f223cc575df08d838c55fd70578808267f4cc840
[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 #include "gssapiP_eap.h"
34
35 /*
36  * Mark a context as ready for cryptographic operations
37  */
38 static OM_uint32
39 acceptReadyEap(OM_uint32 *minor, gss_ctx_id_t ctx, gss_cred_id_t cred)
40 {
41     OM_uint32 major, tmpMinor;
42     VALUE_PAIR *vp;
43     gss_buffer_desc nameBuf = GSS_C_EMPTY_BUFFER;
44
45     /* Cache encryption type derived from selected mechanism OID */
46     major = gssEapOidToEnctype(minor, ctx->mechanismUsed,
47                                &ctx->encryptionType);
48     if (GSS_ERROR(major))
49         return major;
50
51     gssEapReleaseName(&tmpMinor, &ctx->initiatorName);
52
53     vp = rc_avpair_get(ctx->acceptorCtx.avps, PW_USER_NAME, 0);
54     if (vp != NULL) {
55         nameBuf.length = vp->lvalue;
56         nameBuf.value = vp->strvalue;
57     } else {
58         ctx->gssFlags |= GSS_C_ANON_FLAG;
59     }
60
61     major = gssEapImportName(minor, &nameBuf, GSS_C_NT_USER_NAME,
62                              &ctx->initiatorName);
63     if (GSS_ERROR(major))
64         return major;
65
66     ctx->initiatorName->attrCtx = gssEapCreateAttrContext(cred, ctx);
67
68     vp = rc_avpair_get(ctx->acceptorCtx.avps,
69                        VENDOR_ATTR_MS_MPPE_SEND_KEY,
70                        VENDOR_ID_MICROSOFT);
71     if (ctx->encryptionType != ENCTYPE_NULL && vp != NULL) {
72         major = gssEapDeriveRfc3961Key(minor,
73                                        (unsigned char *)vp->strvalue,
74                                        vp->lvalue,
75                                        ctx->encryptionType,
76                                        &ctx->rfc3961Key);
77         if (GSS_ERROR(major))
78             return major;
79
80         major = rfc3961ChecksumTypeForKey(minor, &ctx->rfc3961Key,
81                                            &ctx->checksumType);
82         if (GSS_ERROR(major))
83             return major;
84     } else {
85         /*
86          * draft-howlett-eap-gss says that integrity/confidentialty should
87          * always be advertised as available, but if we have no keying
88          * material it seems confusing to the caller to advertise this.
89          */
90         ctx->gssFlags &= ~(GSS_C_INTEG_FLAG | GSS_C_CONF_FLAG);
91         ctx->encryptionType = ENCTYPE_NULL;
92     }
93
94     major = sequenceInit(minor,
95                          &ctx->seqState, ctx->recvSeq,
96                          ((ctx->gssFlags & GSS_C_REPLAY_FLAG) != 0),
97                          ((ctx->gssFlags & GSS_C_SEQUENCE_FLAG) != 0),
98                          TRUE);
99     if (GSS_ERROR(major))
100         return major;
101
102     return GSS_S_COMPLETE;
103 }
104
105 static OM_uint32
106 eapGssSmAcceptIdentity(OM_uint32 *minor,
107                        gss_ctx_id_t ctx,
108                        gss_cred_id_t cred,
109                        gss_buffer_t inputToken,
110                        gss_channel_bindings_t chanBindings,
111                        gss_buffer_t outputToken)
112 {
113     OM_uint32 major;
114     union {
115         struct eap_hdr pdu;
116         unsigned char data[5];
117     } pkt;
118     gss_buffer_desc pktBuffer;
119
120     if (inputToken != GSS_C_NO_BUFFER && inputToken->length != 0)
121         return GSS_S_DEFECTIVE_TOKEN;
122
123     assert(ctx->acceptorCtx.radHandle == NULL);
124
125     major = gssEapRadiusAllocHandle(minor, cred, &ctx->acceptorCtx.radHandle);
126     if (GSS_ERROR(major))
127         return major;
128
129     assert(ctx->acceptorName == GSS_C_NO_NAME);
130
