Coverage Report

Created: 2026-01-16 07:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/net-snmp/snmplib/mib.c
Line
Count
Source
1
/*
2
 * mib.c
3
 *
4
 * $Id$
5
 *
6
 * Update: 1998-07-17 <jhy@gsu.edu>
7
 * Added print_oid_report* functions.
8
 *
9
 */
10
/* Portions of this file are subject to the following copyrights.  See
11
 * the Net-SNMP's COPYING file for more details and other copyrights
12
 * that may apply:
13
 */
14
/**********************************************************************
15
  Copyright 1988, 1989, 1991, 1992 by Carnegie Mellon University
16
17
                      All Rights Reserved
18
19
Permission to use, copy, modify, and distribute this software and its
20
documentation for any purpose and without fee is hereby granted,
21
provided that the above copyright notice appear in all copies and that
22
both that copyright notice and this permission notice appear in
23
supporting documentation, and that the name of CMU not be
24
used in advertising or publicity pertaining to distribution of the
25
software without specific, written prior permission.
26
27
CMU DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING
28
ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL
29
CMU BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR
30
ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
31
WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
32
ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
33
SOFTWARE.
34
******************************************************************/
35
/*
36
 * Copyright © 2003 Sun Microsystems, Inc. All rights reserved.
37
 * Use is subject to license terms specified in the COPYING file
38
 * distributed with the Net-SNMP package.
39
 *
40
 * Portions of this file are copyrighted by:
41
 * Copyright (c) 2016 VMware, Inc. All rights reserved.
42
 * Use is subject to license terms specified in the COPYING file
43
 * distributed with the Net-SNMP package.
44
 */
45
#include <net-snmp/net-snmp-config.h>
46
#include <net-snmp/net-snmp-features.h>
47
48
#include <stdio.h>
49
#include <ctype.h>
50
#include <sys/types.h>
51
52
#ifdef HAVE_DIRENT_H
53
#include <dirent.h>
54
#endif
55
56
#ifdef HAVE_INTTYPES_H
57
#include <inttypes.h>
58
#endif
59
#ifdef HAVE_NETINET_IN_H
60
#include <netinet/in.h>
61
#endif
62
#ifdef TIME_WITH_SYS_TIME
63
# include <sys/time.h>
64
# include <time.h>
65
#else
66
# ifdef HAVE_SYS_TIME_H
67
#  include <sys/time.h>
68
# else
69
#  include <time.h>
70
# endif
71
#endif
72
#ifdef HAVE_STRING_H
73
#include <string.h>
74
#else
75
#include <strings.h>
76
#endif
77
#ifdef HAVE_STDLIB_H
78
#include <stdlib.h>
79
#endif
80
#ifdef HAVE_SYS_SELECT_H
81
#include <sys/select.h>
82
#endif
83
84
#ifdef HAVE_UNISTD_H
85
#include <unistd.h>
86
#endif
87
88
#include <net-snmp/types.h>
89
#include <net-snmp/output_api.h>
90
#include <net-snmp/config_api.h>
91
#include <net-snmp/utilities.h>
92
93
#include <net-snmp/library/asn1.h>
94
#include <net-snmp/library/snmp_api.h>
95
#include <net-snmp/library/mib.h>
96
#include <net-snmp/library/parse.h>
97
#include <net-snmp/library/int64.h>
98
#include <net-snmp/library/snmp_client.h>
99
100
netsnmp_feature_child_of(mib_api, libnetsnmp);
101
netsnmp_feature_child_of(mib_strings_all, mib_api);
102
103
netsnmp_feature_child_of(mib_snprint, mib_strings_all);
104
netsnmp_feature_child_of(mib_snprint_description, mib_strings_all);
105
netsnmp_feature_child_of(mib_snprint_variable, mib_strings_all);
106
netsnmp_feature_child_of(mib_string_conversions, mib_strings_all);
107
netsnmp_feature_child_of(print_mib, mib_strings_all);
108
netsnmp_feature_child_of(snprint_objid, mib_strings_all);
109
netsnmp_feature_child_of(snprint_value, mib_strings_all);
110
111
netsnmp_feature_child_of(mib_to_asn_type, mib_api);
112
113
/** @defgroup mib_utilities mib parsing and datatype manipulation routines.
114
 *  @ingroup library
115
 *
116
 *  @{
117
 */
118
119
static char    *uptimeString(u_long, char *, size_t);
120
121
#ifndef NETSNMP_DISABLE_MIB_LOADING
122
static struct tree *_get_realloc_symbol(const oid * objid, size_t objidlen,
123
                                        struct tree *subtree,
124
                                        u_char ** buf, size_t * buf_len,
125
                                        size_t * out_len,
126
                                        int allow_realloc,
127
                                        int *buf_overflow,
128
                                        struct index_list *in_dices,
129
                                        size_t * end_of_known);
130
131
static int      print_tree_node(u_char ** buf, size_t * buf_len,
132
                                size_t * out_len, int allow_realloc,
133
                                struct tree *tp, int width);
134
static void     handle_mibdirs_conf(const char *token, char *line);
135
static void     handle_mibs_conf(const char *token, char *line);
136
static void     handle_mibfile_conf(const char *token, char *line);
137
#endif /*NETSNMP_DISABLE_MIB_LOADING */
138
139
static void     _oid_finish_printing(const oid * objid, size_t objidlen,
140
                                     u_char ** buf, size_t * buf_len,
141
                                     size_t * out_len,
142
                                     int allow_realloc, int *buf_overflow);
143
144
/*
145
 * helper functions for get_module_node 
146
 */
147
#ifndef NETSNMP_DISABLE_MIB_LOADING
148
static int      node_to_oid(struct tree *, oid *, size_t *);
149
static int      _add_strings_to_oid(struct tree *, char *,
150
                                    oid *, size_t *, size_t);
151
#else
152
static int      _add_strings_to_oid(void *, char *,
153
                                    oid *, size_t *, size_t);
154
#endif /* NETSNMP_DISABLE_MIB_LOADING */
155
156
#ifndef NETSNMP_DISABLE_MIB_LOADING
157
NETSNMP_IMPORT struct tree *tree_head;
158
static struct tree *tree_top;
159
160
NETSNMP_IMPORT struct tree *Mib;
161
struct tree    *Mib;            /* Backwards compatibility */
162
#endif /* NETSNMP_DISABLE_MIB_LOADING */
163
164
static char     Standard_Prefix[] = ".1.3.6.1.2.1";
165
166
/*
167
 * Set default here as some uses of read_objid require valid pointer. 
168
 */
169
#ifndef NETSNMP_DISABLE_MIB_LOADING
170
static char    *Prefix = &Standard_Prefix[0];
171
#endif /* NETSNMP_DISABLE_MIB_LOADING */
172
typedef struct _PrefixList {
173
    const char     *str;
174
    int             len;
175
}              *PrefixListPtr, PrefixList;
176
177
/*
178
 * Here are the prefix strings.
179
 * Note that the first one finds the value of Prefix or Standard_Prefix.
180
 * Any of these MAY start with period; all will NOT end with period.
181
 * Period is added where needed.  See use of Prefix in this module.
182
 */
183
PrefixList      mib_prefixes[] = {
184
    {&Standard_Prefix[0]},      /* placeholder for Prefix data */
185
    {".iso.org.dod.internet.mgmt.mib-2"},
186
    {".iso.org.dod.internet.experimental"},
187
    {".iso.org.dod.internet.private"},
188
    {".iso.org.dod.internet.snmpParties"},
189
    {".iso.org.dod.internet.snmpSecrets"},
190
    {NULL, 0}                   /* end of list */
191
};
192
193
enum inet_address_type {
194
    IPV4 = 1,
195
    IPV6 = 2,
196
    IPV4Z = 3,
197
    IPV6Z = 4,
198
    DNS = 16
199
};
200
201
202
/**
203
 * @internal
204
 * Converts timeticks to hours, minutes, seconds string.
205
 *
206
 * @param timeticks    The timeticks to convert.
207
 * @param buf          Buffer to write to, has to be at 
208
 *                     least 40 Bytes large.
209
 *       
210
 * @return The buffer.
211
 */
212
static char    *
213
uptimeString(u_long timeticks, char *buf, size_t buflen)
214
2
{
215
2
    int             centisecs, seconds, minutes, hours, days;
216
217
2
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NUMERIC_TIMETICKS)) {
218
0
        snprintf(buf, buflen, "%lu", timeticks);
219
0
        return buf;
220
0
    }
221
222
223
2
    centisecs = timeticks % 100;
224
2
    timeticks /= 100;
225
2
    days = timeticks / (60 * 60 * 24);
226
2
    timeticks %= (60 * 60 * 24);
227
228
2
    hours = timeticks / (60 * 60);
229
2
    timeticks %= (60 * 60);
230
231
2
    minutes = timeticks / 60;
232
2
    seconds = timeticks % 60;
233
234
2
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT))
235
0
        snprintf(buf, buflen, "%d:%d:%02d:%02d.%02d",
236
0
                days, hours, minutes, seconds, centisecs);
237
2
    else {
238
2
        if (days == 0) {
239
2
            snprintf(buf, buflen, "%d:%02d:%02d.%02d",
240
2
                    hours, minutes, seconds, centisecs);
241
2
        } else if (days == 1) {
242
0
            snprintf(buf, buflen, "%d day, %d:%02d:%02d.%02d",
243
0
                    days, hours, minutes, seconds, centisecs);
244
0
        } else {
245
0
            snprintf(buf, buflen, "%d days, %d:%02d:%02d.%02d",
246
0
                    days, hours, minutes, seconds, centisecs);
247
0
        }
248
2
    }
249
2
    return buf;
250
2
}
251
252
253
254
/**
255
 * @internal
256
 * Prints the character pointed to if in human-readable ASCII range,
257
 * otherwise prints a dot.
258
 *
259
 * @param buf Buffer to print the character to.
260
 * @param ch  Character to print.
261
 */
262
static void
263
sprint_char(char *buf, const u_char ch)
264
0
{
265
0
    if (isprint(ch) || isspace(ch)) {
266
0
        sprintf(buf, "%c", (int) ch);
267
0
    } else {
268
0
        sprintf(buf, ".");
269
0
    }
270
0
}
271
272
273
274
/**
275
 * Prints a hexadecimal string into a buffer.
276
 *
277
 * The characters pointed by *cp are encoded as hexadecimal string.
278
 *
279
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
280
 * needed size. (Note: *buf may change due to this.)
281
 * 
282
 * @param buf      address of the buffer to print to.
283
 * @param buf_len  address to an integer containing the size of buf.
284
 * @param out_len  incremented by the number of characters printed.
285
 * @param allow_realloc if not zero reallocate the buffer to fit the 
286
 *                      needed size.
287
 * @param cp       the array of characters to encode.
288
 * @param line_len the array length of cp.
289
 * 
290
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
291
 *         small when not allowed to realloc.)
292
 */
293
int
294
_sprint_hexstring_line(u_char ** buf, size_t * buf_len, size_t * out_len,
295
                       int allow_realloc, const u_char * cp, size_t line_len)
296
5.47k
{
297
5.47k
    const u_char   *tp;
298
5.47k
    const u_char   *cp2 = cp;
299
5.47k
    size_t          lenleft = line_len;
300
301
    /*
302
     * Make sure there's enough room for the hex output....
303
     */
304
10.3k
    while ((*out_len + line_len*3+1) >= *buf_len) {
305
4.87k
        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
306
0
            return 0;
307
0
        }
308
4.87k
    }
309
310
    /*
311
     * .... and display the hex values themselves....
312
     */
313
7.43k
    for (; lenleft >= 8; lenleft-=8) {
314
1.96k
        sprintf((char *) (*buf + *out_len),
315
1.96k
                "%02X %02X %02X %02X %02X %02X %02X %02X ", cp[0], cp[1],
316
1.96k
                cp[2], cp[3], cp[4], cp[5], cp[6], cp[7]);
317
1.96k
        *out_len += strlen((char *) (*buf + *out_len));
318
1.96k
        cp       += 8;
319
1.96k
    }
320
22.9k
    for (; lenleft > 0; lenleft--) {
321
17.5k
        sprintf((char *) (*buf + *out_len), "%02X ", *cp++);
322
17.5k
        *out_len += strlen((char *) (*buf + *out_len));
323
17.5k
    }
324
325
    /*
326
     * .... plus (optionally) do the same for the ASCII equivalent.
327
     */
328
5.47k
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_HEX_TEXT)) {
329
0
        while ((*out_len + line_len+5) >= *buf_len) {
330
0
            if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
331
0
                return 0;
332
0
            }
333
0
        }
334
0
        sprintf((char *) (*buf + *out_len), "  [");
335
0
        *out_len += strlen((char *) (*buf + *out_len));
336
0
        for (tp = cp2; tp < cp; tp++) {
337
0
            sprint_char((char *) (*buf + *out_len), *tp);
338
0
            (*out_len)++;
339
0
        }
340
0
        sprintf((char *) (*buf + *out_len), "]");
341
0
        *out_len += strlen((char *) (*buf + *out_len));
342
0
    }
343
5.47k
    return 1;
344
5.47k
}
345
346
int
347
sprint_realloc_hexstring(u_char ** buf, size_t * buf_len, size_t * out_len,
348
                         int allow_realloc, const u_char * cp, size_t len)
349
4.96k
{
350
4.96k
    int line_len = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID,
351
4.96k
                                      NETSNMP_DS_LIB_HEX_OUTPUT_LENGTH);
352
4.96k
    if (line_len <= 0)
353
144
        line_len = len;
354
355
5.47k
    for (; (int)len > line_len; len -= line_len) {
356
510
        if(!_sprint_hexstring_line(buf, buf_len, out_len, allow_realloc, cp, line_len))
357
0
            return 0;
358
510
        *(*buf + (*out_len)++) = '\n';
359
510
        *(*buf + *out_len) = 0;
360
510
        cp += line_len;
361
510
    }
362
4.96k
    if(!_sprint_hexstring_line(buf, buf_len, out_len, allow_realloc, cp, len))
363
0
        return 0;
364
4.96k
    *(*buf + *out_len) = 0;
365
4.96k
    return 1;
366
4.96k
}
367
368
369
370
/**
371
 * Prints an ascii string into a buffer.
372
 *
373
 * The characters pointed by *cp are encoded as an ascii string.
374
 * 
375
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
376
 * needed size. (Note: *buf may change due to this.)
377
 * 
378
 * @param buf      address of the buffer to print to.
379
 * @param buf_len  address to an integer containing the size of buf.
380
 * @param out_len  incremented by the number of characters printed.
381
 * @param allow_realloc if not zero reallocate the buffer to fit the 
382
 *                      needed size.
383
 * @param cp       the array of characters to encode.
384
 * @param len      the array length of cp.
385
 * 
386
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
387
 *         small when not allowed to realloc.)
388
 */
389
int
390
sprint_realloc_asciistring(u_char ** buf, size_t * buf_len,
391
                           size_t * out_len, int allow_realloc,
392
                           const u_char * cp, size_t len)
393
1.21k
{
394
1.21k
    int             i;
395
396
11.9k
    for (i = 0; i < (int) len; i++) {
397
10.7k
        if (isprint(*cp) || isspace(*cp)) {
398
6.69k
            if (*cp == '\\' || *cp == '"') {
399
2.73k
                if ((*out_len >= *buf_len) &&
400
23
                    !(allow_realloc && snmp_realloc(buf, buf_len))) {
401
0
                    return 0;
402
0
                }
403
2.73k
                *(*buf + (*out_len)++) = '\\';
404
2.73k
            }
405
6.69k
            if ((*out_len >= *buf_len) &&
406
31
                !(allow_realloc && snmp_realloc(buf, buf_len))) {
407
0
                return 0;
408
0
            }
409
6.69k
            *(*buf + (*out_len)++) = *cp++;
410
6.69k
        } else {
411
4.04k
            if ((*out_len >= *buf_len) &&
412
16
                !(allow_realloc && snmp_realloc(buf, buf_len))) {
413
0
                return 0;
414
0
            }
415
4.04k
            *(*buf + (*out_len)++) = '.';
416
4.04k
            cp++;
417
4.04k
        }
418
10.7k
    }
419
1.21k
    if ((*out_len >= *buf_len) &&
420
38
        !(allow_realloc && snmp_realloc(buf, buf_len))) {
421
0
        return 0;
422
0
    }
423
1.21k
    *(*buf + *out_len) = '\0';
424
1.21k
    return 1;
425
1.21k
}
426
427
/**
428
 * Prints an octet string into a buffer.
429
 *
430
 * The variable var is encoded as octet string.
431
 * 
432
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
433
 * needed size. (Note: *buf may change due to this.)
434
 * 
435
 * @param buf      Address of the buffer to print to.
436
 * @param buf_len  Address to an integer containing the size of buf.
437
 * @param out_len  Incremented by the number of characters printed.
438
 * @param allow_realloc if not zero reallocate the buffer to fit the 
439
 *                      needed size.
440
 * @param var      The variable to encode.
441
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
442
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
443
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
444
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
445
 * 
446
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
447
 *         small when not allowed to realloc.)
448
 */
449
int
450
sprint_realloc_octet_string(u_char ** buf, size_t * buf_len,
451
                            size_t * out_len, int allow_realloc,
452
                            const netsnmp_variable_list * var,
453
                            const struct enum_list *enums, const char *hint,
454
                            const char *units)
455
157
{
456
157
    size_t          saved_out_len = *out_len;
457
157
    const char     *saved_hint = hint;
458
157
    int             hex = 0, x = 0;
459
157
    u_char         *cp;
460
157
    int             output_format, cnt;
461
462
157
    if (var->type != ASN_OCTET_STR) {
463
0
        if (!netsnmp_ds_get_boolean(
464
0
                    NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
465
0
            const char      str[] = "Wrong Type (should be OCTET STRING): ";
466
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
467
0
                return 0;
468
0
        }
469
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
470
0
                                          allow_realloc, var, NULL, NULL,
471
0
                                          NULL);
472
0
    }
473
474
475
157
    if (hint) {
476
0
        int             repeat, width = 1;
477
0
        long            value;
478
0
        char            code = 'd', separ = 0, term = 0, ch, intbuf[32];
479
0
#define HEX2DIGIT_NEED_INIT 3
480
0
        char            hex2digit = HEX2DIGIT_NEED_INIT;
481
0
        u_char         *ecp;
482
483
0
        if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
484
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
485
0
                              "STRING: ")) {
486
0
                return 0;
487
0
            }
488
0
        }
489
0
        cp = var->val.string;
490
0
        ecp = cp + var->val_len;
491
492
0
        while (cp < ecp) {
493
0
            repeat = 1;
494
0
            if (*hint) {
495
0
                if (*hint == '*') {
496
0
                    repeat = *cp++;
497
0
                    hint++;
498
0
                }
499
0
                width = 0;
500
0
                while ('0' <= *hint && *hint <= '9')
501
0
                    width = (width * 10) + (*hint++ - '0');
502
0
                code = *hint++;
503
0
                if ((ch = *hint) && ch != '*' && (ch < '0' || ch > '9')
504
0
                    && (width != 0
505
0
                        || (ch != 'x' && ch != 'd' && ch != 'o')))
506
0
                    separ = *hint++;
507
0
                else
508
0
                    separ = 0;
509
0
                if ((ch = *hint) && ch != '*' && (ch < '0' || ch > '9')
510
0
                    && (width != 0
511
0
                        || (ch != 'x' && ch != 'd' && ch != 'o')))
512
0
                    term = *hint++;
513
0
                else
514
0
                    term = 0;
515
0
                if (width == 0)  /* Handle malformed hint strings */
516
0
                    width = 1;
517
0
            }
518
519
0
            while (repeat && cp < ecp) {
520
0
                value = 0;
521
0
                if (code != 'a' && code != 't') {
522
0
                    for (x = 0; x < width; x++) {
523
0
                        value = value * 256 + *cp++;
524
0
                    }
525
0
                }
526
0
                switch (code) {
527
0
                case 'x':
528
0
                    if (HEX2DIGIT_NEED_INIT == hex2digit)
529
0
                        hex2digit = netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
530
0
                                                           NETSNMP_DS_LIB_2DIGIT_HEX_OUTPUT);
531
                    /*
532
                     * if value is < 16, it will be a single hex digit. If the
533
                     * width is 1 (we are outputting a byte at a time), pat it
534
                     * to 2 digits if NETSNMP_DS_LIB_2DIGIT_HEX_OUTPUT is set
535
                     * or all of the following are true:
536
                     *  - we do not have a separation character
537
                     *  - there is no hint left (or there never was a hint)
538
                     *
539
                     * e.g. for the data 0xAA01BB, would anyone really ever
540
                     * want the string "AA1BB"??
541
                     */
542
0
                    if (((value < 16) && (1 == width)) &&
543
0
                        (hex2digit || ((0 == separ) && (0 == *hint)))) {
544
0
                        sprintf(intbuf, "0%lx", value);
545
0
                    } else {
546
0
                        sprintf(intbuf, "%lx", value);
547
0
                    }
548
0
                    if (!snmp_cstrcat
549
0
                        (buf, buf_len, out_len, allow_realloc, intbuf)) {
550
0
                        return 0;
551
0
                    }
552
0
                    break;
553
0
                case 'd':
554
0
                    sprintf(intbuf, "%ld", value);
555
0
                    if (!snmp_cstrcat
556
0
                        (buf, buf_len, out_len, allow_realloc, intbuf)) {
557
0
                        return 0;
558
0
                    }
559
0
                    break;
560
0
                case 'o':
561
0
                    sprintf(intbuf, "%lo", value);
562
0
                    if (!snmp_cstrcat
563
0
                        (buf, buf_len, out_len, allow_realloc, intbuf)) {
564
0
                        return 0;
565
0
                    }
566
0
                    break;
567
0
                case 't': /* new in rfc 3411 */
568
0
                case 'a':
569
                    /* A string hint gives the max size - we may not need this much */
570
0
                    cnt = SNMP_MIN(width, ecp - cp);
571
0
                    while ((*out_len + cnt + 1) > *buf_len) {
572
0
                        if (!allow_realloc || !snmp_realloc(buf, buf_len))
573
0
                            return 0;
574
0
                    }
575
0
                    if (memchr(cp, '\0', cnt) == NULL) {
576
                        /* No embedded '\0' - use memcpy() to preserve UTF-8 */
577
0
                        memcpy(*buf + *out_len, cp, cnt);
578
0
                        *out_len += cnt;
579
0
                        *(*buf + *out_len) = '\0';
580
0
                    } else if (!sprint_realloc_asciistring(buf, buf_len,
581
0
                                     out_len, allow_realloc, cp, cnt)) {
582
0
                        return 0;
583
0
                    }
584
0
                    cp += cnt;
585
0
                    break;
586
0
                default:
587
0
                    *out_len = saved_out_len;
588
0
                    if (snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
589
0
                                     "(Bad hint ignored: ")
590
0
                        && snmp_cstrcat(buf, buf_len, out_len,
591
0
                                       allow_realloc, saved_hint)
592
0
                        && snmp_cstrcat(buf, buf_len, out_len,
593
0
                                       allow_realloc, ") ")) {
594
0
                        return sprint_realloc_octet_string(buf, buf_len,
595
0
                                                           out_len,
596
0
                                                           allow_realloc,
597
0
                                                           var, enums,
598
0
                                                           NULL, NULL);
599
0
                    } else {
600
0
                        return 0;
601
0
                    }
602
0
                }
603
604
0
                if (cp < ecp && separ) {
605
0
                    while ((*out_len + 1) >= *buf_len) {
606
0
                        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
607
0
                            return 0;
608
0
                        }
609
0
                    }
610
0
                    *(*buf + *out_len) = separ;
611
0
                    (*out_len)++;
612
0
                    *(*buf + *out_len) = '\0';
613
0
                }
614
0
                repeat--;
615
0
            }
616
617
0
            if (term && cp < ecp) {
618
0
                while ((*out_len + 1) >= *buf_len) {
619
0
                    if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
620
0
                        return 0;
621
0
                    }
622
0
                }
623
0
                *(*buf + *out_len) = term;
624
0
                (*out_len)++;
625
0
                *(*buf + *out_len) = '\0';
626
0
            }
627
0
        }
628
629
0
        if (units) {
630
0
            return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
631
0
                    snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
632
0
        }
633
0
        if ((*out_len >= *buf_len) &&
634
0
            !(allow_realloc && snmp_realloc(buf, buf_len))) {
635
0
            return 0;
636
0
        }
637
0
        *(*buf + *out_len) = '\0';
638
639
0
        return 1;
640
0
    }
641
642
157
    output_format = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_STRING_OUTPUT_FORMAT);
643
157
    if (0 == output_format) {
644
157
        output_format = NETSNMP_STRING_OUTPUT_GUESS;
645
157
    }
646
157
    switch (output_format) {
647
157
    case NETSNMP_STRING_OUTPUT_GUESS:
648
157
        hex = 0;
649
4.84k
        for (cp = var->val.string, x = 0; x < (int) var->val_len; x++, cp++) {
650
4.68k
            if ((!isprint(*cp) || !isascii(*cp)) && !isspace(*cp)) {
651
556
                hex = 1;
652
556
            }
653
4.68k
        }
654
157
        break;
655
656
0
    case NETSNMP_STRING_OUTPUT_ASCII:
657
0
        hex = 0;
658
0
        break;
659
660
0
    case NETSNMP_STRING_OUTPUT_HEX:
661
0
        hex = 1;
662
0
        break;
663
157
    }
664
665
157
    if (var->val_len == 0) {
666
13
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"\"");
667
13
    }
668
669
144
    if (hex) {
670
85
        if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
671
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"")) {
672
0
                return 0;
673
0
            }
674
85
        } else {
675
85
            if (!snmp_cstrcat
676
85
                (buf, buf_len, out_len, allow_realloc, "Hex-STRING: ")) {
677
0
                return 0;
678
0
            }
679
85
        }
680
681
85
        if (!sprint_realloc_hexstring(buf, buf_len, out_len, allow_realloc,
682
85
                                      var->val.string, var->val_len)) {
683
0
            return 0;
684
0
        }
685
686
85
        if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
687
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"")) {
688
0
                return 0;
689
0
            }
690
0
        }
691
85
    } else {
692
59
        if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
693
59
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
694
59
                             "STRING: ")) {
695
0
                return 0;
696
0
            }
697
59
        }
698
59
        if (!snmp_cstrcat
699
59
            (buf, buf_len, out_len, allow_realloc, "\"")) {
700
0
            return 0;
701
0
        }
702
59
        if (!sprint_realloc_asciistring
703
59
            (buf, buf_len, out_len, allow_realloc, var->val.string,
704
59
             var->val_len)) {
705
0
            return 0;
706
0
        }
707
59
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"")) {
708
0
            return 0;
709
0
        }
710
59
    }
711
712
144
    if (units) {
713
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
714
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
715
0
    }
716
144
    return 1;
717
144
}
718
719
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
720
721
/**
722
 * Prints a float into a buffer.
723
 *
724
 * The variable var is encoded as a floating point value.
725
 * 
726
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
727
 * needed size. (Note: *buf may change due to this.)
728
 * 
729
 * @param buf      Address of the buffer to print to.
730
 * @param buf_len  Address to an integer containing the size of buf.
731
 * @param out_len  Incremented by the number of characters printed.
732
 * @param allow_realloc if not zero reallocate the buffer to fit the 
733
 *                      needed size.
734
 * @param var      The variable to encode.
735
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
736
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
737
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
738
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
739
 * 
740
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
741
 *         small when not allowed to realloc.)
742
 */
743
int
744
sprint_realloc_float(u_char ** buf, size_t * buf_len,
745
                     size_t * out_len, int allow_realloc,
746
                     const netsnmp_variable_list * var,
747
                     const struct enum_list *enums,
748
                     const char *hint, const char *units)
749
17
{
750
17
    char *printf_format_string = NULL;
751
752
17
    if (var->type != ASN_OPAQUE_FLOAT) {
753
0
        if (!netsnmp_ds_get_boolean(
754
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
755
0
            static const char str[] = "Wrong Type (should be Float): ";
756
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
757
0
                return 0;
758
0
        }
759
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
760
0
                                          allow_realloc, var, NULL, NULL,
761
0
                                          NULL);
762
0
    }
763
764
17
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
765
17
        if (!snmp_cstrcat
766
17
            (buf, buf_len, out_len, allow_realloc, "Opaque: Float: ")) {
767
0
            return 0;
768
0
        }
769
17
    }
770
771
772
    /*
773
     * How much space needed for max. length float?  128 is overkill.  
774
     */
775
776
27
    while ((*out_len + 128 + 1) >= *buf_len) {
777
10
        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
778
0
            return 0;
779
0
        }
780
10
    }
781
782
17
    printf_format_string = make_printf_format_string("%f");
783
17
    if (!printf_format_string) {
784
0
        return 0;
785
0
    }
786
17
    snprintf((char *)(*buf + *out_len), 128, printf_format_string, *var->val.floatVal);
787
17
    free(printf_format_string);
788
17
    *out_len += strlen((char *) (*buf + *out_len));
789
790
17
    if (units) {
791
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
792
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
793
0
    }
794
17
    return 1;
795
17
}
796
797
798
/**
799
 * Prints a double into a buffer.
800
 *
801
 * The variable var is encoded as a double precision floating point value.
802
 * 
803
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
804
 * needed size. (Note: *buf may change due to this.)
805
 * 
806
 * @param buf      Address of the buffer to print to.
807
 * @param buf_len  Address to an integer containing the size of buf.
808
 * @param out_len  Incremented by the number of characters printed.
809
 * @param allow_realloc if not zero reallocate the buffer to fit the 
810
 *                      needed size.
811
 * @param var      The variable to encode.
812
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
813
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
814
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
815
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
816
 * 
817
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
818
 *         small when not allowed to realloc.)
819
 */
820
int
821
sprint_realloc_double(u_char ** buf, size_t * buf_len,
822
                      size_t * out_len, int allow_realloc,
823
                      const netsnmp_variable_list * var,
824
                      const struct enum_list *enums,
825
                      const char *hint, const char *units)
826
15
{
827
15
    char *printf_format_string = NULL;
828
829
15
    if (var->type != ASN_OPAQUE_DOUBLE) {
830
0
        if (!netsnmp_ds_get_boolean(
831
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
832
0
            static const char str[] = "Wrong Type (should be Double): ";
833
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
834
0
                return 0;
835
0
        }
836
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
837
0
                                          allow_realloc, var, NULL, NULL,
838
0
                                          NULL);
839
0
    }
840
841
15
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
842
15
        if (!snmp_cstrcat
843
15
            (buf, buf_len, out_len, allow_realloc, "Opaque: Float: ")) {
844
0
            return 0;
845
0
        }
846
15
    }
847
848
    /*
849
     * How much space needed for max. length double?  128 is overkill.  
850
     */
851
852
24
    while ((*out_len + 128 + 1) >= *buf_len) {
853
9
        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
854
0
            return 0;
855
0
        }
856
9
    }
857
858
15
    printf_format_string = make_printf_format_string("%f");
859
15
    if (!printf_format_string) {
860
0
        return 0;
861
0
    }
862
15
    snprintf((char *)(*buf + *out_len), 128, printf_format_string, *var->val.doubleVal);
863
15
    free(printf_format_string);
864
15
    *out_len += strlen((char *) (*buf + *out_len));
865
866
15
    if (units) {
867
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
868
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
869
0
    }
870
15
    return 1;
871
15
}
872
873
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
874
875
876
/**
877
 * Prints a counter into a buffer.
878
 *
879
 * The variable var is encoded as a counter value.
880
 * 
881
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
882
 * needed size. (Note: *buf may change due to this.)
883
 * 
884
 * @param buf      Address of the buffer to print to.
885
 * @param buf_len  Address to an integer containing the size of buf.
886
 * @param out_len  Incremented by the number of characters printed.
887
 * @param allow_realloc if not zero reallocate the buffer to fit the 
888
 *                      needed size.
889
 * @param var      The variable to encode.
890
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
891
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
892
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
893
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
894
 * 
895
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
896
 *         small when not allowed to realloc.)
897
 */
898
int
899
sprint_realloc_counter64(u_char ** buf, size_t * buf_len, size_t * out_len,
900
                         int allow_realloc,
901
                         const netsnmp_variable_list * var,
902
                         const struct enum_list *enums,
903
                         const char *hint, const char *units)
904
2
{
905
2
    char            a64buf[I64CHARSZ + 1];
906
907
2
    if (var->type != ASN_COUNTER64
908
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
909
0
        && var->type != ASN_OPAQUE_COUNTER64
910
0
        && var->type != ASN_OPAQUE_I64 && var->type != ASN_OPAQUE_U64
911
2
#endif
912
2
        ) {
913
0
        if (!netsnmp_ds_get_boolean(
914
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
915
0
            static const char str[] = "Wrong Type (should be Counter64): ";
916
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
917
0
                return 0;
918
0
        }
919
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
920
0
                                          allow_realloc, var, NULL, NULL,
921
0
                                          NULL);
922
0
    }
923
924
2
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
925
2
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
926
2
        if (var->type != ASN_COUNTER64) {
927
0
            if (!snmp_cstrcat
928
0
                (buf, buf_len, out_len, allow_realloc, "Opaque: ")) {
929
0
                return 0;
930
0
            }
931
0
        }
932
2
#endif
933
2
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
934
2
        switch (var->type) {
935
0
        case ASN_OPAQUE_U64:
936
0
            if (!snmp_cstrcat
937
0
                (buf, buf_len, out_len, allow_realloc, "UInt64: ")) {
938
0
                return 0;
939
0
            }
940
0
            break;
941
0
        case ASN_OPAQUE_I64:
942
0
            if (!snmp_cstrcat
943
0
                (buf, buf_len, out_len, allow_realloc, "Int64: ")) {
944
0
                return 0;
945
0
            }
946
0
            break;
947
2
        case ASN_COUNTER64:
948
2
        case ASN_OPAQUE_COUNTER64:
949
2
#endif
950
2
            if (!snmp_cstrcat
951
2
                (buf, buf_len, out_len, allow_realloc, "Counter64: ")) {
952
0
                return 0;
953
0
            }
954
2
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
955
2
        }
956
2
#endif
957
2
    }
958
2
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
959
2
    if (var->type == ASN_OPAQUE_I64) {
960
0
        printI64(a64buf, var->val.counter64);
961
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, a64buf)) {
962
0
            return 0;
963
0
        }
964
2
    } else {
965
2
#endif
966
2
        printU64(a64buf, var->val.counter64);
967
2
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, a64buf)) {
968
0
            return 0;
969
0
        }
970
2
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
971
2
    }
972
2
#endif
973
974
2
    if (units) {
975
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
976
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
977
0
    }
978
2
    return 1;
979
2
}
980
981
982
/**
983
 * Prints an object identifier into a buffer.
984
 *
985
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
986
 * needed size. (Note: *buf may change due to this.)
987
 * 
988
 * @param buf      Address of the buffer to print to.
989
 * @param buf_len  Address to an integer containing the size of buf.
990
 * @param out_len  Incremented by the number of characters printed.
991
 * @param allow_realloc if not zero reallocate the buffer to fit the 
992
 *                      needed size.
993
 * @param var      The variable to encode.
994
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
995
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
996
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
997
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
998
 * 
999
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1000
 *         small when not allowed to realloc.)
1001
 */
1002
int
1003
sprint_realloc_opaque(u_char ** buf, size_t * buf_len,
1004
                      size_t * out_len, int allow_realloc,
1005
                      const netsnmp_variable_list * var,
1006
                      const struct enum_list *enums,
1007
                      const char *hint, const char *units)
1008
28
{
1009
28
    if (var->type != ASN_OPAQUE
1010
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
1011
0
        && var->type != ASN_OPAQUE_COUNTER64
1012
0
        && var->type != ASN_OPAQUE_U64
1013
0
        && var->type != ASN_OPAQUE_I64
1014
0
        && var->type != ASN_OPAQUE_FLOAT && var->type != ASN_OPAQUE_DOUBLE
1015
28
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
1016
28
        ) {
1017
0
        if (!netsnmp_ds_get_boolean(
1018
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1019
0
            static const char str[] = "Wrong Type (should be Opaque): ";
1020
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1021
0
                return 0;
1022
0
        }
1023
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1024
0
                                          allow_realloc, var, NULL, NULL,
1025
0
                                          NULL);
1026
0
    }
1027
1028
28
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
1029
28
    switch (var->type) {
1030
0
    case ASN_OPAQUE_COUNTER64:
1031
0
    case ASN_OPAQUE_U64:
1032
0
    case ASN_OPAQUE_I64:
1033
0
        return sprint_realloc_counter64(buf, buf_len, out_len,
1034
0
                                        allow_realloc, var, enums, hint,
1035
0
                                        units);
1036
0
        break;
1037
1038
0
    case ASN_OPAQUE_FLOAT:
1039
0
        return sprint_realloc_float(buf, buf_len, out_len, allow_realloc,
1040
0
                                    var, enums, hint, units);
1041
0
        break;
1042
1043
0
    case ASN_OPAQUE_DOUBLE:
1044
0
        return sprint_realloc_double(buf, buf_len, out_len, allow_realloc,
1045
0
                                     var, enums, hint, units);
1046
0
        break;
1047
1048
28
    case ASN_OPAQUE:
1049
28
#endif
1050
28
        if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1051
28
            static const char str[] = "OPAQUE: ";
1052
28
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1053
0
                return 0;
1054
0
            }
1055
28
        }
1056
28
        if (!sprint_realloc_hexstring(buf, buf_len, out_len, allow_realloc,
1057
28
                                      var->val.string, var->val_len)) {
1058
0
            return 0;
1059
0
        }
1060
28
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
1061
28
    }
1062
28
#endif
1063
28
    if (units) {
1064
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1065
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1066
0
    }
1067
28
    return 1;
1068
28
}
1069
1070
1071
/**
1072
 * Prints an object identifier into a buffer.
1073
 *
1074
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1075
 * needed size. (Note: *buf may change due to this.)
1076
 * 
1077
 * @param buf      Address of the buffer to print to.
1078
 * @param buf_len  Address to an integer containing the size of buf.
1079
 * @param out_len  Incremented by the number of characters printed.
1080
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1081
 *                      needed size.
1082
 * @param var      The variable to encode.
1083
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1084
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1085
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1086
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1087
 * 
1088
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1089
 *         small when not allowed to realloc.)
1090
 */
1091
int
1092
sprint_realloc_object_identifier(u_char ** buf, size_t * buf_len,
1093
                                 size_t * out_len, int allow_realloc,
1094
                                 const netsnmp_variable_list * var,
1095
                                 const struct enum_list *enums,
1096
                                 const char *hint, const char *units)
1097
8
{
1098
8
    int             buf_overflow = 0;
1099
1100
8
    if (var->type != ASN_OBJECT_ID) {
1101
0
        if (!netsnmp_ds_get_boolean(
1102
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1103
0
            static const char str[] = "Wrong Type (should be OBJECT IDENTIFIER): ";
1104
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1105
0
                return 0;
1106
0
        }
1107
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1108
0
                                          allow_realloc, var, NULL, NULL,
1109
0
                                          NULL);
1110
0
    }
1111
1112
8
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1113
8
        static const char str[] = "OID: ";
1114
8
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1115
0
            return 0;
1116
0
        }
1117
8
    }
1118
1119
8
    netsnmp_sprint_realloc_objid_tree(buf, buf_len, out_len, allow_realloc,
1120
8
                                      &buf_overflow,
1121
8
                                      (oid *) (var->val.objid),
1122
8
                                      var->val_len / sizeof(oid));
1123
1124
8
    if (buf_overflow) {
1125
0
        return 0;
1126
0
    }
1127
1128
8
    if (units) {
1129
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1130
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1131
0
    }
1132
8
    return 1;
1133
8
}
1134
1135
1136
1137
/**
1138
 * Prints a timetick variable into a buffer.
1139
 *
1140
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1141
 * needed size. (Note: *buf may change due to this.)
1142
 * 
1143
 * @param buf      Address of the buffer to print to.
1144
 * @param buf_len  Address to an integer containing the size of buf.
1145
 * @param out_len  Incremented by the number of characters printed.
1146
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1147
 *                      needed size.
1148
 * @param var      The variable to encode.
1149
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1150
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1151
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1152
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1153
 * 
1154
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1155
 *         small when not allowed to realloc.)
1156
 */
1157
int
1158
sprint_realloc_timeticks(u_char ** buf, size_t * buf_len, size_t * out_len,
1159
                         int allow_realloc,
1160
                         const netsnmp_variable_list * var,
1161
                         const struct enum_list *enums,
1162
                         const char *hint, const char *units)
1163
9
{
1164
9
    char            timebuf[40];
1165
1166
9
    if (var->type != ASN_TIMETICKS) {
1167
0
        if (!netsnmp_ds_get_boolean(
1168
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1169
0
            static const char str[] = "Wrong Type (should be Timeticks): ";
1170
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1171
0
                return 0;
1172
0
        }
1173
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1174
0
                                          allow_realloc, var, NULL, NULL,
1175
0
                                          NULL);
1176
0
    }
1177
1178
9
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NUMERIC_TIMETICKS)) {
1179
7
        char            str[32];
1180
7
        snprintf(str, sizeof(str), "%lu", *(u_long *) var->val.integer);
1181
7
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1182
0
            return 0;
1183
0
        }
1184
7
        return 1;
1185
7
    }
1186
2
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1187
2
        char            str[32];
1188
2
        snprintf(str, sizeof(str), "Timeticks: (%lu) ",
1189
2
                 *(u_long *) var->val.integer);
1190
2
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1191
0
            return 0;
1192
0
        }
1193
2
    }
1194
2
    uptimeString(*(u_long *) (var->val.integer), timebuf, sizeof(timebuf));
1195
2
    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, timebuf)) {
1196
0
        return 0;
1197
0
    }
1198
2
    if (units) {
1199
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1200
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1201
0
    }
1202
2
    return 1;
1203
2
}
1204
1205
1206
/**
1207
 * Prints an integer according to the hint into a buffer.
1208
 *
1209
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1210
 * needed size. (Note: *buf may change due to this.)
1211
 * 
1212
 * @param buf      Address of the buffer to print to.
1213
 * @param buf_len  Address to an integer containing the size of buf.
1214
 * @param out_len  Incremented by the number of characters printed.
1215
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1216
 *                      needed size.
1217
 * @param val      The variable to encode.
1218
 * @param decimaltype 'd' or 'u' depending on integer type
1219
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1220
 *                 See RFC 1903 Section 3.1 for details. may _NOT_ be NULL.
1221
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1222
 * 
1223
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1224
 *         small when not allowed to realloc.)
1225
 */
1226
int
1227
sprint_realloc_hinted_integer(u_char ** buf, size_t * buf_len,
1228
                              size_t * out_len, int allow_realloc,
1229
                              long val, const char decimaltype,
1230
                              const char *hint, const char *units)
1231
416
{
1232
416
    char            fmt[10] = "%l@", tmp[256];
1233
416
    int             shift = 0, len, negative = 0;
1234
1235
416
    if (!strchr("bdoux", decimaltype)) {
1236
0
        snmp_log(LOG_ERR, "Invalid decimal type '%c'\n", decimaltype);
1237
0
        return 0;
1238
0
    }
1239
1240
416
    switch (hint[0]) {
1241
234
    case 'd':
1242
        /*
1243
         * We might *actually* want a 'u' here.  
1244
         */
1245
234
        if (hint[1] == '-') {
1246
214
            shift = atoi(hint + 2);
1247
214
            if (shift < 0)
1248
64
                shift = 0;
1249
214
        }
1250
234
        fmt[2] = decimaltype;
1251
234
        if (val < 0) {
1252
0
            negative = 1;
1253
0
            val = -val;
1254
0
        }
1255
234
        snprintf(tmp, sizeof(tmp), fmt, val);
1256
234
        break;
1257
34
    case 'o':
1258
36
    case 'x':
1259
36
        fmt[2] = hint[0];
1260
36
        snprintf(tmp, sizeof(tmp), fmt, val);
1261
36
        break;
1262
4
    case 'b': {
1263
4
  unsigned long int bit = 0x80000000LU;
1264
4
  char *bp = tmp;
1265
132
  while (bit) {
1266
128
      *bp++ = val & bit ? '1' : '0';
1267
128
      bit >>= 1;
1268
128
  }
1269
4
  *bp = 0;
1270
4
        break;
1271
34
    }
1272
142
    default:
1273
142
        return 0;
1274
416
    }
1275
1276
274
    if (shift != 0) {
1277
146
        len = strlen(tmp);
1278
146
        if (shift <= len) {
1279
4
            tmp[len + 1] = 0;
1280
8
            while (shift--) {
1281
4
                tmp[len] = tmp[len - 1];
1282
4
                len--;
1283
4
            }
1284
4
            tmp[len] = '.';
1285
142
        } else if (shift < sizeof(tmp) - 1) {
1286
32
            tmp[shift + 1] = 0;
1287
3.71k
            while (shift) {
1288
3.68k
                if (len-- > 0) {
1289
32
                    tmp[shift] = tmp[len];
1290
3.65k
                } else {
1291
3.65k
                    tmp[shift] = '0';
1292
3.65k
                }
1293
3.68k
                shift--;
1294
3.68k
            }
1295
32
            tmp[0] = '.';
1296
32
        }
1297
146
    }
1298
274
    if (negative) {
1299
0
        len = strlen(tmp)+1;
1300
0
        while (len) {
1301
0
            tmp[len] = tmp[len-1];
1302
0
            len--;
1303
0
        }
1304
0
        tmp[0] = '-';
1305
0
    }
1306
274
    return snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tmp);
1307
416
}
1308
1309
1310
/**
1311
 * Prints an integer into a buffer.
1312
 *
1313
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1314
 * needed size. (Note: *buf may change due to this.)
1315
 * 
1316
 * @param buf      Address of the buffer to print to.
1317
 * @param buf_len  Address to an integer containing the size of buf.
1318
 * @param out_len  Incremented by the number of characters printed.
1319
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1320
 *                      needed size.
1321
 * @param var      The variable to encode.
1322
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1323
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1324
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1325
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1326
 * 
1327
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1328
 *         small when not allowed to realloc.)
1329
 */
1330
int
