Some quick code to use UDP-only (no TCP) with mBed. Echos received packets and sends packets when a button is pressed

Dependencies:   mbed

Committer:
pehrhovey
Date:
Sun Mar 14 00:54:12 2010 +0000
Revision:
0:a548a085de55

        

Who changed what in which revision?

UserRevisionLine numberNew contents of line
pehrhovey 0:a548a085de55 1 /**
pehrhovey 0:a548a085de55 2 * @file
pehrhovey 0:a548a085de55 3 * SNMP output message processing (RFC1157).
pehrhovey 0:a548a085de55 4 *
pehrhovey 0:a548a085de55 5 * Output responses and traps are build in two passes:
pehrhovey 0:a548a085de55 6 *
pehrhovey 0:a548a085de55 7 * Pass 0: iterate over the output message backwards to determine encoding lengths
pehrhovey 0:a548a085de55 8 * Pass 1: the actual forward encoding of internal form into ASN1
pehrhovey 0:a548a085de55 9 *
pehrhovey 0:a548a085de55 10 * The single-pass encoding method described by Comer & Stevens
pehrhovey 0:a548a085de55 11 * requires extra buffer space and copying for reversal of the packet.
pehrhovey 0:a548a085de55 12 * The buffer requirement can be prohibitively large for big payloads
pehrhovey 0:a548a085de55 13 * (>= 484) therefore we use the two encoding passes.
pehrhovey 0:a548a085de55 14 */
pehrhovey 0:a548a085de55 15
pehrhovey 0:a548a085de55 16 /*
pehrhovey 0:a548a085de55 17 * Copyright (c) 2006 Axon Digital Design B.V., The Netherlands.
pehrhovey 0:a548a085de55 18 * All rights reserved.
pehrhovey 0:a548a085de55 19 *
pehrhovey 0:a548a085de55 20 * Redistribution and use in source and binary forms, with or without modification,
pehrhovey 0:a548a085de55 21 * are permitted provided that the following conditions are met:
pehrhovey 0:a548a085de55 22 *
pehrhovey 0:a548a085de55 23 * 1. Redistributions of source code must retain the above copyright notice,
pehrhovey 0:a548a085de55 24 * this list of conditions and the following disclaimer.
pehrhovey 0:a548a085de55 25 * 2. Redistributions in binary form must reproduce the above copyright notice,
pehrhovey 0:a548a085de55 26 * this list of conditions and the following disclaimer in the documentation
pehrhovey 0:a548a085de55 27 * and/or other materials provided with the distribution.
pehrhovey 0:a548a085de55 28 * 3. The name of the author may not be used to endorse or promote products
pehrhovey 0:a548a085de55 29 * derived from this software without specific prior written permission.
pehrhovey 0:a548a085de55 30 *
pehrhovey 0:a548a085de55 31 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
pehrhovey 0:a548a085de55 32 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
pehrhovey 0:a548a085de55 33 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
pehrhovey 0:a548a085de55 34 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
pehrhovey 0:a548a085de55 35 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
pehrhovey 0:a548a085de55 36 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
pehrhovey 0:a548a085de55 37 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
pehrhovey 0:a548a085de55 38 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
pehrhovey 0:a548a085de55 39 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
pehrhovey 0:a548a085de55 40 * OF SUCH DAMAGE.
pehrhovey 0:a548a085de55 41 *
pehrhovey 0:a548a085de55 42 * Author: Christiaan Simons <christiaan.simons@axon.tv>
pehrhovey 0:a548a085de55 43 */
pehrhovey 0:a548a085de55 44
pehrhovey 0:a548a085de55 45 #include "lwip/opt.h"
pehrhovey 0:a548a085de55 46
pehrhovey 0:a548a085de55 47 #if LWIP_SNMP /* don't build if not configured for use in lwipopts.h */
pehrhovey 0:a548a085de55 48
pehrhovey 0:a548a085de55 49 #include "lwip/udp.h"
pehrhovey 0:a548a085de55 50 #include "lwip/netif.h"
pehrhovey 0:a548a085de55 51 #include "lwip/snmp.h"
pehrhovey 0:a548a085de55 52 #include "lwip/snmp_asn1.h"
pehrhovey 0:a548a085de55 53 #include "lwip/snmp_msg.h"
pehrhovey 0:a548a085de55 54
pehrhovey 0:a548a085de55 55 struct snmp_trap_dst
pehrhovey 0:a548a085de55 56 {
pehrhovey 0:a548a085de55 57 /* destination IP address in network order */
pehrhovey 0:a548a085de55 58 struct ip_addr dip;
pehrhovey 0:a548a085de55 59 /* set to 0 when disabled, >0 when enabled */
pehrhovey 0:a548a085de55 60 u8_t enable;
pehrhovey 0:a548a085de55 61 };
pehrhovey 0:a548a085de55 62 struct snmp_trap_dst trap_dst[SNMP_TRAP_DESTINATIONS];
pehrhovey 0:a548a085de55 63
pehrhovey 0:a548a085de55 64 /** TRAP message structure */
pehrhovey 0:a548a085de55 65 struct snmp_msg_trap trap_msg;
pehrhovey 0:a548a085de55 66
pehrhovey 0:a548a085de55 67 static u16_t snmp_resp_header_sum(struct snmp_msg_pstat *m_stat, u16_t vb_len);
pehrhovey 0:a548a085de55 68 static u16_t snmp_trap_header_sum(struct snmp_msg_trap *m_trap, u16_t vb_len);
pehrhovey 0:a548a085de55 69 static u16_t snmp_varbind_list_sum(struct snmp_varbind_root *root);
pehrhovey 0:a548a085de55 70
pehrhovey 0:a548a085de55 71 static u16_t snmp_resp_header_enc(struct snmp_msg_pstat *m_stat, struct pbuf *p);
pehrhovey 0:a548a085de55 72 static u16_t snmp_trap_header_enc(struct snmp_msg_trap *m_trap, struct pbuf *p);
pehrhovey 0:a548a085de55 73 static u16_t snmp_varbind_list_enc(struct snmp_varbind_root *root, struct pbuf *p, u16_t ofs);
pehrhovey 0:a548a085de55 74
pehrhovey 0:a548a085de55 75 /**
pehrhovey 0:a548a085de55 76 * Sets enable switch for this trap destination.
pehrhovey 0:a548a085de55 77 * @param dst_idx index in 0 .. SNMP_TRAP_DESTINATIONS-1
pehrhovey 0:a548a085de55 78 * @param enable switch if 0 destination is disabled >0 enabled.
pehrhovey 0:a548a085de55 79 */
pehrhovey 0:a548a085de55 80 void
pehrhovey 0:a548a085de55 81 snmp_trap_dst_enable(u8_t dst_idx, u8_t enable)
pehrhovey 0:a548a085de55 82 {
pehrhovey 0:a548a085de55 83 if (dst_idx < SNMP_TRAP_DESTINATIONS)
pehrhovey 0:a548a085de55 84 {
pehrhovey 0:a548a085de55 85 trap_dst[dst_idx].enable = enable;
pehrhovey 0:a548a085de55 86 }
pehrhovey 0:a548a085de55 87 }
pehrhovey 0:a548a085de55 88
pehrhovey 0:a548a085de55 89 /**
pehrhovey 0:a548a085de55 90 * Sets IPv4 address for this trap destination.
