2 * Copyright 2008 Juan Lang
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation; either
7 * version 2.1 of the License, or (at your option) any later version.
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the Free Software
16 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
25 #define NONAMELESSUNION
31 #include "wine/debug.h"
33 WINE_DEFAULT_DEBUG_CHANNEL(inetmib1
);
38 static DWORD
copyInt(AsnAny
*value
, void *src
)
40 value
->asnType
= ASN_INTEGER
;
41 value
->asnValue
.number
= *(DWORD
*)src
;
42 return SNMP_ERRORSTATUS_NOERROR
;
45 static void setStringValue(AsnAny
*value
, BYTE type
, DWORD len
, BYTE
*str
)
49 strValue
.asnType
= type
;
50 strValue
.asnValue
.string
.stream
= str
;
51 strValue
.asnValue
.string
.length
= len
;
52 strValue
.asnValue
.string
.dynamic
= FALSE
;
53 SnmpUtilAsnAnyCpy(value
, &strValue
);
56 typedef DWORD (*copyValueFunc
)(AsnAny
*value
, void *src
);
58 struct structToAsnValue
64 static AsnInteger32
mapStructEntryToValue(struct structToAsnValue
*map
,
65 UINT mapLen
, void *record
, UINT id
, SnmpVarBind
*pVarBind
)
67 /* OIDs are 1-based */
69 return SNMP_ERRORSTATUS_NOSUCHNAME
;
72 return SNMP_ERRORSTATUS_NOSUCHNAME
;
74 return SNMP_ERRORSTATUS_NOSUCHNAME
;
75 return map
[id
].copy(&pVarBind
->value
, (BYTE
*)record
+ map
[id
].offset
);
78 static DWORD
copyIpAddr(AsnAny
*value
, void *src
)
80 setStringValue(value
, ASN_IPADDRESS
, sizeof(DWORD
), src
);
81 return SNMP_ERRORSTATUS_NOERROR
;
84 static UINT mib2
[] = { 1,3,6,1,2,1 };
85 static UINT mib2System
[] = { 1,3,6,1,2,1,1 };
87 typedef BOOL (*varqueryfunc
)(BYTE bPduType
, SnmpVarBind
*pVarBind
,
88 AsnInteger32
*pErrorStatus
);
90 struct mibImplementation
92 AsnObjectIdentifier name
;
95 void (*cleanup
)(void);
98 static UINT mib2IfNumber
[] = { 1,3,6,1,2,1,2,1 };
99 static PMIB_IFTABLE ifTable
;
101 static void mib2IfNumberInit(void)
103 DWORD size
= 0, ret
= GetIfTable(NULL
, &size
, FALSE
);
105 if (ret
== ERROR_INSUFFICIENT_BUFFER
)
107 MIB_IFTABLE
*table
= HeapAlloc(GetProcessHeap(), 0, size
);
110 if (!GetIfTable(table
, &size
, FALSE
)) ifTable
= table
;
111 else HeapFree(GetProcessHeap(), 0, table
);
116 static void mib2IfNumberCleanup(void)
118 HeapFree(GetProcessHeap(), 0, ifTable
);
121 static BOOL
mib2IfNumberQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
122 AsnInteger32
*pErrorStatus
)
124 AsnObjectIdentifier numberOid
= DEFINE_OID(mib2IfNumber
);
127 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
133 case SNMP_PDU_GETNEXT
:
134 if ((bPduType
== SNMP_PDU_GET
&&
135 !SnmpUtilOidNCmp(&pVarBind
->name
, &numberOid
, numberOid
.idLength
))
136 || SnmpUtilOidNCmp(&pVarBind
->name
, &numberOid
, numberOid
.idLength
)
139 DWORD numIfs
= ifTable
? ifTable
->dwNumEntries
: 0;
141 copyInt(&pVarBind
->value
, &numIfs
);
142 if (bPduType
== SNMP_PDU_GETNEXT
)
144 SnmpUtilOidFree(&pVarBind
->name
);
145 SnmpUtilOidCpy(&pVarBind
->name
, &numberOid
);
147 *pErrorStatus
= SNMP_ERRORSTATUS_NOERROR
;
151 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
152 /* Caller deals with OID if bPduType == SNMP_PDU_GETNEXT, so don't
153 * need to set it here.
158 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
162 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
163 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
168 static DWORD
copyOperStatus(AsnAny
*value
, void *src
)
170 value
->asnType
= ASN_INTEGER
;
171 /* The IPHlpApi definition of operational status differs from the MIB2 one,
172 * so map it to the MIB2 value.
174 switch (*(DWORD
*)src
)
176 case MIB_IF_OPER_STATUS_OPERATIONAL
:
177 value
->asnValue
.number
= MIB_IF_ADMIN_STATUS_UP
;
179 case MIB_IF_OPER_STATUS_CONNECTING
:
180 case MIB_IF_OPER_STATUS_CONNECTED
:
181 value
->asnValue
.number
= MIB_IF_ADMIN_STATUS_TESTING
;
184 value
->asnValue
.number
= MIB_IF_ADMIN_STATUS_DOWN
;
186 return SNMP_ERRORSTATUS_NOERROR
;
189 /* Given an OID and a base OID that it must begin with, finds the item and
190 * integer instance from the OID. E.g., given an OID foo.1.2 and a base OID
191 * foo, returns item 1 and instance 2.
192 * If bPduType is not SNMP_PDU_GETNEXT and either the item or instance is
193 * missing, returns SNMP_ERRORSTATUS_NOSUCHNAME.
194 * If bPduType is SNMP_PDU_GETNEXT, returns the successor to the item and
195 * instance, or item 1, instance 1 if either is missing.
197 static AsnInteger32
getItemAndIntegerInstanceFromOid(AsnObjectIdentifier
*oid
,
198 AsnObjectIdentifier
*base
, BYTE bPduType
, UINT
*item
, UINT
*instance
)
200 AsnInteger32 ret
= SNMP_ERRORSTATUS_NOERROR
;
204 case SNMP_PDU_GETNEXT
:
205 if (SnmpUtilOidNCmp(oid
, base
, base
->idLength
) < 0)
210 else if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
))
212 if (oid
->idLength
== base
->idLength
||
213 oid
->idLength
== base
->idLength
+ 1)
215 /* Either the table or an item within the table is specified,
216 * but the instance is not. Get the first instance.
