Coverage Report

Created: 2025-10-10 07:11

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/net-snmp/snmplib/snmp_api.c
Line
Count
Source
1
2
/* Portions of this file are subject to the following copyright(s).  See
3
 * the Net-SNMP's COPYING file for more details and other copyrights
4
 * that may apply:
5
 */
6
/******************************************************************
7
  Copyright 1989, 1991, 1992 by Carnegie Mellon University
8
9
                      All Rights Reserved
10
11
Permission to use, copy, modify, and distribute this software and its
12
documentation for any purpose and without fee is hereby granted,
13
provided that the above copyright notice appear in all copies and that
14
both that copyright notice and this permission notice appear in
15
supporting documentation, and that the name of CMU not be
16
used in advertising or publicity pertaining to distribution of the
17
software without specific, written prior permission.
18
19
CMU DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING
20
ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL
21
CMU BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR
22
ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
23
WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
24
ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
25
SOFTWARE.
26
******************************************************************/
27
/*
28
 * Portions of this file are copyrighted by:
29
 * Copyright Copyright 2003 Sun Microsystems, Inc. All rights reserved.
30
 * Use is subject to license terms specified in the COPYING file
31
 * distributed with the Net-SNMP package.
32
 *
33
 * Portions of this file are copyrighted by:
34
 * Copyright (c) 2016 VMware, Inc. All rights reserved.
35
 * Use is subject to license terms specified in the COPYING file
36
 * distributed with the Net-SNMP package.
37
 */
38
39
/** @defgroup library The Net-SNMP library
40
 *  @{
41
 */
42
/*
43
 * snmp_api.c - API for access to snmp.
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
#ifdef HAVE_STDLIB_H
51
#include <stdlib.h>
52
#endif
53
#ifdef HAVE_STRING_H
54
#include <string.h>
55
#else
56
#include <strings.h>
57
#endif
58
#ifdef HAVE_UNISTD_H
59
#include <unistd.h>
60
#endif
61
#include <sys/types.h>
62
#ifdef HAVE_SYS_PARAM_H
63
#include <sys/param.h>
64
#endif
65
#ifdef TIME_WITH_SYS_TIME
66
# include <sys/time.h>
67
# include <time.h>
68
#else
69
# ifdef HAVE_SYS_TIME_H
70
#  include <sys/time.h>
71
# else
72
#  include <time.h>
73
# endif
74
#endif
75
#ifdef HAVE_NETINET_IN_H
76
#include <netinet/in.h>
77
#endif
78
#ifdef HAVE_ARPA_INET_H
79
#include <arpa/inet.h>
80
#endif
81
#ifdef HAVE_SYS_SELECT_H
82
#include <sys/select.h>
83
#endif
84
#ifdef HAVE_IO_H
85
#include <io.h>
86
#endif
87
#ifdef HAVE_SYS_SOCKET_H
88
#include <sys/socket.h>
89
#endif
90
#ifdef HAVE_SYS_UN_H
91
#include <sys/un.h>
92
#endif
93
#ifdef HAVE_NETDB_H
94
#include <netdb.h>
95
#endif
96
#ifdef HAVE_NET_IF_DL_H
97
#ifndef dynix
98
#include <net/if_dl.h>
99
#else
100
#include <sys/net/if_dl.h>
101
#endif
102
#endif
103
#include <errno.h>
104
105
#ifdef HAVE_LOCALE_H
106
#include <locale.h>
107
#endif
108
109
#define SNMP_NEED_REQUEST_LIST
110
#include <net-snmp/types.h>
111
#include <net-snmp/output_api.h>
112
#include <net-snmp/config_api.h>
113
#include <net-snmp/utilities.h>
114
#include <net-snmp/agent/agent_callbacks.h>
115
116
#include <net-snmp/library/asn1.h>
117
#include <net-snmp/library/snmp.h>      /* for xdump & {build,parse}_var_op */
118
#include <net-snmp/library/snmp_api.h>
119
#include <net-snmp/library/snmp_client.h>
120
#include <net-snmp/library/parse.h>
121
#include <net-snmp/library/mib.h>
122
#include <net-snmp/library/int64.h>
123
#include <net-snmp/library/snmpv3.h>
124
#include <net-snmp/library/callback.h>
125
#include <net-snmp/library/container.h>
126
#include <net-snmp/library/snmp_secmod.h>
127
#include <net-snmp/library/large_fd_set.h>
128
#ifdef NETSNMP_SECMOD_USM
129
#include <net-snmp/library/snmpusm.h>
130
#endif
131
#ifdef NETSNMP_SECMOD_KSM
132
#include <net-snmp/library/snmpksm.h>
133
#endif
134
#include <net-snmp/library/keytools.h>
135
#include <net-snmp/library/lcd_time.h>
136
#include <net-snmp/library/snmp_alarm.h>
137
#include <net-snmp/library/snmp_transport.h>
138
#include <net-snmp/library/snmp_service.h>
139
#include <net-snmp/library/vacm.h>
140
#if defined(NETSNMP_USE_OPENSSL) && defined(HAVE_LIBSSL)
141
#include <openssl/ssl.h>
142
#include <net-snmp/library/cert_util.h>
143
#endif
144
145
netsnmp_feature_child_of(statistics, libnetsnmp);
146
netsnmp_feature_child_of(snmp_api, libnetsnmp);
147
netsnmp_feature_child_of(oid_is_subtree, snmp_api);
148
netsnmp_feature_child_of(snmpv3_probe_contextEngineID_rfc5343, snmp_api);
149
150
static void     _init_snmp(void);
151
152
static int      _snmp_store_needed = 0;
153
154
#include "../agent/mibgroup/agentx/protocol.h"
155
#include <net-snmp/library/transform_oids.h>
156
#ifndef timercmp
157
#define timercmp(tvp, uvp, cmp) \
158
  /* CSTYLED */ \
159
  ((tvp)->tv_sec cmp (uvp)->tv_sec || \
160
  ((tvp)->tv_sec == (uvp)->tv_sec && \
161
  /* CSTYLED */ \
162
  (tvp)->tv_usec cmp (uvp)->tv_usec))
163
#endif
164
#ifndef timerclear
165
#define timerclear(tvp)   (tvp)->tv_sec = (tvp)->tv_usec = 0
166
#endif
167
168
/*
169
 * Globals.
170
 */
171
#ifndef NETSNMP_STREAM_QUEUE_LEN
172
#define NETSNMP_STREAM_QUEUE_LEN  5
173
#endif
174
175
#ifndef BSD4_3
176
#define BSD4_2
177
#endif
178
179
static const oid default_enterprise[] = { 1, 3, 6, 1, 4, 1, 3, 1, 1 };
180
/*
181
 * enterprises.cmu.systems.cmuSNMP 
182
 */
183
184
#define DEFAULT_COMMUNITY   "public"
185
0
#define DEFAULT_RETRIES     5
186
0
#define DEFAULT_TIMEOUT     (1000L * 1000L)
187
#define DEFAULT_REMPORT     SNMP_PORT
188
0
#define DEFAULT_ENTERPRISE  default_enterprise
189
0
#define DEFAULT_TIME      0
190
191
/*
192
 * Internal information about the state of the snmp session.
193
 */
194
struct snmp_internal_session {
195
    netsnmp_request_list *requests;     /* Info about outstanding requests */
196
    netsnmp_request_list *requestsEnd;  /* ptr to end of list */
197
    int             (*hook_pre) (netsnmp_session *, netsnmp_transport *,
198
                                 void *, int);
199
    int             (*hook_parse) (netsnmp_session *, netsnmp_pdu *,
200
                                   u_char *, size_t);
201
    int             (*hook_post) (netsnmp_session *, netsnmp_pdu *, int);
202
    int             (*hook_build) (netsnmp_session *, netsnmp_pdu *,
203
                                   u_char *, size_t *);
204
    int             (*hook_realloc_build) (netsnmp_session *,
205
                                           netsnmp_pdu *, u_char **,
206
                                           size_t *, size_t *);
207
    int             (*check_packet) (u_char *, size_t);
208
    netsnmp_pdu    *(*hook_create_pdu) (netsnmp_transport *,
209
                                        void *, size_t);
210
211
    u_char       *packet;      /* curr rcv packet data (may be incomplete) */
212
    size_t        packet_len;  /* length of data received so far */
213
    size_t        packet_size; /* size of buffer for packet data */
214
215
    u_char       *obuf;         /* send packet buffer */
216
    size_t        obuf_size;    /* size of buffer for packet data */
217
    u_char       *opacket;      /* send packet data (within obuf) */
218
    size_t        opacket_len;  /* length of data */
219
};
220
221
/*
222
 * information about received packet
223
 */
224
typedef struct snmp_rcv_packet_s {
225
    u_char   *packet;
226
    size_t    packet_len;
227
    void     *opaque;
228
    int       olength;
229
} snmp_rcv_packet;
230
231
static const char *api_errors[-SNMPERR_MAX + 1] = {
232
    "No error",                 /* SNMPERR_SUCCESS */
233
    "Generic error",            /* SNMPERR_GENERR */
234
    "Invalid local port",       /* SNMPERR_BAD_LOCPORT */
235
    "Unknown host",             /* SNMPERR_BAD_ADDRESS */
236
    "Unknown session",          /* SNMPERR_BAD_SESSION */
237
    "Too long",                 /* SNMPERR_TOO_LONG */
238
    "No socket",                /* SNMPERR_NO_SOCKET */
239
    "Cannot send V2 PDU on V1 session", /* SNMPERR_V2_IN_V1 */
240
    "Cannot send V1 PDU on V2 session", /* SNMPERR_V1_IN_V2 */
241
    "Bad value for non-repeaters",      /* SNMPERR_BAD_REPEATERS */
242
    "Bad value for max-repetitions",    /* SNMPERR_BAD_REPETITIONS */
243
    "Error building ASN.1 representation",      /* SNMPERR_BAD_ASN1_BUILD */
244
    "Failure in sendto",        /* SNMPERR_BAD_SENDTO */
245
    "Bad parse of ASN.1 type",  /* SNMPERR_BAD_PARSE */
246
    "Bad version specified",    /* SNMPERR_BAD_VERSION */
247
    "Bad source party specified",       /* SNMPERR_BAD_SRC_PARTY */
248
    "Bad destination party specified",  /* SNMPERR_BAD_DST_PARTY */
249
    "Bad context specified",    /* SNMPERR_BAD_CONTEXT */
250
    "Bad community specified",  /* SNMPERR_BAD_COMMUNITY */
251
    "Cannot send noAuth/Priv",       /* SNMPERR_NOAUTH_DESPRIV */
252
    "Bad ACL definition",       /* SNMPERR_BAD_ACL */
253
    "Bad Party definition",     /* SNMPERR_BAD_PARTY */
254
    "Session abort failure",    /* SNMPERR_ABORT */
255
    "Unknown PDU type",         /* SNMPERR_UNKNOWN_PDU */
256
    "Timeout",                  /* SNMPERR_TIMEOUT */
257
    "Failure in recvfrom",      /* SNMPERR_BAD_RECVFROM */
258
    "Unable to determine contextEngineID",      /* SNMPERR_BAD_ENG_ID */
259
    "No securityName specified",        /* SNMPERR_BAD_SEC_NAME */
260
    "Unable to determine securityLevel",        /* SNMPERR_BAD_SEC_LEVEL  */
261
    "ASN.1 parse error in message",     /* SNMPERR_ASN_PARSE_ERR */
262
    "Unknown security model in message",        /* SNMPERR_UNKNOWN_SEC_MODEL */
263
    "Invalid message (e.g. msgFlags)",  /* SNMPERR_INVALID_MSG */
264
    "Unknown engine ID",        /* SNMPERR_UNKNOWN_ENG_ID */
265
    "Unknown user name",        /* SNMPERR_UNKNOWN_USER_NAME */
266
    "Unsupported security level",       /* SNMPERR_UNSUPPORTED_SEC_LEVEL */
267
    "Authentication failure (incorrect password, community or key)",    /* SNMPERR_AUTHENTICATION_FAILURE */
268
    "Not in time window",       /* SNMPERR_NOT_IN_TIME_WINDOW */
269
    "Decryption error",         /* SNMPERR_DECRYPTION_ERR */
270
    "SCAPI general failure",    /* SNMPERR_SC_GENERAL_FAILURE */
271
    "SCAPI sub-system not configured",  /* SNMPERR_SC_NOT_CONFIGURED */
272
    "Key tools not available",  /* SNMPERR_KT_NOT_AVAILABLE */
273
    "Unknown Report message",   /* SNMPERR_UNKNOWN_REPORT */
274
    "USM generic error",        /* SNMPERR_USM_GENERICERROR */
275
    "USM unknown security name (no such user exists)",  /* SNMPERR_USM_UNKNOWNSECURITYNAME */
276
    "USM unsupported security level (this user has not been configured for that level of security)",    /* SNMPERR_USM_UNSUPPORTEDSECURITYLEVEL */
277
    "USM encryption error",     /* SNMPERR_USM_ENCRYPTIONERROR */
278
    "USM authentication failure (incorrect password or key)",   /* SNMPERR_USM_AUTHENTICATIONFAILURE */
279
    "USM parse error",          /* SNMPERR_USM_PARSEERROR */
280
    "USM unknown engineID",     /* SNMPERR_USM_UNKNOWNENGINEID */
281
    "USM not in time window",   /* SNMPERR_USM_NOTINTIMEWINDOW */
282
    "USM decryption error",     /* SNMPERR_USM_DECRYPTIONERROR */
283
    "MIB not initialized",      /* SNMPERR_NOMIB */
284
    "Value out of range",       /* SNMPERR_RANGE */
285
    "Sub-id out of range",      /* SNMPERR_MAX_SUBID */
286
    "Bad sub-id in object identifier",  /* SNMPERR_BAD_SUBID */
287
    "Object identifier too long",       /* SNMPERR_LONG_OID */
288
    "Bad value name",           /* SNMPERR_BAD_NAME */
289
    "Bad value notation",       /* SNMPERR_VALUE */
290
    "Unknown Object Identifier",        /* SNMPERR_UNKNOWN_OBJID */
291
    "No PDU in snmp_send",      /* SNMPERR_NULL_PDU */
292
    "Missing variables in PDU", /* SNMPERR_NO_VARS */
293
    "Bad variable type",        /* SNMPERR_VAR_TYPE */
294
    "Out of memory (malloc failure)",   /* SNMPERR_MALLOC */
295
    "Kerberos related error",   /* SNMPERR_KRB5 */
296
    "Protocol error",   /* SNMPERR_PROTOCOL */
297
    "OID not increasing",       /* SNMPERR_OID_NONINCREASING */
298
    "Context probe",            /* SNMPERR_JUST_A_CONTEXT_PROBE */
299
    "Configuration data found but the transport can't be configured", /* SNMPERR_TRANSPORT_NO_CONFIG */
300
    "Transport configuration failed", /* SNMPERR_TRANSPORT_CONFIG_ERROR */
301
};
302
303
static const char *secLevelName[] = {
304
    "BAD_SEC_LEVEL",
305
    "noAuthNoPriv",
306
    "authNoPriv",
307
    "authPriv"
308
};
309
310
/*
311
 * Multiple threads may changes these variables.
312
 * Suggest using the Single API, which does not use Sessions.
313
 *
314
 * Reqid may need to be protected. Time will tell...
315
 *
316
 */
317
/*
318
 * MTCRITICAL_RESOURCE
319
 */
320
/*
321
 * use token in comments to individually protect these resources 
322
 */
323
struct session_list *Sessions = NULL;   /* MT_LIB_SESSION */
324
static long     Reqid = 0;      /* MT_LIB_REQUESTID */
325
static long     Msgid = 0;      /* MT_LIB_MESSAGEID */
326
static long     Sessid = 0;     /* MT_LIB_SESSIONID */
327
static long     Transid = 0;    /* MT_LIB_TRANSID */
328
int             snmp_errno = 0;
329
/*
330
 * END MTCRITICAL_RESOURCE
331
 */
332
333
/*
334
 * global error detail storage
335
 */
336
static char     snmp_detail[192];
337
static int      snmp_detail_f = 0;
338
339
/*
340
 * Prototypes.
341
 */
342
static void     snmpv3_calc_msg_flags(int, int, u_char *);
343
static int      snmpv3_verify_msg(netsnmp_request_list *, netsnmp_pdu *);
344
static int      snmpv3_build(u_char ** pkt, size_t * pkt_len,
345
                             size_t * offset, netsnmp_session * session,
346
                             netsnmp_pdu *pdu);
347
static int      snmp_parse_version(u_char *, size_t);
348
static int      snmp_resend_request(struct session_list *slp,
349
                                    netsnmp_request_list *orp,
350
                                    netsnmp_request_list *rp,
351
                                    int incr_retries);
352
static void     register_default_handlers(void);
353
static struct session_list *snmp_sess_copy(netsnmp_session * pss);
354
355
/*
356
 * return configured max message size for outgoing packets
357
 */
358
int
359
netsnmp_max_send_msg_size(void)
360
0
{
361
0
    u_int max = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID,
362
0
                                   NETSNMP_DS_LIB_MSG_SEND_MAX);
363
0
    if (0 == max)
364
0
        max = SNMP_MAX_PACKET_LEN;
365
0
    else if (max < SNMP_MIN_MAX_LEN)
366
0
        max = SNMP_MIN_MAX_LEN; /* minimum max size per SNMP specs */
367
0
    else if (max > SNMP_MAX_PACKET_LEN)
368
0
        max = SNMP_MAX_PACKET_LEN;
369
370
0
    return max;
371
0
}
372
373
#ifndef HAVE_STRERROR
374
const char     *
375
strerror(int err)
376
{
377
    extern const char *sys_errlist[];
378
    extern int      sys_nerr;
379
380
    if (err < 0 || err >= sys_nerr)
381
        return "Unknown error";
382
    return sys_errlist[err];
383
}
384
#endif
385
386
const char *
387
snmp_pdu_type(int type)
388
0
{
389
0
    static char unknown[20];
390
0
    switch(type) {
391
0
    case SNMP_MSG_GET:
392
0
        return "GET";
393
0
    case SNMP_MSG_GETNEXT:
394
0
        return "GETNEXT";
395
0
    case SNMP_MSG_GETBULK:
396
0
        return "GETBULK";
397
0
#ifndef NETSNMP_NO_WRITE_SUPPORT
398
0
    case SNMP_MSG_SET:
399
0
        return "SET";
400
0
#endif /* !NETSNMP_NO_WRITE_SUPPORT */
401
0
    case SNMP_MSG_RESPONSE:
402
0
        return "RESPONSE";
403
0
    case SNMP_MSG_TRAP:
404
0
        return "TRAP";
405
0
    case SNMP_MSG_INFORM:
406
0
        return "INFORM";
407
0
    case SNMP_MSG_TRAP2:
408
0
        return "TRAP2";
409
0
    case SNMP_MSG_REPORT:
410
0
        return "REPORT";
411
0
    default:
412
0
        snprintf(unknown, sizeof(unknown), "?0x%2X?", type);
413
0
  return unknown;
414
0
    }
415
0
}
416
417
#define DEBUGPRINTPDUTYPE(token, type) \
418
0
    DEBUGDUMPSECTION(token, snmp_pdu_type(type))
419
420
long
421
snmp_get_next_reqid(void)
422
0
{
423
0
    long            retVal;
424
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_REQUESTID);
425
0
    retVal = 1 + Reqid;         /*MTCRITICAL_RESOURCE */
426
0
    if (!retVal)
427
0
        retVal = 2;
428
0
    Reqid = retVal;
429
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_16BIT_IDS))
430
0
        retVal &= 0x7fff; /* mask to 15 bits */
431
0
    else
432
0
        retVal &= 0x7fffffff; /* mask to 31 bits */
433
434
0
    if (!retVal) {
435
0
        Reqid = retVal = 2;
436
0
    }
437
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_REQUESTID);
438
0
    return retVal;
439
0
}
440
441
long
442
snmp_get_next_msgid(void)
443
0
{
444
0
    long            retVal;
445
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_MESSAGEID);
446
0
    retVal = 1 + Msgid;         /*MTCRITICAL_RESOURCE */
447
0
    if (!retVal)
448
0
        retVal = 2;
449
0
    Msgid = retVal;
450
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_16BIT_IDS))
451
0
        retVal &= 0x7fff; /* mask to 15 bits */
452
0
    else
453
0
        retVal &= 0x7fffffff; /* mask to 31 bits */
454
455
0
    if (!retVal) {
456
0
        Msgid = retVal = 2;
457
0
    }
458
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_MESSAGEID);
459
0
    return retVal;
460
0
}
461
462
long
463
snmp_get_next_sessid(void)
464
0
{
465
0
    long            retVal;
466
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSIONID);
467
0
    retVal = 1 + Sessid;        /*MTCRITICAL_RESOURCE */
468
0
    if (!retVal)
469
0
        retVal = 2;
470
0
    Sessid = retVal;
471
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_16BIT_IDS))
472
0
        retVal &= 0x7fff; /* mask to 15 bits */
473
0
    else
474
0
        retVal &= 0x7fffffff; /* mask to 31 bits */
475
476
0
    if (!retVal) {
477
0
        Sessid = retVal = 2;
478
0
    }
479
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSIONID);
480
0
    return retVal;
481
0
}
482
483
long
484
snmp_get_next_transid(void)
485
0
{
486
0
    long            retVal;
487
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_TRANSID);
488
0
    retVal = 1 + Transid;       /*MTCRITICAL_RESOURCE */
489
0
    if (!retVal)
490
0
        retVal = 2;
491
0
    Transid = retVal;
492
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_16BIT_IDS))
493
0
        retVal &= 0x7fff; /* mask to 15 bits */
494
0
    else
495
0
        retVal &= 0x7fffffff; /* mask to 31 bits */
496
497
0
    if (!retVal) {
498
0
        Transid = retVal = 2;
499
0
    }
500
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_TRANSID);
501
0
    return retVal;
502
0
}
503
504
void
505
snmp_perror(const char *prog_string)
506
0
{
507
0
    const char     *str;
508
0
    int             xerr;
509
0
    xerr = snmp_errno;          /*MTCRITICAL_RESOURCE */
510
0
    str = snmp_api_errstring(xerr);
511
0
    snmp_log(LOG_ERR, "%s: %s\n", prog_string, str);
512
0
}
513
514
void
515
snmp_set_detail(const char *detail_string)
516
0
{
517
0
    if (detail_string != NULL) {
518
0
        strlcpy(snmp_detail, detail_string, sizeof(snmp_detail));
519
0
        snmp_detail_f = 1;
520
0
    }
521
0
}
522
523
/*
524
 * returns pointer to static data 
525
 */
526
/*
527
 * results not guaranteed in multi-threaded use 
528
 */
529
const char     *
530
snmp_api_errstring(int snmp_errnumber)
531
0
{
532
0
    const char     *msg = "";
533
0
    static char     msg_buf[SPRINT_MAX_LEN];
534
535
0
    if (snmp_errnumber >= SNMPERR_MAX && snmp_errnumber <= SNMPERR_GENERR) {
536
0
        msg = api_errors[-snmp_errnumber];
537
0
    } else if (snmp_errnumber != SNMPERR_SUCCESS) {
538
0
        msg = NULL;
539
0
    }
540
0
    if (!msg) {
541
0
  snprintf(msg_buf, sizeof(msg_buf), "Unknown error: %d", snmp_errnumber);
542
0
        msg_buf[sizeof(msg_buf)-1] = '\0';
543
0
    } else if (snmp_detail_f) {
544
0
        snprintf(msg_buf, sizeof(msg_buf), "%s (%s)", msg, snmp_detail);
545
0
        msg_buf[sizeof(msg_buf)-1] = '\0';
546
0
        snmp_detail_f = 0;
547
0
    } else {
548
0
        strlcpy(msg_buf, msg, sizeof(msg_buf));
549
0
    }
550
551
0
    return (msg_buf);
552
0
}
553
554
/*
555
 * snmp_error - return error data
556
 * Inputs :  address of errno, address of snmp_errno, address of string
557
 * Caller must free the string returned after use.
558
 */
559
void
560
snmp_error(netsnmp_session * psess,
561
           int *p_errno, int *p_snmp_errno, char **p_str)
562
0
{
563
0
    char            buf[SPRINT_MAX_LEN];
564
0
    int             snmp_errnumber;
565
566
0
    if (p_errno)
567
0
        *p_errno = psess->s_errno;
568
0
    if (p_snmp_errno)
569
0
        *p_snmp_errno = psess->s_snmp_errno;
570
0
    if (p_str == NULL)
571
0
        return;
572
573
0
    strcpy(buf, "");
574
0
    snmp_errnumber = psess->s_snmp_errno;
575
0
    if (snmp_errnumber >= SNMPERR_MAX && snmp_errnumber <= SNMPERR_GENERR) {
576
0
  if (snmp_detail_f) {
577
0
            snprintf(buf, sizeof(buf), "%s (%s)", api_errors[-snmp_errnumber],
578
0
        snmp_detail);
579
0
            buf[sizeof(buf)-1] = '\0';
580
0
      snmp_detail_f = 0;
581
0
  }
582
0
  else
583
0
      strlcpy(buf, api_errors[-snmp_errnumber], sizeof(buf));
584
0
    } else {
585
0
        if (snmp_errnumber) {
586
0
            snprintf(buf, sizeof(buf), "Unknown Error %d", snmp_errnumber);
587
0
            buf[sizeof(buf)-1] = '\0';
588
0
        }
589
0
    }
590
591
    /*
592
     * append a useful system errno interpretation. 
593
     */
594
0
    if (psess->s_errno) {
595
0
        const char* error = strerror(psess->s_errno);
596
0
        if(error == NULL)
597
0
            error = "Unknown Error";
598
0
        snprintf (&buf[strlen(buf)], sizeof(buf)-strlen(buf),
599
0
                 " (%s)", error);
600
0
    }
601
0
    buf[sizeof(buf)-1] = '\0';
602
0
    *p_str = strdup(buf);
603
0
}
604
605
/*
606
 * snmp_sess_error - same as snmp_error for single session API use.
607
 */
608
void
609
snmp_sess_error(struct session_list *slp, int *p_errno, int *p_snmp_errno,
610
                char **p_str)
611
0
{
612
0
    if ((slp) && (slp->session))
613
0
        snmp_error(slp->session, p_errno, p_snmp_errno, p_str);
614
0
}
615
616
/*
617
 * netsnmp_sess_log_error(): print a error stored in a session pointer 
618
 */
619
void
620
netsnmp_sess_log_error(int priority,
621
                       const char *prog_string, netsnmp_session * ss)
622
0
{
623
0
    char           *err;
624
0
    snmp_error(ss, NULL, NULL, &err);
625
0
    snmp_log(priority, "%s: %s\n", prog_string, err);
626
0
    SNMP_FREE(err);
627
0
}
628
629
/*
630
 * snmp_sess_perror(): print a error stored in a session pointer 
631
 */
632
void
633
snmp_sess_perror(const char *prog_string, netsnmp_session * ss)
634
0
{
635
0
    netsnmp_sess_log_error(LOG_ERR, prog_string, ss);
636
0
}
637
638
long int netsnmp_random(void)
639
0
{
640
0
#if defined(HAVE_RANDOM)
641
    /*
642
     * The function random() is a more sophisticated random number generator
643
     * which uses nonlinear feedback and an internal table that is 124 bytes
644
     * (992 bits) long. The function returns random values that are 32 bits in
645
     * length. All of the bits generated by random() are usable. The random()
646
     * function is adequate for simulations and games, but should not be used
647
     * for security related applications such as picking cryptographic keys or
648
     * simulating one-time pads.
649
     */
650
0
    return random();
651
#elif defined(HAVE_LRAND48)
652
    /*
653
     * As with random(), lrand48() provides excellent random numbers for
654
     * simulations and games, but should not be used for security-related
655
     * applications such as picking cryptographic keys or simulating one-time
656
     * pads; linear congruential algorithms are too easy to break.
657
     */
658
    return lrand48();
659
#elif defined(HAVE_RAND)
660
    /*
661
     * The original UNIX random number generator, rand(), is not a very good
662
     * random number generator. It uses a 32-bit seed and maintains a 32-bit
663
     * internal state.
664
     */
665
    return rand();
666
#else
667
#error "Neither random(), nor lrand48() nor rand() are available"
668
#endif
669
0
}
670
671
void netsnmp_srandom(unsigned int seed)
672
0
{
673
0
#if defined(HAVE_SRANDOM)
674
0
    srandom(seed);
675
#elif defined(HAVE_SRAND48)
676
    srand48(seed);
677
#elif defined(HAVE_SRAND)
678
    srand(seed);
679
#else
680
#error "Neither srandom(), nor srand48() nor srand() are available"
681
#endif
682
0
}
683
684
/*
685
 * Primordial SNMP library initialization.
686
 * Initializes mutex locks.
687
 * Invokes minimum required initialization for displaying MIB objects.
688
 * Gets initial request ID for all transactions,
689
 * and finds which port SNMP over UDP uses.
690
 * SNMP over AppleTalk is not currently supported.
691
 *
692
 * Warning: no debug messages here.
693
 */
694
static char _init_snmp_init_done = 0;
695
static void
696
_init_snmp(void)
697
0
{
698
699
0
    struct timeval  tv;
700
0
    long            tmpReqid, tmpMsgid;
701
702
0
    if (_init_snmp_init_done)
703
0
        return;
704
0
    _init_snmp_init_done = 1;
705
0
    Reqid = 1;
706
707
0
    snmp_res_init();            /* initialize the mt locking structures */
708
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
709
0
    netsnmp_init_mib_internals();
710
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
711
0
    netsnmp_tdomain_init();
712
713
0
    gettimeofday(&tv, (struct timezone *) 0);
714
    /*
715
     * Now = tv;
716
     */
717
718
    /*
719
     * get pseudo-random values for request ID and message ID 
720
     */
721
0
    netsnmp_srandom((unsigned)(tv.tv_sec ^ tv.tv_usec));
722
0
    tmpReqid = netsnmp_random();
723
0
    tmpMsgid = netsnmp_random();
724
725
    /*
726
     * don't allow zero value to repeat init 
727
     */
728
0
    if (tmpReqid == 0)
729
0
        tmpReqid = 1;
730
0
    if (tmpMsgid == 0)
731
0
        tmpMsgid = 1;
732
0
    Reqid = tmpReqid;
733
0
    Msgid = tmpMsgid;
734
735
0
    netsnmp_register_default_domain("snmp", "udp udp6");
736
0
    netsnmp_register_default_domain("snmptrap", "udp udp6");
737
738
0
    netsnmp_register_default_target("snmp", "udp", ":161");
739
0
    netsnmp_register_default_target("snmp", "tcp", ":161");
740
0
    netsnmp_register_default_target("snmp", "udp6", ":161");
741
0
    netsnmp_register_default_target("snmp", "tcp6", ":161");
742
0
    netsnmp_register_default_target("snmp", "dtlsudp", ":10161");
743
0
    netsnmp_register_default_target("snmp", "tlstcp", ":10161");
744
0
    netsnmp_register_default_target("snmp", "ipx", "/36879");
745
746
0
    netsnmp_register_default_target("snmptrap", "udp", ":162");
747
0
    netsnmp_register_default_target("snmptrap", "tcp", ":162");
748
0
    netsnmp_register_default_target("snmptrap", "udp6", ":162");
749
0
    netsnmp_register_default_target("snmptrap", "tcp6", ":162");
750
0
    netsnmp_register_default_target("snmptrap", "dtlsudp", ":10162");
751
0
    netsnmp_register_default_target("snmptrap", "tlstcp", ":10162");
752
0
    netsnmp_register_default_target("snmptrap", "ipx", "/36880");
753
754
0
    netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, 
755
0
                       NETSNMP_DS_LIB_HEX_OUTPUT_LENGTH, 16);
756
0
    netsnmp_ds_set_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_RETRIES,
757
0
                       DEFAULT_RETRIES);
758
0
    netsnmp_ds_set_boolean(NETSNMP_DS_LIBRARY_ID, 
759
0
         NETSNMP_DS_LIB_MIB_ERRORS, 1);
760
761
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
762
0
    netsnmp_ds_set_boolean(NETSNMP_DS_LIBRARY_ID, 
763
0
         NETSNMP_DS_LIB_REVERSE_ENCODE,
764
0
         NETSNMP_DEFAULT_ASNENCODING_DIRECTION);
765
0
#endif
766
0
}
767
768
/*
769
 * Initializes the session structure.
770
 * May perform one time minimal library initialization.
771
 * No MIB file processing is done via this call.
772
 */
773
void
774
snmp_sess_init(netsnmp_session * session)
775
0
{
776
0
    _init_snmp();
777
778
    /*
779
     * initialize session to default values 
780
     */
781
782
0
    memset(session, 0, sizeof(netsnmp_session));
783
0
    session->timeout = SNMP_DEFAULT_TIMEOUT;
784
0
    session->retries = SNMP_DEFAULT_RETRIES;
785
0
    session->version = SNMP_DEFAULT_VERSION;
786
0
    session->securityModel = SNMP_DEFAULT_SECMODEL;
787
0
    session->rcvMsgMaxSize = netsnmp_max_send_msg_size();
788
0
    session->sndMsgMaxSize = netsnmp_max_send_msg_size();
789
0
    session->flags |= SNMP_FLAGS_DONT_PROBE;
790
0
}
791
792
793
static void
794
register_default_handlers(void)
795
0
{
796
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "dumpPacket",
797
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DUMP_PACKET);
798
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "reverseEncodeBER",
799
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_REVERSE_ENCODE);
800
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "defaultPort",
801
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DEFAULT_PORT);
802
0
#ifndef NETSNMP_FEATURE_REMOVE_RUNTIME_DISABLE_VERSION
803
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "disableSNMPv3",
804
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DISABLE_V3);
805
0
#endif /* NETSNMP_FEATURE_REMOVE_RUNTIME_DISABLE_VERSION */
806
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
807
0
#ifndef NETSNMP_FEATURE_REMOVE_RUNTIME_DISABLE_VERSION
808
0
#if !defined(NETSNMP_DISABLE_SNMPV1)
809
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "disableSNMPv1",
810
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DISABLE_V1);
811
0
#endif
812
0
#if !defined(NETSNMP_DISABLE_SNMPV2C)
813
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "disableSNMPv2c",
814
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DISABLE_V2c);
815
0
#endif
816
0
#endif /* NETSNMP_FEATURE_REMOVE_RUNTIME_DISABLE_VERSION */
817
0
    netsnmp_ds_register_config(ASN_OCTET_STR, "snmp", "defCommunity",
818
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_COMMUNITY);
819
0
#endif /* !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C) */
820
0
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "noTokenWarnings",
821
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NO_TOKEN_WARNINGS);
822
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "noRangeCheck",
823
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DONT_CHECK_RANGE);
824
0
    netsnmp_ds_register_premib(ASN_OCTET_STR, "snmp", "persistentDir",
825
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_PERSISTENT_DIR);
826
0
    netsnmp_ds_register_config(ASN_OCTET_STR, "snmp", "tempFilePattern",
827
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_TEMP_FILE_PATTERN);
828
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "noDisplayHint",
829
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_NO_DISPLAY_HINT);
830
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "16bitIDs",
831
0
                NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_16BIT_IDS);
832
0
    netsnmp_ds_register_premib(ASN_OCTET_STR, "snmp", "clientaddr",
833
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_CLIENT_ADDR);
834
0
    netsnmp_ds_register_premib(ASN_BOOLEAN, "snmp", "clientaddrUsesPort",
835
0
                      NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_CLIENT_ADDR_USES_PORT);
836
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "serverSendBuf",
837
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_SERVERSENDBUF);
838
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "serverRecvBuf",
839
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_SERVERRECVBUF);
840
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "clientSendBuf",
841
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_CLIENTSENDBUF);
842
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "clientRecvBuf",
843
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_CLIENTRECVBUF);
844
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "sendMessageMaxSize",
845
0
                               NETSNMP_DS_LIBRARY_ID,
846
0
                               NETSNMP_DS_LIB_MSG_SEND_MAX);
847
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "noPersistentLoad",
848
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DISABLE_PERSISTENT_LOAD);
849
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "noPersistentSave",
850
0
          NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_DISABLE_PERSISTENT_SAVE);
851
0
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp",
852
0
                               "noContextEngineIDDiscovery",
853
0
                               NETSNMP_DS_LIBRARY_ID,
854
0
                               NETSNMP_DS_LIB_NO_DISCOVERY);
855
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "timeout",
856
0
                   NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_TIMEOUT);
857
0
    netsnmp_ds_register_config(ASN_INTEGER, "snmp", "retries",
858
0
                   NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_RETRIES);
859
0
    netsnmp_ds_register_config(ASN_OCTET_STR, "snmp", "outputPrecision",
860
0
                               NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_OUTPUT_PRECISION);
861
862
863
0
    netsnmp_register_service_handlers();
864
0
}
865
866
static int init_snmp_init_done = 0; /* To prevent double init's. */
867
/**
868
 * Calls the functions to do config file loading and  mib module parsing
869
 * in the correct order.
870
 *
871
 * @param type label for the config file "type"
872
 *
873
 * @return void
874
 *
875
 * @see init_agent
876
 */
877
void
878
init_snmp(const char *type)
879
0
{
880
0
    if (init_snmp_init_done) {
881
0
        return;
882
0
    }
883
884
0
    init_snmp_init_done = 1;
885
886
    /*
887
     * make the type available everywhere else 
888
     */
889
0
    if (type && !netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, 
890
0
               NETSNMP_DS_LIB_APPTYPE)) {
891
0
        netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID, 
892
0
            NETSNMP_DS_LIB_APPTYPE, type);
893
0
    }
894
895
0
    _init_snmp();
896
897
    /*
898
     * set our current locale properly to initialize isprint() type functions 
899
     *
900
     * Do not use setlocale on qnx, it is buggy 
901
     * https://www.qnx.com/developers/docs/7.1/#com.qnx.doc.neutrino.lib_ref/topic/s/setlocale.html
902
     */
903
0
#if defined(HAVE_SETLOCALE) && !defined(__QNX__)
904
0
    setlocale(LC_CTYPE, "");
905
0
#endif
906
907
0
    snmp_debug_init();    /* should be done first, to turn on debugging ASAP */
908
0
    netsnmp_container_init_list();
909
0
    init_callbacks();
910
0
    init_snmp_logging();
911
0
    snmp_init_statistics();
912
0
    register_mib_handlers();
913
0
    register_default_handlers();
914
0
    init_snmp_transport();
915
0
    init_snmpv3(type);
916
0
    init_snmp_alarm();
917
0
    init_snmp_enum(type);
918
0
    init_vacm();
919
0
#if defined(NETSNMP_USE_OPENSSL) && defined(HAVE_LIBSSL) && NETSNMP_TRANSPORT_TLSBASE_DOMAIN
920
0
    netsnmp_certs_init();
921
0
#endif
922
#ifdef DNSSEC_LOCAL_VALIDATION
923
    netsnmp_ds_register_config(ASN_BOOLEAN, "snmp", "dnssecWarnOnly",
924
                               NETSNMP_DS_LIBRARY_ID,
925
                               NETSNMP_DS_LIB_DNSSEC_WARN_ONLY);
926
#endif
927
928
0
    read_premib_configs();
929
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
930
0
    netsnmp_init_mib();
931
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
932
933
0
    read_configs();
934
935
0
}                               /* end init_snmp() */
936
937
/**
938
 * set a flag indicating that the persistent store needs to be saved.
939
 */
940
void
941
snmp_store_needed(const char *type)
942
0
{
943
0
    DEBUGMSGTL(("snmp_store", "setting needed flag...\n"));
944
0
    _snmp_store_needed = 1;
945
0
}
946
947
void
948
snmp_store_if_needed(void)
949
0
{
950
0
    if (0 == _snmp_store_needed)
951
0
        return;
952
    