1331
sprint_realloc_integer(u_char ** buf, size_t * buf_len, size_t * out_len,
1332
                       int allow_realloc,
1333
                       const netsnmp_variable_list * var,
1334
                       const struct enum_list *enums,
1335
                       const char *hint, const char *units)
1336
401
{
1337
401
    char           *enum_string = NULL;
1338
1339
401
    if (var->type != ASN_INTEGER) {
1340
0
        if (!netsnmp_ds_get_boolean(
1341
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1342
0
            static const char str[] = "Wrong Type (should be INTEGER): ";
1343
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1344
0
                return 0;
1345
0
        }
1346
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1347
0
                                          allow_realloc, var, NULL, NULL,
1348
0
                                          NULL);
1349
0
    }
1350
1351
401
    for (; enums; enums = enums->next) {
1352
0
        if (enums->value == *var->val.integer) {
1353
0
            enum_string = enums->label;
1354
0
            break;
1355
0
        }
1356
0
    }
1357
1358
401
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1359
401
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "INTEGER: ")) {
1360
0
            return 0;
1361
0
        }
1362
401
    }
1363
1364
401
    if (enum_string == NULL ||
1365
401
        netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_NUMERIC_ENUM)) {
1366
401
        if (hint) {
1367
208
            if (!(sprint_realloc_hinted_integer(buf, buf_len, out_len,
1368
208
                                                allow_realloc,
1369
208
                                                *var->val.integer, 'd',
1370
208
                                                hint, units))) {
1371
79
                return 0;
1372
79
            }
1373
208
        } else {
1374
193
            char            str[32];
1375
193
            snprintf(str, sizeof(str), "%ld", *var->val.integer);
1376
193
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1377
0
                return 0;
1378
0
            }
1379
193
        }
1380
401
    } else if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1381
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, enum_string)) {
1382
0
            return 0;
1383
0
        }
1384
0
    } else {
1385
0
        char            str[32];
1386
0
        snprintf(str, sizeof(str), "(%ld)", *var->val.integer);
1387
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, enum_string)) {
1388
0
            return 0;
1389
0
        }
1390
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1391
0
            return 0;
1392
0
        }
1393
0
    }
1394
1395
322
    if (units) {
1396
129
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1397
128
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1398
129
    }
1399
193
    return 1;
1400
322
}
1401
1402
1403
/**
1404
 * Prints an unsigned integer into a buffer.
1405
 *
1406
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1407
 * needed size. (Note: *buf may change due to this.)
1408
 * 
1409
 * @param buf      Address of the buffer to print to.
1410
 * @param buf_len  Address to an integer containing the size of buf.
1411
 * @param out_len  Incremented by the number of characters printed.
1412
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1413
 *                      needed size.
1414
 * @param var      The variable to encode.
1415
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1416
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1417
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1418
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1419
 * 
1420
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1421
 *         small when not allowed to realloc.)
1422
 */
1423
int
1424
sprint_realloc_uinteger(u_char ** buf, size_t * buf_len, size_t * out_len,
1425
                        int allow_realloc,
1426
                        const netsnmp_variable_list * var,
1427
                        const struct enum_list *enums,
1428
                        const char *hint, const char *units)
1429
214
{
1430
214
    char           *enum_string = NULL;
1431
1432
214
    if (var->type != ASN_UINTEGER) {
1433
0
        if (!netsnmp_ds_get_boolean(
1434
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1435
0
            static const char str[] = "Wrong Type (should be UInteger32): ";
1436
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1437
0
                return 0;
1438
0
        }
1439
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1440
0
                                          allow_realloc, var, NULL, NULL,
1441
0
                                          NULL);
1442
0
    }
1443
1444
214
    for (; enums; enums = enums->next) {
1445
0
        if (enums->value == *var->val.integer) {
1446
0
            enum_string = enums->label;
1447
0
            break;
1448
0
        }
1449
0
    }
1450
1451
214
    if (enum_string == NULL ||
1452
214
        netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_NUMERIC_ENUM)) {
1453
214
        if (hint) {
1454
208
            if (!(sprint_realloc_hinted_integer(buf, buf_len, out_len,
1455
208
                                                allow_realloc,
1456
208
                                                *var->val.integer, 'u',
1457
208
                                                hint, units))) {
1458
78
                return 0;
1459
78
            }
1460
208
        } else {
1461
6
            char            str[32];
1462
6
            snprintf(str, sizeof(str), "%lu", *var->val.integer);
1463
6
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1464
0
                return 0;
1465
0
            }
1466
6
        }
1467
214
    } else if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1468
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, enum_string)) {
1469
0
            return 0;
1470
0
        }
1471
0
    } else {
1472
0
        char            str[32];
1473
0
        snprintf(str, sizeof(str), "(%lu)", *var->val.integer);
1474
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, enum_string)) {
1475
0
            return 0;
1476
0
        }
1477
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1478
0
            return 0;
1479
0
        }
1480
0
    }
1481
1482
136
    if (units) {
1483
130
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1484
129
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1485
130
    }
1486
6
    return 1;
1487
136
}
1488
1489
1490
/**
1491
 * Prints a gauge value into a buffer.
1492
 *
1493
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1494
 * needed size. (Note: *buf may change due to this.)
1495
 * 
1496
 * @param buf      Address of the buffer to print to.
1497
 * @param buf_len  Address to an integer containing the size of buf.
1498
 * @param out_len  Incremented by the number of characters printed.
1499
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1500
 *                      needed size.
1501
 * @param var      The variable to encode.
1502
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1503
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1504
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1505
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1506
 * 
1507
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1508
 *         small when not allowed to realloc.)
1509
 */
1510
int
1511
sprint_realloc_gauge(u_char ** buf, size_t * buf_len, size_t * out_len,
1512
                     int allow_realloc,
1513
                     const netsnmp_variable_list * var,
1514
                     const struct enum_list *enums,
1515
                     const char *hint, const char *units)
1516
4
{
1517
4
    char            tmp[32];
1518
1519
4
    if (var->type != ASN_GAUGE) {
1520
0
        if (!netsnmp_ds_get_boolean(
1521
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1522
0
            static const char str[] = "Wrong Type (should be Gauge32 or Unsigned32): ";
1523
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1524
0
                return 0;
1525
0
        }
1526
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1527
0
                                          allow_realloc, var, NULL, NULL,
1528
0
                                          NULL);
1529
0
    }
1530
1531
4
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1532
4
        static const char str[] = "Gauge32: ";
1533
4
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1534
0
            return 0;
1535
0
        }
1536
4
    }
1537
4
    if (hint) {
1538
0
        if (!sprint_realloc_hinted_integer(buf, buf_len, out_len,
1539
0
                                           allow_realloc,
1540
0
                                           *var->val.integer, 'u', hint,
1541
0
                                           units)) {
1542
0
            return 0;
1543
0
        }
1544
4
    } else {
1545
4
        sprintf(tmp, "%u", (unsigned int)(*var->val.integer & 0xffffffff));
1546
4
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tmp)) {
1547
0
            return 0;
1548
0
        }
1549
4
    }
1550
4
    if (units) {
1551
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1552
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1553
0
    }
1554
4
    return 1;
1555
4
}
1556
1557
1558
/**
1559
 * Prints a counter value into a buffer.
1560
 *
1561
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1562
 * needed size. (Note: *buf may change due to this.)
1563
 * 
1564
 * @param buf      Address of the buffer to print to.
1565
 * @param buf_len  Address to an integer containing the size of buf.
1566
 * @param out_len  Incremented by the number of characters printed.
1567
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1568
 *                      needed size.
1569
 * @param var      The variable to encode.
1570
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1571
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1572
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1573
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1574
 * 
1575
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1576
 *         small when not allowed to realloc.)
1577
 */
1578
int
1579
sprint_realloc_counter(u_char ** buf, size_t * buf_len, size_t * out_len,
1580
                       int allow_realloc,
1581
                       const netsnmp_variable_list * var,
1582
                       const struct enum_list *enums,
1583
                       const char *hint, const char *units)
1584
5
{
1585
5
    char            tmp[32];
1586
1587
5
    if (var->type != ASN_COUNTER) {
1588
0
        if (!netsnmp_ds_get_boolean(
1589
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1590
0
            static const char str[] = "Wrong Type (should be Counter32): ";
1591
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1592
0
                return 0;
1593
0
        }
1594
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1595
0
                                          allow_realloc, var, NULL, NULL,
1596
0
                                          NULL);
1597
0
    }
1598
1599
5
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1600
5
        static const char str[] = "Counter32: ";
1601
5
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1602
0
            return 0;
1603
0
        }
1604
5
    }
1605
5
    sprintf(tmp, "%u", (unsigned int)(*var->val.integer & 0xffffffff));
1606
5
    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tmp)) {
1607
0
        return 0;
1608
0
    }
1609
5
    if (units) {
1610
0
        return (snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ") &&
1611
0
                snmp_cstrcat(buf, buf_len, out_len, allow_realloc, units));
1612
0
    }
1613
5
    return 1;
1614
5
}
1615
1616
1617
/**
1618
 * Prints a network address into a buffer.
1619
 *
1620
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1621
 * needed size. (Note: *buf may change due to this.)
1622
 * 
1623
 * @param buf      Address of the buffer to print to.
1624
 * @param buf_len  Address to an integer containing the size of buf.
1625
 * @param out_len  Incremented by the number of characters printed.
1626
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1627
 *                      needed size.
1628
 * @param var      The variable to encode.
1629
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1630
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1631
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1632
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1633
 * 
1634
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1635
 *         small when not allowed to realloc.)
1636
 */
1637
int
1638
sprint_realloc_networkaddress(u_char ** buf, size_t * buf_len,
1639
                              size_t * out_len, int allow_realloc,
1640
                              const netsnmp_variable_list * var,
1641
                              const struct enum_list *enums, const char *hint,
1642
                              const char *units)
1643
0
{
1644
0
    size_t          i;
1645
1646
0
    if (var->type != ASN_IPADDRESS) {
1647
0
        if (!netsnmp_ds_get_boolean(
1648
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1649
0
            static const char str[] = "Wrong Type (should be NetworkAddress): ";
1650
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1651
0
                return 0;
1652
0
        }
1653
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1654
0
                                          allow_realloc, var, NULL, NULL,
1655
0
                                          NULL);
1656
0
    }
1657
1658
0
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1659
0
        static const char str[] = "Network Address: ";
1660
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1661
0
            return 0;
1662
0
        }
1663
0
    }
1664
1665
0
    while ((*out_len + (var->val_len * 3) + 2) >= *buf_len) {
1666
0
        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
1667
0
            return 0;
1668
0
        }
1669
0
    }
1670
1671
0
    for (i = 0; i < var->val_len; i++) {
1672
0
        sprintf((char *) (*buf + *out_len), "%02X", var->val.string[i]);
1673
0
        *out_len += 2;
1674
0
        if (i < var->val_len - 1) {
1675
0
            *(*buf + *out_len) = ':';
1676
0
            (*out_len)++;
1677
0
        }
1678
0
    }
1679
0
    return 1;
1680
0
}
1681
1682
1683
/**
1684
 * Prints an ip-address into a buffer.
1685
 *
1686
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1687
 * needed size. (Note: *buf may change due to this.)
1688
 * 
1689
 * @param buf      Address of the buffer to print to.
1690
 * @param buf_len  Address to an integer containing the size of buf.
1691
 * @param out_len  Incremented by the number of characters printed.
1692
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1693
 *                      needed size.
1694
 * @param var      The variable to encode.
1695
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1696
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1697
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1698
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1699
 * 
1700
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1701
 *         small when not allowed to realloc.)
1702
 */
1703
int
1704
sprint_realloc_ipaddress(u_char ** buf, size_t * buf_len, size_t * out_len,
1705
                         int allow_realloc,
1706
                         const netsnmp_variable_list * var,
1707
                         const struct enum_list *enums,
1708
                         const char *hint, const char *units)
1709
12
{
1710
12
    u_char         *ip = var->val.string;
1711
1712
12
    if (var->type != ASN_IPADDRESS) {
1713
0
        if (!netsnmp_ds_get_boolean(
1714
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1715
0
            static const char str[] = "Wrong Type (should be IpAddress): ";
1716
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1717
0
                return 0;
1718
0
        }
1719
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1720
0
                                          allow_realloc, var, NULL, NULL,
1721
0
                                          NULL);
1722
0
    }
1723
1724
12
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1725
12
        static const char str[] = "IpAddress: ";
1726
12
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1727
0
            return 0;
1728
0
        }
1729
12
    }
1730
16
    while ((*out_len + 17) >= *buf_len) {
1731
4
        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
1732
0
            return 0;
1733
0
        }
1734
4
    }
1735
12
    if (ip)
1736
12
        sprintf((char *) (*buf + *out_len), "%d.%d.%d.%d",
1737
12
                                            ip[0], ip[1], ip[2], ip[3]);
1738
12
    *out_len += strlen((char *) (*buf + *out_len));
1739
12
    return 1;
1740
12
}
1741
1742
1743
/**
1744
 * Prints a null value into a buffer.
1745
 *
1746
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1747
 * needed size. (Note: *buf may change due to this.)
1748
 * 
1749
 * @param buf      Address of the buffer to print to.
1750
 * @param buf_len  Address to an integer containing the size of buf.
1751
 * @param out_len  Incremented by the number of characters printed.
1752
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1753
 *                      needed size.
1754
 * @param var      The variable to encode.
1755
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1756
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1757
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1758
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1759
 * 
1760
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1761
 *         small when not allowed to realloc.)
1762
 */
1763
int
1764
sprint_realloc_null(u_char ** buf, size_t * buf_len, size_t * out_len,
1765
                    int allow_realloc,
1766
                    const netsnmp_variable_list * var,
1767
                    const struct enum_list *enums,
1768
                    const char *hint, const char *units)
1769
5
{
1770
5
    static const char str[] = "NULL";
1771
1772
5
    if (var->type != ASN_NULL) {
1773
0
        if (!netsnmp_ds_get_boolean(
1774
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1775
0
            static const char str[] = "Wrong Type (should be NULL): ";
1776
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1777
0
                return 0;
1778
0
        }
1779
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1780
0
                                          allow_realloc, var, NULL, NULL,
1781
0
                                          NULL);
1782
0
    }
1783
1784
5
    return snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str);
1785
5
}
1786
1787
1788
/**
1789
 * Prints a bit string into a buffer.
1790
 *
1791
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1792
 * needed size. (Note: *buf may change due to this.)
1793
 * 
1794
 * @param buf      Address of the buffer to print to.
1795
 * @param buf_len  Address to an integer containing the size of buf.
1796
 * @param out_len  Incremented by the number of characters printed.
1797
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1798
 *                      needed size.
1799
 * @param var      The variable to encode.
1800
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1801
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1802
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1803
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1804
 * 
1805
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1806
 *         small when not allowed to realloc.)
1807
 */
1808
int
1809
sprint_realloc_bitstring(u_char ** buf, size_t * buf_len, size_t * out_len,
1810
                         int allow_realloc,
1811
                         const netsnmp_variable_list * var,
1812
                         const struct enum_list *enums,
1813
                         const char *hint, const char *units)
1814
31
{
1815
31
    int             len, bit;
1816
31
    u_char         *cp;
1817
31
    char           *enum_string;
1818
1819
31
    if (var->type != ASN_BIT_STR && var->type != ASN_OCTET_STR) {
1820
0
        if (!netsnmp_ds_get_boolean(
1821
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1822
0
            static const char str[] = "Wrong Type (should be BITS): ";
1823
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1824
0
                return 0;
1825
0
        }
1826
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1827
0
                                          allow_realloc, var, NULL, NULL,
1828
0
                                          NULL);
1829
0
    }
1830
1831
31
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1832
0
        static const char str[] = "\"";
1833
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1834
0
            return 0;
1835
0
        }
1836
31
    } else {
1837
31
        static const char str[] = "BITS: ";
1838
31
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1839
0
            return 0;
1840
0
        }
1841
31
    }
1842
31
    if (!sprint_realloc_hexstring(buf, buf_len, out_len, allow_realloc,
1843
31
                                  var->val.bitstring, var->val_len)) {
1844
0
        return 0;
1845
0
    }
1846
1847
31
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1848
0
        static const char str[] = "\"";
1849
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1850
0
            return 0;
1851
0
        }
1852
31
    } else {
1853
31
        cp = var->val.bitstring;
1854
953
        for (len = 0; len < (int) var->val_len; len++) {
1855
8.29k
            for (bit = 0; bit < 8; bit++) {
1856
7.37k
                if (*cp & (0x80 >> bit)) {
1857
4.07k
                    enum_string = NULL;
1858
4.07k
                    for (; enums; enums = enums->next) {
1859
0
                        if (enums->value == (len * 8) + bit) {
1860
0
                            enum_string = enums->label;
1861
0
                            break;
1862
0
                        }
1863
0
                    }
1864
4.07k
                    if (enum_string == NULL ||
1865
0
                        netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
1866
4.07k
                                       NETSNMP_DS_LIB_PRINT_NUMERIC_ENUM)) {
1867
4.07k
                        char            str[32];
1868
4.07k
                        snprintf(str, sizeof(str), "%d ", (len * 8) + bit);
1869
4.07k
                        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
1870
4.07k
                                          str)) {
1871
0
                            return 0;
1872
0
                        }
1873
4.07k
                    } else {
1874
0
                        char            str[32];
1875
0
                        snprintf(str, sizeof(str), "(%d) ", (len * 8) + bit);
1876
0
                        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
1877
0
                                          enum_string)) {
1878
0
                            return 0;
1879
0
                        }
1880
0
                        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
1881
0
                                          str)) {
1882
0
                            return 0;
1883
0
                        }
1884
0
                    }
1885
4.07k
                }
1886
7.37k
            }
1887
922
            cp++;
1888
922
        }
1889
31
    }
1890
31
    return 1;
1891
31
}
1892
1893
int
1894
sprint_realloc_nsapaddress(u_char ** buf, size_t * buf_len,
1895
                           size_t * out_len, int allow_realloc,
1896
                           const netsnmp_variable_list * var,
1897
                           const struct enum_list *enums, const char *hint,
1898
                           const char *units)
1899
0
{
1900
0
    if (var->type != ASN_NSAP) {
1901
0
        if (!netsnmp_ds_get_boolean(
1902
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
1903
0
            static const char str[] = "Wrong Type (should be NsapAddress): ";
1904
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
1905
0
                return 0;
1906
0
        }
1907
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
1908
0
                                          allow_realloc, var, NULL, NULL,
1909
0
                                          NULL);
1910
0
    }
1911
1912
0
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
1913
0
        static const char str[] = "NsapAddress: ";
1914
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str)) {
1915
0
            return 0;
1916
0
        }
1917
0
    }
1918
1919
0
    return sprint_realloc_hexstring(buf, buf_len, out_len, allow_realloc,
1920
0
                                    var->val.string, var->val_len);
1921
0
}
1922
1923
1924
/**
1925
 * Fallback routine for a bad type, prints "Variable has bad type" into a buffer.
1926
 *
1927
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1928
 * needed size. (Note: *buf may change due to this.)
1929
 * 
1930
 * @param buf      Address of the buffer to print to.
1931
 * @param buf_len  Address to an integer containing the size of buf.
1932
 * @param out_len  Incremented by the number of characters printed.
1933
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1934
 *                      needed size.
1935
 * @param var      The variable to encode.
1936
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1937
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1938
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1939
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1940
 * 
1941
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1942
 *         small when not allowed to realloc.)
1943
 */
1944
int
1945
sprint_realloc_badtype(u_char ** buf, size_t * buf_len, size_t * out_len,
1946
                       int allow_realloc,
1947
                       const netsnmp_variable_list * var,
1948
                       const struct enum_list *enums,
1949
                       const char *hint, const char *units)
1950
0
{
1951
0
    static const char str[] = "Variable has bad type";
1952
1953
0
    return snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str);
1954
0
}
1955
1956
1957
1958
/**
1959
 * Universal print routine, prints a variable into a buffer according to the variable 
1960
 * type.
1961
 *
1962
 * If allow_realloc is true the buffer will be (re)allocated to fit in the 
1963
 * needed size. (Note: *buf may change due to this.)
1964
 * 
1965
 * @param buf      Address of the buffer to print to.
1966
 * @param buf_len  Address to an integer containing the size of buf.
1967
 * @param out_len  Incremented by the number of characters printed.
1968
 * @param allow_realloc if not zero reallocate the buffer to fit the 
1969
 *                      needed size.
1970
 * @param var      The variable to encode.
1971
 * @param enums    The enumeration ff this variable is enumerated. may be NULL.
1972
 * @param hint     Contents of the DISPLAY-HINT clause of the MIB.
1973
 *                 See RFC 1903 Section 3.1 for details. may be NULL.
1974
 * @param units    Contents of the UNITS clause of the MIB. may be NULL.
1975
 * 
1976
 * @return 1 on success, or 0 on failure (out of memory, or buffer to
1977
 *         small when not allowed to realloc.)
1978
 */
1979
int
1980
sprint_realloc_by_type(u_char ** buf, size_t * buf_len, size_t * out_len,
1981
                       int allow_realloc,
1982
                       const netsnmp_variable_list * var,
1983
                       const struct enum_list *enums,
1984
                       const char *hint, const char *units)
1985
492
{
1986
492
    DEBUGMSGTL(("output", "sprint_by_type, type %d\n", var->type));
1987
1988
492
    switch (var->type) {
1989
193
    case ASN_INTEGER:
1990
193
        return sprint_realloc_integer(buf, buf_len, out_len, allow_realloc,
1991
193
                                      var, enums, hint, units);
1992
157
    case ASN_OCTET_STR:
1993
157
        return sprint_realloc_octet_string(buf, buf_len, out_len,
1994
157
                                           allow_realloc, var, enums, hint,
1995
157
                                           units);
1996
31
    case ASN_BIT_STR:
1997
31
        return sprint_realloc_bitstring(buf, buf_len, out_len,
1998
31
                                        allow_realloc, var, enums, hint,
1999
31
                                        units);
2000
28
    case ASN_OPAQUE:
2001
28
        return sprint_realloc_opaque(buf, buf_len, out_len, allow_realloc,
2002
28
                                     var, enums, hint, units);
2003
8
    case ASN_OBJECT_ID:
2004
8
        return sprint_realloc_object_identifier(buf, buf_len, out_len,
2005
8
                                                allow_realloc, var, enums,
2006
8
                                                hint, units);
2007
9
    case ASN_TIMETICKS:
2008
9
        return sprint_realloc_timeticks(buf, buf_len, out_len,
2009
9
                                        allow_realloc, var, enums, hint,
2010
9
                                        units);
2011
4
    case ASN_GAUGE:
2012
4
        return sprint_realloc_gauge(buf, buf_len, out_len, allow_realloc,
2013
4
                                    var, enums, hint, units);
2014
5
    case ASN_COUNTER:
2015
5
        return sprint_realloc_counter(buf, buf_len, out_len, allow_realloc,
2016
5
                                      var, enums, hint, units);
2017
12
    case ASN_IPADDRESS:
2018
12
        return sprint_realloc_ipaddress(buf, buf_len, out_len,
2019
12
                                        allow_realloc, var, enums, hint,
2020
12
                                        units);
2021
5
    case ASN_NULL:
2022
5
        return sprint_realloc_null(buf, buf_len, out_len, allow_realloc,
2023
5
                                   var, enums, hint, units);
2024
6
    case ASN_UINTEGER:
2025
6
        return sprint_realloc_uinteger(buf, buf_len, out_len,
2026
6
                                       allow_realloc, var, enums, hint,
2027
6
                                       units);
2028
2
    case ASN_COUNTER64:
2029
2
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
2030
2
    case ASN_OPAQUE_U64:
2031
2
    case ASN_OPAQUE_I64:
2032
2
    case ASN_OPAQUE_COUNTER64:
2033
2
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
2034
2
        return sprint_realloc_counter64(buf, buf_len, out_len,
2035
2
                                        allow_realloc, var, enums, hint,
2036
2
                                        units);
2037
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
2038
17
    case ASN_OPAQUE_FLOAT:
2039
17
        return sprint_realloc_float(buf, buf_len, out_len, allow_realloc,
2040
17
                                    var, enums, hint, units);
2041
15
    case ASN_OPAQUE_DOUBLE:
2042
15
        return sprint_realloc_double(buf, buf_len, out_len, allow_realloc,
2043
15
                                     var, enums, hint, units);
2044
0
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
2045
0
    default:
2046
0
        DEBUGMSGTL(("sprint_by_type", "bad type: %d\n", var->type));
2047
0
        return sprint_realloc_badtype(buf, buf_len, out_len, allow_realloc,
2048
0
                                      var, enums, hint, units);
2049
492
    }
2050
492
}
2051
2052
/**
2053
 * Generates a printf format string.
2054
 *
2055
 * The original format string is combined with the optional
2056
 * NETSNMP_DS_LIB_OUTPUT_PRECISION string (the -Op parameter).
2057
 *
2058
 * Example:
2059
 * If the original format string is "%f", and the NETSNMP_DS_LIB_OUTPUT_PRECISION
2060
 * is "5.2", the returned format string will be "%5.2f".
2061
 * 
2062
 * The PRECISION string is inserted after the '%' of the original format string.
2063
 * To prevent buffer overflow if NETSNMP_DS_LIB_OUTPUT_PRECISION is set to an
2064
 * illegal size (e.g. with -Op 10000) snprintf should be used to prevent buffer
2065
 * overflow.
2066
 * 
2067
 * @param printf_format_default  The format string used by the original printf.
2068
 * 
2069
 * @return The address of of the new allocated format string (which must be freed
2070
 *         if no longer used), or NULL if any error (malloc).
2071
 */
2072
char *
2073
make_printf_format_string(const char *printf_format_default)
2074
32
{
2075
32
    const char *cp_printf_format_default;
2076
32
    const char *printf_precision;
2077
32
    const char *cp_printf_precision;
2078
32
    char       *printf_format_string;
2079
32
    char       *cp_out;
2080
32
    char       c;
2081
2082
32
    printf_precision = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OUTPUT_PRECISION);
2083
32
    if (!printf_precision) {
2084
32
        printf_precision = "";
2085
32
    }
2086
2087
    /* reserve new format string buffer */
2088
32
    printf_format_string = (char *) malloc(strlen(printf_format_default)+strlen(printf_precision)+1);
2089
32
    if (!printf_format_string)
2090
0
    {
2091
0
        DEBUGMSGTL(("make_printf_format_string", "malloc failed\n"));
2092
0
        return NULL;
2093
0
    }
2094
2095
    /* copy default format string, including the '%' */
2096
32
    cp_out = printf_format_string;
2097
32
    cp_printf_format_default = printf_format_default;
2098
32
    while((c = *cp_printf_format_default) != '\0')
2099
32
    {
2100
32
        *cp_out++ = c;
2101
32
        cp_printf_format_default++;
2102
32
        if (c == '%') break;
2103
32
    }
2104
2105
    /* insert the precision string */
2106
32
    cp_printf_precision = printf_precision;
2107
32
    while ((c = *cp_printf_precision++) != '\0')
2108
0
    {
2109
0
        *cp_out++ = c;
2110
0
    }
2111
2112
    /* copy the remaining default format string, including the terminating '\0' */
2113
32
    strcpy(cp_out, cp_printf_format_default);
2114
2115
32
    DEBUGMSGTL(("make_printf_format_string", "\"%s\"+\"%s\"->\"%s\"\n",
2116
32
                printf_format_default, printf_precision, printf_format_string));
2117
32
    return printf_format_string;
2118
32
}
2119
2120
2121
#ifndef NETSNMP_DISABLE_MIB_LOADING
2122
/**
2123
 * Retrieves the tree head.
2124
 *
2125
 * @return the tree head.
2126
 */
2127
struct tree    *
2128
get_tree_head(void)
2129
4.92k
{
2130
4.92k
    return (tree_head);
2131
4.92k
}
2132
2133
static char    *confmibdir = NULL;
2134
static char    *confmibs = NULL;
2135
2136
static void
2137
handle_mibdirs_conf(const char *token, char *line)
2138
0
{
2139
0
    char           *ctmp;
2140
2141
0
    if (confmibdir) {
2142
0
        if ((*line == '+') || (*line == '-')) {
2143
0
            ctmp = (char *) malloc(strlen(confmibdir) + strlen(line) + 2);
2144
0
            if (!ctmp) {
2145
0
                DEBUGMSGTL(("read_config:initmib",
2146
0
                            "mibdir conf malloc failed"));
2147
0
                return;
2148
0
            }
2149
0
            if(*line++ == '+')
2150
0
                sprintf(ctmp, "%s%c%s", confmibdir, ENV_SEPARATOR_CHAR, line);
2151
0
            else
2152
0
                sprintf(ctmp, "%s%c%s", line, ENV_SEPARATOR_CHAR, confmibdir);
2153
0
        } else {
2154
0
            ctmp = strdup(line);
2155
0
            if (!ctmp) {
2156
0
                DEBUGMSGTL(("read_config:initmib", "mibs conf malloc failed"));
2157
0
                return;
2158
0
            }
2159
0
        }
2160
0
        SNMP_FREE(confmibdir);
2161
0
    } else {
2162
0
        ctmp = strdup(line);
2163
0
        if (!ctmp) {
2164
0
            DEBUGMSGTL(("read_config:initmib", "mibs conf malloc failed"));
2165
0
            return;
2166
0
        }
2167
0
    }
2168
0
    confmibdir = ctmp;
2169
0
    DEBUGMSGTL(("read_config:initmib", "using mibdirs: %s\n", confmibdir));
2170
0
}
2171
2172
static void
2173
handle_mibs_conf(const char *token, char *line)
2174
0
{
2175
0
    char           *ctmp;
2176
2177
0
    if (confmibs) {
2178
0
        if ((*line == '+') || (*line == '-')) {
2179
0
            int res;
2180
2181
0
            res = *line++ == '+' ?
2182
                /* Add specified dirs after existing ones */
2183
0
                asprintf(&ctmp, "%s%c%s", confmibs, ENV_SEPARATOR_CHAR, line) :
2184
                /* Add specified dirs before existing ones */
2185
0
                asprintf(&ctmp, "%s%c%s", line, ENV_SEPARATOR_CHAR, confmibs);
2186
0
            if (res < 0) {
2187
0
                DEBUGMSGTL(("read_config:initmib", "mibs conf malloc failed"));
2188
0
                return;
2189
0
            }
2190
0
        } else {
2191
0
            ctmp = strdup(line);
2192
0
            if (!ctmp) {
2193
0
                DEBUGMSGTL(("read_config:initmib", "mibs conf malloc failed"));
2194
0
                return;
2195
0
            }
2196
0
        }
2197
0
        SNMP_FREE(confmibs);
2198
0
    } else {
2199
0
        ctmp = strdup(line);
2200
0
        if (!ctmp) {
2201
0
            DEBUGMSGTL(("read_config:initmib", "mibs conf malloc failed"));
2202
0
            return;
2203
0
        }
2204
0
    }
2205
0
    confmibs = ctmp;
2206
0
    DEBUGMSGTL(("read_config:initmib", "using mibs: %s\n", confmibs));
2207
0
}
2208
2209
2210
static void
2211
handle_mibfile_conf(const char *token, char *line)
2212
3.26k
{
2213
3.26k
    DEBUGMSGTL(("read_config:initmib", "reading mibfile: %s\n", line));
2214
3.26k
    read_mib(line);
2215
3.26k
}
2216
#endif
2217
2218
static void
2219
handle_print_numeric(const char *token, char *line)
2220
0
{
2221
0
    const char *value;
2222
0
    char       *st;
2223
2224
0
    value = strtok_r(line, " \t\n", &st);
2225
0
    if (value && (
2226
0
      (strcasecmp(value, "yes")  == 0) || 
2227
0
      (strcasecmp(value, "true") == 0) ||
2228
0
      (*value == '1') )) {
2229
2230
0
        netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2231
0
                                                  NETSNMP_OID_OUTPUT_NUMERIC);
2232
0
    }
2233
0
}
2234
2235
char *
2236
snmp_out_options(char *options, int argc, char *const *argv)
2237
176
{
2238
5.71k
    while (*options) {
2239
5.64k
        switch (*options++) {
2240
372
        case '0':
2241
372
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID,
2242
372
                                      NETSNMP_DS_LIB_2DIGIT_HEX_OUTPUT);
2243
372
            break;
2244
247
        case 'a':
2245
247
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_STRING_OUTPUT_FORMAT,
2246
247
                                                      NETSNMP_STRING_OUTPUT_ASCII);
2247
247
            break;
2248
259
        case 'b':
2249
259
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_BREAKDOWN_OIDS);
2250
259
            break;
2251
280
        case 'e':
2252
280
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_NUMERIC_ENUM);
2253
280
            break;
2254
297
        case 'E':
2255
297
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_ESCAPE_QUOTES);
2256
297
            break;
2257
268
        case 'f':
2258
268
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2259
268
                                                      NETSNMP_OID_OUTPUT_FULL);
2260
268
            break;
2261
310
        case 'F':
2262
310
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2263
310
                                                      NETSNMP_OID_OUTPUT_FULL_AND_NUMERIC);
2264
310
            break;
2265
345
        case 'n':
2266
345
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2267
345
                                                      NETSNMP_OID_OUTPUT_NUMERIC);
2268
345
            break;
2269
49
        case 'p':
2270
            /* What if argc/argv are null ? */
2271
49
            if (!*(options)) {
2272
29
    if (optind == argc || argc == 0) {
2273
1
        fprintf(stderr, "Missing precision for -Op\n");
2274
1
        return options-1;
2275
1
    }
2276
28
                options = argv[optind++];
2277
28
            }
2278
48
            netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID,
2279
48
                                  NETSNMP_DS_LIB_OUTPUT_PRECISION,
2280
48
                                  options);
2281
48
            return NULL;  /* -Op... is a standalone option, so we're done here */
2282
401
        case 'q':
2283
401
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT);
2284
401
            break;
2285
307
        case 'Q':
2286
307
            netsnmp_ds_set_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT, 1);
2287
307
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT);
2288
307
            break;
2289
257
        case 's':
2290
257
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2291
257
                                                      NETSNMP_OID_OUTPUT_SUFFIX);
2292
257
            break;
2293
274
        case 'S':
2294
274
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2295
274
                                                      NETSNMP_OID_OUTPUT_MODULE);
2296
274
            break;
2297
420
        case 't':
2298
420
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NUMERIC_TIMETICKS);
2299
420
            break;
2300
213
        case 'T':
2301
213
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_HEX_TEXT);
2302
213
            break;
2303
253
        case 'u':
2304
253
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT,
2305
253
                                                      NETSNMP_OID_OUTPUT_UCD);
2306
253
            break;
2307
115
        case 'U':
2308
115
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_PRINT_UNITS);
2309
115
            break;
2310
244
        case 'v':
2311
244
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_BARE_VALUE);
2312
244
            break;
2313
419
        case 'x':
2314
419
            netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_STRING_OUTPUT_FORMAT,
2315
419
                                                      NETSNMP_STRING_OUTPUT_HEX);
2316
419
            break;
2317
253
        case 'X':
2318
253
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_EXTENDED_INDEX);
2319
253
            break;
2320
63
        default:
2321
63
            return options - 1;
2322
5.64k
        }
2323
5.64k
    }
2324
64
    return NULL;
2325
176
}
2326
2327
char           *
2328
snmp_out_toggle_options(char *options)
2329
0
{
2330
0
    return snmp_out_options( options, 0, NULL );
2331
0
}
2332
2333
void
2334
snmp_out_toggle_options_usage(const char *lead, FILE * outf)
2335
0
{
2336
0
    fprintf(outf, "%s0:  print leading 0 for single-digit hex characters\n", lead);
2337
0
    fprintf(outf, "%sa:  print all strings in ascii format\n", lead);
2338
0
    fprintf(outf, "%sb:  do not break OID indexes down\n", lead);
2339
0
    fprintf(outf, "%se:  print enums numerically\n", lead);
2340
0
    fprintf(outf, "%sE:  escape quotes in string indices\n", lead);
2341
0
    fprintf(outf, "%sf:  print full OIDs on output\n", lead);
2342
0
    fprintf(outf, "%sn:  print OIDs numerically\n", lead);
2343
0
    fprintf(outf, "%sp PRECISION:  display floating point values with specified PRECISION (printf format string)\n", lead);
2344
0
    fprintf(outf, "%sq:  quick print for easier parsing\n", lead);
2345
0
    fprintf(outf, "%sQ:  quick print with equal-signs\n", lead);    /* @@JDW */
2346
0
    fprintf(outf, "%ss:  print only last symbolic element of OID\n", lead);
2347
0
    fprintf(outf, "%sS:  print MIB module-id plus last element\n", lead);
2348
0
    fprintf(outf, "%st:  print timeticks unparsed as numeric integers\n",
2349
0
            lead);
2350
0
    fprintf(outf,
2351
0
            "%sT:  print human-readable text along with hex strings\n",
2352
0
            lead);
2353
0
    fprintf(outf, "%su:  print OIDs using UCD-style prefix suppression\n",
2354
0
            lead);
2355
0
    fprintf(outf, "%sU:  don't print units\n", lead);
2356
0
    fprintf(outf, "%sv:  print values only (not OID = value)\n", lead);
2357
0
    fprintf(outf, "%sx:  print all strings in hex format\n", lead);
2358
0
    fprintf(outf, "%sX:  extended index format\n", lead);
2359
0
}
2360
2361
const char *
2362
snmp_in_options(char *optarg, int argc, char *const *argv)
2363
139
{
2364
139
    char *cp;
2365
2366
1.18k
    for (cp = optarg; *cp; cp++) {
2367
1.16k
        switch (*cp) {
2368
353
        case 'b':
2369
353
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_REGEX_ACCESS);
2370
353
            break;
2371
221
        case 'R':
2372
221
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_RANDOM_ACCESS);
2373
221
            break;
2374
281
        case 'r':
2375
281
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_CHECK_RANGE);
2376
281
            break;
2377
83
        case 'h':
2378
83
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NO_DISPLAY_HINT);
2379
83
            break;
2380
108
        case 'u':
2381
108
            netsnmp_ds_toggle_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_READ_UCD_STYLE_OID);
2382
108
            break;
2383
65
        case 's':
2384
65
            if (!*(++cp)) {
2385
24
                cp = optind < argc ? argv[optind++] : NULL;
2386
24
                if (!cp)
2387
2
                    return "?";
2388
24
            }
2389
63
            netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID,
2390
63
                                  NETSNMP_DS_LIB_OIDSUFFIX,
2391
63
                                  cp);
2392
63
            return NULL;  /* -Is... is a standalone option, so we're done here */
2393
2394
39
        case 'S':
2395
39
            if (!*(++cp)) {
2396
13
                cp = optind < argc ? argv[optind++] : NULL;
2397
13
                if (!cp)
2398
2
                    return "?";
2399
13
            }
2400
37
            netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID,
2401
37
                                  NETSNMP_DS_LIB_OIDPREFIX,
2402
37
                                  cp);
2403
37
            return NULL;  /* -IS... is a standalone option, so we're done here */
2404
2405
16
        default:
2406
           /*
2407
            *  Here?  Or in snmp_parse_args?
2408
            snmp_log(LOG_ERR, "Unknown input option passed to -I: %c.\n", *cp);
2409
            */
2410
16
            return cp;
2411
1.16k
        }
2412
1.16k
    }
2413
19
    return NULL;
2414
139
}
2415
2416
const char     *
2417
snmp_in_toggle_options(char *options)
2418
0
{
2419
0
    return snmp_in_options( options, 0, NULL );
2420
0
}
2421
2422
2423
/**
2424
 * Prints out a help usage for the in* toggle options.
2425
 *
2426
 * @param lead      The lead to print for every line.
2427
 * @param outf      The file descriptor to write to.
2428
 * 
2429
 */
2430
void
2431
snmp_in_toggle_options_usage(const char *lead, FILE * outf)
2432
0
{
2433
0
    fprintf(outf, "%sb:  do best/regex matching to find a MIB node\n", lead);
2434
0
    fprintf(outf, "%sh:  don't apply DISPLAY-HINTs\n", lead);
2435
0
    fprintf(outf, "%sr:  do not check values for range/type legality\n", lead);
2436
0
    fprintf(outf, "%sR:  do random access to OID labels\n", lead);
2437
0
    fprintf(outf,
2438
0
            "%su:  top-level OIDs must have '.' prefix (UCD-style)\n", lead);
2439
0
    fprintf(outf,
2440
0
            "%ss SUFFIX:  Append all textual OIDs with SUFFIX before parsing\n",
2441
0
            lead);
2442
0
    fprintf(outf,
2443
0
            "%sS PREFIX:  Prepend all textual OIDs with PREFIX before parsing\n",
2444
0
            lead);
2445
0
}
2446
2447
/***
2448
 *
2449
 */ 
2450
void
2451
register_mib_handlers(void)
2452
4.42k
{
2453
4.42k
#ifndef NETSNMP_DISABLE_MIB_LOADING
2454
4.42k
    register_prenetsnmp_mib_handler("snmp", "mibdirs",
2455
4.42k
                                    handle_mibdirs_conf, NULL,
2456
4.42k
                                    "[mib-dirs|+mib-dirs|-mib-dirs]");
2457
4.42k
    register_prenetsnmp_mib_handler("snmp", "mibs",
2458
4.42k
                                    handle_mibs_conf, NULL,
2459
4.42k
                                    "[mib-tokens|+mib-tokens|-mib-tokens]");
2460
4.42k
    register_config_handler("snmp", "mibfile",
2461
4.42k
                            handle_mibfile_conf, NULL, "mibfile-to-read");
2462
    /*
2463
     * register the snmp.conf configuration handlers for default
2464
     * parsing behaviour 
2465
     */
2466
2467
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "showMibErrors",
2468
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_ERRORS);
2469
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "commentToEOL",     /* Describes actual behaviour */
2470
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_COMMENT_TERM);
2471
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "strictCommentTerm",    /* Backward compatibility */
2472
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_COMMENT_TERM);
2473
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "mibAllowUnderline",
2474
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_PARSE_LABEL);
2475
4.42k
    netsnmp_ds_register_premib(ASN_INTEGER, "snmp", "mibWarningLevel",
2476
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_WARNINGS);
2477
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "mibReplaceWithLatest",
2478
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIB_REPLACE);
2479
4.42k
#endif
2480
2481
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "printNumericEnums",
2482
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_NUMERIC_ENUM);
2483
4.42k
    register_prenetsnmp_mib_handler("snmp", "printNumericOids",
2484
4.42k
                       handle_print_numeric, NULL, "(1|yes|true|0|no|false)");
2485
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "escapeQuotes",
2486
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_ESCAPE_QUOTES);
2487
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "dontBreakdownOids",
2488
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_BREAKDOWN_OIDS);
2489
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "quickPrinting",
2490
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT);
2491
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "numericTimeticks",
2492
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NUMERIC_TIMETICKS);
2493
4.42k
    netsnmp_ds_register_premib(ASN_INTEGER, "snmp", "oidOutputFormat",
2494
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT);
2495
4.42k
    netsnmp_ds_register_premib(ASN_INTEGER, "snmp", "suffixPrinting",
2496
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT);
2497
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "extendedIndex",
2498
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_EXTENDED_INDEX);
2499
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "printHexText",
2500
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_HEX_TEXT);
2501
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "printValueOnly",
2502
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_BARE_VALUE);
2503
4.42k
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "dontPrintUnits",
2504
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_PRINT_UNITS);
2505
4.42k
    netsnmp_ds_register_premib(ASN_INTEGER, "snmp", "hexOutputLength",
2506
4.42k
                       NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_HEX_OUTPUT_LENGTH);
2507
4.42k
}
2508
2509
#ifndef NETSNMP_DISABLE_MIB_LOADING
2510
/*
2511
 * function : netsnmp_set_mib_directory
2512
 *            - This function sets the string of the directories
2513
 *              from which the MIB modules will be searched or
2514
 *              loaded.
2515
 * arguments: const char *dir, which are the directories
2516
 *              from which the MIB modules will be searched or
2517
 *              loaded.
2518
 * returns  : -
2519
 */
2520
void
2521
netsnmp_set_mib_directory(const char *dir)
2522
6.46k
{
2523
6.46k
    const char *newdir;
2524
6.46k
    char *olddir, *tmpdir = NULL;
2525
2526
6.46k
    DEBUGTRACE;
2527
6.46k
    if (NULL == dir) {
2528
0
        return;
2529
0
    }
2530
    