219 if (oid
->idLength
== base
->idLength
+ 1)
220 *item
= oid
->ids
[base
->idLength
];
226 *item
= oid
->ids
[base
->idLength
];
227 *instance
= oid
->ids
[base
->idLength
+ 1] + 1;
231 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
234 if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
))
236 if (oid
->idLength
== base
->idLength
||
237 oid
->idLength
== base
->idLength
+ 1)
239 /* Either the table or an item within the table is specified,
240 * but the instance is not.
242 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
246 *item
= oid
->ids
[base
->idLength
];
247 *instance
= oid
->ids
[base
->idLength
+ 1];
251 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
256 /* Given an OID and a base OID that it must begin with, finds the item from the
257 * OID. E.g., given an OID foo.1 and a base OID foo, returns item 1.
258 * If bPduType is not SNMP_PDU_GETNEXT and the item is missing, returns
259 * SNMP_ERRORSTATUS_NOSUCHNAME.
260 * If bPduType is SNMP_PDU_GETNEXT, returns the successor to the item, or item
261 * 1 if the item is missing.
263 static AsnInteger32
getItemFromOid(AsnObjectIdentifier
*oid
,
264 AsnObjectIdentifier
*base
, BYTE bPduType
, UINT
*item
)
266 AsnInteger32 ret
= SNMP_ERRORSTATUS_NOERROR
;
270 case SNMP_PDU_GETNEXT
:
271 if (SnmpUtilOidNCmp(oid
, base
, base
->idLength
) < 0)
273 else if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
))
275 if (oid
->idLength
== base
->idLength
)
277 /* The item is missing, assume the first item */
281 *item
= oid
->ids
[base
->idLength
] + 1;
284 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
287 if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
))
289 if (oid
->idLength
== base
->idLength
)
291 /* The item is missing */
292 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
296 *item
= oid
->ids
[base
->idLength
];
298 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
302 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
313 static DWORD
oidToIpAddr(AsnObjectIdentifier
*oid
)
315 assert(oid
&& oid
->idLength
>= 4);
316 /* Map the IDs to an IP address in little-endian order */
317 return (BYTE
)oid
->ids
[3] << 24 | (BYTE
)oid
->ids
[2] << 16 |
318 (BYTE
)oid
->ids
[1] << 8 | (BYTE
)oid
->ids
[0];
321 typedef void (*oidToKeyFunc
)(AsnObjectIdentifier
*oid
, void *dst
);
322 typedef int (*compareFunc
)(const void *key
, const void *value
);
324 /* Finds the first value in the table that matches key. Returns its 1-based
325 * index if found, or 0 if not found.
327 static UINT
findValueInTable(const void *key
,
328 struct GenericTable
*table
, size_t tableEntrySize
, compareFunc compare
)
333 value
= bsearch(key
, table
->entries
, table
->numEntries
, tableEntrySize
,
336 index
= ((BYTE
*)value
- (BYTE
*)table
->entries
) / tableEntrySize
+ 1;
340 /* Finds the first value in the table that matches oid, using makeKey to
341 * convert the oid to a key for comparison. Returns the value's 1-based
342 * index if found, or 0 if not found.
344 static UINT
findOidInTable(AsnObjectIdentifier
*oid
,
345 struct GenericTable
*table
, size_t tableEntrySize
, oidToKeyFunc makeKey
,
349 void *key
= HeapAlloc(GetProcessHeap(), 0, tableEntrySize
);
354 index
= findValueInTable(key
, table
, tableEntrySize
, compare
);
355 HeapFree(GetProcessHeap(), 0, key
);
360 /* Finds the first successor to the value in the table that does matches oid,
361 * using makeKey to convert the oid to a key for comparison. A successor is
362 * a value that does not match oid, so if multiple entries match an oid, only
363 * the first will ever be returned using this method.
364 * Returns the successor's 1-based index if found, or 0 if not found.
366 static UINT
findNextOidInTable(AsnObjectIdentifier
*oid
,
367 struct GenericTable
*table
, size_t tableEntrySize
, oidToKeyFunc makeKey
,
371 void *key
= HeapAlloc(GetProcessHeap(), 0, tableEntrySize
);
376 index
= findValueInTable(key
, table
, tableEntrySize
, compare
);
379 /* Not found in table. If it's less than the first entry, return
380 * the first index. Otherwise just return 0 and let the caller
381 * handle finding the successor.
383 if (compare(key
, table
->entries
) < 0)
388 /* Skip any entries that match the same key. This enumeration will
389 * be incomplete, but it's what Windows appears to do if there are
390 * multiple entries with the same index in a table, and it avoids
393 for (++index
; index
<= table
->numEntries
&& compare(key
,
394 &table
->entries
[tableEntrySize
* (index
- 1)]) == 0; ++index
)
397 HeapFree(GetProcessHeap(), 0, key
);
402 /* Given an OID and a base OID that it must begin with, finds the item and
403 * element of the table whose value matches the instance from the OID.
404 * The OID is converted to a key with the function makeKey, and compared
405 * against entries in the table with the function compare.
406 * If bPduType is not SNMP_PDU_GETNEXT and either the item or instance is
407 * missing, returns SNMP_ERRORSTATUS_NOSUCHNAME.
408 * If bPduType is SNMP_PDU_GETNEXT, returns the successor to the item and
409 * instance, or item 1, instance 1 if either is missing.
