2 * Copyright (c) 1997 - 2004 Kungliga Tekniska Högskolan
3 * (Royal Institute of Technology, Stockholm, Sweden).
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
17 * 3. Neither the name of the Institute nor the names of its contributors
18 * may be used to endorse or promote products derived from this software
19 * without specific prior written permission.
21 * THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
22 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 * ARE DISCLAIMED. IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
25 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 #include "gsskrb5_locl.h"
36 #ifdef HEIM_WEAK_CRYPTO
40 (OM_uint32
* minor_status
,
41 const gsskrb5_ctx context_handle
,
42 const gss_buffer_t input_message_buffer
,
43 gss_buffer_t output_message_buffer
,
45 gss_qop_t
* qop_state
,
53 EVP_CIPHER_CTX des_ctx
;
54 DES_key_schedule schedule
;
65 if (IS_DCE_STYLE(context_handle
)) {
66 token_len
= 22 + 8 + 15; /* 45 */
68 token_len
= input_message_buffer
->length
;
71 p
= input_message_buffer
->value
;
72 ret
= _gsskrb5_verify_header (&p
,
79 if (memcmp (p
, "\x00\x00", 2) != 0)
82 if (memcmp (p
, "\x00\x00", 2) == 0) {
84 } else if (memcmp (p
, "\xFF\xFF", 2) == 0) {
89 if(conf_state
!= NULL
)
91 if (memcmp (p
, "\xff\xff", 2) != 0)
92 return GSS_S_DEFECTIVE_TOKEN
;
96 len
= p
- (u_char
*)input_message_buffer
->value
;
100 memcpy (&deskey
, key
->keyvalue
.data
, sizeof(deskey
));
101 memset (&zero
, 0, sizeof(zero
));
103 for (i
= 0; i
< sizeof(deskey
); ++i
)
107 EVP_CIPHER_CTX_init(&des_ctx
);
108 EVP_CipherInit_ex(&des_ctx
, EVP_des_cbc(), NULL
, deskey
, zero
, 0);
109 EVP_Cipher(&des_ctx
, p
, p
, input_message_buffer
->length
- len
);
110 EVP_CIPHER_CTX_cleanup(&des_ctx
);
112 memset (&schedule
, 0, sizeof(schedule
));
115 if (IS_DCE_STYLE(context_handle
)) {
119 ret
= _gssapi_verify_pad(input_message_buffer
,
120 input_message_buffer
->length
- len
,
126 md5
= EVP_MD_CTX_create();
127 EVP_DigestInit_ex(md5
, EVP_md5(), NULL
);
128 EVP_DigestUpdate(md5
, p
- 24, 8);
129 EVP_DigestUpdate(md5
, p
, input_message_buffer
->length
- len
);
130 EVP_DigestFinal_ex(md5
, hash
, NULL
);
131 EVP_MD_CTX_destroy(md5
);
133 memset (&zero
, 0, sizeof(zero
));
134 memcpy (&deskey
, key
->keyvalue
.data
, sizeof(deskey
));
135 DES_set_key_unchecked (&deskey
, &schedule
);
136 DES_cbc_cksum ((void *)hash
, (void *)hash
, sizeof(hash
),
138 if (ct_memcmp (p
- 8, hash
, 8) != 0)
139 return GSS_S_BAD_MIC
;
141 /* verify sequence number */
143 HEIMDAL_MUTEX_lock(&context_handle
->ctx_id_mutex
);
147 EVP_CIPHER_CTX_init(&des_ctx
);
148 EVP_CipherInit_ex(&des_ctx
, EVP_des_cbc(), NULL
, key
->keyvalue
.data
, hash
, 0);
149 EVP_Cipher(&des_ctx
, p
, p
, 8);
150 EVP_CIPHER_CTX_cleanup(&des_ctx
);
152 memset (deskey
, 0, sizeof(deskey
));
153 memset (&schedule
, 0, sizeof(schedule
));
156 _gsskrb5_decode_om_uint32(seq
, &seq_number
);
158 if (context_handle
->more_flags
& LOCAL
)
159 cmp
= ct_memcmp(&seq
[4], "\xff\xff\xff\xff", 4);
161 cmp
= ct_memcmp(&seq
[4], "\x00\x00\x00\x00", 4);
164 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
165 return GSS_S_BAD_MIC
;
168 ret
= _gssapi_msg_order_check(context_handle
->order
, seq_number
);
170 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
174 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
178 output_message_buffer
->length
= input_message_buffer
->length
179 - len
- padlength
- 8;
180 output_message_buffer
->value
= malloc(output_message_buffer
->length
);
181 if(output_message_buffer
->length
!= 0 && output_message_buffer
->value
== NULL
)
182 return GSS_S_FAILURE
;
183 memcpy (output_message_buffer
->value
,
185 output_message_buffer
->length
);
186 return GSS_S_COMPLETE
;
192 (OM_uint32
* minor_status
,
193 const gsskrb5_ctx context_handle
,
194 krb5_context context
,
195 const gss_buffer_t input_message_buffer
,
196 gss_buffer_t output_message_buffer
,
198 gss_qop_t
* qop_state
,
216 if (IS_DCE_STYLE(context_handle
)) {
217 token_len
= 34 + 8 + 15; /* 57 */
219 token_len
= input_message_buffer
->length
;
222 p
= input_message_buffer
->value
;
223 ret
= _gsskrb5_verify_header (&p
,
230 if (memcmp (p
, "\x04\x00", 2) != 0) /* HMAC SHA1 DES3_KD */
231 return GSS_S_BAD_SIG
;
233 if (ct_memcmp (p
, "\x02\x00", 2) == 0) {