953
0
    DEBUGMSGTL(("snmp_store", "store needed...\n"));
954
0
    snmp_store(netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, 
955
0
                                     NETSNMP_DS_LIB_APPTYPE));
956
0
    _snmp_store_needed = 0;
957
0
}
958
959
void
960
snmp_store(const char *type)
961
0
{
962
0
    DEBUGMSGTL(("snmp_store", "storing stuff...\n"));
963
0
    snmp_save_persistent(type);
964
0
    snmp_call_callbacks(SNMP_CALLBACK_LIBRARY, SNMP_CALLBACK_STORE_DATA, NULL);
965
0
    snmp_clean_persistent(type);
966
0
}
967
968
969
/**
970
 * Shuts down the application, saving any needed persistent storage,
971
 * and appropriate clean up.
972
 * 
973
 * @param type Label for the config file "type" used
974
 *
975
 * @return void
976
 */
977
void
978
snmp_shutdown(const char *type)
979
0
{
980
0
    snmp_store(type);
981
0
    snmp_call_callbacks(SNMP_CALLBACK_LIBRARY, SNMP_CALLBACK_SHUTDOWN, NULL);
982
0
    shutdown_snmp_logging();
983
0
    snmp_alarm_unregister_all();
984
0
    snmp_close_sessions();
985
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
986
0
    shutdown_mib();
987
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
988
0
#if defined(NETSNMP_USE_OPENSSL) && defined(HAVE_LIBSSL) && NETSNMP_TRANSPORT_TLSBASE_DOMAIN
989
0
    netsnmp_certs_shutdown();
990
0
#endif
991
0
#if !defined(NETSNMP_FEATURE_REMOVE_FILTER_SOURCE)
992
0
    netsnmp_transport_filter_cleanup();
993
0
#endif
994
0
    unregister_all_config_handlers();
995
0
    netsnmp_container_free_list();
996
0
    clear_sec_mod();
997
0
    clear_snmp_enum();
998
0
    netsnmp_clear_tdomain_list();
999
0
    clear_callback();
1000
0
    netsnmp_ds_shutdown();
1001
0
    netsnmp_clear_default_target();
1002
0
    netsnmp_clear_default_domain();
1003
0
    shutdown_secmod();
1004
0
    shutdown_snmp_transport();
1005
0
    shutdown_data_list();
1006
0
    snmp_debug_shutdown();    /* should be done last */
1007
1008
0
    init_snmp_init_done  = 0;
1009
0
    _init_snmp_init_done = 0;
1010
0
}
1011
1012
/*
1013
 * inserts session into session list
1014
 */
1015
void  snmp_session_insert(struct session_list *slp)
1016
0
{
1017
0
    if (NULL == slp)
1018
0
        return;
1019
1020
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
1021
0
    slp->next = Sessions;
1022
0
    Sessions = slp;
1023
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
1024
0
}
1025
1026
/*
1027
 * Sets up the session with the snmp_session information provided by the user.
1028
 * Then opens and binds the necessary low-level transport.  A handle to the
1029
 * created session is returned (this is NOT the same as the pointer passed to
1030
 * snmp_open()).  On any error, NULL is returned and snmp_errno is set to the
1031
 * appropriate error code.
1032
 */
1033
netsnmp_session *
1034
snmp_open(netsnmp_session *session)
1035
0
{
1036
0
    struct session_list *slp;
1037
1038
0
    slp = snmp_sess_open(session);
1039
0
    if (!slp) {
1040
0
        return NULL;
1041
0
    }
1042
1043
0
    slp->session->flags &= ~SNMP_FLAGS_SESSION_USER;
1044
1045
0
    snmp_session_insert(slp);
1046
1047
0
    return (slp->session);
1048
0
}
1049
1050
/*
1051
 * extended open 
1052
 */
1053
netsnmp_feature_child_of(snmp_open_ex, netsnmp_unused);
1054
#ifndef NETSNMP_FEATURE_REMOVE_SNMP_OPEN_EX
1055
netsnmp_session *
1056
snmp_open_ex(netsnmp_session *session,
1057
             int (*fpre_parse)  (netsnmp_session *, netsnmp_transport *,
1058
                                void *, int),
1059
             int (*fparse)  (netsnmp_session *, netsnmp_pdu *, u_char *,
1060
         size_t),
1061
       int (*fpost_parse) (netsnmp_session *, netsnmp_pdu *, int),
1062
1063
             int (*fbuild)  (netsnmp_session *, netsnmp_pdu *, u_char *,
1064
         size_t *),
1065
       int (*frbuild) (netsnmp_session *, netsnmp_pdu *,
1066
         u_char **, size_t *, size_t *),
1067
             int (*fcheck)  (u_char *, size_t)
1068
       )
1069
0
{
1070
0
    struct session_list *slp;
1071
1072
0
    slp = snmp_sess_open(session);
1073
0
    if (!slp) {
1074
0
        return NULL;
1075
0
    }
1076
0
    slp->internal->hook_pre = fpre_parse;
1077
0
    slp->internal->hook_parse = fparse;
1078
0
    slp->internal->hook_post = fpost_parse;
1079
0
    slp->internal->hook_build = fbuild;
1080
0
    slp->internal->hook_realloc_build = frbuild;
1081
0
    slp->internal->check_packet = fcheck;
1082
1083
0
    slp->session->flags &= ~SNMP_FLAGS_SESSION_USER;
1084
1085
0
    snmp_session_insert(slp);
1086
1087
0
    return (slp->session);
1088
0
}
1089
#endif /* NETSNMP_FEATURE_REMOVE_SNMP_OPEN_EX */
1090
1091
static struct session_list *
1092
_sess_copy(netsnmp_session * in_session)
1093
0
{
1094
0
    struct session_list *slp;
1095
0
    struct snmp_internal_session *isp;
1096
0
    netsnmp_session *session;
1097
0
    struct snmp_secmod_def *sptr;
1098
0
    char           *cp;
1099
0
    u_char         *ucp;
1100
1101
0
    in_session->s_snmp_errno = 0;
1102
0
    in_session->s_errno = 0;
1103
1104
    /*
1105
     * Copy session structure and link into list 
1106
     */
1107
0
    slp = calloc(1, sizeof(struct session_list));
1108
0
    if (slp == NULL) {
1109
0
        in_session->s_snmp_errno = SNMPERR_MALLOC;
1110
0
        return (NULL);
1111
0
    }
1112
1113
0
    slp->transport = NULL;
1114
1115
0
    isp = calloc(1, sizeof(struct snmp_internal_session));
1116
1117
0
    if (isp == NULL) {
1118
0
        snmp_sess_close(slp);
1119
0
        in_session->s_snmp_errno = SNMPERR_MALLOC;
1120
0
        return (NULL);
1121
0
    }
1122
1123
0
    slp->internal = isp;
1124
0
    slp->session = netsnmp_memdup(in_session, sizeof(netsnmp_session));
1125
0
    if (slp->session == NULL) {
1126
0
        snmp_sess_close(slp);
1127
0
        in_session->s_snmp_errno = SNMPERR_MALLOC;
1128
0
        return (NULL);
1129
0
    }
1130
0
    session = slp->session;
1131
1132
    /*
1133
     * zero out pointers so if we have to free the session we wont free mem
1134
     * owned by in_session 
1135
     */
1136
0
    session->localname = NULL;
1137
0
    session->peername = NULL;
1138
0
    session->community = NULL;
1139
0
    session->contextEngineID = NULL;
1140
0
    session->contextName = NULL;
1141
0
    session->securityEngineID = NULL;
1142
0
    session->securityName = NULL;
1143
0
    session->securityAuthProto = NULL;
1144
0
    session->securityAuthLocalKey = NULL;
1145
0
    session->securityPrivProto = NULL;
1146
0
    session->securityPrivLocalKey = NULL;
1147
0
    session->sessUser = NULL;
1148
    /*
1149
     * session now points to the new structure that still contains pointers to
1150
     * data allocated elsewhere.  Some of this data is copied to space malloc'd
1151
     * here, and the pointer replaced with the new one.
1152
     */
1153
1154
0
    if (in_session->peername != NULL) {
1155
0
        session->peername =
1156
0
            netsnmp_strdup_and_null((u_char*)in_session->peername,
1157
0
                                    strlen(in_session->peername));
1158
0
        if (session->peername == NULL) {
1159
0
            snmp_sess_close(slp);
1160
0
            in_session->s_snmp_errno = SNMPERR_MALLOC;
1161
0
            return (NULL);
1162
0
        }
1163
0
    }
1164
1165
    /*
1166
     * Fill in defaults if necessary 
1167
     */
1168
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
1169
0
    if (in_session->community_len != SNMP_DEFAULT_COMMUNITY_LEN) {
1170
0
        ucp = netsnmp_memdup(in_session->community, in_session->community_len);
1171
0
    } else {
1172
0
        if ((cp = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, 
1173
0
          NETSNMP_DS_LIB_COMMUNITY)) != NULL) {
1174
0
            session->community_len = strlen(cp);
1175
0
            ucp = (u_char *) strdup(cp);
1176
0
        } else {
1177
#ifdef NETSNMP_NO_ZEROLENGTH_COMMUNITY
1178
            session->community_len = strlen(DEFAULT_COMMUNITY);
1179
            ucp = netsnmp_memdup(DEFAULT_COMMUNITY, session->community_len);
1180
#else
1181
0
            ucp = (u_char *) strdup("");
1182
0
#endif
1183
0
        }
1184
0
    }
1185
1186
0
    if (ucp == NULL) {
1187
0
        snmp_sess_close(slp);
1188
0
        in_session->s_snmp_errno = SNMPERR_MALLOC;
1189
0
        return (NULL);
1190
0
    }
1191
0
    session->community = ucp;   /* replace pointer with pointer to new data */
1192
0
#endif
1193
1194
0
    if (session->securityLevel <= 0) {
1195
0
        session->securityLevel =
1196
0
            netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_SECLEVEL);
1197
0
    }
1198
1199
0
    if (in_session->securityEngineIDLen > 0) {
1200
0
        ucp = netsnmp_memdup(in_session->securityEngineID,
1201
0
                             in_session->securityEngineIDLen);
1202
0
        if (ucp == NULL) {
1203
0
            snmp_sess_close(slp);
1204
0
            in_session->s_snmp_errno = SNMPERR_MALLOC;
1205
0
            return (NULL);
1206
0
        }
1207
0
        session->securityEngineID = ucp;
1208
1209
0
    }
1210
1211
0
    if (in_session->contextEngineIDLen > 0) {
1212
0
        ucp = netsnmp_memdup(in_session->contextEngineID,
1213
0
                             in_session->contextEngineIDLen);
1214
0
        if (ucp == NULL) {
1215
0
            snmp_sess_close(slp);
1216
0
            in_session->s_snmp_errno = SNMPERR_MALLOC;
1217
0
            return (NULL);
1218
0
        }
1219
0
        session->contextEngineID = ucp;
1220
0
    } else if (in_session->securityEngineIDLen > 0) {
1221
        /*
1222
         * default contextEngineID to securityEngineIDLen if defined 
1223
         */
1224
0
        ucp = netsnmp_memdup(in_session->securityEngineID,
1225
0
                             in_session->securityEngineIDLen);
1226
0
        if (ucp == NULL) {
1227
0
            snmp_sess_close(slp);
1228
0
            in_session->s_snmp_errno = SNMPERR_MALLOC;
1229
0
            return (NULL);
1230
0
        }
1231
0
        session->contextEngineID = ucp;
1232
0
        session->contextEngineIDLen = in_session->securityEngineIDLen;
1233
0
    }
1234
1235
0
    if (in_session->contextName) {
1236
0
        session->contextName = strdup(in_session->contextName);
1237
0
        if (session->contextName == NULL) {
1238
0
            snmp_sess_close(slp);
1239
0
            return (NULL);
1240
0
        }
1241
0
        session->contextNameLen = in_session->contextNameLen;
1242
0
    } else {
1243
0
        if ((cp = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID,
1244
0
                                        NETSNMP_DS_LIB_CONTEXT)) != NULL)
1245
0
            cp = strdup(cp);
1246
0
        else
1247
0
            cp = strdup(SNMP_DEFAULT_CONTEXT);
1248
0
        if (cp == NULL) {
1249
0
            snmp_sess_close(slp);
1250
0
            return (NULL);
1251
0
        }
1252
0
        session->contextName = cp;
1253
0
        session->contextNameLen = strlen(cp);
1254
0
    }
1255
1256
0
    if (in_session->securityName) {
1257
0
        session->securityName = strdup(in_session->securityName);
1258
0
        if (session->securityName == NULL) {
1259
0
            snmp_sess_close(slp);
1260
0
            return (NULL);
1261
0
        }
1262
0
    } else if ((cp = netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, 
1263
0
             NETSNMP_DS_LIB_SECNAME)) != NULL) {
1264
0
        cp = strdup(cp);
1265
0
        if (cp == NULL) {
1266
0
            snmp_sess_close(slp);
1267
0
            return (NULL);
1268
0
        }
1269
0
        session->securityName = cp;
1270
0
        session->securityNameLen = strlen(cp);
1271
0
    }
1272
1273
0
    if (in_session->securityAuthLocalKey) {
1274
0
            session->securityAuthLocalKey =
1275
0
                netsnmp_memdup(in_session->securityAuthLocalKey,
1276
0
                               in_session->securityAuthLocalKeyLen);
1277
0
            session->securityAuthLocalKeyLen =
1278
0
                in_session->securityAuthLocalKeyLen;
1279
0
    }
1280
1281
0
    if (in_session->securityPrivLocalKey) {
1282
0
            session->securityPrivLocalKey =
1283
0
                netsnmp_memdup(in_session->securityPrivLocalKey,
1284
0
                               in_session->securityPrivLocalKeyLen);
1285
0
            session->securityPrivLocalKeyLen =
1286
0
                in_session->securityPrivLocalKeyLen;
1287
0
    }
1288
1289
0
    if (session->retries == SNMP_DEFAULT_RETRIES) {
1290
0
        int retry = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID,
1291
0
                                       NETSNMP_DS_LIB_RETRIES);
1292
0
        if (retry < 0)
1293
0
            session->retries = DEFAULT_RETRIES;
1294
0
        else
1295
0
            session->retries = retry;
1296
0
    }
1297
0
    if (session->timeout == SNMP_DEFAULT_TIMEOUT) {
1298
0
        int timeout = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID,
1299
0
                                         NETSNMP_DS_LIB_TIMEOUT);
1300
0
        if (timeout <= 0)
1301
0
            session->timeout = DEFAULT_TIMEOUT;
1302
0
        else
1303
0
            session->timeout = timeout * 1000L * 1000L;
1304
0
    }
1305
0
    session->sessid = snmp_get_next_sessid();
1306
1307
0
    snmp_call_callbacks(SNMP_CALLBACK_LIBRARY, SNMP_CALLBACK_SESSION_INIT,
1308
0
                        session);
1309
1310
0
    if ((sptr = find_sec_mod(session->securityModel)) != NULL) {
1311
        /*
1312
         * security module specific copying 
1313
         */
1314
0
        if (sptr->session_setup) {
1315
0
            int ret = (*sptr->session_setup) (in_session, session);
1316
0
            if (ret != SNMPERR_SUCCESS) {
1317
0
                snmp_sess_close(slp);
1318
0
                return NULL;
1319
0
            }
1320
0
        }
1321
1322
        /*
1323
         * security module specific opening
1324
         */
1325
0
        if (sptr->session_open) {
1326
0
            int ret = (*sptr->session_open) (session);
1327
0
            if (ret != SNMPERR_SUCCESS) {
1328
0
                snmp_sess_close(slp);
1329
0
                return NULL;
1330
0
            }
1331
0
        }
1332
0
    }
1333
1334
0
#ifndef NETSNMP_NO_WRITE_SUPPORT
1335
0
    if (in_session->sessUser) {
1336
0
        struct usmUser *user;
1337
1338
0
        user = calloc(1, sizeof(struct usmUser));
1339
0
        if (user == NULL) {
1340
0
            snmp_sess_close(slp);
1341
0
            return NULL;
1342
0
        }
1343
0
        session->sessUser = usm_cloneFrom_user(in_session->sessUser, user);
1344
0
    }
1345
0
#endif /* NETSNMP_NO_WRITE_SUPPORT */
1346
1347
    /* Anything below this point should only be done if the transport
1348
       had no say in the matter */
1349
0
    if (session->securityLevel == 0)
1350
0
        session->securityLevel = SNMP_SEC_LEVEL_NOAUTH;
1351
1352
0
    return (slp);
1353
0
}
1354
1355
static struct session_list *
1356
snmp_sess_copy(netsnmp_session * pss)
1357
0
{
1358
0
    struct session_list *psl;
1359
0
    psl = _sess_copy(pss);
1360
0
    if (!psl) {
1361
0
        if (!pss->s_snmp_errno) {
1362
0
            pss->s_snmp_errno = SNMPERR_GENERR;
1363
0
        }
1364
0
        SET_SNMP_ERROR(pss->s_snmp_errno);
1365
0
    }
1366
0
    return psl;
1367
0
}
1368
1369
/**
1370
 * Allocate a PDU for probing for the engineID
1371
 *
1372
 * The returned PDU can be used to probe synchronously or asynchronously.
1373
 * SNMP_FLAGS_DONT_PROBE must be set to disable internal synchronous probing,
1374
 * when response is received and all callbacks have executed the rest of PDUs
1375
 * can be sent as usual.
1376
 */
1377
netsnmp_pdu *snmpv3_probe_usm_pdu_create(void)
1378
0
{
1379
0
        netsnmp_pdu     *pdu;
1380
1381
0
        pdu = snmp_pdu_create(SNMP_MSG_GET);
1382
0
        if (!pdu)
1383
0
                return NULL;
1384
1385
0
        pdu->version = SNMP_VERSION_3;
1386
0
        pdu->securityName = strdup("");
1387
0
        pdu->securityNameLen = 0;
1388
0
        pdu->securityLevel = SNMP_SEC_LEVEL_NOAUTH;
1389
0
        pdu->securityModel = SNMP_SEC_MODEL_USM;
1390
1391
0
        return pdu;
1392
0
}
1393
1394
#ifndef NETSNMP_FEATURE_REMOVE_SNMPV3_PROBE_CONTEXTENGINEID_RFC5343
1395
/**
1396
 * probe for engineID using RFC 5343 probing mechanisms
1397
 *
1398
 * Designed to be a callback for within a security model's probe_engineid hook.
1399
 * Since it's likely multiple security models won't have engineIDs to
1400
 * probe for then this function is a callback likely to be used by
1401
 * multiple future security models.  E.G. both SSH and DTLS.
1402
 */
1403
int
1404
snmpv3_probe_contextEngineID_rfc5343(struct session_list *slp,
1405
                                     netsnmp_session *session)
1406
0
{
1407
0
    netsnmp_pdu    *pdu = NULL, *response = NULL;
1408
0
    static const oid snmpEngineIDoid[]   = { 1,3,6,1,6,3,10,2,1,1,0};
1409
0
    static size_t   snmpEngineIDoid_len = 11;
1410
1411
0
    static char     probeEngineID[] = { (char)0x80, 0, 0, 0, 6 };
1412
0
    static size_t   probeEngineID_len = sizeof(probeEngineID);
1413
    
1414
0
    int status;
1415
1416
0
    pdu = snmp_pdu_create(SNMP_MSG_GET);
1417
0
    if (!pdu)
1418
0
        return SNMP_ERR_GENERR;
1419
0
    pdu->version = SNMP_VERSION_3;
1420
    /* don't require a securityName */
1421
0
    if (session->securityName) {
1422
0
        pdu->securityName = strdup(session->securityName);
1423
0
        pdu->securityNameLen = strlen(pdu->securityName);
1424
0
    }
1425
0
    pdu->securityLevel = SNMP_SEC_LEVEL_NOAUTH;
1426
0
    pdu->securityModel = session->securityModel;
1427
0
    pdu->contextEngineID = netsnmp_memdup(probeEngineID, probeEngineID_len);
1428
0
    if (!pdu->contextEngineID) {
1429
0
        snmp_log(LOG_ERR, "failed to clone memory for rfc5343 probe\n");
1430
0
        snmp_free_pdu(pdu);
1431
0
        return SNMP_ERR_GENERR;
1432
0
    }
1433
0
    pdu->contextEngineIDLen = probeEngineID_len;
1434
    
1435
0
    snmp_add_null_var(pdu, snmpEngineIDoid, snmpEngineIDoid_len);
1436
1437
0
    DEBUGMSGTL(("snmp_api", "probing for engineID using rfc5343 methods...\n"));
1438
0
    session->flags |= SNMP_FLAGS_DONT_PROBE; /* prevent recursion */
1439
0
    status = snmp_sess_synch_response(slp, pdu, &response);
1440
1441
0
    if ((response == NULL) || (status != STAT_SUCCESS)) {
1442
0
        snmp_log(LOG_ERR, "failed rfc5343 contextEngineID probing\n");
1443
0
        return SNMP_ERR_GENERR;
1444
0
    }
1445
1446
    /* check that the response makes sense */
1447
0
    if (NULL != response->variables &&
1448
0
        NULL != response->variables->name &&
1449
0
        snmp_oid_compare(response->variables->name,
1450
0
                         response->variables->name_length,
1451
0
                         snmpEngineIDoid, snmpEngineIDoid_len) == 0 &&
1452
0
        ASN_OCTET_STR == response->variables->type  &&
1453
0
        NULL != response->variables->val.string &&
1454
0
        response->variables->val_len > 0) {
1455
0
        session->contextEngineID =
1456
0
            netsnmp_memdup(response->variables->val.string,
1457
0
                           response->variables->val_len);
1458
0
        if (!session->contextEngineID) {
1459
0
            snmp_log(LOG_ERR, "failed rfc5343 contextEngineID probing: memory allocation failed\n");
1460
0
            return SNMP_ERR_GENERR;
1461
0
        }
1462
        
1463
        /* technically there likely isn't a securityEngineID but just
1464
           in case anyone goes looking we might as well have one */
1465
0
        session->securityEngineID =
1466
0
            netsnmp_memdup(response->variables->val.string,
1467
0
                           response->variables->val_len);
1468
0
        if (!session->securityEngineID) {
1469
0
            snmp_log(LOG_ERR, "failed rfc5343 securityEngineID probing: memory allocation failed\n");
1470
0
            return SNMP_ERR_GENERR;
1471
0
        }
1472
        
1473
0
        session->securityEngineIDLen = session->contextEngineIDLen =
1474
0
            response->variables->val_len;
1475
        
1476
0
        if (snmp_get_do_debugging()) {
1477
0
            size_t i;
1478
0
            DEBUGMSGTL(("snmp_sess_open",
1479
0
                        "  probe found engineID:  "));
1480
0
            for (i = 0; i < session->securityEngineIDLen; i++)
1481
0
                DEBUGMSG(("snmp_sess_open", "%02x",
1482
0
                          session->securityEngineID[i]));
1483
0
            DEBUGMSG(("snmp_sess_open", "\n"));
1484
0
        }
1485
0
    }
1486
0
    return SNMPERR_SUCCESS;
1487
0
}
1488
#endif /* NETSNMP_FEATURE_REMOVE_SNMPV3_PROBE_CONTEXTENGINEID_RFC5343 */
1489
1490
1491
/**
1492
 * probe for peer engineID
1493
 *
1494
 * @param slp         session list pointer.
1495
 * @param in_session  session for errors
1496
 *
1497
 * @note
1498
 *  - called by _sess_open(), snmp_sess_add_ex()
1499
 *  - in_session is the user supplied session provided to those functions.
1500
 *  - the first session in slp should the internal allocated copy of in_session
1501
 *
1502
 * @return 0 : error
1503
 * @return 1 : ok
1504
 *
1505
 */
1506
int
1507
snmpv3_engineID_probe(struct session_list *slp,
1508
                      netsnmp_session * in_session)
1509
0
{
1510
0
    netsnmp_session *session;
1511
0
    int             status;
1512
0
    struct snmp_secmod_def *sptr = NULL;
1513
1514
0
    if (slp == NULL || slp->session == NULL) {
1515
0
        return 0;
1516
0
    }
1517
1518
0
    session = slp->session;
1519
0
    netsnmp_assert_or_return(session != NULL, 0);
1520
0
    sptr = find_sec_mod(session->securityModel);
1521
1522
    /*
1523
     * If we are opening a V3 session and we don't know engineID we must probe
1524
     * it -- this must be done after the session is created and inserted in the
1525
     * list so that the response can handled correctly. 
1526
     */
1527
1528
0
    if (session->version == SNMP_VERSION_3 &&
1529
0
        (0 == (session->flags & SNMP_FLAGS_DONT_PROBE))) {
1530
0
        if (NULL != sptr && NULL != sptr->probe_engineid) {
1531
0
            DEBUGMSGTL(("snmp_api", "probing for engineID using security model callback...\n"));
1532
            /* security model specific mechanism of determining engineID */
1533
0
            status = (*sptr->probe_engineid) (slp, in_session);
1534
0
            if (status != SNMPERR_SUCCESS)
1535
0
                return 0;
1536
0
        } else {
1537
            /* XXX: default to the default RFC5343 contextEngineID Probe? */
1538
0
            return 0;
1539
0
        }
1540
0
    }
1541
1542
    /*
1543
     * see if there is a hook to call now that we're done probing for an
1544
     * engineID
1545
     */
1546
0
    if (sptr && sptr->post_probe_engineid) {
1547
0
        status = (*sptr->post_probe_engineid)(slp, in_session);
1548
0
        if (status != SNMPERR_SUCCESS)
1549
0
            return 0;
1550
0
    }
1551
1552
0
    return 1;
1553
0
}
1554
1555
/*******************************************************************-o-******
1556
 * netsnmp_sess_config_transport
1557
 *
1558
 * Parameters:
1559
 *  *in_session
1560
 *  *in_transport
1561
 *
1562
 * Returns:
1563
 *      SNMPERR_SUCCESS                     - Yay
1564
 *      SNMPERR_GENERR                      - Generic Error
1565
 *      SNMPERR_TRANSPORT_CONFIG_ERROR      - Transport rejected config
1566
 *      SNMPERR_TRANSPORT_NO_CONFIG         - Transport can't config
1567
 */
1568
int
1569
netsnmp_sess_config_transport(netsnmp_container *transport_configuration,
1570
                              netsnmp_transport *transport)
1571
0
{
1572
    /* Optional supplemental transport configuration information and
1573
       final call to actually open the transport */
1574
0
    if (transport_configuration) {
1575
0
        DEBUGMSGTL(("snmp_sess", "configuring transport\n"));
1576
0
        if (transport->f_config) {
1577
0
            netsnmp_iterator *iter;
1578
0
            netsnmp_transport_config *config_data;
1579
0
            int ret = 0;
1580
1581
0
            iter = CONTAINER_ITERATOR(transport_configuration);
1582
0
            if (NULL == iter) {
1583
0
                return SNMPERR_GENERR;
1584
0
            }
1585
1586
0
            for(config_data = (netsnmp_transport_config*)ITERATOR_FIRST(iter); config_data;
1587
0
                config_data = (netsnmp_transport_config*)ITERATOR_NEXT(iter)) {
1588
0
                ret = transport->f_config(transport, config_data->key,
1589
0
                                          config_data->value);
1590
0
                if (ret)
1591
0
                    break;
1592
0
            }
1593
0
            ITERATOR_RELEASE(iter);
1594
0
            if (ret)
1595
0
                return SNMPERR_TRANSPORT_CONFIG_ERROR;
1596
0
        } else {
1597
0
            return SNMPERR_TRANSPORT_NO_CONFIG;
1598
0
        }
1599
0
    }
1600
0
    return SNMPERR_SUCCESS;
1601
0
}
1602
1603
 
1604
/**
1605
 * Copies configuration from the session and calls f_open
1606
 * This function copies any configuration stored in the session
1607
 * pointer to the transport if it has a f_config pointer and then
1608
 * calls the transport's f_open function to actually open the
1609
 * connection.
1610
 *
1611
 * @param in_session A pointer to the session that config information is in.
1612
 * @param transport A pointer to the transport to config/open.
1613
 *
1614
 * @return SNMPERR_SUCCESS : on success
1615
 */
1616
1617
/*******************************************************************-o-******
1618
 * netsnmp_sess_config_transport
1619
 *
1620
 * Parameters:
1621
 *  *in_session
1622
 *  *in_transport
1623
 *
1624
 * Returns:
1625
 *      SNMPERR_SUCCESS                     - Yay
1626
 *      SNMPERR_GENERR                      - Generic Error
1627
 *      SNMPERR_TRANSPORT_CONFIG_ERROR      - Transport rejected config
1628
 *      SNMPERR_TRANSPORT_NO_CONFIG         - Transport can't config
1629
 */
1630
int
1631
netsnmp_sess_config_and_open_transport(netsnmp_session *in_session,
1632
                                       netsnmp_transport *transport)
1633
0
{
1634
0
    int rc;
1635
    
1636
0
    DEBUGMSGTL(("snmp_sess", "opening transport: %x\n", transport->flags & NETSNMP_TRANSPORT_FLAG_OPENED));
1637
1638
    /* don't double open */
1639
0
    if (transport->flags & NETSNMP_TRANSPORT_FLAG_OPENED)
1640
0
        return SNMPERR_SUCCESS;
1641
1642
0
    if ((rc = netsnmp_sess_config_transport(in_session->transport_configuration,
1643
0
                                            transport)) != SNMPERR_SUCCESS) {
1644
0
        in_session->s_snmp_errno = rc;
1645
0
        in_session->s_errno = 0;
1646
0
        return rc;
1647
0
    }
1648
        
1649
0
    if (transport->f_open)
1650
0
        transport = transport->f_open(transport);
1651
1652
0
    if (transport == NULL) {
1653
0
        DEBUGMSGTL(("snmp_sess", "couldn't open transport connection\n"));
1654
0
        in_session->s_snmp_errno = SNMPERR_BAD_ADDRESS;
1655
0
        in_session->s_errno = errno;
1656
0
        snmp_set_detail(in_session->peername);
1657
0
        return SNMPERR_BAD_ADDRESS;
1658
0
    }
1659
1660
    /** if transport has a max size, make sure session is the same (or less) */
1661
0
    if (in_session->rcvMsgMaxSize > transport->msgMaxSize) {
1662
0
        DEBUGMSGTL(("snmp_sess",
1663
0
                    "limiting session rcv size (%" NETSNMP_PRIz "d) to transport max (%" NETSNMP_PRIz "d)\n",
1664
0
                    in_session->rcvMsgMaxSize, transport->msgMaxSize));
1665
0
        in_session->rcvMsgMaxSize = transport->msgMaxSize;
1666
0
    }
1667
1668
0
    if (in_session->sndMsgMaxSize > transport->msgMaxSize) {
1669
0
        DEBUGMSGTL(("snmp_sess",
1670
0
                    "limiting session snd size (%" NETSNMP_PRIz "d) to transport max (%" NETSNMP_PRIz "d)\n",
1671
0
                    in_session->sndMsgMaxSize, transport->msgMaxSize));
1672
0
        in_session->sndMsgMaxSize = transport->msgMaxSize;
1673
0
    }
1674
1675
0
    transport->flags |= NETSNMP_TRANSPORT_FLAG_OPENED;
1676
0
    DEBUGMSGTL(("snmp_sess", "done opening transport: %x\n", transport->flags & NETSNMP_TRANSPORT_FLAG_OPENED));
1677
0
    return SNMPERR_SUCCESS;
1678
0
}
1679
1680
/*******************************************************************-o-******
1681
 * snmp_sess_open
1682
 *
1683
 * Parameters:
1684
 *  *in_session
1685
 *
1686
 * Returns:
1687
 *      Pointer to a session in the session list   -OR-   FIX -- right?
1688
 *  NULL on failure.
1689
 *
1690
 * The "spin-free" version of snmp_open.
1691
 */
1692
static struct session_list *
1693
_sess_open(netsnmp_session * in_session)
1694
0
{
1695
0
    netsnmp_transport *transport = NULL;
1696
0
    int rc;
1697
1698
0
    in_session->s_snmp_errno = 0;
1699
0
    in_session->s_errno = 0;
1700
1701
0
    _init_snmp();
1702
1703
0
    {
1704
0
        char *clientaddr_save = NULL;
1705
1706
0
        if (NULL != in_session->localname) {
1707
0
            clientaddr_save =
1708
0
                netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID,
1709
0
                                      NETSNMP_DS_LIB_CLIENT_ADDR);
1710
0
            if (clientaddr_save)
1711
0
                clientaddr_save = strdup(clientaddr_save);
1712
1713
0
            netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID,
1714
0
                                  NETSNMP_DS_LIB_CLIENT_ADDR,
1715
0
                                  in_session->localname);
1716
0
        }
1717
1718
0
        if (in_session->flags & SNMP_FLAGS_STREAM_SOCKET) {
1719
0
            transport =
1720
0
                netsnmp_tdomain_transport_full("snmp", in_session->peername,
1721
0
                                               in_session->local_port, "tcp,tcp6",
1722
0
                                               NULL);
1723
0
        } else {
1724
0
            transport =
1725
0
                netsnmp_tdomain_transport_full("snmp", in_session->peername,
1726
0
                                               in_session->local_port, "udp,udp6",
1727
0
                                               NULL);
1728
0
        }
1729
1730
0
        if (NULL != in_session->localname)
1731
0
            netsnmp_ds_set_string(NETSNMP_DS_LIBRARY_ID,
1732
0
                                  NETSNMP_DS_LIB_CLIENT_ADDR, clientaddr_save);
1733
0
        free(clientaddr_save);
1734
0
    }
1735
1736
0
    if (transport == NULL) {
1737
0
        DEBUGMSGTL(("_sess_open", "couldn't interpret peername\n"));
1738
0
        in_session->s_snmp_errno = SNMPERR_BAD_ADDRESS;
1739
0
        in_session->s_errno = errno;
1740
0
        snmp_set_detail(in_session->peername);
1741
0
        return NULL;
1742
0
    }
1743
1744
    /* Optional supplemental transport configuration information and
1745
       final call to actually open the transport */
1746
0
    if ((rc = netsnmp_sess_config_and_open_transport(in_session, transport))
1747
0
        != SNMPERR_SUCCESS) {
1748
0
        transport = NULL;
1749
0
        return NULL;
1750
0
    }
1751
1752
0
#if defined(SO_BROADCAST) && defined(SOL_SOCKET)
1753
0
    if ( in_session->flags & SNMP_FLAGS_UDP_BROADCAST) {
1754
0
        int   b = 1;
1755
0
        int   rc;
1756
1757
0
        rc = setsockopt(transport->sock, SOL_SOCKET, SO_BROADCAST,
1758
0
                        (char *)&b, sizeof(b));
1759
1760
0
        if ( rc != 0 ) {
1761
0
            in_session->s_snmp_errno = SNMPERR_BAD_ADDRESS; /* good as any? */
1762
0
            in_session->s_errno = errno;
1763
1764
0
            DEBUGMSGTL(("_sess_open", "couldn't enable UDP_BROADCAST\n"));
1765
0
            return NULL;
1766
0
        }
1767
0
    }
1768
0
#endif
1769
1770
0
    return snmp_sess_add(in_session, transport, NULL, NULL);
1771
0
}
1772
1773
/*
1774
 * EXTENDED SESSION API ------------------------------------------ 
1775
 * 
1776
 * snmp_sess_add_ex, snmp_sess_add, snmp_add 
1777
 * 
1778
 * Analogous to snmp_open family of functions, but taking a netsnmp_transport
1779
 * pointer as an extra argument.  Unlike snmp_open et al. it doesn't attempt
1780
 * to interpret the in_session->peername as a transport endpoint specifier,
1781
 * but instead uses the supplied transport.  JBPN
1782
 * 
1783
 */
1784
1785
netsnmp_session *
1786
snmp_add(netsnmp_session * in_session,
1787
         netsnmp_transport *transport,
1788
         int (*fpre_parse) (netsnmp_session *, netsnmp_transport *, void *,
1789
                            int), int (*fpost_parse) (netsnmp_session *,
1790
                                                      netsnmp_pdu *, int))
1791
0
{
1792
0
    struct session_list *slp;
1793
1794
0
    slp = snmp_sess_add_ex(in_session, transport, fpre_parse, NULL,
1795
0
                           fpost_parse, NULL, NULL, NULL, NULL);
1796
0
    if (slp == NULL) {
1797
0
        return NULL;
1798
0
    }
1799
1800
0
    snmp_session_insert(slp);
1801
1802
0
    return (slp->session);
1803
0
}
1804
1805
netsnmp_session *
1806
snmp_add_full(netsnmp_session * in_session,
1807
              netsnmp_transport *transport,
1808
              int (*fpre_parse) (netsnmp_session *, netsnmp_transport *,
1809
                                 void *, int),
1810
              int (*fparse) (netsnmp_session *, netsnmp_pdu *, u_char *,
1811
                             size_t),
1812
              int (*fpost_parse) (netsnmp_session *, netsnmp_pdu *, int),
1813
              int (*fbuild) (netsnmp_session *, netsnmp_pdu *, u_char *,
1814
                             size_t *), int (*frbuild) (netsnmp_session *,
1815
                                                        netsnmp_pdu *,
1816
                                                        u_char **,
1817
                                                        size_t *,
1818
                                                        size_t *),
1819
              int (*fcheck) (u_char *, size_t),
1820
              netsnmp_pdu *(*fcreate_pdu) (netsnmp_transport *, void *,
1821
                                           size_t))
1822
0
{
1823
0
    struct session_list *slp;
1824
1825
0
    slp = snmp_sess_add_ex(in_session, transport, fpre_parse, fparse,
1826
0
                           fpost_parse, fbuild, frbuild, fcheck, fcreate_pdu);
1827
0
    if (slp == NULL) {
1828
0
        return NULL;
1829
0
    }
1830
1831
0
    snmp_session_insert(slp);
1832
1833
0
    return (slp->session);
1834
0
}
1835
1836
struct session_list *
1837
snmp_sess_add_ex(netsnmp_session * in_session,
1838
                 netsnmp_transport *transport,
1839
                 int (*fpre_parse) (netsnmp_session *, netsnmp_transport *,
1840
                                    void *, int),
1841
                 int (*fparse) (netsnmp_session *, netsnmp_pdu *, u_char *,
1842
                                size_t),
1843
                 int (*fpost_parse) (netsnmp_session *, netsnmp_pdu *,
1844
                                     int),
1845
                 int (*fbuild) (netsnmp_session *, netsnmp_pdu *, u_char *,
1846
                                size_t *),
1847
                 int (*frbuild) (netsnmp_session *, netsnmp_pdu *,
1848
                                 u_char **, size_t *, size_t *),
1849
                 int (*fcheck) (u_char *, size_t),
1850
                 netsnmp_pdu *(*fcreate_pdu) (netsnmp_transport *, void *,
1851
                                              size_t))
1852
0
{
1853
0
    struct session_list *slp;
1854
0
    int rc;
1855
    
1856
0
    _init_snmp();
1857
1858
0
    if (transport == NULL)
1859
0
        return NULL;
1860
1861
0
    if (NULL != in_session && (in_session->rcvMsgMaxSize < SNMP_MIN_MAX_LEN ||
1862
0
                               in_session->sndMsgMaxSize < SNMP_MIN_MAX_LEN)) {
1863
0
        DEBUGMSGTL(("snmp_sess_add",
1864
0
                    "invalid session (msg sizes). need snmp_sess_init"));
1865
0
        in_session = NULL; /* force transport cleanup below */
1866
0
    }
1867
1868
0
    if (in_session == NULL) {
1869
0
        transport->f_close(transport);
1870
0
        netsnmp_transport_free(transport);
1871
0
        return NULL;
1872
0
    }
1873
1874
    /* if the transport hasn't been fully opened yet, open it now */
1875
0
    if ((rc = netsnmp_sess_config_and_open_transport(in_session, transport))
1876
0
        != SNMPERR_SUCCESS) {
1877
0
        return NULL;
1878
0
    }
1879
1880
0
    if (transport->f_setup_session) {
1881
0
        if (SNMPERR_SUCCESS !=
1882
0
            transport->f_setup_session(transport, in_session)) {
1883
0
            netsnmp_transport_free(transport);
1884
0
            return NULL;
1885
0
        }
1886
0
    }
1887
        
