Coverage Report

Created: 2026-09-04 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/net-snmp/snmplib/parse.c
Line
Count
Source
1
/*
2
 * parse.c
3
 *
4
 */
5
/* Portions of this file are subject to the following copyrights.  See
6
 * the Net-SNMP's COPYING file for more details and other copyrights
7
 * that may apply:
8
 */
9
/******************************************************************
10
        Copyright 1989, 1991, 1992 by Carnegie Mellon University
11
12
                      All Rights Reserved
13
14
Permission to use, copy, modify, and distribute this software and its
15
documentation for any purpose and without fee is hereby granted,
16
provided that the above copyright notice appear in all copies and that
17
both that copyright notice and this permission notice appear in
18
supporting documentation, and that the name of CMU not be
19
used in advertising or publicity pertaining to distribution of the
20
software without specific, written prior permission.
21
22
CMU DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING
23
ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL
24
CMU BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR
25
ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
26
WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
27
ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
28
SOFTWARE.
29
******************************************************************/
30
/*
31
 * Copyright © 2003 Sun Microsystems, Inc. All rights reserved.
32
 * Use is subject to license terms specified in the COPYING file
33
 * distributed with the Net-SNMP package.
34
 */
35
#include <net-snmp/net-snmp-config.h>
36
#include <net-snmp/net-snmp-features.h>
37
38
#ifndef NETSNMP_DISABLE_MIB_LOADING
39
40
#ifdef HAVE_LIMITS_H
41
#include <limits.h>
42
#endif
43
#include <stdio.h>
44
#ifdef HAVE_STDLIB_H
45
#include <stdlib.h>
46
#endif
47
#ifdef HAVE_STRING_H
48
#include <string.h>
49
#else
50
#include <strings.h>
51
#endif
52
#include <ctype.h>
53
#include <sys/types.h>
54
#ifdef HAVE_SYS_STAT_H
55
#include <sys/stat.h>
56
#endif
57
58
#ifdef HAVE_DIRENT_H
59
#include <dirent.h>
60
#endif
61
#ifdef TIME_WITH_SYS_TIME
62
# include <sys/time.h>
63
# include <time.h>
64
#else
65
# ifdef HAVE_SYS_TIME_H
66
#  include <sys/time.h>
67
# else
68
#  include <time.h>
69
# endif
70
#endif
71
#ifdef HAVE_NETINET_IN_H
72
#include <netinet/in.h>
73
#endif
74
#if defined(HAVE_REGEX_H) && defined(HAVE_REGCOMP)
75
#include <regex.h>
76
#endif
77
#ifdef HAVE_UNISTD_H
78
#include <unistd.h>
79
#endif
80
81
#include <errno.h>
82
83
#include <net-snmp/types.h>
84
#include <net-snmp/output_api.h>
85
#include <net-snmp/config_api.h>
86
#include <net-snmp/utilities.h>
87
88
#include <net-snmp/library/parse.h>
89
#include <net-snmp/library/mib.h>
90
#include <net-snmp/library/snmp_api.h>
91
#include <net-snmp/library/tools.h>
92
93
netsnmp_feature_child_of(find_module, mib_api);
94
netsnmp_feature_child_of(get_tc_description, mib_api);
95
96
/*
97
 * A linked list of nodes.
98
 */
99
struct node {
100
    struct node    *next;
101
    char           *label;  /* This node's (unique) textual name */
102
    u_long          subid;  /* This node's integer subidentifier */
103
    int             modid;  /* The module containing this node */
104
    char           *parent; /* The parent's textual name */
105
    int             tc_index; /* index into tclist (-1 if NA) */
106
    int             type;   /* The type of object this represents */
107
    int             access;
108
    int             status;
109
    struct enum_list *enums; /* (optional) list of enumerated integers */
110
    struct range_list *ranges;
111
    struct index_list *indexes;
112
    char           *augments;
113
    struct varbind_list *varbinds;
114
    char           *hint;
115
    char           *units;
116
    char           *description; /* description (a quoted string) */
117
    char           *reference; /* references (a quoted string) */
118
    char           *defaultValue;
119
    char           *filename;
120
    int             lineno;
121
};
122
123
/*
124
 * This is one element of an object identifier with either an integer
125
 * subidentifier, or a textual string label, or both.
126
 * The subid is -1 if not present, and label is NULL if not present.
127
 */
128
struct subid_s {
129
    int             subid;
130
    int             modid;
131
    char           *label;
132
};
133
134
3.41k
#define TC_INCR 100
135
struct tc {                     /* textual conventions */
136
    int             type;
137
    int             modid;
138
    char           *descriptor;
139
    char           *hint;
140
    struct enum_list *enums;
141
    struct range_list *ranges;
142
    char           *description;
143
    int             lineno;
144
} *tclist;
145
int tc_alloc;
146
147
static int      mibLine;
148
static const char *File = "(none)";
149
static int      anonymous;
150
151
struct objgroup {
152
    char           *name;
153
    int             line;
154
    struct objgroup *next;
155
}              *objgroups = NULL, *objects = NULL, *notifs = NULL;
156
157
205k
#define SYNTAX_MASK     0x80
158
/*
159
 * types of tokens
160
 * Tokens with the SYNTAX_MASK bit set are syntax tokens 
161
 */
162
219k
#define CONTINUE    -1
163
4.16M
#define ENDOFFILE   0
164
3.95M
#define LABEL       1
165
#define SUBTREE     2
166
28.2k
#define SYNTAX      3
167
3.41k
#define OBJID       (4 | SYNTAX_MASK)
168
3.41k
#define OCTETSTR    (5 | SYNTAX_MASK)
169
12.1k
#define INTEGER     (6 | SYNTAX_MASK)
170
12.1k
#define NETADDR     (7 | SYNTAX_MASK)
171
12.1k
#define IPADDR      (8 | SYNTAX_MASK)
172
12.1k
#define COUNTER     (9 | SYNTAX_MASK)
173
12.1k
#define GAUGE       (10 | SYNTAX_MASK)
174
12.2k
#define TIMETICKS   (11 | SYNTAX_MASK)
175
12.2k
#define KW_OPAQUE   (12 | SYNTAX_MASK)
176
3.41k
#define NUL         (13 | SYNTAX_MASK)
177
8.95k
#define SEQUENCE    14
178
0
#define OF          15          /* SEQUENCE OF */
179
3
#define OBJTYPE     16
180
0
#define ACCESS      17
181
0
#define READONLY    18
182
0
#define READWRITE   19
183
0
#define WRITEONLY   20
184
#ifdef NOACCESS
185
#undef NOACCESS                 /* agent 'NOACCESS' token */
186
#endif
187
0
#define NOACCESS    21
188
54
#define STATUS      22
189
0
#define MANDATORY   23
190
0
#define KW_OPTIONAL    24
191
0
#define OBSOLETE    25
192
/*
193
 * #define RECOMMENDED 26 
194
 */
195
#define PUNCT       27
196
13.1k
#define EQUALS      28
197
59.3k
#define NUMBER      29
198
29.4k
#define LEFTBRACKET 30
199
7.35M
#define RIGHTBRACKET 31
200
57.0k
#define LEFTPAREN   32
201
30.7k
#define RIGHTPAREN  33
202
2.04k
#define COMMA       34
203
28.2k
#define DESCRIPTION 35
204
4.05k
#define QUOTESTRING 36
205
0
#define INDEX       37
206
0
#define DEFVAL      38
207
690
#define DEPRECATED  39
208
360
#define SIZE        40
209
3.41k
#define BITSTRING   (41 | SYNTAX_MASK)
210
12.1k
#define NSAPADDRESS (42 | SYNTAX_MASK)
211
12.1k
#define COUNTER64   (43 | SYNTAX_MASK)
212
3.42k
#define OBJGROUP    44
213
3.46k
#define NOTIFTYPE   45
214
0
#define AUGMENTS    46
215
3.43k
#define COMPLIANCE  47
216
0
#define READCREATE  48
217
0
#define UNITS       49
218
15
#define REFERENCE   50
219
0
#define NUM_ENTRIES 51
220
3.49k
#define MODULEIDENTITY 52
221
83
#define LASTUPDATED 53
222
49
#define ORGANIZATION 54
223
0
#define CONTACTINFO 55
224
12.1k
#define UINTEGER32 (56 | SYNTAX_MASK)
225
0
#define CURRENT     57
226
9.08k
#define DEFINITIONS 58
227
1.28k
#define END         59
228
11.3k
#define SEMI        60
229
3.45k
#define TRAPTYPE    61
230
13
#define ENTERPRISE  62
231
/*
232
 * #define DISPLAYSTR (63 | SYNTAX_MASK) 
233
 */
234
237k
#define BEGIN       64
235
414
#define IMPORTS     65
236
23
#define EXPORTS     66
237
0
#define ACCNOTIFY   67
238
1.46k
#define BAR         68
239
999
#define RANGE       69
240
1.94k
#define CONVENTION  70
241
14.1k
#define DISPLAYHINT 71
242
728
#define FROM        72
243
3.43k
#define AGENTCAP    73
244
5.50k
#define MACRO       74
245
0
#define IMPLIED     75
246
0
#define SUPPORTS    76
247
0
#define INCLUDES    77
248
0
#define VARIATION   78
249
0
#define REVISION    79
250
0
#define NOTIMPL     80
251
55
#define OBJECTS     81
252
48
#define NOTIFICATIONS 82
253
0
#define MODULE      83
254
0
#define MINACCESS   84
255
24
#define PRODREL     85
256
0
#define WRSYNTAX    86
257
0
#define CREATEREQ   87
258
3.46k
#define NOTIFGROUP  88
259
0
#define MANDATORYGROUPS 89
260
0
#define GROUP     90
261
2.08k
#define OBJECT      91
262
41
#define IDENTIFIER  92
263
4.45k
#define CHOICE      93
264
4.34k
#define LEFTSQBRACK 95
265
24.4k
#define RIGHTSQBRACK  96
266
218
#define IMPLICIT    97
267
8.78k
#define APPSYNTAX (98 | SYNTAX_MASK)
268
8.78k
#define OBJSYNTAX (99 | SYNTAX_MASK)
269
8.78k
#define SIMPLESYNTAX  (100 | SYNTAX_MASK)
270
8.79k
#define OBJNAME   (101 | SYNTAX_MASK)
271
8.79k
#define NOTIFNAME (102 | SYNTAX_MASK)
272
2
#define VARIABLES 103
273
12.1k
#define UNSIGNED32  (104 | SYNTAX_MASK)
274
12.1k
#define INTEGER32 (105 | SYNTAX_MASK)
275
3.42k
#define OBJIDENTITY 106
276
/*
277
 * Beware of reaching SYNTAX_MASK (0x80) 
278
 */
279
280
struct tok {
281
    const char     *name;       /* token name */
282
    int             len;        /* length not counting nul */
283
    int             token;      /* value */
284
    int             hash;       /* hash of name */
285
    struct tok     *next;       /* pointer to next in hash table */
286
};
287
288
289
static struct tok tokens[] = {
290
    {"obsolete", sizeof("obsolete") - 1, OBSOLETE}
291
    ,
292
    {"Opaque", sizeof("Opaque") - 1, KW_OPAQUE}
293
    ,
294
    {"optional", sizeof("optional") - 1, KW_OPTIONAL}
295
    ,
296
    {"LAST-UPDATED", sizeof("LAST-UPDATED") - 1, LASTUPDATED}
297
    ,
298
    {"ORGANIZATION", sizeof("ORGANIZATION") - 1, ORGANIZATION}
299
    ,
300
    {"CONTACT-INFO", sizeof("CONTACT-INFO") - 1, CONTACTINFO}
301
    ,
302
    {"MODULE-IDENTITY", sizeof("MODULE-IDENTITY") - 1, MODULEIDENTITY}
303
    ,
304
    {"MODULE-COMPLIANCE", sizeof("MODULE-COMPLIANCE") - 1, COMPLIANCE}
305
    ,
306
    {"DEFINITIONS", sizeof("DEFINITIONS") - 1, DEFINITIONS}
307
    ,
308
    {"END", sizeof("END") - 1, END}
309
    ,
310
    {"AUGMENTS", sizeof("AUGMENTS") - 1, AUGMENTS}
311
    ,
312
    {"not-accessible", sizeof("not-accessible") - 1, NOACCESS}
313
    ,
314
    {"write-only", sizeof("write-only") - 1, WRITEONLY}
315
    ,
316
    {"NsapAddress", sizeof("NsapAddress") - 1, NSAPADDRESS}
317
    ,
318
    {"UNITS", sizeof("Units") - 1, UNITS}
319
    ,
320
    {"REFERENCE", sizeof("REFERENCE") - 1, REFERENCE}
321
    ,
322
    {"NUM-ENTRIES", sizeof("NUM-ENTRIES") - 1, NUM_ENTRIES}
323
    ,
324
    {"BITSTRING", sizeof("BITSTRING") - 1, BITSTRING}
325
    ,
326
    {"BIT", sizeof("BIT") - 1, CONTINUE}
327
    ,
328
    {"BITS", sizeof("BITS") - 1, BITSTRING}
329
    ,
330
    {"Counter64", sizeof("Counter64") - 1, COUNTER64}
331
    ,
332
    {"TimeTicks", sizeof("TimeTicks") - 1, TIMETICKS}
333
    ,
334
    {"NOTIFICATION-TYPE", sizeof("NOTIFICATION-TYPE") - 1, NOTIFTYPE}
335
    ,
336
    {"OBJECT-GROUP", sizeof("OBJECT-GROUP") - 1, OBJGROUP}
337
    ,
338
    {"OBJECT-IDENTITY", sizeof("OBJECT-IDENTITY") - 1, OBJIDENTITY}
339
    ,
340
    {"IDENTIFIER", sizeof("IDENTIFIER") - 1, IDENTIFIER}
341
    ,
342
    {"OBJECT", sizeof("OBJECT") - 1, OBJECT}
343
    ,
344
    {"NetworkAddress", sizeof("NetworkAddress") - 1, NETADDR}
345
    ,
346
    {"Gauge", sizeof("Gauge") - 1, GAUGE}
347
    ,
348
    {"Gauge32", sizeof("Gauge32") - 1, GAUGE}
349
    ,
350
    {"Unsigned32", sizeof("Unsigned32") - 1, UNSIGNED32}
351
    ,
352
    {"read-write", sizeof("read-write") - 1, READWRITE}
353
    ,
354
    {"read-create", sizeof("read-create") - 1, READCREATE}
355
    ,
356
    {"OCTETSTRING", sizeof("OCTETSTRING") - 1, OCTETSTR}
357
    ,
358
    {"OCTET", sizeof("OCTET") - 1, CONTINUE}
359
    ,
360
    {"OF", sizeof("OF") - 1, OF}
361
    ,
362
    {"SEQUENCE", sizeof("SEQUENCE") - 1, SEQUENCE}
363
    ,
364
    {"NULL", sizeof("NULL") - 1, NUL}
365
    ,
366
    {"IpAddress", sizeof("IpAddress") - 1, IPADDR}
367
    ,
368
    {"UInteger32", sizeof("UInteger32") - 1, UINTEGER32}
369
    ,
370
    {"INTEGER", sizeof("INTEGER") - 1, INTEGER}
371
    ,
372
    {"Integer32", sizeof("Integer32") - 1, INTEGER32}
373
    ,
374
    {"Counter", sizeof("Counter") - 1, COUNTER}
375
    ,
376
    {"Counter32", sizeof("Counter32") - 1, COUNTER}
377
    ,
378
    {"read-only", sizeof("read-only") - 1, READONLY}
379
    ,
380
    {"DESCRIPTION", sizeof("DESCRIPTION") - 1, DESCRIPTION}
381
    ,
382
    {"INDEX", sizeof("INDEX") - 1, INDEX}
383
    ,
384
    {"DEFVAL", sizeof("DEFVAL") - 1, DEFVAL}
385
    ,
386
    {"deprecated", sizeof("deprecated") - 1, DEPRECATED}
387
    ,
388
    {"SIZE", sizeof("SIZE") - 1, SIZE}
389
    ,
390
    {"MAX-ACCESS", sizeof("MAX-ACCESS") - 1, ACCESS}
391
    ,
392
    {"ACCESS", sizeof("ACCESS") - 1, ACCESS}
393
    ,
394
    {"mandatory", sizeof("mandatory") - 1, MANDATORY}
395
    ,
396
    {"current", sizeof("current") - 1, CURRENT}
397
    ,
398
    {"STATUS", sizeof("STATUS") - 1, STATUS}
399
    ,
400
    {"SYNTAX", sizeof("SYNTAX") - 1, SYNTAX}
401
    ,
402
    {"OBJECT-TYPE", sizeof("OBJECT-TYPE") - 1, OBJTYPE}
403
    ,
404
    {"TRAP-TYPE", sizeof("TRAP-TYPE") - 1, TRAPTYPE}
405
    ,
406
    {"ENTERPRISE", sizeof("ENTERPRISE") - 1, ENTERPRISE}
407
    ,
408
    {"BEGIN", sizeof("BEGIN") - 1, BEGIN}
409
    ,
410
    {"IMPORTS", sizeof("IMPORTS") - 1, IMPORTS}
411
    ,
412
    {"EXPORTS", sizeof("EXPORTS") - 1, EXPORTS}
413
    ,
414
    {"accessible-for-notify", sizeof("accessible-for-notify") - 1,
415
     ACCNOTIFY}
416
    ,
417
    {"TEXTUAL-CONVENTION", sizeof("TEXTUAL-CONVENTION") - 1, CONVENTION}
418
    ,
419
    {"NOTIFICATION-GROUP", sizeof("NOTIFICATION-GROUP") - 1, NOTIFGROUP}
420
    ,
421
    {"DISPLAY-HINT", sizeof("DISPLAY-HINT") - 1, DISPLAYHINT}
422
    ,
423
    {"FROM", sizeof("FROM") - 1, FROM}
424
    ,
425
    {"AGENT-CAPABILITIES", sizeof("AGENT-CAPABILITIES") - 1, AGENTCAP}
426
    ,
427
    {"MACRO", sizeof("MACRO") - 1, MACRO}
428
    ,
429
    {"IMPLIED", sizeof("IMPLIED") - 1, IMPLIED}
430
    ,
431
    {"SUPPORTS", sizeof("SUPPORTS") - 1, SUPPORTS}
432
    ,
433
    {"INCLUDES", sizeof("INCLUDES") - 1, INCLUDES}
434
    ,
435
    {"VARIATION", sizeof("VARIATION") - 1, VARIATION}
436
    ,
437
    {"REVISION", sizeof("REVISION") - 1, REVISION}
438
    ,
439
    {"not-implemented", sizeof("not-implemented") - 1, NOTIMPL}
440
    ,
441
    {"OBJECTS", sizeof("OBJECTS") - 1, OBJECTS}
442
    ,
443
    {"NOTIFICATIONS", sizeof("NOTIFICATIONS") - 1, NOTIFICATIONS}
444
    ,
445
    {"MODULE", sizeof("MODULE") - 1, MODULE}
446
    ,
447
    {"MIN-ACCESS", sizeof("MIN-ACCESS") - 1, MINACCESS}
448
    ,
449
    {"PRODUCT-RELEASE", sizeof("PRODUCT-RELEASE") - 1, PRODREL}
450
    ,
451
    {"WRITE-SYNTAX", sizeof("WRITE-SYNTAX") - 1, WRSYNTAX}
452
    ,
453
    {"CREATION-REQUIRES", sizeof("CREATION-REQUIRES") - 1, CREATEREQ}
454
    ,
455
    {"MANDATORY-GROUPS", sizeof("MANDATORY-GROUPS") - 1, MANDATORYGROUPS}
456
    ,
457
    {"GROUP", sizeof("GROUP") - 1, GROUP}
458
    ,
459
    {"CHOICE", sizeof("CHOICE") - 1, CHOICE}
460
    ,
461
    {"IMPLICIT", sizeof("IMPLICIT") - 1, IMPLICIT}
462
    ,
463
    {"ObjectSyntax", sizeof("ObjectSyntax") - 1, OBJSYNTAX}
464
    ,
465
    {"SimpleSyntax", sizeof("SimpleSyntax") - 1, SIMPLESYNTAX}
466
    ,
467
    {"ApplicationSyntax", sizeof("ApplicationSyntax") - 1, APPSYNTAX}
468
    ,
469
    {"ObjectName", sizeof("ObjectName") - 1, OBJNAME}
470
    ,
471
    {"NotificationName", sizeof("NotificationName") - 1, NOTIFNAME}
472
    ,
473
    {"VARIABLES", sizeof("VARIABLES") - 1, VARIABLES}
474
    ,
475
    {NULL}
476
};
477
478
static struct module_compatability *module_map_head;
479
static struct module_compatability module_map[] = {
480
    {"RFC1065-SMI", "RFC1155-SMI", NULL, 0},
481
    {"RFC1066-MIB", "RFC1156-MIB", NULL, 0},
482
    /*
483
     * 'mib' -> 'mib-2' 
484
     */
485
    {"RFC1156-MIB", "RFC1158-MIB", NULL, 0},
486
    /*
487
     * 'snmpEnableAuthTraps' -> 'snmpEnableAuthenTraps' 
488
     */
489
    {"RFC1158-MIB", "RFC1213-MIB", NULL, 0},
490
    /*
491
     * 'nullOID' -> 'zeroDotZero' 
492
     */
493
    {"RFC1155-SMI", "SNMPv2-SMI", NULL, 0},
494
    {"RFC1213-MIB", "SNMPv2-SMI", "mib-2", 0},
495
    {"RFC1213-MIB", "SNMPv2-MIB", "sys", 3},
496
    {"RFC1213-MIB", "IF-MIB", "if", 2},
497
    {"RFC1213-MIB", "IP-MIB", "ip", 2},
498
    {"RFC1213-MIB", "IP-MIB", "icmp", 4},
499
    {"RFC1213-MIB", "TCP-MIB", "tcp", 3},
500
    {"RFC1213-MIB", "UDP-MIB", "udp", 3},
501
    {"RFC1213-MIB", "SNMPv2-SMI", "transmission", 0},
502
    {"RFC1213-MIB", "SNMPv2-MIB", "snmp", 4},
503
    {"RFC1231-MIB", "TOKENRING-MIB", NULL, 0},
504
    {"RFC1271-MIB", "RMON-MIB", NULL, 0},
505
    {"RFC1286-MIB", "SOURCE-ROUTING-MIB", "dot1dSr", 7},
506
    {"RFC1286-MIB", "BRIDGE-MIB", NULL, 0},
507
    {"RFC1315-MIB", "FRAME-RELAY-DTE-MIB", NULL, 0},
508
    {"RFC1316-MIB", "CHARACTER-MIB", NULL, 0},
509
    {"RFC1406-MIB", "DS1-MIB", NULL, 0},
510
    {"RFC-1213", "RFC1213-MIB", NULL, 0},
511
};
512
513
331k
#define MODULE_NOT_FOUND  0
514
4.91k
#define MODULE_LOADED_OK  1
515
1.74k
#define MODULE_ALREADY_LOADED 2
516
/*
517
 * #define MODULE_LOAD_FAILED   3       
518
 */
519
0
#define MODULE_LOAD_FAILED  MODULE_NOT_FOUND
520
10.4k
#define MODULE_SYNTAX_ERROR     4
521
522
int gMibError = 0,gLoop = 0;
523
static char *gpMibErrorString;
524
char gMibNames[STRINGMAX];
525
526
689k
#define HASHSIZE        32
527
689k
#define BUCKET(x)       (x & (HASHSIZE-1))
528
529
375k
#define NHASHSIZE    128
530
85.1k
#define NBUCKET(x)   (x & (NHASHSIZE-1))
531
532
static struct tok *buckets[HASHSIZE];
533
534
static struct node *nbuckets[NHASHSIZE];
535
static struct tree *tbuckets[NHASHSIZE];
536
static struct module *module_head = NULL;
537
538
static struct node *orphan_nodes = NULL;
539
NETSNMP_IMPORT struct tree *tree_head;
540
struct tree        *tree_head = NULL;
541
542
916
#define NUMBER_OF_ROOT_NODES  3
543
static struct module_import root_imports[NUMBER_OF_ROOT_NODES];
544
545
static int      current_module = 0;
546
static int      max_module = 0;
547
static int      first_err_module = 1;
548
static char    *last_err_module = NULL; /* no repeats on "Cannot find module..." */
549
550
static void     tree_from_node(struct tree *tp, struct node *np);
551
static void     do_subtree(struct tree *, struct node **);
552
static void     do_linkup(struct module *, struct node *);
553
static void     dump_module_list(void);
554
static int      get_token(FILE *, char *, int);
555
static int      parseQuoteString(FILE *, char *, int);
556
static int      tossObjectIdentifier(FILE *);
557
static int      name_hash(const char *);
558
static void     init_node_hash(struct node *);
559
static void     print_error(const char *, const char *, int);
560
static void     free_tree(struct tree *);
561
static void     free_partial_tree(struct tree *, int);
562
static void     free_node(struct node *);
563
static void     build_translation_table(void);
564
static void     init_tree_roots(void);
565
static void     merge_anon_children(struct tree *, struct tree *);
566
static void     unlink_tbucket(struct tree *);
567
static void     unlink_tree(struct tree *);
568
static struct node *parse_objectid(FILE *, char *);
569
static int      get_tc(const char *, int, int *, struct enum_list **,
570
                       struct range_list **, char **);
571
static int      get_tc_index(const char *, int);
572
static struct enum_list *parse_enumlist(FILE *, struct enum_list **);
573
static struct range_list *parse_ranges(FILE * fp, struct range_list **);
574
static struct node *parse_asntype(FILE *, char *, int *, char *);
575
static struct node *parse_objecttype(FILE *, char *);
576
static struct node *parse_objectgroup(FILE *, char *, int,
577
                                      struct objgroup **);
578
static struct node *parse_notificationDefinition(FILE *, char *);
579
static struct node *parse_trapDefinition(FILE *, char *);
580
static struct node *parse_compliance(FILE *, char *);
581
static struct node *parse_capabilities(FILE *, char *);
582
static struct node *parse_moduleIdentity(FILE *, char *);
583
static struct node *parse_macro(FILE *, char *);
584
static void     parse_imports(FILE *);
585
static struct node *parse(FILE *);
586
587
static int     read_module_internal(const char *);
588
static int     read_module_replacements(const char *);
589
static int     read_import_replacements(const char *,
590
                                         struct module_import *);
591
592
static struct node *merge_parse_objectid(struct node *, FILE *, char *);
593
static struct index_list *getIndexes(FILE * fp, struct index_list **);
594
static struct varbind_list *getVarbinds(FILE * fp, struct varbind_list **);
595
static void     free_indexes(struct index_list **);
596
static void     free_varbinds(struct varbind_list **);
597
static void     free_ranges(struct range_list **);
598
static void     free_enums(struct enum_list **);
599
static struct range_list *copy_ranges(struct range_list *);
600
static struct enum_list *copy_enums(struct enum_list *);
601
602
static u_int    compute_match(const char *search_base, const char *key);
603
604
void
605
snmp_mib_toggle_options_usage(const char *lead, FILE * outf)
606
0
{
607
0
    fprintf(outf, "%su:  %sallow the use of underlines in MIB symbols\n",
608
0
            lead, ((netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
609
0
             NETSNMP_DS_LIB_MIB_PARSE_LABEL)) ?
610
0
       "dis" : ""));
611
0
    fprintf(outf, "%sc:  %sallow the use of \"--\" to terminate comments\n",
612
0
            lead, ((netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
613
0
             NETSNMP_DS_LIB_MIB_COMMENT_TERM)) ?
614
0
       "" : "dis"));
615
616
0
    fprintf(outf, "%sd:  %ssave the DESCRIPTIONs of the MIB objects\n",
617
0
            lead, ((netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
618
0
             NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) ?