2531
6.46k
    olddir = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID,
2532
6.46k
           NETSNMP_DS_LIB_MIBDIRS);
2533
6.46k
    if (olddir) {
2534
3.31k
        if ((*dir == '+') || (*dir == '-')) {
2535
            /** New dir starts with '+', thus we add it. */
2536
37
            tmpdir = (char *)malloc(strlen(dir) + strlen(olddir) + 2);
2537
37
            if (!tmpdir) {
2538
0
                DEBUGMSGTL(("read_config:initmib", "set mibdir malloc failed"));
2539
0
                return;
2540
0
            }
2541
37
            if (*dir++ == '+')
2542
18
                sprintf(tmpdir, "%s%c%s", olddir, ENV_SEPARATOR_CHAR, dir);
2543
19
            else
2544
19
                sprintf(tmpdir, "%s%c%s", dir, ENV_SEPARATOR_CHAR, olddir);
2545
37
            newdir = tmpdir;
2546
3.27k
        } else {
2547
3.27k
            newdir = dir;
2548
3.27k
        }
2549
3.31k
    } else {
2550
        /** If dir starts with '+' skip '+' it. */
2551
3.14k
        newdir = ((*dir == '+') ? ++dir : dir);
2552
3.14k
    }
2553
6.46k
    netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIBDIRS,
2554
6.46k
                          newdir);
2555
2556
    /** set_string calls strdup, so if we allocated memory, free it */
2557
6.46k
    if (tmpdir == newdir) {
2558
37
        SNMP_FREE(tmpdir);
2559
37
    }
2560
6.46k
}
2561
2562
/*
2563
 * function : netsnmp_get_mib_directory
2564
 *            - This function returns a string of the directories
2565
 *              from which the MIB modules will be searched or
2566
 *              loaded.
2567
 *              If the value still does not exists, it will be made
2568
 *              from the environment variable 'MIBDIRS' and/or the
2569
 *              default.
2570
 * arguments: -
2571
 * returns  : char * of the directories in which the MIB modules
2572
 *            will be searched/loaded.
2573
 */
2574
2575
char *
2576
netsnmp_get_mib_directory(void)
2577
6.51k
{
2578
6.51k
    char *dir;
2579
2580
6.51k
    DEBUGTRACE;
2581
6.51k
    dir = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIBDIRS);
2582
6.51k
    if (dir == NULL) {
2583
3.14k
        DEBUGMSGTL(("get_mib_directory", "no mib directories set\n"));
2584
2585
        /** Check if the environment variable is set */
2586
3.14k
        dir = netsnmp_getenv("MIBDIRS");
2587
3.14k
        if (dir == NULL) {
2588
9
            DEBUGMSGTL(("get_mib_directory", "no mib directories set by environment\n"));
2589
            /** Not set use hard coded path */
2590
9
            if (confmibdir == NULL) {
2591
9
                DEBUGMSGTL(("get_mib_directory", "no mib directories set by config\n"));
2592
9
                netsnmp_set_mib_directory(NETSNMP_DEFAULT_MIBDIRS);
2593
9
            }
2594
0
            else if ((*confmibdir == '+') || (*confmibdir == '-')) {
2595
0
                DEBUGMSGTL(("get_mib_directory", "mib directories set by config (but added)\n"));
2596
0
                netsnmp_set_mib_directory(NETSNMP_DEFAULT_MIBDIRS);
2597
0
                netsnmp_set_mib_directory(confmibdir);
2598
0
            }
2599
0
            else {
2600
0
                DEBUGMSGTL(("get_mib_directory", "mib directories set by config\n"));
2601
0
                netsnmp_set_mib_directory(confmibdir);
2602
0
            }
2603
3.13k
        } else if ((*dir == '+') || (*dir == '-')) {
2604
0
            DEBUGMSGTL(("get_mib_directory", "mib directories set by environment (but added)\n"));
2605
0
            netsnmp_set_mib_directory(NETSNMP_DEFAULT_MIBDIRS);
2606
0
            netsnmp_set_mib_directory(dir);
2607
3.13k
        } else {
2608
3.13k
            DEBUGMSGTL(("get_mib_directory", "mib directories set by environment\n"));
2609
3.13k
            netsnmp_set_mib_directory(dir);
2610
3.13k
        }
2611
3.14k
        dir = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_MIBDIRS);
2612
3.14k
    }
2613
6.51k
    DEBUGMSGTL(("get_mib_directory", "mib directories set '%s'\n", dir));
2614
6.51k
    return(dir);
2615
6.51k
}
2616
2617
/*
2618
 * function : netsnmp_fixup_mib_directory
2619
 * arguments: -
2620
 * returns  : -
2621
 */
2622
void
2623
netsnmp_fixup_mib_directory(void)
2624
3.19k
{
2625
3.19k
    const char *homepath = netsnmp_gethomedir();
2626
3.19k
    char *mibpath = netsnmp_get_mib_directory();
2627
3.19k
    char *oldmibpath = NULL;
2628
3.19k
    char *ptr_home;
2629
3.19k
    char *new_mibpath;
2630
2631
3.19k
    DEBUGTRACE;
2632
3.19k
    if (homepath && mibpath) {
2633
3.19k
        DEBUGMSGTL(("fixup_mib_directory", "mib directories '%s'\n", mibpath));
2634
3.19k
        while ((ptr_home = strstr(mibpath, "$HOME"))) {
2635
4
            new_mibpath = (char *)malloc(strlen(mibpath) - strlen("$HOME") +
2636
4
           strlen(homepath)+1);
2637
4
            if (new_mibpath) {
2638
4
                *ptr_home = 0; /* null out the spot where we stop copying */
2639
4
                sprintf(new_mibpath, "%s%s%s", mibpath, homepath,
2640
4
      ptr_home + strlen("$HOME"));
2641
                /** swap in the new value and repeat */
2642
4
                mibpath = new_mibpath;
2643
4
    if (oldmibpath != NULL) {
2644
0
        SNMP_FREE(oldmibpath);
2645
0
    }
2646
4
    oldmibpath = new_mibpath;
2647
4
            } else {
2648
0
                break;
2649
0
            }
2650
4
        }
2651
2652
3.19k
        netsnmp_set_mib_directory(mibpath);
2653
  
