radius.c revision 98243
1/*
2 * Copyright 1999 Internet Business Solutions Ltd., Switzerland
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 *
26 * $FreeBSD: head/usr.sbin/ppp/radius.c 98243 2002-06-15 08:03:30Z brian $
27 *
28 */
29
30#include <sys/param.h>
31
32#include <sys/socket.h>
33#include <netinet/in_systm.h>
34#include <netinet/in.h>
35#include <netinet/ip.h>
36#include <arpa/inet.h>
37#include <sys/un.h>
38#include <net/route.h>
39
40#ifdef LOCALRAD
41#include "radlib.h"
42#include "radlib_vs.h"
43#else
44#include <radlib.h>
45#include <radlib_vs.h>
46#endif
47
48#include <errno.h>
49#ifndef NODES
50#include <md5.h>
51#endif
52#include <stdio.h>
53#include <stdlib.h>
54#include <string.h>
55#include <sys/time.h>
56#include <termios.h>
57#include <unistd.h>
58#include <netdb.h>
59
60#include "layer.h"
61#include "defs.h"
62#include "log.h"
63#include "descriptor.h"
64#include "prompt.h"
65#include "timer.h"
66#include "fsm.h"
67#include "iplist.h"
68#include "slcompress.h"
69#include "throughput.h"
70#include "lqr.h"
71#include "hdlc.h"
72#include "mbuf.h"
73#include "ncpaddr.h"
74#include "ip.h"
75#include "ipcp.h"
76#include "ipv6cp.h"
77#include "route.h"
78#include "command.h"
79#include "filter.h"
80#include "lcp.h"
81#include "ccp.h"
82#include "link.h"
83#include "mp.h"
84#include "radius.h"
85#include "auth.h"
86#include "async.h"
87#include "physical.h"
88#include "chat.h"
89#include "cbcp.h"
90#include "chap.h"
91#include "datalink.h"
92#include "ncp.h"
93#include "bundle.h"
94#include "proto.h"
95
96#ifndef NODES
97struct mschap_response {
98  u_char ident;
99  u_char flags;
100  u_char lm_response[24];
101  u_char nt_response[24];
102};
103
104struct mschap2_response {
105  u_char ident;
106  u_char flags;
107  u_char pchallenge[16];
108  u_char reserved[8];
109  u_char response[24];
110};
111
112#define	AUTH_LEN	16
113#define	SALT_LEN	2
114#endif
115
116static const char *
117radius_policyname(int policy)
118{
119  switch(policy) {
120  case MPPE_POLICY_ALLOWED:
121    return "Allowed";
122  case MPPE_POLICY_REQUIRED:
123    return "Required";
124  }
125  return NumStr(policy, NULL, 0);
126}
127
128static const char *
129radius_typesname(int types)
130{
131  switch(types) {
132  case MPPE_TYPE_40BIT:
133    return "40 bit";
134  case MPPE_TYPE_128BIT:
135    return "128 bit";
136  case MPPE_TYPE_40BIT|MPPE_TYPE_128BIT:
137    return "40 or 128 bit";
138  }
139  return NumStr(types, NULL, 0);
140}
141
142#ifndef NODES
143static void
144demangle(struct radius *r, const void *mangled, size_t mlen,
145         char **buf, size_t *len)
146{
147  char R[AUTH_LEN];		/* variable names as per rfc2548 */
148  const char *S;
149  u_char b[16];
150  const u_char *A, *C;
151  MD5_CTX Context;
152  int Slen, i, Clen, Ppos;
153  u_char *P;
154
155  if (mlen % 16 != SALT_LEN) {
156    log_Printf(LogWARN, "Cannot interpret mangled data of length %ld\n",
157               (u_long)mlen);
158    *buf = NULL;
159    *len = 0;
160    return;
161  }
162
163  /* We need the RADIUS Request-Authenticator */
164  if (rad_request_authenticator(r->cx.rad, R, sizeof R) != AUTH_LEN) {
165    log_Printf(LogWARN, "Cannot obtain the RADIUS request authenticator\n");
166    *buf = NULL;
167    *len = 0;
168    return;
169  }
170
171  A = (const u_char *)mangled;			/* Salt comes first */
172  C = (const u_char *)mangled + SALT_LEN;	/* Then the ciphertext */
173  Clen = mlen - SALT_LEN;
174  S = rad_server_secret(r->cx.rad);		/* We need the RADIUS secret */
175  Slen = strlen(S);
176  P = alloca(Clen);				/* We derive our plaintext */
177
178  MD5Init(&Context);
179  MD5Update(&Context, S, Slen);
180  MD5Update(&Context, R, AUTH_LEN);
181  MD5Update(&Context, A, SALT_LEN);
182  MD5Final(b, &Context);
183  Ppos = 0;
184
185  while (Clen) {
186    Clen -= 16;
187
188    for (i = 0; i < 16; i++)
189      P[Ppos++] = C[i] ^ b[i];
190
191    if (Clen) {
192      MD5Init(&Context);
193      MD5Update(&Context, S, Slen);
194      MD5Update(&Context, C, 16);
195      MD5Final(b, &Context);
196    }
197
198    C += 16;
199  }
200
201  /*
202   * The resulting plain text consists of a one-byte length, the text and
203   * maybe some padding.