1888
            
1889
0
    DEBUGMSGTL(("snmp_sess_add", "fd %d\n", transport->sock));
1890
1891
1892
0
    if ((slp = snmp_sess_copy(in_session)) == NULL) {
1893
0
        transport->f_close(transport);
1894
0
        netsnmp_transport_free(transport);
1895
0
        return (NULL);
1896
0
    }
1897
1898
0
    slp->transport = transport;
1899
0
    slp->internal->hook_pre = fpre_parse;
1900
0
    slp->internal->hook_parse = fparse;
1901
0
    slp->internal->hook_post = fpost_parse;
1902
0
    slp->internal->hook_build = fbuild;
1903
0
    slp->internal->hook_realloc_build = frbuild;
1904
0
    slp->internal->check_packet = fcheck;
1905
0
    slp->internal->hook_create_pdu = fcreate_pdu;
1906
1907
    /** don't let session max exceed transport max */
1908
0
    if (slp->session->rcvMsgMaxSize > transport->msgMaxSize) {
1909
0
        DEBUGMSGTL(("snmp_sess_add",
1910
0
                    "limiting session rcv size (%" NETSNMP_PRIz "d) to transport max (%" NETSNMP_PRIz "d)\n",
1911
0
                    slp->session->rcvMsgMaxSize, transport->msgMaxSize));
1912
0
        slp->session->rcvMsgMaxSize = transport->msgMaxSize;
1913
0
    }
1914
0
    if (slp->session->sndMsgMaxSize > transport->msgMaxSize) {
1915
0
        DEBUGMSGTL(("snmp_sess_add",
1916
0
                    "limiting session snd size (%" NETSNMP_PRIz "d) to transport max (%" NETSNMP_PRIz "d)\n",
1917
0
                    slp->session->sndMsgMaxSize, transport->msgMaxSize));
1918
0
        slp->session->sndMsgMaxSize = transport->msgMaxSize;
1919
0
    }
1920
1921
0
    if (slp->session->version == SNMP_VERSION_3) {
1922
0
        DEBUGMSGTL(("snmp_sess_add",
1923
0
                    "adding v3 session -- maybe engineID probe now\n"));
1924
0
        if (!snmpv3_engineID_probe(slp, slp->session)) {
1925
0
            DEBUGMSGTL(("snmp_sess_add", "engine ID probe failed\n"));
1926
0
            snmp_sess_close(slp);
1927
0
            return NULL;
1928
0
        }
1929
0
    }
1930
1931
0
    slp->session->flags &= ~SNMP_FLAGS_DONT_PROBE;
1932
1933
0
    return slp;
1934
0
}                               /*  end snmp_sess_add_ex()  */
1935
1936
struct session_list *
1937
snmp_sess_add(netsnmp_session * in_session,
1938
              netsnmp_transport *transport,
1939
              int (*fpre_parse) (netsnmp_session *, netsnmp_transport *,
1940
                                 void *, int),
1941
              int (*fpost_parse) (netsnmp_session *, netsnmp_pdu *, int))
1942
0
{
1943
0
    return snmp_sess_add_ex(in_session, transport, fpre_parse, NULL,
1944
0
                            fpost_parse, NULL, NULL, NULL, NULL);
1945
0
}
1946
1947
1948
1949
struct session_list *
1950
snmp_sess_open(netsnmp_session * pss)
1951
0
{
1952
0
    struct session_list *slp;
1953
1954
0
    pss->flags |= SNMP_FLAGS_SESSION_USER;
1955
1956
0
    slp = _sess_open(pss);
1957
0
    if (!slp) {
1958
0
        SET_SNMP_ERROR(pss->s_snmp_errno);
1959
0
    }
1960
0
    return slp;
1961
0
}
1962
1963
int
1964
0
create_user_from_session(netsnmp_session * session) {
1965
0
#ifdef NETSNMP_SECMOD_USM
1966
0
    return usm_create_user_from_session(session);
1967
#else
1968
    snmp_log(LOG_ERR, "create_user_from_session called when USM wasn't compiled in");
1969
    netsnmp_assert(0 == 1);
1970
    return SNMP_ERR_GENERR;
1971
#endif
1972
0
}
1973
1974
static void netsnmp_free_one_tr_cfg(void *data, void *context)
1975
0
{
1976
0
    netsnmp_transport_config *c = data;
1977
1978
0
    free(c->key);
1979
0
    free(c->value);
1980
0
    free(c);
1981
0
}
1982
1983
static void netsnmp_free_transport_config(netsnmp_container *tc)
1984
0
{
1985
0
    if (!tc)
1986
0
        return;
1987
1988
0
    CONTAINER_CLEAR(tc, netsnmp_free_one_tr_cfg, NULL);
1989
0
    CONTAINER_FREE(tc);
1990
0
}
1991
1992
/* Free the memory owned by a session but not the session object itself. */
1993
void netsnmp_cleanup_session(netsnmp_session *s)
1994
0
{
1995
0
    free(s->localname);
1996
0
    free(s->peername);
1997
0
    free(s->community);
1998
0
    free(s->contextEngineID);
1999
0
    free(s->contextName);
2000
0
    free(s->securityEngineID);
2001
0
    free(s->securityName);
2002
0
    free(s->securityAuthProto);
2003
0
    free(s->securityAuthLocalKey);
2004
0
    free(s->securityPrivProto);
2005
0
    free(s->securityPrivLocalKey);
2006
0
    free(s->paramName);
2007
0
#ifndef NETSNMP_NO_TRAP_STATS
2008
0
    free(s->trap_stats);
2009
0
#endif /* NETSNMP_NO_TRAP_STATS */
2010
0
    usm_free_user(s->sessUser);
2011
0
    netsnmp_free_transport_config(s->transport_configuration);
2012
0
    memset(s, 0, sizeof(*s));
2013
0
}
2014
2015
/*
2016
 *  Do a "deep free()" of a netsnmp_session.
2017
 *
2018
 *  CAUTION:  SHOULD ONLY BE USED FROM snmp_sess_close() OR SIMILAR.
2019
 *                                                      (hence it is static)
2020
 */
2021
static void
2022
snmp_free_session(netsnmp_session * s)
2023
0
{
2024
0
    if (!s)
2025
0
        return;
2026
2027
0
    netsnmp_cleanup_session(s);
2028
2029
    /*
2030
     * clear session from any callbacks
2031
     */
2032
0
    netsnmp_callback_clear_client_arg(s, 0, 0);
2033
2034
0
    free(s);
2035
0
}
2036
2037
/*
2038
 * Close the input session.  Frees all data allocated for the session,
2039
 * dequeues any pending requests, and closes any sockets allocated for
2040
 * the session.  Returns 0 on error, 1 otherwise.
2041
 */
2042
int
2043
snmp_sess_close(struct session_list *slp)
2044
0
{
2045
0
    netsnmp_transport *transport;
2046
0
    struct snmp_internal_session *isp;
2047
0
    netsnmp_session *sesp = NULL;
2048
0
    struct snmp_secmod_def *sptr;
2049
2050
0
    if (slp == NULL) {
2051
0
        return 0;
2052
0
    }
2053
2054
0
    if (slp->session != NULL &&
2055
0
        (sptr = find_sec_mod(slp->session->securityModel)) != NULL &&
2056
0
        sptr->session_close != NULL) {
2057
0
        (*sptr->session_close) (slp->session);
2058
0
    }
2059
2060
0
    isp = slp->internal;
2061
0
    slp->internal = NULL;
2062
2063
0
    if (isp) {
2064
0
        netsnmp_request_list *rp, *orp;
2065
2066
0
        SNMP_FREE(isp->packet);
2067
2068
        /*
2069
         * Free each element in the input request list.  
2070
         */
2071
0
        rp = isp->requests;
2072
0
        while (rp) {
2073
0
            orp = rp;
2074
0
            rp = rp->next_request;
2075
0
            if (orp->callback) {
2076
0
                orp->callback(NETSNMP_CALLBACK_OP_TIMED_OUT,
2077
0
                              slp->session, orp->pdu->reqid,
2078
0
                              orp->pdu, orp->cb_data);
2079
0
            }
2080
0
            snmp_free_pdu(orp->pdu);
2081
0
            free(orp);
2082
0
        }
2083
2084
0
        free(isp);
2085
0
    }
2086
2087
0
    transport = slp->transport;
2088
0
    slp->transport = NULL;
2089
2090
0
    if (transport) {
2091
0
        transport->f_close(transport);
2092
0
        netsnmp_transport_free(transport);
2093
0
    }
2094
2095
0
    sesp = slp->session;
2096
0
    slp->session = NULL;
2097
2098
    /*
2099
     * The following is necessary to avoid memory leakage when closing AgentX 
2100
     * sessions that may have multiple subsessions.  These hang off the main
2101
     * session at ->subsession, and chain through ->next.  
2102
     */
2103
2104
0
    if (sesp != NULL && sesp->subsession != NULL) {
2105
0
        netsnmp_session *subsession = sesp->subsession, *tmpsub;
2106
2107
0
        while (subsession != NULL) {
2108
0
            DEBUGMSGTL(("snmp_sess_close",
2109
0
                        "closing session %p, subsession %p\n", sesp,
2110
0
                        subsession));
2111
0
            tmpsub = subsession->next;
2112
0
            snmp_free_session(subsession);
2113
0
            subsession = tmpsub;
2114
0
        }
2115
0
    }
2116
2117
0
    snmp_free_session(sesp);
2118
0
    free(slp);
2119
0
    return 1;
2120
0
}
2121
2122
int
2123
snmp_close(netsnmp_session * session)
2124
0
{
2125
0
    struct session_list *slp = NULL, *oslp = NULL;
2126
2127
0
    {                           /*MTCRITICAL_RESOURCE */
2128
0
        snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
2129
0
        if (Sessions && Sessions->session == session) { /* If first entry */
2130
0
            slp = Sessions;
2131
0
            Sessions = slp->next;
2132
0
        } else {
2133
0
            for (slp = Sessions; slp; slp = slp->next) {
2134
0
                if (slp->session == session) {
2135
0
                    if (oslp)   /* if we found entry that points here */
2136
0
                        oslp->next = slp->next; /* link around this entry */
2137
0
                    break;
2138
0
                }
2139
0
                oslp = slp;
2140
0
            }
2141
0
        }
2142
0
        snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
2143
0
    }                           /*END MTCRITICAL_RESOURCE */
2144
0
    if (slp == NULL) {
2145
0
        return 0;
2146
0
    }
2147
0
    return snmp_sess_close(slp);
2148
0
}
2149
2150
int
2151
snmp_close_sessions(void)
2152
0
{
2153
0
    struct session_list *slp;
2154
2155
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
2156
0
    while (Sessions) {
2157
0
        slp = Sessions;
2158
0
        Sessions = Sessions->next;
2159
0
        snmp_sess_close(slp);
2160
0
    }
2161
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
2162
0
    return 1;
2163
0
}
2164
2165
static void
2166
snmpv3_calc_msg_flags(int sec_level, int msg_command, u_char * flags)
2167
0
{
2168
0
    *flags = 0;
2169
0
    if (sec_level == SNMP_SEC_LEVEL_AUTHNOPRIV)
2170
0
        *flags = SNMP_MSG_FLAG_AUTH_BIT;
2171
0
    else if (sec_level == SNMP_SEC_LEVEL_AUTHPRIV)
2172
0
        *flags = SNMP_MSG_FLAG_AUTH_BIT | SNMP_MSG_FLAG_PRIV_BIT;
2173
2174
0
    if (SNMP_CMD_CONFIRMED(msg_command))
2175
0
        *flags |= SNMP_MSG_FLAG_RPRT_BIT;
2176
2177
0
    return;
2178
0
}
2179
2180
static int
2181
snmpv3_verify_msg(netsnmp_request_list *rp, netsnmp_pdu *pdu)
2182
0
{
2183
0
    netsnmp_pdu    *rpdu;
2184
2185
    /* XX: This function silently rejects. Add error handling. */
2186
0
    if (!rp || !rp->pdu || !pdu)
2187
0
        return 0;
2188
    /*
2189
     * Reports don't have to match anything according to the spec 
2190
     */
2191
0
    if (pdu->command == SNMP_MSG_REPORT)
2192
0
        return 1;
2193
0
    rpdu = rp->pdu;
2194
0
    if (rp->request_id != pdu->reqid || rpdu->reqid != pdu->reqid)
2195
0
        return 0;
2196
0
    if (rpdu->version != pdu->version)
2197
0
        return 0;
2198
0
    if (rpdu->securityModel != pdu->securityModel)
2199
0
        return 0;
2200
0
    if (rpdu->securityLevel != pdu->securityLevel)
2201
0
        return 0;
2202
2203
0
    if (rpdu->contextEngineIDLen != pdu->contextEngineIDLen)
2204
0
        return 0;
2205
0
    if (pdu->contextEngineIDLen &&
2206
0
        memcmp(rpdu->contextEngineID, pdu->contextEngineID,
2207
0
               pdu->contextEngineIDLen))
2208
0
        return 0;
2209
0
    if (rpdu->contextNameLen != pdu->contextNameLen)
2210
0
        return 0;
2211
0
    if (pdu->contextNameLen &&
2212
0
        memcmp(rpdu->contextName, pdu->contextName, pdu->contextNameLen))
2213
0
        return 0;
2214
2215
    /* tunneled transports don't have a securityEngineID...  that's
2216
       USM specific (and maybe other future ones) */
2217
0
    if (pdu->securityModel == SNMP_SEC_MODEL_USM &&
2218
0
        (rpdu->securityEngineIDLen != pdu->securityEngineIDLen ||
2219
0
         (pdu->securityEngineIDLen &&
2220
0
          memcmp(rpdu->securityEngineID, pdu->securityEngineID,
2221
0
                 pdu->securityEngineIDLen))))
2222
0
        return 0;
2223
2224
    /* the securityName must match though regardless of secmodel */
2225
0
    if (rpdu->securityNameLen != pdu->securityNameLen ||
2226
0
        memcmp(rpdu->securityName, pdu->securityName,
2227
0
               pdu->securityNameLen))
2228
0
        return 0;
2229
0
    return 1;
2230
0
}
2231
2232
2233
/*
2234
 * SNMPv3
2235
 * * Takes a session and a pdu and serializes the ASN PDU into the area
2236
 * * pointed to by packet.  out_length is the size of the data area available.
2237
 * * Returns the length of the completed packet in out_length.  If any errors
2238
 * * occur, -1 is returned.  If all goes well, 0 is returned.
2239
 */
2240
static int
2241
snmpv3_build(u_char ** pkt, size_t * pkt_len, size_t * offset,
2242
             netsnmp_session * session, netsnmp_pdu *pdu)
2243
0
{
2244
0
    int             ret;
2245
2246
0
    session->s_snmp_errno = 0;
2247
0
    session->s_errno = 0;
2248
2249
    /*
2250
     * do validation for PDU types 
2251
     */
2252
0
    switch (pdu->command) {
2253
0
    case SNMP_MSG_RESPONSE:
2254
0
    case SNMP_MSG_TRAP2:
2255
0
    case SNMP_MSG_REPORT:
2256
0
        netsnmp_assert(0 == (pdu->flags & UCD_MSG_FLAG_EXPECT_RESPONSE));
2257
0
        NETSNMP_FALLTHROUGH;
2258
0
    case SNMP_MSG_INFORM:
2259
0
#ifndef NETSNMP_NOTIFY_ONLY
2260
0
    case SNMP_MSG_GET:
2261
0
    case SNMP_MSG_GETNEXT:
2262
0
#endif /* ! NETSNMP_NOTIFY_ONLY */
2263
0
#ifndef NETSNMP_NO_WRITE_SUPPORT
2264
0
    case SNMP_MSG_SET:
2265
0
#endif /* !NETSNMP_NO_WRITE_SUPPORT */
2266
0
        if (pdu->errstat == SNMP_DEFAULT_ERRSTAT)
2267
0
            pdu->errstat = 0;
2268
0
        if (pdu->errindex == SNMP_DEFAULT_ERRINDEX)
2269
0
            pdu->errindex = 0;
2270
0
        break;
2271
2272
0
#ifndef NETSNMP_NOTIFY_ONLY
2273
0
    case SNMP_MSG_GETBULK:
2274
0
        if (pdu->max_repetitions < 0) {
2275
0
            session->s_snmp_errno = SNMPERR_BAD_REPETITIONS;
2276
0
            return -1;
2277
0
        }
2278
0
        if (pdu->non_repeaters < 0) {
2279
0
            session->s_snmp_errno = SNMPERR_BAD_REPEATERS;
2280
0
            return -1;
2281
0
        }
2282
0
        break;
2283
0
#endif /* ! NETSNMP_NOTIFY_ONLY */
2284
2285
0
    case SNMP_MSG_TRAP:
2286
0
        session->s_snmp_errno = SNMPERR_V1_IN_V2;
2287
0
        return -1;
2288
2289
0
    default:
2290
0
        session->s_snmp_errno = SNMPERR_UNKNOWN_PDU;
2291
0
        return -1;
2292
0
    }
2293
2294
    /* Do we need to set the session security engineid? */
2295
0
    if (pdu->securityEngineIDLen == 0) {
2296
0
        if (session->securityEngineIDLen) {
2297
0
            snmpv3_clone_engineID(&pdu->securityEngineID,
2298
0
                                  &pdu->securityEngineIDLen,
2299
0
                                  session->securityEngineID,
2300
0
                                  session->securityEngineIDLen);
2301
0
        }
2302
0
    }
2303
    
2304
    /* Do we need to set the session context engineid? */
2305
0
    if (pdu->contextEngineIDLen == 0) {
2306
0
        if (session->contextEngineIDLen) {
2307
0
            snmpv3_clone_engineID(&pdu->contextEngineID,
2308
0
                                  &pdu->contextEngineIDLen,
2309
0
                                  session->contextEngineID,
2310
0
                                  session->contextEngineIDLen);
2311
0
        } else if (pdu->securityEngineIDLen) {
2312
0
            snmpv3_clone_engineID(&pdu->contextEngineID,
2313
0
                                  &pdu->contextEngineIDLen,
2314
0
                                  pdu->securityEngineID,
2315
0
                                  pdu->securityEngineIDLen);
2316
0
        }
2317
0
    }
2318
2319
0
    if (pdu->contextName == NULL) {
2320
0
        if (!session->contextName) {
2321
0
            session->s_snmp_errno = SNMPERR_BAD_CONTEXT;
2322
0
            return -1;
2323
0
        }
2324
0
        pdu->contextName = strdup(session->contextName);
2325
0
        if (pdu->contextName == NULL) {
2326
0
            session->s_snmp_errno = SNMPERR_GENERR;
2327
0
            return -1;
2328
0
        }
2329
0
        pdu->contextNameLen = session->contextNameLen;
2330
0
    }
2331
0
    if (pdu->securityModel == SNMP_DEFAULT_SECMODEL) {
2332
0
        pdu->securityModel = session->securityModel;
2333
0
        if (pdu->securityModel == SNMP_DEFAULT_SECMODEL) {
2334
0
            pdu->securityModel = se_find_value_in_slist("snmp_secmods", netsnmp_ds_get_string(NETSNMP_DS_LIBRARY_ID, NETSNMP_DS_LIB_SECMODEL));
2335
            
