1 /* $NetBSD: radlib.c,v 1.8 2005/11/25 23:20:00 christos Exp $ */ 2 3 /*- 4 * Copyright 1998 Juniper Networks, Inc. 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 19 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 20 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 26 * SUCH DAMAGE. 27 */ 28 29 #include <sys/cdefs.h> 30 #ifdef __FreeBSD__ 31 __FBSDID("$FreeBSD: /repoman/r/ncvs/src/lib/libradius/radlib.c,v 1.12 2004/06/14 20:55:30 stefanf Exp $"); 32 #else 33 __RCSID("$NetBSD: radlib.c,v 1.8 2005/11/25 23:20:00 christos Exp $"); 34 #endif 35 36 #include <sys/types.h> 37 #include <sys/socket.h> 38 #include <sys/time.h> 39 #include <netinet/in.h> 40 #include <arpa/inet.h> 41 #ifdef WITH_SSL 42 #include <openssl/hmac.h> 43 #include <openssl/md5.h> 44 #define MD5Init MD5_Init 45 #define MD5Update MD5_Update 46 #define MD5Final MD5_Final 47 #define MD5Len size_t 48 #define MD5Buf const void * 49 #else 50 #define MD5_DIGEST_LENGTH 16 51 #define MD5Len unsigned int 52 #define MD5Buf const unsigned char * 53 #include <md5.h> 54 #endif 55 56 /* We need the MPPE_KEY_LEN define */ 57 #ifdef __FreeBSD__ 58 #include <netgraph/ng_mppc.h> 59 #else 60 #define MPPE_KEY_LEN 16 61 #endif 62 63 #include <errno.h> 64 #include <netdb.h> 65 #include <stdarg.h> 66 #include <stddef.h> 67 #include <stdio.h> 68 #include <stdlib.h> 69 #include <string.h> 70 #include <unistd.h> 71 72 #include "radlib_private.h" 73 #if !defined(__printflike) 74 #define __printflike(fmtarg, firstvararg) \ 75 __attribute__((__format__ (__printf__, fmtarg, firstvararg))) 76 #endif 77 78 #ifdef __NetBSD__ 79 #define srandomdev(x) 80 #define random arc4random 81 #endif 82 83 static void clear_password(struct rad_handle *); 84 static void generr(struct rad_handle *, const char *, ...) 85 __printflike(2, 3); 86 static void insert_scrambled_password(struct rad_handle *, int); 87 static void insert_request_authenticator(struct rad_handle *, int); 88 static void insert_message_authenticator(struct rad_handle *, int); 89 static int is_valid_response(struct rad_handle *, int, 90 const struct sockaddr_in *); 91 static int put_password_attr(struct rad_handle *, int, 92 const void *, size_t); 93 static int put_raw_attr(struct rad_handle *, int, 94 const void *, size_t); 95 static int split(char *, const char *[], size_t, char *, size_t); 96 97 static void 98 clear_password(struct rad_handle *h) 99 { 100 if (h->pass_len != 0) { 101 (void)memset(h->pass, 0, h->pass_len); 102 h->pass_len = 0; 103 } 104 h->pass_pos = 0; 105 } 106 107 static void 108 generr(struct rad_handle *h, const char *format, ...) 109 { 110 va_list ap; 111 112 va_start(ap, format); 113 vsnprintf(h->errmsg, (size_t)ERRSIZE, format, ap); 114 va_end(ap); 115 } 116 117 static void 118 insert_scrambled_password(struct rad_handle *h, int srv) 119 { 120 MD5_CTX ctx; 121 unsigned char md5[MD5_DIGEST_LENGTH]; 122 const struct rad_server *srvp; 123 size_t padded_len, pos; 124 125 srvp = &h->servers[srv]; 126 padded_len = h->pass_len == 0 ? (size_t)16 : (h->pass_len+15) & ~0xf; 127 128 (void)memcpy(md5, &h->request[POS_AUTH], (size_t)LEN_AUTH); 129 for (pos = 0; pos < padded_len; pos += 16) { 130 int i; 131 132 /* Calculate the new scrambler */ 133 MD5Init(&ctx); 134 MD5Update(&ctx, (MD5Buf)srvp->secret, 135 (MD5Len)strlen(srvp->secret)); 136 MD5Update(&ctx, md5, (MD5Len)16); 137 MD5Final(md5, &ctx); 138 139 /* 140 * Mix in the current chunk of the password, and copy 141 * the result into the right place in the request. Also 142 * modify the scrambler in place, since we will use this 143 * in calculating the scrambler for next time. 144 */ 145 for (i = 0; i < 16; i++) 146 h->request[h->pass_pos + pos + i] = 147 md5[i] ^= h->pass[pos + i]; 148 } 149 } 150 151 static void 152 insert_request_authenticator(struct rad_handle *h, int srv) 153 { 154 MD5_CTX ctx; 155 const struct rad_server *srvp; 156 157 srvp = &h->servers[srv]; 158 159 /* Create the request authenticator */ 160 MD5Init(&ctx); 161 MD5Update(&ctx, &h->request[POS_CODE], 162 (MD5Len)(POS_AUTH - POS_CODE)); 