Net stack with AutoIP enabled

Dependencies:   mbed

Committer:
darran
Date:
Fri Jul 02 17:21:58 2010 +0000
Revision:
0:ac21159e27f4

        

Who changed what in which revision?

UserRevisionLine numberNew contents of line
darran 0:ac21159e27f4 1 /**
darran 0:ac21159e27f4 2 * @file
darran 0:ac21159e27f4 3 * Management Information Base II (RFC1213) objects and functions.
darran 0:ac21159e27f4 4 *
darran 0:ac21159e27f4 5 * @note the object identifiers for this MIB-2 and private MIB tree
darran 0:ac21159e27f4 6 * must be kept in sorted ascending order. This to ensure correct getnext operation.
darran 0:ac21159e27f4 7 */
darran 0:ac21159e27f4 8
darran 0:ac21159e27f4 9 /*
darran 0:ac21159e27f4 10 * Copyright (c) 2006 Axon Digital Design B.V., The Netherlands.
darran 0:ac21159e27f4 11 * All rights reserved.
darran 0:ac21159e27f4 12 *
darran 0:ac21159e27f4 13 * Redistribution and use in source and binary forms, with or without modification,
darran 0:ac21159e27f4 14 * are permitted provided that the following conditions are met:
darran 0:ac21159e27f4 15 *
darran 0:ac21159e27f4 16 * 1. Redistributions of source code must retain the above copyright notice,
darran 0:ac21159e27f4 17 * this list of conditions and the following disclaimer.
darran 0:ac21159e27f4 18 * 2. Redistributions in binary form must reproduce the above copyright notice,
darran 0:ac21159e27f4 19 * this list of conditions and the following disclaimer in the documentation
darran 0:ac21159e27f4 20 * and/or other materials provided with the distribution.
darran 0:ac21159e27f4 21 * 3. The name of the author may not be used to endorse or promote products
darran 0:ac21159e27f4 22 * derived from this software without specific prior written permission.
darran 0:ac21159e27f4 23 *
darran 0:ac21159e27f4 24 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
darran 0:ac21159e27f4 25 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
darran 0:ac21159e27f4 26 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
darran 0:ac21159e27f4 27 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
darran 0:ac21159e27f4 28 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
darran 0:ac21159e27f4 29 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
darran 0:ac21159e27f4 30 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
darran 0:ac21159e27f4 31 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
darran 0:ac21159e27f4 32 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
darran 0:ac21159e27f4 33 * OF SUCH DAMAGE.
darran 0:ac21159e27f4 34 *
darran 0:ac21159e27f4 35 * Author: Christiaan Simons <christiaan.simons@axon.tv>
darran 0:ac21159e27f4 36 */
darran 0:ac21159e27f4 37
darran 0:ac21159e27f4 38 #include "lwip/opt.h"
darran 0:ac21159e27f4 39
darran 0:ac21159e27f4 40 #if LWIP_SNMP /* don't build if not configured for use in lwipopts.h */
darran 0:ac21159e27f4 41
darran 0:ac21159e27f4 42 #include "lwip/snmp.h"
darran 0:ac21159e27f4 43 #include "lwip/netif.h"
darran 0:ac21159e27f4 44 #include "lwip/ip.h"
darran 0:ac21159e27f4 45 #include "lwip/ip_frag.h"
darran 0:ac21159e27f4 46 #include "lwip/tcp_impl.h"
darran 0:ac21159e27f4 47 #include "lwip/udp.h"
darran 0:ac21159e27f4 48 #include "lwip/snmp_asn1.h"
darran 0:ac21159e27f4 49 #include "lwip/snmp_structs.h"
darran 0:ac21159e27f4 50 #include "netif/etharp.h"
darran 0:ac21159e27f4 51
darran 0:ac21159e27f4 52 /**
darran 0:ac21159e27f4 53 * IANA assigned enterprise ID for lwIP is 26381
darran 0:ac21159e27f4 54 * @see http://www.iana.org/assignments/enterprise-numbers
darran 0:ac21159e27f4 55 *
darran 0:ac21159e27f4 56 * @note this enterprise ID is assigned to the lwIP project,
darran 0:ac21159e27f4 57 * all object identifiers living under this ID are assigned
darran 0:ac21159e27f4 58 * by the lwIP maintainers (contact Christiaan Simons)!
darran 0:ac21159e27f4 59 * @note don't change this define, use snmp_set_sysobjid()
darran 0:ac21159e27f4 60 *
darran 0:ac21159e27f4 61 * If you need to create your own private MIB you'll need
darran 0:ac21159e27f4 62 * to apply for your own enterprise ID with IANA:
darran 0:ac21159e27f4 63 * http://www.iana.org/numbers.html
darran 0:ac21159e27f4 64 */
darran 0:ac21159e27f4 65 #define SNMP_ENTERPRISE_ID 26381
darran 0:ac21159e27f4 66 #define SNMP_SYSOBJID_LEN 7
darran 0:ac21159e27f4 67 #define SNMP_SYSOBJID {1, 3, 6, 1, 4, 1, SNMP_ENTERPRISE_ID}
darran 0:ac21159e27f4 68
darran 0:ac21159e27f4 69 #ifndef SNMP_SYSSERVICES
darran 0:ac21159e27f4 70 #define SNMP_SYSSERVICES ((1 << 6) | (1 << 3) | ((IP_FORWARD) << 2))
darran 0:ac21159e27f4 71 #endif
darran 0:ac21159e27f4 72
darran 0:ac21159e27f4 73 #ifndef SNMP_GET_SYSUPTIME
darran 0:ac21159e27f4 74 #define SNMP_GET_SYSUPTIME(sysuptime)
darran 0:ac21159e27f4 75 #endif
darran 0:ac21159e27f4 76
darran 0:ac21159e27f4 77 static void system_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 78 static void system_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 79 static u8_t system_set_test(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 80 static void system_set_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 81 static void interfaces_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 82 static void interfaces_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 83 static void ifentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 84 static void ifentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 85 #if !SNMP_SAFE_REQUESTS
darran 0:ac21159e27f4 86 static u8_t ifentry_set_test (struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 87 static void ifentry_set_value (struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 88 #endif /* SNMP_SAFE_REQUESTS */
darran 0:ac21159e27f4 89 static void atentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 90 static void atentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 91 static void ip_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 92 static void ip_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 93 static u8_t ip_set_test(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 94 static void ip_addrentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 95 static void ip_addrentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 96 static void ip_rteentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 97 static void ip_rteentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 98 static void ip_ntomentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 99 static void ip_ntomentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 100 static void icmp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 101 static void icmp_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 102 #if LWIP_TCP
darran 0:ac21159e27f4 103 static void tcp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 104 static void tcp_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 105 #ifdef THIS_SEEMS_UNUSED
darran 0:ac21159e27f4 106 static void tcpconnentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 107 static void tcpconnentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 108 #endif
darran 0:ac21159e27f4 109 #endif
darran 0:ac21159e27f4 110 static void udp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 111 static void udp_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 112 static void udpentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 113 static void udpentry_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 114 static void snmp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od);
darran 0:ac21159e27f4 115 static void snmp_get_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 116 static u8_t snmp_set_test(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 117 static void snmp_set_value(struct obj_def *od, u16_t len, void *value);
darran 0:ac21159e27f4 118
darran 0:ac21159e27f4 119
darran 0:ac21159e27f4 120 /* snmp .1.3.6.1.2.1.11 */
darran 0:ac21159e27f4 121 const mib_scalar_node snmp_scalar = {
darran 0:ac21159e27f4 122 &snmp_get_object_def,
darran 0:ac21159e27f4 123 &snmp_get_value,
darran 0:ac21159e27f4 124 &snmp_set_test,
darran 0:ac21159e27f4 125 &snmp_set_value,
darran 0:ac21159e27f4 126 MIB_NODE_SC,
darran 0:ac21159e27f4 127 0
darran 0:ac21159e27f4 128 };
darran 0:ac21159e27f4 129 const s32_t snmp_ids[28] = {
darran 0:ac21159e27f4 130 1, 2, 3, 4, 5, 6, 8, 9, 10, 11, 12, 13, 14, 15, 16,
darran 0:ac21159e27f4 131 17, 18, 19, 20, 21, 22, 24, 25, 26, 27, 28, 29, 30
darran 0:ac21159e27f4 132 };
darran 0:ac21159e27f4 133 struct mib_node* const snmp_nodes[28] = {
darran 0:ac21159e27f4 134 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 135 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 136 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 137 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 138 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 139 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 140 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 141 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 142 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 143 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 144 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 145 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 146 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar,
darran 0:ac21159e27f4 147 (struct mib_node* const)&snmp_scalar, (struct mib_node* const)&snmp_scalar
darran 0:ac21159e27f4 148 };
darran 0:ac21159e27f4 149 const struct mib_array_node snmp = {
darran 0:ac21159e27f4 150 &noleafs_get_object_def,
darran 0:ac21159e27f4 151 &noleafs_get_value,
darran 0:ac21159e27f4 152 &noleafs_set_test,
darran 0:ac21159e27f4 153 &noleafs_set_value,
darran 0:ac21159e27f4 154 MIB_NODE_AR,
darran 0:ac21159e27f4 155 28,
darran 0:ac21159e27f4 156 snmp_ids,
darran 0:ac21159e27f4 157 snmp_nodes
darran 0:ac21159e27f4 158 };
darran 0:ac21159e27f4 159
darran 0:ac21159e27f4 160 /* dot3 and EtherLike MIB not planned. (transmission .1.3.6.1.2.1.10) */
darran 0:ac21159e27f4 161 /* historical (some say hysterical). (cmot .1.3.6.1.2.1.9) */
darran 0:ac21159e27f4 162 /* lwIP has no EGP, thus may not implement it. (egp .1.3.6.1.2.1.8) */
darran 0:ac21159e27f4 163
darran 0:ac21159e27f4 164 /* udp .1.3.6.1.2.1.7 */
darran 0:ac21159e27f4 165 /** index root node for udpTable */
darran 0:ac21159e27f4 166 struct mib_list_rootnode udp_root = {
darran 0:ac21159e27f4 167 &noleafs_get_object_def,
darran 0:ac21159e27f4 168 &noleafs_get_value,
darran 0:ac21159e27f4 169 &noleafs_set_test,
darran 0:ac21159e27f4 170 &noleafs_set_value,
darran 0:ac21159e27f4 171 MIB_NODE_LR,
darran 0:ac21159e27f4 172 0,
darran 0:ac21159e27f4 173 NULL,
darran 0:ac21159e27f4 174 NULL,
darran 0:ac21159e27f4 175 0
darran 0:ac21159e27f4 176 };
darran 0:ac21159e27f4 177 const s32_t udpentry_ids[2] = { 1, 2 };
darran 0:ac21159e27f4 178 struct mib_node* const udpentry_nodes[2] = {
darran 0:ac21159e27f4 179 (struct mib_node* const)&udp_root, (struct mib_node* const)&udp_root,
darran 0:ac21159e27f4 180 };
darran 0:ac21159e27f4 181 const struct mib_array_node udpentry = {
darran 0:ac21159e27f4 182 &noleafs_get_object_def,
darran 0:ac21159e27f4 183 &noleafs_get_value,
darran 0:ac21159e27f4 184 &noleafs_set_test,
darran 0:ac21159e27f4 185 &noleafs_set_value,
darran 0:ac21159e27f4 186 MIB_NODE_AR,
darran 0:ac21159e27f4 187 2,
darran 0:ac21159e27f4 188 udpentry_ids,
darran 0:ac21159e27f4 189 udpentry_nodes
darran 0:ac21159e27f4 190 };
darran 0:ac21159e27f4 191
darran 0:ac21159e27f4 192 s32_t udptable_id = 1;
darran 0:ac21159e27f4 193 struct mib_node* udptable_node = (struct mib_node* const)&udpentry;
darran 0:ac21159e27f4 194 struct mib_ram_array_node udptable = {
darran 0:ac21159e27f4 195 &noleafs_get_object_def,
darran 0:ac21159e27f4 196 &noleafs_get_value,
darran 0:ac21159e27f4 197 &noleafs_set_test,
darran 0:ac21159e27f4 198 &noleafs_set_value,
darran 0:ac21159e27f4 199 MIB_NODE_RA,
darran 0:ac21159e27f4 200 0,
darran 0:ac21159e27f4 201 &udptable_id,
darran 0:ac21159e27f4 202 &udptable_node
darran 0:ac21159e27f4 203 };
darran 0:ac21159e27f4 204
darran 0:ac21159e27f4 205 const mib_scalar_node udp_scalar = {
darran 0:ac21159e27f4 206 &udp_get_object_def,
darran 0:ac21159e27f4 207 &udp_get_value,
darran 0:ac21159e27f4 208 &noleafs_set_test,
darran 0:ac21159e27f4 209 &noleafs_set_value,
darran 0:ac21159e27f4 210 MIB_NODE_SC,
darran 0:ac21159e27f4 211 0
darran 0:ac21159e27f4 212 };
darran 0:ac21159e27f4 213 const s32_t udp_ids[5] = { 1, 2, 3, 4, 5 };
darran 0:ac21159e27f4 214 struct mib_node* const udp_nodes[5] = {
darran 0:ac21159e27f4 215 (struct mib_node* const)&udp_scalar, (struct mib_node* const)&udp_scalar,
darran 0:ac21159e27f4 216 (struct mib_node* const)&udp_scalar, (struct mib_node* const)&udp_scalar,
darran 0:ac21159e27f4 217 (struct mib_node* const)&udptable
darran 0:ac21159e27f4 218 };
darran 0:ac21159e27f4 219 const struct mib_array_node udp = {
darran 0:ac21159e27f4 220 &noleafs_get_object_def,
darran 0:ac21159e27f4 221 &noleafs_get_value,
darran 0:ac21159e27f4 222 &noleafs_set_test,
darran 0:ac21159e27f4 223 &noleafs_set_value,
darran 0:ac21159e27f4 224 MIB_NODE_AR,
darran 0:ac21159e27f4 225 5,
darran 0:ac21159e27f4 226 udp_ids,
darran 0:ac21159e27f4 227 udp_nodes
darran 0:ac21159e27f4 228 };
darran 0:ac21159e27f4 229
darran 0:ac21159e27f4 230 /* tcp .1.3.6.1.2.1.6 */
darran 0:ac21159e27f4 231 #if LWIP_TCP
darran 0:ac21159e27f4 232 /* only if the TCP protocol is available may implement this group */
darran 0:ac21159e27f4 233 /** index root node for tcpConnTable */
darran 0:ac21159e27f4 234 struct mib_list_rootnode tcpconntree_root = {
darran 0:ac21159e27f4 235 &noleafs_get_object_def,
darran 0:ac21159e27f4 236 &noleafs_get_value,
darran 0:ac21159e27f4 237 &noleafs_set_test,
darran 0:ac21159e27f4 238 &noleafs_set_value,
darran 0:ac21159e27f4 239 MIB_NODE_LR,
darran 0:ac21159e27f4 240 0,
darran 0:ac21159e27f4 241 NULL,
darran 0:ac21159e27f4 242 NULL,
darran 0:ac21159e27f4 243 0
darran 0:ac21159e27f4 244 };
darran 0:ac21159e27f4 245 const s32_t tcpconnentry_ids[5] = { 1, 2, 3, 4, 5 };
darran 0:ac21159e27f4 246 struct mib_node* const tcpconnentry_nodes[5] = {
darran 0:ac21159e27f4 247 (struct mib_node* const)&tcpconntree_root, (struct mib_node* const)&tcpconntree_root,
darran 0:ac21159e27f4 248 (struct mib_node* const)&tcpconntree_root, (struct mib_node* const)&tcpconntree_root,
darran 0:ac21159e27f4 249 (struct mib_node* const)&tcpconntree_root
darran 0:ac21159e27f4 250 };
darran 0:ac21159e27f4 251 const struct mib_array_node tcpconnentry = {
darran 0:ac21159e27f4 252 &noleafs_get_object_def,
darran 0:ac21159e27f4 253 &noleafs_get_value,
darran 0:ac21159e27f4 254 &noleafs_set_test,
darran 0:ac21159e27f4 255 &noleafs_set_value,
darran 0:ac21159e27f4 256 MIB_NODE_AR,
darran 0:ac21159e27f4 257 5,
darran 0:ac21159e27f4 258 tcpconnentry_ids,
darran 0:ac21159e27f4 259 tcpconnentry_nodes
darran 0:ac21159e27f4 260 };
darran 0:ac21159e27f4 261
darran 0:ac21159e27f4 262 s32_t tcpconntable_id = 1;
darran 0:ac21159e27f4 263 struct mib_node* tcpconntable_node = (struct mib_node* const)&tcpconnentry;
darran 0:ac21159e27f4 264 struct mib_ram_array_node tcpconntable = {
darran 0:ac21159e27f4 265 &noleafs_get_object_def,
darran 0:ac21159e27f4 266 &noleafs_get_value,
darran 0:ac21159e27f4 267 &noleafs_set_test,
darran 0:ac21159e27f4 268 &noleafs_set_value,
darran 0:ac21159e27f4 269 MIB_NODE_RA,
darran 0:ac21159e27f4 270 /** @todo update maxlength when inserting / deleting from table
darran 0:ac21159e27f4 271 0 when table is empty, 1 when more than one entry */
darran 0:ac21159e27f4 272 0,
darran 0:ac21159e27f4 273 &tcpconntable_id,
darran 0:ac21159e27f4 274 &tcpconntable_node
darran 0:ac21159e27f4 275 };
darran 0:ac21159e27f4 276
darran 0:ac21159e27f4 277 const mib_scalar_node tcp_scalar = {
darran 0:ac21159e27f4 278 &tcp_get_object_def,
darran 0:ac21159e27f4 279 &tcp_get_value,
darran 0:ac21159e27f4 280 &noleafs_set_test,
darran 0:ac21159e27f4 281 &noleafs_set_value,
darran 0:ac21159e27f4 282 MIB_NODE_SC,
darran 0:ac21159e27f4 283 0
darran 0:ac21159e27f4 284 };
darran 0:ac21159e27f4 285 const s32_t tcp_ids[15] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15 };
darran 0:ac21159e27f4 286 struct mib_node* const tcp_nodes[15] = {
darran 0:ac21159e27f4 287 (struct mib_node* const)&tcp_scalar, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 288 (struct mib_node* const)&tcp_scalar, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 289 (struct mib_node* const)&tcp_scalar, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 290 (struct mib_node* const)&tcp_scalar, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 291 (struct mib_node* const)&tcp_scalar, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 292 (struct mib_node* const)&tcp_scalar, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 293 (struct mib_node* const)&tcpconntable, (struct mib_node* const)&tcp_scalar,
darran 0:ac21159e27f4 294 (struct mib_node* const)&tcp_scalar
darran 0:ac21159e27f4 295 };
darran 0:ac21159e27f4 296 const struct mib_array_node tcp = {
darran 0:ac21159e27f4 297 &noleafs_get_object_def,
darran 0:ac21159e27f4 298 &noleafs_get_value,
darran 0:ac21159e27f4 299 &noleafs_set_test,
darran 0:ac21159e27f4 300 &noleafs_set_value,
darran 0:ac21159e27f4 301 MIB_NODE_AR,
darran 0:ac21159e27f4 302 15,
darran 0:ac21159e27f4 303 tcp_ids,
darran 0:ac21159e27f4 304 tcp_nodes
darran 0:ac21159e27f4 305 };
darran 0:ac21159e27f4 306 #endif
darran 0:ac21159e27f4 307
darran 0:ac21159e27f4 308 /* icmp .1.3.6.1.2.1.5 */
darran 0:ac21159e27f4 309 const mib_scalar_node icmp_scalar = {
darran 0:ac21159e27f4 310 &icmp_get_object_def,
darran 0:ac21159e27f4 311 &icmp_get_value,
darran 0:ac21159e27f4 312 &noleafs_set_test,
darran 0:ac21159e27f4 313 &noleafs_set_value,
darran 0:ac21159e27f4 314 MIB_NODE_SC,
darran 0:ac21159e27f4 315 0
darran 0:ac21159e27f4 316 };
darran 0:ac21159e27f4 317 const s32_t icmp_ids[26] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26 };
darran 0:ac21159e27f4 318 struct mib_node* const icmp_nodes[26] = {
darran 0:ac21159e27f4 319 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 320 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 321 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 322 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 323 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 324 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 325 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 326 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 327 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 328 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 329 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 330 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar,
darran 0:ac21159e27f4 331 (struct mib_node* const)&icmp_scalar, (struct mib_node* const)&icmp_scalar
darran 0:ac21159e27f4 332 };
darran 0:ac21159e27f4 333 const struct mib_array_node icmp = {
darran 0:ac21159e27f4 334 &noleafs_get_object_def,
darran 0:ac21159e27f4 335 &noleafs_get_value,
darran 0:ac21159e27f4 336 &noleafs_set_test,
darran 0:ac21159e27f4 337 &noleafs_set_value,
darran 0:ac21159e27f4 338 MIB_NODE_AR,
darran 0:ac21159e27f4 339 26,
darran 0:ac21159e27f4 340 icmp_ids,
darran 0:ac21159e27f4 341 icmp_nodes
darran 0:ac21159e27f4 342 };
darran 0:ac21159e27f4 343
darran 0:ac21159e27f4 344 /** index root node for ipNetToMediaTable */
darran 0:ac21159e27f4 345 struct mib_list_rootnode ipntomtree_root = {
darran 0:ac21159e27f4 346 &noleafs_get_object_def,
darran 0:ac21159e27f4 347 &noleafs_get_value,
darran 0:ac21159e27f4 348 &noleafs_set_test,
darran 0:ac21159e27f4 349 &noleafs_set_value,
darran 0:ac21159e27f4 350 MIB_NODE_LR,
darran 0:ac21159e27f4 351 0,
darran 0:ac21159e27f4 352 NULL,
darran 0:ac21159e27f4 353 NULL,
darran 0:ac21159e27f4 354 0
darran 0:ac21159e27f4 355 };
darran 0:ac21159e27f4 356 const s32_t ipntomentry_ids[4] = { 1, 2, 3, 4 };
darran 0:ac21159e27f4 357 struct mib_node* const ipntomentry_nodes[4] = {
darran 0:ac21159e27f4 358 (struct mib_node* const)&ipntomtree_root, (struct mib_node* const)&ipntomtree_root,
darran 0:ac21159e27f4 359 (struct mib_node* const)&ipntomtree_root, (struct mib_node* const)&ipntomtree_root
darran 0:ac21159e27f4 360 };
darran 0:ac21159e27f4 361 const struct mib_array_node ipntomentry = {
darran 0:ac21159e27f4 362 &noleafs_get_object_def,
darran 0:ac21159e27f4 363 &noleafs_get_value,
darran 0:ac21159e27f4 364 &noleafs_set_test,
darran 0:ac21159e27f4 365 &noleafs_set_value,
darran 0:ac21159e27f4 366 MIB_NODE_AR,
darran 0:ac21159e27f4 367 4,
darran 0:ac21159e27f4 368 ipntomentry_ids,
darran 0:ac21159e27f4 369 ipntomentry_nodes
darran 0:ac21159e27f4 370 };
darran 0:ac21159e27f4 371
darran 0:ac21159e27f4 372 s32_t ipntomtable_id = 1;
darran 0:ac21159e27f4 373 struct mib_node* ipntomtable_node = (struct mib_node* const)&ipntomentry;
darran 0:ac21159e27f4 374 struct mib_ram_array_node ipntomtable = {
darran 0:ac21159e27f4 375 &noleafs_get_object_def,
darran 0:ac21159e27f4 376 &noleafs_get_value,
darran 0:ac21159e27f4 377 &noleafs_set_test,
darran 0:ac21159e27f4 378 &noleafs_set_value,
darran 0:ac21159e27f4 379 MIB_NODE_RA,
darran 0:ac21159e27f4 380 0,
darran 0:ac21159e27f4 381 &ipntomtable_id,
darran 0:ac21159e27f4 382 &ipntomtable_node
darran 0:ac21159e27f4 383 };
darran 0:ac21159e27f4 384
darran 0:ac21159e27f4 385 /** index root node for ipRouteTable */
darran 0:ac21159e27f4 386 struct mib_list_rootnode iprtetree_root = {
darran 0:ac21159e27f4 387 &noleafs_get_object_def,
darran 0:ac21159e27f4 388 &noleafs_get_value,
darran 0:ac21159e27f4 389 &noleafs_set_test,
darran 0:ac21159e27f4 390 &noleafs_set_value,
darran 0:ac21159e27f4 391 MIB_NODE_LR,
darran 0:ac21159e27f4 392 0,
darran 0:ac21159e27f4 393 NULL,
darran 0:ac21159e27f4 394 NULL,
darran 0:ac21159e27f4 395 0
darran 0:ac21159e27f4 396 };
darran 0:ac21159e27f4 397 const s32_t iprteentry_ids[13] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13 };
darran 0:ac21159e27f4 398 struct mib_node* const iprteentry_nodes[13] = {
darran 0:ac21159e27f4 399 (struct mib_node* const)&iprtetree_root, (struct mib_node* const)&iprtetree_root,
darran 0:ac21159e27f4 400 (struct mib_node* const)&iprtetree_root, (struct mib_node* const)&iprtetree_root,
darran 0:ac21159e27f4 401 (struct mib_node* const)&iprtetree_root, (struct mib_node* const)&iprtetree_root,
darran 0:ac21159e27f4 402 (struct mib_node* const)&iprtetree_root, (struct mib_node* const)&iprtetree_root,
darran 0:ac21159e27f4 403 (struct mib_node* const)&iprtetree_root, (struct mib_node* const)&iprtetree_root,
darran 0:ac21159e27f4 404 (struct mib_node* const)&iprtetree_root, (struct mib_node* const)&iprtetree_root,
darran 0:ac21159e27f4 405 (struct mib_node* const)&iprtetree_root
darran 0:ac21159e27f4 406 };
darran 0:ac21159e27f4 407 const struct mib_array_node iprteentry = {
darran 0:ac21159e27f4 408 &noleafs_get_object_def,
darran 0:ac21159e27f4 409 &noleafs_get_value,
darran 0:ac21159e27f4 410 &noleafs_set_test,
darran 0:ac21159e27f4 411 &noleafs_set_value,
darran 0:ac21159e27f4 412 MIB_NODE_AR,
darran 0:ac21159e27f4 413 13,
darran 0:ac21159e27f4 414 iprteentry_ids,
darran 0:ac21159e27f4 415 iprteentry_nodes
darran 0:ac21159e27f4 416 };
darran 0:ac21159e27f4 417
darran 0:ac21159e27f4 418 s32_t iprtetable_id = 1;
darran 0:ac21159e27f4 419 struct mib_node* iprtetable_node = (struct mib_node* const)&iprteentry;
darran 0:ac21159e27f4 420 struct mib_ram_array_node iprtetable = {
darran 0:ac21159e27f4 421 &noleafs_get_object_def,
darran 0:ac21159e27f4 422 &noleafs_get_value,
darran 0:ac21159e27f4 423 &noleafs_set_test,
darran 0:ac21159e27f4 424 &noleafs_set_value,
darran 0:ac21159e27f4 425 MIB_NODE_RA,
darran 0:ac21159e27f4 426 0,
darran 0:ac21159e27f4 427 &iprtetable_id,
darran 0:ac21159e27f4 428 &iprtetable_node
darran 0:ac21159e27f4 429 };
darran 0:ac21159e27f4 430
darran 0:ac21159e27f4 431 /** index root node for ipAddrTable */
darran 0:ac21159e27f4 432 struct mib_list_rootnode ipaddrtree_root = {
darran 0:ac21159e27f4 433 &noleafs_get_object_def,
darran 0:ac21159e27f4 434 &noleafs_get_value,
darran 0:ac21159e27f4 435 &noleafs_set_test,
darran 0:ac21159e27f4 436 &noleafs_set_value,
darran 0:ac21159e27f4 437 MIB_NODE_LR,
darran 0:ac21159e27f4 438 0,
darran 0:ac21159e27f4 439 NULL,
darran 0:ac21159e27f4 440 NULL,
darran 0:ac21159e27f4 441 0
darran 0:ac21159e27f4 442 };
darran 0:ac21159e27f4 443 const s32_t ipaddrentry_ids[5] = { 1, 2, 3, 4, 5 };
darran 0:ac21159e27f4 444 struct mib_node* const ipaddrentry_nodes[5] = {
darran 0:ac21159e27f4 445 (struct mib_node* const)&ipaddrtree_root,
darran 0:ac21159e27f4 446 (struct mib_node* const)&ipaddrtree_root,
darran 0:ac21159e27f4 447 (struct mib_node* const)&ipaddrtree_root,
