/src/openssl/ssl/ssl_sess.c
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1 | | /* |
2 | | * Copyright 1995-2025 The OpenSSL Project Authors. All Rights Reserved. |
3 | | * Copyright 2005 Nokia. All rights reserved. |
4 | | * |
5 | | * Licensed under the Apache License 2.0 (the "License"). You may not use |
6 | | * this file except in compliance with the License. You can obtain a copy |
7 | | * in the file LICENSE in the source distribution or at |
8 | | * https://www.openssl.org/source/license.html |
9 | | */ |
10 | | |
11 | | #if defined(__TANDEM) && defined(_SPT_MODEL_) |
12 | | # include <spthread.h> |
13 | | # include <spt_extensions.h> /* timeval */ |
14 | | #endif |
15 | | #include <stdio.h> |
16 | | #include <openssl/rand.h> |
17 | | #include "internal/refcount.h" |
18 | | #include "internal/cryptlib.h" |
19 | | #include "internal/ssl_unwrap.h" |
20 | | #include "ssl_local.h" |
21 | | #include "statem/statem_local.h" |
22 | | |
23 | | static void SSL_SESSION_list_remove(SSL_CTX *ctx, SSL_SESSION *s); |
24 | | static void SSL_SESSION_list_add(SSL_CTX *ctx, SSL_SESSION *s); |
25 | | static int remove_session_lock(SSL_CTX *ctx, SSL_SESSION *c, int lck); |
26 | | |
27 | | DEFINE_STACK_OF(SSL_SESSION) |
28 | | |
29 | | __owur static ossl_inline int sess_timedout(OSSL_TIME t, SSL_SESSION *ss) |
30 | 0 | { |
31 | 0 | return ossl_time_compare(t, ss->calc_timeout) > 0; |
32 | 0 | } |
33 | | |
34 | | /* |
35 | | * Returns -1/0/+1 as other XXXcmp-type functions |
36 | | * Takes calculated timeout into consideration |
37 | | */ |
38 | | __owur static ossl_inline int timeoutcmp(SSL_SESSION *a, SSL_SESSION *b) |
39 | 0 | { |
40 | 0 | return ossl_time_compare(a->calc_timeout, b->calc_timeout); |
41 | 0 | } |
42 | | |
43 | | /* |
44 | | * Calculates effective timeout |
45 | | * Locking must be done by the caller of this function |
46 | | */ |
47 | | void ssl_session_calculate_timeout(SSL_SESSION *ss) |
48 | 0 | { |
49 | 0 | ss->calc_timeout = ossl_time_add(ss->time, ss->timeout); |
50 | 0 | } |
51 | | |
52 | | /* |
53 | | * SSL_get_session() and SSL_get1_session() are problematic in TLS1.3 because, |
54 | | * unlike in earlier protocol versions, the session ticket may not have been |
55 | | * sent yet even though a handshake has finished. The session ticket data could |
56 | | * come in sometime later...or even change if multiple session ticket messages |
57 | | * are sent from the server. The preferred way for applications to obtain |
58 | | * a resumable session is to use SSL_CTX_sess_set_new_cb(). |
59 | | */ |
60 | | |
61 | | SSL_SESSION *SSL_get_session(const SSL *ssl) |
62 | | /* aka SSL_get0_session; gets 0 objects, just returns a copy of the pointer */ |
63 | 0 | { |
64 | 0 | const SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(ssl); |
65 | |
|
66 | 0 | if (sc == NULL) |
67 | 0 | return NULL; |
68 | | |
69 | 0 | return sc->session; |
70 | 0 | } |
71 | | |
72 | | SSL_SESSION *SSL_get1_session(SSL *ssl) |
73 | | /* variant of SSL_get_session: caller really gets something */ |
74 | 0 | { |
75 | 0 | SSL_SESSION *sess; |
76 | | |
77 | | /* |
78 | | * Need to lock this all up rather than just use CRYPTO_add so that |
79 | | * somebody doesn't free ssl->session between when we check it's non-null |
80 | | * and when we up the reference count. |
81 | | */ |
82 | 0 | if (!CRYPTO_THREAD_read_lock(ssl->lock)) |
83 | 0 | return NULL; |
84 | 0 | sess = SSL_get_session(ssl); |
85 | 0 | if (sess != NULL && !SSL_SESSION_up_ref(sess)) |
86 | 0 | sess = NULL; |
87 | 0 | CRYPTO_THREAD_unlock(ssl->lock); |
88 | 0 | return sess; |
89 | 0 | } |
90 | | |
91 | | int SSL_SESSION_set_ex_data(SSL_SESSION *s, int idx, void *arg) |
92 | 0 | { |
93 | 0 | return CRYPTO_set_ex_data(&s->ex_data, idx, arg); |
94 | 0 | } |
95 | | |
96 | | void *SSL_SESSION_get_ex_data(const SSL_SESSION *s, int idx) |
97 | 0 | { |
98 | 0 | return CRYPTO_get_ex_data(&s->ex_data, idx); |
99 | 0 | } |
100 | | |
101 | | SSL_SESSION *SSL_SESSION_new(void) |
102 | 0 | { |
103 | 0 | SSL_SESSION *ss; |
104 | |
|
105 | 0 | if (!OPENSSL_init_ssl(OPENSSL_INIT_LOAD_SSL_STRINGS, NULL)) |
106 | 0 | return NULL; |
107 | | |
108 | 0 | ss = OPENSSL_zalloc(sizeof(*ss)); |
109 | 0 | if (ss == NULL) |
110 | 0 | return NULL; |
111 | | |
112 | 0 | ss->ext.max_fragment_len_mode = TLSEXT_max_fragment_length_UNSPECIFIED; |
113 | 0 | ss->verify_result = 1; /* avoid 0 (= X509_V_OK) just in case */ |
114 | | /* 5 minute timeout by default */ |
115 | 0 | ss->timeout = ossl_seconds2time(60 * 5 + 4); |
116 | 0 | ss->time = ossl_time_now(); |
117 | 0 | ssl_session_calculate_timeout(ss); |
118 | 0 | if (!CRYPTO_NEW_REF(&ss->references, 1)) { |
119 | 0 | OPENSSL_free(ss); |
120 | 0 | return NULL; |
121 | 0 | } |
122 | | |
123 | 0 | if (!CRYPTO_new_ex_data(CRYPTO_EX_INDEX_SSL_SESSION, ss, &ss->ex_data)) { |
124 | 0 | CRYPTO_FREE_REF(&ss->references); |
125 | 0 | OPENSSL_free(ss); |
126 | 0 | return NULL; |
127 | 0 | } |
128 | 0 | return ss; |
129 | 0 | } |
130 | | |
131 | | /* |
132 | | * Create a new SSL_SESSION and duplicate the contents of |src| into it. If |
133 | | * ticket == 0 then no ticket information is duplicated, otherwise it is. |
134 | | */ |
135 | | static SSL_SESSION *ssl_session_dup_intern(const SSL_SESSION *src, int ticket) |
136 | 0 | { |
137 | 0 | SSL_SESSION *dest; |
138 | |
|
139 | 0 | dest = OPENSSL_malloc(sizeof(*dest)); |
140 | 0 | if (dest == NULL) |
141 | 0 | return NULL; |
142 | | |
143 | | /* |
144 | | * src is logically read-only but the prev/next pointers are not, they are |
145 | | * part of the session cache and can be modified concurrently. |
146 | | */ |
147 | 0 | memcpy(dest, src, offsetof(SSL_SESSION, prev)); |
148 | | |
149 | | /* |
150 | | * Set the various pointers to NULL so that we can call SSL_SESSION_free in |
151 | | * the case of an error whilst halfway through constructing dest |
152 | | */ |
153 | 0 | #ifndef OPENSSL_NO_PSK |
154 | 0 | dest->psk_identity_hint = NULL; |
155 | 0 | dest->psk_identity = NULL; |
156 | 0 | #endif |
157 | 0 | dest->ext.hostname = NULL; |
158 | 0 | dest->ext.tick = NULL; |
159 | 0 | dest->ext.alpn_selected = NULL; |
160 | 0 | #ifndef OPENSSL_NO_SRP |
161 | 0 | dest->srp_username = NULL; |
162 | 0 | #endif |
163 | 0 | dest->peer_chain = NULL; |
164 | 0 | dest->peer = NULL; |
165 | 0 | dest->peer_rpk = NULL; |
166 | 0 | dest->ticket_appdata = NULL; |
167 | 0 | memset(&dest->ex_data, 0, sizeof(dest->ex_data)); |
168 | | |
169 | | /* As the copy is not in the cache, we remove the associated pointers */ |
170 | 0 | dest->prev = NULL; |
171 | 0 | dest->next = NULL; |
