]> git.proxmox.com Git - mirror_frr.git/blob - lib/command.c
Merge pull request #4155 from pguibert6WIND/bfd_increase_config
[mirror_frr.git] / lib / command.c
1 /*
2 * CLI backend interface.
3 *
4 * --
5 * Copyright (C) 2016 Cumulus Networks, Inc.
6 * Copyright (C) 1997, 98, 99 Kunihiro Ishiguro
7 * Copyright (C) 2013 by Open Source Routing.
8 * Copyright (C) 2013 by Internet Systems Consortium, Inc. ("ISC")
9 *
10 * This file is part of GNU Zebra.
11 *
12 * GNU Zebra is free software; you can redistribute it and/or modify it
13 * under the terms of the GNU General Public License as published by the
14 * Free Software Foundation; either version 2, or (at your option) any
15 * later version.
16 *
17 * GNU Zebra is distributed in the hope that it will be useful, but
18 * WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 * General Public License for more details.
21 *
22 * You should have received a copy of the GNU General Public License along
23 * with this program; see the file COPYING; if not, write to the Free Software
24 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
25 */
26
27 #include <zebra.h>
28 #include <lib/version.h>
29
30 #include "command.h"
31 #include "frrstr.h"
32 #include "memory.h"
33 #include "log.h"
34 #include "log_int.h"
35 #include "thread.h"
36 #include "vector.h"
37 #include "linklist.h"
38 #include "vty.h"
39 #include "workqueue.h"
40 #include "vrf.h"
41 #include "command_match.h"
42 #include "command_graph.h"
43 #include "qobj.h"
44 #include "defaults.h"
45 #include "libfrr.h"
46 #include "jhash.h"
47 #include "hook.h"
48 #include "lib_errors.h"
49 #include "northbound_cli.h"
50
51 DEFINE_MTYPE(LIB, HOST, "Host config")
52 DEFINE_MTYPE(LIB, COMPLETION, "Completion item")
53
54 #define item(x) \
55 { \
56 x, #x \
57 }
58
59 /* clang-format off */
60 const struct message tokennames[] = {
61 item(WORD_TKN),
62 item(VARIABLE_TKN),
63 item(RANGE_TKN),
64 item(IPV4_TKN),
65 item(IPV4_PREFIX_TKN),
66 item(IPV6_TKN),
67 item(IPV6_PREFIX_TKN),
68 item(MAC_TKN),
69 item(MAC_PREFIX_TKN),
70 item(FORK_TKN),
71 item(JOIN_TKN),
72 item(START_TKN),
73 item(END_TKN),
74 {0},
75 };
76
77 const char *node_names[] = {
78 "auth", // AUTH_NODE,
79 "view", // VIEW_NODE,
80 "auth enable", // AUTH_ENABLE_NODE,
81 "enable", // ENABLE_NODE,
82 "config", // CONFIG_NODE,
83 "debug", // DEBUG_NODE,
84 "vrf debug", // VRF_DEBUG_NODE,
85 "northbound debug", // NORTHBOUND_DEBUG_NODE,
86 "vnc debug", // DEBUG_VNC_NODE,
87 "aaa", // AAA_NODE,
88 "keychain", // KEYCHAIN_NODE,
89 "keychain key", // KEYCHAIN_KEY_NODE,
90 "logical-router", // LOGICALROUTER_NODE,
91 "static ip", // IP_NODE,
92 "vrf", // VRF_NODE,
93 "interface", // INTERFACE_NODE,
94 "nexthop-group", // NH_GROUP_NODE,
95 "zebra", // ZEBRA_NODE,
96 "table", // TABLE_NODE,
97 "rip", // RIP_NODE,
98 "ripng", // RIPNG_NODE,
99 "babel", // BABEL_NODE,
100 "eigrp", // EIGRP_NODE,
101 "bgp", // BGP_NODE,
102 "bgp vpnv4", // BGP_VPNV4_NODE,
103 "bgp vpnv6", // BGP_VPNV6_NODE,
104 "bgp ipv4 unicast", // BGP_IPV4_NODE,
105 "bgp ipv4 multicast", // BGP_IPV4M_NODE,
106 "bgp ipv4 labeled unicast", // BGP_IPV4L_NODE,
107 "bgp ipv6", // BGP_IPV6_NODE,
108 "bgp ipv6 multicast", // BGP_IPV6M_NODE,
109 "bgp ipv6 labeled unicast", // BGP_IPV6L_NODE,
110 "bgp vrf policy", // BGP_VRF_POLICY_NODE,
111 "bgp vnc defaults", // BGP_VNC_DEFAULTS_NODE,
112 "bgp vnc nve", // BGP_VNC_NVE_GROUP_NODE,
113 "bgp vnc l2", // BGP_VNC_L2_GROUP_NODE,
114 "rfp defaults", // RFP_DEFAULTS_NODE,
115 "bgp evpn", // BGP_EVPN_NODE,
116 "ospf", // OSPF_NODE,
117 "ospf6", // OSPF6_NODE,
118 "ldp", // LDP_NODE,
119 "ldp ipv4", // LDP_IPV4_NODE,
120 "ldp ipv6", // LDP_IPV6_NODE,
121 "ldp ipv4 interface", // LDP_IPV4_IFACE_NODE,
122 "ldp ipv6 interface", // LDP_IPV6_IFACE_NODE,
123 "ldp l2vpn", // LDP_L2VPN_NODE,
124 "ldp", // LDP_PSEUDOWIRE_NODE,
125 "isis", // ISIS_NODE,
126 "ipv4 access list", // ACCESS_NODE,
127 "ipv4 prefix list", // PREFIX_NODE,
128 "ipv6 access list", // ACCESS_IPV6_NODE,
129 "MAC access list", // ACCESS_MAC_NODE,
130 "ipv6 prefix list", // PREFIX_IPV6_NODE,
131 "as list", // AS_LIST_NODE,
132 "community list", // COMMUNITY_LIST_NODE,
133 "routemap", // RMAP_NODE,
134 "pbr-map", // PBRMAP_NODE,
135 "smux", // SMUX_NODE,
136 "dump", // DUMP_NODE,
137 "forwarding", // FORWARDING_NODE,
138 "protocol", // PROTOCOL_NODE,
139 "mpls", // MPLS_NODE,
140 "pw", // PW_NODE,
141 "vty", // VTY_NODE,
142 "link-params", // LINK_PARAMS_NODE,
143 "bgp evpn vni", // BGP_EVPN_VNI_NODE,
144 "rpki", // RPKI_NODE
145 "bgp ipv4 flowspec", /* BGP_FLOWSPECV4_NODE
146 */
147 "bgp ipv6 flowspec", /* BGP_FLOWSPECV6_NODE
148 */
149 "bfd", /* BFD_NODE */
150 "bfd peer", /* BFD_PEER_NODE */
151 "openfabric", // OPENFABRIC_NODE
152 };
153 /* clang-format on */
154
155 /* Command vector which includes some level of command lists. Normally
156 each daemon maintains each own cmdvec. */
157 vector cmdvec = NULL;
158
159 /* Host information structure. */
160 struct host host;
161
162 /*
163 * Returns host.name if any, otherwise
164 * it returns the system hostname.
165 */
166 const char *cmd_hostname_get(void)
167 {
168 return host.name;
169 }
170
171 /*
172 * Returns unix domainname
173 */
174 const char *cmd_domainname_get(void)
175 {
176 return host.domainname;
177 }
178
179 /* Standard command node structures. */
180 static struct cmd_node auth_node = {
181 AUTH_NODE, "Password: ",
182 };
183
184 static struct cmd_node view_node = {
185 VIEW_NODE, "%s> ",
186 };
187
188 static struct cmd_node auth_enable_node = {
189 AUTH_ENABLE_NODE, "Password: ",
190 };
191
192 static struct cmd_node enable_node = {
193 ENABLE_NODE, "%s# ",
194 };
195
196 static struct cmd_node config_node = {CONFIG_NODE, "%s(config)# ", 1};
197
198 /* Default motd string. */
199 static const char *default_motd = FRR_DEFAULT_MOTD;
200
201 static const struct facility_map {
202 int facility;
203 const char *name;
204 size_t match;
205 } syslog_facilities[] = {
206 {LOG_KERN, "kern", 1},
207 {LOG_USER, "user", 2},
208 {LOG_MAIL, "mail", 1},
209 {LOG_DAEMON, "daemon", 1},
210 {LOG_AUTH, "auth", 1},
211 {LOG_SYSLOG, "syslog", 1},
212 {LOG_LPR, "lpr", 2},
213 {LOG_NEWS, "news", 1},
214 {LOG_UUCP, "uucp", 2},
215 {LOG_CRON, "cron", 1},
216 #ifdef LOG_FTP
217 {LOG_FTP, "ftp", 1},
218 #endif
219 {LOG_LOCAL0, "local0", 6},
220 {LOG_LOCAL1, "local1", 6},
221 {LOG_LOCAL2, "local2", 6},
222 {LOG_LOCAL3, "local3", 6},
223 {LOG_LOCAL4, "local4", 6},
224 {LOG_LOCAL5, "local5", 6},
225 {LOG_LOCAL6, "local6", 6},
226 {LOG_LOCAL7, "local7", 6},
227 {0, NULL, 0},
228 };
229
230 static const char *facility_name(int facility)
231 {
232 const struct facility_map *fm;
233
234 for (fm = syslog_facilities; fm->name; fm++)
235 if (fm->facility == facility)
236 return fm->name;
237 return "";
238 }
239
240 static int facility_match(const char *str)
241 {
242 const struct facility_map *fm;
243
244 for (fm = syslog_facilities; fm->name; fm++)
245 if (!strncmp(str, fm->name, fm->match))
246 return fm->facility;
247 return -1;
248 }
249
250 static int level_match(const char *s)
251 {
252 int level;
253
254 for (level = 0; zlog_priority[level] != NULL; level++)
255 if (!strncmp(s, zlog_priority[level], 2))
256 return level;
257 return ZLOG_DISABLED;
258 }
259
260 /* This is called from main when a daemon is invoked with -v or --version. */
261 void print_version(const char *progname)
262 {
263 printf("%s version %s\n", progname, FRR_VERSION);
264 printf("%s\n", FRR_COPYRIGHT);
265 printf("configured with:\n\t%s\n", FRR_CONFIG_ARGS);
266 }
267
268 char *argv_concat(struct cmd_token **argv, int argc, int shift)
269 {
270 int cnt = MAX(argc - shift, 0);
271 const char *argstr[cnt + 1];
272
273 if (!cnt)
274 return NULL;
275
276 for (int i = 0; i < cnt; i++)
277 argstr[i] = argv[i + shift]->arg;
278
279 return frrstr_join(argstr, cnt, " ");
280 }
281
282 vector cmd_make_strvec(const char *string)
283 {
284 if (!string)
285 return NULL;
286
287 const char *copy = string;
288
289 /* skip leading whitespace */
290 while (isspace((int)*copy) && *copy != '\0')
291 copy++;
292
293 /* if the entire string was whitespace or a comment, return */
294 if (*copy == '\0' || *copy == '!' || *copy == '#')
295 return NULL;
296
297 vector result = frrstr_split_vec(copy, "\n\r\t ");
298
299 for (unsigned int i = 0; i < vector_active(result); i++) {
300 if (strlen(vector_slot(result, i)) == 0) {
301 XFREE(MTYPE_TMP, vector_slot(result, i));
302 vector_unset(result, i);
303 }
304 }
305
306 vector_compact(result);
307
308 return result;
309 }
310
311 void cmd_free_strvec(vector v)
312 {
313 frrstr_strvec_free(v);
314 }
315
316 /**
317 * Convenience function for accessing argv data.
