blob: 873672008e866f60d9c70ecd43e13e6c1c1864b9 [file] [log] [blame]
Adam Langley95c29f32014-06-20 12:00:00 -07001/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
2 * All rights reserved.
3 *
4 * This package is an SSL implementation written
5 * by Eric Young (eay@cryptsoft.com).
6 * The implementation was written so as to conform with Netscapes SSL.
7 *
8 * This library is free for commercial and non-commercial use as long as
9 * the following conditions are aheared to. The following conditions
10 * apply to all code found in this distribution, be it the RC4, RSA,
11 * lhash, DES, etc., code; not just the SSL code. The SSL documentation
12 * included with this distribution is covered by the same copyright terms
13 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
14 *
15 * Copyright remains Eric Young's, and as such any Copyright notices in
16 * the code are not to be removed.
17 * If this package is used in a product, Eric Young should be given attribution
18 * as the author of the parts of the library used.
19 * This can be in the form of a textual message at program startup or
20 * in documentation (online or textual) provided with the package.
21 *
22 * Redistribution and use in source and binary forms, with or without
23 * modification, are permitted provided that the following conditions
24 * are met:
25 * 1. Redistributions of source code must retain the copyright
26 * notice, this list of conditions and the following disclaimer.
27 * 2. Redistributions in binary form must reproduce the above copyright
28 * notice, this list of conditions and the following disclaimer in the
29 * documentation and/or other materials provided with the distribution.
30 * 3. All advertising materials mentioning features or use of this software
31 * must display the following acknowledgement:
32 * "This product includes cryptographic software written by
33 * Eric Young (eay@cryptsoft.com)"
34 * The word 'cryptographic' can be left out if the rouines from the library
35 * being used are not cryptographic related :-).
36 * 4. If you include any Windows specific code (or a derivative thereof) from
37 * the apps directory (application code) you must include an acknowledgement:
38 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
39 *
40 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
41 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
42 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
43 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
44 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
45 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
46 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
48 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
49 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
50 * SUCH DAMAGE.
51 *
52 * The licence and distribution terms for any publically available version or
53 * derivative of this code cannot be changed. i.e. this code cannot simply be
54 * copied and put under another distribution licence
55 * [including the GNU Public Licence.]
56 */
57/* ====================================================================
58 * Copyright (c) 1998-2007 The OpenSSL Project. All rights reserved.
59 *
60 * Redistribution and use in source and binary forms, with or without
61 * modification, are permitted provided that the following conditions
62 * are met:
63 *
64 * 1. Redistributions of source code must retain the above copyright
65 * notice, this list of conditions and the following disclaimer.
66 *
67 * 2. Redistributions in binary form must reproduce the above copyright
68 * notice, this list of conditions and the following disclaimer in
69 * the documentation and/or other materials provided with the
70 * distribution.
71 *
72 * 3. All advertising materials mentioning features or use of this
73 * software must display the following acknowledgment:
74 * "This product includes software developed by the OpenSSL Project
75 * for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
76 *
77 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
78 * endorse or promote products derived from this software without
79 * prior written permission. For written permission, please contact
80 * openssl-core@openssl.org.
81 *
82 * 5. Products derived from this software may not be called "OpenSSL"
83 * nor may "OpenSSL" appear in their names without prior written
84 * permission of the OpenSSL Project.
85 *
86 * 6. Redistributions of any form whatsoever must retain the following
87 * acknowledgment:
88 * "This product includes software developed by the OpenSSL Project
89 * for use in the OpenSSL Toolkit (http://www.openssl.org/)"
90 *
91 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
92 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
93 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
94 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
95 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
96 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
97 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
98 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
99 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
100 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
101 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
102 * OF THE POSSIBILITY OF SUCH DAMAGE.
103 * ====================================================================
104 *
105 * This product includes cryptographic software written by Eric Young
106 * (eay@cryptsoft.com). This product includes software written by Tim
107 * Hudson (tjh@cryptsoft.com).
108 *
109 */
110/* ====================================================================
111 * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
112 * ECC cipher suite support in OpenSSL originally developed by
113 * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project.
114 */
115/* ====================================================================
116 * Copyright 2005 Nokia. All rights reserved.
117 *
118 * The portions of the attached software ("Contribution") is developed by
119 * Nokia Corporation and is licensed pursuant to the OpenSSL open source
120 * license.
121 *
122 * The Contribution, originally written by Mika Kousa and Pasi Eronen of
123 * Nokia Corporation, consists of the "PSK" (Pre-Shared Key) ciphersuites
124 * support (see RFC 4279) to OpenSSL.
125 *
126 * No patent licenses or other rights except those expressly stated in
127 * the OpenSSL open source license shall be deemed granted or received
128 * expressly, by implication, estoppel, or otherwise.
129 *
130 * No assurances are provided by Nokia that the Contribution does not
131 * infringe the patent or other intellectual property rights of any third
132 * party or that the license provides you with all the necessary rights
133 * to make use of the Contribution.
134 *
135 * THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND. IN
136 * ADDITION TO THE DISCLAIMERS INCLUDED IN THE LICENSE, NOKIA
137 * SPECIFICALLY DISCLAIMS ANY LIABILITY FOR CLAIMS BROUGHT BY YOU OR ANY
138 * OTHER ENTITY BASED ON INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS OR
139 * OTHERWISE.
140 */
141
David Benjamin2ee94aa2015-04-07 22:38:30 -0400142#ifndef OPENSSL_HEADER_SSL_INTERNAL_H
143#define OPENSSL_HEADER_SSL_INTERNAL_H
Adam Langley95c29f32014-06-20 12:00:00 -0700144
145#include <openssl/base.h>
146
David Benjaminc9376992017-07-24 15:31:13 -0400147#include <stdlib.h>
148
David Benjamincfc11c22017-07-18 22:45:18 -0400149#include <type_traits>
150#include <utility>
151
Adam Langleyc9fb3752014-06-20 12:00:00 -0700152#include <openssl/aead.h>
David Benjamincfc11c22017-07-18 22:45:18 -0400153#include <openssl/err.h>
154#include <openssl/mem.h>
Adam Langley95c29f32014-06-20 12:00:00 -0700155#include <openssl/ssl.h>
156#include <openssl/stack.h>
157
Steven Valdezcb966542016-08-17 16:56:14 -0400158
David Benjamin4d2e7ce2015-05-08 13:29:45 -0400159#if defined(OPENSSL_WINDOWS)
160/* Windows defines struct timeval in winsock2.h. */
David Benjamina353cdb2016-06-09 16:48:33 -0400161OPENSSL_MSVC_PRAGMA(warning(push, 3))
David Benjamin4d2e7ce2015-05-08 13:29:45 -0400162#include <winsock2.h>
David Benjamina353cdb2016-06-09 16:48:33 -0400163OPENSSL_MSVC_PRAGMA(warning(pop))
David Benjamin4d2e7ce2015-05-08 13:29:45 -0400164#else
David Benjamin0abd6f22015-12-04 21:49:53 -0500165#include <sys/time.h>
David Benjamin4d2e7ce2015-05-08 13:29:45 -0400166#endif
167
Steven Valdez87eab492016-06-27 16:34:59 -0400168
David Benjamine39ac8f2017-07-20 12:22:21 -0400169typedef struct cert_st CERT;
170
David Benjamin86e95b82017-07-18 16:34:25 -0400171namespace bssl {
Adam Langleyfcf25832014-12-18 17:42:32 -0800172
David Benjamin86e95b82017-07-18 16:34:25 -0400173struct SSL_HANDSHAKE;
Steven Valdez8f36c512017-06-20 10:55:02 -0400174
David Benjamincfc11c22017-07-18 22:45:18 -0400175/* C++ utilities. */
176
177/* New behaves like |new| but uses |OPENSSL_malloc| for memory allocation. It
178 * returns nullptr on allocation error. It only implements single-object
179 * allocation and not new T[n].
180 *
181 * Note: unlike |new|, this does not support non-public constructors. */
182template <typename T, typename... Args>
183T *New(Args &&... args) {
184 T *t = reinterpret_cast<T *>(OPENSSL_malloc(sizeof(T)));
185 if (t == nullptr) {
186 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
187 return nullptr;
188 }
189 new (t) T(std::forward<Args>(args)...);
190 return t;
191}
192
193/* Delete behaves like |delete| but uses |OPENSSL_free| to release memory.
194 *
195 * Note: unlike |delete| this does not support non-public destructors. */
196template <typename T>
197void Delete(T *t) {
198 if (t != nullptr) {
199 t->~T();
200 OPENSSL_free(t);
201 }
202}
203
204/* Register all types with non-trivial destructors with |UniquePtr|. Types with
205 * trivial destructors may be C structs which require a |BORINGSSL_MAKE_DELETER|
206 * registration. */
207namespace internal {
208template <typename T>
209struct DeleterImpl<T, typename std::enable_if<
210 !std::is_trivially_destructible<T>::value>::type> {
211 static void Free(T *t) { Delete(t); }
212};
213}
214
215/* MakeUnique behaves like |std::make_unique| but returns nullptr on allocation
216 * error. */
217template <typename T, typename... Args>
218UniquePtr<T> MakeUnique(Args &&... args) {
219 return UniquePtr<T>(New<T>(std::forward<Args>(args)...));
220}
221
David Benjamin506be382017-07-25 15:18:18 -0400222#if defined(BORINGSSL_ALLOW_CXX_RUNTIME)
223#define HAS_VIRTUAL_DESTRUCTOR
224#define PURE_VIRTUAL = 0
225#else
David Benjaminc9376992017-07-24 15:31:13 -0400226/* HAS_VIRTUAL_DESTRUCTOR should be declared in any base class which defines a
227 * virtual destructor. This avoids a dependency on |_ZdlPv| and prevents the
228 * class from being used with |delete|. */
229#define HAS_VIRTUAL_DESTRUCTOR \
230 void operator delete(void *) { abort(); }
231
232/* PURE_VIRTUAL should be used instead of = 0 when defining pure-virtual
233 * functions. This avoids a dependency on |__cxa_pure_virtual| but loses
234 * compile-time checking. */
235#define PURE_VIRTUAL { abort(); }
David Benjamin506be382017-07-25 15:18:18 -0400236#endif
David Benjaminc9376992017-07-24 15:31:13 -0400237
David Benjamincfc11c22017-07-18 22:45:18 -0400238
Steven Valdez8f36c512017-06-20 10:55:02 -0400239/* Protocol versions.
240 *
241 * Due to DTLS's historical wire version differences and to support multiple
242 * variants of the same protocol during development, we maintain two notions of
243 * version.
244 *
245 * The "version" or "wire version" is the actual 16-bit value that appears on
246 * the wire. It uniquely identifies a version and is also used at API
247 * boundaries. The set of supported versions differs between TLS and DTLS. Wire
248 * versions are opaque values and may not be compared numerically.
249 *
250 * The "protocol version" identifies the high-level handshake variant being
251 * used. DTLS versions map to the corresponding TLS versions. Draft TLS 1.3
252 * variants all map to TLS 1.3. Protocol versions are sequential and may be
253 * compared numerically. */
254
255/* ssl_protocol_version_from_wire sets |*out| to the protocol version
256 * corresponding to wire version |version| and returns one. If |version| is not
257 * a valid TLS or DTLS version, it returns zero.