235 } else if (ct_memcmp (p
, "\xff\xff", 2) == 0) {
238 return GSS_S_BAD_MIC
;
240 if(conf_state
!= NULL
)
241 *conf_state
= cstate
;
242 if (ct_memcmp (p
, "\xff\xff", 2) != 0)
243 return GSS_S_DEFECTIVE_TOKEN
;
247 len
= p
- (u_char
*)input_message_buffer
->value
;
253 ret
= krb5_crypto_init(context
, key
,
254 ETYPE_DES3_CBC_NONE
, &crypto
);
257 return GSS_S_FAILURE
;
259 ret
= krb5_decrypt(context
, crypto
, KRB5_KU_USAGE_SEAL
,
260 p
, input_message_buffer
->length
- len
, &tmp
);
261 krb5_crypto_destroy(context
, crypto
);
264 return GSS_S_FAILURE
;
266 assert (tmp
.length
== input_message_buffer
->length
- len
);
268 memcpy (p
, tmp
.data
, tmp
.length
);
269 krb5_data_free(&tmp
);
272 if (IS_DCE_STYLE(context_handle
)) {
276 ret
= _gssapi_verify_pad(input_message_buffer
,
277 input_message_buffer
->length
- len
,
283 /* verify sequence number */
285 HEIMDAL_MUTEX_lock(&context_handle
->ctx_id_mutex
);
289 ret
= krb5_crypto_init(context
, key
,
290 ETYPE_DES3_CBC_NONE
, &crypto
);
293 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
294 return GSS_S_FAILURE
;
299 memcpy(&ivec
, p
+ 8, 8);
300 ret
= krb5_decrypt_ivec (context
,
306 krb5_crypto_destroy (context
, crypto
);
309 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
310 return GSS_S_FAILURE
;
312 if (seq_data
.length
!= 8) {
313 krb5_data_free (&seq_data
);
315 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
316 return GSS_S_BAD_MIC
;
320 _gsskrb5_decode_om_uint32(seq
, &seq_number
);
322 if (context_handle
->more_flags
& LOCAL
)
323 cmp
= ct_memcmp(&seq
[4], "\xff\xff\xff\xff", 4);
325 cmp
= ct_memcmp(&seq
[4], "\x00\x00\x00\x00", 4);
327 krb5_data_free (&seq_data
);
330 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
331 return GSS_S_BAD_MIC
;
334 ret
= _gssapi_msg_order_check(context_handle
->order
, seq_number
);
337 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
341 HEIMDAL_MUTEX_unlock(&context_handle
->ctx_id_mutex
);
343 /* verify checksum */
345 memcpy (cksum
, p
+ 8, 20);
347 memcpy (p
+ 20, p
- 8, 8);
349 csum
.cksumtype
= CKSUMTYPE_HMAC_SHA1_DES3
;
350 csum
.checksum
.length
= 20;
351 csum
.checksum
.data
= cksum
;
353 ret
= krb5_crypto_init(context
, key
, 0, &crypto
);
356 return GSS_S_FAILURE
;
359 ret
= krb5_verify_checksum (context
, crypto
,
362 input_message_buffer
->length
- len
+ 8,
364 krb5_crypto_destroy (context
, crypto
);
367 return GSS_S_FAILURE
;
372 output_message_buffer
->length
= input_message_buffer
->length
373 - len
- padlength
- 8;
374 output_message_buffer
->value
= malloc(output_message_buffer
->length
);
375 if(output_message_buffer
->length
!= 0 && output_message_buffer
->value
== NULL
)
376 return GSS_S_FAILURE
;
377 memcpy (output_message_buffer
->value
,
379 output_message_buffer
->length
);
380 return GSS_S_COMPLETE
;
383 OM_uint32 GSSAPI_CALLCONV _gsskrb5_unwrap
384 (OM_uint32
* minor_status
,
385 const gss_ctx_id_t context_handle
,
386 const gss_buffer_t input_message_buffer
,
387 gss_buffer_t output_message_buffer
,
389 gss_qop_t
* qop_state
393 krb5_context context
;
395 krb5_keytype keytype
;
396 gsskrb5_ctx ctx
= (gsskrb5_ctx
) context_handle
;
398 output_message_buffer
->value
= NULL
;
399 output_message_buffer
->length
= 0;
400 if (qop_state
!= NULL
)
401 *qop_state
= GSS_C_QOP_DEFAULT
;
403 GSSAPI_KRB5_INIT (&context
);
405 if (ctx
->more_flags
& IS_CFX
)
406 return _gssapi_unwrap_cfx (minor_status
, ctx
, context
,
407 input_message_buffer
, output_message_buffer
,
408 conf_state
, qop_state
);
410 HEIMDAL_MUTEX_lock(&ctx
->ctx_id_mutex
);
411 ret
= _gsskrb5i_get_token_key(ctx
, context
, &key
);
412 HEIMDAL_MUTEX_unlock(&ctx
->ctx_id_mutex
);
415 return GSS_S_FAILURE
;
417 krb5_enctype_to_keytype (context
, key
->keytype
, &keytype
);
423 #ifdef HEIM_WEAK_CRYPTO
424 ret
= unwrap_des (minor_status
, ctx
,
425 input_message_buffer
, output_message_buffer
,
426 conf_state
, qop_state
, key
);
432 ret
= unwrap_des3 (minor_status
, ctx
, context
,
433 input_message_buffer
, output_message_buffer
,
434 conf_state
, qop_state
, key
);
436 case KEYTYPE_ARCFOUR
:
437 case KEYTYPE_ARCFOUR_56
:
438 ret
= _gssapi_unwrap_arcfour (minor_status
, ctx
, context
,
439 input_message_buffer
, output_message_buffer
,
440 conf_state
, qop_state
, key
);
446 krb5_free_keyblock (context
, key
);