remove unused EAP state machine variable
[mech_eap.orig] / mech_eap / init_sec_context.c
1 /*
2  * Copyright (c) 2011, JANET(UK)
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  *
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  *
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  * 3. Neither the name of JANET(UK) nor the names of its contributors
17  *    may be used to endorse or promote products derived from this software
18  *    without specific prior written permission.
19  *
20  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
21  * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23  * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
24  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30  * SUCH DAMAGE.
31  */
32
33 /*
34  * Establish a security context on the initiator (client). These functions
35  * wrap around libeap.
36  */
37
38 #include "gssapiP_eap.h"
39
40 static OM_uint32
41 policyVariableToFlag(enum eapol_bool_var variable)
42 {
43     OM_uint32 flag = 0;
44
45     switch (variable) {
46     case EAPOL_eapSuccess:
47         flag = CTX_FLAG_EAP_SUCCESS;
48         break;
49     case EAPOL_eapRestart:
50         flag = CTX_FLAG_EAP_RESTART;
51         break;
52     case EAPOL_eapFail:
53         flag = CTX_FLAG_EAP_FAIL;
54         break;
55     case EAPOL_eapResp:
56         flag = CTX_FLAG_EAP_RESP;
57         break;
58     case EAPOL_eapNoResp:
59         flag = CTX_FLAG_EAP_NO_RESP;
60         break;
61     case EAPOL_eapReq:
62         flag = CTX_FLAG_EAP_REQ;
63         break;
64     case EAPOL_portEnabled:
65         flag = CTX_FLAG_EAP_PORT_ENABLED;
66         break;
67     case EAPOL_altAccept:
68         flag = CTX_FLAG_EAP_ALT_ACCEPT;
69         break;
70     case EAPOL_altReject:
71         flag = CTX_FLAG_EAP_ALT_REJECT;
72         break;
73     }
74
75     return flag;
76 }
77
78 static struct eap_peer_config *
79 peerGetConfig(void *ctx)
80 {
81     gss_ctx_id_t gssCtx = (gss_ctx_id_t)ctx;
82
83     return &gssCtx->initiatorCtx.eapPeerConfig;
84 }
85
86 static Boolean
87 peerGetBool(void *data, enum eapol_bool_var variable)
88 {
89     gss_ctx_id_t ctx = data;
90     OM_uint32 flag;
91
92     if (ctx == GSS_C_NO_CONTEXT)
93         return FALSE;
94
95     flag = policyVariableToFlag(variable);
96
97     return ((ctx->flags & flag) != 0);
98 }
99
100 static void
101 peerSetBool(void *data, enum eapol_bool_var variable,
102             Boolean value)
103 {
104     gss_ctx_id_t ctx = data;
105     OM_uint32 flag;
106
107     if (ctx == GSS_C_NO_CONTEXT)
108         return;
109
110     flag = policyVariableToFlag(variable);
111
112     if (value)
113         ctx->flags |= flag;
114     else
115         ctx->flags &= ~(flag);
116 }
117
118 static unsigned int
119 peerGetInt(void *data, enum eapol_int_var variable)
120 {
121     gss_ctx_id_t ctx = data;
122
123     if (ctx == GSS_C_NO_CONTEXT)
124         return FALSE;
125
126     assert(CTX_IS_INITIATOR(ctx));
127
128     switch (variable) {
129     case EAPOL_idleWhile:
130         return ctx->initiatorCtx.idleWhile;
131         break;
132     }
133
134     return 0;
135 }
136
137 static void
138 peerSetInt(void *data, enum eapol_int_var variable,
139            unsigned int value)
140 {
141     gss_ctx_id_t ctx = data;
142
143     if (ctx == GSS_C_NO_CONTEXT)
144         return;
145
146     assert(CTX_IS_INITIATOR(ctx));
147
148     switch (variable) {
149     case EAPOL_idleWhile:
150         ctx->initiatorCtx.idleWhile = value;
151         break;
152     }
153 }
154
155 static struct wpabuf *
156 peerGetEapReqData(void *ctx)
157 {
158     gss_ctx_id_t gssCtx = (gss_ctx_id_t)ctx;
159
160     return &gssCtx->initiatorCtx.reqData;
161 }
162
163 static void
164 peerSetConfigBlob(void *ctx GSSEAP_UNUSED,
165                   struct wpa_config_blob *blob GSSEAP_UNUSED)
166 {
167 }
168
169 static const struct wpa_config_blob *
170 peerGetConfigBlob(void *ctx GSSEAP_UNUSED,
171                   const char *name GSSEAP_UNUSED)
172 {
173     return NULL;
174 }
175
176 static void
177 peerNotifyPending(void *ctx GSSEAP_UNUSED)
178 {
179 }
180
181 static struct eapol_callbacks gssEapPolicyCallbacks = {
182     peerGetConfig,
183     peerGetBool,
184     peerSetBool,
185     peerGetInt,
186     peerSetInt,
187     peerGetEapReqData,
188     peerSetConfigBlob,
189     peerGetConfigBlob,
190     peerNotifyPending,
191 };
192
193 #ifdef GSSEAP_DEBUG