131     if (cred != GSS_C_NO_CREDENTIAL && cred->name != GSS_C_NO_NAME) {
132         major = gssEapDuplicateName(minor, cred->name, &ctx->acceptorName);
133         if (GSS_ERROR(major))
134             return major;
135     }
136
137     pkt.pdu.code = EAP_CODE_REQUEST;
138     pkt.pdu.identifier = 0;
139     pkt.pdu.length = htons(sizeof(pkt.data));
140     pkt.data[4] = EAP_TYPE_IDENTITY;
141
142     pktBuffer.length = sizeof(pkt.data);
143     pktBuffer.value = pkt.data;
144
145     major = duplicateBuffer(minor, &pktBuffer, outputToken);
146     if (GSS_ERROR(major))
147         return major;
148
149     ctx->state = EAP_STATE_AUTHENTICATE;
150
151     return GSS_S_CONTINUE_NEEDED;
152 }
153
154 static OM_uint32
155 setAcceptorIdentity(OM_uint32 *minor,
156                     gss_ctx_id_t ctx,
157                     VALUE_PAIR **avps)
158 {
159     OM_uint32 major;
160     gss_buffer_desc nameBuf;
161     krb5_context krbContext = NULL;
162     krb5_principal krbPrinc;
163
164     /* Awaits further specification */
165     if (ctx->acceptorName == GSS_C_NO_NAME)
166         return GSS_S_COMPLETE;
167
168     GSSEAP_KRB_INIT(&krbContext);
169
170     krbPrinc = ctx->acceptorName->krbPrincipal;
171     assert(krbPrinc != NULL);
172
173     if (krb5_princ_size(krbContext, krbPrinc) < 2)
174         return GSS_S_BAD_NAME;
175
176     /* Acceptor-Service-Name */
177     krbDataToGssBuffer(krb5_princ_component(krbContext, krbPrinc, 0), &nameBuf);
178
179     major = addAvpFromBuffer(minor, ctx->acceptorCtx.radHandle, avps,
180                              VENDOR_ATTR_GSS_ACCEPTOR_SERVICE_NAME,
181                              VENDOR_ID_UKERNA,
182                              &nameBuf);
183     if (GSS_ERROR(major))
184         return major;
185
186     /* Acceptor-Host-Name */
187     krbDataToGssBuffer(krb5_princ_component(krbContext, krbPrinc, 1), &nameBuf);
188
189     major = addAvpFromBuffer(minor, ctx->acceptorCtx.radHandle, avps,
190                              VENDOR_ATTR_GSS_ACCEPTOR_HOST_NAME,
191                              VENDOR_ID_UKERNA,
192                              &nameBuf);
193     if (GSS_ERROR(major))
194         return major;
195
196     if (krb5_princ_size(krbContext, krbPrinc) > 2) {
197         /* Acceptor-Service-Specific */
198         krb5_principal_data ssiPrinc = *krbPrinc;
199         char *ssi;
200
201         krb5_princ_size(krbContext, &ssiPrinc) -= 2;
202         krb5_princ_name(krbContext, &ssiPrinc) += 2;
203
204         *minor = krb5_unparse_name_flags(krbContext, &ssiPrinc,
205                                          KRB5_PRINCIPAL_UNPARSE_NO_REALM, &ssi);
206         if (*minor != 0)
207             return GSS_S_FAILURE;
208
209         nameBuf.value = ssi;
210         nameBuf.length = strlen(ssi);
211
212         major = addAvpFromBuffer(minor, ctx->acceptorCtx.radHandle, avps,
213                                  VENDOR_ATTR_GSS_ACCEPTOR_SERVICE_SPECIFIC,
214                                  VENDOR_ID_UKERNA,
215                                  &nameBuf);
216
217         if (GSS_ERROR(major)) {
218             krb5_free_unparsed_name(krbContext, ssi);
219             return major;
220         }
221         krb5_free_unparsed_name(krbContext, ssi);
222     }
223
224     krbDataToGssBuffer(krb5_princ_realm(krbContext, krbPrinc), &nameBuf);
225     if (nameBuf.length != 0) {
226         /* Acceptor-Realm-Name */
227         major = addAvpFromBuffer(minor, ctx->acceptorCtx.radHandle, avps,
228                                  VENDOR_ATTR_GSS_ACCEPTOR_REALM_NAME,
229                                  VENDOR_ID_UKERNA,
230                                  &nameBuf);