163 MD5Update(&ctx, memset(&h->request[POS_AUTH], 0, (size_t)LEN_AUTH), 164 (MD5Len)LEN_AUTH); 165 MD5Update(&ctx, &h->request[POS_ATTRS], 166 (MD5Len)(h->req_len - POS_ATTRS)); 167 MD5Update(&ctx, (MD5Buf)srvp->secret, 168 (MD5Len)strlen(srvp->secret)); 169 MD5Final(&h->request[POS_AUTH], &ctx); 170 } 171 172 static void 173 /*ARGSUSED*/ 174 insert_message_authenticator(struct rad_handle *h, int srv) 175 { 176 #ifdef WITH_SSL 177 u_char md[EVP_MAX_MD_SIZE]; 178 u_int md_len; 179 const struct rad_server *srvp; 180 HMAC_CTX ctx; 181 srvp = &h->servers[srv]; 182 183 if (h->authentic_pos != 0) { 184 HMAC_CTX_init(&ctx); 185 HMAC_Init(&ctx, srvp->secret, 186 (int)strlen(srvp->secret), EVP_md5()); 187 HMAC_Update(&ctx, &h->request[POS_CODE], (size_t)(POS_AUTH - POS_CODE)); 188 HMAC_Update(&ctx, &h->request[POS_AUTH], (size_t)LEN_AUTH); 189 HMAC_Update(&ctx, &h->request[POS_ATTRS], 190 (size_t)(h->req_len - POS_ATTRS)); 191 HMAC_Final(&ctx, md, &md_len); 192 HMAC_CTX_cleanup(&ctx); 193 HMAC_cleanup(&ctx); 194 (void)memcpy(&h->request[h->authentic_pos + 2], md, 195 (size_t)md_len); 196 } 197 #endif 198 } 199 200 /* 201 * Return true if the current response is valid for a request to the 202 * specified server. 203 */ 204 static int 205 is_valid_response(struct rad_handle *h, int srv, 206 const struct sockaddr_in *from) 207 { 208 MD5_CTX ctx; 209 unsigned char md5[MD5_DIGEST_LENGTH]; 210 const struct rad_server *srvp; 211 int len; 212 #ifdef WITH_SSL 213 HMAC_CTX hctx; 214 u_char resp[MSGSIZE], md[EVP_MAX_MD_SIZE]; 215 int pos; 216 u_int md_len; 217 #endif 218 219 srvp = &h->servers[srv]; 220 221 /* Check the source address */ 222 if (from->sin_family != srvp->addr.sin_family || 223 from->sin_addr.s_addr != srvp->addr.sin_addr.s_addr || 224 from->sin_port != srvp->addr.sin_port) 225 return 0; 226 227 /* Check the message length */ 228 if (h->resp_len < POS_ATTRS) 229 return 0; 230 len = h->response[POS_LENGTH] << 8 | h->response[POS_LENGTH+1]; 231 if (len > h->resp_len) 232 return 0; 233 234 /* Check the response authenticator */ 235 MD5Init(&ctx); 236 MD5Update(&ctx, &h->response[POS_CODE], 237 (MD5Len)(POS_AUTH - POS_CODE)); 238 MD5Update(&ctx, &h->request[POS_AUTH], 239 (MD5Len)LEN_AUTH); 240 MD5Update(&ctx, &h->response[POS_ATTRS], 241 (MD5Len)(len - POS_ATTRS)); 242 MD5Update(&ctx, (MD5Buf)srvp->secret, 243 (MD5Len)strlen(srvp->secret)); 244 MD5Final(md5, &ctx); 245 if (memcmp(&h->response[POS_AUTH], md5, sizeof md5) != 0) 246 return 0; 247 248 #ifdef WITH_SSL 249 /* 250 * For non accounting responses check the message authenticator, 251 * if any. 252 */ 253 if (h->response[POS_CODE] != RAD_ACCOUNTING_RESPONSE) { 254 255 (void)memcpy(resp, h->response, (size_t)MSGSIZE); 256 pos = POS_ATTRS; 257 258 /* Search and verify the Message-Authenticator */ 259 while (pos < len - 2) { 260 261 if (h->response[pos] == RAD_MESSAGE_AUTHENTIC) { 262 /* zero fill the Message-Authenticator */ 263 (void)memset(&resp[pos + 2], 0, 264 (size_t)MD5_DIGEST_LENGTH); 265 266 HMAC_CTX_init(&hctx); 267 HMAC_Init(&hctx, srvp->secret, 268 (int)strlen(srvp->secret), EVP_md5()); 269 HMAC_Update(&hctx, &h->response[POS_CODE], 270 (size_t)(POS_AUTH - POS_CODE)); 271 HMAC_Update(&hctx, &h->request[POS_AUTH], 272 (size_t)LEN_AUTH); 273 HMAC_Update(&hctx, &resp[POS_ATTRS], 274 (size_t)(h->resp_len - POS_ATTRS)); 275 HMAC_Final(&hctx, md, &md_len); 276 HMAC_CTX_cleanup(&hctx); 277 HMAC_cleanup(&hctx); 278 if (memcmp(md, &h->response[pos + 2], 279 (size_t)MD5_DIGEST_LENGTH) != 0) 280 return 0; 281 break; 282 } 283 pos += h->response[pos + 1]; 284 } 285 } 286 #endif 287 return 1; 288 } 289 290 static int 291 put_password_attr(struct rad_handle *h, int type, const void *value, size_t len) 292 { 293 size_t padded_len; 294 size_t pad_len; 295 296 if (h->pass_pos != 0) { 297 generr(h, "Multiple User-Password attributes specified"); 298 return -1; 299 } 300 if (len > PASSSIZE) 301 len = PASSSIZE; 302 padded_len = len == 0 ? 16 : (len + 15) & ~0xf; 303 pad_len = padded_len - len; 304 305 /* 306 * Put in a place-holder attribute containing all zeros, and 307 * remember where it is so we can fill it in later. 