cleanup some symbolic constants
[mech_eap.git] / accept_sec_context.c
1 /*
2  * Copyright (c) 2010, 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 acceptor (server). These functions
35  * wrap around libradsec and (thus) talk to a RADIUS server or proxy.
36  */
37
38 #include "gssapiP_eap.h"
39
40 #ifdef GSSEAP_ENABLE_REAUTH
41 static OM_uint32
42 eapGssSmAcceptGssReauth(OM_uint32 *minor,
43                         gss_ctx_id_t ctx,
44                         gss_cred_id_t cred,
45                         gss_buffer_t inputToken,
46                         gss_channel_bindings_t chanBindings,
47                         gss_buffer_t outputToken);
48 #endif
49
50 /*
51  * Mark an acceptor context as ready for cryptographic operations
52  */
53 static OM_uint32
54 acceptReadyEap(OM_uint32 *minor, gss_ctx_id_t ctx, gss_cred_id_t cred)
55 {
56     OM_uint32 major, tmpMinor;
57     VALUE_PAIR *vp;
58     gss_buffer_desc nameBuf = GSS_C_EMPTY_BUFFER;
59
60     /* Cache encryption type derived from selected mechanism OID */
61     major = gssEapOidToEnctype(minor, ctx->mechanismUsed,
62                                &ctx->encryptionType);
63     if (GSS_ERROR(major))
64         return major;
65
66     gssEapReleaseName(&tmpMinor, &ctx->initiatorName);
67
68     major = gssEapRadiusGetRawAvp(minor, ctx->acceptorCtx.vps,
69                                   PW_USER_NAME, 0, &vp);
70     if (major == GSS_S_COMPLETE) {
71         nameBuf.length = vp->length;
72         nameBuf.value = vp->vp_strvalue;
73     } else {
74         ctx->gssFlags |= GSS_C_ANON_FLAG;
75     }
76
77     major = gssEapImportName(minor, &nameBuf, GSS_C_NT_USER_NAME,
78                              &ctx->initiatorName);
79     if (GSS_ERROR(major))
80         return major;
81
82     major = gssEapRadiusGetRawAvp(minor, ctx->acceptorCtx.vps,
83                                   PW_MS_MPPE_SEND_KEY, VENDORPEC_MS, &vp);
84     if (GSS_ERROR(major)) {
85         *minor = GSSEAP_KEY_UNAVAILABLE;
86         return GSS_S_UNAVAILABLE;
87     }
88
89     major = gssEapDeriveRfc3961Key(minor,
90                                    vp->vp_octets,
91                                    vp->length,
92                                    ctx->encryptionType,
93                                    &ctx->rfc3961Key);
94     if (GSS_ERROR(major))
95         return major;
96
97     major = rfc3961ChecksumTypeForKey(minor, &ctx->rfc3961Key,
98                                        &ctx->checksumType);
99     if (GSS_ERROR(major))
100         return major;
101
102     major = sequenceInit(minor,
103                          &ctx->seqState, ctx->recvSeq,
104                          ((ctx->gssFlags & GSS_C_REPLAY_FLAG) != 0),
105                          ((ctx->gssFlags & GSS_C_SEQUENCE_FLAG) != 0),
106                          TRUE);
107     if (GSS_ERROR(major))
108         return major;
109
110     major = gssEapCreateAttrContext(minor, cred, ctx,
111                                     &ctx->initiatorName->attrCtx);
112     if (GSS_ERROR(major))
113         return major;
114
115     *minor = 0;
116     return GSS_S_COMPLETE;
117 }
118
119 /*
120  * Emit a identity EAP request to force the initiator (peer) to identify
121  * itself.
