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d62a17ae 1/*
718e3744 2 * Interface functions.
3 * Copyright (C) 1997, 98 Kunihiro Ishiguro
4 *
5 * This file is part of GNU Zebra.
896014f4 6 *
718e3744 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
718e3744 20 */
21
22#include <zebra.h>
23
24#include "linklist.h"
25#include "vector.h"
4d43f68a 26#include "lib_errors.h"
718e3744 27#include "vty.h"
28#include "command.h"
8736158a 29#include "vrf.h"
718e3744 30#include "if.h"
31#include "sockunion.h"
32#include "prefix.h"
718e3744 33#include "memory.h"
34#include "table.h"
35#include "buffer.h"
718e3744 36#include "log.h"
6b0655a2 37
d62a17ae 38DEFINE_MTYPE(LIB, IF, "Interface")
39DEFINE_MTYPE_STATIC(LIB, CONNECTED, "Connected")
40DEFINE_MTYPE_STATIC(LIB, NBR_CONNECTED, "Neighbor Connected")
41DEFINE_MTYPE(LIB, CONNECTED_LABEL, "Connected interface label")
42DEFINE_MTYPE_STATIC(LIB, IF_LINK_PARAMS, "Informational Link Parameters")
4a1ab8e4 43
f4e14fdb 44static int if_cmp_func(const struct interface *, const struct interface *);
ff880b78
RW
45static int if_cmp_index_func(const struct interface *ifp1,
46 const struct interface *ifp2);
f4e14fdb 47RB_GENERATE(if_name_head, interface, name_entry, if_cmp_func);
ff880b78 48RB_GENERATE(if_index_head, interface, index_entry, if_cmp_index_func);
f4e14fdb 49
e80e7cce
DL
50DEFINE_QOBJ_TYPE(interface)
51
996c9314
LB
52DEFINE_HOOK(if_add, (struct interface * ifp), (ifp))
53DEFINE_KOOH(if_del, (struct interface * ifp), (ifp))
ce19a04a 54
8736158a 55/* List of interfaces in only the default VRF */
244c1cdc 56int ptm_enable = 0;
718e3744 57
3a0391a9 58/* Compare interface names, returning an integer greater than, equal to, or
59 * less than 0, (following the strcmp convention), according to the
60 * relationship between ifp1 and ifp2. Interface names consist of an
61 * alphabetic prefix and a numeric suffix. The primary sort key is
62 * lexicographic by name, and then numeric by number. No number sorts
63 * before all numbers. Examples: de0 < de1, de100 < fxp0 < xl0, devpty <
64 * devpty0, de0 < del0
d62a17ae 65 */
66int if_cmp_name_func(char *p1, char *p2)
106d2fd5 67{
d62a17ae 68 unsigned int l1, l2;
69 long int x1, x2;
70 int res;
71
72 while (*p1 && *p2) {
73 /* look up to any number */
74 l1 = strcspn(p1, "0123456789");
75 l2 = strcspn(p2, "0123456789");
76
77 /* name lengths are different -> compare names */
78 if (l1 != l2)
79 return (strcmp(p1, p2));
80
81 /* Note that this relies on all numbers being less than all
82 * letters, so
83 * that de0 < del0.
84 */
85 res = strncmp(p1, p2, l1);
86
87 /* names are different -> compare them */
88 if (res)
89 return res;
90
91 /* with identical name part, go to numeric part */
92 p1 += l1;
93 p2 += l1;
94
c9cbbb40
RW
95 if (!*p1 && !*p2)
96 return 0;
d62a17ae 97 if (!*p1)
98 return -1;
99 if (!*p2)
100 return 1;
101
102 x1 = strtol(p1, &p1, 10);
103 x2 = strtol(p2, &p2, 10);
104
105 /* let's compare numbers now */
106 if (x1 < x2)
107 return -1;
108 if (x1 > x2)
109 return 1;
110
111 /* numbers were equal, lets do it again..
112 (it happens with name like "eth123.456:789") */
113 }
114 if (*p1)
115 return 1;
116 if (*p2)
117 return -1;
118 return 0;
106d2fd5 119}
120
f4e14fdb
RW
121static int if_cmp_func(const struct interface *ifp1,
122 const struct interface *ifp2)
974fc9d2 123{
f4e14fdb 124 return if_cmp_name_func((char *)ifp1->name, (char *)ifp2->name);
974fc9d2
DS
125}
126
ff880b78
RW
127static int if_cmp_index_func(const struct interface *ifp1,
128 const struct interface *ifp2)
129{
130 return ifp1->ifindex - ifp2->ifindex;
131}
132
718e3744 133/* Create new interface structure. */
bcc24579 134struct interface *if_create(const char *name, vrf_id_t vrf_id)
718e3744 135{
f4e14fdb 136 struct vrf *vrf = vrf_get(vrf_id, NULL);
d62a17ae 137 struct interface *ifp;
d62a17ae 138
139 ifp = XCALLOC(MTYPE_IF, sizeof(struct interface));
140 ifp->ifindex = IFINDEX_INTERNAL;
141
142 assert(name);
bcc24579 143 strlcpy(ifp->name, name, sizeof(ifp->name));
d62a17ae 144 ifp->vrf_id = vrf_id;
ff880b78 145 IFNAME_RB_INSERT(vrf, ifp);
d62a17ae 146 ifp->connected = list_new();
147 ifp->connected->del = (void (*)(void *))connected_free;
148
149 ifp->nbr_connected = list_new();
150 ifp->nbr_connected->del = (void (*)(void *))nbr_connected_free;
151
152 /* Enable Link-detection by default */
153 SET_FLAG(ifp->status, ZEBRA_INTERFACE_LINKDETECTION);
154
155 QOBJ_REG(ifp, interface);
996c9314 156 hook_call(if_add, ifp);
d62a17ae 157 return ifp;
718e3744 158}
159
f93e3f69 160/* Create new interface structure. */
d62a17ae 161void if_update_to_new_vrf(struct interface *ifp, vrf_id_t vrf_id)
f93e3f69 162{
f4e14fdb 163 struct vrf *vrf;
d62a17ae 164
165 /* remove interface from old master vrf list */