172 | 0 | dest->owner = NULL; |
173 | |
|
174 | 0 | if (!CRYPTO_NEW_REF(&dest->references, 1)) { |
175 | 0 | OPENSSL_free(dest); |
176 | 0 | return NULL; |
177 | 0 | } |
178 | | |
179 | 0 | if (!CRYPTO_new_ex_data(CRYPTO_EX_INDEX_SSL_SESSION, dest, &dest->ex_data)) { |
180 | 0 | ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB); |
181 | 0 | goto err; |
182 | 0 | } |
183 | | |
184 | 0 | if (src->peer != NULL) { |
185 | 0 | if (!X509_up_ref(src->peer)) { |
186 | 0 | ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB); |
187 | 0 | goto err; |
188 | 0 | } |
189 | 0 | dest->peer = src->peer; |
190 | 0 | } |
191 | | |
192 | 0 | if (src->peer_chain != NULL) { |
193 | 0 | dest->peer_chain = X509_chain_up_ref(src->peer_chain); |
194 | 0 | if (dest->peer_chain == NULL) { |
195 | 0 | ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB); |
196 | 0 | goto err; |
197 | 0 | } |
198 | 0 | } |
199 | | |
200 | 0 | if (src->peer_rpk != NULL) { |
201 | 0 | if (!EVP_PKEY_up_ref(src->peer_rpk)) |
202 | 0 | goto err; |
203 | 0 | dest->peer_rpk = src->peer_rpk; |
204 | 0 | } |
205 | | |
206 | 0 | #ifndef OPENSSL_NO_PSK |
207 | 0 | if (src->psk_identity_hint) { |
208 | 0 | dest->psk_identity_hint = OPENSSL_strdup(src->psk_identity_hint); |
209 | 0 | if (dest->psk_identity_hint == NULL) |
210 | 0 | goto err; |
211 | 0 | } |
212 | 0 | if (src->psk_identity) { |
213 | 0 | dest->psk_identity = OPENSSL_strdup(src->psk_identity); |
214 | 0 | if (dest->psk_identity == NULL) |
215 | 0 | goto err; |
216 | 0 | } |
217 | 0 | #endif |
218 | | |
219 | 0 | if (!CRYPTO_dup_ex_data(CRYPTO_EX_INDEX_SSL_SESSION, |
220 | 0 | &dest->ex_data, &src->ex_data)) { |
221 | 0 | ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB); |
222 | 0 | goto err; |
223 | 0 | } |
224 | | |
225 | 0 | if (src->ext.hostname) { |
226 | 0 | dest->ext.hostname = OPENSSL_strdup(src->ext.hostname); |
227 | 0 | if (dest->ext.hostname == NULL) |
228 | 0 | goto err; |
229 | 0 | } |
230 | | |
231 | 0 | if (ticket != 0 && src->ext.tick != NULL) { |
232 | 0 | dest->ext.tick = |
233 | 0 | OPENSSL_memdup(src->ext.tick, src->ext.ticklen); |
234 | 0 | if (dest->ext.tick == NULL) |
235 | 0 | goto err; |
236 | 0 | } else { |
237 | 0 | dest->ext.tick_lifetime_hint = 0; |
238 | 0 | dest->ext.ticklen = 0; |
239 | 0 | } |
240 | | |
241 | 0 | if (src->ext.alpn_selected != NULL) { |
242 | 0 | dest->ext.alpn_selected = OPENSSL_memdup(src->ext.alpn_selected, |
243 | 0 | src->ext.alpn_selected_len); |
244 | 0 | if (dest->ext.alpn_selected == NULL) |
245 | 0 | goto err; |
246 | 0 | } |
247 | | |
248 | 0 | #ifndef OPENSSL_NO_SRP |
249 | 0 | if (src->srp_username) { |
250 | 0 | dest->srp_username = OPENSSL_strdup(src->srp_username); |
251 | 0 | if (dest->srp_username == NULL) |
252 | 0 | goto err; |
253 | 0 | } |
254 | 0 | #endif |
255 | | |
256 | 0 | if (src->ticket_appdata != NULL) { |
257 | 0 | dest->ticket_appdata = |
258 | 0 | OPENSSL_memdup(src->ticket_appdata, src->ticket_appdata_len); |
259 | 0 | if (dest->ticket_appdata == NULL) |
260 | 0 | goto err; |
261 | 0 | } |
262 | | |
263 | 0 | return dest; |
264 | 0 | err: |
265 | 0 | SSL_SESSION_free(dest); |
266 | 0 | return NULL; |
267 | 0 | } |
268 | | |
269 | | SSL_SESSION *SSL_SESSION_dup(const SSL_SESSION *src) |
270 | 0 | { |
271 | 0 | return ssl_session_dup_intern(src, 1); |
272 | 0 | } |
273 | | |
274 | | /* |
275 | | * Used internally when duplicating a session which might be already shared. |
276 | | * We will have resumed the original session. Subsequently we might have marked |
277 | | * it as non-resumable (e.g. in another thread) - but this copy should be ok to |
278 | | * resume from. |
279 | | */ |
280 | | SSL_SESSION *ssl_session_dup(const SSL_SESSION *src, int ticket) |
281 | 0 | { |
282 | 0 | SSL_SESSION *sess = ssl_session_dup_intern(src, ticket); |
283 | |
|
284 | 0 | if (sess != NULL) |
285 | 0 | sess->not_resumable = 0; |
286 | |
|
287 | 0 | return sess; |
288 | 0 | } |
289 | | |
290 | | const unsigned char *SSL_SESSION_get_id(const SSL_SESSION *s, unsigned int *len) |
291 | 0 | { |
292 | 0 | if (len) |
293 | 0 | *len = (unsigned int)s->session_id_length; |
294 | 0 | return s->session_id; |
295 | 0 | } |
296 | | |
297 | | const unsigned char *SSL_SESSION_get0_id_context(const SSL_SESSION *s, |
298 | | unsigned int *len) |
299 | 0 | { |
300 | 0 | if (len != NULL) |
301 | 0 | *len = (unsigned int)s->sid_ctx_length; |
302 | 0 | return s->sid_ctx; |
303 | 0 | } |
304 | | |
305 | | unsigned int SSL_SESSION_get_compress_id(const SSL_SESSION *s) |
306 | 0 | { |
307 | 0 | return s->compress_meth; |
308 | 0 | } |
309 | | |
310 | | /* |
311 | | * SSLv3/TLSv1 has 32 bytes (256 bits) of session ID space. As such, filling |
312 | | * the ID with random junk repeatedly until we have no conflict is going to |
313 | | * complete in one iteration pretty much "most" of the time (btw: |
314 | | * understatement). So, if it takes us 10 iterations and we still can't avoid |
315 | | * a conflict - well that's a reasonable point to call it quits. Either the |
316 | | * RAND code is broken or someone is trying to open roughly very close to |
317 | | * 2^256 SSL sessions to our server. How you might store that many sessions |
318 | | * is perhaps a more interesting question ... |
319 | | */ |
320 | | |
321 | 0 | #define MAX_SESS_ID_ATTEMPTS 10 |
322 | | static int def_generate_session_id(SSL *ssl, unsigned char *id, |
323 | | unsigned int *id_len) |
324 | 0 | { |
325 | 0 | unsigned int retry = 0; |
326 | 0 | do { |
327 | 0 | if (RAND_bytes_ex(ssl->ctx->libctx, id, *id_len, 0) <= 0) |
328 | 0 | return 0; |
329 | 0 | #ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION |
330 | 0 | if (retry > 0) { |
331 | 0 | id[0]++; |
332 | 0 | } |
333 | 0 | #endif |
334 | 0 | } while (SSL_has_matching_session_id(ssl, id, *id_len) && |
335 | 0 | (++retry < MAX_SESS_ID_ATTEMPTS)) ; |
336 | 0 | if (retry < MAX_SESS_ID_ATTEMPTS) |
337 | 0 | return 1; |
338 | | /* else - woops a session_id match */ |
339 | | /* |
340 | | * XXX We should also check the external cache -- but the probability of |
341 | | * a collision is negligible, and we could not prevent the concurrent |
342 | | * creation of sessions with identical IDs since we currently don't have |
343 | | * means to atomically check whether a session ID already exists and make |
344 | | * a reservation for it if it does not (this problem applies to the |
345 | | * internal cache as well). |
346 | | */ |
347 | 0 | return 0; |
348 | 0 | } |
349 | | |
350 | | int ssl_generate_session_id(SSL_CONNECTION *s, SSL_SESSION *ss) |
351 | 0 | { |
352 | 0 | unsigned int tmp; |