204   */
205  *len = *P;
206  if (*len > mlen - 1) {
207    log_Printf(LogWARN, "Mangled data seems to be garbage\n");
208    *buf = NULL;
209    *len = 0;
210    return;
211  }
212
213  *buf = malloc(*len);
214  memcpy(*buf, P + 1, *len);
215}
216#endif
217
218/*
219 * rad_continue_send_request() has given us `got' (non-zero).  Deal with it.
220 */
221static void
222radius_Process(struct radius *r, int got)
223{
224  char *argv[MAXARGS], *nuke;
225  struct bundle *bundle;
226  int argc, addrs, res, width;
227  size_t len;
228  struct ncprange dest;
229  struct ncpaddr gw;
230  const void *data;
231  const char *stype;
232  u_int32_t ipaddr, vendor;
233  struct in_addr ip;
234
235  r->cx.fd = -1;		/* Stop select()ing */
236  stype = r->cx.auth ? "auth" : "acct";
237
238  switch (got) {
239    case RAD_ACCESS_ACCEPT:
240      log_Printf(LogPHASE, "Radius(%s): ACCEPT received\n", stype);
241      if (!r->cx.auth) {
242        rad_close(r->cx.rad);
243        return;
244      }
245      break;
246
247    case RAD_ACCESS_REJECT:
248      log_Printf(LogPHASE, "Radius(%s): REJECT received\n", stype);
249      if (!r->cx.auth) {
250        rad_close(r->cx.rad);
251        return;
252      }
253      break;
254
255    case RAD_ACCESS_CHALLENGE:
256      /* we can't deal with this (for now) ! */
257      log_Printf(LogPHASE, "Radius: CHALLENGE received (can't handle yet)\n");
258      if (r->cx.auth)
259        auth_Failure(r->cx.auth);
260      rad_close(r->cx.rad);
261      return;
262
263    case RAD_ACCOUNTING_RESPONSE:
264      log_Printf(LogPHASE, "Radius(%s): Accounting response received\n", stype);
265      if (r->cx.auth)
266        auth_Failure(r->cx.auth);		/* unexpected !!! */
267
268      /* No further processing for accounting requests, please */
269      rad_close(r->cx.rad);
270      return;
271
272    case -1:
273      log_Printf(LogPHASE, "radius(%s): %s\n", stype, rad_strerror(r->cx.rad));
274      if (r->cx.auth)
275        auth_Failure(r->cx.auth);
276      rad_close(r->cx.rad);
277      return;
278
279    default:
280      log_Printf(LogERROR, "rad_send_request(%s): Failed %d: %s\n", stype,
281                 got, rad_strerror(r->cx.rad));
282      if (r->cx.auth)
283        auth_Failure(r->cx.auth);
284      rad_close(r->cx.rad);
285      return;
286  }
287
288  /* Let's see what we've got in our reply */
289  r->ip.s_addr = r->mask.s_addr = INADDR_NONE;
290  r->mtu = 0;
291  r->vj = 0;
292  while ((res = rad_get_attr(r->cx.rad, &data, &len)) > 0) {
293    switch (res) {
294      case RAD_FRAMED_IP_ADDRESS:
295        r->ip = rad_cvt_addr(data);
296        log_Printf(LogPHASE, " IP %s\n", inet_ntoa(r->ip));
297        break;
298
299      case RAD_FILTER_ID:
300        free(r->filterid);
301        if ((r->filterid = rad_cvt_string(data, len)) == NULL) {
302          log_Printf(LogERROR, "rad_cvt_string: %s\n", rad_strerror(r->cx.rad));
303          auth_Failure(r->cx.auth);
304          rad_close(r->cx.rad);
305          return;
306        }
307        log_Printf(LogPHASE, " Filter \"%s\"\n", r->filterid);
308        break;
309
310      case RAD_SESSION_TIMEOUT:
311        r->sessiontime = rad_cvt_int(data);
312        log_Printf(LogPHASE, " Session-Timeout %lu\n", r->sessiontime);
313        break;
314
315      case RAD_FRAMED_IP_NETMASK:
316        r->mask = rad_cvt_addr(data);
317        log_Printf(LogPHASE, " Netmask %s\n", inet_ntoa(r->mask));
318        break;
319
320      case RAD_FRAMED_MTU:
321        r->mtu = rad_cvt_int(data);
322        log_Printf(LogPHASE, " MTU %lu\n", r->mtu);
323        break;
324
325      case RAD_FRAMED_ROUTING:
326        /* Disabled for now - should we automatically set up some filters ? */
327        /* rad_cvt_int(data); */
328        /* bit 1 = Send routing packets */
329        /* bit 2 = Receive routing packets */
330        break;
331
332      case RAD_FRAMED_COMPRESSION:
333        r->vj = rad_cvt_int(data) == 1 ? 1 : 0;
334        log_Printf(LogPHASE, " VJ %sabled\n", r->vj ? "en" : "dis");
335        break;
336
337      case RAD_FRAMED_ROUTE:
338        /*
339         * We expect a string of the format ``dest[/bits] gw [metrics]''
340         * Any specified metrics are ignored.  MYADDR and HISADDR are
341         * understood for ``dest'' and ``gw'' and ``0.0.0.0'' is the same
342         * as ``HISADDR''.
