1 /*
2  *  Common source code for SSL test programs. This file is included by
3  *  both ssl_client2.c and ssl_server2.c and is intended for source
4  *  code that is textually identical in both programs, but that cannot be
5  *  compiled separately because it refers to types or macros that are
6  *  different in the two programs, or because it would have an incomplete
7  *  type.
8  *
9  *  This file is meant to be #include'd and cannot be compiled separately.
10  *
11  *  Copyright The Mbed TLS Contributors
12  *  SPDX-License-Identifier: Apache-2.0
13  *
14  *  Licensed under the Apache License, Version 2.0 (the "License"); you may
15  *  not use this file except in compliance with the License.
16  *  You may obtain a copy of the License at
17  *
18  *  http://www.apache.org/licenses/LICENSE-2.0
19  *
20  *  Unless required by applicable law or agreed to in writing, software
21  *  distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
22  *  WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
23  *  See the License for the specific language governing permissions and
24  *  limitations under the License.
25  */
26 
27 #if defined(MBEDTLS_SSL_EXPORT_KEYS)
eap_tls_key_derivation(void * p_expkey,const unsigned char * ms,const unsigned char * kb,size_t maclen,size_t keylen,size_t ivlen,const unsigned char client_random[32],const unsigned char server_random[32],mbedtls_tls_prf_types tls_prf_type)28 int eap_tls_key_derivation( void *p_expkey,
29                             const unsigned char *ms,
30                             const unsigned char *kb,
31                             size_t maclen,
32                             size_t keylen,
33                             size_t ivlen,
34                             const unsigned char client_random[32],
35                             const unsigned char server_random[32],
36                             mbedtls_tls_prf_types tls_prf_type )
37 {
38     eap_tls_keys *keys = (eap_tls_keys *)p_expkey;
39 
40     ( ( void ) kb );
41     memcpy( keys->master_secret, ms, sizeof( keys->master_secret ) );
42     memcpy( keys->randbytes, client_random, 32 );
43     memcpy( keys->randbytes + 32, server_random, 32 );
44     keys->tls_prf_type = tls_prf_type;
45 
46     if( opt.debug_level > 2 )
47     {
48         mbedtls_printf("exported maclen is %u\n", (unsigned)maclen);
49         mbedtls_printf("exported keylen is %u\n", (unsigned)keylen);
50         mbedtls_printf("exported ivlen is %u\n", (unsigned)ivlen);
51     }
52     return( 0 );
53 }
54 
nss_keylog_export(void * p_expkey,const unsigned char * ms,const unsigned char * kb,size_t maclen,size_t keylen,size_t ivlen,const unsigned char client_random[32],const unsigned char server_random[32],mbedtls_tls_prf_types tls_prf_type)55 int nss_keylog_export( void *p_expkey,
56                        const unsigned char *ms,
57                        const unsigned char *kb,
58                        size_t maclen,
59                        size_t keylen,
60                        size_t ivlen,
61                        const unsigned char client_random[32],
62                        const unsigned char server_random[32],
63                        mbedtls_tls_prf_types tls_prf_type )
64 {
65     char nss_keylog_line[ 200 ];
66     size_t const client_random_len = 32;
67     size_t const master_secret_len = 48;
68     size_t len = 0;
69     size_t j;
70     int ret = 0;
71 
72     ((void) p_expkey);
73     ((void) kb);
74     ((void) maclen);
75     ((void) keylen);
76     ((void) ivlen);
77     ((void) server_random);
78     ((void) tls_prf_type);
79 
80     len += sprintf( nss_keylog_line + len,
81                     "%s", "CLIENT_RANDOM " );
82 
83     for( j = 0; j < client_random_len; j++ )
84     {
85         len += sprintf( nss_keylog_line + len,
86                         "%02x", client_random[j] );
87     }
88 
89     len += sprintf( nss_keylog_line + len, " " );
90 