2336
0
            if (pdu->securityModel <= 0) {
2337
0
                pdu->securityModel = SNMP_SEC_MODEL_USM;
2338
0
            }
2339
0
        }
2340
0
    }
2341
0
    if (pdu->securityNameLen == 0 && pdu->securityName == NULL) {
2342
0
        if (session->securityModel != SNMP_SEC_MODEL_TSM &&
2343
0
            session->securityNameLen == 0) {
2344
0
            session->s_snmp_errno = SNMPERR_BAD_SEC_NAME;
2345
0
            return -1;
2346
0
        }
2347
0
        if (session->securityName) {
2348
0
            pdu->securityName = strdup(session->securityName);
2349
0
            if (pdu->securityName == NULL) {
2350
0
                session->s_snmp_errno = SNMPERR_GENERR;
2351
0
                return -1;
2352
0
            }
2353
0
            pdu->securityNameLen = session->securityNameLen;
2354
0
        } else {
2355
0
            pdu->securityName = strdup("");
2356
0
            session->securityName = strdup("");
2357
0
        }
2358
0
    }
2359
0
    if (pdu->securityLevel == 0) {
2360
0
        if (session->securityLevel == 0) {
2361
0
            session->s_snmp_errno = SNMPERR_BAD_SEC_LEVEL;
2362
0
            return -1;
2363
0
        }
2364
0
        pdu->securityLevel = session->securityLevel;
2365
0
    }
2366
0
    DEBUGMSGTL(("snmp_build",
2367
0
                "Building SNMPv3 message (secName:\"%s\", secLevel:%s)...\n",
2368
0
                ((session->securityName) ? (char *) session->securityName :
2369
0
                 ((pdu->securityName) ? (char *) pdu->securityName :
2370
0
                  "ERROR: undefined")), secLevelName[pdu->securityLevel]));
2371
2372
0
    DEBUGDUMPSECTION("send", "SNMPv3 Message");
2373
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
2374
0
    if (!(pdu->flags & UCD_MSG_FLAG_FORWARD_ENCODE)) {
2375
0
        ret = snmpv3_packet_realloc_rbuild(pkt, pkt_len, offset,
2376
0
                                           session, pdu, NULL, 0);
2377
0
    } else {
2378
0
#endif
2379
0
        ret = snmpv3_packet_build(session, pdu, *pkt, pkt_len, NULL, 0);
2380
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
2381
0
    }
2382
0
#endif
2383
0
    DEBUGINDENTLESS();
2384
0
    if (-1 != ret) {
2385
0
        session->s_snmp_errno = ret;
2386
0
    }
2387
2388
0
    return ret;
2389
2390
0
}                               /* end snmpv3_build() */
2391
2392
2393
2394
2395
static u_char  *
2396
snmpv3_header_build(netsnmp_session * session, const netsnmp_pdu *pdu,
2397
                    u_char * packet, size_t * out_length,
2398
                    size_t length, u_char ** msg_hdr_e)
2399
0
{
2400
0
    u_char         *global_hdr, *global_hdr_e;
2401
0
    u_char         *cp;
2402
0
    u_char          msg_flags;
2403
0
    long            max_size;
2404
0
    long            sec_model;
2405
0
    u_char         *pb, *pb0e;
2406
2407
    /*
2408
     * Save current location and build SEQUENCE tag and length placeholder
2409
     * * for SNMP message sequence (actual length inserted later)
2410
     */
2411
0
    cp = asn_build_sequence(packet, out_length,
2412
0
                            (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR),
2413
0
                            length);
2414
0
    if (cp == NULL)
2415
0
        return NULL;
2416
0
    if (msg_hdr_e != NULL)
2417
0
        *msg_hdr_e = cp;
2418
0
    pb0e = cp;
2419
2420
2421
    /*
2422
     * store the version field - msgVersion
2423
     */
2424
0
    DEBUGDUMPHEADER("send", "SNMP Version Number");
2425
0
    cp = asn_build_int(cp, out_length,
2426
0
                       (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2427
0
                                 ASN_INTEGER), (const long *) &pdu->version,
2428
0
                       sizeof(pdu->version));
2429
0
    DEBUGINDENTLESS();
2430
0
    if (cp == NULL)
2431
0
        return NULL;
2432
2433
0
    global_hdr = cp;
2434
    /*
2435
     * msgGlobalData HeaderData 
2436
     */
2437
0
    DEBUGDUMPSECTION("send", "msgGlobalData");
2438
0
    cp = asn_build_sequence(cp, out_length,
2439
0
                            (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR), 0);
2440
0
    if (cp == NULL)
2441
0
        return NULL;
2442
0
    global_hdr_e = cp;
2443
2444
2445
    /*
2446
     * msgID 
2447
     */
2448
0
    DEBUGDUMPHEADER("send", "msgID");
2449
0
    cp = asn_build_int(cp, out_length,
2450
0
                       (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2451
0
                                 ASN_INTEGER), &pdu->msgid,
2452
0
                       sizeof(pdu->msgid));
2453
0
    DEBUGINDENTLESS();
2454
0
    if (cp == NULL)
2455
0
        return NULL;
2456
2457
    /*
2458
     * msgMaxSize 
2459
     */
2460
0
    max_size = netsnmp_max_send_msg_size();
2461
0
    if (session->rcvMsgMaxSize < max_size)
2462
0
        max_size = session->rcvMsgMaxSize;
2463
0
    DEBUGDUMPHEADER("send:msgMaxSize1", "msgMaxSize");
2464
0
    cp = asn_build_int(cp, out_length,
2465
0
                       (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2466
0
                                 ASN_INTEGER), &max_size,
2467
0
                       sizeof(max_size));
2468
0
    DEBUGINDENTLESS();
2469
0
    if (cp == NULL)
2470
0
        return NULL;
2471
2472
    /*
2473
     * msgFlags 
2474
     */
2475
0
    snmpv3_calc_msg_flags(pdu->securityLevel, pdu->command, &msg_flags);
2476
0
    DEBUGDUMPHEADER("send", "msgFlags");
2477
0
    cp = asn_build_string(cp, out_length,
2478
0
                          (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2479
0
                                    ASN_OCTET_STR), &msg_flags,
2480
0
                          sizeof(msg_flags));
2481
0
    DEBUGINDENTLESS();
2482
0
    if (cp == NULL)
2483
0
        return NULL;
2484
2485
    /*
2486
     * msgSecurityModel 
2487
     */
2488
0
    sec_model = pdu->securityModel;
2489
0
    DEBUGDUMPHEADER("send", "msgSecurityModel");
2490
0
    cp = asn_build_int(cp, out_length,
2491
0
                       (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2492
0
                                 ASN_INTEGER), &sec_model,
2493
0
                       sizeof(sec_model));
2494
0
    DEBUGINDENTADD(-4);         /* return from global data indent */
2495
0
    if (cp == NULL)
2496
0
        return NULL;
2497
2498
2499
    /*
2500
     * insert actual length of globalData
2501
     */
2502
0
    pb = asn_build_sequence(global_hdr, out_length,
2503
0
                            (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR),
2504
0
                            cp - global_hdr_e);
2505
0
    if (pb == NULL)
2506
0
        return NULL;
2507
2508
2509
    /*
2510
     * insert the actual length of the entire packet
2511
     */
2512
0
    pb = asn_build_sequence(packet, out_length,
2513
0
                            (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR),
2514
0
                            length + (cp - pb0e));
2515
0
    if (pb == NULL)
2516
0
        return NULL;
2517
2518
0
    return cp;
2519
2520
0
}                               /* end snmpv3_header_build() */
2521
2522
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
2523
2524
int
2525
snmpv3_header_realloc_rbuild(u_char ** pkt, size_t * pkt_len,
2526
                             size_t * offset, netsnmp_session * session,
2527
                             netsnmp_pdu *pdu)
2528
0
{
2529
0
    size_t          start_offset = *offset;
2530
0
    u_char          msg_flags;
2531
0
    long            max_size, sec_model;
2532
0
    int             rc = 0;
2533
2534
    /*
2535
     * msgSecurityModel.  
2536
     */
2537
0
    sec_model = pdu->securityModel;
2538
0
    DEBUGDUMPHEADER("send", "msgSecurityModel");
2539
0
    rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
2540
0
                                (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2541
0
                                          ASN_INTEGER), &sec_model,
2542
0
                                sizeof(sec_model));
2543
0
    DEBUGINDENTLESS();
2544
0
    if (rc == 0) {
2545
0
        return 0;
2546
0
    }
2547
2548
    /*
2549
     * msgFlags.  
2550
     */
2551
0
    snmpv3_calc_msg_flags(pdu->securityLevel, pdu->command, &msg_flags);
2552
0
    DEBUGDUMPHEADER("send", "msgFlags");
2553
0
    rc = asn_realloc_rbuild_string(pkt, pkt_len, offset, 1,
2554
0
                                   (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
2555
0
                                             | ASN_OCTET_STR), &msg_flags,
2556
0
                                   sizeof(msg_flags));
2557
0
    DEBUGINDENTLESS();
2558
0
    if (rc == 0) {
2559
0
        return 0;
2560
0
    }
2561
2562
    /*
2563
     * msgMaxSize.  
2564
     */
2565
0
    max_size = netsnmp_max_send_msg_size();
2566
0
    if (session->rcvMsgMaxSize < max_size)
2567
0
        max_size = session->rcvMsgMaxSize;
2568
0
    DEBUGDUMPHEADER("send:msgMaxSize2", "msgMaxSize");
2569
0
    rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
2570
0
                                (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2571
0
                                          ASN_INTEGER), &max_size,
2572
0
                                sizeof(max_size));
2573
0
    DEBUGINDENTLESS();
2574
0
    if (rc == 0) {
2575
0
        return 0;
2576
0
    }
2577
2578
    /*
2579
     * msgID.  
2580
     */
2581
0
    DEBUGDUMPHEADER("send", "msgID");
2582
0
    rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
2583
0
                                (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2584
0
                                          ASN_INTEGER), &pdu->msgid,
2585
0
                                sizeof(pdu->msgid));
2586
0
    DEBUGINDENTLESS();
2587
0
    if (rc == 0) {
2588
0
        return 0;
2589
0
    }
2590
2591
    /*
2592
     * Global data sequence.  
2593
     */
2594
0
    rc = asn_realloc_rbuild_sequence(pkt, pkt_len, offset, 1,
2595
0
                                     (u_char) (ASN_SEQUENCE |
2596
0
                                               ASN_CONSTRUCTOR),
2597
0
                                     *offset - start_offset);
2598
0
    if (rc == 0) {
2599
0
        return 0;
2600
0
    }
2601
2602
    /*
2603
     * Store the version field - msgVersion.  
2604
     */
2605
0
    DEBUGDUMPHEADER("send", "SNMP Version Number");
2606
0
    rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
2607
0
                                (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
2608
0
                                          ASN_INTEGER),
2609
0
                                (long *) &pdu->version,
2610
0
                                sizeof(pdu->version));
2611
0
    DEBUGINDENTLESS();
2612
0
    return rc;
2613
0
}                               /* end snmpv3_header_realloc_rbuild() */
2614
#endif                          /* NETSNMP_USE_REVERSE_ASNENCODING */
2615
2616
static u_char  *
2617
snmpv3_scopedPDU_header_build(const netsnmp_pdu *pdu,
2618
                              u_char * packet, size_t * out_length,
2619
                              u_char ** spdu_e)
2620
0
{
2621
0
    u_char         *scopedPdu, *pb;
2622
2623
0
    pb = scopedPdu = packet;
2624
0
    pb = asn_build_sequence(pb, out_length,
2625
0
                            (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR), 0);
2626
0
    if (pb == NULL)
2627
0
        return NULL;
2628
0
    if (spdu_e)
2629
0
        *spdu_e = pb;
2630
2631
0
    DEBUGDUMPHEADER("send", "contextEngineID");
2632
0
    pb = asn_build_string(pb, out_length,
2633
0
                          (ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_OCTET_STR),
2634
0
                          pdu->contextEngineID, pdu->contextEngineIDLen);
2635
0
    DEBUGINDENTLESS();
2636
0
    if (pb == NULL)
2637
0
        return NULL;
2638
2639
0
    DEBUGDUMPHEADER("send", "contextName");
2640
0
    pb = asn_build_string(pb, out_length,
2641
0
                          (ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_OCTET_STR),
2642
0
                          (u_char *) pdu->contextName,
2643
0
                          pdu->contextNameLen);
2644
0
    DEBUGINDENTLESS();
2645
0
    if (pb == NULL)
2646
0
        return NULL;
2647
2648
0
    return pb;
2649
2650
0
}                               /* end snmpv3_scopedPDU_header_build() */
2651
2652
2653
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
2654
int
2655
snmpv3_scopedPDU_header_realloc_rbuild(u_char ** pkt, size_t * pkt_len,
2656
                                       size_t * offset, netsnmp_pdu *pdu,
2657
                                       size_t body_len)
2658
0
{
2659
0
    size_t          start_offset = *offset;
2660
0
    int             rc = 0;
2661
2662
    /*
2663
     * contextName.  
2664
     */
2665
0
    DEBUGDUMPHEADER("send", "contextName");
2666
0
    rc = asn_realloc_rbuild_string(pkt, pkt_len, offset, 1,
2667
0
                                   (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
2668
0
                                             | ASN_OCTET_STR),
2669
0
                                   (u_char *) pdu->contextName,
2670
0
                                   pdu->contextNameLen);
2671
0
    DEBUGINDENTLESS();
2672
0
    if (rc == 0) {
2673
0
        return 0;
2674
0
    }
2675
2676
    /*
2677
     * contextEngineID.  
2678
     */
2679
0
    DEBUGDUMPHEADER("send", "contextEngineID");
2680
0
    rc = asn_realloc_rbuild_string(pkt, pkt_len, offset, 1,
2681
0
                                   (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
2682
0
                                             | ASN_OCTET_STR),
2683
0
                                   pdu->contextEngineID,
2684
0
                                   pdu->contextEngineIDLen);
2685
0
    DEBUGINDENTLESS();
2686
0
    if (rc == 0) {
2687
0
        return 0;
2688
0
    }
2689
2690
0
    rc = asn_realloc_rbuild_sequence(pkt, pkt_len, offset, 1,
2691
0
                                     (u_char) (ASN_SEQUENCE |
2692
0
                                               ASN_CONSTRUCTOR),
2693
0
                                     *offset - start_offset + body_len);
2694
2695
0
    return rc;
2696
0
}                               /* end snmpv3_scopedPDU_header_realloc_rbuild() */
2697
#endif                          /* NETSNMP_USE_REVERSE_ASNENCODING */
2698
2699
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
2700
/*
2701
 * returns 0 if success, -1 if fail, not 0 if SM build failure 
2702
 */
2703
int
2704
snmpv3_packet_realloc_rbuild(u_char ** pkt, size_t * pkt_len,
2705
                             size_t * offset, netsnmp_session * session,
2706
                             netsnmp_pdu *pdu, u_char * pdu_data,
2707
                             size_t pdu_data_len)
2708
0
{
2709
0
    u_char         *scoped_pdu, *hdrbuf = NULL, *hdr = NULL;
2710
0
    size_t          hdrbuf_len = SNMP_MAX_MSG_V3_HDRS, hdr_offset =
2711
0
        0, spdu_offset = 0;
2712
0
    size_t          body_end_offset = *offset, body_len = 0;
2713
0
    struct snmp_secmod_def *sptr = NULL;
2714
0
    int             rc = 0;
2715
2716
    /*
2717
     * Build a scopedPDU structure into the packet buffer.  
2718
     */
2719
0
    DEBUGPRINTPDUTYPE("send", pdu->command);
2720
0
    if (pdu_data) {
2721
0
        while ((*pkt_len - *offset) < pdu_data_len) {
2722
0
            if (!asn_realloc(pkt, pkt_len)) {
2723
0
                return -1;
2724
0
            }
2725
0
        }
2726
2727
0
        *offset += pdu_data_len;
2728
0
        memcpy(*pkt + *pkt_len - *offset, pdu_data, pdu_data_len);
2729
0
    } else {
2730
0
        rc = snmp_pdu_realloc_rbuild(pkt, pkt_len, offset, pdu);
2731
0
        if (rc == 0) {
2732
0
            return -1;
2733
0
        }
2734
0
    }
2735
0
    body_len = *offset - body_end_offset;
2736
2737
0
    DEBUGDUMPSECTION("send", "ScopedPdu");
2738
0
    rc = snmpv3_scopedPDU_header_realloc_rbuild(pkt, pkt_len, offset,
2739
0
                                                pdu, body_len);
2740
0
    if (rc == 0) {
2741
0
        return -1;
2742
0
    }
2743
0
    spdu_offset = *offset;
2744
0
    DEBUGINDENTADD(-4);         /*  Return from Scoped PDU.  */
2745
2746
0
    if ((hdrbuf = (u_char *) malloc(hdrbuf_len)) == NULL) {
2747
0
        return -1;
2748
0
    }
2749
2750
0
    rc = snmpv3_header_realloc_rbuild(&hdrbuf, &hdrbuf_len, &hdr_offset,
2751
0
                                      session, pdu);
2752
0
    if (rc == 0) {
2753
0
        SNMP_FREE(hdrbuf);
2754
0
        return -1;
2755
0
    }
2756
0
    hdr = hdrbuf + hdrbuf_len - hdr_offset;
2757
0
    scoped_pdu = *pkt + *pkt_len - spdu_offset;
2758
2759
    /*
2760
     * Call the security module to possibly encrypt and authenticate the
2761
     * message---the entire message to transmitted on the wire is returned.  
2762
     */
2763
2764
0
    sptr = find_sec_mod(pdu->securityModel);
2765
0
    DEBUGDUMPSECTION("send", "SM msgSecurityParameters");
2766
0
    if (sptr && sptr->encode_reverse) {
2767
0
        struct snmp_secmod_outgoing_params parms;
2768
2769
0
        parms.msgProcModel = pdu->msgParseModel;
2770
0
        parms.globalData = hdr;
2771
0
        parms.globalDataLen = hdr_offset;
2772
0
        parms.maxMsgSize = SNMP_MAX_MSG_SIZE;
2773
0
        parms.secModel = pdu->securityModel;
2774
0
        parms.secEngineID = pdu->securityEngineID;
2775
0
        parms.secEngineIDLen = pdu->securityEngineIDLen;
2776
0
        parms.secName = pdu->securityName;
2777
0
        parms.secNameLen = pdu->securityNameLen;
2778
0
        parms.secLevel = pdu->securityLevel;
2779
0
        parms.scopedPdu = scoped_pdu;
2780
0
        parms.scopedPduLen = spdu_offset;
2781
0
        parms.secStateRef = pdu->securityStateRef;
2782
0
        parms.wholeMsg = pkt;
2783
0
        parms.wholeMsgLen = pkt_len;
2784
0
        parms.wholeMsgOffset = offset;
2785
0
        parms.session = session;
2786
0
        parms.pdu = pdu;
2787
2788
0
        rc = (*sptr->encode_reverse) (&parms);
2789
0
    } else {
2790
0
        if (!sptr) {
2791
0
            snmp_log(LOG_ERR,
2792
0
                     "no such security service available: %d\n",
2793
0
                     pdu->securityModel);
2794
0
        } else if (!sptr->encode_reverse) {
2795
0
            snmp_log(LOG_ERR,
2796
0
                     "security service %d doesn't support reverse encoding.\n",
2797
0
                     pdu->securityModel);
2798
0
        }
2799
0
        rc = -1;
2800
0
    }
2801
2802
0
    DEBUGINDENTLESS();
2803
0
    SNMP_FREE(hdrbuf);
2804
0
    return rc;
2805
0
}                               /* end snmpv3_packet_realloc_rbuild() */
2806
#endif                          /* NETSNMP_USE_REVERSE_ASNENCODING */
2807
2808
/*
2809
 * returns 0 if success, -1 if fail, not 0 if SM build failure 
2810
 */
2811
int
2812
snmpv3_packet_build(netsnmp_session * session, netsnmp_pdu *pdu,
2813
                    u_char * packet, size_t * out_length,
2814
                    u_char * pdu_data, size_t pdu_data_len)
2815
0
{
2816
0
    u_char         *global_data, *sec_params, *spdu_hdr_e;
2817
0
    size_t          global_data_len, sec_params_len;
2818
0
    u_char          spdu_buf[SNMP_MAX_MSG_SIZE];
2819
0
    size_t          spdu_buf_len, spdu_len;
2820
0
    u_char         *cp;
2821
0
    int             result;
2822
0
    struct snmp_secmod_def *sptr;
2823
2824
0
    global_data = packet;
2825
2826
    /*
2827
     * build the headers for the packet, returned addr = start of secParams
2828
     */
2829
0
    sec_params = snmpv3_header_build(session, pdu, global_data,
2830
0
                                     out_length, 0, NULL);
2831
0
    if (sec_params == NULL)
2832
0
        return -1;
2833
0
    global_data_len = sec_params - global_data;
2834
0
    sec_params_len = *out_length;       /* length left in packet buf for sec_params */
2835
2836
2837
    /*
2838
     * build a scopedPDU structure into spdu_buf
2839
     */
2840
0
    spdu_buf_len = sizeof(spdu_buf);
2841
0
    DEBUGDUMPSECTION("send", "ScopedPdu");
2842
0
    cp = snmpv3_scopedPDU_header_build(pdu, spdu_buf, &spdu_buf_len,
2843
0
                                       &spdu_hdr_e);
2844
0
    if (cp == NULL)
2845
0
        return -1;
2846
2847
    /*
2848
     * build the PDU structure onto the end of spdu_buf 
2849
     */
2850
0
    DEBUGPRINTPDUTYPE("send", ((pdu_data) ? *pdu_data : 0x00));
2851
0
    if (pdu_data) {
2852
0
        if (cp + pdu_data_len > spdu_buf + sizeof(spdu_buf)) {
2853
0
            snmp_log(LOG_ERR, "%s: PDU too big (%" NETSNMP_PRIz "d > %" NETSNMP_PRIz "d)\n",
2854
0
                     NETSNMP_FUNCTION, pdu_data_len, sizeof(spdu_buf));
2855
0
            return -1;
2856
0
        }
2857
0
        memcpy(cp, pdu_data, pdu_data_len);
2858
0
        cp += pdu_data_len;
2859
0
    } else {
2860
0
        cp = snmp_pdu_build(pdu, cp, &spdu_buf_len);
2861
0
        if (cp == NULL)
2862
0
            return -1;
2863
0
    }
2864
0
    DEBUGINDENTADD(-4);         /* return from Scoped PDU */
2865
2866
    /*
2867
     * re-encode the actual ASN.1 length of the scopedPdu
2868
     */
2869
0
    spdu_len = cp - spdu_hdr_e; /* length of scopedPdu minus ASN.1 headers */
2870
0
    spdu_buf_len = sizeof(spdu_buf);
2871
0
    if (asn_build_sequence(spdu_buf, &spdu_buf_len,
2872
0
                           (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR),
2873
0
                           spdu_len) == NULL)
2874
0
        return -1;
2875
0
    spdu_len = cp - spdu_buf;   /* the length of the entire scopedPdu */
2876
2877
2878
    /*
2879
     * call the security module to possibly encrypt and authenticate the
2880
     * message - the entire message to transmitted on the wire is returned
2881
     */
2882
0
    cp = NULL;
2883
0
    *out_length = sizeof(spdu_buf);
2884
0
    DEBUGDUMPSECTION("send", "SM msgSecurityParameters");
2885
0
    sptr = find_sec_mod(pdu->securityModel);
2886
0
    if (sptr && sptr->encode_forward) {
2887
0
        struct snmp_secmod_outgoing_params parms;
2888
0
        parms.msgProcModel = pdu->msgParseModel;
2889
0
        parms.globalData = global_data;
2890
0
        parms.globalDataLen = global_data_len;
2891
0
        parms.maxMsgSize = SNMP_MAX_MSG_SIZE;
2892
0
        parms.secModel = pdu->securityModel;
2893
0
        parms.secEngineID = pdu->securityEngineID;
2894
0
        parms.secEngineIDLen = pdu->securityEngineIDLen;
2895
0
        parms.secName = pdu->securityName;
2896
0
        parms.secNameLen = pdu->securityNameLen;
2897
0
        parms.secLevel = pdu->securityLevel;
2898
0
        parms.scopedPdu = spdu_buf;
2899
0
        parms.scopedPduLen = spdu_len;
2900
0
        parms.secStateRef = pdu->securityStateRef;
2901
0
        parms.secParams = sec_params;
2902
0
        parms.secParamsLen = &sec_params_len;
2903
0
        parms.wholeMsg = &cp;
2904
0
        parms.wholeMsgLen = out_length;
2905
0
        parms.session = session;
2906
0
        parms.pdu = pdu;
2907
0
        result = (*sptr->encode_forward) (&parms);
2908
0
    } else {
2909
0
        if (!sptr) {
2910
0
            snmp_log(LOG_ERR, "no such security service available: %d\n",
2911
0
                     pdu->securityModel);
2912
0
        } else if (!sptr->encode_forward) {
2913
0
            snmp_log(LOG_ERR,
2914
0
                     "security service %d doesn't support forward out encoding.\n",
2915
0
                     pdu->securityModel);
2916
0
        }
2917
0
        result = -1;
2918
0
    }
2919
0
    DEBUGINDENTLESS();
2920
0
    return result;
2921
2922
0
}                               /* end snmpv3_packet_build() */
2923
2924
2925
/*
2926
 * Takes a session and a pdu and serializes the ASN PDU into the area
2927
 * pointed to by *pkt.  *pkt_len is the size of the data area available.
2928
 * Returns the length of the completed packet in *offset.  If any errors
2929
 * occur, -1 is returned.  If all goes well, 0 is returned.
2930
 */
2931
2932
static int
2933
_snmp_build(u_char ** pkt, size_t * pkt_len, size_t * offset,
2934
            netsnmp_session * session, netsnmp_pdu *pdu)
2935
0
{
2936
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
2937
0
    u_char         *h0e = NULL;
2938
0
    size_t          start_offset = *offset;
2939
0
    long            version;
2940
0
    int             rc = 0;
2941
0
    size_t          length;
2942
0
#endif /* support for community based SNMP */
2943
2944
0
    u_char         *cp;
2945
2946
0
    if (NETSNMP_RUNTIME_PROTOCOL_SKIP(pdu->version)) {
2947
0
        DEBUGMSGTL(("snmp_send", "build packet (version 0x%02x disabled)\n",
2948
0
                    (u_int)pdu->version));
2949
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
2950
0
        return -1;
2951
0
    }
2952
2953
0
    session->s_snmp_errno = 0;
2954
0
    session->s_errno = 0;
2955
2956
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
2957
0
    if ((pdu->flags & UCD_MSG_FLAG_BULK_TOOBIG) ||
2958
0
        (0 == netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
2959
0
                                     NETSNMP_DS_LIB_REVERSE_ENCODE))) {
2960
0
        pdu->flags |= UCD_MSG_FLAG_FORWARD_ENCODE;
2961
0
    }
2962
0
#endif /* NETSNMP_USE_REVERSE_ASNENCODING */
2963
2964
0
    if (pdu->version == SNMP_VERSION_3) {
2965
0
        return snmpv3_build(pkt, pkt_len, offset, session, pdu);
2966
0
    }
2967
2968
0
    switch (pdu->command) {
2969
0
    case SNMP_MSG_RESPONSE:
2970
0
        netsnmp_assert(0 == (pdu->flags & UCD_MSG_FLAG_EXPECT_RESPONSE));
2971
0
#ifndef NETSNMP_NOTIFY_ONLY
2972
0
        NETSNMP_FALLTHROUGH;
2973
0
    case SNMP_MSG_GET:
2974
0
    case SNMP_MSG_GETNEXT:
2975
0
        NETSNMP_FALLTHROUGH;
2976
0
#endif /* ! NETSNMP_NOTIFY_ONLY */
2977
0
#ifndef NETSNMP_NO_WRITE_SUPPORT
2978
0
    case SNMP_MSG_SET:
2979
0
#endif /* !NETSNMP_NO_WRITE_SUPPORT */
2980
        /*
2981
         * all versions support these PDU types 
2982
         */
2983
        /*
2984
         * initialize defaulted PDU fields 
2985
         */
2986
2987
0
        if (pdu->errstat == SNMP_DEFAULT_ERRSTAT)
2988
0
            pdu->errstat = 0;
2989
0
        if (pdu->errindex == SNMP_DEFAULT_ERRINDEX)
2990
0
            pdu->errindex = 0;
2991
0
        break;
2992
2993
0
    case SNMP_MSG_TRAP2:
2994
0
        netsnmp_assert(0 == (pdu->flags & UCD_MSG_FLAG_EXPECT_RESPONSE));
2995
0
        NETSNMP_FALLTHROUGH;
2996
0
    case SNMP_MSG_INFORM:
2997
0
#ifndef NETSNMP_DISABLE_SNMPV1
2998
        /*
2999
         * not supported in SNMPv1 and SNMPsec 
3000
         */
3001
0
        if (pdu->version == SNMP_VERSION_1) {
3002
0
            session->s_snmp_errno = SNMPERR_V2_IN_V1;
3003
0
            return -1;
3004
0
        }
3005
0
#endif
3006
0
        if (pdu->errstat == SNMP_DEFAULT_ERRSTAT)
3007
0
            pdu->errstat = 0;
3008
0
        if (pdu->errindex == SNMP_DEFAULT_ERRINDEX)
3009
0
            pdu->errindex = 0;
3010
0
        break;
3011
3012
0
#ifndef NETSNMP_NOTIFY_ONLY
3013
0
    case SNMP_MSG_GETBULK:
3014
        /*
3015
         * not supported in SNMPv1 and SNMPsec 
3016
         */
3017
0
#ifndef NETSNMP_DISABLE_SNMPV1
3018
0
        if (pdu->version == SNMP_VERSION_1) {
3019
0
            session->s_snmp_errno = SNMPERR_V2_IN_V1;
3020
0
            return -1;
3021
0
        }
3022
0
#endif
3023
0
        if (pdu->max_repetitions < 0) {
3024
0
            session->s_snmp_errno = SNMPERR_BAD_REPETITIONS;
3025
0
            return -1;
3026
0
        }
3027
0
        if (pdu->non_repeaters < 0) {
3028
0
            session->s_snmp_errno = SNMPERR_BAD_REPEATERS;
3029
0
            return -1;
3030
0
        }
3031
0
        break;
3032
0
#endif /* ! NETSNMP_NOTIFY_ONLY */
3033
3034
0
    case SNMP_MSG_TRAP:
3035
        /*
3036
         * *only* supported in SNMPv1 and SNMPsec 
3037
         */
3038
0
#ifndef NETSNMP_DISABLE_SNMPV1
3039
0
        if (pdu->version != SNMP_VERSION_1) {
3040
0
            session->s_snmp_errno = SNMPERR_V1_IN_V2;
3041
0
            return -1;
3042
0
        }
3043
0
#endif
3044
        /*
3045
         * initialize defaulted Trap PDU fields 
3046
         */
3047
0
        pdu->reqid = 1;         /* give a bogus non-error reqid for traps */
3048
0
        if (pdu->enterprise_length == SNMP_DEFAULT_ENTERPRISE_LENGTH) {
3049
0
            pdu->enterprise = netsnmp_memdup(DEFAULT_ENTERPRISE,
3050
0
                                             sizeof(DEFAULT_ENTERPRISE));
3051
0
            if (pdu->enterprise == NULL) {
3052
0
                session->s_snmp_errno = SNMPERR_MALLOC;
3053
0
                return -1;
3054
0
            }
3055
0
            pdu->enterprise_length =
3056
0
                OID_LENGTH(DEFAULT_ENTERPRISE);
3057
0
        }
3058
0
        if (pdu->time == SNMP_DEFAULT_TIME)
3059
0
            pdu->time = DEFAULT_TIME;
3060
        /*
3061
         * don't expect a response 
3062
         */
3063
0
        pdu->flags &= (~UCD_MSG_FLAG_EXPECT_RESPONSE);
3064
0
        break;
3065
3066
0
    case SNMP_MSG_REPORT:      /* SNMPv3 only */
3067
0
    default:
3068
0
        session->s_snmp_errno = SNMPERR_UNKNOWN_PDU;
3069
0
        return -1;
3070
0
    }
3071
3072
    /*
3073
     * save length 
3074
     */
3075
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
3076
0
    length = *pkt_len;
3077
0
#endif
3078
3079
    /*
3080
     * setup administrative fields based on version 
3081
     */
3082
    /*
3083
     * build the message wrapper and all the administrative fields
3084
     * upto the PDU sequence
3085
     * (note that actual length of message will be inserted later) 
3086
     */
3087
0
    switch (pdu->version) {
3088
0
#ifndef NETSNMP_DISABLE_SNMPV1
3089
0
    case SNMP_VERSION_1:
3090
0
#endif
3091
0
#ifndef NETSNMP_DISABLE_SNMPV2C
3092
0
    case SNMP_VERSION_2c:
3093
0
#endif
3094
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
3095
#ifdef NETSNMP_NO_ZEROLENGTH_COMMUNITY
3096
        if (pdu->community_len == 0) {
3097
            if (session->community_len == 0) {
3098
                session->s_snmp_errno = SNMPERR_BAD_COMMUNITY;
3099
                return -1;
3100
            }
3101
            pdu->community = netsnmp_memdup(session->community,
3102
                                            session->community_len);
3103
            if (pdu->community == NULL) {
3104
                session->s_snmp_errno = SNMPERR_MALLOC;
3105
                return -1;
3106
            }
3107
            pdu->community_len = session->community_len;
3108
        }
3109
#else                           /* !NETSNMP_NO_ZEROLENGTH_COMMUNITY */
3110
0
        if (pdu->community_len == 0 && pdu->command != SNMP_MSG_RESPONSE) {
3111
            /*
3112
             * copy session community exactly to pdu community 
3113
             */
3114
0
            if (0 == session->community_len) {
3115
0
                SNMP_FREE(pdu->community);
3116
0
            } else if (pdu->community_len == session->community_len) {
3117
0
                memmove(pdu->community,
3118
0
                        session->community, session->community_len);
3119
0
            } else {
3120
0
                SNMP_FREE(pdu->community);
3121
0
                pdu->community = netsnmp_memdup(session->community,
3122
0
                                                session->community_len);
3123
0
                if (pdu->community == NULL) {
3124
0
                    session->s_snmp_errno = SNMPERR_MALLOC;
3125
0
                    return -1;
3126
0
                }
3127
0
            }
3128
0
            pdu->community_len = session->community_len;
3129
0
        }
3130
0
#endif                          /* !NETSNMP_NO_ZEROLENGTH_COMMUNITY */
3131
3132
0
        DEBUGMSGTL(("snmp_send", "Building SNMPv%ld message...\n",
3133
0
                    (1 + pdu->version)));
3134
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
3135
0
        if (!(pdu->flags & UCD_MSG_FLAG_FORWARD_ENCODE)) {
3136
0
            DEBUGPRINTPDUTYPE("send", pdu->command);
3137
0
            rc = snmp_pdu_realloc_rbuild(pkt, pkt_len, offset, pdu);
3138
0
            if (rc == 0) {
3139
0
                return -1;
3140
0
            }
3141
3142
0
            DEBUGDUMPHEADER("send", "Community String");
3143
0
            rc = asn_realloc_rbuild_string(pkt, pkt_len, offset, 1,
3144
0
                                           (u_char) (ASN_UNIVERSAL |
3145
0
                                                     ASN_PRIMITIVE |
3146
0
                                                     ASN_OCTET_STR),
3147
0
                                           pdu->community,
3148
0
                                           pdu->community_len);
3149
0
            DEBUGINDENTLESS();
3150
0
            if (rc == 0) {
3151
0
                return -1;
3152
0
            }
3153
3154
3155
            /*
3156
             * Store the version field.  
3157
             */
3158
0
            DEBUGDUMPHEADER("send", "SNMP Version Number");
3159
3160
0
            version = pdu->version;
3161
0
            rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
3162
0
                                        (u_char) (ASN_UNIVERSAL |
3163
0
                                                  ASN_PRIMITIVE |
3164
0
                                                  ASN_INTEGER),
3165
0
                                        (long *) &version,
3166
0
                                        sizeof(version));
3167
0
            DEBUGINDENTLESS();
3168
0
            if (rc == 0) {
3169
0
                return -1;
3170
0
            }
3171
3172
            /*
3173
             * Build the final sequence.  
3174
             */
3175
0
#ifndef NETSNMP_DISABLE_SNMPV1
3176
0
            if (pdu->version == SNMP_VERSION_1) {
3177
0
                DEBUGDUMPSECTION("send", "SNMPv1 Message");
3178
0
            } else {
3179
0
#endif
3180
0
                DEBUGDUMPSECTION("send", "SNMPv2c Message");
3181
0
#ifndef NETSNMP_DISABLE_SNMPV1
3182
0
            }
3183
0
#endif
3184
0
            rc = asn_realloc_rbuild_sequence(pkt, pkt_len, offset, 1,
3185
0
                                             (u_char) (ASN_SEQUENCE |
3186
0
                                                       ASN_CONSTRUCTOR),
3187
0
                                             *offset - start_offset);
3188
0
            DEBUGINDENTLESS();
3189
3190
0
            if (rc == 0) {
3191
0
                return -1;
3192
0
            }
3193
0
            return 0;
3194
0
        } else {
3195
3196
0
#endif                          /* NETSNMP_USE_REVERSE_ASNENCODING */
3197
            /*
3198
             * Save current location and build SEQUENCE tag and length
3199
             * placeholder for SNMP message sequence
3200
             * (actual length will be inserted later) 
3201
             */
3202
0
            cp = asn_build_sequence(*pkt, pkt_len,
3203
0
                                    (u_char) (ASN_SEQUENCE |
3204
0
                                              ASN_CONSTRUCTOR), 0);
3205
0
            if (cp == NULL) {
3206
0
                return -1;
3207
0
            }
3208
0
            h0e = cp;
3209
3210
0
#ifndef NETSNMP_DISABLE_SNMPV1
3211
0
            if (pdu->version == SNMP_VERSION_1) {
3212
0
                DEBUGDUMPSECTION("send", "SNMPv1 Message");
3213
0
            } else {
3214
0
#endif
3215
0
                DEBUGDUMPSECTION("send", "SNMPv2c Message");
3216
0
#ifndef NETSNMP_DISABLE_SNMPV1
3217
0
            }
3218
0
#endif
3219
3220
            /*
3221
             * store the version field 
3222
             */
3223
0
            DEBUGDUMPHEADER("send", "SNMP Version Number");
3224
3225
0
            version = pdu->version;
3226
0
            cp = asn_build_int(cp, pkt_len,
3227
0
                               (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3228
0
                                         ASN_INTEGER), (long *) &version,
3229
0
                               sizeof(version));
3230
0
            DEBUGINDENTLESS();
3231
0
            if (cp == NULL)
3232
0
                return -1;
3233
3234
            /*
3235
             * store the community string 
3236
             */
3237
0
            DEBUGDUMPHEADER("send", "Community String");
3238
0
            cp = asn_build_string(cp, pkt_len,
3239
0
                                  (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3240
0
                                            ASN_OCTET_STR), pdu->community,
3241
0
                                  pdu->community_len);
3242
0
            DEBUGINDENTLESS();
3243
0
            if (cp == NULL)
3244
0
                return -1;
3245
0
            break;
3246
3247
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
3248
0
        }
3249
0
#endif                          /* NETSNMP_USE_REVERSE_ASNENCODING */
3250
0
        break;
3251
0
#endif /* support for community based SNMP */
3252
0
    case SNMP_VERSION_2p:
3253
0
    case SNMP_VERSION_sec:
3254
0
    case SNMP_VERSION_2u:
3255
0
    case SNMP_VERSION_2star:
3256
0
    default:
3257
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
3258
0
        return -1;
3259
0
    }
3260
3261
0
    DEBUGPRINTPDUTYPE("send", pdu->command);
3262
0
    cp = snmp_pdu_build(pdu, cp, pkt_len);
3263
0
    DEBUGINDENTADD(-4);         /* return from entire v1/v2c message */
3264
0
    if (cp == NULL)
3265
0
        return -1;
3266
3267
    /*
3268
     * insert the actual length of the message sequence 
3269
     */
3270
0
    switch (pdu->version) {
3271
0
#ifndef NETSNMP_DISABLE_SNMPV1
3272
0
    case SNMP_VERSION_1:
3273
0
#endif
3274
0
#ifndef NETSNMP_DISABLE_SNMPV2C
3275
0
    case SNMP_VERSION_2c:
3276
0
#endif
3277
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
3278
0
        asn_build_sequence(*pkt, &length,
3279
0
                           (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR),
3280
0
                           cp - h0e);
3281
0
        break;
3282
0
#endif /* support for community based SNMP */
3283
3284
0
    case SNMP_VERSION_2p:
3285
0
    case SNMP_VERSION_sec:
3286
0
    case SNMP_VERSION_2u:
3287
0
    case SNMP_VERSION_2star:
3288
0
    default:
3289
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
3290
0
        return -1;
3291
0
    }
3292
0
    *pkt_len = cp - *pkt;
3293
0
    return 0;
3294
0
}
3295
3296
/**
3297
 * Serialize a PDU into ASN format.
3298
 * @param pkt     [out] Serialized PDU.
3299
 * @param pkt_len [out] Size of pkt.
3300
 * @param offset  [out] Number of bytes written into *pkt.
3301
 * @param pss     [in]  Session pointer.
3302
 * @param pdu     [in]  PDU to serialize.
3303
 *
3304
 * @returns 0 upon success; -1 upon failure.
3305
 */
3306
int
3307
snmp_build(u_char ** pkt, size_t * pkt_len, size_t * offset,
3308
           netsnmp_session * pss, netsnmp_pdu *pdu)
3309
0
{
3310
0
    int             rc;
3311
3312
0
    rc = _snmp_build(pkt, pkt_len, offset, pss, pdu);
3313
0
    if (rc) {
3314
0
        if (!pss->s_snmp_errno) {
3315
0
            snmp_log(LOG_ERR, "snmp_build: unknown failure\n");
3316
0
            pss->s_snmp_errno = SNMPERR_BAD_ASN1_BUILD;
3317
0
        }
3318
0
        SET_SNMP_ERROR(pss->s_snmp_errno);
3319
0
        rc = -1;
3320
0
    }
3321
0
    return rc;
3322
0
}
3323
3324
/*
3325
 * on error, returns NULL (likely an encoding problem). 
3326
 */
3327
u_char         *
3328
snmp_pdu_build(const netsnmp_pdu *pdu, u_char * cp, size_t * out_length)
3329
0
{
3330
0
    u_char         *h1, *h1e, *h2, *h2e, *save_ptr;
3331
0
    netsnmp_variable_list *vp, *save_vp = NULL;
3332
0
    size_t          length, save_length;
3333
3334
0
    length = *out_length;
3335
    /*
3336
     * Save current location and build PDU tag and length placeholder
3337
     * (actual length will be inserted later) 
3338
     */
3339
0
    h1 = cp;
3340
0
    cp = asn_build_sequence(cp, out_length, (u_char) pdu->command, 0);
3341
0
    if (cp == NULL)
3342
0
        return NULL;
3343
0
    h1e = cp;
3344
3345
    /*
3346
     * store fields in the PDU preceding the variable-bindings sequence
3347
     */
3348
0
    if (pdu->command != SNMP_MSG_TRAP) {
3349
        /*
3350
         * PDU is not an SNMPv1 trap 
3351
         */
3352
3353
0
        DEBUGDUMPHEADER("send", "request_id");
3354
        /*
3355
         * request id 
3356
         */
3357
0
        cp = asn_build_int(cp, out_length,
3358
0
                           (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3359
0
                                     ASN_INTEGER), &pdu->reqid,
3360
0
                           sizeof(pdu->reqid));
3361
0
        DEBUGINDENTLESS();
3362
0
        if (cp == NULL)
3363
0
            return NULL;
3364
3365
        /*
3366
         * error status (getbulk non-repeaters) 
3367
         */
3368
0
        DEBUGDUMPHEADER("send", "error status");
3369
0
        cp = asn_build_int(cp, out_length,
3370
0
                           (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3371
0
                                     ASN_INTEGER), &pdu->errstat,
3372
0
                           sizeof(pdu->errstat));
3373
0
        DEBUGINDENTLESS();
3374
0
        if (cp == NULL)
3375
0
            return NULL;
3376
3377
        /*
3378
         * error index (getbulk max-repetitions) 
3379
         */
3380
0
        DEBUGDUMPHEADER("send", "error index");
3381
0
        cp = asn_build_int(cp, out_length,
3382
0
                           (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3383
0
                                     ASN_INTEGER), &pdu->errindex,
3384
0
                           sizeof(pdu->errindex));
3385
0
        DEBUGINDENTLESS();
3386
0
        if (cp == NULL)
3387
0
            return NULL;
3388
0
    } else {
3389
        /*
3390
         * an SNMPv1 trap PDU 
3391
         */
3392
3393
        /*
3394
         * enterprise 
3395
         */
3396
0
        DEBUGDUMPHEADER("send", "enterprise OBJID");
3397
0
        cp = asn_build_objid(cp, out_length,
3398
0
                             (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3399
0
                                       ASN_OBJECT_ID),
3400
0
                             pdu->enterprise, pdu->enterprise_length);
3401
0
        DEBUGINDENTLESS();
3402
0
        if (cp == NULL)
3403
0
            return NULL;
3404
3405
        /*
3406
         * agent-addr 
3407
         */
3408
0
        DEBUGDUMPHEADER("send", "agent Address");
3409
0
        cp = asn_build_string(cp, out_length,
3410
0
                              (u_char) (ASN_IPADDRESS | ASN_PRIMITIVE),
3411
0
                              (const u_char *) pdu->agent_addr, 4);
3412
0
        DEBUGINDENTLESS();
3413
0
        if (cp == NULL)
3414
0
            return NULL;
3415
3416
        /*
3417
         * generic trap 
3418
         */
3419
0
        DEBUGDUMPHEADER("send", "generic trap number");
3420
0
        cp = asn_build_int(cp, out_length,
3421
0
                           (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3422
0
                                     ASN_INTEGER),
3423
0
                           (const long *) &pdu->trap_type,
3424
0
                           sizeof(pdu->trap_type));
3425
0
        DEBUGINDENTLESS();
3426
0
        if (cp == NULL)
3427
0
            return NULL;
3428
3429
        /*
3430
         * specific trap 
3431
         */
3432
0
        DEBUGDUMPHEADER("send", "specific trap number");
3433
0
        cp = asn_build_int(cp, out_length,
3434
0
                           (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE |
3435
0
                                     ASN_INTEGER),
3436
0
                           (const long *) &pdu->specific_type,
3437
0
                           sizeof(pdu->specific_type));
3438
0
        DEBUGINDENTLESS();
3439
0
        if (cp == NULL)
3440
0
            return NULL;
3441
3442
        /*
3443
         * timestamp  
3444
         */
3445
0
        DEBUGDUMPHEADER("send", "timestamp");
3446
0
        cp = asn_build_unsigned_int(cp, out_length,
3447
0
                                    (u_char) (ASN_TIMETICKS |
3448
0
                                              ASN_PRIMITIVE), &pdu->time,
3449
0
                                    sizeof(pdu->time));
3450
0
        DEBUGINDENTLESS();
3451
0
        if (cp == NULL)
3452
0
            return NULL;
3453
0
    }
3454
3455
    /*
3456
     * Save current location and build SEQUENCE tag and length placeholder
3457
     * for variable-bindings sequence
3458
     * (actual length will be inserted later) 
3459
     */
3460
0
    h2 = cp;
3461
0
    cp = asn_build_sequence(cp, out_length,
3462
0
                            (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR), 0);
3463
0
    if (cp == NULL)
3464
0
        return NULL;
3465
0
    h2e = cp;
3466
3467
    /*
3468
     * Store variable-bindings 
3469
     */
3470
0
    DEBUGDUMPSECTION("send", "VarBindList");
3471
0
    for (vp = pdu->variables; vp; vp = vp->next_variable) {
3472
        /*
3473
         * if estimated getbulk response size exceeded packet max size,
3474
         * processing was stopped before bulk cache was filled and type
3475
         * was set to ASN_PRIV_STOP, indicating that the rest of the varbinds
3476
         * in the cache are empty and we can stop encoding them.
3477
         */
3478
0
        if (ASN_PRIV_STOP == vp->type)
3479
0
            break;
3480
3481
        /*
3482
         * save current ptr and length so that if we exceed the packet length
3483
         * encoding this varbind and this is a bulk response, we can drop
3484
         * the failed varbind (and any that follow it) and continue encoding
3485
         * the (shorter) bulk response.
3486
         */
3487
0
        save_ptr = cp;
3488
0
        save_length = *out_length;
3489
3490
0
        DEBUGDUMPSECTION("send", "VarBind");
3491
0
        cp = snmp_build_var_op(cp, vp->name, &vp->name_length, vp->type,
3492
0
                               vp->val_len, vp->val.string, out_length);
3493
0
        DEBUGINDENTLESS();
3494
0
        if (cp == NULL) {
3495
0
            if (save_vp && (pdu->flags & UCD_MSG_FLAG_BULK_TOOBIG)) {
3496
0
                DEBUGDUMPSECTION("send",
3497
0
                                 "VarBind would exceed packet size; dropped");
3498
0
                cp = save_ptr;
3499
0
                *out_length = save_length;
3500
0
                break;
3501
0
            } else
3502
0
                return NULL;
3503
0
        }
3504
0
        save_vp = vp;
3505
0
    }
3506
0
    DEBUGINDENTLESS();
3507
3508
    /** did we run out of room? (should only happen for bulk responses) */
3509
0
    if (vp && save_vp) {
3510
0
        save_vp->next_variable = NULL; /* truncate variable list */
3511
        /** count remaining varbinds in list, then free them */
3512
0
        save_vp = vp;
3513
0
        for(save_length = 0; save_vp; save_vp = save_vp->next_variable)
3514
0
            ++save_length;
3515
0
        DEBUGMSGTL(("send", "trimmed %" NETSNMP_PRIz "d variables\n", save_length));
3516
0
        snmp_free_varbind(vp);
3517
0
    }
3518
3519
    /*
3520
     * insert actual length of variable-bindings sequence 
3521
     */
3522
0
    asn_build_sequence(h2, &length,
3523
0
                       (u_char) (ASN_SEQUENCE | ASN_CONSTRUCTOR),
3524
0
                       cp - h2e);
3525
3526
    /*
3527
     * insert actual length of PDU sequence 
3528
     */
3529
0
    asn_build_sequence(h1, &length, (u_char) pdu->command, cp - h1e);
3530
3531
0
    return cp;
3532
0
}
3533
3534
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
3535
/*
3536
 * On error, returns 0 (likely an encoding problem).  
3537
 */
3538
int
3539
snmp_pdu_realloc_rbuild(u_char ** pkt, size_t * pkt_len, size_t * offset,
3540
                        const netsnmp_pdu *pdu)
3541
0
{
3542
0
#ifndef VPCACHE_SIZE
3543
0
#define VPCACHE_SIZE 50
3544
0
#endif
3545
0
    netsnmp_variable_list *vpcache[VPCACHE_SIZE];
3546
0
    netsnmp_variable_list *vp, *tmpvp;
3547
0
    size_t          start_offset = *offset;
3548
0
    int             i, wrapped = 0, notdone, final, rc = 0;
3549
3550
0
    DEBUGMSGTL(("snmp_pdu_realloc_rbuild", "starting\n"));
3551
0
    for (vp = pdu->variables, i = VPCACHE_SIZE - 1; vp;
3552
0
         vp = vp->next_variable, i--) {
3553
        /*
3554
         * if estimated getbulk response size exceeded packet max size,
3555
         * processing was stopped before bulk cache was filled and type
3556
         * was set to ASN_PRIV_STOP, indicating that the rest of the varbinds
3557
         * in the cache are empty and we can stop encoding them.
3558
         */
3559
0
        if (ASN_PRIV_STOP == vp->type)
3560
0
            break;
3561
0
        if (i < 0) {
3562
0
            wrapped = notdone = 1;
3563
0
            i = VPCACHE_SIZE - 1;
3564
0
            DEBUGMSGTL(("snmp_pdu_realloc_rbuild", "wrapped\n"));
3565
0
        }
3566
0
        vpcache[i] = vp;
3567
0
    }
3568
0
    final = i + 1;
3569
3570
0
    do {
3571
0
        for (i = final; i < VPCACHE_SIZE; i++) {
3572
0
            vp = vpcache[i];
3573
0
            DEBUGDUMPSECTION("send", "VarBind");
3574
0
            rc = snmp_realloc_rbuild_var_op(pkt, pkt_len, offset, 1,
3575
0
                                            vp->name, &vp->name_length,
3576
0
                                            vp->type,
3577
0
                                            (u_char *) vp->val.string,
3578
0
                                            vp->val_len);
3579
0
            DEBUGINDENTLESS();
3580
0
            if (rc == 0) {
3581
0
                return 0;
3582
0
            }
3583
0
        }
3584
3585
0
        DEBUGINDENTLESS();
3586
0
        if (wrapped) {
3587
0
            notdone = 1;
3588
0
            for (i = 0; i < final; i++) {
3589
0
                vp = vpcache[i];
3590
0
                DEBUGDUMPSECTION("send", "VarBind");
3591
0
                rc = snmp_realloc_rbuild_var_op(pkt, pkt_len, offset, 1,
3592
0
                                                vp->name, &vp->name_length,
3593
0
                                                vp->type,
3594
0
                                                (u_char *) vp->val.string,
3595
0
                                                vp->val_len);
3596
0
                DEBUGINDENTLESS();
3597
0
                if (rc == 0) {
3598
0
                    return 0;
3599
0
                }
3600
0
            }
3601
3602
0
            if (final == 0) {
3603
0
                tmpvp = vpcache[VPCACHE_SIZE - 1];
3604
0
            } else {
3605
0
                tmpvp = vpcache[final - 1];
3606
0
            }
3607
0
            wrapped = 0;
3608
3609
0
            for (vp = pdu->variables, i = VPCACHE_SIZE - 1;
3610
0
                 vp && vp != tmpvp; vp = vp->next_variable, i--) {
3611
0
                if (i < 0) {
3612
0
                    wrapped = 1;
3613
0
                    i = VPCACHE_SIZE - 1;
3614
0
                    DEBUGMSGTL(("snmp_pdu_realloc_rbuild", "wrapped\n"));
3615
0
                }
3616
0
                vpcache[i] = vp;
3617
0
            }
3618
0
            final = i + 1;
3619
0
        } else {
3620
0
            notdone = 0;
3621
0
        }
3622
0
    } while (notdone);
3623
3624
    /*
3625
     * Save current location and build SEQUENCE tag and length placeholder for
3626
     * variable-bindings sequence (actual length will be inserted later).  
3627
     */
3628
3629
0
    rc = asn_realloc_rbuild_sequence(pkt, pkt_len, offset, 1,
3630
0
                                     (u_char) (ASN_SEQUENCE |
3631
0
                                               ASN_CONSTRUCTOR),
3632
0
                                     *offset - start_offset);
3633
3634
    /*
3635
     * Store fields in the PDU preceding the variable-bindings sequence.
3636
     */
3637
0
    if (pdu->command != SNMP_MSG_TRAP) {
3638
        /*
3639
         * Error index (getbulk max-repetitions).  
3640
         */
3641
0
        DEBUGDUMPHEADER("send", "error index");
3642
0
        rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
3643
0
                                    (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
3644
0
                                              | ASN_INTEGER),
3645
0
                                    &pdu->errindex, sizeof(pdu->errindex));
3646
0
        DEBUGINDENTLESS();
3647
0
        if (rc == 0) {
3648
0
            return 0;
3649
0
        }
3650
3651
        /*
3652
         * Error status (getbulk non-repeaters).  
3653
         */
3654
0
        DEBUGDUMPHEADER("send", "error status");
3655
0
        rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
3656
0
                                    (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
3657
0
                                              | ASN_INTEGER),
3658
0
                                    &pdu->errstat, sizeof(pdu->errstat));
3659
0
        DEBUGINDENTLESS();
3660
0
        if (rc == 0) {
3661
0
            return 0;
3662
0
        }
3663
3664
        /*
3665
         * Request ID.  
3666
         */
3667
0
        DEBUGDUMPHEADER("send", "request_id");
3668
0
        rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
3669
0
                                    (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
3670
0
                                              | ASN_INTEGER), &pdu->reqid,
3671
0
                                    sizeof(pdu->reqid));
3672
0
        DEBUGINDENTLESS();
3673
0
        if (rc == 0) {
3674
0
            return 0;
3675
0
        }
3676
0
    } else {
3677
        /*
3678
         * An SNMPv1 trap PDU.  
3679
         */
3680
3681
        /*
3682
         * Timestamp.  
3683
         */
3684
0
        DEBUGDUMPHEADER("send", "timestamp");
3685
0
        rc = asn_realloc_rbuild_unsigned_int(pkt, pkt_len, offset, 1,
3686
0
                                             (u_char) (ASN_TIMETICKS |
3687
0
                                                       ASN_PRIMITIVE),
3688
0
                                             &pdu->time,
3689
0
                                             sizeof(pdu->time));
3690
0
        DEBUGINDENTLESS();
3691
0
        if (rc == 0) {
3692
0
            return 0;
3693
0
        }
3694
3695
        /*
3696
         * Specific trap.  
3697
         */
3698
0
        DEBUGDUMPHEADER("send", "specific trap number");
3699
0
        rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
3700
0
                                    (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
3701
0
                                              | ASN_INTEGER),
3702
0
                                    (const long *) &pdu->specific_type,
3703
0
                                    sizeof(pdu->specific_type));
3704
0
        DEBUGINDENTLESS();
3705
0
        if (rc == 0) {
3706
0
            return 0;
3707
0
        }
3708
3709
        /*
3710
         * Generic trap.  
3711
         */
3712
0
        DEBUGDUMPHEADER("send", "generic trap number");
3713
0
        rc = asn_realloc_rbuild_int(pkt, pkt_len, offset, 1,
3714
0
                                    (u_char) (ASN_UNIVERSAL | ASN_PRIMITIVE
3715
0
                                              | ASN_INTEGER),
3716
0
                                    (const long *) &pdu->trap_type,
3717
0
                                    sizeof(pdu->trap_type));
3718
0
        DEBUGINDENTLESS();
3719
0
        if (rc == 0) {
3720
0
            return 0;
3721
0
        }
3722
3723
        /*
3724
         * Agent-addr.  
3725
         */
3726
0
        DEBUGDUMPHEADER("send", "agent Address");
3727
0
        rc = asn_realloc_rbuild_string(pkt, pkt_len, offset, 1,
3728
0
                                       (u_char) (ASN_IPADDRESS |
3729
0
                                                 ASN_PRIMITIVE),
3730
0
                                       (const u_char *) pdu->agent_addr, 4);
3731
0
        DEBUGINDENTLESS();
3732
0
        if (rc == 0) {
3733
0
            return 0;
3734
0
        }
3735
3736
        /*
3737
         * Enterprise.  
3738
         */
3739
0
        DEBUGDUMPHEADER("send", "enterprise OBJID");
3740
0
        rc = asn_realloc_rbuild_objid(pkt, pkt_len, offset, 1,
3741
0
                                      (u_char) (ASN_UNIVERSAL |
3742
0
                                                ASN_PRIMITIVE |
3743
0
                                                ASN_OBJECT_ID),
3744
0
                                      (oid *) pdu->enterprise,
3745
0
                                      pdu->enterprise_length);
3746
0
        DEBUGINDENTLESS();
3747
0
        if (rc == 0) {
3748
0
            return 0;
3749
0
        }
3750
0
    }
3751
3752
    /*
3753
     * Build the PDU sequence.  
3754
     */
3755
0
    rc = asn_realloc_rbuild_sequence(pkt, pkt_len, offset, 1,
3756
0
                                     (u_char) pdu->command,
3757
0
                                     *offset - start_offset);
3758
0
    return rc;
3759
0
}
3760
#endif                          /* NETSNMP_USE_REVERSE_ASNENCODING */
3761
3762
/*
3763
 * Parses the packet received to determine version, either directly
3764
 * from packets version field or inferred from ASN.1 construct.
3765
 */
3766
static int
3767
snmp_parse_version(u_char * data, size_t length)
3768
0
{
3769
0
    u_char          type;
3770
0
    long            version = SNMPERR_BAD_VERSION;
3771
3772
0
    data = asn_parse_sequence(data, &length, &type,
3773
0
                              (ASN_SEQUENCE | ASN_CONSTRUCTOR), "version");
3774
0
    if (data) {
3775
0
        DEBUGDUMPHEADER("recv", "SNMP Version");
3776
0
        data =
3777
0
            asn_parse_int(data, &length, &type, &version, sizeof(version));
3778
0
        DEBUGINDENTLESS();
3779
0
        if (!data || type != ASN_INTEGER) {
3780
0
            return SNMPERR_BAD_VERSION;
3781
0
        }
3782
0
    }
3783
0
    return version;
3784
0
}
3785
3786
3787
int
3788
snmpv3_parse(netsnmp_pdu *pdu,
3789
             u_char * data,
3790
             size_t * length,
3791
             u_char ** after_header, netsnmp_session * sess)
3792
0
{
3793
0
    u_char          type, msg_flags;
3794
0
    long            ver, msg_sec_model;
3795
0
    size_t          max_size_response;
3796
0
    u_char          tmp_buf[SNMP_MAX_MSG_SIZE];
3797
0
    size_t          tmp_buf_len;
3798
0
    u_char          pdu_buf[SNMP_MAX_MSG_SIZE];
3799
0
    u_char         *mallocbuf = NULL;
3800
0
    size_t          pdu_buf_len = SNMP_MAX_MSG_SIZE;
3801
0
    u_char         *sec_params;
3802
0
    u_char         *msg_data;
3803
0
    u_char         *cp;
3804
0
    size_t          asn_len, msg_len;
3805
0
    int             ret, ret_val;
3806
0
    struct snmp_secmod_def *sptr;
3807
3808
3809
0
    msg_data = data;
3810
0
    msg_len = *length;
3811
3812
3813
    /*
3814
     * message is an ASN.1 SEQUENCE  
3815
     */
3816
0
    DEBUGDUMPSECTION("recv", "SNMPv3 Message");
3817
0
    data = asn_parse_sequence(data, length, &type,
3818
0
                              (ASN_SEQUENCE | ASN_CONSTRUCTOR), "message");
3819
0
    if (data == NULL) {
3820
        /*
3821
         * error msg detail is set 
3822
         */
3823
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3824
0
        DEBUGINDENTLESS();
3825
0
        return SNMPERR_ASN_PARSE_ERR;
3826
0
    }
3827
3828
    /*
3829
     * parse msgVersion  
3830
     */
3831
0
    DEBUGDUMPHEADER("recv", "SNMP Version Number");
3832
0
    data = asn_parse_int(data, length, &type, &ver, sizeof(ver));
3833
0
    DEBUGINDENTLESS();
3834
0
    if (data == NULL) {
3835
0
        ERROR_MSG("bad parse of version");
3836
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3837
0
        DEBUGINDENTLESS();
3838
0
        return SNMPERR_ASN_PARSE_ERR;
3839
0
    }
3840
0
    pdu->version = ver;
3841
3842
    /*
3843
     * parse msgGlobalData sequence  
3844
     */
3845
0
    cp = data;
3846
0
    asn_len = *length;
3847
0
    DEBUGDUMPSECTION("recv", "msgGlobalData");
3848
0
    data = asn_parse_sequence(data, &asn_len, &type,
3849
0
                              (ASN_SEQUENCE | ASN_CONSTRUCTOR),
3850
0
                              "msgGlobalData");
3851
0
    if (data == NULL) {
3852
        /*
3853
         * error msg detail is set 
3854
         */
3855
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3856
0
        DEBUGINDENTADD(-4);
3857
0
        return SNMPERR_ASN_PARSE_ERR;
3858
0
    }
3859
0
    *length -= data - cp;       /* subtract off the length of the header */
3860
3861
    /*
3862
     * msgID 
3863
     */
3864
0
    DEBUGDUMPHEADER("recv", "msgID");
3865
0
    data =
3866
0
        asn_parse_int(data, length, &type, &pdu->msgid,
3867
0
                      sizeof(pdu->msgid));
3868
0
    DEBUGINDENTLESS();
3869
0
    if (data == NULL || type != ASN_INTEGER) {
3870
0
        ERROR_MSG("error parsing msgID");
3871
0
        DEBUGINDENTADD(-4);
3872
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3873
0
        return SNMPERR_ASN_PARSE_ERR;
3874
0
    }
3875
3876
    /*
3877
     * Check the msgID we received is a legal value.  If not, then increment
3878
     * snmpInASNParseErrs and return the appropriate error (see RFC 2572,
3879
     * para. 7.2, section 2 -- note that a bad msgID means that the received
3880
     * message is NOT a serialization of an SNMPv3Message, since the msgID
3881
     * field is out of bounds).  
3882
     */
3883
3884
0
    if (pdu->msgid < 0 || pdu->msgid > SNMP_MAX_PACKET_LEN) {
3885
0
        snmp_log(LOG_ERR, "Received bad msgID (%ld %s %s).\n", pdu->msgid,
3886
0
                 (pdu->msgid < 0) ? "<" : ">",
3887
0
                 (pdu->msgid < 0) ? "0" : "2^31 - 1");
3888
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3889
0
        DEBUGINDENTADD(-4);
3890
0
        return SNMPERR_ASN_PARSE_ERR;
3891
0
    }
3892
3893
    /*
3894
     * msgMaxSize 
3895
     */
3896
0
    DEBUGDUMPHEADER("recv:msgMaxSize", "msgMaxSize");
3897
0
    data = asn_parse_int(data, length, &type, &pdu->msgMaxSize,
3898
0
                         sizeof(pdu->msgMaxSize));
3899
0
    DEBUGINDENTLESS();
3900
0
    if (data == NULL || type != ASN_INTEGER) {
3901
0
        ERROR_MSG("error parsing msgMaxSize");
3902
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3903
0
        DEBUGINDENTADD(-4);
3904
0
        return SNMPERR_ASN_PARSE_ERR;
3905
0
    }
3906
3907
    /*
3908
     * Check the msgMaxSize we received is a legal value.  If not, then
3909
     * increment snmpInASNParseErrs and return the appropriate error (see RFC
3910
     * 2572, para. 7.2, section 2 -- note that a bad msgMaxSize means that the
3911
     * received message is NOT a serialization of an SNMPv3Message, since the
3912
     * msgMaxSize field is out of bounds).
3913
     */
3914
3915
0
    if (pdu->msgMaxSize < SNMP_MIN_MAX_LEN) {
3916
0
        snmp_log(LOG_ERR, "Received bad msgMaxSize (%lu < 484).\n",
3917
0
                 pdu->msgMaxSize);
3918
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3919
0
        DEBUGINDENTADD(-4);
3920
0
        return SNMPERR_ASN_PARSE_ERR;
3921
0
    } else if (pdu->msgMaxSize > SNMP_MAX_PACKET_LEN) {
3922
0
        snmp_log(LOG_ERR, "Received bad msgMaxSize (%lu > 2^31 - 1).\n",
3923
0
                 pdu->msgMaxSize);
3924
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3925
0
        DEBUGINDENTADD(-4);
3926
0
        return SNMPERR_ASN_PARSE_ERR;
3927
0
    } else {
3928
0
        DEBUGMSGTL(("snmpv3_parse:msgMaxSize", "msgMaxSize %lu received\n",
3929
0
                    pdu->msgMaxSize));
3930
        /** don't increase max msg size if we've already got one */
3931
0
        if (sess->sndMsgMaxSize < pdu->msgMaxSize) {
3932
0
            DEBUGMSGTL(("snmpv3_parse:msgMaxSize",
3933
0
                        "msgMaxSize %" NETSNMP_PRIz "d greater than session max %ld; reducing\n",
3934
0
                        sess->sndMsgMaxSize, pdu->msgMaxSize));
3935
0
            pdu->msgMaxSize = sess->sndMsgMaxSize;
3936
0
        }
3937
0
    }
3938
3939
    /*
3940
     * msgFlags 
3941
     */
3942
0
    tmp_buf_len = SNMP_MAX_MSG_SIZE;
3943
0
    DEBUGDUMPHEADER("recv", "msgFlags");
3944
0
    data = asn_parse_string(data, length, &type, tmp_buf, &tmp_buf_len);
3945
0
    DEBUGINDENTLESS();
3946
0
    if (data == NULL || type != ASN_OCTET_STR || tmp_buf_len != 1) {
3947
0
        ERROR_MSG("error parsing msgFlags");
3948
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3949
0
        DEBUGINDENTADD(-4);
3950
0
        return SNMPERR_ASN_PARSE_ERR;
3951
0
    }
3952
0
    msg_flags = *tmp_buf;
3953
0
    if (msg_flags & SNMP_MSG_FLAG_RPRT_BIT)
3954
0
        pdu->flags |= SNMP_MSG_FLAG_RPRT_BIT;
3955
0
    else
3956
0
        pdu->flags &= (~SNMP_MSG_FLAG_RPRT_BIT);
3957
3958
    /*
3959
     * msgSecurityModel 
3960
     */
3961
0
    DEBUGDUMPHEADER("recv", "msgSecurityModel");
3962
0
    data = asn_parse_int(data, length, &type, &msg_sec_model,
3963
0
                         sizeof(msg_sec_model));
3964
0
    DEBUGINDENTADD(-4);         /* return from global data indent */
3965
0
    if (data == NULL || type != ASN_INTEGER ||
3966
0
        msg_sec_model < 1 || msg_sec_model > 0x7fffffff) {
3967
0
        ERROR_MSG("error parsing msgSecurityModel");
3968
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
3969
0
        DEBUGINDENTLESS();
3970
0
        return SNMPERR_ASN_PARSE_ERR;
3971
0
    }
3972
0
    sptr = find_sec_mod(msg_sec_model);
3973
0
    if (!sptr) {
3974
0
        snmp_log(LOG_WARNING, "unknown security model: %ld\n",
3975
0
                 msg_sec_model);
3976
0
        snmp_increment_statistic(STAT_SNMPUNKNOWNSECURITYMODELS);
3977
0
        DEBUGINDENTLESS();
3978
0
        return SNMPERR_UNKNOWN_SEC_MODEL;
3979
0
    }
3980
0
    pdu->securityModel = msg_sec_model;
3981
3982
0
    if (msg_flags & SNMP_MSG_FLAG_PRIV_BIT &&
3983
0
        !(msg_flags & SNMP_MSG_FLAG_AUTH_BIT)) {
3984
0
        ERROR_MSG("invalid message, illegal msgFlags");
3985
0
        snmp_increment_statistic(STAT_SNMPINVALIDMSGS);
3986
0
        DEBUGINDENTLESS();
3987
0
        return SNMPERR_INVALID_MSG;
3988
0
    }
3989
0
    pdu->securityLevel = ((msg_flags & SNMP_MSG_FLAG_AUTH_BIT)
3990
0
                          ? ((msg_flags & SNMP_MSG_FLAG_PRIV_BIT)
3991
0
                             ? SNMP_SEC_LEVEL_AUTHPRIV
3992
0
                             : SNMP_SEC_LEVEL_AUTHNOPRIV)
3993
0
                          : SNMP_SEC_LEVEL_NOAUTH);
3994
    /*
3995
     * end of msgGlobalData 
3996
     */
3997
3998
    /*
3999
     * securtityParameters OCTET STRING begins after msgGlobalData 
4000
     */
4001
0
    sec_params = data;
4002
0
    pdu->contextEngineID = calloc(1, SNMP_MAX_ENG_SIZE);
4003
0
    pdu->contextEngineIDLen = SNMP_MAX_ENG_SIZE;
4004
4005
    /*
4006
     * Note: there is no length limit on the msgAuthoritativeEngineID field,
4007
     * although we would EXPECT it to be limited to 32 (the SnmpEngineID TC
4008
     * limit).  We'll use double that here to be on the safe side.  
4009
     */
4010
4011
0
    pdu->securityEngineID = calloc(1, SNMP_MAX_ENG_SIZE * 2);
4012
0
    pdu->securityEngineIDLen = SNMP_MAX_ENG_SIZE * 2;
4013
0
    pdu->securityName = calloc(1, SNMP_MAX_SEC_NAME_SIZE);
4014
0
    pdu->securityNameLen = SNMP_MAX_SEC_NAME_SIZE;
4015
4016
0
    if ((pdu->securityName == NULL) ||
4017
0
        (pdu->securityEngineID == NULL) ||
4018
0
        (pdu->contextEngineID == NULL)) {
4019
0
        return SNMPERR_MALLOC;
4020
0
    }
4021
4022
0
    if (pdu_buf_len < msg_len
4023
0
        && pdu->securityLevel == SNMP_SEC_LEVEL_AUTHPRIV) {
4024
        /*
4025
         * space needed is larger than we have in the default buffer 
4026
         */
4027
0
        mallocbuf = calloc(1, msg_len);
4028
0
        pdu_buf_len = msg_len;
4029
0
        cp = mallocbuf;
4030
0
    } else {
4031
0
        memset(pdu_buf, 0, pdu_buf_len);
4032
0
        cp = pdu_buf;
4033
0
    }
4034
4035
0
    DEBUGDUMPSECTION("recv", "SM msgSecurityParameters");
4036
0
    if (sptr->decode) {
4037
0
        struct snmp_secmod_incoming_params parms;
4038
0
        parms.msgProcModel = pdu->msgParseModel;
4039
0
        parms.maxMsgSize = pdu->msgMaxSize;
4040
0
        parms.secParams = sec_params;
4041
0
        parms.secModel = msg_sec_model;
4042
0
        parms.secLevel = pdu->securityLevel;
4043
0
        parms.wholeMsg = msg_data;
4044
0
        parms.wholeMsgLen = msg_len;
4045
0
        parms.secEngineID = pdu->securityEngineID;
4046
0
        parms.secEngineIDLen = &pdu->securityEngineIDLen;
4047
0
        parms.secName = pdu->securityName;
4048
0
        parms.secNameLen = &pdu->securityNameLen;
4049
0
        parms.scopedPdu = &cp;
4050
0
        parms.scopedPduLen = &pdu_buf_len;
4051
0
        parms.maxSizeResponse = &max_size_response;
4052
0
        parms.secStateRef = &pdu->securityStateRef;
4053
0
        parms.sess = sess;
4054
0
        parms.pdu = pdu;
4055
0
        parms.msg_flags = msg_flags;
4056
0
        ret_val = (*sptr->decode) (&parms);
4057
0
    } else {
4058
0
        SNMP_FREE(mallocbuf);
4059
0
        DEBUGINDENTLESS();
4060
0
        snmp_log(LOG_WARNING, "security service %ld can't decode packets\n",
4061
0
                 msg_sec_model);
4062
0
        return (-1);
4063
0
    }
4064
4065
0
    if (ret_val != SNMPERR_SUCCESS) {
4066
0
        DEBUGDUMPSECTION("recv", "ScopedPDU");
4067
        /*
4068
         * Parse as much as possible -- though I don't see the point? [jbpn].  
4069
         */
4070
0
        if (cp) {
4071
0
            cp = snmpv3_scopedPDU_parse(pdu, cp, &pdu_buf_len);
4072
0
        }
4073
0
        if (cp) {
4074
0
            DEBUGPRINTPDUTYPE("recv", *cp);
4075
0
            snmp_pdu_parse(pdu, cp, &pdu_buf_len);
4076
0
            DEBUGINDENTADD(-8);
4077
0
        } else {
4078
0
            DEBUGINDENTADD(-4);
4079
0
        }
4080
4081
0
        SNMP_FREE(mallocbuf);
4082
0
        return ret_val;
4083
0
    }
4084
4085
    /*
4086
     * parse plaintext ScopedPDU sequence 
4087
     */
4088
0
    *length = pdu_buf_len;
4089
0
    DEBUGDUMPSECTION("recv", "ScopedPDU");
4090
0
    data = snmpv3_scopedPDU_parse(pdu, cp, length);
4091
0
    if (data == NULL) {
4092
0
        snmp_log(LOG_WARNING, "security service %ld error parsing ScopedPDU\n",
4093
0
                 msg_sec_model);
4094
0
        ERROR_MSG("error parsing PDU");
4095
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
4096
0
        DEBUGINDENTADD(-4);
4097
0
        SNMP_FREE(mallocbuf);
4098
0
        return SNMPERR_ASN_PARSE_ERR;
4099
0
    }
4100
4101
    /*
4102
     * parse the PDU.  
4103
     */
4104
0
    if (after_header != NULL) {
4105
0
        *after_header = data;
4106
0
        tmp_buf_len = *length;
4107
0
    }
4108
4109
0
    DEBUGPRINTPDUTYPE("recv", *data);
4110
0
    ret = snmp_pdu_parse(pdu, data, length);
4111
0
    DEBUGINDENTADD(-8);
4112
4113
0
    if (after_header != NULL) {
4114
0
        *length = tmp_buf_len;
4115
0
    }
4116
4117
0
    if (ret != SNMPERR_SUCCESS) {
4118
0
        snmp_log(LOG_WARNING, "security service %ld error parsing ScopedPDU\n",
4119
0
                 msg_sec_model);
4120
0
        ERROR_MSG("error parsing PDU");
4121
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
4122
0
        SNMP_FREE(mallocbuf);
4123
0
        return SNMPERR_ASN_PARSE_ERR;
4124
0
    }
4125
4126
0
    SNMP_FREE(mallocbuf);
4127
0
    return SNMPERR_SUCCESS;
4128
0
}                               /* end snmpv3_parse() */
4129
4130
static void
4131
free_securityStateRef(netsnmp_pdu* pdu)
4132
0
{
4133
0
    struct snmp_secmod_def *sptr;
4134
4135
0
    if (!pdu->securityStateRef)
4136
0
        return;
4137
4138
0
    sptr = find_sec_mod(pdu->securityModel);
4139
0
    if (sptr) {
4140
0
        if (sptr->pdu_free_state_ref) {
4141
0
            (*sptr->pdu_free_state_ref) (pdu->securityStateRef);
4142
0
        } else {
4143
0
            snmp_log(LOG_ERR,
4144
0
                     "Security Model %d can't free state references\n",
4145
0
                     pdu->securityModel);
4146
0
  }
4147
0
    } else {
4148
0
  snmp_log(LOG_ERR,
4149
0
     "Can't find security model to free ptr: %d\n",
4150
0
     pdu->securityModel);
4151
0
    }
4152
0
    pdu->securityStateRef = NULL;
4153
0
}
4154
4155
0
#define ERROR_STAT_LENGTH 11
4156
4157
int
4158
snmpv3_make_report(netsnmp_pdu *pdu, int error)
4159
0
{
4160
4161
0
    long            ltmp;
4162
0
    static const oid unknownSecurityLevel[] =
4163
0
        { 1, 3, 6, 1, 6, 3, 15, 1, 1, 1, 0 };
4164
0
    static const oid notInTimeWindow[] =
4165
0
        { 1, 3, 6, 1, 6, 3, 15, 1, 1, 2, 0 };
4166
0
    static const oid unknownUserName[] =
4167
0
        { 1, 3, 6, 1, 6, 3, 15, 1, 1, 3, 0 };
4168
0
    static const oid unknownEngineID[] =
4169
0
        { 1, 3, 6, 1, 6, 3, 15, 1, 1, 4, 0 };
4170
0
    static const oid wrongDigest[] = { 1, 3, 6, 1, 6, 3, 15, 1, 1, 5, 0 };
4171
0
    static const oid decryptionError[] =
4172
0
        { 1, 3, 6, 1, 6, 3, 15, 1, 1, 6, 0 };
4173
0
    const oid      *err_var;
4174
0
    int             err_var_len;
4175
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4176
0
    int             stat_ind;
4177
0
#endif
4178
4179
0
    switch (error) {
4180
0
    case SNMPERR_USM_UNKNOWNENGINEID:
4181
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4182
0
        stat_ind = STAT_USMSTATSUNKNOWNENGINEIDS;
4183
0
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4184
0
        err_var = unknownEngineID;
4185
0
        err_var_len = ERROR_STAT_LENGTH;
4186
0
        break;
4187
0
    case SNMPERR_USM_UNKNOWNSECURITYNAME:
4188
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4189
0
        stat_ind = STAT_USMSTATSUNKNOWNUSERNAMES;
4190
0
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4191
0
        err_var = unknownUserName;
4192
0
        err_var_len = ERROR_STAT_LENGTH;
4193
0
        break;
4194
0
    case SNMPERR_USM_UNSUPPORTEDSECURITYLEVEL:
4195
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4196
0
        stat_ind = STAT_USMSTATSUNSUPPORTEDSECLEVELS;
4197
0
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4198
0
        err_var = unknownSecurityLevel;
4199
0
        err_var_len = ERROR_STAT_LENGTH;
4200
0
        break;
4201
0
    case SNMPERR_USM_AUTHENTICATIONFAILURE:
4202
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4203
0
        stat_ind = STAT_USMSTATSWRONGDIGESTS;
4204
0
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4205
0
        err_var = wrongDigest;
4206
0
        err_var_len = ERROR_STAT_LENGTH;
4207
0
        break;
4208
0
    case SNMPERR_USM_NOTINTIMEWINDOW:
4209
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4210
0
        stat_ind = STAT_USMSTATSNOTINTIMEWINDOWS;
4211
0
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4212
0
        err_var = notInTimeWindow;
4213
0
        err_var_len = ERROR_STAT_LENGTH;
4214
0
        break;
4215
0
    case SNMPERR_USM_DECRYPTIONERROR:
4216
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4217
0
        stat_ind = STAT_USMSTATSDECRYPTIONERRORS;
4218
0
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4219
0
        err_var = decryptionError;
4220
0
        err_var_len = ERROR_STAT_LENGTH;
4221
0
        break;
4222
0
    default:
4223
0
        return SNMPERR_GENERR;
4224
0
    }
4225
4226
0
    snmp_free_varbind(pdu->variables);  /* free the current varbind */
4227
4228
0
    pdu->variables = NULL;
4229
0
    SNMP_FREE(pdu->securityEngineID);
4230
0
    pdu->securityEngineID =
4231
0
        snmpv3_generate_engineID(&pdu->securityEngineIDLen);
4232
0
    SNMP_FREE(pdu->contextEngineID);
4233
0
    pdu->contextEngineID =
4234
0
        snmpv3_generate_engineID(&pdu->contextEngineIDLen);
4235
0
    pdu->command = SNMP_MSG_REPORT;
4236
0
    pdu->errstat = 0;
4237
0
    pdu->errindex = 0;
4238
0
    SNMP_FREE(pdu->contextName);
4239
0
    pdu->contextName = strdup("");
4240
0
    pdu->contextNameLen = strlen(pdu->contextName);
4241
4242
    /*
4243
     * reports shouldn't cache previous data. 
4244
     */
4245
    /*
4246
     * FIX - yes they should but USM needs to follow new EoP to determine
4247
     * which cached values to use 
4248
     */
4249
0
    free_securityStateRef(pdu);
4250
4251
0
    if (error == SNMPERR_USM_NOTINTIMEWINDOW) {
4252
0
        pdu->securityLevel = SNMP_SEC_LEVEL_AUTHNOPRIV;
4253
0
    } else {
4254
0
        pdu->securityLevel = SNMP_SEC_LEVEL_NOAUTH;
4255
0
    }
4256
4257
    /*
4258
     * find the appropriate error counter  
4259
     */
4260
0
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
4261
0
    ltmp = snmp_get_statistic(stat_ind);
4262
#else /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4263
    ltmp = 1;
4264
#endif /* !NETSNMP_FEATURE_REMOVE_STATISTICS */
4265
4266
    /*
4267
     * return the appropriate error counter  
4268
     */
4269
0
    snmp_pdu_add_variable(pdu, err_var, err_var_len,
4270
0
                          ASN_COUNTER, & ltmp, sizeof(ltmp));
4271
4272
0
    return SNMPERR_SUCCESS;
4273
0
}                               /* end snmpv3_make_report() */
4274
4275
4276
int
4277
snmpv3_get_report_type(netsnmp_pdu *pdu)
4278
0
{
4279
0
    static const oid snmpMPDStats[] = { 1, 3, 6, 1, 6, 3, 11, 2, 1 };
4280
0
    static const oid targetStats[]  = { 1, 3, 6, 1, 6, 3, 12, 1    };
4281
0
    static const oid usmStats[]     = { 1, 3, 6, 1, 6, 3, 15, 1, 1 };
4282
0
    netsnmp_variable_list *vp;
4283
0
    int             rpt_type = SNMPERR_UNKNOWN_REPORT;
4284
4285
0
    if (pdu == NULL || pdu->variables == NULL)
4286
0
        return rpt_type;
4287
0
    vp = pdu->variables;
4288
    /* MPD or USM based report statistics objects have the same length prefix
4289
     *   so the actual statistics OID will have this length,
4290
     *   plus one subidentifier for the scalar MIB object itself,
4291
     *   and one for the instance subidentifier
4292
     */
4293
0
    if (vp->name_length == REPORT_STATS_LEN + 2) {
4294
0
        if (memcmp(snmpMPDStats, vp->name, REPORT_STATS_LEN * sizeof(oid)) == 0) {
4295
0
            switch (vp->name[REPORT_STATS_LEN]) {
4296
0
            case REPORT_snmpUnknownSecurityModels_NUM:
4297
0
                rpt_type = SNMPERR_UNKNOWN_SEC_MODEL;
4298
0
                break;
4299
0
            case REPORT_snmpInvalidMsgs_NUM:
4300
0
                rpt_type = SNMPERR_INVALID_MSG;
4301
0
                break;
4302
0
            case REPORT_snmpUnknownPDUHandlers_NUM:
4303
0
                rpt_type = SNMPERR_BAD_VERSION;
4304
0
                break;
4305
0
            }
4306
0
        } else if (memcmp(usmStats, vp->name, REPORT_STATS_LEN * sizeof(oid)) == 0) {
4307
0
            switch (vp->name[REPORT_STATS_LEN]) {
4308
0
            case REPORT_usmStatsUnsupportedSecLevels_NUM:
4309
0
                rpt_type = SNMPERR_UNSUPPORTED_SEC_LEVEL;
4310
0
                break;
4311
0
            case REPORT_usmStatsNotInTimeWindows_NUM:
4312
0
                rpt_type = SNMPERR_NOT_IN_TIME_WINDOW;
4313
0
                break;
4314
0
            case REPORT_usmStatsUnknownUserNames_NUM:
4315
0
                rpt_type = SNMPERR_UNKNOWN_USER_NAME;
4316
0
                break;
4317
0
            case REPORT_usmStatsUnknownEngineIDs_NUM:
4318
0
                rpt_type = SNMPERR_UNKNOWN_ENG_ID;
4319
0
                break;
4320
0
            case REPORT_usmStatsWrongDigests_NUM:
4321
0
                rpt_type = SNMPERR_AUTHENTICATION_FAILURE;
4322
0
                break;
4323
0
            case REPORT_usmStatsDecryptionErrors_NUM:
4324
0
                rpt_type = SNMPERR_DECRYPTION_ERR;
4325
0
                break;
4326
0
            }
4327
0
        }
4328
0
    }
4329
    /* Context-based report statistics from the Target MIB are similar
4330
     *   but the OID prefix has a different length
4331
     */
4332
0
    if (vp->name_length == REPORT_STATS_LEN2 + 2) {
4333
0
        if (memcmp(targetStats, vp->name, REPORT_STATS_LEN2 * sizeof(oid)) == 0) {
4334
0
            switch (vp->name[REPORT_STATS_LEN2]) {
4335
0
            case REPORT_snmpUnavailableContexts_NUM:
4336
0
                rpt_type = SNMPERR_BAD_CONTEXT;
4337
0
                break;
4338
0
            case REPORT_snmpUnknownContexts_NUM:
4339
0
                rpt_type = SNMPERR_BAD_CONTEXT;
4340
0
                break;
4341
0
            }
4342
0
        }
4343
0
    }
4344
0
    DEBUGMSGTL(("report", "Report type: %d\n", rpt_type));
4345
0
    return rpt_type;
4346
0
}
4347
4348
/*
4349
 * Parses the packet received on the input session, and places the data into
4350
 * the input pdu.  length is the length of the input packet.
4351
 * If any errors are encountered, -1 or USM error is returned.
4352
 * Otherwise, a 0 is returned.
4353
 */
4354
static int
4355
_snmp_parse(struct session_list *slp,
4356
            netsnmp_session * session,
4357
            netsnmp_pdu *pdu, u_char * data, size_t length)
4358
0
{
4359
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
4360
0
    u_char          community[COMMUNITY_MAX_LEN];
4361
0
    size_t          community_length = COMMUNITY_MAX_LEN;
4362
0
#endif
4363
0
    int             result = -1;
4364
4365
0
    static const oid snmpEngineIDoid[]   = { 1,3,6,1,6,3,10,2,1,1,0};
4366
0
    static size_t   snmpEngineIDoid_len = 11;
4367
4368
0
    static char     ourEngineID[SNMP_SEC_PARAM_BUF_SIZE];
4369
0
    static size_t   ourEngineID_len = sizeof(ourEngineID);
4370
4371
0
    netsnmp_pdu    *pdu2 = NULL;
4372
4373
0
    session->s_snmp_errno = 0;
4374
0
    session->s_errno = 0;
4375
4376
    /*
4377
     * Ensure all incoming PDUs have a unique means of identification 
4378
     * (This is not restricted to AgentX handling,
4379
     * though that is where the need becomes visible)   
4380
     */
4381
0
    pdu->transid = snmp_get_next_transid();
4382
4383
0
    if (session->version != SNMP_DEFAULT_VERSION) {
4384
0
        pdu->version = session->version;
4385
0
    } else {
4386
0
        pdu->version = snmp_parse_version(data, length);
4387
0
    }
4388
4389
0
    switch (pdu->version) {
4390
0
#if !defined(NETSNMP_DISABLE_SNMPV1) || !defined(NETSNMP_DISABLE_SNMPV2C)
4391
0
#ifndef NETSNMP_DISABLE_SNMPV1
4392
0
    case SNMP_VERSION_1:
4393
0
#endif
4394
0
#ifndef NETSNMP_DISABLE_SNMPV2C
4395
0
    case SNMP_VERSION_2c:
4396
0
#endif
4397
0
        NETSNMP_RUNTIME_PROTOCOL_CHECK_V1V2(pdu->version,unsupported_version);
4398
0
        DEBUGMSGTL(("snmp_api", "Parsing SNMPv%ld message...\n",
4399
0
                    (1 + pdu->version)));
4400
4401
        /*
4402
         * authenticates message and returns length if valid 
4403
         */
4404
0
#ifndef NETSNMP_DISABLE_SNMPV1
4405
0
        if (pdu->version == SNMP_VERSION_1) {
4406
0
            DEBUGDUMPSECTION("recv", "SNMPv1 message\n");
4407
0
        } else {
4408
0
#endif
4409
0
            DEBUGDUMPSECTION("recv", "SNMPv2c message\n");
4410
0
#ifndef NETSNMP_DISABLE_SNMPV1
4411
0
        }
4412
0
#endif
4413
0
        data = snmp_comstr_parse(data, &length,
4414
0
                                 community, &community_length,
4415
0
                                 &pdu->version);
4416
0
        if (data == NULL)
4417
0
            return -1;
4418
4419
0
        if (pdu->version != session->version &&
4420
0
            session->version != SNMP_DEFAULT_VERSION) {
4421
0
            session->s_snmp_errno = SNMPERR_BAD_VERSION;
4422
0
            return -1;
4423
0
        }
4424
4425
        /*
4426
         * maybe get the community string. 
4427
         */
4428
0
        pdu->securityLevel = SNMP_SEC_LEVEL_NOAUTH;
4429
0
        pdu->securityModel = 
4430
0
#ifndef NETSNMP_DISABLE_SNMPV1
4431
0
            (pdu->version == SNMP_VERSION_1) ? SNMP_SEC_MODEL_SNMPv1 : 
4432
0
#endif
4433
0
                                               SNMP_SEC_MODEL_SNMPv2c;
4434
0
        SNMP_FREE(pdu->community);
4435
0
        pdu->community_len = 0;
4436
0
        pdu->community = (u_char *) 0;
4437
0
        if (community_length) {
4438
0
            pdu->community_len = community_length;
4439
0
            pdu->community = netsnmp_memdup(community, community_length);
4440
0
            if (pdu->community == NULL) {
4441
0
                session->s_snmp_errno = SNMPERR_MALLOC;
4442
0
                return -1;
4443
0
            }
4444
0
        }
4445
0
        if (session->authenticator) {
4446
0
            data = session->authenticator(data, &length,
4447
0
                                          community, community_length);
4448
0
            if (data == NULL) {
4449
0
                session->s_snmp_errno = SNMPERR_AUTHENTICATION_FAILURE;
4450
0
                return -1;
4451
0
            }
4452
0
        }
4453
4454
0
        DEBUGDUMPSECTION("recv", "PDU");
4455
0
        result = snmp_pdu_parse(pdu, data, &length);
4456
0
        if (result < 0) {
4457
            /*
4458
             * This indicates a parse error.  
4459
             */
4460
0
            snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
4461
0
        }
4462
0
        DEBUGINDENTADD(-6);
4463
0
        break;
4464
0
#endif /* support for community based SNMP */
4465
4466
0
    case SNMP_VERSION_3:
4467
0
        NETSNMP_RUNTIME_PROTOCOL_CHECK_V3(SNMP_VERSION_3,unsupported_version);
4468
0
        result = snmpv3_parse(pdu, data, &length, NULL, session);
4469
0
        DEBUGMSGTL(("snmp_parse",
4470
0
                    "Parsed SNMPv3 message (secName:%s, secLevel:%s): %s\n",
4471
0
                    pdu->securityName, secLevelName[pdu->securityLevel],
4472
0
                    snmp_api_errstring(result)));
4473
4474
0
        if (result == SNMPERR_USM_UNKNOWNSECURITYNAME) {
4475
0
            snmp_call_callbacks(SNMP_CALLBACK_APPLICATION,
4476
0
                                SNMPD_CALLBACK_AUTH_FAILURE, pdu);
4477
0
        }
4478
        