2654
  /*  The above copies the mibpath for us, so...  */
2655
2656
3.19k
  if (oldmibpath != NULL) {
2657
4
      SNMP_FREE(oldmibpath);
2658
4
  }
2659
2660
3.19k
    }
2661
2662
3.19k
}
2663
2664
/**
2665
 * Initialises the mib reader.
2666
 *
2667
 * Reads in all settings from the environment.
2668
 */
2669
void
2670
netsnmp_init_mib(void)
2671
3.19k
{
2672
3.19k
    const char     *prefix;
2673
3.19k
    char           *env_var, *entry;
2674
3.19k
    PrefixListPtr   pp = &mib_prefixes[0];
2675
3.19k
    char           *st = NULL;
2676
2677
3.19k
    if (Mib)
2678
0
        return;
2679
3.19k
    netsnmp_init_mib_internals();
2680
2681
    /*
2682
     * Initialise the MIB directory/ies 
2683
     */
2684
3.19k
    netsnmp_fixup_mib_directory();
2685
3.19k
    env_var = strdup(netsnmp_get_mib_directory());
2686
3.19k
    if (!env_var)
2687
0
        return;
2688
2689
3.19k
    DEBUGMSGTL(("init_mib",
2690
3.19k
                "Seen MIBDIRS: Looking in '%s' for mib dirs ...\n",
2691
3.19k
                env_var));
2692
2693
3.19k
    entry = strtok_r(env_var, ENV_SEPARATOR, &st);
2694
6.39k
    while (entry) {
2695
3.19k
        add_mibdir(entry);
2696
3.19k
        entry = strtok_r(NULL, ENV_SEPARATOR, &st);
2697
3.19k
    }
2698
3.19k
    SNMP_FREE(env_var);
2699
2700
3.19k
    env_var = netsnmp_getenv("MIBFILES");
2701
3.19k
    if (env_var != NULL) {
2702
0
        if (*env_var == '+')
2703
0
            entry = strtok_r(env_var+1, ENV_SEPARATOR, &st);
2704
0
        else
2705
0
            entry = strtok_r(env_var, ENV_SEPARATOR, &st);
2706
0
        while (entry) {
2707
0
            add_mibfile(entry, NULL);
2708
0
            entry = strtok_r(NULL, ENV_SEPARATOR, &st);
2709
0
        }
2710
0
    }
2711
2712
3.19k
    netsnmp_init_mib_internals();
2713
2714
    /*
2715
     * Read in any modules or mibs requested 
2716
     */
2717
2718
3.19k
    env_var = netsnmp_getenv("MIBS");
2719
3.19k
    if (env_var == NULL) {
2720
3.19k
        if (confmibs != NULL)
2721
0
            env_var = strdup(confmibs);
2722
3.19k
        else
2723
3.19k
            env_var = strdup(NETSNMP_DEFAULT_MIBS);
2724
3.19k
    } else {
2725
0
        env_var = strdup(env_var);
2726
0
    }
2727
3.19k
    if (env_var && ((*env_var == '+') || (*env_var == '-'))) {
2728
0
        int res;
2729
2730
0
        if (*env_var == '+')
2731
0
            res = asprintf(&entry, "%s%c%s", NETSNMP_DEFAULT_MIBS,
2732
0
                           ENV_SEPARATOR_CHAR, env_var + 1);
2733
0
        else
2734
0
            res = asprintf(&entry, "%s%c%s", env_var + 1, ENV_SEPARATOR_CHAR,
2735
0
                           NETSNMP_DEFAULT_MIBS);
2736
0
        SNMP_FREE(env_var);
2737
0
        if (res < 0) {
2738
0
            DEBUGMSGTL(("init_mib", "env mibs malloc failed"));
2739
0
            return;
2740
0
        }
2741
0
        env_var = entry;
2742
0
    }
2743
2744
3.19k
    if (env_var != NULL) {
2745
3.19k
        DEBUGMSGTL(("init_mib",
2746
3.19k
                    "Seen MIBS: Looking in '%s' for mib files ...\n",
2747
3.19k
                    env_var));
2748
3.19k
        entry = strtok_r(env_var, ENV_SEPARATOR, &st);
2749
153k
        while (entry) {
2750
150k
            if (strcasecmp(entry, DEBUG_ALWAYS_TOKEN) == 0) {
2751
0
                read_all_mibs();
2752
150k
            } else if (strstr(entry, "/") != NULL) {
2753
0
                read_mib(entry);
2754
150k
            } else {
2755
150k
                netsnmp_read_module(entry);
2756
150k
            }
2757
150k
            entry = strtok_r(NULL, ENV_SEPARATOR, &st);
2758
150k
        }
2759
3.19k
        adopt_orphans();
2760
3.19k
        SNMP_FREE(env_var);
2761
3.19k
    }
2762
2763
3.19k
    env_var = netsnmp_getenv("MIBFILES");
2764
3.19k
    if (env_var != NULL) {
2765
0
        if ((*env_var == '+') || (*env_var == '-')) {
2766
#ifdef NETSNMP_DEFAULT_MIBFILES
2767
            entry =
2768
                (char *) malloc(strlen(NETSNMP_DEFAULT_MIBFILES) +
2769
                                strlen(env_var) + 2);
2770
            if (!entry) {
2771
                DEBUGMSGTL(("init_mib", "env mibfiles malloc failed"));
2772
            } else {
2773
                if (*env_var++ == '+')
2774
                    sprintf(entry, "%s%c%s", NETSNMP_DEFAULT_MIBFILES, ENV_SEPARATOR_CHAR,
2775
                            env_var );
2776
                else
2777
                    sprintf(entry, "%s%c%s", env_var, ENV_SEPARATOR_CHAR,
2778
                            NETSNMP_DEFAULT_MIBFILES );
2779
            }
2780
            SNMP_FREE(env_var);
2781
            env_var = entry;
2782
#else
2783
0
            env_var = strdup(env_var + 1);
2784
0
#endif
2785
0
        } else {
2786
0
            env_var = strdup(env_var);
2787
0
        }
2788
3.19k
    } else {
2789
#ifdef NETSNMP_DEFAULT_MIBFILES
2790
        env_var = strdup(NETSNMP_DEFAULT_MIBFILES);
2791
#endif
2792
3.19k
    }
2793
2794
3.19k
    if (env_var != NULL) {
2795
0
        DEBUGMSGTL(("init_mib",
2796
0
                    "Seen MIBFILES: Looking in '%s' for mib files ...\n",
2797
0
                    env_var));
2798
0
        entry = strtok_r(env_var, ENV_SEPARATOR, &st);
2799
0
        while (entry) {
2800
0
            read_mib(entry);
2801
0
            entry = strtok_r(NULL, ENV_SEPARATOR, &st);
2802
0
        }
2803
0
        SNMP_FREE(env_var);
2804
0
    }
2805
2806
3.19k
    prefix = netsnmp_getenv("PREFIX");
2807
2808
3.19k
    if (!prefix)
2809
3.19k
        prefix = Standard_Prefix;
2810
2811
3.19k
    Prefix = (char *) malloc(strlen(prefix) + 2);
2812
3.19k
    if (!Prefix)
2813
0
        DEBUGMSGTL(("init_mib", "Prefix malloc failed"));
2814
3.19k
    else
2815
3.19k
        strcpy(Prefix, prefix);
2816
2817
3.19k
    DEBUGMSGTL(("init_mib",
2818
3.19k
                "Seen PREFIX: Looking in '%s' for prefix ...\n", Prefix));
2819
2820
    /*
2821
     * remove trailing dot 
2822
     */
2823
3.19k
    if (Prefix) {
2824
3.19k
        env_var = &Prefix[strlen(Prefix) - 1];
2825
3.19k
        if (*env_var == '.')
2826
0
            *env_var = '\0';
2827
3.19k
    }
2828
2829
3.19k
    pp->str = Prefix;           /* fixup first mib_prefix entry */
2830
    /*
2831
     * now that the list of prefixes is built, save each string length. 
2832
     */
2833
22.3k
    while (pp->str) {
2834
19.1k
        pp->len = strlen(pp->str);
2835
19.1k
        pp++;
2836
19.1k
    }
2837
2838
3.19k
    Mib = tree_head;            /* Backwards compatibility */
2839
3.19k
    tree_top = calloc(1, sizeof(struct tree));
2840
    /*
2841
     * XX error check ? 
2842
     */
2843
3.19k
    if (tree_top) {
2844
3.19k
        tree_top->label = strdup("(top)");
2845
3.19k
        tree_top->child_list = tree_head;
2846
3.19k
    }
2847
3.19k
}
2848
2849
#ifndef NETSNMP_NO_LEGACY_DEFINITIONS
2850
void
2851
init_mib(void)
2852
0
{
2853
0
    netsnmp_init_mib();
2854
0
}
2855
#endif
2856
2857
2858
/**
2859
 * Unloads all mibs.
2860
 */
2861
void
2862
shutdown_mib(void)
2863
3.18k
{
2864
3.18k
    unload_all_mibs();
2865
3.18k
    if (tree_top) {
2866
3.18k
        if (tree_top->label)
2867
3.18k
            SNMP_FREE(tree_top->label);
2868
3.18k
        SNMP_FREE(tree_top);
2869
3.18k
    }
2870
3.18k
    tree_head = NULL;
2871
3.18k
    Mib = NULL;
2872
3.18k
    if (Prefix != NULL && Prefix != &Standard_Prefix[0])
2873
3.18k
        SNMP_FREE(Prefix);
2874
3.18k
    if (Prefix)
2875
0
        Prefix = NULL;
2876
3.18k
    SNMP_FREE(confmibs);
2877
3.18k
    SNMP_FREE(confmibdir);
2878
3.18k
}
2879
2880
/**
2881
 * Prints the MIBs to the file fp.
2882
 *
2883
 * @param fp   The file descriptor to print to.
2884
 */
2885
#ifndef NETSNMP_FEATURE_REMOVE_PRINT_MIB
2886
void
2887
print_mib(FILE * fp)
2888
0
{
2889
0
    print_subtree(fp, tree_head, 0);
2890
0
}
2891
#endif /* NETSNMP_FEATURE_REMOVE_PRINT_MIB */
2892
2893
void
2894
print_ascii_dump(FILE * fp)
2895
0
{
2896
0
    fprintf(fp, "dump DEFINITIONS ::= BEGIN\n");
2897
0
    print_ascii_dump_tree(fp, tree_head, 0);
2898
0
    fprintf(fp, "END\n");
2899
0
}
2900
2901
2902
/**
2903
 * Set's the printing function printomat in a subtree according
2904
 * it's type
2905
 *
2906
 * @param subtree    The subtree to set.
2907
 */
2908
void
2909
set_function(struct tree *subtree)
2910
95.5k
{
2911
95.5k
    subtree->printer = NULL;
2912
95.5k
    switch (subtree->type) {
2913
0
    case TYPE_OBJID:
2914
0
        subtree->printomat = sprint_realloc_object_identifier;
2915
0
        break;
2916
0
    case TYPE_OCTETSTR:
2917
0
        subtree->printomat = sprint_realloc_octet_string;
2918
0
        break;
2919
23
    case TYPE_INTEGER:
2920
23
        subtree->printomat = sprint_realloc_integer;
2921
23
        break;
2922
50
    case TYPE_INTEGER32:
2923
50
        subtree->printomat = sprint_realloc_integer;
2924
50
        break;
2925
0
    case TYPE_NETADDR:
2926
0
        subtree->printomat = sprint_realloc_networkaddress;
2927
0
        break;
2928
0
    case TYPE_IPADDR:
2929
0
        subtree->printomat = sprint_realloc_ipaddress;
2930
0
        break;
2931
226
    case TYPE_COUNTER:
2932
226
        subtree->printomat = sprint_realloc_counter;
2933
226
        break;
2934
74
    case TYPE_GAUGE:
2935
74
        subtree->printomat = sprint_realloc_gauge;
2936
74
        break;
2937
0
    case TYPE_TIMETICKS:
2938
0
        subtree->printomat = sprint_realloc_timeticks;
2939
0
        break;
2940
0
    case TYPE_OPAQUE:
2941
0
        subtree->printomat = sprint_realloc_opaque;
2942
0
        break;
2943
245
    case TYPE_NULL:
2944
245
        subtree->printomat = sprint_realloc_null;
2945
245
        break;
2946
31
    case TYPE_BITSTRING:
2947
31
        subtree->printomat = sprint_realloc_bitstring;
2948
31
        break;
2949
1
    case TYPE_NSAPADDRESS:
2950
1
        subtree->printomat = sprint_realloc_nsapaddress;
2951
1
        break;
2952
1
    case TYPE_COUNTER64:
2953
1
        subtree->printomat = sprint_realloc_counter64;
2954
1
        break;
2955
0
    case TYPE_UINTEGER:
2956
0
        subtree->printomat = sprint_realloc_uinteger;
2957
0
        break;
2958
1
    case TYPE_UNSIGNED32:
2959
1
        subtree->printomat = sprint_realloc_gauge;
2960
1
        break;
2961
93.8k
    case TYPE_OTHER:
2962
94.8k
    default:
2963
94.8k
        subtree->printomat = sprint_realloc_by_type;
2964
94.8k
        break;
2965
95.5k
    }
2966
95.5k
}
2967
2968
#endif /* NETSNMP_DISABLE_MIB_LOADING */
2969
2970
/**
2971
 * Reads an object identifier from an input string into internal OID form.
2972
 * 
2973
 * When called, out_len must hold the maximum length of the output array.
2974
 *
2975
 * @param input     the input string.
2976
 * @param output    the oid write.
2977
 * @param out_len   number of subid's in output.
2978
 * 
2979
 * @return 1 if successful.
2980
 * 
2981
 * If an error occurs, this function returns 0 and MAY set snmp_errno.
2982
 * snmp_errno is NOT set if SET_SNMP_ERROR evaluates to nothing.
2983
 * This can make multi-threaded use a tiny bit more robust.
2984
 */
2985
int
2986
read_objid(const char *input, oid * output, size_t * out_len)
2987
22.0k
{
2988
22.0k
#ifndef NETSNMP_DISABLE_MIB_LOADING
2989
22.0k
    struct tree    *root = tree_top;
2990
22.0k
    char            buf[SPRINT_MAX_LEN];
2991
22.0k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
2992
22.0k
    int             ret, max_out_len;
2993
22.0k
    char           *name, ch;
2994
22.0k
    const char     *cp;
2995
2996
22.0k
    cp = input;
2997
47.7k
    while ((ch = *cp)) {
2998
47.1k
        if (('0' <= ch && ch <= '9')
2999
39.9k
            || ('a' <= ch && ch <= 'z')
3000
33.9k
            || ('A' <= ch && ch <= 'Z')
3001
26.6k
            || ch == '-')
3002
25.6k
            cp++;
3003
21.4k
        else
3004
21.4k
            break;
3005
47.1k
    }
3006
22.0k
#ifndef NETSNMP_DISABLE_MIB_LOADING
3007
22.0k
    if (ch == ':')
3008
1.00k
        return get_node(input, output, out_len);
3009
21.0k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3010
3011
21.0k
    if (*input == '.')
3012
19.0k
        input++;
3013
2.01k
#ifndef NETSNMP_DISABLE_MIB_LOADING
3014
2.01k
    else if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_READ_UCD_STYLE_OID)) {
3015
        /*
3016
         * get past leading '.', append '.' to Prefix. 
3017
         */
3018
352
        if (*Prefix == '.')
3019
352
            strlcpy(buf, Prefix + 1, sizeof(buf));
3020
0
        else
3021
0
            strlcpy(buf, Prefix, sizeof(buf));
3022
352
        strlcat(buf, ".", sizeof(buf));
3023
352
        strlcat(buf, input, sizeof(buf));
3024
352
        input = buf;
3025
352
    }
3026
21.0k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3027
3028
21.0k
#ifndef NETSNMP_DISABLE_MIB_LOADING
3029
21.0k
    if ((root == NULL) && (tree_head != NULL)) {
3030
1.38k
        root = tree_head;
3031
1.38k
    }
3032
19.7k
    else if (root == NULL) {
3033
117
        SET_SNMP_ERROR(SNMPERR_NOMIB);
3034
117
        *out_len = 0;
3035
117
        return 0;
3036
117
    }
3037
20.9k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3038
20.9k
    name = strdup(input);
3039
20.9k
    max_out_len = *out_len;
3040
20.9k
    *out_len = 0;
3041
20.9k
#ifndef NETSNMP_DISABLE_MIB_LOADING
3042
20.9k
    if ((ret =
3043
20.9k
         _add_strings_to_oid(root, name, output, out_len,
3044
20.9k
                             max_out_len)) <= 0)
3045
#else
3046
    if ((ret =
3047
         _add_strings_to_oid(NULL, name, output, out_len,
3048
                             max_out_len)) <= 0)
3049
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3050
1.16k
    {
3051
1.16k
        if (ret == 0)
3052
1.16k
            ret = SNMPERR_UNKNOWN_OBJID;
3053
1.16k
        SET_SNMP_ERROR(ret);
3054
1.16k
        SNMP_FREE(name);
3055
1.16k
        return 0;
3056
1.16k
    }
3057
19.8k
    SNMP_FREE(name);
3058
3059
19.8k
    return 1;
3060
20.9k
}
3061
3062
/**
3063
 * 
3064
 */
3065
void
3066
netsnmp_sprint_realloc_objid(u_char ** buf, size_t * buf_len,
3067
                             size_t * out_len, int allow_realloc,
3068
                             int *buf_overflow,
3069
                             const oid * objid, size_t objidlen)
3070
0
{
3071
0
    u_char         *tbuf = NULL, *cp = NULL;
3072
0
    size_t          tbuf_len = 256, tout_len = 0;
3073
0
    int             tbuf_overflow = 0;
3074
0
    int             output_format;
3075
3076
0
    if ((tbuf = calloc(tbuf_len, 1)) == NULL) {
3077
0
        tbuf_overflow = 1;
3078
0
    } else {
3079
0
        *tbuf = '.';
3080
0
        tout_len = 1;
3081
0
    }
3082
3083
0
    _oid_finish_printing(objid, objidlen,
3084
0
                         &tbuf, &tbuf_len, &tout_len,
3085
0
                         allow_realloc, &tbuf_overflow);
3086
3087
0
    if (tbuf_overflow) {
3088
0
        if (!*buf_overflow) {
3089
0
            snmp_strcat(buf, buf_len, out_len, allow_realloc, tbuf);
3090
0
            *buf_overflow = 1;
3091
0
        }
3092
0
        SNMP_FREE(tbuf);
3093
0
        return;
3094
0
    }
3095
3096
0
    output_format = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT);
3097
0
    if (0 == output_format) {
3098
0
        output_format = NETSNMP_OID_OUTPUT_NUMERIC;
3099
0
    }
3100
0
    switch (output_format) {
3101
0
    case NETSNMP_OID_OUTPUT_FULL:
3102
0
    case NETSNMP_OID_OUTPUT_NUMERIC:
3103
0
    case NETSNMP_OID_OUTPUT_FULL_AND_NUMERIC:
3104
0
    case NETSNMP_OID_OUTPUT_SUFFIX:
3105
0
    case NETSNMP_OID_OUTPUT_MODULE:
3106
0
        cp = tbuf;
3107
0
        break;
3108
3109
0
    case NETSNMP_OID_OUTPUT_NONE:
3110
0
    default:
3111
0
        cp = NULL;
3112
0
    }
3113
3114
0
    if (!*buf_overflow &&
3115
0
        !snmp_strcat(buf, buf_len, out_len, allow_realloc, cp)) {
3116
0
        *buf_overflow = 1;
3117
0
    }
3118
0
    SNMP_FREE(tbuf);
3119
0
}
3120
3121
/**
3122
 * 
3123
 */
3124
#ifdef NETSNMP_DISABLE_MIB_LOADING
3125
void
3126
netsnmp_sprint_realloc_objid_tree(u_char ** buf, size_t * buf_len,
3127
                                  size_t * out_len, int allow_realloc,
3128
                                  int *buf_overflow,
3129
                                  const oid * objid, size_t objidlen)
3130
{
3131
    netsnmp_sprint_realloc_objid(buf, buf_len, out_len, allow_realloc,
3132
                                 buf_overflow, objid, objidlen);
3133
}
3134
#else
3135
struct tree    *
3136
netsnmp_sprint_realloc_objid_tree(u_char ** buf, size_t * buf_len,
3137
                                  size_t * out_len, int allow_realloc,
3138
                                  int *buf_overflow,
3139
                                  const oid * objid, size_t objidlen)
3140
1.18k
{
3141
1.18k
    u_char         *tbuf = NULL, *cp = NULL;
3142
1.18k
    size_t          tbuf_len = 512, tout_len = 0;
3143
1.18k
    struct tree    *subtree = tree_head;
3144
1.18k
    size_t          midpoint_offset = 0;
3145
1.18k
    int             tbuf_overflow = 0;
3146
1.18k
    int             output_format;
3147
3148
1.18k
    if ((tbuf = calloc(tbuf_len, 1)) == NULL) {
3149
0
        tbuf_overflow = 1;
3150
1.18k
    } else {
3151
1.18k
        *tbuf = '.';
3152
1.18k
        tout_len = 1;
3153
1.18k
    }
3154
3155
1.18k
    subtree = _get_realloc_symbol(objid, objidlen, subtree,
3156
1.18k
                                  &tbuf, &tbuf_len, &tout_len,
3157
1.18k
                                  allow_realloc, &tbuf_overflow, NULL,
3158
1.18k
                                  &midpoint_offset);
3159
3160
1.18k
    if (tbuf_overflow) {
3161
0
        if (!*buf_overflow) {
3162
0
            snmp_strcat(buf, buf_len, out_len, allow_realloc, tbuf);
3163
0
            *buf_overflow = 1;
3164
0
        }
3165
0
        SNMP_FREE(tbuf);
3166
0
        return subtree;
3167
0
    }
3168
3169
1.18k
    output_format = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT);
3170
1.18k
    if (0 == output_format) {
3171
1.18k
        output_format = NETSNMP_OID_OUTPUT_MODULE;
3172
1.18k
    }
3173
1.18k
    switch (output_format) {
3174
0
    case NETSNMP_OID_OUTPUT_FULL:
3175
0
    case NETSNMP_OID_OUTPUT_FULL_AND_NUMERIC:
3176
0
    case NETSNMP_OID_OUTPUT_NUMERIC:
3177
0
        cp = tbuf;
3178
0
        break;
3179
3180
0
    case NETSNMP_OID_OUTPUT_SUFFIX:
3181
1.18k
    case NETSNMP_OID_OUTPUT_MODULE:
3182
99.9k
        for (cp = tbuf; *cp; cp++);
3183
3184
1.18k
        if (midpoint_offset != 0) {
3185
877
            cp = tbuf + midpoint_offset - 2;    /*  beyond the '.'  */
3186
877
        } else {
3187
608
            while (cp >= tbuf) {
3188
608
                if (isalpha(*cp)) {
3189
304
                    break;
3190
304
                }
3191
304
                cp--;
3192
304
            }
3193
304
        }
3194
3195
6.66k
        while (cp >= tbuf) {
3196
6.46k
            if (*cp == '.') {
3197
976
                break;
3198
976
            }
3199
5.48k
            cp--;
3200
5.48k
        }
3201
3202
1.18k
        cp++;
3203
3204
1.18k
        if ((NETSNMP_OID_OUTPUT_MODULE == output_format)
3205
1.18k
            && cp > tbuf) {
3206
976
            char            modbuf[256] = { 0 }, *mod =
3207
976
                module_name(subtree->modid, modbuf);
3208
3209
            /*
3210
             * Don't add the module ID if it's just numeric (i.e. we couldn't look
3211
             * it up properly.  
3212
             */
3213
3214
976
            if (!*buf_overflow && modbuf[0] != '#') {
3215
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, mod) ||
3216
0
                    !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "::")) {
3217
0
                    *buf_overflow = 1;
3218
0
                }
3219
0
            }
3220
976
        }
3221
1.18k
        break;
3222
3223
0
    case NETSNMP_OID_OUTPUT_UCD:
3224
0
    {
3225
0
        PrefixListPtr   pp = &mib_prefixes[0];
3226
0
        size_t          ilen, tlen;
3227
0
        const char     *testcp;
3228
3229
0
        cp = tbuf;
3230
0
        tlen = strlen((char *) tbuf);
3231
3232
0
        while (pp->str) {
3233
0
            ilen = pp->len;
3234
0
            testcp = pp->str;
3235
3236
0
            if ((tlen > ilen) && memcmp(tbuf, testcp, ilen) == 0) {
3237
0
                cp += (ilen + 1);
3238
0
                break;
3239
0
            }
3240
0
            pp++;
3241
0
        }
3242
0
        break;
3243
0
    }
3244
3245
0
    case NETSNMP_OID_OUTPUT_NONE:
3246
0
    default:
3247
0
        cp = NULL;
3248
1.18k
    }
3249
3250
1.18k
    if (!*buf_overflow &&
3251
1.18k
        !snmp_strcat(buf, buf_len, out_len, allow_realloc, cp)) {
3252
0
        *buf_overflow = 1;
3253
0
    }
3254
1.18k
    SNMP_FREE(tbuf);
3255
1.18k
    return subtree;
3256
1.18k
}
3257
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3258
3259
int
3260
sprint_realloc_objid(u_char ** buf, size_t * buf_len,
3261
                     size_t * out_len, int allow_realloc,
3262
                     const oid * objid, size_t objidlen)
3263
681
{
3264
681
    int             buf_overflow = 0;
3265
3266
681
    netsnmp_sprint_realloc_objid_tree(buf, buf_len, out_len, allow_realloc,
3267
681
                                      &buf_overflow, objid, objidlen);
3268
681
    return !buf_overflow;
3269
681
}
3270
3271
#ifndef NETSNMP_FEATURE_REMOVE_SPRINT_OBJID
3272
int
3273
snprint_objid(char *buf, size_t buf_len,
3274
              const oid * objid, size_t objidlen)
3275
0
{
3276
0
    size_t          out_len = 0;
3277
3278
0
    if (sprint_realloc_objid((u_char **) & buf, &buf_len, &out_len, 0,
3279
0
                             objid, objidlen)) {
3280
0
        return (int) out_len;
3281
0
    } else {
3282
0
        return -1;
3283
0
    }
3284
0
}
3285
#endif /* NETSNMP_FEATURE_REMOVE_SPRINT_OBJID */
3286
3287
/**
3288
 * Prints an oid to stdout.
3289
 *
3290
 * @param objid      The oid to print
3291
 * @param objidlen   The length of oidid.
3292
 */
3293
void
3294
print_objid(const oid * objid, size_t objidlen)
3295
0
{                               /* number of subidentifiers */
3296
0
    fprint_objid(stdout, objid, objidlen);
3297
0
}
3298
3299
3300
/**
3301
 * Prints an oid to a file descriptor.
3302
 *
3303
 * @param f          The file descriptor to print to.
3304
 * @param objid      The oid to print
3305
 * @param objidlen   The length of oidid.
3306
 */
3307
void
3308
fprint_objid(FILE * f, const oid * objid, size_t objidlen)
3309
0
{                               /* number of subidentifiers */
3310
0
    u_char         *buf = NULL;
3311
0
    size_t          buf_len = 256, out_len = 0;
3312
0
    int             buf_overflow = 0;
3313
3314
0
    if ((buf = calloc(buf_len, 1)) == NULL) {
3315
0
        fprintf(f, "[TRUNCATED]\n");
3316
0
        return;
3317
0
    } else {
3318
0
        netsnmp_sprint_realloc_objid_tree(&buf, &buf_len, &out_len, 1,
3319
0
                                          &buf_overflow, objid, objidlen);
3320
0
        if (buf_overflow) {
3321
0
            fprintf(f, "%s [TRUNCATED]\n", buf);
3322
0
        } else {
3323
0
            fprintf(f, "%s\n", buf);
3324
0
        }
3325
0
    }
3326
3327
0
    SNMP_FREE(buf);
3328
0
}
3329
3330
int
3331
sprint_realloc_variable(u_char ** buf, size_t * buf_len,
3332
                        size_t * out_len, int allow_realloc,
3333
                        const oid * objid, size_t objidlen,
3334
                        const netsnmp_variable_list * variable)
3335
492
{
3336
492
    int             buf_overflow = 0;
3337
3338
492
#ifndef NETSNMP_DISABLE_MIB_LOADING
3339
492
    struct tree    *subtree = tree_head;
3340
3341
492
    subtree =
3342
492
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3343
492
        netsnmp_sprint_realloc_objid_tree(buf, buf_len, out_len,
3344
492
                                          allow_realloc, &buf_overflow,
3345
492
                                          objid, objidlen);
3346
3347
492
    if (buf_overflow) {
3348
0
        return 0;
3349
0
    }
3350
492
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PRINT_BARE_VALUE)) {
3351
198
        if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICKE_PRINT)) {
3352
157
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " = ")) {
3353
0
                return 0;
3354
0
            }
3355
157
        } else {
3356
41
            if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_QUICK_PRINT)) {
3357
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ")) {
3358
0
                    return 0;
3359
0
                }
3360
41
            } else {
3361
41
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3362
41
                                  " = ")) {
3363
0
                    return 0;
3364
0
                }
3365
41
            }                   /* end if-else NETSNMP_DS_LIB_QUICK_PRINT */
3366
41
        }                       /* end if-else NETSNMP_DS_LIB_QUICKE_PRINT */
3367
294
    } else {
3368
294
        *out_len = 0;
3369
294
    }
3370
3371
492
    if (variable->type == SNMP_NOSUCHOBJECT) {
3372
0
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3373
0
                            "No Such Object available on this agent at this OID");
3374
492
    } else if (variable->type == SNMP_NOSUCHINSTANCE) {
3375
0
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3376
0
                            "No Such Instance currently exists at this OID");
3377
492
    } else if (variable->type == SNMP_ENDOFMIBVIEW) {
3378
0
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3379
0
                            "No more variables left in this MIB View (It is past the end of the MIB tree)");
3380
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
3381
492
    } else if (subtree) {
3382
291
        const char *units = NULL;
3383
291
        const char *hint = NULL;
3384
291
        if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
3385
291
                                    NETSNMP_DS_LIB_DONT_PRINT_UNITS)) {
3386
80
            units = subtree->units;
3387
80
        }
3388
3389
291
    if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
3390
291
                                    NETSNMP_DS_LIB_NO_DISPLAY_HINT)) {
3391
39
      hint = subtree->hint;
3392
39
        }
3393
3394
291
        if (subtree->printomat) {
3395
291
            return (*subtree->printomat) (buf, buf_len, out_len,
3396
291
                                          allow_realloc, variable,
3397
291
                                          subtree->enums, hint,
3398
291
                                          units);
3399
291
        } else {
3400
0
            return sprint_realloc_by_type(buf, buf_len, out_len,
3401
0
                                          allow_realloc, variable,
3402
0
                                          subtree->enums, hint,
3403
0
                                          units);
3404
0
        }
3405
291
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3406
291
    } else {
3407
        /*
3408
         * Handle rare case where tree is empty.  
3409
         */
3410
201
        return sprint_realloc_by_type(buf, buf_len, out_len, allow_realloc,
3411
201
                                      variable, NULL, NULL, NULL);
3412
201
    }
3413
492
}
3414
3415
#ifndef NETSNMP_FEATURE_REMOVE_SNPRINT_VARABLE
3416
int
3417
snprint_variable(char *buf, size_t buf_len,
3418
                 const oid * objid, size_t objidlen,
3419
                 const netsnmp_variable_list * variable)
3420
0
{
3421
0
    size_t          out_len = 0;
3422
3423
0
    if (sprint_realloc_variable((u_char **) & buf, &buf_len, &out_len, 0,
3424
0
                                objid, objidlen, variable)) {
3425
0
        return (int) out_len;
3426
0
    } else {
3427
0
        return -1;
3428
0
    }
3429
0
}
3430
#endif /* NETSNMP_FEATURE_REMOVE_SNPRINT_VARABLE  */
3431
3432
/**
3433
 * Prints a variable to stdout.
3434
 *
3435
 * @param objid     The object id.
3436
 * @param objidlen  The length of the object id.
3437
 * @param variable  The variable to print.
3438
 */
3439
void
3440
print_variable(const oid * objid,
3441
               size_t objidlen, const netsnmp_variable_list * variable)
3442
492
{
3443
492
    fprint_variable(stdout, objid, objidlen, variable);
3444
492
}
3445
3446
3447
/**
3448
 * Prints a variable to a file descriptor.
3449
 *
3450
 * @param f         The file descriptor to print to.
3451
 * @param objid     The object id.
3452
 * @param objidlen  The length of the object id.
3453
 * @param variable  The variable to print.
3454
 */
3455
void
3456
fprint_variable(FILE * f,
3457
                const oid * objid,
3458
                size_t objidlen, const netsnmp_variable_list * variable)
3459
492
{
3460
492
    u_char         *buf = NULL;
3461
492
    size_t          buf_len = 256, out_len = 0;
3462
3463
492
    if ((buf = calloc(buf_len, 1)) == NULL) {
3464
0
        fprintf(f, "[TRUNCATED]\n");
3465
0
        return;
3466
492
    } else {
3467
492
        if (sprint_realloc_variable(&buf, &buf_len, &out_len, 1,
3468
492
                                    objid, objidlen, variable)) {
3469
492
            fprintf(f, "%s\n", buf);
3470
492
        } else {
3471
0
            fprintf(f, "%s [TRUNCATED]\n", buf);
3472
0
        }
3473
492
    }
3474
3475
492
    SNMP_FREE(buf);
3476
492
}
3477
3478
int
3479
sprint_realloc_value(u_char ** buf, size_t * buf_len,
3480
                     size_t * out_len, int allow_realloc,
3481
                     const oid * objid, size_t objidlen,
3482
                     const netsnmp_variable_list * variable)
3483
0
{
3484
0
    if (variable->type == SNMP_NOSUCHOBJECT) {
3485
0
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3486
0
                            "No Such Object available on this agent at this OID");
3487
0
    } else if (variable->type == SNMP_NOSUCHINSTANCE) {
3488
0
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3489
0
                            "No Such Instance currently exists at this OID");
3490
0
    } else if (variable->type == SNMP_ENDOFMIBVIEW) {
3491
0
        return snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
3492
0
                            "No more variables left in this MIB View (It is past the end of the MIB tree)");
3493
0
    } else {
3494
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
3495
0
        const char *units = NULL;
3496
0
        struct tree *subtree = tree_head;
3497
0
  subtree = get_tree(objid, objidlen, subtree);
3498
0
        if (subtree && !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
3499
0
                                            NETSNMP_DS_LIB_DONT_PRINT_UNITS)) {
3500
0
            units = subtree->units;
3501
0
        }
3502
0
        if (subtree) {
3503
0
      if(subtree->printomat) {
3504
0
    return (*subtree->printomat) (buf, buf_len, out_len,
3505
0
                allow_realloc, variable,
3506
0
                subtree->enums, subtree->hint,
3507
0
                units);
3508
0
      } else {
3509
0
    return sprint_realloc_by_type(buf, buf_len, out_len,
3510
0
                allow_realloc, variable,
3511
0
                subtree->enums, subtree->hint,
3512
0
                units);
3513
0
      }
3514
0
  }
3515
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
3516
0
        return sprint_realloc_by_type(buf, buf_len, out_len,
3517
0
                                      allow_realloc, variable,
3518
0
                                      NULL, NULL, NULL);
3519
0
    }
3520
0
}
3521
3522
#ifndef NETSNMP_FEATURE_REMOVE_SNPRINT_VALUE
3523
/* used in the perl module */
3524
int
3525
snprint_value(char *buf, size_t buf_len,
3526
              const oid * objid, size_t objidlen,
3527
              const netsnmp_variable_list * variable)
3528
0
{
3529
0
    size_t          out_len = 0;
3530
3531
0
    if (sprint_realloc_value((u_char **) & buf, &buf_len, &out_len, 0,
3532
0
                             objid, objidlen, variable)) {
3533
0
        return (int) out_len;
3534
0
    } else {
3535
0
        return -1;
3536
0
    }
3537
0
}
3538
#endif /* NETSNMP_FEATURE_REMOVE_SNPRINT_VALUE */
3539
3540
void
3541
print_value(const oid * objid,
3542
            size_t objidlen, const netsnmp_variable_list * variable)
3543
0
{
3544
0
    fprint_value(stdout, objid, objidlen, variable);
3545
0
}
3546
3547
void
3548
fprint_value(FILE * f,
3549
             const oid * objid,
3550
             size_t objidlen, const netsnmp_variable_list * variable)
3551
0
{
3552
0
    u_char         *buf = NULL;
3553
0
    size_t          buf_len = 256, out_len = 0;
3554
3555
0
    if ((buf = calloc(buf_len, 1)) == NULL) {
3556
0
        fprintf(f, "[TRUNCATED]\n");
3557
0
        return;
3558
0
    } else {
3559
0
        if (sprint_realloc_value(&buf, &buf_len, &out_len, 1,
3560
0
                                 objid, objidlen, variable)) {
3561
0
            fprintf(f, "%s\n", buf);
3562
0
        } else {
3563
0
            fprintf(f, "%s [TRUNCATED]\n", buf);
3564
0
        }
3565
0
    }
3566
3567
0
    SNMP_FREE(buf);
3568
0
}
3569
3570
3571
/**
3572
 * Takes the value in VAR and turns it into an OID segment in var->name.
3573
 *  
3574
 * @param var    The variable.
3575
 *
3576
 * @return SNMPERR_SUCCESS or SNMPERR_GENERR 
3577
 */
3578
int
3579
build_oid_segment(netsnmp_variable_list * var)
3580
0
{
3581
0
    int             i;
3582
0
    uint32_t        ipaddr;
3583
3584
0
    if (var->name && var->name != var->name_loc)
3585
0
        SNMP_FREE(var->name);
3586
0
    switch (var->type) {
3587
0
    case ASN_INTEGER:
3588
0
    case ASN_COUNTER:
3589
0
    case ASN_GAUGE:
3590
0
    case ASN_TIMETICKS:
3591
0
        var->name_length = 1;
3592
0
        var->name = var->name_loc;
3593
0
        var->name[0] = *(var->val.integer);
3594
0
        break;
3595
3596
0
    case ASN_IPADDRESS:
3597
0
        var->name_length = 4;
3598
0
        var->name = var->name_loc;
3599
0
        memcpy(&ipaddr, var->val.string, sizeof(ipaddr));
3600
0
        var->name[0] = (ipaddr >> 24) & 0xff;
3601
0
        var->name[1] = (ipaddr >> 16) & 0xff;
3602
0
        var->name[2] = (ipaddr >>  8) & 0xff;
3603
0
        var->name[3] = (ipaddr >>  0) & 0xff;
3604
0
        break;
3605
        