353 | 0 | GEN_SESSION_CB cb = def_generate_session_id; |
354 | 0 | SSL *ssl = SSL_CONNECTION_GET_SSL(s); |
355 | |
|
356 | 0 | switch (s->version) { |
357 | 0 | case SSL3_VERSION: |
358 | 0 | case TLS1_VERSION: |
359 | 0 | case TLS1_1_VERSION: |
360 | 0 | case TLS1_2_VERSION: |
361 | 0 | case TLS1_3_VERSION: |
362 | 0 | case DTLS1_BAD_VER: |
363 | 0 | case DTLS1_VERSION: |
364 | 0 | case DTLS1_2_VERSION: |
365 | 0 | ss->session_id_length = SSL3_SSL_SESSION_ID_LENGTH; |
366 | 0 | break; |
367 | 0 | default: |
368 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_UNSUPPORTED_SSL_VERSION); |
369 | 0 | return 0; |
370 | 0 | } |
371 | | |
372 | | /*- |
373 | | * If RFC5077 ticket, use empty session ID (as server). |
374 | | * Note that: |
375 | | * (a) ssl_get_prev_session() does lookahead into the |
376 | | * ClientHello extensions to find the session ticket. |
377 | | * When ssl_get_prev_session() fails, statem_srvr.c calls |
378 | | * ssl_get_new_session() in tls_process_client_hello(). |
379 | | * At that point, it has not yet parsed the extensions, |
380 | | * however, because of the lookahead, it already knows |
381 | | * whether a ticket is expected or not. |
382 | | * |
383 | | * (b) statem_clnt.c calls ssl_get_new_session() before parsing |
384 | | * ServerHello extensions, and before recording the session |
385 | | * ID received from the server, so this block is a noop. |
386 | | */ |
387 | 0 | if (s->ext.ticket_expected) { |
388 | 0 | ss->session_id_length = 0; |
389 | 0 | return 1; |
390 | 0 | } |
391 | | |
392 | | /* Choose which callback will set the session ID */ |
393 | 0 | if (!CRYPTO_THREAD_read_lock(SSL_CONNECTION_GET_SSL(s)->lock)) |
394 | 0 | return 0; |
395 | 0 | if (!CRYPTO_THREAD_read_lock(s->session_ctx->lock)) { |
396 | 0 | CRYPTO_THREAD_unlock(ssl->lock); |
397 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
398 | 0 | SSL_R_SESSION_ID_CONTEXT_UNINITIALIZED); |
399 | 0 | return 0; |
400 | 0 | } |
401 | 0 | if (s->generate_session_id) |
402 | 0 | cb = s->generate_session_id; |
403 | 0 | else if (s->session_ctx->generate_session_id) |
404 | 0 | cb = s->session_ctx->generate_session_id; |
405 | 0 | CRYPTO_THREAD_unlock(s->session_ctx->lock); |
406 | 0 | CRYPTO_THREAD_unlock(ssl->lock); |
407 | | /* Choose a session ID */ |
408 | 0 | memset(ss->session_id, 0, ss->session_id_length); |
409 | 0 | tmp = (int)ss->session_id_length; |
410 | 0 | if (!cb(ssl, ss->session_id, &tmp)) { |
411 | | /* The callback failed */ |
412 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
413 | 0 | SSL_R_SSL_SESSION_ID_CALLBACK_FAILED); |
414 | 0 | return 0; |
415 | 0 | } |
416 | | /* |
417 | | * Don't allow the callback to set the session length to zero. nor |
418 | | * set it higher than it was. |
419 | | */ |
420 | 0 | if (tmp == 0 || tmp > ss->session_id_length) { |
421 | | /* The callback set an illegal length */ |
422 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
423 | 0 | SSL_R_SSL_SESSION_ID_HAS_BAD_LENGTH); |
424 | 0 | return 0; |
425 | 0 | } |
426 | 0 | ss->session_id_length = tmp; |
427 | | /* Finally, check for a conflict */ |
428 | 0 | if (SSL_has_matching_session_id(ssl, ss->session_id, |
429 | 0 | (unsigned int)ss->session_id_length)) { |
430 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_SSL_SESSION_ID_CONFLICT); |
431 | 0 | return 0; |
432 | 0 | } |
433 | | |
434 | 0 | return 1; |
435 | 0 | } |
436 | | |
437 | | int ssl_get_new_session(SSL_CONNECTION *s, int session) |
438 | 0 | { |
439 | | /* This gets used by clients and servers. */ |
440 | |
|
441 | 0 | SSL_SESSION *ss = NULL; |
442 | |
|
443 | 0 | if ((ss = SSL_SESSION_new()) == NULL) { |
444 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_SSL_LIB); |
445 | 0 | return 0; |
446 | 0 | } |
447 | | |
448 | | /* If the context has a default timeout, use it */ |
449 | 0 | if (ossl_time_is_zero(s->session_ctx->session_timeout)) |
450 | 0 | ss->timeout = SSL_CONNECTION_GET_SSL(s)->method->get_timeout(); |
451 | 0 | else |
452 | 0 | ss->timeout = s->session_ctx->session_timeout; |
453 | 0 | ssl_session_calculate_timeout(ss); |
454 | |
|
455 | 0 | SSL_SESSION_free(s->session); |
456 | 0 | s->session = NULL; |
457 | |
|
458 | 0 | if (session) { |
459 | 0 | if (SSL_CONNECTION_IS_TLS13(s)) { |
460 | | /* |
461 | | * We generate the session id while constructing the |
462 | | * NewSessionTicket in TLSv1.3. |
463 | | */ |
464 | 0 | ss->session_id_length = 0; |
465 | 0 | } else if (!ssl_generate_session_id(s, ss)) { |
466 | | /* SSLfatal() already called */ |
467 | 0 | SSL_SESSION_free(ss); |
468 | 0 | return 0; |
469 | 0 | } |
470 | |
|
471 | 0 | } else { |
472 | 0 | ss->session_id_length = 0; |
473 | 0 | } |
474 | | |
475 | 0 | if (s->sid_ctx_length > sizeof(ss->sid_ctx)) { |
476 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
477 | 0 | SSL_SESSION_free(ss); |
478 | 0 | return 0; |
479 | 0 | } |
480 | 0 | memcpy(ss->sid_ctx, s->sid_ctx, s->sid_ctx_length); |
481 | 0 | ss->sid_ctx_length = s->sid_ctx_length; |
482 | 0 | s->session = ss; |
483 | 0 | ss->ssl_version = s->version; |
484 | 0 | ss->verify_result = X509_V_OK; |
485 | | |
486 | | /* If client supports extended master secret set it in session */ |
487 | 0 | if (s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS) |
488 | 0 | ss->flags |= SSL_SESS_FLAG_EXTMS; |
489 | |
|
490 | 0 | return 1; |
491 | 0 | } |
492 | | |
493 | | SSL_SESSION *lookup_sess_in_cache(SSL_CONNECTION *s, |
494 | | const unsigned char *sess_id, |
495 | | size_t sess_id_len) |
496 | 0 | { |
497 | 0 | SSL_SESSION *ret = NULL; |
498 | |
|
499 | 0 | if ((s->session_ctx->session_cache_mode |
500 | 0 | & SSL_SESS_CACHE_NO_INTERNAL_LOOKUP) == 0) { |
501 | 0 | SSL_SESSION data; |
502 | |
|
503 | 0 | data.ssl_version = s->version; |
504 | 0 | if (!ossl_assert(sess_id_len <= SSL_MAX_SSL_SESSION_ID_LENGTH)) |
505 | 0 | return NULL; |
506 | | |
507 | 0 | memcpy(data.session_id, sess_id, sess_id_len); |
508 | 0 | data.session_id_length = sess_id_len; |
509 | |
|
510 | 0 | if (!CRYPTO_THREAD_read_lock(s->session_ctx->lock)) |
511 | 0 | return NULL; |
512 | 0 | ret = lh_SSL_SESSION_retrieve(s->session_ctx->sessions, &data); |
513 | 0 | if (ret != NULL) { |
514 | | /* don't allow other threads to steal it: */ |
515 | 0 | if (!SSL_SESSION_up_ref(ret)) { |
516 | 0 | CRYPTO_THREAD_unlock(s->session_ctx->lock); |
517 | 0 | return NULL; |
518 | 0 | } |
519 | 0 | } |
520 | 0 | CRYPTO_THREAD_unlock(s->session_ctx->lock); |
521 | 0 | if (ret == NULL) |
522 | 0 | ssl_tsan_counter(s->session_ctx, &s->session_ctx->stats.sess_miss); |
523 | 0 | } |
524 | | |
