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b72ede27
FL
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 *
896014f4
DL
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
b72ede27
FL
20 */
21
22#include <zebra.h>
23
4691b65a
PG
24/* for basename */
25#include <libgen.h>
26
6a69b354 27#include "if.h"
b72ede27 28#include "vrf.h"
7922fc65 29#include "vrf_int.h"
b72ede27
FL
30#include "prefix.h"
31#include "table.h"
32#include "log.h"
33#include "memory.h"
19dc275e 34#include "command.h"
b95c1883 35#include "ns.h"
3bc34908 36#include "privs.h"
98cbbaea 37#include "nexthop_group.h"
b66d022e 38#include "lib_errors.h"
19dc275e 39
ec31f30d
PG
40/* default VRF ID value used when VRF backend is not NETNS */
41#define VRF_DEFAULT_INTERNAL 0
dd114702 42#define VRF_DEFAULT_NAME_INTERNAL "default"
ec31f30d 43
d62a17ae 44DEFINE_MTYPE_STATIC(LIB, VRF, "VRF")
4a1ab8e4
DL
45DEFINE_MTYPE_STATIC(LIB, VRF_BITMAP, "VRF bit-map")
46
e80e7cce
DL
47DEFINE_QOBJ_TYPE(vrf)
48
d62a17ae 49static __inline int vrf_id_compare(const struct vrf *, const struct vrf *);
50static __inline int vrf_name_compare(const struct vrf *, const struct vrf *);
1a1a7065 51
d62a17ae 52RB_GENERATE(vrf_id_head, vrf, id_entry, vrf_id_compare);
53RB_GENERATE(vrf_name_head, vrf, name_entry, vrf_name_compare);
1a1a7065 54
d62a17ae 55struct vrf_id_head vrfs_by_id = RB_INITIALIZER(&vrfs_by_id);
56struct vrf_name_head vrfs_by_name = RB_INITIALIZER(&vrfs_by_name);
1a1a7065 57
78dd30b2 58static int vrf_backend;
3bc34908 59static struct zebra_privs_t *vrf_daemon_privs;
c200f5e1 60static char vrf_default_name[VRF_NAMSIZ] = VRF_DEFAULT_NAME_INTERNAL;
78dd30b2 61
19dc275e
DS
62/*
63 * Turn on/off debug code
64 * for vrf.
65 */
66int debug_vrf = 0;
b72ede27 67
b72ede27 68/* Holding VRF hooks */
d62a17ae 69struct vrf_master {
70 int (*vrf_new_hook)(struct vrf *);
71 int (*vrf_delete_hook)(struct vrf *);
72 int (*vrf_enable_hook)(struct vrf *);
73 int (*vrf_disable_hook)(struct vrf *);
ecbc5a37 74 int (*vrf_update_name_hook)(struct vrf *vrf);
d62a17ae 75} vrf_master = {
76 0,
77};
b72ede27 78
d62a17ae 79static int vrf_is_enabled(struct vrf *vrf);
e5bf3e1e 80
216b18ef 81/* VRF list existance check by name. */
d62a17ae 82struct vrf *vrf_lookup_by_name(const char *name)
216b18ef 83{
d62a17ae 84 struct vrf vrf;
85 strlcpy(vrf.name, name, sizeof(vrf.name));
86 return (RB_FIND(vrf_name_head, &vrfs_by_name, &vrf));
216b18ef 87}
216b18ef 88
d62a17ae 89static __inline int vrf_id_compare(const struct vrf *a, const struct vrf *b)
b72ede27 90{
d62a17ae 91 return (a->vrf_id - b->vrf_id);
216b18ef
DS
92}
93
d62a17ae 94static int vrf_name_compare(const struct vrf *a, const struct vrf *b)
b72ede27 95{
d62a17ae 96 return strcmp(a->name, b->name);
b72ede27
FL
97}
98
e26aedbe
PG
99/* if ns_id is different and not VRF_UNKNOWN,
100 * then update vrf identifier, and enable VRF
101 */
102static void vrf_update_vrf_id(ns_id_t ns_id, void *opaqueptr)
103{
104 ns_id_t vrf_id = (vrf_id_t)ns_id;
105 vrf_id_t old_vrf_id;
106 struct vrf *vrf = (struct vrf *)opaqueptr;
107
108 if (!vrf)
109 return;
110 old_vrf_id = vrf->vrf_id;
111 if (vrf_id == vrf->vrf_id)
112 return;
113 if (vrf->vrf_id != VRF_UNKNOWN)
114 RB_REMOVE(vrf_id_head, &vrfs_by_id, vrf);
115 vrf->vrf_id = vrf_id;
116 RB_INSERT(vrf_id_head, &vrfs_by_id, vrf);
117 if (old_vrf_id == VRF_UNKNOWN)
118 vrf_enable((struct vrf *)vrf);
119}
120
ce1be369
PG
121int vrf_switch_to_netns(vrf_id_t vrf_id)
122{
123 char *name;
124 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
125
ce1be369 126 /* VRF is default VRF. silently ignore */
e26aedbe 127 if (!vrf || vrf->vrf_id == VRF_DEFAULT)
9dff1132 128 return 1; /* 1 = default */
e26aedbe
PG
129 /* VRF has no NETNS backend. silently ignore */
130 if (vrf->data.l.netns_name[0] == '\0')
9dff1132 131 return 2; /* 2 = no netns */
ce1be369
PG
132 name = ns_netns_pathname(NULL, vrf->data.l.netns_name);
133 if (debug_vrf)
134 zlog_debug("VRF_SWITCH: %s(%u)", name, vrf->vrf_id);
135 return ns_switch_to_netns(name);
136}
137
138int vrf_switchback_to_initial(void)
139{
140 int ret = ns_switchback_to_initial();
141
142 if (ret == 0 && debug_vrf)
143 zlog_debug("VRF_SWITCHBACK");
144 return ret;
145}
146
216b18ef 147/* Get a VRF. If not found, create one.