258 *
259 * Note this simultaneously handles both DTLS and TLS. Use one of the
260 * higher-level functions below for most operations. */
261int ssl_protocol_version_from_wire(uint16_t *out, uint16_t version);
262
263/* ssl_get_version_range sets |*out_min_version| and |*out_max_version| to the
264 * minimum and maximum enabled protocol versions, respectively. */
265int ssl_get_version_range(const SSL *ssl, uint16_t *out_min_version,
266 uint16_t *out_max_version);
267
268/* ssl_supports_version returns one if |hs| supports |version| and zero
269 * otherwise. */
270int ssl_supports_version(SSL_HANDSHAKE *hs, uint16_t version);
271
272/* ssl_add_supported_versions writes the supported versions of |hs| to |cbb|, in
273 * decreasing preference order. */
274int ssl_add_supported_versions(SSL_HANDSHAKE *hs, CBB *cbb);
275
276/* ssl_negotiate_version negotiates a common version based on |hs|'s preferences
277 * and the peer preference list in |peer_versions|. On success, it returns one
278 * and sets |*out_version| to the selected version. Otherwise, it returns zero
279 * and sets |*out_alert| to an alert to send. */
280int ssl_negotiate_version(SSL_HANDSHAKE *hs, uint8_t *out_alert,
281 uint16_t *out_version, const CBS *peer_versions);
282
283/* ssl3_protocol_version returns |ssl|'s protocol version. It is an error to
284 * call this function before the version is determined. */
285uint16_t ssl3_protocol_version(const SSL *ssl);
286
287
David Benjamin71f07942015-04-08 02:36:59 -0400288/* Cipher suites. */
289
290/* Bits for |algorithm_mkey| (key exchange algorithm). */
David Benjamine64d2c72017-07-12 16:31:08 -0400291#define SSL_kRSA 0x00000001u
292#define SSL_kECDHE 0x00000002u
David Benjamin71f07942015-04-08 02:36:59 -0400293/* SSL_kPSK is only set for plain PSK, not ECDHE_PSK. */
David Benjamine64d2c72017-07-12 16:31:08 -0400294#define SSL_kPSK 0x00000004u
295#define SSL_kGENERIC 0x00000008u
David Benjamin71f07942015-04-08 02:36:59 -0400296
297/* Bits for |algorithm_auth| (server authentication). */
David Benjamine64d2c72017-07-12 16:31:08 -0400298#define SSL_aRSA 0x00000001u
299#define SSL_aECDSA 0x00000002u
David Benjamin71f07942015-04-08 02:36:59 -0400300/* SSL_aPSK is set for both PSK and ECDHE_PSK. */
David Benjamine64d2c72017-07-12 16:31:08 -0400301#define SSL_aPSK 0x00000004u
302#define SSL_aGENERIC 0x00000008u
David Benjamin71f07942015-04-08 02:36:59 -0400303
David Benjaminc032dfa2016-05-12 14:54:57 -0400304#define SSL_aCERT (SSL_aRSA | SSL_aECDSA)
305
David Benjamin71f07942015-04-08 02:36:59 -0400306/* Bits for |algorithm_enc| (symmetric encryption). */
David Benjamine64d2c72017-07-12 16:31:08 -0400307#define SSL_3DES 0x00000001u
308#define SSL_AES128 0x00000002u
309#define SSL_AES256 0x00000004u
310#define SSL_AES128GCM 0x00000008u
311#define SSL_AES256GCM 0x00000010u
312#define SSL_eNULL 0x00000020u
313#define SSL_CHACHA20POLY1305 0x00000040u
David Benjamin71f07942015-04-08 02:36:59 -0400314
315#define SSL_AES (SSL_AES128 | SSL_AES256 | SSL_AES128GCM | SSL_AES256GCM)
316
317/* Bits for |algorithm_mac| (symmetric authentication). */
David Benjamine64d2c72017-07-12 16:31:08 -0400318#define SSL_SHA1 0x00000001u
319#define SSL_SHA256 0x00000002u
320#define SSL_SHA384 0x00000004u
David Benjamin71f07942015-04-08 02:36:59 -0400321/* SSL_AEAD is set for all AEADs. */
David Benjamine64d2c72017-07-12 16:31:08 -0400322#define SSL_AEAD 0x00000008u
David Benjamin71f07942015-04-08 02:36:59 -0400323
David Benjamin5055c762015-08-04 09:24:14 -0400324/* Bits for |algorithm_prf| (handshake digest). */
David Benjaminb0883312015-08-06 09:54:13 -0400325#define SSL_HANDSHAKE_MAC_DEFAULT 0x1
326#define SSL_HANDSHAKE_MAC_SHA256 0x2
327#define SSL_HANDSHAKE_MAC_SHA384 0x4
David Benjamin71f07942015-04-08 02:36:59 -0400328
329/* SSL_MAX_DIGEST is the number of digest types which exist. When adding a new
330 * one, update the table in ssl_cipher.c. */
331#define SSL_MAX_DIGEST 4
332
David Benjamin71f07942015-04-08 02:36:59 -0400333/* ssl_cipher_get_evp_aead sets |*out_aead| to point to the correct EVP_AEAD
334 * object for |cipher| protocol version |version|. It sets |*out_mac_secret_len|
335 * and |*out_fixed_iv_len| to the MAC key length and fixed IV length,
336 * respectively. The MAC key length is zero except for legacy block and stream
337 * ciphers. It returns 1 on success and 0 on error. */
338int ssl_cipher_get_evp_aead(const EVP_AEAD **out_aead,
339 size_t *out_mac_secret_len,
Steven Valdez2f3404b2017-05-24 16:54:35 -0400340 size_t *out_fixed_iv_len, const SSL_CIPHER *cipher,
341 uint16_t version, int is_dtls);
David Benjamin71f07942015-04-08 02:36:59 -0400342
David Benjaminb0883312015-08-06 09:54:13 -0400343/* ssl_get_handshake_digest returns the |EVP_MD| corresponding to
Steven Valdez908ac192017-01-12 13:17:07 -0500344 * |algorithm_prf| and the |version|. */
345const EVP_MD *ssl_get_handshake_digest(uint32_t algorithm_prf,
346 uint16_t version);
David Benjamin71f07942015-04-08 02:36:59 -0400347
348/* ssl_create_cipher_list evaluates |rule_str| according to the ciphers in
349 * |ssl_method|. It sets |*out_cipher_list| to a newly-allocated
Matthew Braithwaite6ad20dc2017-02-21 16:41:33 -0800350 * |ssl_cipher_preference_list_st| containing the result. It returns 1 on
351 * success and 0 on failure. If |strict| is true, nonsense will be rejected. If
352 * false, nonsense will be silently ignored. An empty result is considered an
353 * error regardless of |strict|. */
354int ssl_create_cipher_list(
355 const SSL_PROTOCOL_METHOD *ssl_method,
356 struct ssl_cipher_preference_list_st **out_cipher_list,
357 const char *rule_str, int strict);
David Benjamin71f07942015-04-08 02:36:59 -0400358
David Benjamina1c90a52015-05-30 17:03:14 -0400359/* ssl_cipher_get_value returns the cipher suite id of |cipher|. */
360uint16_t ssl_cipher_get_value(const SSL_CIPHER *cipher);
361
David Benjamin69522112017-03-28 15:38:29 -0500362/* ssl_cipher_auth_mask_for_key returns the mask of cipher |algorithm_auth|
363 * values suitable for use with |key| in TLS 1.2 and below. */
364uint32_t ssl_cipher_auth_mask_for_key(const EVP_PKEY *key);
David Benjamin71f07942015-04-08 02:36:59 -0400365
David Benjaminc032dfa2016-05-12 14:54:57 -0400366/* ssl_cipher_uses_certificate_auth returns one if |cipher| authenticates the
367 * server and, optionally, the client with a certificate. Otherwise it returns
368 * zero. */
369int ssl_cipher_uses_certificate_auth(const SSL_CIPHER *cipher);
David Benjamin71f07942015-04-08 02:36:59 -0400370
371/* ssl_cipher_requires_server_key_exchange returns 1 if |cipher| requires a
372 * ServerKeyExchange message. Otherwise it returns 0.
373 *
David Benjaminc032dfa2016-05-12 14:54:57 -0400374 * This function may return zero while still allowing |cipher| an optional
375 * ServerKeyExchange. This is the case for plain PSK ciphers. */
David Benjamin71f07942015-04-08 02:36:59 -0400376int ssl_cipher_requires_server_key_exchange(const SSL_CIPHER *cipher);
377
David Benjaminb8d28cf2015-07-28 21:34:45 -0400378/* ssl_cipher_get_record_split_len, for TLS 1.0 CBC mode ciphers, returns the
379 * length of an encrypted 1-byte record, for use in record-splitting. Otherwise
380 * it returns zero. */
381size_t ssl_cipher_get_record_split_len(const SSL_CIPHER *cipher);
382
David Benjamin71f07942015-04-08 02:36:59 -0400383
Steven Valdez908ac192017-01-12 13:17:07 -0500384/* Transcript layer. */
385
David Benjamin6dc8bf62017-07-19 16:38:21 -0400386/* SSLTranscript maintains the handshake transcript as a combination of a
Steven Valdez908ac192017-01-12 13:17:07 -0500387 * buffer and running hash. */
David Benjamin6dc8bf62017-07-19 16:38:21 -0400388class SSLTranscript {
389 public:
390 SSLTranscript();
391 ~SSLTranscript();
392
393 /* Init initializes the handshake transcript. If called on an existing
394 * transcript, it resets the transcript and hash. It returns true on success
395 * and false on failure. */
396 bool Init();
397
398 /* InitHash initializes the handshake hash based on the PRF and contents of
399 * the handshake transcript. Subsequent calls to |Update| will update the
400 * rolling hash. It returns one on success and zero on failure. It is an error
401 * to call this function after the handshake buffer is released. */
402 bool InitHash(uint16_t version, int algorithm_prf);
403
404 const uint8_t *buffer_data() const {
405 return reinterpret_cast<const uint8_t *>(buffer_->data);
406 }
407 size_t buffer_len() const { return buffer_->length; }
408
409 /* FreeBuffer releases the handshake buffer. Subsequent calls to
410 * |Update| will not update the handshake buffer. */
411 void FreeBuffer();
412
413 /* DigestLen returns the length of the PRF hash. */
414 size_t DigestLen() const;
415
416 /* Digest returns the PRF hash. For TLS 1.1 and below, this is
417 * |EVP_md5_sha1|. */
418 const EVP_MD *Digest() const;
419
420 /* Update adds |in| to the handshake buffer and handshake hash, whichever is
421 * enabled. It returns true on success and false on failure. */
422 bool Update(const uint8_t *in, size_t in_len);
423
424 /* GetHash writes the handshake hash to |out| which must have room for at
425 * least |DigestLen| bytes. On success, it returns true and sets |*out_len| to
426 * the number of bytes written. Otherwise, it returns false. */
427 bool GetHash(uint8_t *out, size_t *out_len);
428
429 /* GetSSL3CertVerifyHash writes the SSL 3.0 CertificateVerify hash into the
430 * bytes pointed to by |out| and writes the number of bytes to
431 * |*out_len|. |out| must have room for |EVP_MAX_MD_SIZE| bytes. It returns
432 * one on success and zero on failure. */
433 bool GetSSL3CertVerifyHash(uint8_t *out, size_t *out_len,
434 const SSL_SESSION *session,
435 uint16_t signature_algorithm);
436
437 /* GetFinishedMAC computes the MAC for the Finished message into the bytes
438 * pointed by |out| and writes the number of bytes to |*out_len|. |out| must
439 * have room for |EVP_MAX_MD_SIZE| bytes. It returns true on success and false
440 * on failure. */
441 bool GetFinishedMAC(uint8_t *out, size_t *out_len, const SSL_SESSION *session,
442 bool from_server, uint16_t version);
443
444 private:
445 /* buffer_, if non-null, contains the handshake transcript. */
446 UniquePtr<BUF_MEM> buffer_;
Steven Valdez908ac192017-01-12 13:17:07 -0500447 /* hash, if initialized with an |EVP_MD|, maintains the handshake hash. For
448 * TLS 1.1 and below, it is the SHA-1 half. */
David Benjamin6dc8bf62017-07-19 16:38:21 -0400449 ScopedEVP_MD_CTX hash_;
Steven Valdez908ac192017-01-12 13:17:07 -0500450 /* md5, if initialized with an |EVP_MD|, maintains the MD5 half of the
451 * handshake hash for TLS 1.1 and below. */
David Benjamin6dc8bf62017-07-19 16:38:21 -0400452 ScopedEVP_MD_CTX md5_;
David Benjamin86e95b82017-07-18 16:34:25 -0400453};
Steven Valdez908ac192017-01-12 13:17:07 -0500454
Steven Valdez908ac192017-01-12 13:17:07 -0500455/* tls1_prf computes the PRF function for |ssl|. It writes |out_len| bytes to
456 * |out|, using |secret| as the secret and |label| as the label. |seed1| and
457 * |seed2| are concatenated to form the seed parameter. It returns one on
458 * success and zero on failure. */
459int tls1_prf(const EVP_MD *digest, uint8_t *out, size_t out_len,
460 const uint8_t *secret, size_t secret_len, const char *label,
461 size_t label_len, const uint8_t *seed1, size_t seed1_len,
462 const uint8_t *seed2, size_t seed2_len);
463
464
David Benjamin31a07792015-03-03 14:20:26 -0500465/* Encryption layer. */
466
David Benjamincfc11c22017-07-18 22:45:18 -0400467/* SSLAEADContext contains information about an AEAD that is being used to
468 * encrypt an SSL connection. */
469class SSLAEADContext {
470 public:
471 SSLAEADContext(uint16_t version, const SSL_CIPHER *cipher);
472 ~SSLAEADContext();
473 SSLAEADContext(const SSLAEADContext &&) = delete;
474 SSLAEADContext &operator=(const SSLAEADContext &&) = delete;
475
476 /* CreateNullCipher creates an |SSLAEADContext| for the null cipher. */
477 static UniquePtr<SSLAEADContext> CreateNullCipher();
478
479 /* Create creates an |SSLAEADContext| using the supplied key material. It
480 * returns nullptr on error. Only one of |Open| or |Seal| may be used with the
481 * resulting object, depending on |direction|. |version| is the normalized
482 * protocol version, so DTLS 1.0 is represented as 0x0301, not 0xffef. */
483 static UniquePtr<SSLAEADContext> Create(
484 enum evp_aead_direction_t direction, uint16_t version, int is_dtls,
485 const SSL_CIPHER *cipher, const uint8_t *enc_key, size_t enc_key_len,
486 const uint8_t *mac_key, size_t mac_key_len, const uint8_t *fixed_iv,
487 size_t fixed_iv_len);
488
489 uint16_t version() const { return version_; }
490 const SSL_CIPHER *cipher() const { return cipher_; }
491
492 /* is_null_cipher returns true if this is the null cipher. */
493 bool is_null_cipher() const { return !cipher_; }
494
495 /* ExplicitNonceLen returns the length of the explicit nonce. */
496 size_t ExplicitNonceLen() const;
497
498 /* MaxOverhead returns the maximum overhead of calling |Seal|. */
499 size_t MaxOverhead() const;
500
501 /* MaxSuffixLen returns the maximum suffix length written by |SealScatter|.
502 * |extra_in_len| should equal the argument of the same name passed to
503 * |SealScatter|. */
504 size_t MaxSuffixLen(size_t extra_in_len) const;
505
506 /* Open authenticates and decrypts |in_len| bytes from |in| in-place. On
507 * success, it sets |*out| to the plaintext in |in| and returns true.
508 * Otherwise, it returns false. The output will always be |ExplicitNonceLen|
509 * bytes ahead of |in|. */
510 bool Open(CBS *out, uint8_t type, uint16_t wire_version,
511 const uint8_t seqnum[8], uint8_t *in, size_t in_len);
512
513 /* Seal encrypts and authenticates |in_len| bytes from |in| and writes the
514 * result to |out|. It returns true on success and false on error.
515 *
516 * If |in| and |out| alias then |out| + |ExplicitNonceLen| must be == |in|. */
517 bool Seal(uint8_t *out, size_t *out_len, size_t max_out, uint8_t type,
518 uint16_t wire_version, const uint8_t seqnum[8], const uint8_t *in,
519 size_t in_len);
520
521 /* SealScatter encrypts and authenticates |in_len| bytes from |in| and splits
522 * the result between |out_prefix|, |out| and |out_suffix|. It returns one on
523 * success and zero on error.
524 *
525 * On successful return, exactly |ExplicitNonceLen| bytes are written to
526 * |out_prefix|, |in_len| bytes to |out|, and up to |MaxSuffixLen| bytes to
527 * |out_suffix|. |*out_suffix_len| is set to the actual number of bytes
528 * written to |out_suffix|.
529 *
530 * |extra_in| may point to an additional plaintext buffer. If present,
531 * |extra_in_len| additional bytes are encrypted and authenticated, and the
532 * ciphertext is written to the beginning of |out_suffix|. |MaxSuffixLen|
533 * may be used to size |out_suffix| accordingly.
534 *
535 * If |in| and |out| alias then |out| must be == |in|. Other arguments may not
536 * alias anything. */
537 bool SealScatter(uint8_t *out_prefix, uint8_t *out, uint8_t *out_suffix,
538 size_t *out_suffix_len, size_t max_out_suffix_len,
539 uint8_t type, uint16_t wire_version, const uint8_t seqnum[8],
540 const uint8_t *in, size_t in_len, const uint8_t *extra_in,
541 size_t extra_in_len);
542
543 bool GetIV(const uint8_t **out_iv, size_t *out_iv_len) const;
544
545 private:
546 /* GetAdditionalData writes the additional data into |out| and returns the
547 * number of bytes written. */
548 size_t GetAdditionalData(uint8_t out[13], uint8_t type, uint16_t wire_version,
549 const uint8_t seqnum[8], size_t plaintext_len);
550
551 const SSL_CIPHER *cipher_;
552 ScopedEVP_AEAD_CTX ctx_;
553 /* fixed_nonce_ contains any bytes of the nonce that are fixed for all
David Benjamin31a07792015-03-03 14:20:26 -0500554 * records. */
David Benjamincfc11c22017-07-18 22:45:18 -0400555 uint8_t fixed_nonce_[12];
556 uint8_t fixed_nonce_len_ = 0, variable_nonce_len_ = 0;
557 /* version_ is the protocol version that should be used with this AEAD. */
558 uint16_t version_;
559 /* variable_nonce_included_in_record_ is true if the variable nonce
David Benjamin31a07792015-03-03 14:20:26 -0500560 * for a record is included as a prefix before the ciphertext. */
David Benjamincfc11c22017-07-18 22:45:18 -0400561 bool variable_nonce_included_in_record_ : 1;
562 /* random_variable_nonce_ is true if the variable nonce is
David Benjamin31a07792015-03-03 14:20:26 -0500563 * randomly generated, rather than derived from the sequence
564 * number. */
David Benjamincfc11c22017-07-18 22:45:18 -0400565 bool random_variable_nonce_ : 1;
566 /* omit_length_in_ad_ is true if the length should be omitted in the
David Benjamin31a07792015-03-03 14:20:26 -0500567 * AEAD's ad parameter. */
David Benjamincfc11c22017-07-18 22:45:18 -0400568 bool omit_length_in_ad_ : 1;
569 /* omit_version_in_ad_ is true if the version should be omitted
David Benjamin31a07792015-03-03 14:20:26 -0500570 * in the AEAD's ad parameter. */
David Benjamincfc11c22017-07-18 22:45:18 -0400571 bool omit_version_in_ad_ : 1;
572 /* omit_ad_ is true if the AEAD's ad parameter should be omitted. */
573 bool omit_ad_ : 1;
574 /* xor_fixed_nonce_ is true if the fixed nonce should be XOR'd into the
David Benjamin13414b32015-12-09 23:02:39 -0500575 * variable nonce rather than prepended. */
David Benjamincfc11c22017-07-18 22:45:18 -0400576 bool xor_fixed_nonce_ : 1;
David Benjamin86e95b82017-07-18 16:34:25 -0400577};
David Benjamin31a07792015-03-03 14:20:26 -0500578
David Benjamin31a07792015-03-03 14:20:26 -0500579
David Benjamin7446a3b2015-07-25 17:53:57 -0400580/* DTLS replay bitmap. */
581
582/* DTLS1_BITMAP maintains a sliding window of 64 sequence numbers to detect
583 * replayed packets. It should be initialized by zeroing every field. */
David Benjamin86e95b82017-07-18 16:34:25 -0400584struct DTLS1_BITMAP {
David Benjamin7446a3b2015-07-25 17:53:57 -0400585 /* map is a bit mask of the last 64 sequence numbers. Bit
586 * |1<<i| corresponds to |max_seq_num - i|. */
587 uint64_t map;
588 /* max_seq_num is the largest sequence number seen so far as a 64-bit
589 * integer. */
590 uint64_t max_seq_num;
David Benjamin86e95b82017-07-18 16:34:25 -0400591};
David Benjamin7446a3b2015-07-25 17:53:57 -0400592
593
David Benjaminb8d28cf2015-07-28 21:34:45 -0400594/* Record layer. */
595
David Benjamin1db21562015-12-25 15:11:39 -0500596/* ssl_record_sequence_update increments the sequence number in |seq|. It
597 * returns one on success and zero on wraparound. */
598int ssl_record_sequence_update(uint8_t *seq, size_t seq_len);
599
David Benjaminb8d28cf2015-07-28 21:34:45 -0400600/* ssl_record_prefix_len returns the length of the prefix before the ciphertext
601 * of a record for |ssl|.
602 *
603 * TODO(davidben): Expose this as part of public API once the high-level
604 * buffer-free APIs are available. */
605size_t ssl_record_prefix_len(const SSL *ssl);
606
607enum ssl_open_record_t {
608 ssl_open_record_success,
609 ssl_open_record_discard,
610 ssl_open_record_partial,
David Benjamin728f3542016-06-02 15:42:01 -0400611 ssl_open_record_close_notify,
612 ssl_open_record_fatal_alert,
David Benjaminb8d28cf2015-07-28 21:34:45 -0400613 ssl_open_record_error,
614};
615
David Benjamina7810c12016-06-06 18:54:51 -0400616/* tls_open_record decrypts a record from |in| in-place.
David Benjaminb8d28cf2015-07-28 21:34:45 -0400617 *
David Benjaminb8d28cf2015-07-28 21:34:45 -0400618 * If the input did not contain a complete record, it returns
619 * |ssl_open_record_partial|. It sets |*out_consumed| to the total number of
620 * bytes necessary. It is guaranteed that a successful call to |tls_open_record|
621 * will consume at least that many bytes.
622 *
David Benjamin728f3542016-06-02 15:42:01 -0400623 * Otherwise, it sets |*out_consumed| to the number of bytes of input
624 * consumed. Note that input may be consumed on all return codes if a record was
625 * decrypted.
626 *
627 * On success, it returns |ssl_open_record_success|. It sets |*out_type| to the
David Benjamina7810c12016-06-06 18:54:51 -0400628 * record type and |*out| to the record body in |in|. Note that |*out| may be
629 * empty.
David Benjamin728f3542016-06-02 15:42:01 -0400630 *
631 * If a record was successfully processed but should be discarded, it returns
632 * |ssl_open_record_discard|.
633 *
634 * If a record was successfully processed but is a close_notify or fatal alert,
635 * it returns |ssl_open_record_close_notify| or |ssl_open_record_fatal_alert|.
636 *
David Benjaminb8d28cf2015-07-28 21:34:45 -0400637 * On failure, it returns |ssl_open_record_error| and sets |*out_alert| to an
David Benjamina7810c12016-06-06 18:54:51 -0400638 * alert to emit. */
639enum ssl_open_record_t tls_open_record(SSL *ssl, uint8_t *out_type, CBS *out,
640 size_t *out_consumed, uint8_t *out_alert,
641 uint8_t *in, size_t in_len);
David Benjaminb8d28cf2015-07-28 21:34:45 -0400642
643/* dtls_open_record implements |tls_open_record| for DTLS. It never returns
644 * |ssl_open_record_partial| but otherwise behaves analogously. */
David Benjamina7810c12016-06-06 18:54:51 -0400645enum ssl_open_record_t dtls_open_record(SSL *ssl, uint8_t *out_type, CBS *out,
646 size_t *out_consumed,
647 uint8_t *out_alert, uint8_t *in,
648 size_t in_len);
David Benjaminb8d28cf2015-07-28 21:34:45 -0400649
David Benjamin1a01e1f2016-06-08 18:31:24 -0400650/* ssl_seal_align_prefix_len returns the length of the prefix before the start
651 * of the bulk of the ciphertext when sealing a record with |ssl|. Callers may
652 * use this to align buffers.
653 *
654 * Note when TLS 1.0 CBC record-splitting is enabled, this includes the one byte
David Benjamina772b162017-01-24 17:51:33 -0500655 * record and is the offset into second record's ciphertext. Thus sealing a
656 * small record may result in a smaller output than this value.
David Benjaminb8d28cf2015-07-28 21:34:45 -0400657 *
David Benjamina772b162017-01-24 17:51:33 -0500658 * TODO(davidben): Is this alignment valuable? Record-splitting makes this a
659 * mess. */
David Benjamin1a01e1f2016-06-08 18:31:24 -0400660size_t ssl_seal_align_prefix_len(const SSL *ssl);
David Benjaminb8d28cf2015-07-28 21:34:45 -0400661
David Benjaminb8d28cf2015-07-28 21:34:45 -0400662/* tls_seal_record seals a new record of type |type| and body |in| and writes it
663 * to |out|. At most |max_out| bytes will be written. It returns one on success
664 * and zero on error. If enabled, |tls_seal_record| implements TLS 1.0 CBC 1/n-1
665 * record splitting and may write two records concatenated.
666 *
David Benjamin1a01e1f2016-06-08 18:31:24 -0400667 * For a large record, the bulk of the ciphertext will begin
668 * |ssl_seal_align_prefix_len| bytes into out. Aligning |out| appropriately may
David Benjaminda863602016-11-04 15:44:28 -0400669 * improve performance. It writes at most |in_len| + |SSL_max_seal_overhead|
David Benjamin1a01e1f2016-06-08 18:31:24 -0400670 * bytes to |out|.