343         */
344
345        if ((nuke = rad_cvt_string(data, len)) == NULL) {
346          log_Printf(LogERROR, "rad_cvt_string: %s\n", rad_strerror(r->cx.rad));
347          auth_Failure(r->cx.auth);
348          rad_close(r->cx.rad);
349          return;
350        }
351
352        log_Printf(LogPHASE, " Route: %s\n", nuke);
353        bundle = r->cx.auth->physical->dl->bundle;
354        ip.s_addr = INADDR_ANY;
355        ncprange_setip4host(&dest, ip);
356        argc = command_Interpret(nuke, strlen(nuke), argv);
357        if (argc < 0)
358          log_Printf(LogWARN, "radius: %s: Syntax error\n",
359                     argc == 1 ? argv[0] : "\"\"");
360        else if (argc < 2)
361          log_Printf(LogWARN, "radius: %s: Invalid route\n",
362                     argc == 1 ? argv[0] : "\"\"");
363        else if ((strcasecmp(argv[0], "default") != 0 &&
364                  !ncprange_aton(&dest, &bundle->ncp, argv[0])) ||
365                 !ncpaddr_aton(&gw, &bundle->ncp, argv[1]))
366          log_Printf(LogWARN, "radius: %s %s: Invalid route\n",
367                     argv[0], argv[1]);
368        else {
369          ncprange_getwidth(&dest, &width);
370          if (width == 32 && strchr(argv[0], '/') == NULL) {
371            /* No mask specified - use the natural mask */
372            ncprange_getip4addr(&dest, &ip);
373            ncprange_setip4mask(&dest, addr2mask(ip));
374          }
375          addrs = 0;
376
377          if (!strncasecmp(argv[0], "HISADDR", 7))
378            addrs = ROUTE_DSTHISADDR;
379          else if (!strncasecmp(argv[0], "MYADDR", 6))
380            addrs = ROUTE_DSTMYADDR;
381
382          if (ncpaddr_getip4addr(&gw, &ipaddr) && ipaddr == INADDR_ANY) {
383            addrs |= ROUTE_GWHISADDR;
384            ncpaddr_setip4(&gw, bundle->ncp.ipcp.peer_ip);
385          } else if (strcasecmp(argv[1], "HISADDR") == 0)
386            addrs |= ROUTE_GWHISADDR;
387
388          route_Add(&r->routes, addrs, &dest, &gw);
389        }
390        free(nuke);
391        break;
392
393      case RAD_REPLY_MESSAGE:
394        free(r->repstr);
395        if ((r->repstr = rad_cvt_string(data, len)) == NULL) {
396          log_Printf(LogERROR, "rad_cvt_string: %s\n", rad_strerror(r->cx.rad));
397          auth_Failure(r->cx.auth);
398          rad_close(r->cx.rad);
399          return;
400        }
401        log_Printf(LogPHASE, " Reply-Message \"%s\"\n", r->repstr);
402        break;
403
404      case RAD_VENDOR_SPECIFIC:
405        if ((res = rad_get_vendor_attr(&vendor, &data, &len)) <= 0) {
406          log_Printf(LogERROR, "rad_get_vendor_attr: %s (failing!)\n",
407                     rad_strerror(r->cx.rad));
408          auth_Failure(r->cx.auth);
409          rad_close(r->cx.rad);
410          return;
411        }
412
413	switch (vendor) {
414          case RAD_VENDOR_MICROSOFT:
415            switch (res) {
416#ifndef NODES
417              case RAD_MICROSOFT_MS_CHAP_ERROR:
418                free(r->errstr);
419                if (len == 0)
420                  r->errstr = NULL;
421                else {
422                  if ((r->errstr = rad_cvt_string((const char *)data + 1,
423                                                  len - 1)) == NULL) {
424                    log_Printf(LogERROR, "rad_cvt_string: %s\n",
425                               rad_strerror(r->cx.rad));
426                    auth_Failure(r->cx.auth);
427                    rad_close(r->cx.rad);
428                    return;
429                  }
430                  log_Printf(LogPHASE, " MS-CHAP-Error \"%s\"\n", r->errstr);