122  */
123 static OM_uint32
124 eapGssSmAcceptIdentity(OM_uint32 *minor,
125                        gss_ctx_id_t ctx,
126                        gss_cred_id_t cred,
127                        gss_buffer_t inputToken,
128                        gss_channel_bindings_t chanBindings,
129                        gss_buffer_t outputToken)
130 {
131     OM_uint32 major;
132     union {
133         struct eap_hdr pdu;
134         unsigned char data[5];
135     } pkt;
136     gss_buffer_desc pktBuffer;
137
138     if (inputToken != GSS_C_NO_BUFFER && inputToken->length != 0) {
139         *minor = GSSEAP_WRONG_SIZE;
140         return GSS_S_DEFECTIVE_TOKEN;
141     }
142
143     assert(ctx->acceptorName == GSS_C_NO_NAME);
144
145     if (cred != GSS_C_NO_CREDENTIAL && cred->name != GSS_C_NO_NAME) {
146         major = gssEapDuplicateName(minor, cred->name, &ctx->acceptorName);
147         if (GSS_ERROR(major))
148             return major;
149     }
150
151     pkt.pdu.code = EAP_CODE_REQUEST;
152     pkt.pdu.identifier = 0;
153     pkt.pdu.length = htons(sizeof(pkt.data));
154     pkt.data[4] = EAP_TYPE_IDENTITY;
155
156     pktBuffer.length = sizeof(pkt.data);
157     pktBuffer.value = pkt.data;
158
159     major = duplicateBuffer(minor, &pktBuffer, outputToken);
160     if (GSS_ERROR(major))
161         return major;
162
163     ctx->state = GSSEAP_STATE_AUTHENTICATE;
164
165     *minor = 0;
166     return GSS_S_CONTINUE_NEEDED;
167 }
168
169 /*
170  * Pass the asserted acceptor identity to the authentication server.
171  */
172 static OM_uint32
173 setAcceptorIdentity(OM_uint32 *minor,
174                     gss_ctx_id_t ctx,
175                     VALUE_PAIR **vps)
176 {
177     OM_uint32 major;
178     gss_buffer_desc nameBuf;
179     krb5_context krbContext = NULL;
180     krb5_principal krbPrinc;
181     struct rs_context *rc = ctx->acceptorCtx.radContext;
182
183     assert(rc != NULL);
184
185     if (ctx->acceptorName == GSS_C_NO_NAME) {
186         *minor = 0;
187         return GSS_S_COMPLETE;
188     }
189
190     if ((ctx->acceptorName->flags & NAME_FLAG_SERVICE) == 0) {
191         *minor = GSSEAP_BAD_SERVICE_NAME;
192         return GSS_S_BAD_NAME;
193     }
194
195     GSSEAP_KRB_INIT(&krbContext);
196
197     krbPrinc = ctx->acceptorName->krbPrincipal;
198     assert(krbPrinc != NULL);
199     assert(krb5_princ_size(krbContext, krbPrinc) >= 2);
200
201     /* Acceptor-Service-Name */
202     krbDataToGssBuffer(krb5_princ_component(krbContext, krbPrinc, 0), &nameBuf);
203
204     major = gssEapRadiusAddAvp(minor, vps,
205                                PW_GSS_ACCEPTOR_SERVICE_NAME,
206                                VENDORPEC_UKERNA,
207                                &nameBuf);
208     if (GSS_ERROR(major))
209         return major;
210
211     /* Acceptor-Host-Name */
212     krbDataToGssBuffer(krb5_princ_component(krbContext, krbPrinc, 1), &nameBuf);
213
214     major = gssEapRadiusAddAvp(minor, vps,
215                                PW_GSS_ACCEPTOR_HOST_NAME,
216                                VENDORPEC_UKERNA,
217                                &nameBuf);
218     if (GSS_ERROR(major))
219         return major;
220
221     if (krb5_princ_size(krbContext, krbPrinc) > 2) {
222         /* Acceptor-Service-Specific */
223         krb5_principal_data ssiPrinc = *krbPrinc;
224         char *ssi;
225
226         krb5_princ_size(krbContext, &ssiPrinc) -= 2;
227         krb5_princ_name(krbContext, &ssiPrinc) += 2;
228
229         *minor = krb5_unparse_name_flags(krbContext, &ssiPrinc,
230                                          KRB5_PRINCIPAL_UNPARSE_NO_REALM, &ssi);
231         if (*minor != 0)
232             return GSS_S_FAILURE;
233
234         nameBuf.value = ssi;
235         nameBuf.length = strlen(ssi);
236
237         major = gssEapRadiusAddAvp(minor, vps,
238                                    PW_GSS_ACCEPTOR_SERVICE_SPECIFIC,
239                                    VENDORPEC_UKERNA,
240                                    &nameBuf);
241
242         if (GSS_ERROR(major)) {
243             krb5_free_unparsed_name(krbContext, ssi);
244             return major;
245         }
246         krb5_free_unparsed_name(krbContext, ssi);
247     }
248
249     krbDataToGssBuffer(krb5_princ_realm(krbContext, krbPrinc), &nameBuf);