pehrhovey 0:a548a085de55 91 * @param dst_idx index in 0 .. SNMP_TRAP_DESTINATIONS-1
pehrhovey 0:a548a085de55 92 * @param dst IPv4 address in host order.
pehrhovey 0:a548a085de55 93 */
pehrhovey 0:a548a085de55 94 void
pehrhovey 0:a548a085de55 95 snmp_trap_dst_ip_set(u8_t dst_idx, struct ip_addr *dst)
pehrhovey 0:a548a085de55 96 {
pehrhovey 0:a548a085de55 97 if (dst_idx < SNMP_TRAP_DESTINATIONS)
pehrhovey 0:a548a085de55 98 {
pehrhovey 0:a548a085de55 99 trap_dst[dst_idx].dip.addr = htonl(dst->addr);
pehrhovey 0:a548a085de55 100 }
pehrhovey 0:a548a085de55 101 }
pehrhovey 0:a548a085de55 102
pehrhovey 0:a548a085de55 103 /**
pehrhovey 0:a548a085de55 104 * Sends a 'getresponse' message to the request originator.
pehrhovey 0:a548a085de55 105 *
pehrhovey 0:a548a085de55 106 * @param m_stat points to the current message request state source
pehrhovey 0:a548a085de55 107 * @return ERR_OK when success, ERR_MEM if we're out of memory
pehrhovey 0:a548a085de55 108 *
pehrhovey 0:a548a085de55 109 * @note the caller is responsible for filling in outvb in the m_stat
pehrhovey 0:a548a085de55 110 * and provide error-status and index (except for tooBig errors) ...
pehrhovey 0:a548a085de55 111 */
pehrhovey 0:a548a085de55 112 err_t
pehrhovey 0:a548a085de55 113 snmp_send_response(struct snmp_msg_pstat *m_stat)
pehrhovey 0:a548a085de55 114 {
pehrhovey 0:a548a085de55 115 struct snmp_varbind_root emptyvb = {NULL, NULL, 0, 0, 0};
pehrhovey 0:a548a085de55 116 struct pbuf *p;
pehrhovey 0:a548a085de55 117 u16_t tot_len;
pehrhovey 0:a548a085de55 118 err_t err;
pehrhovey 0:a548a085de55 119
pehrhovey 0:a548a085de55 120 /* pass 0, calculate length fields */
pehrhovey 0:a548a085de55 121 tot_len = snmp_varbind_list_sum(&m_stat->outvb);
pehrhovey 0:a548a085de55 122 tot_len = snmp_resp_header_sum(m_stat, tot_len);
pehrhovey 0:a548a085de55 123
pehrhovey 0:a548a085de55 124 /* try allocating pbuf(s) for complete response */
pehrhovey 0:a548a085de55 125 p = pbuf_alloc(PBUF_TRANSPORT, tot_len, PBUF_POOL);
pehrhovey 0:a548a085de55 126 if (p == NULL)
pehrhovey 0:a548a085de55 127 {
pehrhovey 0:a548a085de55 128 LWIP_DEBUGF(SNMP_MSG_DEBUG, ("snmp_snd_response() tooBig\n"));
pehrhovey 0:a548a085de55 129
pehrhovey 0:a548a085de55 130 /* can't construct reply, return error-status tooBig */
pehrhovey 0:a548a085de55 131 m_stat->error_status = SNMP_ES_TOOBIG;
pehrhovey 0:a548a085de55 132 m_stat->error_index = 0;
pehrhovey 0:a548a085de55 133 /* pass 0, recalculate lengths, for empty varbind-list */
pehrhovey 0:a548a085de55 134 tot_len = snmp_varbind_list_sum(&emptyvb);
pehrhovey 0:a548a085de55 135 tot_len = snmp_resp_header_sum(m_stat, tot_len);
pehrhovey 0:a548a085de55 136 /* retry allocation once for header and empty varbind-list */
pehrhovey 0:a548a085de55 137 p = pbuf_alloc(PBUF_TRANSPORT, tot_len, PBUF_POOL);
pehrhovey 0:a548a085de55 138 }
pehrhovey 0:a548a085de55 139 if (p != NULL)
pehrhovey 0:a548a085de55 140 {
pehrhovey 0:a548a085de55 141 /* first pbuf alloc try or retry alloc success */
pehrhovey 0:a548a085de55 142 u16_t ofs;
pehrhovey 0:a548a085de55 143
pehrhovey 0:a548a085de55 144 LWIP_DEBUGF(SNMP_MSG_DEBUG, ("snmp_snd_response() p != NULL\n"));
pehrhovey 0:a548a085de55 145
pehrhovey 0:a548a085de55 146 /* pass 1, size error, encode packet ino the pbuf(s) */
pehrhovey 0:a548a085de55 147 ofs = snmp_resp_header_enc(m_stat, p);
pehrhovey 0:a548a085de55 148 if (m_stat->error_status == SNMP_ES_TOOBIG)
pehrhovey 0:a548a085de55 149 {
pehrhovey 0:a548a085de55 150 snmp_varbind_list_enc(&emptyvb, p, ofs);
pehrhovey 0:a548a085de55 151 }
pehrhovey 0:a548a085de55 152 else
pehrhovey 0:a548a085de55 153 {
pehrhovey 0:a548a085de55 154 snmp_varbind_list_enc(&m_stat->outvb, p, ofs);
pehrhovey 0:a548a085de55 155 }
pehrhovey 0:a548a085de55 156
pehrhovey 0:a548a085de55 157 switch (m_stat->error_status)
pehrhovey 0:a548a085de55 158 {
pehrhovey 0:a548a085de55 159 case SNMP_ES_TOOBIG:
pehrhovey 0:a548a085de55 160 snmp_inc_snmpouttoobigs();
pehrhovey 0:a548a085de55 161 break;
pehrhovey 0:a548a085de55 162 case SNMP_ES_NOSUCHNAME:
pehrhovey 0:a548a085de55 163 snmp_inc_snmpoutnosuchnames();
pehrhovey 0:a548a085de55 164 break;
pehrhovey 0:a548a085de55 165 case SNMP_ES_BADVALUE:
pehrhovey 0:a548a085de55 166 snmp_inc_snmpoutbadvalues();
pehrhovey 0:a548a085de55 167 break;
pehrhovey 0:a548a085de55 168 case SNMP_ES_GENERROR:
pehrhovey 0:a548a085de55 169 snmp_inc_snmpoutgenerrs();
pehrhovey 0:a548a085de55 170 break;
pehrhovey 0:a548a085de55 171 }
pehrhovey 0:a548a085de55 172 snmp_inc_snmpoutgetresponses();
pehrhovey 0:a548a085de55 173 snmp_inc_snmpoutpkts();
pehrhovey 0:a548a085de55 174
pehrhovey 0:a548a085de55 175 /** @todo do we need separate rx and tx pcbs for threaded case? */
pehrhovey 0:a548a085de55 176 /** connect to the originating source */
pehrhovey 0:a548a085de55 177 udp_connect(m_stat->pcb, &m_stat->sip, m_stat->sp);
pehrhovey 0:a548a085de55 178 err = udp_send(m_stat->pcb, p);
pehrhovey 0:a548a085de55 179 if (err == ERR_MEM)