431                }
432                break;
433
434              case RAD_MICROSOFT_MS_CHAP2_SUCCESS:
435                free(r->msrepstr);
436                if (len == 0)
437                  r->msrepstr = NULL;
438                else {
439                  if ((r->msrepstr = rad_cvt_string((const char *)data + 1,
440                                                    len - 1)) == NULL) {
441                    log_Printf(LogERROR, "rad_cvt_string: %s\n",
442                               rad_strerror(r->cx.rad));
443                    auth_Failure(r->cx.auth);
444                    rad_close(r->cx.rad);
445                    return;
446                  }
447                  log_Printf(LogPHASE, " MS-CHAP2-Success \"%s\"\n",
448                             r->msrepstr);
449                }
450                break;
451
452              case RAD_MICROSOFT_MS_MPPE_ENCRYPTION_POLICY:
453                r->mppe.policy = rad_cvt_int(data);
454                log_Printf(LogPHASE, " MS-MPPE-Encryption-Policy %s\n",
455                           radius_policyname(r->mppe.policy));
456                break;
457
458              case RAD_MICROSOFT_MS_MPPE_ENCRYPTION_TYPES:
459                r->mppe.types = rad_cvt_int(data);
460                log_Printf(LogPHASE, " MS-MPPE-Encryption-Types %s\n",
461                           radius_typesname(r->mppe.types));
462                break;
463
464              case RAD_MICROSOFT_MS_MPPE_RECV_KEY:
465                free(r->mppe.recvkey);
466		demangle(r, data, len, &r->mppe.recvkey, &r->mppe.recvkeylen);
467                log_Printf(LogPHASE, " MS-MPPE-Recv-Key ********\n");
468                break;
469
470              case RAD_MICROSOFT_MS_MPPE_SEND_KEY:
471		demangle(r, data, len, &r->mppe.sendkey, &r->mppe.sendkeylen);
472                log_Printf(LogPHASE, " MS-MPPE-Send-Key ********\n");
473                break;
474#endif
475
476              default:
477                log_Printf(LogDEBUG, "Dropping MICROSOFT vendor specific "
478                           "RADIUS attribute %d\n", res);
479                break;
480            }
481            break;
482
483          default:
484            log_Printf(LogDEBUG, "Dropping vendor %lu RADIUS attribute %d\n",
485                       (unsigned long)vendor, res);
486            break;
487        }
488        break;
489
490      default:
491        log_Printf(LogDEBUG, "Dropping RADIUS attribute %d\n", res);
492        break;
493    }
494  }
495
496  if (res == -1) {
497    log_Printf(LogERROR, "rad_get_attr: %s (failing!)\n",
498               rad_strerror(r->cx.rad));
499    auth_Failure(r->cx.auth);
500  } else if (got == RAD_ACCESS_REJECT)
501    auth_Failure(r->cx.auth);
502  else {
503    r->valid = 1;
504    auth_Success(r->cx.auth);
505  }
506  rad_close(r->cx.rad);
507}
508
509/*
510 * We've either timed out or select()ed on the read descriptor
511 */
512static void
513radius_Continue(struct radius *r, int sel)
514{
515  struct timeval tv;
516  int got;
517
518  timer_Stop(&r->cx.timer);
519  if ((got = rad_continue_send_request(r->cx.rad, sel, &r->cx.fd, &tv)) == 0) {
520    log_Printf(LogPHASE, "Radius: Request re-sent\n");
521    r->cx.timer.load = tv.tv_usec / TICKUNIT + tv.tv_sec * SECTICKS;
522    timer_Start(&r->cx.timer);
523    return;
524  }
525
526  radius_Process(r, got);
527}
528
529/*
530 * Time to call rad_continue_send_request() - timed out.
531 */
532static void
533radius_Timeout(void *v)
534{
535  radius_Continue((struct radius *)v, 0);
536}
537
538/*
539 * Time to call rad_continue_send_request() - something to read.