525 | 0 | if (ret == NULL && s->session_ctx->get_session_cb != NULL) { |
526 | 0 | int copy = 1; |
527 | |
|
528 | 0 | ret = s->session_ctx->get_session_cb(SSL_CONNECTION_GET_USER_SSL(s), |
529 | 0 | sess_id, (int)sess_id_len, ©); |
530 | |
|
531 | 0 | if (ret != NULL) { |
532 | 0 | if (ret->not_resumable) { |
533 | | /* If its not resumable then ignore this session */ |
534 | 0 | if (!copy) |
535 | 0 | SSL_SESSION_free(ret); |
536 | 0 | return NULL; |
537 | 0 | } |
538 | 0 | ssl_tsan_counter(s->session_ctx, |
539 | 0 | &s->session_ctx->stats.sess_cb_hit); |
540 | | |
541 | | /* |
542 | | * Increment reference count now if the session callback asks us |
543 | | * to do so (note that if the session structures returned by the |
544 | | * callback are shared between threads, it must handle the |
545 | | * reference count itself [i.e. copy == 0], or things won't be |
546 | | * thread-safe). |
547 | | */ |
548 | 0 | if (copy && !SSL_SESSION_up_ref(ret)) |
549 | 0 | return NULL; |
550 | | |
551 | | /* |
552 | | * Add the externally cached session to the internal cache as |
553 | | * well if and only if we are supposed to. |
554 | | */ |
555 | 0 | if ((s->session_ctx->session_cache_mode & |
556 | 0 | SSL_SESS_CACHE_NO_INTERNAL_STORE) == 0) { |
557 | | /* |
558 | | * Either return value of SSL_CTX_add_session should not |
559 | | * interrupt the session resumption process. The return |
560 | | * value is intentionally ignored. |
561 | | */ |
562 | 0 | (void)SSL_CTX_add_session(s->session_ctx, ret); |
563 | 0 | } |
564 | 0 | } |
565 | 0 | } |
566 | | |
567 | 0 | return ret; |
568 | 0 | } |
569 | | |
570 | | /*- |
571 | | * ssl_get_prev attempts to find an SSL_SESSION to be used to resume this |
572 | | * connection. It is only called by servers. |
573 | | * |
574 | | * hello: The parsed ClientHello data |
575 | | * |
576 | | * Returns: |
577 | | * -1: fatal error |
578 | | * 0: no session found |
579 | | * 1: a session may have been found. |
580 | | * |
581 | | * Side effects: |
582 | | * - If a session is found then s->session is pointed at it (after freeing an |
583 | | * existing session if need be) and s->verify_result is set from the session. |
584 | | * - Both for new and resumed sessions, s->ext.ticket_expected is set to 1 |
585 | | * if the server should issue a new session ticket (to 0 otherwise). |
586 | | */ |
587 | | int ssl_get_prev_session(SSL_CONNECTION *s, CLIENTHELLO_MSG *hello) |
588 | 0 | { |
589 | | /* This is used only by servers. */ |
590 | |
|
591 | 0 | SSL_SESSION *ret = NULL; |
592 | 0 | int fatal = 0; |
593 | 0 | int try_session_cache = 0; |
594 | 0 | SSL_TICKET_STATUS r; |
595 | |
|
596 | 0 | if (SSL_CONNECTION_IS_TLS13(s)) { |
597 | 0 | SSL_SESSION_free(s->session); |
598 | 0 | s->session = NULL; |
599 | | /* |
600 | | * By default we will send a new ticket. This can be overridden in the |
601 | | * ticket processing. |
602 | | */ |
603 | 0 | s->ext.ticket_expected = 1; |
604 | 0 | if (!tls_parse_extension(s, TLSEXT_IDX_psk_kex_modes, |
605 | 0 | SSL_EXT_CLIENT_HELLO, hello->pre_proc_exts, |
606 | 0 | NULL, 0) |
607 | 0 | || !tls_parse_extension(s, TLSEXT_IDX_psk, SSL_EXT_CLIENT_HELLO, |
608 | 0 | hello->pre_proc_exts, NULL, 0)) |
609 | 0 | return -1; |
610 | | |
611 | | /* If we resumed, s->session will now be set */ |
612 | 0 | ret = s->session; |
613 | 0 | } else { |
614 | | /* sets s->ext.ticket_expected */ |
615 | 0 | r = tls_get_ticket_from_client(s, hello, &ret); |
616 | 0 | switch (r) { |
617 | 0 | case SSL_TICKET_FATAL_ERR_MALLOC: |
618 | 0 | case SSL_TICKET_FATAL_ERR_OTHER: |
619 | 0 | fatal = 1; |
620 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
621 | 0 | goto err; |
622 | 0 | case SSL_TICKET_NONE: |
623 | 0 | case SSL_TICKET_EMPTY: |
624 | 0 | if (hello->session_id_len > 0) { |
625 | 0 | try_session_cache = 1; |
626 | 0 | ret = lookup_sess_in_cache(s, hello->session_id, |
627 | 0 | hello->session_id_len); |
628 | 0 | } |
629 | 0 | break; |
630 | 0 | case SSL_TICKET_NO_DECRYPT: |
631 | 0 | case SSL_TICKET_SUCCESS: |
632 | 0 | case SSL_TICKET_SUCCESS_RENEW: |
633 | 0 | break; |
634 | 0 | } |
635 | 0 | } |
636 | | |
637 | 0 | if (ret == NULL) |
638 | 0 | goto err; |
639 | | |
640 | | /* Now ret is non-NULL and we own one of its reference counts. */ |
641 | | |
642 | | /* Check TLS version consistency */ |
643 | 0 | if (ret->ssl_version != s->version) |
644 | 0 | goto err; |
645 | | |
646 | 0 | if (ret->sid_ctx_length != s->sid_ctx_length |
647 | 0 | || memcmp(ret->sid_ctx, s->sid_ctx, ret->sid_ctx_length)) { |
648 | | /* |
649 | | * We have the session requested by the client, but we don't want to |
650 | | * use it in this context. |
651 | | */ |
652 | 0 | goto err; /* treat like cache miss */ |
653 | 0 | } |
654 | | |
655 | 0 | if ((s->verify_mode & SSL_VERIFY_PEER) && s->sid_ctx_length == 0) { |
656 | | /* |
657 | | * We can't be sure if this session is being used out of context, |
658 | | * which is especially important for SSL_VERIFY_PEER. The application |
659 | | * should have used SSL[_CTX]_set_session_id_context. For this error |
660 | | * case, we generate an error instead of treating the event like a |
661 | | * cache miss (otherwise it would be easy for applications to |
662 | | * effectively disable the session cache by accident without anyone |
663 | | * noticing). |
664 | | */ |
665 | |
|
666 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
667 | 0 | SSL_R_SESSION_ID_CONTEXT_UNINITIALIZED); |
668 | 0 | fatal = 1; |
669 | 0 | goto err; |
670 | 0 | } |
671 | | |
672 | 0 | if (sess_timedout(ossl_time_now(), ret)) { |
673 | 0 | ssl_tsan_counter(s->session_ctx, &s->session_ctx->stats.sess_timeout); |
674 | 0 | if (try_session_cache) { |
675 | | /* session was from the cache, so remove it */ |
676 | 0 | SSL_CTX_remove_session(s->session_ctx, ret); |
677 | 0 | } |
678 | 0 | goto err; |
679 | 0 | } |
680 | | |
681 | | /* Check extended master secret extension consistency */ |
682 | 0 | if (ret->flags & SSL_SESS_FLAG_EXTMS) { |
683 | | /* If old session includes extms, but new does not: abort handshake */ |
684 | 0 | if (!(s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS)) { |
685 | 0 | SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_INCONSISTENT_EXTMS); |
686 | 0 | fatal = 1; |
687 | 0 | goto err; |
688 | 0 | } |
689 | 0 | } else if (s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS) { |
690 | | /* If new session includes extms, but old does not: do not resume */ |
691 | 0 | goto err; |
692 | 0 | } |
693 | | |
694 | 0 | if (!SSL_CONNECTION_IS_TLS13(s)) { |
695 | | /* We already did this for TLS1.3 */ |
696 | 0 | SSL_SESSION_free(s->session); |