pehrhovey 0:a548a085de55 180 {
pehrhovey 0:a548a085de55 181 /** @todo release some memory, retry and return tooBig? tooMuchHassle? */
pehrhovey 0:a548a085de55 182 err = ERR_MEM;
pehrhovey 0:a548a085de55 183 }
pehrhovey 0:a548a085de55 184 else
pehrhovey 0:a548a085de55 185 {
pehrhovey 0:a548a085de55 186 err = ERR_OK;
pehrhovey 0:a548a085de55 187 }
pehrhovey 0:a548a085de55 188 /** disassociate remote address and port with this pcb */
pehrhovey 0:a548a085de55 189 udp_disconnect(m_stat->pcb);
pehrhovey 0:a548a085de55 190
pehrhovey 0:a548a085de55 191 pbuf_free(p);
pehrhovey 0:a548a085de55 192 LWIP_DEBUGF(SNMP_MSG_DEBUG, ("snmp_snd_response() done\n"));
pehrhovey 0:a548a085de55 193 return err;
pehrhovey 0:a548a085de55 194 }
pehrhovey 0:a548a085de55 195 else
pehrhovey 0:a548a085de55 196 {
pehrhovey 0:a548a085de55 197 /* first pbuf alloc try or retry alloc failed
pehrhovey 0:a548a085de55 198 very low on memory, couldn't return tooBig */
pehrhovey 0:a548a085de55 199 return ERR_MEM;
pehrhovey 0:a548a085de55 200 }
pehrhovey 0:a548a085de55 201 }
pehrhovey 0:a548a085de55 202
pehrhovey 0:a548a085de55 203
pehrhovey 0:a548a085de55 204 /**
pehrhovey 0:a548a085de55 205 * Sends an generic or enterprise specific trap message.
pehrhovey 0:a548a085de55 206 *
pehrhovey 0:a548a085de55 207 * @param generic_trap is the trap code
pehrhovey 0:a548a085de55 208 * @param eoid points to enterprise object identifier
pehrhovey 0:a548a085de55 209 * @param specific_trap used for enterprise traps when generic_trap == 6
pehrhovey 0:a548a085de55 210 * @return ERR_OK when success, ERR_MEM if we're out of memory
pehrhovey 0:a548a085de55 211 *
pehrhovey 0:a548a085de55 212 * @note the caller is responsible for filling in outvb in the trap_msg
pehrhovey 0:a548a085de55 213 * @note the use of the enterpise identifier field
pehrhovey 0:a548a085de55 214 * is per RFC1215.
pehrhovey 0:a548a085de55 215 * Use .iso.org.dod.internet.mgmt.mib-2.snmp for generic traps
pehrhovey 0:a548a085de55 216 * and .iso.org.dod.internet.private.enterprises.yourenterprise
pehrhovey 0:a548a085de55 217 * (sysObjectID) for specific traps.
pehrhovey 0:a548a085de55 218 */
pehrhovey 0:a548a085de55 219 err_t
pehrhovey 0:a548a085de55 220 snmp_send_trap(s8_t generic_trap, struct snmp_obj_id *eoid, s32_t specific_trap)
pehrhovey 0:a548a085de55 221 {
pehrhovey 0:a548a085de55 222 struct snmp_trap_dst *td;
pehrhovey 0:a548a085de55 223 struct netif *dst_if;
pehrhovey 0:a548a085de55 224 struct ip_addr dst_ip;
pehrhovey 0:a548a085de55 225 struct pbuf *p;
pehrhovey 0:a548a085de55 226 u16_t i,tot_len;
pehrhovey 0:a548a085de55 227
pehrhovey 0:a548a085de55 228 for (i=0, td = &trap_dst[0]; i<SNMP_TRAP_DESTINATIONS; i++, td++)
pehrhovey 0:a548a085de55 229 {
pehrhovey 0:a548a085de55 230 if ((td->enable != 0) && (td->dip.addr != 0))
pehrhovey 0:a548a085de55 231 {
pehrhovey 0:a548a085de55 232 /* network order trap destination */
pehrhovey 0:a548a085de55 233 trap_msg.dip.addr = td->dip.addr;
pehrhovey 0:a548a085de55 234 /* lookup current source address for this dst */
pehrhovey 0:a548a085de55 235 dst_if = ip_route(&td->dip);
pehrhovey 0:a548a085de55 236 dst_ip.addr = ntohl(dst_if->ip_addr.addr);
pehrhovey 0:a548a085de55 237 trap_msg.sip_raw[0] = dst_ip.addr >> 24;
pehrhovey 0:a548a085de55 238 trap_msg.sip_raw[1] = dst_ip.addr >> 16;
pehrhovey 0:a548a085de55 239 trap_msg.sip_raw[2] = dst_ip.addr >> 8;
pehrhovey 0:a548a085de55 240 trap_msg.sip_raw[3] = dst_ip.addr;
pehrhovey 0:a548a085de55 241 trap_msg.gen_trap = generic_trap;
pehrhovey 0:a548a085de55 242 trap_msg.spc_trap = specific_trap;
pehrhovey 0:a548a085de55 243 if (generic_trap == SNMP_GENTRAP_ENTERPRISESPC)
pehrhovey 0:a548a085de55 244 {
pehrhovey 0:a548a085de55 245 /* enterprise-Specific trap */
pehrhovey 0:a548a085de55 246 trap_msg.enterprise = eoid;
pehrhovey 0:a548a085de55 247 }
pehrhovey 0:a548a085de55 248 else
pehrhovey 0:a548a085de55 249 {
pehrhovey 0:a548a085de55 250 /* generic (MIB-II) trap */
pehrhovey 0:a548a085de55 251 snmp_get_snmpgrpid_ptr(&trap_msg.enterprise);
pehrhovey 0:a548a085de55 252 }
pehrhovey 0:a548a085de55 253 snmp_get_sysuptime(&trap_msg.ts);
pehrhovey 0:a548a085de55 254
pehrhovey 0:a548a085de55 255 /* pass 0, calculate length fields */
pehrhovey 0:a548a085de55 256 tot_len = snmp_varbind_list_sum(&trap_msg.outvb);
pehrhovey 0:a548a085de55 257 tot_len = snmp_trap_header_sum(&trap_msg, tot_len);
pehrhovey 0:a548a085de55 258
pehrhovey 0:a548a085de55 259 /* allocate pbuf(s) */
pehrhovey 0:a548a085de55 260 p = pbuf_alloc(PBUF_TRANSPORT, tot_len, PBUF_POOL);
pehrhovey 0:a548a085de55 261 if (p != NULL)
pehrhovey 0:a548a085de55 262 {
pehrhovey 0:a548a085de55 263 u16_t ofs;
pehrhovey 0:a548a085de55 264
pehrhovey 0:a548a085de55 265 /* pass 1, encode packet ino the pbuf(s) */
pehrhovey 0:a548a085de55 266 ofs = snmp_trap_header_enc(&trap_msg, p);
pehrhovey 0:a548a085de55 267 snmp_varbind_list_enc(&trap_msg.outvb, p, ofs);
pehrhovey 0:a548a085de55 268
pehrhovey 0:a548a085de55 269 snmp_inc_snmpouttraps();