318 *
319 * @param argc
320 * @param argv
321 * @param text definition snippet of the desired token
322 * @param index the starting index, and where to store the
323 * index of the found token if it exists
324 * @return 1 if found, 0 otherwise
325 */
326 int argv_find(struct cmd_token **argv, int argc, const char *text, int *index)
327 {
328 int found = 0;
329 for (int i = *index; i < argc && found == 0; i++)
330 if ((found = strmatch(text, argv[i]->text)))
331 *index = i;
332 return found;
333 }
334
335 static unsigned int cmd_hash_key(void *p)
336 {
337 int size = sizeof(p);
338
339 return jhash(p, size, 0);
340 }
341
342 static bool cmd_hash_cmp(const void *a, const void *b)
343 {
344 return a == b;
345 }
346
347 /* Install top node of command vector. */
348 void install_node(struct cmd_node *node, int (*func)(struct vty *))
349 {
350 vector_set_index(cmdvec, node->node, node);
351 node->func = func;
352 node->cmdgraph = graph_new();
353 node->cmd_vector = vector_init(VECTOR_MIN_SIZE);
354 // add start node
355 struct cmd_token *token =
356 cmd_token_new(START_TKN, CMD_ATTR_NORMAL, NULL, NULL);
357 graph_new_node(node->cmdgraph, token,
358 (void (*)(void *)) & cmd_token_del);
359 node->cmd_hash = hash_create_size(16, cmd_hash_key, cmd_hash_cmp,
360 "Command Hash");
361 }
362
363 /* Return prompt character of specified node. */
364 const char *cmd_prompt(enum node_type node)
365 {
366 struct cmd_node *cnode;
367
368 cnode = vector_slot(cmdvec, node);
369 return cnode->prompt;
370 }
371
372 /* Install a command into a node. */
373 void install_element(enum node_type ntype, struct cmd_element *cmd)
374 {
375 struct cmd_node *cnode;
376
377 /* cmd_init hasn't been called */
378 if (!cmdvec) {
379 fprintf(stderr, "%s called before cmd_init, breakage likely\n",
380 __func__);
381 return;
382 }
383
384 cnode = vector_lookup(cmdvec, ntype);
385
386 if (cnode == NULL) {
387 fprintf(stderr,
388 "%s[%s]:\n"
389 "\tnode %d (%s) does not exist.\n"
390 "\tplease call install_node() before install_element()\n",
391 cmd->name, cmd->string, ntype, node_names[ntype]);
392 exit(EXIT_FAILURE);
393 }
394
395 if (hash_lookup(cnode->cmd_hash, cmd) != NULL) {
396 fprintf(stderr,
397 "%s[%s]:\n"
398 "\tnode %d (%s) already has this command installed.\n"
399 "\tduplicate install_element call?\n",
400 cmd->name, cmd->string, ntype, node_names[ntype]);
401 return;
402 }
403
404 assert(hash_get(cnode->cmd_hash, cmd, hash_alloc_intern));
405
406 struct graph *graph = graph_new();
407 struct cmd_token *token =
408 cmd_token_new(START_TKN, CMD_ATTR_NORMAL, NULL, NULL);
409 graph_new_node(graph, token, (void (*)(void *)) & cmd_token_del);
410
411 cmd_graph_parse(graph, cmd);
412 cmd_graph_names(graph);
413 cmd_graph_merge(cnode->cmdgraph, graph, +1);
414 graph_delete_graph(graph);
415
416 vector_set(cnode->cmd_vector, cmd);
417
418 if (ntype == VIEW_NODE)
419 install_element(ENABLE_NODE, cmd);
420 }
421
422 void uninstall_element(enum node_type ntype, struct cmd_element *cmd)
423 {
424 struct cmd_node *cnode;
425
426 /* cmd_init hasn't been called */
427 if (!cmdvec) {
428 fprintf(stderr, "%s called before cmd_init, breakage likely\n",
429 __func__);
430 return;
431 }
432
433 cnode = vector_lookup(cmdvec, ntype);
434
435 if (cnode == NULL) {
436 fprintf(stderr,
437 "%s[%s]:\n"
438 "\tnode %d (%s) does not exist.\n"
439 "\tplease call install_node() before uninstall_element()\n",
440 cmd->name, cmd->string, ntype, node_names[ntype]);
441 exit(EXIT_FAILURE);
442 }
443
444 if (hash_release(cnode->cmd_hash, cmd) == NULL) {
445 fprintf(stderr,
446 "%s[%s]:\n"
447 "\tnode %d (%s) does not have this command installed.\n"
448 "\tduplicate uninstall_element call?\n",
449 cmd->name, cmd->string, ntype, node_names[ntype]);
450 return;
451 }
452
453 vector_unset_value(cnode->cmd_vector, cmd);
454
455 struct graph *graph = graph_new();
456 struct cmd_token *token =
457 cmd_token_new(START_TKN, CMD_ATTR_NORMAL, NULL, NULL);
458 graph_new_node(graph, token, (void (*)(void *)) & cmd_token_del);
459
460 cmd_graph_parse(graph, cmd);
461 cmd_graph_names(graph);
462 cmd_graph_merge(cnode->cmdgraph, graph, -1);
463 graph_delete_graph(graph);
464
465 if (ntype == VIEW_NODE)
466 uninstall_element(ENABLE_NODE, cmd);
467 }
468
469
470 static const unsigned char itoa64[] =
471 "./0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz";
472
473 static void to64(char *s, long v, int n)
474 {
475 while (--n >= 0) {
476 *s++ = itoa64[v & 0x3f];
477 v >>= 6;
478 }
479 }
480
481 static char *zencrypt(const char *passwd)
482 {
483 char salt[6];
484 struct timeval tv;
485 char *crypt(const char *, const char *);
486
487 gettimeofday(&tv, 0);
488
489 to64(&salt[0], random(), 3);
490 to64(&salt[3], tv.tv_usec, 3);
491 salt[5] = '\0';
492
493 return crypt(passwd, salt);
494 }
495
496 /* This function write configuration of this host. */
497 static int config_write_host(struct vty *vty)
498 {
499 if (cmd_hostname_get())
500 vty_out(vty, "hostname %s\n", cmd_hostname_get());
501
502 if (cmd_domainname_get())
503 vty_out(vty, "domainname %s\n", cmd_domainname_get());
504
505 /* The following are all configuration commands that are not sent to
506 * watchfrr. For instance watchfrr is hardcoded to log to syslog so
507 * we would always display 'log syslog informational' in the config
508 * which would cause other daemons to then switch to syslog when they
509 * parse frr.conf.
510 */
511 if (strcmp(zlog_default->protoname, "WATCHFRR")) {
512 if (host.encrypt) {
513 if (host.password_encrypt)
514 vty_out(vty, "password 8 %s\n",
515 host.password_encrypt);
516 if (host.enable_encrypt)
517 vty_out(vty, "enable password 8 %s\n",
518 host.enable_encrypt);
519 } else {
520 if (host.password)
521 vty_out(vty, "password %s\n", host.password);
522 if (host.enable)
523 vty_out(vty, "enable password %s\n",
524 host.enable);
525 }
526
527 if (host.logfile
528 && (zlog_default->maxlvl[ZLOG_DEST_FILE]
529 != ZLOG_DISABLED)) {
530 vty_out(vty, "log file %s", host.logfile);
531 if (zlog_default->maxlvl[ZLOG_DEST_FILE]
532 != zlog_default->default_lvl)
533 vty_out(vty, " %s",
534 zlog_priority
535 [zlog_default->maxlvl
536 [ZLOG_DEST_FILE]]);
537 vty_out(vty, "\n");
538 }
539
540 if (zlog_default->maxlvl[ZLOG_DEST_STDOUT] != ZLOG_DISABLED) {
541 vty_out(vty, "log stdout");
542 if (zlog_default->maxlvl[ZLOG_DEST_STDOUT]
543 != zlog_default->default_lvl)
544 vty_out(vty, " %s",
545 zlog_priority
546 [zlog_default->maxlvl
547 [ZLOG_DEST_STDOUT]]);
548 vty_out(vty, "\n");
549 }
550
551 if (zlog_default->maxlvl[ZLOG_DEST_MONITOR] == ZLOG_DISABLED)
552 vty_out(vty, "no log monitor\n");
553 else if (zlog_default->maxlvl[ZLOG_DEST_MONITOR]
554 != zlog_default->default_lvl)
555 vty_out(vty, "log monitor %s\n",
556 zlog_priority[zlog_default->maxlvl
557 [ZLOG_DEST_MONITOR]]);
558
559 if (zlog_default->maxlvl[ZLOG_DEST_SYSLOG] != ZLOG_DISABLED) {
560 vty_out(vty, "log syslog");
561 if (zlog_default->maxlvl[ZLOG_DEST_SYSLOG]
562 != zlog_default->default_lvl)
563 vty_out(vty, " %s",
564 zlog_priority[zlog_default->maxlvl
565 [ZLOG_DEST_SYSLOG]]);
566 vty_out(vty, "\n");
567 }
568
569 if (zlog_default->facility != LOG_DAEMON)
570 vty_out(vty, "log facility %s\n",
571 facility_name(zlog_default->facility));
572
573 if (zlog_default->record_priority == 1)
574 vty_out(vty, "log record-priority\n");
575
576 if (zlog_default->timestamp_precision > 0)
577 vty_out(vty, "log timestamp precision %d\n",
578 zlog_default->timestamp_precision);
579
580 if (host.advanced)
581 vty_out(vty, "service advanced-vty\n");
582
583 if (host.encrypt)
584 vty_out(vty, "service password-encryption\n");
585
586 if (host.lines >= 0)
587 vty_out(vty, "service terminal-length %d\n",
588 host.lines);
589
590 if (host.motdfile)
591 vty_out(vty, "banner motd file %s\n", host.motdfile);
592 else if (!host.motd)
593 vty_out(vty, "no banner motd\n");
594 }
595
596 if (debug_memstats_at_exit)
597 vty_out(vty, "!\ndebug memstats-at-exit\n");
598
599 return 1;
600 }
601
602 /* Utility function for getting command graph. */
603 static struct graph *cmd_node_graph(vector v, enum node_type ntype)
604 {
605 struct cmd_node *cnode = vector_slot(v, ntype);
606 return cnode->cmdgraph;
607 }
608
609 static int cmd_try_do_shortcut(enum node_type node, char *first_word)
610 {
611 if (first_word != NULL && node != AUTH_NODE && node != VIEW_NODE
612 && node != AUTH_ENABLE_NODE && 0 == strcmp("do", first_word))
613 return 1;
614 return 0;
615 }
616
617 /**
618 * Compare function for cmd_token.
619 * Used with qsort to sort command completions.
620 */
621 static int compare_completions(const void *fst, const void *snd)
622 {
623 const struct cmd_token *first = *(const struct cmd_token * const *)fst,
624 *secnd = *(const struct cmd_token * const *)snd;
625 return strcmp(first->text, secnd->text);
626 }
627
628 /**
629 * Takes a list of completions returned by command_complete,
630 * dedeuplicates them based on both text and description,
631 * sorts them, and returns them as a vector.
632 *
633 * @param completions linked list of cmd_token
634 * @return deduplicated and sorted vector with
635 */
636 vector completions_to_vec(struct list *completions)
637 {
638 vector comps = vector_init(VECTOR_MIN_SIZE);
639
640 struct listnode *ln;
641 struct cmd_token *token, *cr = NULL;
642 unsigned int i, exists;
643 for (ALL_LIST_ELEMENTS_RO(completions, ln, token)) {
644 if (token->type == END_TKN && (cr = token))
645 continue;
646
647 // linear search for token in completions vector
648 exists = 0;
649 for (i = 0; i < vector_active(comps) && !exists; i++) {
650 struct cmd_token *curr = vector_slot(comps, i);
651 #ifdef VTYSH_DEBUG
652 exists = !strcmp(curr->text, token->text)
653 && !strcmp(curr->desc, token->desc);
654 #else
655 exists = !strcmp(curr->text, token->text);
656 #endif /* VTYSH_DEBUG */
657 }
658
659 if (!exists)
660 vector_set(comps, token);
661 }
662
663 // sort completions
664 qsort(comps->index, vector_active(comps), sizeof(void *),
665 &compare_completions);
666
667 // make <cr> the first element, if it is present
668 if (cr) {
669 vector_set_index(comps, vector_active(comps), NULL);
670 memmove(comps->index + 1, comps->index,
671 (comps->alloced - 1) * sizeof(void *));
672 vector_set_index(comps, 0, cr);
673 }
674
675 return comps;
676 }
677 /**
678 * Generates a vector of cmd_token representing possible completions
679 * on the current input.