308 */ 309 clear_password(h); 310 put_raw_attr(h, type, h->pass, padded_len); 311 h->pass_pos = (int)(h->req_len - padded_len); 312 313 /* Save the cleartext password, padded as necessary */ 314 (void)memcpy(h->pass, value, len); 315 h->pass_len = len; 316 (void)memset(h->pass + len, 0, pad_len); 317 return 0; 318 } 319 320 static int 321 put_raw_attr(struct rad_handle *h, int type, const void *value, size_t len) 322 { 323 if (len > 253) { 324 generr(h, "Attribute too long"); 325 return -1; 326 } 327 if (h->req_len + 2 + len > MSGSIZE) { 328 generr(h, "Maximum message length exceeded"); 329 return -1; 330 } 331 h->request[h->req_len++] = type; 332 h->request[h->req_len++] = (unsigned char)(len + 2); 333 (void)memcpy(&h->request[h->req_len], value, len); 334 h->req_len += len; 335 return 0; 336 } 337 338 int 339 rad_add_server(struct rad_handle *h, const char *host, int port, 340 const char *secret, int timeout, int tries) 341 { 342 struct rad_server *srvp; 343 344 if (h->num_servers >= MAXSERVERS) { 345 generr(h, "Too many RADIUS servers specified"); 346 return -1; 347 } 348 srvp = &h->servers[h->num_servers]; 349 350 (void)memset(&srvp->addr, 0, sizeof srvp->addr); 351 srvp->addr.sin_len = sizeof srvp->addr; 352 srvp->addr.sin_family = AF_INET; 353 if (!inet_aton(host, &srvp->addr.sin_addr)) { 354 struct hostent *hent; 355 356 if ((hent = gethostbyname(host)) == NULL) { 357 generr(h, "%s: host not found", host); 358 return -1; 359 } 360 (void)memcpy(&srvp->addr.sin_addr, hent->h_addr, 361 sizeof srvp->addr.sin_addr); 362 } 363 if (port != 0) 364 srvp->addr.sin_port = htons((u_short)port); 365 else { 366 struct servent *sent; 367 368 if (h->type == RADIUS_AUTH) 369 srvp->addr.sin_port = 370 (sent = getservbyname("radius", "udp")) != NULL ? 371 sent->s_port : htons(RADIUS_PORT); 372 else 373 srvp->addr.sin_port = 374 (sent = getservbyname("radacct", "udp")) != NULL ? 375 sent->s_port : htons(RADACCT_PORT); 376 } 377 if ((srvp->secret = strdup(secret)) == NULL) { 378 generr(h, "Out of memory"); 379 return -1; 380 } 381 srvp->timeout = timeout; 382 srvp->max_tries = tries; 383 srvp->num_tries = 0; 384 h->num_servers++; 385 return 0; 386 } 387 388 void 389 rad_close(struct rad_handle *h) 390 { 391 int srv; 392 393 if (h->fd != -1) 394 close(h->fd); 395 for (srv = 0; srv < h->num_servers; srv++) { 396 (void)memset(h->servers[srv].secret, 0, 397 strlen(h->servers[srv].secret)); 398 free(h->servers[srv].secret); 399 } 400 clear_password(h); 401 free(h); 402 } 403 404 int 405 rad_config(struct rad_handle *h, const char *path) 406 { 407 FILE *fp; 408 char buf[MAXCONFLINE]; 409 int linenum; 410 int retval; 411 412 if (path == NULL) 413 path = PATH_RADIUS_CONF; 414 if ((fp = fopen(path, "r")) == NULL) { 415 generr(h, "Cannot open \"%s\": %s", path, strerror(errno)); 416 return -1; 417 } 418 retval = 0; 419 linenum = 0; 420 while (fgets(buf, (int)sizeof buf, fp) != NULL) { 421 size_t len; 422 const char *fields[5]; 423 int nfields; 424 char msg[ERRSIZE]; 425 const char *type; 426 const char *host; 427 char *res; 428 const char *port_str; 429 const char *secret; 430 const char *timeout_str; 431 const char *maxtries_str; 432 char *end; 433 const char *wanttype; 434 unsigned long timeout; 435 unsigned long maxtries; 436 int port; 437 size_t i; 438 439 linenum++; 440 len = strlen(buf); 441 /* We know len > 0, else fgets would have returned NULL. */ 442 if (buf[len - 1] != '\n') { 443 if (len == sizeof buf - 1) 444 generr(h, "%s:%d: line too long", path, 445 linenum); 446 else 447 generr(h, "%s:%d: missing newline", path, 448 linenum); 449 retval = -1; 450 break; 451 } 452 buf[len - 1] = '\0'; 453 454 /* Extract the fields from the line. */ 455 nfields = split(buf, fields, sizeof(fields) / sizeof(fields[0]), 456 msg, sizeof msg); 457 if (nfields == -1) { 458 generr(h, "%s:%d: %s", path, linenum, msg); 459 retval = -1; 460 break; 461 } 462 if (nfields == 0) 463 continue; 464 /* 465 * The first field should contain "auth" or "acct" for 466 * authentication or accounting, respectively. But older 467 * versions of the file didn't have that field. Default 468 * it to "auth" for backward compatibility. 