697 | 0 | s->session = ret; |
698 | 0 | } |
699 | |
|
700 | 0 | ssl_tsan_counter(s->session_ctx, &s->session_ctx->stats.sess_hit); |
701 | 0 | s->verify_result = s->session->verify_result; |
702 | 0 | return 1; |
703 | | |
704 | 0 | err: |
705 | 0 | if (ret != NULL) { |
706 | 0 | SSL_SESSION_free(ret); |
707 | | /* In TLSv1.3 s->session was already set to ret, so we NULL it out */ |
708 | 0 | if (SSL_CONNECTION_IS_TLS13(s)) |
709 | 0 | s->session = NULL; |
710 | |
|
711 | 0 | if (!try_session_cache) { |
712 | | /* |
713 | | * The session was from a ticket, so we should issue a ticket for |
714 | | * the new session |
715 | | */ |
716 | 0 | s->ext.ticket_expected = 1; |
717 | 0 | } |
718 | 0 | } |
719 | 0 | if (fatal) |
720 | 0 | return -1; |
721 | | |
722 | 0 | return 0; |
723 | 0 | } |
724 | | |
725 | | int SSL_CTX_add_session(SSL_CTX *ctx, SSL_SESSION *c) |
726 | 0 | { |
727 | 0 | int ret = 0; |
728 | 0 | SSL_SESSION *s; |
729 | | |
730 | | /* |
731 | | * add just 1 reference count for the SSL_CTX's session cache even though |
732 | | * it has two ways of access: each session is in a doubly linked list and |
733 | | * an lhash |
734 | | */ |
735 | 0 | if (!SSL_SESSION_up_ref(c)) |
736 | 0 | return 0; |
737 | | /* |
738 | | * if session c is in already in cache, we take back the increment later |
739 | | */ |
740 | | |
741 | 0 | if (!CRYPTO_THREAD_write_lock(ctx->lock)) { |
742 | 0 | SSL_SESSION_free(c); |
743 | 0 | return 0; |
744 | 0 | } |
745 | 0 | s = lh_SSL_SESSION_insert(ctx->sessions, c); |
746 | | |
747 | | /* |
748 | | * s != NULL iff we already had a session with the given PID. In this |
749 | | * case, s == c should hold (then we did not really modify |
750 | | * ctx->sessions), or we're in trouble. |
751 | | */ |
752 | 0 | if (s != NULL && s != c) { |
753 | | /* We *are* in trouble ... */ |
754 | 0 | SSL_SESSION_list_remove(ctx, s); |
755 | 0 | SSL_SESSION_free(s); |
756 | | /* |
757 | | * ... so pretend the other session did not exist in cache (we cannot |
758 | | * handle two SSL_SESSION structures with identical session ID in the |
759 | | * same cache, which could happen e.g. when two threads concurrently |
760 | | * obtain the same session from an external cache) |
761 | | */ |
762 | 0 | s = NULL; |
763 | 0 | } else if (s == NULL && |
764 | 0 | lh_SSL_SESSION_retrieve(ctx->sessions, c) == NULL) { |
765 | | /* s == NULL can also mean OOM error in lh_SSL_SESSION_insert ... */ |
766 | | |
767 | | /* |
768 | | * ... so take back the extra reference and also don't add |
769 | | * the session to the SSL_SESSION_list at this time |
770 | | */ |
771 | 0 | s = c; |
772 | 0 | } |
773 | | |
774 | | /* Adjust last used time, and add back into the cache at the appropriate spot */ |
775 | 0 | if (ctx->session_cache_mode & SSL_SESS_CACHE_UPDATE_TIME) { |
776 | 0 | c->time = ossl_time_now(); |
777 | 0 | ssl_session_calculate_timeout(c); |
778 | 0 | } |
779 | |
|
780 | 0 | if (s == NULL) { |
781 | | /* |
782 | | * new cache entry -- remove old ones if cache has become too large |
783 | | * delete cache entry *before* add, so we don't remove the one we're adding! |
784 | | */ |
785 | |
|
786 | 0 | ret = 1; |
787 | |
|
788 | 0 | if (SSL_CTX_sess_get_cache_size(ctx) > 0) { |
789 | 0 | while (SSL_CTX_sess_number(ctx) >= SSL_CTX_sess_get_cache_size(ctx)) { |
790 | 0 | if (!remove_session_lock(ctx, ctx->session_cache_tail, 0)) |
791 | 0 | break; |
792 | 0 | else |
793 | 0 | ssl_tsan_counter(ctx, &ctx->stats.sess_cache_full); |
794 | 0 | } |
795 | 0 | } |
796 | 0 | } |
797 | |
|
798 | 0 | SSL_SESSION_list_add(ctx, c); |
799 | |
|
800 | 0 | if (s != NULL) { |
801 | | /* |
802 | | * existing cache entry -- decrement previously incremented reference |
803 | | * count because it already takes into account the cache |
804 | | */ |
805 | |
|
806 | 0 | SSL_SESSION_free(s); /* s == c */ |
807 | 0 | ret = 0; |
808 | 0 | } |
809 | 0 | CRYPTO_THREAD_unlock(ctx->lock); |
810 | 0 | return ret; |
811 | 0 | } |
812 | | |
813 | | int SSL_CTX_remove_session(SSL_CTX *ctx, SSL_SESSION *c) |
814 | 0 | { |
815 | 0 | return remove_session_lock(ctx, c, 1); |
816 | 0 | } |
817 | | |
818 | | static int remove_session_lock(SSL_CTX *ctx, SSL_SESSION *c, int lck) |
819 | 0 | { |
820 | 0 | SSL_SESSION *r; |
821 | 0 | int ret = 0; |
822 | |
|
823 | 0 | if ((c != NULL) && (c->session_id_length != 0)) { |
824 | 0 | if (lck) { |
825 | 0 | if (!CRYPTO_THREAD_write_lock(ctx->lock)) |
826 | 0 | return 0; |
827 | 0 | } |
828 | 0 | if ((r = lh_SSL_SESSION_retrieve(ctx->sessions, c)) != NULL) { |
829 | 0 | ret = 1; |
830 | 0 | r = lh_SSL_SESSION_delete(ctx->sessions, r); |
831 | 0 | SSL_SESSION_list_remove(ctx, r); |
832 | 0 | } |
833 | 0 | c->not_resumable = 1; |
834 | |
|
835 | 0 | if (lck) |
836 | 0 | CRYPTO_THREAD_unlock(ctx->lock); |
837 | |
|
838 | 0 | if (ctx->remove_session_cb != NULL) |
839 | 0 | ctx->remove_session_cb(ctx, c); |
840 | |
|
841 | 0 | if (ret) |
842 | 0 | SSL_SESSION_free(r); |
843 | 0 | } |
844 | 0 | return ret; |
845 | 0 | } |
846 | | |
847 | | void SSL_SESSION_free(SSL_SESSION *ss) |
848 | 0 | { |
849 | 0 | int i; |
850 | |
|
851 | 0 | if (ss == NULL) |
852 | 0 | return; |
853 | 0 | CRYPTO_DOWN_REF(&ss->references, &i); |
854 | 0 | REF_PRINT_COUNT("SSL_SESSION", i, ss); |
855 | 0 | if (i > 0) |
856 | 0 | return; |
857 | 0 | REF_ASSERT_ISNT(i < 0); |
858 | |
|
859 | 0 | CRYPTO_free_ex_data(CRYPTO_EX_INDEX_SSL_SESSION, ss, &ss->ex_data); |
860 | |
|
861 | 0 | OPENSSL_cleanse(ss->master_key, sizeof(ss->master_key)); |
862 | 0 | OPENSSL_cleanse(ss->session_id, sizeof(ss->session_id)); |
863 | 0 | X509_free(ss->peer); |
864 | 0 | EVP_PKEY_free(ss->peer_rpk); |
865 | 0 | OSSL_STACK_OF_X509_free(ss->peer_chain); |
866 | 0 | OPENSSL_free(ss->ext.hostname); |
867 | 0 | OPENSSL_free(ss->ext.tick); |
868 | 0 | #ifndef OPENSSL_NO_PSK |
869 | 0 | OPENSSL_free(ss->psk_identity_hint); |
870 | 0 | OPENSSL_free(ss->psk_identity); |
871 | 0 | #endif |
872 | 0 | #ifndef OPENSSL_NO_SRP |
873 | 0 | OPENSSL_free(ss->srp_username); |
874 | 0 | #endif |
875 | 0 | OPENSSL_free(ss->ext.alpn_selected); |
876 | 0 | OPENSSL_free(ss->ticket_appdata); |
877 | 0 | CRYPTO_FREE_REF(&ss->references); |
878 | 0 | OPENSSL_clear_free(ss, sizeof(*ss)); |
879 | 0 | } |
880 | | |
881 | | int SSL_SESSION_up_ref(SSL_SESSION *ss) |
882 | 0 | { |
883 | 0 | int i; |
884 | |
|
885 | 0 | if (CRYPTO_UP_REF(&ss->references, &i) <= 0) |
886 | 0 | return 0; |
887 | | |
888 | 0 | REF_PRINT_COUNT("SSL_SESSION", i, ss); |
889 | 0 | REF_ASSERT_ISNT(i < 2); |
890 | 0 | return ((i > 1) ? 1 : 0); |
891 | 0 | } |
892 | | |