34f8e6af
DS
148 * Arg:
149 * name - The name of the vrf. May be NULL if unknown.
150 * vrf_id - The vrf_id of the vrf. May be VRF_UNKNOWN if unknown
216b18ef 151 * Description: Please note that this routine can be called with just the name
34f8e6af
DS
152 * and 0 vrf-id
153 */
d62a17ae 154struct vrf *vrf_get(vrf_id_t vrf_id, const char *name)
155{
156 struct vrf *vrf = NULL;
157 int new = 0;
158
159 if (debug_vrf)
996c9314
LB
160 zlog_debug("VRF_GET: %s(%u)", name == NULL ? "(NULL)" : name,
161 vrf_id);
d62a17ae 162
163 /* Nothing to see, move along here */
164 if (!name && vrf_id == VRF_UNKNOWN)
165 return NULL;
166
0c2bac38
PG
167 /* attempt to find already available VRF
168 */
169 if (name)
170 vrf = vrf_lookup_by_name(name);
dd114702
PG
171 if (vrf && vrf_id != VRF_UNKNOWN
172 && vrf->vrf_id != VRF_UNKNOWN
173 && vrf->vrf_id != vrf_id) {
174 zlog_debug("VRF_GET: avoid %s creation(%u), same name exists (%u)",
175 name, vrf_id, vrf->vrf_id);
176 return NULL;
177 }
d62a17ae 178 /* Try to find VRF both by ID and name */
0c2bac38 179 if (!vrf && vrf_id != VRF_UNKNOWN)
d62a17ae 180 vrf = vrf_lookup_by_id(vrf_id);
d62a17ae 181
182 if (vrf == NULL) {
183 vrf = XCALLOC(MTYPE_VRF, sizeof(struct vrf));
184 vrf->vrf_id = VRF_UNKNOWN;
d62a17ae 185 QOBJ_REG(vrf, vrf);
186 new = 1;
187
188 if (debug_vrf)
189 zlog_debug("VRF(%u) %s is created.", vrf_id,
190 (name) ? name : "(NULL)");
191 }
192
193 /* Set identifier */
194 if (vrf_id != VRF_UNKNOWN && vrf->vrf_id == VRF_UNKNOWN) {
195 vrf->vrf_id = vrf_id;
196 RB_INSERT(vrf_id_head, &vrfs_by_id, vrf);
197 }
198
199 /* Set name */
200 if (name && vrf->name[0] != '\0' && strcmp(name, vrf->name)) {
201 RB_REMOVE(vrf_name_head, &vrfs_by_name, vrf);
202 strlcpy(vrf->name, name, sizeof(vrf->name));
203 RB_INSERT(vrf_name_head, &vrfs_by_name, vrf);
204 } else if (name && vrf->name[0] == '\0') {
205 strlcpy(vrf->name, name, sizeof(vrf->name));
206 RB_INSERT(vrf_name_head, &vrfs_by_name, vrf);
207 }
d62a17ae 208 if (new &&vrf_master.vrf_new_hook)
209 (*vrf_master.vrf_new_hook)(vrf);
210
211 return vrf;
b72ede27
FL
212}
213
84915b0a 214/* Delete a VRF. This is called when the underlying VRF goes away, a
215 * pre-configured VRF is deleted or when shutting down (vrf_terminate()).
216 */
d62a17ae 217void vrf_delete(struct vrf *vrf)
b72ede27 218{
d62a17ae 219 if (debug_vrf)
220 zlog_debug("VRF %u is to be deleted.", vrf->vrf_id);
b72ede27 221
d62a17ae 222 if (vrf_is_enabled(vrf))
223 vrf_disable(vrf);
e5bf3e1e 224
84915b0a 225 /* If the VRF is user configured, it'll stick around, just remove
226 * the ID mapping. Interfaces assigned to this VRF should've been
227 * removed already as part of the VRF going down.
228 */
229 if (vrf_is_user_cfged(vrf)) {
230 if (vrf->vrf_id != VRF_UNKNOWN) {
231 /* Delete any VRF interfaces - should be only
232 * the VRF itself, other interfaces should've
233 * been moved out of the VRF.
234 */
235 if_terminate(vrf);
236 RB_REMOVE(vrf_id_head, &vrfs_by_id, vrf);
237 vrf->vrf_id = VRF_UNKNOWN;
238 }
239 return;
240 }
241
d62a17ae 242 if (vrf_master.vrf_delete_hook)
243 (*vrf_master.vrf_delete_hook)(vrf);
216b18ef 244
d62a17ae 245 QOBJ_UNREG(vrf);
f4e14fdb 246 if_terminate(vrf);
b72ede27 247
d62a17ae 248 if (vrf->vrf_id != VRF_UNKNOWN)
249 RB_REMOVE(vrf_id_head, &vrfs_by_id, vrf);
250 if (vrf->name[0] != '\0')
251 RB_REMOVE(vrf_name_head, &vrfs_by_name, vrf);
b72ede27 252
d62a17ae 253 XFREE(MTYPE_VRF, vrf);
b72ede27
FL
254}
255
256/* Look up a VRF by identifier. */
d62a17ae 257struct vrf *vrf_lookup_by_id(vrf_id_t vrf_id)
b72ede27 258{
d62a17ae 259 struct vrf vrf;
260 vrf.vrf_id = vrf_id;
261 return (RB_FIND(vrf_id_head, &vrfs_by_id, &vrf));
b72ede27
FL
262}
263
e5bf3e1e
FL
264/*
265 * Enable a VRF - that is, let the VRF be ready to use.