469 */ 470 if (strcmp(fields[0], "auth") != 0 && 471 strcmp(fields[0], "acct") != 0) { 472 if (nfields >= 5) { 473 generr(h, "%s:%d: invalid service type", path, 474 linenum); 475 retval = -1; 476 break; 477 } 478 nfields++; 479 for (i = nfields; --i > 0; ) 480 fields[i] = fields[i - 1]; 481 fields[0] = "auth"; 482 } 483 if (nfields < 3) { 484 generr(h, "%s:%d: missing shared secret", path, 485 linenum); 486 retval = -1; 487 break; 488 } 489 type = fields[0]; 490 host = fields[1]; 491 secret = fields[2]; 492 timeout_str = fields[3]; 493 maxtries_str = fields[4]; 494 495 /* Ignore the line if it is for the wrong service type. */ 496 wanttype = h->type == RADIUS_AUTH ? "auth" : "acct"; 497 if (strcmp(type, wanttype) != 0) 498 continue; 499 500 /* Parse and validate the fields. */ 501 res = __UNCONST(host); 502 host = strsep(&res, ":"); 503 port_str = strsep(&res, ":"); 504 if (port_str != NULL) { 505 port = (int)strtoul(port_str, &end, 10); 506 if (*end != '\0') { 507 generr(h, "%s:%d: invalid port", path, 508 linenum); 509 retval = -1; 510 break; 511 } 512 } else 513 port = 0; 514 if (timeout_str != NULL) { 515 timeout = strtoul(timeout_str, &end, 10); 516 if (*end != '\0') { 517 generr(h, "%s:%d: invalid timeout", path, 518 linenum); 519 retval = -1; 520 break; 521 } 522 } else 523 timeout = TIMEOUT; 524 if (maxtries_str != NULL) { 525 maxtries = strtoul(maxtries_str, &end, 10); 526 if (*end != '\0') { 527 generr(h, "%s:%d: invalid maxtries", path, 528 linenum); 529 retval = -1; 530 break; 531 } 532 } else 533 maxtries = MAXTRIES; 534 535 if (rad_add_server(h, host, port, secret, (int)timeout, 536 (int)maxtries) == -1) { 537 (void)strcpy(msg, h->errmsg); 538 generr(h, "%s:%d: %s", path, linenum, msg); 539 retval = -1; 540 break; 541 } 542 } 543 /* Clear out the buffer to wipe a possible copy of a shared secret */ 544 (void)memset(buf, 0, sizeof buf); 545 fclose(fp); 546 return retval; 547 } 548 549 /* 550 * rad_init_send_request() must have previously been called. 551 * Returns: 552 * 0 The application should select on *fd with a timeout of tv before 553 * calling rad_continue_send_request again. 554 * < 0 Failure 555 * > 0 Success 556 */ 557 int 558 rad_continue_send_request(struct rad_handle *h, int selected, int *fd, 559 struct timeval *tv) 560 { 561 ssize_t n; 562 563 if (selected) { 564 struct sockaddr_in from; 565 socklen_t fromlen; 566 ssize_t rv; 567 568 fromlen = sizeof from; 569 rv = recvfrom(h->fd, h->response, (size_t)MSGSIZE, 570 MSG_WAITALL, (struct sockaddr *)(void *)&from, &fromlen); 571 if (rv == -1) { 572 generr(h, "recvfrom: %s", strerror(errno)); 573 return -1; 574 } 575 h->resp_len = rv; 576 if (is_valid_response(h, h->srv, &from)) { 577 h->resp_len = h->response[POS_LENGTH] << 8 | 578 h->response[POS_LENGTH+1]; 579 h->resp_pos = POS_ATTRS; 580 return h->response[POS_CODE]; 581 } 582 } 583 584 if (h->try == h->total_tries) { 585 generr(h, "No valid RADIUS responses received"); 586 return -1; 587 } 588 589 /* 590 * Scan round-robin to the next server that has some 591 * tries left. There is guaranteed to be one, or we 592 * would have exited this loop by now. 593 */ 594 while (h->servers[h->srv].num_tries >= h->servers[h->srv].max_tries) 595 if (++h->srv >= h->num_servers) 596 h->srv = 0; 597 598 if (h->request[POS_CODE] == RAD_ACCOUNTING_REQUEST) 599 /* Insert the request authenticator into the request */ 600 insert_request_authenticator(h, h->srv); 601 else 602 /* Insert the scrambled password into the request */ 603 if (h->pass_pos != 0) 604 insert_scrambled_password(h, h->srv); 605 606 insert_message_authenticator(h, h->srv); 607 608 /* Send the request */ 609 n = sendto(h->fd, h->request, h->req_len, 0, 610 (const struct sockaddr *)(void *)&h->servers[h->srv].addr, 611 (socklen_t)sizeof h->servers[h->srv].addr); 612 if (n != (ssize_t)h->req_len) { 613 if (n == -1) 614 generr(h, "sendto: %s", strerror(errno)); 615 else 616 generr(h, "sendto: short write"); 617 return -1; 618 } 619 620 h->try++; 621 h->servers[h->srv].num_tries++; 622 tv->tv_sec = h->servers[h->srv].timeout; 623 tv->tv_usec = 0; 624 *fd = h->fd; 625 626 return 0; 627 } 628 629 int 630 rad_create_request(struct rad_handle *h, int code) 631 { 632 int i; 633 634 h->request[POS_CODE] = code; 635 h->request[POS_IDENT] = ++h->ident; 636 /* Create a random authenticator */ 637 for (i = 0; i < LEN_AUTH; i += 2) { 638 uint32_t r; 639 r = (uint32_t)random(); 640 h->request[POS_AUTH+i] = (u_char)r; 641 h->request[POS_AUTH+i+1] = (u_char)(r >> 8); 642 } 643 h->req_len = POS_ATTRS; 644 clear_password(h); 645 h->request_created = 1; 646 return 0; 647 } 648 649 struct in_addr 650 rad_cvt_addr(const void *data) 651 { 652 struct in_addr value; 653 654 (void)memcpy(&value.s_addr, data, sizeof value.s_addr); 655 return value; 656 } 657 658 u_int32_t 659 rad_cvt_int(const void *data) 660 { 661 u_int32_t value; 662 663 (void)memcpy(&value, data, sizeof value); 664 return ntohl(value); 665 } 666 667 char * 668 rad_cvt_string(const void *data, size_t len) 669 { 670 char *s; 671 672 s = malloc(len + 1); 673 if (s != NULL) { 674 (void)memcpy(s, data, len); 675 s[len] = '\0'; 676 } 677 return s; 678 } 679 680 /* 681 * Returns the attribute type. If none are left, returns 0. On failure, 682 * returns -1. 683 */ 684 int 685 rad_get_attr(struct rad_handle *h, const void **value, size_t *len) 686 { 687 int type; 688 689 if (h->resp_pos >= h->resp_len) 690 return 0; 691 if (h->resp_pos + 2 > h->resp_len) { 692 generr(h, "Malformed attribute in response"); 693 return -1; 694 } 695 type = h->response[h->resp_pos++]; 696 *len = h->response[h->resp_pos++] - 2; 697 if (h->resp_pos + (int)*len > h->resp_len) { 698 generr(h, "Malformed attribute in response"); 699 return -1; 700 } 701 *value = &h->response[h->resp_pos]; 702 h->resp_pos += (int)*len; 703 return type; 704 } 705 706 /* 707 * Returns -1 on error, 0 to indicate no event and >0 for success 708 */ 709 int 710 rad_init_send_request(struct rad_handle *h, int *fd, struct timeval *tv) 711 { 712 int srv; 713 714 /* Make sure we have a socket to use */ 715 if (h->fd == -1) { 716 struct sockaddr_in saddr; 717 718 if ((h->fd = socket(PF_INET, SOCK_DGRAM, IPPROTO_UDP)) == -1) { 719 generr(h, "Cannot create socket: %s", strerror(errno)); 720 return -1; 721 } 722 (void)memset(&saddr, 0, sizeof saddr); 723 saddr.sin_len = sizeof saddr; 724 saddr.sin_family = AF_INET; 725 saddr.sin_addr.s_addr = INADDR_ANY; 726 saddr.sin_port = htons(0); 727 if (bind(h->fd, (const struct sockaddr *)(void *)&saddr, 728 (socklen_t)sizeof saddr) == -1) { 729 generr(h, "bind: %s", strerror(errno)); 730 close(h->fd); 731 h->fd = -1; 732 return -1; 733 } 734 } 735 736 if (h->request[POS_CODE] == RAD_ACCOUNTING_REQUEST) { 737 /* Make sure no password given */ 738 if (h->pass_pos || h->chap_pass) { 739 generr(h, "User or Chap Password" 740 " in accounting request"); 741 return -1; 742 } 743 } else { 744 if (h->eap_msg == 0) { 745 /* Make sure the user gave us a password */ 746 if (h->pass_pos == 0 && !h->chap_pass) { 747 generr(h, "No User or Chap Password" 748 " attributes given"); 749 return -1; 750 } 751 if (h->pass_pos != 0 && h->chap_pass) { 752 generr(h, "Both User and Chap Password" 753 " attributes given"); 754 return -1; 755 } 756 } 757 } 758 759 /* Fill in the length field in the message */ 760 h->request[POS_LENGTH] = (unsigned char)(h->req_len >> 8); 761 h->request[POS_LENGTH+1] = (unsigned char)h->req_len; 762 763 /* 764 * Count the total number of tries we will make, and zero the 765 * counter for each server. 766 */ 767 h->total_tries = 0; 768 for (srv = 0; srv < h->num_servers; srv++) { 769 h->total_tries += h->servers[srv].max_tries; 770 h->servers[srv].num_tries = 0; 771 } 772 if (h->total_tries == 0) { 773 generr(h, "No RADIUS servers specified"); 774 return -1; 775 } 776 777 h->try = h->srv = 0; 778 779 return rad_continue_send_request(h, 0, fd, tv); 780 } 781 782 /* 783 * Create and initialize a rad_handle structure, and return it to the 784 * caller. Can fail only if the necessary memory cannot be allocated. 