619
0
       "do not " : ""));
620
621
0
    fprintf(outf, "%se:  disable errors when MIB symbols conflict\n", lead);
622
623
0
    fprintf(outf, "%sw:  enable warnings when MIB symbols conflict\n", lead);
624
625
0
    fprintf(outf, "%sW:  enable detailed warnings when MIB symbols conflict\n",
626
0
            lead);
627
628
0
    fprintf(outf, "%sR:  replace MIB symbols from latest module\n", lead);
629
0
}
630
631
char           *
632
snmp_mib_toggle_options(char *options)
633
52
{
634
52
    if (options) {
635
2.16k
        while (*options) {
636
2.13k
            switch (*options) {
637
414
            case 'u':
638
414
                netsnmp_ds_set_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_PARSE_LABEL,
639
414
                               !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
640
414
                                               NETSNMP_DS_LIB_MIB_PARSE_LABEL));
641
414
                break;
642
643
474
            case 'c':
644
474
                netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID,
645
474
            NETSNMP_DS_LIB_MIB_COMMENT_TERM);
646
474
                break;
647
648
245
            case 'e':
649
245
                netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID,
650
245
            NETSNMP_DS_LIB_MIB_ERRORS);
651
245
                break;
652
653
494
            case 'w':
654
494
                netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID,
655
494
           NETSNMP_DS_LIB_MIB_WARNINGS, 1);
656
494
                break;
657
658
223
            case 'W':
659
223
                netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID,
660
223
           NETSNMP_DS_LIB_MIB_WARNINGS, 2);
661
223
                break;
662
663
128
            case 'd':
664
128
                netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, 
665
128
            NETSNMP_DS_LIB_SAVE_MIB_DESCRS);
666
128
                break;
667
668
134
            case 'R':
669
134
                netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, 
670
134
            NETSNMP_DS_LIB_MIB_REPLACE);
671
134
                break;
672
673
25
            default:
674
                /*
675
                 * return at the unknown option 
676
                 */
677
25
                return options;
678
2.13k
            }
679
2.11k
            options++;
680
2.11k
        }
681
52
    }
682
27
    return NULL;
683
52
}
684
685
static int
686
name_hash(const char *name)
687
399k
{
688
399k
    int             hash = 0;
689
399k
    const char     *cp;
690
691
399k
    if (!name)
692
0
        return 0;
693
3.82M
    for (cp = name; *cp; cp++)
694
3.42M
        hash += tolower((unsigned char)(*cp));
695
399k
    return (hash);
696
399k
}
697
698
void
699
netsnmp_init_mib_internals(void)
700
178k
{
701
178k
    register struct tok *tp;
702
178k
    register int    b, i;
703
178k
    int             max_modc;
704
705
178k
    if (tree_head)
706
175k
        return;
707
708
    /*
709
     * Set up hash list of pre-defined tokens
710
     */
711
3.41k
    memset(buckets, 0, sizeof(buckets));
712
317k
    for (tp = tokens; tp->name; tp++) {
713
313k
        tp->hash = name_hash(tp->name);
714
313k
        b = BUCKET(tp->hash);
715
313k
        if (buckets[b])
716
204k
            tp->next = buckets[b];      /* BUG ??? */
717
313k
        buckets[b] = tp;
718
313k
    }
719
720
    /*
721
     * Initialise other internal structures
722
     */
723
724
3.41k
    max_modc = sizeof(module_map) / sizeof(module_map[0]) - 1;
725
75.0k
    for (i = 0; i < max_modc; ++i)
726
71.6k
        module_map[i].next = &(module_map[i + 1]);
727
3.41k
    module_map[max_modc].next = NULL;
728
3.41k
    module_map_head = module_map;
729
730
3.41k
    memset(nbuckets, 0, sizeof(nbuckets));
731
3.41k
    memset(tbuckets, 0, sizeof(tbuckets));
732
3.41k
    free(tclist);
733
3.41k
    tc_alloc = TC_INCR;
734
3.41k
    tclist = calloc(tc_alloc, sizeof(struct tc));
735
3.41k
    build_translation_table();
736
3.41k
    init_tree_roots();          /* Set up initial roots */
737
    /*
738
     * Relies on 'add_mibdir' having set up the modules 
739
     */
740
3.41k
}
741
742
#ifndef NETSNMP_NO_LEGACY_DEFINITIONS
743
void
744
init_mib_internals(void)
745
0
{
746
0
    netsnmp_init_mib_internals();
747
0
}
748
#endif
749
750
static void
751
init_node_hash(struct node *nodes)
752
1.32k
{
753
1.32k
    struct node    *np, *nextp;
754
1.32k
    int             hash;
755
756
1.32k
    memset(nbuckets, 0, sizeof(nbuckets));
757
18.0k
    for (np = nodes; np;) {
758
16.6k
        nextp = np->next;
759
16.6k
        hash = NBUCKET(name_hash(np->parent));
760
16.6k
        np->next = nbuckets[hash];
761
16.6k
        nbuckets[hash] = np;
762
16.6k
        np = nextp;
763
16.6k
    }
764
1.32k
}
765
766
static int      erroneousMibs = 0;
767
768
netsnmp_feature_child_of(parse_get_error_count, netsnmp_unused);
769
#ifndef NETSNMP_FEATURE_REMOVE_PARSE_GET_ERROR_COUNT
770
int
771
get_mib_parse_error_count(void)
772
0
{
773
0
    return erroneousMibs;
774
0
}
775
#endif /* NETSNMP_FEATURE_REMOVE_PARSE_GET_ERROR_COUNT */
776
777
778
static void
779
print_error(const char *str, const char *token, int type)
780
191k
{
781
191k
    erroneousMibs++;
782
191k
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
783
191k
                                NETSNMP_DS_LIB_MIB_ERRORS))
784
2.44k
  return;
785
188k
    DEBUGMSGTL(("parse-mibs", "\n"));
786
188k
    if (type == ENDOFFILE)
787
649
        snmp_log(LOG_ERR, "%s (EOF): At line %d in %s\n", str, mibLine,
788
649
                 File);
789
188k
    else if (token && *token)
790
187k
        snmp_log(LOG_ERR, "%s (%s): At line %d in %s\n", str, token,
791
187k
                 mibLine, File);
792
905
    else
793
905
        snmp_log(LOG_ERR, "%s: At line %d in %s\n", str, mibLine, File);
794
188k
}
795
796
static void
797
print_module_not_found(const char *cp)
798
163k
{
799
163k
    if (first_err_module) {
800
3.41k
        snmp_log(LOG_ERR, "MIB search path: %s\n",
801
3.41k
                           netsnmp_get_mib_directory());
802
3.41k
        first_err_module = 0;
803
3.41k
    }
804
163k
    if (!last_err_module || strcmp(cp, last_err_module))
805
162k
        print_error("Cannot find module", cp, CONTINUE);
806
163k
    if (last_err_module)
807
157k
        free(last_err_module);
808
163k
    last_err_module = strdup(cp);
809
163k
}
810
811
static struct node *
812
alloc_node(int modid)
813
21.5k
{
814
21.5k
    struct node    *np;
815
816
21.5k
    np = calloc(1, sizeof(struct node));
817
21.5k
    if (!np)
818
0
        return NULL;
819
820
21.5k
    np->tc_index = -1;
821
21.5k
    np->modid = modid;
822
21.5k
    np->filename = strdup(File);
823
21.5k
    np->lineno = mibLine;
824
825
21.5k
    return np;
826
21.5k
}
827
828
static void
829
unlink_tbucket(struct tree *tp)
830
19.8k
{
831
19.8k
    int             hash = NBUCKET(name_hash(tp->label));
832
19.8k
    struct tree    *otp = NULL, *ntp = tbuckets[hash];
833
834
22.7k
    while (ntp && ntp != tp) {
835
2.89k
        otp = ntp;
836
2.89k
        ntp = ntp->next;
837
2.89k
    }
838
19.8k
    if (!ntp)
839
3
        snmp_log(LOG_EMERG, "Can't find %s in tbuckets\n", tp->label);
840
19.8k
    else if (otp)
841
1.55k
        otp->next = ntp->next;
842
18.2k
    else
843
18.2k
        tbuckets[hash] = tp->next;
844
19.8k
}
845
846
static void
847
unlink_tree(struct tree *tp)
848
18.6k
{
849
18.6k
    struct tree    *otp = NULL, *ntp = tp->parent;
850
851
18.6k
    if (!ntp) {                 /* this tree has no parent */
852
10.2k
        DEBUGMSGTL(("unlink_tree", "Tree node %s has no parent\n",
853
10.2k
                    tp->label));
854
10.2k
    } else {
855
8.46k
        ntp = ntp->child_list;
856
857
8.61k
        while (ntp && ntp != tp) {
858
152
            otp = ntp;
859
152
            ntp = ntp->next_peer;
860
152
        }
861
8.46k
        if (!ntp)
862
0
            snmp_log(LOG_EMERG, "Can't find %s in %s's children\n",
863
0
                     tp->label, tp->parent->label);
864
8.46k
        else if (otp)
865
48
            otp->next_peer = ntp->next_peer;
866
8.41k
        else
867
8.41k
            tp->parent->child_list = tp->next_peer;
868
8.46k
    }
869
870
18.6k
    if (tree_head == tp)
871
10.2k
        tree_head = tp->next_peer;
872
18.6k
}
873
874
static void
875
free_partial_tree(struct tree *tp, int keep_label)
876
28.6k
{
877
28.6k
    if (!tp)
878
0
        return;
879
880
    /*
881
     * remove the data from this tree node 
882
     */
883
28.6k
    free_enums(&tp->enums);
884
28.6k
    free_ranges(&tp->ranges);
885
28.6k
    free_indexes(&tp->indexes);
886
28.6k
    free_varbinds(&tp->varbinds);
887
28.6k
    if (!keep_label)
888
28.6k
        SNMP_FREE(tp->label);
889
28.6k
    SNMP_FREE(tp->hint);
890
28.6k
    SNMP_FREE(tp->units);
891
28.6k
    SNMP_FREE(tp->description);
892
28.6k
    SNMP_FREE(tp->reference);
893
28.6k
    SNMP_FREE(tp->augments);
894
28.6k
    SNMP_FREE(tp->defaultValue);
895
28.6k
}
896
897
/*
898
 * free a tree node. Note: the node must already have been unlinked
899
 * from the tree when calling this routine
900
 */
901
static void
902
free_tree(struct tree *Tree)
903
18.9k
{
904
18.9k
    if (!Tree)
905
0
        return;
906
907
18.9k
    unlink_tbucket(Tree);
908
18.9k
    free_partial_tree(Tree, FALSE);
909
18.9k
    if (Tree->module_list != &Tree->modid)
910
22
        free(Tree->module_list);
911
18.9k
    free(Tree);
912
18.9k
}
913
914
static void
915
free_node(struct node *np)
916
21.5k
{
917
21.5k
    if (!np)
918
30
        return;
919
920
21.5k
    free_enums(&np->enums);
921
21.5k
    free_ranges(&np->ranges);
922
21.5k
    free_indexes(&np->indexes);
923
21.5k
    free_varbinds(&np->varbinds);
924
21.5k
    free(np->label);
925
21.5k
    free(np->hint);
926
21.5k
    free(np->units);
927
21.5k
    free(np->description);
928
21.5k
    free(np->reference);
929
21.5k
    free(np->defaultValue);
930
21.5k
    free(np->parent);
931
21.5k
    free(np->augments);
932
21.5k
    free(np->filename);
933
21.5k
    free(np);
934
21.5k
}
935
936
static void
937
print_range_value(FILE * fp, int type, struct range_list * rp)
938
0
{
939
0
    switch (type) {
940
0
    case TYPE_INTEGER:
941
0
    case TYPE_INTEGER32:
942
0
        if (rp->low == rp->high)
943
0
            fprintf(fp, "%d", rp->low);
944
0
        else
945
0
            fprintf(fp, "%d..%d", rp->low, rp->high);
946
0
        break;
947
0
    case TYPE_UNSIGNED32:
948
0
    case TYPE_OCTETSTR:
949
0
    case TYPE_GAUGE:
950
0
    case TYPE_UINTEGER:
951
0
        if (rp->low == rp->high)
952
0
            fprintf(fp, "%u", (unsigned)rp->low);
953
0
        else
954
0
            fprintf(fp, "%u..%u", (unsigned)rp->low, (unsigned)rp->high);
955
0
        break;
956
0
    default:
957
        /* No other range types allowed */
958
0
        break;
959
0
    }
960
0
}
961
962
#ifdef TEST
963
static void
964
print_nodes(FILE * fp, struct node *root)
965
{
966
    struct enum_list *ep;
967
    struct index_list *ip;
968
    struct varbind_list *vp;
969
    struct node    *np;
970
971
    for (np = root; np; np = np->next) {
972
        fprintf(fp, "%s ::= { %s %ld } (%d)\n", np->label, np->parent,
973
                np->subid, np->type);
974
        if (np->tc_index >= 0)
975
            fprintf(fp, "  TC = %s\n", tclist[np->tc_index].descriptor);
976
        if (np->enums) {
977
            fprintf(fp, "  Enums: \n");
978
            for (ep = np->enums; ep; ep = ep->next) {
979
                fprintf(fp, "    %s(%d)\n", ep->label, ep->value);
980
            }
981
        }
982
        if (np->ranges) {
983
            struct range_list *rp;
984
            fprintf(fp, "  Ranges: ");
985
            for (rp = np->ranges; rp; rp = rp->next) {
986
                fprintf(fp, "\n    ");
987
                print_range_value(fp, np->type, rp);
988
            }
989
            fprintf(fp, "\n");
990
        }
991
        if (np->indexes) {
992
            fprintf(fp, "  Indexes: \n");
993
            for (ip = np->indexes; ip; ip = ip->next) {
994
                fprintf(fp, "    %s\n", ip->ilabel);
995
            }
996
        }
997
        if (np->augments)
998
            fprintf(fp, "  Augments: %s\n", np->augments);
999
        if (np->varbinds) {
1000
            fprintf(fp, "  Varbinds: \n");
1001
            for (vp = np->varbinds; vp; vp = vp->next) {
1002
                fprintf(fp, "    %s\n", vp->vblabel);
1003
            }
1004
        }
1005
        if (np->hint)
1006
            fprintf(fp, "  Hint: %s\n", np->hint);
1007
        if (np->units)
1008
            fprintf(fp, "  Units: %s\n", np->units);
1009
        if (np->defaultValue)
1010
            fprintf(fp, "  DefaultValue: %s\n", np->defaultValue);
1011
    }
1012
}
1013
#endif
1014
1015
void
1016
print_subtree(FILE * f, struct tree *tree, int count)
1017
0
{
1018
0
    struct tree    *tp;
1019
0
    int             i;
1020
0
    char            modbuf[256];
1021
1022
0
    for (i = 0; i < count; i++)
1023
0
        fprintf(f, "  ");
1024
0
    fprintf(f, "Children of %s(%ld):\n", tree->label, tree->subid);
1025
0
    count++;
1026
0
    for (tp = tree->child_list; tp; tp = tp->next_peer) {
1027
0
        for (i = 0; i < count; i++)
1028
0
            fprintf(f, "  ");
1029
0
        fprintf(f, "%s:%s(%ld) type=%d",
1030
0
                module_name(tp->module_list[0], modbuf),
1031
0
                tp->label, tp->subid, tp->type);
1032
0
        if (tp->tc_index != -1)
1033
0
            fprintf(f, " tc=%d", tp->tc_index);
1034
0
        if (tp->hint)
1035
0
            fprintf(f, " hint=%s", tp->hint);
1036
0
        if (tp->units)
1037
0
            fprintf(f, " units=%s", tp->units);
1038
0
        if (tp->number_modules > 1) {
1039
0
            fprintf(f, " modules:");
1040
0
            for (i = 1; i < tp->number_modules; i++)
1041
0
                fprintf(f, " %s", module_name(tp->module_list[i], modbuf));
1042
0
        }
1043
0
        fprintf(f, "\n");
1044
0
    }
1045
0
    for (tp = tree->child_list; tp; tp = tp->next_peer) {
1046
0
        if (tp->child_list)
1047
0
            print_subtree(f, tp, count);
1048
0
    }
1049
0
}
1050
1051
void
1052
print_ascii_dump_tree(FILE * f, struct tree *tree, int count)
1053
0
{
1054
0
    struct tree    *tp;
1055
1056
0
    count++;
1057
0
    for (tp = tree->child_list; tp; tp = tp->next_peer) {
1058
0
        fprintf(f, "%s OBJECT IDENTIFIER ::= { %s %ld }\n", tp->label,
1059
0
                tree->label, tp->subid);
1060
0
    }
1061
0
    for (tp = tree->child_list; tp; tp = tp->next_peer) {
1062
0
        if (tp->child_list)
1063
0
            print_ascii_dump_tree(f, tp, count);
1064
0
    }
1065
0
}
1066
1067
static int      translation_table[256];
1068
1069
static void
1070
build_translation_table(void)
1071
3.41k
{
1072
3.41k
    int             count;
1073
1074
877k
    for (count = 0; count < 256; count++) {
1075
873k
        switch (count) {
1076
3.41k
        case OBJID:
1077
3.41k
            translation_table[count] = TYPE_OBJID;
1078
3.41k
            break;
1079
3.41k
        case OCTETSTR:
1080
3.41k
            translation_table[count] = TYPE_OCTETSTR;
1081
3.41k
            break;
1082
3.41k
        case INTEGER:
1083
3.41k
            translation_table[count] = TYPE_INTEGER;
1084
3.41k
            break;
1085
3.41k
        case NETADDR:
1086
3.41k
            translation_table[count] = TYPE_NETADDR;
1087
3.41k
            break;
1088
3.41k
        case IPADDR:
1089
3.41k
            translation_table[count] = TYPE_IPADDR;
1090
3.41k
            break;
1091
3.41k
        case COUNTER:
1092
3.41k
            translation_table[count] = TYPE_COUNTER;
1093
3.41k
            break;
1094
3.41k
        case GAUGE:
1095
3.41k
            translation_table[count] = TYPE_GAUGE;
1096
3.41k
            break;
1097
3.41k
        case TIMETICKS:
1098
3.41k
            translation_table[count] = TYPE_TIMETICKS;
1099
3.41k
            break;
1100
3.41k
        case KW_OPAQUE:
1101
3.41k
            translation_table[count] = TYPE_OPAQUE;
1102
3.41k
            break;
1103
3.41k
        case NUL:
1104
3.41k
            translation_table[count] = TYPE_NULL;
1105
3.41k
            break;
1106
3.41k
        case COUNTER64:
1107
3.41k
            translation_table[count] = TYPE_COUNTER64;
1108
3.41k
            break;
1109
3.41k
        case BITSTRING:
1110
3.41k
            translation_table[count] = TYPE_BITSTRING;
1111
3.41k
            break;
1112
3.41k
        case NSAPADDRESS:
1113
3.41k
            translation_table[count] = TYPE_NSAPADDRESS;
1114
3.41k
            break;
1115
3.41k
        case INTEGER32:
1116
3.41k
            translation_table[count] = TYPE_INTEGER32;
1117
3.41k
            break;
1118
3.41k
        case UINTEGER32:
1119
3.41k
            translation_table[count] = TYPE_UINTEGER;
1120
3.41k
            break;
1121
3.41k
        case UNSIGNED32:
1122
3.41k
            translation_table[count] = TYPE_UNSIGNED32;
1123
3.41k
            break;
1124
3.41k
        case TRAPTYPE:
1125
3.41k
            translation_table[count] = TYPE_TRAPTYPE;
1126
3.41k
            break;
1127
3.41k
        case NOTIFTYPE:
1128
3.41k
            translation_table[count] = TYPE_NOTIFTYPE;
1129
3.41k
            break;
1130
3.41k
        case NOTIFGROUP:
1131
3.41k
            translation_table[count] = TYPE_NOTIFGROUP;
1132
3.41k
            break;
1133
3.41k
        case OBJGROUP:
1134
3.41k
            translation_table[count] = TYPE_OBJGROUP;
1135
3.41k
            break;
1136
3.41k
        case MODULEIDENTITY:
1137
3.41k
            translation_table[count] = TYPE_MODID;
1138
3.41k
            break;
1139
3.41k
        case OBJIDENTITY:
1140
3.41k
            translation_table[count] = TYPE_OBJIDENTITY;
1141
3.41k
            break;
1142
3.41k
        case AGENTCAP:
1143
3.41k
            translation_table[count] = TYPE_AGENTCAP;
1144
3.41k
            break;
1145
3.41k
        case COMPLIANCE:
1146
3.41k
            translation_table[count] = TYPE_MODCOMP;
1147
3.41k
            break;
1148
791k
        default:
1149
791k
            translation_table[count] = TYPE_OTHER;
1150
791k
            break;
1151
873k
        }
1152
873k
    }
1153
3.41k
}
1154
1155
static void
1156
init_tree_roots(void)
1157
3.41k
{
1158
3.41k
    struct tree    *tp, *lasttp;
1159
3.41k
    int             base_modid;
1160
3.41k
    int             hash;
1161
1162
3.41k
    base_modid = which_module("SNMPv2-SMI");
1163
3.41k
    if (base_modid == -1)
1164
3.41k
        base_modid = which_module("RFC1155-SMI");
1165
3.41k
    if (base_modid == -1)
1166
3.41k
        base_modid = which_module("RFC1213-MIB");
1167
1168
    /*
1169
     * build root node 
1170
     */
1171
3.41k
    tp = calloc(1, sizeof(struct tree));
1172
3.41k
    if (tp == NULL)
1173
0
        return;
1174
3.41k
    tp->label = strdup("joint-iso-ccitt");
1175
3.41k
    tp->modid = base_modid;
1176
3.41k
    tp->number_modules = 1;
1177
3.41k
    tp->module_list = &(tp->modid);
1178
3.41k
    tp->subid = 2;
1179
3.41k
    tp->tc_index = -1;
1180
3.41k
    set_function(tp);           /* from mib.c */
1181
3.41k
    hash = NBUCKET(name_hash(tp->label));
1182
3.41k
    tp->next = tbuckets[hash];
1183
3.41k
    tbuckets[hash] = tp;
1184
3.41k
    lasttp = tp;
1185
3.41k
    root_imports[0].label = strdup(tp->label);
1186
3.41k
    root_imports[0].modid = base_modid;
1187
1188
    /*
1189
     * build root node 
1190
     */
1191
3.41k
    tp = calloc(1, sizeof(struct tree));
1192
3.41k
    if (tp == NULL)
1193
0
        return;
1194
3.41k
    tp->next_peer = lasttp;
1195
3.41k
    tp->label = strdup("ccitt");
1196
3.41k
    tp->modid = base_modid;
1197
3.41k
    tp->number_modules = 1;
1198
3.41k
    tp->module_list = &(tp->modid);
1199
3.41k
    tp->subid = 0;
1200
3.41k
    tp->tc_index = -1;
1201
3.41k
    set_function(tp);           /* from mib.c */
1202
3.41k
    hash = NBUCKET(name_hash(tp->label));
1203
3.41k
    tp->next = tbuckets[hash];
1204
3.41k
    tbuckets[hash] = tp;
1205
3.41k
    lasttp = tp;
1206
3.41k
    root_imports[1].label = strdup(tp->label);
1207
3.41k
    root_imports[1].modid = base_modid;
1208
1209
    /*
1210
     * build root node 
1211
     */
1212
3.41k
    tp = calloc(1, sizeof(struct tree));
1213
3.41k
    if (tp == NULL)
1214
0
        return;
1215
3.41k
    tp->next_peer = lasttp;
1216
3.41k
    tp->label = strdup("iso");
1217
3.41k
    tp->modid = base_modid;
1218
3.41k
    tp->number_modules = 1;
1219
3.41k
    tp->module_list = &(tp->modid);
1220
3.41k
    tp->subid = 1;
1221
3.41k
    tp->tc_index = -1;
1222
3.41k
    set_function(tp);           /* from mib.c */
1223
3.41k
    hash = NBUCKET(name_hash(tp->label));
1224
3.41k
    tp->next = tbuckets[hash];
1225
3.41k
    tbuckets[hash] = tp;
1226
3.41k
    lasttp = tp;
1227
3.41k
    root_imports[2].label = strdup(tp->label);
1228
3.41k
    root_imports[2].modid = base_modid;
1229
1230
3.41k
    tree_head = tp;
1231
3.41k
}
1232
1233
#ifdef STRICT_MIB_PARSEING
1234
#define label_compare strcasecmp
1235
#else
1236
4.21M
#define label_compare strcmp
1237
#endif
1238
1239
1240
struct tree    *
1241
find_tree_node(const char *name, int modid)
1242
8.04k
{
1243
8.04k
    struct tree    *tp, *headtp;
1244
8.04k
    int             count, *int_p;
1245
1246
8.04k
    if (!name || !*name)
1247
12
        return (NULL);
1248
1249
8.03k
    headtp = tbuckets[NBUCKET(name_hash(name))];
1250
9.15k
    for (tp = headtp; tp; tp = tp->next) {
1251
4.28k
        if (tp->label && !label_compare(tp->label, name)) {
1252
1253
3.15k
            if (modid == -1)    /* Any module */
1254
3.15k
                return (tp);
1255
1256
0
            for (int_p = tp->module_list, count = 0;
1257
0
                 count < tp->number_modules; ++count, ++int_p)
1258
0
                if (*int_p == modid)
1259
0
                    return (tp);
1260
0
        }
1261
4.28k
    }
1262
1263
4.87k
    return (NULL);
1264
8.03k
}
1265
1266
/*
1267
 * computes a value which represents how close name1 is to name2.
1268
 * * high scores mean a worse match.
1269
 * * (yes, the algorithm sucks!)
1270
 */
1271
2.60k
#define MAX_BAD 0xffffff
1272
1273
static          u_int
1274
compute_match(const char *search_base, const char *key)
1275
1.55k
{
1276
1.55k
#if defined(HAVE_REGEX_H) && defined(HAVE_REGCOMP)
1277
1.55k
    int             rc;
1278
1.55k
    regex_t         parsetree;
1279
1.55k
    regmatch_t      pmatch;
1280
1.55k
    rc = regcomp(&parsetree, key, REG_ICASE | REG_EXTENDED);
1281
1.55k
    if (rc == 0)
1282
1.42k
        rc = regexec(&parsetree, search_base, 1, &pmatch, 0);
1283
1.55k
    regfree(&parsetree);
1284
1.55k
    if (rc == 0) {
1285
        /*
1286
         * found 
1287
         */
1288
75
        return pmatch.rm_so;
1289
75
    }
1290
#else                           /* use our own wildcard matcher */
1291
    /*
1292
     * first find the longest matching substring (ick) 
1293
     */
1294
    char           *first = NULL, *result = NULL, *entry;
1295
    const char     *position;
1296
    char           *newkey = strdup(key);
1297
    char           *st;
1298
1299
1300
    entry = strtok_r(newkey, "*", &st);
1301
    position = search_base;
1302
    while (entry) {
1303
        result = strcasestr(position, entry);
1304
1305
        if (result == NULL) {
1306
            free(newkey);
1307
            return MAX_BAD;
1308
        }
1309
1310
        if (first == NULL)
1311
            first = result;
1312
1313
        position = result + strlen(entry);
1314
        entry = strtok_r(NULL, "*", &st);
1315
    }
1316
    free(newkey);
1317
    if (result)
1318
        return (first - search_base);
1319
#endif
1320
1321
    /*
1322
     * not found 
1323
     */
1324
1.48k
    return MAX_BAD;
1325
1.55k
}
1326
1327
/*
1328
 * Find the tree node that best matches the pattern string.
1329
 * Use the "reported" flag such that only one match
1330
 * is attempted for every node.
1331
 *
1332
 * Warning! This function may recurse.
1333
 *
1334
 * Caller _must_ invoke clear_tree_flags before first call
1335
 * to this function.  This function may be called multiple times
1336
 * to ensure that the entire tree is traversed.
1337
 */
1338
1339
struct tree    *
1340
find_best_tree_node(const char *pattrn, struct tree *tree_top,
1341
                    u_int * match)
1342
564
{
1343
564
    struct tree    *tp, *best_so_far = NULL, *retptr;
1344
564
    u_int           old_match = MAX_BAD, new_match = MAX_BAD;
1345
1346
564
    if (!pattrn || !*pattrn)
1347
4
        return (NULL);
1348
1349
560
    if (!tree_top)
1350
32
        tree_top = get_tree_head();
1351
1352
2.09k
    for (tp = tree_top; tp; tp = tp->next_peer) {
1353
1.55k
        if (!tp->reported && tp->label)
1354
1.55k
            new_match = compute_match(tp->label, pattrn);
1355
1.55k
        tp->reported = 1;
1356
1357
1.55k
        if (new_match < old_match) {
1358
61
            best_so_far = tp;
1359
61
            old_match = new_match;
1360
61
        }
1361
1.55k
        if (new_match == 0)
1362
26
            break;              /* this is the best result we can get */
1363
1.53k
        if (tp->child_list) {
1364
0
            retptr =
1365
0
                find_best_tree_node(pattrn, tp->child_list, &new_match);
1366
0
            if (new_match < old_match) {
1367
0
                best_so_far = retptr;
1368
0
                old_match = new_match;
1369
0
            }
1370
0
            if (new_match == 0)
1371
0
                break;          /* this is the best result we can get */
1372
0
        }
1373
1.53k
    }
1374
560
    if (match)
1375
0
        *match = old_match;
1376
560
    return (best_so_far);
1377
564
}
1378
1379
1380
static void
1381
merge_anon_children(struct tree *tp1, struct tree *tp2)
1382
                /*
1383
                 * NB: tp1 is the 'anonymous' node 
1384
                 */
1385
569
{
1386
569
    struct tree    *child1, *child2, *previous;
1387
1388
1.97k
    for (child1 = tp1->child_list; child1;) {
1389
1390
1.40k
        for (child2 = tp2->child_list, previous = NULL;
1391
1.98k
             child2; previous = child2, child2 = child2->next_peer) {
1392
1393
1.33k
            if (child1->subid == child2->subid) {
1394
                /*
1395
                 * Found 'matching' children,
1396
                 *  so merge them
1397
                 */
1398
834
                if (!strncmp(child1->label, ANON, ANON_LEN)) {
1399
0
                    merge_anon_children(child1, child2);
1400
1401
0
                    child1->child_list = NULL;
1402
0
                    previous = child1;  /* Finished with 'child1' */
1403
0
                    child1 = child1->next_peer;
1404
0
                    free_tree(previous);
1405
0
                    goto next;
1406
0
                }
1407
1408
834
                else if (!strncmp(child2->label, ANON, ANON_LEN)) {
1409
0
                    merge_anon_children(child2, child1);
1410
1411
0
                    if (previous)
1412
0
                        previous->next_peer = child2->next_peer;
1413
0
                    else
1414
0
                        tp2->child_list = child2->next_peer;
1415
0
                    free_tree(child2);
1416
1417
0
                    previous = child1;  /* Move 'child1' to 'tp2' */
1418
0
                    child1 = child1->next_peer;
1419
0
                    previous->next_peer = tp2->child_list;
1420
0
                    tp2->child_list = previous;
1421
0
                    for (previous = tp2->child_list;
1422
0
                         previous; previous = previous->next_peer)
1423
0
                        previous->parent = tp2;
1424
0
                    goto next;
1425
834
                } else if (!label_compare(child1->label, child2->label)) {
1426
89
                    if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
1427
89
             NETSNMP_DS_LIB_MIB_WARNINGS)) {
1428
0
                        snmp_log(LOG_WARNING,
1429
0
                                 "Warning: %s.%ld is both %s and %s (%s)\n",
1430
0
                                 tp2->label, child1->subid, child1->label,
1431
0
                                 child2->label, File);
1432
0
        }
1433
89
                    continue;
1434
745
                } else {
1435
                    /*
1436
                     * Two copies of the same node.