194 extern int wpa_debug_level;
195 #endif
196
197 static OM_uint32
198 peerConfigInit(OM_uint32 *minor,
199                gss_cred_id_t cred,
200                gss_ctx_id_t ctx)
201 {
202     OM_uint32 major;
203     krb5_context krbContext;
204     struct eap_peer_config *eapPeerConfig = &ctx->initiatorCtx.eapPeerConfig;
205     gss_buffer_desc identity = GSS_C_EMPTY_BUFFER;
206     gss_buffer_desc realm = GSS_C_EMPTY_BUFFER;
207
208     eapPeerConfig->identity = NULL;
209     eapPeerConfig->identity_len = 0;
210     eapPeerConfig->anonymous_identity = NULL;
211     eapPeerConfig->anonymous_identity_len = 0;
212     eapPeerConfig->password = NULL;
213     eapPeerConfig->password_len = 0;
214
215     assert(cred != GSS_C_NO_CREDENTIAL);
216
217     GSSEAP_KRB_INIT(&krbContext);
218
219     eapPeerConfig->fragment_size = 1024;
220 #ifdef GSSEAP_DEBUG
221     wpa_debug_level = 0;
222 #endif
223
224     assert(cred->name != GSS_C_NO_NAME);
225
226     if ((cred->name->flags & (NAME_FLAG_NAI | NAME_FLAG_SERVICE)) == 0) {
227         *minor = GSSEAP_BAD_INITIATOR_NAME;
228         return GSS_S_BAD_NAME;
229     }
230
231     /* identity */
232     major = gssEapDisplayName(minor, cred->name, &identity, NULL);
233     if (GSS_ERROR(major))
234         return major;
235
236     eapPeerConfig->identity = (unsigned char *)identity.value;
237     eapPeerConfig->identity_len = identity.length;
238
239     krbPrincRealmToGssBuffer(cred->name->krbPrincipal, &realm);
240
241     /* anonymous_identity */
242     eapPeerConfig->anonymous_identity = GSSEAP_MALLOC(realm.length + 2);
243     if (eapPeerConfig->anonymous_identity == NULL) {
244         *minor = ENOMEM;
245         return GSS_S_FAILURE;
246     }
247
248     eapPeerConfig->anonymous_identity[0] = '@';
249     memcpy(eapPeerConfig->anonymous_identity + 1, realm.value, realm.length);
250     eapPeerConfig->anonymous_identity[1 + realm.length] = '\0';
251     eapPeerConfig->anonymous_identity_len = 1 + realm.length;
252
253     /* password */
254     eapPeerConfig->password = (unsigned char *)cred->password.value;
255     eapPeerConfig->password_len = cred->password.length;
256
257     *minor = 0;
258     return GSS_S_COMPLETE;
259 }
260
261 static OM_uint32
262 peerConfigFree(OM_uint32 *minor,
263                gss_ctx_id_t ctx)
264 {
265     struct eap_peer_config *eapPeerConfig = &ctx->initiatorCtx.eapPeerConfig;
266
267     if (eapPeerConfig->identity != NULL) {
268         GSSEAP_FREE(eapPeerConfig->identity);
269         eapPeerConfig->identity = NULL;
270         eapPeerConfig->identity_len = 0;
271     }
272
273     if (eapPeerConfig->anonymous_identity != NULL) {
274         GSSEAP_FREE(eapPeerConfig->anonymous_identity);
275         eapPeerConfig->anonymous_identity = NULL;
276         eapPeerConfig->anonymous_identity_len = 0;
277     }
278
279     *minor = 0;
280     return GSS_S_COMPLETE;
281 }
282
283 /*
284  * Mark an initiator context as ready for cryptographic operations
285  */
286 static OM_uint32
287 initReady(OM_uint32 *minor, gss_ctx_id_t ctx, OM_uint32 reqFlags)
288 {
289     OM_uint32 major;
290     const unsigned char *key;
291     size_t keyLength;
292
293 #if 1
294     /* XXX actually check for mutual auth */
295     if (reqFlags & GSS_C_MUTUAL_FLAG)
296         ctx->gssFlags |= GSS_C_MUTUAL_FLAG;
297 #endif
298
299     /* Cache encryption type derived from selected mechanism OID */
300     major = gssEapOidToEnctype(minor, ctx->mechanismUsed, &ctx->encryptionType);
301     if (GSS_ERROR(major))
302         return major;
303
304     if (!eap_key_available(ctx->initiatorCtx.eap)) {
305         *minor = GSSEAP_KEY_UNAVAILABLE;
306         return GSS_S_UNAVAILABLE;
307     }
308
309     key = eap_get_eapKeyData(ctx->initiatorCtx.eap, &keyLength);
310
311     if (keyLength < EAP_EMSK_LEN) {
312         *minor = GSSEAP_KEY_TOO_SHORT;
313         return GSS_S_UNAVAILABLE;
314     }
315
316     major = gssEapDeriveRfc3961Key(minor,
317                                    &key[EAP_EMSK_LEN / 2],
318                                    EAP_EMSK_LEN / 2,
319                                    ctx->encryptionType,
320                                    &ctx->rfc3961Key);
321        if (GSS_ERROR(major))
322            return major;
323
324     major = rfc3961ChecksumTypeForKey(minor, &ctx->rfc3961Key,
325                                       &ctx->checksumType);
326     if (GSS_ERROR(major))
