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LU-9120 lnet: set health sensitivity from lnetctl
[fs/lustre-release.git] / lnet / utils / lnetconfig / liblnetconfig.c
1 /*
2  * LGPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU Lesser General Public License as
8  * published by the Free Software Foundation; either version 2.1 of the
9  * License, or (at your option) any later version.
10  *
11  * This library is distributed in the hope that it will be useful, but
12  * WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with this library. If not, see <http://www.gnu.org/licenses/>.
18  *
19  * LGPL HEADER END
20  *
21  * Copyright (c) 2014, 2017, Intel Corporation.
22  *
23  * Author:
24  *   Amir Shehata <amir.shehata@intel.com>
25  */
26
27 /*
28  * There are two APIs:
29  *  1. APIs that take the actual parameters expanded.  This is for other
30  *  entities that would like to link against the library and call the APIs
31  *  directly without having to form an intermediate representation.
32  *  2. APIs that take a YAML file and parses out the information there and
33  *  calls the APIs mentioned in 1
34  */
35
36 #include <errno.h>
37 #include <limits.h>
38 #include <byteswap.h>
39 #include <netdb.h>
40 #include <stdio.h>
41 #include <stdlib.h>
42 #include <string.h>
43 #include <unistd.h>
44 #include <sys/ioctl.h>
45 #include <net/if.h>
46 #include <libcfs/util/ioctl.h>
47 #include <linux/lnet/lnetctl.h>
48 #include "liblnd.h"
49 #include <sys/types.h>
50 #include <sys/stat.h>
51 #include <fcntl.h>
52 #include <ifaddrs.h>
53 #include "liblnetconfig.h"
54
55 #define CONFIG_CMD              "configure"
56 #define UNCONFIG_CMD            "unconfigure"
57 #define ADD_CMD                 "add"
58 #define DEL_CMD                 "del"
59 #define SHOW_CMD                "show"
60 #define DBG_CMD                 "dbg"
61 #define MANAGE_CMD              "manage"
62
63 #define MAX_NUM_IPS             128
64
65 #define modparam_path "/sys/module/lnet/parameters/"
66 #define gni_nid_path "/proc/cray_xt/"
67
68 const char *gmsg_stat_names[] = {"sent_stats", "received_stats",
69                                  "dropped_stats"};
70
71 /*
72  * lustre_lnet_ip_range_descr
73  *      Describes an IP range.
74  *      Each octect is an expression
75  */
76 struct lustre_lnet_ip_range_descr {
77         struct list_head ipr_entry;
78         struct list_head ipr_expr;
79 };
80
81 /*
82  * lustre_lnet_ip2nets
83  *      Describes an ip2nets rule. This can be on a list of rules.
84  */
85 struct lustre_lnet_ip2nets {
86         struct lnet_dlc_network_descr ip2nets_net;
87         struct list_head ip2nets_ip_ranges;
88 };
89
90 int open_sysfs_file(const char *path, const char *attr, const int mode)
91 {
92         int fd;
93         char filename[LNET_MAX_STR_LEN];
94
95         if (strlen(path) + strlen(attr) >= LNET_MAX_STR_LEN)
96                 return -1;
97
98         snprintf(filename, sizeof(filename), "%s%s",
99                  path, attr);
100
101         fd = open(filename, mode);
102
103         return fd;
104 }
105
106 static int read_sysfs_file(const char *path, const char *attr,
107                            void *val, const size_t size, const int nelem)
108 {
109         int fd;
110         int rc = LUSTRE_CFG_RC_GENERIC_ERR;
111
112         fd = open_sysfs_file(path, attr, O_RDONLY);
113         if (fd == -1)
114                 return LUSTRE_CFG_RC_NO_MATCH;
115
116         if (read(fd, val, size * nelem) == -1)
117                 goto close_fd;
118
119         rc = LUSTRE_CFG_RC_NO_ERR;
120
121 close_fd:
122         close(fd);
123         return rc;
124 }
125
126 static int write_sysfs_file(const char *path, const char *attr,
127                             void *val, const size_t size, const int nelem)
128 {
129         int fd;
130         int rc = LUSTRE_CFG_RC_GENERIC_ERR;
131
132         fd = open_sysfs_file(path, attr, O_WRONLY | O_TRUNC);
133         if (fd == -1)
134                 return LUSTRE_CFG_RC_NO_MATCH;
135
136         if (write(fd, val, size * nelem) == -1)
137                 goto close_fd;
138
139         rc = LUSTRE_CFG_RC_NO_ERR;
140
141 close_fd:
142         close(fd);
143         return rc;
144 }
145
146 /*
147  * free_intf_descr
148  *      frees the memory allocated for an intf descriptor.
149  */
150 void free_intf_descr(struct lnet_dlc_intf_descr *intf_descr)
151 {
152         if (!intf_descr)
153                 return;
154
155         if (intf_descr->cpt_expr != NULL)
156                 cfs_expr_list_free(intf_descr->cpt_expr);
157         free(intf_descr);
158 }
159
160 /*
161  * lustre_lnet_add_ip_range
162  * Formatting:
163  *      given a string of the format:
164  *      <expr.expr.expr.expr> parse each expr into
165  *      a lustre_lnet_ip_range_descr structure and insert on the list.
166  *
167  *      This function is called from
168  *              YAML on each ip-range.
169  *              As a result of lnetctl command
170  *              When building a NID or P2P selection rules
171  */
172 int lustre_lnet_add_ip_range(struct list_head *list, char *str_ip_range)
173 {
174         struct lustre_lnet_ip_range_descr *ip_range;
175         int rc;
176
177         ip_range = calloc(1, sizeof(*ip_range));
178         if (ip_range == NULL)
179                 return LUSTRE_CFG_RC_OUT_OF_MEM;
180
181         INIT_LIST_HEAD(&ip_range->ipr_entry);
182         INIT_LIST_HEAD(&ip_range->ipr_expr);
183
184         rc = cfs_ip_addr_parse(str_ip_range, strlen(str_ip_range),
185                                &ip_range->ipr_expr);
186         if (rc != 0)
187                 return LUSTRE_CFG_RC_BAD_PARAM;
188
189         list_add_tail(&ip_range->ipr_entry, list);
190
191         return LUSTRE_CFG_RC_NO_ERR;
192 }
193
194 int lustre_lnet_add_intf_descr(struct list_head *list, char *intf, int len)
195 {
196         char *open_sq_bracket = NULL, *close_sq_bracket = NULL,
197              *intf_name;
198         struct lnet_dlc_intf_descr *intf_descr = NULL;
199         int rc;
200         char intf_string[LNET_MAX_STR_LEN];
201
202         if (len >= LNET_MAX_STR_LEN)
203                 return LUSTRE_CFG_RC_BAD_PARAM;
204
205         strncpy(intf_string, intf, len);
206         intf_string[len] = '\0';
207
208         intf_descr = calloc(1, sizeof(*intf_descr));
209         if (intf_descr == NULL)
210                 return LUSTRE_CFG_RC_OUT_OF_MEM;
211
212         INIT_LIST_HEAD(&intf_descr->intf_on_network);
213
214         intf_name = intf_string;
215         open_sq_bracket = strchr(intf_string, '[');
216         if (open_sq_bracket != NULL) {
217                 close_sq_bracket = strchr(intf_string, ']');
218                 if (close_sq_bracket == NULL) {
219                         free(intf_descr);
220                         return LUSTRE_CFG_RC_BAD_PARAM;
221                 }
222                 rc = cfs_expr_list_parse(open_sq_bracket,
223                                          strlen(open_sq_bracket), 0, UINT_MAX,
224                                          &intf_descr->cpt_expr);
225                 if (rc < 0) {
226                         free(intf_descr);
227                         return LUSTRE_CFG_RC_BAD_PARAM;
228                 }
229                 strncpy(intf_descr->intf_name, intf_name,
230                         open_sq_bracket - intf_name);
231                 intf_descr->intf_name[open_sq_bracket - intf_name] = '\0';
232         } else {
233                 strcpy(intf_descr->intf_name, intf_name);
234                 intf_descr->cpt_expr = NULL;
235         }
236
237         list_add_tail(&intf_descr->intf_on_network, list);
238
239         return LUSTRE_CFG_RC_NO_ERR;
240 }
241
242 void lustre_lnet_init_nw_descr(struct lnet_dlc_network_descr *nw_descr)
243 {
244         if (nw_descr != NULL) {
245                 nw_descr->nw_id = 0;
246                 INIT_LIST_HEAD(&nw_descr->network_on_rule);
247                 INIT_LIST_HEAD(&nw_descr->nw_intflist);
248         }
249 }
250
251 static char *get_next_delimiter_in_nid(char *str, char sep)
252 {
253         char *at, *comma;
254
255         /* first find the '@' */
256         at = strchr(str, '@');
257         if (!at)
258                 return str;
259
260         /* now that you found the at find the sep after */
261         comma = strchr(at, sep);
262         return comma;
263 }
264
265 int lustre_lnet_parse_nids(char *nids, char **array, int size,
266                            char ***out_array)
267 {
268         int num_nids = 0;
269         char *comma = nids, *cur, *entry;
270         char **new_array;
271         int i, len, start = 0, finish = 0;
272
273         if (nids == NULL || strlen(nids) == 0)
274                 return size;
275
276         /* count the number or new nids, by counting the number of comma*/
277         while (comma) {
278                 comma = get_next_delimiter_in_nid(comma, ',');
279                 if (comma) {
280                         comma++;
281                         num_nids++;
282                 } else {
283                         num_nids++;
284                 }
285         }
286
287         /*
288          * if the array is not NULL allocate a large enough array to house
289          * the old and new entries
290          */
291         new_array = calloc(sizeof(char*),
292                            (size > 0) ? size + num_nids : num_nids);
293
294         if (!new_array)
295                 goto failed;
296
297         /* parse our the new nids and add them to the tail of the array */
298         comma = nids;
299         cur = nids;
300         start = (size > 0) ? size: 0;
301         finish = (size > 0) ? size + num_nids : num_nids;
302         for (i = start; i < finish; i++) {
303                 comma = get_next_delimiter_in_nid(comma, ',');
304                 if (!comma)
305                         /*
306                          * the length of the string to be parsed out is
307                          * from cur to end of string. So it's good enough
308                          * to strlen(cur)
309                          */
310                         len = strlen(cur) + 1;
311                 else
312                         /* length of the string is comma - cur */
313                         len = (comma - cur) + 1;
314
315                 entry = calloc(1, len);
316                 if (!entry) {
317                         finish = i > 0 ? i - 1: 0;
318                         goto failed;
319                 }
320                 strncpy(entry, cur, len - 1);
321                 entry[len] = '\0';
322                 new_array[i] = entry;
323                 if (comma) {
324                         comma++;
325                         cur = comma;
326                 }
327         }
328
329         /* add the old entries in the array and delete the old array*/
330         for (i = 0; i < size; i++)
331                 new_array[i] = array[i];
332
333         if (array)
334                 free(array);
335
336         *out_array = new_array;
337
338         return finish;
339
340 failed:
341         for (i = start; i < finish; i++)
342                 free(new_array[i]);
343         if (new_array)
344                 free(new_array);
345
346         return size;
347 }
348
349 /*
350  * format expected:
351  *      <intf>[<expr>], <intf>[<expr>],..
352  */
353 int lustre_lnet_parse_interfaces(char *intf_str,
354                                  struct lnet_dlc_network_descr *nw_descr)
355 {
356         char *open_square;
357         char *close_square;
358         char *comma;
359         char *cur = intf_str, *next = NULL;
360         char *end = intf_str + strlen(intf_str);
361         int rc, len;
362         struct lnet_dlc_intf_descr *intf_descr, *tmp;
363
364         if (nw_descr == NULL)
365                 return LUSTRE_CFG_RC_BAD_PARAM;
366
367         while (cur < end) {
368                 open_square = strchr(cur, '[');
369                 if (open_square != NULL) {
370                         close_square = strchr(cur, ']');
371                         if (close_square == NULL) {
372                                 rc = LUSTRE_CFG_RC_BAD_PARAM;
373                                 goto failed;
374                         }
375
376                         comma = strchr(cur, ',');
377                         if (comma != NULL && comma > close_square) {
378                                 next = comma + 1;
379                                 len = next - close_square;
380                         } else {
381                                 len = strlen(cur);
382                                 next = cur + len;
383                         }
384                 } else {
385                         comma = strchr(cur, ',');
386                         if (comma != NULL) {
387                                 next = comma + 1;
388                                 len = comma - cur;
389                         } else {
390                                 len = strlen(cur);
391                                 next = cur + len;
392                         }
393                 }
394
395                 rc = lustre_lnet_add_intf_descr(&nw_descr->nw_intflist, cur, len);
396                 if (rc != LUSTRE_CFG_RC_NO_ERR)
397                         goto failed;
398
399                 cur = next;
400         }
401
402         return LUSTRE_CFG_RC_NO_ERR;
403
404 failed:
405         list_for_each_entry_safe(intf_descr, tmp, &nw_descr->nw_intflist,
406                                  intf_on_network) {
407                 list_del(&intf_descr->intf_on_network);
408                 free_intf_descr(intf_descr);
409         }
410
411         return rc;
412 }
413
414 int lustre_lnet_config_lib_init(void)
415 {
416         return register_ioc_dev(LNET_DEV_ID, LNET_DEV_PATH);
417 }
418
419 void lustre_lnet_config_lib_uninit(void)
420 {
421         unregister_ioc_dev(LNET_DEV_ID);
422 }
423
424 int lustre_lnet_config_ni_system(bool up, bool load_ni_from_mod,
425                                  int seq_no, struct cYAML **err_rc)
426 {
427         struct libcfs_ioctl_data data;
428         unsigned int opc;
429         int rc;
430         char err_str[LNET_MAX_STR_LEN];
431
432         snprintf(err_str, sizeof(err_str), "\"Success\"");
433
434         LIBCFS_IOC_INIT(data);
435
436         /* Reverse logic is used here in order not to change
437          * the lctl utility */
438         data.ioc_flags = load_ni_from_mod ? 0 : 1;
439
440         opc = up ? IOC_LIBCFS_CONFIGURE : IOC_LIBCFS_UNCONFIGURE;
441
442         rc = l_ioctl(LNET_DEV_ID, opc, &data);
443         if (rc != 0) {
444                 snprintf(err_str,
445                         sizeof(err_str),
446                         "\"LNet %s error: %s\"", (up) ? "configure" :
447                         "unconfigure", strerror(errno));
448                 rc = -errno;
449         }
450
451         cYAML_build_error(rc, seq_no, (up) ? CONFIG_CMD : UNCONFIG_CMD,
452                           "lnet", err_str, err_rc);
453
454         return rc;
455 }
456
457 static int dispatch_peer_ni_cmd(lnet_nid_t pnid, lnet_nid_t nid, __u32 cmd,
458                                 struct lnet_ioctl_peer_cfg *data,
459                                 char *err_str, char *cmd_str)
460 {
461         int rc;
462
463         data->prcfg_prim_nid = pnid;
464         data->prcfg_cfg_nid = nid;
465
466         rc = l_ioctl(LNET_DEV_ID, cmd, data);
467         if (rc != 0) {
468                 rc = -errno;
469                 snprintf(err_str,
470                         LNET_MAX_STR_LEN,
471                         "\"cannot %s peer ni: %s\"",
472                         (cmd_str) ? cmd_str : "add", strerror(errno));
473                 err_str[LNET_MAX_STR_LEN - 1] = '\0';
474         }
475
476         return rc;
477 }
478
479 static int infra_ping_nid(char *ping_nids, char *oper, int param, int ioc_call,
480                           int seq_no, struct cYAML **show_rc,
481                           struct cYAML **err_rc)
482 {
483         void *data = NULL;
484         struct lnet_ioctl_ping_data ping;
485         struct cYAML *root = NULL, *ping_node = NULL, *item = NULL,
486                      *first_seq = NULL, *tmp = NULL, *peer_ni = NULL;
487         struct lnet_process_id id;
488         char err_str[LNET_MAX_STR_LEN] = {0};
489         char *sep, *token, *end;
490         char buf[6];
491         size_t len;
492         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
493         int i;
494         bool flag = false;
495
496         len = (sizeof(struct lnet_process_id) * LNET_INTERFACES_MAX_DEFAULT);
497
498         data = calloc(1, len);
499         if (data == NULL)
500                 goto out;
501
502         /* create struct cYAML root object */
503         root = cYAML_create_object(NULL, NULL);
504         if (root == NULL)
505                 goto out;
506
507         ping_node = cYAML_create_seq(root, oper);
508         if (ping_node == NULL)
509                 goto out;
510
511         /* tokenise each nid in string ping_nids */
512         token = strtok(ping_nids, ",");
513
514         do {
515                 item = cYAML_create_seq_item(ping_node);
516                 if (item == NULL)
517                         goto out;
518
519                 if (first_seq == NULL)
520                         first_seq = item;
521
522                 /* check if '-' is a part of NID, token */
523                 sep = strchr(token, '-');
524                 if (sep == NULL) {
525                         id.pid = LNET_PID_ANY;
526                         /* if no net is specified, libcfs_str2nid() will assume tcp */
527                         id.nid = libcfs_str2nid(token);
528                         if (id.nid == LNET_NID_ANY) {
529                                 snprintf(err_str, sizeof(err_str),
530                                          "\"cannot parse NID '%s'\"",
531                                          token);
532                                 rc = LUSTRE_CFG_RC_BAD_PARAM;
533                                 cYAML_build_error(rc, seq_no, MANAGE_CMD,
534                                                   oper, err_str, err_rc);
535                                 continue;
536                         }
537                 } else {
538                         if (token[0] == 'u' || token[0] == 'U')
539                                 id.pid = (strtoul(&token[1], &end, 0) |
540                                           (LNET_PID_USERFLAG));
541                         else
542                                 id.pid = strtoul(token, &end, 0);
543
544                         /* assuming '-' is part of hostname */
545                         if (end != sep) {
546                                 id.pid = LNET_PID_ANY;
547                                 id.nid = libcfs_str2nid(token);
548                                 if (id.nid == LNET_NID_ANY) {
549                                         snprintf(err_str, sizeof(err_str),
550                                                  "\"cannot parse NID '%s'\"",
551                                                  token);
552                                         rc = LUSTRE_CFG_RC_BAD_PARAM;
553                                         cYAML_build_error(rc, seq_no, MANAGE_CMD,
554                                                           oper, err_str,
555                                                           err_rc);
556                                         continue;
557                                 }
558                         } else {
559                                 id.nid = libcfs_str2nid(sep + 1);
560                                 if (id.nid == LNET_NID_ANY) {
561                                         snprintf(err_str, sizeof(err_str),
562                                                  "\"cannot parse NID '%s'\"",
563                                                  token);
564                                         rc = LUSTRE_CFG_RC_BAD_PARAM;
565                                         cYAML_build_error(rc, seq_no, MANAGE_CMD,
566                                                           oper, err_str,
567                                                           err_rc);
568                                         continue;
569                                 }
570                         }
571                 }
572                 LIBCFS_IOC_INIT_V2(ping, ping_hdr);
573                 ping.ping_hdr.ioc_len = sizeof(ping);
574                 ping.ping_id          = id;
575                 ping.op_param         = param;
576                 ping.ping_count       = LNET_INTERFACES_MAX_DEFAULT;
577                 ping.ping_buf         = data;
578
579                 rc = l_ioctl(LNET_DEV_ID, ioc_call, &ping);
580                 if (rc != 0) {
581                         snprintf(err_str,
582                                  sizeof(err_str), "failed to %s %s: %s\n", oper,
583                                  id.pid == LNET_PID_ANY ?
584                                  libcfs_nid2str(id.nid) :
585                                  libcfs_id2str(id), strerror(errno));
586                         rc = LUSTRE_CFG_RC_BAD_PARAM;
587                         cYAML_build_error(rc, seq_no, MANAGE_CMD,
588                                           oper, err_str, err_rc);
589                         continue;
590                 }
591
592                 if (cYAML_create_string(item, "primary nid",
593                                         libcfs_nid2str(ping.ping_id.nid)) == NULL)
594                         goto out;
595
596                 if (cYAML_create_string(item, "Multi-Rail", ping.mr_info ?