250     if (nameBuf.length != 0) {
251         /* Acceptor-Realm-Name */
252         major = gssEapRadiusAddAvp(minor, vps,
253                                    PW_GSS_ACCEPTOR_REALM_NAME,
254                                    VENDORPEC_UKERNA,
255                                    &nameBuf);
256         if (GSS_ERROR(major))
257             return major;
258     }
259
260     *minor = 0;
261     return GSS_S_COMPLETE;
262 }
263
264 /*
265  * Allocate a RadSec handle
266  */
267 static OM_uint32
268 createRadiusHandle(OM_uint32 *minor,
269                    gss_cred_id_t cred,
270                    gss_ctx_id_t ctx)
271 {
272     struct gss_eap_acceptor_ctx *actx = &ctx->acceptorCtx;
273     const char *configFile = RS_CONFIG_FILE;
274     const char *configStanza = "gss-eap";
275     struct rs_alloc_scheme ralloc;
276     struct rs_error *err;
277
278     assert(actx->radContext == NULL);
279     assert(actx->radConn == NULL);
280
281     if (rs_context_create(&actx->radContext, RS_DICT_FILE) != 0) {
282         *minor = GSSEAP_RADSEC_CONTEXT_FAILURE;
283         return GSS_S_FAILURE;
284     }
285
286     if (cred != GSS_C_NO_CREDENTIAL) {
287         if (cred->radiusConfigFile != NULL)
288             configFile = cred->radiusConfigFile;
289         if (cred->radiusConfigStanza != NULL)
290             configStanza = cred->radiusConfigStanza;
291     }
292
293     ralloc.calloc  = GSSEAP_CALLOC;
294     ralloc.malloc  = GSSEAP_MALLOC;
295     ralloc.free    = GSSEAP_FREE;
296     ralloc.realloc = GSSEAP_REALLOC;
297
298     rs_context_set_alloc_scheme(actx->radContext, &ralloc);
299
300     if (rs_context_read_config(actx->radContext, configFile) != 0) {
301         err = rs_err_ctx_pop(actx->radContext);
302         goto fail;
303     }
304
305     if (rs_conn_create(actx->radContext, &actx->radConn, configStanza) != 0) {
306         err = rs_err_conn_pop(actx->radConn);
307         goto fail;
308     }
309
310     if (actx->radServer != NULL) {
311         if (rs_conn_select_server(actx->radConn, actx->radServer) != 0) {
312             err = rs_err_conn_pop(actx->radConn);
313             goto fail;
314         }
315     }
316
317     *minor = 0;
318     return GSS_S_COMPLETE;
319
320 fail:
321     return gssEapRadiusMapError(minor, err);
322 }
323
324 /*
325  * Process a EAP response from the initiator.
326  */
327 static OM_uint32
328 eapGssSmAcceptAuthenticate(OM_uint32 *minor,
329                            gss_ctx_id_t ctx,
330                            gss_cred_id_t cred,
331                            gss_buffer_t inputToken,
332                            gss_channel_bindings_t chanBindings,
333                            gss_buffer_t outputToken)
334 {
335     OM_uint32 major, tmpMinor;
336     struct rs_connection *rconn;
337     struct rs_request *request = NULL;
338     struct rs_packet *req = NULL, *resp = NULL;
339     struct radius_packet *frreq, *frresp;
340     int sendAcceptorIdentity = 0;
341
342     if (ctx->acceptorCtx.radContext == NULL) {
343         /* May be NULL from an imported partial context */
344         major = createRadiusHandle(minor, cred, ctx);
345         if (GSS_ERROR(major))
346             goto cleanup;
347
348         sendAcceptorIdentity = 1;
349     }
350
351     rconn = ctx->acceptorCtx.radConn;
352
353     if (rs_packet_create_acc_request(rconn, &req, NULL, NULL) != 0) {
354         major = gssEapRadiusMapError(minor, rs_err_conn_pop(rconn));
355         goto cleanup;
356     }
357     frreq = rs_packet_frpkt(req);
358
359     if (sendAcceptorIdentity) {
360         major = setAcceptorIdentity(minor, ctx, &frreq->vps);
361         if (GSS_ERROR(major))
362             goto cleanup;
363     }
364
365     major = gssEapRadiusAddAvp(minor, &frreq->vps,
366                                PW_EAP_MESSAGE, 0, inputToken);
367     if (GSS_ERROR(major))
368         goto cleanup;
369
370     if (ctx->acceptorCtx.state.length != 0) {
371         major = gssEapRadiusAddAvp(minor, &frreq->vps, PW_STATE, 0,
372                                    &ctx->acceptorCtx.state);
373         if (GSS_ERROR(major))
374             goto cleanup;
375
376         gss_release_buffer(&tmpMinor, &ctx->acceptorCtx.state);
377     }
378
379     if (rs_request_create(rconn, &request) != 0 ||