411 static AsnInteger32
getItemAndInstanceFromTable(AsnObjectIdentifier
*oid
,
412 AsnObjectIdentifier
*base
, UINT instanceLen
, BYTE bPduType
,
413 struct GenericTable
*table
, size_t tableEntrySize
, oidToKeyFunc makeKey
,
414 compareFunc compare
, UINT
*item
, UINT
*instance
)
416 AsnInteger32 ret
= SNMP_ERRORSTATUS_NOERROR
;
419 return SNMP_ERRORSTATUS_NOSUCHNAME
;
423 case SNMP_PDU_GETNEXT
:
424 if (SnmpUtilOidNCmp(oid
, base
, base
->idLength
) < 0)
426 /* Return the first item and instance from the table */
430 else if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
) &&
431 oid
->idLength
< base
->idLength
+ instanceLen
+ 1)
433 /* Either the table or an item is specified, but the instance is
437 if (oid
->idLength
>= base
->idLength
+ 1)
439 *item
= oid
->ids
[base
->idLength
];
446 else if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
) &&
447 oid
->idLength
== base
->idLength
+ instanceLen
+ 1)
449 *item
= oid
->ids
[base
->idLength
];
457 AsnObjectIdentifier instanceOid
= { instanceLen
,
458 oid
->ids
+ base
->idLength
+ 1 };
460 *instance
= findNextOidInTable(&instanceOid
, table
,
461 tableEntrySize
, makeKey
, compare
);
462 if (!*instance
|| *instance
> table
->numEntries
)
463 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
467 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
470 if (!SnmpUtilOidNCmp(oid
, base
, base
->idLength
) &&
471 oid
->idLength
== base
->idLength
+ instanceLen
+ 1)
473 *item
= oid
->ids
[base
->idLength
];
475 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
478 AsnObjectIdentifier instanceOid
= { instanceLen
,
479 oid
->ids
+ base
->idLength
+ 1 };
481 *instance
= findOidInTable(&instanceOid
, table
, tableEntrySize
,
484 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
488 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
493 static INT
setOidWithItem(AsnObjectIdentifier
*dst
, AsnObjectIdentifier
*base
,
497 AsnObjectIdentifier oid
;
500 SnmpUtilOidFree(dst
);
501 ret
= SnmpUtilOidCpy(dst
, base
);
507 ret
= SnmpUtilOidAppend(dst
, &oid
);
512 static INT
setOidWithItemAndIpAddr(AsnObjectIdentifier
*dst
,
513 AsnObjectIdentifier
*base
, UINT item
, DWORD addr
)
517 AsnObjectIdentifier oid
;
520 ret
= setOidWithItem(dst
, base
, item
);
525 for (ptr
= (BYTE
*)&addr
; ret
&& ptr
< (BYTE
*)&addr
+ sizeof(DWORD
);
529 ret
= SnmpUtilOidAppend(dst
, &oid
);
535 static INT
setOidWithItemAndInteger(AsnObjectIdentifier
*dst
,
536 AsnObjectIdentifier
*base
, UINT item
, UINT instance
)
538 AsnObjectIdentifier oid
;
541 ret
= setOidWithItem(dst
, base
, item
);
546 ret
= SnmpUtilOidAppend(dst
, &oid
);
551 static DWORD
copyIfRowDescr(AsnAny
*value
, void *src
)
553 PMIB_IFROW row
= (PMIB_IFROW
)((BYTE
*)src
-
554 FIELD_OFFSET(MIB_IFROW
, dwDescrLen
));
559 setStringValue(value
, ASN_OCTETSTRING
, row
->dwDescrLen
, row
->bDescr
);
560 ret
= SNMP_ERRORSTATUS_NOERROR
;
563 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
567 static DWORD
copyIfRowPhysAddr(AsnAny
*value
, void *src
)
569 PMIB_IFROW row
= (PMIB_IFROW
)((BYTE
*)src
-
570 FIELD_OFFSET(MIB_IFROW
, dwPhysAddrLen
));
573 if (row
->dwPhysAddrLen
)
575 setStringValue(value
, ASN_OCTETSTRING
, row
->dwPhysAddrLen
,
577 ret
= SNMP_ERRORSTATUS_NOERROR
;
580 ret
= SNMP_ERRORSTATUS_NOSUCHNAME
;
584 static struct structToAsnValue mib2IfEntryMap
[] = {
585 { FIELD_OFFSET(MIB_IFROW
, dwIndex
), copyInt
},
586 { FIELD_OFFSET(MIB_IFROW
, dwDescrLen
), copyIfRowDescr
},
587 { FIELD_OFFSET(MIB_IFROW
, dwType
), copyInt
},
588 { FIELD_OFFSET(MIB_IFROW
, dwMtu
), copyInt
},
589 { FIELD_OFFSET(MIB_IFROW
, dwSpeed
), copyInt
},
590 { FIELD_OFFSET(MIB_IFROW
, dwPhysAddrLen
), copyIfRowPhysAddr
},
591 { FIELD_OFFSET(MIB_IFROW
, dwAdminStatus
), copyInt
},
592 { FIELD_OFFSET(MIB_IFROW
, dwOperStatus
), copyOperStatus
},
593 { FIELD_OFFSET(MIB_IFROW
, dwLastChange
), copyInt
},
594 { FIELD_OFFSET(MIB_IFROW
, dwInOctets
), copyInt
},
595 { FIELD_OFFSET(MIB_IFROW
, dwInUcastPkts
), copyInt
},
596 { FIELD_OFFSET(MIB_IFROW
, dwInNUcastPkts
), copyInt
},
597 { FIELD_OFFSET(MIB_IFROW
, dwInDiscards
), copyInt
},
598 { FIELD_OFFSET(MIB_IFROW
, dwInErrors
), copyInt
},
599 { FIELD_OFFSET(MIB_IFROW
, dwInUnknownProtos
), copyInt
},
600 { FIELD_OFFSET(MIB_IFROW
, dwOutOctets
), copyInt
},
601 { FIELD_OFFSET(MIB_IFROW
, dwOutUcastPkts
), copyInt
},
602 { FIELD_OFFSET(MIB_IFROW
, dwOutNUcastPkts
), copyInt
},
603 { FIELD_OFFSET(MIB_IFROW
, dwOutDiscards
), copyInt
},
604 { FIELD_OFFSET(MIB_IFROW
, dwOutErrors
), copyInt
},
605 { FIELD_OFFSET(MIB_IFROW
, dwOutQLen
), copyInt
},
608 static UINT mib2IfEntry
[] = { 1,3,6,1,2,1,2,2,1 };
610 static BOOL
mib2IfEntryQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
611 AsnInteger32
*pErrorStatus
)
613 AsnObjectIdentifier entryOid
= DEFINE_OID(mib2IfEntry
);
616 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
622 case SNMP_PDU_GETNEXT
:
625 /* There is no interface present, so let the caller deal
626 * with finding the successor.