3606
0
    case ASN_PRIV_IMPLIED_OBJECT_ID:
3607
0
        var->name_length = var->val_len / sizeof(oid);
3608
0
        if (var->name_length > (OID_LENGTH(var->name_loc)))
3609
0
            var->name = (oid *) malloc(sizeof(oid) * (var->name_length));
3610
0
        else
3611
0
            var->name = var->name_loc;
3612
0
        if (var->name == NULL)
3613
0
            return SNMPERR_GENERR;
3614
3615
0
        for (i = 0; i < (int) var->name_length; i++)
3616
0
            var->name[i] = var->val.objid[i];
3617
0
        break;
3618
3619
0
    case ASN_OBJECT_ID:
3620
0
        var->name_length = var->val_len / sizeof(oid) + 1;
3621
0
        if (var->name_length > (OID_LENGTH(var->name_loc)))
3622
0
            var->name = (oid *) malloc(sizeof(oid) * (var->name_length));
3623
0
        else
3624
0
            var->name = var->name_loc;
3625
0
        if (var->name == NULL)
3626
0
            return SNMPERR_GENERR;
3627
3628
0
        var->name[0] = var->name_length - 1;
3629
0
        for (i = 0; i < (int) var->name_length - 1; i++)
3630
0
            var->name[i + 1] = var->val.objid[i];
3631
0
        break;
3632
3633
0
    case ASN_PRIV_IMPLIED_OCTET_STR:
3634
0
        var->name_length = var->val_len;
3635
0
        if (var->name_length > (OID_LENGTH(var->name_loc)))
3636
0
            var->name = (oid *) malloc(sizeof(oid) * (var->name_length));
3637
0
        else
3638
0
            var->name = var->name_loc;
3639
0
        if (var->name == NULL)
3640
0
            return SNMPERR_GENERR;
3641
3642
0
        for (i = 0; i < (int) var->val_len; i++)
3643
0
            var->name[i] = (oid) var->val.string[i];
3644
0
        break;
3645
3646
0
    case ASN_OPAQUE:
3647
0
    case ASN_OCTET_STR:
3648
0
        var->name_length = var->val_len + 1;
3649
0
        if (var->name_length > (OID_LENGTH(var->name_loc)))
3650
0
            var->name = (oid *) malloc(sizeof(oid) * (var->name_length));
3651
0
        else
3652
0
            var->name = var->name_loc;
3653
0
        if (var->name == NULL)
3654
0
            return SNMPERR_GENERR;
3655
3656
0
        var->name[0] = (oid) var->val_len;
3657
0
        for (i = 0; i < (int) var->val_len; i++)
3658
0
            var->name[i + 1] = (oid) var->val.string[i];
3659
0
        break;
3660
3661
0
    default:
3662
0
        DEBUGMSGTL(("build_oid_segment",
3663
0
                    "invalid asn type: %d\n", var->type));
3664
0
        return SNMPERR_GENERR;
3665
0
    }
3666
3667
0
    if (var->name_length > MAX_OID_LEN) {
3668
0
        DEBUGMSGTL(("build_oid_segment",
3669
0
                    "Something terribly wrong, namelen = %lu\n",
3670
0
                    (unsigned long)var->name_length));
3671
0
        return SNMPERR_GENERR;
3672
0
    }
3673
3674
0
    return SNMPERR_SUCCESS;
3675
0
}
3676
3677
3678
/**
3679
 * Concatenate a prefix and the OIDs of a variable list.
3680
 *
3681
 * @param[out]    in         Output buffer.
3682
 * @param[in]     in_len     Maximum number of OID components that fit in @p in.
3683
 * @param[out]    out_len    Number of OID components of the result.
3684
 * @param[in]     prefix     OID to be copied to the start of the output buffer.
3685
 * @param[in]     prefix_len Number of OID components to copy from @p prefix.
3686
 * @param[in,out] indexes    Variable list for which var->name should be set
3687
 *                           for each variable var in the list and whose OIDs
3688
 *                           should be appended to @p in.
3689
 */
3690
int
3691
build_oid_noalloc(oid * in, size_t in_len, size_t * out_len,
3692
                  const oid * prefix, size_t prefix_len,
3693
                  netsnmp_variable_list * indexes)
3694
0
{
3695
0
    netsnmp_variable_list *var;
3696
3697
0
    if (prefix) {
3698
0
        if (in_len < prefix_len)
3699
0
            return SNMPERR_GENERR;
3700
0
        memcpy(in, prefix, prefix_len * sizeof(oid));
3701
0
        *out_len = prefix_len;
3702
0
    } else {
3703
0
        *out_len = 0;
3704
0
    }
3705
3706
0
    for (var = indexes; var != NULL; var = var->next_variable) {
3707
0
        if (build_oid_segment(var) != SNMPERR_SUCCESS)
3708
0
            return SNMPERR_GENERR;
3709
0
        if (var->name_length + *out_len <= in_len) {
3710
0
            memcpy(&(in[*out_len]), var->name,
3711
0
                   sizeof(oid) * var->name_length);
3712
0
            *out_len += var->name_length;
3713
0
        } else {
3714
0
            return SNMPERR_GENERR;
3715
0
        }
3716
0
    }
3717
3718
0
    DEBUGMSGTL(("build_oid_noalloc", "generated: "));
3719
0
    DEBUGMSGOID(("build_oid_noalloc", in, *out_len));
3720
0
    DEBUGMSG(("build_oid_noalloc", "\n"));
3721
0
    return SNMPERR_SUCCESS;
3722
0
}
3723
3724
int
3725
build_oid(oid ** out, size_t * out_len,
3726
          oid * prefix, size_t prefix_len, netsnmp_variable_list * indexes)
3727
0
{
3728
0
    oid             tmpout[MAX_OID_LEN];
3729
3730
    /*
3731
     * xxx-rks: inefficient. try only building segments to find index len:
3732
     *   for (var = indexes; var != NULL; var = var->next_variable) {
3733
     *      if (build_oid_segment(var) != SNMPERR_SUCCESS)
3734
     *         return SNMPERR_GENERR;
3735
     *      *out_len += var->name_length;
3736
     *
3737
     * then see if it fits in existing buffer, or realloc buffer.
3738
     */
3739
0
    if (build_oid_noalloc(tmpout, sizeof(tmpout) / sizeof(tmpout[0]), out_len,
3740
0
                          prefix, prefix_len, indexes) != SNMPERR_SUCCESS)
3741
0
        return SNMPERR_GENERR;
3742
3743
    /** xxx-rks: should free previous value? */
3744
0
    snmp_clone_mem((void **) out, (void *) tmpout, *out_len * sizeof(oid));
3745
3746
0
    return SNMPERR_SUCCESS;
3747
0
}
3748
3749
/*
3750
 * vblist_out must contain a pre-allocated string of variables into
3751
 * which indexes can be extracted based on the previously existing
3752
 * types in the variable chain
3753
 * returns:
3754
 * SNMPERR_GENERR  on error
3755
 * SNMPERR_SUCCESS on success
3756
 */
3757
3758
int
3759
parse_oid_indexes(oid * oidIndex, size_t oidLen,
3760
                  netsnmp_variable_list * data)
3761
0
{
3762
0
    netsnmp_variable_list *var = data;
3763
3764
0
    while (var && oidLen > 0) {
3765
3766
0
        if (parse_one_oid_index(&oidIndex, &oidLen, var, 0) !=
3767
0
            SNMPERR_SUCCESS)
3768
0
            break;
3769
3770
0
        var = var->next_variable;
3771
0
    }
3772
3773
0
    if (var != NULL || oidLen != 0)
3774
0
        return SNMPERR_GENERR;
3775
0
    return SNMPERR_SUCCESS;
3776
0
}
3777
3778
3779
int
3780
parse_one_oid_index(oid ** oidStart, size_t * oidLen,
3781
                    netsnmp_variable_list * data, int complete)
3782
0
{
3783
0
    netsnmp_variable_list *var = data;
3784
0
    oid             tmpout[MAX_OID_LEN];
3785
0
    unsigned int    i;
3786
0
    unsigned int    uitmp = 0;
3787
3788
0
    oid            *oidIndex = *oidStart;
3789
3790
0
    if (var == NULL || ((*oidLen == 0) && (complete == 0)))
3791
0
        return SNMPERR_GENERR;
3792
0
    else {
3793
0
        switch (var->type) {
3794
0
        case ASN_INTEGER:
3795
0
        case ASN_COUNTER:
3796
0
        case ASN_GAUGE:
3797
0
        case ASN_TIMETICKS:
3798
0
            if (*oidLen) {
3799
0
                snmp_set_var_value(var, (u_char *) oidIndex++,
3800
0
                                   sizeof(oid));
3801
0
                --(*oidLen);
3802
0
            } else {
3803
0
                snmp_set_var_value(var, (u_char *) oidLen, sizeof(long));
3804
0
            }
3805
0
            DEBUGMSGTL(("parse_oid_indexes",
3806
0
                        "Parsed int(%d): %ld\n", var->type,
3807
0
                        *var->val.integer));
3808
0
            break;
3809
3810
0
        case ASN_IPADDRESS:
3811
0
            if ((4 > *oidLen) && (complete == 0))
3812
0
                return SNMPERR_GENERR;
3813
            