1437
                     * 'child2' adopts the children of 'child1'
1438
                     */
1439
1440
745
                    if (child2->child_list) {
1441
0
                        for (previous = child2->child_list; previous->next_peer; previous = previous->next_peer);       /* Find the end of the list */
1442
0
                        previous->next_peer = child1->child_list;
1443
0
                    } else
1444
745
                        child2->child_list = child1->child_list;
1445
745
                    for (previous = child1->child_list;
1446
1.67k
                         previous; previous = previous->next_peer)
1447
930
                        previous->parent = child2;
1448
745
                    child1->child_list = NULL;
1449
1450
745
                    previous = child1;  /* Finished with 'child1' */
1451
745
                    child1 = child1->next_peer;
1452
745
                    free_tree(previous);
1453
745
                    goto next;
1454
745
                }
1455
834
            }
1456
1.33k
        }
1457
        /*
1458
         * If no match, move 'child1' to 'tp2' child_list
1459
         */
1460
657
        if (child1) {
1461
657
            previous = child1;
1462
657
            child1 = child1->next_peer;
1463
657
            previous->parent = tp2;
1464
657
            previous->next_peer = tp2->child_list;
1465
657
            tp2->child_list = previous;
1466
657
        }
1467
1.40k
      next:;
1468
1.40k
    }
1469
569
}
1470
1471
1472
/*
1473
 * Find all the children of root in the list of nodes.  Link them into the
1474
 * tree and out of the nodes list.
1475
 */
1476
static void
1477
do_subtree(struct tree *root, struct node **nodes)
1478
14.9k
{
1479
14.9k
    struct tree    *tp, *anon_tp = NULL;
1480
14.9k
    struct tree    *xroot = root;
1481
14.9k
    struct node    *np, **headp;
1482
14.9k
    struct node    *oldnp = NULL, *child_list = NULL, *childp = NULL;
1483
14.9k
    int             hash;
1484
14.9k
    int            *int_p;
1485
14.9k
    int             depth = 0;
1486
14.9k
    struct tree    *p;
1487
1488
88.4k
    for (p = root; p; p = p->parent) {
1489
73.4k
        depth++;
1490
73.4k
        if (depth >= MAX_OID_LEN) {
1491
0
            snmp_log(LOG_ERR, "MIB tree depth exceeds MAX_OID_LEN (%d); aborting subtree parsing\n", MAX_OID_LEN);
1492
0
            return;
1493
0
        }
1494
73.4k
    }
1495
1496
21.5k
    while (xroot->next_peer && xroot->next_peer->subid == root->subid) {
1497
#if 0
1498
        printf("xroot: %s.%s => %s\n", xroot->parent->label, xroot->label,
1499
               xroot->next_peer->label);
1500
#endif
1501
6.60k
        xroot = xroot->next_peer;
1502
6.60k
    }
1503
1504
14.9k
    tp = root;
1505
14.9k
    headp = &nbuckets[NBUCKET(name_hash(tp->label))];
1506
    /*
1507
     * Search each of the nodes for one whose parent is root, and
1508
     * move each into a separate list.
1509
     */
1510
26.0k
    for (np = *headp; np; np = np->next) {
1511
11.0k
        if (!label_compare(tp->label, np->parent)) {
1512
            /*
1513
             * take this node out of the node list 
1514
             */
1515
9.75k
            if (oldnp == NULL) {
1516
9.31k
                *headp = np->next;      /* fix root of node list */
1517
9.31k
            } else {
1518
437
                oldnp->next = np->next; /* link around this node */
1519
437
            }
1520
9.75k
            if (child_list)
1521
2.12k
                childp->next = np;
1522
7.63k
            else
1523
7.63k
                child_list = np;
1524
9.75k
            childp = np;
1525
9.75k
        } else {
1526
1.32k
            oldnp = np;
1527
1.32k
        }
1528
1529
11.0k
    }
1530
14.9k
    if (childp)
1531
7.63k
        childp->next = NULL;
1532
    /*
1533
     * Take each element in the child list and place it into the tree.
1534
     */
1535
24.7k
    for (np = child_list; np; np = np->next) {
1536
9.75k
        struct tree    *otp = NULL;
1537
9.75k
        struct tree    *xxroot = xroot;
1538
9.75k
        anon_tp = NULL;
1539
9.75k
        tp = xroot->child_list;
1540
1541
9.75k
        if (np->subid == -1) {
1542
            /*
1543
             * name ::= { parent } 
1544
             */
1545
3
            np->subid = xroot->subid;
1546
3
            tp = xroot;
1547
3
            xxroot = xroot->parent;
1548
3
        }
1549
1550
11.0k
        while (tp) {
1551
5.38k
            if (tp->subid == np->subid)
1552
4.06k
                break;
1553
1.32k
            else {
1554
1.32k
                otp = tp;
1555
1.32k
                tp = tp->next_peer;
1556
1.32k
            }
1557
5.38k
        }
1558
9.75k
        if (tp) {
1559
4.06k
            if (!label_compare(tp->label, np->label)) {
1560
                /*
1561
                 * Update list of modules 
1562
                 */
1563
540
                int_p = malloc((tp->number_modules + 1) * sizeof(int));
1564
540
                if (int_p == NULL)
1565
0
                    goto cleanup;
1566
540
                memcpy(int_p, tp->module_list,
1567
540
                       tp->number_modules * sizeof(int));
1568
540
                int_p[tp->number_modules] = np->modid;
1569
540
                if (tp->module_list != &tp->modid)
1570
217
                    free(tp->module_list);
1571
540
                ++tp->number_modules;
1572
540
                tp->module_list = int_p;
1573
1574
540
                if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
1575
540
             NETSNMP_DS_LIB_MIB_REPLACE)) {
1576
                    /*
1577
                     * Replace from node 
1578
                     */
1579
0
                    tree_from_node(tp, np);
1580
0
                }
1581
                /*
1582
                 * Handle children 
1583
                 */
1584
540
                do_subtree(tp, nodes);
1585
540
                continue;
1586
540
            }
1587
3.52k
            if (!strncmp(np->label, ANON, ANON_LEN) ||
1588
3.38k
                !strncmp(tp->label, ANON, ANON_LEN)) {
1589
569
                anon_tp = tp;   /* Need to merge these two trees later */
1590
2.95k
            } else if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
1591
2.95k
            NETSNMP_DS_LIB_MIB_WARNINGS)) {
1592
0
                snmp_log(LOG_WARNING,
1593
0
                         "Warning: %s.%ld is both %s and %s (%s)\n",
1594
0
                         root->label, np->subid, tp->label, np->label,
1595
0
                         File);
1596
0
      }
1597
3.52k
        }
1598
1599
9.21k
        tp = calloc(1, sizeof(struct tree));
1600
9.21k
        if (tp == NULL)
1601
0
            goto cleanup;
1602
9.21k
        tp->parent = xxroot;
1603
9.21k
        tp->modid = np->modid;
1604
9.21k
        tp->number_modules = 1;
1605
9.21k
        tp->module_list = &(tp->modid);
1606
9.21k
        tree_from_node(tp, np);
1607
9.21k
        if (!otp && !xxroot) {
1608
3
          free_tree(tp);
1609
3
          goto cleanup;
1610
3
        }
1611
9.20k
        tp->next_peer = otp ? otp->next_peer : xxroot->child_list;
1612
9.20k
        if (otp)
1613
522
            otp->next_peer = tp;
1614
8.68k
        else
1615
8.68k
            xxroot->child_list = tp;
1616
9.20k
        hash = NBUCKET(name_hash(tp->label));
1617
9.20k
        tp->next = tbuckets[hash];
1618
9.20k
        tbuckets[hash] = tp;
1619
9.20k
        do_subtree(tp, nodes);
1620
1621
9.20k
        if (anon_tp) {
1622
569
            if (!strncmp(tp->label, ANON, ANON_LEN)) {
1623
                /*
1624
                 * The new node is anonymous,
1625
                 *  so merge it with the existing one.
1626
                 */
1627
137
                merge_anon_children(tp, anon_tp);
1628
1629
                /*
1630
                 * unlink and destroy tp 
1631
                 */
1632
137
                unlink_tree(tp);
1633
137
                free_tree(tp);
1634
432
            } else if (!strncmp(anon_tp->label, ANON, ANON_LEN)) {
1635
432
                struct tree    *ntp;
1636
                /*
1637
                 * The old node was anonymous,
1638
                 *  so merge it with the existing one,
1639
                 *  and fill in the full information.
1640
                 */
1641
432
                merge_anon_children(anon_tp, tp);
1642
1643
                /*
1644
                 * unlink anon_tp from the hash 
1645
                 */
1646
432
                unlink_tbucket(anon_tp);
1647
1648
                /*
1649
                 * get rid of old contents of anon_tp 
1650
                 */
1651
432
                free_partial_tree(anon_tp, FALSE);
1652
1653
                /*
1654
                 * put in the current information 
1655
                 */
1656
432
                anon_tp->label = tp->label;
1657
432
                anon_tp->child_list = tp->child_list;
1658
432
                anon_tp->modid = tp->modid;
1659
432
                anon_tp->tc_index = tp->tc_index;
1660
432
                anon_tp->type = tp->type;
1661
432
                anon_tp->enums = tp->enums;
1662
432
                anon_tp->indexes = tp->indexes;
1663
432
                anon_tp->augments = tp->augments;
1664
432
                anon_tp->varbinds = tp->varbinds;
1665
432
                anon_tp->ranges = tp->ranges;
1666
432
                anon_tp->hint = tp->hint;
1667
432
                anon_tp->units = tp->units;
1668
432
                anon_tp->description = tp->description;
1669
432
                anon_tp->reference = tp->reference;
1670
432
                anon_tp->defaultValue = tp->defaultValue;
1671
432
                anon_tp->parent = tp->parent;
1672
1673
432
                set_function(anon_tp);
1674
1675
                /*
1676
                 * update parent pointer in moved children 
1677
                 */
1678
432
                ntp = anon_tp->child_list;
1679
1.08k
                while (ntp) {
1680
657
                    ntp->parent = anon_tp;
1681
657
                    ntp = ntp->next_peer;
1682
657
                }
1683
1684
                /*
1685
                 * hash in anon_tp in its new place 
1686
                 */
1687
432
                hash = NBUCKET(name_hash(anon_tp->label));
1688
432
                anon_tp->next = tbuckets[hash];
1689
432
                tbuckets[hash] = anon_tp;
1690
1691
                /*
1692
                 * unlink and destroy tp 
1693
                 */
1694
432
                unlink_tbucket(tp);
1695
432
                unlink_tree(tp);
1696
432
                free(tp);
1697
432
            } else {
1698
                /*
1699
                 * Uh?  One of these two should have been anonymous! 
1700
                 */
1701
0
                if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
1702
0
               NETSNMP_DS_LIB_MIB_WARNINGS)) {
1703
0
                    snmp_log(LOG_WARNING,
1704
0
                             "Warning: expected anonymous node (either %s or %s) in %s\n",
1705
0
                             tp->label, anon_tp->label, File);
1706
0
    }
1707
0
            }
1708
569
            anon_tp = NULL;
1709
569
        }
1710
9.20k
    }
1711
14.9k
cleanup:
1712
    /*
1713
     * free all nodes that were copied into tree 
1714
     */
1715
14.9k
    oldnp = NULL;
1716
24.7k
    for (np = child_list; np; np = np->next) {
1717
9.75k
        if (oldnp)
1718
2.12k
            free_node(oldnp);
1719
9.75k
        oldnp = np;
1720
9.75k
    }
1721
14.9k
    if (oldnp)
1722
7.63k
        free_node(oldnp);
1723
14.9k
}
1724
1725
static void
1726
do_linkup(struct module *mp, struct node *np)
1727
1.05k
{
1728
1.05k
    struct module_import *mip;
1729
1.05k
    struct node    *onp, *oldp, *newp;
1730
1.05k
    struct tree    *tp;
1731
1.05k
    int             i, more;
1732
    /*
1733
     * All modules implicitly import
1734
     *   the roots of the tree
1735
     */
1736
1.05k
    if (snmp_get_do_debugging() > 1)
1737
0
        dump_module_list();
1738
1.05k
    DEBUGMSGTL(("parse-mibs", "Processing IMPORTS for module %d %s\n",
1739
1.05k
                mp->modid, mp->name));
1740
1.05k
    if (mp->no_imports == 0) {
1741
916
        mp->no_imports = NUMBER_OF_ROOT_NODES;
1742
916
        mp->imports = root_imports;
1743
916
    }
1744
1745
    /*
1746
     * Build the tree
1747
     */
1748
1.05k
    init_node_hash(np);
1749
4.53k
    for (i = 0, mip = mp->imports; i < mp->no_imports; ++i, ++mip) {
1750
3.47k
        char            modbuf[256];
1751
3.47k
        DEBUGMSGTL(("parse-mibs", "  Processing import: %s\n",
1752
3.47k
                    mip->label));
1753
3.47k
        if (get_tc_index(mip->label, mip->modid) != -1)
1754
0
            continue;
1755
3.47k
        tp = find_tree_node(mip->label, mip->modid);
1756
3.47k
        if (!tp) {
1757
461
      if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_ERRORS))
1758
461
                snmp_log(LOG_WARNING,
1759
461
                         "Did not find '%s' in module %s (%s)\n",
1760
461
                         mip->label, module_name(mip->modid, modbuf),
1761
461
                         File);
1762
461
            continue;
1763
461
        }
1764
3.01k
        do_subtree(tp, &np);
1765
3.01k
    }
1766
1767
    /*
1768
     * If any nodes left over,
1769
     *   check that they're not the result of a "fully qualified"
1770
     *   name, and then add them to the list of orphans
1771
     */
1772
1773
1.05k
    if (!np)
1774
316
        return;
1775
2.96k
    for (tp = tree_head; tp; tp = tp->next_peer)
1776
2.22k
        do_subtree(tp, &np);
1777
741
    if (!np)
1778
0
        return;
1779
1780
    /*
1781
     * quietly move all internal references to the orphan list 
1782
     */
1783
741
    oldp = orphan_nodes;
1784
966
    do {
1785
124k
        for (i = 0; i < NHASHSIZE; i++)
1786
126k
            for (onp = nbuckets[i]; onp; onp = onp->next) {
1787
2.61k
                struct node    *op = NULL;
1788
2.61k
                int             hash = NBUCKET(name_hash(onp->label));
1789
2.61k
                np = nbuckets[hash];
1790
5.87k
                while (np) {
1791
3.26k
                    if (label_compare(onp->label, np->parent)) {
1792
976
                        op = np;
1793
976
                        np = np->next;
1794
2.28k
                    } else {
1795
2.28k
                        if (op)
1796
204
                            op->next = np->next;
1797
2.08k
                        else
1798
2.08k
                            nbuckets[hash] = np->next;
1799
2.28k
      DEBUGMSGTL(("parse-mibs", "Moving %s to orphanage", np->label));
1800
2.28k
                        np->next = orphan_nodes;
1801
2.28k
                        orphan_nodes = np;
1802
2.28k
                        op = NULL;
1803
2.28k
                        np = nbuckets[hash];
1804
2.28k
                    }
1805
3.26k
                }
1806
2.61k
            }
1807
966
        newp = orphan_nodes;
1808
966
        more = 0;
1809
4.08k
        for (onp = orphan_nodes; onp != oldp; onp = onp->next) {
1810
3.12k
            struct node    *op = NULL;
1811
3.12k
            int             hash = NBUCKET(name_hash(onp->label));
1812
3.12k
            np = nbuckets[hash];
1813
4.58k
            while (np) {
1814
1.46k
                if (label_compare(onp->label, np->parent)) {
1815
627
                    op = np;
1816
627
                    np = np->next;
1817
835
                } else {
1818
835
                    if (op)
1819
49
                        op->next = np->next;
1820
786
                    else
1821
786
                        nbuckets[hash] = np->next;
1822
835
                    np->next = orphan_nodes;
1823
835
                    orphan_nodes = np;
1824
835
                    op = NULL;
1825
835
                    np = nbuckets[hash];
1826
835
                    more = 1;
1827
835
                }
1828
1.46k
            }
1829
3.12k
        }
1830
966
        oldp = newp;
1831
966
    } while (more);
1832
1833
    /*
1834
     * complain about left over nodes 
1835
     */
1836
3.78k
    for (np = orphan_nodes; np && np->next; np = np->next);     /* find the end of the orphan list */
1837
95.5k
    for (i = 0; i < NHASHSIZE; i++)
1838
94.8k
        if (nbuckets[i]) {
1839
302
            if (orphan_nodes)
1840
283
                onp = np->next = nbuckets[i];
1841
19
            else
1842
19
                onp = orphan_nodes = nbuckets[i];
1843
302
            nbuckets[i] = NULL;
1844
647
            while (onp) {
1845
345
                snmp_log(LOG_WARNING,
1846
345
                         "Cannot resolve OID in %s: %s ::= { %s %ld } at line %d in %s\n",
1847
345
                         (mp->name ? mp->name : "<no module>"),
1848
345
                         (onp->label ? onp->label : "<no label>"),
1849
345
                         (onp->parent ? onp->parent : "<no parent>"),
1850
345
                         onp->subid, onp->lineno, onp->filename);
1851
345
                np = onp;
1852
345
                onp = onp->next;
1853
345
            }
1854
302
        }
1855
741
    return;
1856
741
}
1857
1858
1859
/**
1860
 * Read an OID from a file.
1861
 * @param[in]  file   File to read from.
1862
 * @param[out] id_arg Array to store the OID in.
1863
 * @param[in]  length Number of elements in the @id_arg array.
1864
 *
1865
 * Takes a list of the form:
1866
 * { iso org(3) dod(6) 1 }
1867
 * and creates several nodes, one for each parent-child pair.
1868
 * Returns 0 on error.
1869
 */
1870
static int
1871
getoid(FILE * fp, struct subid_s *id_arg, int length)
1872
2.52k
{
1873
2.52k
    struct subid_s *id = id_arg;
1874
2.52k
    int             i, count, type;
1875
2.52k
    char            token[MAXTOKEN];
1876
1877
2.52k
    if ((type = get_token(fp, token, MAXTOKEN)) != LEFTBRACKET) {
1878
146
        print_error("Expected \"{\"", token, type);
1879
146
        return 0;
1880
146
    }
1881
2.37k
    type = get_token(fp, token, MAXTOKEN);
1882
31.0k
    for (count = 0; count < length; count++, id++) {
1883
30.9k
        id->label = NULL;
1884
30.9k
        id->modid = current_module;
1885
30.9k
        id->subid = -1;
1886
30.9k
        if (type == RIGHTBRACKET)
1887
1.92k
            return count;
1888
29.0k
        if (type == LABEL) {
1889
            /*
1890
             * this entry has a label 
1891
             */
1892
24.4k
            id->label = strdup(token);
1893
24.4k
            type = get_token(fp, token, MAXTOKEN);
1894
24.4k
            if (type == LEFTPAREN) {
1895
272
                type = get_token(fp, token, MAXTOKEN);
1896
272
                if (type == NUMBER) {
1897
127
                    id->subid = strtoul(token, NULL, 10);
1898
127
                    if ((type =
1899
127
                         get_token(fp, token, MAXTOKEN)) != RIGHTPAREN) {
1900
77
                        print_error("Expected a closing parenthesis",
1901
77
                                    token, type);
1902
77
                        goto free_labels;
1903
77
                    }
1904
145
                } else {
1905
145
                    print_error("Expected a number", token, type);
1906
145
                    goto free_labels;
1907
145
                }
1908
24.2k
            } else {
1909
24.2k
                continue;
1910
24.2k
            }
1911
24.4k
        } else if (type == NUMBER) {
1912
            /*
1913
             * this entry  has just an integer sub-identifier 
1914
             */
1915
4.37k
            id->subid = strtoul(token, NULL, 10);
1916
4.37k
        } else {
1917
173
            print_error("Expected label or number", token, type);
1918
173
            goto free_labels;
1919
173
        }
1920
4.42k
        type = get_token(fp, token, MAXTOKEN);
1921
4.42k
    }
1922
53
    print_error("Too long OID", token, type);
1923
53
    --count;
1924
1925
448
free_labels:
1926
5.84k
    for (i = 0; i <= count; i++) {
1927
5.39k
        free(id_arg[i].label);
1928
5.39k
        id_arg[i].label = NULL;
1929
5.39k
    }
1930
1931
448
    return 0;
1932
53
}
1933
1934
/*
1935
 * Parse a sequence of object subidentifiers for the given name.
1936
 * The "label OBJECT IDENTIFIER ::=" portion has already been parsed.
1937
 *
1938
 * The majority of cases take this form :
1939
 * label OBJECT IDENTIFIER ::= { parent 2 }
1940
 * where a parent label and a child subidentifier number are specified.
1941
 *
1942
 * Variations on the theme include cases where a number appears with
1943
 * the parent, or intermediate subidentifiers are specified by label,
1944
 * by number, or both.
1945
 *
1946
 * Here are some representative samples :
1947
 * internet        OBJECT IDENTIFIER ::= { iso org(3) dod(6) 1 }
1948
 * mgmt            OBJECT IDENTIFIER ::= { internet 2 }
1949
 * rptrInfoHealth  OBJECT IDENTIFIER ::= { snmpDot3RptrMgt 0 4 }
1950
 *
1951
 * Here is a very rare form :
1952
 * iso             OBJECT IDENTIFIER ::= { 1 }
1953
 *
1954
 * Returns NULL on error.  When this happens, memory may be leaked.
1955
 */
1956
static struct node *
1957
parse_objectid(FILE * fp, char *name)
1958
2.52k
{
1959
2.52k
    register int    count;
1960
2.52k
    register struct subid_s *op, *nop;
1961
2.52k
    int             length;
1962
2.52k
    struct subid_s  loid[32];
1963
2.52k
    struct node    *np, *root = NULL, *oldnp = NULL;
1964
2.52k
    struct tree    *tp;
1965
1966
2.52k
    if ((length = getoid(fp, loid, 32)) == 0) {
1967
596
        print_error("Bad object identifier", NULL, CONTINUE);
1968
596
        return NULL;
1969
596
    }
1970
1971
    /*
1972
     * Handle numeric-only object identifiers,
1973
     *  by labeling the first sub-identifier
1974
     */
1975
1.92k
    op = loid;
1976
1.92k
    if (!op->label) {
1977
1.23k
        if (length == 1) {
1978
116
            print_error("Attempt to define a root oid", name, OBJECT);
1979
116
            return NULL;
1980
116
        }
1981
3.07k
        for (tp = tree_head; tp; tp = tp->next_peer)
1982
2.66k
            if ((int) tp->subid == op->subid) {
1983
706
                op->label = strdup(tp->label);
1984
706
                break;
1985
706
            }
1986
1.12k
    }
1987
1988
    /*
1989
     * Handle  "label OBJECT-IDENTIFIER ::= { subid }"
1990
     */
1991
1.80k
    if (length == 1) {
1992
172
        op = loid;
1993
172
        np = alloc_node(op->modid);
1994
172
        if (np == NULL)
1995
0
            return (NULL);
1996
172
        np->subid = op->subid;
1997
172
        np->label = strdup(name);
1998
172
        np->parent = op->label;
1999
172
        return np;
2000
172
    }
2001
2002
    /*
2003
     * For each parent-child subid pair in the subid array,
2004
     * create a node and link it into the node list.
2005
     */
2006
23.3k
    for (count = 0, op = loid, nop = loid + 1; count < (length - 1);
2007
21.7k
         count++, op++, nop++) {
2008
        /*
2009
         * every node must have parent's name and child's name or number 
2010
         */
2011
        /*
2012
         * XX the next statement is always true -- does it matter ?? 
2013
         */
2014
21.7k
        if (op->label && (nop->label || (nop->subid != -1))) {
2015
21.0k
            np = alloc_node(nop->modid);
2016
21.0k
            if (np == NULL)
2017
0
                goto err;
2018
21.0k
            if (root == NULL) {
2019
1.63k
                root = np;
2020
19.4k
            } else {
2021
19.4k
                netsnmp_assert(oldnp);
2022
19.4k
                oldnp->next = np;
2023
19.4k
            }
2024
21.0k
            oldnp = np;
2025
2026
21.0k
            np->parent = strdup(op->label);
2027
21.0k
            if (count == (length - 2)) {
2028
                /*
2029
                 * The name for this node is the label for this entry 
2030
                 */
2031
1.57k
                np->label = strdup(name);
2032
1.57k
                if (np->label == NULL)
2033
0
                    goto err;
2034
19.5k
            } else {
2035
19.5k
                if (!nop->label) {
2036
2.30k
                    if (asprintf(&nop->label, "%s%d", ANON, anonymous++) < 0)
2037
0
                        goto err;
2038
2.30k
                }
2039
19.5k
                np->label = strdup(nop->label);
2040
19.5k
            }
2041
21.0k
            if (nop->subid != -1)
2042
2.48k
                np->subid = nop->subid;
2043
18.6k
            else
2044
18.6k
                print_error("Warning: This entry is pretty silly",
2045
18.6k
                            np->label, CONTINUE);
2046
21.0k
        }                       /* end if(op->label... */
2047
21.7k
    }
2048
2049
1.63k
out:
2050
    /*
2051
     * free the loid array 
2052
     */
2053
24.9k
    for (count = 0, op = loid; count < length; count++, op++) {
2054
23.3k
        free(op->label);
2055
23.3k
        op->label = NULL;
2056
23.3k
    }
2057
2058
1.63k
    return root;
2059
2060
0
err:
2061
0
    for (; root; root = np) {
2062
0
        np = root->next;
2063
0
        free_node(root);
2064
0
    }
2065
0
    goto out;
2066
1.63k
}
2067
2068
static int
2069
get_tc(const char *descriptor,
2070
       int modid,
2071
       int *tc_index,
2072
       struct enum_list **ep, struct range_list **rp, char **hint)
2073
713
{
2074
713
    int             i;
2075
713
    struct tc      *tcp;
2076
2077
713
    i = get_tc_index(descriptor, modid);
2078
713
    if (tc_index)
2079
0
        *tc_index = i;
2080
713
    if (i != -1) {
2081
12
        tcp = &tclist[i];
2082
12
        if (ep) {
2083
0
            free_enums(ep);
2084
0
            *ep = copy_enums(tcp->enums);
2085
0
        }
2086
12
        if (rp) {
2087
0
            free_ranges(rp);
2088
0
            *rp = copy_ranges(tcp->ranges);
2089
0
        }
2090
12
        if (hint) {
2091
0
            if (*hint)
2092
0
                free(*hint);
2093
0
            *hint = (tcp->hint ? strdup(tcp->hint) : NULL);
2094
0
        }
2095
12
        return tcp->type;
2096
12
    }
2097
701
    return LABEL;
2098
713
}
2099
2100
/*
2101
 * return index into tclist of given TC descriptor
2102
 * return -1 if not found
2103
 */
2104
static int
2105
get_tc_index(const char *descriptor, int modid)
2106
4.19k
{
2107
4.19k
    int             i;
2108
4.19k
    struct tc      *tcp;
2109
4.19k
    struct module  *mp;
2110
4.19k
    struct module_import *mip;
2111
2112
    /*
2113
     * Check that the descriptor isn't imported
2114
     *  by searching the import list
2115
     */
2116
2117
7.95k
    for (mp = module_head; mp; mp = mp->next)
2118
4.49k
        if (mp->modid == modid)
2119
729
            break;
2120
4.19k
    if (mp)
2121
1.08k
        for (i = 0, mip = mp->imports; i < mp->no_imports; ++i, ++mip) {
2122
380
            if (!label_compare(mip->label, descriptor)) {
2123
                /*
2124
                 * Found it - so amend the module ID 
2125
                 */
2126
26
                modid = mip->modid;
2127
26
                break;
2128
26
            }
2129
380
        }
2130
2131
2132
29.2k
    for (i = 0, tcp = tclist; i < tc_alloc; i++, tcp++) {
2133
29.2k
        if (tcp->type == 0)
2134
4.17k
            break;
2135
25.0k
        if (!label_compare(descriptor, tcp->descriptor) &&
2136
41
            ((modid == tcp->modid) || (modid == -1))) {
2137
12
            return i;
2138
12
        }
2139
25.0k
    }
2140
4.17k
    return -1;
2141
4.19k
}
2142
2143
/*
2144
 * translate integer tc_index to string identifier from tclist
2145
 * *
2146
 * * Returns pointer to string in table (should not be modified) or NULL
2147
 */
2148
const char     *
2149
get_tc_descriptor(int tc_index)
2150
0
{
2151
0
    if (tc_index < 0 || tc_index >= tc_alloc)
2152
0
        return NULL;
2153
0
    return tclist[tc_index].descriptor;
2154
0
}
2155
2156
#ifndef NETSNMP_FEATURE_REMOVE_GET_TC_DESCRIPTION
2157
/* used in the perl module */
2158
const char     *
2159
get_tc_description(int tc_index)
2160
0
{
2161
0
    if (tc_index < 0 || tc_index >= tc_alloc)
2162
0
        return NULL;
2163
0
    return tclist[tc_index].description;
2164
0
}
2165
#endif /* NETSNMP_FEATURE_REMOVE_GET_TC_DESCRIPTION */
2166
2167
2168
/*
2169
 * Parses an enumeration list of the form:
2170
 *        { label(value) label(value) ... }
2171
 * The initial { has already been parsed.
2172
 * Returns NULL on error.