680 *
681 * @param vline the vectorized input line
682 * @param vty the vty with the node to match on
683 * @param status pointer to matcher status code
684 * @return vector of struct cmd_token * with possible completions
685 */
686 static vector cmd_complete_command_real(vector vline, struct vty *vty,
687 int *status)
688 {
689 struct list *completions;
690 struct graph *cmdgraph = cmd_node_graph(cmdvec, vty->node);
691
692 enum matcher_rv rv = command_complete(cmdgraph, vline, &completions);
693
694 if (MATCHER_ERROR(rv)) {
695 *status = CMD_ERR_NO_MATCH;
696 return NULL;
697 }
698
699 vector comps = completions_to_vec(completions);
700 list_delete(&completions);
701
702 // set status code appropriately
703 switch (vector_active(comps)) {
704 case 0:
705 *status = CMD_ERR_NO_MATCH;
706 break;
707 case 1:
708 *status = CMD_COMPLETE_FULL_MATCH;
709 break;
710 default:
711 *status = CMD_COMPLETE_LIST_MATCH;
712 }
713
714 return comps;
715 }
716
717 vector cmd_describe_command(vector vline, struct vty *vty, int *status)
718 {
719 vector ret;
720
721 if (cmd_try_do_shortcut(vty->node, vector_slot(vline, 0))) {
722 enum node_type onode;
723 int orig_xpath_index;
724 vector shifted_vline;
725 unsigned int index;
726
727 onode = vty->node;
728 orig_xpath_index = vty->xpath_index;
729 vty->node = ENABLE_NODE;
730 vty->xpath_index = 0;
731 /* We can try it on enable node, cos' the vty is authenticated
732 */
733
734 shifted_vline = vector_init(vector_count(vline));
735 /* use memcpy? */
736 for (index = 1; index < vector_active(vline); index++) {
737 vector_set_index(shifted_vline, index - 1,
738 vector_lookup(vline, index));
739 }
740
741 ret = cmd_complete_command_real(shifted_vline, vty, status);
742
743 vector_free(shifted_vline);
744 vty->node = onode;
745 vty->xpath_index = orig_xpath_index;
746 return ret;
747 }
748
749 return cmd_complete_command_real(vline, vty, status);
750 }
751
752 static struct list *varhandlers = NULL;
753
754 void cmd_variable_complete(struct cmd_token *token, const char *arg,
755 vector comps)
756 {
757 struct listnode *ln;
758 const struct cmd_variable_handler *cvh;
759 size_t i, argsz;
760 vector tmpcomps;
761
762 tmpcomps = arg ? vector_init(VECTOR_MIN_SIZE) : comps;
763
764 for (ALL_LIST_ELEMENTS_RO(varhandlers, ln, cvh)) {
765 if (cvh->tokenname && strcmp(cvh->tokenname, token->text))
766 continue;
767 if (cvh->varname && (!token->varname
768 || strcmp(cvh->varname, token->varname)))
769 continue;
770 cvh->completions(tmpcomps, token);
771 break;
772 }
773
774 if (!arg)
775 return;
776
777 argsz = strlen(arg);
778 for (i = vector_active(tmpcomps); i; i--) {
779 char *item = vector_slot(tmpcomps, i - 1);
780 if (strlen(item) >= argsz && !strncmp(item, arg, argsz))
781 vector_set(comps, item);
782 else
783 XFREE(MTYPE_COMPLETION, item);
784 }
785 vector_free(tmpcomps);
786 }
787
788 #define AUTOCOMP_INDENT 5
789
790 char *cmd_variable_comp2str(vector comps, unsigned short cols)
791 {
792 size_t bsz = 16;
793 char *buf = XCALLOC(MTYPE_TMP, bsz);
794 int lc = AUTOCOMP_INDENT;
795 size_t cs = AUTOCOMP_INDENT;
796 size_t itemlen;
797 snprintf(buf, bsz, "%*s", AUTOCOMP_INDENT, "");
798 for (size_t j = 0; j < vector_active(comps); j++) {
799 char *item = vector_slot(comps, j);
800 itemlen = strlen(item);
801
802 if (cs + itemlen + AUTOCOMP_INDENT + 3 >= bsz)
803 buf = XREALLOC(MTYPE_TMP, buf, (bsz *= 2));
804
805 if (lc + itemlen + 1 >= cols) {
806 cs += snprintf(&buf[cs], bsz - cs, "\n%*s",
807 AUTOCOMP_INDENT, "");
808 lc = AUTOCOMP_INDENT;
809 }
810
811 size_t written = snprintf(&buf[cs], bsz - cs, "%s ", item);
812 lc += written;
813 cs += written;
814 XFREE(MTYPE_COMPLETION, item);
815 vector_set_index(comps, j, NULL);
816 }
817 return buf;
818 }
819
820 void cmd_variable_handler_register(const struct cmd_variable_handler *cvh)
821 {
822 if (!varhandlers)
823 return;
824
825 for (; cvh->completions; cvh++)
826 listnode_add(varhandlers, (void *)cvh);
827 }
828
829 DEFUN_HIDDEN (autocomplete,
830 autocomplete_cmd,
831 "autocomplete TYPE TEXT VARNAME",
832 "Autocompletion handler (internal, for vtysh)\n"
833 "cmd_token->type\n"
834 "cmd_token->text\n"
835 "cmd_token->varname\n")
836 {
837 struct cmd_token tok;
838 vector comps = vector_init(32);
839 size_t i;
840
841 memset(&tok, 0, sizeof(tok));
842 tok.type = atoi(argv[1]->arg);
843 tok.text = argv[2]->arg;
844 tok.varname = argv[3]->arg;
845 if (!strcmp(tok.varname, "-"))
846 tok.varname = NULL;
847
848 cmd_variable_complete(&tok, NULL, comps);
849
850 for (i = 0; i < vector_active(comps); i++) {
851 char *text = vector_slot(comps, i);
852 vty_out(vty, "%s\n", text);
853 XFREE(MTYPE_COMPLETION, text);
854 }
855
856 vector_free(comps);
857 return CMD_SUCCESS;
858 }
859
860 /**
861 * Generate possible tab-completions for the given input. This function only
862 * returns results that would result in a valid command if used as Readline
863 * completions (as is the case in vtysh). For instance, if the passed vline ends
864 * with '4.3.2', the strings 'A.B.C.D' and 'A.B.C.D/M' will _not_ be returned.
865 *
866 * @param vline vectorized input line
867 * @param vty the vty
868 * @param status location to store matcher status code in
869 * @return set of valid strings for use with Readline as tab-completions.
870 */
871
872 char **cmd_complete_command(vector vline, struct vty *vty, int *status)
873 {
874 char **ret = NULL;
875 int original_node = vty->node;
876 vector input_line = vector_init(vector_count(vline));
877
878 // if the first token is 'do' we'll want to execute the command in the
879 // enable node
880 int do_shortcut = cmd_try_do_shortcut(vty->node, vector_slot(vline, 0));
881 vty->node = do_shortcut ? ENABLE_NODE : original_node;
882
883 // construct the input line we'll be matching on
884 unsigned int offset = (do_shortcut) ? 1 : 0;
885 for (unsigned index = 0; index + offset < vector_active(vline); index++)
886 vector_set_index(input_line, index,
887 vector_lookup(vline, index + offset));
888
889 // get token completions -- this is a copying operation
890 vector comps = NULL, initial_comps;
891 initial_comps = cmd_complete_command_real(input_line, vty, status);
892
893 if (!MATCHER_ERROR(*status)) {
894 assert(initial_comps);
895 // filter out everything that is not suitable for a
896 // tab-completion
897 comps = vector_init(VECTOR_MIN_SIZE);
898 for (unsigned int i = 0; i < vector_active(initial_comps);
899 i++) {
900 struct cmd_token *token = vector_slot(initial_comps, i);
901 if (token->type == WORD_TKN)
902 vector_set(comps, XSTRDUP(MTYPE_COMPLETION,
903 token->text));
904 else if (IS_VARYING_TOKEN(token->type)) {
905 const char *ref = vector_lookup(
906 vline, vector_active(vline) - 1);
907 cmd_variable_complete(token, ref, comps);
908 }
909 }
910 vector_free(initial_comps);
911
912 // since we filtered results, we need to re-set status code
913 switch (vector_active(comps)) {
914 case 0:
915 *status = CMD_ERR_NO_MATCH;
916 break;
917 case 1:
918 *status = CMD_COMPLETE_FULL_MATCH;
919 break;
920 default:
921 *status = CMD_COMPLETE_LIST_MATCH;
922 }
923
924 // copy completions text into an array of char*
925 ret = XMALLOC(MTYPE_TMP,
926 (vector_active(comps) + 1) * sizeof(char *));
927 unsigned int i;
928 for (i = 0; i < vector_active(comps); i++) {
929 ret[i] = vector_slot(comps, i);
930 }
931 // set the last element to NULL, because this array is used in
932 // a Readline completion_generator function which expects NULL
933 // as a sentinel value
934 ret[i] = NULL;
935 vector_free(comps);
936 comps = NULL;
937 } else if (initial_comps)
938 vector_free(initial_comps);
939
940 // comps should always be null here
941 assert(!comps);
942
943 // free the adjusted input line
944 vector_free(input_line);
945
946 // reset vty->node to its original value
947 vty->node = original_node;
948
949 return ret;
950 }
951
952 /* return parent node */
953 /* MUST eventually converge on CONFIG_NODE */
954 enum node_type node_parent(enum node_type node)
955 {
956 enum node_type ret;
957
958 assert(node > CONFIG_NODE);
959
960 switch (node) {
961 case BGP_VPNV4_NODE:
962 case BGP_VPNV6_NODE:
963 case BGP_FLOWSPECV4_NODE:
964 case BGP_FLOWSPECV6_NODE:
965 case BGP_VRF_POLICY_NODE:
966 case BGP_VNC_DEFAULTS_NODE:
967 case BGP_VNC_NVE_GROUP_NODE:
968 case BGP_VNC_L2_GROUP_NODE:
969 case BGP_IPV4_NODE:
970 case BGP_IPV4M_NODE:
971 case BGP_IPV4L_NODE:
972 case BGP_IPV6_NODE:
973 case BGP_IPV6M_NODE:
974 case BGP_EVPN_NODE:
975 case BGP_IPV6L_NODE:
976 ret = BGP_NODE;
977 break;
978 case BGP_EVPN_VNI_NODE:
979 ret = BGP_EVPN_NODE;
980 break;
981 case KEYCHAIN_KEY_NODE:
982 ret = KEYCHAIN_NODE;
983 break;
984 case LINK_PARAMS_NODE:
985 ret = INTERFACE_NODE;
986 break;
987 case LDP_IPV4_NODE:
988 case LDP_IPV6_NODE:
989 ret = LDP_NODE;
990 break;
991 case LDP_IPV4_IFACE_NODE:
992 ret = LDP_IPV4_NODE;
993 break;
994 case LDP_IPV6_IFACE_NODE:
995 ret = LDP_IPV6_NODE;
996 break;
997 case LDP_PSEUDOWIRE_NODE:
998 ret = LDP_L2VPN_NODE;
999 break;
1000 case BFD_PEER_NODE:
1001 ret = BFD_NODE;
1002 break;
1003 default:
1004 ret = CONFIG_NODE;
1005 break;
1006 }
1007
1008 return ret;
1009 }
1010
1011 /* Execute command by argument vline vector. */
1012 static int cmd_execute_command_real(vector vline, enum cmd_filter_type filter,
1013 struct vty *vty,
1014 const struct cmd_element **cmd)
1015 {
1016 struct list *argv_list;
1017 enum matcher_rv status;
1018 const struct cmd_element *matched_element = NULL;
1019
1020 struct graph *cmdgraph = cmd_node_graph(cmdvec, vty->node);
1021 status = command_match(cmdgraph, vline, &argv_list, &matched_element);
1022
1023 if (cmd)
1024 *cmd = matched_element;
1025
1026 // if matcher error, return corresponding CMD_ERR
1027 if (MATCHER_ERROR(status)) {
1028 if (argv_list)
1029 list_delete(&argv_list);
1030 switch (status) {
1031 case MATCHER_INCOMPLETE:
1032 return CMD_ERR_INCOMPLETE;
1033 case MATCHER_AMBIGUOUS:
1034 return CMD_ERR_AMBIGUOUS;
1035 default:
1036 return CMD_ERR_NO_MATCH;
1037 }
1038 }
1039
1040 // build argv array from argv list
1041 struct cmd_token **argv = XMALLOC(
1042 MTYPE_TMP, argv_list->count * sizeof(struct cmd_token *));
1043 struct listnode *ln;
1044 struct cmd_token *token;
1045 unsigned int i = 0;
1046 for (ALL_LIST_ELEMENTS_RO(argv_list, ln, token))
1047 argv[i++] = token;
1048
1049 int argc = argv_list->count;
1050
1051 int ret;
1052 if (matched_element->daemon)
1053 ret = CMD_SUCCESS_DAEMON;
1054 else {
1055 /* Clear enqueued configuration changes. */
1056 vty->num_cfg_changes = 0;
1057 memset(&vty->cfg_changes, 0, sizeof(vty->cfg_changes));
1058
1059 ret = matched_element->func(matched_element, vty, argc, argv);
1060 }
1061
1062 // delete list and cmd_token's in it
1063 list_delete(&argv_list);
1064 XFREE(MTYPE_TMP, argv);
1065
1066 return ret;
1067 }
1068
1069 /**
1070 * Execute a given command, handling things like "do ..." and checking
1071 * whether the given command might apply at a parent node if doesn't
1072 * apply for the current node.
1073 *
1074 * @param vline Command line input, vector of char* where each element is
1075 * one input token.
1076 * @param vty The vty context in which the command should be executed.
1077 * @param cmd Pointer where the struct cmd_element of the matched command
1078 * will be stored, if any. May be set to NULL if this info is
1079 * not needed.
1080 * @param vtysh If set != 0, don't lookup the command at parent nodes.
1081 * @return The status of the command that has been executed or an error code
1082 * as to why no command could be executed.