4479
0
        if (result) {
4480
0
            struct snmp_secmod_def *secmod =
4481
0
                find_sec_mod(pdu->securityModel);
4482
0
            if (!slp) {
4483
0
                session->s_snmp_errno = result;
4484
0
            } else {
4485
                /*
4486
                 * Call the security model to special handle any errors
4487
                 */
4488
4489
0
                if (secmod && secmod->handle_report) {
4490
0
                    (*secmod->handle_report)(slp, slp->transport, session,
4491
0
                                             result, pdu);
4492
0
                }
4493
0
            }
4494
0
            free_securityStateRef(pdu);
4495
0
        }
4496
4497
        /* Implement RFC5343 here for two reasons:
4498
           1) From a security perspective it handles this otherwise
4499
              always approved request earlier.  It bypasses the need
4500
              for authorization to the snmpEngineID scalar, which is
4501
              what is what RFC3415 appendix A species as ok.  Note
4502
              that we haven't bypassed authentication since if there
4503
              was an authentication error it would have been handled
4504
              above in the if(result) part at the latest.
4505
           2) From an application point of view if we let this request
4506
              get all the way to the application, it'd require that
4507
              all application types supporting discovery also fire up
4508
              a minimal agent in order to handle just this request
4509
              which seems like overkill.  Though there is no other
4510
              application types that currently need discovery (NRs
4511
              accept notifications from contextEngineIDs that derive
4512
              from the NO not the NR).  Also a lame excuse for doing
4513
              it here.
4514
           3) Less important technically, but the net-snmp agent
4515
              doesn't currently handle registrations of different
4516
              engineIDs either and it would have been a lot more work
4517
              to implement there since we'd need to support that
4518
              first. :-/ Supporting multiple context engineIDs should
4519
              be done anyway, so it's not a valid excuse here.
4520
           4) There is a lot less to do if we trump the agent at this
4521
              point; IE, the agent does a lot more unnecessary
4522
              processing when the only thing that should ever be in
4523
              this context by definition is the single scalar.
4524
        */
4525
4526
        /* special RFC5343 engineID discovery engineID check */
4527
0
        if (!netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
4528
0
                                    NETSNMP_DS_LIB_NO_DISCOVERY) &&
4529
0
            SNMP_MSG_RESPONSE       != pdu->command &&
4530
0
            NULL                    != pdu->contextEngineID &&
4531
0
            pdu->contextEngineIDLen == 5 &&
4532
0
            pdu->contextEngineID[0] == 0x80 &&
4533
0
            pdu->contextEngineID[1] == 0x00 &&
4534
0
            pdu->contextEngineID[2] == 0x00 &&
4535
0
            pdu->contextEngineID[3] == 0x00 &&
4536
0
            pdu->contextEngineID[4] == 0x06) {
4537
4538
            /* define a result so it doesn't get past us at this point
4539
               and gets dropped by future parts of the stack */
4540
0
            result = SNMPERR_JUST_A_CONTEXT_PROBE;
4541
4542
0
            DEBUGMSGTL(("snmpv3_contextid", "starting context ID discovery\n"));
4543
            /* ensure exactly one variable */
4544
0
            if (NULL != pdu->variables &&
4545
0
                NULL == pdu->variables->next_variable &&
4546
4547
                /* if it's a GET, match it exactly */
4548
0
                ((SNMP_MSG_GET == pdu->command &&
4549
0
                  snmp_oid_compare(snmpEngineIDoid,
4550
0
                                   snmpEngineIDoid_len,
4551
0
                                   pdu->variables->name,
4552
0
                                   pdu->variables->name_length) == 0)
4553
                 /* if it's a GETNEXT ensure it's less than the engineID oid */
4554
0
                 ||
4555
0
                 (SNMP_MSG_GETNEXT == pdu->command &&
4556
0
                  snmp_oid_compare(snmpEngineIDoid,
4557
0
                                   snmpEngineIDoid_len,
4558
0
                                   pdu->variables->name,
4559
0
                                   pdu->variables->name_length) > 0)
4560
0
                    )) {
4561
4562
0
                DEBUGMSGTL(("snmpv3_contextid",
4563
0
                            "  One correct variable found\n"));
4564
4565
                /* Note: we're explicitly not handling a GETBULK.  Deal. */
4566
4567
                /* set up the response */
4568
0
                pdu2 = snmp_clone_pdu(pdu);
4569
4570
                /* free the current varbind */
4571
0
                snmp_free_varbind(pdu2->variables);
4572
4573
                /* set the variables */
4574
0
                pdu2->variables = NULL;
4575
0
                pdu2->command = SNMP_MSG_RESPONSE;
4576
0
                pdu2->errstat = 0;
4577
0
                pdu2->errindex = 0;
4578
4579
0
                ourEngineID_len =
4580
0
                    snmpv3_get_engineID((u_char*)ourEngineID, ourEngineID_len);
4581
0
                if (0 != ourEngineID_len) {
4582
4583
0
                    DEBUGMSGTL(("snmpv3_contextid",
4584
0
                                "  responding with our engineID\n"));
4585
4586
0
                    snmp_pdu_add_variable(pdu2,
4587
0
                                          snmpEngineIDoid, snmpEngineIDoid_len,
4588
0
                                          ASN_OCTET_STR,
4589
0
                                          ourEngineID, ourEngineID_len);
4590
                    
4591
                    /* send the response */
4592
0
                    if (0 == snmp_sess_send(slp, pdu2)) {
4593
4594
0
                        DEBUGMSGTL(("snmpv3_contextid",
4595
0
                                    "  sent it off!\n"));
4596
4597
0
                        snmp_free_pdu(pdu2);
4598
                        
4599
0
                        snmp_log(LOG_ERR, "sending a response to the context engineID probe failed\n");
4600
0
                    }
4601
0
                } else {
4602
0
                    snmp_log(LOG_ERR, "failed to get our own engineID!\n");
4603
0
                }
4604
0
            } else {
4605
0
                snmp_log(LOG_WARNING,
4606
0
                         "received an odd context engineID probe\n");
4607
0
            }
4608
0
        }
4609
4610
0
        break;
4611
0
    case SNMPERR_BAD_VERSION:
4612
0
        ERROR_MSG("error parsing snmp message version");
4613
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
4614
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
4615
0
        break;
4616
4617
0
        unsupported_version:  /* goto label */
4618
0
    case SNMP_VERSION_sec:
4619
0
    case SNMP_VERSION_2u:
4620
0
    case SNMP_VERSION_2star:
4621
0
    case SNMP_VERSION_2p:
4622
0
    default:
4623
0
        ERROR_MSG("unsupported snmp message version");
4624
0
        snmp_increment_statistic(STAT_SNMPINBADVERSIONS);
4625
4626
        /*
4627
         * need better way to determine OS independent
4628
         * INT32_MAX value, for now hardcode
4629
         */
4630
0
        if (pdu->version < 0 || pdu->version > 2147483647) {
4631
0
            snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
4632
0
        }
4633
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
4634
0
        break;
4635
0
    }
4636
4637
0
    return result;
4638
0
}
4639
4640
/**
4641
 * Parse a PDU.
4642
 * @param slp    [in]  Session pointer (struct session_list).
4643
 * @param pss    [in]  Session pointer (netsnmp_session).
4644
 * @param pdu    [out] Parsed PDU.
4645
 * @param data   [in]  PDU to parse.
4646
 * @param length [in]  Length of data.
4647
 *
4648
 * @returns 0 upon success; -1 upon failure.
4649
 */
4650
int
4651
snmp_parse(struct session_list *slp, netsnmp_session *pss,
4652
           netsnmp_pdu *pdu, u_char *data, size_t length)
4653
0
{
4654
0
    int             rc;
4655
4656
0
    rc = _snmp_parse(slp, pss, pdu, data, length);
4657
0
    if (rc) {
4658
0
        if (!pss->s_snmp_errno) {
4659
0
            pss->s_snmp_errno = SNMPERR_BAD_PARSE;
4660
0
        }
4661
0
        SET_SNMP_ERROR(pss->s_snmp_errno);
4662
0
    }
4663
4664
0
    return rc;
4665
0
}
4666
4667
int
4668
snmp_pdu_parse(netsnmp_pdu *pdu, u_char * data, size_t * length)
4669
0
{
4670
0
    u_char          type;
4671
0
    u_char          msg_type;
4672
0
    u_char         *var_val;
4673
0
    size_t          len;
4674
0
    size_t          four;
4675
0
    netsnmp_variable_list *vp = NULL, *vplast = NULL;
4676
0
    oid             objid[MAX_OID_LEN];
4677
0
    u_char         *p;
4678
4679
    /*
4680
     * Get the PDU type 
4681
     */
4682
0
    data = asn_parse_header(data, length, &msg_type);
4683
0
    if (data == NULL)
4684
0
        return -1;
4685
0
    DEBUGMSGTL(("dumpv_recv","    Command %s\n", snmp_pdu_type(msg_type)));
4686
0
    pdu->command = msg_type;
4687
0
    pdu->flags &= (~UCD_MSG_FLAG_RESPONSE_PDU);
4688
4689
    /*
4690
     * get the fields in the PDU preceding the variable-bindings sequence
4691
     */
4692
0
    switch (pdu->command) {
4693
0
    case SNMP_MSG_TRAP:
4694
        /*
4695
         * enterprise 
4696
         */
4697
0
        pdu->enterprise_length = MAX_OID_LEN;
4698
0
        data = asn_parse_objid(data, length, &type, objid,
4699
0
                               &pdu->enterprise_length);
4700
0
        if (data == NULL)
4701
0
            return -1;
4702
0
        pdu->enterprise = netsnmp_memdup(objid,
4703
0
                                         pdu->enterprise_length * sizeof(oid));
4704
0
        if (pdu->enterprise == NULL) {
4705
0
            return -1;
4706
0
        }
4707
4708
        /*
4709
         * agent-addr 
4710
         */
4711
0
        four = 4;
4712
0
        data = asn_parse_string(data, length, &type,
4713
0
                                (u_char *) pdu->agent_addr, &four);
4714
0
        if (data == NULL)
4715
0
            return -1;
4716
4717
        /*
4718
         * generic trap 
4719
         */
4720
0
        data = asn_parse_int(data, length, &type, (long *) &pdu->trap_type,
4721
0
                             sizeof(pdu->trap_type));
4722
0
        if (data == NULL)
4723
0
            return -1;
4724
        /*
4725
         * specific trap 
4726
         */
4727
0
        data =
4728
0
            asn_parse_int(data, length, &type,
4729
0
                          (long *) &pdu->specific_type,
4730
0
                          sizeof(pdu->specific_type));
4731
0
        if (data == NULL)
4732
0
            return -1;
4733
4734
        /*
4735
         * timestamp  
4736
         */
4737
0
        data = asn_parse_unsigned_int(data, length, &type, &pdu->time,
4738
0
                                      sizeof(pdu->time));
4739
0
        if (data == NULL)
4740
0
            return -1;
4741
4742
0
        break;
4743
4744
0
    case SNMP_MSG_RESPONSE:
4745
0
    case SNMP_MSG_REPORT:
4746
0
        pdu->flags |= UCD_MSG_FLAG_RESPONSE_PDU;
4747
0
        NETSNMP_FALLTHROUGH;
4748
4749
0
    case SNMP_MSG_TRAP2:
4750
0
    case SNMP_MSG_INFORM:
4751
0
#ifndef NETSNMP_NOTIFY_ONLY
4752
0
    case SNMP_MSG_GET:
4753
0
    case SNMP_MSG_GETNEXT:
4754
0
    case SNMP_MSG_GETBULK:
4755
0
#endif /* ! NETSNMP_NOTIFY_ONLY */
4756
0
#ifndef NETSNMP_NO_WRITE_SUPPORT
4757
0
    case SNMP_MSG_SET:
4758
0
#endif /* !NETSNMP_NO_WRITE_SUPPORT */
4759
        /*
4760
         * PDU is not an SNMPv1 TRAP 
4761
         */
4762
4763
        /*
4764
         * request id 
4765
         */
4766
0
        DEBUGDUMPHEADER("recv", "request_id");
4767
0
        data = asn_parse_int(data, length, &type, &pdu->reqid,
4768
0
                             sizeof(pdu->reqid));
4769
0
        DEBUGINDENTLESS();
4770
0
        if (data == NULL) {
4771
0
            return -1;
4772
0
        }
4773
4774
        /*
4775
         * error status (getbulk non-repeaters) 
4776
         */
4777
0
        DEBUGDUMPHEADER("recv", "error status");
4778
0
        data = asn_parse_int(data, length, &type, &pdu->errstat,
4779
0
                             sizeof(pdu->errstat));
4780
0
        DEBUGINDENTLESS();
4781
0
        if (data == NULL) {
4782
0
            return -1;
4783
0
        }
4784
4785
        /*
4786
         * error index (getbulk max-repetitions) 
4787
         */
4788
0
        DEBUGDUMPHEADER("recv", "error index");
4789
0
        data = asn_parse_int(data, length, &type, &pdu->errindex,
4790
0
                             sizeof(pdu->errindex));
4791
0
        DEBUGINDENTLESS();
4792
0
        if (data == NULL) {
4793
0
            return -1;
4794
0
        }
4795
0
  break;
4796
4797
0
    default:
4798
0
        snmp_log(LOG_ERR, "Bad PDU type received: 0x%.2x\n", pdu->command);
4799
0
        snmp_increment_statistic(STAT_SNMPINASNPARSEERRS);
4800
0
        return -1;
4801
0
    }
4802
4803
    /*
4804
     * get header for variable-bindings sequence 
4805
     */
4806
0
    DEBUGDUMPSECTION("recv", "VarBindList");
4807
0
    data = asn_parse_sequence(data, length, &type,
4808
0
                              (ASN_SEQUENCE | ASN_CONSTRUCTOR),
4809
0
                              "varbinds");
4810
0
    if (data == NULL)
4811
0
        goto fail;
4812
4813
    /*
4814
     * get each varBind sequence 
4815
     */
4816
0
    while ((int) *length > 0) {
4817
0
        vp = SNMP_MALLOC_TYPEDEF(netsnmp_variable_list);
4818
0
        if (NULL == vp)
4819
0
            goto fail;
4820
4821
0
        vp->name_length = MAX_OID_LEN;
4822
0
        DEBUGDUMPSECTION("recv", "VarBind");
4823
0
        data = snmp_parse_var_op(data, objid, &vp->name_length, &vp->type,
4824
0
                                 &vp->val_len, &var_val, length);
4825
0
        if (data == NULL)
4826
0
            goto fail;
4827
0
        if (snmp_set_var_objid(vp, objid, vp->name_length))
4828
0
            goto fail;
4829
4830
0
        len = SNMP_MAX_PACKET_LEN;
4831
0
        DEBUGDUMPHEADER("recv", "Value");
4832
0
        switch ((short) vp->type) {
4833
0
        case ASN_INTEGER:
4834
0
            vp->val.integer = (long *) vp->buf;
4835
0
            vp->val_len = sizeof(long);
4836
0
            p = asn_parse_int(var_val, &len, &vp->type,
4837
0
                          (long *) vp->val.integer,
4838
0
                          sizeof(*vp->val.integer));
4839
0
            if (!p)
4840
0
                goto fail;
4841
0
            break;
4842
0
        case ASN_COUNTER:
4843
0
        case ASN_GAUGE:
4844
0
        case ASN_TIMETICKS:
4845
0
        case ASN_UINTEGER:
4846
0
            vp->val.integer = (long *) vp->buf;
4847
0
            vp->val_len = sizeof(u_long);
4848
0
            p = asn_parse_unsigned_int(var_val, &len, &vp->type,
4849
0
                                   (u_long *) vp->val.integer,
4850
0
                                   vp->val_len);
4851
0
            if (!p)
4852
0
                goto fail;
4853
0
            break;
4854
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
4855
0
        case ASN_OPAQUE_COUNTER64:
4856
0
        case ASN_OPAQUE_U64:
4857
0
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
4858
0
        case ASN_COUNTER64:
4859
0
            vp->val.counter64 = (struct counter64 *) vp->buf;
4860
0
            vp->val_len = sizeof(struct counter64);
4861
0
            p = asn_parse_unsigned_int64(var_val, &len, &vp->type,
4862
0
                                     (struct counter64 *) vp->val.
4863
0
                                     counter64, vp->val_len);
4864
0
            if (!p)
4865
0
                goto fail;
4866
0
            break;
4867
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
4868
0
        case ASN_OPAQUE_FLOAT:
4869
0
            vp->val.floatVal = (float *) vp->buf;
4870
0
            vp->val_len = sizeof(float);
4871
0
            p = asn_parse_float(var_val, &len, &vp->type,
4872
0
                            vp->val.floatVal, vp->val_len);
4873
0
            if (!p)
4874
0
                goto fail;
4875
0
            break;
4876
0
        case ASN_OPAQUE_DOUBLE:
4877
0
            vp->val.doubleVal = (double *) vp->buf;
4878
0
            vp->val_len = sizeof(double);
4879
0
            p = asn_parse_double(var_val, &len, &vp->type,
4880
0
                             vp->val.doubleVal, vp->val_len);
4881
0
            if (!p)
4882
0
                goto fail;
4883
0
            break;
4884
0
        case ASN_OPAQUE_I64:
4885
0
            vp->val.counter64 = (struct counter64 *) vp->buf;
4886
0
            vp->val_len = sizeof(struct counter64);
4887
0
            p = asn_parse_signed_int64(var_val, &len, &vp->type,
4888
0
                                   (struct counter64 *) vp->val.counter64,
4889
0
                                   sizeof(*vp->val.counter64));
4890
4891
0
            if (!p)
4892
0
                goto fail;
4893
0
            break;
4894
0
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
4895
0
        case ASN_IPADDRESS:
4896
0
            if (vp->val_len != 4)
4897
0
                goto fail;
4898
0
            NETSNMP_FALLTHROUGH;
4899
0
        case ASN_OCTET_STR:
4900
0
        case ASN_OPAQUE:
4901
0
        case ASN_NSAP:
4902
0
            if (vp->val_len < sizeof(vp->buf)) {
4903
0
                vp->val.string = (u_char *) vp->buf;
4904
0
            } else {
4905
0
                vp->val.string = (u_char *) malloc(vp->val_len);
4906
0
            }
4907
0
            if (vp->val.string == NULL) {
4908
0
                goto fail;
4909
0
            }
4910
0
            p = asn_parse_string(var_val, &len, &vp->type, vp->val.string,
4911
0
                             &vp->val_len);
4912
0
            if (!p)
4913
0
                goto fail;
4914
0
            break;
4915
0
        case ASN_OBJECT_ID:
4916
0
            vp->val_len = MAX_OID_LEN;
4917
0
            p = asn_parse_objid(var_val, &len, &vp->type, objid, &vp->val_len);
4918
0
            if (!p)
4919
0
                goto fail;
4920
0
            vp->val_len *= sizeof(oid);
4921
0
            vp->val.objid = netsnmp_memdup(objid, vp->val_len);
4922
0
            if (vp->val.objid == NULL)
4923
0
                goto fail;
4924
0
            break;
4925
0
        case SNMP_NOSUCHOBJECT:
4926
0
        case SNMP_NOSUCHINSTANCE:
4927
0
        case SNMP_ENDOFMIBVIEW:
4928
0
        case ASN_NULL:
4929
0
            break;
4930
0
        case ASN_BIT_STR:
4931
0
            vp->val.bitstring = (u_char *) malloc(vp->val_len);
4932
0
            if (vp->val.bitstring == NULL) {
4933
0
                goto fail;
4934
0
            }
4935
0
            p = asn_parse_bitstring(var_val, &len, &vp->type,
4936
0
                                vp->val.bitstring, &vp->val_len);
4937
0
            if (!p)
4938
0
                goto fail;
4939
0
            break;
4940
0
        default:
4941
0
            snmp_log(LOG_ERR, "bad type returned (%x)\n", vp->type);
4942
0
            goto fail;
4943
0
            break;
4944
0
        }
4945
0
        DEBUGINDENTADD(-4);
4946
4947
0
        if (NULL == vplast) {
4948
0
            pdu->variables = vp;
4949
0
        } else {
4950
0
            vplast->next_variable = vp;
4951
0
        }
4952
0
        vplast = vp;
4953
0
        vp = NULL;
4954
0
    }
4955
0
    return 0;
4956
4957
0
  fail:
4958
0
    {
4959
0
        const char *errstr = snmp_api_errstring(SNMPERR_SUCCESS);
4960
0
        DEBUGMSGTL(("recv", "error while parsing VarBindList:%s\n", errstr));
4961
0
    }
4962
    /** if we were parsing a var, remove it from the pdu and free it */
4963
0
    if (vp)
4964
0
        snmp_free_var(vp);
4965
4966
0
    return -1;
4967
0
}
4968
4969
/*
4970
 * snmp v3 utility function to parse into the scopedPdu. stores contextName
4971
 * and contextEngineID in pdu struct. Also stores pdu->command (handy for 
4972
 * Report generation).
4973
 * 
4974
 * returns pointer to begining of PDU or NULL on error.
4975
 */
4976
u_char         *
4977
snmpv3_scopedPDU_parse(netsnmp_pdu *pdu, u_char * cp, size_t * length)
4978
0
{
4979
0
    u_char          tmp_buf[SNMP_MAX_MSG_SIZE];
4980
0
    size_t          tmp_buf_len;
4981
0
    u_char          type;
4982
0
    size_t          asn_len;
4983
0
    u_char         *data;
4984
4985
0
    pdu->command = 0;           /* initialize so we know if it got parsed */
4986
0
    asn_len = *length;
4987
0
    data = asn_parse_sequence(cp, &asn_len, &type,
4988
0
                              (ASN_SEQUENCE | ASN_CONSTRUCTOR),
4989
0
                              "plaintext scopedPDU");
4990
0
    if (data == NULL) {
4991
0
        return NULL;
4992
0
    }
4993
0
    *length -= data - cp;
4994
4995
    /*
4996
     * contextEngineID from scopedPdu  
4997
     */
4998
0
    DEBUGDUMPHEADER("recv", "contextEngineID");
4999
0
    data = asn_parse_string(data, length, &type, pdu->contextEngineID,
5000
0
                            &pdu->contextEngineIDLen);
5001
0
    DEBUGINDENTLESS();
5002
0
    if (data == NULL) {
5003
0
        ERROR_MSG("error parsing contextEngineID from scopedPdu");
5004
0
        return NULL;
5005
0
    }
5006
5007
    /*
5008
     * parse contextName from scopedPdu
5009
     */
5010
0
    tmp_buf_len = SNMP_MAX_CONTEXT_SIZE;
5011
0
    DEBUGDUMPHEADER("recv", "contextName");
5012
0
    data = asn_parse_string(data, length, &type, tmp_buf, &tmp_buf_len);
5013
0
    DEBUGINDENTLESS();
5014
0
    if (data == NULL) {
5015
0
        ERROR_MSG("error parsing contextName from scopedPdu");
5016
0
        return NULL;
5017
0
    }
5018
5019
0
    if (tmp_buf_len) {
5020
0
        pdu->contextName = netsnmp_memdup(tmp_buf, tmp_buf_len);
5021
0
        pdu->contextNameLen = tmp_buf_len;
5022
0
    } else {
5023
0
        pdu->contextName = strdup("");
5024
0
        pdu->contextNameLen = 0;
5025
0
    }
5026
0
    if (pdu->contextName == NULL) {
5027
0
        ERROR_MSG("error copying contextName from scopedPdu");
5028
0
        return NULL;
5029
0
    }
5030
5031
    /*
5032
     * Get the PDU type 
5033
     */
5034
0
    asn_len = *length;
5035
0
    cp = asn_parse_header(data, &asn_len, &type);
5036
0
    if (cp == NULL)
5037
0
        return NULL;
5038
5039
0
    pdu->command = type;
5040
5041
0
    return data;
5042
0
}
5043
5044
5045
/* ===========================================================================
5046
 *
5047
 * build pdu packet
5048
 */
5049
static int
5050
netsnmp_build_packet(struct snmp_internal_session *isp, netsnmp_session *sp,
5051
                     netsnmp_pdu *pdu, u_char **pktbuf_p,
5052
                     size_t *pktbuf_len_p, u_char **pkt_p, size_t *len_p)
5053
0
{
5054
0
    size_t offset = 0;
5055
0
    int    result;
5056
5057
0
    if (isp && isp->hook_realloc_build) {
5058
0
        result = isp->hook_realloc_build(sp, pdu, pktbuf_p, pktbuf_len_p,
5059
0
                                         &offset);
5060
5061
0
        *pkt_p = *pktbuf_p;
5062
0
        *len_p = offset;
5063
0
    } else if (isp && isp->hook_build) {
5064
0
        *pkt_p = *pktbuf_p;
5065
0
        *len_p = *pktbuf_len_p;
5066
0
        result = isp->hook_build(sp, pdu, *pktbuf_p, len_p);
5067
0
    } else {
5068
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
5069
0
        if (!(pdu->flags & UCD_MSG_FLAG_FORWARD_ENCODE)) {
5070
0
            result = snmp_build(pktbuf_p, pktbuf_len_p, &offset, sp, pdu);
5071
0
            *pkt_p = *pktbuf_p + *pktbuf_len_p - offset;
5072
0
            *len_p = offset;
5073
0
        } else {
5074
0
#endif
5075
0
            *pkt_p = *pktbuf_p;
5076
0
            *len_p = *pktbuf_len_p;
5077
0
            result = snmp_build(pktbuf_p, len_p, &offset, sp, pdu);
5078
0
#ifdef NETSNMP_USE_REVERSE_ASNENCODING
5079
0
        }
5080
0
#endif
5081
0
    }
5082
5083
0
    return result;
5084
0
}
5085
5086
int
5087
_build_initial_pdu_packet(struct session_list *slp, netsnmp_pdu *pdu, int bulk)
5088
0
{
5089
0
    netsnmp_session *session;
5090
0
    struct snmp_internal_session *isp;
5091
0
    netsnmp_transport *transport = NULL;
5092
0
    u_char         *pktbuf = NULL, *packet = NULL;
5093
0
    size_t          pktbuf_len = 0, length = 0, orig_length = 0;
5094
0
    int             result, orig_count = 0, curr_count = 0;
5095
5096
0
    if (slp == NULL) {
5097
0
        return SNMPERR_GENERR;
5098
0
    }
5099
0
    session = slp->session;
5100
5101
0
    isp = slp->internal;
5102
0
    transport = slp->transport;
5103
0
    if (!session || !isp || !transport) {
5104
0
        DEBUGMSGTL(("sess_async_send", "send fail: closing...\n"));
5105
0
        return SNMPERR_GENERR;
5106
0
    }
5107
5108
0
    if (pdu == NULL) {
5109
0
        session->s_snmp_errno = SNMPERR_NULL_PDU;
5110
0
        return SNMPERR_GENERR;
5111
0
    }
5112
5113
0
    SNMP_FREE(isp->obuf); /* should already be NULL */
5114
5115
0
    session->s_snmp_errno = 0;
5116
0
    session->s_errno = 0;
5117
5118
    /*
5119
     * Check/setup the version.  
5120
     */
5121
0
    if (pdu->version == SNMP_DEFAULT_VERSION) {
5122
0
        if (session->version == SNMP_DEFAULT_VERSION) {
5123
0
            session->s_snmp_errno = SNMPERR_BAD_VERSION;
5124
0
            return SNMPERR_GENERR;
5125
0
        }
5126
0
        pdu->version = session->version;
5127
0
    } else if (session->version == SNMP_DEFAULT_VERSION) {
5128
        /*
5129
         * It's OK  
5130
         */
5131
0
    } else if (pdu->version != session->version) {
5132
        /*
5133
         * ENHANCE: we should support multi-lingual sessions  
5134
         */
5135
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
5136
0
        return SNMPERR_GENERR;
5137
0
    }
5138
0
    if (NETSNMP_RUNTIME_PROTOCOL_SKIP(pdu->version)) {
5139
0
        DEBUGMSGTL(("sess_async_send", "version disabled at runtime\n"));
5140
0
        session->s_snmp_errno = SNMPERR_BAD_VERSION;
5141
0
        return SNMPERR_GENERR;
5142
0
    }
5143
5144
    /*
5145
     * do we expect a response?
5146
     */
5147
0
    switch (pdu->command) {
5148
5149
0
        case SNMP_MSG_RESPONSE:
5150
0
        case SNMP_MSG_TRAP:
5151
0
        case SNMP_MSG_TRAP2:
5152
0
        case SNMP_MSG_REPORT:
5153
0
        case AGENTX_MSG_CLEANUPSET:
5154
0
        case AGENTX_MSG_RESPONSE:
5155
0
            pdu->flags &= ~UCD_MSG_FLAG_EXPECT_RESPONSE;
5156
0
            break;
5157
            
