1 1.6 tls /* $NetBSD: dovend.c,v 1.6 2007/05/27 16:31:42 tls Exp $ */ 2 1.3 lukem 3 1.3 lukem #include <sys/cdefs.h> 4 1.3 lukem #ifndef lint 5 1.6 tls __RCSID("$NetBSD: dovend.c,v 1.6 2007/05/27 16:31:42 tls Exp $"); 6 1.3 lukem #endif 7 1.2 perry 8 1.1 gwr /* 9 1.1 gwr * dovend.c : Inserts all but the first few vendor options. 10 1.1 gwr */ 11 1.1 gwr 12 1.1 gwr #include <sys/types.h> 13 1.1 gwr 14 1.1 gwr #include <netinet/in.h> 15 1.1 gwr #include <arpa/inet.h> /* inet_ntoa */ 16 1.1 gwr 17 1.1 gwr #include <stdlib.h> 18 1.1 gwr #include <stdio.h> 19 1.1 gwr #include <string.h> 20 1.6 tls #include <strings.h> 21 1.1 gwr #include <errno.h> 22 1.1 gwr #include <syslog.h> 23 1.1 gwr 24 1.1 gwr #include "bootp.h" 25 1.1 gwr #include "bootpd.h" 26 1.1 gwr #include "report.h" 27 1.1 gwr #include "dovend.h" 28 1.1 gwr 29 1.5 wiz PRIVATE int insert_generic(struct shared_bindata *, byte **, int *); 30 1.1 gwr 31 1.1 gwr /* 32 1.1 gwr * Insert the 2nd part of the options into an option buffer. 33 1.1 gwr * Return amount of space used. 34 1.1 gwr * 35 1.1 gwr * This inserts everything EXCEPT: 36 1.1 gwr * magic cookie, subnet mask, gateway, bootsize, extension file 37 1.1 gwr * Those are handled separately (in bootpd.c) to allow this function 38 1.1 gwr * to be shared between bootpd and bootpef. 39 1.1 gwr * 40 1.1 gwr * When an "extension file" is in use, the options inserted by 41 1.1 gwr * this function go into the exten_file, not the bootp response. 42 1.1 gwr */ 43 1.1 gwr 44 1.1 gwr int 45 1.5 wiz dovend_rfc1497(struct host *hp, byte *buf, int len) 46 1.1 gwr { 47 1.1 gwr int bytesleft = len; 48 1.1 gwr byte *vp = buf; 49 1.3 lukem #if 0 50 1.1 gwr char *tmpstr; 51 1.3 lukem #endif 52 1.1 gwr 53 1.4 is static const char noroom[] = "%s: No room for \"%s\" option"; 54 1.1 gwr #define NEED(LEN, MSG) do \ 55 1.1 gwr if (bytesleft < (LEN)) { \ 56 1.1 gwr report(LOG_NOTICE, noroom, \ 57 1.1 gwr hp->hostname->string, MSG); \ 58 1.1 gwr return (vp - buf); \ 59 1.1 gwr } while (0) 60 1.1 gwr 61 1.1 gwr /* 62 1.1 gwr * Note that the following have already been inserted: 63 1.1 gwr * magic_cookie, subnet_mask, gateway, bootsize 64 1.1 gwr * 65 1.1 gwr * The remaining options are inserted in order of importance. 66 1.1 gwr * (Of course the importance of each is a matter of opinion.) 67 1.1 gwr * The option insertion order should probably be configurable. 68 1.1 gwr * 69 1.1 gwr * This is the order used in the NetBSD version. Can anyone 70 1.1 gwr * explain why the time_offset and swap_server are first? 