628 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
632 UINT tableIndex
= 0, item
= 0;
634 *pErrorStatus
= getItemAndIntegerInstanceFromOid(&pVarBind
->name
,
635 &entryOid
, bPduType
, &item
, &tableIndex
);
640 if (tableIndex
> ifTable
->dwNumEntries
)
641 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
644 *pErrorStatus
= mapStructEntryToValue(mib2IfEntryMap
,
645 DEFINE_SIZEOF(mib2IfEntryMap
),
646 &ifTable
->table
[tableIndex
- 1], item
,
648 if (bPduType
== SNMP_PDU_GETNEXT
)
649 ret
= setOidWithItemAndInteger(&pVarBind
->name
,
650 &entryOid
, item
, tableIndex
);
656 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
660 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
661 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
666 static UINT mib2Ip
[] = { 1,3,6,1,2,1,4 };
667 static MIB_IPSTATS ipStats
;
669 static void mib2IpStatsInit(void)
671 GetIpStatistics(&ipStats
);
674 static struct structToAsnValue mib2IpMap
[] = {
675 { FIELD_OFFSET(MIB_IPSTATS
, u
.dwForwarding
), copyInt
}, /* 1 */
676 { FIELD_OFFSET(MIB_IPSTATS
, dwDefaultTTL
), copyInt
}, /* 2 */
677 { FIELD_OFFSET(MIB_IPSTATS
, dwInReceives
), copyInt
}, /* 3 */
678 { FIELD_OFFSET(MIB_IPSTATS
, dwInHdrErrors
), copyInt
}, /* 4 */
679 { FIELD_OFFSET(MIB_IPSTATS
, dwInAddrErrors
), copyInt
}, /* 5 */
680 { FIELD_OFFSET(MIB_IPSTATS
, dwForwDatagrams
), copyInt
}, /* 6 */
681 { FIELD_OFFSET(MIB_IPSTATS
, dwInUnknownProtos
), copyInt
}, /* 7 */
682 { FIELD_OFFSET(MIB_IPSTATS
, dwInDiscards
), copyInt
}, /* 8 */
683 { FIELD_OFFSET(MIB_IPSTATS
, dwInDelivers
), copyInt
}, /* 9 */
684 { FIELD_OFFSET(MIB_IPSTATS
, dwOutRequests
), copyInt
}, /* 10 */
685 { FIELD_OFFSET(MIB_IPSTATS
, dwOutDiscards
), copyInt
}, /* 11 */
686 { FIELD_OFFSET(MIB_IPSTATS
, dwOutNoRoutes
), copyInt
}, /* 12 */
687 { FIELD_OFFSET(MIB_IPSTATS
, dwReasmTimeout
), copyInt
}, /* 13 */
688 { FIELD_OFFSET(MIB_IPSTATS
, dwReasmReqds
), copyInt
}, /* 14 */
689 { FIELD_OFFSET(MIB_IPSTATS
, dwReasmOks
), copyInt
}, /* 15 */
690 { FIELD_OFFSET(MIB_IPSTATS
, dwReasmFails
), copyInt
}, /* 16 */
691 { FIELD_OFFSET(MIB_IPSTATS
, dwFragOks
), copyInt
}, /* 17 */
692 { FIELD_OFFSET(MIB_IPSTATS
, dwFragFails
), copyInt
}, /* 18 */
693 { FIELD_OFFSET(MIB_IPSTATS
, dwFragCreates
), copyInt
}, /* 19 */
694 { 0, NULL
}, /* 20: not used, IP addr table */
695 { 0, NULL
}, /* 21: not used, route table */
696 { 0, NULL
}, /* 22: not used, net to media (ARP) table */
697 { FIELD_OFFSET(MIB_IPSTATS
, dwRoutingDiscards
), copyInt
}, /* 23 */
700 static BOOL
mib2IpStatsQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
701 AsnInteger32
*pErrorStatus
)
703 AsnObjectIdentifier myOid
= DEFINE_OID(mib2Ip
);
707 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
713 case SNMP_PDU_GETNEXT
:
714 *pErrorStatus
= getItemFromOid(&pVarBind
->name
, &myOid
, bPduType
,
718 *pErrorStatus
= mapStructEntryToValue(mib2IpMap
,
719 DEFINE_SIZEOF(mib2IpMap
), &ipStats
, item
, pVarBind
);
720 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
721 ret
= setOidWithItem(&pVarBind
->name
, &myOid
, item
);
725 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
729 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
730 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
735 static UINT mib2IpAddr
[] = { 1,3,6,1,2,1,4,20,1 };
736 static PMIB_IPADDRTABLE ipAddrTable
;
738 static struct structToAsnValue mib2IpAddrMap
[] = {
739 { FIELD_OFFSET(MIB_IPADDRROW
, dwAddr
), copyIpAddr
},
740 { FIELD_OFFSET(MIB_IPADDRROW
, dwIndex
), copyInt
},
741 { FIELD_OFFSET(MIB_IPADDRROW
, dwMask
), copyIpAddr
},
742 { FIELD_OFFSET(MIB_IPADDRROW
, dwBCastAddr
), copyInt
},
743 { FIELD_OFFSET(MIB_IPADDRROW
, dwReasmSize
), copyInt
},
746 static void mib2IpAddrInit(void)
748 DWORD size
= 0, ret
= GetIpAddrTable(NULL
, &size
, TRUE
);
750 if (ret
== ERROR_INSUFFICIENT_BUFFER
)
752 MIB_IPADDRTABLE
*table
= HeapAlloc(GetProcessHeap(), 0, size
);
755 if (!GetIpAddrTable(table
, &size
, TRUE
)) ipAddrTable
= table
;
756 else HeapFree(GetProcessHeap(), 0, table
);
761 static void mib2IpAddrCleanup(void)
763 HeapFree(GetProcessHeap(), 0, ipAddrTable
);
766 static void oidToIpAddrRow(AsnObjectIdentifier
*oid
, void *dst
)
768 MIB_IPADDRROW
*row
= dst
;
770 row
->dwAddr
= oidToIpAddr(oid
);
773 static int compareIpAddrRow(const void *a
, const void *b
)
775 const MIB_IPADDRROW
*key
= a
, *value
= b
;
777 return key
->dwAddr
- value
->dwAddr
;
780 static BOOL
mib2IpAddrQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
781 AsnInteger32
*pErrorStatus
)
783 AsnObjectIdentifier myOid
= DEFINE_OID(mib2IpAddr
);
784 UINT tableIndex
= 0, item
= 0;
787 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
793 case SNMP_PDU_GETNEXT
:
794 *pErrorStatus
= getItemAndInstanceFromTable(&pVarBind
->name
,
795 &myOid
, 4, bPduType
