1 /* $OpenBSD: ax.h,v 1.2 2023/10/24 08:54:52 martijn Exp $ */ 2 /* 3 * Copyright (c) 2019 Martijn van Duren <martijn@openbsd.org> 4 * 5 * Permission to use, copy, modify, and distribute this software for any 6 * purpose with or without fee is hereby granted, provided that the above 7 * copyright notice and this permission notice appear in all copies. 8 * 9 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 10 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 11 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 12 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 13 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 14 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 15 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 16 */ 17 18 #include <stdint.h> 19 20 #define AX_PDU_FLAG_INSTANCE_REGISTRATION (1 << 0) 21 #define AX_PDU_FLAG_NEW_INDEX (1 << 1) 22 #define AX_PDU_FLAG_ANY_INDEX (1 << 2) 23 #define AX_PDU_FLAG_NON_DEFAULT_CONTEXT (1 << 3) 24 #define AX_PDU_FLAG_NETWORK_BYTE_ORDER (1 << 4) 25 26 #define AX_PRIORITY_DEFAULT 127 27 28 enum ax_byte_order { 29 AX_BYTE_ORDER_BE, 30 AX_BYTE_ORDER_LE 31 }; 32 33 #if BYTE_ORDER == BIG_ENDIAN 34 #define AX_BYTE_ORDER_NATIVE AX_BYTE_ORDER_BE 35 #else 36 #define AX_BYTE_ORDER_NATIVE AX_BYTE_ORDER_LE 37 #endif 38 39 enum ax_pdu_type { 40 AX_PDU_TYPE_OPEN = 1, 41 AX_PDU_TYPE_CLOSE = 2, 42 AX_PDU_TYPE_REGISTER = 3, 43 AX_PDU_TYPE_UNREGISTER = 4, 44 AX_PDU_TYPE_GET = 5, 45 AX_PDU_TYPE_GETNEXT = 6, 46 AX_PDU_TYPE_GETBULK = 7, 47 AX_PDU_TYPE_TESTSET = 8, 48 AX_PDU_TYPE_COMMITSET = 9, 49 AX_PDU_TYPE_UNDOSET = 10, 50 AX_PDU_TYPE_CLEANUPSET = 11, 51 AX_PDU_TYPE_NOTIFY = 12, 52 AX_PDU_TYPE_PING = 13, 53 AX_PDU_TYPE_INDEXALLOCATE = 14, 54 AX_PDU_TYPE_INDEXDEALLOCATE = 15, 55 AX_PDU_TYPE_ADDAGENTCAPS = 16, 56 AX_PDU_TYPE_REMOVEAGENTCAPS = 17, 57 AX_PDU_TYPE_RESPONSE = 18 58 }; 59 60 enum ax_pdu_error { 61 AX_PDU_ERROR_NOERROR = 0, 62 AX_PDU_ERROR_GENERR = 5, 63 AX_PDU_ERROR_NOACCESS = 6, 64 AX_PDU_ERROR_WRONGTYPE = 7, 65 AX_PDU_ERROR_WRONGLENGTH = 8, 66 AX_PDU_ERROR_WRONGENCODING = 9, 67 AX_PDU_ERROR_WRONGVALUE = 10, 68 AX_PDU_ERROR_NOCREATION = 11, 69 AX_PDU_ERROR_INCONSISTENTVALUE = 12, 70 AX_PDU_ERROR_RESOURCEUNAVAILABLE = 13, 71 AX_PDU_ERROR_COMMITFAILED = 14, 72 AX_PDU_ERROR_UNDOFAILED = 15, 73 AX_PDU_ERROR_NOTWRITABLE = 17, 74 AX_PDU_ERROR_INCONSISTENTNAME = 18, 75 AX_PDU_ERROR_OPENFAILED = 256, 76 AX_PDU_ERROR_NOTOPEN = 257, 77 AX_PDU_ERROR_INDEXWRONGTYPE = 258, 78 AX_PDU_ERROR_INDEXALREADYALLOCATED = 259, 79 AX_PDU_ERROR_INDEXNONEAVAILABLE = 260, 80 AX_PDU_ERROR_INDEXNOTALLOCATED = 261, 81 AX_PDU_ERROR_UNSUPPORTEDCONETXT = 262, 82 AX_PDU_ERROR_DUPLICATEREGISTRATION = 