5158
0
        default:
5159
0
            pdu->flags |= UCD_MSG_FLAG_EXPECT_RESPONSE;
5160
0
            break;
5161
0
    }
5162
5163
    /*
5164
     * Check if we need to perform a v3 engineID probe. Call post probe hook to
5165
     * create user from information in a session even if SNMP_FLAGS_DONT_PROBE
5166
     * is set, as this may indicate that probe was already sent by other means
5167
     * for example asynchronously.
5168
     */
5169
0
    if ((pdu->version == SNMP_VERSION_3) &&
5170
0
        (pdu->flags & UCD_MSG_FLAG_EXPECT_RESPONSE)) {
5171
0
        int rc;
5172
0
        DEBUGMSGTL(("snmpv3_build", "delayed probe for engineID\n"));
5173
0
        rc = snmpv3_engineID_probe(slp, session);
5174
0
        if (rc == 0)
5175
0
            return 0; /* s_snmp_errno already set */
5176
0
    }
5177
5178
    /*
5179
     * determine max packet size
5180
     */
5181
0
    if (pdu->msgMaxSize == 0) {
5182
0
        pdu->msgMaxSize = netsnmp_max_send_msg_size();
5183
0
        if (pdu->msgMaxSize > transport->msgMaxSize)
5184
0
            pdu->msgMaxSize = transport->msgMaxSize;
5185
0
        if (pdu->msgMaxSize > session->sndMsgMaxSize)
5186
0
            pdu->msgMaxSize = session->sndMsgMaxSize;
5187
0
        DEBUGMSGTL(("sess_async_send", "max PDU size: %ld\n",
5188
0
                    pdu->msgMaxSize));
5189
0
    }
5190
0
    netsnmp_assert(pdu->msgMaxSize > 0);
5191
5192
    /*
5193
     * allocate initial packet buffer. Buffer will be grown as needed
5194
     * while building the packet.
5195
     */
5196
0
    pktbuf_len = SNMP_MIN_MAX_LEN;
5197
0
    if ((pktbuf = (u_char *)malloc(pktbuf_len)) == NULL) {
5198
0
        DEBUGMSGTL(("sess_async_send",
5199
0
                    "couldn't malloc initial packet buffer\n"));
5200
0
        session->s_snmp_errno = SNMPERR_MALLOC;
5201
0
        return SNMPERR_MALLOC;
5202
0
    }
5203
5204
#ifdef TEMPORARILY_DISABLED
5205
    /*
5206
     *  NULL variable are allowed in certain PDU types.
5207
     *  In particular, SNMPv3 engineID probes are of this form.
5208
     *  There is an internal PDU flag to indicate that this
5209
     *    is acceptable, but until the construction of engineID
5210
     *    probes can be amended to set this flag, we'll simply
5211
     *    skip this test altogether.
5212
     */
5213
    if (pdu->variables == NULL) {
5214
        switch (pdu->command) {
5215
#ifndef NETSNMP_NO_WRITE_SUPPORT
5216
        case SNMP_MSG_SET:
5217
#endif /* !NETSNMP_NO_WRITE_SUPPORT */
5218
        case SNMP_MSG_GET:
5219
        case SNMP_MSG_GETNEXT:
5220
        case SNMP_MSG_GETBULK:
5221
        case SNMP_MSG_RESPONSE:
5222
        case SNMP_MSG_TRAP2:
5223
        case SNMP_MSG_REPORT:
5224
        case SNMP_MSG_INFORM:
5225
            session->s_snmp_errno = snmp_errno = SNMPERR_NO_VARS;
5226
            return SNMPERR_NO_VARS;
5227
        case SNMP_MSG_TRAP:
5228
            break;
5229
        }
5230
    }
5231
#endif
5232
5233
5234
    /*
5235
     * Build the message to send. If a bulk response is too big, switch to
5236
     * forward encoding and set a flag to drop varbinds to make it fit.
5237
     */
5238
0
    do {
5239
0
        packet = NULL;
5240
0
        length = 0;
5241
0
        result = netsnmp_build_packet(isp, session, pdu, &pktbuf, &pktbuf_len,
5242
0
                                      &packet, &length);
5243
0
        if (0 != result)
5244
0
            break;
5245
5246
0
        if (orig_count) { /* 2nd pass, see how many varbinds remain */
5247
0
            curr_count = count_varbinds(pdu->variables);
5248
0
            DEBUGMSGTL(("sess_async_send", " vb count: %d -> %d\n", orig_count,
5249
0
                        curr_count));
5250
0
            DEBUGMSGTL(("sess_async_send", " pdu_len: %" NETSNMP_PRIz "d -> %" NETSNMP_PRIz "d (max %ld)\n",
5251
0
                        orig_length, length, pdu->msgMaxSize));
5252
0
        }
5253
5254
        /** if length is less than max size, we're done (success). */
5255
0
        if (length <= pdu->msgMaxSize)
5256
0
            break;
5257
5258
0
        DEBUGMSGTL(("sess_async_send", "length %" NETSNMP_PRIz "d exceeds maximum %ld\n",
5259
0
                    length, pdu->msgMaxSize));
5260
5261
        /** packet too big. if this is not a bulk request, we're done (err). */
5262
0
        if (!bulk) {
5263
0
           session->s_snmp_errno = SNMPERR_TOO_LONG;
5264
0
           break;
5265
0
        }
5266
5267
        /** rebuild bulk response with truncation and fixed size */
5268
0
        pdu->flags |= UCD_MSG_FLAG_FORWARD_ENCODE | UCD_MSG_FLAG_BULK_TOOBIG;
5269
0
        pktbuf_len = pdu->msgMaxSize;
5270
5271
        /** save original number of varbinds & length */
5272
0
        if (0 == orig_count) {
5273
0
            curr_count = orig_count = count_varbinds(pdu->variables);
5274
0
            orig_length = length;
5275
0
        }
5276
5277
0
    } while(1);
5278
5279
0
    DEBUGMSGTL(("sess_async_send",
5280
0
                "final pktbuf_len after building packet %" NETSNMP_PRIz "u\n",
5281
0
                pktbuf_len));
5282
0
    if (curr_count != orig_count)
5283
0
        DEBUGMSGTL(("sess_async_send",
5284
0
                    "sending %d of %d varbinds (-%d) from bulk response\n",
5285
0
                    curr_count, orig_count, orig_count - curr_count));
5286
5287
0
    if (length > pdu->msgMaxSize) {
5288
0
        DEBUGMSGTL(("sess_async_send",
5289
0
                    "length of packet (%" NETSNMP_PRIz "u) exceeded pdu maximum (%lu)\n",
5290
0
                    length, pdu->msgMaxSize));
5291
0
        netsnmp_assert(SNMPERR_TOO_LONG == session->s_snmp_errno);
5292
0
    }
5293
5294
0
    if ((SNMPERR_TOO_LONG == session->s_snmp_errno) || (result < 0)) {
5295
0
        DEBUGMSGTL(("sess_async_send", "encoding failure\n"));
5296
0
        SNMP_FREE(pktbuf);
5297
0
        return SNMPERR_GENERR;
5298
0
    }
5299
5300
0
    isp->obuf = pktbuf;
5301
0
    isp->obuf_size = pktbuf_len;
5302
0
    isp->opacket = packet;
5303
0
    isp->opacket_len = length;
5304
5305
0
    return SNMPERR_SUCCESS;
5306
0
}
5307
5308
/*
5309
 * These functions send PDUs using an active session:
5310
 * snmp_send             - traditional API, no callback
5311
 * snmp_async_send       - traditional API, with callback
5312
 * snmp_sess_send        - single session API, no callback
5313
 * snmp_sess_async_send  - single session API, with callback
5314
 *
5315
 * Call snmp_build to create a serialized packet (the pdu).
5316
 * If necessary, set some of the pdu data from the
5317
 * session defaults.
5318
 * If there is an expected response for this PDU,
5319
 * queue a corresponding request on the list
5320
 * of outstanding requests for this session,
5321
 * and store the callback vectors in the request.
5322
 *
5323
 * Send the pdu to the target identified by this session.
5324
 * Return on success:
5325
 *   The request id of the pdu is returned, and the pdu is freed.
5326
 * Return on failure:
5327
 *   Zero (0) is returned.
5328
 *   The caller must call snmp_free_pdu if 0 is returned.
5329
 */
5330
int
5331
snmp_send(netsnmp_session * session, netsnmp_pdu *pdu)
5332
0
{
5333
0
    return snmp_async_send(session, pdu, NULL, NULL);
5334
0
}
5335
5336
int
5337
snmp_sess_send(struct session_list *slp, netsnmp_pdu *pdu)
5338
0
{
5339
0
    return snmp_sess_async_send(slp, pdu, NULL, NULL);
5340
0
}
5341
5342
int
5343
snmp_async_send(netsnmp_session * session,
5344
                netsnmp_pdu *pdu, snmp_callback callback, void *cb_data)
5345
0
{
5346
0
    struct session_list *sessp = snmp_sess_pointer(session);
5347
0
    return snmp_sess_async_send(sessp, pdu, callback, cb_data);
5348
0
}
5349
5350
/**
5351
 * Send a PDU asynchronously.
5352
 *
5353
 * @param[in] slp      Session pointer.
5354
 * @param[in] pdu      PDU to send.
5355
 * @param[in] callback Callback function called after processing of the PDU
5356
 *                     finished. This function is called if the PDU has not
5357
 *                     been sent or after a response has been received. Must
5358
 *                     not free @pdu.
5359
 * @param[in] cb_data  Will be passed as fifth argument to @callback.
5360
 *
5361
 * @return If successful, returns the request id of @pdu and frees @pdu.
5362
 * If not successful, returns zero and expects the caller to free @pdu.
5363
 */
5364
static int
5365
_sess_async_send(struct session_list *slp,
5366
                 netsnmp_pdu *pdu, snmp_callback callback, void *cb_data)
5367
0
{
5368
0
    netsnmp_session *session;
5369
0
    struct snmp_internal_session *isp;
5370
0
    netsnmp_transport *transport = NULL;
5371
0
    int             result;
5372
0
    long            reqid;
5373
5374
0
    if (slp == NULL || NULL == slp->session || NULL ==slp->internal ||
5375
0
                NULL == slp->transport) {
5376
0
        return 0;
5377
0
    }
5378
5379
0
    session = slp->session;
5380
0
    isp = slp->internal;
5381
0
    transport = slp->transport;
5382
5383
0
    if (NULL == isp->opacket) {
5384
0
        result = _build_initial_pdu_packet(slp, pdu, 0);
5385
0
        if ((SNMPERR_SUCCESS != result) || (NULL == isp->opacket)) {
5386
0
            if (callback) {
5387
0
                switch (session->s_snmp_errno) {
5388
                    /*
5389
                     * some of these probably don't make sense here, but
5390
                     * it's a rough first cut.
5391
                     */
5392
0
                    case SNMPERR_BAD_ENG_ID:
5393
0
                    case SNMPERR_BAD_SEC_LEVEL:
5394
0
                    case SNMPERR_UNKNOWN_SEC_MODEL:
5395
0
                    case SNMPERR_UNKNOWN_ENG_ID:
5396
0
                    case SNMPERR_UNKNOWN_USER_NAME:
5397
0
                    case SNMPERR_UNSUPPORTED_SEC_LEVEL:
5398
0
                    case SNMPERR_AUTHENTICATION_FAILURE:
5399
0
                    case SNMPERR_NOT_IN_TIME_WINDOW:
5400
0
                    case SNMPERR_USM_GENERICERROR:
5401
0
                    case SNMPERR_USM_UNKNOWNSECURITYNAME:
5402
0
                    case SNMPERR_USM_UNSUPPORTEDSECURITYLEVEL:
5403
0
                    case SNMPERR_USM_ENCRYPTIONERROR:
5404
0
                    case SNMPERR_USM_AUTHENTICATIONFAILURE:
5405
0
                    case SNMPERR_USM_PARSEERROR:
5406
0
                    case SNMPERR_USM_UNKNOWNENGINEID:
5407
0
                    case SNMPERR_USM_NOTINTIMEWINDOW:
5408
0
                        callback(NETSNMP_CALLBACK_OP_SEC_ERROR, session,
5409
0
                                 pdu->reqid, pdu, cb_data);
5410
0
                        break;
5411
0
                    case SNMPERR_TIMEOUT: /* engineID probe timed out */
5412
0
                        callback(NETSNMP_CALLBACK_OP_TIMED_OUT, session,
5413
0
                                 pdu->reqid, pdu, cb_data);
5414
0
                        break;
5415
0
                    default:
5416
0
                        callback(NETSNMP_CALLBACK_OP_SEND_FAILED, session,
5417
0
                                 pdu->reqid, pdu, cb_data);
5418
0
                        break;
5419
0
                }
5420
0
            }
5421
            /** no packet to send?? */
5422
0
            return 0;
5423
0
        }
5424
0
    }
5425
5426
    /*
5427
     * Send the message.  
5428
     */
5429
5430
0
    DEBUGMSGTL(("sess_process_packet", "sending message id#%ld reqid#%ld len %"
5431
0
                NETSNMP_PRIz "u\n", pdu->msgid, pdu->reqid, isp->opacket_len));
5432
0
    result = netsnmp_transport_send(transport, isp->opacket, isp->opacket_len,
5433
0
                                    &(pdu->transport_data),
5434
0
                                    &(pdu->transport_data_length));
5435
5436
0
    SNMP_FREE(isp->obuf);
5437
0
    isp->opacket = NULL; /* opacket was in obuf, so no free needed */
5438
0
    isp->opacket_len = 0;
5439
5440
0
    if (result < 0) {
5441
0
        session->s_snmp_errno = SNMPERR_BAD_SENDTO;
5442
0
        session->s_errno = errno;
5443
0
        if (callback)
5444
0
            callback(NETSNMP_CALLBACK_OP_SEND_FAILED, session,
5445
0
                     pdu->reqid, pdu, cb_data);
5446
0
        return 0;
5447
0
    }
5448
5449
0
    reqid = pdu->reqid;
5450
5451
    /*
5452
     * Bug 2387: 0 is a valid request id, so since reqid is used as a return
5453
     * code with 0 meaning an error, set reqid to 1 if there is no error. This
5454
     * does not affect the request id in the packet and fixes a memory leak
5455
     * for incoming PDUs with a request id of 0. This could cause some
5456
     * confusion if the caller is expecting the request id to match the
5457
     * return code, as the documentation states it will. Most example code
5458
     * just checks for non-zero, so hopefully this wont be an issue.
5459
     */
5460
0
    if (0 == reqid && (SNMPERR_SUCCESS == session->s_snmp_errno))
5461
0
        ++reqid;
5462
5463
    /*
5464
     * Add to pending requests list if we expect a response.  
5465
     */
5466
0
    if (pdu->flags & UCD_MSG_FLAG_EXPECT_RESPONSE) {
5467
0
        netsnmp_request_list *rp;
5468
0
        struct timeval  tv;
5469
5470
0
        rp = calloc(1, sizeof(netsnmp_request_list));
5471
0
        if (rp == NULL) {
5472
0
            session->s_snmp_errno = SNMPERR_GENERR;
5473
0
            return 0;
5474
0
        }
5475
5476
0
        netsnmp_get_monotonic_clock(&tv);
5477
0
        rp->pdu = pdu;
5478
0
        rp->request_id = pdu->reqid;
5479
0
        rp->message_id = pdu->msgid;
5480
0
        rp->callback = callback;
5481
0
        rp->cb_data = cb_data;
5482
0
        rp->retries = 0;
5483
0
        if (pdu->flags & UCD_MSG_FLAG_PDU_TIMEOUT) {
5484
0
            rp->timeout = pdu->time * 1000000L;
5485
0
        } else {
5486
0
            rp->timeout = session->timeout;
5487
0
        }
5488
0
        rp->timeM = tv;
5489
0
        tv.tv_usec += rp->timeout;
5490
0
        tv.tv_sec += tv.tv_usec / 1000000L;
5491
0
        tv.tv_usec %= 1000000L;
5492
0
        rp->expireM = tv;
5493
5494
        /*
5495
         * XX lock should be per session ! 
5496
         */
5497
0
        snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
5498
0
        if (isp->requestsEnd) {
5499
0
            rp->next_request = isp->requestsEnd->next_request;
5500
0
            isp->requestsEnd->next_request = rp;
5501
0
            isp->requestsEnd = rp;
5502
0
        } else {
5503
0
            rp->next_request = isp->requests;
5504
0
            isp->requests = rp;
5505
0
            isp->requestsEnd = rp;
5506
0
        }
5507
0
        snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
5508
0
    } else {
5509
        /*
5510
         * No response expected...  
5511
         */
5512
0
        if (reqid) {
5513
            /*
5514
             * Free v1 or v2 TRAP PDU iff no error  
5515
             */
5516
0
            snmp_free_pdu(pdu);
5517
0
        }
5518
0
    }
5519
5520
0
    return reqid;
5521
0
}
5522
5523
/**
5524
 * Send a PDU asynchronously.
5525
 *
5526
 * @param[in] sessp    Session pointer.
5527
 * @param[in] pdu      PDU to send.
5528
 * @param[in] callback Callback function called after processing of the PDU
5529
 *                     finished. This function is called if the PDU has not
5530
 *                     been sent or after a response has been received. Must
5531
 *                     not free @p pdu.
5532
 * @param[in] cb_data  Will be passed as fifth argument to @p callback.
5533
 *
5534
 * @return If successful, returns the request id of @p pdu and frees @p pdu.
5535
 * If not successful, returns zero and expects the caller to free @p pdu.
5536
 */
5537
int
5538
snmp_sess_async_send(struct session_list *slp,
5539
                     netsnmp_pdu *pdu,
5540
                     snmp_callback callback, void *cb_data)
5541
0
{
5542
0
    int             rc;
5543
5544
0
    if (slp == NULL) {
5545
0
        snmp_errno = SNMPERR_BAD_SESSION;       /*MTCRITICAL_RESOURCE */
5546
0
        return (0);
5547
0
    }
5548
    /*
5549
     * send pdu
5550
     */
5551
0
    rc = _sess_async_send(slp, pdu, callback, cb_data);
5552
0
    if (rc == 0)
5553
0
        SET_SNMP_ERROR(slp->session->s_snmp_errno);
5554
0
    return rc;
5555
0
}
5556
5557
5558
/*
5559
 * Frees the variable and any malloc'd data associated with it.
5560
 */
5561
void
5562
snmp_free_var_internals(netsnmp_variable_list * var)
5563
0
{
5564
0
    if (!var)
5565
0
        return;
5566
5567
0
    if (var->name != var->name_loc)
5568
0
        SNMP_FREE(var->name);
5569
0
    if (var->val.string != var->buf)
5570
0
        SNMP_FREE(var->val.string);
5571
0
    if (var->data) {
5572
0
        if (var->dataFreeHook) {
5573
0
            var->dataFreeHook(var->data);
5574
0
            var->data = NULL;
5575
0
        } else {
5576
0
            SNMP_FREE(var->data);
5577
0
        }
5578
0
    }
5579
0
}
5580
5581
void
5582
snmp_free_var(netsnmp_variable_list * var)
5583
0
{
5584
0
    snmp_free_var_internals(var);
5585
0
    free(var);
5586
0
}
5587
5588
void
5589
snmp_free_varbind(netsnmp_variable_list * var)
5590
0
{
5591
0
    netsnmp_variable_list *ptr;
5592
0
    while (var) {
5593
0
        ptr = var->next_variable;
5594
0
        snmp_free_var(var);
5595
0
        var = ptr;
5596
0
    }
5597
0
}
5598
5599
/*
5600
 * Frees the pdu and any malloc'd data associated with it.
5601
 */
5602
void
5603
snmp_free_pdu(netsnmp_pdu *pdu)
5604
0
{
5605
0
    struct snmp_secmod_def *sptr;
5606
5607
0
    if (!pdu)
5608
0
        return;
5609
5610
0
    free_securityStateRef(pdu);
5611
5612
0
    sptr = find_sec_mod(pdu->securityModel);
5613
0
    if (sptr && sptr->pdu_free)
5614
0
        (*sptr->pdu_free)(pdu);
5615
5616
0
    snmp_free_varbind(pdu->variables);
5617
0
    free(pdu->enterprise);
5618
0
    free(pdu->community);
5619
0
    free(pdu->contextEngineID);
5620
0
    free(pdu->securityEngineID);
5621
0
    free(pdu->contextName);
5622
0
    free(pdu->securityName);
5623
0
    free(pdu->transport_data);
5624
0
    free(pdu);
5625
0
}
5626
5627
netsnmp_pdu    *
5628
snmp_create_sess_pdu(netsnmp_transport *transport, void *opaque,
5629
                     size_t olength)
5630
0
{
5631
0
    netsnmp_pdu *pdu = calloc(1, sizeof(netsnmp_pdu));
5632
0
    if (pdu == NULL) {
5633
0
        DEBUGMSGTL(("sess_process_packet", "can't malloc space for PDU\n"));
5634
0
        return NULL;
5635
0
    }
5636
5637
    /*
5638
     * Save the transport-level data specific to this reception (e.g. UDP
5639
     * source address).  
5640
     */
5641
5642
0
    pdu->transport_data = opaque;
5643
0
    pdu->transport_data_length = olength;
5644
0
    pdu->tDomain = transport->domain;
5645
0
    pdu->tDomainLen = transport->domain_length;
5646
0
    return pdu;
5647
0
}
5648
5649
5650
/*
5651
 * This function parses a packet into a PDU
5652
 */
5653
static netsnmp_pdu *
5654
_sess_process_packet_parse_pdu(struct session_list *slp, netsnmp_session * sp,
5655
                               struct snmp_internal_session *isp,
5656
                               netsnmp_transport *transport,
5657
                               void *opaque, int olength,
5658
                               u_char * packetptr, int length)
5659
0
{
5660
0
  netsnmp_pdu    *pdu;
5661
0
  int             ret = 0;
5662
0
  int             dump = 0, filter = 0;
5663
5664
0
  debug_indent_reset();
5665
5666
0
  DEBUGMSGTL(("sess_process_packet",
5667
0
        "session %p fd %d pkt %p length %d\n", slp,
5668
0
        transport->sock, packetptr, length));
5669
5670
0
  dump = netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
5671
0
                                NETSNMP_DS_LIB_DUMP_PACKET);
5672
0
#ifndef NETSNMP_FEATURE_REMOVE_FILTER_SOURCE
5673
0
  filter = netsnmp_ds_get_int(NETSNMP_DS_LIBRARY_ID,
5674
0
                                  NETSNMP_DS_LIB_FILTER_TYPE);
5675
0
#endif
5676
0
  if (dump || filter) {
5677
0
      int filtered = 0;
5678
0
      char *addrtxt = netsnmp_transport_peer_string(transport, opaque, olength);
5679
0
      snmp_log(LOG_DEBUG, "\nReceived %d byte packet from %s\n",
5680
0
               length, addrtxt);
5681
5682
0
      if (dump)
5683
0
          xdump(packetptr, length, "");
5684
5685
0
#ifndef NETSNMP_FEATURE_REMOVE_FILTER_SOURCE
5686
0
      if (filter) {
5687
0
          char *sourceaddr = NULL, *c = strchr(addrtxt, '[');
5688
0
          const char *dropstr = NULL;
5689
0
          if (c) {
5690
0
              sourceaddr = ++c;
5691
0
              c = strchr(sourceaddr, ']');
5692
0
              if (c)
5693
0
                  *c = 0;
5694
0
              filtered = netsnmp_transport_filter_check(sourceaddr);
5695
0
          }
5696
0
          else if (!strncmp(addrtxt, "callback", 8)) {
5697
              /* do not filter internal request */
5698
0
              DEBUGMSGTL(("sess_process_packet:filter",
5699
0
                          "bypass packet from %s \n",
5700
0
                          addrtxt));
5701
0
              filtered = 1;
5702
0
          }
5703
0
          if ((filter == -1) && filtered)
5704
0
              dropstr = "matched blacklist";
5705
0
          else if ((filter == 1) && !filtered)
5706
0
              dropstr = "didn't match whitelist";
5707
0
          if (dropstr) {
5708
0
              DEBUGMSGTL(("sess_process_packet:filter",
5709
0
                          "packet from %s %s\n",
5710
0
                          sourceaddr ? sourceaddr : "UNKNOWN", dropstr));
5711
0
              SNMP_FREE(opaque);
5712
0
              SNMP_FREE(addrtxt);
5713
0
              return NULL;
5714
0
          }
5715
0
      }
5716
0
#endif
5717
5718
0
      SNMP_FREE(addrtxt);
5719
0
  }
5720
5721
  /*
5722
   * Do transport-level filtering (e.g. IP-address based allow/deny).  
5723
   */
5724
5725
0
  if (isp->hook_pre) {
5726
0
    if (isp->hook_pre(sp, transport, opaque, olength) == 0) {
5727
0
      DEBUGMSGTL(("sess_process_packet", "pre-parse fail\n"));
5728
0
      SNMP_FREE(opaque);
5729
0
      return NULL;
5730
0
    }
5731
0
  }
5732
5733
0
  if (isp->hook_create_pdu) {
5734
0
    pdu = isp->hook_create_pdu(transport, opaque, olength);
5735
0
  } else {
5736
0
    pdu = snmp_create_sess_pdu(transport, opaque, olength);
5737
0
  }
5738
5739
0
  if (pdu == NULL) {
5740
0
    snmp_log(LOG_ERR, "pdu failed to be created\n");
5741
0
    SNMP_FREE(opaque);
5742
0
    return NULL;
5743
0
  }
5744
5745
  /* if the transport was a magic tunnel, mark the PDU as having come
5746
     through one. */
5747
0
  if (transport->flags & NETSNMP_TRANSPORT_FLAG_TUNNELED) {
5748
0
      pdu->flags |= UCD_MSG_FLAG_TUNNELED;
5749
0
  }
5750
5751
0
  if (isp->hook_parse) {
5752
0
    ret = isp->hook_parse(sp, pdu, packetptr, length);
5753
0
  } else {
5754
0
    ret = snmp_parse(slp, sp, pdu, packetptr, length);
5755
0
  }
5756
5757
0
  DEBUGMSGTL(("sess_process_packet", "received message id#%ld reqid#%ld len "
5758
0
              "%u\n", pdu->msgid, pdu->reqid, length));
5759
5760
0
  if (ret != SNMP_ERR_NOERROR) {
5761
0
    DEBUGMSGTL(("sess_process_packet", "parse fail\n"));
5762
0
  }
5763
5764
0
  if (isp->hook_post) {
5765
0
    if (isp->hook_post(sp, pdu, ret) == 0) {
5766
0
      DEBUGMSGTL(("sess_process_packet", "post-parse fail\n"));
5767
0
      ret = SNMPERR_ASN_PARSE_ERR;
5768
0
    }
5769
0
  }
5770
5771
0
  if (ret != SNMP_ERR_NOERROR) {
5772
0
    snmp_free_pdu(pdu);
5773
0
    return NULL;
5774
0
  }
5775
5776
0
  return pdu;
5777
0
}
5778
5779
/* Remove request @rp from session @isp. @orp is the request before @rp. */
5780
static void
5781
remove_request(struct snmp_internal_session *isp,
5782
               netsnmp_request_list *orp, netsnmp_request_list *rp)
5783
0
{
5784
0
    if (orp)
5785
0
        orp->next_request = rp->next_request;
5786
0
    else
5787
0
        isp->requests = rp->next_request;
5788
0
    if (isp->requestsEnd == rp)
5789
0
        isp->requestsEnd = orp;
5790
0
    snmp_free_pdu(rp->pdu);
5791
0
}
5792
5793
/*
5794
 * This function processes a PDU and calls the relevant callbacks.
5795
 */
5796
static int
5797
_sess_process_packet_handle_pdu(struct session_list *slp, netsnmp_session * sp,
5798
                                struct snmp_internal_session *isp,
5799
                                netsnmp_transport *transport, netsnmp_pdu *pdu)
5800
0
{
5801
0
  netsnmp_request_list *rp, *orp = NULL;
5802
0
  int             handled = 0;
5803
5804
0
  if (pdu->flags & UCD_MSG_FLAG_RESPONSE_PDU) {
5805
    /*
5806
     * Call USM to free any securityStateRef supplied with the message.  
5807
     */
5808
0
    free_securityStateRef(pdu);
5809
5810
0
    for (rp = isp->requests; rp; orp = rp, rp = rp->next_request) {
5811
0
      snmp_callback   callback;
5812
0
      void           *magic;
5813
5814
0
      if (pdu->version == SNMP_VERSION_3) {
5815
  /*
5816
   * msgId must match for v3 messages.  
5817
   */
5818
0
  if (rp->message_id != pdu->msgid) {
5819
0
            DEBUGMSGTL(("sess_process_packet", "unmatched msg id: %ld != %ld\n",
5820
0
                        rp->message_id, pdu->msgid));
5821
0
      continue;
5822
0
  }
5823
5824
  /*
5825
   * Check that message fields match original, if not, no further
5826
   * processing.  
5827
   */
5828
0
  if (!snmpv3_verify_msg(rp, pdu)) {
5829
0
    break;
5830
0
  }
5831
0
      } else {
5832
0
  if (rp->request_id != pdu->reqid) {
5833
0
    continue;
5834
0
  }
5835
0
      }
5836
5837
0
      if (rp->callback) {
5838
0
  callback = rp->callback;
5839
0
  magic = rp->cb_data;
5840
0
      } else {
5841
0
  callback = sp->callback;
5842
0
  magic = sp->callback_magic;
5843
0
      }
5844
0
      handled = 1;
5845
5846
      /*
5847
       * MTR snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);  ?* XX lock
5848
       * should be per session ! 
5849
       */
5850
5851
0
      if (pdu->command == SNMP_MSG_REPORT) {
5852
0
        if (sp->s_snmp_errno == SNMPERR_NOT_IN_TIME_WINDOW ||
5853
0
            snmpv3_get_report_type(pdu) == SNMPERR_NOT_IN_TIME_WINDOW) {
5854
          /*
5855
           * trigger immediate retry on recoverable Reports 
5856
           * * (notInTimeWindow), incr_retries == TRUE to prevent
5857
           * * inifinite resend                      
5858
           */
5859
0
          if (rp->retries <= sp->retries) {
5860
0
            snmp_resend_request(slp, orp, rp, TRUE);
5861
0
            break;
5862
0
          } else {
5863
            /* We're done with retries, so no longer waiting for a response */
5864
0
            if (callback) {
5865
0
              callback(NETSNMP_CALLBACK_OP_SEC_ERROR, sp, pdu->reqid, pdu,
5866
0
                       magic);
5867
0
            }
5868
0
          }
5869
0
        } else {
5870
0
          if (SNMPV3_IGNORE_UNAUTH_REPORTS) {
5871
0
            break;
5872
0
          } else { /* We're done with retries */
5873
0
            if (callback) {
5874
0
              callback(NETSNMP_CALLBACK_OP_SEC_ERROR, sp, pdu->reqid, pdu,
5875
0
                       magic);
5876
0
            }
5877
0
          }
5878
0
        }
5879
5880
        /*
5881
         * Handle engineID discovery.  
5882
         */
5883
0
        if (!sp->securityEngineIDLen && pdu->securityEngineIDLen) {
5884
0
          sp->securityEngineID = malloc(pdu->securityEngineIDLen);
5885
0
          if (sp->securityEngineID == NULL) {
5886
            /*
5887
             * TODO FIX: recover after message callback *?
5888
             */
5889
0
            snmp_log(LOG_ERR, "malloc failed handling pdu\n");
5890
0
            snmp_free_pdu(pdu);
5891
0
            return -1;
5892
0
          }
5893
0
          memcpy(sp->securityEngineID, pdu->securityEngineID,
5894
0
                 pdu->securityEngineIDLen);
5895
0
          sp->securityEngineIDLen = pdu->securityEngineIDLen;
5896
0
          if (!sp->contextEngineIDLen) {
5897
0
            sp->contextEngineID = malloc(pdu->securityEngineIDLen);
5898
0
            if (sp->contextEngineID == NULL) {
5899
              /*
5900
               * TODO FIX: recover after message callback *?
5901
               */
5902
0
              snmp_log(LOG_ERR, "malloc failed handling pdu\n");
5903
0
              snmp_free_pdu(pdu);
5904
0
              return -1;
5905
0
            }
5906
0
            memcpy(sp->contextEngineID, pdu->securityEngineID,
5907
0
                   pdu->securityEngineIDLen);
5908
0
            sp->contextEngineIDLen = pdu->securityEngineIDLen;
5909
0
          }
5910
0
        }
5911
0
      }
5912
5913
0
      if (callback == NULL
5914
0
    || callback(NETSNMP_CALLBACK_OP_RECEIVED_MESSAGE, sp,
5915
0
          pdu->reqid, pdu, magic) == 1) {
5916
  /*
5917
   * Successful, so delete request.  
5918
   */
5919
0
  remove_request(isp, orp, rp);
5920
0
  free(rp);
5921
  /*
5922
   * There shouldn't be any more requests with the same reqid.  
5923
   */
5924
0
  break;
5925
0
      }
5926
      /*
5927
       * MTR snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);  ?* XX lock should be per session ! 
5928
       */
5929
0
    }
5930
0
  } else {
5931
0
    if (sp->callback) {
5932
      /*
5933
       * MTR snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION); 
5934
       */
5935
0
      handled = 1;
5936
0
      sp->callback(NETSNMP_CALLBACK_OP_RECEIVED_MESSAGE,
5937
0
       sp, pdu->reqid, pdu, sp->callback_magic);
5938
      /*
5939
       * MTR snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION); 
5940
       */
5941
0
    }
5942
0
  }
5943
5944
0
  if (!handled) {
5945
0
    if (sp->flags & SNMP_FLAGS_SHARED_SOCKET)
5946
0
      return -2;
5947
0
    snmp_increment_statistic(STAT_SNMPUNKNOWNPDUHANDLERS);
5948
0
    DEBUGMSGTL(("sess_process_packet", "unhandled PDU\n"));
5949
0
  }
5950
5951
0
  snmp_free_pdu(pdu);
5952
0
  return 0;
5953
0
}
5954
5955
/*
5956
 * This function processes a complete (according to asn_check_packet or the
5957
 * AgentX equivalent) packet, parsing it into a PDU and calling the relevant
5958
 * callbacks.  On entry, packetptr points at the packet in the session's
5959
 * buffer and length is the length of the packet.  Return codes:
5960
 *   0: pdu handled (pdu deleted)
5961
 *  -1: parse error (pdu deleted)
5962
 *  -2: pdu not found for shared session (pdu NOT deleted)
5963
 */
5964
static int
5965
_sess_process_packet(struct session_list *slp, netsnmp_session * sp,
5966
                     struct snmp_internal_session *isp,
5967
                     netsnmp_transport *transport,
5968
                     void *opaque, int olength,
5969
                     u_char * packetptr, int length)
5970
0
{
5971
0
    netsnmp_pdu         *pdu;
5972
0
    int                  rc;
5973
5974
0
    pdu = _sess_process_packet_parse_pdu(slp, sp, isp, transport, opaque,
5975
0
                                         olength, packetptr, length);
5976
0
    if (NULL == pdu)
5977
0
        return -1;
5978
5979
    /*
5980
     * find session to process pdu. usually that will be the current session,
5981
     * but with the introduction of shared transports, another session may
5982
     * have the same socket.
5983
     */
5984
0
    do {
5985
0
        rc = _sess_process_packet_handle_pdu(slp, sp, isp, transport, pdu);
5986
0
        if (-2 != rc || !(transport->flags & NETSNMP_TRANSPORT_FLAG_SHARED))
5987
0
            break;
5988
5989
        /** -2 means pdu not in request list. check other sessions */
5990
0
        do  {
5991
0
            slp = slp->next;
5992
0
        } while (slp && slp->transport->sock != transport->sock);
5993
0
        if (!slp)
5994
0
            break; /* no more sessions with same socket */
5995
5996
0
        sp = slp->session;
5997
0
        isp = slp->internal;
5998
0
        transport = slp->transport;
5999
0
    } while(slp);
6000
6001
0
    if (-2 == rc) { /* did not find session for pdu */
6002
0
        snmp_increment_statistic(STAT_SNMPUNKNOWNPDUHANDLERS);
6003
0
        DEBUGMSGTL(("sess_process_packet", "unhandled PDU\n"));
6004
0
        snmp_free_pdu(pdu);
6005
0
    }
6006
6007
0
  return rc;
6008
0
}
6009
6010
/*
6011
 * Checks to see if any of the fd's set in the fdset belong to
6012
 * snmp.  Each socket with it's fd set has a packet read from it
6013
 * and snmp_parse is called on the packet received.  The resulting pdu
6014
 * is passed to the callback routine for that session.  If the callback
6015
 * routine returns successfully, the pdu and it's request are deleted.
6016
 */
6017
void
6018
snmp_read(fd_set * fdset)
6019
0
{
6020
0
    netsnmp_large_fd_set lfdset;
6021
6022
0
    netsnmp_large_fd_set_init(&lfdset, FD_SETSIZE);
6023
0
    netsnmp_copy_fd_set_to_large_fd_set(&lfdset, fdset);
6024
0
    snmp_read2(&lfdset);
6025
0
    netsnmp_large_fd_set_cleanup(&lfdset);
6026
0
}
6027
6028
void
6029
snmp_read2(netsnmp_large_fd_set * fdset)
6030
0
{
6031
0
    struct session_list *slp;
6032
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
6033
0
    for (slp = Sessions; slp; slp = slp->next) {
6034
0
        snmp_sess_read2(slp, fdset);
6035
0
    }
6036
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
6037
0
}
6038
6039
/*
6040
 * accept new connections
6041
 * returns 0 if success, -1 if fail
6042
 */
6043
static int
6044
_sess_read_accept(struct session_list *slp)
6045
0
{
6046
0
    netsnmp_session *sp = slp ? slp->session : NULL;
6047
0
    struct snmp_internal_session *isp = slp ? slp->internal : NULL;
6048
0
    netsnmp_transport *transport = slp ? slp->transport : NULL;
6049
0
    netsnmp_transport *new_transport;
6050
0
    struct session_list *nslp;
6051
0
    int               data_sock;
6052
6053
0
    if (NULL == slp || NULL == sp || NULL == transport || NULL == isp ||
6054
0
        !(transport->flags & NETSNMP_TRANSPORT_FLAG_LISTEN))
6055
0
        return -1;
6056
6057
0
    data_sock = transport->f_accept(transport);
6058
0
    if (data_sock < 0) {
6059
0
        sp->s_snmp_errno = SNMPERR_BAD_RECVFROM;
6060
0
        sp->s_errno = errno;
6061
0
        snmp_set_detail(strerror(errno));
6062
0
        return -1;
6063
0
    }
6064
6065
    /*
6066
     * We've successfully accepted a new stream-based connection.
6067
     * It's not too clear what should happen here if we are using the
6068
     * single-session API at this point.  Basically a "session
6069
     * accepted" callback is probably needed to hand the new session
6070
     * over to the application.
6071
     *
6072
     * However, for now, as in th original snmp_api, we will ASSUME
6073
     * that we're using the traditional API, and simply add the new
6074
     * session to the list.  Note we don't have to get the Session
6075
     * list lock here, because under that assumption we already hold
6076
     * it (this is also why we don't just use snmp_add).
6077
     *
6078
     * The moral of the story is: don't use listening stream-based
6079
     * transports in a multi-threaded environment because something
6080
     * will go HORRIBLY wrong (and also that SNMP/TCP is not trivial).
6081
     *
6082
     * Another open issue: what should happen to sockets that have
6083
     * been accept()ed from a listening socket when that original
6084
     * socket is closed?  If they are left open, then attempting to
6085
     * re-open the listening socket will fail, which is semantically
6086
     * confusing.  Perhaps there should be some kind of chaining in
6087
     * the transport structure so that they can all be closed.
6088
     * Discuss.  ;-)
6089
     */
6090
0
    new_transport=netsnmp_transport_copy(transport);
6091
0
    if (new_transport == NULL) {
6092
0
        sp->s_snmp_errno = SNMPERR_MALLOC;
6093
0
        sp->s_errno = errno;
6094
0
        snmp_set_detail(strerror(errno));
6095
0
        return -1;
6096
0
    }
6097
0
    nslp = NULL;
6098
6099
0
    new_transport->sock = data_sock;
6100
0
    new_transport->flags &= ~NETSNMP_TRANSPORT_FLAG_LISTEN;
6101
6102
0
    nslp = snmp_sess_add_ex(sp, new_transport, isp->hook_pre, isp->hook_parse,
6103
0
                         isp->hook_post, isp->hook_build,
6104
0
                         isp->hook_realloc_build, isp->check_packet,
6105
0
                         isp->hook_create_pdu);
6106
6107
0
    if (nslp != NULL) {
6108
0
        snmp_session_insert(nslp);
6109
        /** Tell the new session about its existence if possible. */
6110
0
        DEBUGMSGTL(("sess_read",
6111
0
                    "perform callback with op=CONNECT\n"));
6112
0
        (void)nslp->session->callback(NETSNMP_CALLBACK_OP_CONNECT,
6113
0
                                      nslp->session, 0, NULL,
6114
0
                                      sp->callback_magic);
6115
0
    }
6116
6117
0
    return 0;
6118
0
}
6119
6120
/*
6121
 * Same as snmp_read, but works just one non-stream session.
6122
 * returns 0 if success, -1 if protocol err, -2 if no packet to process
6123
 * MTR: can't lock here and at snmp_read
6124
 * Beware recursive send maybe inside snmp_read callback function.
6125
 */
6126
static int
6127
_sess_read_dgram_packet(struct session_list *slp, netsnmp_large_fd_set * fdset,
6128
                        snmp_rcv_packet *rcvp)
6129
0
{
6130
0
    netsnmp_session *sp = slp ? slp->session : NULL;
6131
0
    struct snmp_internal_session *isp = slp ? slp->internal : NULL;
6132
0
    netsnmp_transport *transport = slp ? slp->transport : NULL;
6133
6134
0
    if (!sp || !isp || !transport || !rcvp ) {
6135
0
        DEBUGMSGTL(("sess_read_packet", "missing arguments\n"));
6136
0
        return -2;
6137
0
    }
6138
6139
0
    if (transport->flags & NETSNMP_TRANSPORT_FLAG_STREAM)
6140
0
        return -2;
6141
6142
0
    if (NULL != rcvp->packet) {
6143
0
        snmp_log(LOG_WARNING, "overwriting existing saved packet; sess %p\n",
6144
0
                 sp);
6145
0
        SNMP_FREE(rcvp->packet);
6146
0
    }
6147
6148
0
    if ((rcvp->packet = (u_char *) malloc(SNMP_MAX_RCV_MSG_SIZE)) == NULL) {
6149
0
        DEBUGMSGTL(("sess_read_packet", "can't malloc %u bytes for packet\n",
6150
0
                    SNMP_MAX_RCV_MSG_SIZE));
6151
0
        return -2;
6152
0
    }
6153
6154
0
    rcvp->packet_len = netsnmp_transport_recv(transport, rcvp->packet,
6155
0
                                              SNMP_MAX_RCV_MSG_SIZE,
6156
0
                                              &rcvp->opaque, &rcvp->olength);
6157
0
    if (rcvp->packet_len == -1) {
6158
0
        sp->s_snmp_errno = SNMPERR_BAD_RECVFROM;
6159
0
        sp->s_errno = errno;
6160
0
        snmp_set_detail(strerror(errno));
6161
0
        SNMP_FREE(rcvp->packet);
6162
0
        SNMP_FREE(rcvp->opaque);
6163
0
        return -1;
6164
0
    }
6165
6166
    /** clear so any other sess sharing this socket won't try reading again */
6167
0
    NETSNMP_LARGE_FD_CLR(transport->sock, fdset);
6168
6169
0
    if (0 == rcvp->packet_len &&
6170
0
        transport->flags & NETSNMP_TRANSPORT_FLAG_EMPTY_PKT) {
6171
        /* this allows for a transport that needs to return from
6172
         * packet processing that doesn't necessarily have any
6173
         * consumable data in it. */
6174
6175
        /* reset the flag since it's a per-message flag */
6176
0
        transport->flags &= (~NETSNMP_TRANSPORT_FLAG_EMPTY_PKT);
6177
6178
        /** free packet */
6179
0
        SNMP_FREE(rcvp->packet);
6180
0
        SNMP_FREE(rcvp->opaque);
6181
6182
0
        return -2;
6183
0
    }
6184
6185
0
    return 0;
6186
0
}
6187
6188
/*
6189
 * Same as snmp_read, but works just one session. 
6190
 * returns 0 if success, -1 if fail 
6191
 * MTR: can't lock here and at snmp_read 
6192
 * Beware recursive send maybe inside snmp_read callback function. 
6193
 */
6194
int
6195
_sess_read(struct session_list *slp, netsnmp_large_fd_set * fdset)
6196
0
{
6197
0
    netsnmp_session *sp = slp ? slp->session : NULL;
6198
0
    struct snmp_internal_session *isp = slp ? slp->internal : NULL;
6199
0
    netsnmp_transport *transport = slp ? slp->transport : NULL;
6200
0
    size_t          pdulen = 0, rxbuf_len = SNMP_MAX_RCV_MSG_SIZE;
6201
0
    u_char         *rxbuf = NULL;
6202
0
    int             length = 0, olength = 0, rc = 0;
6203
0
    void           *opaque = NULL;
6204
6205
0
    if (NULL == slp || NULL == sp || NULL == isp || NULL == transport) {
6206
0
        snmp_log(LOG_ERR, "bad parameters to _sess_read\n");
6207
0
        return SNMPERR_GENERR;
6208
0
    }
6209
6210
    /* to avoid subagent crash */ 
6211
0
    if (transport->sock < 0) { 
6212
0
        snmp_log (LOG_INFO, "transport->sock got negative fd value %d\n",
6213
0
                  transport->sock);
6214
0
        return 0; 
6215
0
    }
6216
6217
0
    if (!fdset || !(NETSNMP_LARGE_FD_ISSET(transport->sock, fdset))) {
6218
0
        DEBUGMSGTL(("sess_read", "not reading %d (fdset %p set %d)\n",
6219
0
                    transport->sock, fdset,
6220
0
                    fdset ? NETSNMP_LARGE_FD_ISSET(transport->sock, fdset)
6221
0
        : -9));
6222
0
        return 0;
6223
0
    }
6224
6225
0
    sp->s_snmp_errno = 0;
6226
0
    sp->s_errno = 0;
6227
6228
0
    if (transport->flags & NETSNMP_TRANSPORT_FLAG_LISTEN)
6229
0
        return _sess_read_accept(slp);
6230
6231
0
    if (!(transport->flags & NETSNMP_TRANSPORT_FLAG_STREAM)) {
6232
0
        snmp_rcv_packet rcvp;
6233
0
        memset(&rcvp, 0x0, sizeof(rcvp));
6234
6235
        /** read the packet */
6236
0
        rc = _sess_read_dgram_packet(slp, fdset, &rcvp);
6237
0
        if (-1 == rc) /* protocol error */
6238
0
            return -1;
6239
0
        else if (-2 == rc) /* no packet to process */
6240
0
            return 0;
6241
6242
0
        rc = _sess_process_packet(slp, sp, isp, transport,
6243
0
                                  rcvp.opaque, rcvp.olength,
6244
0
                                  rcvp.packet, rcvp.packet_len);
6245
0
        SNMP_FREE(rcvp.packet);
6246
        /** opaque is freed in _sess_process_packet */
6247
0
        return rc;
6248
0
    }
6249
6250
    /** stream transport */
6251
6252
0
        if (isp->packet == NULL) {
6253
            /*
6254
             * We have no saved packet.  Allocate one.  
6255
             */
6256
0
            if ((isp->packet = (u_char *) malloc(rxbuf_len)) == NULL) {
6257
0
                DEBUGMSGTL(("sess_read", "can't malloc %" NETSNMP_PRIz
6258
0
                            "u bytes for rxbuf\n", rxbuf_len));
6259
0
                return 0;
6260
0
            } else {
6261
0
                rxbuf = isp->packet;
6262
0
                isp->packet_size = rxbuf_len;
6263
0
                isp->packet_len = 0;
6264
0
            }
6265
0
        } else {
6266
            /*
6267
             * We have saved a partial packet from last time.  Extend that, if
6268
             * necessary, and receive new data after the old data.  
6269
             */
6270
0
            u_char         *newbuf;
6271
6272
0
            if (isp->packet_size < isp->packet_len + rxbuf_len) {
6273
0
                newbuf =
6274
0
                    (u_char *) realloc(isp->packet,
6275
0
                                       isp->packet_len + rxbuf_len);
6276
0
                if (newbuf == NULL) {
6277
0
                    DEBUGMSGTL(("sess_read",
6278
0
                                "can't malloc %" NETSNMP_PRIz
6279
0
                                "u more for rxbuf (%" NETSNMP_PRIz "u tot)\n",
6280
0
                                rxbuf_len, isp->packet_len + rxbuf_len));
6281
0
                    return 0;
6282
0
                } else {
6283
0
                    isp->packet = newbuf;
6284
0
                    isp->packet_size = isp->packet_len + rxbuf_len;
6285
0
                    rxbuf = isp->packet + isp->packet_len;
6286
0
                }
6287
0
            } else {
6288
0
                rxbuf = isp->packet + isp->packet_len;
6289
0
                rxbuf_len = isp->packet_size - isp->packet_len;
6290
0
            }
6291
0
        }
6292
6293
0
    length = netsnmp_transport_recv(transport, rxbuf, rxbuf_len, &opaque,
6294
0
                                    &olength);
6295
6296
0
    if (0 == length && transport->flags & NETSNMP_TRANSPORT_FLAG_EMPTY_PKT) {
6297
        /* this allows for a transport that needs to return from
6298
         * packet processing that doesn't necessarily have any
6299
         * consumable data in it. */
6300
6301
        /* reset the flag since it's a per-message flag */
6302
0
        transport->flags &= (~NETSNMP_TRANSPORT_FLAG_EMPTY_PKT);
6303
6304
0
        return 0;
6305
0
    }
6306
6307
    /*
6308
     * Remote end closed connection.  
6309
     */
6310
0
    if (length <= 0) {
6311
        /*
6312
         * Alert the application if possible.  
6313
         */
6314
0
        if (sp->callback != NULL) {
6315
0
            DEBUGMSGTL(("sess_read", "perform callback with op=DISCONNECT\n"));
6316
0
            (void) sp->callback(NETSNMP_CALLBACK_OP_DISCONNECT, sp, 0,
6317
0
                                NULL, sp->callback_magic);
6318
0
        }
6319
        /*
6320
         * Close socket and mark session for deletion.  
6321
         */
6322
0
        DEBUGMSGTL(("sess_read", "fd %d closed\n", transport->sock));
6323
0
        transport->f_close(transport);
6324
0
        SNMP_FREE(isp->packet);
6325
0
        SNMP_FREE(opaque);
6326
0
        return -1;
6327
0
    }
6328
6329
0
    {
6330
0
        u_char *pptr = isp->packet;
6331
0
  void *ocopy = NULL;
6332
6333
0
        isp->packet_len += length;
6334
6335
0
        while (isp->packet_len > 0) {
6336
6337
            /*
6338
             * Get the total data length we're expecting (and need to wait
6339
             * for).
6340
             */
6341
0
            if (isp->check_packet) {
6342
0
                pdulen = isp->check_packet(pptr, isp->packet_len);
6343
0
            } else {
6344
0
                pdulen = asn_check_packet(pptr, isp->packet_len);
6345
0
            }
6346
6347
0
            DEBUGMSGTL(("sess_read",
6348
0
                        "  loop packet_len %" NETSNMP_PRIz "u, PDU length %"
6349
0
                        NETSNMP_PRIz "u\n", isp->packet_len, pdulen));
6350
6351
0
            if (pdulen > SNMP_MAX_PACKET_LEN) {
6352
                /*
6353
                 * Illegal length, drop the connection.  
6354
                 */
6355
0
                snmp_log(LOG_ERR, 
6356
0
       "Received broken packet. Closing session.\n");
6357
0
    if (sp->callback != NULL) {
6358
0
      DEBUGMSGTL(("sess_read",
6359
0
            "perform callback with op=DISCONNECT\n"));
6360
0
      (void)sp->callback(NETSNMP_CALLBACK_OP_DISCONNECT,
6361
0
             sp, 0, NULL, sp->callback_magic);
6362
0
    }
6363
0
    DEBUGMSGTL(("sess_read", "fd %d closed\n", transport->sock));
6364
0
                transport->f_close(transport);
6365
0
                SNMP_FREE(opaque);
6366
                /** XXX-rks: why no SNMP_FREE(isp->packet); ?? */
6367
0
                return -1;
6368
0
            }
6369
6370
0
            if (pdulen > isp->packet_len || pdulen == 0) {
6371
                /*
6372
                 * We don't have a complete packet yet.  If we've already
6373
                 * processed a packet, break out so we'll shift this packet
6374
                 * to the start of the buffer. If we're already at the
6375
                 * start, simply return and wait for more data to arrive.
6376
                 */
6377
0
                DEBUGMSGTL(("sess_read",
6378
0
                            "pkt not complete (need %" NETSNMP_PRIz "u got %"
6379
0
                            NETSNMP_PRIz "u so far)\n", pdulen,
6380
0
                            isp->packet_len));
6381
6382
0
                if (pptr != isp->packet)
6383
0
                    break; /* opaque freed for us outside of loop. */
6384
6385
0
                SNMP_FREE(opaque);
6386
0
                return 0;
6387
0
            }
6388
6389
            /*  We have *at least* one complete packet in the buffer now.  If
6390
    we have possibly more than one packet, we must copy the opaque
6391
    pointer because we may need to reuse it for a later packet.  */
6392
6393
0
      if (pdulen < isp->packet_len) {
6394
0
    if (olength > 0 && opaque != NULL) {
6395
0
        ocopy = malloc(olength);
6396
0
        if (ocopy != NULL) {
6397
0
      memcpy(ocopy, opaque, olength);
6398
0
        }
6399
0
    }
6400
0
      } else if (pdulen == isp->packet_len) {
6401
    /*  Common case -- exactly one packet.  No need to copy the
6402
        opaque pointer.  */
6403
0
    ocopy = opaque;
6404
0
    opaque = NULL;
6405
0
      }
6406
6407
0
            if ((rc = _sess_process_packet(slp, sp, isp, transport,
6408
0
                                           ocopy, ocopy?olength:0, pptr,
6409
0
                                           pdulen))) {
6410
                /*
6411
                 * Something went wrong while processing this packet -- set the
6412
                 * errno.  
6413
                 */
6414
0
                if (sp->s_snmp_errno != 0) {
6415
0
                    SET_SNMP_ERROR(sp->s_snmp_errno);
6416
0
                }
6417
0
            }
6418
6419
      /*  ocopy has been free()d by _sess_process_packet by this point,
6420
    so set it to NULL.  */
6421
6422
0
      ocopy = NULL;
6423
6424
      /*  Step past the packet we've just dealt with.  */
6425
6426
0
            pptr += pdulen;
6427
0
            isp->packet_len -= pdulen;
6428
0
        }
6429
6430
  /*  If we had more than one packet, then we were working with copies
6431
      of the opaque pointer, so we still need to free() the opaque
6432
      pointer itself.  */
6433
6434
0
  SNMP_FREE(opaque);
6435
6436
0
        if (isp->packet_len >= SNMP_MAX_PACKET_LEN) {
6437
            /*
6438
             * Obviously this should never happen!  
6439
             */
6440
0
            snmp_log(LOG_ERR,
6441
0
                     "too large packet_len = %" NETSNMP_PRIz
6442
0
                     "u, dropping connection %d\n",
6443
0
                     isp->packet_len, transport->sock);
6444
0
            transport->f_close(transport);
6445
            /** XXX-rks: why no SNMP_FREE(isp->packet); ?? */
6446
0
            return -1;
6447
0
        } else if (isp->packet_len == 0) {
6448
            /*
6449
             * This is good: it means the packet buffer contained an integral
6450
             * number of PDUs, so we don't have to save any data for next
6451
             * time.  We can free() the buffer now to keep the memory
6452
             * footprint down.
6453
             */
6454
0
            SNMP_FREE(isp->packet);
6455
0
            isp->packet_size = 0;
6456
0
            isp->packet_len = 0;
6457
0
            return rc;
6458
0
        }
6459
6460
        /*
6461
         * If we get here, then there is a partial packet of length
6462
         * isp->packet_len bytes starting at pptr left over.  Move that to the
6463
         * start of the buffer, and then realloc() the buffer down to size to
6464
         * reduce the memory footprint.  
6465
         */
6466
6467
0
        memmove(isp->packet, pptr, isp->packet_len);
6468
0
        DEBUGMSGTL(("sess_read",
6469
0
                    "end: memmove(%p, %p, %" NETSNMP_PRIz "u); realloc(%p, %"
6470
0
                    NETSNMP_PRIz "u)\n",
6471
0
                    isp->packet, pptr, isp->packet_len,
6472
0
        isp->packet, isp->packet_len));
6473
6474
0
        if ((rxbuf = (u_char *)realloc(isp->packet, isp->packet_len)) == NULL) {
6475
            /*
6476
             * I don't see why this should ever fail, but it's not a big deal.
6477
             */
6478
0
            DEBUGMSGTL(("sess_read", "realloc() failed\n"));
6479
0
        } else {
6480
0
            DEBUGMSGTL(("sess_read", "realloc() okay, old buffer %p, new %p\n",
6481
0
                        isp->packet, rxbuf));
6482
0
            isp->packet = rxbuf;
6483
0
            isp->packet_size = isp->packet_len;
6484
0
        }
6485
0
    }
6486
6487
0
    return rc;
6488
0
}
6489
6490
6491
6492
/*
6493
 * returns 0 if success, -1 if fail 
6494
 */
6495
int
6496
snmp_sess_read(struct session_list *slp, fd_set * fdset)
6497
0
{
6498
0
  int rc;
6499
0
  netsnmp_large_fd_set lfdset;
6500
  