540 */
541static void
542radius_Read(struct fdescriptor *d, struct bundle *bundle, const fd_set *fdset)
543{
544  radius_Continue(descriptor2radius(d), 1);
545}
546
547/*
548 * Behave as a struct fdescriptor (descriptor.h)
549 */
550static int
551radius_UpdateSet(struct fdescriptor *d, fd_set *r, fd_set *w, fd_set *e, int *n)
552{
553  struct radius *rad = descriptor2radius(d);
554
555  if (r && rad->cx.fd != -1) {
556    FD_SET(rad->cx.fd, r);
557    if (*n < rad->cx.fd + 1)
558      *n = rad->cx.fd + 1;
559    log_Printf(LogTIMER, "Radius: fdset(r) %d\n", rad->cx.fd);
560    return 1;
561  }
562
563  return 0;
564}
565
566/*
567 * Behave as a struct fdescriptor (descriptor.h)
568 */
569static int
570radius_IsSet(struct fdescriptor *d, const fd_set *fdset)
571{
572  struct radius *r = descriptor2radius(d);
573
574  return r && r->cx.fd != -1 && FD_ISSET(r->cx.fd, fdset);
575}
576
577/*
578 * Behave as a struct fdescriptor (descriptor.h)
579 */
580static int
581radius_Write(struct fdescriptor *d, struct bundle *bundle, const fd_set *fdset)
582{
583  /* We never want to write here ! */
584  log_Printf(LogALERT, "radius_Write: Internal error: Bad call !\n");
585  return 0;
586}
587
588/*
589 * Initialise ourselves
590 */
591void
592radius_Init(struct radius *r)
593{
594  r->desc.type = RADIUS_DESCRIPTOR;
595  r->desc.UpdateSet = radius_UpdateSet;
596  r->desc.IsSet = radius_IsSet;
597  r->desc.Read = radius_Read;
598  r->desc.Write = radius_Write;
599  r->cx.fd = -1;
600  r->cx.rad = NULL;
601  memset(&r->cx.timer, '\0', sizeof r->cx.timer);
602  r->cx.auth = NULL;
603  r->valid = 0;
604  r->vj = 0;
605  r->ip.s_addr = INADDR_ANY;
606  r->mask.s_addr = INADDR_NONE;
607  r->routes = NULL;
608  r->mtu = DEF_MTU;
609  r->msrepstr = NULL;
610  r->repstr = NULL;
611  r->errstr = NULL;
612  r->mppe.policy = 0;
613  r->mppe.types = 0;
614  r->mppe.recvkey = NULL;
615  r->mppe.recvkeylen = 0;
616  r->mppe.sendkey = NULL;
617  r->mppe.sendkeylen = 0;
618  *r->cfg.file = '\0';;
619  log_Printf(LogDEBUG, "Radius: radius_Init\n");
620}
621
622/*
623 * Forget everything and go back to initialised state.
624 */
625void
626radius_Destroy(struct radius *r)
627{
628  r->valid = 0;
629  log_Printf(LogDEBUG, "Radius: radius_Destroy\n");
630  timer_Stop(&r->cx.timer);
631  route_DeleteAll(&r->routes);
632  free(r->filterid);
633  r->filterid = NULL;
634  free(r->msrepstr);
635  r->msrepstr = NULL;
636  free(r->repstr);
637  r->repstr = NULL;
638  free(r->errstr);
639  r->errstr = NULL;
640  free(r->mppe.recvkey);
641  r->mppe.recvkey = NULL;
642  r->mppe.recvkeylen = 0;
643  free(r->mppe.sendkey);
644  r->mppe.sendkey = NULL;
645  r->mppe.sendkeylen = 0;
646  if (r->cx.fd != -1) {
647    r->cx.fd = -1;
648    rad_close(r->cx.rad);
649  }
650}
651
652static int
653radius_put_physical_details(struct rad_handle *rad, struct physical *p)
654{
655  int slot, type;
656
657  type = RAD_VIRTUAL;
658  if (p->handler)
659    switch (p->handler->type) {
660      case I4B_DEVICE:
661        type = RAD_ISDN_SYNC;
662        break;
663
664      case TTY_DEVICE:
665        type = RAD_ASYNC;
666        break;
667
668      case ETHER_DEVICE:
669        type = RAD_ETHERNET;
670        break;
671
672      case TCP_DEVICE:
673      case UDP_DEVICE:
674      case EXEC_DEVICE:
675      case ATM_DEVICE:
676      case NG_DEVICE:
677        type = RAD_VIRTUAL;
678        break;
679    }
680
681  if (rad_put_int(rad, RAD_NAS_PORT_TYPE, type) != 0) {
682    log_Printf(LogERROR, "rad_put: rad_put_int: %s\n", rad_strerror(rad));
683    rad_close(rad);
684    return 0;
685  }
686
687  if ((slot = physical_Slot(p)) >= 0)
688    if (rad_put_int(rad, RAD_NAS_PORT, slot) != 0) {
689      log_Printf(LogERROR, "rad_put: rad_put_int: %s\n", rad_strerror(rad));
690      rad_close(rad);
691      return 0;
692    }
693
694  return 1;
695}
696
697/*
698 * Start an authentication request to the RADIUS server.
699 */
700int
701radius_Authenticate(struct radius *r, struct authinfo *authp, const char *name,
702                    const char *key, int klen, const char *nchallenge,
703                    int nclen, const char *pchallenge, int pclen)
704{
705  struct timeval tv;
706  int got;
707  char hostname[MAXHOSTNAMELEN];
708#if 0
709  struct hostent *hp;
710  struct in_addr hostaddr;
711#endif
712#ifndef NODES
713  struct mschap_response msresp;
714  struct mschap2_response msresp2;
715#endif
716
717  if (!*r->cfg.file)
718    return 0;
719
720  if (r->cx.fd != -1)
721    /*
722     * We assume that our name/key/challenge is the same as last time,
723     * and just continue to wait for the RADIUS server(s).