71 1.1 gwr * Also, why is the hostname so far down the list? -gwr 72 1.1 gwr */ 73 1.1 gwr 74 1.1 gwr if (hp->flags.time_offset) { 75 1.1 gwr NEED(6, "to"); 76 1.1 gwr *vp++ = TAG_TIME_OFFSET;/* -1 byte */ 77 1.1 gwr *vp++ = 4; /* -1 byte */ 78 1.1 gwr insert_u_long(htonl(hp->time_offset), &vp); /* -4 bytes */ 79 1.1 gwr bytesleft -= 6; 80 1.1 gwr } 81 1.1 gwr /* 82 1.1 gwr * swap server, root path, dump path 83 1.1 gwr */ 84 1.1 gwr if (hp->flags.swap_server) { 85 1.1 gwr NEED(6, "sw"); 86 1.1 gwr /* There is just one SWAP_SERVER, so it is not an iplist. */ 87 1.1 gwr *vp++ = TAG_SWAP_SERVER;/* -1 byte */ 88 1.1 gwr *vp++ = 4; /* -1 byte */ 89 1.1 gwr insert_u_long(hp->swap_server.s_addr, &vp); /* -4 bytes */ 90 1.1 gwr bytesleft -= 6; /* Fix real count */ 91 1.1 gwr } 92 1.1 gwr if (hp->flags.root_path) { 93 1.1 gwr /* 94 1.1 gwr * Check for room for root_path. Add 2 to account for 95 1.1 gwr * TAG_ROOT_PATH and length. 96 1.1 gwr */ 97 1.1 gwr len = strlen(hp->root_path->string); 98 1.1 gwr NEED((len + 2), "rp"); 99 1.1 gwr *vp++ = TAG_ROOT_PATH; 100 1.1 gwr *vp++ = (byte) (len & 0xFF); 101 1.1 gwr bcopy(hp->root_path->string, vp, len); 102 1.1 gwr vp += len; 103 1.1 gwr bytesleft -= len + 2; 104 1.1 gwr } 105 1.1 gwr if (hp->flags.dump_file) { 106 1.1 gwr /* 107 1.1 gwr * Check for room for dump_file. Add 2 to account for 108 1.1 gwr * TAG_DUMP_FILE and length. 109 1.1 gwr */ 110 1.1 gwr len = strlen(hp->dump_file->string); 111 1.1 gwr NEED((len + 2), "df"); 112 1.1 gwr *vp++ = TAG_DUMP_FILE; 113 1.1 gwr *vp++ = (byte) (len & 0xFF); 114 1.1 gwr bcopy(hp->dump_file->string, vp, len); 115 1.1 gwr vp += len; 116 1.1 gwr bytesleft -= len + 2; 117 1.1 gwr } 118 1.1 gwr /* 119 1.1 gwr * DNS server and domain 120 1.1 gwr */ 121 1.1 gwr if (hp->flags.domain_server) { 122 1.1 gwr if (insert_ip(TAG_DOMAIN_SERVER, 123 1.1 gwr hp->domain_server, 124 1.1 gwr &vp, &bytesleft)) 125 1.1 gwr NEED(8, "ds"); 126 1.1 gwr } 127 1.1 gwr if (hp->flags.domain_name) { 128 1.1 gwr /* 129 1.1 gwr * Check for room for domain_name. Add 2 to account for 130 1.1 gwr * TAG_DOMAIN_NAME and length. 131 1.1 gwr */ 132 1.1 gwr len = strlen(hp->domain_name->string); 133 1.1 gwr NEED((len + 2), "dn"); 134 1.1 gwr *vp++ = TAG_DOMAIN_NAME; 135 1.1 gwr *vp++ = (byte) (len & 0xFF); 136 1.1 gwr bcopy(hp->domain_name->string, vp, len); 137 1.1 gwr vp += len; 138 1.1 gwr bytesleft -= len + 2; 139 1.1 gwr } 140 1.1 gwr /* 141 1.1 gwr * NIS (YP) server and domain 142 1.1 gwr */ 143 1.1 gwr if (hp->flags.nis_server) { 144 1.1 gwr if (insert_ip(TAG_NIS_SERVER, 145 1.1 gwr hp->nis_server, 146 1.1 gwr &vp, &bytesleft)) 147 1.1 gwr NEED(8, "ds"); 148 1.1 gwr } 149 1.1 gwr if (hp->flags.nis_domain) { 150 1.1 gwr /* 151 1.1 gwr * Check for room for nis_domain. Add 2 to account for 152 1.1 gwr * TAG_NIS_DOMAIN and length. 