3814
0
            for (i = 0; i < 4 && i < *oidLen; ++i) {
3815
0
                if (oidIndex[i] > 255) {
3816
0
                    DEBUGMSGTL(("parse_oid_indexes",
3817
0
                                "illegal oid in index: %" NETSNMP_PRIo "d\n",
3818
0
                                oidIndex[0]));
3819
0
                        return SNMPERR_GENERR;  /* sub-identifier too large */
3820
0
                    }
3821
0
                    uitmp = uitmp + (oidIndex[i] << (8*(3-i)));
3822
0
                }
3823
0
            if (4 > (int) (*oidLen)) {
3824
0
                oidIndex += *oidLen;
3825
0
                (*oidLen) = 0;
3826
0
            } else {
3827
0
                oidIndex += 4;
3828
0
                (*oidLen) -= 4;
3829
0
            }
3830
0
            uitmp = htonl(uitmp); /* put it in proper order for byte copies */
3831
0
            uitmp = 
3832
0
                snmp_set_var_value(var, (u_char *) &uitmp, 4);
3833
0
            DEBUGMSGTL(("parse_oid_indexes",
3834
0
                        "Parsed ipaddr(%d): %d.%d.%d.%d\n", var->type,
3835
0
                        var->val.string[0], var->val.string[1],
3836
0
                        var->val.string[2], var->val.string[3]));
3837
0
            break;
3838
3839
0
        case ASN_OBJECT_ID:
3840
0
        case ASN_PRIV_IMPLIED_OBJECT_ID:
3841
0
            if (var->type == ASN_PRIV_IMPLIED_OBJECT_ID) {
3842
                /*
3843
                 * might not be implied, might be fixed len. check if
3844
                 * caller set up val len, and use it if they did.
3845
                 */
3846
0
                if (0 == var->val_len)
3847
0
                    uitmp = *oidLen;
3848
0
                else {
3849
0
                    DEBUGMSGTL(("parse_oid_indexes:fix", "fixed len oid\n"));
3850
0
                    uitmp = var->val_len;
3851
0
                }
3852
0
            } else {
3853
0
                if (*oidLen) {
3854
0
                    uitmp = *oidIndex++;
3855
0
                    --(*oidLen);
3856
0
                } else {
3857
0
                    uitmp = 0;
3858
0
                }
3859
0
                if ((uitmp > *oidLen) && (complete == 0))
3860
0
                    return SNMPERR_GENERR;
3861
0
            }
3862
3863
0
            if (uitmp > MAX_OID_LEN)
3864
0
                return SNMPERR_GENERR;  /* too big and illegal */
3865
3866
0
            if (uitmp > *oidLen) {
3867
0
                memcpy(tmpout, oidIndex, sizeof(oid) * (*oidLen));
3868
0
                memset(&tmpout[*oidLen], 0x00,
3869
0
                       sizeof(oid) * (uitmp - *oidLen));
3870
0
                snmp_set_var_value(var, (u_char *) tmpout,
3871
0
                                   sizeof(oid) * uitmp);
3872
0
                oidIndex += *oidLen;
3873
0
                (*oidLen) = 0;
3874
0
            } else {
3875
0
                snmp_set_var_value(var, (u_char *) oidIndex,
3876
0
                                   sizeof(oid) * uitmp);
3877
0
                oidIndex += uitmp;
3878
0
                (*oidLen) -= uitmp;
3879
0
            }
3880
3881
0
            DEBUGMSGTL(("parse_oid_indexes", "Parsed oid: "));
3882
0
            DEBUGMSGOID(("parse_oid_indexes",
3883
0
                         var->val.objid, var->val_len / sizeof(oid)));
3884
0
            DEBUGMSG(("parse_oid_indexes", "\n"));
3885
0
            break;
3886
3887
0
        case ASN_OPAQUE:
3888
0
        case ASN_OCTET_STR:
3889
0
        case ASN_PRIV_IMPLIED_OCTET_STR:
3890
0
            if (var->type == ASN_PRIV_IMPLIED_OCTET_STR) {
3891
                /*
3892
                 * might not be implied, might be fixed len. check if
3893
                 * caller set up val len, and use it if they did.
3894
                 */
3895
0
                if (0 == var->val_len)
3896
0
                    uitmp = *oidLen;
3897
0
                else {
3898
0
                    DEBUGMSGTL(("parse_oid_indexes:fix", "fixed len str\n"));
3899
0
                    uitmp = var->val_len;
3900
0
                }
3901
0
            } else {
3902
0
                if (*oidLen) {
3903
0
                    uitmp = *oidIndex++;
3904
0
                    --(*oidLen);
3905
0
                } else {
3906
0
                    uitmp = 0;
3907
0
                }
3908
0
                if ((uitmp > *oidLen) && (complete == 0))
3909
0
                    return SNMPERR_GENERR;
3910
0
            }
3911
3912
            /*
3913
             * we handle this one ourselves since we don't have
3914
             * pre-allocated memory to copy from using
3915
             * snmp_set_var_value() 
3916
             */
3917
3918
0
            if (uitmp == 0)
3919
0
                break;          /* zero length strings shouldn't malloc */
3920
3921
0
            if (uitmp > MAX_OID_LEN)
3922
0
                return SNMPERR_GENERR;  /* too big and illegal */
3923
3924
            /*
3925
             * malloc by size+1 to allow a null to be appended. 
3926
             */
3927
0
            var->val_len = uitmp;
3928
0
            var->val.string = calloc(1, uitmp + 1);
3929
0
            if (var->val.string == NULL)
3930
0
                return SNMPERR_GENERR;
3931
3932
0
            if ((size_t)uitmp > (*oidLen)) {
3933
0
                for (i = 0; i < *oidLen; ++i)
3934
0
                    var->val.string[i] = (u_char) * oidIndex++;
3935
0
                for (i = *oidLen; i < uitmp; ++i)
3936
0
                    var->val.string[i] = '\0';
3937
0
                (*oidLen) = 0;
3938
0
            } else {
3939
0
                for (i = 0; i < uitmp; ++i)
3940
0
                    var->val.string[i] = (u_char) * oidIndex++;
3941
0
                (*oidLen) -= uitmp;
3942
0
            }
3943
0
            var->val.string[uitmp] = '\0';
3944
3945
0
            DEBUGMSGTL(("parse_oid_indexes",
3946
0
                        "Parsed str(%d): %s\n", var->type,
3947
0
                        var->val.string));
3948
0
            break;
3949
3950
0
        default:
3951
0
            DEBUGMSGTL(("parse_oid_indexes",
3952
0
                        "invalid asn type: %d\n", var->type));
3953
0
            return SNMPERR_GENERR;
3954
0
        }
3955
0
    }
3956
0
    (*oidStart) = oidIndex;
3957
0
    return SNMPERR_SUCCESS;
3958
0
}
3959
3960
/*
3961
 * dump_realloc_oid_to_inetaddress:
3962
 *   return 0 for failure,
3963
 *   return 1 for success,
3964
 *   return 2 for not handled
3965
 */
3966
3967
int 
3968
dump_realloc_oid_to_inetaddress(const int addr_type, const oid * objid, size_t objidlen, 
3969
                                u_char ** buf, size_t * buf_len,
3970
                                size_t * out_len, int allow_realloc, 
3971
                                char quotechar)
3972
0
{
3973
0
    int             i, len;
3974
0
    char            intbuf[64], *p;
3975
0
    char *const     end = intbuf + sizeof(intbuf);
3976
0
    unsigned char  *zc;
3977
0
    unsigned long   zone;
3978
3979
0
    if (!buf)
3980
0
        return 1;
3981
3982
0
    for (i = 0; i < objidlen; i++)
3983
0
        if (objid[i] > 255)
3984
0
            return 2;
3985
3986
0
    p = intbuf;
3987
0
    *p++ = quotechar;
3988
3989
0
    switch (addr_type) {
3990
0
    case IPV4:
3991
0
    case IPV4Z:
3992
0
        if ((addr_type == IPV4  && objidlen != 4) ||
3993
0
            (addr_type == IPV4Z && objidlen != 8))
3994
0
            return 2;
3995
3996
0
        len = snprintf(p, end - p, "%" NETSNMP_PRIo "u.%" NETSNMP_PRIo "u."
3997
0
                      "%" NETSNMP_PRIo "u.%" NETSNMP_PRIo "u",
3998
0
                      objid[0], objid[1], objid[2], objid[3]);
3999
0
        p += len;
4000
0
        if (p >= end)
4001
0
            return 2;
4002
0
        if (addr_type == IPV4Z) {
4003
0
            zc = (unsigned char*)&zone;
4004
0
            zc[0] = objid[4];
4005
0
            zc[1] = objid[5];
4006
0
            zc[2] = objid[6];
4007
0
            zc[3] = objid[7];
4008
0
            zone = ntohl(zone);
4009
0
            len = snprintf(p, end - p, "%%%lu", zone);
4010
0
            p += len;
4011
0
            if (p >= end)
4012
0
                return 2;
4013
0
        }
4014
4015
0
        break;
4016
4017
0
    case IPV6:
4018
0
    case IPV6Z:
4019
0
        if ((addr_type == IPV6 && objidlen != 16) ||
4020
0
            (addr_type == IPV6Z && objidlen != 20))
4021
0
            return 2;
4022
4023
0
        len = 0;
4024
0
        for (i = 0; i < 16; i ++) {
4025
0
            len = snprintf(p, end - p, "%s%02" NETSNMP_PRIo "x", i ? ":" : "",
4026
0
                           objid[i]);
4027
0
            p += len;
4028
0
            if (p >= end)
4029
0
                return 2;
4030
0
        }
4031
4032
0
        if (addr_type == IPV6Z) {
4033
0
            zc = (unsigned char*)&zone;
4034
0
            zc[0] = objid[16];
4035
0
            zc[1] = objid[17];
4036
0
            zc[2] = objid[18];
4037
0
            zc[3] = objid[19];
4038
0
            zone = ntohl(zone);
4039
0
            len = snprintf(p, end - p, "%%%lu", zone);
4040
0
            p += len;
4041
0
            if (p >= end)
4042
0
                return 2;
4043
0
        }
4044
4045
0
        break;
4046
4047
0
    case DNS:
4048
0
    default: 
4049
        /* DNS can just be handled by dump_realloc_oid_to_string() */
4050
0
        return 2;
4051
0
    }
4052
4053
0
    *p++ = quotechar;
4054
0
    if (p >= end)
4055
0
        return 2;
4056
4057
0
    *p++ = '\0';
4058
0
    if (p >= end)
4059
0
        return 2;
4060
4061
0
    return snmp_cstrcat(buf, buf_len, out_len, allow_realloc, intbuf);
4062
0
}
4063
4064
int
4065
dump_realloc_oid_to_string(const oid * objid, size_t objidlen,
4066
                           u_char ** buf, size_t * buf_len,
4067
                           size_t * out_len, int allow_realloc,
4068
                           char quotechar)
4069
0
{
4070
0
    if (buf) {
4071
0
        int             i, alen;
4072
4073
0
        for (i = 0, alen = 0; i < (int) objidlen; i++) {
4074
0
            oid             tst = objid[i];
4075
0
            if ((tst > 254) || (!isprint(tst))) {
4076
0
                tst = (oid) '.';
4077
0
            }
4078
4079
0
            if (alen == 0) {
4080
0
                if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_ESCAPE_QUOTES)) {
4081
0
                    while ((*out_len + 2) >= *buf_len) {
4082
0
                        if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
4083
0
                            return 0;
4084
0
                        }
4085
0
                    }
4086
0
                    *(*buf + *out_len) = '\\';
4087
0
                    (*out_len)++;
4088
0
                }
4089
0
                while ((*out_len + 2) >= *buf_len) {
4090
0
                    if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
4091
0
                        return 0;
4092
0
                    }
4093
0
                }
4094
0
                *(*buf + *out_len) = quotechar;
4095
0
                (*out_len)++;
4096
0
            }
4097
4098
0
            while ((*out_len + 2) >= *buf_len) {
4099
0
                if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
4100
0
                    return 0;
4101
0
                }
4102
0
            }
4103
0
            *(*buf + *out_len) = (char) tst;
4104
0
            (*out_len)++;
4105
0
            alen++;
4106
0
        }
4107
4108
0
        if (alen) {
4109
0
            if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_ESCAPE_QUOTES)) {
4110
0
                while ((*out_len + 2) >= *buf_len) {
4111
0
                    if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
4112
0
                        return 0;
4113
0
                    }
4114
0
                }
4115
0
                *(*buf + *out_len) = '\\';
4116
0
                (*out_len)++;
4117
0
            }
4118
0
            while ((*out_len + 2) >= *buf_len) {
4119
0
                if (!(allow_realloc && snmp_realloc(buf, buf_len))) {
4120
0
                    return 0;
4121
0
                }
4122
0
            }
4123
0
            *(*buf + *out_len) = quotechar;
4124
0
            (*out_len)++;
4125
0
        }
4126
4127
0
        *(*buf + *out_len) = '\0';
4128
0
    }
4129
4130
0
    return 1;
4131
0
}
4132
4133
void
4134
_oid_finish_printing(const oid * objid, size_t objidlen,
4135
                     u_char ** buf, size_t * buf_len, size_t * out_len,
4136
877
                     int allow_realloc, int *buf_overflow) {
4137
877
    char            intbuf[64];
4138
877
    if (*buf != NULL && *(*buf + *out_len - 1) != '.') {
4139
0
        if (!*buf_overflow && !snmp_cstrcat(buf, buf_len, out_len,
4140
0
                                            allow_realloc, ".")) {
4141
0
            *buf_overflow = 1;
4142
0
        }
4143
0
    }
4144
4145
10.6k
    while (objidlen-- > 0) {    /* output rest of name, uninterpreted */
4146
9.73k
        sprintf(intbuf, "%" NETSNMP_PRIo "u.", *objid++);
4147
9.73k
        if (!*buf_overflow && !snmp_cstrcat(buf, buf_len, out_len,
4148
9.73k
                                            allow_realloc, intbuf)) {
4149
0
            *buf_overflow = 1;
4150
0
        }
4151
9.73k
    }
4152
4153
877
    if (*buf != NULL) {
4154
877
        *(*buf + *out_len - 1) = '\0';  /* remove trailing dot */
4155
877
        *out_len = *out_len - 1;
4156
877
    }
4157
877
}
4158
4159
#ifndef NETSNMP_DISABLE_MIB_LOADING
4160
static void
4161
_get_realloc_symbol_octet_string(size_t numids, const oid * objid,
4162
         u_char ** buf, size_t * buf_len,
4163
         size_t * out_len, int allow_realloc,
4164
         int *buf_overflow, struct tree* tp)
4165
0
{
4166
0
  netsnmp_variable_list var = { 0 };
4167
0
  u_char    buffer[1024];
4168
0
  size_t    i;
4169
4170
0
  for (i = 0; i < numids; i++)
4171
0
    buffer[i] = (u_char) objid[i];
4172
0
  var.type = ASN_OCTET_STR;
4173
0
  var.val.string = buffer;
4174
0
  var.val_len = numids;
4175
0
  if (!*buf_overflow) {
4176
0
    if (!sprint_realloc_octet_string(buf, buf_len, out_len,
4177
0
             allow_realloc, &var,
4178
0
             NULL, tp->hint,
4179
0
             NULL)) {
4180
0
      *buf_overflow = 1;
4181
0
    }
4182
0
  }
4183
0
}
4184
4185
static struct tree *
4186
_get_realloc_symbol(const oid * objid, size_t objidlen,
4187
                    struct tree *subtree,
4188
                    u_char ** buf, size_t * buf_len, size_t * out_len,
4189
                    int allow_realloc, int *buf_overflow,
4190
                    struct index_list *in_dices, size_t * end_of_known)
4191
1.85k
{
4192
1.85k
    struct tree    *return_tree = NULL;
4193
1.85k
    int             extended_index =
4194
1.85k
        netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_EXTENDED_INDEX);
4195
1.85k
    int             output_format =
4196
1.85k
        netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OID_OUTPUT_FORMAT);
4197
1.85k
    char            intbuf[64];
4198
1.85k
    struct tree    *orgtree = subtree;
4199
4200
1.85k
    if (!objid || !buf) {
4201
0
        return NULL;
4202
0
    }
4203
4204
3.17k
    for (; subtree; subtree = subtree->next_peer) {
4205
2.29k
        if (*objid == subtree->subid) {
4206
976
      while (subtree->next_peer && subtree->next_peer->subid == *objid)
4207
0
    subtree = subtree->next_peer;
4208
976
            if (subtree->indexes) {
4209
0
                in_dices = subtree->indexes;
4210
976
            } else if (subtree->augments) {
4211
0
                struct tree    *tp2 =
4212
0
                    find_tree_node(subtree->augments, -1);
4213
0
                if (tp2) {
4214
0
                    in_dices = tp2->indexes;
4215
0
                }
4216
0
            }
4217
4218
976
            if (!strncmp(subtree->label, ANON, ANON_LEN) ||
4219
976
                (NETSNMP_OID_OUTPUT_NUMERIC == output_format)) {
4220
0
                sprintf(intbuf, "%lu", subtree->subid);
4221
0
                if (!*buf_overflow && !snmp_cstrcat(buf, buf_len, out_len,
4222
0
                                                    allow_realloc, intbuf)) {
4223
0
                    *buf_overflow = 1;
4224
0
                }
4225
976
            } else {
4226
976
                if (!*buf_overflow &&
4227
976
                    !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4228
976
                                  subtree->label)) {
4229
0
                    *buf_overflow = 1;
4230
0
                }
4231
976
                if (output_format == NETSNMP_OID_OUTPUT_FULL_AND_NUMERIC) {
4232
0
                    snprintf(intbuf, sizeof intbuf, "(%lu)", subtree->subid);
4233
0
                    if (!*buf_overflow &&
4234
0
                        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4235
0
                                      intbuf)) {
4236
0
                        *buf_overflow = 1;
4237
0
                    }
4238
0
                }
4239
976
            }
4240
4241
976
            if (objidlen > 1) {
4242
672
                if (!*buf_overflow &&
4243
672
                    !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, ".")) {
4244
0
                    *buf_overflow = 1;
4245
0
                }
4246
4247
672
                return_tree = _get_realloc_symbol(objid + 1, objidlen - 1,
4248
672
                                                  subtree->child_list,
4249
672
                                                  buf, buf_len, out_len,
4250
672
                                                  allow_realloc,
4251
672
                                                  buf_overflow, in_dices,
4252
672
                                                  end_of_known);
4253
672
            }
4254
4255
976
            if (return_tree != NULL) {
4256
0
                return return_tree;
4257
976
            } else {
4258
976
                return subtree;
4259
976
            }
4260
976
        }
4261
2.29k
    }
4262
4263
877
    if (end_of_known) {
4264
877
        *end_of_known = *out_len;
4265
877
    }
4266
4267
    /*
4268
     * Subtree not found.  
4269
     */
4270
4271
877
    if (orgtree && in_dices && objidlen > 0) {
4272
0
  sprintf(intbuf, "%" NETSNMP_PRIo "u.", *objid);
4273
0
  if (!*buf_overflow
4274
0
      && !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, intbuf)) {
4275
0
      *buf_overflow = 1;
4276
0
  }
4277
0
  objid++;
4278
0
  objidlen--;
4279
0
    }
4280
4281
877
    while (in_dices && (objidlen > 0) &&
4282
0
           (NETSNMP_OID_OUTPUT_NUMERIC != output_format) &&
4283
0
           !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_BREAKDOWN_OIDS)) {
4284
0
        size_t          numids;
4285
0
        struct tree    *tp;
4286
4287
0
        tp = find_tree_node(in_dices->ilabel, -1);
4288
4289
0
        if (!tp) {
4290
            /*
4291
             * Can't find an index in the mib tree.  Bail.  
4292
             */
4293
0
            goto finish_it;
4294
0
        }
4295
4296
0
        if (extended_index) {
4297
0
            if (*buf != NULL && *(*buf + *out_len - 1) == '.') {
4298
0
                (*out_len)--;
4299
0
            }
4300
0
            if (!*buf_overflow &&
4301
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "[")) {
4302
0
                *buf_overflow = 1;
4303
0
            }
4304
0
        }
4305
4306
0
        switch (tp->type) {
4307
0
        case TYPE_OCTETSTR:
4308
0
            if (extended_index && tp->hint) {
4309
0
                if (in_dices->isimplied) {
4310
0
                    numids = objidlen;
4311
0
                    if (numids > objidlen)
4312
0
                        goto finish_it;
4313
0
                } else if (tp->ranges && !tp->ranges->next
4314
0
                           && tp->ranges->low == tp->ranges->high) {
4315
0
                    numids = tp->ranges->low;
4316
0
                    if (numids > objidlen)
4317
0
                        goto finish_it;
4318
0
                } else {
4319
0
                    numids = *objid;
4320
0
                    if (numids >= objidlen)
4321
0
                        goto finish_it;
4322
0
                    objid++;
4323
0
                    objidlen--;
4324
0
                }
4325
0
                if (numids > objidlen)
4326
0
                    goto finish_it;
4327
0
    _get_realloc_symbol_octet_string(numids, objid, buf, buf_len,
4328
0
             out_len, allow_realloc,
4329
0
             buf_overflow, tp);
4330
0
            } else if (in_dices->isimplied) {
4331
0
                numids = objidlen;
4332
0
                if (numids > objidlen)
4333
0
                    goto finish_it;
4334
4335
0
                if (!*buf_overflow) {
4336
0
                    if (!dump_realloc_oid_to_string
4337
0
                        (objid, numids, buf, buf_len, out_len,
4338
0
                         allow_realloc, '\'')) {
4339
0
                        *buf_overflow = 1;
4340
0
                    }
4341
0
                }
4342
0
            } else if (tp->ranges && !tp->ranges->next
4343
0
                       && tp->ranges->low == tp->ranges->high) {
4344
                /*
4345
                 * a fixed-length octet string 
4346
                 */
4347
0
                numids = tp->ranges->low;
4348
0
                if (numids > objidlen)
4349
0
                    goto finish_it;
4350
4351
0
                if (!*buf_overflow) {
4352
0
                    if (!dump_realloc_oid_to_string
4353
0
                        (objid, numids, buf, buf_len, out_len,
4354
0
                         allow_realloc, '\'')) {
4355
0
                        *buf_overflow = 1;
4356
0
                    }
4357
0
                }
4358
0
            } else {
4359
0
                numids = (size_t) * objid + 1;
4360
0
                if (numids > objidlen)
4361
0
                    goto finish_it;
4362
0
                if (numids == 1) {
4363
0
                    if (netsnmp_ds_get_boolean
4364
0
                        (NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_ESCAPE_QUOTES)) {
4365
0
                        if (!*buf_overflow &&
4366
0
                            !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4367
0
                                          "\\")) {
4368
0
                            *buf_overflow = 1;
4369
0
                        }
4370
0
                    }
4371
0
                    if (!*buf_overflow &&
4372
0
                        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4373
0
                                      "\"")) {
4374
0
                        *buf_overflow = 1;
4375
0
                    }
4376
0
                    if (netsnmp_ds_get_boolean
4377
0
                        (NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_ESCAPE_QUOTES)) {
4378
0
                        if (!*buf_overflow &&
4379
0
                            !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4380
0
                                          "\\")) {
4381
0
                            *buf_overflow = 1;
4382
0
                        }
4383
0
                    }
4384
0
                    if (!*buf_overflow &&
4385
0
                        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4386
0
                                      "\"")) {
4387
0
                        *buf_overflow = 1;
4388
0
                    }
4389
0
                } else {
4390
0
                    if (!*buf_overflow) {
4391
0
                        struct tree * next_peer;
4392
0
                        int normal_handling = 1;
4393
4394
0
                        if (tp->next_peer) {
4395
0
                            next_peer = tp->next_peer;
4396
0
                        }
4397
4398
                        /* Try handling the InetAddress in the OID, in case of failure,
4399
                         * use the normal_handling. 
4400
                         */
4401
0
                        if (tp->next_peer &&
4402
0
                            tp->tc_index != -1 &&
4403
0
                            next_peer->tc_index != -1 &&
4404
0
                            strcmp(get_tc_descriptor(tp->tc_index), "InetAddress") == 0 &&
4405
0
                            strcmp(get_tc_descriptor(next_peer->tc_index), 
4406
0
                                    "InetAddressType") == 0 ) {
4407
4408
0
                            int ret;
4409
0
                            int addr_type = *(objid - 1);
4410
4411
0
                            ret = dump_realloc_oid_to_inetaddress(addr_type, 
4412
0
                                        objid + 1, numids - 1, buf, buf_len, out_len,
4413
0
                                        allow_realloc, '"');
4414
0
                            if (ret != 2) {
4415
0
                                normal_handling = 0;
4416
0
                                if (ret == 0) {
4417
0
                                    *buf_overflow = 1;
4418
0
                                }
4419
4420
0
                            }
4421
0
                        } 
4422
0
                        if (normal_handling && !dump_realloc_oid_to_string
4423
0
                            (objid + 1, numids - 1, buf, buf_len, out_len,
4424
0
                             allow_realloc, '"')) {
4425
0
                            *buf_overflow = 1;
4426
0
                        }
4427
0
                    }
4428
0
                }
4429
0
            }
4430
0
            objid += numids;
4431
0
            objidlen -= numids;
4432
0
            break;
4433
4434
0
        case TYPE_INTEGER32:
4435
0
        case TYPE_UINTEGER:
4436
0
        case TYPE_UNSIGNED32:
4437
0
        case TYPE_GAUGE:
4438
0
        case TYPE_INTEGER:
4439
0
            if (tp->enums) {
4440
0
                struct enum_list *ep = tp->enums;
4441
0
                while (ep && ep->value != (int) (*objid)) {
4442
0
                    ep = ep->next;
4443
0
                }
4444
0
                if (ep) {
4445
0
                    if (!*buf_overflow &&
4446
0
                        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4447
0
                                      ep->label)) {
4448
0
                        *buf_overflow = 1;
4449
0
                    }
4450
0
                } else {
4451
0
                    sprintf(intbuf, "%" NETSNMP_PRIo "u", *objid);
4452
0
                    if (!*buf_overflow &&
4453
0
                        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4454
0
                                      intbuf)) {
4455
0
                        *buf_overflow = 1;
4456
0
                    }
4457
0
                }
4458
0
            } else {
4459
0
                sprintf(intbuf, "%" NETSNMP_PRIo "u", *objid);
4460
0
                if (!*buf_overflow &&
4461
0
                    !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4462
0
                                  intbuf)) {
4463
0
                    *buf_overflow = 1;
4464
0
                }
4465
0
            }
4466
0
            objid++;
4467
0
            objidlen--;
4468
0
            break;
4469
4470
0
        case TYPE_TIMETICKS:
4471
            /* In an index, this is probably a timefilter */
4472
0
            if (extended_index) {
4473
0
                uptimeString( *objid, intbuf, sizeof( intbuf ) );
4474
0
            } else {
4475
0
                sprintf(intbuf, "%" NETSNMP_PRIo "u", *objid);
4476
0
            }   
4477
0
            if (!*buf_overflow &&
4478
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, intbuf)) {
4479
0
                *buf_overflow = 1;
4480
0
            }
4481
0
            objid++;
4482
0
            objidlen--;
4483
0
            break;
4484
4485
0
        case TYPE_OBJID:
4486
0
            if (in_dices->isimplied) {
4487
0
                numids = objidlen;
4488
0
            } else {
4489
0
                numids = (size_t) * objid + 1;
4490
0
            }
4491
0
            if (numids > objidlen)
4492
0
                goto finish_it;
4493
0
            if (extended_index) {
4494
0
                if (in_dices->isimplied) {
4495
0
                    if (!*buf_overflow
4496
0
                        && !netsnmp_sprint_realloc_objid_tree(buf, buf_len,
4497
0
                                                              out_len,
4498
0
                                                              allow_realloc,
4499
0
                                                              buf_overflow,
4500
0
                                                              objid,
4501
0
                                                              numids)) {
4502
0
                        *buf_overflow = 1;
4503
0
                    }
4504
0
                } else {
4505
0
                    if (!*buf_overflow
4506
0
                        && !netsnmp_sprint_realloc_objid_tree(buf, buf_len,
4507
0
                                                              out_len,
4508
0
                                                              allow_realloc,
4509
0
                                                              buf_overflow,
4510
0
                                                              objid + 1,
4511
0
                                                              numids -
4512
0
                                                              1)) {
4513
0
                        *buf_overflow = 1;
4514
0
                    }
4515
0
                }
4516
0
            } else {
4517
0
                _get_realloc_symbol(objid, numids, NULL, buf, buf_len,
4518
0
                                    out_len, allow_realloc, buf_overflow,
4519
0
                                    NULL, NULL);
4520
0
            }
4521
0
            objid += (numids);
4522
0
            objidlen -= (numids);
4523
0
            break;
4524
4525
0
        case TYPE_IPADDR:
4526
0
            if (objidlen < 4)
4527
0
                goto finish_it;
4528
0
            sprintf(intbuf, "%" NETSNMP_PRIo "u.%" NETSNMP_PRIo "u."
4529
0
                    "%" NETSNMP_PRIo "u.%" NETSNMP_PRIo "u",
4530
0
                    objid[0], objid[1], objid[2], objid[3]);
4531
0
            objid += 4;
4532
0
            objidlen -= 4;
4533
0
            if (!*buf_overflow &&
4534
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, intbuf)) {
4535
0
                *buf_overflow = 1;
4536
0
            }
4537
0
            break;
4538
4539
0
        case TYPE_NETADDR:{
4540
0
                oid             ntype = *objid++;
4541
4542
0
                objidlen--;
4543
0
                sprintf(intbuf, "%" NETSNMP_PRIo "u.", ntype);
4544
0
                if (!*buf_overflow &&
4545
0
                    !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4546
0
                                  intbuf)) {
4547
0
                    *buf_overflow = 1;
4548
0
                }
4549
4550
0
                if (ntype == 1 && objidlen >= 4) {
4551
0
                    sprintf(intbuf, "%" NETSNMP_PRIo "u.%" NETSNMP_PRIo "u."
4552
0
                            "%" NETSNMP_PRIo "u.%" NETSNMP_PRIo "u",
4553
0
                            objid[0], objid[1], objid[2], objid[3]);
4554
0
                    if (!*buf_overflow &&
4555
0
                        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4556
0
                                      intbuf)) {
4557
0
                        *buf_overflow = 1;
4558
0
                    }
4559
0
                    objid += 4;
4560
0
                    objidlen -= 4;
4561
0
                } else {
4562
0
                    goto finish_it;
4563
0
                }
4564
0
            }
4565
0
            break;
4566
4567
0
        case TYPE_NSAPADDRESS:
4568
0
        default:
4569
0
            goto finish_it;
4570
0
            break;
4571
0
        }
4572
4573
0
        if (extended_index) {
4574
0
            if (!*buf_overflow &&
4575
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "]")) {
4576
0
                *buf_overflow = 1;
4577
0
            }
4578
0
        } else {
4579
0
            if (!*buf_overflow &&
4580
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, ".")) {
4581
0
                *buf_overflow = 1;
4582
0
            }
4583
0
        }
4584
0
        in_dices = in_dices->next;
4585
0
    }
4586
4587
877
  finish_it:
4588
877
    _oid_finish_printing(objid, objidlen,
4589
877
                         buf, buf_len, out_len,
4590
877
                         allow_realloc, buf_overflow);
4591
877
    return NULL;
4592
877
}
4593
4594
struct tree    *
4595
get_tree(const oid * objid, size_t objidlen, struct tree *subtree)
4596
9.64k
{
4597
9.64k
    struct tree    *return_tree = NULL;
4598
4599
19.1k
    for (; subtree; subtree = subtree->next_peer) {
4600
14.3k
        if (*objid == subtree->subid)
4601
4.77k
            goto found;
4602
14.3k
    }
4603
4604
4.87k
    return NULL;
4605
4606
4.77k
  found:
4607
4.77k
    while (subtree->next_peer && subtree->next_peer->subid == *objid)
4608
0
  subtree = subtree->next_peer;
4609
4.77k
    if (objidlen > 1)
4610
4.77k
        return_tree =
4611
4.77k
            get_tree(objid + 1, objidlen - 1, subtree->child_list);
4612
4.77k
    if (return_tree != NULL)
4613
0
        return return_tree;
4614
4.77k
    else
4615
4.77k
        return subtree;
4616
4.77k
}
4617
4618
/**
4619
 * Prints on oid description on stdout.
4620
 *
4621
 * @see fprint_description
4622
 */
4623
void
4624
print_description(oid * objid, size_t objidlen, /* number of subidentifiers */
4625
                  int width)
4626
0
{
4627
0
    fprint_description(stdout, objid, objidlen, width);
4628
0
}
4629
4630
4631
/**
4632
 * Prints on oid description into a file descriptor.
4633
 * 
4634
 * @param f         The file descriptor to print to.
4635
 * @param objid     The object identifier.
4636
 * @param objidlen  The object id length.
4637
 * @param width     Number of subidentifiers.
4638
 */
4639
void
4640
fprint_description(FILE * f, oid * objid, size_t objidlen,
4641
                   int width)
4642
0
{
4643
0
    u_char         *buf = NULL;
4644
0
    size_t          buf_len = 256, out_len = 0;
4645
4646
0
    if ((buf = calloc(buf_len, 1)) == NULL) {
4647
0
        fprintf(f, "[TRUNCATED]\n");
4648
0
        return;
4649
0
    } else {
4650
0
        if (!sprint_realloc_description(&buf, &buf_len, &out_len, 1,
4651
0
                                   objid, objidlen, width)) {
4652
0
            fprintf(f, "%s [TRUNCATED]\n", buf);
4653
0
        } else {
4654
0
            fprintf(f, "%s\n", buf);
4655
0
        }
4656
0
    }
4657
4658
0
    SNMP_FREE(buf);
4659
0
}
4660
4661
#ifndef NETSNMP_FEATURE_REMOVE_MIB_SNPRINT_DESCRIPTION
4662
int
4663
snprint_description(char *buf, size_t buf_len,
4664
                    oid * objid, size_t objidlen, int width)
4665
0
{
4666
0
    size_t          out_len = 0;
4667
4668
0
    if (sprint_realloc_description((u_char **) & buf, &buf_len, &out_len, 0,
4669
0
                                    objid, objidlen, width)) {
4670
0
        return (int) out_len;
4671
0
    } else {
4672
0
        return -1;
4673
0
    }
4674
0
}
4675
#endif /* NETSNMP_FEATURE_REMOVE_MIB_SNPRINT_DESCRIPTION */
4676
4677
int
4678
sprint_realloc_description(u_char ** buf, size_t * buf_len,
4679
                     size_t * out_len, int allow_realloc,
4680
                     oid * objid, size_t objidlen, int width)
4681
0
{
4682
0
    struct tree    *tp = get_tree(objid, objidlen, tree_head);
4683
0
    struct tree    *subtree = tree_head;
4684
0
    int             pos, len;
4685
0
    char            tmpbuf[128];
4686
0
    const char     *cp;
4687
4688
0
    if (NULL == tp)
4689
0
        return 0;
4690
4691
0
    if (tp->type <= TYPE_SIMPLE_LAST)
4692
0
        cp = " OBJECT-TYPE";
4693
0
    else
4694
0
        switch (tp->type) {
4695
0
        case TYPE_TRAPTYPE:
4696
0
            cp = " TRAP-TYPE";
4697
0
            break;
4698
0
        case TYPE_NOTIFTYPE:
4699
0
            cp = " NOTIFICATION-TYPE";
4700
0
            break;
4701
0
        case TYPE_OBJGROUP:
4702
0
            cp = " OBJECT-GROUP";
4703
0
            break;
4704
0
        case TYPE_AGENTCAP:
4705
0
            cp = " AGENT-CAPABILITIES";
4706
0
            break;
4707
0
        case TYPE_MODID:
4708
0
            cp = " MODULE-IDENTITY";
4709
0
            break;
4710
0
        case TYPE_OBJIDENTITY:
4711
0
            cp = " OBJECT-IDENTITY";
4712
0
            break;
4713
0
        case TYPE_MODCOMP:
4714
0
            cp = " MODULE-COMPLIANCE";
4715
0
            break;
4716
0
        default:
4717
0
            sprintf(tmpbuf, " type_%d", tp->type);
4718
0
            cp = tmpbuf;
4719
0
        }
4720
4721
0
    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tp->label) ||
4722
0
        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, cp) ||
4723
0
        !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n")) {
4724
0
        return 0;
4725
0
    }
4726
0
    if (!print_tree_node(buf, buf_len, out_len, allow_realloc, tp, width))
4727
0
        return 0;
4728
0
    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "::= {"))
4729
0
        return 0;
4730
0
    pos = 5;
4731
0
    while (objidlen > 1) {
4732
0
        for (; subtree; subtree = subtree->next_peer) {
4733
0
            if (*objid == subtree->subid) {
4734
0
                while (subtree->next_peer && subtree->next_peer->subid == *objid)
4735
0
                    subtree = subtree->next_peer;
4736
0
                if (strncmp(subtree->label, ANON, ANON_LEN)) {
4737
0
                    snprintf(tmpbuf, sizeof(tmpbuf), " %s(%lu)", subtree->label, subtree->subid);
4738
0
                    tmpbuf[ sizeof(tmpbuf)-1 ] = 0;
4739
0
                } else
4740
0
                    sprintf(tmpbuf, " %lu", subtree->subid);
4741
0
                len = strlen(tmpbuf);
4742
0
                if (pos + len + 2 > width) {
4743
0
                    if (!snmp_cstrcat(buf, buf_len, out_len,
4744
0
                                     allow_realloc, "\n     "))
4745
0
                        return 0;
4746
0
                    pos = 5;
4747
0
                }
4748
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tmpbuf))
4749
0
                    return 0;
4750
0
                pos += len;
4751
0
                objid++;
4752
0
                objidlen--;
4753
0
                break;
4754
0
            }
4755
0
        }
4756
0
        if (subtree)
4757
0
            subtree = subtree->child_list;
4758
0
        else
4759
0
            break;
4760
0
    }
4761
0
    while (objidlen > 1) {
4762
0
        sprintf(tmpbuf, " %" NETSNMP_PRIo "u", *objid);
4763
0
        len = strlen(tmpbuf);
4764
0
        if (pos + len + 2 > width) {
4765
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n     "))
4766
0
                return 0;
4767
0
            pos = 5;
4768
0
        }
4769
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tmpbuf))
4770
0
            return 0;
4771
0
        pos += len;
4772
0
        objid++;
4773
0
        objidlen--;
4774
0
    }
4775
0
    sprintf(tmpbuf, " %" NETSNMP_PRIo "u }", *objid);
4776
0
    len = strlen(tmpbuf);
4777
0
    if (pos + len + 2 > width) {
4778
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n     "))
4779
0
            return 0;
4780
0
        pos = 5;
4781
0
    }
4782
0
    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tmpbuf))
4783
0
        return 0;
4784
0
    return 1;
4785
0
}
4786
4787
static int
4788
print_tree_node(u_char ** buf, size_t * buf_len,
4789
                     size_t * out_len, int allow_realloc,
4790
                     struct tree *tp, int width)
4791
0
{
4792
0
    const char     *cp;
4793
0
    char            str[MAXTOKEN];
4794
0
    int             i, prevmod, pos, len;
4795
4796
0
    if (tp) {
4797
0
        module_name(tp->modid, str);
4798
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4799
0
                          "  -- FROM\t") ||
4800
0
            !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
4801
0
            return 0;
4802
0
        pos = 16+strlen(str);
4803
0
        for (i = 1, prevmod = tp->modid; i < tp->number_modules; i++) {
4804
0
            if (prevmod != tp->module_list[i]) {
4805
0
                module_name(tp->module_list[i], str);
4806
0
                len = strlen(str);
4807
0
                if (pos + len + 2 > width) {
4808
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4809
0
                                     ",\n  --\t\t"))
4810
0
                        return 0;
4811
0
                    pos = 16;
4812
0
                }
4813
0
                else {
4814
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4815
0
                                      ", "))
4816
0
                        return 0;
4817
0
                    pos += 2;
4818
0
                }
4819
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
4820
0
                    return 0;
4821
0
                pos += len;
4822
0
            }
4823
0
            prevmod = tp->module_list[i];
4824
0
        }
4825
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n"))
4826
0
            return 0;
4827
0
        if (tp->tc_index != -1) {
4828
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4829
0
                              "  -- TEXTUAL CONVENTION ") ||
4830
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4831
0
                              get_tc_descriptor(tp->tc_index)) ||
4832
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n"))
4833
0
                return 0;
4834
0
        }
4835
0
        switch (tp->type) {
4836
0
        case TYPE_OBJID:
4837
0
            cp = "OBJECT IDENTIFIER";
4838
0
            break;
4839
0
        case TYPE_OCTETSTR:
4840
0
            cp = "OCTET STRING";
4841
0
            break;
4842
0
        case TYPE_INTEGER:
4843
0
            cp = "INTEGER";
4844
0
            break;
4845
0
        case TYPE_NETADDR:
4846
0
            cp = "NetworkAddress";
4847
0
            break;
4848
0
        case TYPE_IPADDR:
4849
0
            cp = "IpAddress";
4850
0
            break;
4851
0
        case TYPE_COUNTER:
4852
0
            cp = "Counter32";
4853
0
            break;
4854
0
        case TYPE_GAUGE:
4855
0
            cp = "Gauge32";
4856
0
            break;
4857
0
        case TYPE_TIMETICKS:
4858
0
            cp = "TimeTicks";
4859
0
            break;
4860
0
        case TYPE_OPAQUE:
4861
0
            cp = "Opaque";
4862
0
            break;
4863
0
        case TYPE_NULL:
4864
0
            cp = "NULL";
4865
0
            break;
4866
0
        case TYPE_COUNTER64:
4867
0
            cp = "Counter64";
4868
0
            break;
4869
0
        case TYPE_BITSTRING:
4870
0
            cp = "BITS";
4871
0
            break;
4872
0
        case TYPE_NSAPADDRESS:
4873
0
            cp = "NsapAddress";
4874
0
            break;
4875
0
        case TYPE_UINTEGER:
4876
0
            cp = "UInteger32";
4877
0
            break;
4878
0
        case TYPE_UNSIGNED32:
4879
0
            cp = "Unsigned32";
4880
0
            break;
4881
0
        case TYPE_INTEGER32:
4882
0
            cp = "Integer32";
4883
0
            break;
4884
0
        default:
4885
0
            cp = NULL;
4886
0
            break;
4887
0
        }
4888
#ifdef NETSNMP_ENABLE_TESTING_CODE
4889
        if (!cp && (tp->ranges || tp->enums)) { /* ranges without type ? */
4890
            snprintf(str, sizeof(str), "?0 with %s %s ?",
4891
                    tp->ranges ? "Range" : "", tp->enums ? "Enum" : "");
4892
            cp = str;
4893
        }
4894
#endif                          /* NETSNMP_ENABLE_TESTING_CODE */
4895
0
        if (cp)
4896
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4897
0
                             "  SYNTAX\t") ||
4898
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, cp))
4899
0
                return 0;
4900
0
        if (tp->ranges) {
4901
0
            struct range_list *rp = tp->ranges;
4902
0
            int             first = 1;
4903
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " ("))
4904
0
                return 0;
4905
0
            while (rp) {
4906
0
                switch (tp->type) {
4907
0
                case TYPE_INTEGER:
4908
0
                case TYPE_INTEGER32:
4909
0
                    if (rp->low == rp->high)
4910
0
                        snprintf(str, sizeof(str), "%s%d", first ? "" : " | ",
4911
0
                                 rp->low );
4912
0
                    else
4913
0
                        snprintf(str, sizeof(str), "%s%d..%d",
4914
0
                                 first ? "" : " | ", rp->low, rp->high);
4915
0
                    break;
4916
0
                case TYPE_UNSIGNED32:
4917
0
                case TYPE_OCTETSTR:
4918
0
                case TYPE_GAUGE:
4919
0
                case TYPE_UINTEGER:
4920
0
                    if (rp->low == rp->high)
4921
0
                        snprintf(str, sizeof(str), "%s%u", first ? "" : " | ",
4922
0
                                (unsigned)rp->low );
4923
0
                    else
4924
0
                        snprintf(str, sizeof(str), "%s%u..%u",
4925
0
                                 first ? "" : " | ", (unsigned)rp->low,
4926
0
                                 (unsigned)rp->high);
4927
0
                    break;
4928
0
                default:
4929
                    /* No other range types allowed */
4930
0
                    break;
4931
0
                }
4932
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
4933
0
                    return 0;
4934
0
                if (first)
4935
0
                    first = 0;
4936
0
                rp = rp->next;
4937
0
            }
4938
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, ") "))
4939
0
                return 0;
4940
0
        }
4941
0
        if (tp->enums) {
4942
0
            struct enum_list *ep = tp->enums;
4943
0
            int             first = 1;
4944
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " {"))
4945
0
                return 0;
4946
0
            pos = 16 + strlen(cp) + 2;
4947
0
            while (ep) {
4948
0
                if (first)
4949
0
                    first = 0;
4950
0
                else
4951
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4952
0
                                      ", "))
4953
0
                        return 0;
4954
0
                snprintf(str, sizeof(str), "%s(%d)", ep->label, ep->value);
4955
0
                str[ sizeof(str)-1 ] = 0;
4956
0
                len = strlen(str);
4957
0
                if (pos + len + 2 > width) {
4958
0
                    if (!snmp_cstrcat(buf, buf_len, out_len,
4959
0
                                     allow_realloc, "\n\t\t  "))
4960
0
                        return 0;
4961
0
                    pos = 18;
4962
0
                }
4963
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
4964
0
                    return 0;
4965
0
                pos += len + 2;
4966
0
                ep = ep->next;
4967
0
            }
4968
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "} "))
4969
0
                return 0;
4970
0
        }
4971
0
        if (cp)
4972
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n"))
4973
0
                return 0;
4974
0
        if (tp->hint)
4975
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4976
0
                             "  DISPLAY-HINT\t\"") ||
4977
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, tp->hint) ||
4978
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"\n"))
4979
0
                return 0;
4980
0
        if (tp->units)
4981
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4982
0
                             "  UNITS\t\t\"") ||
4983
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
4984
0
                              tp->units) ||
4985
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"\n"))
4986
0
                return 0;
4987
0
        switch (tp->access) {
4988
0
        case MIB_ACCESS_READONLY:
4989
0
            cp = "read-only";
4990
0
            break;
4991
0
        case MIB_ACCESS_READWRITE:
4992
0
            cp = "read-write";
4993
0
            break;
4994
0
        case MIB_ACCESS_WRITEONLY:
4995
0
            cp = "write-only";
4996
0
            break;
4997
0
        case MIB_ACCESS_NOACCESS:
4998
0
            cp = "not-accessible";
4999
0
            break;
5000
0
        case MIB_ACCESS_NOTIFY:
5001
0
            cp = "accessible-for-notify";
5002
0
            break;
5003
0
        case MIB_ACCESS_CREATE:
5004
0
            cp = "read-create";
5005
0
            break;
5006
0
        case 0:
5007
0
            cp = NULL;
5008
0
            break;
5009
0
        default:
5010
0
            snprintf(str, sizeof(str), "access_%d", tp->access);
5011
0
            cp = str;
5012
0
        }
5013
0
        if (cp)
5014
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5015
0
                             "  MAX-ACCESS\t") ||
5016
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, cp) ||
5017
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n"))
5018
0
                return 0;
5019
0
        switch (tp->status) {
5020
0
        case MIB_STATUS_MANDATORY:
5021
0
            cp = "mandatory";
5022
0
            break;
5023
0
        case MIB_STATUS_OPTIONAL:
5024
0
            cp = "optional";
5025
0
            break;
5026
0
        case MIB_STATUS_OBSOLETE:
5027
0
            cp = "obsolete";
5028
0
            break;
5029
0
        case MIB_STATUS_DEPRECATED:
5030
0
            cp = "deprecated";
5031
0
            break;
5032
0
        case MIB_STATUS_CURRENT:
5033
0
            cp = "current";
5034
0
            break;
5035
0
        case 0:
5036
0
            cp = NULL;
5037
0
            break;
5038
0
        default:
5039
0
            snprintf(str, sizeof(str), "status_%d", tp->status);
5040
0
            cp = str;
5041
0
        }
5042
#ifdef NETSNMP_ENABLE_TESTING_CODE
5043
        if (!cp && (tp->indexes)) {     /* index without status ? */
5044
            snprintf(str, sizeof(str), "?0 with %s ?",
5045
                     tp->indexes ? "Index" : "");
5046
            cp = str;
5047
        }
5048
#endif                          /* NETSNMP_ENABLE_TESTING_CODE */
5049
0
        if (cp)
5050
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5051
0
                             "  STATUS\t") ||
5052
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, cp) ||
5053
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\n"))
5054
0
                return 0;
5055
0
        if (tp->augments)
5056
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5057
0
                             "  AUGMENTS\t{ ") ||
5058
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5059
0
                              tp->augments) ||
5060
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " }\n"))
5061
0
                return 0;
5062
0
        if (tp->indexes) {
5063
0
            struct index_list *ip = tp->indexes;
5064
0
            int             first = 1;
5065
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5066
0
                             "  INDEX\t\t{ "))
5067
0
                return 0;
5068
0
            pos = 16 + 2;
5069
0
            while (ip) {
5070
0
                if (first)
5071
0
                    first = 0;
5072
0
                else
5073
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5074
0
                                      ", "))
5075
0
                        return 0;
5076
0
                snprintf(str, sizeof(str), "%s%s",
5077
0
                        ip->isimplied ? "IMPLIED " : "",
5078
0
                        ip->ilabel);
5079
0
                str[ sizeof(str)-1 ] = 0;
5080
0
                len = strlen(str);
5081
0
                if (pos + len + 2 > width) {
5082
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5083
0
                                      "\n\t\t  "))
5084
0
                        return 0;
5085
0
                    pos = 16 + 2;
5086
0
                }
5087
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
5088
0
                    return 0;
5089
0
                pos += len + 2;
5090
0
                ip = ip->next;
5091
0
            }
5092
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " }\n"))
5093
0
                return 0;
5094
0
        }
5095
0
        if (tp->varbinds) {
5096
0
            struct varbind_list *vp = tp->varbinds;
5097
0
            int             first = 1;
5098
5099
0
            if (tp->type == TYPE_TRAPTYPE) {
5100
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5101
0
                    "  VARIABLES\t{ "))
5102
0
                    return 0;
5103
0
            } else {
5104
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5105
0
                    "  OBJECTS\t{ "))
5106
0
                    return 0;
5107
0
            }
5108
0
            pos = 16 + 2;
5109
0
            while (vp) {
5110
0
                if (first)
5111
0
                    first = 0;
5112
0
                else
5113
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5114
0
                                      ", "))
5115
0
                        return 0;
5116
0
                strlcpy(str, vp->vblabel, sizeof(str));
5117
0
                len = strlen(str);
5118
0
                if (pos + len + 2 > width) {
5119
0
                    if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5120
0
                                    "\n\t\t  "))
5121
0
                        return 0;
5122
0
                    pos = 16 + 2;
5123
0
                }
5124
0
                if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, str))
5125
0
                    return 0;
5126
0
                pos += len + 2;
5127
0
                vp = vp->next;
5128
0
            }
5129
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " }\n"))
5130
0
                return 0;
5131
0
        }
5132
0
        if (tp->description)
5133
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5134
0
                              "  DESCRIPTION\t\"") ||
5135
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5136
0
                              tp->description) ||
5137
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, "\"\n"))
5138
0
                return 0;
5139
0
        if (tp->defaultValue)
5140
0
            if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5141
0
                              "  DEFVAL\t{ ") ||
5142
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5143
0
                              tp->defaultValue) ||
5144
0
                !snmp_cstrcat(buf, buf_len, out_len, allow_realloc, " }\n"))
5145
0
                return 0;
5146
0
    } else
5147
0
        if (!snmp_cstrcat(buf, buf_len, out_len, allow_realloc,
5148
0
                          "No description\n"))
5149
0
            return 0;
5150
0
    return 1;
5151
0
}
5152
5153
int
5154
get_module_node(const char *fname,
5155
                const char *module, oid * objid, size_t * objidlen)
5156
1.92k
{
5157
1.92k
    int             modid, rc = 0;
5158
1.92k
    struct tree    *tp;
5159
1.92k
    char           *name, *cp;
5160
5161
1.92k
    if (!strcmp(module, "ANY"))
5162
1.03k
        modid = -1;
5163
891
    else {
5164
891
        netsnmp_read_module(module);
5165
891
        modid = which_module(module);
5166
891
        if (modid == -1)
5167
891
            return 0;
5168
891
    }
5169
5170
    /*
5171
     * Isolate the first component of the name ... 
5172
     */
5173
1.03k
    name = strdup(fname);
5174
1.03k
    if (name == NULL)
5175
0
        return -1;
5176
1.03k
    cp = strchr(name, '.');
5177
1.03k
    if (cp != NULL) {
5178
184
        *cp = '\0';
5179
184
        cp++;
5180
184
    }
5181
    /*
5182
     * ... and locate it in the tree. 
5183
     */
5184
1.03k
    tp = find_tree_node(name, modid);
5185
1.03k
    if (tp) {
5186
108
        size_t          maxlen = *objidlen;
5187
5188
        /*
5189
         * Set the first element of the object ID 
5190
         */
5191
108
        if (node_to_oid(tp, objid, objidlen)) {
5192
108
            rc = 1;
5193
5194
            /*
5195
             * If the name requested was more than one element,
5196
             * tag on the rest of the components 
5197
             */
5198
108
            if (cp != NULL)
5199
48
                rc = _add_strings_to_oid(tp, cp, objid, objidlen, maxlen);
5200
108
        }
5201
108
    }
5202
5203
1.03k
    SNMP_FREE(name);
5204
1.03k
    return (rc);
5205
1.03k
}
5206
5207
5208
/**
5209
 * @internal
5210
 *
5211
 * Populates the object identifier from a node in the MIB hierarchy.
5212
 * Builds up the object ID, working backwards,
5213
 * starting from the end of the objid buffer.
5214
 * When the top of the MIB tree is reached, the buffer is adjusted.
5215
 *
5216
 * The buffer length is set to the number of subidentifiers
5217
 * for the object identifier associated with the MIB node.
5218
 * 
5219
 * @return the number of subidentifiers copied.
5220
 *
5221
 * If 0 is returned, the objid buffer is too small,
5222
 * and the buffer contents are indeterminate.
5223
 * The buffer length can be used to create a larger buffer.
5224
 */
5225
static int
5226
node_to_oid(struct tree *tp, oid * objid, size_t * objidlen)
5227
108
{
5228
108
    size_t          numids, lenids;
5229
108
    oid            *op;
5230
5231
108
    if (!tp || !objid || !objidlen)
5232
0
        return 0;
5233
5234
108
    lenids = *objidlen;
5235
108
    op = objid + lenids;        /* points after the last element */
5236
5237
216
    for (numids = 0; tp; tp = tp->parent, numids++) {
5238
108
        if (numids >= lenids)
5239
0
            continue;
5240
108
        --op;
5241
108
        *op = tp->subid;
5242
108
    }
5243
5244
108
    *objidlen = numids;
5245
108
    if (numids > lenids) {
5246
0
        return 0;
5247
0
    }
5248
5249
108
    if (numids < lenids)
5250
108
        memmove(objid, op, numids * sizeof(oid));
5251
5252
108
    return numids;
5253
108
}
5254
5255
/*
5256
 * Replace \x with x stop at eos_marker
5257
 * return NULL if eos_marker not found
5258
 */
5259
static char *_apply_escapes(char *src, char eos_marker)
5260
0
{
5261
0
    char *dst;
5262
0
    int backslash = 0;
5263
    