724     */
725    return 1;
726
727  radius_Destroy(r);
728
729  if ((r->cx.rad = rad_auth_open()) == NULL) {
730    log_Printf(LogERROR, "rad_auth_open: %s\n", strerror(errno));
731    return 0;
732  }
733
734  if (rad_config(r->cx.rad, r->cfg.file) != 0) {
735    log_Printf(LogERROR, "rad_config: %s\n", rad_strerror(r->cx.rad));
736    rad_close(r->cx.rad);
737    return 0;
738  }
739
740  if (rad_create_request(r->cx.rad, RAD_ACCESS_REQUEST) != 0) {
741    log_Printf(LogERROR, "rad_create_request: %s\n", rad_strerror(r->cx.rad));
742    rad_close(r->cx.rad);
743    return 0;
744  }
745
746  if (rad_put_string(r->cx.rad, RAD_USER_NAME, name) != 0 ||
747      rad_put_int(r->cx.rad, RAD_SERVICE_TYPE, RAD_FRAMED) != 0 ||
748      rad_put_int(r->cx.rad, RAD_FRAMED_PROTOCOL, RAD_PPP) != 0) {
749    log_Printf(LogERROR, "rad_put: %s\n", rad_strerror(r->cx.rad));
750    rad_close(r->cx.rad);
751    return 0;
752  }
753
754  switch (authp->physical->link.lcp.want_auth) {
755  case PROTO_PAP:
756    /* We're talking PAP */
757    if (rad_put_attr(r->cx.rad, RAD_USER_PASSWORD, key, klen) != 0) {
758      log_Printf(LogERROR, "PAP: rad_put_string: %s\n",
759                 rad_strerror(r->cx.rad));
760      rad_close(r->cx.rad);
761      return 0;
762    }
763    break;
764
765  case PROTO_CHAP:
766    switch (authp->physical->link.lcp.want_authtype) {
767    case 0x5:
768      if (rad_put_attr(r->cx.rad, RAD_CHAP_PASSWORD, key, klen) != 0 ||
769          rad_put_attr(r->cx.rad, RAD_CHAP_CHALLENGE, nchallenge, nclen) != 0) {
770        log_Printf(LogERROR, "CHAP: rad_put_string: %s\n",
771                   rad_strerror(r->cx.rad));
772        rad_close(r->cx.rad);
773        return 0;
774      }
775      break;
776
777#ifndef NODES
778    case 0x80:
779      if (klen != 50) {
780        log_Printf(LogERROR, "CHAP80: Unrecognised key length %d\n", klen);
781        rad_close(r->cx.rad);
782        return 0;
783      }
784
785      rad_put_vendor_attr(r->cx.rad, RAD_VENDOR_MICROSOFT,
786                          RAD_MICROSOFT_MS_CHAP_CHALLENGE, nchallenge, nclen);
787      msresp.ident = *key;
788      msresp.flags = 0x01;
789      memcpy(msresp.lm_response, key + 1, 24);
790      memcpy(msresp.nt_response, key + 25, 24);
791      rad_put_vendor_attr(r->cx.rad, RAD_VENDOR_MICROSOFT,
792                          RAD_MICROSOFT_MS_CHAP_RESPONSE, &msresp,
793                          sizeof msresp);
794      break;
795
796    case 0x81:
797      if (klen != 50) {
798        log_Printf(LogERROR, "CHAP81: Unrecognised key length %d\n", klen);
799        rad_close(r->cx.rad);
800        return 0;
801      }
802
803      if (pclen != sizeof msresp2.pchallenge) {
804        log_Printf(LogERROR, "CHAP81: Unrecognised peer challenge length %d\n",
805                   pclen);
806        rad_close(r->cx.rad);
807        return 0;
808      }
809
810      rad_put_vendor_attr(r->cx.rad, RAD_VENDOR_MICROSOFT,
811                          RAD_MICROSOFT_MS_CHAP_CHALLENGE, nchallenge, nclen);
812      msresp2.ident = *key;
813      msresp2.flags = 0x00;
814      memcpy(msresp2.response, key + 25, 24);
815      memset(msresp2.reserved, '\0', sizeof msresp2.reserved);
816      memcpy(msresp2.pchallenge, pchallenge, pclen);
817      rad_put_vendor_attr(r->cx.rad, RAD_VENDOR_MICROSOFT,
818                          RAD_MICROSOFT_MS_CHAP2_RESPONSE, &msresp2,
819                          sizeof msresp2);
820      break;
821#endif
822    default:
823      log_Printf(LogERROR, "CHAP: Unrecognised type 0x%02x\n",