darran 0:ac21159e27f4 448 (struct mib_node* const)&ipaddrtree_root,
darran 0:ac21159e27f4 449 (struct mib_node* const)&ipaddrtree_root
darran 0:ac21159e27f4 450 };
darran 0:ac21159e27f4 451 const struct mib_array_node ipaddrentry = {
darran 0:ac21159e27f4 452 &noleafs_get_object_def,
darran 0:ac21159e27f4 453 &noleafs_get_value,
darran 0:ac21159e27f4 454 &noleafs_set_test,
darran 0:ac21159e27f4 455 &noleafs_set_value,
darran 0:ac21159e27f4 456 MIB_NODE_AR,
darran 0:ac21159e27f4 457 5,
darran 0:ac21159e27f4 458 ipaddrentry_ids,
darran 0:ac21159e27f4 459 ipaddrentry_nodes
darran 0:ac21159e27f4 460 };
darran 0:ac21159e27f4 461
darran 0:ac21159e27f4 462 s32_t ipaddrtable_id = 1;
darran 0:ac21159e27f4 463 struct mib_node* ipaddrtable_node = (struct mib_node* const)&ipaddrentry;
darran 0:ac21159e27f4 464 struct mib_ram_array_node ipaddrtable = {
darran 0:ac21159e27f4 465 &noleafs_get_object_def,
darran 0:ac21159e27f4 466 &noleafs_get_value,
darran 0:ac21159e27f4 467 &noleafs_set_test,
darran 0:ac21159e27f4 468 &noleafs_set_value,
darran 0:ac21159e27f4 469 MIB_NODE_RA,
darran 0:ac21159e27f4 470 0,
darran 0:ac21159e27f4 471 &ipaddrtable_id,
darran 0:ac21159e27f4 472 &ipaddrtable_node
darran 0:ac21159e27f4 473 };
darran 0:ac21159e27f4 474
darran 0:ac21159e27f4 475 /* ip .1.3.6.1.2.1.4 */
darran 0:ac21159e27f4 476 const mib_scalar_node ip_scalar = {
darran 0:ac21159e27f4 477 &ip_get_object_def,
darran 0:ac21159e27f4 478 &ip_get_value,
darran 0:ac21159e27f4 479 &ip_set_test,
darran 0:ac21159e27f4 480 &noleafs_set_value,
darran 0:ac21159e27f4 481 MIB_NODE_SC,
darran 0:ac21159e27f4 482 0
darran 0:ac21159e27f4 483 };
darran 0:ac21159e27f4 484 const s32_t ip_ids[23] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23 };
darran 0:ac21159e27f4 485 struct mib_node* const ip_nodes[23] = {
darran 0:ac21159e27f4 486 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 487 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 488 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 489 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 490 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 491 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 492 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 493 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 494 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ip_scalar,
darran 0:ac21159e27f4 495 (struct mib_node* const)&ip_scalar, (struct mib_node* const)&ipaddrtable,
darran 0:ac21159e27f4 496 (struct mib_node* const)&iprtetable, (struct mib_node* const)&ipntomtable,
darran 0:ac21159e27f4 497 (struct mib_node* const)&ip_scalar
darran 0:ac21159e27f4 498 };
darran 0:ac21159e27f4 499 const struct mib_array_node mib2_ip = {
darran 0:ac21159e27f4 500 &noleafs_get_object_def,
darran 0:ac21159e27f4 501 &noleafs_get_value,
darran 0:ac21159e27f4 502 &noleafs_set_test,
darran 0:ac21159e27f4 503 &noleafs_set_value,
darran 0:ac21159e27f4 504 MIB_NODE_AR,
darran 0:ac21159e27f4 505 23,
darran 0:ac21159e27f4 506 ip_ids,
darran 0:ac21159e27f4 507 ip_nodes
darran 0:ac21159e27f4 508 };
darran 0:ac21159e27f4 509
darran 0:ac21159e27f4 510 /** index root node for atTable */
darran 0:ac21159e27f4 511 struct mib_list_rootnode arptree_root = {
darran 0:ac21159e27f4 512 &noleafs_get_object_def,
darran 0:ac21159e27f4 513 &noleafs_get_value,
darran 0:ac21159e27f4 514 &noleafs_set_test,
darran 0:ac21159e27f4 515 &noleafs_set_value,
darran 0:ac21159e27f4 516 MIB_NODE_LR,
darran 0:ac21159e27f4 517 0,
darran 0:ac21159e27f4 518 NULL,
darran 0:ac21159e27f4 519 NULL,
darran 0:ac21159e27f4 520 0
darran 0:ac21159e27f4 521 };
darran 0:ac21159e27f4 522 const s32_t atentry_ids[3] = { 1, 2, 3 };
darran 0:ac21159e27f4 523 struct mib_node* const atentry_nodes[3] = {
darran 0:ac21159e27f4 524 (struct mib_node* const)&arptree_root,
darran 0:ac21159e27f4 525 (struct mib_node* const)&arptree_root,
darran 0:ac21159e27f4 526 (struct mib_node* const)&arptree_root
darran 0:ac21159e27f4 527 };
darran 0:ac21159e27f4 528 const struct mib_array_node atentry = {
darran 0:ac21159e27f4 529 &noleafs_get_object_def,
darran 0:ac21159e27f4 530 &noleafs_get_value,
darran 0:ac21159e27f4 531 &noleafs_set_test,
darran 0:ac21159e27f4 532 &noleafs_set_value,
darran 0:ac21159e27f4 533 MIB_NODE_AR,
darran 0:ac21159e27f4 534 3,
darran 0:ac21159e27f4 535 atentry_ids,
darran 0:ac21159e27f4 536 atentry_nodes
darran 0:ac21159e27f4 537 };
darran 0:ac21159e27f4 538
darran 0:ac21159e27f4 539 const s32_t attable_id = 1;
darran 0:ac21159e27f4 540 struct mib_node* const attable_node = (struct mib_node* const)&atentry;
darran 0:ac21159e27f4 541 const struct mib_array_node attable = {
darran 0:ac21159e27f4 542 &noleafs_get_object_def,
darran 0:ac21159e27f4 543 &noleafs_get_value,
darran 0:ac21159e27f4 544 &noleafs_set_test,
darran 0:ac21159e27f4 545 &noleafs_set_value,
darran 0:ac21159e27f4 546 MIB_NODE_AR,
darran 0:ac21159e27f4 547 1,
darran 0:ac21159e27f4 548 &attable_id,
darran 0:ac21159e27f4 549 &attable_node
darran 0:ac21159e27f4 550 };
darran 0:ac21159e27f4 551
darran 0:ac21159e27f4 552 /* at .1.3.6.1.2.1.3 */
darran 0:ac21159e27f4 553 s32_t at_id = 1;
darran 0:ac21159e27f4 554 struct mib_node* mib2_at_node = (struct mib_node* const)&attable;
darran 0:ac21159e27f4 555 struct mib_ram_array_node at = {
darran 0:ac21159e27f4 556 &noleafs_get_object_def,
darran 0:ac21159e27f4 557 &noleafs_get_value,
darran 0:ac21159e27f4 558 &noleafs_set_test,
darran 0:ac21159e27f4 559 &noleafs_set_value,
darran 0:ac21159e27f4 560 MIB_NODE_RA,
darran 0:ac21159e27f4 561 0,
darran 0:ac21159e27f4 562 &at_id,
darran 0:ac21159e27f4 563 &mib2_at_node
darran 0:ac21159e27f4 564 };
darran 0:ac21159e27f4 565
darran 0:ac21159e27f4 566 /** index root node for ifTable */
darran 0:ac21159e27f4 567 struct mib_list_rootnode iflist_root = {
darran 0:ac21159e27f4 568 &ifentry_get_object_def,
darran 0:ac21159e27f4 569 &ifentry_get_value,
darran 0:ac21159e27f4 570 #if SNMP_SAFE_REQUESTS
darran 0:ac21159e27f4 571 &noleafs_set_test,
darran 0:ac21159e27f4 572 &noleafs_set_value,
darran 0:ac21159e27f4 573 #else /* SNMP_SAFE_REQUESTS */
darran 0:ac21159e27f4 574 &ifentry_set_test,
darran 0:ac21159e27f4 575 &ifentry_set_value,
darran 0:ac21159e27f4 576 #endif /* SNMP_SAFE_REQUESTS */
darran 0:ac21159e27f4 577 MIB_NODE_LR,
darran 0:ac21159e27f4 578 0,
darran 0:ac21159e27f4 579 NULL,
darran 0:ac21159e27f4 580 NULL,
darran 0:ac21159e27f4 581 0
darran 0:ac21159e27f4 582 };
darran 0:ac21159e27f4 583 const s32_t ifentry_ids[22] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22 };
darran 0:ac21159e27f4 584 struct mib_node* const ifentry_nodes[22] = {
darran 0:ac21159e27f4 585 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 586 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 587 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 588 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 589 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 590 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 591 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 592 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 593 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 594 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root,
darran 0:ac21159e27f4 595 (struct mib_node* const)&iflist_root, (struct mib_node* const)&iflist_root
darran 0:ac21159e27f4 596 };
darran 0:ac21159e27f4 597 const struct mib_array_node ifentry = {
darran 0:ac21159e27f4 598 &noleafs_get_object_def,
darran 0:ac21159e27f4 599 &noleafs_get_value,
darran 0:ac21159e27f4 600 &noleafs_set_test,
darran 0:ac21159e27f4 601 &noleafs_set_value,
darran 0:ac21159e27f4 602 MIB_NODE_AR,
darran 0:ac21159e27f4 603 22,
darran 0:ac21159e27f4 604 ifentry_ids,
darran 0:ac21159e27f4 605 ifentry_nodes
darran 0:ac21159e27f4 606 };
darran 0:ac21159e27f4 607
darran 0:ac21159e27f4 608 s32_t iftable_id = 1;
darran 0:ac21159e27f4 609 struct mib_node* iftable_node = (struct mib_node* const)&ifentry;
darran 0:ac21159e27f4 610 struct mib_ram_array_node iftable = {
darran 0:ac21159e27f4 611 &noleafs_get_object_def,
darran 0:ac21159e27f4 612 &noleafs_get_value,
darran 0:ac21159e27f4 613 &noleafs_set_test,
darran 0:ac21159e27f4 614 &noleafs_set_value,
darran 0:ac21159e27f4 615 MIB_NODE_RA,
darran 0:ac21159e27f4 616 0,
darran 0:ac21159e27f4 617 &iftable_id,
darran 0:ac21159e27f4 618 &iftable_node
darran 0:ac21159e27f4 619 };
darran 0:ac21159e27f4 620
darran 0:ac21159e27f4 621 /* interfaces .1.3.6.1.2.1.2 */
darran 0:ac21159e27f4 622 const mib_scalar_node interfaces_scalar = {
darran 0:ac21159e27f4 623 &interfaces_get_object_def,
darran 0:ac21159e27f4 624 &interfaces_get_value,
darran 0:ac21159e27f4 625 &noleafs_set_test,
darran 0:ac21159e27f4 626 &noleafs_set_value,
darran 0:ac21159e27f4 627 MIB_NODE_SC,
darran 0:ac21159e27f4 628 0
darran 0:ac21159e27f4 629 };
darran 0:ac21159e27f4 630 const s32_t interfaces_ids[2] = { 1, 2 };
darran 0:ac21159e27f4 631 struct mib_node* const interfaces_nodes[2] = {
darran 0:ac21159e27f4 632 (struct mib_node* const)&interfaces_scalar, (struct mib_node* const)&iftable
darran 0:ac21159e27f4 633 };
darran 0:ac21159e27f4 634 const struct mib_array_node interfaces = {
darran 0:ac21159e27f4 635 &noleafs_get_object_def,
darran 0:ac21159e27f4 636 &noleafs_get_value,
darran 0:ac21159e27f4 637 &noleafs_set_test,
darran 0:ac21159e27f4 638 &noleafs_set_value,
darran 0:ac21159e27f4 639 MIB_NODE_AR,
darran 0:ac21159e27f4 640 2,
darran 0:ac21159e27f4 641 interfaces_ids,
darran 0:ac21159e27f4 642 interfaces_nodes
darran 0:ac21159e27f4 643 };
darran 0:ac21159e27f4 644
darran 0:ac21159e27f4 645
darran 0:ac21159e27f4 646 /* 0 1 2 3 4 5 6 */
darran 0:ac21159e27f4 647 /* system .1.3.6.1.2.1.1 */
darran 0:ac21159e27f4 648 const mib_scalar_node sys_tem_scalar = {
darran 0:ac21159e27f4 649 &system_get_object_def,
darran 0:ac21159e27f4 650 &system_get_value,
darran 0:ac21159e27f4 651 &system_set_test,
darran 0:ac21159e27f4 652 &system_set_value,
darran 0:ac21159e27f4 653 MIB_NODE_SC,
darran 0:ac21159e27f4 654 0
darran 0:ac21159e27f4 655 };
darran 0:ac21159e27f4 656 const s32_t sys_tem_ids[7] = { 1, 2, 3, 4, 5, 6, 7 };
darran 0:ac21159e27f4 657 struct mib_node* const sys_tem_nodes[7] = {
darran 0:ac21159e27f4 658 (struct mib_node* const)&sys_tem_scalar, (struct mib_node* const)&sys_tem_scalar,
darran 0:ac21159e27f4 659 (struct mib_node* const)&sys_tem_scalar, (struct mib_node* const)&sys_tem_scalar,
darran 0:ac21159e27f4 660 (struct mib_node* const)&sys_tem_scalar, (struct mib_node* const)&sys_tem_scalar,
darran 0:ac21159e27f4 661 (struct mib_node* const)&sys_tem_scalar
darran 0:ac21159e27f4 662 };
darran 0:ac21159e27f4 663 /* work around name issue with 'sys_tem', some compiler(s?) seem to reserve 'system' */
darran 0:ac21159e27f4 664 const struct mib_array_node sys_tem = {
darran 0:ac21159e27f4 665 &noleafs_get_object_def,
darran 0:ac21159e27f4 666 &noleafs_get_value,
darran 0:ac21159e27f4 667 &noleafs_set_test,
darran 0:ac21159e27f4 668 &noleafs_set_value,
darran 0:ac21159e27f4 669 MIB_NODE_AR,
darran 0:ac21159e27f4 670 7,
darran 0:ac21159e27f4 671 sys_tem_ids,
darran 0:ac21159e27f4 672 sys_tem_nodes
darran 0:ac21159e27f4 673 };
darran 0:ac21159e27f4 674
darran 0:ac21159e27f4 675 /* mib-2 .1.3.6.1.2.1 */
darran 0:ac21159e27f4 676 #if LWIP_TCP
darran 0:ac21159e27f4 677 #define MIB2_GROUPS 8
darran 0:ac21159e27f4 678 #else
darran 0:ac21159e27f4 679 #define MIB2_GROUPS 7
darran 0:ac21159e27f4 680 #endif
darran 0:ac21159e27f4 681 const s32_t mib2_ids[MIB2_GROUPS] =
darran 0:ac21159e27f4 682 {
darran 0:ac21159e27f4 683 1,
darran 0:ac21159e27f4 684 2,
darran 0:ac21159e27f4 685 3,
darran 0:ac21159e27f4 686 4,
darran 0:ac21159e27f4 687 5,
darran 0:ac21159e27f4 688 #if LWIP_TCP
darran 0:ac21159e27f4 689 6,
darran 0:ac21159e27f4 690 #endif
darran 0:ac21159e27f4 691 7,
darran 0:ac21159e27f4 692 11
darran 0:ac21159e27f4 693 };
darran 0:ac21159e27f4 694 struct mib_node* const mib2_nodes[MIB2_GROUPS] = {
darran 0:ac21159e27f4 695 (struct mib_node* const)&sys_tem,
darran 0:ac21159e27f4 696 (struct mib_node* const)&interfaces,
darran 0:ac21159e27f4 697 (struct mib_node* const)&at,
darran 0:ac21159e27f4 698 (struct mib_node* const)&mib2_ip,
darran 0:ac21159e27f4 699 (struct mib_node* const)&icmp,
darran 0:ac21159e27f4 700 #if LWIP_TCP
darran 0:ac21159e27f4 701 (struct mib_node* const)&tcp,
darran 0:ac21159e27f4 702 #endif
darran 0:ac21159e27f4 703 (struct mib_node* const)&udp,
darran 0:ac21159e27f4 704 (struct mib_node* const)&snmp
darran 0:ac21159e27f4 705 };
darran 0:ac21159e27f4 706
darran 0:ac21159e27f4 707 const struct mib_array_node mib2 = {
darran 0:ac21159e27f4 708 &noleafs_get_object_def,
darran 0:ac21159e27f4 709 &noleafs_get_value,
darran 0:ac21159e27f4 710 &noleafs_set_test,
darran 0:ac21159e27f4 711 &noleafs_set_value,
darran 0:ac21159e27f4 712 MIB_NODE_AR,
darran 0:ac21159e27f4 713 MIB2_GROUPS,
darran 0:ac21159e27f4 714 mib2_ids,
darran 0:ac21159e27f4 715 mib2_nodes
darran 0:ac21159e27f4 716 };
darran 0:ac21159e27f4 717
darran 0:ac21159e27f4 718 /* mgmt .1.3.6.1.2 */
darran 0:ac21159e27f4 719 const s32_t mgmt_ids[1] = { 1 };
darran 0:ac21159e27f4 720 struct mib_node* const mgmt_nodes[1] = { (struct mib_node* const)&mib2 };
darran 0:ac21159e27f4 721 const struct mib_array_node mgmt = {
darran 0:ac21159e27f4 722 &noleafs_get_object_def,
darran 0:ac21159e27f4 723 &noleafs_get_value,
darran 0:ac21159e27f4 724 &noleafs_set_test,
darran 0:ac21159e27f4 725 &noleafs_set_value,
darran 0:ac21159e27f4 726 MIB_NODE_AR,
darran 0:ac21159e27f4 727 1,
darran 0:ac21159e27f4 728 mgmt_ids,
darran 0:ac21159e27f4 729 mgmt_nodes
darran 0:ac21159e27f4 730 };
darran 0:ac21159e27f4 731
darran 0:ac21159e27f4 732 /* internet .1.3.6.1 */
darran 0:ac21159e27f4 733 #if SNMP_PRIVATE_MIB
darran 0:ac21159e27f4 734 /* When using a private MIB, you have to create a file 'private_mib.h' that contains
darran 0:ac21159e27f4 735 * a 'struct mib_array_node mib_private' which contains your MIB. */
darran 0:ac21159e27f4 736 s32_t internet_ids[2] = { 2, 4 };
darran 0:ac21159e27f4 737 struct mib_node* const internet_nodes[2] = { (struct mib_node* const)&mgmt, (struct mib_node* const)&mib_private };
darran 0:ac21159e27f4 738 const struct mib_array_node internet = {
darran 0:ac21159e27f4 739 &noleafs_get_object_def,
darran 0:ac21159e27f4 740 &noleafs_get_value,
darran 0:ac21159e27f4 741 &noleafs_set_test,
darran 0:ac21159e27f4 742 &noleafs_set_value,
darran 0:ac21159e27f4 743 MIB_NODE_AR,
darran 0:ac21159e27f4 744 2,
darran 0:ac21159e27f4 745 internet_ids,
darran 0:ac21159e27f4 746 internet_nodes
darran 0:ac21159e27f4 747 };
darran 0:ac21159e27f4 748 #else
darran 0:ac21159e27f4 749 const s32_t internet_ids[1] = { 2 };
darran 0:ac21159e27f4 750 struct mib_node* const internet_nodes[1] = { (struct mib_node* const)&mgmt };
darran 0:ac21159e27f4 751 const struct mib_array_node internet = {
darran 0:ac21159e27f4 752 &noleafs_get_object_def,
darran 0:ac21159e27f4 753 &noleafs_get_value,
darran 0:ac21159e27f4 754 &noleafs_set_test,
darran 0:ac21159e27f4 755 &noleafs_set_value,
darran 0:ac21159e27f4 756 MIB_NODE_AR,
darran 0:ac21159e27f4 757 1,
darran 0:ac21159e27f4 758 internet_ids,
darran 0:ac21159e27f4 759 internet_nodes
darran 0:ac21159e27f4 760 };
darran 0:ac21159e27f4 761 #endif
darran 0:ac21159e27f4 762
darran 0:ac21159e27f4 763 /** mib-2.system.sysObjectID */
darran 0:ac21159e27f4 764 static struct snmp_obj_id sysobjid = {SNMP_SYSOBJID_LEN, SNMP_SYSOBJID};
darran 0:ac21159e27f4 765 /** enterprise ID for generic TRAPs, .iso.org.dod.internet.mgmt.mib-2.snmp */
darran 0:ac21159e27f4 766 static struct snmp_obj_id snmpgrp_id = {7,{1,3,6,1,2,1,11}};
darran 0:ac21159e27f4 767 /** mib-2.system.sysServices */
darran 0:ac21159e27f4 768 static const s32_t sysservices = SNMP_SYSSERVICES;
darran 0:ac21159e27f4 769
darran 0:ac21159e27f4 770 /** mib-2.system.sysDescr */
darran 0:ac21159e27f4 771 static const u8_t sysdescr_len_default = 4;
darran 0:ac21159e27f4 772 static const u8_t sysdescr_default[] = "lwIP";
darran 0:ac21159e27f4 773 static u8_t* sysdescr_len_ptr = (u8_t*)&sysdescr_len_default;
darran 0:ac21159e27f4 774 static u8_t* sysdescr_ptr = (u8_t*)&sysdescr_default[0];
darran 0:ac21159e27f4 775 /** mib-2.system.sysContact */
darran 0:ac21159e27f4 776 static const u8_t syscontact_len_default = 0;
darran 0:ac21159e27f4 777 static const u8_t syscontact_default[] = "";
darran 0:ac21159e27f4 778 static u8_t* syscontact_len_ptr = (u8_t*)&syscontact_len_default;
darran 0:ac21159e27f4 779 static u8_t* syscontact_ptr = (u8_t*)&syscontact_default[0];
darran 0:ac21159e27f4 780 /** mib-2.system.sysName */
darran 0:ac21159e27f4 781 static const u8_t sysname_len_default = 8;
darran 0:ac21159e27f4 782 static const u8_t sysname_default[] = "FQDN-unk";
darran 0:ac21159e27f4 783 static u8_t* sysname_len_ptr = (u8_t*)&sysname_len_default;
darran 0:ac21159e27f4 784 static u8_t* sysname_ptr = (u8_t*)&sysname_default[0];
darran 0:ac21159e27f4 785 /** mib-2.system.sysLocation */
darran 0:ac21159e27f4 786 static const u8_t syslocation_len_default = 0;
darran 0:ac21159e27f4 787 static const u8_t syslocation_default[] = "";
darran 0:ac21159e27f4 788 static u8_t* syslocation_len_ptr = (u8_t*)&syslocation_len_default;
darran 0:ac21159e27f4 789 static u8_t* syslocation_ptr = (u8_t*)&syslocation_default[0];
darran 0:ac21159e27f4 790 /** mib-2.snmp.snmpEnableAuthenTraps */
darran 0:ac21159e27f4 791 static const u8_t snmpenableauthentraps_default = 2; /* disabled */
darran 0:ac21159e27f4 792 static u8_t* snmpenableauthentraps_ptr = (u8_t*)&snmpenableauthentraps_default;
darran 0:ac21159e27f4 793
darran 0:ac21159e27f4 794 /** mib-2.interfaces.ifTable.ifEntry.ifSpecific (zeroDotZero) */
darran 0:ac21159e27f4 795 static const struct snmp_obj_id ifspecific = {2, {0, 0}};
darran 0:ac21159e27f4 796 /** mib-2.ip.ipRouteTable.ipRouteEntry.ipRouteInfo (zeroDotZero) */
darran 0:ac21159e27f4 797 static const struct snmp_obj_id iprouteinfo = {2, {0, 0}};
darran 0:ac21159e27f4 798
darran 0:ac21159e27f4 799
darran 0:ac21159e27f4 800
darran 0:ac21159e27f4 801 /* mib-2.system counter(s) */
darran 0:ac21159e27f4 802 static u32_t sysuptime = 0;
darran 0:ac21159e27f4 803
darran 0:ac21159e27f4 804 /* mib-2.ip counter(s) */
darran 0:ac21159e27f4 805 static u32_t ipinreceives = 0,
darran 0:ac21159e27f4 806 ipinhdrerrors = 0,
darran 0:ac21159e27f4 807 ipinaddrerrors = 0,
darran 0:ac21159e27f4 808 ipforwdatagrams = 0,
darran 0:ac21159e27f4 809 ipinunknownprotos = 0,
darran 0:ac21159e27f4 810 ipindiscards = 0,
darran 0:ac21159e27f4 811 ipindelivers = 0,
darran 0:ac21159e27f4 812 ipoutrequests = 0,
darran 0:ac21159e27f4 813 ipoutdiscards = 0,
darran 0:ac21159e27f4 814 ipoutnoroutes = 0,
darran 0:ac21159e27f4 815 ipreasmreqds = 0,
darran 0:ac21159e27f4 816 ipreasmoks = 0,
darran 0:ac21159e27f4 817 ipreasmfails = 0,
darran 0:ac21159e27f4 818 ipfragoks = 0,
darran 0:ac21159e27f4 819 ipfragfails = 0,
darran 0:ac21159e27f4 820 ipfragcreates = 0,
darran 0:ac21159e27f4 821 iproutingdiscards = 0;
darran 0:ac21159e27f4 822 /* mib-2.icmp counter(s) */
darran 0:ac21159e27f4 823 static u32_t icmpinmsgs = 0,
darran 0:ac21159e27f4 824 icmpinerrors = 0,
darran 0:ac21159e27f4 825 icmpindestunreachs = 0,
darran 0:ac21159e27f4 826 icmpintimeexcds = 0,
darran 0:ac21159e27f4 827 icmpinparmprobs = 0,
darran 0:ac21159e27f4 828 icmpinsrcquenchs = 0,
darran 0:ac21159e27f4 829 icmpinredirects = 0,
darran 0:ac21159e27f4 830 icmpinechos = 0,
darran 0:ac21159e27f4 831 icmpinechoreps = 0,
darran 0:ac21159e27f4 832 icmpintimestamps = 0,
darran 0:ac21159e27f4 833 icmpintimestampreps = 0,
darran 0:ac21159e27f4 834 icmpinaddrmasks = 0,
darran 0:ac21159e27f4 835 icmpinaddrmaskreps = 0,
darran 0:ac21159e27f4 836 icmpoutmsgs = 0,
darran 0:ac21159e27f4 837 icmpouterrors = 0,
darran 0:ac21159e27f4 838 icmpoutdestunreachs = 0,
darran 0:ac21159e27f4 839 icmpouttimeexcds = 0,
darran 0:ac21159e27f4 840 icmpoutparmprobs = 0,
darran 0:ac21159e27f4 841 icmpoutsrcquenchs = 0,
darran 0:ac21159e27f4 842 icmpoutredirects = 0,
darran 0:ac21159e27f4 843 icmpoutechos = 0,
darran 0:ac21159e27f4 844 icmpoutechoreps = 0,
darran 0:ac21159e27f4 845 icmpouttimestamps = 0,
darran 0:ac21159e27f4 846 icmpouttimestampreps = 0,
darran 0:ac21159e27f4 847 icmpoutaddrmasks = 0,
darran 0:ac21159e27f4 848 icmpoutaddrmaskreps = 0;
darran 0:ac21159e27f4 849 /* mib-2.tcp counter(s) */
darran 0:ac21159e27f4 850 static u32_t tcpactiveopens = 0,
darran 0:ac21159e27f4 851 tcppassiveopens = 0,
darran 0:ac21159e27f4 852 tcpattemptfails = 0,
darran 0:ac21159e27f4 853 tcpestabresets = 0,
darran 0:ac21159e27f4 854 tcpinsegs = 0,
darran 0:ac21159e27f4 855 tcpoutsegs = 0,
darran 0:ac21159e27f4 856 tcpretranssegs = 0,
darran 0:ac21159e27f4 857 tcpinerrs = 0,
darran 0:ac21159e27f4 858 tcpoutrsts = 0;
darran 0:ac21159e27f4 859 /* mib-2.udp counter(s) */
darran 0:ac21159e27f4 860 static u32_t udpindatagrams = 0,
darran 0:ac21159e27f4 861 udpnoports = 0,
darran 0:ac21159e27f4 862 udpinerrors = 0,
darran 0:ac21159e27f4 863 udpoutdatagrams = 0;
darran 0:ac21159e27f4 864 /* mib-2.snmp counter(s) */
darran 0:ac21159e27f4 865 static u32_t snmpinpkts = 0,
darran 0:ac21159e27f4 866 snmpoutpkts = 0,
darran 0:ac21159e27f4 867 snmpinbadversions = 0,
darran 0:ac21159e27f4 868 snmpinbadcommunitynames = 0,
darran 0:ac21159e27f4 869 snmpinbadcommunityuses = 0,
darran 0:ac21159e27f4 870 snmpinasnparseerrs = 0,
darran 0:ac21159e27f4 871 snmpintoobigs = 0,
darran 0:ac21159e27f4 872 snmpinnosuchnames = 0,
darran 0:ac21159e27f4 873 snmpinbadvalues = 0,
darran 0:ac21159e27f4 874 snmpinreadonlys = 0,
darran 0:ac21159e27f4 875 snmpingenerrs = 0,
darran 0:ac21159e27f4 876 snmpintotalreqvars = 0,
darran 0:ac21159e27f4 877 snmpintotalsetvars = 0,
darran 0:ac21159e27f4 878 snmpingetrequests = 0,
darran 0:ac21159e27f4 879 snmpingetnexts = 0,
darran 0:ac21159e27f4 880 snmpinsetrequests = 0,
darran 0:ac21159e27f4 881 snmpingetresponses = 0,
darran 0:ac21159e27f4 882 snmpintraps = 0,
darran 0:ac21159e27f4 883 snmpouttoobigs = 0,
darran 0:ac21159e27f4 884 snmpoutnosuchnames = 0,
darran 0:ac21159e27f4 885 snmpoutbadvalues = 0,
darran 0:ac21159e27f4 886 snmpoutgenerrs = 0,
darran 0:ac21159e27f4 887 snmpoutgetrequests = 0,
darran 0:ac21159e27f4 888 snmpoutgetnexts = 0,
darran 0:ac21159e27f4 889 snmpoutsetrequests = 0,
darran 0:ac21159e27f4 890 snmpoutgetresponses = 0,
darran 0:ac21159e27f4 891 snmpouttraps = 0;
darran 0:ac21159e27f4 892
darran 0:ac21159e27f4 893
darran 0:ac21159e27f4 894
darran 0:ac21159e27f4 895 /* prototypes of the following functions are in lwip/src/include/lwip/snmp.h */
darran 0:ac21159e27f4 896 /**
darran 0:ac21159e27f4 897 * Copy octet string.
darran 0:ac21159e27f4 898 *
darran 0:ac21159e27f4 899 * @param dst points to destination
darran 0:ac21159e27f4 900 * @param src points to source
darran 0:ac21159e27f4 901 * @param n number of octets to copy.
darran 0:ac21159e27f4 902 */
darran 0:ac21159e27f4 903 static void ocstrncpy(u8_t *dst, u8_t *src, u16_t n)
darran 0:ac21159e27f4 904 {
darran 0:ac21159e27f4 905 u16_t i = n;
darran 0:ac21159e27f4 906 while (i > 0) {
darran 0:ac21159e27f4 907 i--;
darran 0:ac21159e27f4 908 *dst++ = *src++;
darran 0:ac21159e27f4 909 }
darran 0:ac21159e27f4 910 }
darran 0:ac21159e27f4 911
darran 0:ac21159e27f4 912 /**
darran 0:ac21159e27f4 913 * Copy object identifier (s32_t) array.
darran 0:ac21159e27f4 914 *
darran 0:ac21159e27f4 915 * @param dst points to destination
darran 0:ac21159e27f4 916 * @param src points to source
darran 0:ac21159e27f4 917 * @param n number of sub identifiers to copy.
darran 0:ac21159e27f4 918 */
darran 0:ac21159e27f4 919 void objectidncpy(s32_t *dst, s32_t *src, u8_t n)
darran 0:ac21159e27f4 920 {
darran 0:ac21159e27f4 921 u8_t i = n;
darran 0:ac21159e27f4 922 while(i > 0) {
darran 0:ac21159e27f4 923 i--;
darran 0:ac21159e27f4 924 *dst++ = *src++;
darran 0:ac21159e27f4 925 }
darran 0:ac21159e27f4 926 }
darran 0:ac21159e27f4 927
darran 0:ac21159e27f4 928 /**
darran 0:ac21159e27f4 929 * Initializes sysDescr pointers.
darran 0:ac21159e27f4 930 *
darran 0:ac21159e27f4 931 * @param str if non-NULL then copy str pointer
darran 0:ac21159e27f4 932 * @param len points to string length, excluding zero terminator
darran 0:ac21159e27f4 933 */
darran 0:ac21159e27f4 934 void snmp_set_sysdesr(u8_t *str, u8_t *len)
darran 0:ac21159e27f4 935 {
darran 0:ac21159e27f4 936 if (str != NULL)
darran 0:ac21159e27f4 937 {
darran 0:ac21159e27f4 938 sysdescr_ptr = str;
darran 0:ac21159e27f4 939 sysdescr_len_ptr = len;
darran 0:ac21159e27f4 940 }
darran 0:ac21159e27f4 941 }
darran 0:ac21159e27f4 942
darran 0:ac21159e27f4 943 void snmp_get_sysobjid_ptr(struct snmp_obj_id **oid)
darran 0:ac21159e27f4 944 {
darran 0:ac21159e27f4 945 *oid = &sysobjid;
darran 0:ac21159e27f4 946 }
darran 0:ac21159e27f4 947
darran 0:ac21159e27f4 948 /**
darran 0:ac21159e27f4 949 * Initializes sysObjectID value.