380         rs_request_send(request, req, &resp) != 0) {
381         major = gssEapRadiusMapError(minor, rs_err_conn_pop(rconn));
382         goto cleanup;
383     }
384
385     assert(resp != NULL);
386
387     frresp = rs_packet_frpkt(resp);
388     switch (frresp->code) {
389     case PW_AUTHENTICATION_ACK:
390     case PW_ACCESS_CHALLENGE:
391         major = GSS_S_CONTINUE_NEEDED;
392         break;
393     case PW_AUTHENTICATION_REJECT:
394         *minor = GSSEAP_RADIUS_AUTH_FAILURE;
395         major = GSS_S_DEFECTIVE_CREDENTIAL;
396         goto cleanup;
397         break;
398     default:
399         *minor = GSSEAP_UNKNOWN_RADIUS_CODE;
400         major = GSS_S_FAILURE;
401         goto cleanup;
402         break;
403     }
404
405     major = gssEapRadiusGetAvp(minor, frresp->vps, PW_EAP_MESSAGE, 0,
406                                outputToken, TRUE);
407     if (major == GSS_S_UNAVAILABLE && frresp->code == PW_ACCESS_CHALLENGE) {
408         *minor = GSSEAP_MISSING_EAP_REQUEST;
409         major = GSS_S_DEFECTIVE_TOKEN;
410         goto cleanup;
411     } else if (GSS_ERROR(major))
412         goto cleanup;
413
414     if (frresp->code == PW_ACCESS_CHALLENGE) {
415         major = gssEapRadiusGetAvp(minor, frresp->vps, PW_STATE, 0,
416                                    &ctx->acceptorCtx.state, TRUE);
417         if (GSS_ERROR(major) && *minor != GSSEAP_NO_SUCH_ATTR)
418             goto cleanup;
419     } else {
420         ctx->acceptorCtx.vps = frresp->vps;
421         frresp->vps = NULL;
422
423         rs_conn_destroy(ctx->acceptorCtx.radConn);
424         ctx->acceptorCtx.radConn = NULL;
425
426         major = acceptReadyEap(minor, ctx, cred);
427         if (GSS_ERROR(major))
428             goto cleanup;
429
430         ctx->state = GSSEAP_STATE_EXTENSIONS_REQ;
431     }
432
433     *minor = 0;
434     major = GSS_S_CONTINUE_NEEDED;
435
436 cleanup:
437     rs_request_destroy(request);
438
439     return major;
440 }
441
442 static OM_uint32
443 eapGssSmAcceptExtensionsReq(OM_uint32 *minor,
444                             gss_ctx_id_t ctx,
445                             gss_cred_id_t cred,
446                             gss_buffer_t inputToken,
447                             gss_channel_bindings_t chanBindings,
448                             gss_buffer_t outputToken)
449 {
450     OM_uint32 major;
451
452     major = gssEapVerifyExtensions(minor, cred, ctx, chanBindings, inputToken);
453     if (GSS_ERROR(major))
454         return major;
455
456     outputToken->length = 0;
457     outputToken->value = NULL;
458
459     ctx->state = GSSEAP_STATE_EXTENSIONS_RESP;
460
461     *minor = 0;
462     return GSS_S_CONTINUE_NEEDED;
463 }
464
465 static OM_uint32
466 eapGssSmAcceptExtensionsResp(OM_uint32 *minor,
467                              gss_ctx_id_t ctx,
468                              gss_cred_id_t cred,
469                              gss_buffer_t inputToken,
470                              gss_channel_bindings_t chanBindings,
471                              gss_buffer_t outputToken)
472 {
473     OM_uint32 major;
474
475     major = gssEapMakeExtensions(minor, cred, ctx, chanBindings, outputToken);
476     if (GSS_ERROR(major))
477         return major;
478
479     ctx->state = GSSEAP_STATE_ESTABLISHED;
480
481     *minor = 0;
482     return GSS_S_COMPLETE;
483 }
484
485 static OM_uint32
486 eapGssSmAcceptEstablished(OM_uint32 *minor,
487                           gss_ctx_id_t ctx,
488                           gss_cred_id_t cred,
489                           gss_buffer_t inputToken,
490                           gss_channel_bindings_t chanBindings,
491                           gss_buffer_t outputToken)
492 {
493     /* Called with already established context */
494     *minor = GSSEAP_CONTEXT_ESTABLISHED;
495     return GSS_S_BAD_STATUS;
496 }
497
498 static OM_uint32
499 makeErrorToken(OM_uint32 *minor,
500                OM_uint32 majorStatus,
501                OM_uint32 minorStatus,
502                gss_buffer_t outputToken)
503 {
504     unsigned char errorData[8];
505     gss_buffer_desc errorBuffer;
506
507     assert(GSS_ERROR(majorStatus));
508
509     /*
510      * Only return error codes that the initiator could have caused,
511      * to avoid information leakage.