785 * In that case, it returns NULL. 786 */ 787 struct rad_handle * 788 rad_auth_open(void) 789 { 790 struct rad_handle *h; 791 792 h = (struct rad_handle *)malloc(sizeof(struct rad_handle)); 793 if (h != NULL) { 794 srandomdev(0); 795 h->fd = -1; 796 h->num_servers = 0; 797 h->ident = random(); 798 h->errmsg[0] = '\0'; 799 (void)memset(h->pass, 0, sizeof h->pass); 800 h->pass_len = 0; 801 h->pass_pos = 0; 802 h->chap_pass = 0; 803 h->authentic_pos = 0; 804 h->type = RADIUS_AUTH; 805 h->request_created = 0; 806 h->eap_msg = 0; 807 } 808 return h; 809 } 810 811 struct rad_handle * 812 rad_acct_open(void) 813 { 814 struct rad_handle *h; 815 816 h = rad_open(); 817 if (h != NULL) 818 h->type = RADIUS_ACCT; 819 return h; 820 } 821 822 struct rad_handle * 823 rad_open(void) 824 { 825 return rad_auth_open(); 826 } 827 828 int 829 rad_put_addr(struct rad_handle *h, int type, struct in_addr addr) 830 { 831 return rad_put_attr(h, type, &addr.s_addr, sizeof addr.s_addr); 832 } 833 834 int 835 rad_put_attr(struct rad_handle *h, int type, const void *value, size_t len) 836 { 837 int result; 838 839 if (!h->request_created) { 840 generr(h, "Please call rad_create_request()" 841 " before putting attributes"); 842 return -1; 843 } 844 845 if (h->request[POS_CODE] == RAD_ACCOUNTING_REQUEST) { 846 if (type == RAD_EAP_MESSAGE) { 847 generr(h, "EAP-Message attribute is not valid" 848 " in accounting requests"); 849 return -1; 850 } 851 } 852 853 /* 854 * When proxying EAP Messages, the Message Authenticator 855 * MUST be present; see RFC 3579. 856 */ 857 if (type == RAD_EAP_MESSAGE) { 858 if (rad_put_message_authentic(h) == -1) 859 return -1; 860 } 861 862 if (type == RAD_USER_PASSWORD) { 863 result = put_password_attr(h, type, value, len); 864 } else if (type == RAD_MESSAGE_AUTHENTIC) { 865 result = rad_put_message_authentic(h); 866 } else { 867 result = put_raw_attr(h, type, value, len); 868 if (result == 0) { 869 if (type == RAD_CHAP_PASSWORD) 870 h->chap_pass = 1; 871 else if (type == RAD_EAP_MESSAGE) 872 h->eap_msg = 1; 873 } 874 } 875 876 return result; 877 } 878 879 int 880 rad_put_int(struct rad_handle *h, int type, u_int32_t value) 881 { 882 u_int32_t nvalue; 883 884 nvalue = htonl(value); 885 return rad_put_attr(h, type, &nvalue, sizeof nvalue); 886 } 887 888 int 889 rad_put_string(struct rad_handle *h, int type, const char *str) 890 { 891 return rad_put_attr(h, type, str, strlen(str)); 892 } 893 894 int 895 rad_put_message_authentic(struct rad_handle *h) 896 { 897 #ifdef WITH_SSL 898 u_char md_zero[MD5_DIGEST_LENGTH]; 899 900 if (h->request[POS_CODE] == RAD_ACCOUNTING_REQUEST) { 901 generr(h, "Message-Authenticator is not valid" 902 " in accounting requests"); 903 return -1; 904 } 905 906 if (h->authentic_pos == 0) { 907 h->authentic_pos = (int)h->req_len; 908 (void)memset(md_zero, 0, sizeof(md_zero)); 909 return (put_raw_attr(h, RAD_MESSAGE_AUTHENTIC, md_zero, 910 sizeof(md_zero))); 911 } 912 return 0; 913 #else 914 generr(h, "Message Authenticator not supported," 915 " please recompile libradius with SSL support"); 916 return -1; 917 #endif 918 } 919 920 /* 921 * Returns the response type code on success, or -1 on failure. 922 */ 923 int 924 rad_send_request(struct rad_handle *h) 925 { 926 struct timeval timelimit; 927 struct timeval tv; 928 int fd; 929 int n; 930 931 n = rad_init_send_request(h, &fd, &tv); 932 933 if (n != 0) 934 return n; 935 936 gettimeofday(&timelimit, NULL); 937 timeradd(&tv, &timelimit, &timelimit); 938 939 for ( ; ; ) { 940 fd_set readfds; 941 942 FD_ZERO(&readfds); 943 FD_SET(fd, &readfds); 944 945 n = select(fd + 1, &readfds, NULL, NULL, &tv); 946 947 if (n == -1) { 948 generr(h, "select: %s", strerror(errno)); 949 return -1; 950 } 951 952 if (!FD_ISSET(fd, &readfds)) { 953 /* Compute a new timeout */ 954 gettimeofday(&tv, NULL); 955 timersub(&timelimit, &tv, &tv); 956 if (tv.tv_sec > 0 || (tv.tv_sec == 0 && tv.tv_usec > 0)) 957 /* Continue the select */ 958 continue; 959 } 960 961 n = rad_continue_send_request(h, n, &fd, &tv); 962 963 if (n != 0) 964 return n; 965 966 gettimeofday(&timelimit, NULL); 967 timeradd(&tv, &timelimit, &timelimit); 968 } 969 } 970 971 const char * 972 rad_strerror(struct rad_handle *h) 973 { 974 return h->errmsg; 975 } 976 977 /* 978 * Destructively split a string into fields separated by white space. 