darran 0:ac21159e27f4 950 *
darran 0:ac21159e27f4 951 * @param oid points to stuct snmp_obj_id to copy
darran 0:ac21159e27f4 952 */
darran 0:ac21159e27f4 953 void snmp_set_sysobjid(struct snmp_obj_id *oid)
darran 0:ac21159e27f4 954 {
darran 0:ac21159e27f4 955 sysobjid = *oid;
darran 0:ac21159e27f4 956 }
darran 0:ac21159e27f4 957
darran 0:ac21159e27f4 958 /**
darran 0:ac21159e27f4 959 * Must be called at regular 10 msec interval from a timer interrupt
darran 0:ac21159e27f4 960 * or signal handler depending on your runtime environment.
darran 0:ac21159e27f4 961 */
darran 0:ac21159e27f4 962 void snmp_inc_sysuptime(void)
darran 0:ac21159e27f4 963 {
darran 0:ac21159e27f4 964 sysuptime++;
darran 0:ac21159e27f4 965 }
darran 0:ac21159e27f4 966
darran 0:ac21159e27f4 967 void snmp_add_sysuptime(u32_t value)
darran 0:ac21159e27f4 968 {
darran 0:ac21159e27f4 969 sysuptime+=value;
darran 0:ac21159e27f4 970 }
darran 0:ac21159e27f4 971
darran 0:ac21159e27f4 972 void snmp_get_sysuptime(u32_t *value)
darran 0:ac21159e27f4 973 {
darran 0:ac21159e27f4 974 SNMP_GET_SYSUPTIME(sysuptime);
darran 0:ac21159e27f4 975 *value = sysuptime;
darran 0:ac21159e27f4 976 }
darran 0:ac21159e27f4 977
darran 0:ac21159e27f4 978 /**
darran 0:ac21159e27f4 979 * Initializes sysContact pointers,
darran 0:ac21159e27f4 980 * e.g. ptrs to non-volatile memory external to lwIP.
darran 0:ac21159e27f4 981 *
darran 0:ac21159e27f4 982 * @param ocstr if non-NULL then copy str pointer
darran 0:ac21159e27f4 983 * @param ocstrlen points to string length, excluding zero terminator
darran 0:ac21159e27f4 984 */
darran 0:ac21159e27f4 985 void snmp_set_syscontact(u8_t *ocstr, u8_t *ocstrlen)
darran 0:ac21159e27f4 986 {
darran 0:ac21159e27f4 987 if (ocstr != NULL)
darran 0:ac21159e27f4 988 {
darran 0:ac21159e27f4 989 syscontact_ptr = ocstr;
darran 0:ac21159e27f4 990 syscontact_len_ptr = ocstrlen;
darran 0:ac21159e27f4 991 }
darran 0:ac21159e27f4 992 }
darran 0:ac21159e27f4 993
darran 0:ac21159e27f4 994 /**
darran 0:ac21159e27f4 995 * Initializes sysName pointers,
darran 0:ac21159e27f4 996 * e.g. ptrs to non-volatile memory external to lwIP.
darran 0:ac21159e27f4 997 *
darran 0:ac21159e27f4 998 * @param ocstr if non-NULL then copy str pointer
darran 0:ac21159e27f4 999 * @param ocstrlen points to string length, excluding zero terminator
darran 0:ac21159e27f4 1000 */
darran 0:ac21159e27f4 1001 void snmp_set_sysname(u8_t *ocstr, u8_t *ocstrlen)
darran 0:ac21159e27f4 1002 {
darran 0:ac21159e27f4 1003 if (ocstr != NULL)
darran 0:ac21159e27f4 1004 {
darran 0:ac21159e27f4 1005 sysname_ptr = ocstr;
darran 0:ac21159e27f4 1006 sysname_len_ptr = ocstrlen;
darran 0:ac21159e27f4 1007 }
darran 0:ac21159e27f4 1008 }
darran 0:ac21159e27f4 1009
darran 0:ac21159e27f4 1010 /**
darran 0:ac21159e27f4 1011 * Initializes sysLocation pointers,
darran 0:ac21159e27f4 1012 * e.g. ptrs to non-volatile memory external to lwIP.
darran 0:ac21159e27f4 1013 *
darran 0:ac21159e27f4 1014 * @param ocstr if non-NULL then copy str pointer
darran 0:ac21159e27f4 1015 * @param ocstrlen points to string length, excluding zero terminator
darran 0:ac21159e27f4 1016 */
darran 0:ac21159e27f4 1017 void snmp_set_syslocation(u8_t *ocstr, u8_t *ocstrlen)
darran 0:ac21159e27f4 1018 {
darran 0:ac21159e27f4 1019 if (ocstr != NULL)
darran 0:ac21159e27f4 1020 {
darran 0:ac21159e27f4 1021 syslocation_ptr = ocstr;
darran 0:ac21159e27f4 1022 syslocation_len_ptr = ocstrlen;
darran 0:ac21159e27f4 1023 }
darran 0:ac21159e27f4 1024 }
darran 0:ac21159e27f4 1025
darran 0:ac21159e27f4 1026
darran 0:ac21159e27f4 1027 void snmp_add_ifinoctets(struct netif *ni, u32_t value)
darran 0:ac21159e27f4 1028 {
darran 0:ac21159e27f4 1029 ni->ifinoctets += value;
darran 0:ac21159e27f4 1030 }
darran 0:ac21159e27f4 1031
darran 0:ac21159e27f4 1032 void snmp_inc_ifinucastpkts(struct netif *ni)
darran 0:ac21159e27f4 1033 {
darran 0:ac21159e27f4 1034 (ni->ifinucastpkts)++;
darran 0:ac21159e27f4 1035 }
darran 0:ac21159e27f4 1036
darran 0:ac21159e27f4 1037 void snmp_inc_ifinnucastpkts(struct netif *ni)
darran 0:ac21159e27f4 1038 {
darran 0:ac21159e27f4 1039 (ni->ifinnucastpkts)++;
darran 0:ac21159e27f4 1040 }
darran 0:ac21159e27f4 1041
darran 0:ac21159e27f4 1042 void snmp_inc_ifindiscards(struct netif *ni)
darran 0:ac21159e27f4 1043 {
darran 0:ac21159e27f4 1044 (ni->ifindiscards)++;
darran 0:ac21159e27f4 1045 }
darran 0:ac21159e27f4 1046
darran 0:ac21159e27f4 1047 void snmp_add_ifoutoctets(struct netif *ni, u32_t value)
darran 0:ac21159e27f4 1048 {
darran 0:ac21159e27f4 1049 ni->ifoutoctets += value;
darran 0:ac21159e27f4 1050 }
darran 0:ac21159e27f4 1051
darran 0:ac21159e27f4 1052 void snmp_inc_ifoutucastpkts(struct netif *ni)
darran 0:ac21159e27f4 1053 {
darran 0:ac21159e27f4 1054 (ni->ifoutucastpkts)++;
darran 0:ac21159e27f4 1055 }
darran 0:ac21159e27f4 1056
darran 0:ac21159e27f4 1057 void snmp_inc_ifoutnucastpkts(struct netif *ni)
darran 0:ac21159e27f4 1058 {
darran 0:ac21159e27f4 1059 (ni->ifoutnucastpkts)++;
darran 0:ac21159e27f4 1060 }
darran 0:ac21159e27f4 1061
darran 0:ac21159e27f4 1062 void snmp_inc_ifoutdiscards(struct netif *ni)
darran 0:ac21159e27f4 1063 {
darran 0:ac21159e27f4 1064 (ni->ifoutdiscards)++;
darran 0:ac21159e27f4 1065 }
darran 0:ac21159e27f4 1066
darran 0:ac21159e27f4 1067 void snmp_inc_iflist(void)
darran 0:ac21159e27f4 1068 {
darran 0:ac21159e27f4 1069 struct mib_list_node *if_node = NULL;
darran 0:ac21159e27f4 1070
darran 0:ac21159e27f4 1071 snmp_mib_node_insert(&iflist_root, iflist_root.count + 1, &if_node);
darran 0:ac21159e27f4 1072 /* enable getnext traversal on filled table */
darran 0:ac21159e27f4 1073 iftable.maxlength = 1;
darran 0:ac21159e27f4 1074 }
darran 0:ac21159e27f4 1075
darran 0:ac21159e27f4 1076 void snmp_dec_iflist(void)
darran 0:ac21159e27f4 1077 {
darran 0:ac21159e27f4 1078 snmp_mib_node_delete(&iflist_root, iflist_root.tail);
darran 0:ac21159e27f4 1079 /* disable getnext traversal on empty table */
darran 0:ac21159e27f4 1080 if(iflist_root.count == 0) iftable.maxlength = 0;
darran 0:ac21159e27f4 1081 }
darran 0:ac21159e27f4 1082
darran 0:ac21159e27f4 1083 /**
darran 0:ac21159e27f4 1084 * Inserts ARP table indexes (.xIfIndex.xNetAddress)
darran 0:ac21159e27f4 1085 * into arp table index trees (both atTable and ipNetToMediaTable).
darran 0:ac21159e27f4 1086 */
darran 0:ac21159e27f4 1087 void snmp_insert_arpidx_tree(struct netif *ni, ip_addr_t *ip)
darran 0:ac21159e27f4 1088 {
darran 0:ac21159e27f4 1089 struct mib_list_rootnode *at_rn;
darran 0:ac21159e27f4 1090 struct mib_list_node *at_node;
darran 0:ac21159e27f4 1091 s32_t arpidx[5];
darran 0:ac21159e27f4 1092 u8_t level, tree;
darran 0:ac21159e27f4 1093
darran 0:ac21159e27f4 1094 LWIP_ASSERT("ni != NULL", ni != NULL);
darran 0:ac21159e27f4 1095 snmp_netiftoifindex(ni, &arpidx[0]);
darran 0:ac21159e27f4 1096 snmp_iptooid(ip, &arpidx[1]);
darran 0:ac21159e27f4 1097
darran 0:ac21159e27f4 1098 for (tree = 0; tree < 2; tree++)
darran 0:ac21159e27f4 1099 {
darran 0:ac21159e27f4 1100 if (tree == 0)
darran 0:ac21159e27f4 1101 {
darran 0:ac21159e27f4 1102 at_rn = &arptree_root;
darran 0:ac21159e27f4 1103 }
darran 0:ac21159e27f4 1104 else
darran 0:ac21159e27f4 1105 {
darran 0:ac21159e27f4 1106 at_rn = &ipntomtree_root;
darran 0:ac21159e27f4 1107 }
darran 0:ac21159e27f4 1108 for (level = 0; level < 5; level++)
darran 0:ac21159e27f4 1109 {
darran 0:ac21159e27f4 1110 at_node = NULL;
darran 0:ac21159e27f4 1111 snmp_mib_node_insert(at_rn, arpidx[level], &at_node);
darran 0:ac21159e27f4 1112 if ((level != 4) && (at_node != NULL))
darran 0:ac21159e27f4 1113 {
darran 0:ac21159e27f4 1114 if (at_node->nptr == NULL)
darran 0:ac21159e27f4 1115 {
darran 0:ac21159e27f4 1116 at_rn = snmp_mib_lrn_alloc();
darran 0:ac21159e27f4 1117 at_node->nptr = (struct mib_node*)at_rn;
darran 0:ac21159e27f4 1118 if (at_rn != NULL)
darran 0:ac21159e27f4 1119 {
darran 0:ac21159e27f4 1120 if (level == 3)
darran 0:ac21159e27f4 1121 {
darran 0:ac21159e27f4 1122 if (tree == 0)
darran 0:ac21159e27f4 1123 {
darran 0:ac21159e27f4 1124 at_rn->get_object_def = atentry_get_object_def;
darran 0:ac21159e27f4 1125 at_rn->get_value = atentry_get_value;
darran 0:ac21159e27f4 1126 }
darran 0:ac21159e27f4 1127 else
darran 0:ac21159e27f4 1128 {
darran 0:ac21159e27f4 1129 at_rn->get_object_def = ip_ntomentry_get_object_def;
darran 0:ac21159e27f4 1130 at_rn->get_value = ip_ntomentry_get_value;
darran 0:ac21159e27f4 1131 }
darran 0:ac21159e27f4 1132 at_rn->set_test = noleafs_set_test;
darran 0:ac21159e27f4 1133 at_rn->set_value = noleafs_set_value;
darran 0:ac21159e27f4 1134 }
darran 0:ac21159e27f4 1135 }
darran 0:ac21159e27f4 1136 else
darran 0:ac21159e27f4 1137 {
darran 0:ac21159e27f4 1138 /* at_rn == NULL, malloc failure */
darran 0:ac21159e27f4 1139 LWIP_DEBUGF(SNMP_MIB_DEBUG,("snmp_insert_arpidx_tree() insert failed, mem full"));
darran 0:ac21159e27f4 1140 break;
darran 0:ac21159e27f4 1141 }
darran 0:ac21159e27f4 1142 }
darran 0:ac21159e27f4 1143 else
darran 0:ac21159e27f4 1144 {
darran 0:ac21159e27f4 1145 at_rn = (struct mib_list_rootnode*)at_node->nptr;
darran 0:ac21159e27f4 1146 }
darran 0:ac21159e27f4 1147 }
darran 0:ac21159e27f4 1148 }
darran 0:ac21159e27f4 1149 }
darran 0:ac21159e27f4 1150 /* enable getnext traversal on filled tables */
darran 0:ac21159e27f4 1151 at.maxlength = 1;
darran 0:ac21159e27f4 1152 ipntomtable.maxlength = 1;
darran 0:ac21159e27f4 1153 }
darran 0:ac21159e27f4 1154
darran 0:ac21159e27f4 1155 /**
darran 0:ac21159e27f4 1156 * Removes ARP table indexes (.xIfIndex.xNetAddress)
darran 0:ac21159e27f4 1157 * from arp table index trees.
darran 0:ac21159e27f4 1158 */
darran 0:ac21159e27f4 1159 void snmp_delete_arpidx_tree(struct netif *ni, ip_addr_t *ip)
darran 0:ac21159e27f4 1160 {
darran 0:ac21159e27f4 1161 struct mib_list_rootnode *at_rn, *next, *del_rn[5];
darran 0:ac21159e27f4 1162 struct mib_list_node *at_n, *del_n[5];
darran 0:ac21159e27f4 1163 s32_t arpidx[5];
darran 0:ac21159e27f4 1164 u8_t fc, tree, level, del_cnt;
darran 0:ac21159e27f4 1165
darran 0:ac21159e27f4 1166 snmp_netiftoifindex(ni, &arpidx[0]);
darran 0:ac21159e27f4 1167 snmp_iptooid(ip, &arpidx[1]);
darran 0:ac21159e27f4 1168
darran 0:ac21159e27f4 1169 for (tree = 0; tree < 2; tree++)
darran 0:ac21159e27f4 1170 {
darran 0:ac21159e27f4 1171 /* mark nodes for deletion */
darran 0:ac21159e27f4 1172 if (tree == 0)
darran 0:ac21159e27f4 1173 {
darran 0:ac21159e27f4 1174 at_rn = &arptree_root;
darran 0:ac21159e27f4 1175 }
darran 0:ac21159e27f4 1176 else
darran 0:ac21159e27f4 1177 {
darran 0:ac21159e27f4 1178 at_rn = &ipntomtree_root;
darran 0:ac21159e27f4 1179 }
darran 0:ac21159e27f4 1180 level = 0;
darran 0:ac21159e27f4 1181 del_cnt = 0;
darran 0:ac21159e27f4 1182 while ((level < 5) && (at_rn != NULL))
darran 0:ac21159e27f4 1183 {
darran 0:ac21159e27f4 1184 fc = snmp_mib_node_find(at_rn, arpidx[level], &at_n);
darran 0:ac21159e27f4 1185 if (fc == 0)
darran 0:ac21159e27f4 1186 {
darran 0:ac21159e27f4 1187 /* arpidx[level] does not exist */
darran 0:ac21159e27f4 1188 del_cnt = 0;
darran 0:ac21159e27f4 1189 at_rn = NULL;
darran 0:ac21159e27f4 1190 }
darran 0:ac21159e27f4 1191 else if (fc == 1)
darran 0:ac21159e27f4 1192 {
darran 0:ac21159e27f4 1193 del_rn[del_cnt] = at_rn;
darran 0:ac21159e27f4 1194 del_n[del_cnt] = at_n;
darran 0:ac21159e27f4 1195 del_cnt++;
darran 0:ac21159e27f4 1196 at_rn = (struct mib_list_rootnode*)(at_n->nptr);
darran 0:ac21159e27f4 1197 }
darran 0:ac21159e27f4 1198 else if (fc == 2)
darran 0:ac21159e27f4 1199 {
darran 0:ac21159e27f4 1200 /* reset delete (2 or more childs) */
darran 0:ac21159e27f4 1201 del_cnt = 0;
darran 0:ac21159e27f4 1202 at_rn = (struct mib_list_rootnode*)(at_n->nptr);
darran 0:ac21159e27f4 1203 }
darran 0:ac21159e27f4 1204 level++;
darran 0:ac21159e27f4 1205 }
darran 0:ac21159e27f4 1206 /* delete marked index nodes */
darran 0:ac21159e27f4 1207 while (del_cnt > 0)
darran 0:ac21159e27f4 1208 {
darran 0:ac21159e27f4 1209 del_cnt--;
darran 0:ac21159e27f4 1210
darran 0:ac21159e27f4 1211 at_rn = del_rn[del_cnt];
darran 0:ac21159e27f4 1212 at_n = del_n[del_cnt];
darran 0:ac21159e27f4 1213
darran 0:ac21159e27f4 1214 next = snmp_mib_node_delete(at_rn, at_n);
darran 0:ac21159e27f4 1215 if (next != NULL)
darran 0:ac21159e27f4 1216 {
darran 0:ac21159e27f4 1217 LWIP_ASSERT("next_count == 0",next->count == 0);
darran 0:ac21159e27f4 1218 snmp_mib_lrn_free(next);
darran 0:ac21159e27f4 1219 }
darran 0:ac21159e27f4 1220 }
darran 0:ac21159e27f4 1221 }
darran 0:ac21159e27f4 1222 /* disable getnext traversal on empty tables */
darran 0:ac21159e27f4 1223 if(arptree_root.count == 0) at.maxlength = 0;
darran 0:ac21159e27f4 1224 if(ipntomtree_root.count == 0) ipntomtable.maxlength = 0;
darran 0:ac21159e27f4 1225 }
darran 0:ac21159e27f4 1226
darran 0:ac21159e27f4 1227 void snmp_inc_ipinreceives(void)
darran 0:ac21159e27f4 1228 {
darran 0:ac21159e27f4 1229 ipinreceives++;
darran 0:ac21159e27f4 1230 }
darran 0:ac21159e27f4 1231
darran 0:ac21159e27f4 1232 void snmp_inc_ipinhdrerrors(void)
darran 0:ac21159e27f4 1233 {
darran 0:ac21159e27f4 1234 ipinhdrerrors++;
darran 0:ac21159e27f4 1235 }
darran 0:ac21159e27f4 1236
darran 0:ac21159e27f4 1237 void snmp_inc_ipinaddrerrors(void)
darran 0:ac21159e27f4 1238 {
darran 0:ac21159e27f4 1239 ipinaddrerrors++;
darran 0:ac21159e27f4 1240 }
darran 0:ac21159e27f4 1241
darran 0:ac21159e27f4 1242 void snmp_inc_ipforwdatagrams(void)
darran 0:ac21159e27f4 1243 {
darran 0:ac21159e27f4 1244 ipforwdatagrams++;
darran 0:ac21159e27f4 1245 }
darran 0:ac21159e27f4 1246
darran 0:ac21159e27f4 1247 void snmp_inc_ipinunknownprotos(void)
darran 0:ac21159e27f4 1248 {
darran 0:ac21159e27f4 1249 ipinunknownprotos++;
darran 0:ac21159e27f4 1250 }
darran 0:ac21159e27f4 1251
darran 0:ac21159e27f4 1252 void snmp_inc_ipindiscards(void)
darran 0:ac21159e27f4 1253 {
darran 0:ac21159e27f4 1254 ipindiscards++;
darran 0:ac21159e27f4 1255 }
darran 0:ac21159e27f4 1256
darran 0:ac21159e27f4 1257 void snmp_inc_ipindelivers(void)
darran 0:ac21159e27f4 1258 {
darran 0:ac21159e27f4 1259 ipindelivers++;
darran 0:ac21159e27f4 1260 }
darran 0:ac21159e27f4 1261
darran 0:ac21159e27f4 1262 void snmp_inc_ipoutrequests(void)
darran 0:ac21159e27f4 1263 {
darran 0:ac21159e27f4 1264 ipoutrequests++;
darran 0:ac21159e27f4 1265 }
darran 0:ac21159e27f4 1266
darran 0:ac21159e27f4 1267 void snmp_inc_ipoutdiscards(void)
darran 0:ac21159e27f4 1268 {
darran 0:ac21159e27f4 1269 ipoutdiscards++;
darran 0:ac21159e27f4 1270 }
darran 0:ac21159e27f4 1271
darran 0:ac21159e27f4 1272 void snmp_inc_ipoutnoroutes(void)
darran 0:ac21159e27f4 1273 {
darran 0:ac21159e27f4 1274 ipoutnoroutes++;
darran 0:ac21159e27f4 1275 }
darran 0:ac21159e27f4 1276
darran 0:ac21159e27f4 1277 void snmp_inc_ipreasmreqds(void)
darran 0:ac21159e27f4 1278 {
darran 0:ac21159e27f4 1279 ipreasmreqds++;
darran 0:ac21159e27f4 1280 }
darran 0:ac21159e27f4 1281
darran 0:ac21159e27f4 1282 void snmp_inc_ipreasmoks(void)
darran 0:ac21159e27f4 1283 {
darran 0:ac21159e27f4 1284 ipreasmoks++;
darran 0:ac21159e27f4 1285 }
darran 0:ac21159e27f4 1286
darran 0:ac21159e27f4 1287 void snmp_inc_ipreasmfails(void)
darran 0:ac21159e27f4 1288 {
darran 0:ac21159e27f4 1289 ipreasmfails++;
darran 0:ac21159e27f4 1290 }
darran 0:ac21159e27f4 1291
darran 0:ac21159e27f4 1292 void snmp_inc_ipfragoks(void)
darran 0:ac21159e27f4 1293 {
darran 0:ac21159e27f4 1294 ipfragoks++;
darran 0:ac21159e27f4 1295 }
darran 0:ac21159e27f4 1296
darran 0:ac21159e27f4 1297 void snmp_inc_ipfragfails(void)
darran 0:ac21159e27f4 1298 {
darran 0:ac21159e27f4 1299 ipfragfails++;
darran 0:ac21159e27f4 1300 }
darran 0:ac21159e27f4 1301
darran 0:ac21159e27f4 1302 void snmp_inc_ipfragcreates(void)
darran 0:ac21159e27f4 1303 {
darran 0:ac21159e27f4 1304 ipfragcreates++;
darran 0:ac21159e27f4 1305 }
darran 0:ac21159e27f4 1306
darran 0:ac21159e27f4 1307 void snmp_inc_iproutingdiscards(void)
darran 0:ac21159e27f4 1308 {
darran 0:ac21159e27f4 1309 iproutingdiscards++;
darran 0:ac21159e27f4 1310 }
darran 0:ac21159e27f4 1311
darran 0:ac21159e27f4 1312 /**
darran 0:ac21159e27f4 1313 * Inserts ipAddrTable indexes (.ipAdEntAddr)
darran 0:ac21159e27f4 1314 * into index tree.
darran 0:ac21159e27f4 1315 */
darran 0:ac21159e27f4 1316 void snmp_insert_ipaddridx_tree(struct netif *ni)
darran 0:ac21159e27f4 1317 {
darran 0:ac21159e27f4 1318 struct mib_list_rootnode *ipa_rn;
darran 0:ac21159e27f4 1319 struct mib_list_node *ipa_node;
darran 0:ac21159e27f4 1320 s32_t ipaddridx[4];
darran 0:ac21159e27f4 1321 u8_t level;
darran 0:ac21159e27f4 1322
darran 0:ac21159e27f4 1323 LWIP_ASSERT("ni != NULL", ni != NULL);
darran 0:ac21159e27f4 1324 snmp_iptooid(&ni->ip_addr, &ipaddridx[0]);
darran 0:ac21159e27f4 1325
darran 0:ac21159e27f4 1326 level = 0;
darran 0:ac21159e27f4 1327 ipa_rn = &ipaddrtree_root;
darran 0:ac21159e27f4 1328 while (level < 4)
darran 0:ac21159e27f4 1329 {
darran 0:ac21159e27f4 1330 ipa_node = NULL;
darran 0:ac21159e27f4 1331 snmp_mib_node_insert(ipa_rn, ipaddridx[level], &ipa_node);
darran 0:ac21159e27f4 1332 if ((level != 3) && (ipa_node != NULL))
darran 0:ac21159e27f4 1333 {
darran 0:ac21159e27f4 1334 if (ipa_node->nptr == NULL)
darran 0:ac21159e27f4 1335 {
darran 0:ac21159e27f4 1336 ipa_rn = snmp_mib_lrn_alloc();
darran 0:ac21159e27f4 1337 ipa_node->nptr = (struct mib_node*)ipa_rn;
darran 0:ac21159e27f4 1338 if (ipa_rn != NULL)
darran 0:ac21159e27f4 1339 {
darran 0:ac21159e27f4 1340 if (level == 2)
darran 0:ac21159e27f4 1341 {
darran 0:ac21159e27f4 1342 ipa_rn->get_object_def = ip_addrentry_get_object_def;
darran 0:ac21159e27f4 1343 ipa_rn->get_value = ip_addrentry_get_value;
darran 0:ac21159e27f4 1344 ipa_rn->set_test = noleafs_set_test;
darran 0:ac21159e27f4 1345 ipa_rn->set_value = noleafs_set_value;
darran 0:ac21159e27f4 1346 }
darran 0:ac21159e27f4 1347 }
darran 0:ac21159e27f4 1348 else
darran 0:ac21159e27f4 1349 {
darran 0:ac21159e27f4 1350 /* ipa_rn == NULL, malloc failure */
darran 0:ac21159e27f4 1351 LWIP_DEBUGF(SNMP_MIB_DEBUG,("snmp_insert_ipaddridx_tree() insert failed, mem full"));
darran 0:ac21159e27f4 1352 break;
darran 0:ac21159e27f4 1353 }
darran 0:ac21159e27f4 1354 }
darran 0:ac21159e27f4 1355 else
darran 0:ac21159e27f4 1356 {
darran 0:ac21159e27f4 1357 ipa_rn = (struct mib_list_rootnode*)ipa_node->nptr;
darran 0:ac21159e27f4 1358 }
darran 0:ac21159e27f4 1359 }
darran 0:ac21159e27f4 1360 level++;
darran 0:ac21159e27f4 1361 }
darran 0:ac21159e27f4 1362 /* enable getnext traversal on filled table */
darran 0:ac21159e27f4 1363 ipaddrtable.maxlength = 1;
darran 0:ac21159e27f4 1364 }
darran 0:ac21159e27f4 1365
darran 0:ac21159e27f4 1366 /**
darran 0:ac21159e27f4 1367 * Removes ipAddrTable indexes (.ipAdEntAddr)
darran 0:ac21159e27f4 1368 * from index tree.
darran 0:ac21159e27f4 1369 */
darran 0:ac21159e27f4 1370 void snmp_delete_ipaddridx_tree(struct netif *ni)
darran 0:ac21159e27f4 1371 {
darran 0:ac21159e27f4 1372 struct mib_list_rootnode *ipa_rn, *next, *del_rn[4];
darran 0:ac21159e27f4 1373 struct mib_list_node *ipa_n, *del_n[4];
darran 0:ac21159e27f4 1374 s32_t ipaddridx[4];
darran 0:ac21159e27f4 1375 u8_t fc, level, del_cnt;
darran 0:ac21159e27f4 1376
darran 0:ac21159e27f4 1377 LWIP_ASSERT("ni != NULL", ni != NULL);
darran 0:ac21159e27f4 1378 snmp_iptooid(&ni->ip_addr, &ipaddridx[0]);
darran 0:ac21159e27f4 1379
darran 0:ac21159e27f4 1380 /* mark nodes for deletion */
darran 0:ac21159e27f4 1381 level = 0;
darran 0:ac21159e27f4 1382 del_cnt = 0;
darran 0:ac21159e27f4 1383 ipa_rn = &ipaddrtree_root;
darran 0:ac21159e27f4 1384 while ((level < 4) && (ipa_rn != NULL))
darran 0:ac21159e27f4 1385 {
darran 0:ac21159e27f4 1386 fc = snmp_mib_node_find(ipa_rn, ipaddridx[level], &ipa_n);
darran 0:ac21159e27f4 1387 if (fc == 0)
darran 0:ac21159e27f4 1388 {
darran 0:ac21159e27f4 1389 /* ipaddridx[level] does not exist */
darran 0:ac21159e27f4 1390 del_cnt = 0;
darran 0:ac21159e27f4 1391 ipa_rn = NULL;
darran 0:ac21159e27f4 1392 }
darran 0:ac21159e27f4 1393 else if (fc == 1)
darran 0:ac21159e27f4 1394 {
darran 0:ac21159e27f4 1395 del_rn[del_cnt] = ipa_rn;
darran 0:ac21159e27f4 1396 del_n[del_cnt] = ipa_n;
darran 0:ac21159e27f4 1397 del_cnt++;
darran 0:ac21159e27f4 1398 ipa_rn = (struct mib_list_rootnode*)(ipa_n->nptr);
darran 0:ac21159e27f4 1399 }
darran 0:ac21159e27f4 1400 else if (fc == 2)
darran 0:ac21159e27f4 1401 {
darran 0:ac21159e27f4 1402 /* reset delete (2 or more childs) */
darran 0:ac21159e27f4 1403 del_cnt = 0;
darran 0:ac21159e27f4 1404 ipa_rn = (struct mib_list_rootnode*)(ipa_n->nptr);
darran 0:ac21159e27f4 1405 }
darran 0:ac21159e27f4 1406 level++;
darran 0:ac21159e27f4 1407 }
darran 0:ac21159e27f4 1408 /* delete marked index nodes */
darran 0:ac21159e27f4 1409 while (del_cnt > 0)
darran 0:ac21159e27f4 1410 {
darran 0:ac21159e27f4 1411 del_cnt--;
darran 0:ac21159e27f4 1412
darran 0:ac21159e27f4 1413 ipa_rn = del_rn[del_cnt];
darran 0:ac21159e27f4 1414 ipa_n = del_n[del_cnt];
darran 0:ac21159e27f4 1415
darran 0:ac21159e27f4 1416 next = snmp_mib_node_delete(ipa_rn, ipa_n);
darran 0:ac21159e27f4 1417 if (next != NULL)
darran 0:ac21159e27f4 1418 {
darran 0:ac21159e27f4 1419 LWIP_ASSERT("next_count == 0",next->count == 0);
darran 0:ac21159e27f4 1420 snmp_mib_lrn_free(next);
darran 0:ac21159e27f4 1421 }
darran 0:ac21159e27f4 1422 }
darran 0:ac21159e27f4 1423 /* disable getnext traversal on empty table */
darran 0:ac21159e27f4 1424 if (ipaddrtree_root.count == 0) ipaddrtable.maxlength = 0;
darran 0:ac21159e27f4 1425 }
darran 0:ac21159e27f4 1426
darran 0:ac21159e27f4 1427 /**
darran 0:ac21159e27f4 1428 * Inserts ipRouteTable indexes (.ipRouteDest)
darran 0:ac21159e27f4 1429 * into index tree.