f4e14fdb 166 vrf = vrf_lookup_by_id(ifp->vrf_id);
ff880b78
RW
167 if (vrf) {
168 IFNAME_RB_REMOVE(vrf, ifp);
169 if (ifp->ifindex != IFINDEX_INTERNAL)
170 IFINDEX_RB_REMOVE(vrf, ifp);
171 }
d62a17ae 172
173 ifp->vrf_id = vrf_id;
f4e14fdb 174 vrf = vrf_get(ifp->vrf_id, NULL);
ff880b78
RW
175
176 IFNAME_RB_INSERT(vrf, ifp);
177 if (ifp->ifindex != IFINDEX_INTERNAL)
178 IFINDEX_RB_INSERT(vrf, ifp);
f93e3f69
DS
179}
180
181
d2fc8896 182/* Delete interface structure. */
d62a17ae 183void if_delete_retain(struct interface *ifp)
718e3744 184{
996c9314 185 hook_call(if_del, ifp);
d62a17ae 186 QOBJ_UNREG(ifp);
e80e7cce 187
d62a17ae 188 /* Free connected address list */
189 list_delete_all_node(ifp->connected);
a80beece 190
d62a17ae 191 /* Free connected nbr address list */
192 list_delete_all_node(ifp->nbr_connected);
d2fc8896 193}
194
195/* Delete and free interface structure. */
d62a17ae 196void if_delete(struct interface *ifp)
d2fc8896 197{
5b8524f5
RW
198 struct vrf *vrf;
199
200 vrf = vrf_lookup_by_id(ifp->vrf_id);
201 assert(vrf);
f4e14fdb 202
ff880b78
RW
203 IFNAME_RB_REMOVE(vrf, ifp);
204 if (ifp->ifindex != IFINDEX_INTERNAL)
205 IFINDEX_RB_REMOVE(vrf, ifp);
d2fc8896 206
d62a17ae 207 if_delete_retain(ifp);
718e3744 208
acdf5e25
DS
209 list_delete_and_null(&ifp->connected);
210 list_delete_and_null(&ifp->nbr_connected);
2dd04c5d 211
d62a17ae 212 if_link_params_free(ifp);
16f1b9ee 213
c7974c0f
DS
214 if (ifp->desc)
215 XFREE(MTYPE_TMP, ifp->desc);
216
d62a17ae 217 XFREE(MTYPE_IF, ifp);
718e3744 218}
219
718e3744 220/* Interface existance check by index. */
d62a17ae 221struct interface *if_lookup_by_index(ifindex_t ifindex, vrf_id_t vrf_id)
718e3744 222{
5b8524f5 223 struct vrf *vrf;
ff880b78 224 struct interface if_tmp;
f4e14fdb 225
5b8524f5
RW
226 vrf = vrf_lookup_by_id(vrf_id);
227 if (!vrf)
228 return NULL;
229
ff880b78
RW
230 if_tmp.ifindex = ifindex;
231 return RB_FIND(if_index_head, &vrf->ifaces_by_index, &if_tmp);
718e3744 232}
233
d62a17ae 234const char *ifindex2ifname(ifindex_t ifindex, vrf_id_t vrf_id)
718e3744 235{
d62a17ae 236 struct interface *ifp;
718e3744 237
d62a17ae 238 return ((ifp = if_lookup_by_index(ifindex, vrf_id)) != NULL)
239 ? ifp->name
240 : "unknown";
d2fc8896 241}
242
d62a17ae 243ifindex_t ifname2ifindex(const char *name, vrf_id_t vrf_id)
d2fc8896 244{
d62a17ae 245 struct interface *ifp;
d2fc8896 246
d62a17ae 247 return ((ifp = if_lookup_by_name(name, vrf_id)) != NULL)
248 ? ifp->ifindex
249 : IFINDEX_INTERNAL;
718e3744 250}
251
252/* Interface existance check by interface name. */
d62a17ae 253struct interface *if_lookup_by_name(const char *name, vrf_id_t vrf_id)
718e3744 254{
f4e14fdb
RW
255 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
256 struct interface if_tmp;
d62a17ae 257
5b8524f5
RW
258 if (!vrf || !name
259 || strnlen(name, INTERFACE_NAMSIZ) == INTERFACE_NAMSIZ)
bcc24579 260 return NULL;
f8962871 261
f4e14fdb
RW
262 strlcpy(if_tmp.name, name, sizeof(if_tmp.name));
263 return RB_FIND(if_name_head, &vrf->ifaces_by_name, &if_tmp);
f8962871
DS
264}
265
bcc24579 266struct interface *if_lookup_by_name_all_vrf(const char *name)
a349198f 267{
bcc24579 268 struct vrf *vrf;
d62a17ae 269 struct interface *ifp;
a349198f 270
bcc24579 271 if (!name || strnlen(name, INTERFACE_NAMSIZ) == INTERFACE_NAMSIZ)
d62a17ae 272 return NULL;
a349198f 273
bcc24579
RW
274 RB_FOREACH (vrf, vrf_id_head, &vrfs_by_id) {
275 ifp = if_lookup_by_name(name, vrf->vrf_id);
276 if (ifp)
d62a17ae 277 return ifp;
278 }
bcc24579 279
d62a17ae 280 return NULL;
a349198f 281}
282
718e3744 283/* Lookup interface by IPv4 address. */
d62a17ae 284struct interface *if_lookup_exact_address(void *src, int family,
285 vrf_id_t vrf_id)
718e3744 286{
f4e14fdb 287 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
d62a17ae 288 struct listnode *cnode;
289 struct interface *ifp;
290 struct prefix *p;
291 struct connected *c;
292
451fda4f 293 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 294 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, c)) {
295 p = c->address;
296
297 if (p && (p->family == family)) {
298 if (family == AF_INET) {
299 if (IPV4_ADDR_SAME(
300 &p->u.prefix4,
301 (struct in_addr *)src))
302 return ifp;
303 } else if (family == AF_INET6) {
304 if (IPV6_ADDR_SAME(
305 &p->u.prefix6,
306 (struct in6_addr *)src))
307 return ifp;
308 }
309 }
0aabccc0 310 }
718e3744 311 }
d62a17ae 312 return NULL;
718e3744 313}
314
315/* Lookup interface by IPv4 address. */
d62a17ae 316struct connected *if_lookup_address(void *matchaddr, int family,
317 vrf_id_t vrf_id)
718e3744 318{
f4e14fdb 319 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
d62a17ae 320 struct prefix addr;
321 int bestlen = 0;
322 struct listnode *cnode;
323 struct interface *ifp;
324 struct connected *c;