2173
 */
2174
2175
static struct enum_list *
2176
parse_enumlist(FILE * fp, struct enum_list **retp)
2177
451
{
2178
451
    register int    type;
2179
451
    char            token[MAXTOKEN];
2180
451
    struct enum_list *ep = NULL, **epp = &ep;
2181
2182
451
    free_enums(retp);
2183
2184
1.36k
    while ((type = get_token(fp, token, MAXTOKEN)) != ENDOFFILE) {
2185
1.33k
        if (type == RIGHTBRACKET)
2186
108
            break;
2187
        /* some enums use "deprecated" to indicate a no longer value label */
2188
        /* (EG: IP-MIB's IpAddressStatusTC) */
2189
1.22k
        if (type == LABEL || type == DEPRECATED) {
2190
            /*
2191
             * this is an enumerated label 
2192
             */
2193
542
            *epp = calloc(1, sizeof(struct enum_list));
2194
542
            if (*epp == NULL)
2195
0
                return (NULL);
2196
            /*
2197
             * a reasonable approximation for the length 
2198
             */
2199
542
            (*epp)->label = strdup(token);
2200
542
            type = get_token(fp, token, MAXTOKEN);
2201
542
            if (type != LEFTPAREN) {
2202
136
                print_error("Expected \"(\"", token, type);
2203
136
                goto err;
2204
136
            }
2205
406
            type = get_token(fp, token, MAXTOKEN);
2206
406
            if (type != NUMBER) {
2207
119
                print_error("Expected integer", token, type);
2208
119
                goto err;
2209
119
            }
2210
287
            (*epp)->value = strtol(token, NULL, 10);
2211
287
            (*epp)->lineno = mibLine;
2212
287
            type = get_token(fp, token, MAXTOKEN);
2213
287
            if (type != RIGHTPAREN) {
2214
59
                print_error("Expected \")\"", token, type);
2215
59
                goto err;
2216
228
            } else {
2217
228
                struct enum_list *op = ep;
2218
389
                while (op != *epp) {
2219
209
                    if (strcmp((*epp)->label, op->label) == 0) {
2220
15
                        snmp_log(LOG_ERR,
2221
15
                            "Duplicate enum label '%s' at line %d in %s. First at line %d\n",
2222
15
                            (*epp)->label, mibLine, File, op->lineno);
2223
15
                        erroneousMibs++;
2224
15
                        break;
2225
15
                    }
2226
194
                    else if ((*epp)->value == op->value) {
2227
33
                        snmp_log(LOG_ERR,
2228
33
                            "Duplicate enum value '%d' at line %d in %s. First at line %d\n",
2229
33
                            (*epp)->value, mibLine, File, op->lineno);
2230
33
                        erroneousMibs++;
2231
33
                        break;
2232
33
                    }
2233
161
                    op = op->next;
2234
161
                }
2235
228
            }
2236
228
            epp = &(*epp)->next;
2237
228
        }
2238
1.22k
    }
2239
137
    if (type == ENDOFFILE) {
2240
29
        print_error("Expected \"}\"", token, type);
2241
29
        goto err;
2242
29
    }
2243
108
    *retp = ep;
2244
108
    return ep;
2245
2246
343
err:
2247
343
    free_enums(&ep);
2248
343
    return NULL;
2249
137
}
2250
2251
static struct range_list *
2252
parse_ranges(FILE * fp, struct range_list **retp)
2253
356
{
2254
356
    int             low, high;
2255
356
    char            nexttoken[MAXTOKEN];
2256
356
    int             nexttype;
2257
356
    struct range_list *rp = NULL, **rpp = &rp;
2258
356
    int             size = 0, taken = 1;
2259
2260
356
    free_ranges(retp);
2261
2262
356
    nexttype = get_token(fp, nexttoken, MAXTOKEN);
2263
356
    if (nexttype == SIZE) {
2264
27
        size = 1;
2265
27
        taken = 0;
2266
27
        nexttype = get_token(fp, nexttoken, MAXTOKEN);
2267
27
        if (nexttype != LEFTPAREN)
2268
23
            print_error("Expected \"(\" after SIZE", nexttoken, nexttype);
2269
27
    }
2270
2271
441
    do {
2272
441
        if (!taken)
2273
112
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2274
329
        else
2275
329
            taken = 0;
2276
441
        high = low = strtoul(nexttoken, NULL, 10);
2277
441
        nexttype = get_token(fp, nexttoken, MAXTOKEN);
2278
441
        if (nexttype == RANGE) {
2279
110
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2280
110
            errno = 0;
2281
110
            high = strtoul(nexttoken, NULL, 10);
2282
110
            if ( errno == ERANGE ) {
2283
1
                if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
2284
1
                                       NETSNMP_DS_LIB_MIB_WARNINGS))
2285
0
                    snmp_log(LOG_WARNING,
2286
0
                             "Warning: Upper bound not handled correctly (%s != %d): At line %d in %s\n",
2287
0
                                 nexttoken, high, mibLine, File);
2288
1
            }
2289
110
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2290
110
        }
2291
441
        *rpp = (struct range_list *) calloc(1, sizeof(struct range_list));
2292
441
        if (*rpp == NULL)
2293
0
            break;
2294
441
        (*rpp)->low = low;
2295
441
        (*rpp)->high = high;
2296
441
        rpp = &(*rpp)->next;
2297
2298
441
    } while (nexttype == BAR);
2299
356
    if (size) {
2300
27
        if (nexttype != RIGHTPAREN)
2301
23
            print_error("Expected \")\" after SIZE", nexttoken, nexttype);
2302
27
        nexttype = get_token(fp, nexttoken, MAXTOKEN);
2303
27
    }
2304
356
    if (nexttype != RIGHTPAREN)
2305
314
        print_error("Expected \")\"", nexttoken, nexttype);
2306
2307
356
    *retp = rp;
2308
356
    return rp;
2309
356
}
2310
2311
/*
2312
 * Parses an asn type.  Structures are ignored by this parser.
2313
 * Returns NULL on error.
2314
 */
2315
static struct node *
2316
parse_asntype(FILE * fp, char *name, int *ntype, char *ntoken)
2317
4.47k
{
2318
4.47k
    int             type, i;
2319
4.47k
    char            token[MAXTOKEN];
2320
4.47k
    char            quoted_string_buffer[MAXQUOTESTR];
2321
4.47k
    char           *hint = NULL;
2322
4.47k
    char           *descr = NULL;
2323
4.47k
    struct tc      *tcp;
2324
4.47k
    int             level;
2325
4.47k
    int             is_duplicate = 0;
2326
2327
4.47k
    type = get_token(fp, token, MAXTOKEN);
2328
4.47k
    if (type == SEQUENCE || type == CHOICE) {
2329
21
        level = 0;
2330
336
        while ((type = get_token(fp, token, MAXTOKEN)) != ENDOFFILE) {
2331
318
            if (type == LEFTBRACKET) {
2332
109
                level++;
2333
209
            } else if (type == RIGHTBRACKET && --level == 0) {
2334
3
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2335
3
                return NULL;
2336
3
            }
2337
318
        }
2338
18
        print_error("Expected \"}\"", token, type);
2339
18
        return NULL;
2340
4.45k
    } else if (type == LEFTBRACKET) {
2341
2.28k
        struct node    *np;
2342
2.28k
        int             ch_next = '{';
2343
2.28k
        ungetc(ch_next, fp);
2344
2.28k
        np = parse_objectid(fp, name);
2345
2.28k
        if (np != NULL) {
2346
1.72k
            *ntype = get_token(fp, ntoken, MAXTOKEN);
2347
1.72k
            return np;
2348
1.72k
        }
2349
562
        return NULL;
2350
2.28k
    } else if (type == LEFTSQBRACK) {
2351
232
        int             size = 0;
2352
20.8k
        do {
2353
20.8k
            type = get_token(fp, token, MAXTOKEN);
2354
20.8k
        } while (type != ENDOFFILE && type != RIGHTSQBRACK);
2355
232
        if (type != RIGHTSQBRACK) {
2356
14
            print_error("Expected \"]\"", token, type);
2357
14
            return NULL;
2358
14
        }
2359
218
        type = get_token(fp, token, MAXTOKEN);
2360
218
        if (type == IMPLICIT)
2361
1
            type = get_token(fp, token, MAXTOKEN);
2362
218
        *ntype = get_token(fp, ntoken, MAXTOKEN);
2363
218
        if (*ntype == LEFTPAREN) {
2364
120
            switch (type) {
2365
4
            case OCTETSTR:
2366
4
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2367
4
                if (*ntype != SIZE) {
2368
4
                    print_error("Expected SIZE", ntoken, *ntype);
2369
4
                    return NULL;
2370
4
                }
2371
0
                size = 1;
2372
0
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2373
0
                if (*ntype != LEFTPAREN) {
2374
0
                    print_error("Expected \"(\" after SIZE", ntoken,
2375
0
                                *ntype);
2376
0
                    return NULL;
2377
0
                }
2378
0
                NETSNMP_FALLTHROUGH;
2379
32
            case INTEGER:
2380
32
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2381
208
                do {
2382
208
                    if (*ntype != NUMBER)
2383
205
                        print_error("Expected NUMBER", ntoken, *ntype);
2384
208
                    *ntype = get_token(fp, ntoken, MAXTOKEN);
2385
208
                    if (*ntype == RANGE) {
2386
23
                        *ntype = get_token(fp, ntoken, MAXTOKEN);
2387
23
                        if (*ntype != NUMBER)
2388
12
                            print_error("Expected NUMBER", ntoken, *ntype);
2389
23
                        *ntype = get_token(fp, ntoken, MAXTOKEN);
2390
23
                    }
2391
208
                } while (*ntype == BAR);
2392
32
                if (*ntype != RIGHTPAREN) {
2393
29
                    print_error("Expected \")\"", ntoken, *ntype);
2394
29
                    return NULL;
2395
29
                }
2396
3
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2397
3
                if (size) {
2398
0
                    if (*ntype != RIGHTPAREN) {
2399
0
                        print_error("Expected \")\" to terminate SIZE",
2400
0
                                    ntoken, *ntype);
2401
0
                        return NULL;
2402
0
                    }
2403
0
                    *ntype = get_token(fp, ntoken, MAXTOKEN);
2404
0
                }
2405
120
            }
2406
120
        }
2407
185
        return NULL;
2408
1.94k
    } else {
2409
1.94k
        if (type == CONVENTION) {
2410
14.1k
            while (type != SYNTAX && type != ENDOFFILE) {
2411
14.1k
                if (type == DISPLAYHINT) {
2412
2
                    type = get_token(fp, token, MAXTOKEN);
2413
2
                    if (type != QUOTESTRING) {
2414
1
                        print_error("DISPLAY-HINT must be string", token,
2415
1
                                    type);
2416
1
                    } else {
2417
1
                        free(hint);
2418
1
                        hint = strdup(token);
2419
1
                    }
2420
14.1k
                } else if (type == DESCRIPTION &&
2421
1
                           netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
2422
1
                                                  NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
2423
0
                    type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2424
0
                    if (type != QUOTESTRING) {
2425
0
                        print_error("DESCRIPTION must be string", token,
2426
0
                                    type);
2427
0
                    } else {
2428
0
                        free(descr);
2429
0
                        descr = strdup(quoted_string_buffer);
2430
0
                    }
2431
0
                } else
2432
14.1k
                    type =
2433
14.1k
                        get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2434
14.1k
            }
2435
15
            type = get_token(fp, token, MAXTOKEN);
2436
15
            if (type == OBJECT) {
2437
0
                type = get_token(fp, token, MAXTOKEN);
2438
0
                if (type != IDENTIFIER) {
2439
0
                    print_error("Expected IDENTIFIER", token, type);
2440
0
                    goto err;
2441
0
                }
2442
0
                type = OBJID;
2443
0
            }
2444
1.92k
        } else if (type == OBJECT) {
2445
16
            type = get_token(fp, token, MAXTOKEN);
2446
16
            if (type != IDENTIFIER) {
2447
11
                print_error("Expected IDENTIFIER", token, type);
2448
11
                goto err;
2449
11
            }
2450
5
            type = OBJID;
2451
5
        }
2452
2453
1.92k
        if (type == LABEL) {
2454
713
            type = get_tc(token, current_module, NULL, NULL, NULL, NULL);
2455
713
        }
2456
2457
        /*
2458
         * textual convention 
2459
         */
2460
1.92k
        tcp = NULL;
2461
1.92k
        is_duplicate = 0;
2462
247k
        for (i = 0; i < tc_alloc; i++) {
2463
245k
            if (tclist[i].type == 0) {
2464
119k
                if (tcp == NULL)
2465
1.45k
                    tcp = &tclist[i];
2466
126k
            } else if (strcmp(name, tclist[i].descriptor) == 0 &&
2467
4.05k
                       tclist[i].modid == current_module) {
2468
477
                snmp_log(LOG_ERR,
2469
477
                         "Duplicate TEXTUAL-CONVENTION '%s' at line %d in %s. First at line %d\n",
2470
477
                         name, mibLine, File, tclist[i].lineno);
2471
477
                erroneousMibs++;
2472
477
                is_duplicate = 1;
2473
477
                break;
2474
477
            }
2475
245k
        }
2476
2477
1.92k
        if (is_duplicate) {
2478
477
            struct range_list *dummy_ranges = NULL;
2479
477
            struct enum_list *dummy_enums = NULL;
2480
2481
477
            free(hint);
2482
477
            free(descr);
2483
477
            *ntype = get_token(fp, ntoken, MAXTOKEN);
2484
477
            if (*ntype == LEFTPAREN) {
2485
198
                dummy_ranges = parse_ranges(fp, &dummy_ranges);
2486
198
                free_ranges(&dummy_ranges);
2487
198
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2488
279
            } else if (*ntype == LEFTBRACKET) {
2489
217
                dummy_enums = parse_enumlist(fp, &dummy_enums);
2490
217
                free_enums(&dummy_enums);
2491
217
                *ntype = get_token(fp, ntoken, MAXTOKEN);
2492
217
            }
2493
477
            return NULL;
2494
477
        }
2495
2496
1.45k
        if (tcp == NULL) {
2497
2
            tclist = realloc(tclist, (tc_alloc + TC_INCR)*sizeof(struct tc));
2498
2
            memset(tclist+tc_alloc, 0, TC_INCR*sizeof(struct tc));
2499
2
            tcp = tclist + tc_alloc;
2500
2
            tc_alloc += TC_INCR;
2501
2
        }
2502
1.45k
        if (!(type & SYNTAX_MASK)) {
2503
819
            print_error("Textual convention doesn't map to real type",
2504
819
                        token, type);
2505
819
            goto err;
2506
819
        }
2507
633
        tcp->modid = current_module;
2508
633
        tcp->descriptor = strdup(name);
2509
633
        tcp->hint = hint;
2510
633
        tcp->description = descr;
2511
633
        tcp->lineno = mibLine;
2512
633
        tcp->type = type;
2513
633
        *ntype = get_token(fp, ntoken, MAXTOKEN);
2514
633
        if (*ntype == LEFTPAREN) {
2515
158
            tcp->ranges = parse_ranges(fp, &tcp->ranges);
2516
158
            *ntype = get_token(fp, ntoken, MAXTOKEN);
2517
475
        } else if (*ntype == LEFTBRACKET) {
2518
            /*
2519
             * if there is an enumeration list, parse it 
2520
             */
2521
234
            tcp->enums = parse_enumlist(fp, &tcp->enums);
2522
234
            *ntype = get_token(fp, ntoken, MAXTOKEN);
2523
234
        }
2524
633
        return NULL;
2525
1.45k
    }
2526
2527
830
err:
2528
830
    SNMP_FREE(descr);
2529
830
    SNMP_FREE(hint);
2530
830
    return NULL;
2531
4.47k
}
2532
2533
2534
/*
2535
 * Parses an OBJECT TYPE macro.
2536
 * Returns 0 on error.
2537
 */
2538
static struct node *
2539
parse_objecttype(FILE * fp, char *name)
2540
3
{
2541
3
    register int    type;
2542
3
    char            token[MAXTOKEN];
2543
3
    char            nexttoken[MAXTOKEN];
2544
3
    char            quoted_string_buffer[MAXQUOTESTR];
2545
3
    int             nexttype, tctype;
2546
3
    register struct node *np;
2547
2548
3
    type = get_token(fp, token, MAXTOKEN);
2549
3
    if (type != SYNTAX) {
2550
3
        print_error("Bad format for OBJECT-TYPE", token, type);
2551
3
        return NULL;
2552
3
    }
2553
0
    np = alloc_node(current_module);
2554
0
    if (np == NULL)
2555
0
        return (NULL);
2556
0
    type = get_token(fp, token, MAXTOKEN);
2557
0
    if (type == OBJECT) {
2558
0
        type = get_token(fp, token, MAXTOKEN);
2559
0
        if (type != IDENTIFIER) {
2560
0
            print_error("Expected IDENTIFIER", token, type);
2561
0
            free_node(np);
2562
0
            return NULL;
2563
0
        }
2564
0
        type = OBJID;
2565
0
    }
2566
0
    if (type == LABEL) {
2567
0
        int             tmp_index;
2568
0
        tctype = get_tc(token, current_module, &tmp_index,
2569
0
                        &np->enums, &np->ranges, &np->hint);
2570
0
        if (tctype == LABEL &&
2571
0
            netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
2572
0
             NETSNMP_DS_LIB_MIB_WARNINGS) > 1) {
2573
0
            print_error("Warning: No known translation for type", token,
2574
0
                        type);
2575
0
        }
2576
0
        type = tctype;
2577
0
        np->tc_index = tmp_index;       /* store TC for later reference */
2578
0
    }
2579
0
    np->type = type;
2580
0
    nexttype = get_token(fp, nexttoken, MAXTOKEN);
2581
0
    switch (type) {
2582
0
    case SEQUENCE:
2583
0
        if (nexttype == OF) {
2584
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2585
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2586
2587
0
        }
2588
0
        break;
2589
0
    case INTEGER:
2590
0
    case INTEGER32:
2591
0
    case UINTEGER32:
2592
0
    case UNSIGNED32:
2593
0
    case COUNTER:
2594
0
    case GAUGE:
2595
0
    case BITSTRING:
2596
0
    case LABEL:
2597
0
        if (nexttype == LEFTBRACKET) {
2598
            /*
2599
             * if there is an enumeration list, parse it 
2600
             */
2601
0
            np->enums = parse_enumlist(fp, &np->enums);
2602
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2603
0
        } else if (nexttype == LEFTPAREN) {
2604
            /*
2605
             * if there is a range list, parse it 
2606
             */
2607
0
            np->ranges = parse_ranges(fp, &np->ranges);
2608
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2609
0
        }
2610
0
        break;
2611
0
    case OCTETSTR:
2612
0
    case KW_OPAQUE:
2613
        /*
2614
         * parse any SIZE specification 
2615
         */
2616
0
        if (nexttype == LEFTPAREN) {
2617
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
2618
0
            if (nexttype == SIZE) {
2619
0
                nexttype = get_token(fp, nexttoken, MAXTOKEN);
2620
0
                if (nexttype == LEFTPAREN) {
2621
0
                    np->ranges = parse_ranges(fp, &np->ranges);
2622
0
                    nexttype = get_token(fp, nexttoken, MAXTOKEN);      /* ) */
2623
0
                    if (nexttype == RIGHTPAREN) {
2624
0
                        nexttype = get_token(fp, nexttoken, MAXTOKEN);
2625
0
                        break;
2626
0
                    }
2627
0
                }
2628
0
            }
2629
0
            print_error("Bad SIZE syntax", token, type);
2630
0
            free_node(np);
2631
0
            return NULL;
2632
0
        }
2633
0
        break;
2634
0
    case OBJID:
2635
0
    case NETADDR:
2636
0
    case IPADDR:
2637
0
    case TIMETICKS:
2638
0
    case NUL:
2639
0
    case NSAPADDRESS:
2640
0
    case COUNTER64:
2641
0
        break;
2642
0
    default:
2643
0
        print_error("Bad syntax", token, type);
2644
0
        free_node(np);
2645
0
        return NULL;
2646
0
    }
2647
0
    if (nexttype == UNITS) {
2648
0
        type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2649
0
        if (type != QUOTESTRING) {
2650
0
            print_error("Bad UNITS", quoted_string_buffer, type);
2651
0
            free_node(np);
2652
0
            return NULL;
2653
0
        }
2654
0
        np->units = strdup(quoted_string_buffer);
2655
0
        nexttype = get_token(fp, nexttoken, MAXTOKEN);
2656
0
    }
2657
0
    if (nexttype != ACCESS) {
2658
0
        print_error("Should be ACCESS", nexttoken, nexttype);
2659
0
        free_node(np);
2660
0
        return NULL;
2661
0
    }
2662
0
    type = get_token(fp, token, MAXTOKEN);
2663
0
    if (type != READONLY && type != READWRITE && type != WRITEONLY
2664
0
        && type != NOACCESS && type != READCREATE && type != ACCNOTIFY) {
2665
0
        print_error("Bad ACCESS type", token, type);
2666
0
        free_node(np);
2667
0
        return NULL;
2668
0
    }
2669
0
    np->access = type;
2670
0
    type = get_token(fp, token, MAXTOKEN);
2671
0
    if (type != STATUS) {
2672
0
        print_error("Should be STATUS", token, type);
2673
0
        free_node(np);
2674
0
        return NULL;
2675
0
    }
2676
0
    type = get_token(fp, token, MAXTOKEN);
2677
0
    if (type != MANDATORY && type != CURRENT && type != KW_OPTIONAL &&
2678
0
        type != OBSOLETE && type != DEPRECATED) {
2679
0
        print_error("Bad STATUS", token, type);
2680
0
        free_node(np);
2681
0
        return NULL;
2682
0
    }
2683
0
    np->status = type;
2684
    /*
2685
     * Optional parts of the OBJECT-TYPE macro
2686
     */
2687
0
    type = get_token(fp, token, MAXTOKEN);
2688
0
    while (type != EQUALS && type != ENDOFFILE) {
2689
0
        switch (type) {
2690
0
        case DESCRIPTION:
2691
0
            type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2692
2693
0
            if (type != QUOTESTRING) {
2694
0
                print_error("Bad DESCRIPTION", quoted_string_buffer, type);
2695
0
                free_node(np);
2696
0
                return NULL;
2697
0
            }
2698
0
            if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
2699
0
               NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
2700
0
                np->description = strdup(quoted_string_buffer);
2701
0
            }
2702
0
            break;
2703
2704
0
        case REFERENCE:
2705
0
            type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2706
0
            if (type != QUOTESTRING) {
2707
0
                print_error("Bad REFERENCE", quoted_string_buffer, type);
2708
0
                free_node(np);
2709
0
                return NULL;
2710
0
            }
2711
0
            np->reference = strdup(quoted_string_buffer);
2712
0
            break;
2713
0
        case INDEX:
2714
0
            if (np->augments) {
2715
0
                print_error("Cannot have both INDEX and AUGMENTS", token,
2716
0
                            type);
2717
0
                free_node(np);
2718
0
                return NULL;
2719
0
            }
2720
0
            np->indexes = getIndexes(fp, &np->indexes);
2721
0
            if (np->indexes == NULL) {
2722
0
                print_error("Bad INDEX list", token, type);
2723
0
                free_node(np);
2724
0
                return NULL;
2725
0
            }
2726
0
            break;
2727
0
        case AUGMENTS:
2728
0
            if (np->indexes) {
2729
0
                print_error("Cannot have both INDEX and AUGMENTS", token,
2730
0
                            type);
2731
0
                free_node(np);
2732
0
                return NULL;
2733
0
            }
2734
0
            np->indexes = getIndexes(fp, &np->indexes);
2735
0
            if (np->indexes == NULL) {
2736
0
                print_error("Bad AUGMENTS list", token, type);
2737
0
                free_node(np);
2738
0
                return NULL;
2739
0
            }
2740
0
            np->augments = strdup(np->indexes->ilabel);
2741
0
            free_indexes(&np->indexes);
2742
0
            break;
2743
0
        case DEFVAL:
2744
            /*
2745
             * Mark's defVal section 
2746
             */
2747
0
            type = get_token(fp, quoted_string_buffer,
2748
0
                             sizeof(quoted_string_buffer));
2749
0
            if (type != LEFTBRACKET) {
2750
0
                print_error("Bad DEFAULTVALUE", quoted_string_buffer,
2751
0
                            type);
2752
0
                free_node(np);
2753
0
                return NULL;
2754
0
            }
2755
2756
0
            {
2757
0
                int             level = 1;
2758
0
                char            defbuf[512];
2759
2760
0
                defbuf[0] = 0;
2761
0
                while (1) {
2762
0
                    type = get_token(fp, quoted_string_buffer,
2763
0
                                     sizeof(quoted_string_buffer));
2764
0
                    if ((type == RIGHTBRACKET && --level == 0)
2765
0
                        || type == ENDOFFILE)
2766
0
                        break;
2767
0
                    else if (type == LEFTBRACKET)
2768
0
                        level++;
2769
0
                    if (type == QUOTESTRING)
2770
0
                        strlcat(defbuf, "\\\"", sizeof(defbuf));
2771
0
                    strlcat(defbuf, quoted_string_buffer, sizeof(defbuf));
2772
0
                    if (type == QUOTESTRING)
2773
0
                        strlcat(defbuf, "\\\"", sizeof(defbuf));
2774
0
                    strlcat(defbuf, " ", sizeof(defbuf));
2775
0
                }
2776
2777
0
                if (type != RIGHTBRACKET) {
2778
0
                    print_error("Bad DEFAULTVALUE", quoted_string_buffer,
2779
0
                                type);
2780
0
                    free_node(np);
2781
0
                    return NULL;
2782
0
                }
2783
2784
                /*
2785
                 * Ensure strlen(defbuf) is above zero
2786
                 */
2787
0
                if (strlen(defbuf) == 0) {
2788
0
                    print_error("Bad DEFAULTVALUE", quoted_string_buffer,
2789
0
                                type);
2790
0
                    free_node(np);
2791
0
                    return NULL;
2792
0
                }
2793
0
                defbuf[strlen(defbuf) - 1] = 0;
2794
0
                np->defaultValue = strdup(defbuf);
2795
0
            }
2796
2797
0
            break;
2798
2799
0
        case NUM_ENTRIES:
2800
0
            if (tossObjectIdentifier(fp) != OBJID) {
2801
0
                print_error("Bad Object Identifier", token, type);
2802
0
                free_node(np);
2803
0
                return NULL;
2804
0
            }
2805
0
            break;
2806
2807
0
        default:
2808
0
            print_error("Bad format of optional clauses", token, type);
2809
0
            free_node(np);
2810
0
            return NULL;
2811
2812
0
        }
2813
0
        type = get_token(fp, token, MAXTOKEN);
2814
0
    }
2815
0
    if (type != EQUALS) {
2816
0
        print_error("Bad format", token, type);
2817
0
        free_node(np);
2818
0
        return NULL;
2819
0
    }
2820
0
    return merge_parse_objectid(np, fp, name);
2821
0
}
2822
2823
/*
2824
 * Parses an OBJECT GROUP macro.
2825
 * Returns 0 on error.
2826
 *
2827
 * Also parses object-identity, since they are similar (ignore STATUS).
2828
 *   - WJH 10/96
2829
 */
2830
static struct node *
2831
parse_objectgroup(FILE * fp, char *name, int what, struct objgroup **ol)
2832
64
{
2833
64
    int             type;
2834
64
    char            token[MAXTOKEN];
2835
64
    char            quoted_string_buffer[MAXQUOTESTR];
2836
64
    struct node    *np;
2837
2838
64
    np = alloc_node(current_module);
2839
64
    if (np == NULL)
2840
0
        return (NULL);
2841
64
    type = get_token(fp, token, MAXTOKEN);
2842
64
    if (type == what) {
2843
35
        type = get_token(fp, token, MAXTOKEN);
2844
35
        if (type != LEFTBRACKET) {
2845
7
            print_error("Expected \"{\"", token, type);
2846
7
            goto skip;
2847
7
        }
2848
50
        do {
2849
50
            struct objgroup *o;
2850
50
            type = get_token(fp, token, MAXTOKEN);
2851
50
            if (type != LABEL) {
2852
2
                print_error("Bad identifier", token, type);
2853
2
                goto skip;
2854
2
            }
2855
48
            o = (struct objgroup *) malloc(sizeof(struct objgroup));
2856
48
            if (!o) {
2857
0
                print_error("Resource failure", token, type);
2858
0
                goto skip;
2859
0
            }
2860
48
            o->line = mibLine;
2861
48
            o->name = strdup(token);
2862
48
            o->next = *ol;
2863
48
            *ol = o;
2864
48
            type = get_token(fp, token, MAXTOKEN);
2865
48
        } while (type == COMMA);
2866
26
        if (type != RIGHTBRACKET) {
2867
25
            print_error("Expected \"}\" after list", token, type);
2868
25
            goto skip;
2869
25
        }
2870
1
        type = get_token(fp, token, type);
2871
1
    }
2872
30
    if (type != STATUS) {
2873
30
        print_error("Expected STATUS", token, type);
2874
30
        goto skip;
2875
30
    }
2876
0
    type = get_token(fp, token, MAXTOKEN);
2877
0
    if (type != CURRENT && type != DEPRECATED && type != OBSOLETE) {
2878
0
        print_error("Bad STATUS value", token, type);
2879
0
        goto skip;
2880
0
    }
2881
0
    type = get_token(fp, token, MAXTOKEN);
2882
0
    if (type != DESCRIPTION) {
2883
0
        print_error("Expected DESCRIPTION", token, type);
2884
0
        goto skip;
2885
0
    }
2886
0
    type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2887
0
    if (type != QUOTESTRING) {
2888
0
        print_error("Bad DESCRIPTION", quoted_string_buffer, type);
2889
0
        free_node(np);
2890
0
        return NULL;
2891
0
    }
2892
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
2893
0
             NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
2894
0
        np->description = strdup(quoted_string_buffer);
2895
0
    }
2896
0
    type = get_token(fp, token, MAXTOKEN);
2897
0
    if (type == REFERENCE) {
2898
0
        type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2899
0
        if (type != QUOTESTRING) {
2900
0
            print_error("Bad REFERENCE", quoted_string_buffer, type);
2901
0
            free_node(np);
2902
0
            return NULL;
2903
0
        }
2904
0
        np->reference = strdup(quoted_string_buffer);
2905
0
        type = get_token(fp, token, MAXTOKEN);
2906
0
    }
2907
0
    if (type != EQUALS)
2908
0
        print_error("Expected \"::=\"", token, type);
2909
64
  skip:
2910
262
    while (type != EQUALS && type != ENDOFFILE)
2911
198
        type = get_token(fp, token, MAXTOKEN);
2912
2913
64
    return merge_parse_objectid(np, fp, name);
2914
0
}
2915
2916
/*
2917
 * Parses a NOTIFICATION-TYPE macro.