231         if (GSS_ERROR(major))
232             return major;
233     }
234
235     return GSS_S_COMPLETE;
236 }
237
238 static OM_uint32
239 eapGssSmAcceptAuthenticate(OM_uint32 *minor,
240                            gss_ctx_id_t ctx,
241                            gss_cred_id_t cred,
242                            gss_buffer_t inputToken,
243                            gss_channel_bindings_t chanBindings,
244                            gss_buffer_t outputToken)
245 {
246     OM_uint32 major, tmpMinor;
247     int code;
248     VALUE_PAIR *send = NULL;
249     VALUE_PAIR *received = NULL;
250     rc_handle *rh = ctx->acceptorCtx.radHandle;
251     char msgBuffer[4096];
252     struct eap_hdr *pdu;
253     unsigned char *pos;
254     gss_buffer_desc nameBuf = GSS_C_EMPTY_BUFFER;
255
256     pdu = (struct eap_hdr *)inputToken->value;
257     pos = (unsigned char *)(pdu + 1);
258
259     if (inputToken->length > sizeof(*pdu) &&
260         pdu->code == EAP_CODE_RESPONSE &&
261         pos[0] == EAP_TYPE_IDENTITY) {
262         /*
263          * XXX TODO do we really need to set User-Name? FreeRADIUS does
264          * not appear to require it.
265          */
266         major = addAvpFromBuffer(minor, rh, &send, PW_USER_NAME, 0, &nameBuf);
267         if (GSS_ERROR(major))
268             goto cleanup;
269
270         major = setAcceptorIdentity(minor, ctx, &send);
271         if (GSS_ERROR(major))
272             goto cleanup;
273     }
274
275     major = addAvpFromBuffer(minor, rh, &send, PW_EAP_MESSAGE, 0, inputToken);
276     if (GSS_ERROR(major))
277         goto cleanup;
278
279     if (ctx->acceptorCtx.lastStatus == CHALLENGE_RC) {
280         major = addAvpFromBuffer(minor, rh, &send, PW_STATE, 0,
281                                  &ctx->acceptorCtx.state);
282         if (GSS_ERROR(major))
283             goto cleanup;
284
285         gss_release_buffer(&tmpMinor, &ctx->acceptorCtx.state);
286     }
287
288     code = rc_auth(rh, 0, send, &received, msgBuffer);
289     switch (code) {
290     case OK_RC:
291     case CHALLENGE_RC:
292         major = GSS_S_CONTINUE_NEEDED;
293         break;
294     case TIMEOUT_RC:
295         major = GSS_S_UNAVAILABLE;
296         break;
297     case REJECT_RC:
298         major = GSS_S_DEFECTIVE_CREDENTIAL;
299         break;
300     default:
301         major = GSS_S_FAILURE;
302         goto cleanup;
303     }
304
305     if (GSS_ERROR(major))
306         goto cleanup;
307
308     ctx->acceptorCtx.lastStatus = code;
309
310     major = getBufferFromAvps(minor, received, PW_EAP_MESSAGE, 0,
311                               outputToken, TRUE);
312     if ((major == GSS_S_UNAVAILABLE && code != OK_RC) ||
313         GSS_ERROR(major))
314         goto cleanup;
315
316     if (code == CHALLENGE_RC) {
317         major = getBufferFromAvps(minor, received, PW_STATE, 0,
318                                   &ctx->acceptorCtx.state, TRUE);
319         if (major != GSS_S_UNAVAILABLE && GSS_ERROR(major))
320             goto cleanup;
321     } else {
322         ctx->acceptorCtx.avps = received;
323         received = NULL;
324
325         major = acceptReadyEap(minor, ctx, cred);
326         if (GSS_ERROR(major))
327             goto cleanup;
328
329         ctx->state = EAP_STATE_GSS_CHANNEL_BINDINGS;
330     }
331
332     major = GSS_S_CONTINUE_NEEDED;
333
334 cleanup:
335     if (received != NULL)
336         rc_avpair_free(received);
337
338     return major;
339 }
340
341 static OM_uint32
342 eapGssSmAcceptGssChannelBindings(OM_uint32 *minor,
343                                  gss_ctx_id_t ctx,
344                                  gss_cred_id_t cred,