325 struct connected *match;
326
327 if (family == AF_INET) {
328 addr.family = AF_INET;
329 addr.u.prefix4 = *((struct in_addr *)matchaddr);
330 addr.prefixlen = IPV4_MAX_BITLEN;
331 } else if (family == AF_INET6) {
332 addr.family = AF_INET6;
333 addr.u.prefix6 = *((struct in6_addr *)matchaddr);
334 addr.prefixlen = IPV6_MAX_BITLEN;
335 }
718e3744 336
d62a17ae 337 match = NULL;
718e3744 338
451fda4f 339 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 340 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, c)) {
341 if (c->address && (c->address->family == AF_INET)
342 && prefix_match(CONNECTED_PREFIX(c), &addr)
343 && (c->address->prefixlen > bestlen)) {
344 bestlen = c->address->prefixlen;
345 match = c;
346 }
347 }
718e3744 348 }
d62a17ae 349 return match;
718e3744 350}
351
b81e97a8 352/* Lookup interface by prefix */
d62a17ae 353struct interface *if_lookup_prefix(struct prefix *prefix, vrf_id_t vrf_id)
b81e97a8 354{
f4e14fdb 355 struct vrf *vrf = vrf_lookup_by_id(vrf_id);
d62a17ae 356 struct listnode *cnode;
357 struct interface *ifp;
358 struct connected *c;
359
451fda4f 360 FOR_ALL_INTERFACES (vrf, ifp) {
d62a17ae 361 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, c)) {
362 if (prefix_cmp(c->address, prefix) == 0) {
363 return ifp;
364 }
365 }
366 }
367 return NULL;
b81e97a8
DD
368}
369
718e3744 370/* Get interface by name if given name interface doesn't exist create
371 one. */
bcc24579 372struct interface *if_get_by_name(const char *name, vrf_id_t vrf_id, int vty)
718e3744 373{
ee2f2c23 374 struct interface *ifp = NULL;
718e3744 375
ee2f2c23
TC
376 if (vrf_is_mapped_on_netns(vrf_lookup_by_id(vrf_id))) {
377 ifp = if_lookup_by_name(name, vrf_id);
378 if (ifp)
379 return ifp;
380 if (vty) {
381 /* If the interface command was entered in vty without a
382 * VRF (passed as VRF_DEFAULT), search an interface with
383 * this name in all VRs
384 */
385 if (vrf_id == VRF_DEFAULT)
386 return if_lookup_by_name_all_vrf(name);
387 return NULL;
388 }
e9e9b115 389 return if_create(name, vrf_id);
379eb245
TC
390 }
391 /* vrf is based on vrf-lite */
392 ifp = if_lookup_by_name_all_vrf(name);
393 if (ifp) {
394 if (ifp->vrf_id == vrf_id)
bcc24579 395 return ifp;
379eb245
TC
396 /* Found a match on a different VRF. If the interface command
397 * was entered in vty without a VRF (passed as VRF_DEFAULT),
398 * accept the ifp we found. If a vrf was entered and there is a
399 * mismatch, reject it if from vty. If it came from the kernel
400 * or by way of zclient, believe it and update the ifp
401 * accordingly.
402 */
403 if (vty) {
404 if (vrf_id == VRF_DEFAULT)
405 return ifp;
406 return NULL;
ee2f2c23 407 }
379eb245
TC
408 /* If it came from the kernel or by way of zclient, believe it
409 * and update the ifp accordingly.
410 */
411 if_update_to_new_vrf(ifp, vrf_id);
412 return ifp;
85f9da7f 413 }
379eb245 414 return if_create(name, vrf_id);
8736158a
FL
415}
416
ff880b78
RW
417void if_set_index(struct interface *ifp, ifindex_t ifindex)
418{
5b8524f5
RW
419 struct vrf *vrf;
420
421 vrf = vrf_lookup_by_id(ifp->vrf_id);
422 assert(vrf);
ff880b78
RW
423
424 if (ifp->ifindex == ifindex)
425 return;
426
427 if (ifp->ifindex != IFINDEX_INTERNAL)
428 IFINDEX_RB_REMOVE(vrf, ifp)
429
430 ifp->ifindex = ifindex;
431
432 if (ifp->ifindex != IFINDEX_INTERNAL)
433 IFINDEX_RB_INSERT(vrf, ifp)
434}
435
718e3744 436/* Does interface up ? */
d62a17ae 437int if_is_up(struct interface *ifp)
718e3744 438{
d62a17ae 439 return ifp->flags & IFF_UP;
718e3744 440}
441
2e3b2e47 442/* Is interface running? */
d62a17ae 443int if_is_running(struct interface *ifp)
2e3b2e47 444{
d62a17ae 445 return ifp->flags & IFF_RUNNING;
2e3b2e47 446}
447
448/* Is the interface operative, eg. either UP & RUNNING
244c1cdc
DS
449 or UP & !ZEBRA_INTERFACE_LINK_DETECTION and
450 if ptm checking is enabled, then ptm check has passed */
d62a17ae 451int if_is_operative(struct interface *ifp)
2e3b2e47 452{
d62a17ae 453 return ((ifp->flags & IFF_UP)
454 && (((ifp->flags & IFF_RUNNING)
455 && (ifp->ptm_status || !ifp->ptm_enable))
456 || !CHECK_FLAG(ifp->status,
457 ZEBRA_INTERFACE_LINKDETECTION)));
244c1cdc
DS
458}
459
460/* Is the interface operative, eg. either UP & RUNNING
461 or UP & !ZEBRA_INTERFACE_LINK_DETECTION, without PTM check */
d62a17ae 462int if_is_no_ptm_operative(struct interface *ifp)
244c1cdc 463{
d62a17ae 464 return ((ifp->flags & IFF_UP)
465 && ((ifp->flags & IFF_RUNNING)
466 || !CHECK_FLAG(ifp->status,
467 ZEBRA_INTERFACE_LINKDETECTION)));
2e3b2e47 468}
469
718e3744 470/* Is this loopback interface ? */
d62a17ae 471int if_is_loopback(struct interface *ifp)
718e3744 472{
d62a17ae 473 /* XXX: Do this better, eg what if IFF_WHATEVER means X on platform M
474 * but Y on platform N?