pehrhovey 0:a548a085de55 270 snmp_inc_snmpoutpkts();
pehrhovey 0:a548a085de55 271
pehrhovey 0:a548a085de55 272 /** connect to the TRAP destination */
pehrhovey 0:a548a085de55 273 udp_connect(trap_msg.pcb, &trap_msg.dip, SNMP_TRAP_PORT);
pehrhovey 0:a548a085de55 274 udp_send(trap_msg.pcb, p);
pehrhovey 0:a548a085de55 275 /** disassociate remote address and port with this pcb */
pehrhovey 0:a548a085de55 276 udp_disconnect(trap_msg.pcb);
pehrhovey 0:a548a085de55 277
pehrhovey 0:a548a085de55 278 pbuf_free(p);
pehrhovey 0:a548a085de55 279 }
pehrhovey 0:a548a085de55 280 else
pehrhovey 0:a548a085de55 281 {
pehrhovey 0:a548a085de55 282 return ERR_MEM;
pehrhovey 0:a548a085de55 283 }
pehrhovey 0:a548a085de55 284 }
pehrhovey 0:a548a085de55 285 }
pehrhovey 0:a548a085de55 286 return ERR_OK;
pehrhovey 0:a548a085de55 287 }
pehrhovey 0:a548a085de55 288
pehrhovey 0:a548a085de55 289 void
pehrhovey 0:a548a085de55 290 snmp_coldstart_trap(void)
pehrhovey 0:a548a085de55 291 {
pehrhovey 0:a548a085de55 292 trap_msg.outvb.head = NULL;
pehrhovey 0:a548a085de55 293 trap_msg.outvb.tail = NULL;
pehrhovey 0:a548a085de55 294 trap_msg.outvb.count = 0;
pehrhovey 0:a548a085de55 295 snmp_send_trap(SNMP_GENTRAP_COLDSTART, NULL, 0);
pehrhovey 0:a548a085de55 296 }
pehrhovey 0:a548a085de55 297
pehrhovey 0:a548a085de55 298 void
pehrhovey 0:a548a085de55 299 snmp_authfail_trap(void)
pehrhovey 0:a548a085de55 300 {
pehrhovey 0:a548a085de55 301 u8_t enable;
pehrhovey 0:a548a085de55 302 snmp_get_snmpenableauthentraps(&enable);
pehrhovey 0:a548a085de55 303 if (enable == 1)
pehrhovey 0:a548a085de55 304 {
pehrhovey 0:a548a085de55 305 trap_msg.outvb.head = NULL;
pehrhovey 0:a548a085de55 306 trap_msg.outvb.tail = NULL;
pehrhovey 0:a548a085de55 307 trap_msg.outvb.count = 0;
pehrhovey 0:a548a085de55 308 snmp_send_trap(SNMP_GENTRAP_AUTHFAIL, NULL, 0);
pehrhovey 0:a548a085de55 309 }
pehrhovey 0:a548a085de55 310 }
pehrhovey 0:a548a085de55 311
pehrhovey 0:a548a085de55 312 /**
pehrhovey 0:a548a085de55 313 * Sums response header field lengths from tail to head and
pehrhovey 0:a548a085de55 314 * returns resp_header_lengths for second encoding pass.
pehrhovey 0:a548a085de55 315 *
pehrhovey 0:a548a085de55 316 * @param vb_len varbind-list length
pehrhovey 0:a548a085de55 317 * @param rhl points to returned header lengths
pehrhovey 0:a548a085de55 318 * @return the required lenght for encoding the response header
pehrhovey 0:a548a085de55 319 */
pehrhovey 0:a548a085de55 320 static u16_t
pehrhovey 0:a548a085de55 321 snmp_resp_header_sum(struct snmp_msg_pstat *m_stat, u16_t vb_len)
pehrhovey 0:a548a085de55 322 {
pehrhovey 0:a548a085de55 323 u16_t tot_len;
pehrhovey 0:a548a085de55 324 struct snmp_resp_header_lengths *rhl;
pehrhovey 0:a548a085de55 325
pehrhovey 0:a548a085de55 326 rhl = &m_stat->rhl;
pehrhovey 0:a548a085de55 327 tot_len = vb_len;
pehrhovey 0:a548a085de55 328 snmp_asn1_enc_s32t_cnt(m_stat->error_index, &rhl->erridxlen);
pehrhovey 0:a548a085de55 329 snmp_asn1_enc_length_cnt(rhl->erridxlen, &rhl->erridxlenlen);
pehrhovey 0:a548a085de55 330 tot_len += 1 + rhl->erridxlenlen + rhl->erridxlen;
pehrhovey 0:a548a085de55 331
pehrhovey 0:a548a085de55 332 snmp_asn1_enc_s32t_cnt(m_stat->error_status, &rhl->errstatlen);
pehrhovey 0:a548a085de55 333 snmp_asn1_enc_length_cnt(rhl->errstatlen, &rhl->errstatlenlen);
pehrhovey 0:a548a085de55 334 tot_len += 1 + rhl->errstatlenlen + rhl->errstatlen;
pehrhovey 0:a548a085de55 335
pehrhovey 0:a548a085de55 336 snmp_asn1_enc_s32t_cnt(m_stat->rid, &rhl->ridlen);
pehrhovey 0:a548a085de55 337 snmp_asn1_enc_length_cnt(rhl->ridlen, &rhl->ridlenlen);
pehrhovey 0:a548a085de55 338 tot_len += 1 + rhl->ridlenlen + rhl->ridlen;
pehrhovey 0:a548a085de55 339
pehrhovey 0:a548a085de55 340 rhl->pdulen = tot_len;
pehrhovey 0:a548a085de55 341 snmp_asn1_enc_length_cnt(rhl->pdulen, &rhl->pdulenlen);
pehrhovey 0:a548a085de55 342 tot_len += 1 + rhl->pdulenlen;
pehrhovey 0:a548a085de55 343
pehrhovey 0:a548a085de55 344 rhl->comlen = m_stat->com_strlen;
pehrhovey 0:a548a085de55 345 snmp_asn1_enc_length_cnt(rhl->comlen, &rhl->comlenlen);
pehrhovey 0:a548a085de55 346 tot_len += 1 + rhl->comlenlen + rhl->comlen;
pehrhovey 0:a548a085de55 347
pehrhovey 0:a548a085de55 348 snmp_asn1_enc_s32t_cnt(snmp_version, &rhl->verlen);
pehrhovey 0:a548a085de55 349 snmp_asn1_enc_length_cnt(rhl->verlen, &rhl->verlenlen);
pehrhovey 0:a548a085de55 350 tot_len += 1 + rhl->verlen + rhl->verlenlen;
pehrhovey 0:a548a085de55 351
pehrhovey 0:a548a085de55 352 rhl->seqlen = tot_len;
pehrhovey 0:a548a085de55 353 snmp_asn1_enc_length_cnt(rhl->seqlen, &rhl->seqlenlen);
pehrhovey 0:a548a085de55 354 tot_len += 1 + rhl->seqlenlen;
pehrhovey 0:a548a085de55 355
pehrhovey 0:a548a085de55 356 return tot_len;
pehrhovey 0:a548a085de55 357 }
pehrhovey 0:a548a085de55 358
pehrhovey 0:a548a085de55 359 /**
pehrhovey 0:a548a085de55 360 * Sums trap header field lengths from tail to head and
pehrhovey 0:a548a085de55 361 * returns trap_header_lengths for second encoding pass.