darran 0:ac21159e27f4 1430 *
darran 0:ac21159e27f4 1431 * @param dflt non-zero for the default rte, zero for network rte
darran 0:ac21159e27f4 1432 * @param ni points to network interface for this rte
darran 0:ac21159e27f4 1433 *
darran 0:ac21159e27f4 1434 * @todo record sysuptime for _this_ route when it is installed
darran 0:ac21159e27f4 1435 * (needed for ipRouteAge) in the netif.
darran 0:ac21159e27f4 1436 */
darran 0:ac21159e27f4 1437 void snmp_insert_iprteidx_tree(u8_t dflt, struct netif *ni)
darran 0:ac21159e27f4 1438 {
darran 0:ac21159e27f4 1439 u8_t insert = 0;
darran 0:ac21159e27f4 1440 ip_addr_t dst;
darran 0:ac21159e27f4 1441
darran 0:ac21159e27f4 1442 if (dflt != 0)
darran 0:ac21159e27f4 1443 {
darran 0:ac21159e27f4 1444 /* the default route 0.0.0.0 */
darran 0:ac21159e27f4 1445 ip_addr_set_any(&dst);
darran 0:ac21159e27f4 1446 insert = 1;
darran 0:ac21159e27f4 1447 }
darran 0:ac21159e27f4 1448 else
darran 0:ac21159e27f4 1449 {
darran 0:ac21159e27f4 1450 /* route to the network address */
darran 0:ac21159e27f4 1451 ip_addr_get_network(&dst, &ni->ip_addr, &ni->netmask);
darran 0:ac21159e27f4 1452 /* exclude 0.0.0.0 network (reserved for default rte) */
darran 0:ac21159e27f4 1453 if (!ip_addr_isany(&dst)) {
darran 0:ac21159e27f4 1454 insert = 1;
darran 0:ac21159e27f4 1455 }
darran 0:ac21159e27f4 1456 }
darran 0:ac21159e27f4 1457 if (insert)
darran 0:ac21159e27f4 1458 {
darran 0:ac21159e27f4 1459 struct mib_list_rootnode *iprte_rn;
darran 0:ac21159e27f4 1460 struct mib_list_node *iprte_node;
darran 0:ac21159e27f4 1461 s32_t iprteidx[4];
darran 0:ac21159e27f4 1462 u8_t level;
darran 0:ac21159e27f4 1463
darran 0:ac21159e27f4 1464 snmp_iptooid(&dst, &iprteidx[0]);
darran 0:ac21159e27f4 1465 level = 0;
darran 0:ac21159e27f4 1466 iprte_rn = &iprtetree_root;
darran 0:ac21159e27f4 1467 while (level < 4)
darran 0:ac21159e27f4 1468 {
darran 0:ac21159e27f4 1469 iprte_node = NULL;
darran 0:ac21159e27f4 1470 snmp_mib_node_insert(iprte_rn, iprteidx[level], &iprte_node);
darran 0:ac21159e27f4 1471 if ((level != 3) && (iprte_node != NULL))
darran 0:ac21159e27f4 1472 {
darran 0:ac21159e27f4 1473 if (iprte_node->nptr == NULL)
darran 0:ac21159e27f4 1474 {
darran 0:ac21159e27f4 1475 iprte_rn = snmp_mib_lrn_alloc();
darran 0:ac21159e27f4 1476 iprte_node->nptr = (struct mib_node*)iprte_rn;
darran 0:ac21159e27f4 1477 if (iprte_rn != NULL)
darran 0:ac21159e27f4 1478 {
darran 0:ac21159e27f4 1479 if (level == 2)
darran 0:ac21159e27f4 1480 {
darran 0:ac21159e27f4 1481 iprte_rn->get_object_def = ip_rteentry_get_object_def;
darran 0:ac21159e27f4 1482 iprte_rn->get_value = ip_rteentry_get_value;
darran 0:ac21159e27f4 1483 iprte_rn->set_test = noleafs_set_test;
darran 0:ac21159e27f4 1484 iprte_rn->set_value = noleafs_set_value;
darran 0:ac21159e27f4 1485 }
darran 0:ac21159e27f4 1486 }
darran 0:ac21159e27f4 1487 else
darran 0:ac21159e27f4 1488 {
darran 0:ac21159e27f4 1489 /* iprte_rn == NULL, malloc failure */
darran 0:ac21159e27f4 1490 LWIP_DEBUGF(SNMP_MIB_DEBUG,("snmp_insert_iprteidx_tree() insert failed, mem full"));
darran 0:ac21159e27f4 1491 break;
darran 0:ac21159e27f4 1492 }
darran 0:ac21159e27f4 1493 }
darran 0:ac21159e27f4 1494 else
darran 0:ac21159e27f4 1495 {
darran 0:ac21159e27f4 1496 iprte_rn = (struct mib_list_rootnode*)iprte_node->nptr;
darran 0:ac21159e27f4 1497 }
darran 0:ac21159e27f4 1498 }
darran 0:ac21159e27f4 1499 level++;
darran 0:ac21159e27f4 1500 }
darran 0:ac21159e27f4 1501 }
darran 0:ac21159e27f4 1502 /* enable getnext traversal on filled table */
darran 0:ac21159e27f4 1503 iprtetable.maxlength = 1;
darran 0:ac21159e27f4 1504 }
darran 0:ac21159e27f4 1505
darran 0:ac21159e27f4 1506 /**
darran 0:ac21159e27f4 1507 * Removes ipRouteTable indexes (.ipRouteDest)
darran 0:ac21159e27f4 1508 * from index tree.
darran 0:ac21159e27f4 1509 *
darran 0:ac21159e27f4 1510 * @param dflt non-zero for the default rte, zero for network rte
darran 0:ac21159e27f4 1511 * @param ni points to network interface for this rte or NULL
darran 0:ac21159e27f4 1512 * for default route to be removed.
darran 0:ac21159e27f4 1513 */
darran 0:ac21159e27f4 1514 void snmp_delete_iprteidx_tree(u8_t dflt, struct netif *ni)
darran 0:ac21159e27f4 1515 {
darran 0:ac21159e27f4 1516 u8_t del = 0;
darran 0:ac21159e27f4 1517 ip_addr_t dst;
darran 0:ac21159e27f4 1518
darran 0:ac21159e27f4 1519 if (dflt != 0)
darran 0:ac21159e27f4 1520 {
darran 0:ac21159e27f4 1521 /* the default route 0.0.0.0 */
darran 0:ac21159e27f4 1522 ip_addr_set_any(&dst);
darran 0:ac21159e27f4 1523 del = 1;
darran 0:ac21159e27f4 1524 }
darran 0:ac21159e27f4 1525 else
darran 0:ac21159e27f4 1526 {
darran 0:ac21159e27f4 1527 /* route to the network address */
darran 0:ac21159e27f4 1528 ip_addr_get_network(&dst, &ni->ip_addr, &ni->netmask);
darran 0:ac21159e27f4 1529 /* exclude 0.0.0.0 network (reserved for default rte) */
darran 0:ac21159e27f4 1530 if (!ip_addr_isany(&dst)) {
darran 0:ac21159e27f4 1531 del = 1;
darran 0:ac21159e27f4 1532 }
darran 0:ac21159e27f4 1533 }
darran 0:ac21159e27f4 1534 if (del)
darran 0:ac21159e27f4 1535 {
darran 0:ac21159e27f4 1536 struct mib_list_rootnode *iprte_rn, *next, *del_rn[4];
darran 0:ac21159e27f4 1537 struct mib_list_node *iprte_n, *del_n[4];
darran 0:ac21159e27f4 1538 s32_t iprteidx[4];
darran 0:ac21159e27f4 1539 u8_t fc, level, del_cnt;
darran 0:ac21159e27f4 1540
darran 0:ac21159e27f4 1541 snmp_iptooid(&dst, &iprteidx[0]);
darran 0:ac21159e27f4 1542 /* mark nodes for deletion */
darran 0:ac21159e27f4 1543 level = 0;
darran 0:ac21159e27f4 1544 del_cnt = 0;
darran 0:ac21159e27f4 1545 iprte_rn = &iprtetree_root;
darran 0:ac21159e27f4 1546 while ((level < 4) && (iprte_rn != NULL))
darran 0:ac21159e27f4 1547 {
darran 0:ac21159e27f4 1548 fc = snmp_mib_node_find(iprte_rn, iprteidx[level], &iprte_n);
darran 0:ac21159e27f4 1549 if (fc == 0)
darran 0:ac21159e27f4 1550 {
darran 0:ac21159e27f4 1551 /* iprteidx[level] does not exist */
darran 0:ac21159e27f4 1552 del_cnt = 0;
darran 0:ac21159e27f4 1553 iprte_rn = NULL;
darran 0:ac21159e27f4 1554 }
darran 0:ac21159e27f4 1555 else if (fc == 1)
darran 0:ac21159e27f4 1556 {
darran 0:ac21159e27f4 1557 del_rn[del_cnt] = iprte_rn;
darran 0:ac21159e27f4 1558 del_n[del_cnt] = iprte_n;
darran 0:ac21159e27f4 1559 del_cnt++;
darran 0:ac21159e27f4 1560 iprte_rn = (struct mib_list_rootnode*)(iprte_n->nptr);
darran 0:ac21159e27f4 1561 }
darran 0:ac21159e27f4 1562 else if (fc == 2)
darran 0:ac21159e27f4 1563 {
darran 0:ac21159e27f4 1564 /* reset delete (2 or more childs) */
darran 0:ac21159e27f4 1565 del_cnt = 0;
darran 0:ac21159e27f4 1566 iprte_rn = (struct mib_list_rootnode*)(iprte_n->nptr);
darran 0:ac21159e27f4 1567 }
darran 0:ac21159e27f4 1568 level++;
darran 0:ac21159e27f4 1569 }
darran 0:ac21159e27f4 1570 /* delete marked index nodes */
darran 0:ac21159e27f4 1571 while (del_cnt > 0)
darran 0:ac21159e27f4 1572 {
darran 0:ac21159e27f4 1573 del_cnt--;
darran 0:ac21159e27f4 1574
darran 0:ac21159e27f4 1575 iprte_rn = del_rn[del_cnt];
darran 0:ac21159e27f4 1576 iprte_n = del_n[del_cnt];
darran 0:ac21159e27f4 1577
darran 0:ac21159e27f4 1578 next = snmp_mib_node_delete(iprte_rn, iprte_n);
darran 0:ac21159e27f4 1579 if (next != NULL)
darran 0:ac21159e27f4 1580 {
darran 0:ac21159e27f4 1581 LWIP_ASSERT("next_count == 0",next->count == 0);
darran 0:ac21159e27f4 1582 snmp_mib_lrn_free(next);
darran 0:ac21159e27f4 1583 }
darran 0:ac21159e27f4 1584 }
darran 0:ac21159e27f4 1585 }
darran 0:ac21159e27f4 1586 /* disable getnext traversal on empty table */
darran 0:ac21159e27f4 1587 if (iprtetree_root.count == 0) iprtetable.maxlength = 0;
darran 0:ac21159e27f4 1588 }
darran 0:ac21159e27f4 1589
darran 0:ac21159e27f4 1590
darran 0:ac21159e27f4 1591 void snmp_inc_icmpinmsgs(void)
darran 0:ac21159e27f4 1592 {
darran 0:ac21159e27f4 1593 icmpinmsgs++;
darran 0:ac21159e27f4 1594 }
darran 0:ac21159e27f4 1595
darran 0:ac21159e27f4 1596 void snmp_inc_icmpinerrors(void)
darran 0:ac21159e27f4 1597 {
darran 0:ac21159e27f4 1598 icmpinerrors++;
darran 0:ac21159e27f4 1599 }
darran 0:ac21159e27f4 1600
darran 0:ac21159e27f4 1601 void snmp_inc_icmpindestunreachs(void)
darran 0:ac21159e27f4 1602 {
darran 0:ac21159e27f4 1603 icmpindestunreachs++;
darran 0:ac21159e27f4 1604 }
darran 0:ac21159e27f4 1605
darran 0:ac21159e27f4 1606 void snmp_inc_icmpintimeexcds(void)
darran 0:ac21159e27f4 1607 {
darran 0:ac21159e27f4 1608 icmpintimeexcds++;
darran 0:ac21159e27f4 1609 }
darran 0:ac21159e27f4 1610
darran 0:ac21159e27f4 1611 void snmp_inc_icmpinparmprobs(void)
darran 0:ac21159e27f4 1612 {
darran 0:ac21159e27f4 1613 icmpinparmprobs++;
darran 0:ac21159e27f4 1614 }
darran 0:ac21159e27f4 1615
darran 0:ac21159e27f4 1616 void snmp_inc_icmpinsrcquenchs(void)
darran 0:ac21159e27f4 1617 {
darran 0:ac21159e27f4 1618 icmpinsrcquenchs++;
darran 0:ac21159e27f4 1619 }
darran 0:ac21159e27f4 1620
darran 0:ac21159e27f4 1621 void snmp_inc_icmpinredirects(void)
darran 0:ac21159e27f4 1622 {
darran 0:ac21159e27f4 1623 icmpinredirects++;
darran 0:ac21159e27f4 1624 }
darran 0:ac21159e27f4 1625
darran 0:ac21159e27f4 1626 void snmp_inc_icmpinechos(void)
darran 0:ac21159e27f4 1627 {
darran 0:ac21159e27f4 1628 icmpinechos++;
darran 0:ac21159e27f4 1629 }
darran 0:ac21159e27f4 1630
darran 0:ac21159e27f4 1631 void snmp_inc_icmpinechoreps(void)
darran 0:ac21159e27f4 1632 {
darran 0:ac21159e27f4 1633 icmpinechoreps++;
darran 0:ac21159e27f4 1634 }
darran 0:ac21159e27f4 1635
darran 0:ac21159e27f4 1636 void snmp_inc_icmpintimestamps(void)
darran 0:ac21159e27f4 1637 {
darran 0:ac21159e27f4 1638 icmpintimestamps++;
darran 0:ac21159e27f4 1639 }
darran 0:ac21159e27f4 1640
darran 0:ac21159e27f4 1641 void snmp_inc_icmpintimestampreps(void)
darran 0:ac21159e27f4 1642 {
darran 0:ac21159e27f4 1643 icmpintimestampreps++;
darran 0:ac21159e27f4 1644 }
darran 0:ac21159e27f4 1645
darran 0:ac21159e27f4 1646 void snmp_inc_icmpinaddrmasks(void)
darran 0:ac21159e27f4 1647 {
darran 0:ac21159e27f4 1648 icmpinaddrmasks++;
darran 0:ac21159e27f4 1649 }
darran 0:ac21159e27f4 1650
darran 0:ac21159e27f4 1651 void snmp_inc_icmpinaddrmaskreps(void)
darran 0:ac21159e27f4 1652 {
darran 0:ac21159e27f4 1653 icmpinaddrmaskreps++;
darran 0:ac21159e27f4 1654 }
darran 0:ac21159e27f4 1655
darran 0:ac21159e27f4 1656 void snmp_inc_icmpoutmsgs(void)
darran 0:ac21159e27f4 1657 {
darran 0:ac21159e27f4 1658 icmpoutmsgs++;
darran 0:ac21159e27f4 1659 }
darran 0:ac21159e27f4 1660
darran 0:ac21159e27f4 1661 void snmp_inc_icmpouterrors(void)
darran 0:ac21159e27f4 1662 {
darran 0:ac21159e27f4 1663 icmpouterrors++;
darran 0:ac21159e27f4 1664 }
darran 0:ac21159e27f4 1665
darran 0:ac21159e27f4 1666 void snmp_inc_icmpoutdestunreachs(void)
darran 0:ac21159e27f4 1667 {
darran 0:ac21159e27f4 1668 icmpoutdestunreachs++;
darran 0:ac21159e27f4 1669 }
darran 0:ac21159e27f4 1670
darran 0:ac21159e27f4 1671 void snmp_inc_icmpouttimeexcds(void)
darran 0:ac21159e27f4 1672 {
darran 0:ac21159e27f4 1673 icmpouttimeexcds++;
darran 0:ac21159e27f4 1674 }
darran 0:ac21159e27f4 1675
darran 0:ac21159e27f4 1676 void snmp_inc_icmpoutparmprobs(void)
darran 0:ac21159e27f4 1677 {
darran 0:ac21159e27f4 1678 icmpoutparmprobs++;
darran 0:ac21159e27f4 1679 }
darran 0:ac21159e27f4 1680
darran 0:ac21159e27f4 1681 void snmp_inc_icmpoutsrcquenchs(void)
darran 0:ac21159e27f4 1682 {
darran 0:ac21159e27f4 1683 icmpoutsrcquenchs++;
darran 0:ac21159e27f4 1684 }
darran 0:ac21159e27f4 1685
darran 0:ac21159e27f4 1686 void snmp_inc_icmpoutredirects(void)
darran 0:ac21159e27f4 1687 {
darran 0:ac21159e27f4 1688 icmpoutredirects++;
darran 0:ac21159e27f4 1689 }
darran 0:ac21159e27f4 1690
darran 0:ac21159e27f4 1691 void snmp_inc_icmpoutechos(void)
darran 0:ac21159e27f4 1692 {
darran 0:ac21159e27f4 1693 icmpoutechos++;
darran 0:ac21159e27f4 1694 }
darran 0:ac21159e27f4 1695
darran 0:ac21159e27f4 1696 void snmp_inc_icmpoutechoreps(void)
darran 0:ac21159e27f4 1697 {
darran 0:ac21159e27f4 1698 icmpoutechoreps++;
darran 0:ac21159e27f4 1699 }
darran 0:ac21159e27f4 1700
darran 0:ac21159e27f4 1701 void snmp_inc_icmpouttimestamps(void)
darran 0:ac21159e27f4 1702 {
darran 0:ac21159e27f4 1703 icmpouttimestamps++;
darran 0:ac21159e27f4 1704 }
darran 0:ac21159e27f4 1705
darran 0:ac21159e27f4 1706 void snmp_inc_icmpouttimestampreps(void)
darran 0:ac21159e27f4 1707 {
darran 0:ac21159e27f4 1708 icmpouttimestampreps++;
darran 0:ac21159e27f4 1709 }
darran 0:ac21159e27f4 1710
darran 0:ac21159e27f4 1711 void snmp_inc_icmpoutaddrmasks(void)
darran 0:ac21159e27f4 1712 {
darran 0:ac21159e27f4 1713 icmpoutaddrmasks++;
darran 0:ac21159e27f4 1714 }
darran 0:ac21159e27f4 1715
darran 0:ac21159e27f4 1716 void snmp_inc_icmpoutaddrmaskreps(void)
darran 0:ac21159e27f4 1717 {
darran 0:ac21159e27f4 1718 icmpoutaddrmaskreps++;
darran 0:ac21159e27f4 1719 }
darran 0:ac21159e27f4 1720
darran 0:ac21159e27f4 1721 void snmp_inc_tcpactiveopens(void)
darran 0:ac21159e27f4 1722 {
darran 0:ac21159e27f4 1723 tcpactiveopens++;
darran 0:ac21159e27f4 1724 }
darran 0:ac21159e27f4 1725
darran 0:ac21159e27f4 1726 void snmp_inc_tcppassiveopens(void)
darran 0:ac21159e27f4 1727 {
darran 0:ac21159e27f4 1728 tcppassiveopens++;
darran 0:ac21159e27f4 1729 }
darran 0:ac21159e27f4 1730
darran 0:ac21159e27f4 1731 void snmp_inc_tcpattemptfails(void)
darran 0:ac21159e27f4 1732 {
darran 0:ac21159e27f4 1733 tcpattemptfails++;
darran 0:ac21159e27f4 1734 }
darran 0:ac21159e27f4 1735
darran 0:ac21159e27f4 1736 void snmp_inc_tcpestabresets(void)
darran 0:ac21159e27f4 1737 {
darran 0:ac21159e27f4 1738 tcpestabresets++;
darran 0:ac21159e27f4 1739 }
darran 0:ac21159e27f4 1740
darran 0:ac21159e27f4 1741 void snmp_inc_tcpinsegs(void)
darran 0:ac21159e27f4 1742 {
darran 0:ac21159e27f4 1743 tcpinsegs++;
darran 0:ac21159e27f4 1744 }
darran 0:ac21159e27f4 1745
darran 0:ac21159e27f4 1746 void snmp_inc_tcpoutsegs(void)
darran 0:ac21159e27f4 1747 {
darran 0:ac21159e27f4 1748 tcpoutsegs++;
darran 0:ac21159e27f4 1749 }
darran 0:ac21159e27f4 1750
darran 0:ac21159e27f4 1751 void snmp_inc_tcpretranssegs(void)
darran 0:ac21159e27f4 1752 {
darran 0:ac21159e27f4 1753 tcpretranssegs++;
darran 0:ac21159e27f4 1754 }
darran 0:ac21159e27f4 1755
darran 0:ac21159e27f4 1756 void snmp_inc_tcpinerrs(void)
darran 0:ac21159e27f4 1757 {
darran 0:ac21159e27f4 1758 tcpinerrs++;
darran 0:ac21159e27f4 1759 }
darran 0:ac21159e27f4 1760
darran 0:ac21159e27f4 1761 void snmp_inc_tcpoutrsts(void)
darran 0:ac21159e27f4 1762 {
darran 0:ac21159e27f4 1763 tcpoutrsts++;
darran 0:ac21159e27f4 1764 }
darran 0:ac21159e27f4 1765
darran 0:ac21159e27f4 1766 void snmp_inc_udpindatagrams(void)
darran 0:ac21159e27f4 1767 {
darran 0:ac21159e27f4 1768 udpindatagrams++;
darran 0:ac21159e27f4 1769 }
darran 0:ac21159e27f4 1770
darran 0:ac21159e27f4 1771 void snmp_inc_udpnoports(void)
darran 0:ac21159e27f4 1772 {
darran 0:ac21159e27f4 1773 udpnoports++;
darran 0:ac21159e27f4 1774 }
darran 0:ac21159e27f4 1775
darran 0:ac21159e27f4 1776 void snmp_inc_udpinerrors(void)
darran 0:ac21159e27f4 1777 {
darran 0:ac21159e27f4 1778 udpinerrors++;
darran 0:ac21159e27f4 1779 }
darran 0:ac21159e27f4 1780
darran 0:ac21159e27f4 1781 void snmp_inc_udpoutdatagrams(void)
darran 0:ac21159e27f4 1782 {
darran 0:ac21159e27f4 1783 udpoutdatagrams++;
darran 0:ac21159e27f4 1784 }
darran 0:ac21159e27f4 1785
darran 0:ac21159e27f4 1786 /**
darran 0:ac21159e27f4 1787 * Inserts udpTable indexes (.udpLocalAddress.udpLocalPort)
darran 0:ac21159e27f4 1788 * into index tree.
darran 0:ac21159e27f4 1789 */
darran 0:ac21159e27f4 1790 void snmp_insert_udpidx_tree(struct udp_pcb *pcb)
darran 0:ac21159e27f4 1791 {
darran 0:ac21159e27f4 1792 struct mib_list_rootnode *udp_rn;
darran 0:ac21159e27f4 1793 struct mib_list_node *udp_node;
darran 0:ac21159e27f4 1794 s32_t udpidx[5];
darran 0:ac21159e27f4 1795 u8_t level;
darran 0:ac21159e27f4 1796
darran 0:ac21159e27f4 1797 LWIP_ASSERT("pcb != NULL", pcb != NULL);
darran 0:ac21159e27f4 1798 snmp_iptooid(&pcb->local_ip, &udpidx[0]);
darran 0:ac21159e27f4 1799 udpidx[4] = pcb->local_port;
darran 0:ac21159e27f4 1800
darran 0:ac21159e27f4 1801 udp_rn = &udp_root;
darran 0:ac21159e27f4 1802 for (level = 0; level < 5; level++)
darran 0:ac21159e27f4 1803 {
darran 0:ac21159e27f4 1804 udp_node = NULL;
darran 0:ac21159e27f4 1805 snmp_mib_node_insert(udp_rn, udpidx[level], &udp_node);
darran 0:ac21159e27f4 1806 if ((level != 4) && (udp_node != NULL))
darran 0:ac21159e27f4 1807 {
darran 0:ac21159e27f4 1808 if (udp_node->nptr == NULL)
darran 0:ac21159e27f4 1809 {
darran 0:ac21159e27f4 1810 udp_rn = snmp_mib_lrn_alloc();
darran 0:ac21159e27f4 1811 udp_node->nptr = (struct mib_node*)udp_rn;
darran 0:ac21159e27f4 1812 if (udp_rn != NULL)
darran 0:ac21159e27f4 1813 {
darran 0:ac21159e27f4 1814 if (level == 3)
darran 0:ac21159e27f4 1815 {
darran 0:ac21159e27f4 1816 udp_rn->get_object_def = udpentry_get_object_def;
darran 0:ac21159e27f4 1817 udp_rn->get_value = udpentry_get_value;
darran 0:ac21159e27f4 1818 udp_rn->set_test = noleafs_set_test;
darran 0:ac21159e27f4 1819 udp_rn->set_value = noleafs_set_value;
darran 0:ac21159e27f4 1820 }
darran 0:ac21159e27f4 1821 }
darran 0:ac21159e27f4 1822 else
darran 0:ac21159e27f4 1823 {
darran 0:ac21159e27f4 1824 /* udp_rn == NULL, malloc failure */
darran 0:ac21159e27f4 1825 LWIP_DEBUGF(SNMP_MIB_DEBUG,("snmp_insert_udpidx_tree() insert failed, mem full"));
darran 0:ac21159e27f4 1826 break;
darran 0:ac21159e27f4 1827 }
darran 0:ac21159e27f4 1828 }
darran 0:ac21159e27f4 1829 else
darran 0:ac21159e27f4 1830 {
darran 0:ac21159e27f4 1831 udp_rn = (struct mib_list_rootnode*)udp_node->nptr;
darran 0:ac21159e27f4 1832 }
darran 0:ac21159e27f4 1833 }
darran 0:ac21159e27f4 1834 }
darran 0:ac21159e27f4 1835 udptable.maxlength = 1;
darran 0:ac21159e27f4 1836 }
darran 0:ac21159e27f4 1837
darran 0:ac21159e27f4 1838 /**
darran 0:ac21159e27f4 1839 * Removes udpTable indexes (.udpLocalAddress.udpLocalPort)
darran 0:ac21159e27f4 1840 * from index tree.