91     for( j = 0; j < master_secret_len; j++ )
92     {
93         len += sprintf( nss_keylog_line + len,
94                         "%02x", ms[j] );
95     }
96 
97     len += sprintf( nss_keylog_line + len, "\n" );
98     nss_keylog_line[ len ] = '\0';
99 
100     mbedtls_printf( "\n" );
101     mbedtls_printf( "---------------- NSS KEYLOG -----------------\n" );
102     mbedtls_printf( "%s", nss_keylog_line );
103     mbedtls_printf( "---------------------------------------------\n" );
104 
105     if( opt.nss_keylog_file != NULL )
106     {
107         FILE *f;
108 
109         if( ( f = fopen( opt.nss_keylog_file, "a" ) ) == NULL )
110         {
111             ret = -1;
112             goto exit;
113         }
114 
115         if( fwrite( nss_keylog_line, 1, len, f ) != len )
116         {
117             ret = -1;
118             fclose( f );
119             goto exit;
120         }
121 
122         fclose( f );
123     }
124 
125 exit:
126     mbedtls_platform_zeroize( nss_keylog_line,
127                               sizeof( nss_keylog_line ) );
128     return( ret );
129 }
130 
131 #if defined( MBEDTLS_SSL_DTLS_SRTP )
dtls_srtp_key_derivation(void * p_expkey,const unsigned char * ms,const unsigned char * kb,size_t maclen,size_t keylen,size_t ivlen,const unsigned char client_random[32],const unsigned char server_random[32],mbedtls_tls_prf_types tls_prf_type)132 int dtls_srtp_key_derivation( void *p_expkey,
133                               const unsigned char *ms,
134                               const unsigned char *kb,
135                               size_t maclen,
136                               size_t keylen,
137                               size_t ivlen,
138                               const unsigned char client_random[32],
139                               const unsigned char server_random[32],
140                               mbedtls_tls_prf_types tls_prf_type )
141 {
142     dtls_srtp_keys *keys = (dtls_srtp_keys *)p_expkey;
143 
144     ( ( void ) kb );
145     memcpy( keys->master_secret, ms, sizeof( keys->master_secret ) );
146     memcpy( keys->randbytes, client_random, 32 );
147     memcpy( keys->randbytes + 32, server_random, 32 );
148     keys->tls_prf_type = tls_prf_type;
149 
150     if( opt.debug_level > 2 )
151     {
152         mbedtls_printf( "exported maclen is %u\n", (unsigned) maclen );
153         mbedtls_printf( "exported keylen is %u\n", (unsigned) keylen );
154         mbedtls_printf( "exported ivlen is %u\n", (unsigned) ivlen );
155     }
156     return( 0 );
157 }
158 #endif /* MBEDTLS_SSL_DTLS_SRTP */
159 
160 #endif /* MBEDTLS_SSL_EXPORT_KEYS */
161 
162 #if defined(MBEDTLS_SSL_RECORD_CHECKING)
ssl_check_record(mbedtls_ssl_context const * ssl,unsigned char const * buf,size_t len)163 int ssl_check_record( mbedtls_ssl_context const *ssl,
164                       unsigned char const *buf, size_t len )
165 {
166     int my_ret = 0, ret_cr1, ret_cr2;
167     unsigned char *tmp_buf;
168 
169     /* Record checking may modify the input buffer,
170      * so make a copy. */
171     tmp_buf = mbedtls_calloc( 1, len );
172     if( tmp_buf == NULL )
173         return( MBEDTLS_ERR_SSL_ALLOC_FAILED );
174     memcpy( tmp_buf, buf, len );
175 
176     ret_cr1 = mbedtls_ssl_check_record( ssl, tmp_buf, len );
177     if( ret_cr1 != MBEDTLS_ERR_SSL_FEATURE_UNAVAILABLE )
178     {
179         /* Test-only: Make sure that mbedtls_ssl_check_record()
180          *            doesn't alter state. */
181         memcpy( tmp_buf, buf, len ); /* Restore buffer */
182         ret_cr2 = mbedtls_ssl_check_record( ssl, tmp_buf, len );
183         if( ret_cr2 != ret_cr1 )
184         {
185             mbedtls_printf( "mbedtls_ssl_check_record() returned inconsistent results.\n" );
186             my_ret = -1;
187             goto cleanup;
188         }
189 
190         switch( ret_cr1 )
191         {
192             case 0:
193                 break;