512      */
513     switch (minorStatus) {
514     case GSSEAP_WRONG_SIZE:
515     case GSSEAP_WRONG_MECH:
516     case GSSEAP_BAD_TOK_HEADER:
517     case GSSEAP_TOK_TRUNC:
518     case GSSEAP_BAD_DIRECTION:
519     case GSSEAP_WRONG_TOK_ID:
520     case GSSEAP_CRIT_EXT_UNAVAILABLE:
521     case GSSEAP_MISSING_REQUIRED_EXT:
522     case GSSEAP_KEY_UNAVAILABLE:
523     case GSSEAP_KEY_TOO_SHORT:
524     case GSSEAP_RADIUS_AUTH_FAILURE:
525     case GSSEAP_UNKNOWN_RADIUS_CODE:
526     case GSSEAP_MISSING_EAP_REQUEST:
527         break;
528     default:
529         if (IS_RADIUS_ERROR(minorStatus))
530             /* Squash RADIUS error codes */
531             minorStatus = GSSEAP_RADIUS_PROT_FAILURE;
532         else
533             /* Don't return system error codes */
534             return GSS_S_COMPLETE;
535     }
536
537     minorStatus -= ERROR_TABLE_BASE_eapg;
538
539     store_uint32_be(majorStatus, &errorData[0]);
540     store_uint32_be(minorStatus, &errorData[4]);
541
542     errorBuffer.length = sizeof(errorData);
543     errorBuffer.value = errorData;
544
545     return duplicateBuffer(minor, &errorBuffer, outputToken);
546 }
547
548 static struct gss_eap_acceptor_sm {
549     enum gss_eap_token_type inputTokenType;
550     enum gss_eap_token_type outputTokenType;
551     OM_uint32 (*processToken)(OM_uint32 *,
552                               gss_ctx_id_t,
553                               gss_cred_id_t,
554                               gss_buffer_t,
555                               gss_channel_bindings_t,
556                               gss_buffer_t);
557 } eapGssAcceptorSm[] = {
558     { TOK_TYPE_EAP_RESP,    TOK_TYPE_EAP_REQ,       eapGssSmAcceptIdentity           },
559     { TOK_TYPE_EAP_RESP,    TOK_TYPE_EAP_REQ,       eapGssSmAcceptAuthenticate       },
560     { TOK_TYPE_EXT_REQ,     TOK_TYPE_NONE,          eapGssSmAcceptExtensionsReq      },
561     { TOK_TYPE_NONE,        TOK_TYPE_EXT_RESP,      eapGssSmAcceptExtensionsResp     },
562     { TOK_TYPE_NONE,        TOK_TYPE_NONE,          eapGssSmAcceptEstablished        },
563     { TOK_TYPE_NONE,        TOK_TYPE_CONTEXT_ERR,   NULL                             },
564 #ifdef GSSEAP_ENABLE_REAUTH
565     { TOK_TYPE_GSS_REAUTH,  TOK_TYPE_GSS_REAUTH,    eapGssSmAcceptGssReauth          },
566 #endif
567 };
568
569 OM_uint32
570 gss_accept_sec_context(OM_uint32 *minor,
571                        gss_ctx_id_t *context_handle,
572                        gss_cred_id_t cred,
573                        gss_buffer_t input_token,
574                        gss_channel_bindings_t input_chan_bindings,
575                        gss_name_t *src_name,
576                        gss_OID *mech_type,
577                        gss_buffer_t output_token,
578                        OM_uint32 *ret_flags,
579                        OM_uint32 *time_rec,
580                        gss_cred_id_t *delegated_cred_handle)
581 {
582     OM_uint32 major;
583     OM_uint32 tmpMajor, tmpMinor;
584     gss_ctx_id_t ctx = *context_handle;
585     struct gss_eap_acceptor_sm *sm = NULL;
586     gss_buffer_desc innerInputToken = GSS_C_EMPTY_BUFFER;
587     gss_buffer_desc innerOutputToken = GSS_C_EMPTY_BUFFER;
588     enum gss_eap_token_type tokType;
589     int initialContextToken = 0;
590
591     *minor = 0;
592
593     output_token->length = 0;
594     output_token->value = NULL;
595
596     if (input_token == GSS_C_NO_BUFFER || input_token->length == 0) {