893 | | int SSL_set_session(SSL *s, SSL_SESSION *session) |
894 | 0 | { |
895 | 0 | SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s); |
896 | |
|
897 | 0 | if (sc == NULL) |
898 | 0 | return 0; |
899 | | |
900 | 0 | if (session != NULL && !SSL_SESSION_up_ref(session)) |
901 | 0 | return 0; |
902 | | |
903 | 0 | ssl_clear_bad_session(sc); |
904 | 0 | if (s->defltmeth != s->method) { |
905 | 0 | if (!SSL_set_ssl_method(s, s->defltmeth)) { |
906 | 0 | SSL_SESSION_free(session); |
907 | 0 | return 0; |
908 | 0 | } |
909 | 0 | } |
910 | | |
911 | 0 | if (session != NULL) |
912 | 0 | sc->verify_result = session->verify_result; |
913 | |
|
914 | 0 | SSL_SESSION_free(sc->session); |
915 | 0 | sc->session = session; |
916 | |
|
917 | 0 | return 1; |
918 | 0 | } |
919 | | |
920 | | int SSL_SESSION_set1_id(SSL_SESSION *s, const unsigned char *sid, |
921 | | unsigned int sid_len) |
922 | 0 | { |
923 | 0 | if (sid_len > SSL_MAX_SSL_SESSION_ID_LENGTH) { |
924 | 0 | ERR_raise(ERR_LIB_SSL, SSL_R_SSL_SESSION_ID_TOO_LONG); |
925 | 0 | return 0; |
926 | 0 | } |
927 | 0 | s->session_id_length = sid_len; |
928 | 0 | if (sid != s->session_id && sid_len > 0) |
929 | 0 | memcpy(s->session_id, sid, sid_len); |
930 | |
|
931 | 0 | return 1; |
932 | 0 | } |
933 | | |
934 | | long SSL_SESSION_set_timeout(SSL_SESSION *s, long t) |
935 | 0 | { |
936 | 0 | OSSL_TIME new_timeout = ossl_seconds2time(t); |
937 | |
|
938 | 0 | if (s == NULL || t < 0) |
939 | 0 | return 0; |
940 | 0 | if (s->owner != NULL) { |
941 | 0 | if (!CRYPTO_THREAD_write_lock(s->owner->lock)) |
942 | 0 | return 0; |
943 | 0 | s->timeout = new_timeout; |
944 | 0 | ssl_session_calculate_timeout(s); |
945 | 0 | SSL_SESSION_list_add(s->owner, s); |
946 | 0 | CRYPTO_THREAD_unlock(s->owner->lock); |
947 | 0 | } else { |
948 | 0 | s->timeout = new_timeout; |
949 | 0 | ssl_session_calculate_timeout(s); |
950 | 0 | } |
951 | 0 | return 1; |
952 | 0 | } |
953 | | |
954 | | long SSL_SESSION_get_timeout(const SSL_SESSION *s) |
955 | 0 | { |
956 | 0 | if (s == NULL) |
957 | 0 | return 0; |
958 | 0 | return (long)ossl_time_to_time_t(s->timeout); |
959 | 0 | } |
960 | | |
961 | | #ifndef OPENSSL_NO_DEPRECATED_3_4 |
962 | | long SSL_SESSION_get_time(const SSL_SESSION *s) |
963 | 0 | { |
964 | 0 | return (long) SSL_SESSION_get_time_ex(s); |
965 | 0 | } |
966 | | #endif |
967 | | |
968 | | time_t SSL_SESSION_get_time_ex(const SSL_SESSION *s) |
969 | 0 | { |
970 | 0 | if (s == NULL) |
971 | 0 | return 0; |
972 | 0 | return ossl_time_to_time_t(s->time); |
973 | 0 | } |
974 | | |
975 | | time_t SSL_SESSION_set_time_ex(SSL_SESSION *s, time_t t) |
976 | 0 | { |
977 | 0 | OSSL_TIME new_time = ossl_time_from_time_t(t); |
978 | |
|
979 | 0 | if (s == NULL) |
980 | 0 | return 0; |
981 | 0 | if (s->owner != NULL) { |
982 | 0 | if (!CRYPTO_THREAD_write_lock(s->owner->lock)) |
983 | 0 | return 0; |
984 | 0 | s->time = new_time; |
985 | 0 | ssl_session_calculate_timeout(s); |
986 | 0 | SSL_SESSION_list_add(s->owner, s); |
987 | 0 | CRYPTO_THREAD_unlock(s->owner->lock); |
988 | 0 | } else { |
989 | 0 | s->time = new_time; |
990 | 0 | ssl_session_calculate_timeout(s); |
991 | 0 | } |
992 | 0 | return t; |
993 | 0 | } |
994 | | |
995 | | #ifndef OPENSSL_NO_DEPRECATED_3_4 |
996 | | long SSL_SESSION_set_time(SSL_SESSION *s, long t) |
997 | 0 | { |
998 | 0 | return (long) SSL_SESSION_set_time_ex(s, (time_t) t); |
999 | 0 | } |
1000 | | #endif |
1001 | | |
1002 | | int SSL_SESSION_get_protocol_version(const SSL_SESSION *s) |
1003 | 0 | { |
1004 | 0 | return s->ssl_version; |
1005 | 0 | } |
1006 | | |
1007 | | int SSL_SESSION_set_protocol_version(SSL_SESSION *s, int version) |
1008 | 0 | { |
1009 | 0 | s->ssl_version = version; |
1010 | 0 | return 1; |
1011 | 0 | } |
1012 | | |
1013 | | const SSL_CIPHER *SSL_SESSION_get0_cipher(const SSL_SESSION *s) |
1014 | 0 | { |
1015 | 0 | return s->cipher; |
1016 | 0 | } |
1017 | | |
1018 | | int SSL_SESSION_set_cipher(SSL_SESSION *s, const SSL_CIPHER *cipher) |
1019 | 0 | { |
1020 | 0 | s->cipher = cipher; |
1021 | 0 | return 1; |
1022 | 0 | } |
1023 | | |
1024 | | const char *SSL_SESSION_get0_hostname(const SSL_SESSION *s) |
1025 | 0 | { |
1026 | 0 | return s->ext.hostname; |
1027 | 0 | } |
1028 | | |
1029 | | int SSL_SESSION_set1_hostname(SSL_SESSION *s, const char *hostname) |
1030 | 0 | { |
1031 | 0 | OPENSSL_free(s->ext.hostname); |
1032 | 0 | if (hostname == NULL) { |
1033 | 0 | s->ext.hostname = NULL; |
1034 | 0 | return 1; |
1035 | 0 | } |
1036 | 0 | s->ext.hostname = OPENSSL_strdup(hostname); |
1037 | |
|
1038 | 0 | return s->ext.hostname != NULL; |
1039 | 0 | } |
1040 | | |
1041 | | int SSL_SESSION_has_ticket(const SSL_SESSION *s) |
1042 | 0 | { |
1043 | 0 | return (s->ext.ticklen > 0) ? 1 : 0; |
1044 | 0 | } |
1045 | | |
1046 | | unsigned long SSL_SESSION_get_ticket_lifetime_hint(const SSL_SESSION *s) |
1047 | 0 | { |
1048 | 0 | return s->ext.tick_lifetime_hint; |
1049 | 0 | } |
1050 | | |
1051 | | void SSL_SESSION_get0_ticket(const SSL_SESSION *s, const unsigned char **tick, |
1052 | | size_t *len) |
1053 | 0 | { |
1054 | 0 | *len = s->ext.ticklen; |
1055 | 0 | if (tick != NULL) |
1056 | 0 | *tick = s->ext.tick; |
1057 | 0 | } |
1058 | | |
1059 | | uint32_t SSL_SESSION_get_max_early_data(const SSL_SESSION *s) |
1060 | 0 | { |
1061 | 0 | return s->ext.max_early_data; |
1062 | 0 | } |
1063 | | |
1064 | | int SSL_SESSION_set_max_early_data(SSL_SESSION *s, uint32_t max_early_data) |
1065 | 0 | { |
1066 | 0 | s->ext.max_early_data = max_early_data; |
1067 | |
|
1068 | 0 | return 1; |
1069 | 0 | } |
1070 | | |
1071 | | void SSL_SESSION_get0_alpn_selected(const SSL_SESSION *s, |
1072 | | const unsigned char **alpn, |
1073 | | size_t *len) |
1074 | 0 | { |
1075 | 0 | *alpn = s->ext.alpn_selected; |
1076 | 0 | *len = s->ext.alpn_selected_len; |
1077 | 0 | } |
1078 | | |
1079 | | int SSL_SESSION_set1_alpn_selected(SSL_SESSION *s, const unsigned char *alpn, |
1080 | | size_t len) |
1081 | 0 | { |
1082 | 0 | OPENSSL_free(s->ext.alpn_selected); |
1083 | 0 | if (alpn == NULL || len == 0) { |
1084 | 0 | s->ext.alpn_selected = NULL; |
1085 | 0 | s->ext.alpn_selected_len = 0; |
1086 | 0 | return 1; |
1087 | 0 | } |
1088 | 0 | s->ext.alpn_selected = OPENSSL_memdup(alpn, len); |
1089 | 0 | if (s->ext.alpn_selected == NULL) { |
1090 | 0 | s->ext.alpn_selected_len = 0; |
1091 | 0 | return 0; |
1092 | 0 | } |
1093 | 0 | s->ext.alpn_selected_len = len; |
1094 | |
|
1095 | 0 | return 1; |
1096 | 0 | } |
1097 | | |
1098 | | X509 *SSL_SESSION_get0_peer(SSL_SESSION *s) |
1099 | 0 | { |
1100 | 0 | return s->peer; |
1101 | 0 | } |
1102 | | |
1103 | | EVP_PKEY *SSL_SESSION_get0_peer_rpk(SSL_SESSION *s) |
1104 | 0 | { |
1105 | 0 | return s->peer_rpk; |
1106 | 0 | } |
1107 | | |
1108 | | int SSL_SESSION_set1_id_context(SSL_SESSION *s, const unsigned char *sid_ctx, |
1109 | | unsigned int sid_ctx_len) |
1110 | 0 | { |
1111 | 0 | if (sid_ctx_len > SSL_MAX_SID_CTX_LENGTH) { |
1112 | 0 | ERR_raise(ERR_LIB_SSL, SSL_R_SSL_SESSION_ID_CONTEXT_TOO_LONG); |
1113 | 0 | return 0; |
1114 | 0 | } |
1115 | 0 | s->sid_ctx_length = sid_ctx_len; |
1116 | 0 | if (sid_ctx != s->sid_ctx) |
1117 | 0 | memcpy(s->sid_ctx, sid_ctx, sid_ctx_len); |
1118 | |
|
1119 | 0 | return 1; |
1120 | 0 | } |
1121 | | |
1122 | | int SSL_SESSION_is_resumable(const SSL_SESSION *s) |
1123 | 0 | { |
1124 | | /* |
1125 | | * In the case of EAP-FAST, we can have a pre-shared "ticket" without a |
1126 | | * session ID. |
1127 | | */ |
1128 | 0 | return !s->not_resumable |
1129 | 0 | && (s->session_id_length > 0 || s->ext.ticklen > 0); |
1130 | 0 | } |
1131 | | |
1132 | | long SSL_CTX_set_timeout(SSL_CTX *s, long t) |
1133 | 0 | { |
1134 | 0 | long l; |
1135 | |
|
1136 | 0 | if (s == NULL) |
1137 | 0 | return 0; |
1138 | 0 | l = (long)ossl_time2seconds(s->session_timeout); |
1139 | 0 | s->session_timeout = ossl_seconds2time(t); |
1140 | 0 | return l; |
1141 | 0 | } |
1142 | | |
1143 | | long SSL_CTX_get_timeout(const SSL_CTX *s) |
1144 | 0 | { |
1145 | 0 | if (s == NULL) |
1146 | 0 | return 0; |
1147 | 0 | return (long)ossl_time2seconds(s->session_timeout); |
1148 | 0 | } |
1149 | | |
1150 | | int SSL_set_session_secret_cb(SSL *s, |
1151 | | tls_session_secret_cb_fn tls_session_secret_cb, |
1152 | | void *arg) |
1153 | 0 | { |
1154 | 0 | SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s); |
1155 | |
|
1156 | 0 | if (sc == NULL) |
1157 | 0 | return 0; |
1158 | | |
1159 | 0 | sc->ext.session_secret_cb = tls_session_secret_cb; |
1160 | 0 | sc->ext.session_secret_cb_arg = arg; |
1161 | 0 | return 1; |
1162 | 0 | } |
1163 | | |
1164 | | int SSL_set_session_ticket_ext_cb(SSL *s, tls_session_ticket_ext_cb_fn cb, |
1165 | | void *arg) |
1166 | 0 | { |
1167 | 0 | SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s); |
1168 | |
|
1169 | 0 | if (sc == NULL) |
1170 | 0 | return 0; |
1171 | | |
1172 | 0 | sc->ext.session_ticket_cb = cb; |
1173 | 0 | sc->ext.session_ticket_cb_arg = arg; |
1174 | 0 | return 1; |
1175 | 0 | } |
1176 | | |
1177 | | int SSL_set_session_ticket_ext(SSL *s, void *ext_data, int ext_len) |
1178 | 0 | { |
1179 | 0 | SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s); |
1180 | |
|
1181 | 0 | if (sc == NULL) |
1182 | 0 | return 0; |
1183 | | |
1184 | 0 | if (sc->version >= TLS1_VERSION) { |
1185 | 0 | OPENSSL_free(sc->ext.session_ticket); |
1186 | 0 | sc->ext.session_ticket = NULL; |
1187 | 0 | sc->ext.session_ticket = |
1188 | 0 | OPENSSL_malloc(sizeof(TLS_SESSION_TICKET_EXT) + ext_len); |
1189 | 0 | if (sc->ext.session_ticket == NULL) |
1190 | 0 | return 0; |
1191 | | |
1192 | 0 | if (ext_data != NULL) { |
1193 | 0 | sc->ext.session_ticket->length = ext_len; |
1194 | 0 | sc->ext.session_ticket->data = sc->ext.session_ticket + 1; |
1195 | 0 | memcpy(sc->ext.session_ticket->data, ext_data, ext_len); |
1196 | 0 | } else { |
1197 | 0 | sc->ext.session_ticket->length = 0; |
1198 | 0 | sc->ext.session_ticket->data = NULL; |
1199 | 0 | } |
1200 | |
|
1201 | 0 | return 1; |
1202 | 0 | } |
1203 | | |
1204 | 0 | return 0; |
1205 | 0 | } |
1206 | | |
1207 | | #ifndef OPENSSL_NO_DEPRECATED_3_4 |
1208 | | void SSL_CTX_flush_sessions(SSL_CTX *s, long t) |
1209 | 0 | { |
1210 | 0 | SSL_CTX_flush_sessions_ex(s, (time_t) t); |
1211 | 0 | } |
1212 | | #endif |
1213 | | |
1214 | | void SSL_CTX_flush_sessions_ex(SSL_CTX *s, time_t t) |
1215 | 0 | { |
1216 | 0 | STACK_OF(SSL_SESSION) *sk; |
1217 | 0 | SSL_SESSION *current; |
1218 | 0 | unsigned long i; |
1219 | 0 | const OSSL_TIME timeout = ossl_time_from_time_t(t); |
1220 | |
|
1221 | 0 | if (!CRYPTO_THREAD_write_lock(s->lock)) |
1222 | 0 | return; |
1223 | | |
1224 | 0 | sk = sk_SSL_SESSION_new_null(); |
1225 | 0 | i = lh_SSL_SESSION_get_down_load(s->sessions); |
1226 | 0 | lh_SSL_SESSION_set_down_load(s->sessions, 0); |
1227 | | |
1228 | | /* |
1229 | | * Iterate over the list from the back (oldest), and stop |
1230 | | * when a session can no longer be removed. |
1231 | | * Add the session to a temporary list to be freed outside |
1232 | | * the SSL_CTX lock. |
1233 | | * But still do the remove_session_cb() within the lock. |
1234 | | */ |
1235 | 0 | while (s->session_cache_tail != NULL) { |
1236 | 0 | current = s->session_cache_tail; |
1237 | 0 | if (t == 0 || sess_timedout(timeout, current)) { |
1238 | 0 | lh_SSL_SESSION_delete(s->sessions, current); |
1239 | 0 | SSL_SESSION_list_remove(s, current); |
1240 | 0 | current->not_resumable = 1; |
1241 | 0 | if (s->remove_session_cb != NULL) |
1242 | 0 | s->remove_session_cb(s, current); |
1243 | | /* |
1244 | | * Throw the session on a stack, it's entirely plausible |
1245 | | * that while freeing outside the critical section, the |
1246 | | * session could be re-added, so avoid using the next/prev |
1247 | | * pointers. If the stack failed to create, or the session |
1248 | | * couldn't be put on the stack, just free it here |
1249 | | */ |
1250 | 0 | if (sk == NULL || !sk_SSL_SESSION_push(sk, current)) |
1251 | 0 | SSL_SESSION_free(current); |
1252 | 0 | } else { |
1253 | 0 | break; |
1254 | 0 | } |
1255 | 0 | } |
1256 | |
|
1257 | 0 | lh_SSL_SESSION_set_down_load(s->sessions, i); |
1258 | 0 | CRYPTO_THREAD_unlock(s->lock); |
1259 | |
|
1260 | 0 | sk_SSL_SESSION_pop_free(sk, SSL_SESSION_free); |
1261 | 0 | } |
1262 | | |
1263 | | int ssl_clear_bad_session(SSL_CONNECTION *s) |
1264 | 0 | { |
1265 | 0 | if ((s->session != NULL) && |
1266 | 0 | !(s->shutdown & SSL_SENT_SHUTDOWN) && |
1267 | 0 | !(SSL_in_init(SSL_CONNECTION_GET_SSL(s)) |
1268 | 0 | || SSL_in_before(SSL_CONNECTION_GET_SSL(s)))) { |
1269 | 0 | SSL_CTX_remove_session(s->session_ctx, s->session); |
1270 | 0 | return 1; |
1271 | 0 | } else |
1272 | 0 | return 0; |
1273 | 0 | } |
1274 | | |
1275 | | /* locked by SSL_CTX in the calling function */ |
1276 | | static void SSL_SESSION_list_remove(SSL_CTX *ctx, SSL_SESSION *s) |
1277 | 0 | { |
1278 | 0 | if ((s->next == NULL) || (s->prev == NULL)) |
1279 | 0 | return; |
1280 | | |
1281 | 0 | if (s->next == (SSL_SESSION *)&(ctx->session_cache_tail)) { |
1282 | | /* last element in list */ |
1283 | 0 | if (s->prev == (SSL_SESSION *)&(ctx->session_cache_head)) { |
1284 | | /* only one element in list */ |
1285 | 0 | ctx->session_cache_head = NULL; |