David Benjaminb8d28cf2015-07-28 21:34:45 -0400671 *
David Benjamin1a01e1f2016-06-08 18:31:24 -0400672 * |in| and |out| may not alias. */
David Benjaminb8d28cf2015-07-28 21:34:45 -0400673int tls_seal_record(SSL *ssl, uint8_t *out, size_t *out_len, size_t max_out,
674 uint8_t type, const uint8_t *in, size_t in_len);
675
676enum dtls1_use_epoch_t {
677 dtls1_use_previous_epoch,
678 dtls1_use_current_epoch,
679};
680
David Benjamin1a999cf2017-01-03 10:30:35 -0500681/* dtls_max_seal_overhead returns the maximum overhead, in bytes, of sealing a
682 * record. */
683size_t dtls_max_seal_overhead(const SSL *ssl, enum dtls1_use_epoch_t use_epoch);
684
David Benjamina772b162017-01-24 17:51:33 -0500685/* dtls_seal_prefix_len returns the number of bytes of prefix to reserve in
686 * front of the plaintext when sealing a record in-place. */
687size_t dtls_seal_prefix_len(const SSL *ssl, enum dtls1_use_epoch_t use_epoch);
688
David Benjaminb8d28cf2015-07-28 21:34:45 -0400689/* dtls_seal_record implements |tls_seal_record| for DTLS. |use_epoch| selects
David Benjamina772b162017-01-24 17:51:33 -0500690 * which epoch's cipher state to use. Unlike |tls_seal_record|, |in| and |out|
691 * may alias but, if they do, |in| must be exactly |dtls_seal_prefix_len| bytes
692 * ahead of |out|. */
David Benjaminb8d28cf2015-07-28 21:34:45 -0400693int dtls_seal_record(SSL *ssl, uint8_t *out, size_t *out_len, size_t max_out,
694 uint8_t type, const uint8_t *in, size_t in_len,
695 enum dtls1_use_epoch_t use_epoch);
696
David Benjamin728f3542016-06-02 15:42:01 -0400697/* ssl_process_alert processes |in| as an alert and updates |ssl|'s shutdown
698 * state. It returns one of |ssl_open_record_discard|, |ssl_open_record_error|,
699 * |ssl_open_record_close_notify|, or |ssl_open_record_fatal_alert| as
700 * appropriate. */
701enum ssl_open_record_t ssl_process_alert(SSL *ssl, uint8_t *out_alert,
702 const uint8_t *in, size_t in_len);
703
David Benjaminb8d28cf2015-07-28 21:34:45 -0400704
David Benjaminb4d65fd2015-05-29 17:11:21 -0400705/* Private key operations. */
706
nagendra modadugu601448a2015-07-24 09:31:31 -0700707/* ssl_has_private_key returns one if |ssl| has a private key
708 * configured and zero otherwise. */
David Benjamin32a66d52016-07-13 22:03:11 -0400709int ssl_has_private_key(const SSL *ssl);
nagendra modadugu601448a2015-07-24 09:31:31 -0700710
David Benjamin44148742017-06-17 13:20:59 -0400711/* ssl_private_key_* perform the corresponding operation on
712 * |SSL_PRIVATE_KEY_METHOD|. If there is a custom private key configured, they
713 * call the corresponding function or |complete| depending on whether there is a
714 * pending operation. Otherwise, they implement the operation with
715 * |EVP_PKEY|. */
David Benjaminb4d65fd2015-05-29 17:11:21 -0400716
David Benjaminb4d65fd2015-05-29 17:11:21 -0400717enum ssl_private_key_result_t ssl_private_key_sign(
David Benjamin44148742017-06-17 13:20:59 -0400718 SSL_HANDSHAKE *hs, uint8_t *out, size_t *out_len, size_t max_out,
Steven Valdezf0451ca2016-06-29 13:16:27 -0400719 uint16_t signature_algorithm, const uint8_t *in, size_t in_len);
David Benjaminb4d65fd2015-05-29 17:11:21 -0400720
nagendra modadugu3398dbf2015-08-07 14:07:52 -0700721enum ssl_private_key_result_t ssl_private_key_decrypt(
David Benjamin44148742017-06-17 13:20:59 -0400722 SSL_HANDSHAKE *hs, uint8_t *out, size_t *out_len, size_t max_out,
nagendra modadugu3398dbf2015-08-07 14:07:52 -0700723 const uint8_t *in, size_t in_len);
724
David Benjamina232a712017-03-30 15:51:53 -0500725/* ssl_private_key_supports_signature_algorithm returns one if |hs|'s private
David Benjamin6114c3c2017-03-30 16:37:54 -0500726 * key supports |sigalg| and zero otherwise. */
David Benjamina232a712017-03-30 15:51:53 -0500727int ssl_private_key_supports_signature_algorithm(SSL_HANDSHAKE *hs,
David Benjamin6114c3c2017-03-30 16:37:54 -0500728 uint16_t sigalg);
David Benjamin1fb125c2016-07-08 18:52:12 -0700729
Steven Valdez2b8415e2016-06-30 13:27:23 -0400730/* ssl_public_key_verify verifies that the |signature| is valid for the public
731 * key |pkey| and input |in|, using the |signature_algorithm| specified. */
732int ssl_public_key_verify(
733 SSL *ssl, const uint8_t *signature, size_t signature_len,
734 uint16_t signature_algorithm, EVP_PKEY *pkey,
735 const uint8_t *in, size_t in_len);
David Benjaminb4d65fd2015-05-29 17:11:21 -0400736
David Benjamin1fb125c2016-07-08 18:52:12 -0700737
Adam Langley09505632015-07-30 18:10:13 -0700738/* Custom extensions */
739
David Benjamin86e95b82017-07-18 16:34:25 -0400740} // namespace bssl
741
742/* |SSL_CUSTOM_EXTENSION| is a structure that contains information about
743 * custom-extension callbacks. It is defined unnamespaced for compatibility with
744 * |STACK_OF(SSL_CUSTOM_EXTENSION)|. */
745typedef struct ssl_custom_extension {
Adam Langley09505632015-07-30 18:10:13 -0700746 SSL_custom_ext_add_cb add_callback;
747 void *add_arg;
748 SSL_custom_ext_free_cb free_callback;
749 SSL_custom_ext_parse_cb parse_callback;
750 void *parse_arg;
751 uint16_t value;
David Benjamin86e95b82017-07-18 16:34:25 -0400752} SSL_CUSTOM_EXTENSION;
Adam Langley09505632015-07-30 18:10:13 -0700753
David Benjamin01f8a8c2017-04-15 18:12:55 -0400754DEFINE_STACK_OF(SSL_CUSTOM_EXTENSION)
755
David Benjamin86e95b82017-07-18 16:34:25 -0400756namespace bssl {
757
758void SSL_CUSTOM_EXTENSION_free(SSL_CUSTOM_EXTENSION *custom_extension);
759
David Benjamin2bd19172016-11-17 16:47:15 +0900760int custom_ext_add_clienthello(SSL_HANDSHAKE *hs, CBB *extensions);
761int custom_ext_parse_serverhello(SSL_HANDSHAKE *hs, int *out_alert,
762 uint16_t value, const CBS *extension);
763int custom_ext_parse_clienthello(SSL_HANDSHAKE *hs, int *out_alert,
764 uint16_t value, const CBS *extension);
765int custom_ext_add_serverhello(SSL_HANDSHAKE *hs, CBB *extensions);
Adam Langley09505632015-07-30 18:10:13 -0700766
767
David Benjaminc642aca2017-07-19 23:28:43 -0400768/* Key shares. */
David Benjamin4298d772015-12-19 00:18:25 -0500769
David Benjaminc642aca2017-07-19 23:28:43 -0400770/* SSLKeyShare abstracts over Diffie-Hellman-like key exchanges. */
771class SSLKeyShare {
772 public:
773 virtual ~SSLKeyShare() {}
David Benjaminc9376992017-07-24 15:31:13 -0400774 HAS_VIRTUAL_DESTRUCTOR
David Benjaminb9179092016-10-26 13:47:33 -0400775
David Benjaminc642aca2017-07-19 23:28:43 -0400776 /* Create returns a SSLKeyShare instance for use with group |group_id| or
777 * nullptr on error. */
778 static UniquePtr<SSLKeyShare> Create(uint16_t group_id);
David Benjamin4298d772015-12-19 00:18:25 -0500779
David Benjaminc642aca2017-07-19 23:28:43 -0400780 /* GroupID returns the group ID. */
David Benjaminc9376992017-07-24 15:31:13 -0400781 virtual uint16_t GroupID() const PURE_VIRTUAL;
David Benjamin4298d772015-12-19 00:18:25 -0500782
David Benjaminc642aca2017-07-19 23:28:43 -0400783 /* Offer generates a keypair and writes the public value to
784 * |out_public_key|. It returns true on success and false on error. */
David Benjaminc9376992017-07-24 15:31:13 -0400785 virtual bool Offer(CBB *out_public_key) PURE_VIRTUAL;
David Benjamin4298d772015-12-19 00:18:25 -0500786
David Benjaminc642aca2017-07-19 23:28:43 -0400787 /* Accept performs a key exchange against the |peer_key| generated by |offer|.
788 * On success, it returns true, writes the public value to |out_public_key|,
Matt Braithwaitef4ce8e52016-05-16 14:27:14 -0700789 * and sets |*out_secret| and |*out_secret_len| to a newly-allocated buffer
790 * containing the shared secret. The caller must release this buffer with
David Benjaminc642aca2017-07-19 23:28:43 -0400791 * |OPENSSL_free|. On failure, it returns false and sets |*out_alert| to an
792 * alert to send to the peer.
793 *
794 * The default implementation calls |Offer| and then |Finish|, assuming a key
795 * exchange protocol where the peers are symmetric.
796 *
797 * TODO(davidben): out_secret should be a smart pointer. */
798 virtual bool Accept(CBB *out_public_key, uint8_t **out_secret,
799 size_t *out_secret_len, uint8_t *out_alert,
800 const uint8_t *peer_key, size_t peer_key_len);
Matt Braithwaitef4ce8e52016-05-16 14:27:14 -0700801
David Benjaminc642aca2017-07-19 23:28:43 -0400802 /* Finish performs a key exchange against the |peer_key| generated by
803 * |Accept|. On success, it returns true and sets |*out_secret| and
Matt Braithwaitef4ce8e52016-05-16 14:27:14 -0700804 * |*out_secret_len| to a newly-allocated buffer containing the shared
805 * secret. The caller must release this buffer with |OPENSSL_free|. On
806 * failure, it returns zero and sets |*out_alert| to an alert to send to the
David Benjaminc642aca2017-07-19 23:28:43 -0400807 * peer.
808 *
809 * TODO(davidben): out_secret should be a smart pointer. */
810 virtual bool Finish(uint8_t **out_secret, size_t *out_secret_len,
811 uint8_t *out_alert, const uint8_t *peer_key,
David Benjaminc9376992017-07-24 15:31:13 -0400812 size_t peer_key_len) PURE_VIRTUAL;
David Benjaminb9179092016-10-26 13:47:33 -0400813};
David Benjamin4298d772015-12-19 00:18:25 -0500814
Steven Valdezce902a92016-05-17 11:47:53 -0400815/* ssl_nid_to_group_id looks up the group corresponding to |nid|. On success, it
816 * sets |*out_group_id| to the group ID and returns one. Otherwise, it returns
David Benjamin4298d772015-12-19 00:18:25 -0500817 * zero. */
Steven Valdezce902a92016-05-17 11:47:53 -0400818int ssl_nid_to_group_id(uint16_t *out_group_id, int nid);
David Benjamin4298d772015-12-19 00:18:25 -0500819
Alessandro Ghedini5fd18072016-09-28 21:04:25 +0100820/* ssl_name_to_group_id looks up the group corresponding to the |name| string
821 * of length |len|. On success, it sets |*out_group_id| to the group ID and
822 * returns one. Otherwise, it returns zero. */
823int ssl_name_to_group_id(uint16_t *out_group_id, const char *name, size_t len);
824
David Benjamin4298d772015-12-19 00:18:25 -0500825
David Benjamin060cfb02016-05-12 00:43:05 -0400826/* Handshake messages. */
827
David Benjamin29a83c52016-06-17 19:12:54 -0400828/* SSL_MAX_HANDSHAKE_FLIGHT is the number of messages, including
829 * ChangeCipherSpec, in the longest handshake flight. Currently this is the
830 * client's second leg in a full handshake when client certificates, NPN, and
831 * Channel ID, are all enabled. */
832#define SSL_MAX_HANDSHAKE_FLIGHT 7
833
David Benjamin060cfb02016-05-12 00:43:05 -0400834/* ssl_max_handshake_message_len returns the maximum number of bytes permitted
835 * in a handshake message for |ssl|. */
836size_t ssl_max_handshake_message_len(const SSL *ssl);
837
David Benjaminec847ce2016-06-17 19:30:47 -0400838/* dtls_clear_incoming_messages releases all buffered incoming messages. */
839void dtls_clear_incoming_messages(SSL *ssl);
840
David Benjamin61672812016-07-14 23:10:43 -0400841/* dtls_has_incoming_messages returns one if there are buffered incoming
842 * messages ahead of the current message and zero otherwise. */
843int dtls_has_incoming_messages(const SSL *ssl);
844
David Benjamin86e95b82017-07-18 16:34:25 -0400845struct DTLS_OUTGOING_MESSAGE {
David Benjamin29a83c52016-06-17 19:12:54 -0400846 uint8_t *data;
847 uint32_t len;
848 uint16_t epoch;
849 char is_ccs;
David Benjamin86e95b82017-07-18 16:34:25 -0400850};
David Benjamin29a83c52016-06-17 19:12:54 -0400851
852/* dtls_clear_outgoing_messages releases all buffered outgoing messages. */
853void dtls_clear_outgoing_messages(SSL *ssl);
854
David Benjamin060cfb02016-05-12 00:43:05 -0400855
David Benjamin4e9cc712016-06-01 20:16:03 -0400856/* Callbacks. */
857
858/* ssl_do_info_callback calls |ssl|'s info callback, if set. */
859void ssl_do_info_callback(const SSL *ssl, int type, int value);
860
861/* ssl_do_msg_callback calls |ssl|'s message callback, if set. */
David Benjaminc0279992016-09-19 20:15:07 -0400862void ssl_do_msg_callback(SSL *ssl, int is_write, int content_type,
David Benjamin4e9cc712016-06-01 20:16:03 -0400863 const void *buf, size_t len);
864
865
David Benjaminb8d28cf2015-07-28 21:34:45 -0400866/* Transport buffers. */
867
868/* ssl_read_buffer returns a pointer to contents of the read buffer. */
869uint8_t *ssl_read_buffer(SSL *ssl);
870
871/* ssl_read_buffer_len returns the length of the read buffer. */
872size_t ssl_read_buffer_len(const SSL *ssl);
873
874/* ssl_read_buffer_extend_to extends the read buffer to the desired length. For
875 * TLS, it reads to the end of the buffer until the buffer is |len| bytes
876 * long. For DTLS, it reads a new packet and ignores |len|. It returns one on
877 * success, zero on EOF, and a negative number on error.