597                                         "True" : "False") == NULL)
598                         goto out;
599
600                 tmp = cYAML_create_seq(item, "peer ni");
601                 if (tmp == NULL)
602                         goto out;
603
604                 for (i = 0; i < ping.ping_count; i++) {
605                         if (!strcmp(libcfs_nid2str(ping.ping_buf[i].nid),
606                                     "0@lo"))
607                                 continue;
608                         peer_ni = cYAML_create_seq_item(tmp);
609                         if (peer_ni == NULL)
610                                 goto out;
611                         memset(buf, 0, sizeof buf);
612                         snprintf(buf, sizeof buf, "nid");
613                         if (cYAML_create_string(peer_ni, buf,
614                                                 libcfs_nid2str(ping.ping_buf[i].nid)) == NULL)
615                                 goto out;
616                 }
617
618                 flag = true;
619
620         } while ((token = strtok(NULL, ",")) != NULL);
621
622         if (flag)
623                 rc = LUSTRE_CFG_RC_NO_ERR;
624
625 out:
626         if (data)
627                 free(data);
628         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR) {
629                 cYAML_free_tree(root);
630         } else if (show_rc != NULL && *show_rc != NULL) {
631                 struct cYAML *show_node;
632                 show_node = cYAML_get_object_item(*show_rc, oper);
633                 if (show_node != NULL && cYAML_is_sequence(show_node)) {
634                         cYAML_insert_child(show_node, first_seq);
635                         free(ping_node);
636                         free(root);
637                 } else if (show_node == NULL) {
638                         cYAML_insert_sibling((*show_rc)->cy_child,
639                                              ping_node);
640                         free(root);
641                 } else {
642                         cYAML_free_tree(root);
643                 }
644         } else {
645                 *show_rc = root;
646         }
647
648         return rc;
649 }
650
651 int lustre_lnet_ping_nid(char *ping_nids, int timeout, int seq_no,
652                          struct cYAML **show_rc, struct cYAML **err_rc)
653 {
654         int rc;
655
656         rc = infra_ping_nid(ping_nids, "ping", timeout, IOC_LIBCFS_PING_PEER,
657                             seq_no, show_rc, err_rc);
658         return rc;
659 }
660
661 int lustre_lnet_discover_nid(char *ping_nids, int force, int seq_no,
662                          struct cYAML **show_rc, struct cYAML **err_rc)
663 {
664         int rc;
665
666         rc = infra_ping_nid(ping_nids, "discover", force, IOC_LIBCFS_DISCOVER,
667                             seq_no, show_rc, err_rc);
668         return rc;
669 }
670
671 static void lustre_lnet_clean_ip2nets(struct lustre_lnet_ip2nets *ip2nets)
672 {
673         struct lustre_lnet_ip_range_descr *ipr, *tmp;
674         struct cfs_expr_list *el, *el_tmp;
675
676         list_for_each_entry_safe(ipr, tmp,
677                                  &ip2nets->ip2nets_ip_ranges,
678                                  ipr_entry) {
679                 list_del(&ipr->ipr_entry);
680                 list_for_each_entry_safe(el, el_tmp, &ipr->ipr_expr,
681                                          el_link) {
682                         list_del(&el->el_link);
683                         cfs_expr_list_free(el);
684                 }
685                 free(ipr);
686         }
687 }
688
689 /*
690  * returns an rc < 0 if there is an error
691  * otherwise it returns the number IPs generated
692  *  it also has out params: net - network name
693  */
694 static int lnet_expr2ips(char *nidstr, __u32 *ip_list,
695                          struct lustre_lnet_ip2nets *ip2nets,
696                          __u32 *net, char *err_str)
697 {
698         struct lustre_lnet_ip_range_descr *ipr;
699         char *comp1, *comp2;
700         int ip_idx = MAX_NUM_IPS - 1;
701         int ip_range_len, rc = LUSTRE_CFG_RC_NO_ERR;
702         __u32 net_type;
703         char ip_range[LNET_MAX_STR_LEN];
704
705         /* separate the two components of the NID */
706         comp1 = nidstr;
707         comp2 = strchr(nidstr, '@');
708         if (comp2 == NULL) {
709                 snprintf(err_str,
710                         LNET_MAX_STR_LEN,
711                         "\"cannot parse NID %s\"", nidstr);
712                 err_str[LNET_MAX_STR_LEN - 1] = '\0';
713                 rc = LUSTRE_CFG_RC_BAD_PARAM;
714                 goto out;
715         }
716
717         /* length of the expected ip-range */
718         ip_range_len = comp2 - comp1;
719         if (ip_range_len >= LNET_MAX_STR_LEN) {
720                 snprintf(err_str,
721                         LNET_MAX_STR_LEN,
722                         "\"cannot parse ip_range '%s'\"", ip_range);
723                 err_str[LNET_MAX_STR_LEN - 1] = '\0';
724                 rc = LUSTRE_CFG_RC_BAD_PARAM;
725                 goto out;
726         }
727
728         /* move beyond '@' */
729         comp2++;
730
731         /*
732          * if the net component is either o2ib or tcp then we expect
733          * an IP range which could only be a single IP address.
734          * Parse that.
735          */
736         *net = libcfs_str2net(comp2);
737         net_type = LNET_NETTYP(*net);
738         /* expression support is for o2iblnd and socklnd only */
739         if (net_type != O2IBLND && net_type != SOCKLND)
740                 return LUSTRE_CFG_RC_SKIP;
741
742         strncpy(ip_range, comp1, ip_range_len);
743         ip_range[ip_range_len] = '\0';
744         ip2nets->ip2nets_net.nw_id = *net;
745
746         rc = lustre_lnet_add_ip_range(&ip2nets->ip2nets_ip_ranges, ip_range);
747         if (rc != LUSTRE_CFG_RC_NO_ERR) {
748                 snprintf(err_str,
749                         LNET_MAX_STR_LEN,
750                         "\"cannot parse ip_range '%s'\"", ip_range);
751                 err_str[LNET_MAX_STR_LEN - 1] = '\0';
752                 rc = LUSTRE_CFG_RC_BAD_PARAM;
753                 goto out;
754         }
755
756         /*
757         * Generate all the IP Addresses from the parsed range. For sanity
758         * we allow only a max of MAX_NUM_IPS nids to be configured for
759         * a single peer.
760         */
761         list_for_each_entry(ipr, &ip2nets->ip2nets_ip_ranges, ipr_entry)
762                 ip_idx = cfs_ip_addr_range_gen(ip_list, MAX_NUM_IPS,
763                                                 &ipr->ipr_expr);
764
765         if (ip_idx == MAX_NUM_IPS - 1) {
766                 snprintf(err_str, LNET_MAX_STR_LEN,
767                                 "no NIDs provided for configuration");
768                 err_str[LNET_MAX_STR_LEN - 1] = '\0';
769                 rc = LUSTRE_CFG_RC_NO_MATCH;
770                 goto out;
771         } else if (ip_idx == -1) {
772                 rc = LUSTRE_CFG_RC_LAST_ELEM;
773         } else {
774                 rc = ip_idx;
775         }
776
777 out:
778         return rc;
779 }
780
781 static int lustre_lnet_handle_peer_ip2nets(char **nid, int num_nids, bool mr,
782                                            bool range, __u32 cmd,
783                                            char *cmd_type, char *err_str)
784 {
785         __u32 net = LNET_NIDNET(LNET_NID_ANY);
786         int ip_idx;
787         int i, j, rc = LUSTRE_CFG_RC_NO_ERR;
788         __u32 ip_list[MAX_NUM_IPS];
789         struct lustre_lnet_ip2nets ip2nets;
790         struct lnet_ioctl_peer_cfg data;
791         lnet_nid_t peer_nid;
792         lnet_nid_t prim_nid = LNET_NID_ANY;
793
794         /* initialize all lists */
795         INIT_LIST_HEAD(&ip2nets.ip2nets_ip_ranges);
796         INIT_LIST_HEAD(&ip2nets.ip2nets_net.network_on_rule);
797         INIT_LIST_HEAD(&ip2nets.ip2nets_net.nw_intflist);
798
799         /* each nid entry is an expression */
800         for (i = 0; i < num_nids; i++) {
801                 if (!range && i == 0)
802                         prim_nid = libcfs_str2nid(nid[0]);
803                 else if (range)
804                         prim_nid = LNET_NID_ANY;
805
806                 rc = lnet_expr2ips(nid[i], ip_list, &ip2nets, &net, err_str);
807                 if (rc == LUSTRE_CFG_RC_SKIP)
808                         continue;
809                 else if (rc == LUSTRE_CFG_RC_LAST_ELEM)
810                         rc = -1;
811                 else if (rc < LUSTRE_CFG_RC_NO_ERR)
812                         goto out;
813
814                 ip_idx = rc;
815
816                 for (j = MAX_NUM_IPS - 1; j > ip_idx; j--) {
817                         peer_nid = LNET_MKNID(net, ip_list[j]);
818                         if (peer_nid == LNET_NID_ANY) {
819                                 snprintf(err_str,
820                                         LNET_MAX_STR_LEN,
821                                         "\"cannot parse NID\"");
822                                 err_str[LNET_MAX_STR_LEN - 1] = '\0';
823                                 rc = LUSTRE_CFG_RC_BAD_PARAM;
824                                 goto out;
825                         }
826
827                         LIBCFS_IOC_INIT_V2(data, prcfg_hdr);
828                         data.prcfg_mr = mr;
829
830                         if (prim_nid == LNET_NID_ANY && j == MAX_NUM_IPS - 1) {
831                                 prim_nid = peer_nid;
832                                 peer_nid = LNET_NID_ANY;
833                         }
834
835                         if (!range && num_nids > 1 && i == 0 &&
836                             cmd == IOC_LIBCFS_DEL_PEER_NI)
837                                 continue;
838                         else if (!range && i == 0)
839                                 peer_nid = LNET_NID_ANY;
840
841                         /*
842                         * If prim_nid is not provided then the first nid in the
843                         * list becomes the prim_nid. First time round the loop
844                         * use LNET_NID_ANY for the first parameter, then use
845                         * nid[0] as the key nid after wards
846                         */
847                         rc = dispatch_peer_ni_cmd(prim_nid, peer_nid, cmd,
848                                                   &data, err_str, cmd_type);
849                         if (rc != 0)
850                                 goto out;
851
852                         /*
853                          * we just deleted the entire peer using the
854                          * primary_nid. So don't bother iterating through
855                          * the rest of the nids
856                          */
857                         if (prim_nid != LNET_NID_ANY &&
858                             peer_nid == LNET_NID_ANY &&
859                             cmd == IOC_LIBCFS_DEL_PEER_NI)
860                                 goto next_nid;
861                 }
862 next_nid:
863                 lustre_lnet_clean_ip2nets(&ip2nets);
864         }
865
866 out:
867         lustre_lnet_clean_ip2nets(&ip2nets);
868         return rc;
869 }
870
871 int lustre_lnet_config_peer_nid(char *pnid, char **nid, int num_nids,
872                                 bool mr, bool ip2nets, int seq_no,
873                                 struct cYAML **err_rc)
874 {
875         int rc = LUSTRE_CFG_RC_NO_ERR;
876         char err_str[LNET_MAX_STR_LEN] = {0};
877         char **nid_array = NULL;
878
879         snprintf(err_str, sizeof(err_str), "\"Success\"");
880
881         if (ip2nets) {
882                 rc = lustre_lnet_handle_peer_ip2nets(nid, num_nids, mr,
883                                                 ip2nets, IOC_LIBCFS_ADD_PEER_NI,
884                                                 ADD_CMD, err_str);
885                 goto out;
886         }
887
888         if (pnid) {
889                 if (libcfs_str2nid(pnid) == LNET_NID_ANY) {
890                         snprintf(err_str, sizeof(err_str),
891                                  "bad primary NID: '%s'",
892                                  pnid);
893                         rc = LUSTRE_CFG_RC_MISSING_PARAM;
894                         goto out;
895                 }
896
897                 num_nids++;
898
899                 nid_array = calloc(sizeof(*nid_array), num_nids);
900                 if (!nid_array) {
901                         snprintf(err_str, sizeof(err_str),
902                                         "out of memory");
903                         rc = LUSTRE_CFG_RC_OUT_OF_MEM;
904                         goto out;
905                 }
906                 nid_array[0] = pnid;
907                 memcpy(&nid_array[1], nid, sizeof(*nid) * (num_nids - 1));
908         }
909
910         rc = lustre_lnet_handle_peer_ip2nets((pnid) ? nid_array : nid,
911                                              num_nids, mr, ip2nets,
912                                              IOC_LIBCFS_ADD_PEER_NI, ADD_CMD,
913                                              err_str);
914         if (rc)
915                 goto out;
916
917 out:
918         if (nid_array)
919                 free(nid_array);
920
921         cYAML_build_error(rc, seq_no, ADD_CMD, "peer_ni", err_str, err_rc);
922         return rc;
923 }
924
925 int lustre_lnet_del_peer_nid(char *pnid, char **nid, int num_nids,
926                              bool ip2nets, int seq_no, struct cYAML **err_rc)
927 {
928         int rc = LUSTRE_CFG_RC_NO_ERR;
929         char err_str[LNET_MAX_STR_LEN] = {0};
930         char **nid_array = NULL;
931
932         snprintf(err_str, sizeof(err_str), "\"Success\"");
933
934         if (ip2nets) {
935                 rc = lustre_lnet_handle_peer_ip2nets(nid, num_nids, false,
936                                                 ip2nets, IOC_LIBCFS_DEL_PEER_NI,
937                                                 DEL_CMD, err_str);
938                 goto out;
939         }
940
941         if (pnid == NULL) {
942                 snprintf(err_str, sizeof(err_str),
943                          "\"Primary nid is not provided\"");
944                 rc = LUSTRE_CFG_RC_MISSING_PARAM;
945                 goto out;
946         } else if (!ip2nets) {
947                 if (libcfs_str2nid(pnid) == LNET_NID_ANY) {
948                         rc = LUSTRE_CFG_RC_BAD_PARAM;
949                         snprintf(err_str, sizeof(err_str),
950                                  "bad key NID: '%s'",
951                                  pnid);
952                         goto out;
953                 }
954         }
955
956         num_nids++;
957         nid_array = calloc(sizeof(*nid_array), num_nids);
958         if (!nid_array) {
959                 snprintf(err_str, sizeof(err_str),
960                                 "out of memory");
961                 rc = LUSTRE_CFG_RC_OUT_OF_MEM;
962                 goto out;
963         }
964         nid_array[0] = pnid;
965         memcpy(&nid_array[1], nid, sizeof(*nid) * (num_nids - 1));
966
967         rc = lustre_lnet_handle_peer_ip2nets(nid_array, num_nids, false,
968                                              ip2nets, IOC_LIBCFS_DEL_PEER_NI,
969                                              DEL_CMD, err_str);
970         if (rc)
971                 goto out;
972
973 out:
974         if (nid_array)
975                 free(nid_array);
976
977         cYAML_build_error(rc, seq_no, DEL_CMD, "peer_ni", err_str, err_rc);
978         return rc;
979 }
980
981 int lustre_lnet_config_route(char *nw, char *gw, int hops, int prio,
982                              int seq_no, struct cYAML **err_rc)
983 {
984         struct lnet_ioctl_config_data data;
985         lnet_nid_t gateway_nid;
986         int rc = LUSTRE_CFG_RC_NO_ERR;
987         int ip_idx, i;
988         __u32 rnet = LNET_NIDNET(LNET_NID_ANY);
989         __u32 net = LNET_NIDNET(LNET_NID_ANY);
990         char err_str[LNET_MAX_STR_LEN];
991         __u32 ip_list[MAX_NUM_IPS];
992         struct lustre_lnet_ip2nets ip2nets;
993
994         /* initialize all lists */
995         INIT_LIST_HEAD(&ip2nets.ip2nets_ip_ranges);
996         INIT_LIST_HEAD(&ip2nets.ip2nets_net.network_on_rule);
997         INIT_LIST_HEAD(&ip2nets.ip2nets_net.nw_intflist);
998
999         snprintf(err_str, sizeof(err_str), "\"Success\"");
1000
1001         if (nw == NULL || gw == NULL) {
1002                 snprintf(err_str,
1003                          sizeof(err_str),
1004                          "\"missing mandatory parameter in route config:'%s'\"",
1005                          (nw == NULL && gw == NULL) ? "network, gateway" :
1006                          (nw == NULL) ? "network" : "gateway");
1007                 rc = LUSTRE_CFG_RC_MISSING_PARAM;
1008                 goto out;
1009         }
1010
1011         rnet = libcfs_str2net(nw);
1012         if (rnet == LNET_NIDNET(LNET_NID_ANY)) {
1013                 snprintf(err_str,
1014                          sizeof(err_str),
1015                          "\"cannot parse remote net %s\"", nw);
1016                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1017                 goto out;
1018         }
1019
1020         if (hops == -1) {
1021                 /* hops is undefined */
1022                 hops = LNET_UNDEFINED_HOPS;
1023         } else if (hops < 1 || hops > 255) {
1024                 snprintf(err_str,
1025                         sizeof(err_str),
1026                         "\"invalid hop count %d, must be between 1 and 255\"",
1027                         hops);
1028                 rc = LUSTRE_CFG_RC_OUT_OF_RANGE_PARAM;
1029                 goto out;
1030         }
1031
1032         if (prio == -1) {
1033                 prio = 0;
1034         } else if (prio < 0) {
1035                 snprintf(err_str,
1036                          sizeof(err_str),
1037                         "\"invalid priority %d, must be greater than 0\"",
1038                         prio);
1039                 rc = LUSTRE_CFG_RC_OUT_OF_RANGE_PARAM;
1040                 goto out;
1041         }
1042
1043         rc = lnet_expr2ips(gw, ip_list,
1044                            &ip2nets, &net, err_str);
1045         if (rc == LUSTRE_CFG_RC_LAST_ELEM)
1046                 rc = -1;
1047         else if (rc < LUSTRE_CFG_RC_NO_ERR)
1048                 goto out;
1049
1050         ip_idx = rc;
1051
1052         LIBCFS_IOC_INIT_V2(data, cfg_hdr);
1053         data.cfg_net = rnet;
1054         data.cfg_config_u.cfg_route.rtr_hop = hops;
1055         data.cfg_config_u.cfg_route.rtr_priority = prio;
1056
1057         for (i = MAX_NUM_IPS - 1; i > ip_idx; i--) {
1058                 gateway_nid = LNET_MKNID(net, ip_list[i]);
1059                 if (gateway_nid == LNET_NID_ANY) {
1060                         snprintf(err_str,
1061                                 LNET_MAX_STR_LEN,
1062                                 "\"cannot form gateway NID: %u\"",
1063                                 ip_list[i]);
1064                         err_str[LNET_MAX_STR_LEN - 1] = '\0';
1065                         rc = LUSTRE_CFG_RC_BAD_PARAM;
1066                         goto out;
1067                 }
1068                 data.cfg_nid = gateway_nid;
1069
1070                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_ADD_ROUTE, &data);
1071                 if (rc != 0) {
1072                         rc = -errno;
1073                         snprintf(err_str,
1074                                 sizeof(err_str),
1075                                 "\"cannot add route: %s\"", strerror(errno));
1076                         goto out;
1077                 }
1078         }
1079 out:
1080         cYAML_build_error(rc, seq_no, ADD_CMD, "route", err_str, err_rc);
1081
1082         return rc;
1083 }
1084
1085 int lustre_lnet_del_route(char *nw, char *gw,
1086                           int seq_no, struct cYAML **err_rc)
1087 {
1088         struct lnet_ioctl_config_data data;
1089         lnet_nid_t gateway_nid;
1090         int rc = LUSTRE_CFG_RC_NO_ERR;
1091         __u32 rnet = LNET_NIDNET(LNET_NID_ANY);
1092         __u32 net = LNET_NIDNET(LNET_NID_ANY);
1093         char err_str[LNET_MAX_STR_LEN];
1094         int ip_idx, i;
1095         __u32 ip_list[MAX_NUM_IPS];
1096         struct lustre_lnet_ip2nets ip2nets;
1097
1098         /* initialize all lists */
1099         INIT_LIST_HEAD(&ip2nets.ip2nets_ip_ranges);
1100         INIT_LIST_HEAD(&ip2nets.ip2nets_net.network_on_rule);
1101         INIT_LIST_HEAD(&ip2nets.ip2nets_net.nw_intflist);
1102
1103         snprintf(err_str, sizeof(err_str), "\"Success\"");
1104
1105         if (nw == NULL || gw == NULL) {
1106                 snprintf(err_str,
1107                          sizeof(err_str),
1108                          "\"missing mandatory parameter in route delete: '%s'\"",
1109                          (nw == NULL && gw == NULL) ? "network, gateway" :
1110                          (nw == NULL) ? "network" : "gateway");
1111                 rc = LUSTRE_CFG_RC_MISSING_PARAM;
1112                 goto out;
1113         }
1114
1115         rnet = libcfs_str2net(nw);
1116         if (rnet == LNET_NIDNET(LNET_NID_ANY)) {
1117                 snprintf(err_str,
1118                          sizeof(err_str),
1119                          "\"cannot parse remote net '%s'\"", nw);
1120                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1121                 goto out;
1122         }
1123
1124         rc = lnet_expr2ips(gw, ip_list,
1125                            &ip2nets, &net, err_str);
1126         if (rc == LUSTRE_CFG_RC_LAST_ELEM)
1127                 rc = -1;
1128         else if (rc < LUSTRE_CFG_RC_NO_ERR)
1129                 goto out;
1130
1131         ip_idx = rc;
1132
1133         LIBCFS_IOC_INIT_V2(data, cfg_hdr);
1134         data.cfg_net = rnet;
1135
1136         for (i = MAX_NUM_IPS - 1; i > ip_idx; i--) {
1137                 gateway_nid = LNET_MKNID(net, ip_list[i]);
1138                 if (gateway_nid == LNET_NID_ANY) {
1139                         snprintf(err_str,
1140                                 LNET_MAX_STR_LEN,
1141                                 "\"cannot form gateway NID: %u\"",
1142                                 ip_list[i]);
1143                         err_str[LNET_MAX_STR_LEN - 1] = '\0';
1144                         rc = LUSTRE_CFG_RC_BAD_PARAM;
1145                         goto out;
1146                 }
1147                 data.cfg_nid = gateway_nid;
1148
1149                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_DEL_ROUTE, &data);
1150                 if (rc != 0) {
1151                         rc = -errno;
1152                         snprintf(err_str,
1153                                 sizeof(err_str),
1154                                 "\"cannot delete route: %s\"", strerror(errno));
1155                         goto out;
1156                 }
1157         }
1158 out:
1159         cYAML_build_error(rc, seq_no, DEL_CMD, "route", err_str, err_rc);
1160
1161         return rc;
1162 }
1163
1164 int lustre_lnet_show_route(char *nw, char *gw, int hops, int prio, int detail,
1165                            int seq_no, struct cYAML **show_rc,
1166                            struct cYAML **err_rc, bool backup)
1167 {
1168         struct lnet_ioctl_config_data data;
1169         lnet_nid_t gateway_nid;
1170         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
1171         int l_errno = 0;
1172         __u32 net = LNET_NIDNET(LNET_NID_ANY);
1173         int i;
1174         struct cYAML *root = NULL, *route = NULL, *item = NULL;
1175         struct cYAML *first_seq = NULL;
1176         char err_str[LNET_MAX_STR_LEN];
1177         bool exist = false;
1178
1179         snprintf(err_str, sizeof(err_str),
1180                  "\"out of memory\"");
1181
1182         if (nw != NULL) {
1183                 net = libcfs_str2net(nw);
1184                 if (net == LNET_NIDNET(LNET_NID_ANY)) {
1185                         snprintf(err_str,
1186                                  sizeof(err_str),
1187                                  "\"cannot parse net '%s'\"", nw);
1188                         rc = LUSTRE_CFG_RC_BAD_PARAM;
1189                         goto out;
1190                 }
1191
1192         } else {
1193                 /* show all routes without filtering on net */
1194                 net = LNET_NIDNET(LNET_NID_ANY);
1195         }
1196
1197         if (gw != NULL) {
1198                 gateway_nid = libcfs_str2nid(gw);
1199                 if (gateway_nid == LNET_NID_ANY) {
1200                         snprintf(err_str,
1201                                  sizeof(err_str),
1202                                  "\"cannot parse gateway NID '%s'\"", gw);
1203                         rc = LUSTRE_CFG_RC_BAD_PARAM;
1204                         goto out;
1205                 }
1206         } else
1207                 /* show all routes with out filtering on gateway */
1208                 gateway_nid = LNET_NID_ANY;
1209
1210         if ((hops < 1 && hops != -1) || hops > 255) {
1211                 snprintf(err_str,
1212                          sizeof(err_str),
1213                          "\"invalid hop count %d, must be between 0 and 256\"",
1214                          hops);
1215                 rc = LUSTRE_CFG_RC_OUT_OF_RANGE_PARAM;
1216                 goto out;
1217         }
1218
1219         /* create struct cYAML root object */
1220         root = cYAML_create_object(NULL, NULL);
1221         if (root == NULL)
1222                 goto out;
1223
1224         route = cYAML_create_seq(root, "route");
1225         if (route == NULL)
1226                 goto out;
1227
1228         for (i = 0;; i++) {
1229                 LIBCFS_IOC_INIT_V2(data, cfg_hdr);
1230                 data.cfg_count = i;
1231
1232                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_ROUTE, &data);
1233                 if (rc != 0) {
1234                         l_errno = errno;
1235                         break;
1236                 }
1237
1238                 /* filter on provided data */
1239                 if (net != LNET_NIDNET(LNET_NID_ANY) &&
1240                     net != data.cfg_net)
1241                         continue;
1242
1243                 if (gateway_nid != LNET_NID_ANY &&
1244                     gateway_nid != data.cfg_nid)
1245                         continue;
1246
1247                 if (hops != -1 &&
1248                     hops != data.cfg_config_u.cfg_route.rtr_hop)
1249                         continue;
1250
1251                 if (prio != -1 &&
1252                     prio != data.cfg_config_u.cfg_route.rtr_priority)
1253                         continue;
1254
1255                 /* default rc to -1 incase we hit the goto */
1256                 rc = -1;
1257                 exist = true;
1258
1259                 item = cYAML_create_seq_item(route);
1260                 if (item == NULL)
1261                         goto out;
1262
1263                 if (first_seq == NULL)
1264                         first_seq = item;
1265
1266                 if (cYAML_create_string(item, "net",
1267                                         libcfs_net2str(data.cfg_net)) == NULL)
1268                         goto out;
1269
1270                 if (cYAML_create_string(item, "gateway",
1271                                         libcfs_nid2str(data.cfg_nid)) == NULL)
1272                         goto out;
1273
1274                 if (detail) {
1275                         if (cYAML_create_number(item, "hop",
1276                                                 (int) data.cfg_config_u.