345                                  gss_buffer_t inputToken,
346                                  gss_channel_bindings_t chanBindings,
347                                  gss_buffer_t outputToken)
348 {
349     OM_uint32 major;
350     gss_iov_buffer_desc iov[2];
351
352     outputToken->length = 0;
353     outputToken->value = NULL;
354
355     if (chanBindings != GSS_C_NO_CHANNEL_BINDINGS) {
356         if (inputToken->length < 14) {
357             return GSS_S_DEFECTIVE_TOKEN;
358         }
359
360         iov[0].type = GSS_IOV_BUFFER_TYPE_DATA;
361         iov[0].buffer.length = 0;
362         iov[0].buffer.value = NULL;
363
364         if (chanBindings != GSS_C_NO_CHANNEL_BINDINGS)
365             iov[0].buffer = chanBindings->application_data;
366
367         iov[1].type = GSS_IOV_BUFFER_TYPE_HEADER;
368         iov[1].buffer.length = 16;
369         iov[1].buffer.value = (unsigned char *)inputToken->value - 2;
370
371         assert(load_uint16_be(iov[1].buffer.value) == TOK_TYPE_GSS_CB);
372
373         iov[2].type = GSS_IOV_BUFFER_TYPE_TRAILER;
374         iov[2].buffer.length = inputToken->length - 14;
375         iov[2].buffer.value = (unsigned char *)inputToken->value + 14;
376
377         major = gssEapUnwrapOrVerifyMIC(minor, ctx, NULL, NULL,
378                                         iov, 3, TOK_TYPE_GSS_CB);
379         if (GSS_ERROR(major))
380             return major;
381     }
382
383     ctx->state = EAP_STATE_KRB_REAUTH_CRED;
384
385     return GSS_S_CONTINUE_NEEDED;
386 }
387
388 static OM_uint32
389 eapGssSmAcceptKrbReauthCred(OM_uint32 *minor,
390                             gss_ctx_id_t ctx,
391                             gss_cred_id_t cred,
392                             gss_buffer_t inputToken,
393                             gss_channel_bindings_t chanBindings,
394                             gss_buffer_t outputToken)
395 {
396     OM_uint32 major;
397
398     major = gssEapMakeReauthCreds(minor, ctx, cred, outputToken);
399     if (GSS_ERROR(major))
400         return major;
401
402     ctx->state = EAP_STATE_ESTABLISHED;
403
404     return GSS_S_COMPLETE;
405 }
406
407 static OM_uint32
408 eapGssSmAcceptEstablished(OM_uint32 *minor,
409                           gss_ctx_id_t ctx,
410                           gss_cred_id_t cred,
411                           gss_buffer_t inputToken,
412                           gss_channel_bindings_t chanBindings,
413                           gss_buffer_t outputToken)
414 {
415     /* Called with already established context */
416     *minor = EINVAL;
417     return GSS_S_BAD_STATUS;
418 }
419
420 static OM_uint32
421 acceptReadyKrb(OM_uint32 *minor,
422                gss_ctx_id_t ctx,
423                gss_cred_id_t cred,
424                const gss_name_t initiator,
425                const gss_OID mech,
426                OM_uint32 timeRec)
427 {
428     OM_uint32 major, tmpMinor;
429     gss_buffer_desc authData = GSS_C_EMPTY_BUFFER;
430
431     major = gssEapGlueToMechName(minor, initiator, &ctx->initiatorName);
432     if (GSS_ERROR(major))
433         goto cleanup;
434
435     major = gssKrbExtractAuthzDataFromSecContext(minor, ctx->kerberosCtx,
436                                                  KRB5_AUTHDATA_RADIUS_AVP,
437                                                  &authData);
438     if (GSS_ERROR(major))
439         goto cleanup;
440
441     major = gssEapImportAttrContext(minor, &authData, ctx->initiatorName);
442     if (GSS_ERROR(major))
443         goto cleanup;
444
445     if (cred != GSS_C_NO_CREDENTIAL && cred->name != GSS_C_NO_NAME) {