, (struct GenericTable
*)ipAddrTable
,
796 sizeof(MIB_IPADDRROW
), oidToIpAddrRow
, compareIpAddrRow
, &item
,
802 *pErrorStatus
= mapStructEntryToValue(mib2IpAddrMap
,
803 DEFINE_SIZEOF(mib2IpAddrMap
),
804 &ipAddrTable
->table
[tableIndex
- 1], item
, pVarBind
);
805 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
806 ret
= setOidWithItemAndIpAddr(&pVarBind
->name
, &myOid
, item
,
807 ipAddrTable
->table
[tableIndex
- 1].dwAddr
);
811 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
815 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
816 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
821 static UINT mib2IpRoute
[] = { 1,3,6,1,2,1,4,21,1 };
822 static PMIB_IPFORWARDTABLE ipRouteTable
;
824 static struct structToAsnValue mib2IpRouteMap
[] = {
825 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardDest
), copyIpAddr
},
826 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardIfIndex
), copyInt
},
827 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardMetric1
), copyInt
},
828 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardMetric2
), copyInt
},
829 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardMetric3
), copyInt
},
830 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardMetric4
), copyInt
},
831 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardNextHop
), copyIpAddr
},
832 { FIELD_OFFSET(MIB_IPFORWARDROW
, u1
.dwForwardType
), copyInt
},
833 { FIELD_OFFSET(MIB_IPFORWARDROW
, u2
.dwForwardProto
), copyInt
},
834 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardAge
), copyInt
},
835 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardMask
), copyIpAddr
},
836 { FIELD_OFFSET(MIB_IPFORWARDROW
, dwForwardMetric5
), copyInt
},
839 static void mib2IpRouteInit(void)
841 DWORD size
= 0, ret
= GetIpForwardTable(NULL
, &size
, TRUE
);
843 if (ret
== ERROR_INSUFFICIENT_BUFFER
)
845 MIB_IPFORWARDTABLE
*table
= HeapAlloc(GetProcessHeap(), 0, size
);
848 if (!GetIpForwardTable(table
, &size
, TRUE
)) ipRouteTable
= table
;
849 else HeapFree(GetProcessHeap(), 0, table
);
854 static void mib2IpRouteCleanup(void)
856 HeapFree(GetProcessHeap(), 0, ipRouteTable
);
859 static void oidToIpForwardRow(AsnObjectIdentifier
*oid
, void *dst
)
861 MIB_IPFORWARDROW
*row
= dst
;
863 row
->dwForwardDest
= oidToIpAddr(oid
);
866 static int compareIpForwardRow(const void *a
, const void *b
)
868 const MIB_IPFORWARDROW
*key
= a
, *value
= b
;
870 return key
->dwForwardDest
- value
->dwForwardDest
;
873 static BOOL
mib2IpRouteQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
874 AsnInteger32
*pErrorStatus
)
876 AsnObjectIdentifier myOid
= DEFINE_OID(mib2IpRoute
);
877 UINT tableIndex
= 0, item
= 0;
880 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
886 case SNMP_PDU_GETNEXT
:
887 *pErrorStatus
= getItemAndInstanceFromTable(&pVarBind
->name
,
888 &myOid
, 4, bPduType
, (struct GenericTable
*)ipRouteTable
,
889 sizeof(MIB_IPFORWARDROW
), oidToIpForwardRow
, compareIpForwardRow
,
895 *pErrorStatus
= mapStructEntryToValue(mib2IpRouteMap
,
896 DEFINE_SIZEOF(mib2IpRouteMap
),
897 &ipRouteTable
->table
[tableIndex
- 1], item
, pVarBind
);
898 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
899 ret
= setOidWithItemAndIpAddr(&pVarBind
->name
, &myOid
, item
,
900 ipRouteTable
->table
[tableIndex
- 1].dwForwardDest
);
904 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
908 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
909 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
914 static UINT mib2IpNet
[] = { 1,3,6,1,2,1,4,22,1 };
915 static PMIB_IPNETTABLE ipNetTable
;
917 static DWORD
copyIpNetPhysAddr(AsnAny
*value
, void *src
)
919 PMIB_IPNETROW row
= (PMIB_IPNETROW
)((BYTE
*)src
- FIELD_OFFSET(MIB_IPNETROW
,
922 setStringValue(value
, ASN_OCTETSTRING
, row
->dwPhysAddrLen
, row
->bPhysAddr
);
923 return SNMP_ERRORSTATUS_NOERROR
;
926 static struct structToAsnValue mib2IpNetMap
[] = {
927 { FIELD_OFFSET(MIB_IPNETROW
, dwIndex
), copyInt
},
928 { FIELD_OFFSET(MIB_IPNETROW
, dwPhysAddrLen
), copyIpNetPhysAddr
},
929 { FIELD_OFFSET(MIB_IPNETROW
, dwAddr
), copyIpAddr
},
930 { FIELD_OFFSET(MIB_IPNETROW
, u
.dwType
), copyInt
},
933 static void mib2IpNetInit(void)
935 DWORD size
= 0, ret
= GetIpNetTable(NULL
, &size
, FALSE
);
937 if (ret
== ERROR_INSUFFICIENT_BUFFER
)
939 MIB_IPNETTABLE
*table
= HeapAlloc(GetProcessHeap(), 0, size
);
942 if (!GetIpNetTable(table
, &size
, FALSE
)) ipNetTable
= table
;
943 else HeapFree(GetProcessHeap(), 0, table
);
948 static void mib2IpNetCleanup(void)
950 HeapFree(GetProcessHeap(), 0, ipNetTable
);
953 static BOOL
mib2IpNetQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
954 AsnInteger32
*pErrorStatus
)
956 AsnObjectIdentifier myOid
= DEFINE_OID(mib2IpNet
);
959 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