878 *
879 * It is an error to call |ssl_read_buffer_extend_to| in DTLS when the buffer is
880 * non-empty. */
881int ssl_read_buffer_extend_to(SSL *ssl, size_t len);
882
883/* ssl_read_buffer_consume consumes |len| bytes from the read buffer. It
884 * advances the data pointer and decrements the length. The memory consumed will
885 * remain valid until the next call to |ssl_read_buffer_extend| or it is
886 * discarded with |ssl_read_buffer_discard|. */
887void ssl_read_buffer_consume(SSL *ssl, size_t len);
888
889/* ssl_read_buffer_discard discards the consumed bytes from the read buffer. If
890 * the buffer is now empty, it releases memory used by it. */
891void ssl_read_buffer_discard(SSL *ssl);
892
893/* ssl_read_buffer_clear releases all memory associated with the read buffer and
894 * zero-initializes it. */
895void ssl_read_buffer_clear(SSL *ssl);
896
897/* ssl_write_buffer_is_pending returns one if the write buffer has pending data
898 * and zero if is empty. */
899int ssl_write_buffer_is_pending(const SSL *ssl);
900
901/* ssl_write_buffer_init initializes the write buffer. On success, it sets
902 * |*out_ptr| to the start of the write buffer with space for up to |max_len|
903 * bytes. It returns one on success and zero on failure. Call
904 * |ssl_write_buffer_set_len| to complete initialization. */
905int ssl_write_buffer_init(SSL *ssl, uint8_t **out_ptr, size_t max_len);
906
907/* ssl_write_buffer_set_len is called after |ssl_write_buffer_init| to complete
908 * initialization after |len| bytes are written to the buffer. */
909void ssl_write_buffer_set_len(SSL *ssl, size_t len);
910
911/* ssl_write_buffer_flush flushes the write buffer to the transport. It returns
912 * one on success and <= 0 on error. For DTLS, whether or not the write
913 * succeeds, the write buffer will be cleared. */
914int ssl_write_buffer_flush(SSL *ssl);
915
916/* ssl_write_buffer_clear releases all memory associated with the write buffer
917 * and zero-initializes it. */
918void ssl_write_buffer_clear(SSL *ssl);
919
920
David Benjamin75836432016-06-17 18:48:29 -0400921/* Certificate functions. */
922
David Benjamin32a66d52016-07-13 22:03:11 -0400923/* ssl_has_certificate returns one if a certificate and private key are
924 * configured and zero otherwise. */
925int ssl_has_certificate(const SSL *ssl);
926
David Benjamin5c900c82016-07-13 23:03:26 -0400927/* ssl_parse_cert_chain parses a certificate list from |cbs| in the format used
David Benjamine664a532017-07-20 20:19:36 -0400928 * by a TLS Certificate message. On success, it advances |cbs| and returns
929 * true. Otherwise, it returns false and sets |*out_alert| to an alert to send
930 * to the peer.
Adam Langleyd5157222016-12-12 11:37:43 -0800931 *
David Benjamine664a532017-07-20 20:19:36 -0400932 * If the list is non-empty then |*out_chain| and |*out_pubkey| will be set to
933 * the certificate chain and the leaf certificate's public key
934 * respectively. Otherwise, both will be set to nullptr.
Adam Langleyd5157222016-12-12 11:37:43 -0800935 *
936 * If the list is non-empty and |out_leaf_sha256| is non-NULL, it writes the
937 * SHA-256 hash of the leaf to |out_leaf_sha256|. */
David Benjamine664a532017-07-20 20:19:36 -0400938bool ssl_parse_cert_chain(uint8_t *out_alert,
939 UniquePtr<STACK_OF(CRYPTO_BUFFER)> *out_chain,
940 UniquePtr<EVP_PKEY> *out_pubkey,
941 uint8_t *out_leaf_sha256, CBS *cbs,
942 CRYPTO_BUFFER_POOL *pool);
David Benjamin5c900c82016-07-13 23:03:26 -0400943
David Benjamin32a66d52016-07-13 22:03:11 -0400944/* ssl_add_cert_chain adds |ssl|'s certificate chain to |cbb| in the format used
945 * by a TLS Certificate message. If there is no certificate chain, it emits an
946 * empty certificate list. It returns one on success and zero on error. */
947int ssl_add_cert_chain(SSL *ssl, CBB *cbb);
948
Adam Langley05672202016-12-13 12:05:49 -0800949/* ssl_cert_check_digital_signature_key_usage parses the DER-encoded, X.509
950 * certificate in |in| and returns one if doesn't specify a key usage or, if it
951 * does, if it includes digitalSignature. Otherwise it pushes to the error
952 * queue and returns zero. */
953int ssl_cert_check_digital_signature_key_usage(const CBS *in);
954
Adam Langleyd5157222016-12-12 11:37:43 -0800955/* ssl_cert_parse_pubkey extracts the public key from the DER-encoded, X.509
David Benjamin31b0c9b2017-07-20 14:49:15 -0400956 * certificate in |in|. It returns an allocated |EVP_PKEY| or else returns
957 * nullptr and pushes to the error queue. */
958UniquePtr<EVP_PKEY> ssl_cert_parse_pubkey(const CBS *in);
Adam Langleyd5157222016-12-12 11:37:43 -0800959
David Benjamine0332e82016-07-13 22:40:36 -0400960/* ssl_parse_client_CA_list parses a CA list from |cbs| in the format used by a
961 * TLS CertificateRequest message. On success, it returns a newly-allocated
David Benjamin31b0c9b2017-07-20 14:49:15 -0400962 * |CRYPTO_BUFFER| list and advances |cbs|. Otherwise, it returns nullptr and
963 * sets |*out_alert| to an alert to send to the peer. */
964UniquePtr<STACK_OF(CRYPTO_BUFFER)> ssl_parse_client_CA_list(SSL *ssl,
965 uint8_t *out_alert,
966 CBS *cbs);
David Benjamine0332e82016-07-13 22:40:36 -0400967
David Benjamin32a66d52016-07-13 22:03:11 -0400968/* ssl_add_client_CA_list adds the configured CA list to |cbb| in the format
969 * used by a TLS CertificateRequest message. It returns one on success and zero
970 * on error. */
971int ssl_add_client_CA_list(SSL *ssl, CBB *cbb);
972
Adam Langley05672202016-12-13 12:05:49 -0800973/* ssl_check_leaf_certificate returns one if |pkey| and |leaf| are suitable as
David Benjamin45738dd2017-02-09 20:01:26 -0500974 * a server's leaf certificate for |hs|. Otherwise, it returns zero and pushes
Adam Langley05672202016-12-13 12:05:49 -0800975 * an error on the error queue. */
David Benjamin45738dd2017-02-09 20:01:26 -0500976int ssl_check_leaf_certificate(SSL_HANDSHAKE *hs, EVP_PKEY *pkey,
Adam Langley05672202016-12-13 12:05:49 -0800977 const CRYPTO_BUFFER *leaf);
Steven Valdezbf5aa842016-07-15 07:07:40 -0400978
David Benjamina232a712017-03-30 15:51:53 -0500979/* ssl_on_certificate_selected is called once the certificate has been selected.
980 * It finalizes the certificate and initializes |hs->local_pubkey|. It returns
981 * one on success and zero on error. */
982int ssl_on_certificate_selected(SSL_HANDSHAKE *hs);
983
David Benjamin75836432016-06-17 18:48:29 -0400984
Steven Valdez143e8b32016-07-11 13:19:03 -0400985/* TLS 1.3 key derivation. */
986
987/* tls13_init_key_schedule initializes the handshake hash and key derivation
Steven Valdeza833c352016-11-01 13:39:36 -0400988 * state. The cipher suite and PRF hash must have been selected at this point.
989 * It returns one on success and zero on error. */
David Benjamin6e4fc332016-11-17 16:43:08 +0900990int tls13_init_key_schedule(SSL_HANDSHAKE *hs);
Steven Valdez143e8b32016-07-11 13:19:03 -0400991
Steven Valdez2d850622017-01-11 11:34:52 -0500992/* tls13_init_early_key_schedule initializes the handshake hash and key
993 * derivation state from the resumption secret to derive the early secrets. It
994 * returns one on success and zero on error. */
995int tls13_init_early_key_schedule(SSL_HANDSHAKE *hs);
996
Steven Valdez143e8b32016-07-11 13:19:03 -0400997/* tls13_advance_key_schedule incorporates |in| into the key schedule with
998 * HKDF-Extract. It returns one on success and zero on error. */
David Benjamin6e4fc332016-11-17 16:43:08 +0900999int tls13_advance_key_schedule(SSL_HANDSHAKE *hs, const uint8_t *in,
1000 size_t len);
Steven Valdez143e8b32016-07-11 13:19:03 -04001001
Steven Valdeza833c352016-11-01 13:39:36 -04001002/* tls13_set_traffic_key sets the read or write traffic keys to
1003 * |traffic_secret|. It returns one on success and zero on error. */
1004int tls13_set_traffic_key(SSL *ssl, enum evp_aead_direction_t direction,
Steven Valdez143e8b32016-07-11 13:19:03 -04001005 const uint8_t *traffic_secret,
1006 size_t traffic_secret_len);
1007
Steven Valdez2d850622017-01-11 11:34:52 -05001008/* tls13_derive_early_secrets derives the early traffic secret. It returns one
1009 * on success and zero on error. */
1010int tls13_derive_early_secrets(SSL_HANDSHAKE *hs);
1011
Steven Valdez4cb84942016-12-16 11:29:28 -05001012/* tls13_derive_handshake_secrets derives the handshake traffic secret. It
1013 * returns one on success and zero on error. */
1014int tls13_derive_handshake_secrets(SSL_HANDSHAKE *hs);
Steven Valdez143e8b32016-07-11 13:19:03 -04001015
Steven Valdez1dc53d22016-07-26 12:27:38 -04001016/* tls13_rotate_traffic_key derives the next read or write traffic secret. It
1017 * returns one on success and zero on error. */
1018int tls13_rotate_traffic_key(SSL *ssl, enum evp_aead_direction_t direction);
1019
Steven Valdeza833c352016-11-01 13:39:36 -04001020/* tls13_derive_application_secrets derives the initial application data traffic
1021 * and exporter secrets based on the handshake transcripts and |master_secret|.