194 
195             case MBEDTLS_ERR_SSL_INVALID_RECORD:
196                 if( opt.debug_level > 1 )
197                     mbedtls_printf( "mbedtls_ssl_check_record() detected invalid record.\n" );
198                 break;
199 
200             case MBEDTLS_ERR_SSL_INVALID_MAC:
201                 if( opt.debug_level > 1 )
202                     mbedtls_printf( "mbedtls_ssl_check_record() detected unauthentic record.\n" );
203                 break;
204 
205             case MBEDTLS_ERR_SSL_UNEXPECTED_RECORD:
206                 if( opt.debug_level > 1 )
207                     mbedtls_printf( "mbedtls_ssl_check_record() detected unexpected record.\n" );
208                 break;
209 
210             default:
211                 mbedtls_printf( "mbedtls_ssl_check_record() failed fatally with -%#04x.\n", (unsigned int) -ret_cr1 );
212                 my_ret = -1;
213                 goto cleanup;
214         }
215 
216         /* Regardless of the outcome, forward the record to the stack. */
217     }
218 
219 cleanup:
220     mbedtls_free( tmp_buf );
221 
222     return( my_ret );
223 }
224 #endif /* MBEDTLS_SSL_RECORD_CHECKING */
225 
recv_cb(void * ctx,unsigned char * buf,size_t len)226 int recv_cb( void *ctx, unsigned char *buf, size_t len )
227 {
228     io_ctx_t *io_ctx = (io_ctx_t*) ctx;
229     size_t recv_len;
230     int ret;
231 
232     if( opt.nbio == 2 )
233         ret = delayed_recv( io_ctx->net, buf, len );
234     else
235         ret = mbedtls_net_recv( io_ctx->net, buf, len );
236     if( ret < 0 )
237         return( ret );
238     recv_len = (size_t) ret;
239 
240     if( opt.transport == MBEDTLS_SSL_TRANSPORT_DATAGRAM )
241     {
242         /* Here's the place to do any datagram/record checking
243          * in between receiving the packet from the underlying
244          * transport and passing it on to the TLS stack. */
245 #if defined(MBEDTLS_SSL_RECORD_CHECKING)
246         if( ssl_check_record( io_ctx->ssl, buf, recv_len ) != 0 )
247             return( -1 );
248 #endif /* MBEDTLS_SSL_RECORD_CHECKING */
249     }
250 
251     return( (int) recv_len );
252 }
253 
recv_timeout_cb(void * ctx,unsigned char * buf,size_t len,uint32_t timeout)254 int recv_timeout_cb( void *ctx, unsigned char *buf, size_t len,
255                      uint32_t timeout )
256 {
257     io_ctx_t *io_ctx = (io_ctx_t*) ctx;
258     int ret;
259     size_t recv_len;
260 
261     ret = mbedtls_net_recv_timeout( io_ctx->net, buf, len, timeout );
262     if( ret < 0 )
263         return( ret );
264     recv_len = (size_t) ret;
265 
266     if( opt.transport == MBEDTLS_SSL_TRANSPORT_DATAGRAM )
267     {
268         /* Here's the place to do any datagram/record checking
269          * in between receiving the packet from the underlying
270          * transport and passing it on to the TLS stack. */
271 #if defined(MBEDTLS_SSL_RECORD_CHECKING)
272         if( ssl_check_record( io_ctx->ssl, buf, recv_len ) != 0 )
273             return( -1 );
274 #endif /* MBEDTLS_SSL_RECORD_CHECKING */
275     }
276 
277     return( (int) recv_len );
278 }
279 
send_cb(void * ctx,unsigned char const * buf,size_t len)280 int send_cb( void *ctx, unsigned char const *buf, size_t len )
281 {
282     io_ctx_t *io_ctx = (io_ctx_t*) ctx;
283 
284     if( opt.nbio == 2 )
285         return( delayed_send( io_ctx->net, buf, len ) );
286 
287     return( mbedtls_net_send( io_ctx->net, buf, len ) );
288 }
289 
290 #if defined(MBEDTLS_X509_CRT_PARSE_C)
291 int ssl_sig_hashes_for_test[] = {
292 #if defined(MBEDTLS_SHA512_C)
293     MBEDTLS_MD_SHA512,
294     MBEDTLS_MD_SHA384,
295 #endif
296 #if defined(MBEDTLS_SHA256_C)
297     MBEDTLS_MD_SHA256,
298     MBEDTLS_MD_SHA224,
299 #endif
300 #if defined(MBEDTLS_SHA1_C)
301     /* Allow SHA-1 as we use it extensively in tests. */
302     MBEDTLS_MD_SHA1,
303 #endif
304     MBEDTLS_MD_NONE
305 };
306 #endif /* MBEDTLS_X509_CRT_PARSE_C */
307