darran 0:ac21159e27f4 1841 */
darran 0:ac21159e27f4 1842 void snmp_delete_udpidx_tree(struct udp_pcb *pcb)
darran 0:ac21159e27f4 1843 {
darran 0:ac21159e27f4 1844 struct udp_pcb *npcb;
darran 0:ac21159e27f4 1845 struct mib_list_rootnode *udp_rn, *next, *del_rn[5];
darran 0:ac21159e27f4 1846 struct mib_list_node *udp_n, *del_n[5];
darran 0:ac21159e27f4 1847 s32_t udpidx[5];
darran 0:ac21159e27f4 1848 u8_t bindings, fc, level, del_cnt;
darran 0:ac21159e27f4 1849
darran 0:ac21159e27f4 1850 LWIP_ASSERT("pcb != NULL", pcb != NULL);
darran 0:ac21159e27f4 1851 snmp_iptooid(&pcb->local_ip, &udpidx[0]);
darran 0:ac21159e27f4 1852 udpidx[4] = pcb->local_port;
darran 0:ac21159e27f4 1853
darran 0:ac21159e27f4 1854 /* count PCBs for a given binding
darran 0:ac21159e27f4 1855 (e.g. when reusing ports or for temp output PCBs) */
darran 0:ac21159e27f4 1856 bindings = 0;
darran 0:ac21159e27f4 1857 npcb = udp_pcbs;
darran 0:ac21159e27f4 1858 while ((npcb != NULL))
darran 0:ac21159e27f4 1859 {
darran 0:ac21159e27f4 1860 if (ip_addr_cmp(&npcb->local_ip, &pcb->local_ip) &&
darran 0:ac21159e27f4 1861 (npcb->local_port == udpidx[4]))
darran 0:ac21159e27f4 1862 {
darran 0:ac21159e27f4 1863 bindings++;
darran 0:ac21159e27f4 1864 }
darran 0:ac21159e27f4 1865 npcb = npcb->next;
darran 0:ac21159e27f4 1866 }
darran 0:ac21159e27f4 1867 if (bindings == 1)
darran 0:ac21159e27f4 1868 {
darran 0:ac21159e27f4 1869 /* selectively remove */
darran 0:ac21159e27f4 1870 /* mark nodes for deletion */
darran 0:ac21159e27f4 1871 level = 0;
darran 0:ac21159e27f4 1872 del_cnt = 0;
darran 0:ac21159e27f4 1873 udp_rn = &udp_root;
darran 0:ac21159e27f4 1874 while ((level < 5) && (udp_rn != NULL))
darran 0:ac21159e27f4 1875 {
darran 0:ac21159e27f4 1876 fc = snmp_mib_node_find(udp_rn, udpidx[level], &udp_n);
darran 0:ac21159e27f4 1877 if (fc == 0)
darran 0:ac21159e27f4 1878 {
darran 0:ac21159e27f4 1879 /* udpidx[level] does not exist */
darran 0:ac21159e27f4 1880 del_cnt = 0;
darran 0:ac21159e27f4 1881 udp_rn = NULL;
darran 0:ac21159e27f4 1882 }
darran 0:ac21159e27f4 1883 else if (fc == 1)
darran 0:ac21159e27f4 1884 {
darran 0:ac21159e27f4 1885 del_rn[del_cnt] = udp_rn;
darran 0:ac21159e27f4 1886 del_n[del_cnt] = udp_n;
darran 0:ac21159e27f4 1887 del_cnt++;
darran 0:ac21159e27f4 1888 udp_rn = (struct mib_list_rootnode*)(udp_n->nptr);
darran 0:ac21159e27f4 1889 }
darran 0:ac21159e27f4 1890 else if (fc == 2)
darran 0:ac21159e27f4 1891 {
darran 0:ac21159e27f4 1892 /* reset delete (2 or more childs) */
darran 0:ac21159e27f4 1893 del_cnt = 0;
darran 0:ac21159e27f4 1894 udp_rn = (struct mib_list_rootnode*)(udp_n->nptr);
darran 0:ac21159e27f4 1895 }
darran 0:ac21159e27f4 1896 level++;
darran 0:ac21159e27f4 1897 }
darran 0:ac21159e27f4 1898 /* delete marked index nodes */
darran 0:ac21159e27f4 1899 while (del_cnt > 0)
darran 0:ac21159e27f4 1900 {
darran 0:ac21159e27f4 1901 del_cnt--;
darran 0:ac21159e27f4 1902
darran 0:ac21159e27f4 1903 udp_rn = del_rn[del_cnt];
darran 0:ac21159e27f4 1904 udp_n = del_n[del_cnt];
darran 0:ac21159e27f4 1905
darran 0:ac21159e27f4 1906 next = snmp_mib_node_delete(udp_rn, udp_n);
darran 0:ac21159e27f4 1907 if (next != NULL)
darran 0:ac21159e27f4 1908 {
darran 0:ac21159e27f4 1909 LWIP_ASSERT("next_count == 0",next->count == 0);
darran 0:ac21159e27f4 1910 snmp_mib_lrn_free(next);
darran 0:ac21159e27f4 1911 }
darran 0:ac21159e27f4 1912 }
darran 0:ac21159e27f4 1913 }
darran 0:ac21159e27f4 1914 /* disable getnext traversal on empty table */
darran 0:ac21159e27f4 1915 if (udp_root.count == 0) udptable.maxlength = 0;
darran 0:ac21159e27f4 1916 }
darran 0:ac21159e27f4 1917
darran 0:ac21159e27f4 1918
darran 0:ac21159e27f4 1919 void snmp_inc_snmpinpkts(void)
darran 0:ac21159e27f4 1920 {
darran 0:ac21159e27f4 1921 snmpinpkts++;
darran 0:ac21159e27f4 1922 }
darran 0:ac21159e27f4 1923
darran 0:ac21159e27f4 1924 void snmp_inc_snmpoutpkts(void)
darran 0:ac21159e27f4 1925 {
darran 0:ac21159e27f4 1926 snmpoutpkts++;
darran 0:ac21159e27f4 1927 }
darran 0:ac21159e27f4 1928
darran 0:ac21159e27f4 1929 void snmp_inc_snmpinbadversions(void)
darran 0:ac21159e27f4 1930 {
darran 0:ac21159e27f4 1931 snmpinbadversions++;
darran 0:ac21159e27f4 1932 }
darran 0:ac21159e27f4 1933
darran 0:ac21159e27f4 1934 void snmp_inc_snmpinbadcommunitynames(void)
darran 0:ac21159e27f4 1935 {
darran 0:ac21159e27f4 1936 snmpinbadcommunitynames++;
darran 0:ac21159e27f4 1937 }
darran 0:ac21159e27f4 1938
darran 0:ac21159e27f4 1939 void snmp_inc_snmpinbadcommunityuses(void)
darran 0:ac21159e27f4 1940 {
darran 0:ac21159e27f4 1941 snmpinbadcommunityuses++;
darran 0:ac21159e27f4 1942 }
darran 0:ac21159e27f4 1943
darran 0:ac21159e27f4 1944 void snmp_inc_snmpinasnparseerrs(void)
darran 0:ac21159e27f4 1945 {
darran 0:ac21159e27f4 1946 snmpinasnparseerrs++;
darran 0:ac21159e27f4 1947 }
darran 0:ac21159e27f4 1948
darran 0:ac21159e27f4 1949 void snmp_inc_snmpintoobigs(void)
darran 0:ac21159e27f4 1950 {
darran 0:ac21159e27f4 1951 snmpintoobigs++;
darran 0:ac21159e27f4 1952 }
darran 0:ac21159e27f4 1953
darran 0:ac21159e27f4 1954 void snmp_inc_snmpinnosuchnames(void)
darran 0:ac21159e27f4 1955 {
darran 0:ac21159e27f4 1956 snmpinnosuchnames++;
darran 0:ac21159e27f4 1957 }
darran 0:ac21159e27f4 1958
darran 0:ac21159e27f4 1959 void snmp_inc_snmpinbadvalues(void)
darran 0:ac21159e27f4 1960 {
darran 0:ac21159e27f4 1961 snmpinbadvalues++;
darran 0:ac21159e27f4 1962 }
darran 0:ac21159e27f4 1963
darran 0:ac21159e27f4 1964 void snmp_inc_snmpinreadonlys(void)
darran 0:ac21159e27f4 1965 {
darran 0:ac21159e27f4 1966 snmpinreadonlys++;
darran 0:ac21159e27f4 1967 }
darran 0:ac21159e27f4 1968
darran 0:ac21159e27f4 1969 void snmp_inc_snmpingenerrs(void)
darran 0:ac21159e27f4 1970 {
darran 0:ac21159e27f4 1971 snmpingenerrs++;
darran 0:ac21159e27f4 1972 }
darran 0:ac21159e27f4 1973
darran 0:ac21159e27f4 1974 void snmp_add_snmpintotalreqvars(u8_t value)
darran 0:ac21159e27f4 1975 {
darran 0:ac21159e27f4 1976 snmpintotalreqvars += value;
darran 0:ac21159e27f4 1977 }
darran 0:ac21159e27f4 1978
darran 0:ac21159e27f4 1979 void snmp_add_snmpintotalsetvars(u8_t value)
darran 0:ac21159e27f4 1980 {
darran 0:ac21159e27f4 1981 snmpintotalsetvars += value;
darran 0:ac21159e27f4 1982 }
darran 0:ac21159e27f4 1983
darran 0:ac21159e27f4 1984 void snmp_inc_snmpingetrequests(void)
darran 0:ac21159e27f4 1985 {
darran 0:ac21159e27f4 1986 snmpingetrequests++;
darran 0:ac21159e27f4 1987 }
darran 0:ac21159e27f4 1988
darran 0:ac21159e27f4 1989 void snmp_inc_snmpingetnexts(void)
darran 0:ac21159e27f4 1990 {
darran 0:ac21159e27f4 1991 snmpingetnexts++;
darran 0:ac21159e27f4 1992 }
darran 0:ac21159e27f4 1993
darran 0:ac21159e27f4 1994 void snmp_inc_snmpinsetrequests(void)
darran 0:ac21159e27f4 1995 {
darran 0:ac21159e27f4 1996 snmpinsetrequests++;
darran 0:ac21159e27f4 1997 }
darran 0:ac21159e27f4 1998
darran 0:ac21159e27f4 1999 void snmp_inc_snmpingetresponses(void)
darran 0:ac21159e27f4 2000 {
darran 0:ac21159e27f4 2001 snmpingetresponses++;
darran 0:ac21159e27f4 2002 }
darran 0:ac21159e27f4 2003
darran 0:ac21159e27f4 2004 void snmp_inc_snmpintraps(void)
darran 0:ac21159e27f4 2005 {
darran 0:ac21159e27f4 2006 snmpintraps++;
darran 0:ac21159e27f4 2007 }
darran 0:ac21159e27f4 2008
darran 0:ac21159e27f4 2009 void snmp_inc_snmpouttoobigs(void)
darran 0:ac21159e27f4 2010 {
darran 0:ac21159e27f4 2011 snmpouttoobigs++;
darran 0:ac21159e27f4 2012 }
darran 0:ac21159e27f4 2013
darran 0:ac21159e27f4 2014 void snmp_inc_snmpoutnosuchnames(void)
darran 0:ac21159e27f4 2015 {
darran 0:ac21159e27f4 2016 snmpoutnosuchnames++;
darran 0:ac21159e27f4 2017 }
darran 0:ac21159e27f4 2018
darran 0:ac21159e27f4 2019 void snmp_inc_snmpoutbadvalues(void)
darran 0:ac21159e27f4 2020 {
darran 0:ac21159e27f4 2021 snmpoutbadvalues++;
darran 0:ac21159e27f4 2022 }
darran 0:ac21159e27f4 2023
darran 0:ac21159e27f4 2024 void snmp_inc_snmpoutgenerrs(void)
darran 0:ac21159e27f4 2025 {
darran 0:ac21159e27f4 2026 snmpoutgenerrs++;
darran 0:ac21159e27f4 2027 }
darran 0:ac21159e27f4 2028
darran 0:ac21159e27f4 2029 void snmp_inc_snmpoutgetrequests(void)
darran 0:ac21159e27f4 2030 {
darran 0:ac21159e27f4 2031 snmpoutgetrequests++;
darran 0:ac21159e27f4 2032 }
darran 0:ac21159e27f4 2033
darran 0:ac21159e27f4 2034 void snmp_inc_snmpoutgetnexts(void)
darran 0:ac21159e27f4 2035 {
darran 0:ac21159e27f4 2036 snmpoutgetnexts++;
darran 0:ac21159e27f4 2037 }
darran 0:ac21159e27f4 2038
darran 0:ac21159e27f4 2039 void snmp_inc_snmpoutsetrequests(void)
darran 0:ac21159e27f4 2040 {
darran 0:ac21159e27f4 2041 snmpoutsetrequests++;
darran 0:ac21159e27f4 2042 }
darran 0:ac21159e27f4 2043
darran 0:ac21159e27f4 2044 void snmp_inc_snmpoutgetresponses(void)
darran 0:ac21159e27f4 2045 {
darran 0:ac21159e27f4 2046 snmpoutgetresponses++;
darran 0:ac21159e27f4 2047 }
darran 0:ac21159e27f4 2048
darran 0:ac21159e27f4 2049 void snmp_inc_snmpouttraps(void)
darran 0:ac21159e27f4 2050 {
darran 0:ac21159e27f4 2051 snmpouttraps++;
darran 0:ac21159e27f4 2052 }
darran 0:ac21159e27f4 2053
darran 0:ac21159e27f4 2054 void snmp_get_snmpgrpid_ptr(struct snmp_obj_id **oid)
darran 0:ac21159e27f4 2055 {
darran 0:ac21159e27f4 2056 *oid = &snmpgrp_id;
darran 0:ac21159e27f4 2057 }
darran 0:ac21159e27f4 2058
darran 0:ac21159e27f4 2059 void snmp_set_snmpenableauthentraps(u8_t *value)
darran 0:ac21159e27f4 2060 {
darran 0:ac21159e27f4 2061 if (value != NULL)
darran 0:ac21159e27f4 2062 {
darran 0:ac21159e27f4 2063 snmpenableauthentraps_ptr = value;
darran 0:ac21159e27f4 2064 }
darran 0:ac21159e27f4 2065 }
darran 0:ac21159e27f4 2066
darran 0:ac21159e27f4 2067 void snmp_get_snmpenableauthentraps(u8_t *value)
darran 0:ac21159e27f4 2068 {
darran 0:ac21159e27f4 2069 *value = *snmpenableauthentraps_ptr;
darran 0:ac21159e27f4 2070 }
darran 0:ac21159e27f4 2071
darran 0:ac21159e27f4 2072 void
darran 0:ac21159e27f4 2073 noleafs_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 2074 {
darran 0:ac21159e27f4 2075 LWIP_UNUSED_ARG(ident_len);
darran 0:ac21159e27f4 2076 LWIP_UNUSED_ARG(ident);
darran 0:ac21159e27f4 2077 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2078 }
darran 0:ac21159e27f4 2079
darran 0:ac21159e27f4 2080 void
darran 0:ac21159e27f4 2081 noleafs_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2082 {
darran 0:ac21159e27f4 2083 LWIP_UNUSED_ARG(od);
darran 0:ac21159e27f4 2084 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2085 LWIP_UNUSED_ARG(value);
darran 0:ac21159e27f4 2086 }
darran 0:ac21159e27f4 2087
darran 0:ac21159e27f4 2088 u8_t
darran 0:ac21159e27f4 2089 noleafs_set_test(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2090 {
darran 0:ac21159e27f4 2091 LWIP_UNUSED_ARG(od);
darran 0:ac21159e27f4 2092 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2093 LWIP_UNUSED_ARG(value);
darran 0:ac21159e27f4 2094 /* can't set */
darran 0:ac21159e27f4 2095 return 0;
darran 0:ac21159e27f4 2096 }
darran 0:ac21159e27f4 2097
darran 0:ac21159e27f4 2098 void
darran 0:ac21159e27f4 2099 noleafs_set_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2100 {
darran 0:ac21159e27f4 2101 LWIP_UNUSED_ARG(od);
darran 0:ac21159e27f4 2102 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2103 LWIP_UNUSED_ARG(value);
darran 0:ac21159e27f4 2104 }
darran 0:ac21159e27f4 2105
darran 0:ac21159e27f4 2106
darran 0:ac21159e27f4 2107 /**
darran 0:ac21159e27f4 2108 * Returns systems object definitions.
darran 0:ac21159e27f4 2109 *
darran 0:ac21159e27f4 2110 * @param ident_len the address length (2)
darran 0:ac21159e27f4 2111 * @param ident points to objectname.0 (object id trailer)
darran 0:ac21159e27f4 2112 * @param od points to object definition.
darran 0:ac21159e27f4 2113 */
darran 0:ac21159e27f4 2114 static void
darran 0:ac21159e27f4 2115 system_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 2116 {
darran 0:ac21159e27f4 2117 u8_t id;
darran 0:ac21159e27f4 2118
darran 0:ac21159e27f4 2119 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 2120 ident_len += 1;
darran 0:ac21159e27f4 2121 ident -= 1;
darran 0:ac21159e27f4 2122 if (ident_len == 2)
darran 0:ac21159e27f4 2123 {
darran 0:ac21159e27f4 2124 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 2125 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 2126
darran 0:ac21159e27f4 2127 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 2128 id = (u8_t)ident[0];
darran 0:ac21159e27f4 2129 LWIP_DEBUGF(SNMP_MIB_DEBUG,("get_object_def system.%"U16_F".0\n",(u16_t)id));
darran 0:ac21159e27f4 2130 switch (id)
darran 0:ac21159e27f4 2131 {
darran 0:ac21159e27f4 2132 case 1: /* sysDescr */
darran 0:ac21159e27f4 2133 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2134 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2135 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2136 od->v_len = *sysdescr_len_ptr;
darran 0:ac21159e27f4 2137 break;
darran 0:ac21159e27f4 2138 case 2: /* sysObjectID */
darran 0:ac21159e27f4 2139 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2140 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2141 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID);
darran 0:ac21159e27f4 2142 od->v_len = sysobjid.len * sizeof(s32_t);
darran 0:ac21159e27f4 2143 break;
darran 0:ac21159e27f4 2144 case 3: /* sysUpTime */
darran 0:ac21159e27f4 2145 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2146 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2147 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_TIMETICKS);
darran 0:ac21159e27f4 2148 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 2149 break;
darran 0:ac21159e27f4 2150 case 4: /* sysContact */
darran 0:ac21159e27f4 2151 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2152 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2153 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2154 od->v_len = *syscontact_len_ptr;
darran 0:ac21159e27f4 2155 break;
darran 0:ac21159e27f4 2156 case 5: /* sysName */
darran 0:ac21159e27f4 2157 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2158 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2159 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2160 od->v_len = *sysname_len_ptr;
darran 0:ac21159e27f4 2161 break;
darran 0:ac21159e27f4 2162 case 6: /* sysLocation */
darran 0:ac21159e27f4 2163 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2164 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2165 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2166 od->v_len = *syslocation_len_ptr;
darran 0:ac21159e27f4 2167 break;
darran 0:ac21159e27f4 2168 case 7: /* sysServices */
darran 0:ac21159e27f4 2169 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2170 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2171 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2172 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2173 break;
darran 0:ac21159e27f4 2174 default:
darran 0:ac21159e27f4 2175 LWIP_DEBUGF(SNMP_MIB_DEBUG,("system_get_object_def: no such object\n"));
darran 0:ac21159e27f4 2176 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2177 break;
darran 0:ac21159e27f4 2178 };
darran 0:ac21159e27f4 2179 }
darran 0:ac21159e27f4 2180 else
darran 0:ac21159e27f4 2181 {
darran 0:ac21159e27f4 2182 LWIP_DEBUGF(SNMP_MIB_DEBUG,("system_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 2183 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2184 }
darran 0:ac21159e27f4 2185 }
darran 0:ac21159e27f4 2186
darran 0:ac21159e27f4 2187 /**
darran 0:ac21159e27f4 2188 * Returns system object value.
darran 0:ac21159e27f4 2189 *
darran 0:ac21159e27f4 2190 * @param ident_len the address length (2)
darran 0:ac21159e27f4 2191 * @param ident points to objectname.0 (object id trailer)
darran 0:ac21159e27f4 2192 * @param len return value space (in bytes)
darran 0:ac21159e27f4 2193 * @param value points to (varbind) space to copy value into.
darran 0:ac21159e27f4 2194 */
darran 0:ac21159e27f4 2195 static void
darran 0:ac21159e27f4 2196 system_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2197 {
darran 0:ac21159e27f4 2198 u8_t id;
darran 0:ac21159e27f4 2199
darran 0:ac21159e27f4 2200 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2201 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2202 switch (id)
darran 0:ac21159e27f4 2203 {
darran 0:ac21159e27f4 2204 case 1: /* sysDescr */
darran 0:ac21159e27f4 2205 ocstrncpy((u8_t*)value, sysdescr_ptr, len);
darran 0:ac21159e27f4 2206 break;
darran 0:ac21159e27f4 2207 case 2: /* sysObjectID */
darran 0:ac21159e27f4 2208 objectidncpy((s32_t*)value, (s32_t*)sysobjid.id, (u8_t)(len / sizeof(s32_t)));
darran 0:ac21159e27f4 2209 break;
darran 0:ac21159e27f4 2210 case 3: /* sysUpTime */
darran 0:ac21159e27f4 2211 {
darran 0:ac21159e27f4 2212 snmp_get_sysuptime((u32_t*)value);
darran 0:ac21159e27f4 2213 }
darran 0:ac21159e27f4 2214 break;
darran 0:ac21159e27f4 2215 case 4: /* sysContact */
darran 0:ac21159e27f4 2216 ocstrncpy((u8_t*)value, syscontact_ptr, len);
darran 0:ac21159e27f4 2217 break;
darran 0:ac21159e27f4 2218 case 5: /* sysName */
darran 0:ac21159e27f4 2219 ocstrncpy((u8_t*)value, sysname_ptr, len);
darran 0:ac21159e27f4 2220 break;
darran 0:ac21159e27f4 2221 case 6: /* sysLocation */
darran 0:ac21159e27f4 2222 ocstrncpy((u8_t*)value, syslocation_ptr, len);
darran 0:ac21159e27f4 2223 break;
darran 0:ac21159e27f4 2224 case 7: /* sysServices */
darran 0:ac21159e27f4 2225 {
darran 0:ac21159e27f4 2226 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2227 *sint_ptr = sysservices;
darran 0:ac21159e27f4 2228 }
darran 0:ac21159e27f4 2229 break;
darran 0:ac21159e27f4 2230 };
darran 0:ac21159e27f4 2231 }
darran 0:ac21159e27f4 2232
darran 0:ac21159e27f4 2233 static u8_t
darran 0:ac21159e27f4 2234 system_set_test(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2235 {
darran 0:ac21159e27f4 2236 u8_t id, set_ok;
darran 0:ac21159e27f4 2237
darran 0:ac21159e27f4 2238 LWIP_UNUSED_ARG(value);
darran 0:ac21159e27f4 2239 set_ok = 0;
darran 0:ac21159e27f4 2240 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2241 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2242 switch (id)
darran 0:ac21159e27f4 2243 {
darran 0:ac21159e27f4 2244 case 4: /* sysContact */
darran 0:ac21159e27f4 2245 if ((syscontact_ptr != syscontact_default) &&
darran 0:ac21159e27f4 2246 (len <= 255))
darran 0:ac21159e27f4 2247 {
darran 0:ac21159e27f4 2248 set_ok = 1;
darran 0:ac21159e27f4 2249 }
darran 0:ac21159e27f4 2250 break;
darran 0:ac21159e27f4 2251 case 5: /* sysName */
darran 0:ac21159e27f4 2252 if ((sysname_ptr != sysname_default) &&
darran 0:ac21159e27f4 2253 (len <= 255))
darran 0:ac21159e27f4 2254 {
darran 0:ac21159e27f4 2255 set_ok = 1;
darran 0:ac21159e27f4 2256 }
darran 0:ac21159e27f4 2257 break;
darran 0:ac21159e27f4 2258 case 6: /* sysLocation */
darran 0:ac21159e27f4 2259 if ((syslocation_ptr != syslocation_default) &&
darran 0:ac21159e27f4 2260 (len <= 255))
darran 0:ac21159e27f4 2261 {
darran 0:ac21159e27f4 2262 set_ok = 1;
darran 0:ac21159e27f4 2263 }
darran 0:ac21159e27f4 2264 break;
darran 0:ac21159e27f4 2265 };
darran 0:ac21159e27f4 2266 return set_ok;
darran 0:ac21159e27f4 2267 }
darran 0:ac21159e27f4 2268
darran 0:ac21159e27f4 2269 static void
darran 0:ac21159e27f4 2270 system_set_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2271 {
darran 0:ac21159e27f4 2272 u8_t id;
darran 0:ac21159e27f4 2273
darran 0:ac21159e27f4 2274 LWIP_ASSERT("invalid len", len <= 0xff);
darran 0:ac21159e27f4 2275 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2276 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2277 switch (id)
darran 0:ac21159e27f4 2278 {
darran 0:ac21159e27f4 2279 case 4: /* sysContact */
darran 0:ac21159e27f4 2280 ocstrncpy(syscontact_ptr, (u8_t*)value, len);
darran 0:ac21159e27f4 2281 *syscontact_len_ptr = (u8_t)len;
darran 0:ac21159e27f4 2282 break;
darran 0:ac21159e27f4 2283 case 5: /* sysName */
darran 0:ac21159e27f4 2284 ocstrncpy(sysname_ptr, (u8_t*)value, len);
darran 0:ac21159e27f4 2285 *sysname_len_ptr = (u8_t)len;
darran 0:ac21159e27f4 2286 break;
darran 0:ac21159e27f4 2287 case 6: /* sysLocation */
darran 0:ac21159e27f4 2288 ocstrncpy(syslocation_ptr, (u8_t*)value, len);
darran 0:ac21159e27f4 2289 *syslocation_len_ptr = (u8_t)len;
darran 0:ac21159e27f4 2290 break;
darran 0:ac21159e27f4 2291 };
darran 0:ac21159e27f4 2292 }
darran 0:ac21159e27f4 2293
darran 0:ac21159e27f4 2294 /**
darran 0:ac21159e27f4 2295 * Returns interfaces.ifnumber object definition.
darran 0:ac21159e27f4 2296 *
darran 0:ac21159e27f4 2297 * @param ident_len the address length (2)
darran 0:ac21159e27f4 2298 * @param ident points to objectname.index
darran 0:ac21159e27f4 2299 * @param od points to object definition.
darran 0:ac21159e27f4 2300 */
darran 0:ac21159e27f4 2301 static void
darran 0:ac21159e27f4 2302 interfaces_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 2303 {
darran 0:ac21159e27f4 2304 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 2305 ident_len += 1;
darran 0:ac21159e27f4 2306 ident -= 1;
darran 0:ac21159e27f4 2307 if (ident_len == 2)
darran 0:ac21159e27f4 2308 {
darran 0:ac21159e27f4 2309 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 2310 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 2311
darran 0:ac21159e27f4 2312 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2313 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2314 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2315 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2316 }
darran 0:ac21159e27f4 2317 else
darran 0:ac21159e27f4 2318 {
darran 0:ac21159e27f4 2319 LWIP_DEBUGF(SNMP_MIB_DEBUG,("interfaces_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 2320 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2321 }
darran 0:ac21159e27f4 2322 }
darran 0:ac21159e27f4 2323
darran 0:ac21159e27f4 2324 /**
darran 0:ac21159e27f4 2325 * Returns interfaces.ifnumber object value.
darran 0:ac21159e27f4 2326 *
darran 0:ac21159e27f4 2327 * @param ident_len the address length (2)
darran 0:ac21159e27f4 2328 * @param ident points to objectname.0 (object id trailer)
darran 0:ac21159e27f4 2329 * @param len return value space (in bytes)
darran 0:ac21159e27f4 2330 * @param value points to (varbind) space to copy value into.
darran 0:ac21159e27f4 2331 */
darran 0:ac21159e27f4 2332 static void
darran 0:ac21159e27f4 2333 interfaces_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2334 {
darran 0:ac21159e27f4 2335 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2336 if (od->id_inst_ptr[0] == 1)
darran 0:ac21159e27f4 2337 {
darran 0:ac21159e27f4 2338 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2339 *sint_ptr = iflist_root.count;
darran 0:ac21159e27f4 2340 }
darran 0:ac21159e27f4 2341 }
darran 0:ac21159e27f4 2342
darran 0:ac21159e27f4 2343 /**
darran 0:ac21159e27f4 2344 * Returns ifentry object definitions.
darran 0:ac21159e27f4 2345 *
darran 0:ac21159e27f4 2346 * @param ident_len the address length (2)
darran 0:ac21159e27f4 2347 * @param ident points to objectname.index
darran 0:ac21159e27f4 2348 * @param od points to object definition.
darran 0:ac21159e27f4 2349 */
darran 0:ac21159e27f4 2350 static void
darran 0:ac21159e27f4 2351 ifentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 2352 {
darran 0:ac21159e27f4 2353 u8_t id;
darran 0:ac21159e27f4 2354
darran 0:ac21159e27f4 2355 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 2356 ident_len += 1;
darran 0:ac21159e27f4 2357 ident -= 1;
darran 0:ac21159e27f4 2358 if (ident_len == 2)
darran 0:ac21159e27f4 2359 {
darran 0:ac21159e27f4 2360 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 2361 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 2362
darran 0:ac21159e27f4 2363 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 2364 id = (u8_t)ident[0];
darran 0:ac21159e27f4 2365 LWIP_DEBUGF(SNMP_MIB_DEBUG,("get_object_def ifentry.%"U16_F"\n",(u16_t)id));
darran 0:ac21159e27f4 2366 switch (id)
darran 0:ac21159e27f4 2367 {
darran 0:ac21159e27f4 2368 case 1: /* ifIndex */
darran 0:ac21159e27f4 2369 case 3: /* ifType */
darran 0:ac21159e27f4 2370 case 4: /* ifMtu */
darran 0:ac21159e27f4 2371 case 8: /* ifOperStatus */
darran 0:ac21159e27f4 2372 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2373 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2374 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2375 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2376 break;
darran 0:ac21159e27f4 2377 case 2: /* ifDescr */
darran 0:ac21159e27f4 2378 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2379 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2380 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2381 /** @todo this should be some sort of sizeof(struct netif.name) */
darran 0:ac21159e27f4 2382 od->v_len = 2;
darran 0:ac21159e27f4 2383 break;
darran 0:ac21159e27f4 2384 case 5: /* ifSpeed */
darran 0:ac21159e27f4 2385 case 21: /* ifOutQLen */
darran 0:ac21159e27f4 2386 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2387 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2388 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_GAUGE);
darran 0:ac21159e27f4 2389 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 2390 break;
darran 0:ac21159e27f4 2391 case 6: /* ifPhysAddress */
darran 0:ac21159e27f4 2392 {
darran 0:ac21159e27f4 2393 struct netif *netif;
darran 0:ac21159e27f4 2394
darran 0:ac21159e27f4 2395 snmp_ifindextonetif(ident[1], &netif);
darran 0:ac21159e27f4 2396 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2397 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2398 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2399 od->v_len = netif->hwaddr_len;
darran 0:ac21159e27f4 2400 }
darran 0:ac21159e27f4 2401 break;
darran 0:ac21159e27f4 2402 case 7: /* ifAdminStatus */
darran 0:ac21159e27f4 2403 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2404 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2405 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2406 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2407 break;
darran 0:ac21159e27f4 2408 case 9: /* ifLastChange */
darran 0:ac21159e27f4 2409 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2410 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2411 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_TIMETICKS);
darran 0:ac21159e27f4 2412 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 2413 break;
darran 0:ac21159e27f4 2414 case 10: /* ifInOctets */
darran 0:ac21159e27f4 2415 case 11: /* ifInUcastPkts */
darran 0:ac21159e27f4 2416 case 12: /* ifInNUcastPkts */
darran 0:ac21159e27f4 2417 case 13: /* ifInDiscarts */
darran 0:ac21159e27f4 2418 case 14: /* ifInErrors */
darran 0:ac21159e27f4 2419 case 15: /* ifInUnkownProtos */
darran 0:ac21159e27f4 2420 case 16: /* ifOutOctets */
darran 0:ac21159e27f4 2421 case 17: /* ifOutUcastPkts */
darran 0:ac21159e27f4 2422 case 18: /* ifOutNUcastPkts */
darran 0:ac21159e27f4 2423 case 19: /* ifOutDiscarts */
darran 0:ac21159e27f4 2424 case 20: /* ifOutErrors */
darran 0:ac21159e27f4 2425 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2426 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2427 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER);
darran 0:ac21159e27f4 2428 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 2429 break;
darran 0:ac21159e27f4 2430 case 22: /* ifSpecific */
darran 0:ac21159e27f4 2431 /** @note returning zeroDotZero (0.0) no media specific MIB support */
darran 0:ac21159e27f4 2432 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2433 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2434 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID);
darran 0:ac21159e27f4 2435 od->v_len = ifspecific.len * sizeof(s32_t);
darran 0:ac21159e27f4 2436 break;
darran 0:ac21159e27f4 2437 default:
darran 0:ac21159e27f4 2438 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ifentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 2439 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2440 break;
darran 0:ac21159e27f4 2441 };
darran 0:ac21159e27f4 2442 }
darran 0:ac21159e27f4 2443 else
darran 0:ac21159e27f4 2444 {
darran 0:ac21159e27f4 2445 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ifentry_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 2446 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2447 }
darran 0:ac21159e27f4 2448 }
darran 0:ac21159e27f4 2449
darran 0:ac21159e27f4 2450 /**
darran 0:ac21159e27f4 2451 * Returns ifentry object value.
darran 0:ac21159e27f4 2452 *
darran 0:ac21159e27f4 2453 * @param ident_len the address length (2)
darran 0:ac21159e27f4 2454 * @param ident points to objectname.0 (object id trailer)
darran 0:ac21159e27f4 2455 * @param len return value space (in bytes)
darran 0:ac21159e27f4 2456 * @param value points to (varbind) space to copy value into.