263, 83 AX_PDU_ERROR_UNKNOWNREGISTRATION = 264, 84 AX_PDU_ERROR_UNKNOWNAGENTCAPS = 265, 85 AX_PDU_ERROR_PARSEERROR = 266, 86 AX_PDU_ERROR_REQUESTDENIED = 267, 87 AX_PDU_ERROR_PROCESSINGERROR = 268 88 }; 89 90 enum ax_data_type { 91 AX_DATA_TYPE_INTEGER = 2, 92 AX_DATA_TYPE_OCTETSTRING = 4, 93 AX_DATA_TYPE_NULL = 5, 94 AX_DATA_TYPE_OID = 6, 95 AX_DATA_TYPE_IPADDRESS = 64, 96 AX_DATA_TYPE_COUNTER32 = 65, 97 AX_DATA_TYPE_GAUGE32 = 66, 98 AX_DATA_TYPE_TIMETICKS = 67, 99 AX_DATA_TYPE_OPAQUE = 68, 100 AX_DATA_TYPE_COUNTER64 = 70, 101 AX_DATA_TYPE_NOSUCHOBJECT = 128, 102 AX_DATA_TYPE_NOSUCHINSTANCE = 129, 103 AX_DATA_TYPE_ENDOFMIBVIEW = 130 104 }; 105 106 enum ax_close_reason { 107 AX_CLOSE_OTHER = 1, 108 AX_CLOSEN_PARSEERROR = 2, 109 AX_CLOSE_PROTOCOLERROR = 3, 110 AX_CLOSE_TIMEOUTS = 4, 111 AX_CLOSE_SHUTDOWN = 5, 112 AX_CLOSE_BYMANAGER = 6 113 }; 114 115 struct ax { 116 int ax_fd; 117 enum ax_byte_order ax_byteorder; 118 uint8_t *ax_rbuf; 119 size_t ax_rblen; 120 size_t ax_rbsize; 121 uint8_t *ax_wbuf; 122 size_t ax_wblen; 123 size_t ax_wbtlen; 124 size_t ax_wbsize; 125 uint32_t *ax_packetids; 126 size_t ax_packetidsize; 127 }; 128 129 #ifndef AX_PRIMITIVE 130 #define AX_PRIMITIVE 131 132 #define AX_OID_MAX_LEN 128 133 134 struct ax_oid { 135 uint8_t aoi_include; 136 uint32_t aoi_id[AX_OID_MAX_LEN]; 137 size_t aoi_idlen; 138 }; 139 140 struct ax_ostring { 141 unsigned char *aos_string; 142 uint32_t aos_slen; 143 }; 144 #endif 145 146 struct ax_searchrange { 147 struct ax_oid asr_start; 148 struct ax_oid asr_stop; 149 }; 150 151 struct ax_pdu_header { 152 uint8_t aph_version; 153 uint8_t aph_type; 154 uint8_t aph_flags; 155 uint8_t aph_reserved; 156 uint32_t aph_sessionid; 157 uint32_t aph_transactionid; 158 uint32_t aph_packetid; 159 uint32_t aph_plength; 160 }; 161 162 struct ax_varbind { 163 enum ax_data_type avb_type; 164 struct ax_oid avb_oid; 165 union ax_data { 166 int32_t avb_int32; 167 uint32_t avb_uint32; 168 uint64_t avb_uint64; 169 struct ax_ostring avb_ostring; 170 struct ax_oid avb_oid; 171 } avb_data; 172 }; 173 174 struct ax_pdu { 175 struct ax_pdu_header ap_header; 176 struct ax_ostring ap_context; 177 union { 178 struct ax_pdu_open { 179 uint8_t ap_timeout; 180 struct ax_oid ap_oid; 181 struct ax_ostring ap_descr; 182 } ap_open; 183 struct ax_pdu_close { 184 enum ax_close_reason ap_reason; 185 } ap_close; 186 struct ax_pdu_register { 187 uint8_t ap_timeout; 188 uint8_t ap_priority; 189 uint8_t ap_range_subid; 190 struct ax_oid ap_subtree; 191 uint32_t ap_upper_bound; 192 } ap_register; 193 struct ax_pdu_unregister { 194 uint8_t ap_priority; 195 uint8_t ap_range_subid; 196 struct ax_oid ap_subtree; 197 uint32_t ap_upper_bound; 