153 1.1 gwr */ 154 1.1 gwr len = strlen(hp->nis_domain->string); 155 1.1 gwr NEED((len + 2), "dn"); 156 1.1 gwr *vp++ = TAG_NIS_DOMAIN; 157 1.1 gwr *vp++ = (byte) (len & 0xFF); 158 1.1 gwr bcopy(hp->nis_domain->string, vp, len); 159 1.1 gwr vp += len; 160 1.1 gwr bytesleft -= len + 2; 161 1.1 gwr } 162 1.1 gwr /* IEN 116 name server */ 163 1.1 gwr if (hp->flags.name_server) { 164 1.1 gwr if (insert_ip(TAG_NAME_SERVER, 165 1.1 gwr hp->name_server, 166 1.1 gwr &vp, &bytesleft)) 167 1.1 gwr NEED(8, "ns"); 168 1.1 gwr } 169 1.1 gwr if (hp->flags.rlp_server) { 170 1.1 gwr if (insert_ip(TAG_RLP_SERVER, 171 1.1 gwr hp->rlp_server, 172 1.1 gwr &vp, &bytesleft)) 173 1.1 gwr NEED(8, "rl"); 174 1.1 gwr } 175 1.1 gwr /* Time server (RFC 868) */ 176 1.1 gwr if (hp->flags.time_server) { 177 1.1 gwr if (insert_ip(TAG_TIME_SERVER, 178 1.1 gwr hp->time_server, 179 1.1 gwr &vp, &bytesleft)) 180 1.1 gwr NEED(8, "ts"); 181 1.1 gwr } 182 1.1 gwr /* NTP (time) Server (RFC 1129) */ 183 1.1 gwr if (hp->flags.ntp_server) { 184 1.1 gwr if (insert_ip(TAG_NTP_SERVER, 185 1.1 gwr hp->ntp_server, 186 1.1 gwr &vp, &bytesleft)) 187 1.1 gwr NEED(8, "ts"); 188 1.1 gwr } 189 1.1 gwr /* 190 1.1 gwr * I wonder: If the hostname were "promoted" into the BOOTP 191 1.1 gwr * response part, might these "extension" files possibly be 192 1.1 gwr * shared between several clients? 193 1.1 gwr * 194 1.1 gwr * Also, why not just use longer BOOTP packets with all the 195 1.1 gwr * additional length used as option data. This bootpd version 196 1.1 gwr * already supports that feature by replying with the same 197 1.1 gwr * packet length as the client request packet. -gwr 198 1.1 gwr */ 199 1.1 gwr if (hp->flags.name_switch && hp->flags.send_name) { 200 1.1 gwr /* 201 1.1 gwr * Check for room for hostname. Add 2 to account for 202 1.1 gwr * TAG_HOST_NAME and length. 203 1.1 gwr */ 204 1.1 gwr len = strlen(hp->hostname->string); 205 1.1 gwr #if 0 206 1.1 gwr /* 207 1.1 gwr * XXX - Too much magic. The user can always set the hostname 208 1.1 gwr * to the short version in the bootptab file. -gwr 209 1.1 gwr */ 210 1.1 gwr if ((len + 2) > bytesleft) { 211 1.1 gwr /* 212 1.1 gwr * Not enough room for full (domain-qualified) hostname, try 213 1.1 gwr * stripping it down to just the first field (host). 214 1.1 gwr */ 215 1.1 gwr tmpstr = hp->hostname->string; 216 1.1 gwr len = 0; 217 1.1 gwr while (*tmpstr && (*tmpstr != '.')) { 218 1.1 gwr tmpstr++; 219 1.1 gwr len++; 220 1.1 gwr } 221 1.1 gwr } 222 1.1 gwr #endif 223 1.1 gwr NEED((len + 2), "hn"); 224 1.1 gwr *vp++ = TAG_HOST_NAME; 225 1.1 gwr *vp++ = (byte) (len & 0xFF); 226 1.1 gwr bcopy(hp->hostname->string, vp, len); 227 1.1 gwr vp += len; 228 1.1 gwr bytesleft -= len + 2; 229 1.1 gwr } 230 1.1 gwr /* 231 1.1 gwr * The rest of these are less important, so they go last. 232 1.1 gwr */ 233 1.1 gwr if (hp->flags.lpr_server) { 234 1.1 gwr if (insert_ip(TAG_LPR_SERVER, 