475 */
476 return (ifp->flags & (IFF_LOOPBACK | IFF_NOXMIT | IFF_VIRTUAL));
718e3744 477}
478
0c74bbe0
CS
479/* Check interface is VRF */
480int if_is_vrf(struct interface *ifp)
481{
482 return CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_VRF_LOOPBACK);
483}
484
fec4ca19
DS
485bool if_is_loopback_or_vrf(struct interface *ifp)
486{
487 if (if_is_loopback(ifp) || if_is_vrf(ifp))
488 return true;
489
490 return false;
491}
492
718e3744 493/* Does this interface support broadcast ? */
d62a17ae 494int if_is_broadcast(struct interface *ifp)
718e3744 495{
d62a17ae 496 return ifp->flags & IFF_BROADCAST;
718e3744 497}
498
499/* Does this interface support broadcast ? */
d62a17ae 500int if_is_pointopoint(struct interface *ifp)
718e3744 501{
d62a17ae 502 return ifp->flags & IFF_POINTOPOINT;
718e3744 503}
504
505/* Does this interface support multicast ? */
d62a17ae 506int if_is_multicast(struct interface *ifp)
718e3744 507{
d62a17ae 508 return ifp->flags & IFF_MULTICAST;
718e3744 509}
510
511/* Printout flag information into log */
d62a17ae 512const char *if_flag_dump(unsigned long flag)
718e3744 513{
d62a17ae 514 int separator = 0;
515 static char logbuf[BUFSIZ];
516
517#define IFF_OUT_LOG(X, STR) \
518 if (flag & (X)) { \
519 if (separator) \
520 strlcat(logbuf, ",", BUFSIZ); \
521 else \
522 separator = 1; \
523 strlcat(logbuf, STR, BUFSIZ); \
524 }
718e3744 525
d62a17ae 526 strlcpy(logbuf, "<", BUFSIZ);
527 IFF_OUT_LOG(IFF_UP, "UP");
528 IFF_OUT_LOG(IFF_BROADCAST, "BROADCAST");
529 IFF_OUT_LOG(IFF_DEBUG, "DEBUG");
530 IFF_OUT_LOG(IFF_LOOPBACK, "LOOPBACK");
531 IFF_OUT_LOG(IFF_POINTOPOINT, "POINTOPOINT");
532 IFF_OUT_LOG(IFF_NOTRAILERS, "NOTRAILERS");
533 IFF_OUT_LOG(IFF_RUNNING, "RUNNING");
534 IFF_OUT_LOG(IFF_NOARP, "NOARP");
535 IFF_OUT_LOG(IFF_PROMISC, "PROMISC");
536 IFF_OUT_LOG(IFF_ALLMULTI, "ALLMULTI");
537 IFF_OUT_LOG(IFF_OACTIVE, "OACTIVE");
538 IFF_OUT_LOG(IFF_SIMPLEX, "SIMPLEX");
539 IFF_OUT_LOG(IFF_LINK0, "LINK0");
540 IFF_OUT_LOG(IFF_LINK1, "LINK1");
541 IFF_OUT_LOG(IFF_LINK2, "LINK2");
542 IFF_OUT_LOG(IFF_MULTICAST, "MULTICAST");
543 IFF_OUT_LOG(IFF_NOXMIT, "NOXMIT");
544 IFF_OUT_LOG(IFF_NORTEXCH, "NORTEXCH");
545 IFF_OUT_LOG(IFF_VIRTUAL, "VIRTUAL");
546 IFF_OUT_LOG(IFF_IPV4, "IPv4");
547 IFF_OUT_LOG(IFF_IPV6, "IPv6");
548
549 strlcat(logbuf, ">", BUFSIZ);
550
551 return logbuf;
630c97ce 552#undef IFF_OUT_LOG
718e3744 553}
554
555/* For debugging */
d62a17ae 556static void if_dump(const struct interface *ifp)
718e3744 557{
d62a17ae 558 struct listnode *node;
559 struct connected *c __attribute__((unused));
560
561 for (ALL_LIST_ELEMENTS_RO(ifp->connected, node, c))
562 zlog_info(
563 "Interface %s vrf %u index %d metric %d mtu %d "
564 "mtu6 %d %s",
565 ifp->name, ifp->vrf_id, ifp->ifindex, ifp->metric,
566 ifp->mtu, ifp->mtu6, if_flag_dump(ifp->flags));
718e3744 567}
568
569/* Interface printing for all interface. */
d62a17ae 570void if_dump_all(void)
718e3744 571{
d62a17ae 572 struct vrf *vrf;
f4e14fdb 573 void *ifp;
d62a17ae 574
a2addae8 575 RB_FOREACH (vrf, vrf_id_head, &vrfs_by_id)
451fda4f 576 FOR_ALL_INTERFACES (vrf, ifp)
f4e14fdb 577 if_dump(ifp);
718e3744 578}
579
6147e2c6 580DEFUN (interface_desc,
718e3744 581 interface_desc_cmd,
fcbee690 582 "description LINE...",
718e3744 583 "Interface specific description\n"
584 "Characters describing this interface\n")
585{
d62a17ae 586 int idx_line = 1;
587 VTY_DECLVAR_CONTEXT(interface, ifp);
718e3744 588
d62a17ae 589 if (ifp->desc)
590 XFREE(MTYPE_TMP, ifp->desc);
591 ifp->desc = argv_concat(argv, argc, idx_line);
718e3744 592
d62a17ae 593 return CMD_SUCCESS;
718e3744 594}
595
6147e2c6 596DEFUN (no_interface_desc,
718e3744 597 no_interface_desc_cmd,
598 "no description",
599 NO_STR
600 "Interface specific description\n")
601{
d62a17ae 602 VTY_DECLVAR_CONTEXT(interface, ifp);
718e3744 603
d62a17ae 604 if (ifp->desc)
605 XFREE(MTYPE_TMP, ifp->desc);
606 ifp->desc = NULL;
718e3744 607
d62a17ae 608 return CMD_SUCCESS;
718e3744 609}
6b0655a2 610
98954844
PJ
611#ifdef SUNOS_5
612/* Need to handle upgrade from SUNWzebra to Quagga. SUNWzebra created
613 * a seperate struct interface for each logical interface, so config
614 * file may be full of 'interface fooX:Y'. Solaris however does not
615 * expose logical interfaces via PF_ROUTE, so trying to track logical
616 * interfaces can be fruitless, for that reason Quagga only tracks
617 * the primary IP interface.
618 *
619 * We try accomodate SUNWzebra by:
620 * - looking up the interface name, to see whether it exists, if so
621 * its useable
622 * - for protocol daemons, this could only because zebra told us of
623 * the interface
624 * - for zebra, only because it learnt from kernel
625 * - if not:
626 * - search the name to see if it contains a sub-ipif / logical interface
627 * seperator, the ':' char. If it does:
628 * - text up to that char must be the primary name - get that name.
629 * if not:
630 * - no idea, just get the name in its entirety.