1277                                                 cfg_route.rtr_hop) ==
1278                             NULL)
1279                                 goto out;
1280
1281                         if (cYAML_create_number(item, "priority",
1282                                                 data.cfg_config_u.
1283                                                 cfg_route.rtr_priority) == NULL)
1284                                 goto out;
1285
1286                         if (!backup &&
1287                             cYAML_create_string(item, "state",
1288                                                 data.cfg_config_u.cfg_route.
1289                                                         rtr_flags ?
1290                                                 "up" : "down") == NULL)
1291                                 goto out;
1292                 }
1293         }
1294
1295         /* print output iff show_rc is not provided */
1296         if (show_rc == NULL)
1297                 cYAML_print_tree(root);
1298
1299         if (l_errno != ENOENT) {
1300                 snprintf(err_str,
1301                          sizeof(err_str),
1302                          "\"cannot get routes: %s\"",
1303                          strerror(l_errno));
1304                 rc = -l_errno;
1305                 goto out;
1306         } else
1307                 rc = LUSTRE_CFG_RC_NO_ERR;
1308
1309         snprintf(err_str, sizeof(err_str), "\"success\"");
1310 out:
1311         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR || !exist) {
1312                 cYAML_free_tree(root);
1313         } else if (show_rc != NULL && *show_rc != NULL) {
1314                 struct cYAML *show_node;
1315                 /* find the route node, if one doesn't exist then
1316                  * insert one.  Otherwise add to the one there
1317                  */
1318                 show_node = cYAML_get_object_item(*show_rc, "route");
1319                 if (show_node != NULL && cYAML_is_sequence(show_node)) {
1320                         cYAML_insert_child(show_node, first_seq);
1321                         free(route);
1322                         free(root);
1323                 } else if (show_node == NULL) {
1324                         cYAML_insert_sibling((*show_rc)->cy_child,
1325                                                 route);
1326                         free(root);
1327                 } else {
1328                         cYAML_free_tree(root);
1329                 }
1330         } else {
1331                 *show_rc = root;
1332         }
1333
1334         cYAML_build_error(rc, seq_no, SHOW_CMD, "route", err_str, err_rc);
1335
1336         return rc;
1337 }
1338
1339 static int socket_intf_query(int request, char *intf,
1340                              struct ifreq *ifr)
1341 {
1342         int rc = 0;
1343         int sockfd;
1344
1345         if (strlen(intf) >= IFNAMSIZ || ifr == NULL)
1346                 return LUSTRE_CFG_RC_BAD_PARAM;
1347
1348         sockfd = socket(AF_INET, SOCK_DGRAM, 0);
1349         if (sockfd < 0)
1350                 return LUSTRE_CFG_RC_BAD_PARAM;
1351
1352         strcpy(ifr->ifr_name, intf);
1353         rc = ioctl(sockfd, request, ifr);
1354         if (rc != 0)
1355                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1356
1357         close(sockfd);
1358
1359         return rc;
1360 }
1361
1362 static int lustre_lnet_queryip(struct lnet_dlc_intf_descr *intf, __u32 *ip)
1363 {
1364         struct ifreq ifr;
1365         int rc;
1366
1367         memset(&ifr, 0, sizeof(ifr));
1368         rc = socket_intf_query(SIOCGIFFLAGS, intf->intf_name, &ifr);
1369         if (rc != 0)
1370                 return LUSTRE_CFG_RC_BAD_PARAM;
1371
1372         if ((ifr.ifr_flags & IFF_UP) == 0)
1373                 return LUSTRE_CFG_RC_BAD_PARAM;
1374
1375         memset(&ifr, 0, sizeof(ifr));
1376         rc = socket_intf_query(SIOCGIFADDR, intf->intf_name, &ifr);
1377         if (rc != 0)
1378                 return LUSTRE_CFG_RC_BAD_PARAM;
1379
1380         *ip = ((struct sockaddr_in *)&ifr.ifr_addr)->sin_addr.s_addr;
1381         *ip = bswap_32(*ip);
1382
1383         return LUSTRE_CFG_RC_NO_ERR;
1384 }
1385
1386 /*
1387  * for each interface in the array of interfaces find the IP address of
1388  * that interface, create its nid and add it to an array of NIDs.
1389  * Stop if any of the interfaces is down
1390  */
1391 static int lustre_lnet_intf2nids(struct lnet_dlc_network_descr *nw,
1392                                  lnet_nid_t **nids, __u32 *nnids,
1393                                  char *err_str, size_t str_len)
1394 {
1395         int i = 0, count = 0, rc;
1396         struct lnet_dlc_intf_descr *intf;
1397         char val[LNET_MAX_STR_LEN];
1398         __u32 ip;
1399         int gni_num;
1400
1401
1402         if (nw == NULL || nids == NULL) {
1403                 snprintf(err_str, str_len,
1404                          "\"unexpected parameters to lustre_lnet_intf2nids()\"");
1405                 err_str[str_len - 1] = '\0';
1406                 return LUSTRE_CFG_RC_BAD_PARAM;
1407         }
1408
1409         if (LNET_NETTYP(nw->nw_id) == GNILND) {
1410                 count = 1;
1411         } else {
1412                 list_for_each_entry(intf, &nw->nw_intflist, intf_on_network)
1413                         count++;
1414         }
1415
1416         *nids = calloc(count, sizeof(lnet_nid_t));
1417         if (*nids == NULL) {
1418                 snprintf(err_str, str_len,
1419                          "\"out of memory\"");
1420                 err_str[str_len - 1] = '\0';
1421                 return LUSTRE_CFG_RC_OUT_OF_MEM;
1422         }
1423         /*
1424          * special case the GNI interface since it doesn't have an IP
1425          * address. The assumption is that there can only be one GNI
1426          * interface in the system. No interface name is provided.
1427          */
1428         if (LNET_NETTYP(nw->nw_id) == GNILND) {
1429                 rc = read_sysfs_file(gni_nid_path, "nid", val,
1430                                 1, sizeof(val));
1431                 if (rc) {
1432                         snprintf(err_str, str_len,
1433                                  "\"cannot read gni nid\"");
1434                         err_str[str_len - 1] = '\0';
1435                         goto failed;
1436                 }
1437                 gni_num = atoi(val);
1438
1439                 (*nids)[i] = LNET_MKNID(nw->nw_id, gni_num);
1440
1441                 goto out;
1442         }
1443
1444         /* look at the other interfaces */
1445         list_for_each_entry(intf, &nw->nw_intflist, intf_on_network) {
1446                 rc = lustre_lnet_queryip(intf, &ip);
1447                 if (rc != LUSTRE_CFG_RC_NO_ERR) {
1448                         snprintf(err_str, str_len,
1449                                  "\"couldn't query intf %s\"", intf->intf_name);
1450                         err_str[str_len - 1] = '\0';
1451                         goto failed;
1452                 }
1453                 (*nids)[i] = LNET_MKNID(nw->nw_id, ip);
1454                 i++;
1455         }
1456
1457 out:
1458         *nnids = count;
1459
1460         return 0;
1461
1462 failed:
1463         free(*nids);
1464         *nids = NULL;
1465         return rc;
1466 }
1467
1468 /*
1469  * called repeatedly until a match or no more ip range
1470  * What do you have?
1471  *      ip_range expression
1472  *      interface list with all the interface names.
1473  *      all the interfaces in the system.
1474  *
1475  *      try to match the ip_range expr to one of the interfaces' IPs in
1476  *      the system. If we hit a patch for an interface. Check if that
1477  *      interface name is in the list.
1478  *
1479  *      If there are more than one interface in the list, then make sure
1480  *      that the IPs for all of these interfaces match the ip ranges
1481  *      given.
1482  *
1483  *      for each interface in intf_list
1484  *              look up the intf name in ifa
1485  *              if not there then no match
1486  *              check ip obtained from ifa against a match to any of the
1487  *              ip_ranges given.
1488  *              If no match, then fail
1489  *
1490  *      The result is that all the interfaces have to match.
1491  */
1492 int lustre_lnet_match_ip_to_intf(struct ifaddrs *ifa,
1493                                  struct list_head *intf_list,
1494                                  struct list_head *ip_ranges)
1495 {
1496         int rc;
1497         __u32 ip;
1498         struct lnet_dlc_intf_descr *intf_descr, *tmp;
1499         struct ifaddrs *ifaddr = ifa;
1500         struct lustre_lnet_ip_range_descr *ip_range;
1501         int family;
1502
1503         /*
1504          * if there are no explicit interfaces, and no ip ranges, then
1505          * configure the first tcp interface we encounter.
1506          */
1507         if (list_empty(intf_list) && list_empty(ip_ranges)) {
1508                 for (ifaddr = ifa; ifaddr != NULL; ifaddr = ifaddr->ifa_next) {
1509                         if (ifaddr->ifa_addr == NULL)
1510                                 continue;
1511
1512                         if ((ifaddr->ifa_flags & IFF_UP) == 0)
1513                                 continue;
1514
1515                         family = ifaddr->ifa_addr->sa_family;
1516                         if (family == AF_INET &&
1517                             strcmp(ifaddr->ifa_name, "lo") != 0) {
1518                                 rc = lustre_lnet_add_intf_descr
1519                                         (intf_list, ifaddr->ifa_name,
1520                                         strlen(ifaddr->ifa_name));
1521
1522                                 if (rc != LUSTRE_CFG_RC_NO_ERR)
1523                                         return rc;
1524
1525                                 return LUSTRE_CFG_RC_MATCH;
1526                         }
1527                 }
1528                 return LUSTRE_CFG_RC_NO_MATCH;
1529         }
1530
1531         /*
1532          * First interface which matches an IP pattern will be used
1533          */
1534         if (list_empty(intf_list)) {
1535                 /*
1536                  * no interfaces provided in the rule, but an ip range is
1537                  * provided, so try and match an interface to the ip
1538                  * range.
1539                  */
1540                 for (ifaddr = ifa; ifaddr != NULL; ifaddr = ifaddr->ifa_next) {
1541                         if (ifaddr->ifa_addr == NULL)
1542                                 continue;
1543
1544                         if ((ifaddr->ifa_flags & IFF_UP) == 0)
1545                                 continue;
1546
1547                         family = ifaddr->ifa_addr->sa_family;
1548                         if (family == AF_INET) {
1549                                 ip = ((struct sockaddr_in *)ifaddr->ifa_addr)->
1550                                         sin_addr.s_addr;
1551
1552                                 list_for_each_entry(ip_range, ip_ranges,
1553                                                     ipr_entry) {
1554                                         rc = cfs_ip_addr_match(bswap_32(ip),
1555                                                         &ip_range->ipr_expr);
1556                                         if (!rc)
1557                                                 continue;
1558
1559                                         rc = lustre_lnet_add_intf_descr
1560                                           (intf_list, ifaddr->ifa_name,
1561                                            strlen(ifaddr->ifa_name));
1562
1563                                         if (rc != LUSTRE_CFG_RC_NO_ERR)
1564                                                 return rc;
1565                                 }
1566                         }
1567                 }
1568
1569                 if (!list_empty(intf_list))
1570                         return LUSTRE_CFG_RC_MATCH;
1571
1572                 return LUSTRE_CFG_RC_NO_MATCH;
1573         }
1574
1575         /*
1576          * If an interface is explicitly specified the ip-range might or
1577          * might not be specified. if specified the interface needs to match the
1578          * ip-range. If no ip-range then the interfaces are
1579          * automatically matched if they are all up.
1580          * If > 1 interfaces all the interfaces must match for the NI to
1581          * be configured.
1582          */
1583         list_for_each_entry_safe(intf_descr, tmp, intf_list, intf_on_network) {
1584                 for (ifaddr = ifa; ifaddr != NULL; ifaddr = ifaddr->ifa_next) {
1585                         if (ifaddr->ifa_addr == NULL)
1586                                 continue;
1587
1588                         family = ifaddr->ifa_addr->sa_family;
1589                         if (family == AF_INET &&
1590                             strcmp(intf_descr->intf_name,
1591                                    ifaddr->ifa_name) == 0)
1592                                 break;
1593                 }
1594
1595                 if (ifaddr == NULL) {
1596                         list_del(&intf_descr->intf_on_network);
1597                         free_intf_descr(intf_descr);
1598                         continue;
1599                 }
1600
1601                 if ((ifaddr->ifa_flags & IFF_UP) == 0) {
1602                         list_del(&intf_descr->intf_on_network);
1603                         free_intf_descr(intf_descr);
1604                         continue;
1605                 }
1606
1607                 ip = ((struct sockaddr_in *)ifaddr->ifa_addr)->sin_addr.s_addr;
1608
1609                 rc = 1;
1610                 list_for_each_entry(ip_range, ip_ranges, ipr_entry) {
1611                         rc = cfs_ip_addr_match(bswap_32(ip), &ip_range->ipr_expr);
1612                         if (rc)
1613                                 break;
1614                 }
1615
1616                 if (!rc) {
1617                         /* no match for this interface */
1618                         list_del(&intf_descr->intf_on_network);
1619                         free_intf_descr(intf_descr);
1620                 }
1621         }
1622
1623         return LUSTRE_CFG_RC_MATCH;
1624 }
1625
1626 static int lustre_lnet_resolve_ip2nets_rule(struct lustre_lnet_ip2nets *ip2nets,
1627                                             lnet_nid_t **nids, __u32 *nnids,
1628                                             char *err_str, size_t str_len)
1629 {
1630         struct ifaddrs *ifa;
1631         int rc = LUSTRE_CFG_RC_NO_ERR;
1632
1633         rc = getifaddrs(&ifa);
1634         if (rc < 0) {
1635                 snprintf(err_str, str_len,
1636                          "\"failed to get interface addresses: %d\"", -errno);
1637                 err_str[str_len - 1] = '\0';
1638                 return -errno;
1639         }
1640
1641         rc = lustre_lnet_match_ip_to_intf(ifa,
1642                                           &ip2nets->ip2nets_net.nw_intflist,
1643                                           &ip2nets->ip2nets_ip_ranges);
1644         if (rc != LUSTRE_CFG_RC_MATCH) {
1645                 snprintf(err_str, str_len,
1646                          "\"couldn't match ip to existing interfaces\"");
1647                 err_str[str_len - 1] = '\0';
1648                 freeifaddrs(ifa);
1649                 return rc;
1650         }
1651
1652         rc = lustre_lnet_intf2nids(&ip2nets->ip2nets_net, nids, nnids,
1653                                    err_str, sizeof(err_str));
1654         if (rc != LUSTRE_CFG_RC_NO_ERR) {
1655                 *nids = NULL;
1656                 *nnids = 0;
1657         }
1658
1659         freeifaddrs(ifa);
1660
1661         return rc;
1662 }
1663
1664 static int
1665 lustre_lnet_ioctl_config_ni(struct list_head *intf_list,
1666                             struct lnet_ioctl_config_lnd_tunables *tunables,
1667                             struct cfs_expr_list *global_cpts,
1668                             lnet_nid_t *nids, char *err_str)
1669 {
1670         char *data;
1671         struct lnet_ioctl_config_ni *conf;
1672         struct lnet_ioctl_config_lnd_tunables *tun = NULL;
1673         int rc = LUSTRE_CFG_RC_NO_ERR, i = 0;
1674         size_t len;
1675         int count;
1676         struct lnet_dlc_intf_descr *intf_descr;
1677         __u32 *cpt_array;
1678         struct cfs_expr_list *cpt_expr;
1679
1680         list_for_each_entry(intf_descr, intf_list,
1681                             intf_on_network) {
1682                 if (tunables != NULL)
1683                         len = sizeof(struct lnet_ioctl_config_ni) +
1684                               sizeof(struct lnet_ioctl_config_lnd_tunables);
1685                 else
1686                         len = sizeof(struct lnet_ioctl_config_ni);
1687
1688                 data = calloc(1, len);
1689                 if (!data)
1690                         return LUSTRE_CFG_RC_OUT_OF_MEM;
1691                 conf = (struct lnet_ioctl_config_ni*) data;
1692                 if (tunables != NULL)
1693                         tun = (struct lnet_ioctl_config_lnd_tunables*)
1694                                 conf->lic_bulk;
1695
1696                 LIBCFS_IOC_INIT_V2(*conf, lic_cfg_hdr);
1697                 conf->lic_cfg_hdr.ioc_len = len;
1698                 conf->lic_nid = nids[i];
1699                 strncpy(conf->lic_ni_intf[0], intf_descr->intf_name,
1700                         LNET_MAX_STR_LEN);
1701
1702                 if (intf_descr->cpt_expr != NULL)
1703                         cpt_expr = intf_descr->cpt_expr;
1704                 else if (global_cpts != NULL)
1705                         cpt_expr = global_cpts;
1706                 else
1707                         cpt_expr = NULL;
1708
1709                 if (cpt_expr != NULL) {
1710                         count = cfs_expr_list_values(cpt_expr,
1711                                                      LNET_MAX_SHOW_NUM_CPT,
1712                                                      &cpt_array);
1713                         if (count > 0) {
1714                                 memcpy(conf->lic_cpts, cpt_array,
1715                                        sizeof(cpt_array[0]) * LNET_MAX_STR_LEN);
1716                                 free(cpt_array);
1717                         } else {
1718                                 count = 0;
1719                         }
1720                 } else {
1721                         count = 0;
1722                 }
1723
1724                 conf->lic_ncpts = count;
1725
1726                 if (tunables != NULL)
1727                         memcpy(tun, tunables, sizeof(*tunables));
1728
1729                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_ADD_LOCAL_NI, data);
1730                 if (rc < 0) {
1731                         rc = -errno;
1732                         snprintf(err_str,
1733                                  LNET_MAX_STR_LEN,
1734                                  "\"cannot add network: %s\"", strerror(errno));
1735                         free(data);
1736                         return rc;
1737                 }
1738                 free(data);
1739                 i++;
1740         }
1741
1742         return LUSTRE_CFG_RC_NO_ERR;
1743 }
1744
1745 int
1746 lustre_lnet_config_ip2nets(struct lustre_lnet_ip2nets *ip2nets,
1747                            struct lnet_ioctl_config_lnd_tunables *tunables,
1748                            struct cfs_expr_list *global_cpts,
1749                            int seq_no, struct cYAML **err_rc)
1750 {
1751         lnet_nid_t *nids = NULL;
1752         __u32 nnids = 0;
1753         int rc;
1754         char err_str[LNET_MAX_STR_LEN];
1755
1756         snprintf(err_str, sizeof(err_str), "\"success\"");
1757
1758         if (!ip2nets) {
1759                 snprintf(err_str,
1760                          sizeof(err_str),
1761                          "\"incomplete ip2nets information\"");
1762                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1763                 goto out;
1764         }
1765
1766         /*
1767          * call below function to resolve the rules into a list of nids.