824                 authp->physical->link.lcp.want_authtype);
825      rad_close(r->cx.rad);
826      return 0;
827    }
828  }
829
830  if (gethostname(hostname, sizeof hostname) != 0)
831    log_Printf(LogERROR, "rad_put: gethostname(): %s\n", strerror(errno));
832  else {
833#if 0
834    if ((hp = gethostbyname(hostname)) != NULL) {
835      hostaddr.s_addr = *(u_long *)hp->h_addr;
836      if (rad_put_addr(r->cx.rad, RAD_NAS_IP_ADDRESS, hostaddr) != 0) {
837        log_Printf(LogERROR, "rad_put: rad_put_string: %s\n",
838                   rad_strerror(r->cx.rad));
839        rad_close(r->cx.rad);
840        return 0;
841      }
842    }
843#endif
844    if (rad_put_string(r->cx.rad, RAD_NAS_IDENTIFIER, hostname) != 0) {
845      log_Printf(LogERROR, "rad_put: rad_put_string: %s\n",
846                 rad_strerror(r->cx.rad));
847      rad_close(r->cx.rad);
848      return 0;
849    }
850  }
851
852  radius_put_physical_details(r->cx.rad, authp->physical);
853
854  r->cx.auth = authp;
855  if ((got = rad_init_send_request(r->cx.rad, &r->cx.fd, &tv)))
856    radius_Process(r, got);
857  else {
858    log_Printf(LogPHASE, "Radius: Request sent\n");
859    log_Printf(LogDEBUG, "Using radius_Timeout [%p]\n", radius_Timeout);
860    r->cx.timer.load = tv.tv_usec / TICKUNIT + tv.tv_sec * SECTICKS;
861    r->cx.timer.func = radius_Timeout;
862    r->cx.timer.name = "radius auth";
863    r->cx.timer.arg = r;
864    timer_Start(&r->cx.timer);
865  }
866
867  return 1;
868}
869
870/*
871 * Send an accounting request to the RADIUS server
872 */
873void
874radius_Account(struct radius *r, struct radacct *ac, struct datalink *dl,
875               int acct_type, struct in_addr *peer_ip, struct in_addr *netmask,
876               struct pppThroughput *stats)
877{
878  struct timeval tv;
879  int got;
880  char hostname[MAXHOSTNAMELEN];
881#if 0
882  struct hostent *hp;
883  struct in_addr hostaddr;
884#endif
885
886  if (!*r->cfg.file)
887    return;
888
889  if (r->cx.fd != -1)
890    /*
891     * We assume that our name/key/challenge is the same as last time,
892     * and just continue to wait for the RADIUS server(s).
893     */
894    return;
895
896  timer_Stop(&r->cx.timer);
897
898  if ((r->cx.rad = rad_acct_open()) == NULL) {
899    log_Printf(LogERROR, "rad_auth_open: %s\n", strerror(errno));
900    return;
901  }
902
903  if (rad_config(r->cx.rad, r->cfg.file) != 0) {
904    log_Printf(LogERROR, "rad_config: %s\n", rad_strerror(r->cx.rad));
905    rad_close(r->cx.rad);
906    return;
907  }
908
909  if (rad_create_request(r->cx.rad, RAD_ACCOUNTING_REQUEST) != 0) {
910    log_Printf(LogERROR, "rad_create_request: %s\n", rad_strerror(r->cx.rad));
911    rad_close(r->cx.rad);
912    return;
913  }
914
915  /* Grab some accounting data and initialize structure */
916  if (acct_type == RAD_START) {
917    ac->rad_parent = r;
918    /* Fetch username from datalink */
919    strncpy(ac->user_name, dl->peer.authname, sizeof ac->user_name);
920    ac->user_name[AUTHLEN-1] = '\0';
921
922    ac->authentic = 2;		/* Assume RADIUS verified auth data */
923
924    /* Generate a session ID */
925    snprintf(ac->session_id, sizeof ac->session_id, "%s%ld-%s%lu",
926             dl->bundle->cfg.auth.name, (long)getpid(),
927             dl->peer.authname, (unsigned long)stats->uptime);
928
929    /* And grab our MP socket name */
930    snprintf(ac->multi_session_id, sizeof ac->multi_session_id, "%s",
931             dl->bundle->ncp.mp.active ?