1083 */
1084 int cmd_execute_command(vector vline, struct vty *vty,
1085 const struct cmd_element **cmd, int vtysh)
1086 {
1087 int ret, saved_ret = 0;
1088 enum node_type onode, try_node;
1089 int orig_xpath_index;
1090
1091 onode = try_node = vty->node;
1092 orig_xpath_index = vty->xpath_index;
1093
1094 if (cmd_try_do_shortcut(vty->node, vector_slot(vline, 0))) {
1095 vector shifted_vline;
1096 unsigned int index;
1097
1098 vty->node = ENABLE_NODE;
1099 vty->xpath_index = 0;
1100 /* We can try it on enable node, cos' the vty is authenticated
1101 */
1102
1103 shifted_vline = vector_init(vector_count(vline));
1104 /* use memcpy? */
1105 for (index = 1; index < vector_active(vline); index++)
1106 vector_set_index(shifted_vline, index - 1,
1107 vector_lookup(vline, index));
1108
1109 ret = cmd_execute_command_real(shifted_vline, FILTER_RELAXED,
1110 vty, cmd);
1111
1112 vector_free(shifted_vline);
1113 vty->node = onode;
1114 vty->xpath_index = orig_xpath_index;
1115 return ret;
1116 }
1117
1118 saved_ret = ret =
1119 cmd_execute_command_real(vline, FILTER_RELAXED, vty, cmd);
1120
1121 if (vtysh)
1122 return saved_ret;
1123
1124 if (ret != CMD_SUCCESS && ret != CMD_WARNING
1125 && ret != CMD_NOT_MY_INSTANCE && ret != CMD_WARNING_CONFIG_FAILED) {
1126 /* This assumes all nodes above CONFIG_NODE are childs of
1127 * CONFIG_NODE */
1128 while (vty->node > CONFIG_NODE) {
1129 try_node = node_parent(try_node);
1130 vty->node = try_node;
1131 if (vty->xpath_index > 0)
1132 vty->xpath_index--;
1133 ret = cmd_execute_command_real(vline, FILTER_RELAXED,
1134 vty, cmd);
1135 if (ret == CMD_SUCCESS || ret == CMD_WARNING
1136 || ret == CMD_NOT_MY_INSTANCE
1137 || ret == CMD_WARNING_CONFIG_FAILED)
1138 return ret;
1139 }
1140 /* no command succeeded, reset the vty to the original node */
1141 vty->node = onode;
1142 vty->xpath_index = orig_xpath_index;
1143 }
1144
1145 /* return command status for original node */
1146 return saved_ret;
1147 }
1148
1149 /**
1150 * Execute a given command, matching it strictly against the current node.
1151 * This mode is used when reading config files.
1152 *
1153 * @param vline Command line input, vector of char* where each element is
1154 * one input token.
1155 * @param vty The vty context in which the command should be executed.
1156 * @param cmd Pointer where the struct cmd_element* of the matched command
1157 * will be stored, if any. May be set to NULL if this info is
1158 * not needed.
1159 * @return The status of the command that has been executed or an error code
1160 * as to why no command could be executed.
1161 */
1162 int cmd_execute_command_strict(vector vline, struct vty *vty,
1163 const struct cmd_element **cmd)
1164 {
1165 return cmd_execute_command_real(vline, FILTER_STRICT, vty, cmd);
1166 }
1167
1168 /*
1169 * Hook for preprocessing command string before executing.
1170 *
1171 * All subscribers are called with the raw command string that is to be
1172 * executed. If any changes are to be made, a new string should be allocated
1173 * with MTYPE_TMP and *cmd_out updated to point to this new string. The caller
1174 * is then responsible for freeing this string.
1175 *
1176 * All processing functions must be mutually exclusive in their action, i.e. if
1177 * one subscriber decides to modify the command, all others must not modify it
1178 * when called. Feeding the output of one processing command into a subsequent
1179 * one is not supported.
1180 *
1181 * This hook is intentionally internal to the command processing system.
1182 *
1183 * cmd_in
1184 * The raw command string.
1185 *
1186 * cmd_out
1187 * The result of any processing.
1188 */
1189 DECLARE_HOOK(cmd_execute,
1190 (struct vty *vty, const char *cmd_in, char **cmd_out),
1191 (vty, cmd_in, cmd_out));
1192 DEFINE_HOOK(cmd_execute, (struct vty *vty, const char *cmd_in, char **cmd_out),
1193 (vty, cmd_in, cmd_out));
1194
1195 /* Hook executed after a CLI command. */
1196 DECLARE_KOOH(cmd_execute_done, (struct vty *vty, const char *cmd_exec),
1197 (vty, cmd_exec));
1198 DEFINE_KOOH(cmd_execute_done, (struct vty *vty, const char *cmd_exec),
1199 (vty, cmd_exec));
1200
1201 /*
1202 * cmd_execute hook subscriber to handle `|` actions.
1203 */
1204 static int handle_pipe_action(struct vty *vty, const char *cmd_in,
1205 char **cmd_out)
1206 {
1207 /* look for `|` */
1208 char *orig, *working, *token, *u;
1209 char *pipe = strstr(cmd_in, "| ");
1210
1211 if (!pipe)
1212 return 0;
1213
1214 /* duplicate string for processing purposes, not including pipe */
1215 orig = working = XSTRDUP(MTYPE_TMP, pipe + 2);
1216
1217 /* retrieve action */
1218 token = strsep(&working, " ");
1219 assert(token);
1220
1221 /* match result to known actions */
1222 if (strmatch(token, "include")) {
1223 /* the remaining text should be a regexp */
1224 char *regexp = working;
1225
1226 if (!regexp) {
1227 vty_out(vty, "%% Need a regexp to filter with\n");
1228 goto fail;
1229 }
1230
1231 bool succ = vty_set_include(vty, regexp);
1232
1233 if (!succ) {
1234 vty_out(vty, "%% Bad regexp '%s'\n", regexp);
1235 goto fail;
1236 }
1237 *cmd_out = XSTRDUP(MTYPE_TMP, cmd_in);
1238 u = *cmd_out;
1239 strsep(&u, "|");
1240 } else {
1241 vty_out(vty, "%% Unknown action '%s'\n", token);
1242 goto fail;
1243 }
1244
1245 fail:
1246 XFREE(MTYPE_TMP, orig);
1247 return 0;
1248 }
1249
1250 static int handle_pipe_action_done(struct vty *vty, const char *cmd_exec)
1251 {
1252 if (vty->filter)
1253 vty_set_include(vty, NULL);
1254
1255 return 0;
1256 }
1257
1258 int cmd_execute(struct vty *vty, const char *cmd,
1259 const struct cmd_element **matched, int vtysh)
1260 {
1261 int ret;
1262 char *cmd_out = NULL;
1263 const char *cmd_exec;
1264 vector vline;
1265
1266 hook_call(cmd_execute, vty, cmd, &cmd_out);
1267 cmd_exec = cmd_out ? (const char *)cmd_out : cmd;
1268
1269 vline = cmd_make_strvec(cmd_exec);
1270
1271 if (vline) {
1272 ret = cmd_execute_command(vline, vty, matched, vtysh);
1273 cmd_free_strvec(vline);
1274 } else {
1275 ret = CMD_SUCCESS;
1276 }
1277
1278 hook_call(cmd_execute_done, vty, cmd_exec);
1279
1280 XFREE(MTYPE_TMP, cmd_out);
1281
1282 return ret;
1283 }
1284
1285
1286 /**
1287 * Parse one line of config, walking up the parse tree attempting to find a
1288 * match
1289 *
1290 * @param vty The vty context in which the command should be executed.
1291 * @param cmd Pointer where the struct cmd_element* of the match command
1292 * will be stored, if any. May be set to NULL if this info is
1293 * not needed.
1294 * @param use_daemon Boolean to control whether or not we match on
1295 * CMD_SUCCESS_DAEMON
1296 * or not.
1297 * @return The status of the command that has been executed or an error code
1298 * as to why no command could be executed.
1299 */
1300 int command_config_read_one_line(struct vty *vty,
1301 const struct cmd_element **cmd,
1302 uint32_t line_num, int use_daemon)
1303 {
1304 vector vline;
1305 int ret;
1306
1307 vline = cmd_make_strvec(vty->buf);
1308
1309 /* In case of comment line */
1310 if (vline == NULL)
1311 return CMD_SUCCESS;
1312
1313 /* Execute configuration command : this is strict match */
1314 ret = cmd_execute_command_strict(vline, vty, cmd);
1315
1316 // Climb the tree and try the command again at each node
1317 if (!(use_daemon && ret == CMD_SUCCESS_DAEMON)
1318 && !(!use_daemon && ret == CMD_ERR_NOTHING_TODO)
1319 && ret != CMD_SUCCESS && ret != CMD_WARNING
1320 && ret != CMD_NOT_MY_INSTANCE && ret != CMD_WARNING_CONFIG_FAILED
1321 && vty->node != CONFIG_NODE) {
1322 int saved_node = vty->node;
1323 int saved_xpath_index = vty->xpath_index;
1324
1325 while (!(use_daemon && ret == CMD_SUCCESS_DAEMON)
1326 && !(!use_daemon && ret == CMD_ERR_NOTHING_TODO)
1327 && ret != CMD_SUCCESS && ret != CMD_WARNING
1328 && vty->node > CONFIG_NODE) {
1329 vty->node = node_parent(vty->node);
1330 if (vty->xpath_index > 0)
1331 vty->xpath_index--;
1332 ret = cmd_execute_command_strict(vline, vty, cmd);
1333 }
1334
1335 // If climbing the tree did not work then ignore the command and
1336 // stay at the same node
1337 if (!(use_daemon && ret == CMD_SUCCESS_DAEMON)
1338 && !(!use_daemon && ret == CMD_ERR_NOTHING_TODO)
1339 && ret != CMD_SUCCESS && ret != CMD_WARNING) {
1340 vty->node = saved_node;
1341 vty->xpath_index = saved_xpath_index;
1342 }
1343 }
1344
1345 if (ret != CMD_SUCCESS &&
1346 ret != CMD_WARNING &&
1347 ret != CMD_SUCCESS_DAEMON) {
1348 struct vty_error *ve = XCALLOC(MTYPE_TMP, sizeof(*ve));
1349
1350 memcpy(ve->error_buf, vty->buf, VTY_BUFSIZ);
1351 ve->line_num = line_num;
1352 if (!vty->error)
1353 vty->error = list_new();
1354
1355 listnode_add(vty->error, ve);
1356 }
1357
1358 cmd_free_strvec(vline);
1359
1360 return ret;
1361 }
1362
1363 /* Configuration make from file. */
1364 int config_from_file(struct vty *vty, FILE *fp, unsigned int *line_num)
1365 {
1366 int ret, error_ret = 0;
1367 *line_num = 0;
1368
1369 while (fgets(vty->buf, VTY_BUFSIZ, fp)) {
1370 ++(*line_num);
1371
1372 ret = command_config_read_one_line(vty, NULL, *line_num, 0);
1373
1374 if (ret != CMD_SUCCESS && ret != CMD_WARNING
1375 && ret != CMD_ERR_NOTHING_TODO)
1376 error_ret = ret;
1377 }
1378
1379 if (error_ret) {
1380 return error_ret;
1381 }
1382
1383 return CMD_SUCCESS;
1384 }
1385
1386 /* Configuration from terminal */
1387 DEFUN (config_terminal,
1388 config_terminal_cmd,
1389 "configure terminal",
1390 "Configuration from vty interface\n"
1391 "Configuration terminal\n")
1392 {
1393 return vty_config_enter(vty, false, false);
1394 }
1395
1396 /* Enable command */
1397 DEFUN (enable,
1398 config_enable_cmd,
1399 "enable",
1400 "Turn on privileged mode command\n")
1401 {
1402 /* If enable password is NULL, change to ENABLE_NODE */
1403 if ((host.enable == NULL && host.enable_encrypt == NULL)
1404 || vty->type == VTY_SHELL_SERV)
1405 vty->node = ENABLE_NODE;
1406 else
1407 vty->node = AUTH_ENABLE_NODE;
1408
1409 return CMD_SUCCESS;
1410 }
1411
1412 /* Disable command */
1413 DEFUN (disable,
1414 config_disable_cmd,
1415 "disable",
1416 "Turn off privileged mode command\n")
1417 {
1418 if (vty->node == ENABLE_NODE)
1419 vty->node = VIEW_NODE;
1420 return CMD_SUCCESS;
1421 }
1422
1423 /* Down vty node level. */
1424 DEFUN (config_exit,
1425 config_exit_cmd,
1426 "exit",
1427 "Exit current mode and down to previous mode\n")
1428 {
1429 cmd_exit(vty);
1430 return CMD_SUCCESS;
1431 }