979 * `#' at the beginning of a field begins a comment that extends to the 980 * end of the string. Fields may be quoted with `"'. Inside quoted 981 * strings, the backslash escapes `\"' and `\\' are honored. 982 * 983 * Pointers to up to the first maxfields fields are stored in the fields 984 * array. Missing fields get NULL pointers. 985 * 986 * The return value is the actual number of fields parsed, and is always 987 * <= maxfields. 988 * 989 * On a syntax error, places a message in the msg string, and returns -1. 990 */ 991 static int 992 split(char *str, const char *fields[], size_t maxfields, char *msg, 993 size_t msglen) 994 { 995 char *p; 996 int i; 997 static const char ws[] = " \t"; 998 999 for (i = 0; i < maxfields; i++) 1000 fields[i] = NULL; 1001 p = str; 1002 i = 0; 1003 while (*p != '\0') { 1004 p += strspn(p, ws); 1005 if (*p == '#' || *p == '\0') 1006 break; 1007 if (i >= maxfields) { 1008 snprintf(msg, msglen, "line has too many fields"); 1009 return -1; 1010 } 1011 if (*p == '"') { 1012 char *dst; 1013 1014 dst = ++p; 1015 fields[i] = dst; 1016 while (*p != '"') { 1017 if (*p == '\\') { 1018 p++; 1019 if (*p != '"' && *p != '\\' && 1020 *p != '\0') { 1021 snprintf(msg, msglen, 1022 "invalid `\\' escape"); 1023 return -1; 1024 } 1025 } 1026 if (*p == '\0') { 1027 snprintf(msg, msglen, 1028 "unterminated quoted string"); 1029 return -1; 1030 } 1031 *dst++ = *p++; 1032 } 1033 *dst = '\0'; 1034 p++; 1035 if (*fields[i] == '\0') { 1036 snprintf(msg, msglen, 1037 "empty quoted string not permitted"); 1038 return -1; 1039 } 1040 if (*p != '\0' && strspn(p, ws) == 0) { 1041 snprintf(msg, msglen, "quoted string not" 1042 " followed by white space"); 1043 return -1; 1044 } 1045 } else { 1046 fields[i] = p; 1047 p += strcspn(p, ws); 1048 if (*p != '\0') 1049 *p++ = '\0'; 1050 } 1051 i++; 1052 } 1053 return i; 1054 } 1055 1056 int 1057 rad_get_vendor_attr(u_int32_t *vendor, const void **data, size_t *len) 1058 { 1059 const struct vendor_attribute *attr; 1060 1061 attr = (const struct vendor_attribute *)*data; 1062 *vendor = ntohl(attr->vendor_value); 1063 *data = attr->attrib_data; 1064 *len = attr->attrib_len - 2; 1065 1066 return (attr->attrib_type); 1067 } 1068 1069 int 1070 rad_put_vendor_addr(struct rad_handle *h, int vendor, int type, 1071 struct in_addr addr) 1072 { 1073 return (rad_put_vendor_attr(h, vendor, type, &addr.s_addr, 1074 sizeof addr.s_addr)); 1075 } 1076 1077 int 1078 rad_put_vendor_attr(struct rad_handle *h, int vendor, int type, 1079 const void *value, size_t len) 1080 { 1081 struct vendor_attribute *attr; 1082 int res; 1083 1084 if (!h->request_created) { 1085 generr(h, "Please call rad_create_request()" 1086 " before putting attributes"); 1087 return -1; 1088 } 1089 1090 if ((attr = malloc(len + 6)) == NULL) { 1091 generr(h, "malloc failure (%zu bytes)", len + 6); 1092 return -1; 1093 } 1094 1095 attr->vendor_value = htonl((uint32_t)vendor); 1096 attr->attrib_type = type; 1097 attr->attrib_len = (unsigned char)(len + 2); 1098 (void)memcpy(attr->attrib_data, value, len); 1099 1100 res = put_raw_attr(h, RAD_VENDOR_SPECIFIC, attr, len + 6); 1101 free(attr); 1102 if (res == 0 && vendor == RAD_VENDOR_MICROSOFT 1103 && (type == RAD_MICROSOFT_MS_CHAP_RESPONSE 1104 || type == RAD_MICROSOFT_MS_CHAP2_RESPONSE)) { 1105 h->chap_pass = 1; 1106 } 1107 return (res); 1108 } 1109 1110 int 1111 rad_put_vendor_int(struct rad_handle *h, int vendor, int type, u_int32_t i) 1112 { 1113 u_int32_t value; 1114 1115 value = htonl(i); 1116 return (rad_put_vendor_attr(h, vendor, type, &value, sizeof value)); 1117 } 1118 1119 int 1120 