327         return major;
328
329     major = sequenceInit(minor,
330                          &ctx->seqState,
331                          ctx->recvSeq,
332                          ((ctx->gssFlags & GSS_C_REPLAY_FLAG) != 0),
333                          ((ctx->gssFlags & GSS_C_SEQUENCE_FLAG) != 0),
334                          TRUE);
335     if (GSS_ERROR(major))
336         return major;
337
338     *minor = 0;
339     return GSS_S_COMPLETE;
340 }
341
342 static OM_uint32
343 initBegin(OM_uint32 *minor,
344           gss_cred_id_t cred,
345           gss_ctx_id_t ctx,
346           gss_name_t target,
347           gss_OID mech,
348           OM_uint32 reqFlags GSSEAP_UNUSED,
349           OM_uint32 timeReq,
350           gss_channel_bindings_t chanBindings GSSEAP_UNUSED)
351 {
352     OM_uint32 major;
353
354     assert(cred != GSS_C_NO_CREDENTIAL);
355
356     if (cred->expiryTime)
357         ctx->expiryTime = cred->expiryTime;
358     else if (timeReq == 0 || timeReq == GSS_C_INDEFINITE)
359         ctx->expiryTime = 0;
360     else
361         ctx->expiryTime = time(NULL) + timeReq;
362
363     /*
364      * The credential mutex protects its name, however we need to
365      * explicitly lock the acceptor name (unlikely as it may be
366      * that it has attributes set on it).
367      */
368     major = gssEapDuplicateName(minor, cred->name, &ctx->initiatorName);
369     if (GSS_ERROR(major))
370         return major;
371
372     if (target != GSS_C_NO_NAME) {
373         GSSEAP_MUTEX_LOCK(&target->mutex);
374
375         major = gssEapDuplicateName(minor, target, &ctx->acceptorName);
376         if (GSS_ERROR(major)) {
377             GSSEAP_MUTEX_UNLOCK(&target->mutex);
378             return major;
379         }
380
381         GSSEAP_MUTEX_UNLOCK(&target->mutex);
382     }
383
384     major = gssEapCanonicalizeOid(minor,
385                                   mech,
386                                   OID_FLAG_NULL_VALID | OID_FLAG_MAP_NULL_TO_DEFAULT_MECH,
387                                   &ctx->mechanismUsed);
388     if (GSS_ERROR(major))
389         return major;
390
391     /* If credentials were provided, check they're usable with this mech */
392     if (!gssEapCredAvailable(cred, ctx->mechanismUsed)) {
393         *minor = GSSEAP_CRED_MECH_MISMATCH;
394         return GSS_S_BAD_MECH;
395     }
396
397     *minor = 0;
398     return GSS_S_COMPLETE;
399 }
400
401 static OM_uint32
402 eapGssSmInitError(OM_uint32 *minor,
403                   gss_cred_id_t cred GSSEAP_UNUSED,
404                   gss_ctx_id_t ctx GSSEAP_UNUSED,
405                   gss_name_t target GSSEAP_UNUSED,
406                   gss_OID mech GSSEAP_UNUSED,
407                   OM_uint32 reqFlags GSSEAP_UNUSED,
408                   OM_uint32 timeReq GSSEAP_UNUSED,
409                   gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
410                   gss_buffer_t inputToken,
411                   gss_buffer_t outputToken GSSEAP_UNUSED,
412                   OM_uint32 *smFlags GSSEAP_UNUSED)
413 {
414     OM_uint32 major;
415     unsigned char *p;
416
417     if (inputToken->length < 8) {
418         *minor = GSSEAP_TOK_TRUNC;
419         return GSS_S_DEFECTIVE_TOKEN;
420     }
421
422     p = (unsigned char *)inputToken->value;
423
424     major = load_uint32_be(&p[0]);
425     *minor = ERROR_TABLE_BASE_eapg + load_uint32_be(&p[4]);
426
427     if (!GSS_ERROR(major) || !IS_WIRE_ERROR(*minor)) {
428         major = GSS_S_FAILURE;
429         *minor = GSSEAP_BAD_ERROR_TOKEN;
430     }
431
432     assert(GSS_ERROR(major));
433
434     return major;
435 }
436
437 #ifdef GSSEAP_ENABLE_REAUTH
438 static OM_uint32
439 eapGssSmInitGssReauth(OM_uint32 *minor,
440                       gss_cred_id_t cred,
441                       gss_ctx_id_t ctx,
442                       gss_name_t target,
443                       gss_OID mech GSSEAP_UNUSED,
444                       OM_uint32 reqFlags,
445                       OM_uint32 timeReq,
446                       gss_channel_bindings_t chanBindings,
447                       gss_buffer_t inputToken,
448                       gss_buffer_t outputToken,
449                       OM_uint32 *smFlags GSSEAP_UNUSED)
450 {
451     OM_uint32 major, tmpMinor;
452     gss_name_t mechTarget = GSS_C_NO_NAME;
453     gss_OID actualMech = GSS_C_NO_OID;
454     OM_uint32 gssFlags, timeRec;
455
456     assert(cred != GSS_C_NO_CREDENTIAL);