6501
0
  netsnmp_large_fd_set_init(&lfdset, FD_SETSIZE);
6502
0
  netsnmp_copy_fd_set_to_large_fd_set(&lfdset, fdset);
6503
0
  rc = snmp_sess_read2(slp, &lfdset);
6504
0
  netsnmp_large_fd_set_cleanup(&lfdset);
6505
0
  return rc;
6506
0
}
6507
6508
int
6509
snmp_sess_read2(struct session_list *slp, netsnmp_large_fd_set * fdset)
6510
0
{
6511
0
    netsnmp_session *pss;
6512
0
    int             rc;
6513
6514
0
    rc = _sess_read(slp, fdset);
6515
0
    pss = slp->session;
6516
0
    if (rc && pss->s_snmp_errno) {
6517
0
        SET_SNMP_ERROR(pss->s_snmp_errno);
6518
0
    }
6519
0
    return rc;
6520
0
}
6521
6522
6523
/**
6524
 * Returns info about what snmp requires from a select statement.
6525
 * numfds is the number of fds in the list that are significant.
6526
 * All file descriptors opened for SNMP are OR'd into the fdset.
6527
 * If activity occurs on any of these file descriptors, snmp_read
6528
 * should be called with that file descriptor set
6529
 *
6530
 * The timeout is the latest time that SNMP can wait for a timeout.  The
6531
 * select should be done with the minimum time between timeout and any other
6532
 * timeouts necessary.  This should be checked upon each invocation of select.
6533
 * If a timeout is received, snmp_timeout should be called to check if the
6534
 * timeout was for SNMP.  (snmp_timeout is idempotent)
6535
 *
6536
 * The value of block indicates how the timeout value is interpreted.
6537
 * If block is true on input, the timeout value will be treated as undefined,
6538
 * but it must be available for setting in snmp_select_info.  On return,
6539
 * block is set to true if the value returned for timeout is undefined;
6540
 * when block is set to false, timeout may be used as a parameter to 'select'.
6541
 *
6542
 * snmp_select_info returns the number of open sockets.  (i.e. The number of
6543
 * sessions open)
6544
 *
6545
 * @see See also snmp_sess_select_info2_flags().
6546
 */
6547
int
6548
snmp_select_info(int *numfds, fd_set *fdset, struct timeval *timeout,
6549
                 int *block)
6550
0
{
6551
0
    return snmp_sess_select_info(NULL, numfds, fdset, timeout, block);
6552
0
}
6553
6554
/**
6555
 * @see See also snmp_sess_select_info2_flags().
6556
 */
6557
int
6558
snmp_select_info2(int *numfds, netsnmp_large_fd_set *fdset,
6559
      struct timeval *timeout, int *block)
6560
0
{
6561
0
    return snmp_sess_select_info2(NULL, numfds, fdset, timeout, block);
6562
0
}
6563
6564
/**
6565
 * @see See also snmp_sess_select_info2_flags().
6566
 */
6567
int
6568
snmp_sess_select_info(struct session_list *slp, int *numfds, fd_set *fdset,
6569
                      struct timeval *timeout, int *block)
6570
0
{
6571
0
    return snmp_sess_select_info_flags(slp, numfds, fdset, timeout, block,
6572
0
                                       NETSNMP_SELECT_NOFLAGS);
6573
0
}
6574
        