235 1.1 gwr hp->lpr_server, 236 1.1 gwr &vp, &bytesleft)) 237 1.1 gwr NEED(8, "lp"); 238 1.1 gwr } 239 1.1 gwr if (hp->flags.cookie_server) { 240 1.1 gwr if (insert_ip(TAG_COOKIE_SERVER, 241 1.1 gwr hp->cookie_server, 242 1.1 gwr &vp, &bytesleft)) 243 1.1 gwr NEED(8, "cs"); 244 1.1 gwr } 245 1.1 gwr if (hp->flags.log_server) { 246 1.1 gwr if (insert_ip(TAG_LOG_SERVER, 247 1.1 gwr hp->log_server, 248 1.1 gwr &vp, &bytesleft)) 249 1.1 gwr NEED(8, "lg"); 250 1.1 gwr } 251 1.1 gwr /* 252 1.1 gwr * XXX - Add new tags here (to insert options) 253 1.1 gwr */ 254 1.1 gwr if (hp->flags.generic) { 255 1.1 gwr if (insert_generic(hp->generic, &vp, &bytesleft)) 256 1.1 gwr NEED(64, "(generic)"); 257 1.1 gwr } 258 1.1 gwr /* 259 1.1 gwr * The end marker is inserted by the caller. 260 1.1 gwr */ 261 1.1 gwr return (vp - buf); 262 1.1 gwr #undef NEED 263 1.1 gwr } /* dovend_rfc1497 */ 264 1.1 gwr 265 1.1 gwr 267 1.1 gwr 268 1.1 gwr /* 269 1.1 gwr * Insert a tag value, a length value, and a list of IP addresses into the 270 1.1 gwr * memory buffer indirectly pointed to by "dest". "tag" is the RFC1048 tag 271 1.1 gwr * number to use, "iplist" is a pointer to a list of IP addresses 272 1.1 gwr * (struct in_addr_list), and "bytesleft" points to an integer which 273 1.1 gwr * indicates the size of the "dest" buffer. 274 1.1 gwr * 275 1.1 gwr * Return zero if everything fits. 276 1.1 gwr * 277 1.1 gwr * This is used to fill the vendor-specific area of a bootp packet in 278 1.1 gwr * conformance to RFC1048. 279 1.1 gwr */ 280 1.1 gwr 281 1.5 wiz int 282 1.1 gwr insert_ip(byte tag, struct in_addr_list *iplist, byte **dest, int *bytesleft) 283 1.1 gwr { 284 1.1 gwr struct in_addr *addrptr; 285 1.1 gwr unsigned addrcount = 1; 286 1.1 gwr byte *d; 287 1.1 gwr 288 1.1 gwr if (iplist == NULL) 289 1.1 gwr return (0); 290 1.1 gwr 291 1.1 gwr if (*bytesleft >= 6) { 292 1.1 gwr d = *dest; /* Save pointer for later */ 293 1.1 gwr **dest = tag; 294 1.1 gwr (*dest) += 2; 295 1.1 gwr (*bytesleft) -= 2; /* Account for tag and length */ 296 1.1 gwr addrptr = iplist->addr; 297 1.1 gwr addrcount = iplist->addrcount; 298 1.1 gwr while ((*bytesleft >= 4) && (addrcount > 0)) { 299 1.1 gwr insert_u_long(addrptr->s_addr, dest); 300 1.1 gwr addrptr++; 301 1.1 gwr addrcount--; 302 1.1 gwr (*bytesleft) -= 4; /* Four bytes per address */ 303 1.1 gwr } 304 1.1 gwr d[1] = (byte) ((*dest - d - 2) & 0xFF); 305 1.1 gwr } 306 1.1 gwr return (addrcount); 307 1.1 gwr } 308 1.1 gwr 309 1.1 gwr 311 1.1 gwr 312 1.1 gwr /* 313 1.1 gwr * Insert generic data into a bootp packet. The data is assumed to already 314 1.1 gwr * be in RFC1048 format. It is inserted using a first-fit algorithm which 315 1.1 gwr * attempts to insert as many tags as possible. Tags and data which are 316 1.1 gwr * too large to fit are skipped; any remaining tags are tried until they 317 1.1 gwr * have all been exhausted. 