457
458     if (GSSEAP_SM_STATE(ctx) == GSSEAP_STATE_INITIAL) {
459         if (!gssEapCanReauthP(cred, target, timeReq))
460             return GSS_S_CONTINUE_NEEDED;
461
462         ctx->flags |= CTX_FLAG_KRB_REAUTH;
463     } else if ((ctx->flags & CTX_FLAG_KRB_REAUTH) == 0) {
464         major = GSS_S_DEFECTIVE_TOKEN;
465         *minor = GSSEAP_WRONG_ITOK;
466         goto cleanup;
467     }
468
469     major = gssEapMechToGlueName(minor, target, &mechTarget);
470     if (GSS_ERROR(major))
471         goto cleanup;
472
473     major = gssInitSecContext(minor,
474                               cred->reauthCred,
475                               &ctx->reauthCtx,
476                               mechTarget,
477                               (gss_OID)gss_mech_krb5,
478                               reqFlags | GSS_C_MUTUAL_FLAG,
479                               timeReq,
480                               chanBindings,
481                               inputToken,
482                               &actualMech,
483                               outputToken,
484                               &gssFlags,
485                               &timeRec);
486     if (GSS_ERROR(major))
487         goto cleanup;
488
489     ctx->gssFlags = gssFlags;
490
491     if (major == GSS_S_COMPLETE) {
492         assert(GSSEAP_SM_STATE(ctx) == GSSEAP_STATE_REAUTHENTICATE);
493
494         major = gssEapReauthComplete(minor, ctx, cred, actualMech, timeRec);
495         if (GSS_ERROR(major))
496             goto cleanup;
497         GSSEAP_SM_TRANSITION(ctx, GSSEAP_STATE_ESTABLISHED);
498     } else {
499         GSSEAP_SM_TRANSITION(ctx, GSSEAP_STATE_REAUTHENTICATE);
500     }
501
502 cleanup:
503     gssReleaseName(&tmpMinor, &mechTarget);
504
505     return major;
506 }
507 #endif /* GSSEAP_ENABLE_REAUTH */
508
509 #ifdef GSSEAP_DEBUG
510 static OM_uint32
511 eapGssSmInitVendorInfo(OM_uint32 *minor,
512                        gss_cred_id_t cred GSSEAP_UNUSED,
513                        gss_ctx_id_t ctx GSSEAP_UNUSED,
514                        gss_name_t target GSSEAP_UNUSED,
515                        gss_OID mech GSSEAP_UNUSED,
516                        OM_uint32 reqFlags GSSEAP_UNUSED,
517                        OM_uint32 timeReq GSSEAP_UNUSED,
518                        gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
519                        gss_buffer_t inputToken GSSEAP_UNUSED,
520                        gss_buffer_t outputToken,
521                        OM_uint32 *smFlags GSSEAP_UNUSED)
522 {
523     OM_uint32 major;
524
525     major = makeStringBuffer(minor, "JANET(UK)", outputToken);
526     if (GSS_ERROR(major))
527         return major;
528
529     return GSS_S_CONTINUE_NEEDED;
530 }
531 #endif
532
533 static OM_uint32
534 eapGssSmInitAcceptorName(OM_uint32 *minor,
535                          gss_cred_id_t cred GSSEAP_UNUSED,
536                          gss_ctx_id_t ctx,
537                          gss_name_t target GSSEAP_UNUSED,
538                          gss_OID mech GSSEAP_UNUSED,
539                          OM_uint32 reqFlags GSSEAP_UNUSED,
540                          OM_uint32 timeReq GSSEAP_UNUSED,
541                          gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
542                          gss_buffer_t inputToken GSSEAP_UNUSED,
543                          gss_buffer_t outputToken,
544                          OM_uint32 *smFlags GSSEAP_UNUSED)
545 {
546     OM_uint32 major;
547
548     if (GSSEAP_SM_STATE(ctx) == GSSEAP_STATE_INITIAL &&
549         ctx->acceptorName != GSS_C_NO_NAME) {
550
551         /* Send desired target name to acceptor */
552         major = gssEapDisplayName(minor, ctx->acceptorName,
553                                   outputToken, NULL);
554         if (GSS_ERROR(major))
555             return major;
556     } else if (inputToken != GSS_C_NO_BUFFER &&
557                ctx->acceptorName == GSS_C_NO_NAME) {
558         /* Accept target name hint from acceptor */
559         major = gssEapImportName(minor, inputToken,
560                                  GSS_C_NT_USER_NAME,
561                                  ctx->mechanismUsed,
562                                  &ctx->acceptorName);
563         if (GSS_ERROR(major))
564             return major;
565     }
566
567     /*
568      * Currently, other parts of the code assume that the acceptor name
569      * is available, hence this check.