5264
0
    dst = src;
5265
0
    while (*src) {
5266
0
  if (backslash) {
5267
0
      backslash = 0;
5268
0
      *dst++ = *src;
5269
0
  } else {
5270
0
      if (eos_marker == *src) break;
5271
0
      if ('\\' == *src) {
5272
0
    backslash = 1;
5273
0
      } else {
5274
0
    *dst++ = *src;
5275
0
      }
5276
0
  }
5277
0
  src++;
5278
0
    }
5279
0
    if (!*src) {
5280
  /* never found eos_marker */
5281
0
  return NULL;
5282
0
    } else {
5283
0
  *dst = 0;
5284
0
  return src;
5285
0
    }
5286
0
}
5287
#endif /* NETSNMP_DISABLE_MIB_LOADING */
5288
5289
static int
5290
#ifndef NETSNMP_DISABLE_MIB_LOADING
5291
_add_strings_to_oid(struct tree *tp, char *cp,
5292
                    oid * objid, size_t * objidlen, size_t maxlen)
5293
#else
5294
_add_strings_to_oid(void *tp, char *cp,
5295
                    oid * objid, size_t * objidlen, size_t maxlen)
5296
#endif /* NETSNMP_DISABLE_MIB_LOADING */
5297
21.0k
{
5298
21.0k
    oid             subid;
5299
21.0k
    char           *fcp, *ecp, *cp2 = NULL;
5300
21.0k
    char            doingquote;
5301
21.0k
    int             len = -1;
5302
21.0k
#ifndef NETSNMP_DISABLE_MIB_LOADING
5303
21.0k
    struct tree    *tp2 = NULL;
5304
21.0k
    struct index_list *in_dices = NULL;
5305
21.0k
    int             pos = -1;
5306
21.0k
    int             check =
5307
21.0k
        !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_CHECK_RANGE);
5308
21.0k
    int             do_hint = !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NO_DISPLAY_HINT);
5309
21.0k
    int             len_index = 1000000;
5310
5311
40.2k
    while (cp && tp && tp->child_list) {
5312
19.5k
        fcp = cp;
5313
19.5k
        tp2 = tp->child_list;
5314
        /*
5315
         * Isolate the next entry 
5316
         */
5317
19.5k
        cp2 = strchr(cp, '.');
5318
19.5k
        if (cp2)
5319
422
            *cp2++ = '\0';
5320
5321
        /*
5322
         * Search for the appropriate child 
5323
         */
5324
19.5k
        if (isdigit((unsigned char)(*cp))) {
5325
19.4k
            subid = strtoul(cp, &ecp, 0);
5326
19.4k
            if (*ecp)
5327
9
                goto bad_id;
5328
38.9k
            while (tp2 && tp2->subid != subid)
5329
19.4k
                tp2 = tp2->next_peer;
5330
19.4k
        } else {
5331
631
            while (tp2 && strcmp(tp2->label, fcp))
5332
470
                tp2 = tp2->next_peer;
5333
161
            if (!tp2)
5334
153
                goto bad_id;
5335
8
            subid = tp2->subid;
5336
8
        }
5337
19.4k
        if (*objidlen >= maxlen)
5338
0
            goto bad_id;
5339
19.4k
  while (tp2 && tp2->next_peer && tp2->next_peer->subid == subid)
5340
0
      tp2 = tp2->next_peer;
5341
19.4k
        objid[*objidlen] = subid;
5342
19.4k
        (*objidlen)++;
5343
5344
19.4k
        cp = cp2;
5345
19.4k
        if (!tp2)
5346
213
            break;
5347
19.2k
        tp = tp2;
5348
19.2k
    }
5349
5350
20.8k
    if (tp && !tp->child_list) {
5351
19.7k
        if ((tp2 = tp->parent)) {
5352
0
            if (tp2->indexes)
5353
0
                in_dices = tp2->indexes;
5354
0
            else if (tp2->augments) {
5355
0
                tp2 = find_tree_node(tp2->augments, -1);
5356
0
                if (tp2)
5357
0
                    in_dices = tp2->indexes;
5358
0
            }
5359
0
        }
5360
19.7k
        tp = NULL;
5361
19.7k
    }
5362
5363
20.8k
    while (cp && in_dices) {
5364
0
        fcp = cp;
5365
5366
0
        tp = find_tree_node(in_dices->ilabel, -1);
5367
0
        if (!tp)
5368
0
            break;
5369
0
        switch (tp->type) {
5370
0
        case TYPE_INTEGER:
5371
0
        case TYPE_INTEGER32:
5372
0
        case TYPE_UINTEGER:
5373
0
        case TYPE_UNSIGNED32:
5374
0
        case TYPE_TIMETICKS:
5375
            /*
5376
             * Isolate the next entry 
5377
             */
5378
0
            cp2 = strchr(cp, '.');
5379
0
            if (cp2)
5380
0
                *cp2++ = '\0';
5381
0
            if (isdigit((unsigned char)(*cp))) {
5382
0
                subid = strtoul(cp, &ecp, 0);
5383
0
                if (*ecp)
5384
0
                    goto bad_id;
5385
0
            } else {
5386
0
                if (tp->enums) {
5387
0
                    struct enum_list *ep = tp->enums;
5388
0
                    while (ep && strcmp(ep->label, cp))
5389
0
                        ep = ep->next;
5390
0
                    if (!ep)
5391
0
                        goto bad_id;
5392
0
                    subid = ep->value;
5393
0
                } else
5394
0
                    goto bad_id;
5395
0
            }
5396
0
            if (check && tp->ranges) {
5397
0
                struct range_list *rp = tp->ranges;
5398
0
                int             ok = 0;
5399
0
                if (tp->type == TYPE_INTEGER ||
5400
0
                    tp->type == TYPE_INTEGER32) {
5401
0
                  while (!ok && rp) {
5402
0
                    if ((rp->low <= (int) subid)
5403
0
                        && ((int) subid <= rp->high))
5404
0
                        ok = 1;
5405
0
                    else
5406
0
                        rp = rp->next;
5407
0
                  }
5408
0
                } else { /* check unsigned range */
5409
0
                  while (!ok && rp) {
5410
0
                    if (((unsigned int)rp->low <= subid)
5411
0
                        && (subid <= (unsigned int)rp->high))
5412
0
                        ok = 1;
5413
0
                    else
5414
0
                        rp = rp->next;
5415
0
                  }
5416
0
                }
5417
0
                if (!ok)
5418
0
                    goto bad_id;
5419
0
            }
5420
0
            if (*objidlen >= maxlen)
5421
0
                goto bad_id;
5422
0
            objid[*objidlen] = subid;
5423
0
            (*objidlen)++;
5424
0
            break;
5425
0
        case TYPE_IPADDR:
5426
0
            if (*objidlen + 4 > maxlen)
5427
0
                goto bad_id;
5428
0
            for (subid = 0; cp && subid < 4; subid++) {
5429
0
                fcp = cp;
5430
0
                cp2 = strchr(cp, '.');
5431
0
                if (cp2)
5432
0
                    *cp2++ = 0;
5433
0
                objid[*objidlen] = strtoul(cp, &ecp, 0);
5434
0
                if (*ecp)
5435
0
                    goto bad_id;
5436
0
                if (check && objid[*objidlen] > 255)
5437
0
                    goto bad_id;
5438
0
                (*objidlen)++;
5439
0
                cp = cp2;
5440
0
            }
5441
0
            break;
5442
0
        case TYPE_OCTETSTR:
5443
0
            if (tp->ranges && !tp->ranges->next
5444
0
                && tp->ranges->low == tp->ranges->high)
5445
0
                len = tp->ranges->low;
5446
0
            else
5447
0
                len = -1;
5448
0
            pos = 0;
5449
0
            if (*cp == '"' || *cp == '\'') {
5450
0
                doingquote = *cp++;
5451
                /*
5452
                 * insert length if requested 
5453
                 */
5454
0
                if (!in_dices->isimplied && len == -1) {
5455
0
                    if (doingquote == '\'') {
5456
0
                        snmp_set_detail
5457
0
                            ("'-quote is for fixed length strings");
5458
0
                        return 0;
5459
0
                    }
5460
0
                    if (*objidlen >= maxlen)
5461
0
                        goto bad_id;
5462
0
                    len_index = *objidlen;
5463
0
                    (*objidlen)++;
5464
0
                } else if (doingquote == '"') {
5465
0
                    snmp_set_detail
5466
0
                        ("\"-quote is for variable length strings");
5467
0
                    return 0;
5468
0
                }
5469
5470
0
    cp2 = _apply_escapes(cp, doingquote);
5471
0
    if (!cp2) goto bad_id;
5472
0
    else {
5473
0
        unsigned char *new_val;
5474
0
        int new_val_len;
5475
0
        int parsed_hint = 0;
5476
0
        const char *parsed_value;
5477
5478
0
        if (do_hint && tp->hint) {
5479
0
      parsed_value = parse_octet_hint(tp->hint, cp,
5480
0
                                      &new_val, &new_val_len);
5481
0
      parsed_hint = parsed_value == NULL;
5482
0
        }
5483
0
        if (parsed_hint) {
5484
0
      int i;
5485
0
      for (i = 0; i < new_val_len; i++) {
5486
0
          if (*objidlen >= maxlen) goto bad_id;
5487
0
          objid[ *objidlen ] = new_val[i];
5488
0
          (*objidlen)++;
5489
0
          pos++;
5490
0
      }
5491
0
      SNMP_FREE(new_val);
5492
0
        } else {
5493
0
      while(*cp) {
5494
0
          if (*objidlen >= maxlen) goto bad_id;
5495
0
          objid[ *objidlen ] = *cp++;
5496
0
          (*objidlen)++;
5497
0
          pos++;
5498
0
      }
5499
0
        }
5500
0
    }
5501
    
5502
0
    cp2++;
5503
0
                if (!*cp2)
5504
0
                    cp2 = NULL;
5505
0
                else if (*cp2 != '.')
5506
0
                    goto bad_id;
5507
0
                else
5508
0
                    cp2++;
5509
0
    if (check) {
5510
0
                    if (len == -1) {
5511
0
                        struct range_list *rp = tp->ranges;
5512
0
                        int             ok = 0;
5513
0
                        while (rp && !ok)
5514
0
                            if (rp->low <= pos && pos <= rp->high)
5515
0
                                ok = 1;
5516
0
                            else
5517
0
                                rp = rp->next;
5518
0
                        if (!ok)
5519
0
                            goto bad_id;
5520
0
                        if (!in_dices->isimplied)
5521
0
                            objid[len_index] = pos;
5522
0
                    } else if (pos != len)
5523
0
                        goto bad_id;
5524
0
    }
5525
0
    else if (len == -1 && !in_dices->isimplied)
5526
0
        objid[len_index] = pos;
5527
0
            } else {
5528
0
                if (!in_dices->isimplied && len == -1) {
5529
0
                    fcp = cp;
5530
0
                    cp2 = strchr(cp, '.');
5531
0
                    if (cp2)
5532
0
                        *cp2++ = 0;
5533
0
                    len = strtoul(cp, &ecp, 0);
5534
0
                    if (*ecp)
5535
0
                        goto bad_id;
5536
0
                    if (*objidlen + len + 1 >= maxlen)
5537
0
                        goto bad_id;
5538
0
                    objid[*objidlen] = len;
5539
0
                    (*objidlen)++;
5540
0
                    cp = cp2;
5541
0
                }
5542
0
                while (len && cp) {
5543
0
                    fcp = cp;
5544
0
                    cp2 = strchr(cp, '.');
5545
0
                    if (cp2)
5546
0
                        *cp2++ = 0;
5547
0
                    objid[*objidlen] = strtoul(cp, &ecp, 0);
5548
0
                    if (*ecp)
5549
0
                        goto bad_id;
5550
0
                    if (check && objid[*objidlen] > 255)
5551
0
                        goto bad_id;
5552
0
                    (*objidlen)++;
5553
0
                    len--;
5554
0
                    cp = cp2;
5555
0
                }
5556
0
            }
5557
0
            break;
5558
0
        case TYPE_OBJID:
5559
0
            in_dices = NULL;
5560
0
            cp2 = cp;
5561
0
            break;
5562
0
  case TYPE_NETADDR:
5563
0
      fcp = cp;
5564
0
      cp2 = strchr(cp, '.');
5565
0
      if (cp2)
5566
0
    *cp2++ = 0;
5567
0
      subid = strtoul(cp, &ecp, 0);
5568
0
      if (*ecp)
5569
0
    goto bad_id;
5570
0
      if (*objidlen + 1 >= maxlen)
5571
0
    goto bad_id;
5572
0
      objid[*objidlen] = subid;
5573
0
      (*objidlen)++;
5574
0
      cp = cp2;
5575
0
      if (subid == 1) {
5576
0
    for (len = 0; cp && len < 4; len++) {
5577
0
        fcp = cp;
5578
0
        cp2 = strchr(cp, '.');
5579
0
        if (cp2)
5580
0
      *cp2++ = 0;
5581
0
        subid = strtoul(cp, &ecp, 0);
5582
0
        if (*ecp)
5583
0
      goto bad_id;
5584
0
        if (*objidlen + 1 >= maxlen)
5585
0
      goto bad_id;
5586
0
        if (check && subid > 255)
5587
0
      goto bad_id;
5588
0
        objid[*objidlen] = subid;
5589
0
        (*objidlen)++;
5590
0
        cp = cp2;
5591
0
    }
5592
0
      }
5593
0
      else {
5594
0
    in_dices = NULL;
5595
0
      }
5596
0
      break;
5597
0
        default:
5598
0
            snmp_log(LOG_ERR, "Unexpected index type: %d %s %s\n",
5599
0
                     tp->type, in_dices->ilabel, cp);
5600
0
            in_dices = NULL;
5601
0
            cp2 = cp;
5602
0
            break;
5603
0
        }
5604
0
        cp = cp2;
5605
0
        if (in_dices)
5606
0
            in_dices = in_dices->next;
5607
0
    }
5608
5609
20.8k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
5610
35.6k
    while (cp) {
5611
15.8k
        fcp = cp;
5612
15.8k
        switch (*cp) {
5613
1.20k
        case '0':
5614
2.76k
        case '1':
5615
4.16k
        case '2':
5616
5.28k
        case '3':
5617
6.38k
        case '4':
5618
7.36k
        case '5':
5619
8.63k
        case '6':
5620
9.66k
        case '7':
5621
10.5k
        case '8':
5622
11.4k
        case '9':
5623
11.4k
            cp2 = strchr(cp, '.');
5624
11.4k
            if (cp2)
5625
10.6k
                *cp2++ = 0;
5626
11.4k
            subid = strtoul(cp, &ecp, 0);
5627
11.4k
            if (*ecp)
5628
107
                goto bad_id;
5629
11.3k
            if (*objidlen >= maxlen)
5630
2
                goto bad_id;
5631
11.3k
            objid[*objidlen] = subid;
5632
11.3k
            (*objidlen)++;
5633
11.3k
            break;
5634
2.14k
        case '"':
5635
3.81k
        case '\'':
5636
3.81k
            doingquote = *cp++;
5637
3.81k
            if (*cp == '\0')
5638
50
                goto bad_id;
5639
            /*
5640
             * insert length if requested 
5641
             */
5642
3.76k
            if (doingquote == '"') {
5643
2.11k
                if (*objidlen >= maxlen)
5644
2
                    goto bad_id;
5645
2.11k
                objid[*objidlen] = len = strchr(cp, doingquote) - cp;
5646
2.11k
                (*objidlen)++;
5647
2.11k
            }
5648
5649
100k
            while (*cp && *cp != doingquote) {
5650
96.9k
                if (*objidlen >= maxlen)
5651
8
                    goto bad_id;
5652
96.9k
                objid[*objidlen] = *cp++;
5653
96.9k
                (*objidlen)++;
5654
96.9k
            }
5655
3.75k
            if (!*cp)
5656
170
                goto bad_id;
5657
3.58k
            cp2 = cp + 1;
5658
3.58k
            if (!*cp2)
5659
134
                cp2 = NULL;
5660
3.44k
            else if (*cp2 == '.')
5661
3.36k
                cp2++;
5662
83
            else
5663
83
                goto bad_id;
5664
3.49k
            break;
5665
3.49k
        default:
5666
628
            goto bad_id;
5667
15.8k
        }
5668
14.8k
        cp = cp2;
5669
14.8k
    }
5670
19.8k
    return 1;
5671
5672
1.21k
  bad_id:
5673
1.21k
    {
5674
1.21k
        char            buf[256];
5675
1.21k
#ifndef NETSNMP_DISABLE_MIB_LOADING
5676
1.21k
        if (in_dices)
5677
0
            snprintf(buf, sizeof(buf), "Index out of range: %s (%s)",
5678
0
                    fcp, in_dices->ilabel);
5679
1.21k
        else if (tp)
5680
174
            snprintf(buf, sizeof(buf), "Sub-id not found: %s -> %s", tp->label, fcp);
5681
1.03k
        else
5682
1.03k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
5683
1.03k
            snprintf(buf, sizeof(buf), "%s", fcp);
5684
1.21k
        buf[ sizeof(buf)-1 ] = 0;
5685
5686
1.21k
        snmp_set_detail(buf);
5687
1.21k
    }
5688
1.21k
    return 0;
5689
20.8k
}
5690
5691
5692
#ifndef NETSNMP_DISABLE_MIB_LOADING
5693
/**
5694
 * @see comments on find_best_tree_node for usage after first time.
5695
 */
5696
int
5697
get_wild_node(const char *name, oid * objid, size_t * objidlen)
5698
530
{
5699
530
    struct tree    *tp = find_best_tree_node(name, tree_head, NULL);
5700
530
    if (!tp)
5701
487
        return 0;
5702
43
    return get_node(tp->label, objid, objidlen);
5703
530
}
5704
5705
int
5706
get_node(const char *name, oid * objid, size_t * objidlen)
5707
1.92k
{
5708
1.92k
    const char     *cp;
5709
1.92k
    char            ch;
5710
1.92k
    int             res;
5711
5712
1.92k
    cp = name;
5713
26.6k
    while ((ch = *cp))
5714
26.4k
        if (('0' <= ch && ch <= '9')
5715
20.3k
            || ('a' <= ch && ch <= 'z')
5716
15.4k
            || ('A' <= ch && ch <= 'Z')
5717
7.24k
            || ch == '-')
5718
24.6k
            cp++;
5719
1.77k
        else
5720
1.77k
            break;
5721
1.92k
    if (ch != ':')
5722
588
        if (*name == '.')
5723
24
            res = get_module_node(name + 1, "ANY", objid, objidlen);
5724
564
        else
5725
564
            res = get_module_node(name, "ANY", objid, objidlen);
5726
1.33k
    else {
5727
1.33k
        char           *module;
5728
        /*
5729
         *  requested name is of the form
5730
         *      "module:subidentifier"
5731
         */
5732
1.33k
        module = (char *) malloc((size_t) (cp - name + 1));
5733
1.33k
        if (!module)
5734
0
            return SNMPERR_GENERR;
5735
1.33k
        sprintf(module, "%.*s", (int) (cp - name), name);
5736
1.33k
        cp++;                   /* cp now point to the subidentifier */
5737
1.33k
        if (*cp == ':')
5738
66
            cp++;
5739
5740
        /*
5741
         * 'cp' and 'name' *do* go that way round! 
5742
         */
5743
1.33k
        res = get_module_node(cp, module, objid, objidlen);
5744
1.33k
        SNMP_FREE(module);
5745
1.33k
    }
5746
1.92k
    if (res == 0) {
5747
1.86k
        SET_SNMP_ERROR(SNMPERR_UNKNOWN_OBJID);
5748
1.86k
    }
5749
5750
1.92k
    return res;
5751
1.92k
}
5752
#endif /* NETSNMP_DISABLE_MIB_LOADING */
5753
5754
#ifdef testing
5755
5756
main(int argc, char *argv[])
5757
{
5758
    oid             objid[MAX_OID_LEN];
5759
    int             objidlen = MAX_OID_LEN;
5760
    int             count;
5761
    netsnmp_variable_list variable;
5762
5763
    netsnmp_init_mib();
5764
    if (argc < 2)
5765
        print_subtree(stdout, tree_head, 0);
5766
    variable.type = ASN_INTEGER;
5767
    variable.val.integer = 3;
5768
    variable.val_len = 4;
5769
    for (argc--; argc; argc--, argv++) {
5770
        objidlen = MAX_OID_LEN;
5771
        printf("read_objid(%s) = %d\n",
5772
               argv[1], read_objid(argv[1], objid, &objidlen));
5773
        for (count = 0; count < objidlen; count++)
5774
            printf("%d.", objid[count]);
5775
        printf("\n");
5776
        print_variable(objid, objidlen, &variable);
5777
    }
5778
}
5779
5780
#endif                          /* testing */
5781
5782
#ifndef NETSNMP_DISABLE_MIB_LOADING
5783
/*
5784
 * initialize: no peers included in the report. 
5785
 */
5786
void
5787
clear_tree_flags(register struct tree *tp)
5788
530
{
5789
1.96k
    for (; tp; tp = tp->next_peer) {
5790
1.43k
        tp->reported = 0;
5791
1.43k
        if (tp->child_list)
5792
0
            clear_tree_flags(tp->child_list);
5793
1.43k
     /*RECURSE*/}
5794
530
}
5795
5796
/*
5797
 * Update: 1998-07-17 <jhy@gsu.edu>
5798
 * Added print_oid_report* functions.
5799
 */
5800
static int      print_subtree_oid_report_labeledoid = 0;
5801
static int      print_subtree_oid_report_oid = 0;
5802
static int      print_subtree_oid_report_symbolic = 0;
5803
static int      print_subtree_oid_report_mibchildoid = 0;
5804
static int      print_subtree_oid_report_suffix = 0;
5805
5806
/*
5807
 * These methods recurse. 
5808
 */
5809
static void     print_parent_labeledoid(FILE *, struct tree *);
5810
static void     print_parent_oid(FILE *, struct tree *);
5811
static void     print_parent_mibchildoid(FILE *, struct tree *);
5812
static void     print_parent_label(FILE *, struct tree *);
5813
static void     print_subtree_oid_report(FILE *, struct tree *, int);
5814
5815
5816
void
5817
print_oid_report(FILE * fp)
5818
0
{
5819
0
    struct tree    *tp;
5820
0
    clear_tree_flags(tree_head);
5821
0
    for (tp = tree_head; tp; tp = tp->next_peer)
5822
0
        print_subtree_oid_report(fp, tp, 0);
5823
0
}
5824
5825
void
5826
print_oid_report_enable_labeledoid(void)
5827
0
{
5828
0
    print_subtree_oid_report_labeledoid = 1;
5829
0
}
5830
5831
void
5832
print_oid_report_enable_oid(void)
5833
0
{
5834
0
    print_subtree_oid_report_oid = 1;
5835
0
}
5836
5837
void
5838
print_oid_report_enable_suffix(void)
5839
0
{
5840
0
    print_subtree_oid_report_suffix = 1;
5841
0
}
5842
5843
void
5844
print_oid_report_enable_symbolic(void)
5845
0
{
5846
0
    print_subtree_oid_report_symbolic = 1;
5847
0
}
5848
5849
void
5850
print_oid_report_enable_mibchildoid(void)
5851
0
{
5852
0
    print_subtree_oid_report_mibchildoid = 1;
5853
0
}
5854
5855
/*
5856
 * helper methods for print_subtree_oid_report()
5857
 * each one traverses back up the node tree
5858
 * until there is no parent.  Then, the label combination
5859
 * is output, such that the parent is displayed first.
5860
 *
5861
 * Warning: these methods are all recursive.
5862
 */
5863
5864
static void
5865
print_parent_labeledoid(FILE * f, struct tree *tp)
5866
0
{
5867
0
    if (tp) {
5868
0
        if (tp->parent) {
5869
0
            print_parent_labeledoid(f, tp->parent);
5870
0
         /*RECURSE*/}
5871
0
        fprintf(f, ".%s(%lu)", tp->label, tp->subid);
5872
0
    }
5873
0
}
5874
5875
static void
5876
print_parent_oid(FILE * f, struct tree *tp)
5877
0
{
5878
0
    if (tp) {
5879
0
        if (tp->parent) {
5880
0
            print_parent_oid(f, tp->parent);
5881
0
         /*RECURSE*/}
5882
0
        fprintf(f, ".%lu", tp->subid);
5883
0
    }
5884
0
}
5885
5886
5887
static void print_parent_mibchildoid(FILE * f, struct tree *tp)
5888
0
{
5889
0
    static struct tree *temp;
5890
0
    unsigned long elems[100];
5891
0
    int elem_cnt = 0;
5892
0
    int i = 0;
5893
0
    temp = tp;
5894
0
    if (temp) {
5895
0
        while (temp->parent) {
5896
0
                elems[elem_cnt++] = temp->subid;
5897
0
                temp = temp->parent;
5898
0
        }
5899
0
        elems[elem_cnt++] = temp->subid;
5900
0
    }
5901
0
    for (i = elem_cnt - 1; i >= 0; i--) {
5902
0
        if (i == elem_cnt - 1) {
5903
0
            fprintf(f, "%lu", elems[i]);           
5904
0
            } else {
5905
0
            fprintf(f, ".%lu", elems[i]);          
5906
0
        }
5907
0
    }
5908
0
}
5909
5910
static void
5911
print_parent_label(FILE * f, struct tree *tp)
5912
0
{
5913
0
    if (tp) {
5914
0
        if (tp->parent) {
5915
0
            print_parent_label(f, tp->parent);
5916
0
         /*RECURSE*/}
5917
0
        fprintf(f, ".%s", tp->label);
5918
0
    }
5919
0
}
5920
5921
/**
5922
 * @internal
5923
 * This methods generates variations on the original print_subtree() report.
5924
 * Traverse the tree depth first, from least to greatest sub-identifier.
5925
 * Warning: this methods recurses and calls methods that recurse.
5926
 *
5927
 * @param f       File descriptor to print to.
5928
 * @param tree    ???
5929
 * @param count   ???
5930
 */
5931
5932
static void
5933
print_subtree_oid_report(FILE * f, struct tree *tree, int count)
5934
0
{
5935
0
    struct tree    *tp;
5936
5937
0
    count++;
5938
5939
    /*
5940
     * sanity check 
5941
     */
5942
0
    if (!tree) {
5943
0
        return;
5944
0
    }
5945
5946
    /*
5947
     * find the not reported peer with the lowest sub-identifier.
5948
     * if no more, break the loop and cleanup.
5949
     * set "reported" flag, and create report for this peer.
5950
     * recurse using the children of this peer, if any.
5951
     */
5952
0
    while (1) {
5953
0
        register struct tree *ntp;
5954
5955
0
        tp = NULL;
5956
0
        for (ntp = tree->child_list; ntp; ntp = ntp->next_peer) {
5957
0
            if (ntp->reported)
5958
0
                continue;
5959
5960
0
            if (!tp || (tp->subid > ntp->subid))
5961
0
                tp = ntp;
5962
0
        }
5963
0
        if (!tp)
5964
0
            break;
5965
5966
0
        tp->reported = 1;
5967
5968
0
        if (print_subtree_oid_report_labeledoid) {
5969
0
            print_parent_labeledoid(f, tp);
5970
0
            fprintf(f, "\n");
5971
0
        }
5972
0
        if (print_subtree_oid_report_oid) {
5973
0
            print_parent_oid(f, tp);
5974
0
            fprintf(f, "\n");
5975
0
        }
5976
0
        if (print_subtree_oid_report_symbolic) {
5977
0
            print_parent_label(f, tp);
5978
0
            fprintf(f, "\n");
5979
0
        }
5980
0
        if (print_subtree_oid_report_mibchildoid) {
5981
0
      fprintf(f, "\"%s\"\t", tp->label);
5982
0
            fprintf(f, "\t\t\"");
5983
0
            print_parent_mibchildoid(f, tp);
5984
0
            fprintf(f, "\"\n");
5985
0
        }
5986
0
        if (print_subtree_oid_report_suffix) {
5987
0
            int             i;
5988
0
            for (i = 0; i < count; i++)
5989
0
                fprintf(f, "  ");
5990
0
            fprintf(f, "%s(%ld) type=%d", tp->label, tp->subid, tp->type);
5991
0
            if (tp->tc_index != -1)
5992
0
                fprintf(f, " tc=%d", tp->tc_index);
5993
0
            if (tp->hint)
5994
0
                fprintf(f, " hint=%s", tp->hint);
5995
0
            if (tp->units)
5996
0
                fprintf(f, " units=%s", tp->units);
5997
5998
0
            fprintf(f, "\n");
5999
0
        }
6000
0
        print_subtree_oid_report(f, tp, count);
6001
0
     /*RECURSE*/}
6002
0
}
6003
#endif /* NETSNMP_DISABLE_MIB_LOADING */
6004
6005
6006
/**
6007
 * Converts timeticks to hours, minutes, seconds string.
6008
 *
6009
 * @param timeticks    The timeticks to convert.
6010
 * @param buf          Buffer to write to, has to be at 
6011
 *                     least 40 Bytes large.
6012
 *       
6013
 * @return The buffer
6014
 *
6015
 * @see uptimeString
6016
 */
6017
char           *
6018
uptime_string(u_long timeticks, char *buf)
6019
0
{
6020
0
    return uptime_string_n( timeticks, buf, 40);
6021
0
}
6022
6023
char           *
6024
uptime_string_n(u_long timeticks, char *buf, size_t buflen)
6025
0
{
6026
0
    uptimeString(timeticks, buf, buflen);
6027
0
    return buf;
6028
0
}
6029
6030
/**
6031
 * Given a string, parses an oid out of it (if possible).
6032
 * It will try to parse it based on predetermined configuration if
6033
 * present or by every method possible otherwise.
6034
 * If a suffix has been registered using NETSNMP_DS_LIB_OIDSUFFIX, it
6035
 * will be appended to the input string before processing.
6036
 *
6037
 * @param argv    The OID to string parse
6038
 * @param root    An OID array where the results are stored.
6039
 * @param rootlen The max length of the array going in and the data
6040
 *                length coming out.
6041
 *
6042
 * @return        The root oid pointer if successful, or NULL otherwise.
6043
 */
6044
 