1432
1433 void cmd_exit(struct vty *vty)
1434 {
1435 switch (vty->node) {
1436 case VIEW_NODE:
1437 case ENABLE_NODE:
1438 if (vty_shell(vty))
1439 exit(0);
1440 else
1441 vty->status = VTY_CLOSE;
1442 break;
1443 case CONFIG_NODE:
1444 vty->node = ENABLE_NODE;
1445 vty_config_exit(vty);
1446 break;
1447 case INTERFACE_NODE:
1448 case PW_NODE:
1449 case LOGICALROUTER_NODE:
1450 case VRF_NODE:
1451 case NH_GROUP_NODE:
1452 case ZEBRA_NODE:
1453 case BGP_NODE:
1454 case RIP_NODE:
1455 case EIGRP_NODE:
1456 case BABEL_NODE:
1457 case RIPNG_NODE:
1458 case OSPF_NODE:
1459 case OSPF6_NODE:
1460 case LDP_NODE:
1461 case LDP_L2VPN_NODE:
1462 case ISIS_NODE:
1463 case OPENFABRIC_NODE:
1464 case KEYCHAIN_NODE:
1465 case RMAP_NODE:
1466 case PBRMAP_NODE:
1467 case VTY_NODE:
1468 case BFD_NODE:
1469 vty->node = CONFIG_NODE;
1470 break;
1471 case BGP_IPV4_NODE:
1472 case BGP_IPV4M_NODE:
1473 case BGP_IPV4L_NODE:
1474 case BGP_VPNV4_NODE:
1475 case BGP_VPNV6_NODE:
1476 case BGP_FLOWSPECV4_NODE:
1477 case BGP_FLOWSPECV6_NODE:
1478 case BGP_VRF_POLICY_NODE:
1479 case BGP_VNC_DEFAULTS_NODE:
1480 case BGP_VNC_NVE_GROUP_NODE:
1481 case BGP_VNC_L2_GROUP_NODE:
1482 case BGP_IPV6_NODE:
1483 case BGP_IPV6M_NODE:
1484 case BGP_EVPN_NODE:
1485 case BGP_IPV6L_NODE:
1486 vty->node = BGP_NODE;
1487 break;
1488 case BGP_EVPN_VNI_NODE:
1489 vty->node = BGP_EVPN_NODE;
1490 break;
1491 case LDP_IPV4_NODE:
1492 case LDP_IPV6_NODE:
1493 vty->node = LDP_NODE;
1494 break;
1495 case LDP_IPV4_IFACE_NODE:
1496 vty->node = LDP_IPV4_NODE;
1497 break;
1498 case LDP_IPV6_IFACE_NODE:
1499 vty->node = LDP_IPV6_NODE;
1500 break;
1501 case LDP_PSEUDOWIRE_NODE:
1502 vty->node = LDP_L2VPN_NODE;
1503 break;
1504 case KEYCHAIN_KEY_NODE:
1505 vty->node = KEYCHAIN_NODE;
1506 break;
1507 case LINK_PARAMS_NODE:
1508 vty->node = INTERFACE_NODE;
1509 break;
1510 case BFD_PEER_NODE:
1511 vty->node = BFD_NODE;
1512 break;
1513 default:
1514 break;
1515 }
1516
1517 if (vty->xpath_index > 0)
1518 vty->xpath_index--;
1519 }
1520
1521 /* ALIAS_FIXME */
1522 DEFUN (config_quit,
1523 config_quit_cmd,
1524 "quit",
1525 "Exit current mode and down to previous mode\n")
1526 {
1527 return config_exit(self, vty, argc, argv);
1528 }
1529
1530
1531 /* End of configuration. */
1532 DEFUN (config_end,
1533 config_end_cmd,
1534 "end",
1535 "End current mode and change to enable mode.\n")
1536 {
1537 if (vty->config) {
1538 vty_config_exit(vty);
1539 vty->node = ENABLE_NODE;
1540 }
1541
1542 return CMD_SUCCESS;
1543 }
1544
1545 /* Show version. */
1546 DEFUN (show_version,
1547 show_version_cmd,
1548 "show version",
1549 SHOW_STR
1550 "Displays zebra version\n")
1551 {
1552 vty_out(vty, "%s %s (%s).\n", FRR_FULL_NAME, FRR_VERSION,
1553 cmd_hostname_get() ? cmd_hostname_get() : "");
1554 vty_out(vty, "%s%s\n", FRR_COPYRIGHT, GIT_INFO);
1555 vty_out(vty, "configured with:\n %s\n", FRR_CONFIG_ARGS);
1556
1557 return CMD_SUCCESS;
1558 }
1559
1560 /* "Set" version ... ignore version tags */
1561 DEFUN (frr_version_defaults,
1562 frr_version_defaults_cmd,
1563 "frr <version|defaults> LINE...",
1564 "FRRouting global parameters\n"
1565 "version configuration was written by\n"
1566 "set of configuration defaults used\n"
1567 "version string\n")
1568 {
1569 return CMD_SUCCESS;
1570 }
1571
1572 /* Help display function for all node. */
1573 DEFUN (config_help,
1574 config_help_cmd,
1575 "help",
1576 "Description of the interactive help system\n")
1577 {
1578 vty_out(vty,
1579 "Quagga VTY provides advanced help feature. When you need help,\n\
1580 anytime at the command line please press '?'.\n\
1581 \n\
1582 If nothing matches, the help list will be empty and you must backup\n\
1583 until entering a '?' shows the available options.\n\
1584 Two styles of help are provided:\n\
1585 1. Full help is available when you are ready to enter a\n\
1586 command argument (e.g. 'show ?') and describes each possible\n\
1587 argument.\n\
1588 2. Partial help is provided when an abbreviated argument is entered\n\
1589 and you want to know what arguments match the input\n\
1590 (e.g. 'show me?'.)\n\n");
1591 return CMD_SUCCESS;
1592 }
1593
1594 static void permute(struct graph_node *start, struct vty *vty)
1595 {
1596 static struct list *position = NULL;
1597 if (!position)
1598 position = list_new();
1599
1600 struct cmd_token *stok = start->data;
1601 struct graph_node *gnn;
1602 struct listnode *ln;
1603
1604 // recursive dfs
1605 listnode_add(position, start);
1606 for (unsigned int i = 0; i < vector_active(start->to); i++) {
1607 struct graph_node *gn = vector_slot(start->to, i);
1608 struct cmd_token *tok = gn->data;
1609 if (tok->attr == CMD_ATTR_HIDDEN
1610 || tok->attr == CMD_ATTR_DEPRECATED)
1611 continue;
1612 else if (tok->type == END_TKN || gn == start) {
1613 vty_out(vty, " ");
1614 for (ALL_LIST_ELEMENTS_RO(position, ln, gnn)) {
1615 struct cmd_token *tt = gnn->data;
1616 if (tt->type < SPECIAL_TKN)
1617 vty_out(vty, " %s", tt->text);
1618 }
1619 if (gn == start)
1620 vty_out(vty, "...");
1621 vty_out(vty, "\n");
1622 } else {
1623 bool skip = false;
1624 if (stok->type == FORK_TKN && tok->type != FORK_TKN)
1625 for (ALL_LIST_ELEMENTS_RO(position, ln, gnn))
1626 if (gnn == gn) {
1627 skip = true;
1628 break;
1629 }
1630 if (!skip)
1631 permute(gn, vty);
1632 }
1633 }
1634 list_delete_node(position, listtail(position));
1635 }
1636
1637 int cmd_list_cmds(struct vty *vty, int do_permute)
1638 {
1639 struct cmd_node *node = vector_slot(cmdvec, vty->node);
1640
1641 if (do_permute)
1642 permute(vector_slot(node->cmdgraph->nodes, 0), vty);
1643 else {
1644 /* loop over all commands at this node */
1645 struct cmd_element *element = NULL;
1646 for (unsigned int i = 0; i < vector_active(node->cmd_vector);
1647 i++)
1648 if ((element = vector_slot(node->cmd_vector, i))
1649 && element->attr != CMD_ATTR_DEPRECATED
1650 && element->attr != CMD_ATTR_HIDDEN)
1651 vty_out(vty, " %s\n", element->string);
1652 }
1653 return CMD_SUCCESS;
1654 }
1655
1656 /* Help display function for all node. */
1657 DEFUN (config_list,
1658 config_list_cmd,
1659 "list [permutations]",
1660 "Print command list\n"
1661 "Print all possible command permutations\n")
1662 {
1663 return cmd_list_cmds(vty, argc == 2);
1664 }
1665
1666 DEFUN (show_commandtree,
1667 show_commandtree_cmd,
1668 "show commandtree [permutations]",
1669 SHOW_STR
1670 "Show command tree\n"
1671 "Permutations that we are interested in\n")
1672 {
1673 return cmd_list_cmds(vty, argc == 3);
1674 }
1675
1676 DEFUN_HIDDEN(show_cli_graph,
1677 show_cli_graph_cmd,
1678 "show cli graph",
1679 SHOW_STR
1680 "CLI reflection\n"
1681 "Dump current command space as DOT graph\n")
1682 {
1683 struct cmd_node *cn = vector_slot(cmdvec, vty->node);
1684 char *dot = cmd_graph_dump_dot(cn->cmdgraph);
1685
1686 vty_out(vty, "%s\n", dot);
1687 XFREE(MTYPE_TMP, dot);
1688 return CMD_SUCCESS;
1689 }
1690
1691 static int vty_write_config(struct vty *vty)
1692 {
1693 size_t i;
1694 struct cmd_node *node;
1695
1696 if (host.noconfig)
1697 return CMD_SUCCESS;
1698
1699 if (vty->type == VTY_TERM) {
1700 vty_out(vty, "\nCurrent configuration:\n");
1701 vty_out(vty, "!\n");
1702 }
1703
1704 vty_out(vty, "frr version %s\n", FRR_VER_SHORT);
1705 vty_out(vty, "frr defaults %s\n", DFLT_NAME);
1706 vty_out(vty, "!\n");
1707
1708 for (i = 0; i < vector_active(cmdvec); i++)
1709 if ((node = vector_slot(cmdvec, i)) && node->func
1710 && (node->vtysh || vty->type != VTY_SHELL)) {
1711 if ((*node->func)(vty))
1712 vty_out(vty, "!\n");
1713 }
1714
1715 if (vty->type == VTY_TERM) {
1716 vty_out(vty, "end\n");
1717 }
1718
1719 return CMD_SUCCESS;
1720 }
1721
1722 static int file_write_config(struct vty *vty)
1723 {
1724 int fd, dirfd;
1725 char *config_file, *slash;
1726 char *config_file_tmp = NULL;
1727 char *config_file_sav = NULL;
1728 int ret = CMD_WARNING;
1729 struct vty *file_vty;
1730 struct stat conf_stat;
1731
1732 if (host.noconfig)
1733 return CMD_SUCCESS;
1734
1735 /* Check and see if we are operating under vtysh configuration */
1736 if (host.config == NULL) {
1737 vty_out(vty,
1738 "Can't save to configuration file, using vtysh.\n");
1739 return CMD_WARNING;
1740 }
1741
1742 /* Get filename. */
1743 config_file = host.config;
1744
1745 #ifndef O_DIRECTORY
1746 #define O_DIRECTORY 0
1747 #endif
1748 slash = strrchr(config_file, '/');
1749 if (slash) {
1750 char *config_dir = XSTRDUP(MTYPE_TMP, config_file);
1751 config_dir[slash - config_file] = '\0';
1752 dirfd = open(config_dir, O_DIRECTORY | O_RDONLY);
1753 XFREE(MTYPE_TMP, config_dir);
1754 } else
1755 dirfd = open(".", O_DIRECTORY | O_RDONLY);
1756 /* if dirfd is invalid, directory sync fails, but we're still OK */
1757
1758 config_file_sav = XMALLOC(
1759 MTYPE_TMP, strlen(config_file) + strlen(CONF_BACKUP_EXT) + 1);
1760 strcpy(config_file_sav, config_file);
1761 strcat(config_file_sav, CONF_BACKUP_EXT);
1762
1763
1764 config_file_tmp = XMALLOC(MTYPE_TMP, strlen(config_file) + 8);
1765 sprintf(config_file_tmp, "%s.XXXXXX", config_file);
1766
1767 /* Open file to configuration write. */
1768 fd = mkstemp(config_file_tmp);
1769 if (fd < 0) {
1770 vty_out(vty, "Can't open configuration file %s.\n",
1771 config_file_tmp);
1772 goto finished;
1773 }
1774 if (fchmod(fd, CONFIGFILE_MASK) != 0) {
1775 vty_out(vty, "Can't chmod configuration file %s: %s (%d).\n",
1776 config_file_tmp, safe_strerror(errno), errno);
1777 goto finished;
1778 }
1779
1780 /* Make vty for configuration file. */
1781 file_vty = vty_new();
1782 file_vty->wfd = fd;
1783 file_vty->type = VTY_FILE;
1784
1785 /* Config file header print. */
1786 vty_out(file_vty, "!\n! Zebra configuration saved from vty\n! ");
1787 vty_time_print(file_vty, 1);
1788 vty_out(file_vty, "!\n");
1789 vty_write_config(file_vty);
1790 vty_close(file_vty);
1791
1792 if (stat(config_file, &conf_stat) >= 0) {
1793 if (unlink(config_file_sav) != 0)
1794 if (errno != ENOENT) {
1795 vty_out(vty,
1796 "Can't unlink backup configuration file %s.\n",
1797 config_file_sav);
1798 goto finished;
1799 }
1800 if (link(config_file, config_file_sav) != 0) {
1801 vty_out(vty,
1802 "Can't backup old configuration file %s.\n",
1803 config_file_sav);
1804 goto finished;
1805 }
1806 if (dirfd >= 0)
1807 fsync(dirfd);
1808 }
1809 if (rename(config_file_tmp, config_file) != 0) {
1810 vty_out(vty, "Can't save configuration file %s.\n",
1811 config_file);