631 */
ae9eebca 632static struct interface *if_sunwzebra_get(const char *name, vrf_id_t vrf_id)
98954844 633{
d62a17ae 634 struct interface *ifp;
bcc24579 635 char *cp;
d62a17ae 636
bcc24579 637 if ((ifp = if_lookup_by_name(name, vrf_id)) != NULL)
d62a17ae 638 return ifp;
639
640 /* hunt the primary interface name... */
bcc24579
RW
641 cp = strchr(name, ':');
642 if (cp)
643 *cp = '\0';
d62a17ae 644
bcc24579 645 return if_get_by_name(name, vrf_id, 1);
98954844
PJ
646}
647#endif /* SUNOS_5 */
6b0655a2 648
91e5b43a 649DEFUN_NOSH (interface,
718e3744 650 interface_cmd,
199d90a1 651 "interface IFNAME [vrf NAME]",
718e3744 652 "Select an interface to configure\n"
fcbee690
QY
653 "Interface's name\n"
654 VRF_CMD_HELP_STR)
718e3744 655{
d62a17ae 656 int idx_ifname = 1;
657 int idx_vrf = 3;
658 const char *ifname = argv[idx_ifname]->arg;
659 const char *vrfname = (argc > 2) ? argv[idx_vrf]->arg : NULL;
660
661 struct interface *ifp;
d62a17ae 662 vrf_id_t vrf_id = VRF_DEFAULT;
663
bcc24579 664 if (strlen(ifname) > INTERFACE_NAMSIZ) {
d62a17ae 665 vty_out(vty,
666 "%% Interface name %s is invalid: length exceeds "
667 "%d characters\n",
668 ifname, INTERFACE_NAMSIZ);
669 return CMD_WARNING_CONFIG_FAILED;
670 }
718e3744 671
d62a17ae 672 /*Pending: need proper vrf name based lookup/(possible creation of VRF)
673 Imagine forward reference of a vrf by name in this interface config */
674 if (vrfname)
ec1db588 675 VRF_GET_ID(vrf_id, vrfname, false);
cd2a8a42 676
98954844 677#ifdef SUNOS_5
bcc24579 678 ifp = if_sunwzebra_get(ifname, vrf_id);
98954844 679#else
bcc24579 680 ifp = if_get_by_name(ifname, vrf_id, 1);
98954844 681#endif /* SUNOS_5 */
718e3744 682
d62a17ae 683 if (!ifp) {
684 vty_out(vty, "%% interface %s not in %s\n", ifname, vrfname);
685 return CMD_WARNING_CONFIG_FAILED;
686 }
687 VTY_PUSH_CONTEXT(INTERFACE_NODE, ifp);
718e3744 688
d62a17ae 689 return CMD_SUCCESS;
718e3744 690}
691
91e5b43a
RW
692DEFUN (no_interface,
693 no_interface_cmd,
694 "no interface IFNAME [vrf NAME]",
695 NO_STR
696 "Delete a pseudo interface's configuration\n"
697 "Interface's name\n"
698 VRF_CMD_HELP_STR)
32d2463c 699{
1505b537 700 int idx_vrf = 4;
d62a17ae 701 const char *ifname = argv[2]->arg;
1505b537 702 const char *vrfname = (argc > 3) ? argv[idx_vrf]->arg : NULL;
fcbee690 703
d62a17ae 704 // deleting interface
705 struct interface *ifp;
706 vrf_id_t vrf_id = VRF_DEFAULT;
32d2463c 707
d62a17ae 708 if (argc > 3)
ec1db588 709 VRF_GET_ID(vrf_id, vrfname, false);
cd2a8a42 710
d62a17ae 711 ifp = if_lookup_by_name(ifname, vrf_id);
32d2463c 712
d62a17ae 713 if (ifp == NULL) {
714 vty_out(vty, "%% Interface %s does not exist\n", ifname);
715 return CMD_WARNING_CONFIG_FAILED;
716 }
32d2463c 717
d62a17ae 718 if (CHECK_FLAG(ifp->status, ZEBRA_INTERFACE_ACTIVE)) {
719 vty_out(vty, "%% Only inactive interfaces can be deleted\n");
720 return CMD_WARNING_CONFIG_FAILED;
721 }
32d2463c 722
d62a17ae 723 if_delete(ifp);
32d2463c 724
d62a17ae 725 return CMD_SUCCESS;
32d2463c 726}
727
5d56066e
RW
728static void if_autocomplete(vector comps, struct cmd_token *token)
729{
730 struct interface *ifp;
731 struct vrf *vrf = NULL;
732
733 RB_FOREACH (vrf, vrf_name_head, &vrfs_by_name) {
451fda4f 734 FOR_ALL_INTERFACES (vrf, ifp) {
5d56066e
RW
735 vector_set(comps, XSTRDUP(MTYPE_COMPLETION, ifp->name));
736 }
737 }
738}
739
740static const struct cmd_variable_handler if_var_handlers[] = {
741 {/* "interface NAME" */
742 .varname = "interface",
743 .completions = if_autocomplete},
744 {.tokenname = "IFNAME", .completions = if_autocomplete},
745 {.tokenname = "INTERFACE", .completions = if_autocomplete},
746 {.completions = NULL}};
747
d62a17ae 748void if_cmd_init(void)
0b84f294 749{
5d56066e
RW
750 cmd_variable_handler_register(if_var_handlers);
751
d62a17ae 752 install_element(CONFIG_NODE, &interface_cmd);
753 install_element(CONFIG_NODE, &no_interface_cmd);
0b84f294 754
d62a17ae 755 install_default(INTERFACE_NODE);
756 install_element(INTERFACE_NODE, &interface_desc_cmd);
757 install_element(INTERFACE_NODE, &no_interface_desc_cmd);
0b84f294
DL
758}
759
d7d73ffc 760#if 0
718e3744 761/* For debug purpose. */
762DEFUN (show_address,
763 show_address_cmd,
199d90a1 764 "show address [vrf NAME]",
718e3744 765 SHOW_STR
fcbee690
QY
766 "address\n"
767 VRF_CMD_HELP_STR)
718e3744 768{
abddf075 769 int idx_vrf = 3;
52dc7ee6 770 struct listnode *node;
718e3744 771 struct interface *ifp;
772 struct connected *ifc;
773 struct prefix *p;
8736158a 774 vrf_id_t vrf_id = VRF_DEFAULT;
718e3744 775
fcbee690 776 if (argc > 2)
58749582 777 VRF_GET_ID (vrf_id, argv[idx_vrf]->arg);