965 case SNMP_PDU_GETNEXT
:
967 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
970 UINT tableIndex
= 0, item
= 0;
972 *pErrorStatus
= getItemAndIntegerInstanceFromOid(&pVarBind
->name
,
973 &myOid
, bPduType
, &item
, &tableIndex
);
978 if (tableIndex
> ipNetTable
->dwNumEntries
)
979 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
982 *pErrorStatus
= mapStructEntryToValue(mib2IpNetMap
,
983 DEFINE_SIZEOF(mib2IpNetMap
),
984 &ipNetTable
[tableIndex
- 1], item
, pVarBind
);
985 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
986 ret
= setOidWithItemAndInteger(&pVarBind
->name
, &myOid
,
993 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
997 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
998 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1003 static UINT mib2Icmp
[] = { 1,3,6,1,2,1,5 };
1004 static MIB_ICMP icmpStats
;
1006 static void mib2IcmpInit(void)
1008 GetIcmpStatistics(&icmpStats
);
1011 static struct structToAsnValue mib2IcmpMap
[] = {
1012 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwMsgs
), copyInt
},
1013 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwErrors
), copyInt
},
1014 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwDestUnreachs
), copyInt
},
1015 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwTimeExcds
), copyInt
},
1016 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwParmProbs
), copyInt
},
1017 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwSrcQuenchs
), copyInt
},
1018 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwRedirects
), copyInt
},
1019 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwEchos
), copyInt
},
1020 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwEchoReps
), copyInt
},
1021 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwTimestamps
), copyInt
},
1022 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwTimestampReps
), copyInt
},
1023 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwAddrMasks
), copyInt
},
1024 { FIELD_OFFSET(MIBICMPINFO
, icmpInStats
.dwAddrMaskReps
), copyInt
},
1025 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwMsgs
), copyInt
},
1026 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwErrors
), copyInt
},
1027 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwDestUnreachs
), copyInt
},
1028 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwTimeExcds
), copyInt
},
1029 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwParmProbs
), copyInt
},
1030 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwSrcQuenchs
), copyInt
},
1031 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwRedirects
), copyInt
},
1032 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwEchos
), copyInt
},
1033 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwEchoReps
), copyInt
},
1034 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwTimestamps
), copyInt
},
1035 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwTimestampReps
), copyInt
},
1036 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwAddrMasks
), copyInt
},
1037 { FIELD_OFFSET(MIBICMPINFO
, icmpOutStats
.dwAddrMaskReps
), copyInt
},
1040 static BOOL
mib2IcmpQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
1041 AsnInteger32
*pErrorStatus
)
1043 AsnObjectIdentifier myOid
= DEFINE_OID(mib2Icmp
);
1047 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
1053 case SNMP_PDU_GETNEXT
:
1054 *pErrorStatus
= getItemFromOid(&pVarBind
->name
, &myOid
, bPduType
,
1058 *pErrorStatus
= mapStructEntryToValue(mib2IcmpMap
,
1059 DEFINE_SIZEOF(mib2IcmpMap
), &icmpStats
, item
,
1061 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
1062 ret
= setOidWithItem(&pVarBind
->name
, &myOid
, item
);
1066 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
1070 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
1071 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1076 static UINT mib2Tcp
[] = { 1,3,6,1,2,1,6 };
1077 static MIB_TCPSTATS tcpStats
;
1079 static void mib2TcpInit(void)
1081 GetTcpStatistics(&tcpStats
);
1084 static struct structToAsnValue mib2TcpMap
[] = {
1085 { FIELD_OFFSET(MIB_TCPSTATS
, u
.dwRtoAlgorithm
), copyInt
},
1086 { FIELD_OFFSET(MIB_TCPSTATS
, dwRtoMin
), copyInt
},
1087 { FIELD_OFFSET(MIB_TCPSTATS
, dwRtoMax
), copyInt
},
1088 { FIELD_OFFSET(MIB_TCPSTATS
, dwMaxConn
), copyInt
},
1089 { FIELD_OFFSET(MIB_TCPSTATS
, dwActiveOpens
), copyInt
},
1090 { FIELD_OFFSET(MIB_TCPSTATS
, dwPassiveOpens
), copyInt
},
1091 { FIELD_OFFSET(MIB_TCPSTATS
, dwAttemptFails
), copyInt
},
1092 { FIELD_OFFSET(MIB_TCPSTATS
, dwEstabResets
), copyInt
},
1093 { FIELD_OFFSET(MIB_TCPSTATS
, dwCurrEstab
), copyInt
},
1094 { FIELD_OFFSET(MIB_TCPSTATS
, dwInSegs
), copyInt
},
1095 { FIELD_OFFSET(MIB_TCPSTATS
, dwOutSegs
), copyInt
},
1096 { FIELD_OFFSET(MIB_TCPSTATS