198 } ap_unregister; 199 struct ax_pdu_searchrangelist { 200 size_t ap_nsr; 201 struct ax_searchrange *ap_sr; 202 } ap_srl; 203 struct ax_pdu_getbulk { 204 uint16_t ap_nonrep; 205 uint16_t ap_maxrep; 206 struct ax_pdu_searchrangelist ap_srl; 207 } ap_getbulk; 208 struct ax_pdu_varbindlist { 209 struct ax_varbind *ap_varbind; 210 size_t ap_nvarbind; 211 } ap_vbl; 212 struct ax_pdu_addagentcaps { 213 struct ax_oid ap_oid; 214 struct ax_ostring ap_descr; 215 } ap_addagentcaps; 216 struct ax_pdu_removeagentcaps { 217 struct ax_oid ap_oid; 218 } ap_removeagentcaps; 219 struct ax_pdu_response { 220 uint32_t ap_uptime; 221 enum ax_pdu_error ap_error; 222 uint16_t ap_index; 223 struct ax_varbind *ap_varbindlist; 224 size_t ap_nvarbind; 225 } ap_response; 226 } ap_payload; 227 }; 228 229 struct ax *ax_new(int); 230 void ax_free(struct ax *); 231 struct ax_pdu *ax_recv(struct ax *); 232 ssize_t ax_send(struct ax *); 233 uint32_t ax_open(struct ax *, uint8_t, struct ax_oid *, 234 struct ax_ostring *); 235 uint32_t ax_close(struct ax *, uint32_t, enum ax_close_reason); 236 int ax_get(struct ax *, uint32_t, uint32_t, uint32_t, struct ax_ostring *, 237 struct ax_searchrange *, size_t); 238 int ax_getnext(struct ax *, uint32_t, uint32_t, uint32_t, struct ax_ostring *, 239 struct ax_searchrange *, size_t); 240 uint32_t ax_indexallocate(struct ax *, uint8_t, uint32_t, 241 struct ax_ostring *, struct ax_varbind *, size_t); 242 uint32_t ax_indexdeallocate(struct ax *, uint32_t, 243 struct ax_ostring *, struct ax_varbind *, size_t); 244 uint32_t ax_addagentcaps(struct ax *, uint32_t, struct ax_ostring *, 245 struct ax_oid *, struct ax_ostring *); 246 uint32_t ax_removeagentcaps(struct ax *, uint32_t, 247 struct ax_ostring *, struct ax_oid *); 248 uint32_t ax_register(struct ax *, uint8_t, uint32_t, 249 struct ax_ostring *, uint8_t, uint8_t, uint8_t, struct ax_oid *, 250 uint32_t); 251 uint32_t ax_unregister(struct ax *, uint32_t, struct ax_ostring *, 252 uint8_t, uint8_t, struct ax_oid *, uint32_t); 253 int ax_response(struct ax *, uint32_t, uint32_t, uint32_t, 254 uint32_t, uint16_t, uint16_t, struct ax_varbind *, size_t); 255 void ax_pdu_free(struct ax_pdu *); 256 void ax_varbind_free(struct ax_varbind *); 257 const char *ax_error2string(enum ax_pdu_error); 258 const char *ax_pdutype2string(enum ax_pdu_type); 259 const char *ax_oid2string(struct ax_oid *); 260 const char *ax_oidrange2string(struct ax_oid *, uint8_t, uint32_t); 261 const char *ax_varbind2string(struct ax_varbind *); 262 const char *ax_closereason2string(enum ax_close_reason); 263 int ax_oid_cmp(struct ax_oid *, struct ax_oid *); 264 int ax_oid_add(struct ax_oid *, uint32_t); 265