597         *minor = GSSEAP_TOK_TRUNC;
598         return GSS_S_DEFECTIVE_TOKEN;
599     }
600
601     if (ctx == GSS_C_NO_CONTEXT) {
602         major = gssEapAllocContext(minor, &ctx);
603         if (GSS_ERROR(major))
604             return major;
605
606         initialContextToken = 1;
607         *context_handle = ctx;
608     }
609
610     GSSEAP_MUTEX_LOCK(&ctx->mutex);
611
612     /* Validate and lock credentials */
613     if (cred != GSS_C_NO_CREDENTIAL) {
614         GSSEAP_MUTEX_LOCK(&cred->mutex);
615
616         if ((cred->flags & CRED_FLAG_ACCEPT) == 0) {
617             *minor = GSSEAP_CRED_USAGE_MISMATCH;
618             major = GSS_S_NO_CRED;
619             goto cleanup;
620         }
621     }
622
623     sm = &eapGssAcceptorSm[ctx->state];
624
625     major = gssEapVerifyToken(minor, ctx, input_token,
626                               &tokType, &innerInputToken);
627     if (GSS_ERROR(major))
628         goto cleanup;
629
630     if (!gssEapCredAvailable(cred, ctx->mechanismUsed)) {
631         *minor = GSSEAP_CRED_MECH_MISMATCH;
632         major = GSS_S_BAD_MECH;
633         goto cleanup;
634     }
635
636 #ifdef GSSEAP_ENABLE_REAUTH
637     /*
638      * If we're built with fast reauthentication support, it's valid
639      * for an initiator to send a GSS reauthentication token as its
640      * initial context token, causing us to short-circuit the state
641      * machine and process Kerberos GSS messages instead.
642      */
643     if (tokType == TOK_TYPE_GSS_REAUTH && initialContextToken) {
644         ctx->state = GSSEAP_STATE_KRB_REAUTH;
645     } else
646 #endif
647     if (tokType != sm->inputTokenType) {
648         *minor = GSSEAP_WRONG_TOK_ID;
649         major = GSS_S_DEFECTIVE_TOKEN;
650         goto cleanup;
651     }
652
653     do {
654         sm = &eapGssAcceptorSm[ctx->state];
655
656         major = (sm->processToken)(minor,
657                                    ctx,
658                                    cred,
659                                    &innerInputToken,
660                                    input_chan_bindings,
661                                    &innerOutputToken);
662         if (GSS_ERROR(major)) {
663             /* Possibly generate an error token */
664             tmpMajor = makeErrorToken(&tmpMinor, major, *minor, &innerOutputToken);
665             if (GSS_ERROR(tmpMajor)) {
666                 major = tmpMajor;
667                 goto cleanup;
668             }
669
670             sm = &eapGssAcceptorSm[GSSEAP_STATE_ERROR];
671             goto send_token;
672         }
673     } while (major == GSS_S_CONTINUE_NEEDED && innerOutputToken.length == 0);
674
675     if (mech_type != NULL) {
676         if (!gssEapInternalizeOid(ctx->mechanismUsed, mech_type))
677             duplicateOid(&tmpMinor, ctx->mechanismUsed, mech_type);
678     }
679     if (ret_flags != NULL)
680         *ret_flags = ctx->gssFlags;
681     if (delegated_cred_handle != NULL)
682         *delegated_cred_handle = GSS_C_NO_CREDENTIAL;
683
684     if (major == GSS_S_COMPLETE) {
685         if (src_name != NULL && ctx->initiatorName != GSS_C_NO_NAME) {
686             major = gssEapDuplicateName(&tmpMinor, ctx->initiatorName, src_name);
687             if (GSS_ERROR(major))
688                 goto cleanup;
689         }
690         if (time_rec != NULL) {