1768          * The memory is allocated in that function then freed here when
1769          * it's no longer needed.
1770          */
1771         rc = lustre_lnet_resolve_ip2nets_rule(ip2nets, &nids, &nnids, err_str,
1772                                               sizeof(err_str));
1773         if (rc != LUSTRE_CFG_RC_NO_ERR && rc != LUSTRE_CFG_RC_MATCH)
1774                 goto out;
1775
1776         if (list_empty(&ip2nets->ip2nets_net.nw_intflist)) {
1777                 snprintf(err_str, sizeof(err_str),
1778                          "\"no interfaces match ip2nets rules\"");
1779                 goto free_nids_out;
1780         }
1781
1782         rc = lustre_lnet_ioctl_config_ni(&ip2nets->ip2nets_net.nw_intflist,
1783                                          tunables, global_cpts, nids,
1784                                          err_str);
1785
1786 free_nids_out:
1787         free(nids);
1788
1789 out:
1790         cYAML_build_error(rc, seq_no, ADD_CMD, "ip2nets", err_str, err_rc);
1791         return rc;
1792 }
1793
1794 int lustre_lnet_config_ni(struct lnet_dlc_network_descr *nw_descr,
1795                           struct cfs_expr_list *global_cpts,
1796                           char *ip2net,
1797                           struct lnet_ioctl_config_lnd_tunables *tunables,
1798                           int seq_no, struct cYAML **err_rc)
1799 {
1800         char *data = NULL;
1801         struct lnet_ioctl_config_ni *conf;
1802         struct lnet_ioctl_config_lnd_tunables *tun = NULL;
1803         char buf[LNET_MAX_STR_LEN];
1804         int rc = LUSTRE_CFG_RC_NO_ERR;
1805         char err_str[LNET_MAX_STR_LEN];
1806         lnet_nid_t *nids = NULL;
1807         __u32 nnids = 0;
1808         size_t len;
1809         int count;
1810         struct lnet_dlc_intf_descr *intf_descr, *tmp;
1811         __u32 *cpt_array;
1812
1813         snprintf(err_str, sizeof(err_str), "\"success\"");
1814
1815         if (ip2net == NULL && (nw_descr == NULL || nw_descr->nw_id == 0 ||
1816             (list_empty(&nw_descr->nw_intflist) &&
1817              LNET_NETTYP(nw_descr->nw_id) != GNILND))) {
1818                 snprintf(err_str,
1819                          sizeof(err_str),
1820                          "\"missing mandatory parameters in NI config: '%s'\"",
1821                          (nw_descr == NULL) ? "network , interface" :
1822                          (nw_descr->nw_id == 0) ? "network" : "interface");
1823                 rc = LUSTRE_CFG_RC_MISSING_PARAM;
1824                 goto out;
1825         }
1826
1827         if (ip2net != NULL && strlen(ip2net) >= sizeof(buf)) {
1828                 snprintf(err_str,
1829                          sizeof(err_str),
1830                          "\"ip2net string too long %d\"",
1831                                 (int)strlen(ip2net));
1832                 rc = LUSTRE_CFG_RC_OUT_OF_RANGE_PARAM;
1833                 goto out;
1834         }
1835
1836         if (ip2net != NULL) {
1837                 if (tunables != NULL)
1838                         len = sizeof(struct lnet_ioctl_config_ni) +
1839                               sizeof(struct lnet_ioctl_config_lnd_tunables);
1840                 else
1841                         len = sizeof(struct lnet_ioctl_config_ni);
1842                 data = calloc(1, len);
1843                 if (!data) {
1844                         rc = LUSTRE_CFG_RC_OUT_OF_MEM;
1845                         goto out;
1846                 }
1847                 conf = (struct lnet_ioctl_config_ni*) data;
1848                 if (tunables != NULL)
1849                         tun = (struct lnet_ioctl_config_lnd_tunables*)
1850                                 (data + sizeof(*conf));
1851
1852                 LIBCFS_IOC_INIT_V2(*conf, lic_cfg_hdr);
1853                 conf->lic_cfg_hdr.ioc_len = len;
1854                 strncpy(conf->lic_legacy_ip2nets, ip2net,
1855                         LNET_MAX_STR_LEN);
1856
1857                 if (global_cpts != NULL) {
1858                         count = cfs_expr_list_values(global_cpts,
1859                                                      LNET_MAX_SHOW_NUM_CPT,
1860                                                      &cpt_array);
1861                         if (count > 0) {
1862                                 memcpy(conf->lic_cpts, cpt_array,
1863                                        sizeof(cpt_array[0]) * LNET_MAX_STR_LEN);
1864                                 free(cpt_array);
1865                         } else {
1866                                 count = 0;
1867                         }
1868                 } else {
1869                         count = 0;
1870                 }
1871
1872                 conf->lic_ncpts = count;
1873
1874                 if (tunables != NULL)
1875                         memcpy(tun, tunables, sizeof(*tunables));
1876
1877                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_ADD_LOCAL_NI, data);
1878                 if (rc < 0) {
1879                         rc = -errno;
1880                         snprintf(err_str,
1881                                 sizeof(err_str),
1882                                 "\"cannot add network: %s\"", strerror(errno));
1883                         goto out;
1884                 }
1885
1886                 goto out;
1887         }
1888
1889         if (LNET_NETTYP(nw_descr->nw_id) == LOLND) {
1890                 rc = LUSTRE_CFG_RC_NO_ERR;
1891                 goto out;
1892         }
1893
1894         if (nw_descr->nw_id == LNET_NIDNET(LNET_NID_ANY)) {
1895                 snprintf(err_str,
1896                         sizeof(err_str),
1897                         "\"cannot parse net '%s'\"",
1898                         libcfs_net2str(nw_descr->nw_id));
1899                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1900                 goto out;
1901         }
1902
1903         /*
1904          * special case the GNI since no interface name is expected
1905          */
1906         if (list_empty(&nw_descr->nw_intflist) &&
1907             (LNET_NETTYP(nw_descr->nw_id) != GNILND)) {
1908                 snprintf(err_str,
1909                         sizeof(err_str),
1910                         "\"no interface name provided\"");
1911                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1912                 goto out;
1913         }
1914
1915         rc = lustre_lnet_intf2nids(nw_descr, &nids, &nnids,
1916                                    err_str, sizeof(err_str));
1917         if (rc != 0) {
1918                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1919                 goto out;
1920         }
1921
1922         rc = lustre_lnet_ioctl_config_ni(&nw_descr->nw_intflist,
1923                                          tunables, global_cpts, nids,
1924                                          err_str);
1925
1926 out:
1927         if (nw_descr != NULL) {
1928                 list_for_each_entry_safe(intf_descr, tmp,
1929                                          &nw_descr->nw_intflist,
1930                                          intf_on_network) {
1931                         list_del(&intf_descr->intf_on_network);
1932                         free_intf_descr(intf_descr);
1933                 }
1934         }
1935
1936         cYAML_build_error(rc, seq_no, ADD_CMD, "net", err_str, err_rc);
1937
1938         if (nids)
1939                 free(nids);
1940
1941         if (data)
1942                 free(data);
1943
1944         return rc;
1945 }
1946
1947 int lustre_lnet_del_ni(struct lnet_dlc_network_descr *nw_descr,
1948                        int seq_no, struct cYAML **err_rc)
1949 {
1950         struct lnet_ioctl_config_ni data;
1951         int rc = LUSTRE_CFG_RC_NO_ERR, i;
1952         char err_str[LNET_MAX_STR_LEN];
1953         lnet_nid_t *nids = NULL;
1954         __u32 nnids = 0;
1955         struct lnet_dlc_intf_descr *intf_descr, *tmp;
1956
1957         snprintf(err_str, sizeof(err_str), "\"success\"");
1958
1959         if (nw_descr == NULL || nw_descr->nw_id == 0) {
1960                 snprintf(err_str,
1961                          sizeof(err_str),
1962                          "\"missing mandatory parameter in deleting NI: '%s'\"",
1963                          (nw_descr == NULL) ? "network , interface" :
1964                          (nw_descr->nw_id == 0) ? "network" : "interface");
1965                 rc = LUSTRE_CFG_RC_MISSING_PARAM;
1966                 goto out;
1967         }
1968
1969         if (LNET_NETTYP(nw_descr->nw_id) == LOLND)
1970                 return LUSTRE_CFG_RC_NO_ERR;
1971
1972         if (nw_descr->nw_id == LNET_NIDNET(LNET_NID_ANY)) {
1973                 snprintf(err_str,
1974                          sizeof(err_str),
1975                          "\"cannot parse net '%s'\"",
1976                          libcfs_net2str(nw_descr->nw_id));
1977                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1978                 goto out;
1979         }
1980
1981         rc = lustre_lnet_intf2nids(nw_descr, &nids, &nnids,
1982                                    err_str, sizeof(err_str));
1983         if (rc != 0) {
1984                 rc = LUSTRE_CFG_RC_BAD_PARAM;
1985                 goto out;
1986         }
1987
1988         /*
1989          * no interfaces just the nw_id is specified
1990          */
1991         if (nnids == 0) {
1992                 nids = calloc(1, sizeof(*nids));
1993                 if (nids == NULL) {
1994                         snprintf(err_str, sizeof(err_str),
1995                                 "\"out of memory\"");
1996                         rc = LUSTRE_CFG_RC_OUT_OF_MEM;
1997                         goto out;
1998                 }
1999                 nids[0] = LNET_MKNID(nw_descr->nw_id, 0);
2000                 nnids = 1;
2001         }
2002
2003         for (i = 0; i < nnids; i++) {
2004                 LIBCFS_IOC_INIT_V2(data, lic_cfg_hdr);
2005                 data.lic_nid = nids[i];
2006
2007                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_DEL_LOCAL_NI, &data);
2008                 if (rc < 0) {
2009                         rc = -errno;
2010                         snprintf(err_str,
2011                                 sizeof(err_str),
2012                                 "\"cannot del network: %s\"", strerror(errno));
2013                 }
2014         }
2015
2016         list_for_each_entry_safe(intf_descr, tmp, &nw_descr->nw_intflist,
2017                                  intf_on_network) {
2018                 list_del(&intf_descr->intf_on_network);
2019                 free_intf_descr(intf_descr);
2020         }
2021
2022 out:
2023         cYAML_build_error(rc, seq_no, DEL_CMD, "net", err_str, err_rc);
2024
2025         if (nids != NULL)
2026                 free(nids);
2027
2028         return rc;
2029 }
2030
2031 static bool
2032 add_msg_stats_to_yaml_blk(struct cYAML *yaml,
2033                           struct lnet_ioctl_comm_count *counts)
2034 {
2035         if (cYAML_create_number(yaml, "put",
2036                                 counts->ico_put_count)
2037                                         == NULL)
2038                 return false;
2039         if (cYAML_create_number(yaml, "get",
2040                                 counts->ico_get_count)
2041                                         == NULL)
2042                 return false;
2043         if (cYAML_create_number(yaml, "reply",
2044                                 counts->ico_reply_count)
2045                                         == NULL)
2046                 return false;
2047         if (cYAML_create_number(yaml, "ack",
2048                                 counts->ico_ack_count)
2049                                         == NULL)
2050                 return false;
2051         if (cYAML_create_number(yaml, "hello",
2052                                 counts->ico_hello_count)
2053                                         == NULL)
2054                 return false;
2055
2056         return true;
2057 }
2058
2059 static struct lnet_ioctl_comm_count *
2060 get_counts(struct lnet_ioctl_element_msg_stats *msg_stats, int idx)
2061 {
2062         if (idx == 0)
2063                 return &msg_stats->im_send_stats;
2064         if (idx == 1)
2065                 return &msg_stats->im_recv_stats;
2066         if (idx == 2)
2067                 return &msg_stats->im_drop_stats;
2068
2069         return NULL;
2070 }
2071
2072 int lustre_lnet_show_net(char *nw, int detail, int seq_no,
2073                          struct cYAML **show_rc, struct cYAML **err_rc,
2074                          bool backup)
2075 {
2076         char *buf;
2077         struct lnet_ioctl_config_ni *ni_data;
2078         struct lnet_ioctl_config_lnd_tunables *lnd;
2079         struct lnet_ioctl_element_stats *stats;
2080         struct lnet_ioctl_element_msg_stats msg_stats;
2081         __u32 net = LNET_NIDNET(LNET_NID_ANY);
2082         __u32 prev_net = LNET_NIDNET(LNET_NID_ANY);
2083         int rc = LUSTRE_CFG_RC_OUT_OF_MEM, i, j;
2084         int l_errno = 0;
2085         struct cYAML *root = NULL, *tunables = NULL,
2086                 *net_node = NULL, *interfaces = NULL,
2087                 *item = NULL, *first_seq = NULL,
2088                 *tmp = NULL, *statistics = NULL;
2089         int str_buf_len = LNET_MAX_SHOW_NUM_CPT * 2;
2090         char str_buf[str_buf_len];
2091         char *pos;
2092         char err_str[LNET_MAX_STR_LEN];
2093         bool exist = false, new_net = true;
2094         int net_num = 0;
2095         size_t buf_size = sizeof(*ni_data) + sizeof(*lnd) + sizeof(*stats);
2096
2097         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
2098
2099         buf = calloc(1, buf_size);
2100         if (buf == NULL)
2101                 goto out;
2102
2103         ni_data = (struct lnet_ioctl_config_ni *)buf;
2104
2105         if (nw != NULL) {
2106                 net = libcfs_str2net(nw);
2107                 if (net == LNET_NIDNET(LNET_NID_ANY)) {
2108                         snprintf(err_str,
2109                                  sizeof(err_str),
2110                                  "\"cannot parse net '%s'\"", nw);
2111                         rc = LUSTRE_CFG_RC_BAD_PARAM;
2112                         goto out;
2113                 }
2114         }
2115
2116         root = cYAML_create_object(NULL, NULL);
2117         if (root == NULL)
2118                 goto out;
2119
2120         net_node = cYAML_create_seq(root, "net");
2121         if (net_node == NULL)
2122                 goto out;
2123
2124         for (i = 0;; i++) {
2125                 pos = str_buf;
2126                 __u32 rc_net;
2127
2128                 memset(buf, 0, buf_size);
2129
2130                 LIBCFS_IOC_INIT_V2(*ni_data, lic_cfg_hdr);
2131                 /*
2132                  * set the ioc_len to the proper value since INIT assumes
2133                  * size of data
2134                  */
2135                 ni_data->lic_cfg_hdr.ioc_len = buf_size;
2136                 ni_data->lic_idx = i;
2137
2138                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_LOCAL_NI, ni_data);
2139                 if (rc != 0) {
2140                         l_errno = errno;
2141                         break;
2142                 }
2143
2144                 rc_net = LNET_NIDNET(ni_data->lic_nid);
2145
2146                 /* filter on provided data */
2147                 if (net != LNET_NIDNET(LNET_NID_ANY) &&
2148                     net != rc_net)
2149                         continue;
2150
2151                 /* if we're backing up don't store lo */
2152                 if (backup && LNET_NETTYP(rc_net) == LOLND)
2153                         continue;
2154
2155                 /* default rc to -1 in case we hit the goto */
2156                 rc = -1;
2157                 exist = true;
2158
2159                 stats = (struct lnet_ioctl_element_stats *)ni_data->lic_bulk;
2160                 lnd = (struct lnet_ioctl_config_lnd_tunables *)
2161                         (ni_data->lic_bulk + sizeof(*stats));
2162
2163                 if (rc_net != prev_net) {
2164                         prev_net = rc_net;
2165                         new_net = true;
2166                         net_num++;
2167                 }
2168
2169                 if (new_net) {
2170                         if (!cYAML_create_string(net_node, "net type",
2171                                                  libcfs_net2str(rc_net)))
2172                                 goto out;
2173
2174                         tmp = cYAML_create_seq(net_node, "local NI(s)");
2175                         if (tmp == NULL)
2176                                 goto out;
2177                         new_net = false;
2178                 }
2179
2180                 /* create the tree to be printed. */
2181                 item = cYAML_create_seq_item(tmp);
2182                 if (item == NULL)
2183                         goto out;
2184
2185                 if (first_seq == NULL)
2186                         first_seq = item;
2187
2188                 if (!backup &&
2189                     cYAML_create_string(item, "nid",
2190                                         libcfs_nid2str(ni_data->lic_nid)) == NULL)
2191                         goto out;