446         major = gssEapDuplicateName(minor, cred->name, &ctx->acceptorName);
447         if (GSS_ERROR(major))
448             goto cleanup;
449     }
450
451     major = gssEapReauthComplete(minor, ctx, cred, mech, timeRec);
452     if (GSS_ERROR(major))
453         goto cleanup;
454
455     ctx->state = EAP_STATE_ESTABLISHED;
456
457 cleanup:
458     gss_release_buffer(&tmpMinor, &authData);
459
460     return major;
461 }
462
463 static OM_uint32
464 eapGssSmAcceptGssReauth(OM_uint32 *minor,
465                          gss_ctx_id_t ctx,
466                          gss_cred_id_t cred,
467                          gss_buffer_t inputToken,
468                          gss_channel_bindings_t chanBindings,
469                          gss_buffer_t outputToken)
470 {
471     OM_uint32 major, tmpMinor;
472     gss_cred_id_t krbCred = GSS_C_NO_CREDENTIAL;
473     gss_name_t krbInitiator = GSS_C_NO_NAME;
474     gss_OID mech = GSS_C_NO_OID;
475     OM_uint32 gssFlags, timeRec = GSS_C_INDEFINITE;
476
477     ctx->flags |= CTX_FLAG_KRB_REAUTH_GSS;
478
479     if (cred != GSS_C_NO_CREDENTIAL)
480         krbCred = cred->krbCred;
481
482     major = gssAcceptSecContext(minor,
483                                 &ctx->kerberosCtx,
484                                 krbCred,
485                                 inputToken,
486                                 chanBindings,
487                                 &krbInitiator,
488                                 &mech,
489                                 outputToken,
490                                 &gssFlags,
491                                 &timeRec,
492                                 NULL);
493     if (major == GSS_S_COMPLETE) {
494         major = acceptReadyKrb(minor, ctx, cred,
495                                krbInitiator, mech, timeRec);
496     }
497
498     ctx->gssFlags = gssFlags & ~(GSS_C_DCE_STYLE);
499
500     gssReleaseName(&tmpMinor, &krbInitiator);
501
502     return major;
503 }
504
505 static struct gss_eap_acceptor_sm {
506     enum gss_eap_token_type inputTokenType;
507     enum gss_eap_token_type outputTokenType;
508     OM_uint32 (*processToken)(OM_uint32 *,
509                               gss_ctx_id_t,
510                               gss_cred_id_t,
511                               gss_buffer_t,
512                               gss_channel_bindings_t,
513                               gss_buffer_t);
514 } eapGssAcceptorSm[] = {
515     { TOK_TYPE_EAP_RESP,    TOK_TYPE_EAP_REQ,    eapGssSmAcceptIdentity           },
516     { TOK_TYPE_EAP_RESP,    TOK_TYPE_EAP_REQ,    eapGssSmAcceptAuthenticate       },
517     { TOK_TYPE_GSS_CB,      TOK_TYPE_NONE,       eapGssSmAcceptGssChannelBindings },
518     { TOK_TYPE_NONE,        TOK_TYPE_KRB_CRED,   eapGssSmAcceptKrbReauthCred      },
519     { TOK_TYPE_NONE,        TOK_TYPE_NONE,       eapGssSmAcceptEstablished        },
520     { TOK_TYPE_GSS_REAUTH,  TOK_TYPE_GSS_REAUTH, eapGssSmAcceptGssReauth          },
521 };
522
523 OM_uint32
524 gss_accept_sec_context(OM_uint32 *minor,
525                        gss_ctx_id_t *context_handle,
526                        gss_cred_id_t cred,
527                        gss_buffer_t input_token,
528                        gss_channel_bindings_t input_chan_bindings,
529                        gss_name_t *src_name,
530                        gss_OID *mech_type,
531                        gss_buffer_t output_token,
532                        OM_uint32 *ret_flags,
533                        OM_uint32 *time_rec,
534                        gss_cred_id_t *delegated_cred_handle)
535 {
536     OM_uint32 major;
537     OM_uint32 tmpMajor, tmpMinor;