, dwRetransSegs
), copyInt
},
1097 { FIELD_OFFSET(MIB_TCPSTATS
, dwInErrs
), copyInt
},
1098 { FIELD_OFFSET(MIB_TCPSTATS
, dwOutRsts
), copyInt
},
1099 { FIELD_OFFSET(MIB_TCPSTATS
, dwNumConns
), copyInt
},
1102 static BOOL
mib2TcpQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
1103 AsnInteger32
*pErrorStatus
)
1105 AsnObjectIdentifier myOid
= DEFINE_OID(mib2Tcp
);
1109 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
1115 case SNMP_PDU_GETNEXT
:
1116 *pErrorStatus
= getItemFromOid(&pVarBind
->name
, &myOid
, bPduType
,
1120 *pErrorStatus
= mapStructEntryToValue(mib2TcpMap
,
1121 DEFINE_SIZEOF(mib2TcpMap
), &tcpStats
, item
, pVarBind
);
1122 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
1123 ret
= setOidWithItem(&pVarBind
->name
, &myOid
, item
);
1127 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
1131 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
1132 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1137 static UINT mib2Udp
[] = { 1,3,6,1,2,1,7 };
1138 static MIB_UDPSTATS udpStats
;
1140 static void mib2UdpInit(void)
1142 GetUdpStatistics(&udpStats
);
1145 static struct structToAsnValue mib2UdpMap
[] = {
1146 { FIELD_OFFSET(MIB_UDPSTATS
, dwInDatagrams
), copyInt
},
1147 { FIELD_OFFSET(MIB_UDPSTATS
, dwNoPorts
), copyInt
},
1148 { FIELD_OFFSET(MIB_UDPSTATS
, dwInErrors
), copyInt
},
1149 { FIELD_OFFSET(MIB_UDPSTATS
, dwOutDatagrams
), copyInt
},
1152 static BOOL
mib2UdpQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
1153 AsnInteger32
*pErrorStatus
)
1155 AsnObjectIdentifier myOid
= DEFINE_OID(mib2Udp
);
1159 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
1165 case SNMP_PDU_GETNEXT
:
1166 *pErrorStatus
= getItemFromOid(&pVarBind
->name
, &myOid
, bPduType
,
1170 *pErrorStatus
= mapStructEntryToValue(mib2UdpMap
,
1171 DEFINE_SIZEOF(mib2UdpMap
), &udpStats
, item
, pVarBind
);
1172 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
1173 ret
= setOidWithItem(&pVarBind
->name
, &myOid
, item
);
1177 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
1181 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
1182 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1187 static UINT mib2UdpEntry
[] = { 1,3,6,1,2,1,7,5,1 };
1188 static PMIB_UDPTABLE udpTable
;
1190 static void mib2UdpEntryInit(void)
1192 DWORD size
= 0, ret
= GetUdpTable(NULL
, &size
, TRUE
);
1194 if (ret
== ERROR_INSUFFICIENT_BUFFER
)
1196 MIB_UDPTABLE
*table
= HeapAlloc(GetProcessHeap(), 0, size
);
1199 if (!GetUdpTable(table
, &size
, TRUE
)) udpTable
= table
;
1200 else HeapFree(GetProcessHeap(), 0, table
);
1205 static void mib2UdpEntryCleanup(void)
1207 HeapFree(GetProcessHeap(), 0, udpTable
);
1210 static struct structToAsnValue mib2UdpEntryMap
[] = {
1211 { FIELD_OFFSET(MIB_UDPROW
, dwLocalAddr
), copyIpAddr
},
1212 { FIELD_OFFSET(MIB_UDPROW
, dwLocalPort
), copyInt
},
1215 static void oidToUdpRow(AsnObjectIdentifier
*oid
, void *dst
)
1217 MIB_UDPROW
*row
= dst
;
1219 assert(oid
&& oid
->idLength
>= 5);
1220 row
->dwLocalAddr
= oidToIpAddr(oid
);
1221 row
->dwLocalPort
= oid
->ids
[4];
1224 static int compareUdpRow(const void *a
, const void *b
)
1226 const MIB_UDPROW
*key
= a
, *value
= b
;
1229 ret
= key
->dwLocalAddr
- value
->dwLocalAddr
;
1231 ret
= key
->dwLocalPort
- value
->dwLocalPort
;
1235 static BOOL
mib2UdpEntryQuery(BYTE bPduType
, SnmpVarBind
*pVarBind
,
1236 AsnInteger32
*pErrorStatus
)
1238 AsnObjectIdentifier myOid
= DEFINE_OID(mib2UdpEntry
);
1241 TRACE("(0x%02x, %s, %p)\n", bPduType
, SnmpUtilOidToA(&pVarBind
->name
),
1247 case SNMP_PDU_GETNEXT
:
1249 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1252 UINT tableIndex
= 0, item
= 0;
1254 *pErrorStatus
= getItemAndInstanceFromTable(&pVarBind
->name
, &myOid
,
1255 5, bPduType
, (struct GenericTable
*)udpTable
,
1256 sizeof(MIB_UDPROW
), oidToUdpRow
, compareUdpRow
, &item
,
1262 *pErrorStatus
= mapStructEntryToValue(mib2UdpEntryMap
,
1263 DEFINE_SIZEOF(mib2UdpEntryMap
),
1264 &udpTable
->table
[tableIndex
- 1], item
, pVarBind
);
1265 if (!*pErrorStatus
&& bPduType
== SNMP_PDU_GETNEXT
)
1267 AsnObjectIdentifier oid
;
1269 ret
= setOidWithItemAndIpAddr(&pVarBind
->name
, &myOid
, item
,
1270 udpTable
->table
[tableIndex
- 1].dwLocalAddr
);
1274 oid
.ids
= &udpTable
->table
[tableIndex
- 1].dwLocalPort
;
1275 ret
= SnmpUtilOidAppend(&pVarBind
->name
, &oid
);
1282 *pErrorStatus
= SNMP_ERRORSTATUS_READONLY
;
1286 FIXME("0x%02x: unsupported PDU type\n", bPduType
);
1287 *pErrorStatus
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1292 /* This list MUST BE lexicographically sorted */
1293 static struct mibImplementation supportedIDs
[] = {
1294 { DEFINE_OID(mib2IfNumber
), mib2IfNumberInit
, mib2IfNumberQuery
,
1295 mib2IfNumberCleanup
},
1296 { DEFINE_OID(mib2IfEntry
), NULL
, mib2IfEntryQuery