266 * The VRF_ENABLE_HOOK callback will be called to inform
267 * that they can allocate resources in this VRF.
268 *
269 * RETURN: 1 - enabled successfully; otherwise, 0.
270 */
d62a17ae 271int vrf_enable(struct vrf *vrf)
e5bf3e1e 272{
d62a17ae 273 if (vrf_is_enabled(vrf))
274 return 1;
05e8e11e 275
d62a17ae 276 if (debug_vrf)
277 zlog_debug("VRF %u is enabled.", vrf->vrf_id);
e5bf3e1e 278
d62a17ae 279 SET_FLAG(vrf->status, VRF_ACTIVE);
e5bf3e1e 280
d62a17ae 281 if (vrf_master.vrf_enable_hook)
282 (*vrf_master.vrf_enable_hook)(vrf);
e5bf3e1e 283
98cbbaea
DS
284 /*
285 * If we have any nexthop group entries that
286 * are awaiting vrf initialization then
287 * let's let people know about it
288 */
289 nexthop_group_enable_vrf(vrf);
290
d62a17ae 291 return 1;
e5bf3e1e
FL
292}
293
294/*
295 * Disable a VRF - that is, let the VRF be unusable.
296 * The VRF_DELETE_HOOK callback will be called to inform
297 * that they must release the resources in the VRF.
298 */
697d3ec7 299void vrf_disable(struct vrf *vrf)
e5bf3e1e 300{
d62a17ae 301 if (!vrf_is_enabled(vrf))
302 return;
a647bfa8 303
d62a17ae 304 UNSET_FLAG(vrf->status, VRF_ACTIVE);
e5bf3e1e 305
d62a17ae 306 if (debug_vrf)
307 zlog_debug("VRF %u is to be disabled.", vrf->vrf_id);
e5bf3e1e 308
d62a17ae 309 /* Till now, nothing to be done for the default VRF. */
310 // Pending: see why this statement.
e74f14fc 311
d62a17ae 312 if (vrf_master.vrf_disable_hook)
313 (*vrf_master.vrf_disable_hook)(vrf);
e5bf3e1e
FL
314}
315
b7cfce93
MK
316const char *vrf_id_to_name(vrf_id_t vrf_id)
317{
318 struct vrf *vrf;
319
320 vrf = vrf_lookup_by_id(vrf_id);
321 if (vrf)
322 return vrf->name;
323
181c08c6 324 return "n/a";
b7cfce93
MK
325}
326
d62a17ae 327vrf_id_t vrf_name_to_id(const char *name)
216b18ef 328{
d62a17ae 329 struct vrf *vrf;
330 vrf_id_t vrf_id = VRF_DEFAULT; // Pending: need a way to return invalid
331 // id/ routine not used.
216b18ef 332
d62a17ae 333 vrf = vrf_lookup_by_name(name);
334 if (vrf)
335 vrf_id = vrf->vrf_id;
216b18ef 336
d62a17ae 337 return vrf_id;
216b18ef
DS
338}
339
b72ede27 340/* Get the data pointer of the specified VRF. If not found, create one. */
d62a17ae 341void *vrf_info_get(vrf_id_t vrf_id)
b72ede27 342{
d62a17ae 343 struct vrf *vrf = vrf_get(vrf_id, NULL);
344 return vrf->info;
b72ede27
FL
345}
346
347/* Look up the data pointer of the specified VRF. */
d62a17ae 348void *vrf_info_lookup(vrf_id_t vrf_id)
b72ede27 349{
d62a17ae 350 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
351 return vrf ? vrf->info : NULL;
b72ede27
FL
352}
353
7076bb2f 354/*
4a8bf858 355 * VRF hash for storing set or not.
7076bb2f 356 */
4a8bf858
DS
357struct vrf_bit_set {
358 vrf_id_t vrf_id;
359 bool set;
360};
7076bb2f 361
4a8bf858
DS
362static unsigned int vrf_hash_bitmap_key(void *data)
363{
364 struct vrf_bit_set *bit = data;
d62a17ae 365
4a8bf858
DS
366 return bit->vrf_id;
367}
d62a17ae 368
74df8d6d 369static bool vrf_hash_bitmap_cmp(const void *a, const void *b)
4a8bf858
DS
370{
371 const struct vrf_bit_set *bit1 = a;
372 const struct vrf_bit_set *bit2 = b;
d62a17ae 373
4a8bf858
DS
374 return bit1->vrf_id == bit2->vrf_id;
375}
376
377static void *vrf_hash_bitmap_alloc(void *data)
378{
379 struct vrf_bit_set *copy = data;
380 struct vrf_bit_set *bit;
381
382 bit = XMALLOC(MTYPE_VRF_BITMAP, sizeof(*bit));
383 bit->vrf_id = copy->vrf_id;
384
385 return bit;
386}
387
388static void vrf_hash_bitmap_free(void *data)
389{
390 struct vrf_bit_set *bit = data;
391
392 XFREE(MTYPE_VRF_BITMAP, bit);
393}
7076bb2f 394
d62a17ae 395vrf_bitmap_t vrf_bitmap_init(void)
7076bb2f 396{
4a8bf858
DS
397 return hash_create_size(32, vrf_hash_bitmap_key, vrf_hash_bitmap_cmp,
398 "VRF BIT HASH");
7076bb2f
FL
399}
400
d62a17ae 401void vrf_bitmap_free(vrf_bitmap_t bmap)
7076bb2f 402{
4a8bf858 403 struct hash *vrf_hash = bmap;
7076bb2f 404
