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Length: 7879 (0x1ec7) Types: TextFile Names: »snmp.c«
└─⟦9ae75bfbd⟧ Bits:30007242 EUUGD3: Starter Kit └─⟦6311a4dba⟧ »EurOpenD3/network/snmp/cmu-snmp1.0.tar« └─⟦this⟧ »snmplib/snmp.c«
/* * Simple Network Management Protocol (RFC 1067). * */ /*********************************************************** Copyright 1988, 1989 by Carnegie Mellon University All Rights Reserved Permission to use, copy, modify, and distribute this software and its documentation for any purpose and without fee is hereby granted, provided that the above copyright notice appear in all copies and that both that copyright notice and this permission notice appear in supporting documentation, and that the name of CMU not be used in advertising or publicity pertaining to distribution of the software without specific, written prior permission. CMU DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL CMU BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. ******************************************************************/ #ifdef KINETICS #include "gw.h" #include "ab.h" #include "inet.h" #include "fp4/cmdmacro.h" #include "fp4/pbuf.h" #include "glob.h" #endif #if (defined(unix) && !defined(KINETICS)) #include <sys/types.h> #include <netinet/in.h> #ifndef NULL #define NULL 0 #endif #endif #include "asn1.h" #include "snmp.h" #include "snmp_impl.h" #include "mib.h" #include "snmp_vars.h" u_char * snmp_parse_var_op(data, var_name, var_name_len, var_val_type, var_val_len, var_val, listlength) register u_char *data; /* IN - pointer to the start of object */ oid *var_name; /* OUT - object id of variable */ int *var_name_len; /* OUT - length of variable name */ u_char *var_val_type; /* OUT - type of variable (int or octet string) (one byte) */ int *var_val_len; /* OUT - length of variable */ u_char **var_val; /* OUT - pointer to ASN1 encoded value of variable */ int *listlength; /* IN/OUT - number of valid bytes left in var_op_list */ { u_char var_op_type; int var_op_len = *listlength; u_char *var_op_start = data; data = asn_parse_header(data, &var_op_len, &var_op_type); if (data == NULL){ ERROR(""); return NULL; } if (var_op_type != (u_char)(ASN_SEQUENCE | ASN_CONSTRUCTOR)) return NULL; data = asn_parse_objid(data, &var_op_len, &var_op_type, var_name, var_name_len); if (data == NULL){ ERROR(""); return NULL; } if (var_op_type != (u_char)(ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_OBJECT_ID)) return NULL; *var_val = data; /* save pointer to this object */ /* find out what type of object this is */ data = asn_parse_header(data, &var_op_len, var_val_type); if (data == NULL){ ERROR(""); return NULL; } *var_val_len = var_op_len; data += var_op_len; *listlength -= (int)(data - var_op_start); return data; } u_char * snmp_build_var_op(data, var_name, var_name_len, var_val_type, var_val_len, var_val, listlength) register u_char *data; /* IN - pointer to the beginning of the output buffer */ oid *var_name; /* IN - object id of variable */ int *var_name_len; /* IN - length of object id */ u_char var_val_type; /* IN - type of variable */ int var_val_len; /* IN - length of variable */ u_char *var_val; /* IN - value of variable */ register int *listlength; /* IN/OUT - number of valid bytes left in output buffer */ { int dummyLen, headerLen; u_char *dataPtr; dummyLen = *listlength; dataPtr = data; data = asn_build_header(data, &dummyLen, (u_char)(ASN_SEQUENCE | ASN_CONSTRUCTOR), 0); if (data == NULL){ ERROR(""); return NULL; } headerLen = data - dataPtr; *listlength -= headerLen; data = asn_build_objid(data, listlength, (u_char)(ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_OBJECT_ID), var_name, *var_name_len); if (data == NULL){ ERROR(""); return NULL; } switch(var_val_type){ case ASN_INTEGER: case GAUGE: case COUNTER: case TIMETICKS: data = asn_build_int(data, listlength, var_val_type, (long *)var_val, var_val_len); break; case ASN_OCTET_STR: case IPADDRESS: case OPAQUE: data = asn_build_string(data, listlength, var_val_type, var_val, var_val_len); break; case ASN_OBJECT_ID: data = asn_build_objid(data, listlength, var_val_type, (oid *)var_val, var_val_len / sizeof(oid)); break; case ASN_NULL: data = asn_build_null(data, listlength, var_val_type); break; default: ERROR("wrong type"); return NULL; } if (data == NULL){ ERROR(""); return NULL; } dummyLen = (data - dataPtr) - headerLen; if (asn_build_header(dataPtr, &dummyLen, (u_char)(ASN_SEQUENCE | ASN_CONSTRUCTOR), dummyLen) == NULL){ ERROR(""); return NULL; } return data; } int snmp_build_trap(out_data, length, sysOid, sysOidLen, myAddr, trapType, specificType, time, varName, varNameLen, varType, varLen, varVal) register u_char *out_data; int length; oid *sysOid; int sysOidLen; u_long myAddr; int trapType; int specificType; u_long time; oid *varName; int varNameLen; u_char varType; int varLen; u_char *varVal; { long version = SNMP_VERSION_1; int sidLen = strlen("public"); int dummyLen; u_char *out_auth, *out_header, *out_pdu, *out_varHeader, *out_varlist, *out_end; out_auth = out_data; out_header = snmp_auth_build(out_data, &length, (u_char *)"public", &sidLen, &version, 90); if (out_header == NULL){ ERROR("auth build failed"); return 0; } out_pdu = asn_build_header(out_header, &length, (u_char)TRP_REQ_MSG, 90); if (out_pdu == NULL){ ERROR("header build failed"); return 0; } out_data = asn_build_objid(out_pdu, &length, (u_char)(ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_OBJECT_ID), (oid *)sysOid, sysOidLen); if (out_data == NULL){ ERROR("build enterprise failed"); return 0; } out_data = asn_build_string(out_data, &length, (u_char)(ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_OCTET_STR), (u_char *)&myAddr, sizeof(myAddr)); if (out_data == NULL){ ERROR("build agent_addr failed"); return 0; } out_data = asn_build_int(out_data, &length, (u_char)(ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_INTEGER), (long *)&trapType, sizeof(trapType)); if (out_data == NULL){ ERROR("build trap_type failed"); return 0; } out_data = asn_build_int(out_data, &length, (u_char)(ASN_UNIVERSAL | ASN_PRIMITIVE | ASN_INTEGER), (long *)&specificType, sizeof(specificType)); if (out_data == NULL){ ERROR("build specificType failed"); return 0; } out_varHeader = asn_build_int(out_data, &length, (u_char)(TIMETICKS), (long *)&time, sizeof(time)); if (out_varHeader == NULL){ ERROR("build timestampfailed"); return 0; } out_varlist = asn_build_header(out_varHeader, &length, (u_char)(ASN_SEQUENCE | ASN_CONSTRUCTOR), 90); out_end = snmp_build_var_op(out_varlist, varName, &varNameLen, varType, varLen, varVal, &length); if (out_end == NULL){ ERROR("build varop failed"); return 0; } /* Now rebuild header with the actual lengths */ dummyLen = out_end - out_varlist; if (asn_build_header(out_varHeader, &dummyLen, (u_char)(ASN_SEQUENCE | ASN_CONSTRUCTOR), dummyLen) != out_varlist) return 0; dummyLen = out_end - out_pdu; if (asn_build_header(out_header, &dummyLen, (u_char)TRP_REQ_MSG, dummyLen) != out_pdu) return 0; dummyLen = out_end - out_header; if (snmp_auth_build(out_auth, &dummyLen, (u_char *)"public", &sidLen, &version, dummyLen) != out_header) return 0; return out_end - out_auth; }