pehrhovey 0:a548a085de55 362 *
pehrhovey 0:a548a085de55 363 * @param vb_len varbind-list length
pehrhovey 0:a548a085de55 364 * @param thl points to returned header lengths
pehrhovey 0:a548a085de55 365 * @return the required lenght for encoding the trap header
pehrhovey 0:a548a085de55 366 */
pehrhovey 0:a548a085de55 367 static u16_t
pehrhovey 0:a548a085de55 368 snmp_trap_header_sum(struct snmp_msg_trap *m_trap, u16_t vb_len)
pehrhovey 0:a548a085de55 369 {
pehrhovey 0:a548a085de55 370 u16_t tot_len;
pehrhovey 0:a548a085de55 371 struct snmp_trap_header_lengths *thl;
pehrhovey 0:a548a085de55 372
pehrhovey 0:a548a085de55 373 thl = &m_trap->thl;
pehrhovey 0:a548a085de55 374 tot_len = vb_len;
pehrhovey 0:a548a085de55 375
pehrhovey 0:a548a085de55 376 snmp_asn1_enc_u32t_cnt(m_trap->ts, &thl->tslen);
pehrhovey 0:a548a085de55 377 snmp_asn1_enc_length_cnt(thl->tslen, &thl->tslenlen);
pehrhovey 0:a548a085de55 378 tot_len += 1 + thl->tslen + thl->tslenlen;
pehrhovey 0:a548a085de55 379
pehrhovey 0:a548a085de55 380 snmp_asn1_enc_s32t_cnt(m_trap->spc_trap, &thl->strplen);
pehrhovey 0:a548a085de55 381 snmp_asn1_enc_length_cnt(thl->strplen, &thl->strplenlen);
pehrhovey 0:a548a085de55 382 tot_len += 1 + thl->strplen + thl->strplenlen;
pehrhovey 0:a548a085de55 383
pehrhovey 0:a548a085de55 384 snmp_asn1_enc_s32t_cnt(m_trap->gen_trap, &thl->gtrplen);
pehrhovey 0:a548a085de55 385 snmp_asn1_enc_length_cnt(thl->gtrplen, &thl->gtrplenlen);
pehrhovey 0:a548a085de55 386 tot_len += 1 + thl->gtrplen + thl->gtrplenlen;
pehrhovey 0:a548a085de55 387
pehrhovey 0:a548a085de55 388 thl->aaddrlen = 4;
pehrhovey 0:a548a085de55 389 snmp_asn1_enc_length_cnt(thl->aaddrlen, &thl->aaddrlenlen);
pehrhovey 0:a548a085de55 390 tot_len += 1 + thl->aaddrlen + thl->aaddrlenlen;
pehrhovey 0:a548a085de55 391
pehrhovey 0:a548a085de55 392 snmp_asn1_enc_oid_cnt(m_trap->enterprise->len, &m_trap->enterprise->id[0], &thl->eidlen);
pehrhovey 0:a548a085de55 393 snmp_asn1_enc_length_cnt(thl->eidlen, &thl->eidlenlen);
pehrhovey 0:a548a085de55 394 tot_len += 1 + thl->eidlen + thl->eidlenlen;
pehrhovey 0:a548a085de55 395
pehrhovey 0:a548a085de55 396 thl->pdulen = tot_len;
pehrhovey 0:a548a085de55 397 snmp_asn1_enc_length_cnt(thl->pdulen, &thl->pdulenlen);
pehrhovey 0:a548a085de55 398 tot_len += 1 + thl->pdulenlen;
pehrhovey 0:a548a085de55 399
pehrhovey 0:a548a085de55 400 thl->comlen = sizeof(snmp_publiccommunity) - 1;
pehrhovey 0:a548a085de55 401 snmp_asn1_enc_length_cnt(thl->comlen, &thl->comlenlen);
pehrhovey 0:a548a085de55 402 tot_len += 1 + thl->comlenlen + thl->comlen;
pehrhovey 0:a548a085de55 403
pehrhovey 0:a548a085de55 404 snmp_asn1_enc_s32t_cnt(snmp_version, &thl->verlen);
pehrhovey 0:a548a085de55 405 snmp_asn1_enc_length_cnt(thl->verlen, &thl->verlenlen);
pehrhovey 0:a548a085de55 406 tot_len += 1 + thl->verlen + thl->verlenlen;
pehrhovey 0:a548a085de55 407
pehrhovey 0:a548a085de55 408 thl->seqlen = tot_len;
pehrhovey 0:a548a085de55 409 snmp_asn1_enc_length_cnt(thl->seqlen, &thl->seqlenlen);
pehrhovey 0:a548a085de55 410 tot_len += 1 + thl->seqlenlen;
pehrhovey 0:a548a085de55 411
pehrhovey 0:a548a085de55 412 return tot_len;
pehrhovey 0:a548a085de55 413 }
pehrhovey 0:a548a085de55 414
pehrhovey 0:a548a085de55 415 /**
pehrhovey 0:a548a085de55 416 * Sums varbind lengths from tail to head and
pehrhovey 0:a548a085de55 417 * annotates lengths in varbind for second encoding pass.
pehrhovey 0:a548a085de55 418 *
pehrhovey 0:a548a085de55 419 * @param root points to the root of the variable binding list
pehrhovey 0:a548a085de55 420 * @return the required lenght for encoding the variable bindings
pehrhovey 0:a548a085de55 421 */
pehrhovey 0:a548a085de55 422 static u16_t
pehrhovey 0:a548a085de55 423 snmp_varbind_list_sum(struct snmp_varbind_root *root)
pehrhovey 0:a548a085de55 424 {
pehrhovey 0:a548a085de55 425 struct snmp_varbind *vb;
pehrhovey 0:a548a085de55 426 u32_t *uint_ptr;
pehrhovey 0:a548a085de55 427 s32_t *sint_ptr;
pehrhovey 0:a548a085de55 428 u16_t tot_len;
pehrhovey 0:a548a085de55 429
pehrhovey 0:a548a085de55 430 tot_len = 0;
pehrhovey 0:a548a085de55 431 vb = root->tail;
pehrhovey 0:a548a085de55 432 while ( vb != NULL )
pehrhovey 0:a548a085de55 433 {
pehrhovey 0:a548a085de55 434 /* encoded value lenght depends on type */
pehrhovey 0:a548a085de55 435 switch (vb->value_type)
pehrhovey 0:a548a085de55 436 {
pehrhovey 0:a548a085de55 437 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG):
pehrhovey 0:a548a085de55 438 sint_ptr = vb->value;
pehrhovey 0:a548a085de55 439 snmp_asn1_enc_s32t_cnt(*sint_ptr, &vb->vlen);
pehrhovey 0:a548a085de55 440 break;
pehrhovey 0:a548a085de55 441 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER):
pehrhovey 0:a548a085de55 442 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_GAUGE):
pehrhovey 0:a548a085de55 443 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_TIMETICKS):
pehrhovey 0:a548a085de55 444 uint_ptr = vb->value;
pehrhovey 0:a548a085de55 445 snmp_asn1_enc_u32t_cnt(*uint_ptr, &vb->vlen);
pehrhovey 0:a548a085de55 446 break;
pehrhovey 0:a548a085de55 447 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR):
pehrhovey 0:a548a085de55 448 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_NUL):
pehrhovey 0:a548a085de55 449 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR):
pehrhovey 0:a548a085de55 450 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_OPAQUE):
pehrhovey 0:a548a085de55 451 vb->vlen = vb->value_len;
pehrhovey 0:a548a085de55 452 break;
pehrhovey 0:a548a085de55 453 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID):
pehrhovey 0:a548a085de55 454 sint_ptr = vb->value;
pehrhovey 0:a548a085de55 455 snmp_asn1_enc_oid_cnt(vb->value_len / sizeof(s32_t), sint_ptr, &vb->vlen);
pehrhovey 0:a548a085de55 456 break;
pehrhovey 0:a548a085de55 457 default:
pehrhovey 0:a548a085de55 458 /* unsupported type */
pehrhovey 0:a548a085de55 459 vb->vlen = 0;
pehrhovey 0:a548a085de55 460 break;
pehrhovey 0:a548a085de55 461 };
pehrhovey 0:a548a085de55 462 /* encoding length of value length field */
pehrhovey 0:a548a085de55 463 snmp_asn1_enc_length_cnt(vb->vlen, &vb->vlenlen);
pehrhovey 0:a548a085de55 464 snmp_asn1_enc_oid_cnt(vb->ident_len, vb->ident, &vb->olen);
pehrhovey 0:a548a085de55 465 snmp_asn1_enc_length_cnt(vb->olen, &vb->olenlen);
pehrhovey 0:a548a085de55 466
pehrhovey 0:a548a085de55 467 vb->seqlen = 1 + vb->vlenlen + vb->vlen;
pehrhovey 0:a548a085de55 468 vb->seqlen += 1 + vb->olenlen + vb->olen;
pehrhovey 0:a548a085de55 469 snmp_asn1_enc_length_cnt(vb->seqlen, &vb->seqlenlen);
pehrhovey 0:a548a085de55 470
pehrhovey 0:a548a085de55 471 /* varbind seq */
pehrhovey 0:a548a085de55 472 tot_len += 1 + vb->seqlenlen + vb->seqlen;
pehrhovey 0:a548a085de55 473
pehrhovey 0:a548a085de55 474 vb = vb->prev;
pehrhovey 0:a548a085de55 475 }
pehrhovey 0:a548a085de55 476
pehrhovey 0:a548a085de55 477 /* varbind-list seq */
pehrhovey 0:a548a085de55 478 root->seqlen = tot_len;
pehrhovey 0:a548a085de55 479 snmp_asn1_enc_length_cnt(root->seqlen, &root->seqlenlen);
pehrhovey 0:a548a085de55 480 tot_len += 1 + root->seqlenlen;
pehrhovey 0:a548a085de55 481
pehrhovey 0:a548a085de55 482 return tot_len;
pehrhovey 0:a548a085de55 483 }
pehrhovey 0:a548a085de55 484
pehrhovey 0:a548a085de55 485 /**
pehrhovey 0:a548a085de55 486 * Encodes response header from head to tail.
pehrhovey 0:a548a085de55 487 */
pehrhovey 0:a548a085de55 488 static u16_t
pehrhovey 0:a548a085de55 489 snmp_resp_header_enc(struct snmp_msg_pstat *m_stat, struct pbuf *p)
pehrhovey 0:a548a085de55 490 {
pehrhovey 0:a548a085de55 491 u16_t ofs;
pehrhovey 0:a548a085de55 492
pehrhovey 0:a548a085de55 493 ofs = 0;
pehrhovey 0:a548a085de55 494 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_CONSTR | SNMP_ASN1_SEQ));
pehrhovey 0:a548a085de55 495 ofs += 1;
pehrhovey 0:a548a085de55 496 snmp_asn1_enc_length(p, ofs, m_stat->rhl.seqlen);
pehrhovey 0:a548a085de55 497 ofs += m_stat->rhl.seqlenlen;
pehrhovey 0:a548a085de55 498
pehrhovey 0:a548a085de55 499 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 500 ofs += 1;
pehrhovey 0:a548a085de55 501 snmp_asn1_enc_length(p, ofs, m_stat->rhl.verlen);
pehrhovey 0:a548a085de55 502 ofs += m_stat->rhl.verlenlen;
pehrhovey 0:a548a085de55 503 snmp_asn1_enc_s32t(p, ofs, m_stat->rhl.verlen, snmp_version);
pehrhovey 0:a548a085de55 504 ofs += m_stat->rhl.verlen;
pehrhovey 0:a548a085de55 505
pehrhovey 0:a548a085de55 506 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR));
pehrhovey 0:a548a085de55 507 ofs += 1;
pehrhovey 0:a548a085de55 508 snmp_asn1_enc_length(p, ofs, m_stat->rhl.comlen);
pehrhovey 0:a548a085de55 509 ofs += m_stat->rhl.comlenlen;
pehrhovey 0:a548a085de55 510 snmp_asn1_enc_raw(p, ofs, m_stat->rhl.comlen, m_stat->community);
pehrhovey 0:a548a085de55 511 ofs += m_stat->rhl.comlen;
pehrhovey 0:a548a085de55 512
pehrhovey 0:a548a085de55 513 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_CONTXT | SNMP_ASN1_CONSTR | SNMP_ASN1_PDU_GET_RESP));
pehrhovey 0:a548a085de55 514 ofs += 1;
pehrhovey 0:a548a085de55 515 snmp_asn1_enc_length(p, ofs, m_stat->rhl.pdulen);
pehrhovey 0:a548a085de55 516 ofs += m_stat->rhl.pdulenlen;
pehrhovey 0:a548a085de55 517