, NULL
},
1297 { DEFINE_OID(mib2Ip
), mib2IpStatsInit
, mib2IpStatsQuery
, NULL
},
1298 { DEFINE_OID(mib2IpAddr
), mib2IpAddrInit
, mib2IpAddrQuery
,
1299 mib2IpAddrCleanup
},
1300 { DEFINE_OID(mib2IpRoute
), mib2IpRouteInit
, mib2IpRouteQuery
,
1301 mib2IpRouteCleanup
},
1302 { DEFINE_OID(mib2IpNet
), mib2IpNetInit
, mib2IpNetQuery
, mib2IpNetCleanup
},
1303 { DEFINE_OID(mib2Icmp
), mib2IcmpInit
, mib2IcmpQuery
, NULL
},
1304 { DEFINE_OID(mib2Tcp
), mib2TcpInit
, mib2TcpQuery
, NULL
},
1305 { DEFINE_OID(mib2Udp
), mib2UdpInit
, mib2UdpQuery
, NULL
},
1306 { DEFINE_OID(mib2UdpEntry
), mib2UdpEntryInit
, mib2UdpEntryQuery
,
1307 mib2UdpEntryCleanup
},
1309 static UINT minSupportedIDLength
;
1311 /*****************************************************************************
1312 * SnmpExtensionInit [INETMIB1.@]
1314 BOOL WINAPI
SnmpExtensionInit(DWORD dwUptimeReference
,
1315 HANDLE
*phSubagentTrapEvent
, AsnObjectIdentifier
*pFirstSupportedRegion
)
1317 AsnObjectIdentifier myOid
= DEFINE_OID(mib2System
);
1320 TRACE("(%d, %p, %p)\n", dwUptimeReference
, phSubagentTrapEvent
,
1321 pFirstSupportedRegion
);
1323 minSupportedIDLength
= UINT_MAX
;
1324 for (i
= 0; i
< sizeof(supportedIDs
) / sizeof(supportedIDs
[0]); i
++)
1326 if (supportedIDs
[i
].init
)
1327 supportedIDs
[i
].init();
1328 if (supportedIDs
[i
].name
.idLength
< minSupportedIDLength
)
1329 minSupportedIDLength
= supportedIDs
[i
].name
.idLength
;
1331 *phSubagentTrapEvent
= NULL
;
1332 SnmpUtilOidCpy(pFirstSupportedRegion
, &myOid
);
1336 static void cleanup(void)
1340 for (i
= 0; i
< sizeof(supportedIDs
) / sizeof(supportedIDs
[0]); i
++)
1341 if (supportedIDs
[i
].cleanup
)
1342 supportedIDs
[i
].cleanup();
1345 static struct mibImplementation
*findSupportedQuery(UINT
*ids
, UINT idLength
,
1346 UINT
*matchingIndex
)
1348 int indexHigh
= DEFINE_SIZEOF(supportedIDs
) - 1, indexLow
= 0;
1349 AsnObjectIdentifier oid1
= { idLength
, ids
};
1354 while (indexLow
<= indexHigh
)
1356 INT cmp
, i
= (indexLow
+ indexHigh
) / 2;
1357 if (!(cmp
= SnmpUtilOidNCmp(&oid1
, &supportedIDs
[i
].name
, idLength
)))
1360 return &supportedIDs
[i
];
1370 /*****************************************************************************
1371 * SnmpExtensionQuery [INETMIB1.@]
1373 BOOL WINAPI
SnmpExtensionQuery(BYTE bPduType
, SnmpVarBindList
*pVarBindList
,
1374 AsnInteger32
*pErrorStatus
, AsnInteger32
*pErrorIndex
)
1376 AsnObjectIdentifier mib2oid
= DEFINE_OID(mib2
);
1377 AsnInteger32 error
= SNMP_ERRORSTATUS_NOERROR
, errorIndex
= 0;
1381 TRACE("(0x%02x, %p, %p, %p)\n", bPduType
, pVarBindList
,
1382 pErrorStatus
, pErrorIndex
);
1384 for (i
= 0; !error
&& i
< pVarBindList
->len
; i
++)
1386 /* Ignore any OIDs not in MIB2 */
1387 if (!SnmpUtilOidNCmp(&pVarBindList
->list
[i
].name
, &mib2oid
,
1390 struct mibImplementation
*impl
= NULL
;
1391 UINT len
, matchingIndex
= 0;
1393 TRACE("%s\n", SnmpUtilOidToA(&pVarBindList
->list
[i
].name
));
1394 /* Search for an implementation matching as many octets as possible
1396 for (len
= pVarBindList
->list
[i
].name
.idLength
;
1397 len
>= minSupportedIDLength
&& !impl
; len
--)
1398 impl
= findSupportedQuery(pVarBindList
->list
[i
].name
.ids
, len
,
1400 if (impl
&& impl
->query
)
1401 ret
= impl
->query(bPduType
, &pVarBindList
->list
[i
], &error
);
1403 error
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1404 if (error
== SNMP_ERRORSTATUS_NOSUCHNAME
&&
1405 bPduType
== SNMP_PDU_GETNEXT
)
1407 /* GetNext is special: it finds the successor to the given OID,
1408 * so we have to continue until an implementation handles the
1409 * query or we exhaust the table of supported OIDs.
1411 for (matchingIndex
++; error
== SNMP_ERRORSTATUS_NOSUCHNAME
&&
1412 matchingIndex
< DEFINE_SIZEOF(supportedIDs
);
1415 error
= SNMP_ERRORSTATUS_NOERROR
;
1416 impl
= &supportedIDs
[matchingIndex
];
1418 ret
= impl
->query(bPduType
, &pVarBindList
->list
[i
],
1421 error
= SNMP_ERRORSTATUS_NOSUCHNAME
;
1423 /* If the query still isn't resolved, set the OID to the
1424 * successor to the last entry in the table.
1426 if (error
== SNMP_ERRORSTATUS_NOSUCHNAME
)
1428 SnmpUtilOidFree(&pVarBindList
->list
[i
].name
);
1429 ret
= SnmpUtilOidCpy(&pVarBindList
->list
[i
].name
,
1430 &supportedIDs
[matchingIndex
- 1].name
);
1431 pVarBindList
->list
[i
].name
.ids
[
1432 pVarBindList
->list
[i
].name
.idLength
- 1] += 1;
1439 *pErrorStatus
= error
;
1440 *pErrorIndex
= errorIndex
;
1444 /*****************************************************************************
1445 * DllMain [INETMIB1.@]
1447 BOOL WINAPI
DllMain(HINSTANCE hinstDLL
, DWORD fdwReason
, LPVOID lpvReserved
)
1449 TRACE("(0x%p, %d, %p)\n", hinstDLL
, fdwReason
, lpvReserved
);
1453 case DLL_PROCESS_ATTACH
:
1454 DisableThreadLibraryCalls(hinstDLL
);
1456 case DLL_PROCESS_DETACH
: