blob: c9f6b1aaa2c88073d0068c80dccc871e0929ee80 [file] [log] [blame]
henrike@webrtc.orgf0488722014-05-13 18:00:26 +00001/*
2 * Copyright 2008 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11#if HAVE_OPENSSL_SSL_H
12
13#include "webrtc/base/openssladapter.h"
14
15#if defined(WEBRTC_POSIX)
16#include <unistd.h>
17#endif
18
19// Must be included first before openssl headers.
20#include "webrtc/base/win32.h" // NOLINT
21
22#include <openssl/bio.h>
23#include <openssl/crypto.h>
24#include <openssl/err.h>
25#include <openssl/opensslv.h>
26#include <openssl/rand.h>
27#include <openssl/x509v3.h>
28
29#if HAVE_CONFIG_H
30#include "config.h"
31#endif // HAVE_CONFIG_H
32
33#include "webrtc/base/common.h"
34#include "webrtc/base/logging.h"
35#include "webrtc/base/openssl.h"
36#include "webrtc/base/sslroots.h"
37#include "webrtc/base/stringutils.h"
38
39// TODO: Use a nicer abstraction for mutex.
40
41#if defined(WEBRTC_WIN)
42 #define MUTEX_TYPE HANDLE
43 #define MUTEX_SETUP(x) (x) = CreateMutex(NULL, FALSE, NULL)
44 #define MUTEX_CLEANUP(x) CloseHandle(x)
45 #define MUTEX_LOCK(x) WaitForSingleObject((x), INFINITE)
46 #define MUTEX_UNLOCK(x) ReleaseMutex(x)
47 #define THREAD_ID GetCurrentThreadId()
48#elif defined(WEBRTC_POSIX)
49 #define MUTEX_TYPE pthread_mutex_t
50 #define MUTEX_SETUP(x) pthread_mutex_init(&(x), NULL)
51 #define MUTEX_CLEANUP(x) pthread_mutex_destroy(&(x))
52 #define MUTEX_LOCK(x) pthread_mutex_lock(&(x))
53 #define MUTEX_UNLOCK(x) pthread_mutex_unlock(&(x))
54 #define THREAD_ID pthread_self()
55#else
56 #error You must define mutex operations appropriate for your platform!
57#endif
58
59struct CRYPTO_dynlock_value {
60 MUTEX_TYPE mutex;
61};
62
63//////////////////////////////////////////////////////////////////////
64// SocketBIO
65//////////////////////////////////////////////////////////////////////
66
67static int socket_write(BIO* h, const char* buf, int num);
68static int socket_read(BIO* h, char* buf, int size);
69static int socket_puts(BIO* h, const char* str);
70static long socket_ctrl(BIO* h, int cmd, long arg1, void* arg2);
71static int socket_new(BIO* h);
72static int socket_free(BIO* data);
73
74static BIO_METHOD methods_socket = {
75 BIO_TYPE_BIO,
76 "socket",
77 socket_write,
78 socket_read,
79 socket_puts,
80 0,
81 socket_ctrl,
82 socket_new,
83 socket_free,
84 NULL,
85};
86
henrike@webrtc.orgc50bf7c2014-05-14 18:24:13 +000087static BIO_METHOD* BIO_s_socket2() { return(&methods_socket); }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000088
henrike@webrtc.orgc50bf7c2014-05-14 18:24:13 +000089static BIO* BIO_new_socket(rtc::AsyncSocket* socket) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000090 BIO* ret = BIO_new(BIO_s_socket2());
91 if (ret == NULL) {
92 return NULL;
93 }
94 ret->ptr = socket;
95 return ret;
96}
97
98static int socket_new(BIO* b) {
99 b->shutdown = 0;
100 b->init = 1;
101 b->num = 0; // 1 means socket closed
102 b->ptr = 0;
103 return 1;
104}
105
106static int socket_free(BIO* b) {
107 if (b == NULL)
108 return 0;
109 return 1;
110}
111
112static int socket_read(BIO* b, char* out, int outl) {
113 if (!out)
114 return -1;
115 rtc::AsyncSocket* socket = static_cast<rtc::AsyncSocket*>(b->ptr);
116 BIO_clear_retry_flags(b);
117 int result = socket->Recv(out, outl);
118 if (result > 0) {
119 return result;
120 } else if (result == 0) {
121 b->num = 1;
122 } else if (socket->IsBlocking()) {
123 BIO_set_retry_read(b);
124 }
125 return -1;
126}
127
128static int socket_write(BIO* b, const char* in, int inl) {
129 if (!in)
130 return -1;
131 rtc::AsyncSocket* socket = static_cast<rtc::AsyncSocket*>(b->ptr);
132 BIO_clear_retry_flags(b);
133 int result = socket->Send(in, inl);
134 if (result > 0) {
135 return result;
136 } else if (socket->IsBlocking()) {
137 BIO_set_retry_write(b);
138 }
139 return -1;
140}
141
142static int socket_puts(BIO* b, const char* str) {
143 return socket_write(b, str, strlen(str));
144}
145
146static long socket_ctrl(BIO* b, int cmd, long num, void* ptr) {
147 UNUSED(num);
148 UNUSED(ptr);
149
150 switch (cmd) {
151 case BIO_CTRL_RESET:
152 return 0;
153 case BIO_CTRL_EOF:
154 return b->num;
155 case BIO_CTRL_WPENDING:
156 case BIO_CTRL_PENDING:
157 return 0;
158 case BIO_CTRL_FLUSH:
159 return 1;
160 default:
161 return 0;
162 }
163}
164
165/////////////////////////////////////////////////////////////////////////////
166// OpenSSLAdapter
167/////////////////////////////////////////////////////////////////////////////
168
169namespace rtc {
170
171// This array will store all of the mutexes available to OpenSSL.
172static MUTEX_TYPE* mutex_buf = NULL;
173
174static void locking_function(int mode, int n, const char * file, int line) {
175 if (mode & CRYPTO_LOCK) {
176 MUTEX_LOCK(mutex_buf[n]);
177 } else {
178 MUTEX_UNLOCK(mutex_buf[n]);
179 }
180}
181
182static unsigned long id_function() { // NOLINT
183 // Use old-style C cast because THREAD_ID's type varies with the platform,
184 // in some cases requiring static_cast, and in others requiring
185 // reinterpret_cast.
186 return (unsigned long)THREAD_ID; // NOLINT
187}
188
189static CRYPTO_dynlock_value* dyn_create_function(const char* file, int line) {
190 CRYPTO_dynlock_value* value = new CRYPTO_dynlock_value;
191 if (!value)
192 return NULL;
193 MUTEX_SETUP(value->mutex);
194 return value;
195}
196
197static void dyn_lock_function(int mode, CRYPTO_dynlock_value* l,
198 const char* file, int line) {
199 if (mode & CRYPTO_LOCK) {
200 MUTEX_LOCK(l->mutex);
201 } else {
202 MUTEX_UNLOCK(l->mutex);
203 }
204}
205
206static void dyn_destroy_function(CRYPTO_dynlock_value* l,
207 const char* file, int line) {
208 MUTEX_CLEANUP(l->mutex);
209 delete l;
210}
211
212VerificationCallback OpenSSLAdapter::custom_verify_callback_ = NULL;
213
214bool OpenSSLAdapter::InitializeSSL(VerificationCallback callback) {
215 if (!InitializeSSLThread() || !SSL_library_init())
216 return false;
217#if !defined(ADDRESS_SANITIZER) || !defined(WEBRTC_MAC) || defined(WEBRTC_IOS)
218 // Loading the error strings crashes mac_asan. Omit this debugging aid there.
219 SSL_load_error_strings();
220#endif
221 ERR_load_BIO_strings();
222 OpenSSL_add_all_algorithms();
223 RAND_poll();
224 custom_verify_callback_ = callback;
225 return true;
226}
227
228bool OpenSSLAdapter::InitializeSSLThread() {
229 mutex_buf = new MUTEX_TYPE[CRYPTO_num_locks()];
230 if (!mutex_buf)
231 return false;
232 for (int i = 0; i < CRYPTO_num_locks(); ++i)
233 MUTEX_SETUP(mutex_buf[i]);
234
235 // we need to cast our id_function to return an unsigned long -- pthread_t is
236 // a pointer
237 CRYPTO_set_id_callback(id_function);
238 CRYPTO_set_locking_callback(locking_function);
239 CRYPTO_set_dynlock_create_callback(dyn_create_function);
240 CRYPTO_set_dynlock_lock_callback(dyn_lock_function);
241 CRYPTO_set_dynlock_destroy_callback(dyn_destroy_function);
242 return true;
243}
244
245bool OpenSSLAdapter::CleanupSSL() {
246 if (!mutex_buf)
247 return false;
248 CRYPTO_set_id_callback(NULL);
249 CRYPTO_set_locking_callback(NULL);
250 CRYPTO_set_dynlock_create_callback(NULL);
251 CRYPTO_set_dynlock_lock_callback(NULL);
252 CRYPTO_set_dynlock_destroy_callback(NULL);
253 for (int i = 0; i < CRYPTO_num_locks(); ++i)
254 MUTEX_CLEANUP(mutex_buf[i]);
255 delete [] mutex_buf;
256 mutex_buf = NULL;
257 return true;
258}
259
260OpenSSLAdapter::OpenSSLAdapter(AsyncSocket* socket)
261 : SSLAdapter(socket),
262 state_(SSL_NONE),
263 ssl_read_needs_write_(false),
264 ssl_write_needs_read_(false),
265 restartable_(false),
266 ssl_(NULL), ssl_ctx_(NULL),
267 custom_verification_succeeded_(false) {
268}
269
270OpenSSLAdapter::~OpenSSLAdapter() {
271 Cleanup();
272}
273
274int
275OpenSSLAdapter::StartSSL(const char* hostname, bool restartable) {
276 if (state_ != SSL_NONE)
277 return -1;
278
279 ssl_host_name_ = hostname;
280 restartable_ = restartable;
281
282 if (socket_->GetState() != Socket::CS_CONNECTED) {
283 state_ = SSL_WAIT;
284 return 0;
285 }
286
287 state_ = SSL_CONNECTING;
288 if (int err = BeginSSL()) {
289 Error("BeginSSL", err, false);
290 return err;
291 }
292
293 return 0;
294}
295
296int
297OpenSSLAdapter::BeginSSL() {
298 LOG(LS_INFO) << "BeginSSL: " << ssl_host_name_;
299 ASSERT(state_ == SSL_CONNECTING);
300
301 int err = 0;
302 BIO* bio = NULL;
303
304 // First set up the context
305 if (!ssl_ctx_)
306 ssl_ctx_ = SetupSSLContext();
307
308 if (!ssl_ctx_) {
309 err = -1;
310 goto ssl_error;
311 }
312
313 bio = BIO_new_socket(static_cast<AsyncSocketAdapter*>(socket_));
314 if (!bio) {
315 err = -1;
316 goto ssl_error;
317 }
318
319 ssl_ = SSL_new(ssl_ctx_);
320 if (!ssl_) {
321 err = -1;
322 goto ssl_error;
323 }
324
325 SSL_set_app_data(ssl_, this);
326
327 SSL_set_bio(ssl_, bio, bio);
328 SSL_set_mode(ssl_, SSL_MODE_ENABLE_PARTIAL_WRITE |
329 SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
330
331 // the SSL object owns the bio now
332 bio = NULL;
333
334 // Do the connect
335 err = ContinueSSL();
336 if (err != 0)
337 goto ssl_error;
338
339 return err;
340
341ssl_error:
342 Cleanup();
343 if (bio)
344 BIO_free(bio);
345
346 return err;
347}
348
349int
350OpenSSLAdapter::ContinueSSL() {
351 ASSERT(state_ == SSL_CONNECTING);
352
353 int code = SSL_connect(ssl_);
354 switch (SSL_get_error(ssl_, code)) {
355 case SSL_ERROR_NONE:
356 if (!SSLPostConnectionCheck(ssl_, ssl_host_name_.c_str())) {
357 LOG(LS_ERROR) << "TLS post connection check failed";
358 // make sure we close the socket
359 Cleanup();
360 // The connect failed so return -1 to shut down the socket
361 return -1;
362 }
363
364 state_ = SSL_CONNECTED;
365 AsyncSocketAdapter::OnConnectEvent(this);
366#if 0 // TODO: worry about this
367 // Don't let ourselves go away during the callbacks
368 PRefPtr<OpenSSLAdapter> lock(this);
369 LOG(LS_INFO) << " -- onStreamReadable";
370 AsyncSocketAdapter::OnReadEvent(this);
371 LOG(LS_INFO) << " -- onStreamWriteable";
372 AsyncSocketAdapter::OnWriteEvent(this);
373#endif
374 break;
375
376 case SSL_ERROR_WANT_READ:
377 case SSL_ERROR_WANT_WRITE:
378 break;
379
380 case SSL_ERROR_ZERO_RETURN:
381 default:
382 LOG(LS_WARNING) << "ContinueSSL -- error " << code;
383 return (code != 0) ? code : -1;
384 }
385
386 return 0;
387}
388
389void
390OpenSSLAdapter::Error(const char* context, int err, bool signal) {
391 LOG(LS_WARNING) << "OpenSSLAdapter::Error("
392 << context << ", " << err << ")";
393 state_ = SSL_ERROR;
394 SetError(err);
395 if (signal)
396 AsyncSocketAdapter::OnCloseEvent(this, err);
397}
398
399void
400OpenSSLAdapter::Cleanup() {
401 LOG(LS_INFO) << "Cleanup";
402
403 state_ = SSL_NONE;
404 ssl_read_needs_write_ = false;
405 ssl_write_needs_read_ = false;
406 custom_verification_succeeded_ = false;
407
408 if (ssl_) {
409 SSL_free(ssl_);
410 ssl_ = NULL;
411 }
412
413 if (ssl_ctx_) {
414 SSL_CTX_free(ssl_ctx_);
415 ssl_ctx_ = NULL;
416 }
417}
418
419//
420// AsyncSocket Implementation
421//
422
423int
424OpenSSLAdapter::Send(const void* pv, size_t cb) {
425 //LOG(LS_INFO) << "OpenSSLAdapter::Send(" << cb << ")";
426
427 switch (state_) {
428 case SSL_NONE:
429 return AsyncSocketAdapter::Send(pv, cb);
430
431 case SSL_WAIT:
432 case SSL_CONNECTING:
433 SetError(EWOULDBLOCK);
434 return SOCKET_ERROR;
435
436 case SSL_CONNECTED:
437 break;
438
439 case SSL_ERROR:
440 default:
441 return SOCKET_ERROR;
442 }
443
444 // OpenSSL will return an error if we try to write zero bytes
445 if (cb == 0)
446 return 0;
447
448 ssl_write_needs_read_ = false;
449
450 int code = SSL_write(ssl_, pv, cb);
451 switch (SSL_get_error(ssl_, code)) {
452 case SSL_ERROR_NONE:
453 //LOG(LS_INFO) << " -- success";
454 return code;
455 case SSL_ERROR_WANT_READ:
456 //LOG(LS_INFO) << " -- error want read";
457 ssl_write_needs_read_ = true;
458 SetError(EWOULDBLOCK);
459 break;
460 case SSL_ERROR_WANT_WRITE:
461 //LOG(LS_INFO) << " -- error want write";
462 SetError(EWOULDBLOCK);
463 break;
464 case SSL_ERROR_ZERO_RETURN:
465 //LOG(LS_INFO) << " -- remote side closed";
466 SetError(EWOULDBLOCK);
467 // do we need to signal closure?
468 break;
469 default:
470 //LOG(LS_INFO) << " -- error " << code;
471 Error("SSL_write", (code ? code : -1), false);
472 break;
473 }
474
475 return SOCKET_ERROR;
476}
477
478int
479OpenSSLAdapter::Recv(void* pv, size_t cb) {
480 //LOG(LS_INFO) << "OpenSSLAdapter::Recv(" << cb << ")";
481 switch (state_) {
482
483 case SSL_NONE:
484 return AsyncSocketAdapter::Recv(pv, cb);
485
486 case SSL_WAIT:
487 case SSL_CONNECTING:
488 SetError(EWOULDBLOCK);
489 return SOCKET_ERROR;
490
491 case SSL_CONNECTED:
492 break;
493
494 case SSL_ERROR:
495 default:
496 return SOCKET_ERROR;
497 }
498
499 // Don't trust OpenSSL with zero byte reads
500 if (cb == 0)
501 return 0;
502
503 ssl_read_needs_write_ = false;
504
505 int code = SSL_read(ssl_, pv, cb);
506 switch (SSL_get_error(ssl_, code)) {
507 case SSL_ERROR_NONE:
508 //LOG(LS_INFO) << " -- success";
509 return code;
510 case SSL_ERROR_WANT_READ:
511 //LOG(LS_INFO) << " -- error want read";
512 SetError(EWOULDBLOCK);
513 break;
514 case SSL_ERROR_WANT_WRITE:
515 //LOG(LS_INFO) << " -- error want write";
516 ssl_read_needs_write_ = true;
517 SetError(EWOULDBLOCK);
518 break;
519 case SSL_ERROR_ZERO_RETURN:
520 //LOG(LS_INFO) << " -- remote side closed";
521 SetError(EWOULDBLOCK);
522 // do we need to signal closure?
523 break;
524 default:
525 //LOG(LS_INFO) << " -- error " << code;
526 Error("SSL_read", (code ? code : -1), false);
527 break;
528 }
529
530 return SOCKET_ERROR;
531}
532
533int
534OpenSSLAdapter::Close() {
535 Cleanup();
536 state_ = restartable_ ? SSL_WAIT : SSL_NONE;
537 return AsyncSocketAdapter::Close();
538}
539
540Socket::ConnState
541OpenSSLAdapter::GetState() const {
542 //if (signal_close_)
543 // return CS_CONNECTED;
544 ConnState state = socket_->GetState();
545 if ((state == CS_CONNECTED)
546 && ((state_ == SSL_WAIT) || (state_ == SSL_CONNECTING)))
547 state = CS_CONNECTING;
548 return state;
549}
550
551void
552OpenSSLAdapter::OnConnectEvent(AsyncSocket* socket) {
553 LOG(LS_INFO) << "OpenSSLAdapter::OnConnectEvent";
554 if (state_ != SSL_WAIT) {
555 ASSERT(state_ == SSL_NONE);
556 AsyncSocketAdapter::OnConnectEvent(socket);
557 return;
558 }
559
560 state_ = SSL_CONNECTING;
561 if (int err = BeginSSL()) {
562 AsyncSocketAdapter::OnCloseEvent(socket, err);
563 }
564}
565
566void
567OpenSSLAdapter::OnReadEvent(AsyncSocket* socket) {
568 //LOG(LS_INFO) << "OpenSSLAdapter::OnReadEvent";
569
570 if (state_ == SSL_NONE) {
571 AsyncSocketAdapter::OnReadEvent(socket);
572 return;
573 }
574
575 if (state_ == SSL_CONNECTING) {
576 if (int err = ContinueSSL()) {
577 Error("ContinueSSL", err);
578 }
579 return;
580 }
581
582 if (state_ != SSL_CONNECTED)
583 return;
584
585 // Don't let ourselves go away during the callbacks
586 //PRefPtr<OpenSSLAdapter> lock(this); // TODO: fix this
587 if (ssl_write_needs_read_) {
588 //LOG(LS_INFO) << " -- onStreamWriteable";
589 AsyncSocketAdapter::OnWriteEvent(socket);
590 }
591
592 //LOG(LS_INFO) << " -- onStreamReadable";
593 AsyncSocketAdapter::OnReadEvent(socket);
594}
595
596void
597OpenSSLAdapter::OnWriteEvent(AsyncSocket* socket) {
598 //LOG(LS_INFO) << "OpenSSLAdapter::OnWriteEvent";
599
600 if (state_ == SSL_NONE) {
601 AsyncSocketAdapter::OnWriteEvent(socket);
602 return;
603 }
604
605 if (state_ == SSL_CONNECTING) {
606 if (int err = ContinueSSL()) {
607 Error("ContinueSSL", err);
608 }
609 return;
610 }
611
612 if (state_ != SSL_CONNECTED)
613 return;
614
615 // Don't let ourselves go away during the callbacks
616 //PRefPtr<OpenSSLAdapter> lock(this); // TODO: fix this
617
618 if (ssl_read_needs_write_) {
619 //LOG(LS_INFO) << " -- onStreamReadable";
620 AsyncSocketAdapter::OnReadEvent(socket);
621 }
622
623 //LOG(LS_INFO) << " -- onStreamWriteable";
624 AsyncSocketAdapter::OnWriteEvent(socket);
625}
626
627void
628OpenSSLAdapter::OnCloseEvent(AsyncSocket* socket, int err) {
629 LOG(LS_INFO) << "OpenSSLAdapter::OnCloseEvent(" << err << ")";
630 AsyncSocketAdapter::OnCloseEvent(socket, err);
631}
632
633// This code is taken from the "Network Security with OpenSSL"
634// sample in chapter 5
635
636bool OpenSSLAdapter::VerifyServerName(SSL* ssl, const char* host,
637 bool ignore_bad_cert) {
638 if (!host)
639 return false;
640
641 // Checking the return from SSL_get_peer_certificate here is not strictly
642 // necessary. With our setup, it is not possible for it to return
643 // NULL. However, it is good form to check the return.
644 X509* certificate = SSL_get_peer_certificate(ssl);
645 if (!certificate)
646 return false;
647
648 // Logging certificates is extremely verbose. So it is disabled by default.
649#ifdef LOG_CERTIFICATES
650 {
651 LOG(LS_INFO) << "Certificate from server:";
652 BIO* mem = BIO_new(BIO_s_mem());
653 X509_print_ex(mem, certificate, XN_FLAG_SEP_CPLUS_SPC, X509_FLAG_NO_HEADER);
654 BIO_write(mem, "\0", 1);
655 char* buffer;
656 BIO_get_mem_data(mem, &buffer);
657 LOG(LS_INFO) << buffer;
658 BIO_free(mem);
659
660 char* cipher_description =
661 SSL_CIPHER_description(SSL_get_current_cipher(ssl), NULL, 128);
662 LOG(LS_INFO) << "Cipher: " << cipher_description;
663 OPENSSL_free(cipher_description);
664 }
665#endif
666
667 bool ok = false;
668 int extension_count = X509_get_ext_count(certificate);
669 for (int i = 0; i < extension_count; ++i) {
670 X509_EXTENSION* extension = X509_get_ext(certificate, i);
671 int extension_nid = OBJ_obj2nid(X509_EXTENSION_get_object(extension));
672
673 if (extension_nid == NID_subject_alt_name) {
674 const X509V3_EXT_METHOD* meth = X509V3_EXT_get(extension);
675 if (!meth)
676 break;
677
678 void* ext_str = NULL;
679
680 // We assign this to a local variable, instead of passing the address
681 // directly to ASN1_item_d2i.
682 // See http://readlist.com/lists/openssl.org/openssl-users/0/4761.html.
683 unsigned char* ext_value_data = extension->value->data;
684
685 const unsigned char **ext_value_data_ptr =
686 (const_cast<const unsigned char **>(&ext_value_data));
687
688 if (meth->it) {
689 ext_str = ASN1_item_d2i(NULL, ext_value_data_ptr,
690 extension->value->length,
691 ASN1_ITEM_ptr(meth->it));
692 } else {
693 ext_str = meth->d2i(NULL, ext_value_data_ptr, extension->value->length);
694 }
695
696 STACK_OF(CONF_VALUE)* value = meth->i2v(meth, ext_str, NULL);
697 for (int j = 0; j < sk_CONF_VALUE_num(value); ++j) {
698 CONF_VALUE* nval = sk_CONF_VALUE_value(value, j);
699 // The value for nval can contain wildcards
700 if (!strcmp(nval->name, "DNS") && string_match(host, nval->value)) {
701 ok = true;
702 break;
703 }
704 }
705 sk_CONF_VALUE_pop_free(value, X509V3_conf_free);
706 value = NULL;
707
708 if (meth->it) {
709 ASN1_item_free(reinterpret_cast<ASN1_VALUE*>(ext_str),
710 ASN1_ITEM_ptr(meth->it));
711 } else {
712 meth->ext_free(ext_str);
713 }
714 ext_str = NULL;
715 }
716 if (ok)
717 break;
718 }
719
720 char data[256];
721 X509_name_st* subject;
722 if (!ok
723 && ((subject = X509_get_subject_name(certificate)) != NULL)
724 && (X509_NAME_get_text_by_NID(subject, NID_commonName,
725 data, sizeof(data)) > 0)) {
726 data[sizeof(data)-1] = 0;
727 if (_stricmp(data, host) == 0)
728 ok = true;
729 }
730
731 X509_free(certificate);
732
733 // This should only ever be turned on for debugging and development.
734 if (!ok && ignore_bad_cert) {
735 LOG(LS_WARNING) << "TLS certificate check FAILED. "
736 << "Allowing connection anyway.";
737 ok = true;
738 }
739
740 return ok;
741}
742
743bool OpenSSLAdapter::SSLPostConnectionCheck(SSL* ssl, const char* host) {
744 bool ok = VerifyServerName(ssl, host, ignore_bad_cert());
745
746 if (ok) {
747 ok = (SSL_get_verify_result(ssl) == X509_V_OK ||
748 custom_verification_succeeded_);
749 }
750
751 if (!ok && ignore_bad_cert()) {
752 LOG(LS_INFO) << "Other TLS post connection checks failed.";
753 ok = true;
754 }
755
756 return ok;
757}
758
759#if _DEBUG
760
761// We only use this for tracing and so it is only needed in debug mode
762
763void
764OpenSSLAdapter::SSLInfoCallback(const SSL* s, int where, int ret) {
765 const char* str = "undefined";
766 int w = where & ~SSL_ST_MASK;
767 if (w & SSL_ST_CONNECT) {
768 str = "SSL_connect";
769 } else if (w & SSL_ST_ACCEPT) {
770 str = "SSL_accept";
771 }
772 if (where & SSL_CB_LOOP) {
773 LOG(LS_INFO) << str << ":" << SSL_state_string_long(s);
774 } else if (where & SSL_CB_ALERT) {
775 str = (where & SSL_CB_READ) ? "read" : "write";
776 LOG(LS_INFO) << "SSL3 alert " << str
777 << ":" << SSL_alert_type_string_long(ret)
778 << ":" << SSL_alert_desc_string_long(ret);
779 } else if (where & SSL_CB_EXIT) {
780 if (ret == 0) {
781 LOG(LS_INFO) << str << ":failed in " << SSL_state_string_long(s);
782 } else if (ret < 0) {
783 LOG(LS_INFO) << str << ":error in " << SSL_state_string_long(s);
784 }
785 }
786}
787
788#endif // _DEBUG
789
790int
791OpenSSLAdapter::SSLVerifyCallback(int ok, X509_STORE_CTX* store) {
792#if _DEBUG
793 if (!ok) {
794 char data[256];
795 X509* cert = X509_STORE_CTX_get_current_cert(store);
796 int depth = X509_STORE_CTX_get_error_depth(store);
797 int err = X509_STORE_CTX_get_error(store);
798
799 LOG(LS_INFO) << "Error with certificate at depth: " << depth;
800 X509_NAME_oneline(X509_get_issuer_name(cert), data, sizeof(data));
801 LOG(LS_INFO) << " issuer = " << data;
802 X509_NAME_oneline(X509_get_subject_name(cert), data, sizeof(data));
803 LOG(LS_INFO) << " subject = " << data;
804 LOG(LS_INFO) << " err = " << err
805 << ":" << X509_verify_cert_error_string(err);
806 }
807#endif
808
809 // Get our stream pointer from the store
810 SSL* ssl = reinterpret_cast<SSL*>(
811 X509_STORE_CTX_get_ex_data(store,
812 SSL_get_ex_data_X509_STORE_CTX_idx()));
813
814 OpenSSLAdapter* stream =
815 reinterpret_cast<OpenSSLAdapter*>(SSL_get_app_data(ssl));
816
817 if (!ok && custom_verify_callback_) {
818 void* cert =
819 reinterpret_cast<void*>(X509_STORE_CTX_get_current_cert(store));
820 if (custom_verify_callback_(cert)) {
821 stream->custom_verification_succeeded_ = true;
822 LOG(LS_INFO) << "validated certificate using custom callback";
823 ok = true;
824 }
825 }
826
827 // Should only be used for debugging and development.
828 if (!ok && stream->ignore_bad_cert()) {
829 LOG(LS_WARNING) << "Ignoring cert error while verifying cert chain";
830 ok = 1;
831 }
832
833 return ok;
834}
835
836bool OpenSSLAdapter::ConfigureTrustedRootCertificates(SSL_CTX* ctx) {
837 // Add the root cert that we care about to the SSL context
838 int count_of_added_certs = 0;
839 for (int i = 0; i < ARRAY_SIZE(kSSLCertCertificateList); i++) {
840 const unsigned char* cert_buffer = kSSLCertCertificateList[i];
841 size_t cert_buffer_len = kSSLCertCertificateSizeList[i];
842 X509* cert = d2i_X509(NULL, &cert_buffer, cert_buffer_len);
843 if (cert) {
844 int return_value = X509_STORE_add_cert(SSL_CTX_get_cert_store(ctx), cert);
845 if (return_value == 0) {
846 LOG(LS_WARNING) << "Unable to add certificate.";
847 } else {
848 count_of_added_certs++;
849 }
850 X509_free(cert);
851 }
852 }
853 return count_of_added_certs > 0;
854}
855
856SSL_CTX*
857OpenSSLAdapter::SetupSSLContext() {
858 SSL_CTX* ctx = SSL_CTX_new(TLSv1_client_method());
859 if (ctx == NULL) {
860 unsigned long error = ERR_get_error(); // NOLINT: type used by OpenSSL.
861 LOG(LS_WARNING) << "SSL_CTX creation failed: "
862 << '"' << ERR_reason_error_string(error) << "\" "
863 << "(error=" << error << ')';
864 return NULL;
865 }
866 if (!ConfigureTrustedRootCertificates(ctx)) {
867 SSL_CTX_free(ctx);
868 return NULL;
869 }
870
871#ifdef _DEBUG
872 SSL_CTX_set_info_callback(ctx, SSLInfoCallback);
873#endif
874
875 SSL_CTX_set_verify(ctx, SSL_VERIFY_PEER, SSLVerifyCallback);
876 SSL_CTX_set_verify_depth(ctx, 4);
877 SSL_CTX_set_cipher_list(ctx, "ALL:!ADH:!LOW:!EXP:!MD5:@STRENGTH");
878
879 return ctx;
880}
881
882} // namespace rtc
883
884#endif // HAVE_OPENSSL_SSL_H