darran 0:ac21159e27f4 2457 */
darran 0:ac21159e27f4 2458 static void
darran 0:ac21159e27f4 2459 ifentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2460 {
darran 0:ac21159e27f4 2461 struct netif *netif;
darran 0:ac21159e27f4 2462 u8_t id;
darran 0:ac21159e27f4 2463
darran 0:ac21159e27f4 2464 snmp_ifindextonetif(od->id_inst_ptr[1], &netif);
darran 0:ac21159e27f4 2465 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2466 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2467 switch (id)
darran 0:ac21159e27f4 2468 {
darran 0:ac21159e27f4 2469 case 1: /* ifIndex */
darran 0:ac21159e27f4 2470 {
darran 0:ac21159e27f4 2471 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2472 *sint_ptr = od->id_inst_ptr[1];
darran 0:ac21159e27f4 2473 }
darran 0:ac21159e27f4 2474 break;
darran 0:ac21159e27f4 2475 case 2: /* ifDescr */
darran 0:ac21159e27f4 2476 ocstrncpy((u8_t*)value, (u8_t*)netif->name, len);
darran 0:ac21159e27f4 2477 break;
darran 0:ac21159e27f4 2478 case 3: /* ifType */
darran 0:ac21159e27f4 2479 {
darran 0:ac21159e27f4 2480 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2481 *sint_ptr = netif->link_type;
darran 0:ac21159e27f4 2482 }
darran 0:ac21159e27f4 2483 break;
darran 0:ac21159e27f4 2484 case 4: /* ifMtu */
darran 0:ac21159e27f4 2485 {
darran 0:ac21159e27f4 2486 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2487 *sint_ptr = netif->mtu;
darran 0:ac21159e27f4 2488 }
darran 0:ac21159e27f4 2489 break;
darran 0:ac21159e27f4 2490 case 5: /* ifSpeed */
darran 0:ac21159e27f4 2491 {
darran 0:ac21159e27f4 2492 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2493 *uint_ptr = netif->link_speed;
darran 0:ac21159e27f4 2494 }
darran 0:ac21159e27f4 2495 break;
darran 0:ac21159e27f4 2496 case 6: /* ifPhysAddress */
darran 0:ac21159e27f4 2497 ocstrncpy((u8_t*)value, netif->hwaddr, len);
darran 0:ac21159e27f4 2498 break;
darran 0:ac21159e27f4 2499 case 7: /* ifAdminStatus */
darran 0:ac21159e27f4 2500 {
darran 0:ac21159e27f4 2501 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2502 if (netif_is_up(netif))
darran 0:ac21159e27f4 2503 {
darran 0:ac21159e27f4 2504 if (netif_is_link_up(netif))
darran 0:ac21159e27f4 2505 {
darran 0:ac21159e27f4 2506 *sint_ptr = 1; /* up */
darran 0:ac21159e27f4 2507 }
darran 0:ac21159e27f4 2508 else
darran 0:ac21159e27f4 2509 {
darran 0:ac21159e27f4 2510 *sint_ptr = 7; /* lowerLayerDown */
darran 0:ac21159e27f4 2511 }
darran 0:ac21159e27f4 2512 }
darran 0:ac21159e27f4 2513 else
darran 0:ac21159e27f4 2514 {
darran 0:ac21159e27f4 2515 *sint_ptr = 2; /* down */
darran 0:ac21159e27f4 2516 }
darran 0:ac21159e27f4 2517 }
darran 0:ac21159e27f4 2518 break;
darran 0:ac21159e27f4 2519 case 8: /* ifOperStatus */
darran 0:ac21159e27f4 2520 {
darran 0:ac21159e27f4 2521 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2522 if (netif_is_up(netif))
darran 0:ac21159e27f4 2523 {
darran 0:ac21159e27f4 2524 *sint_ptr = 1;
darran 0:ac21159e27f4 2525 }
darran 0:ac21159e27f4 2526 else
darran 0:ac21159e27f4 2527 {
darran 0:ac21159e27f4 2528 *sint_ptr = 2;
darran 0:ac21159e27f4 2529 }
darran 0:ac21159e27f4 2530 }
darran 0:ac21159e27f4 2531 break;
darran 0:ac21159e27f4 2532 case 9: /* ifLastChange */
darran 0:ac21159e27f4 2533 {
darran 0:ac21159e27f4 2534 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2535 *uint_ptr = netif->ts;
darran 0:ac21159e27f4 2536 }
darran 0:ac21159e27f4 2537 break;
darran 0:ac21159e27f4 2538 case 10: /* ifInOctets */
darran 0:ac21159e27f4 2539 {
darran 0:ac21159e27f4 2540 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2541 *uint_ptr = netif->ifinoctets;
darran 0:ac21159e27f4 2542 }
darran 0:ac21159e27f4 2543 break;
darran 0:ac21159e27f4 2544 case 11: /* ifInUcastPkts */
darran 0:ac21159e27f4 2545 {
darran 0:ac21159e27f4 2546 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2547 *uint_ptr = netif->ifinucastpkts;
darran 0:ac21159e27f4 2548 }
darran 0:ac21159e27f4 2549 break;
darran 0:ac21159e27f4 2550 case 12: /* ifInNUcastPkts */
darran 0:ac21159e27f4 2551 {
darran 0:ac21159e27f4 2552 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2553 *uint_ptr = netif->ifinnucastpkts;
darran 0:ac21159e27f4 2554 }
darran 0:ac21159e27f4 2555 break;
darran 0:ac21159e27f4 2556 case 13: /* ifInDiscarts */
darran 0:ac21159e27f4 2557 {
darran 0:ac21159e27f4 2558 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2559 *uint_ptr = netif->ifindiscards;
darran 0:ac21159e27f4 2560 }
darran 0:ac21159e27f4 2561 break;
darran 0:ac21159e27f4 2562 case 14: /* ifInErrors */
darran 0:ac21159e27f4 2563 case 15: /* ifInUnkownProtos */
darran 0:ac21159e27f4 2564 /** @todo add these counters! */
darran 0:ac21159e27f4 2565 {
darran 0:ac21159e27f4 2566 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2567 *uint_ptr = 0;
darran 0:ac21159e27f4 2568 }
darran 0:ac21159e27f4 2569 break;
darran 0:ac21159e27f4 2570 case 16: /* ifOutOctets */
darran 0:ac21159e27f4 2571 {
darran 0:ac21159e27f4 2572 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2573 *uint_ptr = netif->ifoutoctets;
darran 0:ac21159e27f4 2574 }
darran 0:ac21159e27f4 2575 break;
darran 0:ac21159e27f4 2576 case 17: /* ifOutUcastPkts */
darran 0:ac21159e27f4 2577 {
darran 0:ac21159e27f4 2578 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2579 *uint_ptr = netif->ifoutucastpkts;
darran 0:ac21159e27f4 2580 }
darran 0:ac21159e27f4 2581 break;
darran 0:ac21159e27f4 2582 case 18: /* ifOutNUcastPkts */
darran 0:ac21159e27f4 2583 {
darran 0:ac21159e27f4 2584 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2585 *uint_ptr = netif->ifoutnucastpkts;
darran 0:ac21159e27f4 2586 }
darran 0:ac21159e27f4 2587 break;
darran 0:ac21159e27f4 2588 case 19: /* ifOutDiscarts */
darran 0:ac21159e27f4 2589 {
darran 0:ac21159e27f4 2590 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2591 *uint_ptr = netif->ifoutdiscards;
darran 0:ac21159e27f4 2592 }
darran 0:ac21159e27f4 2593 break;
darran 0:ac21159e27f4 2594 case 20: /* ifOutErrors */
darran 0:ac21159e27f4 2595 /** @todo add this counter! */
darran 0:ac21159e27f4 2596 {
darran 0:ac21159e27f4 2597 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2598 *uint_ptr = 0;
darran 0:ac21159e27f4 2599 }
darran 0:ac21159e27f4 2600 break;
darran 0:ac21159e27f4 2601 case 21: /* ifOutQLen */
darran 0:ac21159e27f4 2602 /** @todo figure out if this must be 0 (no queue) or 1? */
darran 0:ac21159e27f4 2603 {
darran 0:ac21159e27f4 2604 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2605 *uint_ptr = 0;
darran 0:ac21159e27f4 2606 }
darran 0:ac21159e27f4 2607 break;
darran 0:ac21159e27f4 2608 case 22: /* ifSpecific */
darran 0:ac21159e27f4 2609 objectidncpy((s32_t*)value, (s32_t*)ifspecific.id, (u8_t)(len / sizeof(s32_t)));
darran 0:ac21159e27f4 2610 break;
darran 0:ac21159e27f4 2611 };
darran 0:ac21159e27f4 2612 }
darran 0:ac21159e27f4 2613
darran 0:ac21159e27f4 2614 #if !SNMP_SAFE_REQUESTS
darran 0:ac21159e27f4 2615 static u8_t
darran 0:ac21159e27f4 2616 ifentry_set_test(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2617 {
darran 0:ac21159e27f4 2618 struct netif *netif;
darran 0:ac21159e27f4 2619 u8_t id, set_ok;
darran 0:ac21159e27f4 2620 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2621
darran 0:ac21159e27f4 2622 set_ok = 0;
darran 0:ac21159e27f4 2623 snmp_ifindextonetif(od->id_inst_ptr[1], &netif);
darran 0:ac21159e27f4 2624 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2625 switch (id)
darran 0:ac21159e27f4 2626 {
darran 0:ac21159e27f4 2627 case 7: /* ifAdminStatus */
darran 0:ac21159e27f4 2628 {
darran 0:ac21159e27f4 2629 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2630 if (*sint_ptr == 1 || *sint_ptr == 2)
darran 0:ac21159e27f4 2631 set_ok = 1;
darran 0:ac21159e27f4 2632 }
darran 0:ac21159e27f4 2633 break;
darran 0:ac21159e27f4 2634 }
darran 0:ac21159e27f4 2635 return set_ok;
darran 0:ac21159e27f4 2636 }
darran 0:ac21159e27f4 2637
darran 0:ac21159e27f4 2638 static void
darran 0:ac21159e27f4 2639 ifentry_set_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2640 {
darran 0:ac21159e27f4 2641 struct netif *netif;
darran 0:ac21159e27f4 2642 u8_t id;
darran 0:ac21159e27f4 2643 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2644
darran 0:ac21159e27f4 2645 snmp_ifindextonetif(od->id_inst_ptr[1], &netif);
darran 0:ac21159e27f4 2646 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2647 switch (id)
darran 0:ac21159e27f4 2648 {
darran 0:ac21159e27f4 2649 case 7: /* ifAdminStatus */
darran 0:ac21159e27f4 2650 {
darran 0:ac21159e27f4 2651 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2652 if (*sint_ptr == 1)
darran 0:ac21159e27f4 2653 {
darran 0:ac21159e27f4 2654 netif_set_up(netif);
darran 0:ac21159e27f4 2655 }
darran 0:ac21159e27f4 2656 else if (*sint_ptr == 2)
darran 0:ac21159e27f4 2657 {
darran 0:ac21159e27f4 2658 netif_set_down(netif);
darran 0:ac21159e27f4 2659 }
darran 0:ac21159e27f4 2660 }
darran 0:ac21159e27f4 2661 break;
darran 0:ac21159e27f4 2662 }
darran 0:ac21159e27f4 2663 }
darran 0:ac21159e27f4 2664 #endif /* SNMP_SAFE_REQUESTS */
darran 0:ac21159e27f4 2665
darran 0:ac21159e27f4 2666 /**
darran 0:ac21159e27f4 2667 * Returns atentry object definitions.
darran 0:ac21159e27f4 2668 *
darran 0:ac21159e27f4 2669 * @param ident_len the address length (6)
darran 0:ac21159e27f4 2670 * @param ident points to objectname.atifindex.atnetaddress
darran 0:ac21159e27f4 2671 * @param od points to object definition.
darran 0:ac21159e27f4 2672 */
darran 0:ac21159e27f4 2673 static void
darran 0:ac21159e27f4 2674 atentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 2675 {
darran 0:ac21159e27f4 2676 /* return to object name, adding index depth (5) */
darran 0:ac21159e27f4 2677 ident_len += 5;
darran 0:ac21159e27f4 2678 ident -= 5;
darran 0:ac21159e27f4 2679
darran 0:ac21159e27f4 2680 if (ident_len == 6)
darran 0:ac21159e27f4 2681 {
darran 0:ac21159e27f4 2682 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 2683 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 2684
darran 0:ac21159e27f4 2685 switch (ident[0])
darran 0:ac21159e27f4 2686 {
darran 0:ac21159e27f4 2687 case 1: /* atIfIndex */
darran 0:ac21159e27f4 2688 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2689 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2690 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2691 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2692 break;
darran 0:ac21159e27f4 2693 case 2: /* atPhysAddress */
darran 0:ac21159e27f4 2694 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2695 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2696 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 2697 od->v_len = 6; /** @todo try to use netif::hwaddr_len */
darran 0:ac21159e27f4 2698 break;
darran 0:ac21159e27f4 2699 case 3: /* atNetAddress */
darran 0:ac21159e27f4 2700 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 2701 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2702 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR);
darran 0:ac21159e27f4 2703 od->v_len = 4;
darran 0:ac21159e27f4 2704 break;
darran 0:ac21159e27f4 2705 default:
darran 0:ac21159e27f4 2706 LWIP_DEBUGF(SNMP_MIB_DEBUG,("atentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 2707 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2708 break;
darran 0:ac21159e27f4 2709 }
darran 0:ac21159e27f4 2710 }
darran 0:ac21159e27f4 2711 else
darran 0:ac21159e27f4 2712 {
darran 0:ac21159e27f4 2713 LWIP_DEBUGF(SNMP_MIB_DEBUG,("atentry_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 2714 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2715 }
darran 0:ac21159e27f4 2716 }
darran 0:ac21159e27f4 2717
darran 0:ac21159e27f4 2718 static void
darran 0:ac21159e27f4 2719 atentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2720 {
darran 0:ac21159e27f4 2721 #if LWIP_ARP
darran 0:ac21159e27f4 2722 u8_t id;
darran 0:ac21159e27f4 2723 struct eth_addr* ethaddr_ret;
darran 0:ac21159e27f4 2724 ip_addr_t* ipaddr_ret;
darran 0:ac21159e27f4 2725 #endif /* LWIP_ARP */
darran 0:ac21159e27f4 2726 ip_addr_t ip;
darran 0:ac21159e27f4 2727 struct netif *netif;
darran 0:ac21159e27f4 2728
darran 0:ac21159e27f4 2729 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2730 LWIP_UNUSED_ARG(value);/* if !LWIP_ARP */
darran 0:ac21159e27f4 2731
darran 0:ac21159e27f4 2732 snmp_ifindextonetif(od->id_inst_ptr[1], &netif);
darran 0:ac21159e27f4 2733 snmp_oidtoip(&od->id_inst_ptr[2], &ip);
darran 0:ac21159e27f4 2734
darran 0:ac21159e27f4 2735 #if LWIP_ARP /** @todo implement a netif_find_addr */
darran 0:ac21159e27f4 2736 if (etharp_find_addr(netif, &ip, &ethaddr_ret, &ipaddr_ret) > -1)
darran 0:ac21159e27f4 2737 {
darran 0:ac21159e27f4 2738 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2739 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2740 switch (id)
darran 0:ac21159e27f4 2741 {
darran 0:ac21159e27f4 2742 case 1: /* atIfIndex */
darran 0:ac21159e27f4 2743 {
darran 0:ac21159e27f4 2744 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2745 *sint_ptr = od->id_inst_ptr[1];
darran 0:ac21159e27f4 2746 }
darran 0:ac21159e27f4 2747 break;
darran 0:ac21159e27f4 2748 case 2: /* atPhysAddress */
darran 0:ac21159e27f4 2749 {
darran 0:ac21159e27f4 2750 struct eth_addr *dst = (struct eth_addr*)value;
darran 0:ac21159e27f4 2751
darran 0:ac21159e27f4 2752 *dst = *ethaddr_ret;
darran 0:ac21159e27f4 2753 }
darran 0:ac21159e27f4 2754 break;
darran 0:ac21159e27f4 2755 case 3: /* atNetAddress */
darran 0:ac21159e27f4 2756 {
darran 0:ac21159e27f4 2757 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 2758
darran 0:ac21159e27f4 2759 *dst = *ipaddr_ret;
darran 0:ac21159e27f4 2760 }
darran 0:ac21159e27f4 2761 break;
darran 0:ac21159e27f4 2762 }
darran 0:ac21159e27f4 2763 }
darran 0:ac21159e27f4 2764 #endif /* LWIP_ARP */
darran 0:ac21159e27f4 2765 }
darran 0:ac21159e27f4 2766
darran 0:ac21159e27f4 2767 static void
darran 0:ac21159e27f4 2768 ip_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 2769 {
darran 0:ac21159e27f4 2770 u8_t id;
darran 0:ac21159e27f4 2771
darran 0:ac21159e27f4 2772 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 2773 ident_len += 1;
darran 0:ac21159e27f4 2774 ident -= 1;
darran 0:ac21159e27f4 2775 if (ident_len == 2)
darran 0:ac21159e27f4 2776 {
darran 0:ac21159e27f4 2777 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 2778 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 2779
darran 0:ac21159e27f4 2780 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 2781 id = (u8_t)ident[0];
darran 0:ac21159e27f4 2782 LWIP_DEBUGF(SNMP_MIB_DEBUG,("get_object_def ip.%"U16_F".0\n",(u16_t)id));
darran 0:ac21159e27f4 2783 switch (id)
darran 0:ac21159e27f4 2784 {
darran 0:ac21159e27f4 2785 case 1: /* ipForwarding */
darran 0:ac21159e27f4 2786 case 2: /* ipDefaultTTL */
darran 0:ac21159e27f4 2787 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2788 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 2789 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2790 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2791 break;
darran 0:ac21159e27f4 2792 case 3: /* ipInReceives */
darran 0:ac21159e27f4 2793 case 4: /* ipInHdrErrors */
darran 0:ac21159e27f4 2794 case 5: /* ipInAddrErrors */
darran 0:ac21159e27f4 2795 case 6: /* ipForwDatagrams */
darran 0:ac21159e27f4 2796 case 7: /* ipInUnknownProtos */
darran 0:ac21159e27f4 2797 case 8: /* ipInDiscards */
darran 0:ac21159e27f4 2798 case 9: /* ipInDelivers */
darran 0:ac21159e27f4 2799 case 10: /* ipOutRequests */
darran 0:ac21159e27f4 2800 case 11: /* ipOutDiscards */
darran 0:ac21159e27f4 2801 case 12: /* ipOutNoRoutes */
darran 0:ac21159e27f4 2802 case 14: /* ipReasmReqds */
darran 0:ac21159e27f4 2803 case 15: /* ipReasmOKs */
darran 0:ac21159e27f4 2804 case 16: /* ipReasmFails */
darran 0:ac21159e27f4 2805 case 17: /* ipFragOKs */
darran 0:ac21159e27f4 2806 case 18: /* ipFragFails */
darran 0:ac21159e27f4 2807 case 19: /* ipFragCreates */
darran 0:ac21159e27f4 2808 case 23: /* ipRoutingDiscards */
darran 0:ac21159e27f4 2809 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2810 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2811 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER);
darran 0:ac21159e27f4 2812 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 2813 break;
darran 0:ac21159e27f4 2814 case 13: /* ipReasmTimeout */
darran 0:ac21159e27f4 2815 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 2816 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 2817 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 2818 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 2819 break;
darran 0:ac21159e27f4 2820 default:
darran 0:ac21159e27f4 2821 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_get_object_def: no such object\n"));
darran 0:ac21159e27f4 2822 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2823 break;
darran 0:ac21159e27f4 2824 };
darran 0:ac21159e27f4 2825 }
darran 0:ac21159e27f4 2826 else
darran 0:ac21159e27f4 2827 {
darran 0:ac21159e27f4 2828 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 2829 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 2830 }
darran 0:ac21159e27f4 2831 }
darran 0:ac21159e27f4 2832
darran 0:ac21159e27f4 2833 static void
darran 0:ac21159e27f4 2834 ip_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2835 {
darran 0:ac21159e27f4 2836 u8_t id;
darran 0:ac21159e27f4 2837
darran 0:ac21159e27f4 2838 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2839 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2840 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2841 switch (id)
darran 0:ac21159e27f4 2842 {
darran 0:ac21159e27f4 2843 case 1: /* ipForwarding */
darran 0:ac21159e27f4 2844 {
darran 0:ac21159e27f4 2845 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2846 #if IP_FORWARD
darran 0:ac21159e27f4 2847 /* forwarding */
darran 0:ac21159e27f4 2848 *sint_ptr = 1;
darran 0:ac21159e27f4 2849 #else
darran 0:ac21159e27f4 2850 /* not-forwarding */
darran 0:ac21159e27f4 2851 *sint_ptr = 2;
darran 0:ac21159e27f4 2852 #endif
darran 0:ac21159e27f4 2853 }
darran 0:ac21159e27f4 2854 break;
darran 0:ac21159e27f4 2855 case 2: /* ipDefaultTTL */
darran 0:ac21159e27f4 2856 {
darran 0:ac21159e27f4 2857 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2858 *sint_ptr = IP_DEFAULT_TTL;
darran 0:ac21159e27f4 2859 }
darran 0:ac21159e27f4 2860 break;
darran 0:ac21159e27f4 2861 case 3: /* ipInReceives */
darran 0:ac21159e27f4 2862 {
darran 0:ac21159e27f4 2863 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2864 *uint_ptr = ipinreceives;
darran 0:ac21159e27f4 2865 }
darran 0:ac21159e27f4 2866 break;
darran 0:ac21159e27f4 2867 case 4: /* ipInHdrErrors */
darran 0:ac21159e27f4 2868 {
darran 0:ac21159e27f4 2869 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2870 *uint_ptr = ipinhdrerrors;
darran 0:ac21159e27f4 2871 }
darran 0:ac21159e27f4 2872 break;
darran 0:ac21159e27f4 2873 case 5: /* ipInAddrErrors */
darran 0:ac21159e27f4 2874 {
darran 0:ac21159e27f4 2875 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2876 *uint_ptr = ipinaddrerrors;
darran 0:ac21159e27f4 2877 }
darran 0:ac21159e27f4 2878 break;
darran 0:ac21159e27f4 2879 case 6: /* ipForwDatagrams */
darran 0:ac21159e27f4 2880 {
darran 0:ac21159e27f4 2881 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2882 *uint_ptr = ipforwdatagrams;
darran 0:ac21159e27f4 2883 }
darran 0:ac21159e27f4 2884 break;
darran 0:ac21159e27f4 2885 case 7: /* ipInUnknownProtos */
darran 0:ac21159e27f4 2886 {
darran 0:ac21159e27f4 2887 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2888 *uint_ptr = ipinunknownprotos;
darran 0:ac21159e27f4 2889 }
darran 0:ac21159e27f4 2890 break;
darran 0:ac21159e27f4 2891 case 8: /* ipInDiscards */
darran 0:ac21159e27f4 2892 {
darran 0:ac21159e27f4 2893 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2894 *uint_ptr = ipindiscards;
darran 0:ac21159e27f4 2895 }
darran 0:ac21159e27f4 2896 break;
darran 0:ac21159e27f4 2897 case 9: /* ipInDelivers */
darran 0:ac21159e27f4 2898 {
darran 0:ac21159e27f4 2899 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2900 *uint_ptr = ipindelivers;
darran 0:ac21159e27f4 2901 }
darran 0:ac21159e27f4 2902 break;
darran 0:ac21159e27f4 2903 case 10: /* ipOutRequests */
darran 0:ac21159e27f4 2904 {
darran 0:ac21159e27f4 2905 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2906 *uint_ptr = ipoutrequests;
darran 0:ac21159e27f4 2907 }
darran 0:ac21159e27f4 2908 break;
darran 0:ac21159e27f4 2909 case 11: /* ipOutDiscards */
darran 0:ac21159e27f4 2910 {
darran 0:ac21159e27f4 2911 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2912 *uint_ptr = ipoutdiscards;
darran 0:ac21159e27f4 2913 }
darran 0:ac21159e27f4 2914 break;
darran 0:ac21159e27f4 2915 case 12: /* ipOutNoRoutes */
darran 0:ac21159e27f4 2916 {
darran 0:ac21159e27f4 2917 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2918 *uint_ptr = ipoutnoroutes;
darran 0:ac21159e27f4 2919 }
darran 0:ac21159e27f4 2920 break;
darran 0:ac21159e27f4 2921 case 13: /* ipReasmTimeout */
darran 0:ac21159e27f4 2922 {
darran 0:ac21159e27f4 2923 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2924 #if IP_REASSEMBLY
darran 0:ac21159e27f4 2925 *sint_ptr = IP_REASS_MAXAGE;
darran 0:ac21159e27f4 2926 #else
darran 0:ac21159e27f4 2927 *sint_ptr = 0;
darran 0:ac21159e27f4 2928 #endif
darran 0:ac21159e27f4 2929 }
darran 0:ac21159e27f4 2930 break;
darran 0:ac21159e27f4 2931 case 14: /* ipReasmReqds */
darran 0:ac21159e27f4 2932 {
darran 0:ac21159e27f4 2933 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2934 *uint_ptr = ipreasmreqds;
darran 0:ac21159e27f4 2935 }
darran 0:ac21159e27f4 2936 break;
darran 0:ac21159e27f4 2937 case 15: /* ipReasmOKs */
darran 0:ac21159e27f4 2938 {
darran 0:ac21159e27f4 2939 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2940 *uint_ptr = ipreasmoks;
darran 0:ac21159e27f4 2941 }
darran 0:ac21159e27f4 2942 break;
darran 0:ac21159e27f4 2943 case 16: /* ipReasmFails */
darran 0:ac21159e27f4 2944 {
darran 0:ac21159e27f4 2945 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2946 *uint_ptr = ipreasmfails;
darran 0:ac21159e27f4 2947 }
darran 0:ac21159e27f4 2948 break;
darran 0:ac21159e27f4 2949 case 17: /* ipFragOKs */
darran 0:ac21159e27f4 2950 {
darran 0:ac21159e27f4 2951 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2952 *uint_ptr = ipfragoks;
darran 0:ac21159e27f4 2953 }
darran 0:ac21159e27f4 2954 break;
darran 0:ac21159e27f4 2955 case 18: /* ipFragFails */
darran 0:ac21159e27f4 2956 {
darran 0:ac21159e27f4 2957 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2958 *uint_ptr = ipfragfails;
darran 0:ac21159e27f4 2959 }
darran 0:ac21159e27f4 2960 break;
darran 0:ac21159e27f4 2961 case 19: /* ipFragCreates */
darran 0:ac21159e27f4 2962 {
darran 0:ac21159e27f4 2963 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2964 *uint_ptr = ipfragcreates;
darran 0:ac21159e27f4 2965 }
darran 0:ac21159e27f4 2966 break;
darran 0:ac21159e27f4 2967 case 23: /* ipRoutingDiscards */
darran 0:ac21159e27f4 2968 /** @todo can lwIP discard routes at all?? hardwire this to 0?? */
darran 0:ac21159e27f4 2969 {
darran 0:ac21159e27f4 2970 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 2971 *uint_ptr = iproutingdiscards;
darran 0:ac21159e27f4 2972 }
darran 0:ac21159e27f4 2973 break;
darran 0:ac21159e27f4 2974 };
darran 0:ac21159e27f4 2975 }
darran 0:ac21159e27f4 2976
darran 0:ac21159e27f4 2977 /**
darran 0:ac21159e27f4 2978 * Test ip object value before setting.
darran 0:ac21159e27f4 2979 *
darran 0:ac21159e27f4 2980 * @param od is the object definition
darran 0:ac21159e27f4 2981 * @param len return value space (in bytes)
darran 0:ac21159e27f4 2982 * @param value points to (varbind) space to copy value from.
darran 0:ac21159e27f4 2983 *
darran 0:ac21159e27f4 2984 * @note we allow set if the value matches the hardwired value,
darran 0:ac21159e27f4 2985 * otherwise return badvalue.
darran 0:ac21159e27f4 2986 */
darran 0:ac21159e27f4 2987 static u8_t
darran 0:ac21159e27f4 2988 ip_set_test(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 2989 {
darran 0:ac21159e27f4 2990 u8_t id, set_ok;
darran 0:ac21159e27f4 2991 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 2992
darran 0:ac21159e27f4 2993 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 2994 set_ok = 0;
darran 0:ac21159e27f4 2995 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 2996 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 2997 switch (id)
darran 0:ac21159e27f4 2998 {
darran 0:ac21159e27f4 2999 case 1: /* ipForwarding */
darran 0:ac21159e27f4 3000 #if IP_FORWARD
darran 0:ac21159e27f4 3001 /* forwarding */
darran 0:ac21159e27f4 3002 if (*sint_ptr == 1)
darran 0:ac21159e27f4 3003 #else
darran 0:ac21159e27f4 3004 /* not-forwarding */
darran 0:ac21159e27f4 3005 if (*sint_ptr == 2)
darran 0:ac21159e27f4 3006 #endif
darran 0:ac21159e27f4 3007 {
darran 0:ac21159e27f4 3008 set_ok = 1;
darran 0:ac21159e27f4 3009 }
darran 0:ac21159e27f4 3010 break;
darran 0:ac21159e27f4 3011 case 2: /* ipDefaultTTL */
darran 0:ac21159e27f4 3012 if (*sint_ptr == IP_DEFAULT_TTL)
darran 0:ac21159e27f4 3013 {
darran 0:ac21159e27f4 3014 set_ok = 1;
darran 0:ac21159e27f4 3015 }
darran 0:ac21159e27f4 3016 break;
darran 0:ac21159e27f4 3017 };
darran 0:ac21159e27f4 3018 return set_ok;
darran 0:ac21159e27f4 3019 }
darran 0:ac21159e27f4 3020
darran 0:ac21159e27f4 3021 static void
darran 0:ac21159e27f4 3022 ip_addrentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3023 {
darran 0:ac21159e27f4 3024 /* return to object name, adding index depth (4) */
darran 0:ac21159e27f4 3025 ident_len += 4;
darran 0:ac21159e27f4 3026 ident -= 4;
darran 0:ac21159e27f4 3027
darran 0:ac21159e27f4 3028 if (ident_len == 5)
darran 0:ac21159e27f4 3029 {
darran 0:ac21159e27f4 3030 u8_t id;
darran 0:ac21159e27f4 3031
darran 0:ac21159e27f4 3032 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3033 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3034
darran 0:ac21159e27f4 3035 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 3036 id = (u8_t)ident[0];
darran 0:ac21159e27f4 3037 switch (id)
darran 0:ac21159e27f4 3038 {
darran 0:ac21159e27f4 3039 case 1: /* ipAdEntAddr */
darran 0:ac21159e27f4 3040 case 3: /* ipAdEntNetMask */
darran 0:ac21159e27f4 3041 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3042 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3043 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR);
darran 0:ac21159e27f4 3044 od->v_len = 4;
darran 0:ac21159e27f4 3045 break;
darran 0:ac21159e27f4 3046 case 2: /* ipAdEntIfIndex */
darran 0:ac21159e27f4 3047 case 4: /* ipAdEntBcastAddr */
darran 0:ac21159e27f4 3048 case 5: /* ipAdEntReasmMaxSize */
darran 0:ac21159e27f4 3049 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3050 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3051 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3052 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3053 break;
darran 0:ac21159e27f4 3054 default:
darran 0:ac21159e27f4 3055 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_addrentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3056 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3057 break;
darran 0:ac21159e27f4 3058 }
darran 0:ac21159e27f4 3059 }
darran 0:ac21159e27f4 3060 else
darran 0:ac21159e27f4 3061 {
darran 0:ac21159e27f4 3062 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_addrentry_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3063 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3064 }
darran 0:ac21159e27f4 3065 }
darran 0:ac21159e27f4 3066
darran 0:ac21159e27f4 3067 static void
darran 0:ac21159e27f4 3068 ip_addrentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3069 {
darran 0:ac21159e27f4 3070 u8_t id;
darran 0:ac21159e27f4 3071 u16_t ifidx;
darran 0:ac21159e27f4 3072 ip_addr_t ip;
darran 0:ac21159e27f4 3073 struct netif *netif = netif_list;
darran 0:ac21159e27f4 3074
darran 0:ac21159e27f4 3075 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3076 snmp_oidtoip(&od->id_inst_ptr[1], &ip);
darran 0:ac21159e27f4 3077 ifidx = 0;
darran 0:ac21159e27f4 3078 while ((netif != NULL) && !ip_addr_cmp(&ip, &netif->ip_addr))
darran 0:ac21159e27f4 3079 {
darran 0:ac21159e27f4 3080 netif = netif->next;
darran 0:ac21159e27f4 3081 ifidx++;
darran 0:ac21159e27f4 3082 }
darran 0:ac21159e27f4 3083
darran 0:ac21159e27f4 3084 if (netif != NULL)
darran 0:ac21159e27f4 3085 {
darran 0:ac21159e27f4 3086 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3087 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3088 switch (id)
darran 0:ac21159e27f4 3089 {
darran 0:ac21159e27f4 3090 case 1: /* ipAdEntAddr */
darran 0:ac21159e27f4 3091 {
darran 0:ac21159e27f4 3092 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3093 *dst = netif->ip_addr;
darran 0:ac21159e27f4 3094 }
darran 0:ac21159e27f4 3095 break;
darran 0:ac21159e27f4 3096 case 2: /* ipAdEntIfIndex */
darran 0:ac21159e27f4 3097 {
darran 0:ac21159e27f4 3098 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3099 *sint_ptr = ifidx + 1;
darran 0:ac21159e27f4 3100 }
darran 0:ac21159e27f4 3101 break;
darran 0:ac21159e27f4 3102 case 3: /* ipAdEntNetMask */
darran 0:ac21159e27f4 3103 {
darran 0:ac21159e27f4 3104 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3105 *dst = netif->netmask;
darran 0:ac21159e27f4 3106 }
darran 0:ac21159e27f4 3107 break;
darran 0:ac21159e27f4 3108 case 4: /* ipAdEntBcastAddr */
darran 0:ac21159e27f4 3109 {
darran 0:ac21159e27f4 3110 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3111
darran 0:ac21159e27f4 3112 /* lwIP oddity, there's no broadcast
darran 0:ac21159e27f4 3113 address in the netif we can rely on */
darran 0:ac21159e27f4 3114 *sint_ptr = IPADDR_BROADCAST & 1;
darran 0:ac21159e27f4 3115 }
darran 0:ac21159e27f4 3116 break;
darran 0:ac21159e27f4 3117 case 5: /* ipAdEntReasmMaxSize */
darran 0:ac21159e27f4 3118 {
darran 0:ac21159e27f4 3119 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3120 #if IP_REASSEMBLY
darran 0:ac21159e27f4 3121 /* @todo The theoretical maximum is IP_REASS_MAX_PBUFS * size of the pbufs,
darran 0:ac21159e27f4 3122 * but only if receiving one fragmented packet at a time.