1812 goto finished;
1813 }
1814 if (dirfd >= 0)
1815 fsync(dirfd);
1816
1817 vty_out(vty, "Configuration saved to %s\n", config_file);
1818 ret = CMD_SUCCESS;
1819
1820 finished:
1821 if (ret != CMD_SUCCESS)
1822 unlink(config_file_tmp);
1823 if (dirfd >= 0)
1824 close(dirfd);
1825 XFREE(MTYPE_TMP, config_file_tmp);
1826 XFREE(MTYPE_TMP, config_file_sav);
1827 return ret;
1828 }
1829
1830 /* Write current configuration into file. */
1831
1832 DEFUN (config_write,
1833 config_write_cmd,
1834 "write [<file|memory|terminal>]",
1835 "Write running configuration to memory, network, or terminal\n"
1836 "Write to configuration file\n"
1837 "Write configuration currently in memory\n"
1838 "Write configuration to terminal\n")
1839 {
1840 const int idx_type = 1;
1841
1842 // if command was 'write terminal' or 'write memory'
1843 if (argc == 2 && (!strcmp(argv[idx_type]->text, "terminal"))) {
1844 return vty_write_config(vty);
1845 }
1846
1847 return file_write_config(vty);
1848 }
1849
1850 /* ALIAS_FIXME for 'write <terminal|memory>' */
1851 DEFUN (show_running_config,
1852 show_running_config_cmd,
1853 "show running-config",
1854 SHOW_STR
1855 "running configuration (same as write terminal)\n")
1856 {
1857 return vty_write_config(vty);
1858 }
1859
1860 /* ALIAS_FIXME for 'write file' */
1861 DEFUN (copy_runningconf_startupconf,
1862 copy_runningconf_startupconf_cmd,
1863 "copy running-config startup-config",
1864 "Copy configuration\n"
1865 "Copy running config to... \n"
1866 "Copy running config to startup config (same as write file/memory)\n")
1867 {
1868 return file_write_config(vty);
1869 }
1870 /** -- **/
1871
1872 /* Write startup configuration into the terminal. */
1873 DEFUN (show_startup_config,
1874 show_startup_config_cmd,
1875 "show startup-config",
1876 SHOW_STR
1877 "Contents of startup configuration\n")
1878 {
1879 char buf[BUFSIZ];
1880 FILE *confp;
1881
1882 if (host.noconfig)
1883 return CMD_SUCCESS;
1884 if (host.config == NULL)
1885 return CMD_WARNING;
1886
1887 confp = fopen(host.config, "r");
1888 if (confp == NULL) {
1889 vty_out(vty, "Can't open configuration file [%s] due to '%s'\n",
1890 host.config, safe_strerror(errno));
1891 return CMD_WARNING;
1892 }
1893
1894 while (fgets(buf, BUFSIZ, confp)) {
1895 char *cp = buf;
1896
1897 while (*cp != '\r' && *cp != '\n' && *cp != '\0')
1898 cp++;
1899 *cp = '\0';
1900
1901 vty_out(vty, "%s\n", buf);
1902 }
1903
1904 fclose(confp);
1905
1906 return CMD_SUCCESS;
1907 }
1908
1909 int cmd_domainname_set(const char *domainname)
1910 {
1911 XFREE(MTYPE_HOST, host.domainname);
1912 host.domainname = domainname ? XSTRDUP(MTYPE_HOST, domainname) : NULL;
1913 return CMD_SUCCESS;
1914 }
1915
1916 /* Hostname configuration */
1917 DEFUN(config_domainname,
1918 domainname_cmd,
1919 "domainname WORD",
1920 "Set system's domain name\n"
1921 "This system's domain name\n")
1922 {
1923 struct cmd_token *word = argv[1];
1924
1925 if (!isalpha((int)word->arg[0])) {
1926 vty_out(vty, "Please specify string starting with alphabet\n");
1927 return CMD_WARNING_CONFIG_FAILED;
1928 }
1929
1930 return cmd_domainname_set(word->arg);
1931 }
1932
1933 DEFUN(config_no_domainname,
1934 no_domainname_cmd,
1935 "no domainname [DOMAINNAME]",
1936 NO_STR
1937 "Reset system's domain name\n"
1938 "domain name of this router\n")
1939 {
1940 return cmd_domainname_set(NULL);
1941 }
1942
1943 int cmd_hostname_set(const char *hostname)
1944 {
1945 XFREE(MTYPE_HOST, host.name);
1946 host.name = hostname ? XSTRDUP(MTYPE_HOST, hostname) : NULL;
1947 return CMD_SUCCESS;
1948 }
1949
1950 /* Hostname configuration */
1951 DEFUN (config_hostname,
1952 hostname_cmd,
1953 "hostname WORD",
1954 "Set system's network name\n"
1955 "This system's network name\n")
1956 {
1957 struct cmd_token *word = argv[1];
1958
1959 if (!isalnum((int)word->arg[0])) {
1960 vty_out(vty, "Please specify string starting with alphabet\n");
1961 return CMD_WARNING_CONFIG_FAILED;
1962 }
1963
1964 return cmd_hostname_set(word->arg);
1965 }
1966
1967 DEFUN (config_no_hostname,
1968 no_hostname_cmd,
1969 "no hostname [HOSTNAME]",
1970 NO_STR
1971 "Reset system's network name\n"
1972 "Host name of this router\n")
1973 {
1974 return cmd_hostname_set(NULL);
1975 }
1976
1977 /* VTY interface password set. */
1978 DEFUN (config_password,
1979 password_cmd,
1980 "password [(8-8)] WORD",
1981 "Modify the terminal connection password\n"
1982 "Specifies a HIDDEN password will follow\n"
1983 "The password string\n")
1984 {
1985 int idx_8 = 1;
1986 int idx_word = 2;
1987 if (argc == 3) // '8' was specified
1988 {
1989 if (host.password)
1990 XFREE(MTYPE_HOST, host.password);
1991 host.password = NULL;
1992 if (host.password_encrypt)
1993 XFREE(MTYPE_HOST, host.password_encrypt);
1994 host.password_encrypt =
1995 XSTRDUP(MTYPE_HOST, argv[idx_word]->arg);
1996 return CMD_SUCCESS;
1997 }
1998
1999 if (!isalnum((int)argv[idx_8]->arg[0])) {
2000 vty_out(vty,
2001 "Please specify string starting with alphanumeric\n");
2002 return CMD_WARNING_CONFIG_FAILED;
2003 }
2004
2005 if (host.password)
2006 XFREE(MTYPE_HOST, host.password);
2007 host.password = NULL;
2008
2009 if (host.encrypt) {
2010 if (host.password_encrypt)
2011 XFREE(MTYPE_HOST, host.password_encrypt);
2012 host.password_encrypt =
2013 XSTRDUP(MTYPE_HOST, zencrypt(argv[idx_8]->arg));
2014 } else
2015 host.password = XSTRDUP(MTYPE_HOST, argv[idx_8]->arg);
2016
2017 return CMD_SUCCESS;
2018 }
2019
2020 /* VTY interface password delete. */
2021 DEFUN (no_config_password,
2022 no_password_cmd,
2023 "no password",
2024 NO_STR
2025 "Modify the terminal connection password\n")
2026 {
2027 bool warned = false;
2028
2029 if (host.password) {
2030 if (!vty_shell_serv(vty)) {
2031 vty_out(vty, NO_PASSWD_CMD_WARNING);
2032 warned = true;
2033 }
2034 XFREE(MTYPE_HOST, host.password);
2035 }
2036 host.password = NULL;
2037
2038 if (host.password_encrypt) {
2039 if (!warned && !vty_shell_serv(vty))
2040 vty_out(vty, NO_PASSWD_CMD_WARNING);
2041 XFREE(MTYPE_HOST, host.password_encrypt);
2042 }
2043 host.password_encrypt = NULL;
2044
2045 return CMD_SUCCESS;
2046 }
2047
2048 /* VTY enable password set. */
2049 DEFUN (config_enable_password,
2050 enable_password_cmd,
2051 "enable password [(8-8)] WORD",
2052 "Modify enable password parameters\n"
2053 "Assign the privileged level password\n"
2054 "Specifies a HIDDEN password will follow\n"
2055 "The HIDDEN 'enable' password string\n")
2056 {
2057 int idx_8 = 2;
2058 int idx_word = 3;
2059
2060 /* Crypt type is specified. */
2061 if (argc == 4) {
2062 if (argv[idx_8]->arg[0] == '8') {
2063 if (host.enable)
2064 XFREE(MTYPE_HOST, host.enable);
2065 host.enable = NULL;
2066
2067 if (host.enable_encrypt)
2068 XFREE(MTYPE_HOST, host.enable_encrypt);
2069 host.enable_encrypt =
2070 XSTRDUP(MTYPE_HOST, argv[idx_word]->arg);
2071
2072 return CMD_SUCCESS;
2073 } else {
2074 vty_out(vty, "Unknown encryption type.\n");
2075 return CMD_WARNING_CONFIG_FAILED;
2076 }
2077 }
2078
2079 if (!isalnum((int)argv[idx_8]->arg[0])) {
2080 vty_out(vty,
2081 "Please specify string starting with alphanumeric\n");
2082 return CMD_WARNING_CONFIG_FAILED;
2083 }
2084
2085 if (host.enable)
2086 XFREE(MTYPE_HOST, host.enable);
2087 host.enable = NULL;
2088
2089 /* Plain password input. */
2090 if (host.encrypt) {
2091 if (host.enable_encrypt)
2092 XFREE(MTYPE_HOST, host.enable_encrypt);
2093 host.enable_encrypt =
2094 XSTRDUP(MTYPE_HOST, zencrypt(argv[idx_8]->arg));
2095 } else
2096 host.enable = XSTRDUP(MTYPE_HOST, argv[idx_8]->arg);
2097
2098 return CMD_SUCCESS;
2099 }
2100
2101 /* VTY enable password delete. */
2102 DEFUN (no_config_enable_password,
2103 no_enable_password_cmd,
2104 "no enable password",
2105 NO_STR
2106 "Modify enable password parameters\n"
2107 "Assign the privileged level password\n")
2108 {
2109 bool warned = false;
2110
2111 if (host.enable) {
2112 if (!vty_shell_serv(vty)) {
2113 vty_out(vty, NO_PASSWD_CMD_WARNING);
2114 warned = true;
2115 }
2116 XFREE(MTYPE_HOST, host.enable);
2117 }
2118 host.enable = NULL;
2119
2120 if (host.enable_encrypt) {
2121 if (!warned && !vty_shell_serv(vty))
2122 vty_out(vty, NO_PASSWD_CMD_WARNING);
2123 XFREE(MTYPE_HOST, host.enable_encrypt);
2124 }
2125 host.enable_encrypt = NULL;
2126
2127 return CMD_SUCCESS;
2128 }
2129
2130 DEFUN (service_password_encrypt,
2131 service_password_encrypt_cmd,
2132 "service password-encryption",
2133 "Set up miscellaneous service\n"
2134 "Enable encrypted passwords\n")
2135 {
2136 if (host.encrypt)
2137 return CMD_SUCCESS;
2138
2139 host.encrypt = 1;
2140
2141 if (host.password) {
2142 if (host.password_encrypt)
2143 XFREE(MTYPE_HOST, host.password_encrypt);
2144 host.password_encrypt =
2145 XSTRDUP(MTYPE_HOST, zencrypt(host.password));
2146 }
2147 if (host.enable) {
2148 if (host.enable_encrypt)
2149 XFREE(MTYPE_HOST, host.enable_encrypt);
2150 host.enable_encrypt =
2151 XSTRDUP(MTYPE_HOST, zencrypt(host.enable));
2152 }
2153
2154 return CMD_SUCCESS;
2155 }
2156
2157 DEFUN (no_service_password_encrypt,
2158 no_service_password_encrypt_cmd,
2159 "no service password-encryption",
2160 NO_STR
2161 "Set up miscellaneous service\n"
2162 "Enable encrypted passwords\n")
2163 {
2164 if (!host.encrypt)
2165 return CMD_SUCCESS;
2166
2167 host.encrypt = 0;
2168
2169 if (host.password_encrypt)
2170 XFREE(MTYPE_HOST, host.password_encrypt);
2171 host.password_encrypt = NULL;
2172
2173 if (host.enable_encrypt)
2174 XFREE(MTYPE_HOST, host.enable_encrypt);
2175 host.enable_encrypt = NULL;
2176
2177 return CMD_SUCCESS;
2178 }
2179
2180 DEFUN (config_terminal_length,
2181 config_terminal_length_cmd,
2182 "terminal length (0-512)",
2183 "Set terminal line parameters\n"
2184 "Set number of lines on a screen\n"
2185 "Number of lines on screen (0 for no pausing)\n")
2186 {
2187 int idx_number = 2;
2188
2189 vty->lines = atoi(argv[idx_number]->arg);
2190
2191 return CMD_SUCCESS;
2192 }
2193
2194 DEFUN (config_terminal_no_length,
2195 config_terminal_no_length_cmd,
2196 "terminal no length",
2197 "Set terminal line parameters\n"
2198 NO_STR
2199 "Set number of lines on a screen\n")
2200 {
2201 vty->lines = -1;
2202 return CMD_SUCCESS;
2203 }
2204
2205 DEFUN (service_terminal_length,
2206 service_terminal_length_cmd,
2207 "service terminal-length (0-512)",
2208 "Set up miscellaneous service\n"
2209 "System wide terminal length configuration\n"
2210 "Number of lines of VTY (0 means no line control)\n")