2192
2193                 if (!backup &&
2194                     cYAML_create_string(item,
2195                                         "status",
2196                                         (ni_data->lic_status ==
2197                                           LNET_NI_STATUS_UP) ?
2198                                             "up" : "down") == NULL)
2199                         goto out;
2200
2201                 /* don't add interfaces unless there is at least one
2202                  * interface */
2203                 if (strlen(ni_data->lic_ni_intf[0]) > 0) {
2204                         interfaces = cYAML_create_object(item, "interfaces");
2205                         if (interfaces == NULL)
2206                                 goto out;
2207
2208                         for (j = 0; j < LNET_INTERFACES_NUM; j++) {
2209                                 if (strlen(ni_data->lic_ni_intf[j]) > 0) {
2210                                         snprintf(str_buf,
2211                                                  sizeof(str_buf), "%d", j);
2212                                         if (cYAML_create_string(interfaces,
2213                                                 str_buf,
2214                                                 ni_data->lic_ni_intf[j]) ==
2215                                                         NULL)
2216                                                 goto out;
2217                                 }
2218                         }
2219                 }
2220
2221                 if (detail) {
2222                         char *limit;
2223                         int k;
2224
2225                         if (backup)
2226                                 goto continue_without_msg_stats;
2227
2228                         statistics = cYAML_create_object(item, "statistics");
2229                         if (statistics == NULL)
2230                                 goto out;
2231
2232                         if (cYAML_create_number(statistics, "send_count",
2233                                                 stats->iel_send_count)
2234                                                         == NULL)
2235                                 goto out;
2236
2237                         if (cYAML_create_number(statistics, "recv_count",
2238                                                 stats->iel_recv_count)
2239                                                         == NULL)
2240                                 goto out;
2241
2242                         if (cYAML_create_number(statistics, "drop_count",
2243                                                 stats->iel_drop_count)
2244                                                         == NULL)
2245                                 goto out;
2246
2247                         if (detail < 2)
2248                                 goto continue_without_msg_stats;
2249
2250                         LIBCFS_IOC_INIT_V2(msg_stats, im_hdr);
2251                         msg_stats.im_hdr.ioc_len = sizeof(msg_stats);
2252                         msg_stats.im_idx = i;
2253
2254                         rc = l_ioctl(LNET_DEV_ID,
2255                                      IOC_LIBCFS_GET_LOCAL_NI_MSG_STATS,
2256                                      &msg_stats);
2257                         if (rc != 0) {
2258                                 l_errno = errno;
2259                                 goto continue_without_msg_stats;
2260                         }
2261
2262                         for (k = 0; k < 3; k++) {
2263                                 struct lnet_ioctl_comm_count *counts;
2264                                 struct cYAML *msg_statistics = NULL;
2265
2266                                 msg_statistics = cYAML_create_object(item,
2267                                                  (char *)gmsg_stat_names[k]);
2268                                 if (msg_statistics == NULL)
2269                                         goto out;
2270
2271                                 counts = get_counts(&msg_stats, k);
2272                                 if (counts == NULL)
2273                                         goto out;
2274
2275                                 if (!add_msg_stats_to_yaml_blk(msg_statistics,
2276                                                                counts))
2277                                         goto out;
2278                         }
2279
2280 continue_without_msg_stats:
2281                         tunables = cYAML_create_object(item, "tunables");
2282                         if (!tunables)
2283                                 goto out;
2284
2285                         rc = lustre_net_show_tunables(tunables, &lnd->lt_cmn);
2286                         if (rc != LUSTRE_CFG_RC_NO_ERR)
2287                                 goto out;
2288
2289                         rc = lustre_ni_show_tunables(tunables, LNET_NETTYP(rc_net),
2290                                                      &lnd->lt_tun);
2291                         if (rc != LUSTRE_CFG_RC_NO_ERR &&
2292                             rc != LUSTRE_CFG_RC_NO_MATCH)
2293                                 goto out;
2294
2295                         if (rc != LUSTRE_CFG_RC_NO_MATCH) {
2296                                 tunables = cYAML_create_object(item,
2297                                                                "lnd tunables");
2298                                 if (tunables == NULL)
2299                                         goto out;
2300                         }
2301
2302                         if (!backup &&
2303                             cYAML_create_number(item, "dev cpt",
2304                                                 ni_data->lic_dev_cpt) == NULL)
2305                                 goto out;
2306
2307                         if (!backup &&
2308                             cYAML_create_number(item, "tcp bonding",
2309                                                 ni_data->lic_tcp_bonding)
2310                                                         == NULL)
2311                                 goto out;
2312
2313                         /* out put the CPTs in the format: "[x,x,x,...]" */
2314                         limit = str_buf + str_buf_len - 3;
2315                         pos += snprintf(pos, limit - pos, "\"[");
2316                         for (j = 0 ; ni_data->lic_ncpts >= 1 &&
2317                                 j < ni_data->lic_ncpts &&
2318                                 pos < limit; j++) {
2319                                 pos += snprintf(pos, limit - pos,
2320                                                 "%d", ni_data->lic_cpts[j]);
2321                                 if ((j + 1) < ni_data->lic_ncpts)
2322                                         pos += snprintf(pos, limit - pos, ",");
2323                         }
2324                         pos += snprintf(pos, 3, "]\"");
2325
2326                         if (ni_data->lic_ncpts >= 1 &&
2327                             cYAML_create_string(item, "CPT",
2328                                                 str_buf) == NULL)
2329                                 goto out;
2330                 }
2331         }
2332
2333         /* Print out the net information only if show_rc is not provided */
2334         if (show_rc == NULL)
2335                 cYAML_print_tree(root);
2336
2337         if (l_errno != ENOENT) {
2338                 snprintf(err_str,
2339                          sizeof(err_str),
2340                          "\"cannot get networks: %s\"",
2341                          strerror(l_errno));
2342                 rc = -l_errno;
2343                 goto out;
2344         } else
2345                 rc = LUSTRE_CFG_RC_NO_ERR;
2346
2347         snprintf(err_str, sizeof(err_str), "\"success\"");
2348 out:
2349         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR || !exist) {
2350                 cYAML_free_tree(root);
2351         } else if (show_rc != NULL && *show_rc != NULL) {
2352                 struct cYAML *show_node;
2353                 /* find the net node, if one doesn't exist
2354                  * then insert one.  Otherwise add to the one there
2355                  */
2356                 show_node = cYAML_get_object_item(*show_rc, "net");
2357                 if (show_node != NULL && cYAML_is_sequence(show_node)) {
2358                         cYAML_insert_child(show_node, first_seq);
2359                         free(net_node);
2360                         free(root);
2361                 } else if (show_node == NULL) {
2362                         cYAML_insert_sibling((*show_rc)->cy_child,
2363                                                 net_node);
2364                         free(root);
2365                 } else {
2366                         cYAML_free_tree(root);
2367                 }
2368         } else {
2369                 *show_rc = root;
2370         }
2371
2372         cYAML_build_error(rc, seq_no, SHOW_CMD, "net", err_str, err_rc);
2373
2374         return rc;
2375 }
2376
2377 int lustre_lnet_enable_routing(int enable, int seq_no, struct cYAML **err_rc)
2378 {
2379         struct lnet_ioctl_config_data data;
2380         int rc = LUSTRE_CFG_RC_NO_ERR;
2381         char err_str[LNET_MAX_STR_LEN];
2382
2383         snprintf(err_str, sizeof(err_str), "\"success\"");
2384
2385         LIBCFS_IOC_INIT_V2(data, cfg_hdr);
2386         data.cfg_config_u.cfg_buffers.buf_enable = (enable) ? 1 : 0;
2387
2388         rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_CONFIG_RTR, &data);
2389         if (rc != 0) {
2390                 rc = -errno;
2391                 snprintf(err_str,
2392                          sizeof(err_str),
2393                          "\"cannot %s routing %s\"",
2394                          (enable) ? "enable" : "disable", strerror(errno));
2395                 goto out;
2396         }
2397
2398 out:
2399         cYAML_build_error(rc, seq_no,
2400                          (enable) ? ADD_CMD : DEL_CMD,
2401                          "routing", err_str, err_rc);
2402
2403         return rc;
2404 }
2405
2406 int ioctl_set_value(__u32 val, int ioc, char *name,
2407                     int seq_no, struct cYAML **err_rc)
2408 {
2409         struct lnet_ioctl_set_value data;
2410         int rc = LUSTRE_CFG_RC_NO_ERR;
2411         char err_str[LNET_MAX_STR_LEN];
2412
2413         snprintf(err_str, sizeof(err_str), "\"success\"");
2414
2415         LIBCFS_IOC_INIT_V2(data, sv_hdr);
2416         data.sv_value = val;
2417
2418         rc = l_ioctl(LNET_DEV_ID, ioc , &data);
2419         if (rc != 0) {
2420                 rc = -errno;
2421                 snprintf(err_str,
2422                          sizeof(err_str),
2423                          "\"cannot configure %s to %d: %s\"", name,
2424                          val, strerror(errno));
2425         }
2426
2427         cYAML_build_error(rc, seq_no, ADD_CMD, name, err_str, err_rc);
2428
2429         return rc;
2430 }
2431
2432 int lustre_lnet_config_hsensitivity(int sen, int seq_no, struct cYAML **err_rc)
2433 {
2434         int rc = LUSTRE_CFG_RC_NO_ERR;
2435         char err_str[LNET_MAX_STR_LEN];
2436         char val[LNET_MAX_STR_LEN];
2437
2438         snprintf(err_str, sizeof(err_str), "\"success\"");
2439
2440         snprintf(val, sizeof(val), "%d", sen);
2441
2442         rc = write_sysfs_file(modparam_path, "lnet_health_sensitivity", val,
2443                               1, strlen(val) + 1);
2444         if (rc)
2445                 snprintf(err_str, sizeof(err_str),
2446                          "\"cannot configure health sensitivity: %s\"",
2447                          strerror(errno));
2448
2449         cYAML_build_error(rc, seq_no, ADD_CMD, "health_sensitivity", err_str, err_rc);
2450
2451         return rc;
2452 }
2453
2454 int lustre_lnet_config_transaction_to(int timeout, int seq_no, struct cYAML **err_rc)
2455 {
2456         int rc = LUSTRE_CFG_RC_NO_ERR;
2457         char err_str[LNET_MAX_STR_LEN];
2458         char val[LNET_MAX_STR_LEN];
2459
2460         snprintf(err_str, sizeof(err_str), "\"success\"");
2461
2462         snprintf(val, sizeof(val), "%d", timeout);
2463
2464         rc = write_sysfs_file(modparam_path, "lnet_transaction_timeout", val,
2465                               1, strlen(val) + 1);
2466         if (rc)
2467                 snprintf(err_str, sizeof(err_str),
2468                          "\"cannot configure transaction timeout: %s\"",
2469                          strerror(errno));
2470
2471         cYAML_build_error(rc, seq_no, ADD_CMD, "transaction_timeout", err_str, err_rc);
2472
2473         return rc;
2474 }
2475
2476 int lustre_lnet_config_retry_count(int count, int seq_no, struct cYAML **err_rc)
2477 {
2478         int rc = LUSTRE_CFG_RC_NO_ERR;
2479         char err_str[LNET_MAX_STR_LEN];
2480         char val[LNET_MAX_STR_LEN];
2481
2482         snprintf(err_str, sizeof(err_str), "\"success\"");
2483
2484         snprintf(val, sizeof(val), "%d", count);
2485
2486         rc = write_sysfs_file(modparam_path, "lnet_retry_count", val,
2487                               1, strlen(val) + 1);
2488         if (rc)
2489                 snprintf(err_str, sizeof(err_str),
2490                          "\"cannot configure retry count: %s\"",
2491                          strerror(errno));
2492
2493         cYAML_build_error(rc, seq_no, ADD_CMD, "retry_count", err_str, err_rc);
2494
2495         return rc;
2496 }
2497
2498 int lustre_lnet_config_max_intf(int max, int seq_no, struct cYAML **err_rc)
2499 {
2500         int rc = LUSTRE_CFG_RC_NO_ERR;
2501         char err_str[LNET_MAX_STR_LEN];
2502         char val[LNET_MAX_STR_LEN];
2503
2504         snprintf(err_str, sizeof(err_str), "\"success\"");
2505
2506         snprintf(val, sizeof(val), "%d", max);
2507
2508         rc = write_sysfs_file(modparam_path, "lnet_interfaces_max", val,
2509                               1, strlen(val) + 1);
2510         if (rc)
2511                 snprintf(err_str, sizeof(err_str),
2512                          "\"cannot configure max interfaces: %s\"",
2513                          strerror(errno));
2514
2515         cYAML_build_error(rc, seq_no, ADD_CMD, "max_interfaces", err_str, err_rc);
2516
2517         return rc;
2518 }
2519
2520 int lustre_lnet_config_discovery(int enable, int seq_no, struct cYAML **err_rc)
2521 {
2522         int rc = LUSTRE_CFG_RC_NO_ERR;
2523         char err_str[LNET_MAX_STR_LEN];
2524         char val[LNET_MAX_STR_LEN];
2525
2526         snprintf(err_str, sizeof(err_str), "\"success\"");
2527
2528         snprintf(val, sizeof(val), "%u", (enable) ? 0 : 1);
2529
2530         rc = write_sysfs_file(modparam_path, "lnet_peer_discovery_disabled", val,
2531                               1, strlen(val) + 1);
2532         if (rc)
2533                 snprintf(err_str, sizeof(err_str),
2534                          "\"cannot configure discovery: %s\"",
2535                          strerror(errno));
2536
2537         cYAML_build_error(rc, seq_no, ADD_CMD, "discovery", err_str, err_rc);
2538
2539         return rc;
2540
2541 }
2542
2543 int lustre_lnet_config_numa_range(int range, int seq_no, struct cYAML **err_rc)
2544 {
2545         return ioctl_set_value(range, IOC_LIBCFS_SET_NUMA_RANGE,
2546                                "numa_range", seq_no, err_rc);
2547 }
2548
2549 int lustre_lnet_config_buffers(int tiny, int small, int large, int seq_no,
2550                                struct cYAML **err_rc)
2551 {
2552         struct lnet_ioctl_config_data data;
2553         int rc = LUSTRE_CFG_RC_NO_ERR;
2554         char err_str[LNET_MAX_STR_LEN];
2555
2556         snprintf(err_str, sizeof(err_str), "\"success\"");
2557
2558         /* -1 indicates to ignore changes to this field */
2559         if (tiny < -1 || small < -1 || large < -1) {
2560                 snprintf(err_str,
2561                          sizeof(err_str),
2562                          "\"tiny, small and large must be >= 0\"");
2563                 rc = LUSTRE_CFG_RC_OUT_OF_RANGE_PARAM;
2564                 goto out;
2565         }
2566
2567         LIBCFS_IOC_INIT_V2(data, cfg_hdr);
2568         data.cfg_config_u.cfg_buffers.buf_tiny = tiny;
2569         data.cfg_config_u.cfg_buffers.buf_small = small;
2570         data.cfg_config_u.cfg_buffers.buf_large = large;
2571
2572         rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_ADD_BUF, &data);
2573         if (rc != 0) {
2574                 rc = -errno;
2575                 snprintf(err_str,
2576                          sizeof(err_str),
2577                          "\"cannot configure buffers: %s\"", strerror(errno));
2578                 goto out;
2579         }
2580
2581 out:
2582         cYAML_build_error(rc, seq_no, ADD_CMD, "buf", err_str, err_rc);
2583
2584         return rc;
2585 }
2586
2587 int lustre_lnet_show_routing(int seq_no, struct cYAML **show_rc,
2588                              struct cYAML **err_rc, bool backup)
2589 {
2590         struct lnet_ioctl_config_data *data;
2591         struct lnet_ioctl_pool_cfg *pool_cfg = NULL;
2592         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
2593         int l_errno = 0;
2594         char *buf;
2595         char *pools[LNET_NRBPOOLS] = {"tiny", "small", "large"};
2596         int buf_count[LNET_NRBPOOLS] = {0};
2597         struct cYAML *root = NULL, *pools_node = NULL,
2598                      *type_node = NULL, *item = NULL, *cpt = NULL,
2599                      *first_seq = NULL, *buffers = NULL;
2600         int i, j;
2601         char err_str[LNET_MAX_STR_LEN];
2602         char node_name[LNET_MAX_STR_LEN];
2603         bool exist = false;
2604
2605         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
2606
2607         buf = calloc(1, sizeof(*data) + sizeof(*pool_cfg));
2608         if (buf == NULL)
2609                 goto out;
2610
2611         data = (struct lnet_ioctl_config_data *)buf;
2612
2613         root = cYAML_create_object(NULL, NULL);
2614         if (root == NULL)
2615                 goto out;
2616
2617         if (backup)
2618                 pools_node = cYAML_create_object(root, "routing");
2619         else
2620                 pools_node = cYAML_create_seq(root, "routing");
2621         if (pools_node == NULL)
2622                 goto out;
2623
2624         for (i = 0;; i++) {
2625                 LIBCFS_IOC_INIT_V2(*data, cfg_hdr);
2626                 data->cfg_hdr.ioc_len = sizeof(struct lnet_ioctl_config_data) +
2627                                         sizeof(struct lnet_ioctl_pool_cfg);
2628                 data->cfg_count = i;
2629
2630                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_BUF, data);
2631                 if (rc != 0) {
2632                         l_errno = errno;
2633                         break;
2634                 }
2635
2636                 exist = true;
2637
2638                 pool_cfg = (struct lnet_ioctl_pool_cfg *)data->cfg_bulk;
2639
2640                 if (backup)
2641                         goto calculate_buffers;
2642
2643                 snprintf(node_name, sizeof(node_name), "cpt[%d]", i);
2644                 item = cYAML_create_seq_item(pools_node);
2645                 if (item == NULL)
2646                         goto out;
2647
2648                 if (first_seq == NULL)
2649                         first_seq = item;
2650
2651                 cpt = cYAML_create_object(item, node_name);
2652                 if (cpt == NULL)
2653                         goto out;
2654
2655 calculate_buffers:
2656                 /* create the tree  and print */
2657                 for (j = 0; j < LNET_NRBPOOLS; j++) {
2658                         if (!backup) {
2659                                 type_node = cYAML_create_object(cpt, pools[j]);
2660                                 if (type_node == NULL)
2661                                         goto out;
2662                         }
2663                         if (!backup &&
2664                             cYAML_create_number(type_node, "npages",
2665                                                 pool_cfg->pl_pools[j].pl_npages)
2666                             == NULL)
2667                                 goto out;
2668                         if (!backup &&
2669                             cYAML_create_number(type_node, "nbuffers",
2670                                                 pool_cfg->pl_pools[j].
2671                                                   pl_nbuffers) == NULL)
2672                                 goto out;
2673                         if (!backup &&
2674                             cYAML_create_number(type_node, "credits",
2675                                                 pool_cfg->pl_pools[j].
2676                                                    pl_credits) == NULL)
2677                                 goto out;
2678                         if (!backup &&
2679                             cYAML_create_number(type_node, "mincredits",
2680                                                 pool_cfg->pl_pools[j].
2681                                                    pl_mincredits) == NULL)
2682                                 goto out;
2683                         /* keep track of the total count for each of the
2684                          * tiny, small and large buffers */
2685                         buf_count[j] += pool_cfg->pl_pools[j].pl_nbuffers;
2686                 }
2687         }
2688
2689         if (pool_cfg != NULL) {
2690                 if (backup) {
2691                         if (cYAML_create_number(pools_node, "enable",
2692                                                 pool_cfg->pl_routing) ==
2693                         NULL)
2694                                 goto out;
2695
2696                         goto add_buffer_section;
2697                 }
2698
2699                 item = cYAML_create_seq_item(pools_node);
2700                 if (item == NULL)
2701                         goto out;
2702
2703                 if (cYAML_create_number(item, "enable", pool_cfg->pl_routing) ==
2704                     NULL)
2705                         goto out;
2706         }
2707
2708 add_buffer_section:
2709         /* create a buffers entry in the show. This is necessary so that
2710          * if the YAML output is used to configure a node, the buffer
2711          * configuration takes hold */
2712         buffers = cYAML_create_object(root, "buffers");
2713         if (buffers == NULL)
2714                 goto out;
2715
2716         for (i = 0; i < LNET_NRBPOOLS; i++) {
2717                 if (cYAML_create_number(buffers, pools[i], buf_count[i]) == NULL)
2718                         goto out;
2719         }
2720
2721         if (show_rc == NULL)
2722                 cYAML_print_tree(root);
2723
2724         if (l_errno != ENOENT) {
2725                 snprintf(err_str,
2726                          sizeof(err_str),
2727                          "\"cannot get routing information: %s\"",
2728                          strerror(l_errno));
2729                 rc = -l_errno;
2730                 goto out;
2731         } else
2732                 rc = LUSTRE_CFG_RC_NO_ERR;
2733
2734         snprintf(err_str, sizeof(err_str), "\"success\"");
2735         rc = LUSTRE_CFG_RC_NO_ERR;
2736
2737 out:
2738         free(buf);
2739         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR || !exist) {
2740                 cYAML_free_tree(root);
2741         } else if (show_rc != NULL && *show_rc != NULL) {
2742                 struct cYAML *routing_node;
2743                 /* there should exist only one routing block and one
2744                  * buffers block. If there already exists a previous one
2745                  * then don't add another */
2746                 routing_node = cYAML_get_object_item(*show_rc, "routing");
2747                 if (routing_node == NULL) {
2748                         cYAML_insert_sibling((*show_rc)->cy_child,
2749                                                 root->cy_child);
2750                         free(root);
2751                 } else {
2752                         cYAML_free_tree(root);
2753                 }
2754         } else {
2755                 *show_rc = root;
2756         }
2757
2758         cYAML_build_error(rc, seq_no, SHOW_CMD, "routing", err_str, err_rc);
2759
2760         return rc;
2761 }
2762
2763 int lustre_lnet_show_peer(char *knid, int detail, int seq_no,
2764                           struct cYAML **show_rc, struct cYAML **err_rc,
2765                           bool backup)
2766 {
2767         /*
2768          * TODO: This function is changing in a future patch to accommodate
2769          * PEER_LIST and proper filtering on any nid of the peer
2770          */
2771         struct lnet_ioctl_peer_cfg peer_info;
2772         struct lnet_peer_ni_credit_info *lpni_cri;
2773         struct lnet_ioctl_element_stats *lpni_stats;
2774         struct lnet_ioctl_element_msg_stats *msg_stats;
2775         lnet_nid_t *nidp;
2776         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
2777         int i, j, k;
2778         int l_errno = 0;
2779         __u32 count;
2780         __u32 size;
2781         struct cYAML *root = NULL, *peer = NULL, *peer_ni = NULL,