darran 0:ac21159e27f4 3123 * The current solution is to calculate for 2 simultaneous packets...
darran 0:ac21159e27f4 3124 */
darran 0:ac21159e27f4 3125 *sint_ptr = (IP_HLEN + ((IP_REASS_MAX_PBUFS/2) *
darran 0:ac21159e27f4 3126 (PBUF_POOL_BUFSIZE - PBUF_LINK_HLEN - IP_HLEN)));
darran 0:ac21159e27f4 3127 #else
darran 0:ac21159e27f4 3128 /** @todo returning MTU would be a bad thing and
darran 0:ac21159e27f4 3129 returning a wild guess like '576' isn't good either */
darran 0:ac21159e27f4 3130 *sint_ptr = 0;
darran 0:ac21159e27f4 3131 #endif
darran 0:ac21159e27f4 3132 }
darran 0:ac21159e27f4 3133 break;
darran 0:ac21159e27f4 3134 }
darran 0:ac21159e27f4 3135 }
darran 0:ac21159e27f4 3136 }
darran 0:ac21159e27f4 3137
darran 0:ac21159e27f4 3138 /**
darran 0:ac21159e27f4 3139 * @note
darran 0:ac21159e27f4 3140 * lwIP IP routing is currently using the network addresses in netif_list.
darran 0:ac21159e27f4 3141 * if no suitable network IP is found in netif_list, the default_netif is used.
darran 0:ac21159e27f4 3142 */
darran 0:ac21159e27f4 3143 static void
darran 0:ac21159e27f4 3144 ip_rteentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3145 {
darran 0:ac21159e27f4 3146 u8_t id;
darran 0:ac21159e27f4 3147
darran 0:ac21159e27f4 3148 /* return to object name, adding index depth (4) */
darran 0:ac21159e27f4 3149 ident_len += 4;
darran 0:ac21159e27f4 3150 ident -= 4;
darran 0:ac21159e27f4 3151
darran 0:ac21159e27f4 3152 if (ident_len == 5)
darran 0:ac21159e27f4 3153 {
darran 0:ac21159e27f4 3154 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3155 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3156
darran 0:ac21159e27f4 3157 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 3158 id = (u8_t)ident[0];
darran 0:ac21159e27f4 3159 switch (id)
darran 0:ac21159e27f4 3160 {
darran 0:ac21159e27f4 3161 case 1: /* ipRouteDest */
darran 0:ac21159e27f4 3162 case 7: /* ipRouteNextHop */
darran 0:ac21159e27f4 3163 case 11: /* ipRouteMask */
darran 0:ac21159e27f4 3164 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3165 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3166 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR);
darran 0:ac21159e27f4 3167 od->v_len = 4;
darran 0:ac21159e27f4 3168 break;
darran 0:ac21159e27f4 3169 case 2: /* ipRouteIfIndex */
darran 0:ac21159e27f4 3170 case 3: /* ipRouteMetric1 */
darran 0:ac21159e27f4 3171 case 4: /* ipRouteMetric2 */
darran 0:ac21159e27f4 3172 case 5: /* ipRouteMetric3 */
darran 0:ac21159e27f4 3173 case 6: /* ipRouteMetric4 */
darran 0:ac21159e27f4 3174 case 8: /* ipRouteType */
darran 0:ac21159e27f4 3175 case 10: /* ipRouteAge */
darran 0:ac21159e27f4 3176 case 12: /* ipRouteMetric5 */
darran 0:ac21159e27f4 3177 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3178 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3179 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3180 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3181 break;
darran 0:ac21159e27f4 3182 case 9: /* ipRouteProto */
darran 0:ac21159e27f4 3183 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3184 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3185 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3186 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3187 break;
darran 0:ac21159e27f4 3188 case 13: /* ipRouteInfo */
darran 0:ac21159e27f4 3189 /** @note returning zeroDotZero (0.0) no routing protocol specific MIB */
darran 0:ac21159e27f4 3190 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3191 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3192 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID);
darran 0:ac21159e27f4 3193 od->v_len = iprouteinfo.len * sizeof(s32_t);
darran 0:ac21159e27f4 3194 break;
darran 0:ac21159e27f4 3195 default:
darran 0:ac21159e27f4 3196 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_rteentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3197 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3198 break;
darran 0:ac21159e27f4 3199 }
darran 0:ac21159e27f4 3200 }
darran 0:ac21159e27f4 3201 else
darran 0:ac21159e27f4 3202 {
darran 0:ac21159e27f4 3203 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_rteentry_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3204 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3205 }
darran 0:ac21159e27f4 3206 }
darran 0:ac21159e27f4 3207
darran 0:ac21159e27f4 3208 static void
darran 0:ac21159e27f4 3209 ip_rteentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3210 {
darran 0:ac21159e27f4 3211 struct netif *netif;
darran 0:ac21159e27f4 3212 ip_addr_t dest;
darran 0:ac21159e27f4 3213 s32_t *ident;
darran 0:ac21159e27f4 3214 u8_t id;
darran 0:ac21159e27f4 3215
darran 0:ac21159e27f4 3216 ident = od->id_inst_ptr;
darran 0:ac21159e27f4 3217 snmp_oidtoip(&ident[1], &dest);
darran 0:ac21159e27f4 3218
darran 0:ac21159e27f4 3219 if (ip_addr_isany(&dest))
darran 0:ac21159e27f4 3220 {
darran 0:ac21159e27f4 3221 /* ip_route() uses default netif for default route */
darran 0:ac21159e27f4 3222 netif = netif_default;
darran 0:ac21159e27f4 3223 }
darran 0:ac21159e27f4 3224 else
darran 0:ac21159e27f4 3225 {
darran 0:ac21159e27f4 3226 /* not using ip_route(), need exact match! */
darran 0:ac21159e27f4 3227 netif = netif_list;
darran 0:ac21159e27f4 3228 while ((netif != NULL) &&
darran 0:ac21159e27f4 3229 !ip_addr_netcmp(&dest, &(netif->ip_addr), &(netif->netmask)) )
darran 0:ac21159e27f4 3230 {
darran 0:ac21159e27f4 3231 netif = netif->next;
darran 0:ac21159e27f4 3232 }
darran 0:ac21159e27f4 3233 }
darran 0:ac21159e27f4 3234 if (netif != NULL)
darran 0:ac21159e27f4 3235 {
darran 0:ac21159e27f4 3236 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 3237 id = (u8_t)ident[0];
darran 0:ac21159e27f4 3238 switch (id)
darran 0:ac21159e27f4 3239 {
darran 0:ac21159e27f4 3240 case 1: /* ipRouteDest */
darran 0:ac21159e27f4 3241 {
darran 0:ac21159e27f4 3242 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3243
darran 0:ac21159e27f4 3244 if (ip_addr_isany(&dest))
darran 0:ac21159e27f4 3245 {
darran 0:ac21159e27f4 3246 /* default rte has 0.0.0.0 dest */
darran 0:ac21159e27f4 3247 ip_addr_set_zero(dst);
darran 0:ac21159e27f4 3248 }
darran 0:ac21159e27f4 3249 else
darran 0:ac21159e27f4 3250 {
darran 0:ac21159e27f4 3251 /* netifs have netaddress dest */
darran 0:ac21159e27f4 3252 ip_addr_get_network(dst, &netif->ip_addr, &netif->netmask);
darran 0:ac21159e27f4 3253 }
darran 0:ac21159e27f4 3254 }
darran 0:ac21159e27f4 3255 break;
darran 0:ac21159e27f4 3256 case 2: /* ipRouteIfIndex */
darran 0:ac21159e27f4 3257 {
darran 0:ac21159e27f4 3258 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3259
darran 0:ac21159e27f4 3260 snmp_netiftoifindex(netif, sint_ptr);
darran 0:ac21159e27f4 3261 }
darran 0:ac21159e27f4 3262 break;
darran 0:ac21159e27f4 3263 case 3: /* ipRouteMetric1 */
darran 0:ac21159e27f4 3264 {
darran 0:ac21159e27f4 3265 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3266
darran 0:ac21159e27f4 3267 if (ip_addr_isany(&dest))
darran 0:ac21159e27f4 3268 {
darran 0:ac21159e27f4 3269 /* default rte has metric 1 */
darran 0:ac21159e27f4 3270 *sint_ptr = 1;
darran 0:ac21159e27f4 3271 }
darran 0:ac21159e27f4 3272 else
darran 0:ac21159e27f4 3273 {
darran 0:ac21159e27f4 3274 /* other rtes have metric 0 */
darran 0:ac21159e27f4 3275 *sint_ptr = 0;
darran 0:ac21159e27f4 3276 }
darran 0:ac21159e27f4 3277 }
darran 0:ac21159e27f4 3278 break;
darran 0:ac21159e27f4 3279 case 4: /* ipRouteMetric2 */
darran 0:ac21159e27f4 3280 case 5: /* ipRouteMetric3 */
darran 0:ac21159e27f4 3281 case 6: /* ipRouteMetric4 */
darran 0:ac21159e27f4 3282 case 12: /* ipRouteMetric5 */
darran 0:ac21159e27f4 3283 {
darran 0:ac21159e27f4 3284 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3285 /* not used */
darran 0:ac21159e27f4 3286 *sint_ptr = -1;
darran 0:ac21159e27f4 3287 }
darran 0:ac21159e27f4 3288 break;
darran 0:ac21159e27f4 3289 case 7: /* ipRouteNextHop */
darran 0:ac21159e27f4 3290 {
darran 0:ac21159e27f4 3291 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3292
darran 0:ac21159e27f4 3293 if (ip_addr_isany(&dest))
darran 0:ac21159e27f4 3294 {
darran 0:ac21159e27f4 3295 /* default rte: gateway */
darran 0:ac21159e27f4 3296 *dst = netif->gw;
darran 0:ac21159e27f4 3297 }
darran 0:ac21159e27f4 3298 else
darran 0:ac21159e27f4 3299 {
darran 0:ac21159e27f4 3300 /* other rtes: netif ip_addr */
darran 0:ac21159e27f4 3301 *dst = netif->ip_addr;
darran 0:ac21159e27f4 3302 }
darran 0:ac21159e27f4 3303 }
darran 0:ac21159e27f4 3304 break;
darran 0:ac21159e27f4 3305 case 8: /* ipRouteType */
darran 0:ac21159e27f4 3306 {
darran 0:ac21159e27f4 3307 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3308
darran 0:ac21159e27f4 3309 if (ip_addr_isany(&dest))
darran 0:ac21159e27f4 3310 {
darran 0:ac21159e27f4 3311 /* default rte is indirect */
darran 0:ac21159e27f4 3312 *sint_ptr = 4;
darran 0:ac21159e27f4 3313 }
darran 0:ac21159e27f4 3314 else
darran 0:ac21159e27f4 3315 {
darran 0:ac21159e27f4 3316 /* other rtes are direct */
darran 0:ac21159e27f4 3317 *sint_ptr = 3;
darran 0:ac21159e27f4 3318 }
darran 0:ac21159e27f4 3319 }
darran 0:ac21159e27f4 3320 break;
darran 0:ac21159e27f4 3321 case 9: /* ipRouteProto */
darran 0:ac21159e27f4 3322 {
darran 0:ac21159e27f4 3323 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3324 /* locally defined routes */
darran 0:ac21159e27f4 3325 *sint_ptr = 2;
darran 0:ac21159e27f4 3326 }
darran 0:ac21159e27f4 3327 break;
darran 0:ac21159e27f4 3328 case 10: /* ipRouteAge */
darran 0:ac21159e27f4 3329 {
darran 0:ac21159e27f4 3330 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3331 /** @todo (sysuptime - timestamp last change) / 100
darran 0:ac21159e27f4 3332 @see snmp_insert_iprteidx_tree() */
darran 0:ac21159e27f4 3333 *sint_ptr = 0;
darran 0:ac21159e27f4 3334 }
darran 0:ac21159e27f4 3335 break;
darran 0:ac21159e27f4 3336 case 11: /* ipRouteMask */
darran 0:ac21159e27f4 3337 {
darran 0:ac21159e27f4 3338 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3339
darran 0:ac21159e27f4 3340 if (ip_addr_isany(&dest))
darran 0:ac21159e27f4 3341 {
darran 0:ac21159e27f4 3342 /* default rte use 0.0.0.0 mask */
darran 0:ac21159e27f4 3343 ip_addr_set_zero(dst);
darran 0:ac21159e27f4 3344 }
darran 0:ac21159e27f4 3345 else
darran 0:ac21159e27f4 3346 {
darran 0:ac21159e27f4 3347 /* other rtes use netmask */
darran 0:ac21159e27f4 3348 *dst = netif->netmask;
darran 0:ac21159e27f4 3349 }
darran 0:ac21159e27f4 3350 }
darran 0:ac21159e27f4 3351 break;
darran 0:ac21159e27f4 3352 case 13: /* ipRouteInfo */
darran 0:ac21159e27f4 3353 objectidncpy((s32_t*)value, (s32_t*)iprouteinfo.id, (u8_t)(len / sizeof(s32_t)));
darran 0:ac21159e27f4 3354 break;
darran 0:ac21159e27f4 3355 }
darran 0:ac21159e27f4 3356 }
darran 0:ac21159e27f4 3357 }
darran 0:ac21159e27f4 3358
darran 0:ac21159e27f4 3359 static void
darran 0:ac21159e27f4 3360 ip_ntomentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3361 {
darran 0:ac21159e27f4 3362 /* return to object name, adding index depth (5) */
darran 0:ac21159e27f4 3363 ident_len += 5;
darran 0:ac21159e27f4 3364 ident -= 5;
darran 0:ac21159e27f4 3365
darran 0:ac21159e27f4 3366 if (ident_len == 6)
darran 0:ac21159e27f4 3367 {
darran 0:ac21159e27f4 3368 u8_t id;
darran 0:ac21159e27f4 3369
darran 0:ac21159e27f4 3370 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3371 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3372
darran 0:ac21159e27f4 3373 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 3374 id = (u8_t)ident[0];
darran 0:ac21159e27f4 3375 switch (id)
darran 0:ac21159e27f4 3376 {
darran 0:ac21159e27f4 3377 case 1: /* ipNetToMediaIfIndex */
darran 0:ac21159e27f4 3378 case 4: /* ipNetToMediaType */
darran 0:ac21159e27f4 3379 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3380 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3381 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3382 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3383 break;
darran 0:ac21159e27f4 3384 case 2: /* ipNetToMediaPhysAddress */
darran 0:ac21159e27f4 3385 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3386 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3387 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR);
darran 0:ac21159e27f4 3388 od->v_len = 6; /** @todo try to use netif::hwaddr_len */
darran 0:ac21159e27f4 3389 break;
darran 0:ac21159e27f4 3390 case 3: /* ipNetToMediaNetAddress */
darran 0:ac21159e27f4 3391 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3392 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3393 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR);
darran 0:ac21159e27f4 3394 od->v_len = 4;
darran 0:ac21159e27f4 3395 break;
darran 0:ac21159e27f4 3396 default:
darran 0:ac21159e27f4 3397 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_ntomentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3398 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3399 break;
darran 0:ac21159e27f4 3400 }
darran 0:ac21159e27f4 3401 }
darran 0:ac21159e27f4 3402 else
darran 0:ac21159e27f4 3403 {
darran 0:ac21159e27f4 3404 LWIP_DEBUGF(SNMP_MIB_DEBUG,("ip_ntomentry_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3405 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3406 }
darran 0:ac21159e27f4 3407 }
darran 0:ac21159e27f4 3408
darran 0:ac21159e27f4 3409 static void
darran 0:ac21159e27f4 3410 ip_ntomentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3411 {
darran 0:ac21159e27f4 3412 #if LWIP_ARP
darran 0:ac21159e27f4 3413 u8_t id;
darran 0:ac21159e27f4 3414 struct eth_addr* ethaddr_ret;
darran 0:ac21159e27f4 3415 ip_addr_t* ipaddr_ret;
darran 0:ac21159e27f4 3416 #endif /* LWIP_ARP */
darran 0:ac21159e27f4 3417 ip_addr_t ip;
darran 0:ac21159e27f4 3418 struct netif *netif;
darran 0:ac21159e27f4 3419
darran 0:ac21159e27f4 3420 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3421 LWIP_UNUSED_ARG(value);/* if !LWIP_ARP */
darran 0:ac21159e27f4 3422
darran 0:ac21159e27f4 3423 snmp_ifindextonetif(od->id_inst_ptr[1], &netif);
darran 0:ac21159e27f4 3424 snmp_oidtoip(&od->id_inst_ptr[2], &ip);
darran 0:ac21159e27f4 3425
darran 0:ac21159e27f4 3426 #if LWIP_ARP /** @todo implement a netif_find_addr */
darran 0:ac21159e27f4 3427 if (etharp_find_addr(netif, &ip, &ethaddr_ret, &ipaddr_ret) > -1)
darran 0:ac21159e27f4 3428 {
darran 0:ac21159e27f4 3429 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3430 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3431 switch (id)
darran 0:ac21159e27f4 3432 {
darran 0:ac21159e27f4 3433 case 1: /* ipNetToMediaIfIndex */
darran 0:ac21159e27f4 3434 {
darran 0:ac21159e27f4 3435 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3436 *sint_ptr = od->id_inst_ptr[1];
darran 0:ac21159e27f4 3437 }
darran 0:ac21159e27f4 3438 break;
darran 0:ac21159e27f4 3439 case 2: /* ipNetToMediaPhysAddress */
darran 0:ac21159e27f4 3440 {
darran 0:ac21159e27f4 3441 struct eth_addr *dst = (struct eth_addr*)value;
darran 0:ac21159e27f4 3442
darran 0:ac21159e27f4 3443 *dst = *ethaddr_ret;
darran 0:ac21159e27f4 3444 }
darran 0:ac21159e27f4 3445 break;
darran 0:ac21159e27f4 3446 case 3: /* ipNetToMediaNetAddress */
darran 0:ac21159e27f4 3447 {
darran 0:ac21159e27f4 3448 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3449
darran 0:ac21159e27f4 3450 *dst = *ipaddr_ret;
darran 0:ac21159e27f4 3451 }
darran 0:ac21159e27f4 3452 break;
darran 0:ac21159e27f4 3453 case 4: /* ipNetToMediaType */
darran 0:ac21159e27f4 3454 {
darran 0:ac21159e27f4 3455 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3456 /* dynamic (?) */
darran 0:ac21159e27f4 3457 *sint_ptr = 3;
darran 0:ac21159e27f4 3458 }
darran 0:ac21159e27f4 3459 break;
darran 0:ac21159e27f4 3460 }
darran 0:ac21159e27f4 3461 }
darran 0:ac21159e27f4 3462 #endif /* LWIP_ARP */
darran 0:ac21159e27f4 3463 }
darran 0:ac21159e27f4 3464
darran 0:ac21159e27f4 3465 static void
darran 0:ac21159e27f4 3466 icmp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3467 {
darran 0:ac21159e27f4 3468 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 3469 ident_len += 1;
darran 0:ac21159e27f4 3470 ident -= 1;
darran 0:ac21159e27f4 3471 if ((ident_len == 2) &&
darran 0:ac21159e27f4 3472 (ident[0] > 0) && (ident[0] < 27))
darran 0:ac21159e27f4 3473 {
darran 0:ac21159e27f4 3474 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3475 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3476
darran 0:ac21159e27f4 3477 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 3478 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3479 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER);
darran 0:ac21159e27f4 3480 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 3481 }
darran 0:ac21159e27f4 3482 else
darran 0:ac21159e27f4 3483 {
darran 0:ac21159e27f4 3484 LWIP_DEBUGF(SNMP_MIB_DEBUG,("icmp_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3485 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3486 }
darran 0:ac21159e27f4 3487 }
darran 0:ac21159e27f4 3488
darran 0:ac21159e27f4 3489 static void
darran 0:ac21159e27f4 3490 icmp_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3491 {
darran 0:ac21159e27f4 3492 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 3493 u8_t id;
darran 0:ac21159e27f4 3494
darran 0:ac21159e27f4 3495 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3496 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3497 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3498 switch (id)
darran 0:ac21159e27f4 3499 {
darran 0:ac21159e27f4 3500 case 1: /* icmpInMsgs */
darran 0:ac21159e27f4 3501 *uint_ptr = icmpinmsgs;
darran 0:ac21159e27f4 3502 break;
darran 0:ac21159e27f4 3503 case 2: /* icmpInErrors */
darran 0:ac21159e27f4 3504 *uint_ptr = icmpinerrors;
darran 0:ac21159e27f4 3505 break;
darran 0:ac21159e27f4 3506 case 3: /* icmpInDestUnreachs */
darran 0:ac21159e27f4 3507 *uint_ptr = icmpindestunreachs;
darran 0:ac21159e27f4 3508 break;
darran 0:ac21159e27f4 3509 case 4: /* icmpInTimeExcds */
darran 0:ac21159e27f4 3510 *uint_ptr = icmpintimeexcds;
darran 0:ac21159e27f4 3511 break;
darran 0:ac21159e27f4 3512 case 5: /* icmpInParmProbs */
darran 0:ac21159e27f4 3513 *uint_ptr = icmpinparmprobs;
darran 0:ac21159e27f4 3514 break;
darran 0:ac21159e27f4 3515 case 6: /* icmpInSrcQuenchs */
darran 0:ac21159e27f4 3516 *uint_ptr = icmpinsrcquenchs;
darran 0:ac21159e27f4 3517 break;
darran 0:ac21159e27f4 3518 case 7: /* icmpInRedirects */
darran 0:ac21159e27f4 3519 *uint_ptr = icmpinredirects;
darran 0:ac21159e27f4 3520 break;
darran 0:ac21159e27f4 3521 case 8: /* icmpInEchos */
darran 0:ac21159e27f4 3522 *uint_ptr = icmpinechos;
darran 0:ac21159e27f4 3523 break;
darran 0:ac21159e27f4 3524 case 9: /* icmpInEchoReps */
darran 0:ac21159e27f4 3525 *uint_ptr = icmpinechoreps;
darran 0:ac21159e27f4 3526 break;
darran 0:ac21159e27f4 3527 case 10: /* icmpInTimestamps */
darran 0:ac21159e27f4 3528 *uint_ptr = icmpintimestamps;
darran 0:ac21159e27f4 3529 break;
darran 0:ac21159e27f4 3530 case 11: /* icmpInTimestampReps */
darran 0:ac21159e27f4 3531 *uint_ptr = icmpintimestampreps;
darran 0:ac21159e27f4 3532 break;
darran 0:ac21159e27f4 3533 case 12: /* icmpInAddrMasks */
darran 0:ac21159e27f4 3534 *uint_ptr = icmpinaddrmasks;
darran 0:ac21159e27f4 3535 break;
darran 0:ac21159e27f4 3536 case 13: /* icmpInAddrMaskReps */
darran 0:ac21159e27f4 3537 *uint_ptr = icmpinaddrmaskreps;
darran 0:ac21159e27f4 3538 break;
darran 0:ac21159e27f4 3539 case 14: /* icmpOutMsgs */
darran 0:ac21159e27f4 3540 *uint_ptr = icmpoutmsgs;
darran 0:ac21159e27f4 3541 break;
darran 0:ac21159e27f4 3542 case 15: /* icmpOutErrors */
darran 0:ac21159e27f4 3543 *uint_ptr = icmpouterrors;
darran 0:ac21159e27f4 3544 break;
darran 0:ac21159e27f4 3545 case 16: /* icmpOutDestUnreachs */
darran 0:ac21159e27f4 3546 *uint_ptr = icmpoutdestunreachs;
darran 0:ac21159e27f4 3547 break;
darran 0:ac21159e27f4 3548 case 17: /* icmpOutTimeExcds */
darran 0:ac21159e27f4 3549 *uint_ptr = icmpouttimeexcds;
darran 0:ac21159e27f4 3550 break;
darran 0:ac21159e27f4 3551 case 18: /* icmpOutParmProbs */
darran 0:ac21159e27f4 3552 *uint_ptr = icmpoutparmprobs;
darran 0:ac21159e27f4 3553 break;
darran 0:ac21159e27f4 3554 case 19: /* icmpOutSrcQuenchs */
darran 0:ac21159e27f4 3555 *uint_ptr = icmpoutsrcquenchs;
darran 0:ac21159e27f4 3556 break;
darran 0:ac21159e27f4 3557 case 20: /* icmpOutRedirects */
darran 0:ac21159e27f4 3558 *uint_ptr = icmpoutredirects;
darran 0:ac21159e27f4 3559 break;
darran 0:ac21159e27f4 3560 case 21: /* icmpOutEchos */
darran 0:ac21159e27f4 3561 *uint_ptr = icmpoutechos;
darran 0:ac21159e27f4 3562 break;
darran 0:ac21159e27f4 3563 case 22: /* icmpOutEchoReps */
darran 0:ac21159e27f4 3564 *uint_ptr = icmpoutechoreps;
darran 0:ac21159e27f4 3565 break;
darran 0:ac21159e27f4 3566 case 23: /* icmpOutTimestamps */
darran 0:ac21159e27f4 3567 *uint_ptr = icmpouttimestamps;
darran 0:ac21159e27f4 3568 break;
darran 0:ac21159e27f4 3569 case 24: /* icmpOutTimestampReps */
darran 0:ac21159e27f4 3570 *uint_ptr = icmpouttimestampreps;
darran 0:ac21159e27f4 3571 break;
darran 0:ac21159e27f4 3572 case 25: /* icmpOutAddrMasks */
darran 0:ac21159e27f4 3573 *uint_ptr = icmpoutaddrmasks;
darran 0:ac21159e27f4 3574 break;
darran 0:ac21159e27f4 3575 case 26: /* icmpOutAddrMaskReps */
darran 0:ac21159e27f4 3576 *uint_ptr = icmpoutaddrmaskreps;
darran 0:ac21159e27f4 3577 break;
darran 0:ac21159e27f4 3578 }
darran 0:ac21159e27f4 3579 }
darran 0:ac21159e27f4 3580
darran 0:ac21159e27f4 3581 #if LWIP_TCP
darran 0:ac21159e27f4 3582 /** @todo tcp grp */
darran 0:ac21159e27f4 3583 static void
darran 0:ac21159e27f4 3584 tcp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3585 {
darran 0:ac21159e27f4 3586 u8_t id;
darran 0:ac21159e27f4 3587
darran 0:ac21159e27f4 3588 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 3589 ident_len += 1;
darran 0:ac21159e27f4 3590 ident -= 1;
darran 0:ac21159e27f4 3591 if (ident_len == 2)
darran 0:ac21159e27f4 3592 {
darran 0:ac21159e27f4 3593 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3594 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3595
darran 0:ac21159e27f4 3596 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 3597 id = (u8_t)ident[0];
darran 0:ac21159e27f4 3598 LWIP_DEBUGF(SNMP_MIB_DEBUG,("get_object_def tcp.%"U16_F".0\n",(u16_t)id));
darran 0:ac21159e27f4 3599
darran 0:ac21159e27f4 3600 switch (id)
darran 0:ac21159e27f4 3601 {
darran 0:ac21159e27f4 3602 case 1: /* tcpRtoAlgorithm */
darran 0:ac21159e27f4 3603 case 2: /* tcpRtoMin */
darran 0:ac21159e27f4 3604 case 3: /* tcpRtoMax */
darran 0:ac21159e27f4 3605 case 4: /* tcpMaxConn */
darran 0:ac21159e27f4 3606 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 3607 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3608 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3609 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3610 break;
darran 0:ac21159e27f4 3611 case 5: /* tcpActiveOpens */
darran 0:ac21159e27f4 3612 case 6: /* tcpPassiveOpens */
darran 0:ac21159e27f4 3613 case 7: /* tcpAttemptFails */
darran 0:ac21159e27f4 3614 case 8: /* tcpEstabResets */
darran 0:ac21159e27f4 3615 case 10: /* tcpInSegs */
darran 0:ac21159e27f4 3616 case 11: /* tcpOutSegs */
darran 0:ac21159e27f4 3617 case 12: /* tcpRetransSegs */
darran 0:ac21159e27f4 3618 case 14: /* tcpInErrs */
darran 0:ac21159e27f4 3619 case 15: /* tcpOutRsts */
darran 0:ac21159e27f4 3620 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 3621 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3622 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER);
darran 0:ac21159e27f4 3623 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 3624 break;
darran 0:ac21159e27f4 3625 case 9: /* tcpCurrEstab */
darran 0:ac21159e27f4 3626 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3627 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3628 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_GAUGE);
darran 0:ac21159e27f4 3629 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 3630 break;
darran 0:ac21159e27f4 3631 default:
darran 0:ac21159e27f4 3632 LWIP_DEBUGF(SNMP_MIB_DEBUG,("tcp_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3633 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3634 break;
darran 0:ac21159e27f4 3635 };
darran 0:ac21159e27f4 3636 }
darran 0:ac21159e27f4 3637 else