4a8bf858 405 if (vrf_hash == NULL)
d62a17ae 406 return;
7076bb2f 407
4a8bf858
DS
408 hash_clean(vrf_hash, vrf_hash_bitmap_free);
409 hash_free(vrf_hash);
7076bb2f
FL
410}
411
d62a17ae 412void vrf_bitmap_set(vrf_bitmap_t bmap, vrf_id_t vrf_id)
7076bb2f 413{
4a8bf858
DS
414 struct vrf_bit_set lookup = { .vrf_id = vrf_id };
415 struct hash *vrf_hash = bmap;
416 struct vrf_bit_set *bit;
7076bb2f 417
4a8bf858 418 if (vrf_hash == NULL || vrf_id == VRF_UNKNOWN)
d62a17ae 419 return;
7076bb2f 420
4a8bf858
DS
421 bit = hash_get(vrf_hash, &lookup, vrf_hash_bitmap_alloc);
422 bit->set = true;
7076bb2f
FL
423}
424
d62a17ae 425void vrf_bitmap_unset(vrf_bitmap_t bmap, vrf_id_t vrf_id)
7076bb2f 426{
4a8bf858
DS
427 struct vrf_bit_set lookup = { .vrf_id = vrf_id };
428 struct hash *vrf_hash = bmap;
429 struct vrf_bit_set *bit;
7076bb2f 430
4a8bf858 431 if (vrf_hash == NULL || vrf_id == VRF_UNKNOWN)
d62a17ae 432 return;
7076bb2f 433
4a8bf858
DS
434 bit = hash_get(vrf_hash, &lookup, vrf_hash_bitmap_alloc);
435 bit->set = false;
7076bb2f
FL
436}
437
d62a17ae 438int vrf_bitmap_check(vrf_bitmap_t bmap, vrf_id_t vrf_id)
7076bb2f 439{
4a8bf858
DS
440 struct vrf_bit_set lookup = { .vrf_id = vrf_id };
441 struct hash *vrf_hash = bmap;
442 struct vrf_bit_set *bit;
7076bb2f 443
4a8bf858 444 if (vrf_hash == NULL || vrf_id == VRF_UNKNOWN)
d62a17ae 445 return 0;
7076bb2f 446
4a8bf858
DS
447 bit = hash_lookup(vrf_hash, &lookup);
448 if (bit)
449 return bit->set;
450
451 return 0;
7076bb2f
FL
452}
453
d62a17ae 454static void vrf_autocomplete(vector comps, struct cmd_token *token)
d617d5fe 455{
d62a17ae 456 struct vrf *vrf = NULL;
d617d5fe 457
723001fc
PG
458 RB_FOREACH (vrf, vrf_name_head, &vrfs_by_name)
459 vector_set(comps, XSTRDUP(MTYPE_COMPLETION, vrf->name));
d617d5fe
DS
460}
461
462static const struct cmd_variable_handler vrf_var_handlers[] = {
d62a17ae 463 {
464 .varname = "vrf",
465 .completions = vrf_autocomplete,
466 },
467 {.completions = NULL},
d617d5fe
DS
468};
469
b72ede27 470/* Initialize VRF module. */
d62a17ae 471void vrf_init(int (*create)(struct vrf *), int (*enable)(struct vrf *),
ecbc5a37
PG
472 int (*disable)(struct vrf *), int (*delete)(struct vrf *),
473 int ((*update)(struct vrf *)))
d62a17ae 474{
475 struct vrf *default_vrf;
476
e26aedbe
PG
477 /* initialise NS, in case VRF backend if NETNS */
478 ns_init();
d62a17ae 479 if (debug_vrf)
480 zlog_debug("%s: Initializing VRF subsystem",
481 __PRETTY_FUNCTION__);
482
483 vrf_master.vrf_new_hook = create;
484 vrf_master.vrf_enable_hook = enable;
485 vrf_master.vrf_disable_hook = disable;
486 vrf_master.vrf_delete_hook = delete;
ecbc5a37 487 vrf_master.vrf_update_name_hook = update;
d62a17ae 488
489 /* The default VRF always exists. */
eb6934d5 490 default_vrf = vrf_get(VRF_DEFAULT, VRF_DEFAULT_NAME);
d62a17ae 491 if (!default_vrf) {
450971aa 492 flog_err(EC_LIB_VRF_START,
1c50c1c0 493 "vrf_init: failed to create the default VRF!");
d62a17ae 494 exit(1);
495 }
20c87e98
TC
496 if (vrf_is_backend_netns()) {
497 struct ns *ns;
498
fdafe17e 499 strlcpy(default_vrf->data.l.netns_name,
eb6934d5 500 VRF_DEFAULT_NAME, NS_NAMSIZ);
20c87e98 501 ns = ns_lookup(ns_get_default_id());
c3568c4d
TC
502 ns->vrf_ctxt = default_vrf;
503 default_vrf->ns_ctxt = ns;
20c87e98 504 }
d62a17ae 505
506 /* Enable the default VRF. */
507 if (!vrf_enable(default_vrf)) {
450971aa 508 flog_err(EC_LIB_VRF_START,
1c50c1c0 509 "vrf_init: failed to enable the default VRF!");
d62a17ae 510 exit(1);
511 }
512
513 cmd_variable_handler_register(vrf_var_handlers);
b72ede27
FL
514}
515
516/* Terminate VRF module. */
d62a17ae 517void vrf_terminate(void)
b72ede27 518{
d62a17ae 519 struct vrf *vrf;
b72ede27 520
d62a17ae 521 if (debug_vrf)
522 zlog_debug("%s: Shutting down vrf subsystem",
523 __PRETTY_FUNCTION__);
19dc275e 524
55cd0f61
DS
525 while (!RB_EMPTY(vrf_id_head, &vrfs_by_id)) {
526 vrf = RB_ROOT(vrf_id_head, &vrfs_by_id);
527
65c3a7c4 528 /* Clear configured flag and invoke delete. */
529 UNSET_FLAG(vrf->status, VRF_CONFIGURED);
d62a17ae 530 vrf_delete(vrf);
65c3a7c4 531 }
55cd0f61
DS
532
533 while (!RB_EMPTY(vrf_name_head, &vrfs_by_name)) {
534 vrf = RB_ROOT(vrf_name_head, &vrfs_by_name);
535
65c3a7c4 536 /* Clear configured flag and invoke delete. */
537 UNSET_FLAG(vrf->status, VRF_CONFIGURED);
d62a17ae 538 vrf_delete(vrf);
65c3a7c4 539 }
b72ede27
FL
540}
541
9dff1132
LB
542static int vrf_default_accepts_vrf(int type)
543{
544 const char *fname = NULL;
545 char buf[32] = {0x0};
546 int ret = 0;
547 FILE *fd = NULL;
548
549 /*
550 * TCP & UDP services running in the default VRF context (ie., not bound
551 * to any VRF device) can work across all VRF domains by enabling the
552 * tcp_l3mdev_accept and udp_l3mdev_accept sysctl options:
553 * sysctl -w net.ipv4.tcp_l3mdev_accept=1
554 * sysctl -w net.ipv4.udp_l3mdev_accept=1
555 */
556 if (type == SOCK_STREAM)
557 fname = "/proc/sys/net/ipv4/tcp_l3mdev_accept";
558 else if (type == SOCK_DGRAM)
559 fname = "/proc/sys/net/ipv4/udp_l3mdev_accept";
560 else
561 return ret;
562 fd = fopen(fname, "r");
563 if (fd == NULL)
564 return ret;
565 fgets(buf, 32, fd);
566 ret = atoi(buf);
567 fclose(fd);
568 return ret;
569}
570
e5bf3e1e 571/* Create a socket for the VRF. */
0f4977c6
PG
572int vrf_socket(int domain, int type, int protocol, vrf_id_t vrf_id,
573 char *interfacename)
e5bf3e1e 574{
2e0d2b3d 575 int ret, save_errno, ret2;
e5bf3e1e 576
2e0d2b3d
PG
577 ret = vrf_switch_to_netns(vrf_id);
578 if (ret < 0)
450971aa 579 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
09c866e3 580 __func__, vrf_id, safe_strerror(errno));
b66d022e 581
9dff1132
LB
582 if (ret > 0 && interfacename && vrf_default_accepts_vrf(type)) {
583 zlog_err("VRF socket not used since net.ipv4.%s_l3mdev_accept != 0",
584 (type == SOCK_STREAM ? "tcp" : "udp"));
585 errno = EEXIST; /* not sure if this is the best error... */
586 return -2;
587 }
b66d022e 588
d62a17ae 589 ret = socket(domain, type, protocol);
2e0d2b3d
PG
590 save_errno = errno;
591 ret2 = vrf_switchback_to_initial();
592 if (ret2 < 0)
450971aa 593 flog_err_sys(EC_LIB_SOCKET,
09c866e3
QY
594 "%s: Can't switchback from VRF %u (%s)", __func__,
595 vrf_id, safe_strerror(errno));
2e0d2b3d 596 errno = save_errno;
0f4977c6
PG
597 if (ret <= 0)
598 return ret;
599 ret2 = vrf_bind(vrf_id, ret, interfacename);
600 if (ret2 < 0) {
601 close(ret);
602 ret = ret2;
603 }
d62a17ae 604 return ret;
e5bf3e1e
FL
605}
606
78dd30b2
PG
607int vrf_is_backend_netns(void)
608{
609 return (vrf_backend == VRF_BACKEND_NETNS);
610}
611
612int vrf_get_backend(void)
613{
614 return vrf_backend;
615}
616
617void vrf_configure_backend(int vrf_backend_netns)
618{
619 vrf_backend = vrf_backend_netns;
620}
621
03aff2d8
PG
622int vrf_handler_create(struct vty *vty, const char *vrfname,
623 struct vrf **vrf)
f30c50b9 624{
d62a17ae 625 struct vrf *vrfp;
f30c50b9 626
d62a17ae 627 if (strlen(vrfname) > VRF_NAMSIZ) {
697d3ec7
PG
628 if (vty)
629 vty_out(vty,
996c9314
LB
630 "%% VRF name %s invalid: length exceeds %d bytes\n",
631 vrfname, VRF_NAMSIZ);
697d3ec7 632 else
0351a28f 633 flog_warn(
450971aa 634 EC_LIB_VRF_LENGTH,
996c9314
LB
635 "%% VRF name %s invalid: length exceeds %d bytes\n",
636 vrfname, VRF_NAMSIZ);
d62a17ae 637 return CMD_WARNING_CONFIG_FAILED;
638 }
f30c50b9 639
d62a17ae 640 vrfp = vrf_get(VRF_UNKNOWN, vrfname);
f30c50b9 641
697d3ec7
PG
642 if (vty)
643 VTY_PUSH_CONTEXT(VRF_NODE, vrfp);
f30c50b9 644
697d3ec7
PG
645 if (vrf)
646 *vrf = vrfp;
d62a17ae 647 return CMD_SUCCESS;
f30c50b9
RW
648}
649
996c9314 650int vrf_netns_handler_create(struct vty *vty, struct vrf *vrf, char *pathname,
03aff2d8 651 ns_id_t ns_id, ns_id_t internal_ns_id)
e26aedbe
PG
652{
653 struct ns *ns = NULL;
654
655 if (!vrf)