pehrhovey 0:a548a085de55 518 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 519 ofs += 1;
pehrhovey 0:a548a085de55 520 snmp_asn1_enc_length(p, ofs, m_stat->rhl.ridlen);
pehrhovey 0:a548a085de55 521 ofs += m_stat->rhl.ridlenlen;
pehrhovey 0:a548a085de55 522 snmp_asn1_enc_s32t(p, ofs, m_stat->rhl.ridlen, m_stat->rid);
pehrhovey 0:a548a085de55 523 ofs += m_stat->rhl.ridlen;
pehrhovey 0:a548a085de55 524
pehrhovey 0:a548a085de55 525 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 526 ofs += 1;
pehrhovey 0:a548a085de55 527 snmp_asn1_enc_length(p, ofs, m_stat->rhl.errstatlen);
pehrhovey 0:a548a085de55 528 ofs += m_stat->rhl.errstatlenlen;
pehrhovey 0:a548a085de55 529 snmp_asn1_enc_s32t(p, ofs, m_stat->rhl.errstatlen, m_stat->error_status);
pehrhovey 0:a548a085de55 530 ofs += m_stat->rhl.errstatlen;
pehrhovey 0:a548a085de55 531
pehrhovey 0:a548a085de55 532 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 533 ofs += 1;
pehrhovey 0:a548a085de55 534 snmp_asn1_enc_length(p, ofs, m_stat->rhl.erridxlen);
pehrhovey 0:a548a085de55 535 ofs += m_stat->rhl.erridxlenlen;
pehrhovey 0:a548a085de55 536 snmp_asn1_enc_s32t(p, ofs, m_stat->rhl.erridxlen, m_stat->error_index);
pehrhovey 0:a548a085de55 537 ofs += m_stat->rhl.erridxlen;
pehrhovey 0:a548a085de55 538
pehrhovey 0:a548a085de55 539 return ofs;
pehrhovey 0:a548a085de55 540 }
pehrhovey 0:a548a085de55 541
pehrhovey 0:a548a085de55 542 /**
pehrhovey 0:a548a085de55 543 * Encodes trap header from head to tail.
pehrhovey 0:a548a085de55 544 */
pehrhovey 0:a548a085de55 545 static u16_t
pehrhovey 0:a548a085de55 546 snmp_trap_header_enc(struct snmp_msg_trap *m_trap, struct pbuf *p)
pehrhovey 0:a548a085de55 547 {
pehrhovey 0:a548a085de55 548 u16_t ofs;
pehrhovey 0:a548a085de55 549
pehrhovey 0:a548a085de55 550 ofs = 0;
pehrhovey 0:a548a085de55 551 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_CONSTR | SNMP_ASN1_SEQ));
pehrhovey 0:a548a085de55 552 ofs += 1;
pehrhovey 0:a548a085de55 553 snmp_asn1_enc_length(p, ofs, m_trap->thl.seqlen);
pehrhovey 0:a548a085de55 554 ofs += m_trap->thl.seqlenlen;
pehrhovey 0:a548a085de55 555
pehrhovey 0:a548a085de55 556 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 557 ofs += 1;
pehrhovey 0:a548a085de55 558 snmp_asn1_enc_length(p, ofs, m_trap->thl.verlen);
pehrhovey 0:a548a085de55 559 ofs += m_trap->thl.verlenlen;
pehrhovey 0:a548a085de55 560 snmp_asn1_enc_s32t(p, ofs, m_trap->thl.verlen, snmp_version);
pehrhovey 0:a548a085de55 561 ofs += m_trap->thl.verlen;
pehrhovey 0:a548a085de55 562
pehrhovey 0:a548a085de55 563 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR));
pehrhovey 0:a548a085de55 564 ofs += 1;
pehrhovey 0:a548a085de55 565 snmp_asn1_enc_length(p, ofs, m_trap->thl.comlen);
pehrhovey 0:a548a085de55 566 ofs += m_trap->thl.comlenlen;
pehrhovey 0:a548a085de55 567 snmp_asn1_enc_raw(p, ofs, m_trap->thl.comlen, (u8_t *)&snmp_publiccommunity[0]);
pehrhovey 0:a548a085de55 568 ofs += m_trap->thl.comlen;
pehrhovey 0:a548a085de55 569
pehrhovey 0:a548a085de55 570 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_CONTXT | SNMP_ASN1_CONSTR | SNMP_ASN1_PDU_TRAP));
pehrhovey 0:a548a085de55 571 ofs += 1;
pehrhovey 0:a548a085de55 572 snmp_asn1_enc_length(p, ofs, m_trap->thl.pdulen);
pehrhovey 0:a548a085de55 573 ofs += m_trap->thl.pdulenlen;
pehrhovey 0:a548a085de55 574
pehrhovey 0:a548a085de55 575 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID));
pehrhovey 0:a548a085de55 576 ofs += 1;
pehrhovey 0:a548a085de55 577 snmp_asn1_enc_length(p, ofs, m_trap->thl.eidlen);
pehrhovey 0:a548a085de55 578 ofs += m_trap->thl.eidlenlen;
pehrhovey 0:a548a085de55 579 snmp_asn1_enc_oid(p, ofs, m_trap->enterprise->len, &m_trap->enterprise->id[0]);
pehrhovey 0:a548a085de55 580 ofs += m_trap->thl.eidlen;
pehrhovey 0:a548a085de55 581
pehrhovey 0:a548a085de55 582 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR));
pehrhovey 0:a548a085de55 583 ofs += 1;
pehrhovey 0:a548a085de55 584 snmp_asn1_enc_length(p, ofs, m_trap->thl.aaddrlen);
pehrhovey 0:a548a085de55 585 ofs += m_trap->thl.aaddrlenlen;
pehrhovey 0:a548a085de55 586 snmp_asn1_enc_raw(p, ofs, m_trap->thl.aaddrlen, &m_trap->sip_raw[0]);
pehrhovey 0:a548a085de55 587 ofs += m_trap->thl.aaddrlen;
pehrhovey 0:a548a085de55 588
pehrhovey 0:a548a085de55 589 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 590 ofs += 1;
pehrhovey 0:a548a085de55 591 snmp_asn1_enc_length(p, ofs, m_trap->thl.gtrplen);
pehrhovey 0:a548a085de55 592 ofs += m_trap->thl.gtrplenlen;
pehrhovey 0:a548a085de55 593 snmp_asn1_enc_u32t(p, ofs, m_trap->thl.gtrplen, m_trap->gen_trap);
pehrhovey 0:a548a085de55 594 ofs += m_trap->thl.gtrplen;
pehrhovey 0:a548a085de55 595
pehrhovey 0:a548a085de55 596 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG));
pehrhovey 0:a548a085de55 597 ofs += 1;
pehrhovey 0:a548a085de55 598 snmp_asn1_enc_length(p, ofs, m_trap->thl.strplen);
pehrhovey 0:a548a085de55 599 ofs += m_trap->thl.strplenlen;
pehrhovey 0:a548a085de55 600 snmp_asn1_enc_u32t(p, ofs, m_trap->thl.strplen, m_trap->spc_trap);
pehrhovey 0:a548a085de55 601 ofs += m_trap->thl.strplen;
pehrhovey 0:a548a085de55 602
pehrhovey 0:a548a085de55 603 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_TIMETICKS));
pehrhovey 0:a548a085de55 604 ofs += 1;
pehrhovey 0:a548a085de55 605 snmp_asn1_enc_length(p, ofs, m_trap->thl.tslen);
pehrhovey 0:a548a085de55 606 ofs += m_trap->thl.tslenlen;
pehrhovey 0:a548a085de55 607 snmp_asn1_enc_u32t(p, ofs, m_trap->thl.tslen, m_trap->ts);
pehrhovey 0:a548a085de55 608 ofs += m_trap->thl.tslen;
pehrhovey 0:a548a085de55 609
pehrhovey 0:a548a085de55 610 return ofs;
pehrhovey 0:a548a085de55 611 }
pehrhovey 0:a548a085de55 612
pehrhovey 0:a548a085de55 613 /**
pehrhovey 0:a548a085de55 614 * Encodes varbind list from head to tail.