darran 0:ac21159e27f4 3638 {
darran 0:ac21159e27f4 3639 LWIP_DEBUGF(SNMP_MIB_DEBUG,("tcp_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3640 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3641 }
darran 0:ac21159e27f4 3642 }
darran 0:ac21159e27f4 3643
darran 0:ac21159e27f4 3644 static void
darran 0:ac21159e27f4 3645 tcp_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3646 {
darran 0:ac21159e27f4 3647 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 3648 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3649 u8_t id;
darran 0:ac21159e27f4 3650
darran 0:ac21159e27f4 3651 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3652 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3653 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3654 switch (id)
darran 0:ac21159e27f4 3655 {
darran 0:ac21159e27f4 3656 case 1: /* tcpRtoAlgorithm, vanj(4) */
darran 0:ac21159e27f4 3657 *sint_ptr = 4;
darran 0:ac21159e27f4 3658 break;
darran 0:ac21159e27f4 3659 case 2: /* tcpRtoMin */
darran 0:ac21159e27f4 3660 /* @todo not the actual value, a guess,
darran 0:ac21159e27f4 3661 needs to be calculated */
darran 0:ac21159e27f4 3662 *sint_ptr = 1000;
darran 0:ac21159e27f4 3663 break;
darran 0:ac21159e27f4 3664 case 3: /* tcpRtoMax */
darran 0:ac21159e27f4 3665 /* @todo not the actual value, a guess,
darran 0:ac21159e27f4 3666 needs to be calculated */
darran 0:ac21159e27f4 3667 *sint_ptr = 60000;
darran 0:ac21159e27f4 3668 break;
darran 0:ac21159e27f4 3669 case 4: /* tcpMaxConn */
darran 0:ac21159e27f4 3670 *sint_ptr = MEMP_NUM_TCP_PCB;
darran 0:ac21159e27f4 3671 break;
darran 0:ac21159e27f4 3672 case 5: /* tcpActiveOpens */
darran 0:ac21159e27f4 3673 *uint_ptr = tcpactiveopens;
darran 0:ac21159e27f4 3674 break;
darran 0:ac21159e27f4 3675 case 6: /* tcpPassiveOpens */
darran 0:ac21159e27f4 3676 *uint_ptr = tcppassiveopens;
darran 0:ac21159e27f4 3677 break;
darran 0:ac21159e27f4 3678 case 7: /* tcpAttemptFails */
darran 0:ac21159e27f4 3679 *uint_ptr = tcpattemptfails;
darran 0:ac21159e27f4 3680 break;
darran 0:ac21159e27f4 3681 case 8: /* tcpEstabResets */
darran 0:ac21159e27f4 3682 *uint_ptr = tcpestabresets;
darran 0:ac21159e27f4 3683 break;
darran 0:ac21159e27f4 3684 case 9: /* tcpCurrEstab */
darran 0:ac21159e27f4 3685 {
darran 0:ac21159e27f4 3686 u16_t tcpcurrestab = 0;
darran 0:ac21159e27f4 3687 struct tcp_pcb *pcb = tcp_active_pcbs;
darran 0:ac21159e27f4 3688 while (pcb != NULL)
darran 0:ac21159e27f4 3689 {
darran 0:ac21159e27f4 3690 if ((pcb->state == ESTABLISHED) ||
darran 0:ac21159e27f4 3691 (pcb->state == CLOSE_WAIT))
darran 0:ac21159e27f4 3692 {
darran 0:ac21159e27f4 3693 tcpcurrestab++;
darran 0:ac21159e27f4 3694 }
darran 0:ac21159e27f4 3695 pcb = pcb->next;
darran 0:ac21159e27f4 3696 }
darran 0:ac21159e27f4 3697 *uint_ptr = tcpcurrestab;
darran 0:ac21159e27f4 3698 }
darran 0:ac21159e27f4 3699 break;
darran 0:ac21159e27f4 3700 case 10: /* tcpInSegs */
darran 0:ac21159e27f4 3701 *uint_ptr = tcpinsegs;
darran 0:ac21159e27f4 3702 break;
darran 0:ac21159e27f4 3703 case 11: /* tcpOutSegs */
darran 0:ac21159e27f4 3704 *uint_ptr = tcpoutsegs;
darran 0:ac21159e27f4 3705 break;
darran 0:ac21159e27f4 3706 case 12: /* tcpRetransSegs */
darran 0:ac21159e27f4 3707 *uint_ptr = tcpretranssegs;
darran 0:ac21159e27f4 3708 break;
darran 0:ac21159e27f4 3709 case 14: /* tcpInErrs */
darran 0:ac21159e27f4 3710 *uint_ptr = tcpinerrs;
darran 0:ac21159e27f4 3711 break;
darran 0:ac21159e27f4 3712 case 15: /* tcpOutRsts */
darran 0:ac21159e27f4 3713 *uint_ptr = tcpoutrsts;
darran 0:ac21159e27f4 3714 break;
darran 0:ac21159e27f4 3715 }
darran 0:ac21159e27f4 3716 }
darran 0:ac21159e27f4 3717 #ifdef THIS_SEEMS_UNUSED
darran 0:ac21159e27f4 3718 static void
darran 0:ac21159e27f4 3719 tcpconnentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3720 {
darran 0:ac21159e27f4 3721 /* return to object name, adding index depth (10) */
darran 0:ac21159e27f4 3722 ident_len += 10;
darran 0:ac21159e27f4 3723 ident -= 10;
darran 0:ac21159e27f4 3724
darran 0:ac21159e27f4 3725 if (ident_len == 11)
darran 0:ac21159e27f4 3726 {
darran 0:ac21159e27f4 3727 u8_t id;
darran 0:ac21159e27f4 3728
darran 0:ac21159e27f4 3729 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3730 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3731
darran 0:ac21159e27f4 3732 id = ident[0];
darran 0:ac21159e27f4 3733 LWIP_DEBUGF(SNMP_MIB_DEBUG,("get_object_def tcp.%"U16_F".0\n",(u16_t)id));
darran 0:ac21159e27f4 3734
darran 0:ac21159e27f4 3735 switch (id)
darran 0:ac21159e27f4 3736 {
darran 0:ac21159e27f4 3737 case 1: /* tcpConnState */
darran 0:ac21159e27f4 3738 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3739 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3740 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3741 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3742 break;
darran 0:ac21159e27f4 3743 case 2: /* tcpConnLocalAddress */
darran 0:ac21159e27f4 3744 case 4: /* tcpConnRemAddress */
darran 0:ac21159e27f4 3745 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3746 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3747 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR);
darran 0:ac21159e27f4 3748 od->v_len = 4;
darran 0:ac21159e27f4 3749 break;
darran 0:ac21159e27f4 3750 case 3: /* tcpConnLocalPort */
darran 0:ac21159e27f4 3751 case 5: /* tcpConnRemPort */
darran 0:ac21159e27f4 3752 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3753 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3754 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3755 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3756 break;
darran 0:ac21159e27f4 3757 default:
darran 0:ac21159e27f4 3758 LWIP_DEBUGF(SNMP_MIB_DEBUG,("tcpconnentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3759 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3760 break;
darran 0:ac21159e27f4 3761 };
darran 0:ac21159e27f4 3762 }
darran 0:ac21159e27f4 3763 else
darran 0:ac21159e27f4 3764 {
darran 0:ac21159e27f4 3765 LWIP_DEBUGF(SNMP_MIB_DEBUG,("tcpconnentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3766 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3767 }
darran 0:ac21159e27f4 3768 }
darran 0:ac21159e27f4 3769
darran 0:ac21159e27f4 3770 static void
darran 0:ac21159e27f4 3771 tcpconnentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3772 {
darran 0:ac21159e27f4 3773 ip_addr_t lip, rip;
darran 0:ac21159e27f4 3774 u16_t lport, rport;
darran 0:ac21159e27f4 3775 s32_t *ident;
darran 0:ac21159e27f4 3776
darran 0:ac21159e27f4 3777 ident = od->id_inst_ptr;
darran 0:ac21159e27f4 3778 snmp_oidtoip(&ident[1], &lip);
darran 0:ac21159e27f4 3779 lport = ident[5];
darran 0:ac21159e27f4 3780 snmp_oidtoip(&ident[6], &rip);
darran 0:ac21159e27f4 3781 rport = ident[10];
darran 0:ac21159e27f4 3782
darran 0:ac21159e27f4 3783 /** @todo find matching PCB */
darran 0:ac21159e27f4 3784 }
darran 0:ac21159e27f4 3785 #endif /* if 0 */
darran 0:ac21159e27f4 3786 #endif
darran 0:ac21159e27f4 3787
darran 0:ac21159e27f4 3788 static void
darran 0:ac21159e27f4 3789 udp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3790 {
darran 0:ac21159e27f4 3791 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 3792 ident_len += 1;
darran 0:ac21159e27f4 3793 ident -= 1;
darran 0:ac21159e27f4 3794 if ((ident_len == 2) &&
darran 0:ac21159e27f4 3795 (ident[0] > 0) && (ident[0] < 6))
darran 0:ac21159e27f4 3796 {
darran 0:ac21159e27f4 3797 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3798 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3799
darran 0:ac21159e27f4 3800 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 3801 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3802 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER);
darran 0:ac21159e27f4 3803 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 3804 }
darran 0:ac21159e27f4 3805 else
darran 0:ac21159e27f4 3806 {
darran 0:ac21159e27f4 3807 LWIP_DEBUGF(SNMP_MIB_DEBUG,("udp_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3808 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3809 }
darran 0:ac21159e27f4 3810 }
darran 0:ac21159e27f4 3811
darran 0:ac21159e27f4 3812 static void
darran 0:ac21159e27f4 3813 udp_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3814 {
darran 0:ac21159e27f4 3815 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 3816 u8_t id;
darran 0:ac21159e27f4 3817
darran 0:ac21159e27f4 3818 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3819 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3820 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3821 switch (id)
darran 0:ac21159e27f4 3822 {
darran 0:ac21159e27f4 3823 case 1: /* udpInDatagrams */
darran 0:ac21159e27f4 3824 *uint_ptr = udpindatagrams;
darran 0:ac21159e27f4 3825 break;
darran 0:ac21159e27f4 3826 case 2: /* udpNoPorts */
darran 0:ac21159e27f4 3827 *uint_ptr = udpnoports;
darran 0:ac21159e27f4 3828 break;
darran 0:ac21159e27f4 3829 case 3: /* udpInErrors */
darran 0:ac21159e27f4 3830 *uint_ptr = udpinerrors;
darran 0:ac21159e27f4 3831 break;
darran 0:ac21159e27f4 3832 case 4: /* udpOutDatagrams */
darran 0:ac21159e27f4 3833 *uint_ptr = udpoutdatagrams;
darran 0:ac21159e27f4 3834 break;
darran 0:ac21159e27f4 3835 }
darran 0:ac21159e27f4 3836 }
darran 0:ac21159e27f4 3837
darran 0:ac21159e27f4 3838 static void
darran 0:ac21159e27f4 3839 udpentry_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3840 {
darran 0:ac21159e27f4 3841 /* return to object name, adding index depth (5) */
darran 0:ac21159e27f4 3842 ident_len += 5;
darran 0:ac21159e27f4 3843 ident -= 5;
darran 0:ac21159e27f4 3844
darran 0:ac21159e27f4 3845 if (ident_len == 6)
darran 0:ac21159e27f4 3846 {
darran 0:ac21159e27f4 3847 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3848 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3849
darran 0:ac21159e27f4 3850 switch (ident[0])
darran 0:ac21159e27f4 3851 {
darran 0:ac21159e27f4 3852 case 1: /* udpLocalAddress */
darran 0:ac21159e27f4 3853 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3854 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3855 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR);
darran 0:ac21159e27f4 3856 od->v_len = 4;
darran 0:ac21159e27f4 3857 break;
darran 0:ac21159e27f4 3858 case 2: /* udpLocalPort */
darran 0:ac21159e27f4 3859 od->instance = MIB_OBJECT_TAB;
darran 0:ac21159e27f4 3860 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3861 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3862 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3863 break;
darran 0:ac21159e27f4 3864 default:
darran 0:ac21159e27f4 3865 LWIP_DEBUGF(SNMP_MIB_DEBUG,("udpentry_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3866 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3867 break;
darran 0:ac21159e27f4 3868 }
darran 0:ac21159e27f4 3869 }
darran 0:ac21159e27f4 3870 else
darran 0:ac21159e27f4 3871 {
darran 0:ac21159e27f4 3872 LWIP_DEBUGF(SNMP_MIB_DEBUG,("udpentry_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3873 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3874 }
darran 0:ac21159e27f4 3875 }
darran 0:ac21159e27f4 3876
darran 0:ac21159e27f4 3877 static void
darran 0:ac21159e27f4 3878 udpentry_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3879 {
darran 0:ac21159e27f4 3880 u8_t id;
darran 0:ac21159e27f4 3881 struct udp_pcb *pcb;
darran 0:ac21159e27f4 3882 ip_addr_t ip;
darran 0:ac21159e27f4 3883 u16_t port;
darran 0:ac21159e27f4 3884
darran 0:ac21159e27f4 3885 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3886 snmp_oidtoip(&od->id_inst_ptr[1], &ip);
darran 0:ac21159e27f4 3887 LWIP_ASSERT("invalid port", (od->id_inst_ptr[5] >= 0) && (od->id_inst_ptr[5] <= 0xffff));
darran 0:ac21159e27f4 3888 port = (u16_t)od->id_inst_ptr[5];
darran 0:ac21159e27f4 3889
darran 0:ac21159e27f4 3890 pcb = udp_pcbs;
darran 0:ac21159e27f4 3891 while ((pcb != NULL) &&
darran 0:ac21159e27f4 3892 !(ip_addr_cmp(&pcb->local_ip, &ip) &&
darran 0:ac21159e27f4 3893 (pcb->local_port == port)))
darran 0:ac21159e27f4 3894 {
darran 0:ac21159e27f4 3895 pcb = pcb->next;
darran 0:ac21159e27f4 3896 }
darran 0:ac21159e27f4 3897
darran 0:ac21159e27f4 3898 if (pcb != NULL)
darran 0:ac21159e27f4 3899 {
darran 0:ac21159e27f4 3900 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3901 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3902 switch (id)
darran 0:ac21159e27f4 3903 {
darran 0:ac21159e27f4 3904 case 1: /* udpLocalAddress */
darran 0:ac21159e27f4 3905 {
darran 0:ac21159e27f4 3906 ip_addr_t *dst = (ip_addr_t*)value;
darran 0:ac21159e27f4 3907 *dst = pcb->local_ip;
darran 0:ac21159e27f4 3908 }
darran 0:ac21159e27f4 3909 break;
darran 0:ac21159e27f4 3910 case 2: /* udpLocalPort */
darran 0:ac21159e27f4 3911 {
darran 0:ac21159e27f4 3912 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 3913 *sint_ptr = pcb->local_port;
darran 0:ac21159e27f4 3914 }
darran 0:ac21159e27f4 3915 break;
darran 0:ac21159e27f4 3916 }
darran 0:ac21159e27f4 3917 }
darran 0:ac21159e27f4 3918 }
darran 0:ac21159e27f4 3919
darran 0:ac21159e27f4 3920 static void
darran 0:ac21159e27f4 3921 snmp_get_object_def(u8_t ident_len, s32_t *ident, struct obj_def *od)
darran 0:ac21159e27f4 3922 {
darran 0:ac21159e27f4 3923 /* return to object name, adding index depth (1) */
darran 0:ac21159e27f4 3924 ident_len += 1;
darran 0:ac21159e27f4 3925 ident -= 1;
darran 0:ac21159e27f4 3926 if (ident_len == 2)
darran 0:ac21159e27f4 3927 {
darran 0:ac21159e27f4 3928 u8_t id;
darran 0:ac21159e27f4 3929
darran 0:ac21159e27f4 3930 od->id_inst_len = ident_len;
darran 0:ac21159e27f4 3931 od->id_inst_ptr = ident;
darran 0:ac21159e27f4 3932
darran 0:ac21159e27f4 3933 LWIP_ASSERT("invalid id", (ident[0] >= 0) && (ident[0] <= 0xff));
darran 0:ac21159e27f4 3934 id = (u8_t)ident[0];
darran 0:ac21159e27f4 3935 switch (id)
darran 0:ac21159e27f4 3936 {
darran 0:ac21159e27f4 3937 case 1: /* snmpInPkts */
darran 0:ac21159e27f4 3938 case 2: /* snmpOutPkts */
darran 0:ac21159e27f4 3939 case 3: /* snmpInBadVersions */
darran 0:ac21159e27f4 3940 case 4: /* snmpInBadCommunityNames */
darran 0:ac21159e27f4 3941 case 5: /* snmpInBadCommunityUses */
darran 0:ac21159e27f4 3942 case 6: /* snmpInASNParseErrs */
darran 0:ac21159e27f4 3943 case 8: /* snmpInTooBigs */
darran 0:ac21159e27f4 3944 case 9: /* snmpInNoSuchNames */
darran 0:ac21159e27f4 3945 case 10: /* snmpInBadValues */
darran 0:ac21159e27f4 3946 case 11: /* snmpInReadOnlys */
darran 0:ac21159e27f4 3947 case 12: /* snmpInGenErrs */
darran 0:ac21159e27f4 3948 case 13: /* snmpInTotalReqVars */
darran 0:ac21159e27f4 3949 case 14: /* snmpInTotalSetVars */
darran 0:ac21159e27f4 3950 case 15: /* snmpInGetRequests */
darran 0:ac21159e27f4 3951 case 16: /* snmpInGetNexts */
darran 0:ac21159e27f4 3952 case 17: /* snmpInSetRequests */
darran 0:ac21159e27f4 3953 case 18: /* snmpInGetResponses */
darran 0:ac21159e27f4 3954 case 19: /* snmpInTraps */
darran 0:ac21159e27f4 3955 case 20: /* snmpOutTooBigs */
darran 0:ac21159e27f4 3956 case 21: /* snmpOutNoSuchNames */
darran 0:ac21159e27f4 3957 case 22: /* snmpOutBadValues */
darran 0:ac21159e27f4 3958 case 24: /* snmpOutGenErrs */
darran 0:ac21159e27f4 3959 case 25: /* snmpOutGetRequests */
darran 0:ac21159e27f4 3960 case 26: /* snmpOutGetNexts */
darran 0:ac21159e27f4 3961 case 27: /* snmpOutSetRequests */
darran 0:ac21159e27f4 3962 case 28: /* snmpOutGetResponses */
darran 0:ac21159e27f4 3963 case 29: /* snmpOutTraps */
darran 0:ac21159e27f4 3964 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 3965 od->access = MIB_OBJECT_READ_ONLY;
darran 0:ac21159e27f4 3966 od->asn_type = (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER);
darran 0:ac21159e27f4 3967 od->v_len = sizeof(u32_t);
darran 0:ac21159e27f4 3968 break;
darran 0:ac21159e27f4 3969 case 30: /* snmpEnableAuthenTraps */
darran 0:ac21159e27f4 3970 od->instance = MIB_OBJECT_SCALAR;
darran 0:ac21159e27f4 3971 od->access = MIB_OBJECT_READ_WRITE;
darran 0:ac21159e27f4 3972 od->asn_type = (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG);
darran 0:ac21159e27f4 3973 od->v_len = sizeof(s32_t);
darran 0:ac21159e27f4 3974 break;
darran 0:ac21159e27f4 3975 default:
darran 0:ac21159e27f4 3976 LWIP_DEBUGF(SNMP_MIB_DEBUG,("snmp_get_object_def: no such object\n"));
darran 0:ac21159e27f4 3977 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3978 break;
darran 0:ac21159e27f4 3979 };
darran 0:ac21159e27f4 3980 }
darran 0:ac21159e27f4 3981 else
darran 0:ac21159e27f4 3982 {
darran 0:ac21159e27f4 3983 LWIP_DEBUGF(SNMP_MIB_DEBUG,("snmp_get_object_def: no scalar\n"));
darran 0:ac21159e27f4 3984 od->instance = MIB_OBJECT_NONE;
darran 0:ac21159e27f4 3985 }
darran 0:ac21159e27f4 3986 }
darran 0:ac21159e27f4 3987
darran 0:ac21159e27f4 3988 static void
darran 0:ac21159e27f4 3989 snmp_get_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 3990 {
darran 0:ac21159e27f4 3991 u32_t *uint_ptr = (u32_t*)value;
darran 0:ac21159e27f4 3992 u8_t id;
darran 0:ac21159e27f4 3993
darran 0:ac21159e27f4 3994 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 3995 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 3996 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 3997 switch (id)
darran 0:ac21159e27f4 3998 {
darran 0:ac21159e27f4 3999 case 1: /* snmpInPkts */
darran 0:ac21159e27f4 4000 *uint_ptr = snmpinpkts;
darran 0:ac21159e27f4 4001 break;
darran 0:ac21159e27f4 4002 case 2: /* snmpOutPkts */
darran 0:ac21159e27f4 4003 *uint_ptr = snmpoutpkts;
darran 0:ac21159e27f4 4004 break;
darran 0:ac21159e27f4 4005 case 3: /* snmpInBadVersions */
darran 0:ac21159e27f4 4006 *uint_ptr = snmpinbadversions;
darran 0:ac21159e27f4 4007 break;
darran 0:ac21159e27f4 4008 case 4: /* snmpInBadCommunityNames */
darran 0:ac21159e27f4 4009 *uint_ptr = snmpinbadcommunitynames;
darran 0:ac21159e27f4 4010 break;
darran 0:ac21159e27f4 4011 case 5: /* snmpInBadCommunityUses */
darran 0:ac21159e27f4 4012 *uint_ptr = snmpinbadcommunityuses;
darran 0:ac21159e27f4 4013 break;
darran 0:ac21159e27f4 4014 case 6: /* snmpInASNParseErrs */
darran 0:ac21159e27f4 4015 *uint_ptr = snmpinasnparseerrs;
darran 0:ac21159e27f4 4016 break;
darran 0:ac21159e27f4 4017 case 8: /* snmpInTooBigs */
darran 0:ac21159e27f4 4018 *uint_ptr = snmpintoobigs;
darran 0:ac21159e27f4 4019 break;
darran 0:ac21159e27f4 4020 case 9: /* snmpInNoSuchNames */
darran 0:ac21159e27f4 4021 *uint_ptr = snmpinnosuchnames;
darran 0:ac21159e27f4 4022 break;
darran 0:ac21159e27f4 4023 case 10: /* snmpInBadValues */
darran 0:ac21159e27f4 4024 *uint_ptr = snmpinbadvalues;
darran 0:ac21159e27f4 4025 break;
darran 0:ac21159e27f4 4026 case 11: /* snmpInReadOnlys */
darran 0:ac21159e27f4 4027 *uint_ptr = snmpinreadonlys;
darran 0:ac21159e27f4 4028 break;
darran 0:ac21159e27f4 4029 case 12: /* snmpInGenErrs */
darran 0:ac21159e27f4 4030 *uint_ptr = snmpingenerrs;
darran 0:ac21159e27f4 4031 break;
darran 0:ac21159e27f4 4032 case 13: /* snmpInTotalReqVars */
darran 0:ac21159e27f4 4033 *uint_ptr = snmpintotalreqvars;
darran 0:ac21159e27f4 4034 break;
darran 0:ac21159e27f4 4035 case 14: /* snmpInTotalSetVars */
darran 0:ac21159e27f4 4036 *uint_ptr = snmpintotalsetvars;
darran 0:ac21159e27f4 4037 break;
darran 0:ac21159e27f4 4038 case 15: /* snmpInGetRequests */
darran 0:ac21159e27f4 4039 *uint_ptr = snmpingetrequests;
darran 0:ac21159e27f4 4040 break;
darran 0:ac21159e27f4 4041 case 16: /* snmpInGetNexts */
darran 0:ac21159e27f4 4042 *uint_ptr = snmpingetnexts;
darran 0:ac21159e27f4 4043 break;
darran 0:ac21159e27f4 4044 case 17: /* snmpInSetRequests */
darran 0:ac21159e27f4 4045 *uint_ptr = snmpinsetrequests;
darran 0:ac21159e27f4 4046 break;
darran 0:ac21159e27f4 4047 case 18: /* snmpInGetResponses */
darran 0:ac21159e27f4 4048 *uint_ptr = snmpingetresponses;
darran 0:ac21159e27f4 4049 break;
darran 0:ac21159e27f4 4050 case 19: /* snmpInTraps */
darran 0:ac21159e27f4 4051 *uint_ptr = snmpintraps;
darran 0:ac21159e27f4 4052 break;
darran 0:ac21159e27f4 4053 case 20: /* snmpOutTooBigs */
darran 0:ac21159e27f4 4054 *uint_ptr = snmpouttoobigs;
darran 0:ac21159e27f4 4055 break;
darran 0:ac21159e27f4 4056 case 21: /* snmpOutNoSuchNames */
darran 0:ac21159e27f4 4057 *uint_ptr = snmpoutnosuchnames;
darran 0:ac21159e27f4 4058 break;
darran 0:ac21159e27f4 4059 case 22: /* snmpOutBadValues */
darran 0:ac21159e27f4 4060 *uint_ptr = snmpoutbadvalues;
darran 0:ac21159e27f4 4061 break;
darran 0:ac21159e27f4 4062 case 24: /* snmpOutGenErrs */
darran 0:ac21159e27f4 4063 *uint_ptr = snmpoutgenerrs;
darran 0:ac21159e27f4 4064 break;
darran 0:ac21159e27f4 4065 case 25: /* snmpOutGetRequests */
darran 0:ac21159e27f4 4066 *uint_ptr = snmpoutgetrequests;
darran 0:ac21159e27f4 4067 break;
darran 0:ac21159e27f4 4068 case 26: /* snmpOutGetNexts */
darran 0:ac21159e27f4 4069 *uint_ptr = snmpoutgetnexts;
darran 0:ac21159e27f4 4070 break;
darran 0:ac21159e27f4 4071 case 27: /* snmpOutSetRequests */
darran 0:ac21159e27f4 4072 *uint_ptr = snmpoutsetrequests;
darran 0:ac21159e27f4 4073 break;
darran 0:ac21159e27f4 4074 case 28: /* snmpOutGetResponses */
darran 0:ac21159e27f4 4075 *uint_ptr = snmpoutgetresponses;
darran 0:ac21159e27f4 4076 break;
darran 0:ac21159e27f4 4077 case 29: /* snmpOutTraps */
darran 0:ac21159e27f4 4078 *uint_ptr = snmpouttraps;
darran 0:ac21159e27f4 4079 break;
darran 0:ac21159e27f4 4080 case 30: /* snmpEnableAuthenTraps */
darran 0:ac21159e27f4 4081 *uint_ptr = *snmpenableauthentraps_ptr;
darran 0:ac21159e27f4 4082 break;
darran 0:ac21159e27f4 4083 };
darran 0:ac21159e27f4 4084 }
darran 0:ac21159e27f4 4085
darran 0:ac21159e27f4 4086 /**
darran 0:ac21159e27f4 4087 * Test snmp object value before setting.
darran 0:ac21159e27f4 4088 *
darran 0:ac21159e27f4 4089 * @param od is the object definition
darran 0:ac21159e27f4 4090 * @param len return value space (in bytes)
darran 0:ac21159e27f4 4091 * @param value points to (varbind) space to copy value from.
darran 0:ac21159e27f4 4092 */
darran 0:ac21159e27f4 4093 static u8_t
darran 0:ac21159e27f4 4094 snmp_set_test(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 4095 {
darran 0:ac21159e27f4 4096 u8_t id, set_ok;
darran 0:ac21159e27f4 4097
darran 0:ac21159e27f4 4098 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 4099 set_ok = 0;
darran 0:ac21159e27f4 4100 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 4101 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 4102 if (id == 30)
darran 0:ac21159e27f4 4103 {
darran 0:ac21159e27f4 4104 /* snmpEnableAuthenTraps */
darran 0:ac21159e27f4 4105 s32_t *sint_ptr = (s32_t*)value;
darran 0:ac21159e27f4 4106
darran 0:ac21159e27f4 4107 if (snmpenableauthentraps_ptr != &snmpenableauthentraps_default)
darran 0:ac21159e27f4 4108 {
darran 0:ac21159e27f4 4109 /* we should have writable non-volatile mem here */
darran 0:ac21159e27f4 4110 if ((*sint_ptr == 1) || (*sint_ptr == 2))
darran 0:ac21159e27f4 4111 {
darran 0:ac21159e27f4 4112 set_ok = 1;
darran 0:ac21159e27f4 4113 }
darran 0:ac21159e27f4 4114 }
darran 0:ac21159e27f4 4115 else
darran 0:ac21159e27f4 4116 {
darran 0:ac21159e27f4 4117 /* const or hardwired value */
darran 0:ac21159e27f4 4118 if (*sint_ptr == snmpenableauthentraps_default)
darran 0:ac21159e27f4 4119 {
darran 0:ac21159e27f4 4120 set_ok = 1;
darran 0:ac21159e27f4 4121 }
darran 0:ac21159e27f4 4122 }
darran 0:ac21159e27f4 4123 }
darran 0:ac21159e27f4 4124 return set_ok;
darran 0:ac21159e27f4 4125 }
darran 0:ac21159e27f4 4126
darran 0:ac21159e27f4 4127 static void
darran 0:ac21159e27f4 4128 snmp_set_value(struct obj_def *od, u16_t len, void *value)
darran 0:ac21159e27f4 4129 {
darran 0:ac21159e27f4 4130 u8_t id;
darran 0:ac21159e27f4 4131
darran 0:ac21159e27f4 4132 LWIP_UNUSED_ARG(len);
darran 0:ac21159e27f4 4133 LWIP_ASSERT("invalid id", (od->id_inst_ptr[0] >= 0) && (od->id_inst_ptr[0] <= 0xff));
darran 0:ac21159e27f4 4134 id = (u8_t)od->id_inst_ptr[0];
darran 0:ac21159e27f4 4135 if (id == 30)
darran 0:ac21159e27f4 4136 {
darran 0:ac21159e27f4 4137 /* snmpEnableAuthenTraps */
darran 0:ac21159e27f4 4138 /* @todo @fixme: which kind of pointer is 'value'? s32_t or u8_t??? */
darran 0:ac21159e27f4 4139 u8_t *ptr = (u8_t*)value;
darran 0:ac21159e27f4 4140 *snmpenableauthentraps_ptr = *ptr;
darran 0:ac21159e27f4 4141 }
darran 0:ac21159e27f4 4142 }
darran 0:ac21159e27f4 4143
darran 0:ac21159e27f4 4144 #endif /* LWIP_SNMP */