570      */
571     if (ctx->acceptorName == GSS_C_NO_NAME) {
572         *minor = GSSEAP_NO_ACCEPTOR_NAME;
573         return GSS_S_FAILURE;
574     }
575
576     return GSS_S_CONTINUE_NEEDED;
577 }
578
579 static OM_uint32
580 eapGssSmInitIdentity(OM_uint32 *minor,
581                      gss_cred_id_t cred GSSEAP_UNUSED,
582                      gss_ctx_id_t ctx,
583                      gss_name_t target GSSEAP_UNUSED,
584                      gss_OID mech GSSEAP_UNUSED,
585                      OM_uint32 reqFlags GSSEAP_UNUSED,
586                      OM_uint32 timeReq GSSEAP_UNUSED,
587                      gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
588                      gss_buffer_t inputToken GSSEAP_UNUSED,
589                      gss_buffer_t outputToken GSSEAP_UNUSED,
590                      OM_uint32 *smFlags)
591 {
592     struct eap_config eapConfig;
593
594 #ifdef GSSEAP_ENABLE_REAUTH
595     if (GSSEAP_SM_STATE(ctx) == GSSEAP_STATE_REAUTHENTICATE) {
596         OM_uint32 tmpMinor;
597
598         /* server didn't support reauthentication, sent EAP request */
599         gssDeleteSecContext(&tmpMinor, &ctx->reauthCtx, GSS_C_NO_BUFFER);
600         ctx->flags &= ~(CTX_FLAG_KRB_REAUTH);
601         GSSEAP_SM_TRANSITION(ctx, GSSEAP_STATE_INITIAL);
602     } else
603 #endif
604         *smFlags |= SM_FLAG_FORCE_SEND_TOKEN;
605
606     assert((ctx->flags & CTX_FLAG_KRB_REAUTH) == 0);
607     assert(inputToken == GSS_C_NO_BUFFER);
608
609     memset(&eapConfig, 0, sizeof(eapConfig));
610
611     ctx->initiatorCtx.eap = eap_peer_sm_init(ctx,
612                                              &gssEapPolicyCallbacks,
613                                              ctx,
614                                              &eapConfig);
615     if (ctx->initiatorCtx.eap == NULL) {
616         *minor = GSSEAP_PEER_SM_INIT_FAILURE;
617         return GSS_S_FAILURE;
618     }
619
620     ctx->flags |= CTX_FLAG_EAP_RESTART | CTX_FLAG_EAP_PORT_ENABLED;
621
622     /* poke EAP state machine */
623     if (eap_peer_sm_step(ctx->initiatorCtx.eap) != 0) {
624         *minor = GSSEAP_PEER_SM_STEP_FAILURE;
625         return GSS_S_FAILURE;
626     }
627
628     GSSEAP_SM_TRANSITION_NEXT(ctx);
629
630     *minor = 0;
631
632     return GSS_S_CONTINUE_NEEDED;
633 }
634
635 static OM_uint32
636 eapGssSmInitAuthenticate(OM_uint32 *minor,
637                          gss_cred_id_t cred,
638                          gss_ctx_id_t ctx,
639                          gss_name_t target GSSEAP_UNUSED,
640                          gss_OID mech GSSEAP_UNUSED,
641                          OM_uint32 reqFlags GSSEAP_UNUSED,
642                          OM_uint32 timeReq GSSEAP_UNUSED,
643                          gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
644                          gss_buffer_t inputToken GSSEAP_UNUSED,
645                          gss_buffer_t outputToken,
646                          OM_uint32 *smFlags)
647 {
648     OM_uint32 major;
649     OM_uint32 tmpMinor;
650     struct wpabuf *resp = NULL;
651
652     *minor = 0;
653
654     assert(inputToken != GSS_C_NO_BUFFER);
655
656     major = peerConfigInit(minor, cred, ctx);
657     if (GSS_ERROR(major))
658         goto cleanup;
659
660     assert(ctx->initiatorCtx.eap != NULL);
661     assert(ctx->flags & CTX_FLAG_EAP_PORT_ENABLED);
662
663     ctx->flags |= CTX_FLAG_EAP_REQ; /* we have a Request from the acceptor */
664
665     wpabuf_set(&ctx->initiatorCtx.reqData,
666                inputToken->value, inputToken->length);
667
668     major = GSS_S_CONTINUE_NEEDED;
669
670     eap_peer_sm_step(ctx->initiatorCtx.eap);
671     if (ctx->flags & CTX_FLAG_EAP_RESP) {
672         ctx->flags &= ~(CTX_FLAG_EAP_RESP);
673
674         resp = eap_get_eapRespData(ctx->initiatorCtx.eap);
675     } else if (ctx->flags & CTX_FLAG_EAP_SUCCESS) {