8736158a 778
451fda4f 779 FOR_ALL_INTERFACES (vrf, ifp)
718e3744 780 {
f4e14fdb 781 for (ALL_LIST_ELEMENTS_RO (ifp->connected, node, ifc))
718e3744 782 {
718e3744 783 p = ifc->address;
784
785 if (p->family == AF_INET)
55f70b67 786 vty_out (vty, "%s/%d\n", inet_ntoa (p->u.prefix4), p->prefixlen);
718e3744 787 }
788 }
789 return CMD_SUCCESS;
790}
791
8736158a
FL
792DEFUN (show_address_vrf_all,
793 show_address_vrf_all_cmd,
9ccf14f7 794 "show address vrf all",
8736158a
FL
795 SHOW_STR
796 "address\n"
797 VRF_ALL_CMD_HELP_STR)
798{
1a1a7065 799 struct vrf *vrf;
8736158a 800 struct listnode *node;
8736158a
FL
801 struct interface *ifp;
802 struct connected *ifc;
803 struct prefix *p;
8736158a 804
a62c4901 805 RB_FOREACH (vrf, vrf_name_head, &vrfs_by_name)
8736158a 806 {
f4e14fdb 807 if (RB_EMPTY (if_name_head, &vrf->ifaces_by_name))
8736158a
FL
808 continue;
809
55f70b67 810 vty_out (vty, "\nVRF %u\n\n", vrf->vrf_id);
8736158a 811
451fda4f 812 FOR_ALL_INTERFACES (vrf, ifp)
8736158a 813 {
f4e14fdb 814 for (ALL_LIST_ELEMENTS_RO (ifp->connected, node, ifc))
8736158a
FL
815 {
816 p = ifc->address;
817
818 if (p->family == AF_INET)
55f70b67 819 vty_out (vty, "%s/%d\n", inet_ntoa (p->u.prefix4), p->prefixlen);
8736158a
FL
820 }
821 }
822 }
823 return CMD_SUCCESS;
824}
d7d73ffc 825#endif
8736158a 826
718e3744 827/* Allocate connected structure. */
d62a17ae 828struct connected *connected_new(void)
718e3744 829{
d62a17ae 830 return XCALLOC(MTYPE_CONNECTED, sizeof(struct connected));
718e3744 831}
832
a80beece 833/* Allocate nbr connected structure. */
d62a17ae 834struct nbr_connected *nbr_connected_new(void)
a80beece 835{
d62a17ae 836 return XCALLOC(MTYPE_NBR_CONNECTED, sizeof(struct nbr_connected));
a80beece
DS
837}
838
718e3744 839/* Free connected structure. */
d62a17ae 840void connected_free(struct connected *connected)
718e3744 841{
d62a17ae 842 if (connected->address)
843 prefix_free(connected->address);
718e3744 844
d62a17ae 845 if (connected->destination)
846 prefix_free(connected->destination);
718e3744 847
d62a17ae 848 if (connected->label)
849 XFREE(MTYPE_CONNECTED_LABEL, connected->label);
718e3744 850
d62a17ae 851 XFREE(MTYPE_CONNECTED, connected);
718e3744 852}
853
a80beece 854/* Free nbr connected structure. */
d62a17ae 855void nbr_connected_free(struct nbr_connected *connected)
a80beece 856{
d62a17ae 857 if (connected->address)
858 prefix_free(connected->address);
a80beece 859
d62a17ae 860 XFREE(MTYPE_NBR_CONNECTED, connected);
a80beece
DS
861}
862
863/* If same interface nbr address already exists... */
d62a17ae 864struct nbr_connected *nbr_connected_check(struct interface *ifp,
865 struct prefix *p)
a80beece 866{
d62a17ae 867 struct nbr_connected *ifc;
868 struct listnode *node;
a80beece 869
d62a17ae 870 for (ALL_LIST_ELEMENTS_RO(ifp->nbr_connected, node, ifc))
871 if (prefix_same(ifc->address, p))
872 return ifc;
a80beece 873
d62a17ae 874 return NULL;
a80beece
DS
875}
876
718e3744 877/* Print if_addr structure. */
d62a17ae 878static void __attribute__((unused))
879connected_log(struct connected *connected, char *str)
718e3744 880{
d62a17ae 881 struct prefix *p;
882 struct interface *ifp;
883 char logbuf[BUFSIZ];
884 char buf[BUFSIZ];
885
886 ifp = connected->ifp;
887 p = connected->address;
888
889 snprintf(logbuf, BUFSIZ, "%s interface %s vrf %u %s %s/%d ", str,
890 ifp->name, ifp->vrf_id, prefix_family_str(p),
891 inet_ntop(p->family, &p->u.prefix, buf, BUFSIZ), p->prefixlen);
892
893 p = connected->destination;
894 if (p) {
895 strncat(logbuf, inet_ntop(p->family, &p->u.prefix, buf, BUFSIZ),
896 BUFSIZ - strlen(logbuf));
897 }
898 zlog_info("%s", logbuf);
718e3744 899}
900
a80beece 901/* Print if_addr structure. */
d62a17ae 902static void __attribute__((unused))
903nbr_connected_log(struct nbr_connected *connected, char *str)
a80beece 904{
d62a17ae 905 struct prefix *p;
906 struct interface *ifp;
907 char logbuf[BUFSIZ];
908 char buf[BUFSIZ];
a80beece 909
d62a17ae 910 ifp = connected->ifp;
911 p = connected->address;
a80beece 912
d62a17ae 913 snprintf(logbuf, BUFSIZ, "%s interface %s %s %s/%d ", str, ifp->name,
914 prefix_family_str(p),
915 inet_ntop(p->family, &p->u.prefix, buf, BUFSIZ), p->prefixlen);
a80beece 916
d62a17ae 917 zlog_info("%s", logbuf);
a80beece
DS
918}
919
718e3744 920/* If two connected address has same prefix return 1. */
d62a17ae 921static int connected_same_prefix(struct prefix *p1, struct prefix *p2)
718e3744 922{
d62a17ae 923 if (p1->family == p2->family) {
924 if (p1->family == AF_INET
925 && IPV4_ADDR_SAME(&p1->u.prefix4, &p2->u.prefix4))
926 return 1;