538     gss_ctx_id_t ctx = *context_handle;
539     struct gss_eap_acceptor_sm *sm = NULL;
540     gss_buffer_desc innerInputToken = GSS_C_EMPTY_BUFFER;
541     gss_buffer_desc innerOutputToken = GSS_C_EMPTY_BUFFER;
542     enum gss_eap_token_type tokType;
543     int initialContextToken = 0;
544
545     *minor = 0;
546
547     output_token->length = 0;
548     output_token->value = NULL;
549
550     if (cred != GSS_C_NO_CREDENTIAL && !(cred->flags & CRED_FLAG_ACCEPT)) {
551         return GSS_S_NO_CRED;
552     }
553
554     if (input_token == GSS_C_NO_BUFFER || input_token->length == 0) {
555         return GSS_S_DEFECTIVE_TOKEN;
556     }
557
558     if (ctx == GSS_C_NO_CONTEXT) {
559         major = gssEapAllocContext(minor, &ctx);
560         if (GSS_ERROR(major))
561             return major;
562
563         initialContextToken = 1;
564         *context_handle = ctx;
565     }
566
567     GSSEAP_MUTEX_LOCK(&ctx->mutex);
568
569     sm = &eapGssAcceptorSm[ctx->state];
570
571     major = gssEapVerifyToken(minor, ctx, input_token,
572                               &tokType, &innerInputToken);
573     if (GSS_ERROR(major))
574         goto cleanup;
575
576     if (tokType == TOK_TYPE_GSS_REAUTH && initialContextToken) {
577         ctx->state = EAP_STATE_KRB_REAUTH_GSS;
578     } else if (tokType != sm->inputTokenType) {
579         major = GSS_S_DEFECTIVE_TOKEN;
580         goto cleanup;
581     }
582
583     /* If credentials were provided, check they're usable with this mech */
584     if (cred != GSS_C_NO_CREDENTIAL &&
585         !gssEapCredAvailable(cred, ctx->mechanismUsed)) {
586         major = GSS_S_BAD_MECH;
587         goto cleanup;
588     }
589
590     do {
591         sm = &eapGssAcceptorSm[ctx->state];
592
593         major = (sm->processToken)(minor,
594                                    ctx,
595                                    cred,
596                                    &innerInputToken,
597                                    input_chan_bindings,
598                                    &innerOutputToken);
599         if (GSS_ERROR(major))
600             goto cleanup;
601     } while (major == GSS_S_CONTINUE_NEEDED && innerOutputToken.length == 0);
602
603     if (mech_type != NULL) {
604         if (!gssEapInternalizeOid(ctx->mechanismUsed, mech_type))
605             duplicateOid(&tmpMinor, ctx->mechanismUsed, mech_type);
606     }
607     if (innerOutputToken.value != NULL) {
608         tmpMajor = gssEapMakeToken(&tmpMinor, ctx, &innerOutputToken,
609                                    sm->outputTokenType, output_token);
610         if (GSS_ERROR(tmpMajor)) {
611             major = tmpMajor;
612             *minor = tmpMinor;
613             goto cleanup;
614         }
615     }
616     if (ret_flags != NULL)
617         *ret_flags = ctx->gssFlags;
618     if (delegated_cred_handle != NULL)
619         *delegated_cred_handle = GSS_C_NO_CREDENTIAL;
620
621     if (major == GSS_S_COMPLETE) {
622         if (src_name != NULL && ctx->initiatorName != GSS_C_NO_NAME) {
623             major = gssEapDuplicateName(&tmpMinor, ctx->initiatorName, src_name);
624             if (GSS_ERROR(major))
625                 goto cleanup;
626         }
627         if (time_rec != NULL)
628             gssEapContextTime(&tmpMinor, ctx, time_rec);
629     }
630
631     assert(ctx->state == EAP_STATE_ESTABLISHED || major == GSS_S_CONTINUE_NEEDED);
632
633 cleanup:
634     GSSEAP_MUTEX_UNLOCK(&ctx->mutex);
635
636     if (GSS_ERROR(major))
637         gssEapReleaseContext(&tmpMinor, context_handle);
638
639     gss_release_buffer(&tmpMinor, &innerOutputToken);
640
641     return major;
642 }