rad_put_vendor_string(struct rad_handle *h, int vendor, int type, 1121 const char *str) 1122 { 1123 return (rad_put_vendor_attr(h, vendor, type, str, strlen(str))); 1124 } 1125 1126 ssize_t 1127 rad_request_authenticator(struct rad_handle *h, char *buf, size_t len) 1128 { 1129 if (len < LEN_AUTH) 1130 return (-1); 1131 (void)memcpy(buf, h->request + POS_AUTH, (size_t)LEN_AUTH); 1132 if (len > LEN_AUTH) 1133 buf[LEN_AUTH] = '\0'; 1134 return (LEN_AUTH); 1135 } 1136 1137 u_char * 1138 rad_demangle(struct rad_handle *h, const void *mangled, size_t mlen) 1139 { 1140 char R[LEN_AUTH]; 1141 const char *S; 1142 int i, Ppos; 1143 MD5_CTX Context; 1144 u_char b[MD5_DIGEST_LENGTH], *demangled; 1145 const u_char *C; 1146 1147 if ((mlen % 16 != 0) || mlen > 128) { 1148 generr(h, "Cannot interpret mangled data of length %lu", 1149 (u_long)mlen); 1150 return NULL; 1151 } 1152 1153 C = (const u_char *)mangled; 1154 1155 /* We need the shared secret as Salt */ 1156 S = rad_server_secret(h); 1157 1158 /* We need the request authenticator */ 1159 if (rad_request_authenticator(h, R, sizeof R) != LEN_AUTH) { 1160 generr(h, "Cannot obtain the RADIUS request authenticator"); 1161 return NULL; 1162 } 1163 1164 demangled = malloc(mlen); 1165 if (!demangled) 1166 return NULL; 1167 1168 MD5Init(&Context); 1169 MD5Update(&Context, (MD5Buf)S, (MD5Len)strlen(S)); 1170 MD5Update(&Context, (MD5Buf)R, (MD5Len)LEN_AUTH); 1171 MD5Final(b, &Context); 1172 Ppos = 0; 1173 while (mlen) { 1174 1175 mlen -= 16; 1176 for (i = 0; i < 16; i++) 1177 demangled[Ppos++] = C[i] ^ b[i]; 1178 1179 if (mlen) { 1180 MD5Init(&Context); 1181 MD5Update(&Context, (MD5Buf)S, (MD5Len)strlen(S)); 1182 MD5Update(&Context, (MD5Buf)C, (MD5Len)16); 1183 MD5Final(b, &Context); 1184 } 1185 1186 C += 16; 1187 } 1188 1189 return demangled; 1190 } 1191 1192 u_char * 1193 rad_demangle_mppe_key(struct rad_handle *h, const void *mangled, 1194 size_t mlen, size_t *len) 1195 { 1196 char R[LEN_AUTH]; /* variable names as per rfc2548 */ 1197 const char *S; 1198 u_char b[MD5_DIGEST_LENGTH], *demangled; 1199 const u_char *A, *C; 1200 MD5_CTX Context; 1201 size_t Slen, Clen, i, Ppos; 1202 u_char *P; 1203 1204 if (mlen % 16 != SALT_LEN) { 1205 generr(h, "Cannot interpret mangled data of length %lu", 1206 (u_long)mlen); 1207 return NULL; 1208 } 1209 1210 /* We need the RADIUS Request-Authenticator */ 1211 if (rad_request_authenticator(h, R, sizeof R) != LEN_AUTH) { 1212 generr(h, "Cannot obtain the RADIUS request authenticator"); 1213 return NULL; 1214 } 1215 1216 A = (const u_char *)mangled; /* Salt comes first */ 1217 C = (const u_char *)mangled + SALT_LEN; /* Then the ciphertext */ 1218 Clen = mlen - SALT_LEN; 1219 S = rad_server_secret(h); /* We need the RADIUS secret */ 1220 Slen = strlen(S); 1221 P = alloca(Clen); /* We derive our plaintext */ 1222 1223 MD5Init(&Context); 1224 MD5Update(&Context, (MD5Buf)S, (MD5Len)Slen); 1225 MD5Update(&Context, (MD5Buf)R, (MD5Len)LEN_AUTH); 1226 MD5Update(&Context, (MD5Buf)A, (MD5Len)SALT_LEN); 1227 MD5Final(b, &Context); 1228 Ppos = 0; 1229 1230 while (Clen) { 1231 Clen -= 16; 1232 1233 for (i = 0; i < 16; i++) 1234 P[Ppos++] = C[i] ^ b[i]; 1235 1236 if (Clen) { 1237 MD5Init(&Context); 1238 MD5Update(&Context, (MD5Buf)S, (MD5Len)Slen); 1239 MD5Update(&Context, (MD5Buf)C, (MD5Len)16); 1240 MD5Final(b, &Context); 1241 } 1242 1243 C += 16; 1244 } 1245 1246 /* 1247 * The resulting plain text consists of a one-byte length, the text and 1248 * maybe some padding. 1249 */ 1250 *len = *P; 1251 if (*len > mlen - 1) { 1252 generr(h, "Mangled data seems to be garbage %zu %zu", 1253 *len, mlen-1); 1254 return NULL; 1255 } 1256 1257 if (*len > MPPE_KEY_LEN * 2) { 1258 generr(h, "Key to long (%zu) for me max. %d", 1259 *len, MPPE_KEY_LEN * 2); 1260 return NULL; 1261 } 1262 demangled = malloc(*len); 1263 if (!demangled) 1264 return NULL; 1265 1266 (void)memcpy(demangled, P + 1, *len); 1267 return demangled; 1268 } 1269 1270 const char * 1271 rad_server_secret(struct rad_handle *h) 1272 { 1273 return (h->servers[h->srv].secret); 1274 } 1275