1022 * It returns one on success and zero on error. */
David Benjamin6e4fc332016-11-17 16:43:08 +09001023int tls13_derive_application_secrets(SSL_HANDSHAKE *hs);
Steven Valdez143e8b32016-07-11 13:19:03 -04001024
Steven Valdeza833c352016-11-01 13:39:36 -04001025/* tls13_derive_resumption_secret derives the |resumption_secret|. */
David Benjamin6e4fc332016-11-17 16:43:08 +09001026int tls13_derive_resumption_secret(SSL_HANDSHAKE *hs);
Steven Valdez143e8b32016-07-11 13:19:03 -04001027
Steven Valdeza833c352016-11-01 13:39:36 -04001028/* tls13_export_keying_material provides an exporter interface to use the
Steven Valdez143e8b32016-07-11 13:19:03 -04001029 * |exporter_secret|. */
1030int tls13_export_keying_material(SSL *ssl, uint8_t *out, size_t out_len,
1031 const char *label, size_t label_len,
1032 const uint8_t *context, size_t context_len,
1033 int use_context);
1034
1035/* tls13_finished_mac calculates the MAC of the handshake transcript to verify
1036 * the integrity of the Finished message, and stores the result in |out| and
1037 * length in |out_len|. |is_server| is 1 if this is for the Server Finished and
1038 * 0 for the Client Finished. */
David Benjamin6e4fc332016-11-17 16:43:08 +09001039int tls13_finished_mac(SSL_HANDSHAKE *hs, uint8_t *out,
1040 size_t *out_len, int is_server);
Steven Valdez143e8b32016-07-11 13:19:03 -04001041
Steven Valdeza833c352016-11-01 13:39:36 -04001042/* tls13_write_psk_binder calculates the PSK binder value and replaces the last
1043 * bytes of |msg| with the resulting value. It returns 1 on success, and 0 on
1044 * failure. */
Steven Valdez908ac192017-01-12 13:17:07 -05001045int tls13_write_psk_binder(SSL_HANDSHAKE *hs, uint8_t *msg, size_t len);
Steven Valdez4aa154e2016-07-29 14:32:55 -04001046
Steven Valdeza833c352016-11-01 13:39:36 -04001047/* tls13_verify_psk_binder verifies that the handshake transcript, truncated
1048 * up to the binders has a valid signature using the value of |session|'s
1049 * resumption secret. It returns 1 on success, and 0 on failure. */
Steven Valdez908ac192017-01-12 13:17:07 -05001050int tls13_verify_psk_binder(SSL_HANDSHAKE *hs, SSL_SESSION *session,
1051 CBS *binders);
Steven Valdez4aa154e2016-07-29 14:32:55 -04001052
Steven Valdez143e8b32016-07-11 13:19:03 -04001053
1054/* Handshake functions. */
1055
1056enum ssl_hs_wait_t {
1057 ssl_hs_error,
1058 ssl_hs_ok,
1059 ssl_hs_read_message,
Steven Valdez143e8b32016-07-11 13:19:03 -04001060 ssl_hs_flush,
David Benjaminf2401eb2016-07-18 22:25:05 +02001061 ssl_hs_flush_and_read_message,
Steven Valdez143e8b32016-07-11 13:19:03 -04001062 ssl_hs_x509_lookup,
Nick Harper60a85cb2016-09-23 16:25:11 -07001063 ssl_hs_channel_id_lookup,
Steven Valdez143e8b32016-07-11 13:19:03 -04001064 ssl_hs_private_key_operation,
David Benjamin707af292017-03-10 17:47:18 -05001065 ssl_hs_pending_ticket,
Steven Valdeze831a812017-03-09 14:56:07 -05001066 ssl_hs_early_data_rejected,
Steven Valdez2d850622017-01-11 11:34:52 -05001067 ssl_hs_read_end_of_early_data,
Steven Valdez520e1222017-06-13 12:45:25 -04001068 ssl_hs_read_change_cipher_spec,
David Benjamin3a1dd462017-07-11 16:13:10 -04001069 ssl_hs_certificate_verify,
Steven Valdez143e8b32016-07-11 13:19:03 -04001070};
1071
David Benjamin86e95b82017-07-18 16:34:25 -04001072struct SSL_HANDSHAKE {
David Benjamin8f288862017-07-20 14:01:44 -04001073 explicit SSL_HANDSHAKE(SSL *ssl);
1074 ~SSL_HANDSHAKE();
1075
David Benjamince8c9d22016-11-14 10:45:16 +09001076 /* ssl is a non-owning pointer to the parent |SSL| object. */
1077 SSL *ssl;
1078
David Benjamince8c9d22016-11-14 10:45:16 +09001079 /* do_tls13_handshake runs the TLS 1.3 handshake. On completion, it returns
1080 * |ssl_hs_ok|. Otherwise, it returns a value corresponding to what operation
1081 * is needed to progress. */
David Benjaminc3c88822016-11-14 10:32:04 +09001082 enum ssl_hs_wait_t (*do_tls13_handshake)(SSL_HANDSHAKE *hs);
Steven Valdez143e8b32016-07-11 13:19:03 -04001083
Adam Langley4ba6e192016-12-07 15:54:54 -08001084 /* wait contains the operation |do_tls13_handshake| is currently blocking on
1085 * or |ssl_hs_ok| if none. */
David Benjamin8f288862017-07-20 14:01:44 -04001086 enum ssl_hs_wait_t wait = ssl_hs_ok;
Adam Langley4ba6e192016-12-07 15:54:54 -08001087
David Benjamincb0c29f2016-12-12 17:00:50 -05001088 /* state contains one of the SSL3_ST_* values. */
David Benjamin8f288862017-07-20 14:01:44 -04001089 int state = SSL_ST_INIT;
David Benjamincb0c29f2016-12-12 17:00:50 -05001090
1091 /* next_state is used when SSL_ST_FLUSH_DATA is entered */
David Benjamin8f288862017-07-20 14:01:44 -04001092 int next_state = 0;
David Benjamincb0c29f2016-12-12 17:00:50 -05001093
David Benjamin3977f302016-12-11 13:30:41 -05001094 /* tls13_state is the internal state for the TLS 1.3 handshake. Its values
1095 * depend on |do_tls13_handshake| but the starting state is always zero. */
David Benjamin8f288862017-07-20 14:01:44 -04001096 int tls13_state = 0;
Steven Valdez143e8b32016-07-11 13:19:03 -04001097
David Benjamin68161cb2017-06-20 14:49:43 -04001098 /* min_version is the minimum accepted protocol version, taking account both
1099 * |SSL_OP_NO_*| and |SSL_CTX_set_min_proto_version| APIs. */
David Benjamin8f288862017-07-20 14:01:44 -04001100 uint16_t min_version = 0;
David Benjamin68161cb2017-06-20 14:49:43 -04001101
1102 /* max_version is the maximum accepted protocol version, taking account both
1103 * |SSL_OP_NO_*| and |SSL_CTX_set_max_proto_version| APIs. */
David Benjamin8f288862017-07-20 14:01:44 -04001104 uint16_t max_version = 0;
David Benjamin68161cb2017-06-20 14:49:43 -04001105
Steven Valdez520e1222017-06-13 12:45:25 -04001106 /* session_id is the session ID in the ClientHello, used for the experimental
1107 * TLS 1.3 variant. */
David Benjamin8f288862017-07-20 14:01:44 -04001108 uint8_t session_id[SSL_MAX_SSL_SESSION_ID_LENGTH] = {0};
1109 uint8_t session_id_len = 0;
Steven Valdez520e1222017-06-13 12:45:25 -04001110
David Benjamin8f288862017-07-20 14:01:44 -04001111 size_t hash_len = 0;
1112 uint8_t secret[EVP_MAX_MD_SIZE] = {0};
1113 uint8_t early_traffic_secret[EVP_MAX_MD_SIZE] = {0};
1114 uint8_t client_handshake_secret[EVP_MAX_MD_SIZE] = {0};
1115 uint8_t server_handshake_secret[EVP_MAX_MD_SIZE] = {0};
1116 uint8_t client_traffic_secret_0[EVP_MAX_MD_SIZE] = {0};
1117 uint8_t server_traffic_secret_0[EVP_MAX_MD_SIZE] = {0};
1118 uint8_t expected_client_finished[EVP_MAX_MD_SIZE] = {0};
Steven Valdez143e8b32016-07-11 13:19:03 -04001119
David Benjaminf5d2cd02016-10-06 19:39:20 -04001120 union {
1121 /* sent is a bitset where the bits correspond to elements of kExtensions
1122 * in t1_lib.c. Each bit is set if that extension was sent in a
1123 * ClientHello. It's not used by servers. */
David Benjamin8f288862017-07-20 14:01:44 -04001124 uint32_t sent = 0;
David Benjaminf5d2cd02016-10-06 19:39:20 -04001125 /* received is a bitset, like |sent|, but is used by servers to record
1126 * which extensions were received from a client. */
1127 uint32_t received;
1128 } extensions;
1129
1130 union {
1131 /* sent is a bitset where the bits correspond to elements of
1132 * |client_custom_extensions| in the |SSL_CTX|. Each bit is set if that
1133 * extension was sent in a ClientHello. It's not used by servers. */
David Benjamin8f288862017-07-20 14:01:44 -04001134 uint16_t sent = 0;
David Benjaminf5d2cd02016-10-06 19:39:20 -04001135 /* received is a bitset, like |sent|, but is used by servers to record
1136 * which custom extensions were received from a client. The bits here
1137 * correspond to |server_custom_extensions|. */
1138 uint16_t received;
1139 } custom_extensions;
1140
David Benjamin4fe3c902016-08-16 02:17:03 -04001141 /* retry_group is the group ID selected by the server in HelloRetryRequest in
1142 * TLS 1.3. */
David Benjamin8f288862017-07-20 14:01:44 -04001143 uint16_t retry_group = 0;
David Benjamin4fe3c902016-08-16 02:17:03 -04001144
David Benjaminc642aca2017-07-19 23:28:43 -04001145 /* key_share is the current key exchange instance. */
1146 UniquePtr<SSLKeyShare> key_share;
Adam Langley4ba6e192016-12-07 15:54:54 -08001147
Steven Valdez908ac192017-01-12 13:17:07 -05001148 /* transcript is the current handshake transcript. */
David Benjamin6dc8bf62017-07-19 16:38:21 -04001149 SSLTranscript transcript;
Steven Valdez908ac192017-01-12 13:17:07 -05001150
David Benjamin3baa6e12016-10-07 21:10:38 -04001151 /* cookie is the value of the cookie received from the server, if any. */
David Benjamin8f288862017-07-20 14:01:44 -04001152 uint8_t *cookie = nullptr;
1153 size_t cookie_len = 0;
David Benjamin3baa6e12016-10-07 21:10:38 -04001154
David Benjamin4fe3c902016-08-16 02:17:03 -04001155 /* key_share_bytes is the value of the previously sent KeyShare extension by
1156 * the client in TLS 1.3. */
David Benjamin8f288862017-07-20 14:01:44 -04001157 uint8_t *key_share_bytes = nullptr;
1158 size_t key_share_bytes_len = 0;
David Benjamin4fe3c902016-08-16 02:17:03 -04001159
David Benjaminbf833c32017-03-30 15:45:21 -05001160 /* ecdh_public_key, for servers, is the key share to be sent to the client in
1161 * TLS 1.3. */
David Benjamin8f288862017-07-20 14:01:44 -04001162 uint8_t *ecdh_public_key = nullptr;
1163 size_t ecdh_public_key_len = 0;
Steven Valdez143e8b32016-07-11 13:19:03 -04001164
David Benjamin0fc37ef2016-08-17 15:29:46 -04001165 /* peer_sigalgs are the signature algorithms that the peer supports. These are
1166 * taken from the contents of the signature algorithms extension for a server
1167 * or from the CertificateRequest for a client. */
David Benjamin8f288862017-07-20 14:01:44 -04001168 uint16_t *peer_sigalgs = nullptr;
David Benjamin0fc37ef2016-08-17 15:29:46 -04001169 /* num_peer_sigalgs is the number of entries in |peer_sigalgs|. */
David Benjamin8f288862017-07-20 14:01:44 -04001170 size_t num_peer_sigalgs = 0;
David Benjamin0fc37ef2016-08-17 15:29:46 -04001171
David Benjamin43612b62016-10-07 00:41:50 -04001172 /* peer_supported_group_list contains the supported group IDs advertised by
1173 * the peer. This is only set on the server's end. The server does not
1174 * advertise this extension to the client. */
David Benjamin8f288862017-07-20 14:01:44 -04001175 uint16_t *peer_supported_group_list = nullptr;
1176 size_t peer_supported_group_list_len = 0;
David Benjamin43612b62016-10-07 00:41:50 -04001177
David Benjamina4c8ff02016-10-08 02:49:01 -04001178 /* peer_key is the peer's ECDH key for a TLS 1.2 client. */
David Benjamin8f288862017-07-20 14:01:44 -04001179 uint8_t *peer_key = nullptr;
1180 size_t peer_key_len = 0;
David Benjamina4c8ff02016-10-08 02:49:01 -04001181
David Benjamin44148742017-06-17 13:20:59 -04001182 /* server_params, in a TLS 1.2 server, stores the ServerKeyExchange
1183 * parameters. It has client and server randoms prepended for signing
1184 * convenience. */
David Benjamin8f288862017-07-20 14:01:44 -04001185 uint8_t *server_params = nullptr;
1186 size_t server_params_len = 0;
David Benjamina4c8ff02016-10-08 02:49:01 -04001187
Adam Langley4ba6e192016-12-07 15:54:54 -08001188 /* peer_psk_identity_hint, on the client, is the psk_identity_hint sent by the
1189 * server when using a TLS 1.2 PSK key exchange. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001190 UniquePtr<char> peer_psk_identity_hint;
Adam Langley4ba6e192016-12-07 15:54:54 -08001191
1192 /* ca_names, on the client, contains the list of CAs received in a
1193 * CertificateRequest message. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001194 UniquePtr<STACK_OF(CRYPTO_BUFFER)> ca_names;
Adam Langley34b4c822017-02-02 10:57:17 -08001195
1196 /* cached_x509_ca_names contains a cache of parsed versions of the elements
1197 * of |ca_names|. */
David Benjamin8f288862017-07-20 14:01:44 -04001198 STACK_OF(X509_NAME) *cached_x509_ca_names = nullptr;
Adam Langley4ba6e192016-12-07 15:54:54 -08001199
1200 /* certificate_types, on the client, contains the set of certificate types
1201 * received in a CertificateRequest message. */
David Benjamin8f288862017-07-20 14:01:44 -04001202 uint8_t *certificate_types = nullptr;
1203 size_t num_certificate_types = 0;
Adam Langley4ba6e192016-12-07 15:54:54 -08001204
1205 /* hostname, on the server, is the value of the SNI extension. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001206 UniquePtr<char> hostname;