676         major = initReady(minor, ctx, reqFlags);
677         if (GSS_ERROR(major))
678             goto cleanup;
679
680         ctx->flags &= ~(CTX_FLAG_EAP_SUCCESS);
681         major = GSS_S_CONTINUE_NEEDED;
682         GSSEAP_SM_TRANSITION_NEXT(ctx);
683     } else if (ctx->flags & CTX_FLAG_EAP_FAIL) {
684         major = GSS_S_DEFECTIVE_CREDENTIAL;
685         *minor = GSSEAP_PEER_AUTH_FAILURE;
686     } else {
687         major = GSS_S_DEFECTIVE_TOKEN;
688         *minor = GSSEAP_PEER_BAD_MESSAGE;
689     }
690
691 cleanup:
692     if (resp != NULL) {
693         OM_uint32 tmpMajor;
694         gss_buffer_desc respBuf;
695
696         assert(major == GSS_S_CONTINUE_NEEDED);
697
698         respBuf.length = wpabuf_len(resp);
699         respBuf.value = (void *)wpabuf_head(resp);
700
701         tmpMajor = duplicateBuffer(&tmpMinor, &respBuf, outputToken);
702         if (GSS_ERROR(tmpMajor)) {
703             major = tmpMajor;
704             *minor = tmpMinor;
705         }
706
707         *smFlags |= SM_FLAG_OUTPUT_TOKEN_CRITICAL;
708     }
709
710     wpabuf_set(&ctx->initiatorCtx.reqData, NULL, 0);
711     peerConfigFree(&tmpMinor, ctx);
712
713     return major;
714 }
715
716 static OM_uint32
717 eapGssSmInitGssChannelBindings(OM_uint32 *minor,
718                                gss_cred_id_t cred GSSEAP_UNUSED,
719                                gss_ctx_id_t ctx,
720                                gss_name_t target GSSEAP_UNUSED,
721                                gss_OID mech GSSEAP_UNUSED,
722                                OM_uint32 reqFlags GSSEAP_UNUSED,
723                                OM_uint32 timeReq GSSEAP_UNUSED,
724                                gss_channel_bindings_t chanBindings,
725                                gss_buffer_t inputToken GSSEAP_UNUSED,
726                                gss_buffer_t outputToken,
727                                OM_uint32 *smFlags)
728 {
729     OM_uint32 major;
730     gss_buffer_desc buffer = GSS_C_EMPTY_BUFFER;
731
732     if (chanBindings != GSS_C_NO_CHANNEL_BINDINGS)
733         buffer = chanBindings->application_data;
734
735     major = gssEapWrap(minor, ctx, TRUE, GSS_C_QOP_DEFAULT,
736                        &buffer, NULL, outputToken);
737     if (GSS_ERROR(major))
738         return major;
739
740     assert(outputToken->value != NULL);
741
742     *minor = 0;
743     *smFlags |= SM_FLAG_OUTPUT_TOKEN_CRITICAL;
744
745     return GSS_S_CONTINUE_NEEDED;
746 }
747
748 #ifdef GSSEAP_ENABLE_REAUTH
749 static OM_uint32
750 eapGssSmInitReauthCreds(OM_uint32 *minor,
751                         gss_cred_id_t cred,
752                         gss_ctx_id_t ctx,
753                         gss_name_t target GSSEAP_UNUSED,
754                         gss_OID mech GSSEAP_UNUSED,
755                         OM_uint32 reqFlags GSSEAP_UNUSED,
756                         OM_uint32 timeReq GSSEAP_UNUSED,
757                         gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
758                         gss_buffer_t inputToken,
759                         gss_buffer_t outputToken GSSEAP_UNUSED,
760                         OM_uint32 *smFlags GSSEAP_UNUSED)
761 {
762     OM_uint32 major;
763
764     if (ctx->gssFlags & GSS_C_MUTUAL_FLAG) {
765         major = gssEapStoreReauthCreds(minor, ctx, cred, inputToken);
766         if (GSS_ERROR(major))
767             return major;
768     }
769
770     *minor = 0;
771     return GSS_S_CONTINUE_NEEDED;
772 }
773 #endif /* GSSEAP_ENABLE_REAUTH */
774
775 static OM_uint32
776 eapGssSmInitCompleteInitiatorExts(OM_uint32 *minor,
777                                   gss_cred_id_t cred GSSEAP_UNUSED,
778                                   gss_ctx_id_t ctx,
779                                   gss_name_t target GSSEAP_UNUSED,
780                                   gss_OID mech GSSEAP_UNUSED,
781                                   OM_uint32 reqFlags GSSEAP_UNUSED,