6045
oid            *
6046
snmp_parse_oid(const char *argv, oid * root, size_t * rootlen)
6047
19.9k
{
6048
19.9k
#ifndef NETSNMP_DISABLE_MIB_LOADING
6049
19.9k
    size_t          savlen = *rootlen;
6050
19.9k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
6051
19.9k
    char           *tmpbuf = NULL;
6052
19.9k
    const char     *suffix, *prefix;
6053
6054
19.9k
    suffix = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID,
6055
19.9k
                                   NETSNMP_DS_LIB_OIDSUFFIX);
6056
19.9k
    prefix = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID,
6057
19.9k
                                   NETSNMP_DS_LIB_OIDPREFIX);
6058
19.9k
    if ((suffix && suffix[0]) || (prefix && prefix[0])) {
6059
0
        if (!suffix)
6060
0
            suffix = "";
6061
0
        if (!prefix)
6062
0
            prefix = "";
6063
0
        if (asprintf(&tmpbuf, "%s%s%s%s", prefix, argv,
6064
0
                     suffix[0] == '.' || suffix[0] == '\0' ? "" : ".",
6065
0
                     suffix) < 0) {
6066
0
            DEBUGMSGTL(("snmp_parse_oid", "Out of memory\n"));
6067
0
            return NULL;
6068
0
        }
6069
0
        argv = tmpbuf;
6070
0
        DEBUGMSGTL(("snmp_parse_oid","Parsing: %s\n",argv));
6071
0
    }
6072
6073
19.9k
#ifndef NETSNMP_DISABLE_MIB_LOADING
6074
19.9k
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
6075
19.9k
                               NETSNMP_DS_LIB_RANDOM_ACCESS)
6076
19.9k
        || strchr(argv, ':')) {
6077
348
        if (get_node(argv, root, rootlen))
6078
2
            goto out;
6079
19.6k
    } else if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
6080
19.6k
                                      NETSNMP_DS_LIB_REGEX_ACCESS)) {
6081
0
  clear_tree_flags(tree_head);
6082
0
        if (get_wild_node(argv, root, rootlen))
6083
0
            goto out;
6084
19.6k
    } else {
6085
19.6k
#endif /* NETSNMP_DISABLE_MIB_LOADING */
6086
19.6k
        if (read_objid(argv, root, rootlen))
6087
19.0k
            goto out;
6088
532
#ifndef NETSNMP_DISABLE_MIB_LOADING
6089
532
        *rootlen = savlen;
6090
532
        if (get_node(argv, root, rootlen))
6091
2
            goto out;
6092
530
        *rootlen = savlen;
6093
530
        DEBUGMSGTL(("parse_oid", "wildly parsing\n"));
6094
530
  clear_tree_flags(tree_head);
6095
530
        if (get_wild_node(argv, root, rootlen))
6096
43
            goto out;
6097
530
    }
6098
833
#endif /* NETSNMP_DISABLE_MIB_LOADING */
6099
6100
833
    root = NULL;
6101
6102
19.9k
out:
6103
19.9k
    free(tmpbuf);
6104
19.9k
    return root;
6105
833
}
6106
6107
#ifndef NETSNMP_DISABLE_MIB_LOADING
6108
/*
6109
 * Use DISPLAY-HINT to parse a value into an octet string.
6110
 *
6111
 * note that "1d1d", "11" could have come from an octet string that
6112
 * looked like { 1, 1 } or an octet string that looked like { 11 }
6113
 * because of this, it's doubtful that anyone would use such a display
6114
 * string. Therefore, the parser ignores this case.
6115
 */
6116
6117
struct parse_hints {
6118
    int length;
6119
    int repeat;
6120
    int format;
6121
    int separator;
6122
    int terminator;
6123
    unsigned char *result;
6124
    int result_max;
6125
    int result_len;
6126
};
6127
6128
static void parse_hints_reset(struct parse_hints *ph)
6129
30
{
6130
30
    ph->length = 0;
6131
30
    ph->repeat = 0;
6132
30
    ph->format = 0;
6133
30
    ph->separator = 0;
6134
30
    ph->terminator = 0;
6135
30
}
6136
6137
static void parse_hints_ctor(struct parse_hints *ph)
6138
30
{
6139
30
    parse_hints_reset(ph);
6140
30
    ph->result = NULL;
6141
30
    ph->result_max = 0;
6142
30
    ph->result_len = 0;
6143
30
}
6144
6145
static int parse_hints_add_result_octet(struct parse_hints *ph, unsigned char octet)
6146
0
{
6147
0
    if (!(ph->result_len < ph->result_max)) {
6148
0
  ph->result_max = ph->result_len + 32;
6149
0
  if (!ph->result) {
6150
0
      ph->result = (unsigned char *)malloc(ph->result_max);
6151
0
  } else {
6152
0
      ph->result = (unsigned char *)realloc(ph->result, ph->result_max);
6153
0
  }
6154
0
    }
6155
    
6156
0
    if (!ph->result) {
6157
0
  return 0;   /* failed */
6158
0
    }
6159
6160
0
    ph->result[ph->result_len++] = octet;
6161
0
    return 1;     /* success */
6162
0
}
6163
6164
static int parse_hints_parse(struct parse_hints *ph, const char **v_in_out)
6165
0
{
6166
0
    const char *v = *v_in_out;
6167
0
    char *nv;
6168
0
    int base;
6169
0
    int repeats = 0;
6170
0
    int repeat_fixup = ph->result_len;
6171
    
6172
0
    if (ph->repeat) {
6173
0
  if (!parse_hints_add_result_octet(ph, 0)) {
6174
0
      return 0;
6175
0
  }
6176
0
    }
6177
0
    do {
6178
0
  base = 0;
6179
0
  switch (ph->format) {
6180
0
  case 'x': base += 6;  NETSNMP_FALLTHROUGH;
6181
0
  case 'd': base += 2;  NETSNMP_FALLTHROUGH;
6182
0
  case 'o': base += 8;
6183
0
      {
6184
0
    int i;
6185
0
    unsigned long number = strtol(v, &nv, base);
6186
0
    if (nv == v) return 0;
6187
0
    v = nv;
6188
0
    for (i = 0; i < ph->length; i++) {
6189
0
        int shift = 8 * (ph->length - 1 - i);
6190
0
        if (!parse_hints_add_result_octet(ph, (u_char)(number >> shift) )) {
6191
0
      return 0; /* failed */
6192
0
        }
6193
0
    }
6194
0
      }
6195
0
      break;
6196
6197
0
  case 'a':
6198
0
      {
6199
0
    int i;
6200
        
6201
0
    for (i = 0; i < ph->length && *v; i++) {
6202
0
        if (!parse_hints_add_result_octet(ph, *v++)) {
6203
0
      return 0; /* failed */
6204
0
        }
6205
0
    }
6206
0
      }
6207
0
      break;
6208
0
  }
6209
6210
0
  repeats++;
6211
6212
0
  if (ph->separator && *v) {
6213
0
      if (*v == ph->separator) {
6214
0
    v++;
6215
0
      } else {
6216
0
    return 0;   /* failed */
6217
0
      }
6218
0
  }
6219
6220
0
  if (ph->terminator) {
6221
0
      if (*v == ph->terminator) {
6222
0
    v++;
6223
0
    break;
6224
0
      }
6225
0
  }
6226
0
    } while (ph->repeat && *v);
6227
0
    if (ph->repeat) {
6228
0
  ph->result[repeat_fixup] = repeats;
6229
0
    }
6230
6231
0
    *v_in_out = v;
6232
0
    return 1;
6233
0
}
6234
6235
static void parse_hints_length_add_digit(struct parse_hints *ph, int digit)
6236
0
{
6237
0
    ph->length *= 10;
6238
0
    ph->length += digit - '0';
6239
0
}
6240
6241
const char *parse_octet_hint(const char *hint, const char *value, unsigned char **new_val, int *new_val_len)
6242
30
{
6243
30
    const char *h = hint;
6244
30
    const char *v = value;
6245
30
    struct parse_hints ph;
6246
30
    int retval = 1;
6247
    /* See RFC 1443 */
6248
30
    enum {
6249
30
  HINT_1_2,
6250
30
  HINT_2_3,
6251
30
  HINT_1_2_4,
6252
30
  HINT_1_2_5
6253
30
    } state = HINT_1_2;
6254
6255
30
    parse_hints_ctor(&ph);
6256
30
    while (*h && *v && retval) {
6257
0
  switch (state) {
6258
0
  case HINT_1_2:
6259
0
      if ('*' == *h) {
6260
0
    ph.repeat = 1;
6261
0
    state = HINT_2_3;
6262
0
      } else if (isdigit((unsigned char)(*h))) {
6263
0
    parse_hints_length_add_digit(&ph, *h);
6264
0
    state = HINT_2_3;
6265
0
      } else {
6266
0
    return v; /* failed */
6267
0
      }
6268
0
      break;
6269
6270
0
  case HINT_2_3:
6271
0
      if (isdigit((unsigned char)(*h))) {
6272
0
    parse_hints_length_add_digit(&ph, *h);
6273
    /* state = HINT_2_3 */
6274
0
      } else if ('x' == *h || 'd' == *h || 'o' == *h || 'a' == *h) {
6275
0
    ph.format = *h;
6276
0
    state = HINT_1_2_4;
6277
0
      } else {
6278
0
    return v; /* failed */
6279
0
      }
6280
0
      break;
6281
6282
0
  case HINT_1_2_4:
6283
0
      if ('*' == *h) {
6284
0
    retval = parse_hints_parse(&ph, &v);
6285
0
    parse_hints_reset(&ph);
6286
    
6287
0
    ph.repeat = 1;
6288
0
    state = HINT_2_3;
6289
0
      } else if (isdigit((unsigned char)(*h))) {
6290
0
    retval = parse_hints_parse(&ph, &v);
6291
0
    parse_hints_reset(&ph);
6292
    
6293
0
    parse_hints_length_add_digit(&ph, *h);
6294
0
    state = HINT_2_3;
6295
0
      } else {
6296
0
    ph.separator = *h;
6297
0
    state = HINT_1_2_5;
6298
0
      }
6299
0
      break;
6300
6301
0
  case HINT_1_2_5:
6302
0
      if ('*' == *h) {
6303
0
    retval = parse_hints_parse(&ph, &v);
6304
0
    parse_hints_reset(&ph);
6305
    
6306
0
    ph.repeat = 1;
6307
0
    state = HINT_2_3;
6308
0
      } else if (isdigit((unsigned char)(*h))) {
6309
0
    retval = parse_hints_parse(&ph, &v);
6310
0
    parse_hints_reset(&ph);
6311
    
6312
0
    parse_hints_length_add_digit(&ph, *h);
6313
0
    state = HINT_2_3;
6314
0
      } else {
6315
0
    ph.terminator = *h;
6316
6317
0
    retval = parse_hints_parse(&ph, &v);
6318
0
    parse_hints_reset(&ph);
6319
6320
0
    state = HINT_1_2;
6321
0
      }
6322
0
      break;
6323
0
  }
6324
0
  h++;
6325
0
    }
6326
30
    while (*v && retval) {
6327
0
  retval = parse_hints_parse(&ph, &v);
6328
0
    }
6329
30
    if (retval) {
6330
30
  *new_val = ph.result;
6331
30
  *new_val_len = ph.result_len;
6332
30
    } else {
6333
0
  if (ph.result) {
6334
0
      SNMP_FREE(ph.result);
6335
0
  }
6336
0
  *new_val = NULL;
6337
0
  *new_val_len = 0;
6338
0
    }
6339
30
    return retval ? NULL : v;
6340
30
}
6341
#endif /* NETSNMP_DISABLE_MIB_LOADING */
6342
6343
#ifdef test_display_hint
6344
6345
int main(int argc, const char **argv)
6346
{
6347
    const char *hint;
6348
    const char *value;
6349
    unsigned char *new_val;
6350
    int new_val_len;
6351
    char *r;
6352
    
6353
    if (argc < 3) {
6354
  fprintf(stderr, "usage: dh <hint> <value>\n");
6355
  exit(2);
6356
    }
6357
    hint = argv[1];
6358
    value = argv[2];
6359
    r = parse_octet_hint(hint, value, &new_val, &new_val_len);
6360
    printf("{\"%s\", \"%s\"}: \n\t", hint, value);
6361
    if (r) {
6362
        *r = 0;
6363
      printf("returned failed\n");
6364
  printf("value syntax error at: %s\n", value);
6365
    }
6366
    else {
6367
  int i;
6368
  printf("returned success\n");
6369
  for (i = 0; i < new_val_len; i++) {
6370
      int c = new_val[i] & 0xFF;
6371
      printf("%02X(%c) ", c, isprint(c) ? c : ' ');
6372
  }
6373
  SNMP_FREE(new_val);
6374
    }
6375
    printf("\n");
6376
    exit(0);
6377
}
6378
6379
#endif /* test_display_hint */
6380
6381
#ifndef NETSNMP_FEATURE_REMOVE_MIB_TO_ASN_TYPE
6382
u_char
6383
mib_to_asn_type(int mib_type)
6384
0
{
6385
0
    switch (mib_type) {
6386
0
    case TYPE_OBJID:
6387
0
        return ASN_OBJECT_ID;
6388
6389
0
    case TYPE_OCTETSTR:
6390
0
        return ASN_OCTET_STR;
6391
6392
0
    case TYPE_NETADDR:
6393
0
    case TYPE_IPADDR:
6394
0
        return ASN_IPADDRESS;
6395
6396
0
    case TYPE_INTEGER32:
6397
0
    case TYPE_INTEGER:
6398
0
        return ASN_INTEGER;
6399
6400
0
    case TYPE_COUNTER:
6401
0
        return ASN_COUNTER;
6402
6403
0
    case TYPE_GAUGE:
6404
0
        return ASN_GAUGE;
6405
6406
0
    case TYPE_TIMETICKS:
6407
0
        return ASN_TIMETICKS;
6408
6409
0
    case TYPE_OPAQUE:
6410
0
        return ASN_OPAQUE;
6411
6412
0
    case TYPE_NULL:
6413
0
        return ASN_NULL;
6414
6415
0
    case TYPE_COUNTER64:
6416
0
        return ASN_COUNTER64;
6417
6418
0
    case TYPE_BITSTRING:
6419
0
        return ASN_BIT_STR;
6420
6421
0
    case TYPE_UINTEGER:
6422
0
    case TYPE_UNSIGNED32:
6423
0
        return ASN_UNSIGNED;
6424
6425
0
    case TYPE_NSAPADDRESS:
6426
0
        return ASN_NSAP;
6427
6428
0
    }
6429
0
    return -1;
6430
0
}
6431
#endif /* NETSNMP_FEATURE_REMOVE_MIB_TO_ASN_TYPE */
6432
6433
/**
6434
 * Converts a string to its OID form.
6435
 * in example  "hello" = 5 . 'h' . 'e' . 'l' . 'l' . 'o'
6436
 *
6437
 * @param S   The string.
6438
 * @param O   The oid.
6439
 * @param L   The length of the oid.
6440
 *
6441
 * @return 0 on success, 1 on failure.
6442
 */
6443
#ifndef NETSNMP_FEATURE_REMOVE_MIB_STRING_CONVERSIONS
6444
int
6445
netsnmp_str2oid(const char *S, oid * O, int L)
6446
0
{
6447
0
    const char     *c = S;
6448
0
    oid            *o = &O[1];
6449
6450
0
    --L;                        /* leave room for length prefix */
6451
6452
0
    for (; *c && L; --L, ++o, ++c)
6453
0
        *o = *c;
6454
6455
    /*
6456
     * make sure we got to the end of the string 
6457
     */
6458
0
    if (*c != 0)
6459
0
        return 1;
6460
6461
    /*
6462
     * set the length of the oid 
6463
     */
6464
0
    *O = c - S;
6465
6466
0
    return 0;
6467
0
}
6468
6469
/**
6470
 * Converts an OID to its character form.
6471
 * in example  5 . 1 . 2 . 3 . 4 . 5 = 12345
6472
 *
6473
 * @param C   The character buffer.
6474
 * @param L   The length of the buffer.
6475
 * @param O   The oid.
6476
 *
6477
 * @return 0 on success, 1 on failure.
6478
 */
6479
int
6480
netsnmp_oid2chars(char *C, int L, const oid * O)
6481
0
{
6482
0
    char           *c = C;
6483
0
    const oid      *o = &O[1];
6484
6485
0
    if (L < (int)*O)
6486
0
        return 1;
6487
6488
0
    L = *O; /** length */
6489
0
    for (; L; --L, ++o, ++c) {
6490
0
        if (*o > 0xFF)
6491
0
            return 1;
6492
0
        *c = (char)*o;
6493
0
    }
6494
0
    return 0;
6495
0
}
6496
6497
/**
6498
 * Converts an OID to its string form.
6499
 * in example  5 . 'h' . 'e' . 'l' . 'l' . 'o' = "hello\0" (null terminated)
6500
 *
6501
 * @param S   The character string buffer.
6502
 * @param L   The length of the string buffer.
6503
 * @param O   The oid.
6504
 *
6505
 * @return 0 on success, 1 on failure.
6506
 */
6507
int
6508
netsnmp_oid2str(char *S, int L, oid * O)
6509
0
{
6510
0
    int            rc;
6511
6512
0
    if (L <= (int)*O)
6513
0
        return 1;
6514
6515
0
    rc = netsnmp_oid2chars(S, L, O);
6516
0
    if (rc)
6517
0
        return 1;
6518
6519
0
    S[ *O ] = 0;
6520
6521
0
    return 0;
6522
0
}
6523
#endif /* NETSNMP_FEATURE_REMOVE_MIB_STRING_CONVERSIONS */
6524
6525
6526
#ifndef NETSNMP_FEATURE_REMOVE_MIB_SNPRINT
6527
int
6528
snprint_by_type(char *buf, size_t buf_len,
6529
                netsnmp_variable_list * var,
6530
                const struct enum_list *enums,
6531
                const char *hint, const char *units)
6532
0
{
6533
0
    size_t          out_len = 0;
6534
0
    if (sprint_realloc_by_type((u_char **) & buf, &buf_len, &out_len, 0,
6535
0
                               var, enums, hint, units))
6536
0
        return (int) out_len;
6537
0
    else
6538
0
        return -1;
6539
0
}
6540
6541
int
6542
snprint_hexstring(char *buf, size_t buf_len, const u_char * cp, size_t len)
6543
0
{
6544
0
    size_t          out_len = 0;
6545
0
    if (sprint_realloc_hexstring((u_char **) & buf, &buf_len, &out_len, 0,
6546
0
                                 cp, len))
6547
0
        return (int) out_len;
6548
0
    else
6549
0
        return -1;
6550
0
}
6551
6552
int
6553
snprint_asciistring(char *buf, size_t buf_len,
6554
                    const u_char * cp, size_t len)
6555
0
{
6556
0
    size_t          out_len = 0;
6557
0
    if (sprint_realloc_asciistring
6558
0
        ((u_char **) & buf, &buf_len, &out_len, 0, cp, len))
6559
0
        return (int) out_len;
6560
0
    else
6561
0
        return -1;
6562
0
}
6563
6564
int
6565
snprint_octet_string(char *buf, size_t buf_len,
6566
                     const netsnmp_variable_list * var, const struct enum_list *enums,
6567
                     const char *hint, const char *units)
6568
0
{
6569
0
    size_t          out_len = 0;
6570
0
    if (sprint_realloc_octet_string
6571
0
        ((u_char **) & buf, &buf_len, &out_len, 0, var, enums, hint,
6572
0
         units))
6573
0
        return (int) out_len;
6574
0
    else
6575
0
        return -1;
6576
0
}
6577
6578
int
6579
snprint_opaque(char *buf, size_t buf_len,
6580
               const netsnmp_variable_list * var, const struct enum_list *enums,
6581
               const char *hint, const char *units)
6582
0
{
6583
0
    size_t          out_len = 0;
6584
0
    if (sprint_realloc_opaque((u_char **) & buf, &buf_len, &out_len, 0,
6585
0
                              var, enums, hint, units))
6586
0
        return (int) out_len;
6587
0
    else
6588
0
        return -1;
6589
0
}
6590
6591
int
6592
snprint_object_identifier(char *buf, size_t buf_len,
6593
                          const netsnmp_variable_list * var,
6594
                          const struct enum_list *enums, const char *hint,
6595
                          const char *units)
6596
0
{
6597
0
    size_t          out_len = 0;
6598
0
    if (sprint_realloc_object_identifier
6599
0
        ((u_char **) & buf, &buf_len, &out_len, 0, var, enums, hint,
6600
0
         units))
6601
0
        return (int) out_len;
6602
0
    else
6603
0
        return -1;
6604
0
}
6605
6606
int
6607
snprint_timeticks(char *buf, size_t buf_len,
6608
                  const netsnmp_variable_list * var, const struct enum_list *enums,
6609
                  const char *hint, const char *units)
6610
0
{
6611
0
    size_t          out_len = 0;
6612
0
    if (sprint_realloc_timeticks((u_char **) & buf, &buf_len, &out_len, 0,
6613
0
                                 var, enums, hint, units))
6614
0
        return (int) out_len;
6615
0
    else
6616
0
        return -1;
6617
0
}
6618
6619
int
6620
snprint_hinted_integer(char *buf, size_t buf_len,
6621
                       long val, const char *hint, const char *units)
6622
0
{
6623
0
    size_t          out_len = 0;
6624
0
    if (sprint_realloc_hinted_integer
6625
0
        ((u_char **) & buf, &buf_len, &out_len, 0, val, 'd', hint, units))
6626
0
        return (int) out_len;
6627
0
    else
6628
0
        return -1;
6629
0
}
6630
6631
int
6632
snprint_integer(char *buf, size_t buf_len,
6633
                const netsnmp_variable_list * var, const struct enum_list *enums,
6634
                const char *hint, const char *units)
6635
208
{
6636
208
    size_t          out_len = 0;
6637
208
    if (sprint_realloc_integer((u_char **) & buf, &buf_len, &out_len, 0,
6638
208
                               var, enums, hint, units))
6639
125
        return (int) out_len;
6640
83
    else
6641
83
        return -1;
6642
208
}
6643
6644
int
6645
snprint_uinteger(char *buf, size_t buf_len,
6646
                 const netsnmp_variable_list * var, const struct enum_list *enums,
6647
                 const char *hint, const char *units)
6648
208
{
6649
208
    size_t          out_len = 0;
6650
208
    if (sprint_realloc_uinteger((u_char **) & buf, &buf_len, &out_len, 0,
6651
208
                                var, enums, hint, units))
6652
127
        return (int) out_len;
6653
81
    else
6654
81
        return -1;
6655
208
}
6656
6657
int
6658
snprint_gauge(char *buf, size_t buf_len,
6659
              const netsnmp_variable_list * var, const struct enum_list *enums,
6660
              const char *hint, const char *units)
6661
0
{
6662
0
    size_t          out_len = 0;
6663
0
    if (sprint_realloc_gauge((u_char **) & buf, &buf_len, &out_len, 0,
6664
0
                             var, enums, hint, units))
6665
0
        return (int) out_len;
6666
0
    else
6667
0
        return -1;
6668
0
}
6669
6670
int
6671
snprint_counter(char *buf, size_t buf_len,
6672
                const netsnmp_variable_list * var, const struct enum_list *enums,
6673
                const char *hint, const char *units)
6674
0
{
6675
0
    size_t          out_len = 0;
6676
0
    if (sprint_realloc_counter((u_char **) & buf, &buf_len, &out_len, 0,
6677
0
                               var, enums, hint, units))
6678
0
        return (int) out_len;
6679
0
    else
6680
0
        return -1;
6681
0
}
6682
6683
int
6684
snprint_networkaddress(char *buf, size_t buf_len,
6685
                       const netsnmp_variable_list * var,
6686
                       const struct enum_list *enums, const char *hint,
6687
                       const char *units)
6688
0
{
6689
0
    size_t          out_len = 0;
6690
0
    if (sprint_realloc_networkaddress
6691
0
        ((u_char **) & buf, &buf_len, &out_len, 0, var, enums, hint,
6692
0
         units))
6693
0
        return (int) out_len;
6694
0
    else
6695
0
        return -1;
6696
0
}
6697
6698
int
6699
snprint_ipaddress(char *buf, size_t buf_len,
6700
                  const netsnmp_variable_list * var, const struct enum_list *enums,
6701
                  const char *hint, const char *units)
6702
0
{
6703
0
    size_t          out_len = 0;
6704
0
    if (sprint_realloc_ipaddress((u_char **) & buf, &buf_len, &out_len, 0,
6705
0
                                 var, enums, hint, units))
6706
0
        return (int) out_len;
6707
0
    else
6708
0
        return -1;
6709
0
}
6710
6711
int
6712
snprint_null(char *buf, size_t buf_len,
6713
             const netsnmp_variable_list * var, const struct enum_list *enums,
6714
             const char *hint, const char *units)
6715
0
{
6716
0
    size_t          out_len = 0;
6717
0
    if (sprint_realloc_null((u_char **) & buf, &buf_len, &out_len, 0,
6718
0
                            var, enums, hint, units))
6719
0
        return (int) out_len;
6720
0
    else
6721
0
        return -1;
6722
0
}
6723
6724
int
6725
snprint_bitstring(char *buf, size_t buf_len,
6726
                  const netsnmp_variable_list * var, const struct enum_list *enums,
6727
                  const char *hint, const char *units)
6728
0
{
6729
0
    size_t          out_len = 0;
6730
0
    if (sprint_realloc_bitstring((u_char **) & buf, &buf_len, &out_len, 0,
6731
0
                                 var, enums, hint, units))
6732
0
        return (int) out_len;
6733
0
    else
6734
0
        return -1;
6735
0
}
6736
6737
int
6738
snprint_nsapaddress(char *buf, size_t buf_len,
6739
                    const netsnmp_variable_list * var, const struct enum_list *enums,
6740
                    const char *hint, const char *units)
6741
0
{
6742
0
    size_t          out_len = 0;
6743
0
    if (sprint_realloc_nsapaddress
6744
0
        ((u_char **) & buf, &buf_len, &out_len, 0, var, enums, hint,
6745
0
         units))
6746
0
        return (int) out_len;
6747
0
    else
6748
0
        return -1;
6749
0
}
6750
6751
int
6752
snprint_counter64(char *buf, size_t buf_len,
6753
                  const netsnmp_variable_list * var, const struct enum_list *enums,
6754
                  const char *hint, const char *units)
6755
0
{
6756
0
    size_t          out_len = 0;
6757
0
    if (sprint_realloc_counter64((u_char **) & buf, &buf_len, &out_len, 0,
6758
0
                                 var, enums, hint, units))
6759
0
        return (int) out_len;
6760
0
    else
6761
0
        return -1;
6762
0
}
6763
6764
int
6765
snprint_badtype(char *buf, size_t buf_len,
6766
                const netsnmp_variable_list * var, const struct enum_list *enums,
6767
                const char *hint, const char *units)
6768
0
{
6769
0
    size_t          out_len = 0;
6770
0
    if (sprint_realloc_badtype((u_char **) & buf, &buf_len, &out_len, 0,
6771
0
                               var, enums, hint, units))
6772
0
        return (int) out_len;
6773
0
    else
6774
0
        return -1;
6775
0
}
6776
6777
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
6778
int
6779
snprint_float(char *buf, size_t buf_len,
6780
              const netsnmp_variable_list * var, const struct enum_list *enums,
6781
              const char *hint, const char *units)
6782
0
{
6783
0
    size_t          out_len = 0;
6784
0
    if (sprint_realloc_float((u_char **) & buf, &buf_len, &out_len, 0,
6785
0
                             var, enums, hint, units))
6786
0
        return (int) out_len;
6787
0
    else
6788
0
        return -1;
6789
0
}
6790
6791
int
6792
snprint_double(char *buf, size_t buf_len,
6793
               const netsnmp_variable_list * var, const struct enum_list *enums,
6794
               const char *hint, const char *units)
6795
0
{
6796
0
    size_t          out_len = 0;
6797
0
    if (sprint_realloc_double((u_char **) & buf, &buf_len, &out_len, 0,
6798
0
                              var, enums, hint, units))
6799
0
        return (int) out_len;
6800
0
    else
6801
0
        return -1;
6802
0
}
6803
#endif
6804
#endif /* NETSNMP_FEATURE_REMOVE_MIB_SNPRINT */
6805
/** @} */
6806