2782                      *first_seq = NULL, *peer_root = NULL, *tmp = NULL,
2783                      *msg_statistics = NULL, *statistics = NULL;
2784         char err_str[LNET_MAX_STR_LEN];
2785         struct lnet_process_id *list = NULL;
2786         void *data = NULL;
2787         void *lpni_data;
2788
2789         snprintf(err_str, sizeof(err_str),
2790                  "\"out of memory\"");
2791
2792         /* create struct cYAML root object */
2793         root = cYAML_create_object(NULL, NULL);
2794         if (root == NULL)
2795                 goto out;
2796
2797         peer_root = cYAML_create_seq(root, "peer");
2798         if (peer_root == NULL)
2799                 goto out;
2800
2801         count = 1000;
2802         size = count * sizeof(struct lnet_process_id);
2803         list = malloc(size);
2804         if (list == NULL) {
2805                 l_errno = ENOMEM;
2806                 goto out;
2807         }
2808         if (knid != NULL) {
2809                 list[0].nid = libcfs_str2nid(knid);
2810                 count = 1;
2811         } else {
2812                 for (;;) {
2813                         memset(&peer_info, 0, sizeof(peer_info));
2814                         LIBCFS_IOC_INIT_V2(peer_info, prcfg_hdr);
2815                         peer_info.prcfg_hdr.ioc_len = sizeof(peer_info);
2816                         peer_info.prcfg_size = size;
2817                         peer_info.prcfg_bulk = list;
2818
2819                         l_errno = 0;
2820                         rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_PEER_LIST,
2821                                      &peer_info);
2822                         count = peer_info.prcfg_count;
2823                         if (rc == 0)
2824                                 break;
2825                         l_errno = errno;
2826                         if (l_errno != E2BIG) {
2827                                 snprintf(err_str,
2828                                         sizeof(err_str),
2829                                         "\"cannot get peer list: %s\"",
2830                                         strerror(l_errno));
2831                                 rc = -l_errno;
2832                                 goto out;
2833                         }
2834                         free(list);
2835                         size = peer_info.prcfg_size;
2836                         list = malloc(size);
2837                         if (list == NULL) {
2838                                 l_errno = ENOMEM;
2839                                 goto out;
2840                         }
2841                 }
2842         }
2843
2844         size = 4096;
2845         data = malloc(size);
2846         if (data == NULL) {
2847                 l_errno = ENOMEM;
2848                 goto out;
2849         }
2850         for (i = 0; i < count; i++) {
2851                 for (;;) {
2852                         memset(&peer_info, 0, sizeof(peer_info));
2853                         LIBCFS_IOC_INIT_V2(peer_info, prcfg_hdr);
2854                         peer_info.prcfg_hdr.ioc_len = sizeof(peer_info);
2855                         peer_info.prcfg_prim_nid = list[i].nid;
2856                         peer_info.prcfg_size = size;
2857                         peer_info.prcfg_bulk = data;
2858
2859                         l_errno = 0;
2860                         rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_PEER_NI,
2861                                      &peer_info);
2862                         if (rc == 0)
2863                                 break;
2864                         l_errno = errno;
2865                         if (l_errno != E2BIG) {
2866                                 snprintf(err_str,
2867                                         sizeof(err_str),
2868                                         "\"cannot get peer information: %s\"",
2869                                         strerror(l_errno));
2870                                 rc = -l_errno;
2871                                 goto out;
2872                         }
2873                         free(data);
2874                         size = peer_info.prcfg_size;
2875                         data = malloc(size);
2876                         if (data == NULL) {
2877                                 l_errno = ENOMEM;
2878                                 goto out;
2879                         }
2880                 }
2881
2882                 peer = cYAML_create_seq_item(peer_root);
2883                 if (peer == NULL)
2884                         goto out;
2885
2886                 if (first_seq == NULL)
2887                         first_seq = peer;
2888
2889                 lnet_nid_t pnid = peer_info.prcfg_prim_nid;
2890                 if (cYAML_create_string(peer, "primary nid",
2891                                         libcfs_nid2str(pnid))
2892                     == NULL)
2893                         goto out;
2894                 if (cYAML_create_string(peer, "Multi-Rail",
2895                                         peer_info.prcfg_mr ? "True" : "False")
2896                     == NULL)
2897                         goto out;
2898                 /*
2899                  * print out the state of the peer only if details are
2900                  * requested
2901                  */
2902                 if (detail >= 3) {
2903                         if (!backup &&
2904                             cYAML_create_number(peer, "peer state",
2905                                                 peer_info.prcfg_state)
2906                                 == NULL)
2907                                 goto out;
2908                 }
2909
2910                 tmp = cYAML_create_seq(peer, "peer ni");
2911                 if (tmp == NULL)
2912                         goto out;
2913
2914                 lpni_data = data;
2915                 for (j = 0; j < peer_info.prcfg_count; j++) {
2916                         nidp = lpni_data;
2917                         lpni_cri = (void*)nidp + sizeof(nidp);
2918                         lpni_stats = (void *)lpni_cri + sizeof(*lpni_cri);
2919                         msg_stats = (void *)lpni_stats + sizeof(*lpni_stats);
2920                         lpni_data = (void *)msg_stats + sizeof(*msg_stats);
2921
2922                         peer_ni = cYAML_create_seq_item(tmp);
2923                         if (peer_ni == NULL)
2924                                 goto out;
2925
2926                         if (cYAML_create_string(peer_ni, "nid",
2927                                                 libcfs_nid2str(*nidp))
2928                             == NULL)
2929                                 goto out;
2930
2931                         if (backup)
2932                                 continue;
2933
2934                         if (cYAML_create_string(peer_ni, "state",
2935                                                 lpni_cri->cr_aliveness)
2936                             == NULL)
2937                                 goto out;
2938
2939                         if (!detail)
2940                                 continue;
2941
2942                         if (cYAML_create_number(peer_ni, "max_ni_tx_credits",
2943                                                 lpni_cri->cr_ni_peer_tx_credits)
2944                             == NULL)
2945                                 goto out;
2946
2947                         if (cYAML_create_number(peer_ni, "available_tx_credits",
2948                                                 lpni_cri->cr_peer_tx_credits)
2949                             == NULL)
2950                                 goto out;
2951
2952                         if (cYAML_create_number(peer_ni, "min_tx_credits",
2953                                                 lpni_cri->cr_peer_min_tx_credits)
2954                             == NULL)
2955                                 goto out;
2956
2957                         if (cYAML_create_number(peer_ni, "tx_q_num_of_buf",
2958                                                 lpni_cri->cr_peer_tx_qnob)
2959                             == NULL)
2960                                 goto out;
2961
2962                         if (cYAML_create_number(peer_ni, "available_rtr_credits",
2963                                                 lpni_cri->cr_peer_rtr_credits)
2964                             == NULL)
2965                                 goto out;
2966
2967                         if (cYAML_create_number(peer_ni, "min_rtr_credits",
2968                                                 lpni_cri->cr_peer_min_rtr_credits)
2969                             == NULL)
2970                                 goto out;
2971
2972                         if (cYAML_create_number(peer_ni, "refcount",
2973                                                 lpni_cri->cr_refcount) == NULL)
2974                                 goto out;
2975
2976                         statistics = cYAML_create_object(peer_ni, "statistics");
2977                         if (statistics == NULL)
2978                                 goto out;
2979
2980                         if (cYAML_create_number(statistics, "send_count",
2981                                                 lpni_stats->iel_send_count)
2982                             == NULL)
2983                                 goto out;
2984
2985                         if (cYAML_create_number(statistics, "recv_count",
2986                                                 lpni_stats->iel_recv_count)
2987                             == NULL)
2988                                 goto out;
2989
2990                         if (cYAML_create_number(statistics, "drop_count",
2991                                                 lpni_stats->iel_drop_count)
2992                             == NULL)
2993                                 goto out;
2994
2995                         if (detail < 2)
2996                                 continue;
2997
2998                         for (k = 0; k < 3; k++) {
2999                                 struct lnet_ioctl_comm_count *counts;
3000
3001                                 msg_statistics = cYAML_create_object(peer_ni,
3002                                                  (char *) gmsg_stat_names[k]);
3003                                 if (msg_statistics == NULL)
3004                                         goto out;
3005
3006                                 counts = get_counts(msg_stats, k);
3007                                 if (counts == NULL)
3008                                         goto out;
3009
3010                                 if (!add_msg_stats_to_yaml_blk(msg_statistics,
3011                                                                counts))
3012                                         goto out;
3013                         }
3014
3015                 }
3016         }
3017
3018         /* print output iff show_rc is not provided */
3019         if (show_rc == NULL)
3020                 cYAML_print_tree(root);
3021
3022         snprintf(err_str, sizeof(err_str), "\"success\"");
3023         rc = LUSTRE_CFG_RC_NO_ERR;
3024
3025 out:
3026         free(list);
3027         free(data);
3028         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR) {
3029                 cYAML_free_tree(root);
3030         } else if (show_rc != NULL && *show_rc != NULL) {
3031                 struct cYAML *show_node;
3032                 /* find the peer node, if one doesn't exist then
3033                  * insert one.  Otherwise add to the one there
3034                  */
3035                 show_node = cYAML_get_object_item(*show_rc,
3036                                                   "peer");
3037                 if (show_node != NULL && cYAML_is_sequence(show_node)) {
3038                         cYAML_insert_child(show_node, first_seq);
3039                         free(peer_root);
3040                         free(root);
3041                 } else if (show_node == NULL) {
3042                         cYAML_insert_sibling((*show_rc)->cy_child,
3043                                              peer_root);
3044                         free(root);
3045                 } else {
3046                         cYAML_free_tree(root);
3047                 }
3048         } else {
3049                 *show_rc = root;
3050         }
3051
3052         cYAML_build_error(rc, seq_no, SHOW_CMD, "peer", err_str,
3053                           err_rc);
3054
3055         return rc;
3056 }
3057
3058 int lustre_lnet_list_peer(int seq_no,
3059                           struct cYAML **show_rc, struct cYAML **err_rc)
3060 {
3061         struct lnet_ioctl_peer_cfg peer_info;
3062         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3063         __u32 count;
3064         __u32 size;
3065         int i = 0;
3066         int l_errno = 0;
3067         struct cYAML *root = NULL, *list_root = NULL, *first_seq = NULL;
3068         char err_str[LNET_MAX_STR_LEN];
3069         struct lnet_process_id *list = NULL;
3070
3071         snprintf(err_str, sizeof(err_str),
3072                  "\"out of memory\"");
3073
3074         memset(&peer_info, 0, sizeof(peer_info));
3075
3076         /* create struct cYAML root object */
3077         root = cYAML_create_object(NULL, NULL);
3078         if (root == NULL)
3079                 goto out;
3080
3081         list_root = cYAML_create_seq(root, "peer list");
3082         if (list_root == NULL)
3083                 goto out;
3084
3085         count = 1000;
3086         size = count * sizeof(struct lnet_process_id);
3087         list = malloc(size);
3088         if (list == NULL) {
3089                 l_errno = ENOMEM;
3090                 goto out;
3091         }
3092         for (;;) {
3093                 LIBCFS_IOC_INIT_V2(peer_info, prcfg_hdr);
3094                 peer_info.prcfg_hdr.ioc_len = sizeof(peer_info);
3095                 peer_info.prcfg_size = size;
3096                 peer_info.prcfg_bulk = list;
3097
3098                 l_errno = 0;
3099                 rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_PEER_LIST, &peer_info);
3100                 count = peer_info.prcfg_count;
3101                 if (rc == 0)
3102                         break;
3103                 l_errno = errno;
3104                 if (l_errno != E2BIG) {
3105                         snprintf(err_str,
3106                                 sizeof(err_str),
3107                                 "\"cannot get peer list: %s\"",
3108                                 strerror(l_errno));
3109                         rc = -l_errno;
3110                         goto out;
3111                 }
3112                 free(list);
3113                 size = peer_info.prcfg_size;
3114                 list = malloc(size);
3115                 if (list == NULL) {
3116                         l_errno = ENOMEM;
3117                         goto out;
3118                 }
3119         }
3120
3121         /* count is now the actual number of ids in the list. */
3122         for (i = 0; i < count; i++) {
3123                 if (cYAML_create_string(list_root, "nid",
3124                                         libcfs_nid2str(list[i].nid))
3125                     == NULL)
3126                         goto out;
3127         }
3128
3129         /* print output iff show_rc is not provided */
3130         if (show_rc == NULL)
3131                 cYAML_print_tree(root);
3132
3133         snprintf(err_str, sizeof(err_str), "\"success\"");
3134         rc = LUSTRE_CFG_RC_NO_ERR;
3135
3136 out:
3137         if (list != NULL)
3138                 free(list);
3139         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR) {
3140                 cYAML_free_tree(root);
3141         } else if (show_rc != NULL && *show_rc != NULL) {
3142                 struct cYAML *show_node;
3143                 /* find the peer node, if one doesn't exist then
3144                  * insert one.  Otherwise add to the one there
3145                  */
3146                 show_node = cYAML_get_object_item(*show_rc,
3147                                                   "peer");
3148                 if (show_node != NULL && cYAML_is_sequence(show_node)) {
3149                         cYAML_insert_child(show_node, first_seq);
3150                         free(list_root);
3151                         free(root);
3152                 } else if (show_node == NULL) {
3153                         cYAML_insert_sibling((*show_rc)->cy_child,
3154                                              list_root);
3155                         free(root);
3156                 } else {
3157                         cYAML_free_tree(root);
3158                 }
3159         } else {
3160                 *show_rc = root;
3161         }
3162
3163         cYAML_build_error(rc, seq_no, SHOW_CMD, "peer", err_str,
3164                           err_rc);
3165
3166         return rc;
3167 }
3168
3169 static void add_to_global(struct cYAML *show_rc, struct cYAML *node,
3170                           struct cYAML *root)
3171 {
3172         struct cYAML *show_node;
3173
3174         show_node = cYAML_get_object_item(show_rc, "global");
3175         if (show_node != NULL)
3176                 cYAML_insert_sibling(show_node->cy_child,
3177                                      node->cy_child);
3178         else
3179                 cYAML_insert_sibling(show_rc->cy_child,
3180                                      node);
3181         free(root);
3182 }
3183
3184 static int build_global_yaml_entry(char *err_str, int err_len, int seq_no,
3185                                    char *name, __u32 value,
3186                                    struct cYAML **show_rc,
3187                                    struct cYAML **err_rc, int err)
3188 {
3189         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3190         struct cYAML *root = NULL, *global = NULL;
3191
3192         if (err) {
3193                 rc = err;
3194                 goto out;
3195         }
3196
3197         root = cYAML_create_object(NULL, NULL);
3198         if (root == NULL)
3199                 goto out;
3200
3201         global = cYAML_create_object(root, "global");
3202         if (global == NULL)
3203                 goto out;
3204
3205         if (cYAML_create_number(global, name,
3206                                 value) == NULL)
3207                 goto out;
3208
3209         if (show_rc == NULL)
3210                 cYAML_print_tree(root);
3211
3212         snprintf(err_str, err_len, "\"success\"");
3213
3214         rc = LUSTRE_CFG_RC_NO_ERR;
3215
3216 out:
3217         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR) {
3218                 cYAML_free_tree(root);
3219         } else if (show_rc != NULL && *show_rc != NULL) {
3220                 add_to_global(*show_rc, global, root);
3221         } else {
3222                 *show_rc = root;
3223         }
3224
3225         cYAML_build_error(rc, seq_no, SHOW_CMD, "global", err_str, err_rc);
3226
3227         return rc;
3228 }
3229
3230 static int ioctl_show_global_values(int ioc, int seq_no, char *name,
3231                                     struct cYAML **show_rc,
3232                                     struct cYAML **err_rc)
3233 {
3234         struct lnet_ioctl_set_value data;
3235         int rc;
3236         int l_errno = 0;
3237         char err_str[LNET_MAX_STR_LEN];
3238
3239         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3240
3241         LIBCFS_IOC_INIT_V2(data, sv_hdr);
3242
3243         rc = l_ioctl(LNET_DEV_ID, ioc, &data);
3244         if (rc != 0) {
3245                 l_errno = -errno;
3246                 snprintf(err_str,
3247                          sizeof(err_str),
3248                          "\"cannot get %s: %s\"",
3249                          name, strerror(l_errno));
3250         }
3251
3252         return build_global_yaml_entry(err_str, sizeof(err_str), seq_no, name,
3253                                        data.sv_value, show_rc, err_rc, l_errno);
3254 }
3255
3256 int lustre_lnet_show_hsensitivity(int seq_no, struct cYAML **show_rc,
3257                                   struct cYAML **err_rc)
3258 {
3259         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3260         char val[LNET_MAX_STR_LEN];
3261         int sen = -1, l_errno = 0;
3262         char err_str[LNET_MAX_STR_LEN];
3263
3264         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3265
3266         rc = read_sysfs_file(modparam_path, "lnet_health_sensitivity", val,
3267                              1, sizeof(val));
3268         if (rc) {
3269                 l_errno = -errno;
3270                 snprintf(err_str, sizeof(err_str),
3271                          "\"cannot get health sensitivity: %d\"", rc);
3272         } else {
3273                 sen = atoi(val);
3274         }
3275
3276         return build_global_yaml_entry(err_str, sizeof(err_str), seq_no,
3277                                        "health_sensitivity", sen, show_rc,
3278                                        err_rc, l_errno);
3279 }
3280
3281 int lustre_lnet_show_transaction_to(int seq_no, struct cYAML **show_rc,
3282                                     struct cYAML **err_rc)
3283 {
3284         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3285         char val[LNET_MAX_STR_LEN];
3286         int tto = -1, l_errno = 0;
3287         char err_str[LNET_MAX_STR_LEN];
3288
3289         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3290
3291         rc = read_sysfs_file(modparam_path, "lnet_transaction_timeout", val,
3292                              1, sizeof(val));
3293         if (rc) {
3294                 l_errno = -errno;
3295                 snprintf(err_str, sizeof(err_str),
3296                          "\"cannot get transaction timeout: %d\"", rc);
3297         } else {
3298                 tto = atoi(val);
3299         }
3300
3301         return build_global_yaml_entry(err_str, sizeof(err_str), seq_no,
3302                                        "transaction_timeout", tto, show_rc,
3303                                        err_rc, l_errno);
3304 }
3305
3306 int lustre_lnet_show_retry_count(int seq_no, struct cYAML **show_rc,
3307                                  struct cYAML **err_rc)
3308 {
3309         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3310         char val[LNET_MAX_STR_LEN];
3311         int retry_count = -1, l_errno = 0;
3312         char err_str[LNET_MAX_STR_LEN];
3313
3314         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3315
3316         rc = read_sysfs_file(modparam_path, "lnet_retry_count", val,
3317                              1, sizeof(val));
3318         if (rc) {
3319                 l_errno = -errno;
3320                 snprintf(err_str, sizeof(err_str),
3321                          "\"cannot get retry count: %d\"", rc);
3322         } else {
3323                 retry_count = atoi(val);
3324         }
3325
3326         return build_global_yaml_entry(err_str, sizeof(err_str), seq_no,
3327                                        "retry_count", retry_count, show_rc,
3328                                        err_rc, l_errno);
3329 }
3330
3331 int lustre_lnet_show_max_intf(int seq_no, struct cYAML **show_rc,
3332                               struct cYAML **err_rc)
3333 {
3334         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3335         char val[LNET_MAX_STR_LEN];
3336         int max_intf = -1, l_errno = 0;
3337         char err_str[LNET_MAX_STR_LEN];
3338
3339         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3340
3341         rc = read_sysfs_file(modparam_path, "lnet_interfaces_max", val,
3342                              1, sizeof(val));
3343         if (rc) {
3344                 l_errno = -errno;
3345                 snprintf(err_str, sizeof(err_str),
3346                          "\"cannot get max interfaces: %d\"", rc);
3347         } else {
3348                 max_intf = atoi(val);
3349         }
3350
3351         return build_global_yaml_entry(err_str, sizeof(err_str), seq_no,
3352                                        "max_intf", max_intf, show_rc,
3353                                        err_rc, l_errno);
3354 }
3355
3356 int lustre_lnet_show_discovery(int seq_no, struct cYAML **show_rc,
3357                                struct cYAML **err_rc)
3358 {
3359         int rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3360         char val[LNET_MAX_STR_LEN];
3361         int discovery = -1, l_errno = 0;
3362         char err_str[LNET_MAX_STR_LEN];
3363
3364         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3365
3366         rc = read_sysfs_file(modparam_path, "lnet_peer_discovery_disabled", val,
3367                              1, sizeof(val));
3368         if (rc) {
3369                 l_errno = -errno;
3370                 snprintf(err_str, sizeof(err_str),
3371                          "\"cannot get discovery setting: %d\"", rc);
3372         } else {
3373                 /*
3374                  * The kernel stores a discovery disabled value. User space
3375                  * shows whether discovery is enabled. So the value must be
3376                  * inverted.