782                                   OM_uint32 timeReq GSSEAP_UNUSED,
783                                   gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
784                                   gss_buffer_t inputToken GSSEAP_UNUSED,
785                                   gss_buffer_t outputToken GSSEAP_UNUSED,
786                                   OM_uint32 *smFlags)
787 {
788     GSSEAP_SM_TRANSITION_NEXT(ctx);
789
790     *minor = 0;
791     *smFlags |= SM_FLAG_FORCE_SEND_TOKEN;
792
793     return GSS_S_CONTINUE_NEEDED;
794 }
795
796 static OM_uint32
797 eapGssSmInitCompleteAcceptorExts(OM_uint32 *minor,
798                                  gss_cred_id_t cred GSSEAP_UNUSED,
799                                  gss_ctx_id_t ctx,
800                                  gss_name_t target GSSEAP_UNUSED,
801                                  gss_OID mech GSSEAP_UNUSED,
802                                  OM_uint32 reqFlags GSSEAP_UNUSED,
803                                  OM_uint32 timeReq GSSEAP_UNUSED,
804                                  gss_channel_bindings_t chanBindings GSSEAP_UNUSED,
805                                  gss_buffer_t inputToken GSSEAP_UNUSED,
806                                  gss_buffer_t outputToken GSSEAP_UNUSED,
807                                  OM_uint32 *smFlags GSSEAP_UNUSED)
808 {
809     GSSEAP_SM_TRANSITION(ctx, GSSEAP_STATE_ESTABLISHED);
810
811     *minor = 0;
812
813     return GSS_S_COMPLETE;
814 }
815
816 static struct gss_eap_sm eapGssInitiatorSm[] = {
817     {
818         ITOK_TYPE_CONTEXT_ERR,
819         ITOK_TYPE_NONE,
820         GSSEAP_STATE_ALL & ~(GSSEAP_STATE_INITIAL),
821         0,
822         eapGssSmInitError
823     },
824     {
825         ITOK_TYPE_ACCEPTOR_NAME_RESP,
826         ITOK_TYPE_ACCEPTOR_NAME_REQ,
827         GSSEAP_STATE_INITIAL | GSSEAP_STATE_AUTHENTICATE,
828         0,
829         eapGssSmInitAcceptorName
830     },
831 #ifdef GSSEAP_DEBUG
832     {
833         ITOK_TYPE_NONE,
834         ITOK_TYPE_VENDOR_INFO,
835         GSSEAP_STATE_INITIAL,
836         0,
837         eapGssSmInitVendorInfo
838     },
839 #endif
840 #ifdef GSSEAP_ENABLE_REAUTH
841     {
842         ITOK_TYPE_REAUTH_RESP,
843         ITOK_TYPE_REAUTH_REQ,
844         GSSEAP_STATE_INITIAL | GSSEAP_STATE_REAUTHENTICATE,
845         0,
846         eapGssSmInitGssReauth
847     },
848 #endif
849     {
850         ITOK_TYPE_NONE,
851         ITOK_TYPE_NONE,
852 #ifdef GSSEAP_ENABLE_REAUTH
853         GSSEAP_STATE_REAUTHENTICATE |
854 #endif
855         GSSEAP_STATE_INITIAL,
856         SM_ITOK_FLAG_REQUIRED,
857         eapGssSmInitIdentity
858     },
859     {
860         ITOK_TYPE_EAP_REQ,
861         ITOK_TYPE_EAP_RESP,
862         GSSEAP_STATE_AUTHENTICATE,
863         SM_ITOK_FLAG_REQUIRED,
864         eapGssSmInitAuthenticate
865     },
866     {
867         ITOK_TYPE_NONE,
868         ITOK_TYPE_GSS_CHANNEL_BINDINGS,
869         GSSEAP_STATE_INITIATOR_EXTS,
870         SM_ITOK_FLAG_REQUIRED,
871         eapGssSmInitGssChannelBindings
872     },
873     {
874         ITOK_TYPE_NONE,
875         ITOK_TYPE_NONE,
876         GSSEAP_STATE_INITIATOR_EXTS,
877         0,
878         eapGssSmInitCompleteInitiatorExts
879     },
880 #ifdef GSSEAP_ENABLE_REAUTH
881     {
882         ITOK_TYPE_REAUTH_CREDS,
883         ITOK_TYPE_NONE,
884         GSSEAP_STATE_ACCEPTOR_EXTS,
885         0,
886         eapGssSmInitReauthCreds
887     },
888 #endif
889     /* other extensions go here */
890     {
891         ITOK_TYPE_NONE,
892         ITOK_TYPE_NONE,
893         GSSEAP_STATE_ACCEPTOR_EXTS,
894         0,
895         eapGssSmInitCompleteAcceptorExts
896     }
897 };
898
899 OM_uint32
900 gss_init_sec_context(OM_uint32 *minor,
901                      gss_cred_id_t cred,
902                      gss_ctx_id_t *context_handle,
903                      gss_name_t target_name,
