < 0)
947 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
948 __func__, vrf_id, safe_strerror(errno));
949 ret = getaddrinfo(node, service, hints, res);
950 save_errno = errno;
951 ret2 = vrf_switchback_to_initial();
952 if (ret2 < 0)
953 flog_err_sys(EC_LIB_SOCKET,
954 "%s: Can't switchback from VRF %u (%s)", __func__,
955 vrf_id, safe_strerror(errno));
956 errno = save_errno;
957 return ret;
958 }
959
960 int vrf_ioctl(vrf_id_t vrf_id, int d, unsigned long request, char *params)
961 {
962 int ret, saved_errno, rc;
963
964 ret = vrf_switch_to_netns(vrf_id);
965 if (ret < 0) {
966 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
967 __func__, vrf_id, safe_strerror(errno));
968 return 0;
969 }
970 rc = ioctl(d, request, params);
971 saved_errno = errno;
972 ret = vrf_switchback_to_initial();
973 if (ret < 0)
974 flog_err_sys(EC_LIB_SOCKET,
975 "%s: Can't switchback from VRF %u (%s)", __func__,
976 vrf_id, safe_strerror(errno));
977 errno = saved_errno;
978 return rc;
979 }
980
981 int vrf_sockunion_socket(const union sockunion *su, vrf_id_t vrf_id,
982 const char *interfacename)
983 {
984 int ret, save_errno, ret2;
985
986 ret = vrf_switch_to_netns(vrf_id);
987 if (ret < 0)
988 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
989 __func__, vrf_id, safe_strerror(errno));
990 ret = sockunion_socket(su);
991 save_errno = errno;
992 ret2 = vrf_switchback_to_initial();
993 if (ret2 < 0)
994 flog_err_sys(EC_LIB_SOCKET,
995 "%s: Can't switchback from VRF %u (%s)", __func__,
996 vrf_id, safe_strerror(errno));
997 errno = save_errno;
998
999 if (ret <= 0)
1000 return ret;
1001 ret2 = vrf_bind(vrf_id, ret, interfacename);
1002 if (ret2 < 0) {
1003 close(ret);
1004 ret = ret2;
1005 }
1006 return ret;
1007 }
1008
1009 vrf_id_t vrf_generate_id(void)
1010 {
1011 static int vrf_id_local;
1012
1013 return ++vrf_id_local;
1014 }