927 if (p1->family == AF_INET6
928 && IPV6_ADDR_SAME(&p1->u.prefix6, &p2->u.prefix6))
929 return 1;
930 }
931 return 0;
718e3744 932}
933
d62a17ae 934struct connected *connected_lookup_prefix_exact(struct interface *ifp,
935 struct prefix *p)
38485402 936{
d62a17ae 937 struct listnode *node;
938 struct listnode *next;
939 struct connected *ifc;
38485402 940
d62a17ae 941 for (node = listhead(ifp->connected); node; node = next) {
942 ifc = listgetdata(node);
943 next = node->next;
38485402 944
d62a17ae 945 if (connected_same_prefix(ifc->address, p))
946 return ifc;
947 }
948 return NULL;
38485402
DS
949}
950
d62a17ae 951struct connected *connected_delete_by_prefix(struct interface *ifp,
952 struct prefix *p)
718e3744 953{
d62a17ae 954 struct listnode *node;
955 struct listnode *next;
956 struct connected *ifc;
957
958 /* In case of same prefix come, replace it with new one. */
959 for (node = listhead(ifp->connected); node; node = next) {
960 ifc = listgetdata(node);
961 next = node->next;
962
963 if (connected_same_prefix(ifc->address, p)) {
964 listnode_delete(ifp->connected, ifc);
965 return ifc;
966 }
718e3744 967 }
d62a17ae 968 return NULL;
718e3744 969}
970
bd40c341 971/* Find the address on our side that will be used when packets
727d104b 972 are sent to dst. */
d62a17ae 973struct connected *connected_lookup_prefix(struct interface *ifp,
974 struct prefix *addr)
727d104b 975{
d62a17ae 976 struct listnode *cnode;
977 struct connected *c;
978 struct connected *match;
979
980 match = NULL;
981
982 for (ALL_LIST_ELEMENTS_RO(ifp->connected, cnode, c)) {
983 if (c->address && (c->address->family == addr->family)
984 && prefix_match(CONNECTED_PREFIX(c), addr)
985 && (!match
986 || (c->address->prefixlen > match->address->prefixlen)))
987 match = c;
988 }
989 return match;
727d104b 990}
991
d62a17ae 992struct connected *connected_add_by_prefix(struct interface *ifp,
993 struct prefix *p,
994 struct prefix *destination)
4a7aac1b 995{
d62a17ae 996 struct connected *ifc;
4a7aac1b 997
d62a17ae 998 /* Allocate new connected address. */
999 ifc = connected_new();
1000 ifc->ifp = ifp;
4a7aac1b 1001
d62a17ae 1002 /* Fetch interface address */
1003 ifc->address = prefix_new();
1004 memcpy(ifc->address, p, sizeof(struct prefix));
4a7aac1b 1005
d62a17ae 1006 /* Fetch dest address */
1007 if (destination) {
1008 ifc->destination = prefix_new();
1009 memcpy(ifc->destination, destination, sizeof(struct prefix));
1010 }
4a7aac1b 1011
d62a17ae 1012 /* Add connected address to the interface. */
1013 listnode_add(ifp->connected, ifc);
1014 return ifc;
4a7aac1b 1015}
1016
d62a17ae 1017#if 0 /* this route_table of struct connected's is unused \
1018 * however, it would be good to use a route_table rather than \
1019 * a list.. \
1020 */
718e3744 1021/* Interface looking up by interface's address. */
718e3744 1022/* Interface's IPv4 address reverse lookup table. */
1023struct route_table *ifaddr_ipv4_table;
1024/* struct route_table *ifaddr_ipv6_table; */
1025
8cc4198f 1026static void
718e3744 1027ifaddr_ipv4_add (struct in_addr *ifaddr, struct interface *ifp)
1028{
1029 struct route_node *rn;
1030 struct prefix_ipv4 p;
1031
1032 p.family = AF_INET;
1033 p.prefixlen = IPV4_MAX_PREFIXLEN;
1034 p.prefix = *ifaddr;
1035
1036 rn = route_node_get (ifaddr_ipv4_table, (struct prefix *) &p);
1037 if (rn)
1038 {
1039 route_unlock_node (rn);
1040 zlog_info ("ifaddr_ipv4_add(): address %s is already added",
1041 inet_ntoa (*ifaddr));
1042 return;
1043 }
1044 rn->info = ifp;
1045}
1046
8cc4198f 1047static void
718e3744 1048ifaddr_ipv4_delete (struct in_addr *ifaddr, struct interface *ifp)
1049{
1050 struct route_node *rn;
1051 struct prefix_ipv4 p;
1052
1053 p.family = AF_INET;
1054 p.prefixlen = IPV4_MAX_PREFIXLEN;
1055 p.prefix = *ifaddr;
1056
1057 rn = route_node_lookup (ifaddr_ipv4_table, (struct prefix *) &p);
1058 if (! rn)
1059 {
1060 zlog_info ("ifaddr_ipv4_delete(): can't find address %s",
1061 inet_ntoa (*ifaddr));
1062 return;
1063 }
1064 rn->info = NULL;
1065 route_unlock_node (rn);
1066 route_unlock_node (rn);
1067}
1068
1069/* Lookup interface by interface's IP address or interface index. */
8cc4198f 1070static struct interface *
b892f1dd 1071ifaddr_ipv4_lookup (struct in_addr *addr, ifindex_t ifindex)
718e3744 1072{
1073 struct prefix_ipv4 p;
1074 struct route_node *rn;
1075 struct interface *ifp;
718e3744 1076
1077 if (addr)
1078 {
1079 p.family = AF_INET;
1080 p.prefixlen = IPV4_MAX_PREFIXLEN;
1081 p.prefix = *addr;
1082
1083 rn = route_node_lookup (ifaddr_ipv4_table, (struct prefix *) &p);
1084 if (! rn)
1085 return NULL;