656 return CMD_WARNING_CONFIG_FAILED;
657 if (vrf->vrf_id != VRF_UNKNOWN && vrf->ns_ctxt == NULL) {
658 if (vty)
659 vty_out(vty,
660 "VRF %u is already configured with VRF %s\n",
661 vrf->vrf_id, vrf->name);
662 else
0351a28f 663 zlog_info("VRF %u is already configured with VRF %s\n",
e26aedbe
PG
664 vrf->vrf_id, vrf->name);
665 return CMD_WARNING_CONFIG_FAILED;
666 }
667 if (vrf->ns_ctxt != NULL) {
996c9314 668 ns = (struct ns *)vrf->ns_ctxt;
2e1cc436 669 if (!strcmp(ns->name, pathname)) {
e26aedbe
PG
670 if (vty)
671 vty_out(vty,
996c9314
LB
672 "VRF %u already configured with NETNS %s\n",
673 vrf->vrf_id, ns->name);
e26aedbe 674 else
0351a28f 675 zlog_info(
ade6974d
QY
676 "VRF %u already configured with NETNS %s",
677 vrf->vrf_id, ns->name);
e26aedbe
PG
678 return CMD_WARNING_CONFIG_FAILED;
679 }
680 }
681 ns = ns_lookup_name(pathname);
682 if (ns && ns->vrf_ctxt) {
683 struct vrf *vrf2 = (struct vrf *)ns->vrf_ctxt;
684
685 if (vrf2 == vrf)
686 return CMD_SUCCESS;
687 if (vty)
996c9314
LB
688 vty_out(vty,
689 "NS %s is already configured"
e26aedbe 690 " with VRF %u(%s)\n",
996c9314 691 ns->name, vrf2->vrf_id, vrf2->name);
e26aedbe 692 else
0351a28f 693 zlog_info("NS %s is already configured with VRF %u(%s)",
e26aedbe
PG
694 ns->name, vrf2->vrf_id, vrf2->name);
695 return CMD_WARNING_CONFIG_FAILED;
696 }
697 ns = ns_get_created(ns, pathname, ns_id);
03aff2d8 698 ns->internal_ns_id = internal_ns_id;
e26aedbe
PG
699 ns->vrf_ctxt = (void *)vrf;
700 vrf->ns_ctxt = (void *)ns;
701 /* update VRF netns NAME */
2e1cc436 702 strlcpy(vrf->data.l.netns_name, basename(pathname), NS_NAMSIZ);
e26aedbe
PG
703
704 if (!ns_enable(ns, vrf_update_vrf_id)) {
705 if (vty)
706 vty_out(vty, "Can not associate NS %u with NETNS %s\n",
996c9314 707 ns->ns_id, ns->name);
e26aedbe 708 else
0351a28f 709 zlog_info("Can not associate NS %u with NETNS %s",
e26aedbe
PG
710 ns->ns_id, ns->name);
711 return CMD_WARNING_CONFIG_FAILED;
712 }
713
714 return CMD_SUCCESS;
715}
716
3d4c0b49 717int vrf_is_mapped_on_netns(struct vrf *vrf)
ce1be369 718{
ce1be369
PG
719 if (!vrf || vrf->data.l.netns_name[0] == '\0')
720 return 0;
ce1be369
PG
721 return 1;
722}
723
697d3ec7 724/* vrf CLI commands */
16d6ea59
QY
725DEFUN_NOSH(vrf_exit,
726 vrf_exit_cmd,
727 "exit-vrf",
728 "Exit current mode and down to previous mode\n")
729{
730 /* We have to set vrf context to default vrf */
731 VTY_PUSH_CONTEXT(VRF_NODE, vrf_get(VRF_DEFAULT, VRF_DEFAULT_NAME));
732 vty->node = CONFIG_NODE;
733 return CMD_SUCCESS;
734}
735
697d3ec7
PG
736DEFUN_NOSH (vrf,
737 vrf_cmd,
738 "vrf NAME",
739 "Select a VRF to configure\n"
740 "VRF's name\n")
741{
742 int idx_name = 1;
743 const char *vrfname = argv[idx_name]->arg;
744
745 return vrf_handler_create(vty, vrfname, NULL);
746}
747
34c46274
RW
748DEFUN (no_vrf,
749 no_vrf_cmd,
750 "no vrf NAME",
751 NO_STR
752 "Delete a pseudo VRF's configuration\n"
753 "VRF's name\n")
f30c50b9 754{
d62a17ae 755 const char *vrfname = argv[2]->arg;
53dc2b05 756
d62a17ae 757 struct vrf *vrfp;
f30c50b9 758
d62a17ae 759 vrfp = vrf_lookup_by_name(vrfname);
f30c50b9 760
d62a17ae 761 if (vrfp == NULL) {
762 vty_out(vty, "%% VRF %s does not exist\n", vrfname);
763 return CMD_WARNING_CONFIG_FAILED;
764 }
f30c50b9 765
d62a17ae 766 if (CHECK_FLAG(vrfp->status, VRF_ACTIVE)) {
767 vty_out(vty, "%% Only inactive VRFs can be deleted\n");
768 return CMD_WARNING_CONFIG_FAILED;
769 }
f30c50b9 770
84915b0a 771 /* Clear configured flag and invoke delete. */
772 UNSET_FLAG(vrfp->status, VRF_CONFIGURED);
d62a17ae 773 vrf_delete(vrfp);
f30c50b9 774
d62a17ae 775 return CMD_SUCCESS;
f30c50b9
RW
776}
777
53dc2b05 778
d62a17ae 779struct cmd_node vrf_node = {VRF_NODE, "%s(config-vrf)# ", 1};
7ddcfca4 780
34c46274 781DEFUN_NOSH (vrf_netns,
4a541e8c
PG
782 vrf_netns_cmd,
783 "netns NAME",
784 "Attach VRF to a Namespace\n"
785 "The file name in " NS_RUN_DIR ", or a full pathname\n")