2918
 * Returns 0 on error.
2919
 */
2920
static struct node *
2921
parse_notificationDefinition(FILE * fp, char *name)
2922
56
{
2923
56
    register int    type;
2924
56
    char            token[MAXTOKEN];
2925
56
    char            quoted_string_buffer[MAXQUOTESTR];
2926
56
    register struct node *np;
2927
2928
56
    np = alloc_node(current_module);
2929
56
    if (np == NULL)
2930
0
        return (NULL);
2931
56
    type = get_token(fp, token, MAXTOKEN);
2932
263
    while (type != EQUALS && type != ENDOFFILE) {
2933
223
        switch (type) {
2934
5
        case DESCRIPTION:
2935
5
            type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2936
5
            if (type != QUOTESTRING) {
2937
4
                print_error("Bad DESCRIPTION", quoted_string_buffer, type);
2938
4
                goto free_node;
2939
4
            }
2940
1
            if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
2941
1
               NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
2942
0
                np->description = strdup(quoted_string_buffer);
2943
0
            }
2944
1
            break;
2945
6
        case REFERENCE:
2946
6
            type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2947
6
            if (type != QUOTESTRING) {
2948
3
                print_error("Bad REFERENCE", quoted_string_buffer, type);
2949
3
                goto free_node;
2950
3
            }
2951
3
            free(np->reference);
2952
3
            np->reference = strdup(quoted_string_buffer);
2953
3
            break;
2954
39
        case OBJECTS:
2955
39
            np->varbinds = getVarbinds(fp, &np->varbinds);
2956
39
            if (!np->varbinds) {
2957
9
                print_error("Bad OBJECTS list", token, type);
2958
9
                goto free_node;
2959
9
            }
2960
30
            break;
2961
173
        default:
2962
            /*
2963
             * NOTHING 
2964
             */
2965
173
            break;
2966
223
        }
2967
207
        type = get_token(fp, token, MAXTOKEN);
2968
207
    }
2969
40
    return merge_parse_objectid(np, fp, name);
2970
2971
16
free_node:
2972
16
    free_node(np);
2973
16
    return NULL;
2974
56
}
2975
2976
/*
2977
 * Parses a TRAP-TYPE macro.
2978
 * Returns 0 on error.
2979
 */
2980
static struct node *
2981
parse_trapDefinition(FILE * fp, char *name)
2982
39
{
2983
39
    register int    type;
2984
39
    char            token[MAXTOKEN];
2985
39
    char            quoted_string_buffer[MAXQUOTESTR];
2986
39
    register struct node *np;
2987
2988
39
    np = alloc_node(current_module);
2989
39
    if (np == NULL)
2990
0
        return (NULL);
2991
39
    type = get_token(fp, token, MAXTOKEN);
2992
393
    while (type != EQUALS && type != ENDOFFILE) {
2993
374
        switch (type) {
2994
8
        case DESCRIPTION:
2995
8
            type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
2996
8
            if (type != QUOTESTRING) {
2997
7
                print_error("Bad DESCRIPTION", quoted_string_buffer, type);
2998
7
                goto free_node;
2999
7
            }
3000
1
            if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
3001
1
               NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
3002
0
                np->description = strdup(quoted_string_buffer);
3003
0
            }
3004
1
            break;
3005
9
        case REFERENCE:
3006
            /* I'm not sure REFERENCEs are legal in smiv1 traps??? */
3007
9
            type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3008
9
            if (type != QUOTESTRING) {
3009
5
                print_error("Bad REFERENCE", quoted_string_buffer, type);
3010
5
                goto free_node;
3011
5
            }
3012
4
            np->reference = strdup(quoted_string_buffer);
3013
4
            break;
3014
13
        case ENTERPRISE:
3015
13
            type = get_token(fp, token, MAXTOKEN);
3016
13
            if (type == LEFTBRACKET) {
3017
2
                type = get_token(fp, token, MAXTOKEN);
3018
2
                if (type != LABEL) {
3019
1
                    print_error("Bad Trap Format", token, type);
3020
1
                    goto free_node;
3021
1
                }
3022
1
                np->parent = strdup(token);
3023
                /*
3024
                 * Get right bracket 
3025
                 */
3026
1
                type = get_token(fp, token, MAXTOKEN);
3027
11
            } else if (type == LABEL) {
3028
5
                np->parent = strdup(token);
3029
6
            } else {
3030
6
                goto free_node;
3031
6
            }
3032
6
            break;
3033
6
        case VARIABLES:
3034
2
            np->varbinds = getVarbinds(fp, &np->varbinds);
3035
2
            if (!np->varbinds) {
3036
1
                print_error("Bad VARIABLES list", token, type);
3037
1
                goto free_node;
3038
1
            }
3039
1
            break;
3040
342
        default:
3041
            /*
3042
             * NOTHING 
3043
             */
3044
342
            break;
3045
374
        }
3046
354
        type = get_token(fp, token, MAXTOKEN);
3047
354
    }
3048
19
    type = get_token(fp, token, MAXTOKEN);
3049
3050
19
    np->label = strdup(name);
3051
3052
19
    if (type != NUMBER) {
3053
17
        print_error("Expected a Number", token, type);
3054
17
        goto free_node;
3055
17
    }
3056
2
    np->subid = strtoul(token, NULL, 10);
3057
2
    np->next = alloc_node(current_module);
3058
2
    if (np->next == NULL)
3059
0
        goto free_node;
3060
3061
    /* Catch the syntax error */
3062
2
    if (np->parent == NULL) {
3063
1
        gMibError = MODULE_SYNTAX_ERROR;
3064
1
        goto free_next_node;
3065
1
    }
3066
3067
1
    np->next->parent = np->parent;
3068
1
    np->parent = NULL;
3069
1
    if (asprintf(&np->parent, "%s#", np->next->parent) < 0)
3070
0
        goto free_next_node;
3071
1
    np->next->label = strdup(np->parent);
3072
1
    return np;
3073
3074
1
free_next_node:
3075
1
    free_node(np->next);
3076
3077
38
free_node:
3078
38
    free_node(np);
3079
38
    return NULL;
3080
1
}
3081
3082
3083
/*
3084
 * Parses a compliance macro
3085
 * Returns 0 on error.
3086
 */
3087
static int
3088
eat_syntax(FILE * fp, char *token, int maxtoken)
3089
0
{
3090
0
    int             type, nexttype;
3091
0
    struct node    *np = alloc_node(current_module);
3092
0
    char            nexttoken[MAXTOKEN];
3093
3094
0
    if (!np)
3095
0
  return 0;
3096
3097
0
    type = get_token(fp, token, maxtoken);
3098
0
    nexttype = get_token(fp, nexttoken, MAXTOKEN);
3099
0
    switch (type) {
3100
0
    case INTEGER:
3101
0
    case INTEGER32:
3102
0
    case UINTEGER32:
3103
0
    case UNSIGNED32:
3104
0
    case COUNTER:
3105
0
    case GAUGE:
3106
0
    case BITSTRING:
3107
0
    case LABEL:
3108
0
        if (nexttype == LEFTBRACKET) {
3109
            /*
3110
             * if there is an enumeration list, parse it 
3111
             */
3112
0
            np->enums = parse_enumlist(fp, &np->enums);
3113
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
3114
0
        } else if (nexttype == LEFTPAREN) {
3115
            /*
3116
             * if there is a range list, parse it 
3117
             */
3118
0
            np->ranges = parse_ranges(fp, &np->ranges);
3119
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
3120
0
        }
3121
0
        break;
3122
0
    case OCTETSTR:
3123
0
    case KW_OPAQUE:
3124
        /*
3125
         * parse any SIZE specification 
3126
         */
3127
0
        if (nexttype == LEFTPAREN) {
3128
0
            nexttype = get_token(fp, nexttoken, MAXTOKEN);
3129
0
            if (nexttype == SIZE) {
3130
0
                nexttype = get_token(fp, nexttoken, MAXTOKEN);
3131
0
                if (nexttype == LEFTPAREN) {
3132
0
                    np->ranges = parse_ranges(fp, &np->ranges);
3133
0
                    nexttype = get_token(fp, nexttoken, MAXTOKEN);      /* ) */
3134
0
                    if (nexttype == RIGHTPAREN) {
3135
0
                        nexttype = get_token(fp, nexttoken, MAXTOKEN);
3136
0
                        break;
3137
0
                    }
3138
0
                }
3139
0
            }
3140
0
            print_error("Bad SIZE syntax", token, type);
3141
0
            free_node(np);
3142
0
            return nexttype;
3143
0
        }
3144
0
        break;
3145
0
    case OBJID:
3146
0
    case NETADDR:
3147
0
    case IPADDR:
3148
0
    case TIMETICKS:
3149
0
    case NUL:
3150
0
    case NSAPADDRESS:
3151
0
    case COUNTER64:
3152
0
        break;
3153
0
    default:
3154
0
        print_error("Bad syntax", token, type);
3155
0
        free_node(np);
3156
0
        return nexttype;
3157
0
    }
3158
0
    free_node(np);
3159
0
    return nexttype;
3160
0
}
3161
3162
static int
3163
compliance_lookup(const char *name, int modid)
3164
0
{
3165
0
    struct objgroup *op;
3166
3167
0
    if (modid != -1)
3168
0
        return find_tree_node(name, modid) != NULL;
3169
3170
0
    op = malloc(sizeof(struct objgroup));
3171
0
    if (!op)
3172
0
        return 0;
3173
3174
0
    op->next = objgroups;
3175
0
    op->name = strdup(name);
3176
0
    if (!op->name) {
3177
0
        free(op);
3178
0
        return 0;
3179
0
    }
3180
0
    op->line = mibLine;
3181
0
    objgroups = op;
3182
0
    return 1;
3183
0
}
3184
3185
static struct node *
3186
parse_compliance(FILE * fp, char *name)
3187
24
{
3188
24
    int             type;
3189
24
    char            token[MAXTOKEN];
3190
24
    char            quoted_string_buffer[MAXQUOTESTR];
3191
24
    struct node    *np;
3192
3193
24
    np = alloc_node(current_module);
3194
24
    if (np == NULL)
3195
0
        return (NULL);
3196
24
    type = get_token(fp, token, MAXTOKEN);
3197
24
    if (type != STATUS) {
3198
24
        print_error("Expected STATUS", token, type);
3199
24
        goto skip;
3200
24
    }
3201
0
    type = get_token(fp, token, MAXTOKEN);
3202
0
    if (type != CURRENT && type != DEPRECATED && type != OBSOLETE) {
3203
0
        print_error("Bad STATUS", token, type);
3204
0
        goto skip;
3205
0
    }
3206
0
    type = get_token(fp, token, MAXTOKEN);
3207
0
    if (type != DESCRIPTION) {
3208
0
        print_error("Expected DESCRIPTION", token, type);
3209
0
        goto skip;
3210
0
    }
3211
0
    type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3212
0
    if (type != QUOTESTRING) {
3213
0
        print_error("Bad DESCRIPTION", quoted_string_buffer, type);
3214
0
        goto skip;
3215
0
    }
3216
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
3217
0
             NETSNMP_DS_LIB_SAVE_MIB_DESCRS))
3218
0
        np->description = strdup(quoted_string_buffer);
3219
0
    type = get_token(fp, token, MAXTOKEN);
3220
0
    if (type == REFERENCE) {
3221
0
        type = get_token(fp, quoted_string_buffer,
3222
0
                         sizeof(quoted_string_buffer));
3223
0
        if (type != QUOTESTRING) {
3224
0
            print_error("Bad REFERENCE", quoted_string_buffer, type);
3225
0
            goto skip;
3226
0
        }
3227
0
        np->reference = strdup(quoted_string_buffer);
3228
0
        type = get_token(fp, token, MAXTOKEN);
3229
0
    }
3230
0
    if (type != MODULE) {
3231
0
        print_error("Expected MODULE", token, type);
3232
0
        goto skip;
3233
0
    }
3234
0
    while (type == MODULE) {
3235
0
        int             modid = -1;
3236
0
        char            modname[MAXTOKEN];
3237
0
        type = get_token(fp, token, MAXTOKEN);
3238
0
        if (type == LABEL
3239
0
            && strcmp(token, module_name(current_module, modname))) {
3240
0
            modid = read_module_internal(token);
3241
0
            if (modid != MODULE_LOADED_OK
3242
0
                && modid != MODULE_ALREADY_LOADED) {
3243
0
                print_error("Unknown module", token, type);
3244
0
                goto skip;
3245
0
            }
3246
0
            modid = which_module(token);
3247
0
            type = get_token(fp, token, MAXTOKEN);
3248
0
        }
3249
0
        if (type == MANDATORYGROUPS) {
3250
0
            type = get_token(fp, token, MAXTOKEN);
3251
0
            if (type != LEFTBRACKET) {
3252
0
                print_error("Expected \"{\"", token, type);
3253
0
                goto skip;
3254
0
            }
3255
0
            do {
3256
0
                type = get_token(fp, token, MAXTOKEN);
3257
0
                if (type != LABEL) {
3258
0
                    print_error("Bad group name", token, type);
3259
0
                    goto skip;
3260
0
                }
3261
0
                if (!compliance_lookup(token, modid))
3262
0
                    print_error("Unknown group", token, type);
3263
0
                type = get_token(fp, token, MAXTOKEN);
3264
0
            } while (type == COMMA);
3265
0
            if (type != RIGHTBRACKET) {
3266
0
                print_error("Expected \"}\"", token, type);
3267
0
                goto skip;
3268
0
            }
3269
0
            type = get_token(fp, token, MAXTOKEN);
3270
0
        }
3271
0
        while (type == GROUP || type == OBJECT) {
3272
0
            if (type == GROUP) {
3273
0
                type = get_token(fp, token, MAXTOKEN);
3274
0
                if (type != LABEL) {
3275
0
                    print_error("Bad group name", token, type);
3276
0
                    goto skip;
3277
0
                }
3278
0
                if (!compliance_lookup(token, modid))
3279
0
                    print_error("Unknown group", token, type);
3280
0
                type = get_token(fp, token, MAXTOKEN);
3281
0
            } else {
3282
0
                type = get_token(fp, token, MAXTOKEN);
3283
0
                if (type != LABEL) {
3284
0
                    print_error("Bad object name", token, type);
3285
0
                    goto skip;
3286
0
                }
3287
0
                if (!compliance_lookup(token, modid))
3288
0
                    print_error("Unknown group", token, type);
3289
0
                type = get_token(fp, token, MAXTOKEN);
3290
0
                if (type == SYNTAX)
3291
0
                    type = eat_syntax(fp, token, MAXTOKEN);
3292
0
                if (type == WRSYNTAX)
3293
0
                    type = eat_syntax(fp, token, MAXTOKEN);
3294
0
                if (type == MINACCESS) {
3295
0
                    type = get_token(fp, token, MAXTOKEN);
3296
0
                    if (type != NOACCESS && type != ACCNOTIFY
3297
0
                        && type != READONLY && type != WRITEONLY
3298
0
                        && type != READCREATE && type != READWRITE) {
3299
0
                        print_error("Bad MIN-ACCESS spec", token, type);
3300
0
                        goto skip;
3301
0
                    }
3302
0
                    type = get_token(fp, token, MAXTOKEN);
3303
0
                }
3304
0
            }
3305
0
            if (type != DESCRIPTION) {
3306
0
                print_error("Expected DESCRIPTION", token, type);
3307
0
                goto skip;
3308
0
            }
3309
0
            type = get_token(fp, token, MAXTOKEN);
3310
0
            if (type != QUOTESTRING) {
3311
0
                print_error("Bad DESCRIPTION", token, type);
3312
0
                goto skip;
3313
0
            }
3314
0
            type = get_token(fp, token, MAXTOKEN);
3315
0
        }
3316
0
    }
3317
24
  skip:
3318
162
    while (type != EQUALS && type != ENDOFFILE)
3319
138
        type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3320
3321
24
    return merge_parse_objectid(np, fp, name);
3322
0
}
3323
3324
3325
/*
3326
 * Parses a capabilities macro
3327
 * Returns 0 on error.
3328
 */
3329
static struct node *
3330
parse_capabilities(FILE * fp, char *name)
3331
24
{
3332
24
    int             type;
3333
24
    char            token[MAXTOKEN];
3334
24
    char            quoted_string_buffer[MAXQUOTESTR];
3335
24
    struct node    *np;
3336
3337
24
    np = alloc_node(current_module);
3338
24
    if (np == NULL)
3339
0
        return (NULL);
3340
24
    type = get_token(fp, token, MAXTOKEN);
3341
24
    if (type != PRODREL) {
3342
24
        print_error("Expected PRODUCT-RELEASE", token, type);
3343
24
        goto skip;
3344
24
    }
3345
0
    type = get_token(fp, token, MAXTOKEN);
3346
0
    if (type != QUOTESTRING) {
3347
0
        print_error("Expected STRING after PRODUCT-RELEASE", token, type);
3348
0
        goto skip;
3349
0
    }
3350
0
    type = get_token(fp, token, MAXTOKEN);
3351
0
    if (type != STATUS) {
3352
0
        print_error("Expected STATUS", token, type);
3353
0
        goto skip;
3354
0
    }
3355
0
    type = get_token(fp, token, MAXTOKEN);
3356
0
    if (type != CURRENT && type != OBSOLETE) {
3357
0
        print_error("STATUS should be current or obsolete", token, type);
3358
0
        goto skip;
3359
0
    }
3360
0
    type = get_token(fp, token, MAXTOKEN);
3361
0
    if (type != DESCRIPTION) {
3362
0
        print_error("Expected DESCRIPTION", token, type);
3363
0
        goto skip;
3364
0
    }
3365
0
    type = get_token(fp, quoted_string_buffer, sizeof(quoted_string_buffer));
3366
0
    if (type != QUOTESTRING) {
3367
0
        print_error("Bad DESCRIPTION", quoted_string_buffer, type);
3368
0
        goto skip;
3369
0
    }
3370
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
3371
0
             NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
3372
0
        np->description = strdup(quoted_string_buffer);
3373
0
    }
3374
0
    type = get_token(fp, token, MAXTOKEN);
3375
0
    if (type == REFERENCE) {
3376
0
        type = get_token(fp, quoted_string_buffer,
3377
0
                         sizeof(quoted_string_buffer));
3378
0
        if (type != QUOTESTRING) {
3379
0
            print_error("Bad REFERENCE", quoted_string_buffer, type);
3380
0
            goto skip;
3381
0
        }
3382
0
        np->reference = strdup(quoted_string_buffer);
3383
0
        type = get_token(fp, token, type);
3384
0
    }
3385
0
    while (type == SUPPORTS) {
3386
0
        int             modid;
3387
0
        struct tree    *tp;
3388
3389
0
        type = get_token(fp, token, MAXTOKEN);
3390
0
        if (type != LABEL) {
3391
0
            print_error("Bad module name", token, type);
3392
0
            goto skip;
3393
0
        }
3394
0
        modid = read_module_internal(token);
3395
0
        if (modid != MODULE_LOADED_OK && modid != MODULE_ALREADY_LOADED) {
3396
0
            print_error("Module not found", token, type);
3397
0
            goto skip;
3398
0
        }
3399
0
        modid = which_module(token);
3400
0
        type = get_token(fp, token, MAXTOKEN);
3401
0
        if (type != INCLUDES) {
3402
0
            print_error("Expected INCLUDES", token, type);
3403
0
            goto skip;
3404
0
        }
3405
0
        type = get_token(fp, token, MAXTOKEN);
3406
0
        if (type != LEFTBRACKET) {
3407
0
            print_error("Expected \"{\"", token, type);
3408
0
            goto skip;
3409
0
        }
3410
0
        do {
3411
0
            type = get_token(fp, token, MAXTOKEN);
3412
0
            if (type != LABEL) {
3413
0
                print_error("Expected group name", token, type);
3414
0
                goto skip;
3415
0
            }
3416
0
            tp = find_tree_node(token, modid);
3417
0
            if (!tp)
3418
0
                print_error("Group not found in module", token, type);
3419
0
            type = get_token(fp, token, MAXTOKEN);
3420
0
        } while (type == COMMA);
3421
0
        if (type != RIGHTBRACKET) {
3422
0
            print_error("Expected \"}\" after group list", token, type);
3423
0
            goto skip;
3424
0
        }
3425
0
        type = get_token(fp, token, MAXTOKEN);
3426
0
        while (type == VARIATION) {
3427
0
            type = get_token(fp, token, MAXTOKEN);
3428
0
            if (type != LABEL) {
3429
0
                print_error("Bad object name", token, type);
3430
0
                goto skip;
3431
0
            }
3432
0
            tp = find_tree_node(token, modid);
3433
0
            if (!tp)
3434
0
                print_error("Object not found in module", token, type);
3435
0
            type = get_token(fp, token, MAXTOKEN);
3436
0
            if (type == SYNTAX) {
3437
0
                type = eat_syntax(fp, token, MAXTOKEN);
3438
0
            }
3439
0
            if (type == WRSYNTAX) {
3440
0
                type = eat_syntax(fp, token, MAXTOKEN);
3441
0
            }
3442
0
            if (type == ACCESS) {
3443
0
                type = get_token(fp, token, MAXTOKEN);
3444
0
                if (type != ACCNOTIFY && type != READONLY
3445
0
                    && type != READWRITE && type != READCREATE
3446
0
                    && type != WRITEONLY && type != NOTIMPL) {
3447
0
                    print_error("Bad ACCESS", token, type);
3448
0
                    goto skip;
3449
0
                }
3450
0
                type = get_token(fp, token, MAXTOKEN);
3451
0
            }
3452
0
            if (type == CREATEREQ) {
3453
0
                type = get_token(fp, token, MAXTOKEN);
3454
0
                if (type != LEFTBRACKET) {
3455
0
                    print_error("Expected \"{\"", token, type);
3456
0
                    goto skip;
3457
0
                }
3458
0
                do {
3459
0
                    type = get_token(fp, token, MAXTOKEN);
3460
0
                    if (type != LABEL) {
3461
0
                        print_error("Bad object name in list", token,
3462
0
                                    type);
3463
0
                        goto skip;
3464
0
                    }
3465
0
                    type = get_token(fp, token, MAXTOKEN);
3466
0
                } while (type == COMMA);
3467
0
                if (type != RIGHTBRACKET) {
3468
0
                    print_error("Expected \"}\" after list", token, type);
3469
0
                    goto skip;
3470
0
                }
3471
0
                type = get_token(fp, token, MAXTOKEN);
3472
0
            }
3473
0
            if (type == DEFVAL) {
3474
0
                int             level = 1;
3475
0
                type = get_token(fp, token, MAXTOKEN);
3476
0
                if (type != LEFTBRACKET) {
3477
0
                    print_error("Expected \"{\" after DEFVAL", token,
3478
0
                                type);
3479
0
                    goto skip;
3480
0
                }
3481
0
                do {
3482
0
                    type = get_token(fp, token, MAXTOKEN);
3483
0
                    if (type == LEFTBRACKET)
3484
0
                        level++;
3485
0
                    else if (type == RIGHTBRACKET)
3486
0
                        level--;
3487
0
                } while ((type != RIGHTBRACKET || level != 0)
3488
0
                         && type != ENDOFFILE);
3489
0
                if (type != RIGHTBRACKET) {
3490
0
                    print_error("Missing \"}\" after DEFVAL", token, type);
3491
0
                    goto skip;
3492
0
                }
3493
0
                type = get_token(fp, token, MAXTOKEN);
3494
0
            }
3495
0
            if (type != DESCRIPTION) {
3496
0
                print_error("Expected DESCRIPTION", token, type);
3497
0
                goto skip;
3498
0
            }
3499
0
            type = get_token(fp, quoted_string_buffer,
3500
0
                             sizeof(quoted_string_buffer));
3501
0
            if (type != QUOTESTRING) {
3502
0
                print_error("Bad DESCRIPTION", quoted_string_buffer, type);
3503
0
                goto skip;
3504
0
            }
3505
0
            type = get_token(fp, token, MAXTOKEN);
3506
0
        }
3507
0
    }
3508
0
    if (type != EQUALS)
3509
0
        print_error("Expected \"::=\"", token, type);
3510
24
  skip:
3511
197
    while (type != EQUALS && type != ENDOFFILE) {
3512
173
        type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3513
173
    }
3514
24
    return merge_parse_objectid(np, fp, name);
3515
0
}
3516
3517
/*
3518
 * Parses a module identity macro
3519
 * Returns 0 on error.
3520
 */
3521
static void
3522
check_utc(const char *utc)
3523
49
{
3524
49
    int             len, year, month, day, hour, minute;
3525
3526
49
    len = strlen(utc);
3527
49
    if (len == 0) {
3528
2
        print_error("Timestamp has zero length", utc, QUOTESTRING);
3529
2
        return;
3530
2
    }
3531
47
    if (utc[len - 1] != 'Z' && utc[len - 1] != 'z') {
3532
11
        print_error("Timestamp should end with Z", utc, QUOTESTRING);
3533
11
        return;
3534
11
    }
3535
36
    if (len == 11) {
3536
11
        len = sscanf(utc, "%2d%2d%2d%2d%2dZ", &year, &month, &day, &hour,
3537
11
                     &minute);
3538
11
        year += 1900;
3539
25
    } else if (len == 13)
3540
18
        len = sscanf(utc, "%4d%2d%2d%2d%2dZ", &year, &month, &day, &hour,
3541
18
                     &minute);
3542
7
    else {
3543
7
        print_error("Bad timestamp format (11 or 13 characters)",
3544
7
                    utc, QUOTESTRING);
3545
7
        return;
3546
7
    }
3547
29
    if (len != 5) {
3548
3
        print_error("Bad timestamp format", utc, QUOTESTRING);
3549
3
        return;
3550
3
    }
3551
26
    if (month < 1 || month > 12)
3552
17
        print_error("Bad month in timestamp", utc, QUOTESTRING);
3553
26
    if (day < 1 || day > 31)
3554
15
        print_error("Bad day in timestamp", utc, QUOTESTRING);
3555
26
    if (hour < 0 || hour > 23)
3556
14
        print_error("Bad hour in timestamp", utc, QUOTESTRING);
3557
26
    if (minute < 0 || minute > 59)
3558
13
        print_error("Bad minute in timestamp", utc, QUOTESTRING);
3559
26
}
3560
3561
static struct node *
3562
parse_moduleIdentity(FILE * fp, char *name)
3563
83
{
3564
83
    register int    type;
3565
83
    char            token[MAXTOKEN];
3566
83
    char            quoted_string_buffer[MAXQUOTESTR];
3567
83
    register struct node *np;
3568
3569
83
    np = alloc_node(current_module);
3570
83
    if (np == NULL)
3571
0
        return (NULL);
3572
83
    type = get_token(fp, token, MAXTOKEN);
3573
83
    if (type != LASTUPDATED) {
3574
27
        print_error("Expected LAST-UPDATED", token, type);
3575
27
        goto skip;
3576
27
    }
3577
56
    type = get_token(fp, token, MAXTOKEN);
3578
56
    if (type != QUOTESTRING) {
3579
7
        print_error("Need STRING for LAST-UPDATED", token, type);
3580
7
        goto skip;
3581
7
    }
3582
49
    check_utc(token);
3583
49
    type = get_token(fp, token, MAXTOKEN);
3584
49
    if (type != ORGANIZATION) {
3585
49
        print_error("Expected ORGANIZATION", token, type);
3586
49
        goto skip;
3587
49
    }
3588
0
    type = get_token(fp, token, MAXTOKEN);
3589
0
    if (type != QUOTESTRING) {
3590
0
        print_error("Bad ORGANIZATION", token, type);
3591
0
        goto skip;
3592
0
    }
3593
0
    type = get_token(fp, token, MAXTOKEN);
3594
0
    if (type != CONTACTINFO) {
3595
0
        print_error("Expected CONTACT-INFO", token, type);
3596
0
        goto skip;
3597
0
    }
3598
0
    type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3599
0
    if (type != QUOTESTRING) {
3600
0
        print_error("Bad CONTACT-INFO", quoted_string_buffer, type);
3601
0
        goto skip;
3602
0
    }
3603
0
    type = get_token(fp, token, MAXTOKEN);
3604
0
    if (type != DESCRIPTION) {
3605
0
        print_error("Expected DESCRIPTION", token, type);
3606
0
        goto skip;
3607
0
    }
3608
0
    type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3609
0
    if (type != QUOTESTRING) {
3610
0
        print_error("Bad DESCRIPTION", quoted_string_buffer, type);
3611
0
        goto skip;
3612
0
    }
3613
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
3614
0
             NETSNMP_DS_LIB_SAVE_MIB_DESCRS)) {
3615
0
        np->description = strdup(quoted_string_buffer);
3616
0
    }
3617
0
    type = get_token(fp, token, MAXTOKEN);
3618
0
    while (type == REVISION) {
3619
0
        type = get_token(fp, token, MAXTOKEN);
3620
0
        if (type != QUOTESTRING) {
3621
0
            print_error("Bad REVISION", token, type);
3622
0
            goto skip;
3623
0
        }
3624
0
        check_utc(token);
3625
0
        type = get_token(fp, token, MAXTOKEN);
3626
0
        if (type != DESCRIPTION) {
3627
0
            print_error("Expected DESCRIPTION", token, type);
3628
0
            goto skip;
3629
0
        }
3630
0
        type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3631
0
        if (type != QUOTESTRING) {
3632
0
            print_error("Bad DESCRIPTION", quoted_string_buffer, type);
3633
0
            goto skip;
3634
0
        }
3635
0
        type = get_token(fp, token, MAXTOKEN);
3636
0
    }
3637
0
    if (type != EQUALS)
3638
0
        print_error("Expected \"::=\"", token, type);
3639
83
  skip:
3640
411
    while (type != EQUALS && type != ENDOFFILE) {
3641
328
        type = get_token(fp, quoted_string_buffer, MAXQUOTESTR);
3642
328
    }
3643
83
    return merge_parse_objectid(np, fp, name);
3644
0
}
3645
3646
3647
/*
3648
 * Parses a MACRO definition
3649
 * Expect BEGIN, discard everything to end.