55cd0f61 1086
718e3744 1087 ifp = rn->info;
1088 route_unlock_node (rn);
1089 return ifp;
1090 }
1091 else
7e2b7603 1092 return if_lookup_by_index(ifindex, VRF_DEFAULT);
718e3744 1093}
8cc4198f 1094#endif /* ifaddr_ipv4_table */
718e3744 1095
f4e14fdb 1096void if_terminate(struct vrf *vrf)
4bd045d5 1097{
f4e14fdb 1098 struct interface *ifp;
4bd045d5 1099
55cd0f61
DS
1100 while (!RB_EMPTY(if_name_head, &vrf->ifaces_by_name)) {
1101 ifp = RB_ROOT(if_name_head, &vrf->ifaces_by_name);
1102
d62a17ae 1103 if (ifp->node) {
1104 ifp->node->info = NULL;
1105 route_unlock_node(ifp->node);
1106 }
d62a17ae 1107 if_delete(ifp);
1108 }
4bd045d5 1109}
8ccc7e80 1110
d62a17ae 1111const char *if_link_type_str(enum zebra_link_type llt)
8ccc7e80 1112{
d62a17ae 1113 switch (llt) {
8ccc7e80 1114#define llts(T,S) case (T): return (S)
d62a17ae 1115 llts(ZEBRA_LLT_UNKNOWN, "Unknown");
1116 llts(ZEBRA_LLT_ETHER, "Ethernet");
1117 llts(ZEBRA_LLT_EETHER, "Experimental Ethernet");
1118 llts(ZEBRA_LLT_AX25, "AX.25 Level 2");
1119 llts(ZEBRA_LLT_PRONET, "PROnet token ring");
1120 llts(ZEBRA_LLT_IEEE802, "IEEE 802.2 Ethernet/TR/TB");
1121 llts(ZEBRA_LLT_ARCNET, "ARCnet");
1122 llts(ZEBRA_LLT_APPLETLK, "AppleTalk");
1123 llts(ZEBRA_LLT_DLCI, "Frame Relay DLCI");
1124 llts(ZEBRA_LLT_ATM, "ATM");
1125 llts(ZEBRA_LLT_METRICOM, "Metricom STRIP");
1126 llts(ZEBRA_LLT_IEEE1394, "IEEE 1394 IPv4");
1127 llts(ZEBRA_LLT_EUI64, "EUI-64");
1128 llts(ZEBRA_LLT_INFINIBAND, "InfiniBand");
1129 llts(ZEBRA_LLT_SLIP, "SLIP");
1130 llts(ZEBRA_LLT_CSLIP, "Compressed SLIP");
1131 llts(ZEBRA_LLT_SLIP6, "SLIPv6");
1132 llts(ZEBRA_LLT_CSLIP6, "Compressed SLIPv6");
1133 llts(ZEBRA_LLT_ROSE, "ROSE packet radio");
1134 llts(ZEBRA_LLT_X25, "CCITT X.25");
1135 llts(ZEBRA_LLT_PPP, "PPP");
1136 llts(ZEBRA_LLT_CHDLC, "Cisco HDLC");
1137 llts(ZEBRA_LLT_RAWHDLC, "Raw HDLC");
1138 llts(ZEBRA_LLT_LAPB, "LAPB");
1139 llts(ZEBRA_LLT_IPIP, "IPIP Tunnel");
1140 llts(ZEBRA_LLT_IPIP6, "IPIP6 Tunnel");
1141 llts(ZEBRA_LLT_FRAD, "FRAD");
1142 llts(ZEBRA_LLT_SKIP, "SKIP vif");
1143 llts(ZEBRA_LLT_LOOPBACK, "Loopback");
1144 llts(ZEBRA_LLT_LOCALTLK, "Localtalk");
1145 llts(ZEBRA_LLT_FDDI, "FDDI");
1146 llts(ZEBRA_LLT_SIT, "IPv6-in-IPv4 SIT");
1147 llts(ZEBRA_LLT_IPDDP, "IP-in-DDP tunnel");
1148 llts(ZEBRA_LLT_IPGRE, "GRE over IP");
1149 llts(ZEBRA_LLT_PIMREG, "PIMSM registration");
1150 llts(ZEBRA_LLT_HIPPI, "HiPPI");
1151 llts(ZEBRA_LLT_IRDA, "IrDA");
1152 llts(ZEBRA_LLT_FCPP, "Fibre-Channel PtP");
1153 llts(ZEBRA_LLT_FCAL, "Fibre-Channel Arbitrated Loop");
1154 llts(ZEBRA_LLT_FCPL, "Fibre-Channel Public Loop");
1155 llts(ZEBRA_LLT_FCFABRIC, "Fibre-Channel Fabric");
1156 llts(ZEBRA_LLT_IEEE802_TR, "IEEE 802.2 Token Ring");
1157 llts(ZEBRA_LLT_IEEE80211, "IEEE 802.11");
1158 llts(ZEBRA_LLT_IEEE80211_RADIOTAP, "IEEE 802.11 Radiotap");
1159 llts(ZEBRA_LLT_IEEE802154, "IEEE 802.15.4");
1160 llts(ZEBRA_LLT_IEEE802154_PHY, "IEEE 802.15.4 Phy");
1161 default:
03548ae8 1162 flog_err(LIB_ERR_DEVELOPMENT, "Unknown value %d", llt);
d62a17ae 1163 return "Unknown type!";
8ccc7e80 1164#undef llts
d62a17ae 1165 }
1166 return NULL;
8ccc7e80 1167}
16f1b9ee 1168
d62a17ae 1169struct if_link_params *if_link_params_get(struct interface *ifp)
16f1b9ee 1170{
d62a17ae 1171 int i;
16f1b9ee 1172
d62a17ae 1173 if (ifp->link_params != NULL)
1174 return ifp->link_params;
16f1b9ee 1175
d62a17ae 1176 struct if_link_params *iflp =
1177 XCALLOC(MTYPE_IF_LINK_PARAMS, sizeof(struct if_link_params));
1178 if (iflp == NULL)
1179 return NULL;
16f1b9ee 1180
d62a17ae 1181 /* Set TE metric equal to standard metric */
1182 iflp->te_metric = ifp->metric;
16f1b9ee 1183
d62a17ae 1184 /* Compute default bandwidth based on interface */
1185 iflp->default_bw =
1186 ((ifp->bandwidth ? ifp->bandwidth : DEFAULT_BANDWIDTH)
1187 * TE_KILO_BIT / TE_BYTE);
16f1b9ee 1188
d62a17ae 1189 /* Set Max, Reservable and Unreserved Bandwidth */
1190 iflp->max_bw = iflp->default_bw;
1191 iflp->max_rsv_bw = iflp->default_bw;
1192 for (i = 0; i < MAX_CLASS_TYPE; i++)
1193 iflp->unrsv_bw[i] = iflp->default_bw;
16f1b9ee 1194
d62a17ae 1195 /* Update Link parameters status */
1196 iflp->lp_status =
1197 LP_TE_METRIC | LP_MAX_BW | LP_MAX_RSV_BW | LP_UNRSV_BW;
16f1b9ee 1198
d62a17ae 1199 /* Finally attach newly created Link Parameters */
1200 ifp->link_params = iflp;
16f1b9ee 1201
d62a17ae 1202 return iflp;
16f1b9ee
OD
1203}
1204
d62a17ae 1205void if_link_params_free(struct interface *ifp)
16f1b9ee 1206{
d62a17ae 1207 if (ifp->link_params == NULL)
1208 return;
1209 XFREE(MTYPE_IF_LINK_PARAMS, ifp->link_params);
1210 ifp->link_params = NULL;
16f1b9ee 1211}