318 1.1 gwr * Return zero if everything fits. 319 1.1 gwr */ 320 1.5 wiz 321 1.1 gwr static int 322 1.1 gwr insert_generic(struct shared_bindata *gendata, byte **buff, int *bytesleft) 323 1.1 gwr { 324 1.1 gwr byte *srcptr; 325 1.1 gwr int length, numbytes; 326 1.1 gwr int skipped = 0; 327 1.1 gwr 328 1.1 gwr if (gendata == NULL) 329 1.1 gwr return (0); 330 1.1 gwr 331 1.1 gwr srcptr = gendata->data; 332 1.1 gwr length = gendata->length; 333 1.1 gwr while ((length > 0) && (*bytesleft > 0)) { 334 1.1 gwr switch (*srcptr) { 335 1.1 gwr case TAG_END: 336 1.1 gwr length = 0; /* Force an exit on next iteration */ 337 1.1 gwr break; 338 1.1 gwr case TAG_PAD: 339 1.1 gwr *(*buff)++ = *srcptr++; 340 1.1 gwr (*bytesleft)--; 341 1.1 gwr length--; 342 1.1 gwr break; 343 1.1 gwr default: 344 1.1 gwr numbytes = srcptr[1] + 2; 345 1.1 gwr if (*bytesleft < numbytes) 346 1.1 gwr skipped += numbytes; 347 1.1 gwr else { 348 1.1 gwr bcopy(srcptr, *buff, numbytes); 349 1.1 gwr (*buff) += numbytes; 350 1.1 gwr (*bytesleft) -= numbytes; 351 1.1 gwr } 352 1.1 gwr srcptr += numbytes; 353 1.1 gwr length -= numbytes; 354 1.1 gwr break; 355 1.1 gwr } 356 1.1 gwr } /* while */ 357 1.1 gwr return (skipped); 358 1.1 gwr } 359 1.1 gwr 360 1.1 gwr /* 361 1.1 gwr * Insert the unsigned long "value" into memory starting at the byte 362 1.1 gwr * pointed to by the byte pointer (*dest). (*dest) is updated to 363 1.1 gwr * point to the next available byte. 364 1.1 gwr * 365 1.1 gwr * Since it is desirable to internally store network addresses in network 366 1.1 gwr * byte order (in struct in_addr's), this routine expects longs to be 367 1.1 gwr * passed in network byte order. 368 1.1 gwr * 369 1.1 gwr * However, due to the nature of the main algorithm, the long must be in 370 1.1 gwr * host byte order, thus necessitating the use of ntohl() first. 371 1.1 gwr */ 372 1.5 wiz 373 1.1 gwr void 374 1.1 gwr insert_u_long(u_int32 value, byte **dest) 375 1.1 gwr { 376 1.1 gwr byte *temp; 377 1.1 gwr int n; 378 1.1 gwr 379 1.1 gwr value = ntohl(value); /* Must use host byte order here */ 380 1.1 gwr temp = (*dest += 4); 381 1.1 gwr for (n = 4; n > 0; n--) { 382 1.1 gwr *--temp = (byte) (value & 0xFF); 383 1.1 gwr value >>= 8; 384 1.1 gwr } 385 1.1 gwr /* Final result is network byte order */ 386 1.1 gwr } 387 1.1 gwr 388 1.1 gwr /* 389 1.1 gwr * Local Variables: 390 1.1 gwr * tab-width: 4 391 1.1 gwr * c-indent-level: 4 392 1.1 gwr * c-argdecl-indent: 4 393 1.1 gwr * c-continued-statement-offset: 4 394 1.1 gwr * c-continued-brace-offset: -4 395 1.1 gwr * c-label-offset: -4 396 1.1 gwr * c-brace-offset: 0 397 * End: 398 */ 399