3650
 * Returns 0 on error.
3651
 */
3652
static struct node *
3653
parse_macro(FILE * fp, char *name)
3654
33
{
3655
33
    register int    type;
3656
33
    char            token[MAXTOKEN];
3657
33
    struct node    *np;
3658
33
    int             iLine = mibLine;
3659
3660
33
    np = alloc_node(current_module);
3661
33
    if (np == NULL)
3662
0
        return (NULL);
3663
33
    type = get_token(fp, token, sizeof(token));
3664
203
    while (type != EQUALS && type != ENDOFFILE) {
3665
170
        type = get_token(fp, token, sizeof(token));
3666
170
    }
3667
33
    if (type != EQUALS) {
3668
11
        if (np)
3669
11
            free_node(np);
3670
11
        return NULL;
3671
11
    }
3672
186
    while (type != BEGIN && type != ENDOFFILE) {
3673
164
        type = get_token(fp, token, sizeof(token));
3674
164
    }
3675
22
    if (type != BEGIN) {
3676
9
        if (np)
3677
9
            free_node(np);
3678
9
        return NULL;
3679
9
    }
3680
107
    while (type != END && type != ENDOFFILE) {
3681
94
        type = get_token(fp, token, sizeof(token));
3682
94
    }
3683
13
    if (type != END) {
3684
10
        if (np)
3685
10
            free_node(np);
3686
10
        return NULL;
3687
10
    }
3688
3689
3
    if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
3690
3
         NETSNMP_DS_LIB_MIB_WARNINGS)) {
3691
0
        snmp_log(LOG_WARNING,
3692
0
                 "%s MACRO (lines %d..%d parsed and ignored).\n", name,
3693
0
                 iLine, mibLine);
3694
0
    }
3695
3696
3
    return np;
3697
13
}
3698
3699
/*
3700
 * Parses a module import clause
3701
 *   loading any modules referenced
3702
 */
3703
static void
3704
parse_imports(FILE * fp)
3705
414
{
3706
414
    register int    type;
3707
414
    char            token[MAXTOKEN];
3708
414
    char            modbuf[256];
3709
3.68k
#define MAX_IMPORTS 512
3710
414
    struct module_import *import_list;
3711
414
    int             this_module;
3712
414
    struct module  *mp;
3713
3714
414
    int             import_count = 0;   /* Total number of imported descriptors */
3715
414
    int             i = 0, old_i;       /* index of first import from each module */
3716
3717
414
    import_list = malloc(MAX_IMPORTS * sizeof(*import_list));
3718
3719
414
    type = get_token(fp, token, MAXTOKEN);
3720
3721
    /*
3722
     * Parse the IMPORTS clause
3723
     */
3724
4.41k
    while (type != SEMI && type != ENDOFFILE) {
3725
4.00k
        if (type == LABEL) {
3726
3.27k
            if (import_count == MAX_IMPORTS) {
3727
0
                print_error("Too many imported symbols", token, type);
3728
0
                do {
3729
0
                    type = get_token(fp, token, MAXTOKEN);
3730
0
                } while (type != SEMI && type != ENDOFFILE);
3731
0
                goto out;
3732
0
            }
3733
3.27k
            import_list[import_count++].label = strdup(token);
3734
3.27k
        } else if (type == FROM) {
3735
379
            type = get_token(fp, token, MAXTOKEN);
3736
379
            if (import_count == i) {    /* All imports are handled internally */
3737
11
                type = get_token(fp, token, MAXTOKEN);
3738
11
                continue;
3739
11
            }
3740
368
            this_module = which_module(token);
3741
3742
2.54k
            for (old_i = i; i < import_count; ++i)
3743
2.17k
                import_list[i].modid = this_module;
3744
3745
            /*
3746
             * Recursively read any pre-requisite modules
3747
             */
3748
368
            if (read_module_internal(token) == MODULE_NOT_FOUND) {
3749
360
    int found = 0;
3750
2.49k
                for (; old_i < import_count; ++old_i) {
3751
2.13k
                    found += read_import_replacements(token, &import_list[old_i]);
3752
2.13k
                }
3753
360
    if (!found)
3754
239
        print_module_not_found(token);
3755
360
            }
3756
368
        }
3757
3.99k
        type = get_token(fp, token, MAXTOKEN);
3758
3.99k
    }
3759
3760
    /* Initialize modid in case the module name was missing. */
3761
1.51k
    for (; i < import_count; ++i)
3762
1.10k
        import_list[i].modid = -1;
3763
3764
    /*
3765
     * Save the import information
3766
     *   in the global module table
3767
     */
3768
420
    for (mp = module_head; mp; mp = mp->next) {
3769
420
        if (mp->modid == current_module) {
3770
414
            if (import_count == 0)
3771
10
                goto out;
3772
404
            if (mp->imports && (mp->imports != root_imports)) {
3773
                /*
3774
                 * this can happen if all modules are in one source file. 
3775
                 */
3776
90
                for (i = 0; i < mp->no_imports; ++i) {
3777
71
                    DEBUGMSGTL(("parse-mibs",
3778
71
                                "#### freeing Module %d '%s' %d\n",
3779
71
                                mp->modid, mp->imports[i].label,
3780
71
                                mp->imports[i].modid));
3781
71
                    free(mp->imports[i].label);
3782
71
                }
3783
19
                free(mp->imports);
3784
19
            }
3785
404
            mp->imports = (struct module_import *)
3786
404
                calloc(import_count, sizeof(struct module_import));
3787
404
            if (mp->imports == NULL)
3788
0
                goto out;
3789
3.67k
            for (i = 0; i < import_count; ++i) {
3790
3.27k
                mp->imports[i].label = import_list[i].label;
3791
3.27k
                import_list[i].label = NULL;
3792
3.27k
                mp->imports[i].modid = import_list[i].modid;
3793
3.27k
                DEBUGMSGTL(("parse-mibs",
3794
3.27k
                            "#### adding Module %d '%s' %d\n", mp->modid,
3795
3.27k
                            mp->imports[i].label, mp->imports[i].modid));
3796
3.27k
            }
3797
404
            mp->no_imports = import_count;
3798
404
            goto out;
3799
404
        }
3800
420
    }
3801
3802
    /*
3803
     * Shouldn't get this far
3804
     */
3805
0
    print_module_not_found(module_name(current_module, modbuf));
3806
3807
414
out:
3808
3.68k
    for (i = 0; i < import_count; ++i)
3809
3.27k
        free(import_list[i].label);
3810
414
    free(import_list);
3811
414
    return;
3812
0
}
3813
3814
3815
3816
/*
3817
 * MIB module handling routines
3818
 */
3819
3820
static void
3821
dump_module_list(void)
3822
0
{
3823
0
    struct module  *mp = module_head;
3824
3825
0
    DEBUGMSGTL(("parse-mibs", "Module list:\n"));
3826
0
    while (mp) {
3827
0
        DEBUGMSGTL(("parse-mibs", "  %s %d %s %d\n", mp->name, mp->modid,
3828
0
                    mp->file, mp->no_imports));
3829
0
        mp = mp->next;
3830
0
    }
3831
0
}
3832
3833
int
3834
which_module(const char *name)
3835
14.6k
{
3836
14.6k
    struct module  *mp;
3837
3838
16.9k
    for (mp = module_head; mp; mp = mp->next)
3839
5.04k
        if (!label_compare(mp->name, name))
3840
2.75k
            return (mp->modid);
3841
3842
11.8k
    DEBUGMSGTL(("parse-mibs", "Module %s not found\n", name));
3843
11.8k
    return (-1);
3844
14.6k
}
3845
3846
/*
3847
 * module_name - copy module name to user buffer, return ptr to same.
3848
 */
3849
char           *
3850
module_name(int modid, char *cp)
3851
8.72k
{
3852
8.72k
    struct module  *mp;
3853
3854
9.58k
    for (mp = module_head; mp; mp = mp->next)
3855
4.33k
        if (mp->modid == modid) {
3856
3.47k
            strcpy(cp, mp->name);
3857
3.47k
            return (cp);
3858
3.47k
        }
3859
3860
5.25k
    if (modid != -1) DEBUGMSGTL(("parse-mibs", "Module %d not found\n", modid));
3861
5.25k
    sprintf(cp, "#%d", modid);
3862
5.25k
    return (cp);
3863
8.72k
}
3864
3865
/*
3866
 *  Backwards compatability
3867
 *  Read newer modules that replace the one specified:-
3868
 *      either all of them (read_module_replacements),
3869
 *      or those relating to a specified identifier (read_import_replacements)
3870
 *      plus an interface to add new replacement requirements
3871
 */
3872
netsnmp_feature_child_of(parse_add_module_replacement, netsnmp_unused);
3873
#ifndef NETSNMP_FEATURE_REMOVE_PARSE_ADD_MODULE_REPLACEMENT
3874
void
3875
add_module_replacement(const char *old_module,
3876
                       const char *new_module_name,
3877
                       const char *tag, int len)
3878
0
{
3879
0
    struct module_compatability *mcp;
3880
3881
0
    mcp = (struct module_compatability *)
3882
0
        calloc(1, sizeof(struct module_compatability));
3883
0
    if (mcp == NULL)
3884
0
        return;
3885
3886
0
    mcp->old_module = strdup(old_module);
3887
0
    mcp->new_module = strdup(new_module_name);
3888
0
    if (tag)
3889
0
        mcp->tag = strdup(tag);
3890
0
    mcp->tag_len = len;
3891
3892
0
    mcp->next = module_map_head;
3893
0
    module_map_head = mcp;
3894
0
}
3895
#endif /* NETSNMP_FEATURE_REMOVE_PARSE_ADD_MODULE_REPLACEMENT */
3896
3897
static int
3898
read_module_replacements(const char *name)
3899
164k
{
3900
164k
    struct module_compatability *mcp;
3901
3902
3.77M
    for (mcp = module_map_head; mcp; mcp = mcp->next) {
3903
3.61M
        if (!label_compare(mcp->old_module, name)) {
3904
808
            if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
3905
808
           NETSNMP_DS_LIB_MIB_WARNINGS)) {
3906
0
                snmp_log(LOG_WARNING,
3907
0
                         "Loading replacement module %s for %s (%s)\n",
3908
0
                         mcp->new_module, name, File);
3909
0
      }
3910
808
            (void) netsnmp_read_module(mcp->new_module);
3911
808
            return 1;
3912
808
        }
3913
3.61M
    }
3914
164k
    return 0;
3915
164k
}
3916
3917
static int
3918
read_import_replacements(const char *old_module_name,
3919
                         struct module_import *identifier)
3920
2.13k
{
3921
2.13k
    struct module_compatability *mcp;
3922
3923
    /*
3924
     * Look for matches first
3925
     */
3926
46.6k
    for (mcp = module_map_head; mcp; mcp = mcp->next) {
3927
44.7k
        if (!label_compare(mcp->old_module, old_module_name)) {
3928
3929
5.72k
            if (                /* exact match */
3930
5.72k
                   (mcp->tag_len == 0 &&
3931
1.44k
                    (mcp->tag == NULL ||
3932
1.18k
                     !label_compare(mcp->tag, identifier->label))) ||
3933
                   /*
3934
                    * prefix match 
3935
                    */
3936
5.45k
                   (mcp->tag_len != 0 &&
3937
4.27k
                    !strncmp(mcp->tag, identifier->label, mcp->tag_len))
3938
5.72k
                ) {
3939
3940
284
                if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
3941
284
               NETSNMP_DS_LIB_MIB_WARNINGS)) {
3942
0
                    snmp_log(LOG_WARNING,
3943
0
                             "Importing %s from replacement module %s instead of %s (%s)\n",
3944
0
                             identifier->label, mcp->new_module,
3945
0
                             old_module_name, File);
3946
0
    }
3947
284
                (void) netsnmp_read_module(mcp->new_module);
3948
284
                identifier->modid = which_module(mcp->new_module);
3949
284
                return 1;         /* finished! */
3950
284
            }
3951
5.72k
        }
3952
44.7k
    }
3953
3954
    /*
3955
     * If no exact match, load everything relevant
3956
     */
3957
1.84k
    return read_module_replacements(old_module_name);
3958
2.13k
}
3959
3960
static int
3961
read_from_file(struct module *mp, const char *name)
3962
4.85k
{
3963
4.85k
    const char     *oldFile = File;
3964
4.85k
    int             oldLine = mibLine;
3965
4.85k
    int             oldModule = current_module;
3966
4.85k
    FILE           *fp;
3967
4.85k
    struct node    *np;
3968
4.85k
    int             res;
3969
3970
4.85k
    if (mp->no_imports != -1) {
3971
1.74k
        DEBUGMSGTL(("parse-mibs", "Module %s already loaded\n",
3972
1.74k
                    name));
3973
1.74k
        return MODULE_ALREADY_LOADED;
3974
1.74k
    }
3975
3.10k
    if ((fp = fopen(mp->file, "r")) == NULL) {
3976
0
        int rval;
3977
0
        if (errno == ENOTDIR || errno == ENOENT)
3978
0
            rval = MODULE_NOT_FOUND;
3979
0
        else
3980
0
            rval = MODULE_LOAD_FAILED;
3981
0
        snmp_log_perror(mp->file);
3982
0
        return rval;
3983
0
    }
3984
3.10k
#ifdef HAVE_FLOCKFILE
3985
3.10k
    flockfile(fp);
3986
3.10k
#endif
3987
3.10k
    mp->no_imports = 0; /* Note that we've read the file */
3988
3.10k
    File = mp->file;
3989
3.10k
    mibLine = 1;
3990
3.10k
    current_module = mp->modid;
3991
    /*
3992
     * Parse the file
3993
     */
3994
3.10k
    np = parse(fp);
3995
3.10k
#ifdef HAVE_FUNLOCKFILE
3996
3.10k
    funlockfile(fp);
3997
3.10k
#endif
3998
3.10k
    fclose(fp);
3999
3.10k
    File = oldFile;
4000
3.10k
    mibLine = oldLine;
4001
3.10k
    current_module = oldModule;
4002
3.10k
    res = !np && gMibError == MODULE_SYNTAX_ERROR ?
4003
1.80k
        MODULE_SYNTAX_ERROR : MODULE_LOADED_OK;
4004
3.76k
    while (np) {
4005
661
        struct node *nnp = np->next;
4006
661
        free_node(np);
4007
661
        np = nnp;
4008
661
    }
4009
3.10k
    return res;
4010
3.10k
}
4011
4012
/*
4013
 *  Read in the named module
4014
 *      Returns the root of the whole tree
4015
 *      (by analogy with 'read_mib')
4016
 */
4017
static int
4018
read_module_internal(const char *name)
4019
168k
{
4020
168k
    struct module  *mp;
4021
4022
168k
    netsnmp_init_mib_internals();
4023
4024
297k
    for (mp = module_head; mp; mp = mp->next)
4025
133k
        if (!label_compare(mp->name, name))
4026
4.85k
            return read_from_file(mp, name);
4027
4028
163k
    return MODULE_NOT_FOUND;
4029
168k
}
4030
4031
void
4032
adopt_orphans(void)
4033
3.40k
{
4034
3.40k
    struct node    *np = NULL, *onp;
4035
3.40k
    struct tree    *tp;
4036
3.40k
    int             i, adopted = 1;
4037
4038
3.40k
    if (!orphan_nodes)
4039
3.13k
        return;
4040
269
    init_node_hash(orphan_nodes);
4041
269
    orphan_nodes = NULL;
4042
4043
543
    while (adopted) {
4044
274
        adopted = 0;
4045
35.3k
        for (i = 0; i < NHASHSIZE; i++)
4046
35.0k
            if (nbuckets[i]) {
4047
5.87k
                for (np = nbuckets[i]; np != NULL; np = np->next) {
4048
3.46k
                    tp = find_tree_node(np->parent, -1);
4049
3.46k
        if (tp) {
4050
6
      do_subtree(tp, &np);
4051
6
      adopted = 1;
4052
                        /*
4053
                         * if do_subtree adopted the entire bucket, stop
4054
                         */
4055
6
                        if(NULL == nbuckets[i])
4056
5
                            break;
4057
4058
                        /*
4059
                         * do_subtree may modify nbuckets, and if np
4060
                         * was adopted, np->next probably isn't an orphan
4061
                         * anymore. if np is still in the bucket (do_subtree
4062
                         * didn't adopt it) keep on plugging. otherwise
4063
                         * start over, at the top of the bucket.
4064
                         */
4065
2
                        for(onp = nbuckets[i]; onp; onp = onp->next)
4066
1
                            if(onp == np)
4067
0
                                break;
4068
1
                        if(NULL == onp) { /* not in the list */
4069
1
                            np = nbuckets[i]; /* start over */
4070
1
                        }
4071
1
        }
4072
3.46k
    }
4073
2.41k
            }
4074
274
    }
4075
4076
    /*
4077
     * Report on outstanding orphans
4078
     *    and link them back into the orphan list
4079
     */
4080
34.7k
    for (i = 0; i < NHASHSIZE; i++)
4081
34.4k
        if (nbuckets[i]) {
4082
2.40k
            if (orphan_nodes)
4083
2.13k
                onp = np->next = nbuckets[i];
4084
266
            else
4085
266
                onp = orphan_nodes = nbuckets[i];
4086
2.40k
            nbuckets[i] = NULL;
4087
5.86k
            while (onp) {
4088
3.45k
                char            modbuf[256];
4089
3.45k
                snmp_log(LOG_WARNING,
4090
3.45k
                         "Cannot resolve OID in %s: %s ::= { %s %ld } at line %d in %s\n",
4091
3.45k
                         module_name(onp->modid, modbuf),
4092
3.45k
                         (onp->label ? onp->label : "<no label>"),
4093
3.45k
                         (onp->parent ? onp->parent : "<no parent>"),
4094
3.45k
                         onp->subid, onp->lineno, onp->filename);
4095
3.45k
                np = onp;
4096
3.45k
                onp = onp->next;
4097
3.45k
            }
4098
2.40k
        }
4099
269
}
4100
4101
#ifndef NETSNMP_NO_LEGACY_DEFINITIONS
4102
struct tree    *
4103
read_module(const char *name)
4104
0
{
4105
0
    return netsnmp_read_module(name);
4106
0
}
4107
#endif
4108
4109
struct tree    *
4110
netsnmp_read_module(const char *name)
4111
167k
{
4112
167k
    int status = 0;
4113
167k
    status = read_module_internal(name);
4114
4115
167k
    if (status == MODULE_NOT_FOUND) {
4116
163k
        if (!read_module_replacements(name))
4117
162k
            print_module_not_found(name);
4118
163k
    } else if (status == MODULE_SYNTAX_ERROR) {
4119
1.30k
        gMibError = 0;
4120
1.30k
        gLoop = 1;
4121
4122
1.30k
        strncat(gMibNames, " ", sizeof(gMibNames) - strlen(gMibNames) - 1);
4123
1.30k
        strncat(gMibNames, name, sizeof(gMibNames) - strlen(gMibNames) - 1);
4124
1.30k
    }
4125
4126
167k
    return tree_head;
4127
167k
}
4128
4129
/*
4130
 * Prototype definition 
4131
 */
4132
void            unload_module_by_ID(int modID, struct tree *tree_top);
4133
4134
void
4135
unload_module_by_ID(int modID, struct tree *tree_top)
4136
11.4k
{
4137
11.4k
    struct tree    *tp, *next;
4138
11.4k
    int             i;
4139
4140
37.5k
    for (tp = tree_top; tp; tp = next) {
4141
        /*
4142
         * Essentially, this is equivalent to the code fragment:
4143
         *      if (tp->modID == modID)
4144
         *        tp->number_modules--;
4145
         * but handles one tree node being part of several modules,
4146
         * and possible multiple copies of the same module ID.
4147
         */
4148
26.1k
        int             nmod = tp->number_modules;
4149
26.1k
        if (nmod > 0) {         /* in some module */
4150
            /*
4151
             * Remove all copies of this module ID
4152
             */
4153
26.1k
            int             cnt = 0, *pi1, *pi2 = tp->module_list;
4154
52.8k
            for (i = 0, pi1 = pi2; i < nmod; i++, pi2++) {
4155
26.7k
                if (*pi2 == modID)
4156
18.6k
                    continue;
4157
8.15k
                cnt++;
4158
8.15k
                *pi1++ = *pi2;
4159
8.15k
            }
4160
26.1k
            if (nmod != cnt) {  /* in this module */
4161
                /*
4162
                 * if ( (nmod - cnt) > 1)
4163
                 * printf("Dup modid %d,  %d times, '%s'\n", tp->modid, (nmod-cnt), tp->label); fflush(stdout); ?* XXDEBUG 
4164
                 */
4165
18.1k
                tp->number_modules = cnt;
4166
18.1k
                switch (cnt) {
4167
18.1k
                case 0:
4168
18.1k
                    tp->module_list[0] = -1;    /* Mark unused, */
4169
18.1k
        NETSNMP_FALLTHROUGH;
4170
4171
18.1k
                case 1:        /* save the remaining module */
4172
18.1k
                    if (&(tp->modid) != tp->module_list) {
4173
301
                        tp->modid = tp->module_list[0];
4174
301
                        free(tp->module_list);
4175
301
                        tp->module_list = &(tp->modid);
4176
301
                    }
4177
18.1k
                    break;
4178
4179
0
                default:
4180
0
                    break;
4181
18.1k
                }
4182
18.1k
            }                   /* if tree node is in this module */
4183
26.1k
        }
4184
        /*
4185
         * if tree node is in some module 
4186
         */
4187
26.1k
        next = tp->next_peer;
4188
4189
4190
        /*
4191
         *  OK - that's dealt with *this* node.
4192
         *    Now let's look at the children.
4193
         *    (Isn't recursion wonderful!)
4194
         */
4195
26.1k
        if (tp->child_list)
4196
5.45k
            unload_module_by_ID(modID, tp->child_list);
4197
4198
4199
26.1k
        if (tp->number_modules == 0) {
4200
            /*
4201
             * This node isn't needed any more (except perhaps
4202
             * for the sake of the children) 
4203
             */
4204
18.1k
            if (tp->child_list == NULL) {
4205
18.1k
                unlink_tree(tp);
4206
18.1k
                free_tree(tp);
4207
18.1k
            } else {
4208
10
                free_partial_tree(tp, TRUE);
4209
10
            }
4210
18.1k
        }
4211
26.1k
    }
4212
11.4k
}
4213
4214
#ifndef NETSNMP_NO_LEGACY_DEFINITIONS
4215
int
4216
unload_module(const char *name)
4217
0
{
4218
0
    return netsnmp_unload_module(name);
4219
0
}
4220
#endif
4221
4222
int
4223
netsnmp_unload_module(const char *name)
4224
0
{
4225
0
    struct module  *mp;
4226
0
    int             modID = -1;
4227
4228
0
    for (mp = module_head; mp; mp = mp->next)
4229
0
        if (!label_compare(mp->name, name)) {
4230
0
            modID = mp->modid;
4231
0
            break;
4232
0
        }
4233
4234
0
    if (modID == -1) {
4235
0
        DEBUGMSGTL(("unload-mib", "Module %s not found to unload\n",
4236
0
                    name));
4237
0
        return MODULE_NOT_FOUND;
4238
0
    }
4239
0
    unload_module_by_ID(modID, tree_head);
4240
0
    mp->no_imports = -1;        /* mark as unloaded */
4241
0
    return MODULE_LOADED_OK;    /* Well, you know what I mean! */
4242
0
}
4243
4244
/*
4245
 * Clear module map, tree nodes, textual convention table.
4246
 */
4247
void
4248
unload_all_mibs(void)
4249
3.40k
{
4250
3.40k
    struct module  *mp;
4251
3.40k
    struct module_compatability *mcp;
4252
3.40k
    struct tc      *ptc;
4253
3.40k
    unsigned int    i;
4254
4255
3.40k
    for (mcp = module_map_head; mcp; mcp = module_map_head) {
4256
3.40k
        if (mcp == module_map)
4257
3.40k
            break;
4258
0
        module_map_head = mcp->next;
4259
0
        if (mcp->tag) free(NETSNMP_REMOVE_CONST(char *, mcp->tag));
4260
0
        free(NETSNMP_REMOVE_CONST(char *, mcp->old_module));
4261
0
        free(NETSNMP_REMOVE_CONST(char *, mcp->new_module));
4262
0
        free(mcp);
4263
0
    }
4264
4265
5.98k
    for (mp = module_head; mp; mp = module_head) {
4266
2.57k
        struct module_import *mi = mp->imports;
4267
2.57k
        if (mi) {
4268
7.16k
            for (i = 0; i < (unsigned int)mp->no_imports; ++i) {
4269
5.88k
                SNMP_FREE((mi + i)->label);
4270
5.88k
            }
4271
1.28k
            mp->no_imports = 0;
4272
1.28k
            if (mi == root_imports)
4273
895
                memset(mi, 0, sizeof(*mi));
4274
385
            else
4275
385
                free(mi);
4276
1.28k
        }
4277
4278
2.57k
        unload_module_by_ID(mp->modid, tree_head);
4279
2.57k
        module_head = mp->next;
4280
2.57k
        free(mp->name);
4281
2.57k
        free(mp->file);
4282
2.57k
        free(mp);
4283
2.57k
    }
4284
3.40k
    unload_module_by_ID(-1, tree_head);
4285
    /*
4286
     * tree nodes are cleared 
4287
     */
4288
4289
343k
    for (i = 0, ptc = tclist; i < tc_alloc; i++, ptc++) {
4290
340k
        if (ptc->type == 0)
4291
340k
            continue;
4292
374
        free_enums(&ptc->enums);
4293
374
        free_ranges(&ptc->ranges);
4294
374
        free(ptc->descriptor);
4295
374
        if (ptc->hint)
4296
0
            free(ptc->hint);
4297
374
        if (ptc->description)
4298
0
            free(ptc->description);
4299
374
    }
4300
3.40k
    SNMP_FREE(tclist);
4301
3.40k
    tc_alloc = 0;
4302
4303
3.40k
    memset(buckets, 0, sizeof(buckets));
4304
3.40k
    memset(nbuckets, 0, sizeof(nbuckets));
4305
3.40k
    memset(tbuckets, 0, sizeof(tbuckets));
4306
4307
13.6k
    for (i = 0; i < sizeof(root_imports) / sizeof(root_imports[0]); i++) {
4308
10.2k
        SNMP_FREE(root_imports[i].label);
4309
10.2k
    }
4310
4311
3.40k
    max_module = 0;
4312
3.40k
    current_module = 0;
4313
3.40k
    module_map_head = NULL;
4314
3.40k
    SNMP_FREE(last_err_module);
4315
4316
3.40k
    {
4317
3.40k
        struct node *np = orphan_nodes;
4318
4319
6.86k
        while (np) {
4320
3.45k
            struct node *nnp = np->next;
4321
3.45k
            free_node(np);
4322
3.45k
            np = nnp;
4323
3.45k
        }
4324
3.40k
        orphan_nodes = NULL;
4325
3.40k
    }
4326
3.40k
    erroneousMibs = 0;
4327
3.40k
    first_err_module = 1;
4328
3.40k
}
4329
4330
static void
4331
new_module(const char *name, const char *file)
4332
7.37k
{
4333
7.37k
    struct module  *mp;
4334
4335
291k
    for (mp = module_head; mp; mp = mp->next)
4336
287k
        if (!label_compare(mp->name, name)) {
4337
4.05k
            DEBUGMSGTL(("parse-mibs", "  Module %s already noted\n", name));
4338
            /*
4339
             * Not the same file 
4340
             */
4341
4.05k
            if (label_compare(mp->file, file)) {
4342
2.73k
                DEBUGMSGTL(("parse-mibs", "    %s is now in %s\n",
4343
2.73k
                            name, file));
4344
2.73k
                if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
4345
2.73k
               NETSNMP_DS_LIB_MIB_WARNINGS)) {
4346
1
                    snmp_log(LOG_WARNING,
4347
1
                             "Warning: Module %s was in %s now is %s\n",
4348
1
                             name, mp->file, file);
4349
1
    }
4350
4351
                /*
4352
                 * Use the new one in preference 
4353
                 */
4354
2.73k
                free(mp->file);
4355
2.73k
                mp->file = strdup(file);
4356
2.73k
            }
4357
4.05k
            return;
4358
4.05k
        }
4359
4360
    /*
4361
     * Add this module to the list 
4362
     */
4363
3.32k
    DEBUGMSGTL(("parse-mibs", "  Module %d %s is in %s\n", max_module,
4364
3.32k
                name, file));
4365
3.32k
    mp = calloc(1, sizeof(struct module));
4366
3.32k
    if (mp == NULL)
4367
0
        return;
4368
3.32k
    mp->name = strdup(name);
4369
3.32k
    mp->file = strdup(file);
4370
3.32k
    if (mp->name == NULL || mp->file == NULL) {
4371
0
        free(mp->name);
4372
0
        free(mp->file);
4373
0
        free(mp);
4374
0
        return;
4375
0
    }
4376
3.32k
    mp->imports = NULL;
4377
3.32k
    mp->no_imports = -1;        /* Not yet loaded */
4378
3.32k
    mp->modid = max_module;
4379
3.32k
    ++max_module;
4380
4381
3.32k
    mp->next = module_head;     /* Or add to the *end* of the list? */
4382
3.32k
    module_head = mp;
4383
3.32k
}
4384
4385
4386
static void
4387
scan_objlist(struct node *root, struct module *mp, struct objgroup *list, const char *error)
4388
3.17k
{
4389
3.17k
    int             oLine = mibLine;
4390
4391
3.19k
    while (list) {
4392
21
        struct objgroup *gp = list;
4393
21
        struct node    *np;
4394
21
        list = list->next;
4395
21
        np = root;
4396
73
        while (np)
4397
55
            if (label_compare(np->label, gp->name))
4398
52
                np = np->next;
4399
3
            else
4400
3
                break;
4401
21
        if (!np) {
4402
18
      int i;
4403
18
      struct module_import *mip;
4404
      /* if not local, check if it was IMPORTed */
4405
18
      for (i = 0, mip = mp->imports; i < mp->no_imports; i++, mip++)
4406
0
    if (strcmp(mip->label, gp->name) == 0)
4407
0
        break;
4408
18
      if (i == mp->no_imports) {
4409
18
    mibLine = gp->line;
4410
18
    print_error(error, gp->name, QUOTESTRING);
4411
18
      }
4412
18
        }
4413
21
        free(gp->name);
4414
21
        free(gp);
4415
21
    }
4416
3.17k
    mibLine = oLine;
4417
3.17k
}
4418
4419
static void free_objgroup(struct objgroup *o)
4420
3.82k
{
4421
3.84k
    while (o) {
4422
25
        struct objgroup *next = o->next;
4423
4424
25
        free(o->name);
4425
25
        free(o);
4426
25
        o = next;
4427
25
    }
4428
3.82k
}
4429
4430
/*
4431
 * Parses a mib file and returns a linked list of nodes found in the file.