1286 | 0 | ctx->session_cache_tail = NULL; |
1287 | 0 | } else { |
1288 | 0 | ctx->session_cache_tail = s->prev; |
1289 | 0 | s->prev->next = (SSL_SESSION *)&(ctx->session_cache_tail); |
1290 | 0 | } |
1291 | 0 | } else { |
1292 | 0 | if (s->prev == (SSL_SESSION *)&(ctx->session_cache_head)) { |
1293 | | /* first element in list */ |
1294 | 0 | ctx->session_cache_head = s->next; |
1295 | 0 | s->next->prev = (SSL_SESSION *)&(ctx->session_cache_head); |
1296 | 0 | } else { |
1297 | | /* middle of list */ |
1298 | 0 | s->next->prev = s->prev; |
1299 | 0 | s->prev->next = s->next; |
1300 | 0 | } |
1301 | 0 | } |
1302 | 0 | s->prev = s->next = NULL; |
1303 | 0 | s->owner = NULL; |
1304 | 0 | } |
1305 | | |
1306 | | static void SSL_SESSION_list_add(SSL_CTX *ctx, SSL_SESSION *s) |
1307 | 0 | { |
1308 | 0 | SSL_SESSION *next; |
1309 | |
|
1310 | 0 | if ((s->next != NULL) && (s->prev != NULL)) |
1311 | 0 | SSL_SESSION_list_remove(ctx, s); |
1312 | |
|
1313 | 0 | if (ctx->session_cache_head == NULL) { |
1314 | 0 | ctx->session_cache_head = s; |
1315 | 0 | ctx->session_cache_tail = s; |
1316 | 0 | s->prev = (SSL_SESSION *)&(ctx->session_cache_head); |
1317 | 0 | s->next = (SSL_SESSION *)&(ctx->session_cache_tail); |
1318 | 0 | } else { |
1319 | 0 | if (timeoutcmp(s, ctx->session_cache_head) >= 0) { |
1320 | | /* |
1321 | | * if we timeout after (or the same time as) the first |
1322 | | * session, put us first - usual case |
1323 | | */ |
1324 | 0 | s->next = ctx->session_cache_head; |
1325 | 0 | s->next->prev = s; |
1326 | 0 | s->prev = (SSL_SESSION *)&(ctx->session_cache_head); |
1327 | 0 | ctx->session_cache_head = s; |
1328 | 0 | } else if (timeoutcmp(s, ctx->session_cache_tail) < 0) { |
1329 | | /* if we timeout before the last session, put us last */ |
1330 | 0 | s->prev = ctx->session_cache_tail; |
1331 | 0 | s->prev->next = s; |
1332 | 0 | s->next = (SSL_SESSION *)&(ctx->session_cache_tail); |
1333 | 0 | ctx->session_cache_tail = s; |
1334 | 0 | } else { |
1335 | | /* |
1336 | | * we timeout somewhere in-between - if there is only |
1337 | | * one session in the cache it will be caught above |
1338 | | */ |
1339 | 0 | next = ctx->session_cache_head->next; |
1340 | 0 | while (next != (SSL_SESSION*)&(ctx->session_cache_tail)) { |
1341 | 0 | if (timeoutcmp(s, next) >= 0) { |
1342 | 0 | s->next = next; |
1343 | 0 | s->prev = next->prev; |
1344 | 0 | next->prev->next = s; |
1345 | 0 | next->prev = s; |
1346 | 0 | break; |
1347 | 0 | } |
1348 | 0 | next = next->next; |
1349 | 0 | } |
1350 | 0 | } |
1351 | 0 | } |
1352 | 0 | s->owner = ctx; |
1353 | 0 | } |
1354 | | |
1355 | | void SSL_CTX_sess_set_new_cb(SSL_CTX *ctx, |
1356 | | int (*cb) (struct ssl_st *ssl, SSL_SESSION *sess)) |
1357 | 0 | { |
1358 | 0 | ctx->new_session_cb = cb; |
1359 | 0 | } |
1360 | | |
1361 | 0 | int (*SSL_CTX_sess_get_new_cb(SSL_CTX *ctx)) (SSL *ssl, SSL_SESSION *sess) { |
1362 | 0 | return ctx->new_session_cb; |
1363 | 0 | } |
1364 | | |
1365 | | void SSL_CTX_sess_set_remove_cb(SSL_CTX *ctx, |
1366 | | void (*cb) (SSL_CTX *ctx, SSL_SESSION *sess)) |
1367 | 0 | { |
1368 | 0 | ctx->remove_session_cb = cb; |
1369 | 0 | } |
1370 | | |
1371 | | void (*SSL_CTX_sess_get_remove_cb(SSL_CTX *ctx)) (SSL_CTX *ctx, |
1372 | 0 | SSL_SESSION *sess) { |
1373 | 0 | return ctx->remove_session_cb; |
1374 | 0 | } |
1375 | | |
1376 | | void SSL_CTX_sess_set_get_cb(SSL_CTX *ctx, |
1377 | | SSL_SESSION *(*cb) (SSL *ssl, |
1378 | | const unsigned char *data, |
1379 | | int len, int *copy)) |
1380 | 0 | { |
1381 | 0 | ctx->get_session_cb = cb; |
1382 | 0 | } |
1383 | | |
1384 | | SSL_SESSION *(*SSL_CTX_sess_get_get_cb(SSL_CTX *ctx)) (SSL *ssl, |
1385 | | const unsigned char |
1386 | | *data, int len, |
1387 | 0 | int *copy) { |
1388 | 0 | return ctx->get_session_cb; |
1389 | 0 | } |
1390 | | |
1391 | | void SSL_CTX_set_info_callback(SSL_CTX *ctx, |
1392 | | void (*cb) (const SSL *ssl, int type, int val)) |
1393 | 0 | { |
1394 | 0 | ctx->info_callback = cb; |
1395 | 0 | } |
1396 | | |
1397 | | void (*SSL_CTX_get_info_callback(SSL_CTX *ctx)) (const SSL *ssl, int type, |
1398 | 0 | int val) { |
1399 | 0 | return ctx->info_callback; |
1400 | 0 | } |
1401 | | |
1402 | | void SSL_CTX_set_client_cert_cb(SSL_CTX *ctx, |
1403 | | int (*cb) (SSL *ssl, X509 **x509, |
1404 | | EVP_PKEY **pkey)) |
1405 | 0 | { |
1406 | 0 | ctx->client_cert_cb = cb; |
1407 | 0 | } |
1408 | | |
1409 | | int (*SSL_CTX_get_client_cert_cb(SSL_CTX *ctx)) (SSL *ssl, X509 **x509, |
1410 | 0 | EVP_PKEY **pkey) { |
1411 | 0 | return ctx->client_cert_cb; |
1412 | 0 | } |
1413 | | |
1414 | | void SSL_CTX_set_cookie_generate_cb(SSL_CTX *ctx, |
1415 | | int (*cb) (SSL *ssl, |
1416 | | unsigned char *cookie, |
1417 | | unsigned int *cookie_len)) |
1418 | 0 | { |
1419 | 0 | ctx->app_gen_cookie_cb = cb; |
1420 | 0 | } |
1421 | | |
1422 | | void SSL_CTX_set_cookie_verify_cb(SSL_CTX *ctx, |
1423 | | int (*cb) (SSL *ssl, |
1424 | | const unsigned char *cookie, |
1425 | | unsigned int cookie_len)) |
1426 | 0 | { |
1427 | 0 | ctx->app_verify_cookie_cb = cb; |
1428 | 0 | } |
1429 | | |
1430 | | int SSL_SESSION_set1_ticket_appdata(SSL_SESSION *ss, const void *data, size_t len) |
1431 | 0 | { |
1432 | 0 | OPENSSL_free(ss->ticket_appdata); |
1433 | 0 | ss->ticket_appdata_len = 0; |
1434 | 0 | if (data == NULL || len == 0) { |
1435 | 0 | ss->ticket_appdata = NULL; |
1436 | 0 | return 1; |
1437 | 0 | } |
1438 | 0 | ss->ticket_appdata = OPENSSL_memdup(data, len); |
1439 | 0 | if (ss->ticket_appdata != NULL) { |
1440 | 0 | ss->ticket_appdata_len = len; |
1441 | 0 | return 1; |
1442 | 0 | } |
1443 | 0 | return 0; |
1444 | 0 | } |
1445 | | |
1446 | | int SSL_SESSION_get0_ticket_appdata(SSL_SESSION *ss, void **data, size_t *len) |
1447 | 0 | { |
1448 | 0 | *data = ss->ticket_appdata; |
1449 | 0 | *len = ss->ticket_appdata_len; |
1450 | 0 | return 1; |
1451 | 0 | } |
1452 | | |
1453 | | void SSL_CTX_set_stateless_cookie_generate_cb( |
1454 | | SSL_CTX *ctx, |
1455 | | int (*cb) (SSL *ssl, |
1456 | | unsigned char *cookie, |
1457 | | size_t *cookie_len)) |
1458 | 0 | { |
1459 | 0 | ctx->gen_stateless_cookie_cb = cb; |
1460 | 0 | } |
1461 | | |
1462 | | void SSL_CTX_set_stateless_cookie_verify_cb( |
1463 | | SSL_CTX *ctx, |
1464 | | int (*cb) (SSL *ssl, |
1465 | | const unsigned char *cookie, |
1466 | | size_t cookie_len)) |
1467 | 0 | { |
1468 | 0 | ctx->verify_stateless_cookie_cb = cb; |
1469 | 0 | } |
1470 | | |
1471 | | IMPLEMENT_PEM_rw(SSL_SESSION, SSL_SESSION, PEM_STRING_SSL_SESSION, SSL_SESSION) Unexecuted instantiation: PEM_write_bio_SSL_SESSION Unexecuted instantiation: PEM_write_SSL_SESSION |