932             dl->bundle->ncp.mp.server.socket.sun_path : "");
933
934    /* Fetch IP, netmask from IPCP */
935    memcpy(&ac->ip, peer_ip, sizeof(ac->ip));
936    memcpy(&ac->mask, netmask, sizeof(ac->mask));
937  };
938
939  if (rad_put_string(r->cx.rad, RAD_USER_NAME, ac->user_name) != 0 ||
940      rad_put_int(r->cx.rad, RAD_SERVICE_TYPE, RAD_FRAMED) != 0 ||
941      rad_put_int(r->cx.rad, RAD_FRAMED_PROTOCOL, RAD_PPP) != 0 ||
942      rad_put_addr(r->cx.rad, RAD_FRAMED_IP_ADDRESS, ac->ip) != 0 ||
943      rad_put_addr(r->cx.rad, RAD_FRAMED_IP_NETMASK, ac->mask) != 0) {
944    log_Printf(LogERROR, "rad_put: %s\n", rad_strerror(r->cx.rad));
945    rad_close(r->cx.rad);
946    return;
947  }
948
949  if (gethostname(hostname, sizeof hostname) != 0)
950    log_Printf(LogERROR, "rad_put: gethostname(): %s\n", strerror(errno));
951  else {
952#if 0
953    if ((hp = gethostbyname(hostname)) != NULL) {
954      hostaddr.s_addr = *(u_long *)hp->h_addr;
955      if (rad_put_addr(r->cx.rad, RAD_NAS_IP_ADDRESS, hostaddr) != 0) {
956        log_Printf(LogERROR, "rad_put: rad_put_string: %s\n",
957                   rad_strerror(r->cx.rad));
958        rad_close(r->cx.rad);
959        return;
960      }
961    }
962#endif
963    if (rad_put_string(r->cx.rad, RAD_NAS_IDENTIFIER, hostname) != 0) {
964      log_Printf(LogERROR, "rad_put: rad_put_string: %s\n",
965                 rad_strerror(r->cx.rad));
966      rad_close(r->cx.rad);
967      return;
968    }
969  }
970
971  radius_put_physical_details(r->cx.rad, dl->physical);
972
973  if (rad_put_int(r->cx.rad, RAD_ACCT_STATUS_TYPE, acct_type) != 0 ||
974      rad_put_string(r->cx.rad, RAD_ACCT_SESSION_ID, ac->session_id) != 0 ||
975      rad_put_string(r->cx.rad, RAD_ACCT_MULTI_SESSION_ID,
976                     ac->multi_session_id) != 0 ||
977      rad_put_int(r->cx.rad, RAD_ACCT_DELAY_TIME, 0) != 0) {
978/* XXX ACCT_DELAY_TIME should be increased each time a packet is waiting */
979    log_Printf(LogERROR, "rad_put: %s\n", rad_strerror(r->cx.rad));
980    rad_close(r->cx.rad);
981    return;
982  }
983
984  if (acct_type == RAD_STOP)
985  /* Show some statistics */
986    if (rad_put_int(r->cx.rad, RAD_ACCT_INPUT_OCTETS, stats->OctetsIn) != 0 ||
987        rad_put_int(r->cx.rad, RAD_ACCT_INPUT_PACKETS, stats->PacketsIn) != 0 ||
988        rad_put_int(r->cx.rad, RAD_ACCT_OUTPUT_OCTETS, stats->OctetsOut) != 0 ||
989        rad_put_int(r->cx.rad, RAD_ACCT_OUTPUT_PACKETS, stats->PacketsOut)
990        != 0 ||
991        rad_put_int(r->cx.rad, RAD_ACCT_SESSION_TIME, throughput_uptime(stats))
992        != 0) {
993      log_Printf(LogERROR, "rad_put: %s\n", rad_strerror(r->cx.rad));
994      rad_close(r->cx.rad);
995      return;
996    }
997
998  r->cx.auth = NULL;			/* Not valid for accounting requests */
999  if ((got = rad_init_send_request(r->cx.rad, &r->cx.fd, &tv)))
1000    radius_Process(r, got);
1001  else {
1002    log_Printf(LogDEBUG, "Using radius_Timeout [%p]\n", radius_Timeout);
1003    r->cx.timer.load = tv.tv_usec / TICKUNIT + tv.tv_sec * SECTICKS;
1004    r->cx.timer.func = radius_Timeout;
1005    r->cx.timer.name = "radius acct";
1006    r->cx.timer.arg = r;
1007    timer_Start(&r->cx.timer);
1008  }
1009}
1010
1011/*
1012 * How do things look at the moment ?
1013 */
1014void
1015radius_Show(struct radius *r, struct prompt *p)
1016{
1017  prompt_Printf(p, " Radius config:     %s",
1018                *r->cfg.file ? r->cfg.file : "none");
1019  if (r->valid) {
1020    prompt_Printf(p, "\n                IP: %s\n", inet_ntoa(r->ip));
1021    prompt_Printf(p, "           Netmask: %s\n", inet_ntoa(r->mask));
1022    prompt_Printf(p, "               MTU: %lu\n", r->mtu);
1023    prompt_Printf(p, "                VJ: %sabled\n", r->vj ? "en" : "dis");
1024    prompt_Printf(p, "           Message: %s\n", r->repstr ? r->repstr : "");
1025    prompt_Printf(p, "   MPPE Enc Policy: %s\n",
1026                  radius_policyname(r->mppe.policy));
1027    prompt_Printf(p, "    MPPE Enc Types: %s\n",
1028                  radius_typesname(r->mppe.types));
1029    prompt_Printf(p, "     MPPE Recv Key: %seceived\n",
1030                  r->mppe.recvkey ? "R" : "Not r");
1031    prompt_Printf(p, "     MPPE Send Key: %seceived\n",
1032                  r->mppe.sendkey ? "R" : "Not r");
1033    prompt_Printf(p, " MS-CHAP2-Response: %s\n",
1034                  r->msrepstr ? r->msrepstr : "");
1035    prompt_Printf(p, "     Error Message: %s\n", r->errstr ? r->errstr : "");
1036    if (r->routes)
1037      route_ShowSticky(p, r->routes, "            Routes", 16);
1038  } else
1039    prompt_Printf(p, " (not authenticated)\n");
1040}
1041