4432
 * Returns NULL on error.
4433
 */
4434
static struct node *
4435
parse(FILE * fp)
4436
3.10k
{
4437
#ifdef TEST
4438
    extern void     xmalloc_stats(FILE *);
4439
#endif
4440
3.10k
    char            token[MAXTOKEN];
4441
3.10k
    char            name[MAXTOKEN+1];
4442
3.10k
    int             type = LABEL;
4443
3.10k
    int             lasttype = LABEL;
4444
4445
6.88k
#define BETWEEN_MIBS          1
4446
3.76k
#define IN_MIB                2
4447
3.10k
    int             state = BETWEEN_MIBS;
4448
3.10k
    struct node    *np = NULL, *root = NULL;
4449
3.10k
    struct objgroup *oldgroups = NULL, *oldobjects = NULL, *oldnotifs =
4450
3.10k
        NULL;
4451
4452
3.10k
    DEBUGMSGTL(("parse-file", "Parsing file:  %s...\n", File));
4453
4454
3.10k
    if (last_err_module)
4455
2.30k
        free(last_err_module);
4456
3.10k
    last_err_module = NULL;
4457
4458
18.5k
    while (type != ENDOFFILE) {
4459
16.6k
        struct node *nnp;
4460
4461
16.6k
        if (lasttype == CONTINUE)
4462
4.35k
            lasttype = type;
4463
12.3k
        else
4464
12.3k
            type = lasttype = get_token(fp, token, MAXTOKEN);
4465
4466
16.6k
        switch (type) {
4467
1.06k
        case END:
4468
1.06k
            if (state != IN_MIB) {
4469
3
                print_error("Error, END before start of MIB", NULL, type);
4470
3
                gMibError = MODULE_SYNTAX_ERROR;
4471
3
                goto free_mib;
4472
1.05k
            } else {
4473
1.05k
                struct module  *mp;
4474
#ifdef TEST
4475
                printf("\nNodes for Module %s:\n", name);
4476
                print_nodes(stdout, root);
4477
#endif
4478
1.15k
                for (mp = module_head; mp; mp = mp->next)
4479
1.15k
                    if (mp->modid == current_module)
4480
1.05k
                        break;
4481
1.05k
                scan_objlist(root, mp, objgroups, "Undefined OBJECT-GROUP");
4482
1.05k
                scan_objlist(root, mp, objects, "Undefined OBJECT");
4483
1.05k
                scan_objlist(root, mp, notifs, "Undefined NOTIFICATION");
4484
1.05k
                objgroups = oldgroups;
4485
1.05k
                objects = oldobjects;
4486
1.05k
                notifs = oldnotifs;
4487
1.05k
                do_linkup(mp, root);
4488
1.05k
                np = root = NULL;
4489
1.05k
            }
4490
1.05k
            state = BETWEEN_MIBS;
4491
#ifdef TEST
4492
            if (netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
4493
           NETSNMP_DS_LIB_MIB_WARNINGS)) {
4494
                /* xmalloc_stats(stderr); */
4495
      }
4496
#endif
4497
1.05k
            continue;
4498
414
        case IMPORTS:
4499
414
            parse_imports(fp);
4500
414
            continue;
4501
23
        case EXPORTS:
4502
125
            while (type != SEMI && type != ENDOFFILE)
4503
102
                type = get_token(fp, token, MAXTOKEN);
4504
23
            continue;
4505
8.74k
        case LABEL:
4506
8.75k
        case INTEGER:
4507
8.75k
        case INTEGER32:
4508
8.75k
        case UINTEGER32:
4509
8.76k
        case UNSIGNED32:
4510
8.76k
        case COUNTER:
4511
8.76k
        case COUNTER64:
4512
8.77k
        case GAUGE:
4513
8.77k
        case IPADDR:
4514
8.77k
        case NETADDR:
4515
8.78k
        case NSAPADDRESS:
4516
8.78k
        case OBJSYNTAX:
4517
8.78k
        case APPSYNTAX:
4518
8.78k
        case SIMPLESYNTAX:
4519
8.79k
        case OBJNAME:
4520
8.79k
        case NOTIFNAME:
4521
8.79k
        case KW_OPAQUE:
4522
8.80k
        case TIMETICKS:
4523
8.80k
            break;
4524
902
        case ENDOFFILE:
4525
902
            continue;
4526
5.48k
        default:
4527
5.48k
            strlcpy(name, token, sizeof(name));
4528
5.48k
            type = get_token(fp, token, MAXTOKEN);
4529
5.48k
            nnp = NULL;
4530
5.48k
            if (type == MACRO) {
4531
11
                nnp = parse_macro(fp, name);
4532
11
                if (nnp == NULL) {
4533
9
                    print_error("Bad parse of MACRO", NULL, type);
4534
9
                    gMibError = MODULE_SYNTAX_ERROR;
4535
9
                }
4536
11
                free_node(nnp); /* IGNORE */
4537
11
                nnp = NULL;
4538
11
            } else
4539
5.47k
                print_error(name, "is a reserved word", lasttype);
4540
5.48k
            continue;           /* see if we can parse the rest of the file */
4541
16.6k
        }
4542
8.80k
        strlcpy(name, token, sizeof(name));
4543
8.80k
        type = get_token(fp, token, MAXTOKEN);
4544
8.80k
        nnp = NULL;
4545
4546
        /*
4547
         * Handle obsolete method to assign an object identifier to a
4548
         * module
4549
         */
4550
8.80k
        if (lasttype == LABEL && type == LEFTBRACKET) {
4551
3.65M
            while (type != RIGHTBRACKET && type != ENDOFFILE)
4552
3.65M
                type = get_token(fp, token, MAXTOKEN);
4553
2.29k
            if (type == ENDOFFILE) {
4554
328
                print_error("Expected \"}\"", token, type);
4555
328
                gMibError = MODULE_SYNTAX_ERROR;
4556
328
                goto free_mib;
4557
328
            }
4558
1.96k
            type = get_token(fp, token, MAXTOKEN);
4559
1.96k
        }
4560
4561
8.47k
        switch (type) {
4562
2.71k
        case DEFINITIONS:
4563
2.71k
            if (state != BETWEEN_MIBS) {
4564
8
                print_error("Error, nested MIBS", NULL, type);
4565
8
                gMibError = MODULE_SYNTAX_ERROR;
4566
8
                goto free_mib;
4567
8
            }
4568
2.70k
            state = IN_MIB;
4569
2.70k
            current_module = which_module(name);
4570
2.70k
            oldgroups = objgroups;
4571
2.70k
            objgroups = NULL;
4572
2.70k
            oldobjects = objects;
4573
2.70k
            objects = NULL;
4574
2.70k
            oldnotifs = notifs;
4575
2.70k
            notifs = NULL;
4576
2.70k
            if (current_module == -1) {
4577
216
                new_module(name, File);
4578
216
                current_module = which_module(name);
4579
216
            }
4580
2.70k
            DEBUGMSGTL(("parse-mibs", "Parsing MIB: %d %s\n",
4581
2.70k
                        current_module, name));
4582
237k
            while ((type = get_token(fp, token, MAXTOKEN)) != ENDOFFILE)
4583
236k
                if (type == BEGIN)
4584
2.41k
                    break;
4585
2.70k
            break;
4586
3
        case OBJTYPE:
4587
3
            nnp = parse_objecttype(fp, name);
4588
3
            if (nnp == NULL) {
4589
3
                print_error("Bad parse of OBJECT-TYPE", NULL, type);
4590
3
                gMibError = MODULE_SYNTAX_ERROR;
4591
3
                goto free_mib;
4592
3
            }
4593
0
            break;
4594
8
        case OBJGROUP:
4595
8
            nnp = parse_objectgroup(fp, name, OBJECTS, &objects);
4596
8
            if (nnp == NULL) {
4597
4
                print_error("Bad parse of OBJECT-GROUP", NULL, type);
4598
4
                gMibError = MODULE_SYNTAX_ERROR;
4599
4
                goto free_mib;
4600
4
            }
4601
4
            break;
4602
48
        case NOTIFGROUP:
4603
48
            nnp = parse_objectgroup(fp, name, NOTIFICATIONS, &notifs);
4604
48
            if (nnp == NULL) {
4605
23
                print_error("Bad parse of NOTIFICATION-GROUP", NULL, type);
4606
23
                gMibError = MODULE_SYNTAX_ERROR;
4607
23
                goto free_mib;
4608
23
            }
4609
25
            break;
4610
39
        case TRAPTYPE:
4611
39
            nnp = parse_trapDefinition(fp, name);
4612
39
            if (nnp == NULL) {
4613
38
                print_error("Bad parse of TRAP-TYPE", NULL, type);
4614
38
                gMibError = MODULE_SYNTAX_ERROR;
4615
38
                goto free_mib;
4616
38
            }
4617
1
            break;
4618
56
        case NOTIFTYPE:
4619
56
            nnp = parse_notificationDefinition(fp, name);
4620
56
            if (nnp == NULL) {
4621
42
                print_error("Bad parse of NOTIFICATION-TYPE", NULL, type);
4622
42
                gMibError = MODULE_SYNTAX_ERROR;
4623
42
                goto free_mib;
4624
42
            }
4625
14
            break;
4626
24
        case COMPLIANCE:
4627
24
            nnp = parse_compliance(fp, name);
4628
24
            if (nnp == NULL) {
4629
12
                print_error("Bad parse of MODULE-COMPLIANCE", NULL, type);
4630
12
                gMibError = MODULE_SYNTAX_ERROR;
4631
12
                goto free_mib;
4632
12
            }
4633
12
            break;
4634
24
        case AGENTCAP:
4635
24
            nnp = parse_capabilities(fp, name);
4636
24
            if (nnp == NULL) {
4637
14
                print_error("Bad parse of AGENT-CAPABILITIES", NULL, type);
4638
14
                gMibError = MODULE_SYNTAX_ERROR;
4639
14
                goto free_mib;
4640
14
            }
4641
10
            break;
4642
22
        case MACRO:
4643
22
            nnp = parse_macro(fp, name);
4644
22
            if (nnp == NULL) {
4645
21
                print_error("Bad parse of MACRO", NULL, type);
4646
21
                gMibError = MODULE_SYNTAX_ERROR;
4647
21
            }
4648
22
            free_node(nnp);     /* IGNORE */
4649
22
            nnp = NULL;
4650
22
            break;
4651
83
        case MODULEIDENTITY:
4652
83
            nnp = parse_moduleIdentity(fp, name);
4653
83
            if (nnp == NULL) {
4654
69
                print_error("Bad parse of MODULE-IDENTITY", NULL, type);
4655
69
                gMibError = MODULE_SYNTAX_ERROR;
4656
69
                goto free_mib;
4657
69
            }
4658
14
            break;
4659
14
        case OBJIDENTITY:
4660
8
            nnp = parse_objectgroup(fp, name, OBJECTS, &objects);
4661
8
            if (nnp == NULL) {
4662
5
                print_error("Bad parse of OBJECT-IDENTITY", NULL, type);
4663
5
                gMibError = MODULE_SYNTAX_ERROR;
4664
5
                goto free_mib;
4665
5
            }
4666
3
            break;
4667
25
        case OBJECT:
4668
25
            type = get_token(fp, token, MAXTOKEN);
4669
25
            if (type != IDENTIFIER) {
4670
20
                print_error("Expected IDENTIFIER", token, type);
4671
20
                gMibError = MODULE_SYNTAX_ERROR;
4672
20
                goto free_mib;
4673
20
            }
4674
5
            type = get_token(fp, token, MAXTOKEN);
4675
5
            if (type != EQUALS) {
4676
3
                print_error("Expected \"::=\"", token, type);
4677
3
                gMibError = MODULE_SYNTAX_ERROR;
4678
3
                goto free_mib;
4679
3
            }
4680
2
            nnp = parse_objectid(fp, name);
4681
2
            if (nnp == NULL) {
4682
1
                print_error("Bad parse of OBJECT IDENTIFIER", NULL, type);
4683
1
                gMibError = MODULE_SYNTAX_ERROR;
4684
1
                goto free_mib;
4685
1
            }
4686
1
            break;
4687
4.47k
        case EQUALS:
4688
4.47k
            nnp = parse_asntype(fp, name, &type, token);
4689
4.47k
            lasttype = CONTINUE;
4690
4.47k
            break;
4691
240
        case ENDOFFILE:
4692
240
            break;
4693
701
        default:
4694
701
            print_error("Bad operator", token, type);
4695
701
            gMibError = MODULE_SYNTAX_ERROR;
4696
701
            goto free_mib;
4697
8.47k
        }
4698
7.53k
        if (nnp) {
4699
1.80k
            struct node *op = root;
4700
1.80k
            int is_duplicate = 0;
4701
4702
20.9k
            while (op) {
4703
19.3k
                if (strcmp(nnp->label, op->label) == 0 && nnp->subid != op->subid) {
4704
145
                    snmp_log(LOG_ERR, 
4705
145
                        "Duplicate Object '%s' at line %d in %s. First at line %d\n",
4706
145
                        op->label, mibLine, File, op->lineno);
4707
145
        erroneousMibs++;
4708
145
                    is_duplicate = 1;
4709
145
                    break;
4710
145
    }
4711
19.1k
                op = op->next;
4712
19.1k
            }
4713
1.80k
            if (is_duplicate) {
4714
145
                struct node *next_node;
4715
4716
486
                while (nnp) {
4717
341
                    next_node = nnp->next;
4718
341
                    free_node(nnp);
4719
341
                    nnp = next_node;
4720
341
                }
4721
1.66k
            } else {
4722
1.66k
                if (np)
4723
560
                    np->next = nnp;
4724
1.10k
                else
4725
1.10k
                    np = root = nnp;
4726
21.4k
                while (np->next)
4727
19.8k
                    np = np->next;
4728
1.66k
                if (np->type == TYPE_OTHER)
4729
1.66k
                    np->type = type;
4730
1.66k
            }
4731
1.80k
        }
4732
7.53k
    }
4733
1.83k
    DEBUGMSGTL(("parse-file", "End of file (%s)\n", File));
4734
1.83k
    return root;
4735
4736
1.27k
free_mib:
4737
8.33k
    for (; root; root = np) {
4738
7.05k
        np = root->next;
4739
7.05k
        free_node(root);
4740
7.05k
    }
4741
1.27k
    free_objgroup(objgroups);
4742
1.27k
    objgroups = NULL;
4743
1.27k
    free_objgroup(objects);
4744
1.27k
    objects = NULL;
4745
1.27k
    free_objgroup(notifs);
4746
1.27k
    notifs = NULL;
4747
1.27k
    return NULL;
4748
3.10k
}
4749
4750
/*
4751
 * return zero if character is not a label character. 
4752
 */
4753
static int
4754
is_labelchar(int ich)
4755
5.31M
{
4756
5.31M
    netsnmp_assert(ich == EOF || (0 <= ich && ich < 256));
4757
5.31M
    if ((isalnum(ich)) || (ich == '-'))
4758
1.45M
        return 1;
4759
3.86M
    if (ich == '_' && netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
4760
10.2k
               NETSNMP_DS_LIB_MIB_PARSE_LABEL)) {
4761
0
        return 1;
4762
0
    }
4763
4764
3.86M
    return 0;
4765
3.86M
}
4766
4767
/**
4768
 * Read a single character from a file. Assumes that the caller has invoked
4769
 * flockfile(). Uses fgetc_unlocked() instead of getc() since the former is
4770
 * implemented as an inline function in glibc. See also bug 3447196
4771
 * (http://sourceforge.net/tracker/?func=detail&aid=3447196&group_id=12694&atid=112694).
4772
 */
4773
static int netsnmp_getc(FILE *stream)
4774
19.8M
{
4775
19.8M
#ifdef HAVE_FGETC_UNLOCKED
4776
19.8M
    return fgetc_unlocked(stream);
4777
#else
4778
    return getc(stream);
4779
#endif
4780
19.8M
}
4781
4782
/*
4783
 * Parses a token from the file.  The type of the token parsed is returned,
4784
 * and the text is placed in the string pointed to by token.
4785
 * Warning: this method may recurse.
4786
 */
4787
static int
4788
get_token(FILE *const fp, char *const token, const int maxtlen)
4789
4.03M
{
4790
4.03M
    int             ch, ch_next;
4791
4.03M
    char           *cp;
4792
4.03M
    int             hash;
4793
4.03M
    struct tok     *tp;
4794
4.03M
    int             too_long;
4795
4.03M
    enum { bdigits, xdigits, other } seenSymbols;
4796
4797
4.03M
fetch_next_token:
4798
4.03M
    cp = token;
4799
4.03M
    hash = 0;
4800
4.03M
    too_long = 0;
4801
    /*
4802
     * skip all white space 
4803
     */
4804
4.39M
    do {
4805
4.39M
        ch = netsnmp_getc(fp);
4806
4.39M
        if (ch == '\n')
4807
35.5k
            mibLine++;
4808
4.39M
    }
4809
4.39M
    while (isspace(ch) && ch != EOF);
4810
4.03M
    *cp++ = ch;
4811
4.03M
    *cp = '\0';
4812
4.03M
    switch (ch) {
4813
3.43k
    case EOF:
4814
3.43k
        return ENDOFFILE;
4815
4.20k
    case '"':
4816
4.20k
        return parseQuoteString(fp, token, maxtlen);
4817
10.1k
    case '\'':                 /* binary or hex constant */
4818
10.1k
        seenSymbols = bdigits;
4819
10.9M
        while ((ch = netsnmp_getc(fp)) != EOF && ch != '\'') {
4820
10.9M
            switch (seenSymbols) {
4821
11.6k
            case bdigits:
4822
11.6k
                if (ch == '0' || ch == '1')
4823
1.72k
                    break;
4824
9.91k
                seenSymbols = xdigits;
4825
9.91k
                NETSNMP_FALLTHROUGH;
4826
14.5k
            case xdigits:
4827
14.5k
                if (isxdigit(ch))
4828
5.07k
                    break;
4829
9.51k
                seenSymbols = other;
4830
9.51k
                NETSNMP_FALLTHROUGH;
4831
10.9M
            case other:
4832
10.9M
                break;
4833
10.9M
            }
4834
10.9M
            if (cp - token < maxtlen - 2)
4835
876k
                *cp++ = ch;
4836
10.9M
        }
4837
10.1k
        if (ch == '\'') {
4838
9.70k
            unsigned long   val = 0;
4839
9.70k
            char           *run = token + 1;
4840
9.70k
            ch = netsnmp_getc(fp);
4841
9.70k
            switch (ch) {
4842
8
            case EOF:
4843
8
                return ENDOFFILE;
4844
290
            case 'b':
4845
1.03k
            case 'B':
4846
1.03k
                if (seenSymbols > bdigits) {
4847
940
                    *cp++ = '\'';
4848
940
                    *cp = 0;
4849
940
                    return LABEL;
4850
940
                }
4851
460
                while (run != cp)
4852
362
                    val = val * 2 + *run++ - '0';
4853
98
                break;
4854
333
            case 'h':
4855
1.14k
            case 'H':
4856
1.14k
                if (seenSymbols > xdigits) {
4857
1.00k
                    *cp++ = '\'';
4858
1.00k
                    *cp = 0;
4859
1.00k
                    return LABEL;
4860
1.00k
                }
4861
1.30k
                while (run != cp) {
4862
1.17k
                    ch = *run++;
4863
1.17k
                    if ('0' <= ch && ch <= '9')
4864
268
                        val = val * 16 + ch - '0';
4865
906
                    else if ('a' <= ch && ch <= 'f')
4866
353
                        val = val * 16 + ch - 'a' + 10;
4867
553
                    else if ('A' <= ch && ch <= 'F')
4868
553
                        val = val * 16 + ch - 'A' + 10;
4869
1.17k
                }
4870
135
                break;
4871
7.51k
            default:
4872
7.51k
                *cp++ = '\'';
4873
7.51k
                *cp = 0;
4874
7.51k
                return LABEL;
4875
9.70k
            }
4876
233
            sprintf(token, "%ld", val);
4877
233
            return NUMBER;
4878
9.70k
        } else
4879
428
            return LABEL;
4880
30.6k
    case '(':
4881
30.6k
        return LEFTPAREN;
4882
29.9k
    case ')':
4883
29.9k
        return RIGHTPAREN;
4884
12.6k
    case '{':
4885
12.6k
        return LEFTBRACKET;
4886
8.14k
    case '}':
4887
8.14k
        return RIGHTBRACKET;
4888
2.16k
    case '[':
4889
2.16k
        return LEFTSQBRACK;
4890
3.37k
    case ']':
4891
3.37k
        return RIGHTSQBRACK;
4892
2.27k
    case ';':
4893
2.27k
        return SEMI;
4894
1.99k
    case ',':
4895
1.99k
        return COMMA;
4896
819
    case '|':
4897
819
        return BAR;
4898
5.89k
    case '.':
4899
5.89k
        ch_next = netsnmp_getc(fp);
4900
5.89k
        if (ch_next == '.')
4901
350
            return RANGE;
4902
5.54k
        ungetc(ch_next, fp);
4903
5.54k
        return LABEL;
4904
57.6k
    case ':':
4905
57.6k
        ch_next = netsnmp_getc(fp);
4906
57.6k
        if (ch_next != ':') {
4907
51.9k
            ungetc(ch_next, fp);
4908
51.9k
            return LABEL;
4909
51.9k
        }
4910
5.70k
        ch_next = netsnmp_getc(fp);
4911
5.70k
        if (ch_next != '=') {
4912
805
            ungetc(ch_next, fp);
4913
805
            return LABEL;
4914
805
        }
4915
4.89k
        return EQUALS;
4916
5.19k
    case '-':
4917
5.19k
        ch_next = netsnmp_getc(fp);
4918
5.19k
        if (ch_next == '-') {
4919
1.16k
            if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, 
4920
1.16k
               NETSNMP_DS_LIB_MIB_COMMENT_TERM)) {
4921
                /*
4922
                 * Treat the rest of this line as a comment. 
4923
                 */
4924
0
                while ((ch_next != EOF) && (ch_next != '\n'))
4925
0
                    ch_next = netsnmp_getc(fp);
4926
1.16k
            } else {
4927
                /*
4928
                 * Treat the rest of the line or until another '--' as a comment 
4929
                 */
4930
                /*
4931
                 * (this is the "technically" correct way to parse comments) 
4932
                 */
4933
1.16k
                ch = ' ';
4934
1.16k
                ch_next = netsnmp_getc(fp);
4935
20.1k
                while (ch_next != EOF && ch_next != '\n' &&
4936
19.5k
                       (ch != '-' || ch_next != '-')) {
4937
19.0k
                    ch = ch_next;
4938
19.0k
                    ch_next = netsnmp_getc(fp);
4939
19.0k
                }
4940
1.16k
            }
4941
1.16k
            if (ch_next == EOF)
4942
42
                return ENDOFFILE;
4943
1.12k
            if (ch_next == '\n')
4944
614
                mibLine++;
4945
1.12k
            goto fetch_next_token;
4946
1.16k
        }
4947
4.03k
        ungetc(ch_next, fp);
4948
4.03k
  NETSNMP_FALLTHROUGH;
4949
3.86M
    default:
4950
        /*
4951
         * Accumulate characters until end of token is found.  Then attempt to
4952
         * match this token as a reserved word.  If a match is found, return the
4953
         * type.  Else it is a label.
4954
         */
4955
3.86M
        if (!is_labelchar(ch))
4956
3.48M
            return LABEL;
4957
374k
        hash += tolower(ch);
4958
375k
      more:
4959
1.45M
        while (is_labelchar(ch_next = netsnmp_getc(fp))) {
4960
1.08M
            hash += tolower(ch_next);
4961
1.08M
            if (cp - token < maxtlen - 1)
4962
1.08M
                *cp++ = ch_next;
4963
0
            else
4964
0
                too_long = 1;
4965
1.08M
        }
4966
375k
        ungetc(ch_next, fp);
4967
375k
        *cp = '\0';
4968
4969
375k
        if (too_long)
4970
0
            print_error("Warning: token too long", token, CONTINUE);
4971
1.56M
        for (tp = buckets[BUCKET(hash)]; tp; tp = tp->next) {
4972
1.20M
            if ((tp->hash == hash) && (!label_compare(tp->name, token)))
4973
16.6k
                break;
4974
1.20M
        }
4975
375k
        if (tp) {
4976
16.6k
            if (tp->token != CONTINUE)
4977
15.7k
                return (tp->token);
4978
841
            while (isspace((ch_next = netsnmp_getc(fp))))
4979
2.37k
                if (ch_next == '\n')
4980
806
                    mibLine++;
4981
841
            if (ch_next == EOF)
4982
5
                return ENDOFFILE;
4983
836
            if (isalnum(ch_next)) {
4984
471
                *cp++ = ch_next;
4985
471
                hash += tolower(ch_next);
4986
471
                goto more;
4987
471
            }
4988
836
        }
4989
359k
        if (token[0] == '-' || isdigit((unsigned char)(token[0]))) {
4990
118k
            for (cp = token + 1; *cp; cp++)
4991
65.2k
                if (!isdigit((unsigned char)(*cp)))
4992
3.39k
                    return LABEL;
4993
53.6k
            return NUMBER;
4994
57.0k
        }
4995
301k
        return LABEL;
4996
4.03M
    }
4997
4.03M
}
4998
4999
netsnmp_feature_child_of(parse_get_token, netsnmp_unused);
5000
#ifndef NETSNMP_FEATURE_REMOVE_PARSE_GET_TOKEN
5001
int
5002
snmp_get_token(FILE * fp, char *token, int maxtlen)
5003
0
{
5004
0
    return get_token(fp, token, maxtlen);
5005
0
}
5006
#endif /* NETSNMP_FEATURE_REMOVE_PARSE_GET_TOKEN */
5007
5008
int
5009
add_mibfile(const char* tmpstr, const char* d_name)
5010
17.2k
{
5011
17.2k
    FILE           *fp;
5012
17.2k
    char            token[MAXTOKEN], token2[MAXTOKEN];
5013
5014
    /*
5015
     * which module is this 
5016
     */
5017
17.2k
    if ((fp = fopen(tmpstr, "r")) == NULL) {
5018
0
        snmp_log_perror(tmpstr);
5019
0
        return 1;
5020
0
    }
5021
17.2k
    DEBUGMSGTL(("parse-mibs", "Checking file: %s...\n",
5022
17.2k
                tmpstr));
5023
17.2k
    mibLine = 1;
5024
17.2k
    File = tmpstr;
5025
17.2k
    if (get_token(fp, token, MAXTOKEN) != LABEL) {
5026
10.8k
      fclose(fp);
5027
10.8k
      return 1;
5028
10.8k
    }
5029
    /*
5030
     * simple test for this being a MIB 
5031
     */
5032
6.37k
    if (get_token(fp, token2, MAXTOKEN) == DEFINITIONS) {
5033
4.72k
        new_module(token, tmpstr);
5034
4.72k
        fclose(fp);
5035
4.72k
        return 0;
5036
4.72k
    } else {
5037
1.64k
        fclose(fp);
5038
1.64k
        return 1;
5039
1.64k
    }
5040
6.37k
}
5041
5042
static int elemcmp(const void *a, const void *b)
5043
17.6k
{
5044
17.6k
    const char *const *s1 = a, *const *s2 = b;
5045
5046
17.6k
    return strcmp(*s1, *s2);
5047
17.6k
}
5048
5049
/*
5050
 * Scan a directory and return all filenames found as an array of pointers to
5051
 * directory entries (@result).
5052
 */
5053
static int scan_directory(char ***result, const char *dirname)
5054
3.41k
{
5055
3.41k
    DIR            *dir, *dir2;
5056
3.41k
    struct dirent  *file;
5057
3.41k
    char          **filenames = NULL;
5058
3.41k
    int             fname_len, i, filename_count = 0, array_size = 0;
5059
3.41k
    char           *tmpstr;
5060
5061
3.41k
    *result = NULL;
5062
5063
3.41k
    dir = opendir(dirname);
5064
3.41k
    if (!dir)
5065
64
        return -1;
5066
5067
30.6k
    while ((file = readdir(dir))) {
5068
        /*
5069
         * Only parse file names that don't begin with a '.'