2211 {
2212 int idx_number = 2;
2213
2214 host.lines = atoi(argv[idx_number]->arg);
2215
2216 return CMD_SUCCESS;
2217 }
2218
2219 DEFUN (no_service_terminal_length,
2220 no_service_terminal_length_cmd,
2221 "no service terminal-length [(0-512)]",
2222 NO_STR
2223 "Set up miscellaneous service\n"
2224 "System wide terminal length configuration\n"
2225 "Number of lines of VTY (0 means no line control)\n")
2226 {
2227 host.lines = -1;
2228 return CMD_SUCCESS;
2229 }
2230
2231 DEFUN_HIDDEN (do_echo,
2232 echo_cmd,
2233 "echo MESSAGE...",
2234 "Echo a message back to the vty\n"
2235 "The message to echo\n")
2236 {
2237 char *message;
2238
2239 vty_out(vty, "%s\n",
2240 ((message = argv_concat(argv, argc, 1)) ? message : ""));
2241 if (message)
2242 XFREE(MTYPE_TMP, message);
2243 return CMD_SUCCESS;
2244 }
2245
2246 DEFUN (config_logmsg,
2247 config_logmsg_cmd,
2248 "logmsg <emergencies|alerts|critical|errors|warnings|notifications|informational|debugging> MESSAGE...",
2249 "Send a message to enabled logging destinations\n"
2250 LOG_LEVEL_DESC
2251 "The message to send\n")
2252 {
2253 int idx_log_level = 1;
2254 int idx_message = 2;
2255 int level;
2256 char *message;
2257
2258 if ((level = level_match(argv[idx_log_level]->arg)) == ZLOG_DISABLED)
2259 return CMD_ERR_NO_MATCH;
2260
2261 zlog(level, "%s",
2262 ((message = argv_concat(argv, argc, idx_message)) ? message : ""));
2263 if (message)
2264 XFREE(MTYPE_TMP, message);
2265
2266 return CMD_SUCCESS;
2267 }
2268
2269 DEFUN (show_logging,
2270 show_logging_cmd,
2271 "show logging",
2272 SHOW_STR
2273 "Show current logging configuration\n")
2274 {
2275 struct zlog *zl = zlog_default;
2276
2277 vty_out(vty, "Syslog logging: ");
2278 if (zl->maxlvl[ZLOG_DEST_SYSLOG] == ZLOG_DISABLED)
2279 vty_out(vty, "disabled");
2280 else
2281 vty_out(vty, "level %s, facility %s, ident %s",
2282 zlog_priority[zl->maxlvl[ZLOG_DEST_SYSLOG]],
2283 facility_name(zl->facility), zl->ident);
2284 vty_out(vty, "\n");
2285
2286 vty_out(vty, "Stdout logging: ");
2287 if (zl->maxlvl[ZLOG_DEST_STDOUT] == ZLOG_DISABLED)
2288 vty_out(vty, "disabled");
2289 else
2290 vty_out(vty, "level %s",
2291 zlog_priority[zl->maxlvl[ZLOG_DEST_STDOUT]]);
2292 vty_out(vty, "\n");
2293
2294 vty_out(vty, "Monitor logging: ");
2295 if (zl->maxlvl[ZLOG_DEST_MONITOR] == ZLOG_DISABLED)
2296 vty_out(vty, "disabled");
2297 else
2298 vty_out(vty, "level %s",
2299 zlog_priority[zl->maxlvl[ZLOG_DEST_MONITOR]]);
2300 vty_out(vty, "\n");
2301
2302 vty_out(vty, "File logging: ");
2303 if ((zl->maxlvl[ZLOG_DEST_FILE] == ZLOG_DISABLED) || !zl->fp)
2304 vty_out(vty, "disabled");
2305 else
2306 vty_out(vty, "level %s, filename %s",
2307 zlog_priority[zl->maxlvl[ZLOG_DEST_FILE]],
2308 zl->filename);
2309 vty_out(vty, "\n");
2310
2311 vty_out(vty, "Protocol name: %s\n", zl->protoname);
2312 vty_out(vty, "Record priority: %s\n",
2313 (zl->record_priority ? "enabled" : "disabled"));
2314 vty_out(vty, "Timestamp precision: %d\n", zl->timestamp_precision);
2315
2316 return CMD_SUCCESS;
2317 }
2318
2319 DEFUN (config_log_stdout,
2320 config_log_stdout_cmd,
2321 "log stdout [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2322 "Logging control\n"
2323 "Set stdout logging level\n"
2324 LOG_LEVEL_DESC)
2325 {
2326 int idx_log_level = 2;
2327
2328 if (argc == idx_log_level) {
2329 zlog_set_level(ZLOG_DEST_STDOUT, zlog_default->default_lvl);
2330 return CMD_SUCCESS;
2331 }
2332 int level;
2333
2334 if ((level = level_match(argv[idx_log_level]->arg)) == ZLOG_DISABLED)
2335 return CMD_ERR_NO_MATCH;
2336 zlog_set_level(ZLOG_DEST_STDOUT, level);
2337 return CMD_SUCCESS;
2338 }
2339
2340 DEFUN (no_config_log_stdout,
2341 no_config_log_stdout_cmd,
2342 "no log stdout [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2343 NO_STR
2344 "Logging control\n"
2345 "Cancel logging to stdout\n"
2346 LOG_LEVEL_DESC)
2347 {
2348 zlog_set_level(ZLOG_DEST_STDOUT, ZLOG_DISABLED);
2349 return CMD_SUCCESS;
2350 }
2351
2352 DEFUN (config_log_monitor,
2353 config_log_monitor_cmd,
2354 "log monitor [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2355 "Logging control\n"
2356 "Set terminal line (monitor) logging level\n"
2357 LOG_LEVEL_DESC)
2358 {
2359 int idx_log_level = 2;
2360
2361 if (argc == idx_log_level) {
2362 zlog_set_level(ZLOG_DEST_MONITOR, zlog_default->default_lvl);
2363 return CMD_SUCCESS;
2364 }
2365 int level;
2366
2367 if ((level = level_match(argv[idx_log_level]->arg)) == ZLOG_DISABLED)
2368 return CMD_ERR_NO_MATCH;
2369 zlog_set_level(ZLOG_DEST_MONITOR, level);
2370 return CMD_SUCCESS;
2371 }
2372
2373 DEFUN (no_config_log_monitor,
2374 no_config_log_monitor_cmd,
2375 "no log monitor [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2376 NO_STR
2377 "Logging control\n"
2378 "Disable terminal line (monitor) logging\n"
2379 LOG_LEVEL_DESC)
2380 {
2381 zlog_set_level(ZLOG_DEST_MONITOR, ZLOG_DISABLED);
2382 return CMD_SUCCESS;
2383 }
2384
2385 static int set_log_file(struct vty *vty, const char *fname, int loglevel)
2386 {
2387 int ret;
2388 char *p = NULL;
2389 const char *fullpath;
2390
2391 /* Path detection. */
2392 if (!IS_DIRECTORY_SEP(*fname)) {
2393 char cwd[MAXPATHLEN + 1];
2394 cwd[MAXPATHLEN] = '\0';
2395
2396 if (getcwd(cwd, MAXPATHLEN) == NULL) {
2397 flog_err_sys(EC_LIB_SYSTEM_CALL,
2398 "config_log_file: Unable to alloc mem!");
2399 return CMD_WARNING_CONFIG_FAILED;
2400 }
2401
2402 p = XMALLOC(MTYPE_TMP, strlen(cwd) + strlen(fname) + 2);
2403 sprintf(p, "%s/%s", cwd, fname);
2404 fullpath = p;
2405 } else
2406 fullpath = fname;
2407
2408 ret = zlog_set_file(fullpath, loglevel);
2409
2410 XFREE(MTYPE_TMP, p);
2411
2412 if (!ret) {
2413 if (vty)
2414 vty_out(vty, "can't open logfile %s\n", fname);
2415 return CMD_WARNING_CONFIG_FAILED;
2416 }
2417
2418 XFREE(MTYPE_HOST, host.logfile);
2419
2420 host.logfile = XSTRDUP(MTYPE_HOST, fname);
2421
2422 #if defined(HAVE_CUMULUS)
2423 if (zlog_default->maxlvl[ZLOG_DEST_SYSLOG] != ZLOG_DISABLED)
2424 zlog_set_level(ZLOG_DEST_SYSLOG, ZLOG_DISABLED);
2425 #endif
2426 return CMD_SUCCESS;
2427 }
2428
2429 void command_setup_early_logging(const char *dest, const char *level)
2430 {
2431 char *token;
2432
2433 if (level) {
2434 int nlevel = level_match(level);
2435
2436 if (nlevel != ZLOG_DISABLED)
2437 zlog_default->default_lvl = nlevel;
2438 }
2439
2440 if (!dest)
2441 return;
2442
2443 if (strcmp(dest, "stdout") == 0) {
2444 zlog_set_level(ZLOG_DEST_STDOUT, zlog_default->default_lvl);
2445 return;
2446 }
2447
2448 if (strcmp(dest, "syslog") == 0) {
2449 zlog_set_level(ZLOG_DEST_SYSLOG, zlog_default->default_lvl);
2450 return;
2451 }
2452
2453 token = strstr(dest, ":");
2454 if (token == NULL)
2455 return;
2456
2457 token++;
2458
2459 set_log_file(NULL, token, zlog_default->default_lvl);
2460 }
2461
2462 DEFUN (config_log_file,
2463 config_log_file_cmd,
2464 "log file FILENAME [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2465 "Logging control\n"
2466 "Logging to file\n"
2467 "Logging filename\n"
2468 LOG_LEVEL_DESC)
2469 {
2470 int idx_filename = 2;
2471 int idx_log_levels = 3;
2472 if (argc == 4) {
2473 int level;
2474 if ((level = level_match(argv[idx_log_levels]->arg))
2475 == ZLOG_DISABLED)
2476 return CMD_ERR_NO_MATCH;
2477 return set_log_file(vty, argv[idx_filename]->arg, level);
2478 } else
2479 return set_log_file(vty, argv[idx_filename]->arg,
2480 zlog_default->default_lvl);
2481 }
2482
2483 static void disable_log_file(void)
2484 {
2485 zlog_reset_file();
2486
2487 XFREE(MTYPE_HOST, host.logfile);
2488
2489 host.logfile = NULL;
2490 }
2491
2492 DEFUN (no_config_log_file,
2493 no_config_log_file_cmd,
2494 "no log file [FILENAME [LEVEL]]",
2495 NO_STR
2496 "Logging control\n"
2497 "Cancel logging to file\n"
2498 "Logging file name\n"
2499 "Logging level\n")
2500 {
2501 disable_log_file();
2502 return CMD_SUCCESS;
2503 }
2504
2505 DEFUN (config_log_syslog,
2506 config_log_syslog_cmd,
2507 "log syslog [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2508 "Logging control\n"
2509 "Set syslog logging level\n"
2510 LOG_LEVEL_DESC)
2511 {
2512 int idx_log_levels = 2;
2513
2514 if (argc == 3) {
2515 int level;
2516 if ((level = level_match(argv[idx_log_levels]->arg))
2517 == ZLOG_DISABLED)
2518 return CMD_ERR_NO_MATCH;
2519 zlog_set_level(ZLOG_DEST_SYSLOG, level);
2520 return CMD_SUCCESS;
2521 } else {
2522 zlog_set_level(ZLOG_DEST_SYSLOG, zlog_default->default_lvl);
2523 return CMD_SUCCESS;
2524 }
2525 }
2526
2527 DEFUN (no_config_log_syslog,
2528 no_config_log_syslog_cmd,
2529 "no log syslog [<kern|user|mail|daemon|auth|syslog|lpr|news|uucp|cron|local0|local1|local2|local3|local4|local5|local6|local7>] [<emergencies|alerts|critical|errors|warnings|notifications|informational|debugging>]",
2530 NO_STR
2531 "Logging control\n"
2532 "Cancel logging to syslog\n"
2533 LOG_FACILITY_DESC
2534 LOG_LEVEL_DESC)
2535 {
2536 zlog_set_level(ZLOG_DEST_SYSLOG, ZLOG_DISABLED);
2537 return CMD_SUCCESS;
2538 }
2539
2540 DEFUN (config_log_facility,
2541 config_log_facility_cmd,
2542 "log facility <kern|user|mail|daemon|auth|syslog|lpr|news|uucp|cron|local0|local1|local2|local3|local4|local5|local6|local7>",
2543 "Logging control\n"
2544 "Facility parameter for syslog messages\n"
2545 LOG_FACILITY_DESC)
2546 {
2547 int idx_target = 2;
2548 int facility = facility_match(argv[idx_target]->arg);
2549
2550 zlog_default->facility = facility;
2551 return CMD_SUCCESS;
2552 }
2553
2554 DEFUN (no_config_log_facility,
2555 no_config_log_facility_cmd,
2556 "no log facility [<kern|user|mail|daemon|auth|syslog|lpr|news|uucp|cron|local0|local1|local2|local3|local4|local5|local6|local7>]",
2557 NO_STR
2558 "Logging control\n"
2559 "Reset syslog facility to default (daemon)\n"
2560 LOG_FACILITY_DESC)
2561 {
2562 zlog_default->facility = LOG_DAEMON;
2563 return CMD_SUCCESS;
2564 }
2565
2566 DEFUN (config_log_record_priority,
2567 config_log_record_priority_cmd,
2568 "log record-priority",
2569 "Logging control\n"
2570 "Log the priority of the message within the message\n")
2571 {
2572 zlog_default->record_priority = 1;
2573 return CMD_SUCCESS;
2574 }
2575
2576 DEFUN (no_config_log_record_priority,
2577 no_config_log_record_priority_cmd,
2578 "no log record-priority",
2579 NO_STR
2580 "Logging control\n"
2581 "Do not log the priority of the message within the message\n")
2582 {
2583 zlog_default->record_priority = 0;