3377                  */
3378                 discovery = !atoi(val);
3379         }
3380
3381         return build_global_yaml_entry(err_str, sizeof(err_str), seq_no,
3382                                        "discovery", discovery, show_rc,
3383                                        err_rc, l_errno);
3384 }
3385
3386 int lustre_lnet_show_numa_range(int seq_no, struct cYAML **show_rc,
3387                                 struct cYAML **err_rc)
3388 {
3389         return ioctl_show_global_values(IOC_LIBCFS_GET_NUMA_RANGE, seq_no,
3390                                         "numa_range", show_rc, err_rc);
3391 }
3392
3393 int lustre_lnet_show_stats(int seq_no, struct cYAML **show_rc,
3394                            struct cYAML **err_rc)
3395 {
3396         struct lnet_ioctl_lnet_stats data;
3397         int rc;
3398         int l_errno;
3399         char err_str[LNET_MAX_STR_LEN];
3400         struct cYAML *root = NULL, *stats = NULL;
3401
3402         snprintf(err_str, sizeof(err_str), "\"out of memory\"");
3403
3404         LIBCFS_IOC_INIT_V2(data, st_hdr);
3405
3406         rc = l_ioctl(LNET_DEV_ID, IOC_LIBCFS_GET_LNET_STATS, &data);
3407         if (rc != 0) {
3408                 l_errno = errno;
3409                 snprintf(err_str,
3410                          sizeof(err_str),
3411                          "\"cannot get lnet statistics: %s\"",
3412                          strerror(l_errno));
3413                 rc = -l_errno;
3414                 goto out;
3415         }
3416
3417         rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3418
3419         root = cYAML_create_object(NULL, NULL);
3420         if (root == NULL)
3421                 goto out;
3422
3423         stats = cYAML_create_object(root, "statistics");
3424         if (stats == NULL)
3425                 goto out;
3426
3427         if (cYAML_create_number(stats, "msgs_alloc",
3428                                 data.st_cntrs.msgs_alloc) == NULL)
3429                 goto out;
3430
3431         if (cYAML_create_number(stats, "msgs_max",
3432                                 data.st_cntrs.msgs_max) == NULL)
3433                 goto out;
3434
3435         if (cYAML_create_number(stats, "errors",
3436                                 data.st_cntrs.errors) == NULL)
3437                 goto out;
3438
3439         if (cYAML_create_number(stats, "send_count",
3440                                 data.st_cntrs.send_count) == NULL)
3441                 goto out;
3442
3443         if (cYAML_create_number(stats, "recv_count",
3444                                 data.st_cntrs.recv_count) == NULL)
3445                 goto out;
3446
3447         if (cYAML_create_number(stats, "route_count",
3448                                 data.st_cntrs.route_count) == NULL)
3449                 goto out;
3450
3451         if (cYAML_create_number(stats, "drop_count",
3452                                 data.st_cntrs.drop_count) == NULL)
3453                 goto out;
3454
3455         if (cYAML_create_number(stats, "send_length",
3456                                 data.st_cntrs.send_length) == NULL)
3457                 goto out;
3458
3459         if (cYAML_create_number(stats, "recv_length",
3460                                 data.st_cntrs.recv_length) == NULL)
3461                 goto out;
3462
3463         if (cYAML_create_number(stats, "route_length",
3464                                 data.st_cntrs.route_length) == NULL)
3465                 goto out;
3466
3467         if (cYAML_create_number(stats, "drop_length",
3468                                 data.st_cntrs.drop_length) == NULL)
3469                 goto out;
3470
3471         if (show_rc == NULL)
3472                 cYAML_print_tree(root);
3473
3474         snprintf(err_str, sizeof(err_str), "\"success\"");
3475         rc = LUSTRE_CFG_RC_NO_ERR;
3476 out:
3477         if (show_rc == NULL || rc != LUSTRE_CFG_RC_NO_ERR) {
3478                 cYAML_free_tree(root);
3479         } else if (show_rc != NULL && *show_rc != NULL) {
3480                 cYAML_insert_sibling((*show_rc)->cy_child,
3481                                         root->cy_child);
3482                 free(root);
3483         } else {
3484                 *show_rc = root;
3485         }
3486
3487         cYAML_build_error(rc, seq_no, SHOW_CMD, "statistics", err_str, err_rc);
3488
3489         return rc;
3490 }
3491
3492 typedef int (*cmd_handler_t)(struct cYAML *tree,
3493                              struct cYAML **show_rc,
3494                              struct cYAML **err_rc);
3495
3496 static int handle_yaml_config_route(struct cYAML *tree, struct cYAML **show_rc,
3497                                     struct cYAML **err_rc)
3498 {
3499         struct cYAML *net, *gw, *hop, *prio, *seq_no;
3500
3501         net = cYAML_get_object_item(tree, "net");
3502         gw = cYAML_get_object_item(tree, "gateway");
3503         hop = cYAML_get_object_item(tree, "hop");
3504         prio = cYAML_get_object_item(tree, "priority");
3505         seq_no = cYAML_get_object_item(tree, "seq_no");
3506
3507         return lustre_lnet_config_route((net) ? net->cy_valuestring : NULL,
3508                                         (gw) ? gw->cy_valuestring : NULL,
3509                                         (hop) ? hop->cy_valueint : -1,
3510                                         (prio) ? prio->cy_valueint : -1,
3511                                         (seq_no) ? seq_no->cy_valueint : -1,
3512                                         err_rc);
3513 }
3514
3515 static void yaml_free_string_array(char **array, int num)
3516 {
3517         int i;
3518         char **sub_array = array;
3519
3520         for (i = 0; i < num; i++) {
3521                 if (*sub_array != NULL)
3522                         free(*sub_array);
3523                 sub_array++;
3524         }
3525         if (array)
3526                 free(array);
3527 }
3528
3529 /*
3530  *    interfaces:
3531  *        0: <intf_name>['['<expr>']']
3532  *        1: <intf_name>['['<expr>']']
3533  */
3534 static int yaml_copy_intf_info(struct cYAML *intf_tree,
3535                                struct lnet_dlc_network_descr *nw_descr)
3536 {
3537         struct cYAML *child = NULL;
3538         int intf_num = 0, rc = LUSTRE_CFG_RC_NO_ERR;
3539         struct lnet_dlc_intf_descr *intf_descr, *tmp;
3540
3541         if (intf_tree == NULL || nw_descr == NULL)
3542                 return LUSTRE_CFG_RC_BAD_PARAM;
3543
3544         /* now grab all the interfaces and their cpts */
3545         child = intf_tree->cy_child;
3546         while (child != NULL) {
3547                 if (child->cy_valuestring == NULL) {
3548                         child = child->cy_next;
3549                         continue;
3550                 }
3551
3552                 if (strlen(child->cy_valuestring) >= LNET_MAX_STR_LEN)
3553                         goto failed;
3554
3555                 rc = lustre_lnet_add_intf_descr(&nw_descr->nw_intflist,
3556                                                 child->cy_valuestring,
3557                                                 strlen(child->cy_valuestring));
3558                 if (rc != LUSTRE_CFG_RC_NO_ERR)
3559                         goto failed;
3560
3561                 intf_num++;
3562                 child = child->cy_next;
3563         }
3564
3565         if (intf_num == 0)
3566                 return LUSTRE_CFG_RC_MISSING_PARAM;
3567
3568         return intf_num;
3569
3570 failed:
3571         list_for_each_entry_safe(intf_descr, tmp, &nw_descr->nw_intflist,
3572                                  intf_on_network) {
3573                 list_del(&intf_descr->intf_on_network);
3574                 free_intf_descr(intf_descr);
3575         }
3576
3577         return rc;
3578 }
3579
3580 static bool
3581 yaml_extract_cmn_tunables(struct cYAML *tree,
3582                           struct lnet_ioctl_config_lnd_cmn_tunables *tunables,
3583                           struct cfs_expr_list **global_cpts)
3584 {
3585         struct cYAML *tun, *item, *smp;
3586         int rc;
3587
3588         tun = cYAML_get_object_item(tree, "tunables");
3589         if (tun != NULL) {
3590                 item = cYAML_get_object_item(tun, "peer_timeout");
3591                 if (item != NULL)
3592                         tunables->lct_peer_timeout = item->cy_valueint;
3593                 item = cYAML_get_object_item(tun, "peer_credits");
3594                 if (item != NULL)
3595                         tunables->lct_peer_tx_credits = item->cy_valueint;
3596                 item = cYAML_get_object_item(tun, "peer_buffer_credits");
3597                 if (item != NULL)
3598                         tunables->lct_peer_rtr_credits = item->cy_valueint;
3599                 item = cYAML_get_object_item(tun, "credits");
3600                 if (item != NULL)
3601                         tunables->lct_max_tx_credits = item->cy_valueint;
3602                 smp = cYAML_get_object_item(tun, "CPT");
3603                 if (smp != NULL) {
3604                         rc = cfs_expr_list_parse(smp->cy_valuestring,
3605                                                  strlen(smp->cy_valuestring),
3606                                                  0, UINT_MAX, global_cpts);
3607                         if (rc != 0)
3608                                 *global_cpts = NULL;
3609                 }
3610
3611                 return true;
3612         }
3613
3614         return false;
3615 }
3616
3617 static bool
3618 yaml_extract_tunables(struct cYAML *tree,
3619                       struct lnet_ioctl_config_lnd_tunables *tunables,
3620                       struct cfs_expr_list **global_cpts,
3621                       __u32 net_type)
3622 {
3623         bool rc;
3624
3625         rc = yaml_extract_cmn_tunables(tree, &tunables->lt_cmn,
3626                                        global_cpts);
3627
3628         if (!rc)
3629                 return rc;
3630
3631         lustre_yaml_extract_lnd_tunables(tree, net_type,
3632                                          &tunables->lt_tun);
3633
3634         return rc;
3635 }
3636
3637 /*
3638  * net:
3639  *    - net type: <net>[<NUM>]
3640   *      local NI(s):
3641  *        - nid: <ip>@<net>[<NUM>]
3642  *          status: up
3643  *          interfaces:
3644  *               0: <intf_name>['['<expr>']']
3645  *               1: <intf_name>['['<expr>']']
3646  *        tunables:
3647  *               peer_timeout: <NUM>
3648  *               peer_credits: <NUM>
3649  *               peer_buffer_credits: <NUM>
3650  *               credits: <NUM>
3651 *         lnd tunables:
3652  *               peercredits_hiw: <NUM>
3653  *               map_on_demand: <NUM>
3654  *               concurrent_sends: <NUM>
3655  *               fmr_pool_size: <NUM>
3656  *               fmr_flush_trigger: <NUM>
3657  *               fmr_cache: <NUM>
3658  *
3659  * At least one interface is required. If no interfaces are provided the
3660  * network interface can not be configured.
3661  */
3662 static int handle_yaml_config_ni(struct cYAML *tree, struct cYAML **show_rc,
3663                                  struct cYAML **err_rc)
3664 {
3665         struct cYAML *net, *intf, *seq_no, *ip2net = NULL, *local_nis = NULL,
3666                      *item = NULL;
3667         int num_entries = 0, rc;
3668         struct lnet_dlc_network_descr nw_descr;
3669         struct cfs_expr_list *global_cpts = NULL;
3670         struct lnet_ioctl_config_lnd_tunables tunables;
3671         bool found = false;
3672
3673         memset(&tunables, 0, sizeof(tunables));
3674
3675         INIT_LIST_HEAD(&nw_descr.network_on_rule);
3676         INIT_LIST_HEAD(&nw_descr.nw_intflist);
3677
3678         ip2net = cYAML_get_object_item(tree, "ip2net");
3679         net = cYAML_get_object_item(tree, "net type");
3680         if (net)
3681                 nw_descr.nw_id = libcfs_str2net(net->cy_valuestring);
3682         else
3683                 nw_descr.nw_id = LOLND;
3684
3685         /*
3686          * if neither net nor ip2nets are present, then we can not
3687          * configure the network.
3688          */
3689         if (!net && !ip2net)
3690                 return LUSTRE_CFG_RC_MISSING_PARAM;
3691
3692         local_nis = cYAML_get_object_item(tree, "local NI(s)");
3693         if (local_nis == NULL)
3694                 return LUSTRE_CFG_RC_MISSING_PARAM;
3695
3696         if (!cYAML_is_sequence(local_nis))
3697                 return LUSTRE_CFG_RC_BAD_PARAM;
3698
3699         while (cYAML_get_next_seq_item(local_nis, &item) != NULL) {
3700                 intf = cYAML_get_object_item(item, "interfaces");
3701                 if (intf == NULL)
3702                         continue;
3703                 num_entries = yaml_copy_intf_info(intf, &nw_descr);
3704                 if (num_entries <= 0) {
3705                         cYAML_build_error(num_entries, -1, "ni", "add",
3706                                         "bad interface list",
3707                                         err_rc);
3708                         return LUSTRE_CFG_RC_BAD_PARAM;
3709                 }
3710         }
3711
3712         found = yaml_extract_tunables(tree, &tunables, &global_cpts,
3713                                       LNET_NETTYP(nw_descr.nw_id));
3714         seq_no = cYAML_get_object_item(tree, "seq_no");
3715
3716         rc = lustre_lnet_config_ni(&nw_descr,
3717                                    global_cpts,
3718                                    (ip2net) ? ip2net->cy_valuestring : NULL,
3719                                    (found) ? &tunables: NULL,
3720                                    (seq_no) ? seq_no->cy_valueint : -1,
3721                                    err_rc);
3722
3723         if (global_cpts != NULL)
3724                 cfs_expr_list_free(global_cpts);
3725
3726         return rc;
3727 }
3728
3729 /*
3730  * ip2nets:
3731  *  - net-spec: <tcp|o2ib|gni>[NUM]
3732  *    interfaces:
3733  *        0: <intf name>['['<expr>']']
3734  *        1: <intf name>['['<expr>']']
3735  *    ip-range:
3736  *        0: <expr.expr.expr.expr>
3737  *        1: <expr.expr.expr.expr>
3738  */
3739 static int handle_yaml_config_ip2nets(struct cYAML *tree,
3740                                       struct cYAML **show_rc,
3741                                       struct cYAML **err_rc)
3742 {
3743         struct cYAML *net, *ip_range, *item = NULL, *intf = NULL,
3744                      *seq_no = NULL;
3745         struct lustre_lnet_ip2nets ip2nets;
3746         struct lustre_lnet_ip_range_descr *ip_range_descr = NULL,
3747                                           *tmp = NULL;
3748         int rc = LUSTRE_CFG_RC_NO_ERR;
3749         struct cfs_expr_list *global_cpts = NULL;
3750         struct cfs_expr_list *el, *el_tmp;
3751         struct lnet_ioctl_config_lnd_tunables tunables;
3752         struct lnet_dlc_intf_descr *intf_descr, *intf_tmp;
3753         bool found = false;
3754
3755         memset(&tunables, 0, sizeof(tunables));
3756
3757         /* initialize all lists */
3758         INIT_LIST_HEAD(&ip2nets.ip2nets_ip_ranges);
3759         INIT_LIST_HEAD(&ip2nets.ip2nets_net.network_on_rule);
3760         INIT_LIST_HEAD(&ip2nets.ip2nets_net.nw_intflist);
3761
3762         net = cYAML_get_object_item(tree, "net-spec");
3763         if (net == NULL)
3764                 return LUSTRE_CFG_RC_BAD_PARAM;
3765
3766         if (net != NULL && net->cy_valuestring == NULL)
3767                 return LUSTRE_CFG_RC_BAD_PARAM;
3768
3769         /* assign the network id */
3770         ip2nets.ip2nets_net.nw_id = libcfs_str2net(net->cy_valuestring);
3771         if (ip2nets.ip2nets_net.nw_id == LNET_NID_ANY)
3772                 return LUSTRE_CFG_RC_BAD_PARAM;
3773
3774         seq_no = cYAML_get_object_item(tree, "seq_no");
3775
3776         intf = cYAML_get_object_item(tree, "interfaces");
3777         if (intf != NULL) {
3778                 rc = yaml_copy_intf_info(intf, &ip2nets.ip2nets_net);
3779                 if (rc <= 0)
3780                         return LUSTRE_CFG_RC_BAD_PARAM;
3781         }
3782
3783         ip_range = cYAML_get_object_item(tree, "ip-range");
3784         if (ip_range != NULL) {
3785                 item = ip_range->cy_child;
3786                 while (item != NULL) {
3787                         if (item->cy_valuestring == NULL) {
3788                                 item = item->cy_next;
3789                                 continue;
3790                         }
3791
3792                         rc = lustre_lnet_add_ip_range(&ip2nets.ip2nets_ip_ranges,
3793                                                       item->cy_valuestring);
3794
3795                         if (rc != LUSTRE_CFG_RC_NO_ERR)
3796                                 goto out;
3797
3798                         item = item->cy_next;
3799                 }
3800         }
3801
3802         found = yaml_extract_tunables(tree, &tunables, &global_cpts,
3803                                       LNET_NETTYP(ip2nets.ip2nets_net.nw_id));
3804
3805         rc = lustre_lnet_config_ip2nets(&ip2nets,
3806                         (found) ? &tunables : NULL,
3807                         global_cpts,
3808                         (seq_no) ? seq_no->cy_valueint : -1,
3809                         err_rc);
3810
3811         /*
3812          * don't stop because there was no match. Continue processing the
3813          * rest of the rules. If non-match then nothing is configured
3814          */
3815         if (rc == LUSTRE_CFG_RC_NO_MATCH)
3816                 rc = LUSTRE_CFG_RC_NO_ERR;
3817 out:
3818         list_for_each_entry_safe(intf_descr, intf_tmp,
3819                                  &ip2nets.ip2nets_net.nw_intflist,
3820                                  intf_on_network) {
3821                 list_del(&intf_descr->intf_on_network);
3822                 free_intf_descr(intf_descr);
3823         }
3824
3825         list_for_each_entry_safe(ip_range_descr, tmp,
3826                                  &ip2nets.ip2nets_ip_ranges,
3827                                  ipr_entry) {
3828                 list_del(&ip_range_descr->ipr_entry);
3829                 list_for_each_entry_safe(el, el_tmp, &ip_range_descr->ipr_expr,
3830                                          el_link) {
3831                         list_del(&el->el_link);
3832                         cfs_expr_list_free(el);
3833                 }
3834                 free(ip_range_descr);
3835         }
3836
3837         return rc;
3838 }
3839
3840 static int handle_yaml_del_ni(struct cYAML *tree, struct cYAML **show_rc,
3841                               struct cYAML **err_rc)
3842 {
3843         struct cYAML *net = NULL, *intf = NULL, *seq_no = NULL, *item = NULL,
3844                      *local_nis = NULL;
3845         int num_entries, rc;
3846         struct lnet_dlc_network_descr nw_descr;
3847
3848         INIT_LIST_HEAD(&nw_descr.network_on_rule);
3849         INIT_LIST_HEAD(&nw_descr.nw_intflist);
3850
3851         net = cYAML_get_object_item(tree, "net type");
3852         if (net != NULL)
3853                 nw_descr.nw_id = libcfs_str2net(net->cy_valuestring);
3854
3855         local_nis = cYAML_get_object_item(tree, "local NI(s)");
3856         if (local_nis == NULL)
3857                 return LUSTRE_CFG_RC_MISSING_PARAM;
3858
3859         if (!cYAML_is_sequence(local_nis))
3860                 return LUSTRE_CFG_RC_BAD_PARAM;
3861
3862         while (cYAML_get_next_seq_item(local_nis, &item) != NULL) {
3863                 intf = cYAML_get_object_item(item, "interfaces");
3864                 if (intf == NULL)
3865                         continue;
3866                 num_entries = yaml_copy_intf_info(intf, &nw_descr);
3867                 if (num_entries <= 0) {
3868                         cYAML_build_error(num_entries, -1, "ni", "add",
3869                                         "bad interface list",
3870                                         err_rc);
3871                         return LUSTRE_CFG_RC_BAD_PARAM;
3872                 }
3873         }
3874
3875         seq_no = cYAML_get_object_item(tree, "seq_no");
3876
3877         rc = lustre_lnet_del_ni((net) ? &nw_descr : NULL,
3878                                 (seq_no) ? seq_no->cy_valueint : -1,
3879                                 err_rc);
3880
3881         return rc;
3882 }
3883
3884 static int yaml_copy_peer_nids(struct cYAML *nids_entry, char ***nidsppp,
3885                                char *prim_nid, bool del)
3886 {
3887         struct cYAML *child = NULL, *entry = NULL;
3888         char **nids = NULL;
3889         int num = 0, rc = LUSTRE_CFG_RC_NO_ERR;
3890
3891         if (cYAML_is_sequence(nids_entry)) {
3892                 while (cYAML_get_next_seq_item(nids_entry, &child)) {
3893                         entry = cYAML_get_object_item(child, "nid");
3894                         /* don't count an empty entry */
3895                         if (!entry || !entry->cy_valuestring)
3896                                 continue;
3897
3898                         if (prim_nid &&
3899                             (strcmp(entry->cy_valuestring, prim_nid)
3900                                         == 0) && del) {
3901                                 /*
3902                                  * primary nid is present in the list of
3903                                  * nids so that means we want to delete
3904                                  * the entire peer, so no need to go
3905                                  * further. Just delete the entire peer.
3906                                  */
3907                                 return 0;
3908                         }
3909
3910                         num++;
3911                 }
3912         }
3913
3914         if (num == 0)
3915                 return LUSTRE_CFG_RC_MISSING_PARAM;
3916
3917         nids = calloc(sizeof(*nids), num);
3918         if (!nids)
3919                 return LUSTRE_CFG_RC_OUT_OF_MEM;
3920
3921         /* now grab all the nids */
3922         num = 0;
3923         child = NULL;
3924         while (cYAML_get_next_seq_item(nids_entry, &child)) {
3925                 entry = cYAML_get_object_item(child, "nid");
3926                 if (!entry || !entry->cy_valuestring)
3927                         continue;
3928
3929                 nids[num] = calloc(strlen(entry->cy_valuestring) + 1, 1);
3930                 if (!nids[num]) {
3931                         rc = LUSTRE_CFG_RC_OUT_OF_MEM;
3932                         goto failed;
3933                 }
3934                 strncpy(nids[num], entry->cy_valuestring,
3935                         strlen(entry->cy_valuestring));
3936                 num++;
3937         }
3938         rc = num;
3939
3940         *nidsppp = nids;
3941         return rc;
3942
3943 failed:
3944         if (nids != NULL)
3945                 yaml_free_string_array(nids, num);
3946         *nidsppp = NULL;
3947         return rc;
3948 }
3949
3950 static int handle_yaml_config_peer(struct cYAML *tree, struct cYAML **show_rc,
3951                                    struct cYAML **err_rc)
3952 {
3953         char **nids = NULL;
3954         int num, rc;
3955         struct cYAML *seq_no, *prim_nid, *non_mr, *ip2nets, *peer_nis;
3956         char err_str[LNET_MAX_STR_LEN];
3957
3958         seq_no = cYAML_get_object_item(tree, "seq_no");
3959         prim_nid = cYAML_get_object_item(tree, "primary nid");
3960         non_mr = cYAML_get_object_item(tree, "non_mr");
3961         ip2nets = cYAML_get_object_item(tree, "ip2nets");
3962         peer_nis = cYAML_get_object_item(tree, "peer ni");
3963
3964         if (ip2nets && (prim_nid || peer_nis)) {
3965                 rc = LUSTRE_CFG_RC_BAD_PARAM;
3966                 snprintf(err_str, sizeof(err_str),
3967                          "ip2nets can not be specified along side prim_nid"
3968                          " or peer ni fields");
3969                 cYAML_build_error(rc, (seq_no) ? seq_no->cy_valueint : -1,
3970                                   ADD_CMD, "peer", err_str, err_rc);
3971                 return rc;
3972         }
3973
3974         num = yaml_copy_peer_nids((ip2nets) ? ip2nets : peer_nis, &nids,
3975                                   (prim_nid) ? prim_nid->cy_valuestring : NULL,
3976                                    false);
3977
3978         if (num < 0) {
3979                 snprintf(err_str, sizeof(err_str),
3980                          "error copying nids from YAML block");
3981                 cYAML_build_error(num, (seq_no) ? seq_no->cy_valueint : -1,
3982                                   ADD_CMD, "peer", err_str, err_rc);
3983                 return num;
3984         }
3985
3986         rc = lustre_lnet_config_peer_nid((prim_nid) ? prim_nid->cy_valuestring : NULL,
3987                                          nids, num,
3988                                          (non_mr) ? false : true,
3989                                          (ip2nets) ? true : false,
3990                                          (seq_no) ? seq_no->cy_valueint : -1,
3991                                          err_rc);
3992
3993         yaml_free_string_array(nids, num);
3994         return rc;
3995 }
3996
3997 static int handle_yaml_del_peer(struct cYAML *tree, struct cYAML **show_rc,
3998                                 struct cYAML **err_rc)
3999 {
4000         char **nids = NULL;
4001         int num, rc;
4002         struct cYAML *seq_no, *prim_nid, *ip2nets, *peer_nis;
4003         char err_str[LNET_MAX_STR_LEN];
4004
4005         seq_no = cYAML_get_object_item(tree, "seq_no");
4006         prim_nid = cYAML_get_object_item(tree, "primary nid");
4007         ip2nets = cYAML_get_object_item(tree, "ip2nets");
4008         peer_nis = cYAML_get_object_item(tree, "peer ni");
4009
4010         if (ip2nets && (prim_nid || peer_nis)) {
4011                 rc = LUSTRE_CFG_RC_BAD_PARAM;
4012                 snprintf(err_str, sizeof(err_str),
4013                          "ip2nets can not be specified along side prim_nid"
4014                          " or peer ni fields");
4015                 cYAML_build_error(rc, (seq_no) ? seq_no->cy_valueint : -1,
4016                                   DEL_CMD, "peer", err_str, err_rc);
4017                 return rc;
4018         }
4019
4020         num = yaml_copy_peer_nids((ip2nets) ? ip2nets : peer_nis , &nids,
4021                                   (prim_nid) ? prim_nid->cy_valuestring : NULL,
4022                                   true);
4023         if (num < 0) {
4024                 snprintf(err_str, sizeof(err_str),
4025                          "error copying nids from YAML block");
4026                 cYAML_build_error(num, (seq_no) ? seq_no->cy_valueint : -1,
4027                                   ADD_CMD, "peer", err_str, err_rc);
4028                 return num;
4029         }
4030
4031         rc = lustre_lnet_del_peer_nid((prim_nid) ? prim_nid->cy_valuestring : NULL,
4032                                       nids, num, (ip2nets) ? true : false,
4033                                       (seq_no) ? seq_no->cy_valueint : -1,
4034                                       err_rc);
4035
4036         yaml_free_string_array(nids, num);
4037         return rc;
4038 }
4039
4040 static int handle_yaml_config_buffers(struct cYAML *tree,
4041                                       struct cYAML **show_rc,
4042                                       struct cYAML **err_rc)
4043 {
4044         int rc;
4045         struct cYAML *tiny, *small, *large, *seq_no;
4046
4047         tiny = cYAML_get_object_item(tree, "tiny");
4048         small = cYAML_get_object_item(tree, "small");
4049         large = cYAML_get_object_item(tree, "large");
4050         seq_no = cYAML_get_object_item(tree, "seq_no");
4051
4052         rc = lustre_lnet_config_buffers((tiny) ? tiny->cy_valueint : -1,
4053                                         (small) ? small->cy_valueint : -1,
4054                                         (large) ? large->cy_valueint : -1,
4055                                         (seq_no) ? seq_no->cy_valueint : -1,
4056                                         err_rc);
4057
4058         return rc;
4059 }
4060
4061 static int handle_yaml_config_routing(struct cYAML *tree,
4062                                       struct cYAML **show_rc,
4063                                       struct cYAML **err_rc)
4064 {
4065         int rc = LUSTRE_CFG_RC_NO_ERR;
4066         struct cYAML *seq_no, *enable;
4067
4068         seq_no = cYAML_get_object_item(tree, "seq_no");
4069         enable = cYAML_get_object_item(tree, "enable");
4070
4071         if (enable) {
4072                 rc = lustre_lnet_enable_routing(enable->cy_valueint,
4073                                                 (seq_no) ?