Adam Langley4ba6e192016-12-07 15:54:54 -08001207
David Benjamina232a712017-03-30 15:51:53 -05001208 /* local_pubkey is the public key we are authenticating as. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001209 UniquePtr<EVP_PKEY> local_pubkey;
David Benjamina232a712017-03-30 15:51:53 -05001210
Adam Langleyd5157222016-12-12 11:37:43 -08001211 /* peer_pubkey is the public key parsed from the peer's leaf certificate. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001212 UniquePtr<EVP_PKEY> peer_pubkey;
Adam Langleyd5157222016-12-12 11:37:43 -08001213
David Benjamin45738dd2017-02-09 20:01:26 -05001214 /* new_session is the new mutable session being established by the current
1215 * handshake. It should not be cached. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001216 UniquePtr<SSL_SESSION> new_session;
David Benjamin45738dd2017-02-09 20:01:26 -05001217
Steven Valdeze831a812017-03-09 14:56:07 -05001218 /* early_session is the session corresponding to the current 0-RTT state on
1219 * the client if |in_early_data| is true. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04001220 UniquePtr<SSL_SESSION> early_session;
Steven Valdeze831a812017-03-09 14:56:07 -05001221
David Benjamin45738dd2017-02-09 20:01:26 -05001222 /* new_cipher is the cipher being negotiated in this handshake. */
David Benjamin8f288862017-07-20 14:01:44 -04001223 const SSL_CIPHER *new_cipher = nullptr;
David Benjamin45738dd2017-02-09 20:01:26 -05001224
Adam Langley4ba6e192016-12-07 15:54:54 -08001225 /* key_block is the record-layer key block for TLS 1.2 and earlier. */
David Benjamin8f288862017-07-20 14:01:44 -04001226 uint8_t *key_block = nullptr;
1227 uint8_t key_block_len = 0;
Adam Langley4ba6e192016-12-07 15:54:54 -08001228
Adam Langley4ba6e192016-12-07 15:54:54 -08001229 /* scts_requested is one if the SCT extension is in the ClientHello. */
1230 unsigned scts_requested:1;
1231
1232 /* needs_psk_binder if the ClientHello has a placeholder PSK binder to be
1233 * filled in. */
1234 unsigned needs_psk_binder:1;
1235
1236 unsigned received_hello_retry_request:1;
1237
1238 /* accept_psk_mode stores whether the client's PSK mode is compatible with our
1239 * preferences. */
1240 unsigned accept_psk_mode:1;
1241
David Benjamina0486782016-10-06 19:11:32 -04001242 /* cert_request is one if a client certificate was requested and zero
1243 * otherwise. */
1244 unsigned cert_request:1;
1245
1246 /* certificate_status_expected is one if OCSP stapling was negotiated and the
1247 * server is expected to send a CertificateStatus message. (This is used on
1248 * both the client and server sides.) */
1249 unsigned certificate_status_expected:1;
1250
1251 /* ocsp_stapling_requested is one if a client requested OCSP stapling. */
1252 unsigned ocsp_stapling_requested:1;
1253
1254 /* should_ack_sni is used by a server and indicates that the SNI extension
1255 * should be echoed in the ServerHello. */
1256 unsigned should_ack_sni:1;
1257
1258 /* in_false_start is one if there is a pending client handshake in False
1259 * Start. The client may write data at this point. */
1260 unsigned in_false_start:1;
1261
Steven Valdeze831a812017-03-09 14:56:07 -05001262 /* in_early_data is one if there is a pending handshake that has progressed
1263 * enough to send and receive early data. */
1264 unsigned in_early_data:1;
1265
Steven Valdez2d850622017-01-11 11:34:52 -05001266 /* early_data_offered is one if the client sent the early_data extension. */
1267 unsigned early_data_offered:1;
1268
Steven Valdez681eb6a2016-12-19 13:19:29 -05001269 /* can_early_read is one if application data may be read at this point in the
1270 * handshake. */
1271 unsigned can_early_read:1;
1272
1273 /* can_early_write is one if application data may be written at this point in
1274 * the handshake. */
1275 unsigned can_early_write:1;
1276
David Benjaminb74b0812016-10-06 19:43:48 -04001277 /* next_proto_neg_seen is one of NPN was negotiated. */
1278 unsigned next_proto_neg_seen:1;
1279
David Benjamin78476f62016-11-12 11:20:55 +09001280 /* ticket_expected is one if a TLS 1.2 NewSessionTicket message is to be sent
1281 * or received. */
1282 unsigned ticket_expected:1;
David Benjaminf04c2e92016-12-06 13:35:25 -05001283
David Benjaminfc02b592017-02-17 16:26:01 -05001284 /* extended_master_secret is one if the extended master secret extension is
1285 * negotiated in this handshake. */
1286 unsigned extended_master_secret:1;
1287
David Benjamin44148742017-06-17 13:20:59 -04001288 /* pending_private_key_op is one if there is a pending private key operation
1289 * in progress. */
1290 unsigned pending_private_key_op:1;
1291
David Benjaminf04c2e92016-12-06 13:35:25 -05001292 /* client_version is the value sent or received in the ClientHello version. */
David Benjamin8f288862017-07-20 14:01:44 -04001293 uint16_t client_version = 0;
Alessandro Ghedinide254b42017-04-17 19:12:33 +01001294
1295 /* early_data_read is the amount of early data that has been read by the
1296 * record layer. */
David Benjamin8f288862017-07-20 14:01:44 -04001297 uint16_t early_data_read = 0;
Steven Valdeze831a812017-03-09 14:56:07 -05001298
1299 /* early_data_written is the amount of early data that has been written by the
1300 * record layer. */
David Benjamin8f288862017-07-20 14:01:44 -04001301 uint16_t early_data_written = 0;
David Benjamin86e95b82017-07-18 16:34:25 -04001302};
Steven Valdez143e8b32016-07-11 13:19:03 -04001303
David Benjamince8c9d22016-11-14 10:45:16 +09001304SSL_HANDSHAKE *ssl_handshake_new(SSL *ssl);
Steven Valdez143e8b32016-07-11 13:19:03 -04001305
1306/* ssl_handshake_free releases all memory associated with |hs|. */
1307void ssl_handshake_free(SSL_HANDSHAKE *hs);
1308
David Benjamin276b7e82017-01-21 14:13:39 -05001309/* ssl_check_message_type checks if the current message has type |type|. If so
1310 * it returns one. Otherwise, it sends an alert and returns zero. */
1311int ssl_check_message_type(SSL *ssl, int type);
1312
Steven Valdez143e8b32016-07-11 13:19:03 -04001313/* tls13_handshake runs the TLS 1.3 handshake. It returns one on success and <=
Steven Valdez681eb6a2016-12-19 13:19:29 -05001314 * 0 on error. It sets |out_early_return| to one if we've completed the
1315 * handshake early. */
1316int tls13_handshake(SSL_HANDSHAKE *hs, int *out_early_return);
Steven Valdez143e8b32016-07-11 13:19:03 -04001317
David Benjamince8c9d22016-11-14 10:45:16 +09001318/* The following are implementations of |do_tls13_handshake| for the client and
Steven Valdez143e8b32016-07-11 13:19:03 -04001319 * server. */
David Benjaminc3c88822016-11-14 10:32:04 +09001320enum ssl_hs_wait_t tls13_client_handshake(SSL_HANDSHAKE *hs);
1321enum ssl_hs_wait_t tls13_server_handshake(SSL_HANDSHAKE *hs);
Steven Valdez143e8b32016-07-11 13:19:03 -04001322
Steven Valdez8e1c7be2016-07-26 12:39:22 -04001323/* tls13_post_handshake processes a post-handshake message. It returns one on
1324 * success and zero on failure. */
1325int tls13_post_handshake(SSL *ssl);
1326
Adam Langley0c294252016-12-12 11:46:09 -08001327int tls13_process_certificate(SSL_HANDSHAKE *hs, int allow_anonymous);
1328int tls13_process_certificate_verify(SSL_HANDSHAKE *hs);
David Benjamin794cc592017-03-25 22:24:23 -05001329
1330/* tls13_process_finished processes the current message as a Finished message
1331 * from the peer. If |use_saved_value| is one, the verify_data is compared
1332 * against |hs->expected_client_finished| rather than computed fresh. */
1333int tls13_process_finished(SSL_HANDSHAKE *hs, int use_saved_value);
Steven Valdez143e8b32016-07-11 13:19:03 -04001334
David Benjamin0f24bed2017-01-12 19:46:50 -05001335int tls13_add_certificate(SSL_HANDSHAKE *hs);
David Benjamin44148742017-06-17 13:20:59 -04001336
1337/* tls13_add_certificate_verify adds a TLS 1.3 CertificateVerify message to the
1338 * handshake. If it returns |ssl_private_key_retry|, it should be called again
1339 * to retry when the signing operation is completed. */
1340enum ssl_private_key_result_t tls13_add_certificate_verify(SSL_HANDSHAKE *hs);
1341
David Benjamin0f24bed2017-01-12 19:46:50 -05001342int tls13_add_finished(SSL_HANDSHAKE *hs);
Steven Valdez1e6f11a2016-07-27 11:10:52 -04001343int tls13_process_new_session_ticket(SSL *ssl);
Steven Valdez143e8b32016-07-11 13:19:03 -04001344
David Benjamin8baf9632016-11-17 17:11:16 +09001345int ssl_ext_key_share_parse_serverhello(SSL_HANDSHAKE *hs, uint8_t **out_secret,
Steven Valdez7259f2f2016-08-02 16:55:05 -04001346 size_t *out_secret_len,
1347 uint8_t *out_alert, CBS *contents);
David Benjamin8baf9632016-11-17 17:11:16 +09001348int ssl_ext_key_share_parse_clienthello(SSL_HANDSHAKE *hs, int *out_found,
Steven Valdez7259f2f2016-08-02 16:55:05 -04001349 uint8_t **out_secret,
1350 size_t *out_secret_len,
1351 uint8_t *out_alert, CBS *contents);
David Benjamin8baf9632016-11-17 17:11:16 +09001352int ssl_ext_key_share_add_serverhello(SSL_HANDSHAKE *hs, CBB *out);
Steven Valdez143e8b32016-07-11 13:19:03 -04001353
David Benjamin8baf9632016-11-17 17:11:16 +09001354int ssl_ext_pre_shared_key_parse_serverhello(SSL_HANDSHAKE *hs,
1355 uint8_t *out_alert, CBS *contents);
David Benjamin35ac5b72017-03-03 15:05:56 -05001356int ssl_ext_pre_shared_key_parse_clienthello(
David Benjamin707af292017-03-10 17:47:18 -05001357 SSL_HANDSHAKE *hs, CBS *out_ticket, CBS *out_binders,
David Benjamin35ac5b72017-03-03 15:05:56 -05001358 uint32_t *out_obfuscated_ticket_age, uint8_t *out_alert, CBS *contents);
David Benjamin8baf9632016-11-17 17:11:16 +09001359int ssl_ext_pre_shared_key_add_serverhello(SSL_HANDSHAKE *hs, CBB *out);
Steven Valdez4aa154e2016-07-29 14:32:55 -04001360
Adam Langleycfa08c32016-11-17 13:21:27 -08001361/* ssl_is_sct_list_valid does a shallow parse of the SCT list in |contents| and
1362 * returns one iff it's valid. */
1363int ssl_is_sct_list_valid(const CBS *contents);
1364
David Benjamin8c880a22016-12-03 02:20:34 -05001365int ssl_write_client_hello(SSL_HANDSHAKE *hs);
Steven Valdez5440fe02016-07-18 12:40:30 -04001366
David Benjamin4fe3c902016-08-16 02:17:03 -04001367/* ssl_clear_tls13_state releases client state only needed for TLS 1.3. It
1368 * should be called once the version is known to be TLS 1.2 or earlier. */
David Benjamin6e4fc332016-11-17 16:43:08 +09001369void ssl_clear_tls13_state(SSL_HANDSHAKE *hs);
David Benjamin4fe3c902016-08-16 02:17:03 -04001370
Nick Harper60a85cb2016-09-23 16:25:11 -07001371enum ssl_cert_verify_context_t {
1372 ssl_cert_verify_server,
1373 ssl_cert_verify_client,
1374 ssl_cert_verify_channel_id,
1375};
1376
1377/* tls13_get_cert_verify_signature_input generates the message to be signed for
1378 * TLS 1.3's CertificateVerify message. |cert_verify_context| determines the
1379 * type of signature. It sets |*out| and |*out_len| to a newly allocated buffer
1380 * containing the result. The caller must free it with |OPENSSL_free| to release
1381 * it. This function returns one on success and zero on failure. */
1382int tls13_get_cert_verify_signature_input(
Steven Valdez908ac192017-01-12 13:17:07 -05001383 SSL_HANDSHAKE *hs, uint8_t **out, size_t *out_len,
Nick Harper60a85cb2016-09-23 16:25:11 -07001384 enum ssl_cert_verify_context_t cert_verify_context);
1385
David Benjamin9ef31f02016-10-31 18:01:13 -04001386/* ssl_negotiate_alpn negotiates the ALPN extension, if applicable. It returns
1387 * one on successful negotiation or if nothing was negotiated. It returns zero
1388 * and sets |*out_alert| to an alert on error. */
David Benjaminf3c8f8d2016-11-17 17:20:47 +09001389int ssl_negotiate_alpn(SSL_HANDSHAKE *hs, uint8_t *out_alert,
David Benjamin731058e2016-12-03 23:15:13 -05001390 const SSL_CLIENT_HELLO *client_hello);
David Benjamin9ef31f02016-10-31 18:01:13 -04001391
David Benjamin86e95b82017-07-18 16:34:25 -04001392struct SSL_EXTENSION_TYPE {
David Benjaminffb11072016-11-13 10:32:10 +09001393 uint16_t type;
1394 int *out_present;
1395 CBS *out_data;
David Benjamin86e95b82017-07-18 16:34:25 -04001396};
David Benjaminffb11072016-11-13 10:32:10 +09001397
1398/* ssl_parse_extensions parses a TLS extensions block out of |cbs| and advances
1399 * it. It writes the parsed extensions to pointers denoted by |ext_types|. On
1400 * success, it fills in the |out_present| and |out_data| fields and returns one.