6575
/**
6576
 * @see See also snmp_sess_select_info2_flags().
6577
 */
6578
int
6579
snmp_sess_select_info_flags(struct session_list *slp, int *numfds, fd_set *fdset,
6580
                            struct timeval *timeout, int *block, int flags)
6581
0
{
6582
0
  int rc;
6583
0
  netsnmp_large_fd_set lfdset;
6584
6585
0
  netsnmp_large_fd_set_init(&lfdset, FD_SETSIZE);
6586
0
  netsnmp_copy_fd_set_to_large_fd_set(&lfdset, fdset);
6587
0
  rc = snmp_sess_select_info2_flags(slp, numfds, &lfdset, timeout,
6588
0
                                    block, flags);
6589
0
  if (netsnmp_copy_large_fd_set_to_fd_set(fdset, &lfdset) < 0) {
6590
0
      snmp_log(LOG_ERR,
6591
0
       "Use snmp_sess_select_info2() for processing"
6592
0
       " large file descriptors\n");
6593
0
  }
6594
0
  netsnmp_large_fd_set_cleanup(&lfdset);
6595
0
  return rc;
6596
0
}
6597
6598
/**
6599
 * @see See also snmp_sess_select_info2_flags().
6600
 */
6601
int
6602
snmp_sess_select_info2(struct session_list *slp, int *numfds, netsnmp_large_fd_set *fdset,
6603
           struct timeval *timeout, int *block)
6604
0
{
6605
0
    return snmp_sess_select_info2_flags(slp, numfds, fdset, timeout, block,
6606
0
                                        NETSNMP_SELECT_NOFLAGS);
6607
0
}
6608
6609
/**
6610
 * Compute/update the arguments to be passed to select().
6611
 *
6612
 * @param[in]     sessp   Which sessions to process: either a pointer to a
6613
 *   specific session or NULL which means to process all sessions.
6614
 * @param[in,out] numfds  On POSIX systems one more than the the largest file
6615
 *   descriptor that is present in *fdset. On systems that use Winsock (MinGW
6616
 *   and MSVC), do not use the value written into *numfds.
6617
 * @param[in,out] fdset   A large file descriptor set to which all file
6618
 *   descriptors will be added that are associated with one of the examined
6619
 *   sessions.
6620
 * @param[in,out] timeout On input, if *block = 1, the maximum time the caller
6621
 *   will block while waiting for Net-SNMP activity. On output, if this function
6622
 *   has set *block to 0, the maximum time the caller is allowed to wait before
6623
 *   invoking the Net-SNMP processing functions (snmp_read(), snmp_timeout()
6624
 *   and run_alarms()). If this function has set *block to 1, *timeout won't
6625
 *   have been modified and no alarms are active.
6626
 * @param[in,out] block   On input, whether the caller prefers to block forever
6627
 *   when no alarms are active. On output, 0 means that no alarms are active
6628
 *   nor that there is a timeout pending for any of the processed sessions.
6629
 * @param[in]     flags   Either 0 or NETSNMP_SELECT_NOALARMS.
6630
 *
6631
 * @return Number of sessions processed by this function.
6632
 *
6633
 * @see See also agent_check_and_process() for an example of how to use this
6634
 *   function.
6635
 */
6636
int
6637
snmp_sess_select_info2_flags(struct session_list *sessp, int *numfds,
6638
                             netsnmp_large_fd_set * fdset,
6639
                             struct timeval *timeout, int *block, int flags)
6640
0
{
6641
0
    struct session_list *slp, *next = NULL;
6642
0
    netsnmp_request_list *rp;
6643
0
    struct timeval  now, earliest, alarm_tm;
6644
0
    int             active = 0, requests = 0;
6645
0
    int             next_alarm = 0;
6646
6647
0
    timerclear(&earliest);
6648
6649
    /*
6650
     * For each session examined, add its socket to the fdset,
6651
     * and if it is the earliest timeout to expire, mark it as lowest.
6652
     * If a single session is specified, do just for that session.
6653
     */
6654
6655
0
    DEBUGMSGTL(("sess_select", "for %s session%s: ",
6656
0
                sessp ? "single" : "all", sessp ? "" : "s"));
6657
6658
0
    for (slp = sessp ? sessp : Sessions; slp; slp = next) {
6659
0
        next = slp->next;
6660
6661
0
        if (slp->transport == NULL) {
6662
            /*
6663
             * Close in progress -- skip this one.  
6664
             */
6665
0
            DEBUGMSG(("sess_select", "skip "));
6666
0
            continue;
6667
0
        }
6668
6669
0
        if (slp->transport->sock == -1) {
6670
            /*
6671
             * This session was marked for deletion.  
6672
             */
6673
0
            DEBUGMSG(("sess_select", "delete\n"));
6674
0
            if (sessp == NULL) {
6675
0
                snmp_close(slp->session);
6676
0
            } else {
6677
0
                snmp_sess_close(slp);
6678
0
            }
6679
0
            DEBUGMSGTL(("sess_select", "for %s session%s: ",
6680
0
                        sessp ? "single" : "all", sessp ? "" : "s"));
6681
0
            continue;
6682
0
        }
6683
6684
0
        DEBUGMSG(("sess_select", "%d ", slp->transport->sock));
6685
0
        if ((slp->transport->sock + 1) > *numfds) {
6686
0
            *numfds = (slp->transport->sock + 1);
6687
0
        }
6688
6689
0
        NETSNMP_LARGE_FD_SET(slp->transport->sock, fdset);
6690
0
        if (slp->internal != NULL && slp->internal->requests) {
6691
            /*
6692
             * Found another session with outstanding requests.  
6693
             */
6694
0
            requests++;
6695
0
            for (rp = slp->internal->requests; rp; rp = rp->next_request) {
6696
0
                if (!timerisset(&earliest)
6697
0
                    || (timerisset(&rp->expireM)
6698
0
                        && timercmp(&rp->expireM, &earliest, <))) {
6699
0
                    earliest = rp->expireM;
6700
0
                    DEBUGMSG(("verbose:sess_select","(to in %d.%06d sec) ",
6701
0
                               (int)earliest.tv_sec, (int)earliest.tv_usec));
6702
0
                }
6703
0
            }
6704
0
        }
6705
6706
0
        active++;
6707
0
        if (sessp) {
6708
            /*
6709
             * Single session processing.  
6710
             */
6711
0
            break;
6712
0
        }
6713
0
    }
6714
0
    DEBUGMSG(("sess_select", "\n"));
6715
6716
0
    netsnmp_get_monotonic_clock(&now);
6717
6718
0
    if (netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
6719
0
                               NETSNMP_DS_LIB_ALARM_DONT_USE_SIG) &&
6720
0
        !(flags & NETSNMP_SELECT_NOALARMS)) {
6721
0
        next_alarm = netsnmp_get_next_alarm_time(&alarm_tm, &now);
6722
0
        if (next_alarm)
6723
0
            DEBUGMSGT(("sess_select","next alarm at %ld.%06ld sec\n",
6724
0
                       (long)alarm_tm.tv_sec, (long)alarm_tm.tv_usec));
6725
0
    }
6726
0
    if (next_alarm == 0 && requests == 0) {
6727
        /*
6728
         * If none are active, skip arithmetic.  
6729
         */
6730
0
        DEBUGMSGT(("sess_select","blocking:no session requests or alarms.\n"));
6731
0
        *block = 1; /* can block - timeout value is undefined if no requests */
6732
0
        return active;
6733
0
    }
6734
6735
0
    if (next_alarm &&
6736
0
        (!timerisset(&earliest) || timercmp(&alarm_tm, &earliest, <)))
6737
0
        earliest = alarm_tm;
6738
6739
0
    NETSNMP_TIMERSUB(&earliest, &now, &earliest);
6740
0
    if (earliest.tv_sec < 0) {
6741
0
        time_t overdue_ms = -(earliest.tv_sec * 1000 + earliest.tv_usec / 1000);
6742
0
        if (overdue_ms >= 10)
6743
0
            DEBUGMSGT(("verbose:sess_select","timer overdue by %ld ms\n",
6744
0
                       (long) overdue_ms));
6745
0
        timerclear(&earliest);
6746
0
    } else {
6747
0
        DEBUGMSGT(("verbose:sess_select","timer due in %d.%06d sec\n",
6748
0
                   (int)earliest.tv_sec, (int)earliest.tv_usec));
6749
0
    }
6750
6751
    /*
6752
     * if it was blocking before or our delta time is less, reset timeout 
6753
     */
6754
0
    if ((*block || (timercmp(&earliest, timeout, <)))) {
6755
0
        DEBUGMSGT(("verbose:sess_select",
6756
0
                   "setting timer to %d.%06d sec, clear block (was %d)\n",
6757
0
                   (int)earliest.tv_sec, (int)earliest.tv_usec, *block));
6758
0
        *timeout = earliest;
6759
0
        *block = 0;
6760
0
    }
6761
0
    return active;
6762
0
}
6763
6764
/*
6765
 * snmp_timeout should be called whenever the timeout from snmp_select_info
6766
 * expires, but it is idempotent, so snmp_timeout can be polled (probably a
6767
 * cpu expensive proposition).  snmp_timeout checks to see if any of the
6768
 * sessions have an outstanding request that has timed out.  If it finds one
6769
 * (or more), and that pdu has more retries available, a new packet is formed
6770
 * from the pdu and is resent.  If there are no more retries available, the
6771
 *  callback for the session is used to alert the user of the timeout.
6772
 */
6773
void
6774
snmp_timeout(void)
6775
0
{
6776
0
    struct session_list *slp;
6777
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
6778
0
    for (slp = Sessions; slp; slp = slp->next) {
6779
0
        snmp_sess_timeout(slp);
6780
0
    }
6781
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
6782
0
}
6783
6784
static int
6785
snmp_resend_request(struct session_list *slp, netsnmp_request_list *orp,
6786
                    netsnmp_request_list *rp, int incr_retries)
6787
0
{
6788
0
    struct snmp_internal_session *isp;
6789
0
    netsnmp_session *sp;
6790
0
    netsnmp_transport *transport;
6791
0
    u_char         *pktbuf = NULL, *packet = NULL;
6792
0
    size_t          pktbuf_len = 0, length = 0;
6793
0
    struct timeval  tv, now;
6794
0
    int             result = 0;
6795
6796
0
    sp = slp->session;
6797
0
    isp = slp->internal;
6798
0
    transport = slp->transport;
6799
0
    if (!sp || !isp || !transport) {
6800
0
        DEBUGMSGTL(("sess_read", "resend fail: closing...\n"));
6801
0
        return 0;
6802
0
    }
6803
6804
0
    if ((pktbuf = (u_char *)malloc(2048)) == NULL) {
6805
0
        DEBUGMSGTL(("sess_resend",
6806
0
                    "couldn't malloc initial packet buffer\n"));
6807
0
        return 0;
6808
0
    } else {
6809
0
        pktbuf_len = 2048;
6810
0
    }
6811
6812
0
    if (incr_retries) {
6813
0
        rp->retries++;
6814
0
    }
6815
6816
    /*
6817
     * Always increment msgId for resent messages.  
6818
     */
6819
0
    rp->pdu->msgid = rp->message_id = snmp_get_next_msgid();
6820
6821
0
    result = netsnmp_build_packet(isp, sp, rp->pdu, &pktbuf, &pktbuf_len,
6822
0
                                  &packet, &length);
6823
0
    if (result < 0) {
6824
        /*
6825
         * This should never happen.  
6826
         */
6827
0
        DEBUGMSGTL(("sess_resend", "encoding failure\n"));
6828
0
        SNMP_FREE(pktbuf);
6829
0
        return -1;
6830
0
    }
6831
6832
0
    DEBUGMSGTL(("sess_process_packet", "resending message id#%ld reqid#%ld "
6833
0
                "rp_reqid#%ld rp_msgid#%ld len %" NETSNMP_PRIz "u\n",
6834
0
                rp->pdu->msgid, rp->pdu->reqid, rp->request_id, rp->message_id, length));
6835
0
    result = netsnmp_transport_send(transport, packet, length,
6836
0
                                    &(rp->pdu->transport_data),
6837
0
                                    &(rp->pdu->transport_data_length));
6838
6839
    /*
6840
     * We are finished with the local packet buffer, if we allocated one (due
6841
     * to there being no saved packet).  
6842
     */
6843
6844
0
    if (pktbuf != NULL) {
6845
0
        SNMP_FREE(pktbuf);
6846
0
        packet = NULL;
6847
0
    }
6848
6849
0
    if (result < 0) {
6850
0
        sp->s_snmp_errno = SNMPERR_BAD_SENDTO;
6851
0
        sp->s_errno = errno;
6852
0
        snmp_set_detail(strerror(errno));
6853
0
        if (rp->callback) {
6854
0
            rp->callback(NETSNMP_CALLBACK_OP_SEND_FAILED, sp,
6855
0
                         rp->pdu->reqid, rp->pdu, rp->cb_data);
6856
0
            remove_request(isp, orp, rp);
6857
0
  }
6858
0
        return -1;
6859
0
    } else {
6860
0
        netsnmp_get_monotonic_clock(&now);
6861
0
        tv = now;
6862
0
        rp->timeM = tv;
6863
0
        tv.tv_usec += rp->timeout;
6864
0
        tv.tv_sec += tv.tv_usec / 1000000L;
6865
0
        tv.tv_usec %= 1000000L;
6866
0
        rp->expireM = tv;
6867
0
        if (rp->callback)
6868
0
            rp->callback(NETSNMP_CALLBACK_OP_RESEND, sp,
6869
0
                         rp->pdu->reqid, rp->pdu, rp->cb_data);
6870
0
    }
6871
0
    return 0;
6872
0
}
6873
6874
6875
6876
void
6877
snmp_sess_timeout(struct session_list *slp)
6878
0
{
6879
0
    netsnmp_session *sp;
6880
0
    struct snmp_internal_session *isp;
6881
0
    netsnmp_request_list *rp, *orp = NULL, *freeme = NULL;
6882
0
    struct timeval  now;
6883
0
    snmp_callback   callback;
6884
0
    void           *magic;
6885
0
    struct snmp_secmod_def *sptr;
6886
6887
0
    sp = slp->session;
6888
0
    isp = slp->internal;
6889
0
    if (!sp || !isp) {
6890
0
        DEBUGMSGTL(("sess_read", "timeout fail: closing...\n"));
6891
0
        return;
6892
0
    }
6893
6894
0
    netsnmp_get_monotonic_clock(&now);
6895
6896
    /*
6897
     * For each request outstanding, check to see if it has expired.
6898
     */
6899
0
    for (rp = isp->requests; rp; rp = rp->next_request) {
6900
0
        if (freeme != NULL) {
6901
            /*
6902
             * frees rp's after the for loop goes on to the next_request 
6903
             */
6904
0
            free(freeme);
6905
0
            freeme = NULL;
6906
0
        }
6907
6908
0
        if ((timercmp(&rp->expireM, &now, <))) {
6909
0
            if ((sptr = find_sec_mod(rp->pdu->securityModel)) != NULL &&
6910
0
                sptr->pdu_timeout != NULL) {
6911
                /*
6912
                 * call security model if it needs to know about this 
6913
                 */
6914
0
                (*sptr->pdu_timeout) (rp->pdu);
6915
0
            }
6916
6917
            /*
6918
             * this timer has expired 
6919
             */
6920
0
            if (rp->retries >= sp->retries) {
6921
0
                if (rp->callback) {
6922
0
                    callback = rp->callback;
6923
0
                    magic = rp->cb_data;
6924
0
                } else {
6925
0
                    callback = sp->callback;
6926
0
                    magic = sp->callback_magic;
6927
0
                }
6928
6929
                /*
6930
                 * No more chances, delete this entry 
6931
                 */
6932
0
                if (callback) {
6933
0
                    callback(NETSNMP_CALLBACK_OP_TIMED_OUT, sp,
6934
0
                             rp->pdu->reqid, rp->pdu, magic);
6935
0
                }
6936
0
                remove_request(isp, orp, rp);
6937
0
                freeme = rp;
6938
0
                continue;       /* don't update orp below */
6939
0
            } else {
6940
0
                if (snmp_resend_request(slp, orp, rp, TRUE)) {
6941
0
                    break;
6942
0
                }
6943
0
            }
6944
0
        }
6945
0
        orp = rp;
6946
0
    }
6947
6948
0
    if (freeme != NULL) {
6949
0
        free(freeme);
6950
0
        freeme = NULL;
6951
0
    }
6952
0
}
6953
6954
/*
6955
 * lexicographical compare two object identifiers.
6956
 * * Returns -1 if name1 < name2,
6957
 * *          0 if name1 = name2,
6958
 * *          1 if name1 > name2
6959
 * *
6960
 * * Caution: this method is called often by
6961
 * *          command responder applications (ie, agent).
6962
 */
6963
int
6964
snmp_oid_ncompare(const oid * in_name1,
6965
                  size_t len1,
6966
                  const oid * in_name2, size_t len2, size_t max_len)
6967
0
{
6968
0
    register int    len;
6969
0
    register const oid *name1 = in_name1;
6970
0
    register const oid *name2 = in_name2;
6971
0
    size_t          min_len;
6972
6973
    /*
6974
     * len = minimum of len1 and len2 
6975
     */
6976
0
    if (len1 < len2)
6977
0
        min_len = len1;
6978
0
    else
6979
0
        min_len = len2;
6980
6981
0
    if (min_len > max_len)
6982
0
        min_len = max_len;
6983
6984
0
    len = min_len;
6985
6986
    /*
6987
     * find first non-matching OID 
6988
     */
6989
0
    while (len-- > 0) {
6990
        /*
6991
         * these must be done in separate comparisons, since
6992
         * subtracting them and using that result has problems with
6993
         * subids > 2^31. 
6994
         */
6995
0
        if (*(name1) != *(name2)) {
6996
0
            if (*(name1) < *(name2))
6997
0
                return -1;
6998
0
            return 1;
6999
0
        }
7000
0
        name1++;
7001
0
        name2++;
7002
0
    }
7003
7004
0
    if (min_len != max_len) {
7005
        /*
7006
         * both OIDs equal up to length of shorter OID 
7007
         */
7008
0
        if (len1 < len2)
7009
0
            return -1;
7010
0
        if (len2 < len1)
7011
0
            return 1;
7012
0
    }
7013
7014
0
    return 0;
7015
0
}
7016
7017
/**
7018
 * Lexicographically compare two object identifiers.
7019
 *
7020
 * @param[in] in_name1 Left hand side OID.
7021
 * @param[in] len1     Length of LHS OID.
7022
 * @param[in] in_name2 Right hand side OID.
7023
 * @param[in] len2     Length of RHS OID.
7024
 * 
7025
 * Caution: this method is called often by
7026
 *          command responder applications (ie, agent).
7027
 *
7028
 * @return -1 if name1 < name2, 0 if name1 = name2, 1 if name1 > name2
7029
 */
7030
int
7031
snmp_oid_compare(const oid * in_name1,
7032
                 size_t len1, const oid * in_name2, size_t len2)
7033
0
{
7034
0
    register int    len;
7035
0
    register const oid *name1 = in_name1;
7036
0
    register const oid *name2 = in_name2;
7037
7038
    /*
7039
     * len = minimum of len1 and len2 
7040
     */
7041
0
    if (len1 < len2)
7042
0
        len = len1;
7043
0
    else
7044
0
        len = len2;
7045
    /*
7046
     * find first non-matching OID 
7047
     */
7048
0
    while (len-- > 0) {
7049
        /*
7050
         * these must be done in separate comparisons, since
7051
         * subtracting them and using that result has problems with
7052
         * subids > 2^31. 
7053
         */
7054
0
        if (*(name1) != *(name2)) {
7055
0
            if (*(name1) < *(name2))
7056
0
                return -1;
7057
0
            return 1;
7058
0
        }
7059
0
        name1++;
7060
0
        name2++;
7061
0
    }
7062
    /*
7063
     * both OIDs equal up to length of shorter OID 
7064
     */
7065
0
    if (len1 < len2)
7066
0
        return -1;
7067
0
    if (len2 < len1)
7068
0
        return 1;
7069
0
    return 0;
7070
0
}
7071
7072
/**
7073
 * Lexicographically compare two object identifiers.
7074
 *
7075
 * @param[in] in_name1 Left hand side OID.
7076
 * @param[in] len1     Length of LHS OID.
7077
 * @param[in] in_name2 Right hand side OID.
7078
 * @param[in] len2     Length of RHS OID.
7079
 * @param[out] offpt   First offset at which the two OIDs differ.
7080
 * 
7081
 * Caution: this method is called often by command responder applications (i.e.,
7082
 * agent).
7083
 *
7084
 * @return -1 if name1 < name2, 0 if name1 = name2, 1 if name1 > name2 and
7085
 * offpt = len where name1 != name2
7086
 */
7087
int
7088
netsnmp_oid_compare_ll(const oid * in_name1, size_t len1, const oid * in_name2,
7089
                       size_t len2, size_t *offpt)
7090
0
{
7091
0
    register int    len;
7092
0
    register const oid *name1 = in_name1;
7093
0
    register const oid *name2 = in_name2;
7094
0
    int initlen;
7095
7096
    /*
7097
     * len = minimum of len1 and len2 
7098
     */
7099
0
    if (len1 < len2)
7100
0
        initlen = len = len1;
7101
0
    else
7102
0
        initlen = len = len2;
7103
    /*
7104
     * find first non-matching OID 
7105
     */
7106
0
    while (len-- > 0) {
7107
        /*
7108
         * these must be done in separate comparisons, since
7109
         * subtracting them and using that result has problems with
7110
         * subids > 2^31. 
7111
         */
7112
0
        if (*(name1) != *(name2)) {
7113
0
            *offpt = initlen - len;
7114
0
            if (*(name1) < *(name2))
7115
0
                return -1;
7116
0
            return 1;
7117
0
        }
7118
0
        name1++;
7119
0
        name2++;
7120
0
    }
7121
    /*
7122
     * both OIDs equal up to length of shorter OID 
7123
     */
7124
0
    *offpt = initlen - len;
7125
0
    if (len1 < len2)
7126
0
        return -1;
7127
0
    if (len2 < len1)
7128
0
        return 1;
7129
0
    return 0;
7130
0
}
7131
7132
/** Compares 2 OIDs to determine if they are equal up until the shortest length.
7133
 * @param in_name1 A pointer to the first oid.
7134
 * @param len1     length of the first OID (in segments, not bytes)
7135
 * @param in_name2 A pointer to the second oid.
7136
 * @param len2     length of the second OID (in segments, not bytes)
7137
 * @return 0 if they are equal, 1 if in_name1 is > in_name2, or -1 if <.
7138
 */ 
7139
int
7140
snmp_oidtree_compare(const oid * in_name1,
7141
                     size_t len1, const oid * in_name2, size_t len2)
7142
0
{
7143
0
    int len = len1 < len2 ? len1 : len2;
7144
7145
0
    return snmp_oid_compare(in_name1, len, in_name2, len);
7146
0
}
7147
7148
int
7149
snmp_oidsubtree_compare(const oid * in_name1,
7150
                     size_t len1, const oid * in_name2, size_t len2)
7151
0
{
7152
0
    int len = len1 < len2 ? len1 : len2;
7153
7154
0
    return snmp_oid_compare(in_name1, len1, in_name2, len);
7155
0
}
7156
7157
/** Compares 2 OIDs to determine if they are exactly equal.
7158
 *  This should be faster than doing a snmp_oid_compare for different
7159
 *  length OIDs, since the length is checked first and if != returns
7160
 *  immediately.  Might be very slightly faster if lengths are ==.
7161
 * @param in_name1 A pointer to the first oid.
7162
 * @param len1     length of the first OID (in segments, not bytes)
7163
 * @param in_name2 A pointer to the second oid.
7164
 * @param len2     length of the second OID (in segments, not bytes)
7165
 * @return 0 if they are equal, 1 if they are not.
7166
 */ 
7167
int
7168
netsnmp_oid_equals(const oid * in_name1,
7169
                   size_t len1, const oid * in_name2, size_t len2)
7170
0
{
7171
0
    register const oid *name1 = in_name1;
7172
0
    register const oid *name2 = in_name2;
7173
0
    register int    len = len1;
7174
7175
    /*
7176
     * len = minimum of len1 and len2 
7177
     */
7178
0
    if (len1 != len2)
7179
0
        return 1;
7180
    /*
7181
     * Handle 'null' OIDs
7182
     */
7183
0
    if (len1 == 0)
7184
0
        return 0;   /* Two null OIDs are (trivially) the same */
7185
0
    if (!name1 || !name2)
7186
0
        return 1;   /* Otherwise something's wrong, so report a non-match */
7187
    /*
7188
     * find first non-matching OID 
7189
     */
7190
0
    while (len-- > 0) {
7191
        /*
7192
         * these must be done in separate comparisons, since
7193
         * subtracting them and using that result has problems with
7194
         * subids > 2^31. 
7195
         */
7196
0
        if (*(name1++) != *(name2++))
7197
0
            return 1;
7198
0
    }
7199
0
    return 0;
7200
0
}
7201
7202
#ifndef NETSNMP_FEATURE_REMOVE_OID_IS_SUBTREE
7203
/** Identical to netsnmp_oid_equals, except only the length up to len1 is compared.
7204
 * Functionally, this determines if in_name2 is equal or a subtree of in_name1
7205
 * @param in_name1 A pointer to the first oid.
7206
 * @param len1     length of the first OID (in segments, not bytes)
7207
 * @param in_name2 A pointer to the second oid.
7208
 * @param len2     length of the second OID (in segments, not bytes)
7209
 * @return 0 if one is a common prefix of the other.
7210
 */ 
7211
int
7212
netsnmp_oid_is_subtree(const oid * in_name1,
7213
                       size_t len1, const oid * in_name2, size_t len2)
7214
0
{
7215
0
    if (len1 > len2)
7216
0
        return 1;
7217
7218
0
    if (memcmp(in_name1, in_name2, len1 * sizeof(oid)))
7219
0
        return 1;
7220
7221
0
    return 0;
7222
0
}
7223
#endif /* NETSNMP_FEATURE_REMOVE_OID_IS_SUBTREE */
7224
7225
/** Given two OIDs, determine the common prefix to them both.
7226
 * @param in_name1 A pointer to the first oid.
7227
 * @param len1     Length of the first oid.
7228
 * @param in_name2 A pointer to the second oid.
7229
 * @param len2     Length of the second oid.
7230
 * @return         length of common prefix
7231
 *                 0 if no common prefix, -1 on error.
7232
 */
7233
int
7234
netsnmp_oid_find_prefix(const oid * in_name1, size_t len1,
7235
                        const oid * in_name2, size_t len2)
7236
0
{
7237
0
    int i;
7238
0
    size_t min_size;
7239
7240
0
    if (!in_name1 || !in_name2 || !len1 || !len2)
7241
0
        return -1;
7242
7243
0
    if (in_name1[0] != in_name2[0])
7244
0
        return 0;   /* No match */
7245
0
    min_size = SNMP_MIN(len1, len2);
7246
0
    for(i = 0; i < (int)min_size; i++) {
7247
0
        if (in_name1[i] != in_name2[i])
7248
0
            return i;    /* 'i' is the first differing subidentifier
7249
                            So the common prefix is 0..(i-1), of length i */
7250
0
    }
7251
0
    return min_size; /* The shorter OID is a prefix of the longer, and
7252
                           hence is precisely the common prefix of the two.
7253
                           Return its length. */
7254
0
}
7255
7256
#ifndef NETSNMP_DISABLE_MIB_LOADING
7257
static int _check_range(struct tree *tp, long ltmp, int *resptr,
7258
                  const char *errmsg)
7259
0
{
7260
0
    char *cp   = NULL;
7261
0
    char *temp = NULL;
7262
0
    int   temp_len = 0;
7263
0
    int check = !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
7264
0
                                  NETSNMP_DS_LIB_DONT_CHECK_RANGE);
7265
  
7266
0
    if (check && tp && tp->ranges) {
7267
0
  struct range_list *rp = tp->ranges;
7268
0
  while (rp) {
7269
0
      if (rp->low <= ltmp && ltmp <= rp->high) break;
7270
                                  /* Allow four digits per range value */
7271
0
            temp_len += ((rp->low != rp->high) ? 27 : 15 );
7272
0
      rp = rp->next;
7273
0
  }
7274
0
  if (!rp) {
7275
0
      *resptr = SNMPERR_RANGE;
7276
0
            temp = (char *)malloc( temp_len+strlen(errmsg)+7);
7277
0
            if ( temp ) {
7278
                /* Append the Display Hint range information to the error message */
7279
0
                sprintf( temp, "%s :: {", errmsg );
7280
0
                cp = temp+(strlen(temp));
7281
0
                for ( rp = tp->ranges; rp; rp=rp->next ) {
7282
0
                    if ( rp->low != rp->high ) 
7283
0
                        sprintf( cp, "(%d..%d), ", rp->low, rp->high );
7284
0
                    else
7285
0
                        sprintf( cp, "(%d), ", rp->low );
7286
0
                    cp += strlen(cp);
7287
0
                }
7288
0
                *(cp-2) = '}';   /* Replace the final comma with a '}' */
7289
0
                *(cp-1) = 0;
7290
0
          snmp_set_detail(temp);
7291
0
          free(temp);
7292
0
            }
7293
0
      return 0;
7294
0
  }
7295
0
    }
7296
0
    free(temp);
7297
0
    return 1;
7298
0
}
7299
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7300
7301
/*
7302
 * Add a variable with the requested name to the end of the list of
7303
 * variables for this pdu.
7304
 */
7305
netsnmp_variable_list *
7306
snmp_pdu_add_variable(netsnmp_pdu *pdu,
7307
                      const oid * name,
7308
                      size_t name_length,
7309
                      u_char type, const void * value, size_t len)
7310
0
{
7311
0
    return snmp_varlist_add_variable(&pdu->variables, name, name_length,
7312
0
                                     type, value, len);
7313
0
}
7314
7315
/*
7316
 * Add a variable with the requested name to the end of the list of
7317
 * variables for this pdu.
7318
 */
7319
netsnmp_variable_list *
7320
snmp_varlist_add_variable(netsnmp_variable_list ** varlist,
7321
                          const oid * name,
7322
                          size_t name_length,
7323
                          u_char type, const void * value, size_t len)
7324
0
{
7325
0
    netsnmp_variable_list *vars, *vtmp;
7326
0
    int rc;
7327
7328
0
    if (varlist == NULL)
7329
0
        return NULL;
7330
7331
0
    vars = SNMP_MALLOC_TYPEDEF(netsnmp_variable_list);
7332
0
    if (vars == NULL)
7333
0
        return NULL;
7334
7335
0
    vars->type = type;
7336
7337
0
    rc = snmp_set_var_value( vars, value, len );
7338
0
    if (( 0 != rc ) ||
7339
0
        (name != NULL && snmp_set_var_objid(vars, name, name_length))) {
7340
0
        snmp_free_var(vars);
7341
0
        return NULL;
7342
0
    }
7343
7344
    /*
7345
     * put only qualified variable onto varlist 
7346
     */
7347
0
    if (*varlist == NULL) {
7348
0
        *varlist = vars;
7349
0
    } else {
7350
0
        for (vtmp = *varlist; vtmp->next_variable;
7351
0
             vtmp = vtmp->next_variable);
7352
7353
0
        vtmp->next_variable = vars;
7354
0
    }
7355
7356
0
    return vars;
7357
0
}
7358
7359
7360
7361
/*
7362
 * Add a variable with the requested name to the end of the list of
7363
 * variables for this pdu.
7364
 * Returns:
7365
 * may set these error types :
7366
 * SNMPERR_RANGE - type, value, or length not found or out of range
7367
 * SNMPERR_VALUE - value is not correct
7368
 * SNMPERR_VAR_TYPE - type is not correct
7369
 * SNMPERR_BAD_NAME - name is not found
7370
 *
7371
 * returns 0 if success, error if failure.
7372
 */
7373
int
7374
snmp_add_var(netsnmp_pdu *pdu,
7375
             const oid * name, size_t name_length, char type, const char *value)
7376
0
{
7377
0
    char           *st;
7378
0
    const char     *cp;
7379
0
    char           *ecp, *vp = NULL;
7380
0
    int             result = SNMPERR_SUCCESS;
7381
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7382
0
    int             check = !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
7383
0
               NETSNMP_DS_LIB_DONT_CHECK_RANGE);
7384
0
    int             do_hint = !netsnmp_ds_get_boolean(NETSNMP_DS_LIBRARY_ID,
7385
0
               NETSNMP_DS_LIB_NO_DISPLAY_HINT);
7386
0
    u_char         *hintptr;
7387
0
    struct tree    *tp;
7388
0
    struct enum_list *ep;
7389
0
    int             itmp;
7390
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7391
0
    u_char         *buf = NULL;
7392
0
    const u_char   *buf_ptr = NULL;
7393
0
    size_t          buf_len = 0, value_len = 0, tint;
7394
0
    in_addr_t       atmp;
7395
0
    long            ltmp;
7396
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
7397
0
    double          dtmp;
7398
0
    float           ftmp;
7399
0
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
7400
0
    struct counter64 c64tmp;
7401
7402
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7403
0
    tp = get_tree(name, name_length, get_tree_head());
7404
0
    if (!tp || !tp->type || tp->type > TYPE_SIMPLE_LAST) {
7405
0
        check = 0;
7406
0
    }
7407
0
    if (!(tp && tp->hint))
7408
0
  do_hint = 0;
7409
7410
0
    if (tp && type == '=') {
7411
        /*
7412
         * generic assignment - let the tree node decide value format 
7413
         */
7414
0
        switch (tp->type) {
7415
0
        case TYPE_INTEGER:
7416
0
        case TYPE_INTEGER32:
7417
0
            type = 'i';
7418
0
            break;
7419
0
        case TYPE_GAUGE:
7420
0
        case TYPE_UNSIGNED32:
7421
0
            type = 'u';
7422
0
            break;
7423
0
        case TYPE_UINTEGER:
7424
0
            type = '3';
7425
0
            break;
7426
0
        case TYPE_COUNTER:
7427
0
            type = 'c';
7428
0
            break;
7429
0
        case TYPE_COUNTER64:
7430
0
            type = 'C';
7431
0
            break;
7432
0
        case TYPE_TIMETICKS:
7433
0
            type = 't';
7434
0
            break;
7435
0
        case TYPE_OCTETSTR:
7436
0
            type = 's';
7437
0
            break;
7438
0
        case TYPE_BITSTRING:
7439
0
            type = 'b';
7440
0
            break;
7441
0
        case TYPE_IPADDR:
7442
0
            type = 'a';
7443
0
            break;
7444
0
        case TYPE_OBJID:
7445
0
            type = 'o';
7446
0
            break;
7447
0
        }
7448
0
    }
7449
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7450
7451
0
    switch (type) {
7452
0
    case 'i':
7453
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7454
0
        if (check && tp->type != TYPE_INTEGER
7455
0
            && tp->type != TYPE_INTEGER32) {
7456
0
            value = "INTEGER";
7457
0
            result = SNMPERR_VALUE;
7458
0
            goto type_error;
7459
0
        }
7460
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7461
0
        if (!*value)
7462
0
            goto value_error;
7463
0
        ltmp = strtol(value, &ecp, 10);
7464
0
        if (*ecp) {
7465
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7466
0
            ep = tp ? tp->enums : NULL;
7467
0
            while (ep) {
7468
0
                if (strcmp(value, ep->label) == 0) {
7469
0
                    ltmp = ep->value;
7470
0
                    break;
7471
0
                }
7472
0
                ep = ep->next;
7473
0
            }
7474
0
            if (!ep) {
7475
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7476
0
                result = SNMPERR_RANGE;   /* ?? or SNMPERR_VALUE; */
7477
0
                snmp_set_detail(value);
7478
0
                break;
7479
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7480
0
            }
7481
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7482
0
        }
7483
7484
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7485
0
        if (!_check_range(tp, ltmp, &result, value))
7486
0
            break;
7487
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7488
0
        snmp_pdu_add_variable(pdu, name, name_length, ASN_INTEGER,
7489
0
                              &ltmp, sizeof(ltmp));
7490
0
        break;
7491
7492
0
    case 'u':
7493
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7494
0
        if (check && tp->type != TYPE_GAUGE && tp->type != TYPE_UNSIGNED32) {
7495
0
            value = "Unsigned32";
7496
0
            result = SNMPERR_VALUE;
7497
0
            goto type_error;
7498
0
        }
7499
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7500
0
        ltmp = strtoul(value, &ecp, 10);
7501
0
        if (*value && !*ecp)
7502
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_UNSIGNED,
7503
0
                                  &ltmp, sizeof(ltmp));
7504
0
        else
7505
0
            goto value_error;
7506
0
        break;
7507
7508
0
    case '3':
7509
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7510
0
        if (check && tp->type != TYPE_UINTEGER) {
7511
0
            value = "UInteger32";
7512
0
            result = SNMPERR_VALUE;
7513
0
            goto type_error;
7514
0
        }
7515
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7516
0
        ltmp = strtoul(value, &ecp, 10);
7517
0
        if (*value && !*ecp)
7518
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_UINTEGER,
7519
0
                                  &ltmp, sizeof(ltmp));
7520
0
        else
7521
0
            goto value_error;
7522
0
        break;
7523
7524
0
    case 'c':
7525
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7526
0
        if (check && tp->type != TYPE_COUNTER) {
7527
0
            value = "Counter32";
7528
0
            result = SNMPERR_VALUE;
7529
0
            goto type_error;
7530
0
        }
7531
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7532
0
        ltmp = strtoul(value, &ecp, 10);
7533
0
        if (*value && !*ecp)
7534
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_COUNTER,
7535
0
                                  &ltmp, sizeof(ltmp));
7536
0
        else
7537
0
            goto value_error;
7538
0
        break;
7539
7540
0
    case 'C':
7541
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7542
0
        if (check && tp->type != TYPE_COUNTER64) {
7543
0
            value = "Counter64";
7544
0
            result = SNMPERR_VALUE;
7545
0
            goto type_error;
7546
0
        }
7547
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7548
0
        if (read64(&c64tmp, value))
7549
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_COUNTER64,
7550
0
                                  &c64tmp, sizeof(c64tmp));
7551
0
        else
7552
0
            goto value_error;
7553
0
        break;
7554
7555
0
    case 't':
7556
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7557
0
        if (check && tp->type != TYPE_TIMETICKS) {
7558
0
            value = "Timeticks";
7559
0
            result = SNMPERR_VALUE;
7560
0
            goto type_error;
7561
0
        }
7562
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7563
0
        ltmp = strtoul(value, &ecp, 10);
7564
0
        if (*value && !*ecp)
7565
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_TIMETICKS,
7566
0
                                  &ltmp, sizeof(long));
7567
0
        else
7568
0
            goto value_error;
7569
0
        break;
7570
7571
0
    case 'a':
7572
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7573
0
        if (check && tp->type != TYPE_IPADDR) {
7574
0
            value = "IpAddress";
7575
0
            result = SNMPERR_VALUE;
7576
0
            goto type_error;
7577
0
        }
7578
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7579
0
        atmp = inet_addr(value);
7580
0
        if (atmp != (in_addr_t) -1 || !strcmp(value, "255.255.255.255"))
7581
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_IPADDRESS,
7582
0
                                  &atmp, sizeof(atmp));
7583
0
        else
7584
0
            goto value_error;
7585
0
        break;
7586
7587
0
    case 'o':
7588
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7589
0
        if (check && tp->type != TYPE_OBJID) {
7590
0
            value = "OBJECT IDENTIFIER";
7591
0
            result = SNMPERR_VALUE;
7592
0
            goto type_error;
7593
0
        }
7594
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7595
0
        buf = malloc(sizeof(oid) * MAX_OID_LEN);
7596
0
        if (buf == NULL) {
7597
0
            result = SNMPERR_MALLOC;
7598
0
            break;
7599
0
        }
7600
0
        tint = MAX_OID_LEN;
7601
0
        if (snmp_parse_oid(value, (oid *) buf, &tint)) {
7602
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_OBJECT_ID,
7603
0
                                  buf, sizeof(oid) * tint);
7604
0
        } else {
7605
0
            result = snmp_errno;    /*MTCRITICAL_RESOURCE */
7606
0
        }
7607
0
        break;
7608
7609
0
    case 's':
7610
0
    case 'x':
7611
0
    case 'd':
7612
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7613
0
        if (check && tp->type != TYPE_OCTETSTR && tp->type != TYPE_BITSTRING) {
7614
0
            value = "OCTET STRING";
7615
0
            result = SNMPERR_VALUE;
7616
0
            goto type_error;
7617
0
        }
7618
0
  if ('s' == type && do_hint && !parse_octet_hint(tp->hint, value, &hintptr, &itmp)) {
7619
0
            if (_check_range(tp, itmp, &result, "Value does not match DISPLAY-HINT")) {
7620
0
                snmp_pdu_add_variable(pdu, name, name_length, ASN_OCTET_STR,
7621
0
                                      hintptr, itmp);
7622
0
            }
7623
0
            SNMP_FREE(hintptr);
7624
0
            hintptr = buf;
7625
0
            break;
7626
0
        }
7627
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7628
0
        if (type == 'd') {
7629
0
            if (!snmp_decimal_to_binary
7630
0
                (&buf, &buf_len, &value_len, 1, value)) {
7631
0
                result = SNMPERR_VALUE;
7632
0
                snmp_set_detail(value);
7633
0
                break;
7634
0
            }
7635
0
            buf_ptr = buf;
7636
0
        } else if (type == 'x') {
7637
0
            if (!snmp_hex_to_binary(&buf, &buf_len, &value_len, 1, value)) {
7638
0
                result = SNMPERR_VALUE;
7639
0
                snmp_set_detail(value);
7640
0
                break;
7641
0
            }
7642
0
            buf_ptr = buf;
7643
0
        } else if (type == 's') {
7644
0
            buf_ptr = (const u_char *)value;
7645
0
            value_len = strlen(value);
7646
0
        }
7647
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7648
0
        if (!_check_range(tp, value_len, &result, "Bad string length"))
7649
0
            break;
7650
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7651
0
        snmp_pdu_add_variable(pdu, name, name_length, ASN_OCTET_STR,
7652
0
                              buf_ptr, value_len);
7653
0
        break;
7654
7655
0
    case 'n':
7656
0
        snmp_pdu_add_variable(pdu, name, name_length, ASN_NULL, NULL, 0);
7657
0
        break;
7658
7659
0
    case 'b':
7660
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7661
0
        if (check && (tp->type != TYPE_BITSTRING || !tp->enums)) {
7662
0
            value = "BITS";
7663
0
            result = SNMPERR_VALUE;
7664
0
            goto type_error;
7665
0
        }
7666
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7667
0
        tint = 0;
7668
0
        buf_len = 256;
7669
0
        buf = calloc(1, buf_len);
7670
0
        if (buf == NULL) {
7671
0
            result = SNMPERR_MALLOC;
7672
0
            break;
7673
0
        }
7674
7675
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7676
0
        for (ep = tp ? tp->enums : NULL; ep; ep = ep->next) {
7677
0
            if (ep->value / 8 >= (int) tint) {
7678
0
                tint = ep->value / 8 + 1;
7679
0
            }
7680
0
        }
7681
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7682
7683
0
  vp = strdup(value);
7684
0
        if (!vp)
7685
0
            goto value_error;
7686
7687
0
  for (cp = strtok_r(vp, " ,\t", &st); cp; cp = strtok_r(NULL, " ,\t", &st)) {
7688
0
            int             ix, bit;
7689
7690
0
            ltmp = strtoul(cp, &ecp, 0);
7691
0
            if (ltmp < 0) {
7692
0
                result = SNMPERR_VALUE;
7693
0
                snmp_set_detail(cp);
7694
0
                goto err;
7695
0
            }
7696
0
            if (*ecp != 0) {
7697
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7698
0
                for (ep = tp ? tp->enums : NULL; ep != NULL; ep = ep->next) {
7699
0
                    if (strcmp(ep->label, cp) == 0) {
7700
0
                        break;
7701
0
                    }
7702
0
                }
7703
0
                if (ep != NULL) {
7704
0
                    ltmp = ep->value;
7705
0
                } else {
7706
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7707
0
                    result = SNMPERR_RANGE;   /* ?? or SNMPERR_VALUE; */
7708
0
                    snmp_set_detail(cp);
7709
0
                    goto err;
7710
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7711
0
                }
7712
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7713
0
            }
7714
7715
0
            ix = ltmp / 8;
7716
0
            if (ix >= INT_MAX) {
7717
0
                goto value_error;
7718
0
            }
7719
0
            if (ix >= (int) tint) {
7720
0
                tint = ix + 1;
7721
0
            }
7722
0
            if (ix >= (int)buf_len && !snmp_realloc(&buf, &buf_len)) {
7723
0
                result = SNMPERR_MALLOC;
7724
0
                break;
7725
0
            }
7726
0
            if (ix < 0 || ix >= buf_len) {
7727
0
               result = SNMPERR_RANGE;
7728
0
               snmp_set_detail(cp);
7729
0
               goto err;
7730
0
            }
7731
0
            bit = 0x80 >> ltmp % 8;
7732
0
            buf[ix] |= bit;
7733
      
7734
0
        }
7735
0
  SNMP_FREE(vp);
7736
0
        snmp_pdu_add_variable(pdu, name, name_length, ASN_OCTET_STR,
7737
0
                              buf, tint);
7738
0
        break;
7739
7740
0
#ifdef NETSNMP_WITH_OPAQUE_SPECIAL_TYPES
7741
0
    case 'U':
7742
0
        if (read64(&c64tmp, value))
7743
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_OPAQUE_U64,
7744
0
                                  &c64tmp, sizeof(c64tmp));
7745
0
        else
7746
0
            goto value_error;
7747
0
        break;
7748
7749
0
    case 'I':
7750
0
        if (read64(&c64tmp, value))
7751
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_OPAQUE_I64,
7752
0
                                  &c64tmp, sizeof(c64tmp));
7753
0
        else
7754
0
            goto value_error;
7755
0
        break;
7756
7757
0
    case 'F':
7758
0
        if (sscanf(value, "%f", &ftmp) == 1)
7759
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_OPAQUE_FLOAT,
7760
0
                                  &ftmp, sizeof(ftmp));
7761
0
        else
7762
0
            goto value_error;
7763
0
        break;
7764
7765
0
    case 'D':
7766
0
        if (sscanf(value, "%lf", &dtmp) == 1)
7767
0
            snmp_pdu_add_variable(pdu, name, name_length, ASN_OPAQUE_DOUBLE,
7768
0
                                  &dtmp, sizeof(dtmp));
7769
0
        else
7770
0
            goto value_error;
7771
0
        break;
7772
0
#endif                          /* NETSNMP_WITH_OPAQUE_SPECIAL_TYPES */
7773
7774
0
    default:
7775
0
        result = SNMPERR_VAR_TYPE;
7776
0
  buf = calloc(1, 4);
7777
0
  if (buf != NULL) {
7778
0
      sprintf((char *)buf, "\"%c\"", type);
7779
0
      snmp_set_detail((char *)buf);
7780
0
  }
7781
0
        break;
7782
0
    }
7783
7784
0
    SNMP_FREE(buf);
7785
0
    SET_SNMP_ERROR(result);
7786
0
    return result;
7787
7788
0
#ifndef NETSNMP_DISABLE_MIB_LOADING
7789
0
  type_error:
7790
0
    {
7791
0
        char            error_msg[256];
7792
0
        char            undef_msg[32];
7793
0
        const char     *var_type;
7794
0
        switch (tp->type) {
7795
0
        case TYPE_OBJID:
7796
0
            var_type = "OBJECT IDENTIFIER";
7797
0
            break;
7798
0
        case TYPE_OCTETSTR:
7799
0
            var_type = "OCTET STRING";
7800
0
            break;
7801
0
        case TYPE_INTEGER:
7802
0
            var_type = "INTEGER";
7803
0
            break;
7804
0
        case TYPE_NETADDR:
7805
0
            var_type = "NetworkAddress";
7806
0
            break;
7807
0
        case TYPE_IPADDR:
7808
0
            var_type = "IpAddress";
7809
0
            break;
7810
0
        case TYPE_COUNTER:
7811
0
            var_type = "Counter32";
7812
0
            break;
7813
0
        case TYPE_GAUGE:
7814
0
            var_type = "Gauge32";
7815
0
            break;
7816
0
        case TYPE_TIMETICKS:
7817
0
            var_type = "Timeticks";
7818
0
            break;
7819
0
        case TYPE_OPAQUE:
7820
0
            var_type = "Opaque";
7821
0
            break;
7822
0
        case TYPE_NULL:
7823
0
            var_type = "Null";
7824
0
            break;
7825
0
        case TYPE_COUNTER64:
7826
0
            var_type = "Counter64";
7827
0
            break;
7828
0
        case TYPE_BITSTRING:
7829
0
            var_type = "BITS";
7830
0
            break;
7831
0
        case TYPE_NSAPADDRESS:
7832
0
            var_type = "NsapAddress";
7833
0
            break;
7834
0
        case TYPE_UINTEGER:
7835
0
            var_type = "UInteger";
7836
0
            break;
7837
0
        case TYPE_UNSIGNED32:
7838
0
            var_type = "Unsigned32";
7839
0
            break;
7840
0
        case TYPE_INTEGER32:
7841
0
            var_type = "Integer32";
7842
0
            break;
7843
0
        default:
7844
0
            sprintf(undef_msg, "TYPE_%d", tp->type);
7845
0
            var_type = undef_msg;
7846
0
        }
7847
0
        snprintf(error_msg, sizeof(error_msg),
7848
0
                 "Type of attribute is %s, not %s", var_type, value);
7849
0
        result = SNMPERR_VAR_TYPE;
7850
0
        snmp_set_detail(error_msg);
7851
0
        goto out;
7852
0
    }
7853
0
#endif /* NETSNMP_DISABLE_MIB_LOADING */
7854
7855
0
value_error:
7856
0
    result = SNMPERR_VALUE;
7857
0
    snmp_set_detail(value);
7858
7859
0
err:
7860
0
    free(buf);
7861
0
    free(vp);
7862
7863
0
out:
7864
0
    SET_SNMP_ERROR(result);
7865
0
    return result;
7866
0
}
7867
7868
/*
7869
 * returns NULL or internal pointer to session
7870
 * use this pointer for the other snmp_sess* routines,
7871
 * which guarantee action will occur ONLY for this given session.
7872
 */
7873
struct session_list *
7874
snmp_sess_pointer(netsnmp_session * session)
7875
0
{
7876
0
    struct session_list *slp;
7877
7878
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
7879
0
    for (slp = Sessions; slp; slp = slp->next) {
7880
0
        if (slp->session == session) {
7881
0
            break;
7882
0
        }
7883
0
    }
7884
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
7885
7886
0
    if (slp == NULL) {
7887
0
        snmp_errno = SNMPERR_BAD_SESSION;       /*MTCRITICAL_RESOURCE */
7888
0
        return (NULL);
7889
0
    }
7890
0
    return slp;
7891
0
}
7892
7893
/*
7894
 * Input : an opaque pointer, returned by snmp_sess_open.
7895
 * returns NULL or pointer to session.
7896
 */
7897
netsnmp_session *
7898
snmp_sess_session(struct session_list *slp)
7899
0
{
7900
0
    if (slp == NULL)
7901
0
        return (NULL);
7902
0
    return (slp->session);
7903
0
}
7904
7905
/**
7906
 * Look up a session that already may have been closed.
7907
 *
7908
 * @param sessp Opaque pointer, returned by snmp_sess_open.
7909
 *
7910
 * @return Pointer to session upon success or NULL upon failure.
7911
 *
7912
 * @see snmp_sess_session()
7913
 */
7914
netsnmp_session *
7915
snmp_sess_session_lookup(struct session_list *sessp)
7916
0
{
7917
0
    struct session_list *slp;
7918
7919
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
7920
0
    for (slp = Sessions; slp; slp = slp->next) {
7921
0
        if (slp == sessp) {
7922
0
            break;
7923
0
        }
7924
0
    }
7925
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
7926
7927
0
    return (netsnmp_session *)slp;
7928
0
}
7929
7930
7931
/*
7932
 * returns NULL or internal pointer to session
7933
 * use this pointer for the other snmp_sess* routines,
7934
 * which guarantee action will occur ONLY for this given session.
7935
 */
7936
netsnmp_session *
7937
snmp_sess_lookup_by_name(const char *paramName)
7938
0
{
7939
0
    struct session_list *slp;
7940
7941
0
    snmp_res_lock(MT_LIBRARY_ID, MT_LIB_SESSION);
7942
0
    for (slp = Sessions; slp; slp = slp->next) {
7943
0
        if (NULL == slp->session->paramName)
7944
0
            continue;
7945
0
        if (strcmp(paramName, slp->session->paramName)  == 0)
7946
0
            break;
7947
0
    }
7948
0
    snmp_res_unlock(MT_LIBRARY_ID, MT_LIB_SESSION);
7949
7950
0
    if (slp == NULL)
7951
0
        return NULL;
7952
7953
0
    return slp->session;
7954
0
}
7955
7956
7957
/*
7958
 * snmp_sess_transport: takes an opaque pointer (as returned by
7959
 * snmp_sess_open or snmp_sess_pointer) and returns the corresponding
7960
 * netsnmp_transport pointer (or NULL if the opaque pointer does not correspond
7961
 * to an active internal session).  
7962
 */
7963
7964
netsnmp_transport *
7965
snmp_sess_transport(struct session_list *slp)
7966
0
{
7967
0
    if (slp == NULL) {
7968
0
        return NULL;
7969
0
    } else {
7970
0
        return slp->transport;
7971
0
    }
7972
0
}
7973
7974
7975
7976
/*
7977
 * snmp_sess_transport_set: set the transport pointer for the
7978
 * session pointer slp.
7979
 */
7980
7981
void
7982
snmp_sess_transport_set(struct session_list *slp, netsnmp_transport *t)
7983
0
{
7984
0
    if (slp != NULL) {
7985
0
        slp->transport = t;
7986
0
    }
7987
0
}
7988
7989
7990
/*
7991
 * snmp_duplicate_objid: duplicates (mallocs) an objid based on the
7992
 * input objid 
7993
 */
7994
oid            *
7995
snmp_duplicate_objid(const oid * objToCopy, size_t objToCopyLen)
7996
0
{
7997
0
    oid            *returnOid;
7998
0
    if (objToCopy != NULL && objToCopyLen != 0) {
7999
0
        returnOid = (oid *) malloc(objToCopyLen * sizeof(oid));
8000
0
        if (returnOid) {
8001
0
            memcpy(returnOid, objToCopy, objToCopyLen * sizeof(oid));
8002
0
        }
8003
0
    } else
8004
0
        returnOid = NULL;
8005
0
    return returnOid;
8006
0
}
8007
8008
#ifndef NETSNMP_FEATURE_REMOVE_STATISTICS
8009
/*
8010
 * generic statistics counter functions 
8011
 */
8012
static u_int    statistics[NETSNMP_STAT_MAX_STATS];
8013
8014
u_int
8015
snmp_increment_statistic(int which)
8016
0
{
8017
0
    if (which >= 0 && which < NETSNMP_STAT_MAX_STATS) {
8018
0
        statistics[which]++;
8019
0
        return statistics[which];
8020
0
    }
8021
0
    return 0;
8022
0
}
8023
8024
u_int
8025
snmp_increment_statistic_by(int which, int count)
8026
0
{
8027
0
    if (which >= 0 && which < NETSNMP_STAT_MAX_STATS) {
8028
0
        statistics[which] += count;
8029
0
        return statistics[which];
8030
0
    }
8031
0
    return 0;
8032
0
}
8033
8034
u_int
8035
snmp_get_statistic(int which)
8036
0
{
8037
0
    if (which >= 0 && which < NETSNMP_STAT_MAX_STATS)
8038
0
        return statistics[which];
8039
0
    return 0;
8040
0
}
8041
8042
void
8043
snmp_init_statistics(void)
8044
0
{
8045
0
    memset(statistics, 0, sizeof(statistics));
8046
0
}
8047
#endif /* NETSNMP_FEATURE_REMOVE_STATISTICS */
8048
/**  @} */