5070
         * Also skip files ending in '~', or starting/ending
5071
         * with '#' which are typically editor backup files.
5072
         */
5073
27.2k
        fname_len = strlen(file->d_name);
5074
27.2k
        if (fname_len > 0 && file->d_name[0] != '.'
5075
20.5k
            && file->d_name[0] != '#'
5076
20.5k
            && file->d_name[fname_len-1] != '#'
5077
20.5k
            && file->d_name[fname_len-1] != '~') {
5078
20.5k
            if (asprintf(&tmpstr, "%s/%s", dirname, file->d_name) < 0)
5079
0
                continue;
5080
20.5k
            dir2 = opendir(tmpstr);
5081
20.5k
            if (dir2) {
5082
                /* file is a directory, don't read it */
5083
6.69k
                closedir(dir2);
5084
13.8k
            } else {
5085
13.8k
                if (filename_count >= array_size) {
5086
3.34k
                    char **new_filenames;
5087
5088
3.34k
                    array_size = (array_size + 16) * 2;
5089
3.34k
                    new_filenames = realloc(filenames,
5090
3.34k
                                        array_size * sizeof(filenames[0]));
5091
3.34k
                    if (!new_filenames) {
5092
0
                        free(tmpstr);
5093
0
                        for (i = 0; i < filename_count; i++)
5094
0
                            free(filenames[i]);
5095
0
                        free(filenames);
5096
0
                        closedir(dir);
5097
0
                        return -1;
5098
0
                    }
5099
3.34k
                    filenames = new_filenames;
5100
3.34k
                }
5101
13.8k
                filenames[filename_count++] = tmpstr;
5102
13.8k
                tmpstr = NULL;
5103
13.8k
            }
5104
20.5k
            free(tmpstr);
5105
20.5k
        }
5106
27.2k
    }
5107
3.34k
    closedir(dir);
5108
5109
3.34k
    if (filenames)
5110
3.34k
        qsort(filenames, filename_count, sizeof(filenames[0]), elemcmp);
5111
3.34k
    *result = filenames;
5112
5113
3.34k
    return filename_count;
5114
3.34k
}
5115
5116
/* For Win32 platforms, the directory does not maintain a last modification
5117
 * date that we can compare with the modification date of the .index file.
5118
 * Therefore there is no way to know whether any .index file is valid.
5119
 * This is the reason for the #if !(defined(WIN32) || defined(cygwin))
5120
 * in the add_mibdir function
5121
 */
5122
int
5123
add_mibdir(const char *dirname)
5124
3.41k
{
5125
3.41k
    const char     *oldFile = File;
5126
3.41k
    int             oldLine = mibLine;
5127
3.41k
    char          **filenames;
5128
3.41k
    int             count = 0;
5129
3.41k
    int             filename_count, i;
5130
5131
3.41k
    DEBUGMSGTL(("parse-mibs", "Scanning directory %s\n", dirname));
5132
5133
3.41k
    filename_count = scan_directory(&filenames, dirname);
5134
5135
3.41k
    if (filename_count >= 0) {
5136
17.2k
        for (i = 0; i < filename_count; i++) {
5137
13.8k
            if (add_mibfile(filenames[i], strrchr(filenames[i], '/')) == 0)
5138
2.36k
                count++;
5139
13.8k
      free(filenames[i]);
5140
13.8k
        }
5141
3.34k
        File = oldFile;
5142
3.34k
        mibLine = oldLine;
5143
3.34k
        free(filenames);
5144
3.34k
        return (count);
5145
3.34k
    }
5146
64
    else
5147
64
        DEBUGMSGTL(("parse-mibs","cannot open MIB directory %s\n", dirname));
5148
5149
64
    return (-1);
5150
3.41k
}
5151
5152
5153
/*
5154
 * Returns the root of the whole tree
5155
 *   (for backwards compatability)
5156
 */
5157
struct tree    *
5158
read_mib(const char *filename)
5159
3.17k
{
5160
3.17k
    FILE           *fp;
5161
3.17k
    char            token[MAXTOKEN];
5162
3.17k
    const char     *oldFile = File;
5163
3.17k
    int             oldLine = mibLine;
5164
5165
3.17k
    fp = fopen(filename, "r");
5166
3.17k
    if (fp == NULL) {
5167
430
        snmp_log_perror(filename);
5168
430
        return NULL;
5169
430
    }
5170
2.74k
    mibLine = 1;
5171
2.74k
    File = filename;
5172
2.74k
    DEBUGMSGTL(("parse-mibs", "Parsing file: %s...\n", filename));
5173
2.74k
    if (get_token(fp, token, MAXTOKEN) != LABEL) {
5174
304
      snmp_log(LOG_ERR, "Failed to parse MIB file %s\n", filename);
5175
304
      fclose(fp);
5176
304
      File = oldFile;
5177
304
      mibLine = oldLine;
5178
304
      return NULL;
5179
304
    }
5180
2.43k
    fclose(fp);
5181
2.43k
    new_module(token, filename);
5182
2.43k
    (void) netsnmp_read_module(token);
5183
5184
2.43k
    File = oldFile;
5185
2.43k
    mibLine = oldLine;
5186
2.43k
    return tree_head;
5187
2.74k
}
5188
5189
5190
struct tree    *
5191
read_all_mibs(void)
5192
0
{
5193
0
    struct module  *mp;
5194
5195
0
    for (mp = module_head; mp; mp = mp->next)
5196
0
        if (mp->no_imports == -1)
5197
0
            netsnmp_read_module(mp->name);
5198
0
    adopt_orphans();
5199
5200
    /* If entered the syntax error loop in "read_module()" */
5201
0
    if (gLoop == 1) {
5202
0
        gLoop = 0;
5203
0
        free(gpMibErrorString);
5204
0
        gpMibErrorString = NULL;
5205
0
        if (asprintf(&gpMibErrorString, "Error in parsing MIB module(s): %s !"
5206
0
                     " Unable to load corresponding MIB(s)", gMibNames) < 0) {
5207
0
            snmp_log(LOG_CRIT,
5208
0
                     "failed to allocated memory for gpMibErrorString\n");
5209
0
        }
5210
0
    }
5211
5212
    /* Caller's responsibility to free this memory */
5213
0
    tree_head->parseErrorString = gpMibErrorString;
5214
  
5215
0
    return tree_head;
5216
0
}
5217
5218
5219
#ifdef TEST
5220
int main(int argc, char *argv[])
5221
{
5222
    int             i;
5223
    struct tree    *tp;
5224
    netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_WARNINGS, 2);
5225
5226
    netsnmp_init_mib();
5227
5228
    if (argc == 1)
5229
        (void) read_all_mibs();
5230
    else
5231
        for (i = 1; i < argc; i++)
5232
            read_mib(argv[i]);
5233
5234
    for (tp = tree_head; tp; tp = tp->next_peer)
5235
        print_subtree(stdout, tp, 0);
5236
    free_tree(tree_head);
5237
5238
    return 0;
5239
}
5240
#endif                          /* TEST */
5241
5242
static int
5243
parseQuoteString(FILE * fp, char *token, int maxtlen)
5244
4.20k
{
5245
4.20k
    register int    ch;
5246
4.20k
    int             count = 0;
5247
4.20k
    int             too_long = 0;
5248
4.20k
    char           *token_start = token;
5249
5250
2.92M
    for (ch = netsnmp_getc(fp); ch != EOF; ch = netsnmp_getc(fp)) {
5251
2.92M
        if (ch == '\r')
5252
874
            continue;
5253
2.92M
        if (ch == '\n') {
5254
9.50k
            mibLine++;
5255
2.91M
        } else if (ch == '"') {
5256
3.86k
            netsnmp_assert(token - token_start < maxtlen);
5257
3.86k
            *token = '\0';
5258
3.86k
            if (too_long && netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, 
5259
1.53k
             NETSNMP_DS_LIB_MIB_WARNINGS) > 1) {
5260
                /*
5261
                 * show short form for brevity sake 
5262
                 */
5263
0
                int             truncate_at = SNMP_MIN(50, maxtlen - 1);
5264
0
                char            ch_save = *(token_start + truncate_at);
5265
5266
0
                *(token_start + truncate_at) = '\0';
5267
0
                print_error("Warning: string too long",
5268
0
                            token_start, QUOTESTRING);
5269
0
                *(token_start + truncate_at) = ch_save;
5270
0
            }
5271
3.86k
            return QUOTESTRING;
5272
3.86k
        }
5273
        /*
5274
         * maximum description length check.  If greater, keep parsing
5275
         * but truncate the string 
5276
         */
5277
2.92M
        if (++count < maxtlen)
5278
275k
            *token++ = ch;
5279
2.64M
        else
5280
2.64M
            too_long = 1;
5281
2.92M
    }
5282
5283
337
    return 0;
5284
4.20k
}
5285
5286
/*
5287
 * struct index_list *
5288
 * getIndexes(FILE *fp):
5289
 *   This routine parses a string like  { blah blah blah } and returns a
5290
 *   list of the strings enclosed within it.
5291
 *
5292
 */
5293
static struct index_list *
5294
getIndexes(FILE * fp, struct index_list **retp)
5295
0
{
5296
0
    int             type;
5297
0
    char            token[MAXTOKEN];
5298
0
    char            nextIsImplied = 0;
5299
5300
0
    struct index_list *mylist = NULL;
5301
0
    struct index_list **mypp = &mylist;
5302
5303
0
    free_indexes(retp);
5304
5305
0
    type = get_token(fp, token, MAXTOKEN);
5306
5307
0
    if (type != LEFTBRACKET) {
5308
0
        return NULL;
5309
0
    }
5310
5311
0
    type = get_token(fp, token, MAXTOKEN);
5312
0
    while (type != RIGHTBRACKET && type != ENDOFFILE) {
5313
0
        if ((type == LABEL) || (type & SYNTAX_MASK)) {
5314
0
            *mypp = calloc(1, sizeof(struct index_list));
5315
0
            if (*mypp) {
5316
0
                (*mypp)->ilabel = strdup(token);
5317
0
                (*mypp)->isimplied = nextIsImplied;
5318
0
                mypp = &(*mypp)->next;
5319
0
                nextIsImplied = 0;
5320
0
            }
5321
0
        } else if (type == IMPLIED) {
5322
0
            nextIsImplied = 1;
5323
0
        }
5324
0
        type = get_token(fp, token, MAXTOKEN);
5325
0
    }
5326
5327
0
    *retp = mylist;
5328
0
    return mylist;
5329
0
}
5330
5331
static struct varbind_list *
5332
getVarbinds(FILE * fp, struct varbind_list **retp)
5333
41
{
5334
41
    int             type;
5335
41
    char            token[MAXTOKEN];
5336
5337
41
    struct varbind_list *mylist = NULL;
5338
41
    struct varbind_list **mypp = &mylist;
5339
5340
41
    free_varbinds(retp);
5341
5342
41
    type = get_token(fp, token, MAXTOKEN);
5343
5344
41
    if (type != LEFTBRACKET) {
5345
9
        return NULL;
5346
9
    }
5347
5348
32
    type = get_token(fp, token, MAXTOKEN);
5349
215
    while (type != RIGHTBRACKET && type != ENDOFFILE) {
5350
183
        if ((type == LABEL) || (type & SYNTAX_MASK)) {
5351
126
            *mypp = calloc(1, sizeof(struct varbind_list));
5352
126
            if (*mypp) {
5353
126
                (*mypp)->vblabel = strdup(token);
5354
126
                mypp = &(*mypp)->next;
5355
126
            }
5356
126
        }
5357
183
        type = get_token(fp, token, MAXTOKEN);
5358
183
    }
5359
5360
32
    *retp = mylist;
5361
32
    return mylist;
5362
41
}
5363
5364
static void
5365
free_indexes(struct index_list **spp)
5366
50.1k
{
5367
50.1k
    if (spp && *spp) {
5368
0
        struct index_list *pp, *npp;
5369
5370
0
        pp = *spp;
5371
0
        *spp = NULL;
5372
5373
0
        while (pp) {
5374
0
            npp = pp->next;
5375
0
            if (pp->ilabel)
5376
0
                free(pp->ilabel);
5377
0
            free(pp);
5378
0
            pp = npp;
5379
0
        }
5380
0
    }
5381
50.1k
}
5382
5383
static void
5384
free_varbinds(struct varbind_list **spp)
5385
50.1k
{
5386
50.1k
    if (spp && *spp) {
5387
31
        struct varbind_list *pp, *npp;
5388
5389
31
        pp = *spp;
5390
31
        *spp = NULL;
5391
5392
157
        while (pp) {
5393
126
            npp = pp->next;
5394
126
            if (pp->vblabel)
5395
126
                free(pp->vblabel);
5396
126
            free(pp);
5397
126
            pp = npp;
5398
126
        }
5399
31
    }
5400
50.1k
}
5401
5402
static void
5403
free_ranges(struct range_list **spp)
5404
51.0k
{
5405
51.0k
    if (spp && *spp) {
5406
243
        struct range_list *pp, *npp;
5407
5408
243
        pp = *spp;
5409
243
        *spp = NULL;
5410
5411
563
        while (pp) {
5412
320
            npp = pp->next;
5413
320
            free(pp);
5414
320
            pp = npp;
5415
320
        }
5416
243
    }
5417
51.0k
}
5418
5419
static void
5420
free_enums(struct enum_list **spp)
5421
51.5k
{
5422
51.5k
    if (spp && *spp) {
5423
356
        struct enum_list *pp, *npp;
5424
5425
356
        pp = *spp;
5426
356
        *spp = NULL;
5427
5428
898
        while (pp) {
5429
542
            npp = pp->next;
5430
542
            if (pp->label)
5431
542
                free(pp->label);
5432
542
            free(pp);
5433
542
            pp = npp;
5434
542
        }
5435
356
    }
5436
51.5k
}
5437
5438
static struct enum_list *
5439
copy_enums(struct enum_list *sp)
5440
0
{
5441
0
    struct enum_list *xp = NULL, **spp = &xp;
5442
5443
0
    while (sp) {
5444
0
        *spp = calloc(1, sizeof(struct enum_list));
5445
0
        if (!*spp)
5446
0
            break;
5447
0
        (*spp)->label = strdup(sp->label);
5448
0
        (*spp)->value = sp->value;
5449
0
        spp = &(*spp)->next;
5450
0
        sp = sp->next;
5451
0
    }
5452
0
    return (xp);
5453
0
}
5454
5455
static struct range_list *
5456
copy_ranges(struct range_list *sp)
5457
0
{
5458
0
    struct range_list *xp = NULL, **spp = &xp;
5459
5460
0
    while (sp) {
5461
0
        *spp = calloc(1, sizeof(struct range_list));
5462
0
        if (!*spp)
5463
0
            break;
5464
0
        (*spp)->low = sp->low;
5465
0
        (*spp)->high = sp->high;
5466
0
        spp = &(*spp)->next;
5467
0
        sp = sp->next;
5468
0
    }
5469
0
    return (xp);
5470
0
}
5471
5472
/*
5473
 * This routine parses a string like  { blah blah blah } and returns OBJID if
5474
 * it is well formed, and NULL if not.
5475
 */
5476
static int
5477
tossObjectIdentifier(FILE * fp)
5478
0
{
5479
0
    int             type;
5480
0
    char            token[MAXTOKEN];
5481
0
    int             bracketcount = 1;
5482
5483
0
    type = get_token(fp, token, MAXTOKEN);
5484
5485
0
    if (type != LEFTBRACKET)
5486
0
        return 0;
5487
0
    while ((type != RIGHTBRACKET || bracketcount > 0) && type != ENDOFFILE) {
5488
0
        type = get_token(fp, token, MAXTOKEN);
5489
0
        if (type == LEFTBRACKET)
5490
0
            bracketcount++;
5491
0
        else if (type == RIGHTBRACKET)
5492
0
            bracketcount--;
5493
0
    }
5494
5495
0
    if (type == RIGHTBRACKET)
5496
0
        return OBJID;
5497
0
    else
5498
0
        return 0;
5499
0
}
5500
5501
/* Find node in any MIB module
5502
   Used by Perl modules   */
5503
struct tree    *
5504
find_node(const char *name, struct tree *subtree)
5505
0
{                               /* Unused */
5506
0
    return (find_tree_node(name, -1));
5507
0
}
5508
5509
netsnmp_feature_child_of(parse_find_node2, netsnmp_unused);
5510
#ifndef NETSNMP_FEATURE_REMOVE_PARSE_FIND_NODE2
5511
struct tree    *
5512
find_node2(const char *name, const char *module)
5513
0
{                               
5514
0
  int modid = -1;
5515
0
  if (module) {
5516
0
    modid = which_module(module);
5517
0
  }
5518
0
  if (modid == -1)
5519
0
  {
5520
0
    return (NULL);
5521
0
  }
5522
0
  return (find_tree_node(name, modid));
5523
0
}
5524
#endif /* NETSNMP_FEATURE_REMOVE_PARSE_FIND_NODE2 */
5525
5526
#ifndef NETSNMP_FEATURE_REMOVE_FIND_MODULE
5527
/* Used in the perl module */
5528
struct module  *
5529
find_module(int mid)
5530
0
{
5531
0
    struct module  *mp;
5532
5533
0
    for (mp = module_head; mp != NULL; mp = mp->next) {
5534
0
        if (mp->modid == mid)
5535
0
            break;
5536
0
    }
5537
0
    return mp;
5538
0
}
5539
#endif /* NETSNMP_FEATURE_REMOVE_FIND_MODULE */
5540
5541
5542
static char     leave_indent[256];
5543
static int      leave_was_simple;
5544
5545
static void
5546
print_mib_leaves(FILE * f, struct tree *tp, int width)
5547
0
{
5548
0
    struct tree    *ntp;
5549
0
    char           *ip = leave_indent + strlen(leave_indent) - 1;
5550
0
    char            last_ipch = *ip;
5551
5552
0
    *ip = '+';
5553
0
    if (tp->type == TYPE_OTHER || tp->type > TYPE_SIMPLE_LAST) {
5554
0
        fprintf(f, "%s--%s(%ld)\n", leave_indent, tp->label, tp->subid);
5555
0
        if (tp->indexes) {
5556
0
            struct index_list *xp = tp->indexes;
5557
0
            int             first = 1, cpos = 0, len, cmax =
5558
0
                width - strlen(leave_indent) - 12;
5559
0
            *ip = last_ipch;
5560
0
            fprintf(f, "%s  |  Index: ", leave_indent);
5561
0
            while (xp) {
5562
0
                if (first)
5563
0
                    first = 0;
5564
0
                else
5565
0
                    fprintf(f, ", ");
5566
0
                cpos += (len = strlen(xp->ilabel) + 2);
5567
0
                if (cpos > cmax) {
5568
0
                    fprintf(f, "\n");
5569
0
                    fprintf(f, "%s  |         ", leave_indent);
5570
0
                    cpos = len;
5571
0
                }
5572
0
                fprintf(f, "%s", xp->ilabel);
5573
0
                xp = xp->next;
5574
0
            }
5575
0
            fprintf(f, "\n");
5576
0
            *ip = '+';
5577
0
        }
5578
0
    } else {
5579
0
        const char     *acc, *typ;
5580
0
        int             size = 0;
5581
0
        switch (tp->access) {
5582
0
        case MIB_ACCESS_NOACCESS:
5583
0
            acc = "----";
5584
0
            break;
5585
0
        case MIB_ACCESS_READONLY:
5586
0
            acc = "-R--";
5587
0
            break;
5588
0
        case MIB_ACCESS_WRITEONLY:
5589
0
            acc = "--W-";
5590
0
            break;
5591
0
        case MIB_ACCESS_READWRITE:
5592
0
            acc = "-RW-";
5593
0
            break;
5594
0
        case MIB_ACCESS_NOTIFY:
5595
0
            acc = "---N";
5596
0
            break;
5597
0
        case MIB_ACCESS_CREATE:
5598
0
            acc = "CR--";
5599
0
            break;
5600
0
        default:
5601
0
            acc = "    ";
5602
0
            break;
5603
0
        }
5604
0
        switch (tp->type) {
5605
0
        case TYPE_OBJID:
5606
0
            typ = "ObjID    ";
5607
0
            break;
5608
0
        case TYPE_OCTETSTR:
5609
0
            typ = "String   ";
5610
0
            size = 1;
5611
0
            break;
5612
0
        case TYPE_INTEGER:
5613
0
            if (tp->enums)
5614
0
                typ = "EnumVal  ";
5615
0
            else
5616
0
                typ = "INTEGER  ";
5617
0
            break;
5618
0
        case TYPE_NETADDR:
5619
0
            typ = "NetAddr  ";
5620
0
            break;
5621
0
        case TYPE_IPADDR:
5622
0
            typ = "IpAddr   ";
5623
0
            break;
5624
0
        case TYPE_COUNTER:
5625
0
            typ = "Counter  ";
5626
0
            break;
5627
0
        case TYPE_GAUGE:
5628
0
            typ = "Gauge    ";
5629
0
            break;
5630
0
        case TYPE_TIMETICKS:
5631
0
            typ = "TimeTicks";
5632
0
            break;
5633
0
        case TYPE_OPAQUE:
5634
0
            typ = "Opaque   ";
5635
0
            size = 1;
5636
0
            break;
5637
0
        case TYPE_NULL:
5638
0
            typ = "Null     ";
5639
0
            break;
5640
0
        case TYPE_COUNTER64:
5641
0
            typ = "Counter64";
5642
0
            break;
5643
0
        case TYPE_BITSTRING:
5644
0
            typ = "BitString";
5645
0
            break;
5646
0
        case TYPE_NSAPADDRESS:
5647
0
            typ = "NsapAddr ";
5648
0
            break;
5649
0
        case TYPE_UNSIGNED32:
5650
0
            typ = "Unsigned ";
5651
0
            break;
5652
0
        case TYPE_UINTEGER:
5653
0
            typ = "UInteger ";
5654
0
            break;
5655
0
        case TYPE_INTEGER32:
5656
0
            typ = "Integer32";
5657
0
            break;
5658
0
        default:
5659
0
            typ = "         ";
5660
0
            break;
5661
0
        }
5662
0
        fprintf(f, "%s-- %s %s %s(%ld)\n", leave_indent, acc, typ,
5663
0
                tp->label, tp->subid);
5664
0
        *ip = last_ipch;
5665
0
        if (tp->tc_index >= 0)
5666
0
            fprintf(f, "%s        Textual Convention: %s\n", leave_indent,
5667
0
                    tclist[tp->tc_index].descriptor);
5668
0
        if (tp->enums) {
5669
0
            struct enum_list *ep = tp->enums;
5670
0
            int             cpos = 0, cmax =
5671
0
                width - strlen(leave_indent) - 16;
5672
0
            fprintf(f, "%s        Values: ", leave_indent);
5673
0
            while (ep) {
5674
0
                char            buf[80];
5675
0
                int             bufw;
5676
0
                if (ep != tp->enums)
5677
0
                    fprintf(f, ", ");
5678
0
                snprintf(buf, sizeof(buf), "%s(%d)", ep->label, ep->value);
5679
0
                cpos += (bufw = strlen(buf) + 2);
5680
0
                if (cpos >= cmax) {
5681
0
                    fprintf(f, "\n%s                ", leave_indent);
5682
0
                    cpos = bufw;
5683
0
                }
5684
0
                fprintf(f, "%s", buf);
5685
0
                ep = ep->next;
5686
0
            }
5687
0
            fprintf(f, "\n");
5688
0
        }
5689
0
        if (tp->ranges) {
5690
0
            struct range_list *rp = tp->ranges;
5691
0
            if (size)
5692
0
                fprintf(f, "%s        Size: ", leave_indent);
5693
0
            else
5694
0
                fprintf(f, "%s        Range: ", leave_indent);
5695
0
            while (rp) {
5696
0
                if (rp != tp->ranges)
5697
0
                    fprintf(f, " | ");
5698
0
                print_range_value(f, tp->type, rp);
5699
0
                rp = rp->next;
5700
0
            }
5701
0
            fprintf(f, "\n");
5702
0
        }
5703
0
    }
5704
0
    *ip = last_ipch;
5705
0
    strcat(leave_indent, "  |");
5706
0
    leave_was_simple = tp->type != TYPE_OTHER;
5707
5708
0
    {
5709
0
        int             i, j, count = 0;
5710
0
        struct leave {
5711
0
            oid             id;
5712
0
            struct tree    *tp;
5713
0
        }              *leaves, *lp;
5714
5715
0
        for (ntp = tp->child_list; ntp; ntp = ntp->next_peer)
5716
0
            count++;
5717
0
        if (count) {
5718
0
            leaves = calloc(count, sizeof(struct leave));
5719
0
            if (!leaves)
5720
0
                return;
5721
0
            for (ntp = tp->child_list, count = 0; ntp;
5722
0
                 ntp = ntp->next_peer) {
5723
0
                for (i = 0, lp = leaves; i < count; i++, lp++)
5724
0
                    if (lp->id >= ntp->subid)
5725
0
                        break;
5726
0
                for (j = count; j > i; j--)
5727
0
                    leaves[j] = leaves[j - 1];
5728
0
                lp->id = ntp->subid;
5729
0
                lp->tp = ntp;
5730
0
                count++;
5731
0
            }
5732
0
            for (i = 1, lp = leaves; i <= count; i++, lp++) {
5733
0
                if (!leave_was_simple || lp->tp->type == 0)
5734
0
                    fprintf(f, "%s\n", leave_indent);
5735
0
                if (i == count)
5736
0
                    ip[3] = ' ';
5737
0
                print_mib_leaves(f, lp->tp, width);
5738
0
            }
5739
0
            free(leaves);
5740
0
            leave_was_simple = 0;
5741
0
        }
5742
0
    }
5743
0
    ip[1] = 0;
5744
0
}
5745
5746
void
5747
print_mib_tree(FILE * f, struct tree *tp, int width)
5748
0
{
5749
0
    leave_indent[0] = ' ';
5750
0
    leave_indent[1] = 0;
5751
0
    leave_was_simple = 1;
5752
0
    print_mib_leaves(f, tp, width);
5753
0
}
5754
5755
5756
/*
5757
 * Merge the parsed object identifier with the existing node.
5758
 * If there is a problem with the identifier, release the existing node.
5759
 */
5760
static struct node *
5761
merge_parse_objectid(struct node *np, FILE * fp, char *name)
5762
235
{
5763
235
    struct node    *nnp;
5764
    /*
5765
     * printf("merge defval --> %s\n",np->defaultValue); 
5766
     */
5767
235
    nnp = parse_objectid(fp, name);
5768
235
    if (nnp) {
5769
5770
        /*
5771
         * apply last OID sub-identifier data to the information 
5772
         */
5773
        /*
5774
         * already collected for this node. 
5775
         */
5776
82
        struct node    *headp, *nextp;
5777
82
        int             ncount = 0;
5778
82
        nextp = headp = nnp;
5779
360
        while (nnp->next) {
5780
278
            nextp = nnp;
5781
278
            ncount++;
5782
278
            nnp = nnp->next;
5783
278
        }
5784
5785
82
        np->label = nnp->label;
5786
82
        np->subid = nnp->subid;
5787
82
        np->modid = nnp->modid;
5788
82
        np->parent = nnp->parent;
5789
82
  if (nnp->filename != NULL) {
5790
82
    free(nnp->filename);
5791
82
  }
5792
82
        free(nnp);
5793
5794
82
        if (ncount) {
5795
66
            nextp->next = np;
5796
66
            np = headp;
5797
66
        }
5798
153
    } else {
5799
153
        free_node(np);
5800
153
        np = NULL;
5801
153
    }
5802
5803
235
    return np;
5804
235
}
5805
5806
/*
5807
 * transfer data to tree from node
5808
 *
5809
 * move pointers for alloc'd data from np to tp.
5810
 * this prevents them from being freed when np is released.
5811
 * parent member is not moved.
5812
 *
5813
 * CAUTION: nodes may be repeats of existing tree nodes.
5814
 * This can happen especially when resolving IMPORT clauses.
5815
 *
5816
 */
5817
static void
5818
tree_from_node(struct tree *tp, struct node *np)
5819
9.21k
{
5820
9.21k
    free_partial_tree(tp, FALSE);
5821
5822
9.21k
    tp->label = np->label;
5823
9.21k
    np->label = NULL;
5824
9.21k
    tp->enums = np->enums;
5825
9.21k
    np->enums = NULL;
5826
9.21k
    tp->ranges = np->ranges;
5827
9.21k
    np->ranges = NULL;
5828
9.21k
    tp->indexes = np->indexes;
5829
9.21k
    np->indexes = NULL;
5830
9.21k
    tp->augments = np->augments;
5831
9.21k
    np->augments = NULL;
5832
9.21k
    tp->varbinds = np->varbinds;
5833
9.21k
    np->varbinds = NULL;
5834
9.21k
    tp->hint = np->hint;
5835
9.21k
    np->hint = NULL;
5836
9.21k
    tp->units = np->units;
5837
9.21k
    np->units = NULL;
5838
9.21k
    tp->description = np->description;
5839
9.21k
    np->description = NULL;
5840
9.21k
    tp->reference = np->reference;
5841
9.21k
    np->reference = NULL;
5842
9.21k
    tp->defaultValue = np->defaultValue;
5843
9.21k
    np->defaultValue = NULL;
5844
9.21k
    tp->subid = np->subid;
5845
9.21k
    tp->tc_index = np->tc_index;
5846
9.21k
    tp->type = translation_table[np->type];
5847
9.21k
    tp->access = np->access;
5848
9.21k
    tp->status = np->status;
5849
5850
9.21k
    set_function(tp);
5851
9.21k
}
5852
5853
#endif /* NETSNMP_DISABLE_MIB_LOADING */