904                      gss_OID mech_type,
905                      OM_uint32 req_flags,
906                      OM_uint32 time_req,
907                      gss_channel_bindings_t input_chan_bindings,
908                      gss_buffer_t input_token,
909                      gss_OID *actual_mech_type,
910                      gss_buffer_t output_token,
911                      OM_uint32 *ret_flags,
912                      OM_uint32 *time_rec)
913 {
914     OM_uint32 major, tmpMinor;
915     gss_ctx_id_t ctx = *context_handle;
916     int initialContextToken = 0;
917
918     *minor = 0;
919
920     output_token->length = 0;
921     output_token->value = NULL;
922
923     if (ctx == GSS_C_NO_CONTEXT) {
924         if (input_token != GSS_C_NO_BUFFER && input_token->length != 0) {
925             *minor = GSSEAP_WRONG_SIZE;
926             return GSS_S_DEFECTIVE_TOKEN;
927         }
928
929         major = gssEapAllocContext(minor, &ctx);
930         if (GSS_ERROR(major))
931             return major;
932
933         ctx->flags |= CTX_FLAG_INITIATOR;
934         initialContextToken = 1;
935
936         *context_handle = ctx;
937     }
938
939     GSSEAP_MUTEX_LOCK(&ctx->mutex);
940
941     if (cred == GSS_C_NO_CREDENTIAL) {
942         if (ctx->defaultCred == GSS_C_NO_CREDENTIAL) {
943             major = gssEapAcquireCred(minor,
944                                       GSS_C_NO_NAME,
945                                       GSS_C_NO_BUFFER,
946                                       time_req,
947                                       GSS_C_NO_OID_SET,
948                                       GSS_C_INITIATE,
949                                       &ctx->defaultCred,
950                                       NULL,
951                                       NULL);
952             if (GSS_ERROR(major))
953                 goto cleanup;
954         }
955
956         cred = ctx->defaultCred;
957     }
958
959     GSSEAP_MUTEX_LOCK(&cred->mutex);
960
961     if ((cred->flags & CRED_FLAG_INITIATE) == 0) {
962         major = GSS_S_NO_CRED;
963         *minor = GSSEAP_CRED_USAGE_MISMATCH;
964         goto cleanup;
965     }
966
967     if (initialContextToken) {
968         major = initBegin(minor, cred, ctx, target_name, mech_type,
969                           req_flags, time_req, input_chan_bindings);
970         if (GSS_ERROR(major))
971             goto cleanup;
972     }
973
974     major = gssEapSmStep(minor,
975                          cred,
976                          ctx,
977                          target_name,
978                          mech_type,
979                          req_flags,
980                          time_req,
981                          input_chan_bindings,
982                          input_token,
983                          output_token,
984                          eapGssInitiatorSm,
985                          sizeof(eapGssInitiatorSm) / sizeof(eapGssInitiatorSm[0]));
986     if (GSS_ERROR(major))
987         goto cleanup;
988
989     if (actual_mech_type != NULL) {
990         OM_uint32 tmpMajor;
991
992         tmpMajor = gssEapCanonicalizeOid(&tmpMinor, ctx->mechanismUsed, 0, actual_mech_type);
993         if (GSS_ERROR(tmpMajor)) {
994             major = tmpMajor;
995             *minor = tmpMinor;
996             goto cleanup;
997         }
998     }
999     if (ret_flags != NULL)
1000         *ret_flags = ctx->gssFlags;
1001     if (time_rec != NULL)
1002         gssEapContextTime(&tmpMinor, ctx, time_rec);
1003
1004     assert(CTX_IS_ESTABLISHED(ctx) || major == GSS_S_CONTINUE_NEEDED);
1005
1006 cleanup:
1007     if (cred != GSS_C_NO_CREDENTIAL)
1008         GSSEAP_MUTEX_UNLOCK(&cred->mutex);
1009     GSSEAP_MUTEX_UNLOCK(&ctx->mutex);
1010
1011     if (GSS_ERROR(major))
1012         gssEapReleaseContext(&tmpMinor, context_handle);
1013
1014     return major;
1015 }