e26aedbe 786{
3bc34908 787 int idx_name = 1, ret;
e26aedbe
PG
788 char *pathname = ns_netns_pathname(vty, argv[idx_name]->arg);
789
790 VTY_DECLVAR_CONTEXT(vrf, vrf);
791
792 if (!pathname)
793 return CMD_WARNING_CONFIG_FAILED;
3bc34908 794
6bb30c2c
DL
795 frr_elevate_privs(vrf_daemon_privs) {
796 ret = vrf_netns_handler_create(vty, vrf, pathname,
797 NS_UNKNOWN, NS_UNKNOWN);
798 }
3bc34908 799 return ret;
e26aedbe
PG
800}
801
34c46274 802DEFUN_NOSH (no_vrf_netns,
e26aedbe
PG
803 no_vrf_netns_cmd,
804 "no netns [NAME]",
805 NO_STR
806 "Detach VRF from a Namespace\n"
807 "The file name in " NS_RUN_DIR ", or a full pathname\n")
808{
809 struct ns *ns = NULL;
810
811 VTY_DECLVAR_CONTEXT(vrf, vrf);
812
813 if (!vrf_is_backend_netns()) {
814 vty_out(vty, "VRF backend is not Netns. Aborting\n");
815 return CMD_WARNING_CONFIG_FAILED;
816 }
817 if (!vrf->ns_ctxt) {
818 vty_out(vty, "VRF %s(%u) is not configured with NetNS\n",
819 vrf->name, vrf->vrf_id);
820 return CMD_WARNING_CONFIG_FAILED;
821 }
822
823 ns = (struct ns *)vrf->ns_ctxt;
824
825 ns->vrf_ctxt = NULL;
826 vrf_disable(vrf);
827 /* vrf ID from VRF is necessary for Zebra
828 * so that propagate to other clients is done
829 */
830 ns_delete(ns);
831 vrf->ns_ctxt = NULL;
832 return CMD_SUCCESS;
833}
834
19dc275e
DS
835/*
836 * Debug CLI for vrf's
837 */
838DEFUN (vrf_debug,
839 vrf_debug_cmd,
840 "debug vrf",
841 DEBUG_STR
842 "VRF Debugging\n")
843{
d62a17ae 844 debug_vrf = 1;
19dc275e 845
d62a17ae 846 return CMD_SUCCESS;
19dc275e
DS
847}
848
849DEFUN (no_vrf_debug,
850 no_vrf_debug_cmd,
851 "no debug vrf",
852 NO_STR
853 DEBUG_STR
854 "VRF Debugging\n")
855{
d62a17ae 856 debug_vrf = 0;
19dc275e 857
d62a17ae 858 return CMD_SUCCESS;
19dc275e
DS
859}
860
d62a17ae 861static int vrf_write_host(struct vty *vty)
19dc275e 862{
d62a17ae 863 if (debug_vrf)
864 vty_out(vty, "debug vrf\n");
19dc275e 865
d62a17ae 866 return 1;
19dc275e
DS
867}
868
d62a17ae 869static struct cmd_node vrf_debug_node = {VRF_DEBUG_NODE, "", 1};
19dc275e 870
d62a17ae 871void vrf_install_commands(void)
19dc275e 872{
d62a17ae 873 install_node(&vrf_debug_node, vrf_write_host);
19dc275e 874
d62a17ae 875 install_element(CONFIG_NODE, &vrf_debug_cmd);
876 install_element(ENABLE_NODE, &vrf_debug_cmd);
877 install_element(CONFIG_NODE, &no_vrf_debug_cmd);
878 install_element(ENABLE_NODE, &no_vrf_debug_cmd);
19dc275e 879}
53dc2b05 880
3bc34908
PG
881void vrf_cmd_init(int (*writefunc)(struct vty *vty),
882 struct zebra_privs_t *daemon_privs)
7ddcfca4 883{
d62a17ae 884 install_element(CONFIG_NODE, &vrf_cmd);
885 install_element(CONFIG_NODE, &no_vrf_cmd);
886 install_node(&vrf_node, writefunc);
887 install_default(VRF_NODE);
16d6ea59 888 install_element(VRF_NODE, &vrf_exit_cmd);
e26aedbe
PG
889 if (vrf_is_backend_netns() && ns_have_netns()) {
890 /* Install NS commands. */
3bc34908 891 vrf_daemon_privs = daemon_privs;
e26aedbe
PG
892 install_element(VRF_NODE, &vrf_netns_cmd);
893 install_element(VRF_NODE, &no_vrf_netns_cmd);
894 }
19dc275e 895}
ec31f30d 896
4fe52e76 897void vrf_set_default_name(const char *default_name, bool force)
ec31f30d 898{
c200f5e1 899 struct vrf *def_vrf;
dd114702 900 struct vrf *vrf_with_default_name = NULL;
4fe52e76 901 static bool def_vrf_forced;
ec31f30d 902
c200f5e1
PG
903 def_vrf = vrf_lookup_by_id(VRF_DEFAULT);
904 assert(default_name);
4fe52e76
PG
905 if (def_vrf && !force && def_vrf_forced) {
906 zlog_debug("VRF: %s, avoid changing name to %s, previously forced (%u)",
907 def_vrf->name, default_name,
908 def_vrf->vrf_id);
909 return;
910 }
c200f5e1
PG
911 if (vrf_with_default_name && vrf_with_default_name != def_vrf) {
912 /* vrf name already used by an other VRF */
913 zlog_debug("VRF: %s, avoid changing name to %s, same name exists (%u)",
914 vrf_with_default_name->name, default_name,
915 vrf_with_default_name->vrf_id);