2584 return CMD_SUCCESS;
2585 }
2586
2587 DEFUN (config_log_timestamp_precision,
2588 config_log_timestamp_precision_cmd,
2589 "log timestamp precision (0-6)",
2590 "Logging control\n"
2591 "Timestamp configuration\n"
2592 "Set the timestamp precision\n"
2593 "Number of subsecond digits\n")
2594 {
2595 int idx_number = 3;
2596 zlog_default->timestamp_precision =
2597 strtoul(argv[idx_number]->arg, NULL, 10);
2598 return CMD_SUCCESS;
2599 }
2600
2601 DEFUN (no_config_log_timestamp_precision,
2602 no_config_log_timestamp_precision_cmd,
2603 "no log timestamp precision",
2604 NO_STR
2605 "Logging control\n"
2606 "Timestamp configuration\n"
2607 "Reset the timestamp precision to the default value of 0\n")
2608 {
2609 zlog_default->timestamp_precision = 0;
2610 return CMD_SUCCESS;
2611 }
2612
2613 DEFUN (debug_memstats,
2614 debug_memstats_cmd,
2615 "[no] debug memstats-at-exit",
2616 NO_STR
2617 DEBUG_STR
2618 "Print memory type statistics at exit\n")
2619 {
2620 debug_memstats_at_exit = !!strcmp(argv[0]->text, "no");
2621 return CMD_SUCCESS;
2622 }
2623
2624 int cmd_banner_motd_file(const char *file)
2625 {
2626 int success = CMD_SUCCESS;
2627 char p[PATH_MAX];
2628 char *rpath;
2629 char *in;
2630
2631 rpath = realpath(file, p);
2632 if (!rpath)
2633 return CMD_ERR_NO_FILE;
2634 in = strstr(rpath, SYSCONFDIR);
2635 if (in == rpath) {
2636 XFREE(MTYPE_HOST, host.motdfile);
2637 host.motdfile = XSTRDUP(MTYPE_HOST, file);
2638 } else
2639 success = CMD_WARNING_CONFIG_FAILED;
2640
2641 return success;
2642 }
2643
2644 DEFUN (banner_motd_file,
2645 banner_motd_file_cmd,
2646 "banner motd file FILE",
2647 "Set banner\n"
2648 "Banner for motd\n"
2649 "Banner from a file\n"
2650 "Filename\n")
2651 {
2652 int idx_file = 3;
2653 const char *filename = argv[idx_file]->arg;
2654 int cmd = cmd_banner_motd_file(filename);
2655
2656 if (cmd == CMD_ERR_NO_FILE)
2657 vty_out(vty, "%s does not exist", filename);
2658 else if (cmd == CMD_WARNING_CONFIG_FAILED)
2659 vty_out(vty, "%s must be in %s", filename, SYSCONFDIR);
2660
2661 return cmd;
2662 }
2663
2664 DEFUN (banner_motd_default,
2665 banner_motd_default_cmd,
2666 "banner motd default",
2667 "Set banner string\n"
2668 "Strings for motd\n"
2669 "Default string\n")
2670 {
2671 host.motd = default_motd;
2672 return CMD_SUCCESS;
2673 }
2674
2675 DEFUN (no_banner_motd,
2676 no_banner_motd_cmd,
2677 "no banner motd",
2678 NO_STR
2679 "Set banner string\n"
2680 "Strings for motd\n")
2681 {
2682 host.motd = NULL;
2683 if (host.motdfile)
2684 XFREE(MTYPE_HOST, host.motdfile);
2685 host.motdfile = NULL;
2686 return CMD_SUCCESS;
2687 }
2688
2689 DEFUN(find,
2690 find_cmd,
2691 "find COMMAND...",
2692 "Find CLI command containing text\n"
2693 "Text to search for\n")
2694 {
2695 char *text = argv_concat(argv, argc, 1);
2696 const struct cmd_node *node;
2697 const struct cmd_element *cli;
2698 vector clis;
2699
2700 for (unsigned int i = 0; i < vector_active(cmdvec); i++) {
2701 node = vector_slot(cmdvec, i);
2702 if (!node)
2703 continue;
2704 clis = node->cmd_vector;
2705 for (unsigned int j = 0; j < vector_active(clis); j++) {
2706 cli = vector_slot(clis, j);
2707 if (strcasestr(cli->string, text))
2708 vty_out(vty, " (%s) %s\n",
2709 node_names[node->node], cli->string);
2710 }
2711 }
2712
2713 XFREE(MTYPE_TMP, text);
2714
2715 return CMD_SUCCESS;
2716 }
2717
2718 /* Set config filename. Called from vty.c */
2719 void host_config_set(const char *filename)
2720 {
2721 XFREE(MTYPE_HOST, host.config);
2722 host.config = XSTRDUP(MTYPE_HOST, filename);
2723 }
2724
2725 const char *host_config_get(void)
2726 {
2727 return host.config;
2728 }
2729
2730 void install_default(enum node_type node)
2731 {
2732 install_element(node, &config_exit_cmd);
2733 install_element(node, &config_quit_cmd);
2734 install_element(node, &config_end_cmd);
2735 install_element(node, &config_help_cmd);
2736 install_element(node, &config_list_cmd);
2737 install_element(node, &show_cli_graph_cmd);
2738 install_element(node, &find_cmd);
2739
2740 install_element(node, &config_write_cmd);
2741 install_element(node, &show_running_config_cmd);
2742
2743 install_element(node, &autocomplete_cmd);
2744
2745 nb_cli_install_default(node);
2746 }
2747
2748 /* Initialize command interface. Install basic nodes and commands.
2749 *
2750 * terminal = 0 -- vtysh / no logging, no config control
2751 * terminal = 1 -- normal daemon
2752 * terminal = -1 -- watchfrr / no logging, but minimal config control */
2753 void cmd_init(int terminal)
2754 {
2755 struct utsname names;
2756
2757 if (array_size(node_names) != NODE_TYPE_MAX)
2758 assert(!"Update the CLI node description array!");
2759
2760 uname(&names);
2761 qobj_init();
2762
2763 /* register command preprocessors */
2764 hook_register(cmd_execute, handle_pipe_action);
2765 hook_register(cmd_execute_done, handle_pipe_action_done);
2766
2767 varhandlers = list_new();
2768
2769 /* Allocate initial top vector of commands. */
2770 cmdvec = vector_init(VECTOR_MIN_SIZE);
2771
2772 /* Default host value settings. */
2773 host.name = XSTRDUP(MTYPE_HOST, names.nodename);
2774 #ifdef HAVE_STRUCT_UTSNAME_DOMAINNAME
2775 if ((strcmp(names.domainname, "(none)") == 0))
2776 host.domainname = NULL;
2777 else
2778 host.domainname = XSTRDUP(MTYPE_HOST, names.domainname);
2779 #else
2780 host.domainname = NULL;
2781 #endif
2782 host.password = NULL;
2783 host.enable = NULL;
2784 host.logfile = NULL;
2785 host.config = NULL;
2786 host.noconfig = (terminal < 0);
2787 host.lines = -1;
2788 host.motd = default_motd;
2789 host.motdfile = NULL;
2790
2791 /* Install top nodes. */
2792 install_node(&view_node, NULL);
2793 install_node(&enable_node, NULL);
2794 install_node(&auth_node, NULL);
2795 install_node(&auth_enable_node, NULL);
2796 install_node(&config_node, config_write_host);
2797
2798 /* Each node's basic commands. */
2799 install_element(VIEW_NODE, &show_version_cmd);
2800 install_element(ENABLE_NODE, &show_startup_config_cmd);
2801 install_element(ENABLE_NODE, &debug_memstats_cmd);
2802
2803 if (terminal) {
2804 install_element(VIEW_NODE, &config_list_cmd);
2805 install_element(VIEW_NODE, &config_exit_cmd);
2806 install_element(VIEW_NODE, &config_quit_cmd);
2807 install_element(VIEW_NODE, &config_help_cmd);
2808 install_element(VIEW_NODE, &config_enable_cmd);
2809 install_element(VIEW_NODE, &config_terminal_length_cmd);
2810 install_element(VIEW_NODE, &config_terminal_no_length_cmd);
2811 install_element(VIEW_NODE, &show_logging_cmd);
2812 install_element(VIEW_NODE, &show_commandtree_cmd);
2813 install_element(VIEW_NODE, &echo_cmd);
2814 install_element(VIEW_NODE, &autocomplete_cmd);
2815 install_element(VIEW_NODE, &find_cmd);
2816
2817 install_element(ENABLE_NODE, &config_end_cmd);
2818 install_element(ENABLE_NODE, &config_disable_cmd);
2819 install_element(ENABLE_NODE, &config_terminal_cmd);
2820 install_element(ENABLE_NODE, &copy_runningconf_startupconf_cmd);
2821 install_element(ENABLE_NODE, &config_write_cmd);
2822 install_element(ENABLE_NODE, &show_running_config_cmd);
2823 install_element(ENABLE_NODE, &config_logmsg_cmd);
2824
2825 install_default(CONFIG_NODE);
2826
2827 thread_cmd_init();
2828 workqueue_cmd_init();
2829 hash_cmd_init();
2830 }
2831
2832 install_element(CONFIG_NODE, &hostname_cmd);
2833 install_element(CONFIG_NODE, &no_hostname_cmd);
2834 install_element(CONFIG_NODE, &domainname_cmd);
2835 install_element(CONFIG_NODE, &no_domainname_cmd);
2836 install_element(CONFIG_NODE, &frr_version_defaults_cmd);
2837 install_element(CONFIG_NODE, &debug_memstats_cmd);
2838
2839 if (terminal > 0) {
2840 install_element(CONFIG_NODE, &password_cmd);
2841 install_element(CONFIG_NODE, &no_password_cmd);
2842 install_element(CONFIG_NODE, &enable_password_cmd);
2843 install_element(CONFIG_NODE, &no_enable_password_cmd);
2844
2845 install_element(CONFIG_NODE, &config_log_stdout_cmd);
2846 install_element(CONFIG_NODE, &no_config_log_stdout_cmd);
2847 install_element(CONFIG_NODE, &config_log_monitor_cmd);
2848 install_element(CONFIG_NODE, &no_config_log_monitor_cmd);
2849 install_element(CONFIG_NODE, &config_log_file_cmd);
2850 install_element(CONFIG_NODE, &no_config_log_file_cmd);
2851 install_element(CONFIG_NODE, &config_log_syslog_cmd);
2852 install_element(CONFIG_NODE, &no_config_log_syslog_cmd);
2853 install_element(CONFIG_NODE, &config_log_facility_cmd);
2854 install_element(CONFIG_NODE, &no_config_log_facility_cmd);
2855 install_element(CONFIG_NODE, &config_log_record_priority_cmd);
2856 install_element(CONFIG_NODE,
2857 &no_config_log_record_priority_cmd);
2858 install_element(CONFIG_NODE,
2859 &config_log_timestamp_precision_cmd);
2860 install_element(CONFIG_NODE,
2861 &no_config_log_timestamp_precision_cmd);
2862 install_element(CONFIG_NODE, &service_password_encrypt_cmd);
2863 install_element(CONFIG_NODE, &no_service_password_encrypt_cmd);
2864 install_element(CONFIG_NODE, &banner_motd_default_cmd);
2865 install_element(CONFIG_NODE, &banner_motd_file_cmd);
2866 install_element(CONFIG_NODE, &no_banner_motd_cmd);
2867 install_element(CONFIG_NODE, &service_terminal_length_cmd);
2868 install_element(CONFIG_NODE, &no_service_terminal_length_cmd);
2869
2870 vrf_install_commands();
2871 }
2872
2873 #ifdef DEV_BUILD
2874 grammar_sandbox_init();
2875 #endif
2876 }
2877
2878 void cmd_terminate(void)
2879 {
2880 struct cmd_node *cmd_node;
2881
2882 hook_unregister(cmd_execute, handle_pipe_action);
2883 hook_unregister(cmd_execute_done, handle_pipe_action_done);
2884
2885 if (cmdvec) {
2886 for (unsigned int i = 0; i < vector_active(cmdvec); i++)
2887 if ((cmd_node = vector_slot(cmdvec, i)) != NULL) {
2888 // deleting the graph delets the cmd_element as
2889 // well
2890 graph_delete_graph(cmd_node->cmdgraph);
2891 vector_free(cmd_node->cmd_vector);
2892 hash_clean(cmd_node->cmd_hash, NULL);
2893 hash_free(cmd_node->cmd_hash);
2894 cmd_node->cmd_hash = NULL;
2895 }
2896
2897 vector_free(cmdvec);
2898 cmdvec = NULL;
2899 }
2900
2901 XFREE(MTYPE_HOST, host.name);
2902 XFREE(MTYPE_HOST, host.domainname);
2903 XFREE(MTYPE_HOST, host.password);
2904 XFREE(MTYPE_HOST, host.password_encrypt);
2905 XFREE(MTYPE_HOST, host.enable);
2906 XFREE(MTYPE_HOST, host.enable_encrypt);
2907 XFREE(MTYPE_HOST, host.logfile);
2908 XFREE(MTYPE_HOST, host.motdfile);
2909 XFREE(MTYPE_HOST, host.config);
2910
2911 list_delete(&varhandlers);
2912 qobj_finish();
2913 }