pehrhovey 0:a548a085de55 615 */
pehrhovey 0:a548a085de55 616 static u16_t
pehrhovey 0:a548a085de55 617 snmp_varbind_list_enc(struct snmp_varbind_root *root, struct pbuf *p, u16_t ofs)
pehrhovey 0:a548a085de55 618 {
pehrhovey 0:a548a085de55 619 struct snmp_varbind *vb;
pehrhovey 0:a548a085de55 620 s32_t *sint_ptr;
pehrhovey 0:a548a085de55 621 u32_t *uint_ptr;
pehrhovey 0:a548a085de55 622 u8_t *raw_ptr;
pehrhovey 0:a548a085de55 623
pehrhovey 0:a548a085de55 624 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_CONSTR | SNMP_ASN1_SEQ));
pehrhovey 0:a548a085de55 625 ofs += 1;
pehrhovey 0:a548a085de55 626 snmp_asn1_enc_length(p, ofs, root->seqlen);
pehrhovey 0:a548a085de55 627 ofs += root->seqlenlen;
pehrhovey 0:a548a085de55 628
pehrhovey 0:a548a085de55 629 vb = root->head;
pehrhovey 0:a548a085de55 630 while ( vb != NULL )
pehrhovey 0:a548a085de55 631 {
pehrhovey 0:a548a085de55 632 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_CONSTR | SNMP_ASN1_SEQ));
pehrhovey 0:a548a085de55 633 ofs += 1;
pehrhovey 0:a548a085de55 634 snmp_asn1_enc_length(p, ofs, vb->seqlen);
pehrhovey 0:a548a085de55 635 ofs += vb->seqlenlen;
pehrhovey 0:a548a085de55 636
pehrhovey 0:a548a085de55 637 snmp_asn1_enc_type(p, ofs, (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID));
pehrhovey 0:a548a085de55 638 ofs += 1;
pehrhovey 0:a548a085de55 639 snmp_asn1_enc_length(p, ofs, vb->olen);
pehrhovey 0:a548a085de55 640 ofs += vb->olenlen;
pehrhovey 0:a548a085de55 641 snmp_asn1_enc_oid(p, ofs, vb->ident_len, &vb->ident[0]);
pehrhovey 0:a548a085de55 642 ofs += vb->olen;
pehrhovey 0:a548a085de55 643
pehrhovey 0:a548a085de55 644 snmp_asn1_enc_type(p, ofs, vb->value_type);
pehrhovey 0:a548a085de55 645 ofs += 1;
pehrhovey 0:a548a085de55 646 snmp_asn1_enc_length(p, ofs, vb->vlen);
pehrhovey 0:a548a085de55 647 ofs += vb->vlenlen;
pehrhovey 0:a548a085de55 648
pehrhovey 0:a548a085de55 649 switch (vb->value_type)
pehrhovey 0:a548a085de55 650 {
pehrhovey 0:a548a085de55 651 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_INTEG):
pehrhovey 0:a548a085de55 652 sint_ptr = vb->value;
pehrhovey 0:a548a085de55 653 snmp_asn1_enc_s32t(p, ofs, vb->vlen, *sint_ptr);
pehrhovey 0:a548a085de55 654 break;
pehrhovey 0:a548a085de55 655 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_COUNTER):
pehrhovey 0:a548a085de55 656 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_GAUGE):
pehrhovey 0:a548a085de55 657 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_TIMETICKS):
pehrhovey 0:a548a085de55 658 uint_ptr = vb->value;
pehrhovey 0:a548a085de55 659 snmp_asn1_enc_u32t(p, ofs, vb->vlen, *uint_ptr);
pehrhovey 0:a548a085de55 660 break;
pehrhovey 0:a548a085de55 661 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OC_STR):
pehrhovey 0:a548a085de55 662 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_IPADDR):
pehrhovey 0:a548a085de55 663 case (SNMP_ASN1_APPLIC | SNMP_ASN1_PRIMIT | SNMP_ASN1_OPAQUE):
pehrhovey 0:a548a085de55 664 raw_ptr = vb->value;
pehrhovey 0:a548a085de55 665 snmp_asn1_enc_raw(p, ofs, vb->vlen, raw_ptr);
pehrhovey 0:a548a085de55 666 break;
pehrhovey 0:a548a085de55 667 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_NUL):
pehrhovey 0:a548a085de55 668 break;
pehrhovey 0:a548a085de55 669 case (SNMP_ASN1_UNIV | SNMP_ASN1_PRIMIT | SNMP_ASN1_OBJ_ID):
pehrhovey 0:a548a085de55 670 sint_ptr = vb->value;
pehrhovey 0:a548a085de55 671 snmp_asn1_enc_oid(p, ofs, vb->value_len / sizeof(s32_t), sint_ptr);
pehrhovey 0:a548a085de55 672 break;
pehrhovey 0:a548a085de55 673 default:
pehrhovey 0:a548a085de55 674 /* unsupported type */
pehrhovey 0:a548a085de55 675 break;
pehrhovey 0:a548a085de55 676 };
pehrhovey 0:a548a085de55 677 ofs += vb->vlen;
pehrhovey 0:a548a085de55 678 vb = vb->next;
pehrhovey 0:a548a085de55 679 }
pehrhovey 0:a548a085de55 680 return ofs;
pehrhovey 0:a548a085de55 681 }
pehrhovey 0:a548a085de55 682
pehrhovey 0:a548a085de55 683 #endif /* LWIP_SNMP */