916 return;
917 }
918 snprintf(vrf_default_name, VRF_NAMSIZ, "%s", default_name);
919 if (def_vrf) {
4fe52e76
PG
920 if (force)
921 def_vrf_forced = true;
c200f5e1
PG
922 RB_REMOVE(vrf_name_head, &vrfs_by_name, def_vrf);
923 strlcpy(def_vrf->data.l.netns_name,
924 vrf_default_name, NS_NAMSIZ);
925 strlcpy(def_vrf->name, vrf_default_name, sizeof(def_vrf->name));
926 RB_INSERT(vrf_name_head, &vrfs_by_name, def_vrf);
ecbc5a37
PG
927 if (vrf_master.vrf_update_name_hook)
928 (*vrf_master.vrf_update_name_hook)(def_vrf);
c200f5e1
PG
929 }
930}
931
932const char *vrf_get_default_name(void)
933{
934 return vrf_default_name;
935}
936
937vrf_id_t vrf_get_default_id(void)
938{
03aff2d8
PG
939 /* backend netns is only known by zebra
940 * for other daemons, we return VRF_DEFAULT_INTERNAL
941 */
ec31f30d
PG
942 if (vrf_is_backend_netns())
943 return ns_get_default_id();
944 else
945 return VRF_DEFAULT_INTERNAL;
946}
2e0d2b3d 947
0f4977c6
PG
948int vrf_bind(vrf_id_t vrf_id, int fd, char *name)
949{
950 int ret = 0;
951
952 if (fd < 0 || name == NULL)
953 return fd;
3d4c0b49 954 if (vrf_is_mapped_on_netns(vrf_lookup_by_id(vrf_id)))
0f4977c6
PG
955 return fd;
956#ifdef SO_BINDTODEVICE
c9c70dd1 957 ret = setsockopt(fd, SOL_SOCKET, SO_BINDTODEVICE, name, strlen(name)+1);
0f4977c6 958 if (ret < 0)
996c9314
LB
959 zlog_debug("bind to interface %s failed, errno=%d", name,
960 errno);
0f4977c6
PG
961#endif /* SO_BINDTODEVICE */
962 return ret;
963}
2e0d2b3d 964int vrf_getaddrinfo(const char *node, const char *service,
996c9314
LB
965 const struct addrinfo *hints, struct addrinfo **res,
966 vrf_id_t vrf_id)
2e0d2b3d
PG
967{
968 int ret, ret2, save_errno;
969
970 ret = vrf_switch_to_netns(vrf_id);
971 if (ret < 0)
450971aa 972 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
09c866e3 973 __func__, vrf_id, safe_strerror(errno));
2e0d2b3d
PG
974 ret = getaddrinfo(node, service, hints, res);
975 save_errno = errno;
976 ret2 = vrf_switchback_to_initial();
977 if (ret2 < 0)
450971aa 978 flog_err_sys(EC_LIB_SOCKET,
09c866e3
QY
979 "%s: Can't switchback from VRF %u (%s)", __func__,
980 vrf_id, safe_strerror(errno));
2e0d2b3d
PG
981 errno = save_errno;
982 return ret;
983}
984
516d7591
PG
985int vrf_ioctl(vrf_id_t vrf_id, int d, unsigned long request, char *params)
986{
987 int ret, saved_errno, rc;
988
989 ret = vrf_switch_to_netns(vrf_id);
990 if (ret < 0) {
450971aa 991 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
09c866e3 992 __func__, vrf_id, safe_strerror(errno));
516d7591
PG
993 return 0;
994 }
995 rc = ioctl(d, request, params);
996 saved_errno = errno;
997 ret = vrf_switchback_to_initial();
998 if (ret < 0)
450971aa 999 flog_err_sys(EC_LIB_SOCKET,
09c866e3
QY
1000 "%s: Can't switchback from VRF %u (%s)", __func__,
1001 vrf_id, safe_strerror(errno));
516d7591
PG
1002 errno = saved_errno;
1003 return rc;
1004}
1005
0f4977c6
PG
1006int vrf_sockunion_socket(const union sockunion *su, vrf_id_t vrf_id,
1007 char *interfacename)
2e0d2b3d
PG
1008{
1009 int ret, save_errno, ret2;
1010
1011 ret = vrf_switch_to_netns(vrf_id);
1012 if (ret < 0)
450971aa 1013 flog_err_sys(EC_LIB_SOCKET, "%s: Can't switch to VRF %u (%s)",
09c866e3 1014 __func__, vrf_id, safe_strerror(errno));
2e0d2b3d
PG
1015 ret = sockunion_socket(su);
1016 save_errno = errno;
1017 ret2 = vrf_switchback_to_initial();
1018 if (ret2 < 0)
450971aa 1019 flog_err_sys(EC_LIB_SOCKET,
09c866e3
QY
1020 "%s: Can't switchback from VRF %u (%s)", __func__,
1021 vrf_id, safe_strerror(errno));
2e0d2b3d 1022 errno = save_errno;
0f4977c6
PG
1023
1024 if (ret <= 0)
1025 return ret;
1026 ret2 = vrf_bind(vrf_id, ret, interfacename);
1027 if (ret2 < 0) {
1028 close(ret);
1029 ret = ret2;
1030 }
2e0d2b3d
PG
1031 return ret;
1032}
0b014ea6
PG
1033
1034vrf_id_t vrf_generate_id(void)
1035{
1036 static int vrf_id_local;
1037
1038 return ++vrf_id_local;
1039}