4074                                                     seq_no->cy_valueint : -1,
4075                                                 err_rc);
4076         }
4077
4078         return rc;
4079 }
4080
4081 static int handle_yaml_del_route(struct cYAML *tree, struct cYAML **show_rc,
4082                                  struct cYAML **err_rc)
4083 {
4084         struct cYAML *net;
4085         struct cYAML *gw;
4086         struct cYAML *seq_no;
4087
4088         net = cYAML_get_object_item(tree, "net");
4089         gw = cYAML_get_object_item(tree, "gateway");
4090         seq_no = cYAML_get_object_item(tree, "seq_no");
4091
4092         return lustre_lnet_del_route((net) ? net->cy_valuestring : NULL,
4093                                      (gw) ? gw->cy_valuestring : NULL,
4094                                      (seq_no) ? seq_no->cy_valueint : -1,
4095                                      err_rc);
4096 }
4097
4098 static int handle_yaml_del_routing(struct cYAML *tree, struct cYAML **show_rc,
4099                                    struct cYAML **err_rc)
4100 {
4101         struct cYAML *seq_no;
4102
4103         seq_no = cYAML_get_object_item(tree, "seq_no");
4104
4105         return lustre_lnet_enable_routing(0, (seq_no) ?
4106                                                 seq_no->cy_valueint : -1,
4107                                         err_rc);
4108 }
4109
4110 static int handle_yaml_show_route(struct cYAML *tree, struct cYAML **show_rc,
4111                                   struct cYAML **err_rc)
4112 {
4113         struct cYAML *net;
4114         struct cYAML *gw;
4115         struct cYAML *hop;
4116         struct cYAML *prio;
4117         struct cYAML *detail;
4118         struct cYAML *seq_no;
4119
4120         net = cYAML_get_object_item(tree, "net");
4121         gw = cYAML_get_object_item(tree, "gateway");
4122         hop = cYAML_get_object_item(tree, "hop");
4123         prio = cYAML_get_object_item(tree, "priority");
4124         detail = cYAML_get_object_item(tree, "detail");
4125         seq_no = cYAML_get_object_item(tree, "seq_no");
4126
4127         return lustre_lnet_show_route((net) ? net->cy_valuestring : NULL,
4128                                       (gw) ? gw->cy_valuestring : NULL,
4129                                       (hop) ? hop->cy_valueint : -1,
4130                                       (prio) ? prio->cy_valueint : -1,
4131                                       (detail) ? detail->cy_valueint : 0,
4132                                       (seq_no) ? seq_no->cy_valueint : -1,
4133                                       show_rc, err_rc, false);
4134 }
4135
4136 static int handle_yaml_show_net(struct cYAML *tree, struct cYAML **show_rc,
4137                                 struct cYAML **err_rc)
4138 {
4139         struct cYAML *net, *detail, *seq_no;
4140
4141         net = cYAML_get_object_item(tree, "net");
4142         detail = cYAML_get_object_item(tree, "detail");
4143         seq_no = cYAML_get_object_item(tree, "seq_no");
4144
4145         return lustre_lnet_show_net((net) ? net->cy_valuestring : NULL,
4146                                     (detail) ? detail->cy_valueint : 0,
4147                                     (seq_no) ? seq_no->cy_valueint : -1,
4148                                     show_rc, err_rc, false);
4149 }
4150
4151 static int handle_yaml_show_routing(struct cYAML *tree, struct cYAML **show_rc,
4152                                     struct cYAML **err_rc)
4153 {
4154         struct cYAML *seq_no;
4155
4156         seq_no = cYAML_get_object_item(tree, "seq_no");
4157
4158         return lustre_lnet_show_routing((seq_no) ? seq_no->cy_valueint : -1,
4159                                         show_rc, err_rc, false);
4160 }
4161
4162 static int handle_yaml_show_peers(struct cYAML *tree, struct cYAML **show_rc,
4163                                   struct cYAML **err_rc)
4164 {
4165         struct cYAML *seq_no, *nid, *detail;
4166
4167         seq_no = cYAML_get_object_item(tree, "seq_no");
4168         detail = cYAML_get_object_item(tree, "detail");
4169         nid = cYAML_get_object_item(tree, "nid");
4170
4171         return lustre_lnet_show_peer((nid) ? nid->cy_valuestring : NULL,
4172                                      (detail) ? detail->cy_valueint : 0,
4173                                      (seq_no) ? seq_no->cy_valueint : -1,
4174                                      show_rc, err_rc, false);
4175 }
4176
4177 static int handle_yaml_show_stats(struct cYAML *tree, struct cYAML **show_rc,
4178                                   struct cYAML **err_rc)
4179 {
4180         struct cYAML *seq_no;
4181
4182         seq_no = cYAML_get_object_item(tree, "seq_no");
4183
4184         return lustre_lnet_show_stats((seq_no) ? seq_no->cy_valueint : -1,
4185                                       show_rc, err_rc);
4186 }
4187
4188 static int handle_yaml_config_numa(struct cYAML *tree, struct cYAML **show_rc,
4189                                   struct cYAML **err_rc)
4190 {
4191         struct cYAML *seq_no, *range;
4192
4193         seq_no = cYAML_get_object_item(tree, "seq_no");
4194         range = cYAML_get_object_item(tree, "range");
4195
4196         return lustre_lnet_config_numa_range(range ? range->cy_valueint : -1,
4197                                              seq_no ? seq_no->cy_valueint : -1,
4198                                              err_rc);
4199 }
4200
4201 static int handle_yaml_del_numa(struct cYAML *tree, struct cYAML **show_rc,
4202                                struct cYAML **err_rc)
4203 {
4204         struct cYAML *seq_no;
4205
4206         seq_no = cYAML_get_object_item(tree, "seq_no");
4207
4208         return lustre_lnet_config_numa_range(0, seq_no ? seq_no->cy_valueint : -1,
4209                                              err_rc);
4210 }
4211
4212 static int handle_yaml_show_numa(struct cYAML *tree, struct cYAML **show_rc,
4213                                 struct cYAML **err_rc)
4214 {
4215         struct cYAML *seq_no;
4216
4217         seq_no = cYAML_get_object_item(tree, "seq_no");
4218
4219         return lustre_lnet_show_numa_range(seq_no ? seq_no->cy_valueint : -1,
4220                                            show_rc, err_rc);
4221 }
4222
4223 static int handle_yaml_config_global_settings(struct cYAML *tree,
4224                                               struct cYAML **show_rc,
4225                                               struct cYAML **err_rc)
4226 {
4227         struct cYAML *max_intf, *numa, *discovery, *retry, *tto, *seq_no,
4228                      *sen;
4229         int rc = 0;
4230
4231         seq_no = cYAML_get_object_item(tree, "seq_no");
4232         max_intf = cYAML_get_object_item(tree, "max_intf");
4233         if (max_intf)
4234                 rc = lustre_lnet_config_max_intf(max_intf->cy_valueint,
4235                                                  seq_no ? seq_no->cy_valueint
4236                                                         : -1,
4237                                                  err_rc);
4238
4239         numa = cYAML_get_object_item(tree, "numa_range");
4240         if (numa)
4241                 rc = lustre_lnet_config_numa_range(numa->cy_valueint,
4242                                                    seq_no ? seq_no->cy_valueint
4243                                                         : -1,
4244                                                    err_rc);
4245
4246         discovery = cYAML_get_object_item(tree, "discovery");
4247         if (discovery)
4248                 rc = lustre_lnet_config_discovery(discovery->cy_valueint,
4249                                                   seq_no ? seq_no->cy_valueint
4250                                                         : -1,
4251                                                   err_rc);
4252
4253         retry = cYAML_get_object_item(tree, "retry_count");
4254         if (retry)
4255                 rc = lustre_lnet_config_retry_count(retry->cy_valueint,
4256                                                     seq_no ? seq_no->cy_valueint
4257                                                         : -1,
4258                                                     err_rc);
4259
4260         tto = cYAML_get_object_item(tree, "transaction_timeout");
4261         if (tto)
4262                 rc = lustre_lnet_config_transaction_to(tto->cy_valueint,
4263                                                        seq_no ? seq_no->cy_valueint
4264                                                                 : -1,
4265                                                        err_rc);
4266
4267         sen = cYAML_get_object_item(tree, "health_sensitivity");
4268         if (sen)
4269                 rc = lustre_lnet_config_hsensitivity(sen->cy_valueint,
4270                                                      seq_no ? seq_no->cy_valueint
4271                                                         : -1,
4272                                                      err_rc);
4273
4274         return rc;
4275 }
4276
4277 static int handle_yaml_del_global_settings(struct cYAML *tree,
4278                                            struct cYAML **show_rc,
4279                                            struct cYAML **err_rc)
4280 {
4281         struct cYAML *max_intf, *numa, *discovery, *seq_no;
4282         int rc = 0;
4283
4284         seq_no = cYAML_get_object_item(tree, "seq_no");
4285         max_intf = cYAML_get_object_item(tree, "max_intf");
4286         if (max_intf)
4287                 rc = lustre_lnet_config_max_intf(LNET_INTERFACES_MAX_DEFAULT,
4288                                                  seq_no ? seq_no->cy_valueint
4289                                                         : -1,
4290                                                  err_rc);
4291
4292         numa = cYAML_get_object_item(tree, "numa_range");
4293         if (numa)
4294                 rc = lustre_lnet_config_numa_range(0,
4295                                                    seq_no ? seq_no->cy_valueint
4296                                                         : -1,
4297                                                    err_rc);
4298
4299         /* peer discovery is enabled by default */
4300         discovery = cYAML_get_object_item(tree, "discovery");
4301         if (discovery)
4302                 rc = lustre_lnet_config_discovery(1,
4303                                                   seq_no ? seq_no->cy_valueint
4304                                                         : -1,
4305                                                   err_rc);
4306
4307         return rc;
4308 }
4309
4310 static int handle_yaml_show_global_settings(struct cYAML *tree,
4311                                             struct cYAML **show_rc,
4312                                             struct cYAML **err_rc)
4313 {
4314         struct cYAML *max_intf, *numa, *discovery, *retry, *tto, *seq_no,
4315                      *sen;
4316         int rc = 0;
4317
4318         seq_no = cYAML_get_object_item(tree, "seq_no");
4319         max_intf = cYAML_get_object_item(tree, "max_intf");
4320         if (max_intf)
4321                 rc = lustre_lnet_show_max_intf(seq_no ? seq_no->cy_valueint
4322                                                         : -1,
4323                                                 show_rc, err_rc);
4324
4325         numa = cYAML_get_object_item(tree, "numa_range");
4326         if (numa)
4327                 rc = lustre_lnet_show_numa_range(seq_no ? seq_no->cy_valueint
4328                                                         : -1,
4329                                                  show_rc, err_rc);
4330
4331         discovery = cYAML_get_object_item(tree, "discovery");
4332         if (discovery)
4333                 rc = lustre_lnet_show_discovery(seq_no ? seq_no->cy_valueint
4334                                                         : -1,
4335                                                 show_rc, err_rc);
4336
4337         retry = cYAML_get_object_item(tree, "retry_count");
4338         if (retry)
4339                 rc = lustre_lnet_show_retry_count(seq_no ? seq_no->cy_valueint
4340                                                         : -1,
4341                                                   show_rc, err_rc);
4342
4343         tto = cYAML_get_object_item(tree, "transaction_timeout");
4344         if (tto)
4345                 rc = lustre_lnet_show_transaction_to(seq_no ? seq_no->cy_valueint
4346                                                         : -1,
4347                                                      show_rc, err_rc);
4348
4349         sen = cYAML_get_object_item(tree, "health_sensitivity");
4350         if (sen)
4351                 rc = lustre_lnet_show_hsensitivity(seq_no ? seq_no->cy_valueint
4352                                                         : -1,
4353                                                      show_rc, err_rc);
4354
4355         return rc;
4356 }
4357
4358 static int handle_yaml_ping(struct cYAML *tree, struct cYAML **show_rc,
4359                             struct cYAML **err_rc)
4360 {
4361         struct cYAML *seq_no, *nid, *timeout;
4362
4363         seq_no = cYAML_get_object_item(tree, "seq_no");
4364         nid = cYAML_get_object_item(tree, "primary nid");
4365         timeout = cYAML_get_object_item(tree, "timeout");
4366
4367         return lustre_lnet_ping_nid((nid) ? nid->cy_valuestring : NULL,
4368                                     (timeout) ? timeout->cy_valueint : 1000,
4369                                     (seq_no) ? seq_no->cy_valueint : -1,
4370                                     show_rc, err_rc);
4371 }
4372
4373 static int handle_yaml_discover(struct cYAML *tree, struct cYAML **show_rc,
4374                                 struct cYAML **err_rc)
4375 {
4376         struct cYAML *seq_no, *nid, *force;
4377
4378         seq_no = cYAML_get_object_item(tree, "seq_no");
4379         nid = cYAML_get_object_item(tree, "primary nid");
4380         force = cYAML_get_object_item(tree, "force");
4381
4382         return lustre_lnet_discover_nid((nid) ? nid->cy_valuestring : NULL,
4383                                         (force) ? force->cy_valueint : 0,
4384                                         (seq_no) ? seq_no->cy_valueint : -1,
4385                                         show_rc, err_rc);
4386 }
4387
4388 static int handle_yaml_no_op()
4389 {
4390         return LUSTRE_CFG_RC_NO_ERR;
4391 }
4392
4393 struct lookup_cmd_hdlr_tbl {
4394         char *name;
4395         cmd_handler_t cb;
4396 };
4397
4398 static struct lookup_cmd_hdlr_tbl lookup_config_tbl[] = {
4399         { .name = "route",      .cb = handle_yaml_config_route },
4400         { .name = "net",        .cb = handle_yaml_config_ni },
4401         { .name = "ip2nets",    .cb = handle_yaml_config_ip2nets },
4402         { .name = "peer",       .cb = handle_yaml_config_peer },
4403         { .name = "routing",    .cb = handle_yaml_config_routing },
4404         { .name = "buffers",    .cb = handle_yaml_config_buffers },
4405         { .name = "statistics", .cb = handle_yaml_no_op },
4406         { .name = "global",     .cb = handle_yaml_config_global_settings},
4407         { .name = "numa",       .cb = handle_yaml_config_numa },
4408         { .name = "ping",       .cb = handle_yaml_no_op },
4409         { .name = "discover",   .cb = handle_yaml_no_op },
4410         { .name = NULL } };
4411
4412 static struct lookup_cmd_hdlr_tbl lookup_del_tbl[] = {
4413         { .name = "route",      .cb = handle_yaml_del_route },
4414         { .name = "net",        .cb = handle_yaml_del_ni },
4415         { .name = "ip2nets",    .cb = handle_yaml_no_op },
4416         { .name = "peer",       .cb = handle_yaml_del_peer },
4417         { .name = "routing",    .cb = handle_yaml_del_routing },
4418         { .name = "buffers",    .cb = handle_yaml_no_op },
4419         { .name = "statistics", .cb = handle_yaml_no_op },
4420         { .name = "global",     .cb = handle_yaml_del_global_settings},
4421         { .name = "numa",       .cb = handle_yaml_del_numa },
4422         { .name = "ping",       .cb = handle_yaml_no_op },
4423         { .name = "discover",   .cb = handle_yaml_no_op },
4424         { .name = NULL } };
4425
4426 static struct lookup_cmd_hdlr_tbl lookup_show_tbl[] = {
4427         { .name = "route",      .cb = handle_yaml_show_route },
4428         { .name = "net",        .cb = handle_yaml_show_net },
4429         { .name = "peer",       .cb = handle_yaml_show_peers },
4430         { .name = "ip2nets",    .cb = handle_yaml_no_op },
4431         { .name = "routing",    .cb = handle_yaml_show_routing },
4432         { .name = "buffers",    .cb = handle_yaml_show_routing },
4433         { .name = "statistics", .cb = handle_yaml_show_stats },
4434         { .name = "global",     .cb = handle_yaml_show_global_settings},
4435         { .name = "numa",       .cb = handle_yaml_show_numa },
4436         { .name = "ping",       .cb = handle_yaml_no_op },
4437         { .name = "discover",   .cb = handle_yaml_no_op },
4438         { .name = NULL } };
4439
4440 static struct lookup_cmd_hdlr_tbl lookup_exec_tbl[] = {
4441         { .name = "route",      .cb = handle_yaml_no_op },
4442         { .name = "net",        .cb = handle_yaml_no_op },
4443         { .name = "peer",       .cb = handle_yaml_no_op },
4444         { .name = "ip2nets",    .cb = handle_yaml_no_op },
4445         { .name = "routing",    .cb = handle_yaml_no_op },
4446         { .name = "buffers",    .cb = handle_yaml_no_op },
4447         { .name = "statistics", .cb = handle_yaml_no_op },
4448         { .name = "global",     .cb = handle_yaml_no_op },
4449         { .name = "numa",       .cb = handle_yaml_no_op },
4450         { .name = "ping",       .cb = handle_yaml_ping },
4451         { .name = "discover",   .cb = handle_yaml_discover },
4452         { .name = NULL } };
4453
4454 static cmd_handler_t lookup_fn(char *key,
4455                                struct lookup_cmd_hdlr_tbl *tbl)
4456 {
4457         int i;
4458         if (key == NULL)
4459                 return NULL;
4460
4461         for (i = 0; tbl[i].name != NULL; i++) {
4462                 if (strncmp(key, tbl[i].name, strlen(tbl[i].name)) == 0)
4463                         return tbl[i].cb;
4464         }
4465
4466         return NULL;
4467 }
4468
4469 static int lustre_yaml_cb_helper(char *f, struct lookup_cmd_hdlr_tbl *table,
4470                                  struct cYAML **show_rc, struct cYAML **err_rc)
4471 {
4472         struct cYAML *tree, *item = NULL, *head, *child;
4473         cmd_handler_t cb;
4474         char err_str[LNET_MAX_STR_LEN];
4475         int rc = LUSTRE_CFG_RC_NO_ERR, return_rc = LUSTRE_CFG_RC_NO_ERR;
4476
4477         tree = cYAML_build_tree(f, NULL, 0, err_rc, false);
4478         if (tree == NULL)
4479                 return LUSTRE_CFG_RC_BAD_PARAM;
4480
4481         child = tree->cy_child;
4482         while (child != NULL) {
4483                 cb = lookup_fn(child->cy_string, table);
4484                 if (cb == NULL) {
4485                         snprintf(err_str, sizeof(err_str),
4486                                 "\"call back for '%s' not found\"",
4487                                 child->cy_string);
4488                         cYAML_build_error(LUSTRE_CFG_RC_BAD_PARAM, -1,
4489                                         "yaml", "helper", err_str, err_rc);
4490                         goto out;
4491                 }
4492
4493                 if (cYAML_is_sequence(child)) {
4494                         while ((head = cYAML_get_next_seq_item(child, &item))
4495                                != NULL) {
4496                                 rc = cb(head, show_rc, err_rc);
4497                                 if (rc != LUSTRE_CFG_RC_NO_ERR)
4498                                         return_rc = rc;
4499                         }
4500                 } else {
4501                         rc = cb(child, show_rc, err_rc);
4502                         if (rc != LUSTRE_CFG_RC_NO_ERR)
4503                                 return_rc = rc;
4504                 }
4505                 item = NULL;
4506                 child = child->cy_next;
4507         }
4508
4509 out:
4510         cYAML_free_tree(tree);
4511
4512         return return_rc;
4513 }
4514
4515 int lustre_yaml_config(char *f, struct cYAML **err_rc)
4516 {
4517         return lustre_yaml_cb_helper(f, lookup_config_tbl,
4518                                      NULL, err_rc);
4519 }
4520
4521 int lustre_yaml_del(char *f, struct cYAML **err_rc)
4522 {
4523         return lustre_yaml_cb_helper(f, lookup_del_tbl,
4524                                      NULL, err_rc);
4525 }
4526
4527 int lustre_yaml_show(char *f, struct cYAML **show_rc, struct cYAML **err_rc)
4528 {
4529         return lustre_yaml_cb_helper(f, lookup_show_tbl,
4530                                      show_rc, err_rc);
4531 }
4532
4533 int lustre_yaml_exec(char *f, struct cYAML **show_rc, struct cYAML **err_rc)
4534 {
4535         return lustre_yaml_cb_helper(f, lookup_exec_tbl,
4536                                      show_rc, err_rc);
4537 }