691             major = gssEapContextTime(&tmpMinor, ctx, time_rec);
692             if (GSS_ERROR(major))
693                 goto cleanup;
694         }
695     }
696
697     assert(ctx->state == GSSEAP_STATE_ESTABLISHED || major == GSS_S_CONTINUE_NEEDED);
698
699 send_token:
700     if (innerOutputToken.value != NULL) {
701         tmpMajor = gssEapMakeToken(&tmpMinor, ctx, &innerOutputToken,
702                                    sm->outputTokenType, output_token);
703         if (GSS_ERROR(tmpMajor)) {
704             major = tmpMajor;
705             *minor = tmpMinor;
706             goto cleanup;
707         }
708     }
709
710 cleanup:
711     if (cred != GSS_C_NO_CREDENTIAL)
712         GSSEAP_MUTEX_UNLOCK(&cred->mutex);
713     GSSEAP_MUTEX_UNLOCK(&ctx->mutex);
714
715     if (GSS_ERROR(major))
716         gssEapReleaseContext(&tmpMinor, context_handle);
717
718     gss_release_buffer(&tmpMinor, &innerOutputToken);
719
720     return major;
721 }
722
723 #ifdef GSSEAP_ENABLE_REAUTH
724 static OM_uint32
725 acceptReadyKrb(OM_uint32 *minor,
726                gss_ctx_id_t ctx,
727                gss_cred_id_t cred,
728                const gss_name_t initiator,
729                const gss_OID mech,
730                OM_uint32 timeRec)
731 {
732     OM_uint32 major;
733
734     major = gssEapGlueToMechName(minor, initiator, &ctx->initiatorName);
735     if (GSS_ERROR(major))
736         return major;
737
738     if (cred != GSS_C_NO_CREDENTIAL && cred->name != GSS_C_NO_NAME) {
739         major = gssEapDuplicateName(minor, cred->name, &ctx->acceptorName);
740         if (GSS_ERROR(major))
741             return major;
742     }
743
744     major = gssEapReauthComplete(minor, ctx, cred, mech, timeRec);
745     if (GSS_ERROR(major))
746         return major;
747
748     ctx->state = GSSEAP_STATE_ESTABLISHED;
749
750     *minor = 0;
751     return GSS_S_COMPLETE;
752 }
753
754 static OM_uint32
755 eapGssSmAcceptGssReauth(OM_uint32 *minor,
756                         gss_ctx_id_t ctx,
757                         gss_cred_id_t cred,
758                         gss_buffer_t inputToken,
759                         gss_channel_bindings_t chanBindings,
760                         gss_buffer_t outputToken)
761 {
762     OM_uint32 major, tmpMinor;
763     gss_cred_id_t krbCred = GSS_C_NO_CREDENTIAL;
764     gss_name_t krbInitiator = GSS_C_NO_NAME;
765     gss_OID mech = GSS_C_NO_OID;
766     OM_uint32 gssFlags, timeRec = GSS_C_INDEFINITE;
767
768     ctx->flags |= CTX_FLAG_KRB_REAUTH;
769
770     if (cred != GSS_C_NO_CREDENTIAL)
771         krbCred = cred->krbCred;
772
773     major = gssAcceptSecContext(minor,
774                                 &ctx->kerberosCtx,
775                                 krbCred,
776                                 inputToken,
777                                 chanBindings,
778                                 &krbInitiator,
779                                 &mech,
780                                 outputToken,
781                                 &gssFlags,
782                                 &timeRec,
783                                 NULL);
784     if (major == GSS_S_COMPLETE) {
785         major = acceptReadyKrb(minor, ctx, cred,
786                                krbInitiator, mech, timeRec);
787     }
788
789     ctx->gssFlags = gssFlags;
790
791     gssReleaseName(&tmpMinor, &krbInitiator);
792
793     return major;
794 }
795 #endif /* GSSEAP_ENABLE_REAUTH */