1401 * Otherwise, it sets |*out_alert| to an alert to send and returns zero. Unknown
Steven Valdez08b65f42016-12-07 15:29:45 -05001402 * extensions are rejected unless |ignore_unknown| is 1. */
David Benjaminffb11072016-11-13 10:32:10 +09001403int ssl_parse_extensions(const CBS *cbs, uint8_t *out_alert,
1404 const SSL_EXTENSION_TYPE *ext_types,
Steven Valdez08b65f42016-12-07 15:29:45 -05001405 size_t num_ext_types, int ignore_unknown);
David Benjaminffb11072016-11-13 10:32:10 +09001406
David Benjamin3a1dd462017-07-11 16:13:10 -04001407/* ssl_verify_peer_cert verifies the peer certificate for |hs|. */
1408enum ssl_verify_result_t ssl_verify_peer_cert(SSL_HANDSHAKE *hs);
1409
Steven Valdez143e8b32016-07-11 13:19:03 -04001410
David Benjamine776cc22016-07-19 07:26:49 +02001411/* SSLKEYLOGFILE functions. */
1412
David Benjamine776cc22016-07-19 07:26:49 +02001413/* ssl_log_secret logs |secret| with label |label|, if logging is enabled for
1414 * |ssl|. It returns one on success and zero on failure. */
1415int ssl_log_secret(const SSL *ssl, const char *label, const uint8_t *secret,
1416 size_t secret_len);
1417
1418
David Benjamine14ff062016-08-09 16:21:24 -04001419/* ClientHello functions. */
1420
David Benjamin731058e2016-12-03 23:15:13 -05001421int ssl_client_hello_init(SSL *ssl, SSL_CLIENT_HELLO *out, const uint8_t *in,
1422 size_t in_len);
David Benjamine14ff062016-08-09 16:21:24 -04001423
David Benjamin731058e2016-12-03 23:15:13 -05001424int ssl_client_hello_get_extension(const SSL_CLIENT_HELLO *client_hello,
1425 CBS *out, uint16_t extension_type);
David Benjamine14ff062016-08-09 16:21:24 -04001426
David Benjamin731058e2016-12-03 23:15:13 -05001427int ssl_client_cipher_list_contains_cipher(const SSL_CLIENT_HELLO *client_hello,
1428 uint16_t id);
David Benjamine14ff062016-08-09 16:21:24 -04001429
1430
David Benjamin65ac9972016-09-02 21:35:25 -04001431/* GREASE. */
1432
1433enum ssl_grease_index_t {
1434 ssl_grease_cipher = 0,
1435 ssl_grease_group,
1436 ssl_grease_extension1,
1437 ssl_grease_extension2,
David Benjamind9791bf2016-09-27 16:39:52 -04001438 ssl_grease_version,
David Benjamin1a5e8ec2016-10-07 15:19:18 -04001439 ssl_grease_ticket_extension,
David Benjamin65ac9972016-09-02 21:35:25 -04001440};
1441
1442/* ssl_get_grease_value returns a GREASE value for |ssl|. For a given
1443 * connection, the values for each index will be deterministic. This allows the
1444 * same ClientHello be sent twice for a HelloRetryRequest or the same group be
1445 * advertised in both supported_groups and key_shares. */
1446uint16_t ssl_get_grease_value(const SSL *ssl, enum ssl_grease_index_t index);
1447
1448
David Benjamin3ef76972016-10-17 17:59:54 -04001449/* Signature algorithms. */
1450
1451/* tls1_parse_peer_sigalgs parses |sigalgs| as the list of peer signature
David Benjaminf3c8f8d2016-11-17 17:20:47 +09001452 * algorithms and saves them on |hs|. It returns one on success and zero on
1453 * error. */
1454int tls1_parse_peer_sigalgs(SSL_HANDSHAKE *hs, const CBS *sigalgs);
David Benjamin3ef76972016-10-17 17:59:54 -04001455
David Benjamina3651382017-04-20 17:49:36 -04001456/* tls1_get_legacy_signature_algorithm sets |*out| to the signature algorithm
1457 * that should be used with |pkey| in TLS 1.1 and earlier. It returns one on
1458 * success and zero if |pkey| may not be used at those versions. */
1459int tls1_get_legacy_signature_algorithm(uint16_t *out, const EVP_PKEY *pkey);
1460
David Benjamin3ef76972016-10-17 17:59:54 -04001461/* tls1_choose_signature_algorithm sets |*out| to a signature algorithm for use
David Benjaminf3c8f8d2016-11-17 17:20:47 +09001462 * with |hs|'s private key based on the peer's preferences and the algorithms
David Benjamin3ef76972016-10-17 17:59:54 -04001463 * supported. It returns one on success and zero on error. */
David Benjaminf3c8f8d2016-11-17 17:20:47 +09001464int tls1_choose_signature_algorithm(SSL_HANDSHAKE *hs, uint16_t *out);
David Benjamin3ef76972016-10-17 17:59:54 -04001465
David Benjamin69522112017-03-28 15:38:29 -05001466/* tls12_add_verify_sigalgs adds the signature algorithms acceptable for the
1467 * peer signature to |out|. It returns one on success and zero on error. */
1468int tls12_add_verify_sigalgs(const SSL *ssl, CBB *out);
David Benjamin3ef76972016-10-17 17:59:54 -04001469
1470/* tls12_check_peer_sigalg checks if |sigalg| is acceptable for the peer
1471 * signature. It returns one on success and zero on error, setting |*out_alert|
1472 * to an alert to send. */
David Benjamin8d606e32017-06-15 22:43:04 -04001473int tls12_check_peer_sigalg(SSL *ssl, uint8_t *out_alert, uint16_t sigalg);
David Benjamin3ef76972016-10-17 17:59:54 -04001474
1475
David Benjamin71f07942015-04-08 02:36:59 -04001476/* Underdocumented functions.
1477 *
1478 * Functions below here haven't been touched up and may be underdocumented. */
1479
Adam Langley1258b6a2014-06-20 12:00:00 -07001480#define TLSEXT_CHANNEL_ID_SIZE 128
Adam Langley95c29f32014-06-20 12:00:00 -07001481
David Benjamine518f652014-10-13 16:12:45 -04001482/* From RFC4492, used in encoding the curve type in ECParameters */
Adam Langleyfcf25832014-12-18 17:42:32 -08001483#define NAMED_CURVE_TYPE 3
Adam Langley95c29f32014-06-20 12:00:00 -07001484
David Benjamine39ac8f2017-07-20 12:22:21 -04001485struct SSLCertConfig {
David Benjamind1d80782015-07-05 11:54:09 -04001486 EVP_PKEY *privatekey;
Adam Langley3a2b47a2017-01-24 13:59:42 -08001487
1488 /* chain contains the certificate chain, with the leaf at the beginning. The
1489 * first element of |chain| may be NULL to indicate that the leaf certificate
1490 * has not yet been set.
1491 * If |chain| != NULL -> len(chain) >= 1
1492 * If |chain[0]| == NULL -> len(chain) >= 2.
1493 * |chain[1..]| != NULL */
1494 STACK_OF(CRYPTO_BUFFER) *chain;
1495
1496 /* x509_chain may contain a parsed copy of |chain[1..]|. This is only used as
1497 * a cache in order to implement “get0” functions that return a non-owning
1498 * pointer to the certificate chain. */
Adam Langleyc5ac2b62016-11-07 12:02:35 -08001499 STACK_OF(X509) *x509_chain;
David Benjaminf31e6812014-11-13 18:05:55 -05001500
Adam Langley3a2b47a2017-01-24 13:59:42 -08001501 /* x509_leaf may contain a parsed copy of the first element of |chain|. This
1502 * is only used as a cache in order to implement “get0” functions that return
1503 * a non-owning pointer to the certificate chain. */
1504 X509 *x509_leaf;
1505
Adam Langleye1e78132017-01-31 15:24:31 -08001506 /* x509_stash contains the last |X509| object append to the chain. This is a
1507 * workaround for some third-party code that continue to use an |X509| object
1508 * even after passing ownership with an “add0” function. */
1509 X509 *x509_stash;
1510
David Benjaminb4d65fd2015-05-29 17:11:21 -04001511 /* key_method, if non-NULL, is a set of callbacks to call for private key
1512 * operations. */
1513 const SSL_PRIVATE_KEY_METHOD *key_method;
1514
Adam Langley3509dac2017-02-01 11:59:18 -08001515 /* x509_method contains pointers to functions that might deal with |X509|
1516 * compatibility, or might be a no-op, depending on the application. */
1517 const SSL_X509_METHOD *x509_method;
1518
David Benjamin0fc37ef2016-08-17 15:29:46 -04001519 /* sigalgs, if non-NULL, is the set of signature algorithms supported by
1520 * |privatekey| in decreasing order of preference. */
David Benjamind246b812016-07-08 15:07:02 -07001521 uint16_t *sigalgs;
David Benjamin0fc37ef2016-08-17 15:29:46 -04001522 size_t num_sigalgs;
Adam Langley95c29f32014-06-20 12:00:00 -07001523
Adam Langleyfcf25832014-12-18 17:42:32 -08001524 /* Certificate setup callback: if set is called whenever a
1525 * certificate may be required (client or server). the callback
1526 * can then examine any appropriate parameters and setup any
1527 * certificates required. This allows advanced applications
1528 * to select certificates on the fly: for example based on
1529 * supported signature algorithms or curves. */
1530 int (*cert_cb)(SSL *ssl, void *arg);
1531 void *cert_cb_arg;
Adam Langleyd323f4b2016-03-01 15:58:14 -08001532
1533 /* Optional X509_STORE for certificate validation. If NULL the parent SSL_CTX
1534 * store is used instead. */
1535 X509_STORE *verify_store;
David Benjamin83a32122017-02-14 18:34:54 -05001536
1537 /* Signed certificate timestamp list to be sent to the client, if requested */
1538 CRYPTO_BUFFER *signed_cert_timestamp_list;
1539
1540 /* OCSP response to be sent to the client, if requested. */
1541 CRYPTO_BUFFER *ocsp_response;
David Benjamin5960a902017-02-14 20:07:11 -05001542
1543 /* sid_ctx partitions the session space within a shared session cache or
1544 * ticket key. Only sessions with a matching value will be accepted. */
1545 uint8_t sid_ctx_length;
1546 uint8_t sid_ctx[SSL_MAX_SID_CTX_LENGTH];
Alessandro Ghedini67bb45f2017-03-30 16:33:24 -05001547
1548 /* If enable_early_data is non-zero, early data can be sent and accepted. */
1549 unsigned enable_early_data:1;
David Benjamin86e95b82017-07-18 16:34:25 -04001550};
Adam Langley95c29f32014-06-20 12:00:00 -07001551
David Benjamin86e95b82017-07-18 16:34:25 -04001552/* ssl_crypto_x509_method provides the |SSL_X509_METHOD| functions using
Adam Langley3509dac2017-02-01 11:59:18 -08001553 * crypto/x509. */
David Benjamin86e95b82017-07-18 16:34:25 -04001554extern const SSL_X509_METHOD ssl_crypto_x509_method;
Adam Langley3509dac2017-02-01 11:59:18 -08001555
David Benjamin86e95b82017-07-18 16:34:25 -04001556struct SSL3_RECORD {
David Benjamine228bd22016-10-17 20:41:08 -04001557 /* type is the record type. */
1558 uint8_t type;
1559 /* length is the number of unconsumed bytes in the record. */
1560 uint16_t length;
1561 /* data is a non-owning pointer to the first unconsumed byte of the record. */
1562 uint8_t *data;
David Benjamin86e95b82017-07-18 16:34:25 -04001563};
David Benjamine228bd22016-10-17 20:41:08 -04001564
David Benjamin86e95b82017-07-18 16:34:25 -04001565struct SSL3_BUFFER {
David Benjamine228bd22016-10-17 20:41:08 -04001566 /* buf is the memory allocated for this buffer. */
1567 uint8_t *buf;
1568 /* offset is the offset into |buf| which the buffer contents start at. */
1569 uint16_t offset;
1570 /* len is the length of the buffer contents from |buf| + |offset|. */
1571 uint16_t len;
1572 /* cap is how much memory beyond |buf| + |offset| is available. */
1573 uint16_t cap;
David Benjamin86e95b82017-07-18 16:34:25 -04001574};
David Benjamine228bd22016-10-17 20:41:08 -04001575
1576/* An ssl_shutdown_t describes the shutdown state of one end of the connection,
1577 * whether it is alive or has been shutdown via close_notify or fatal alert. */
1578enum ssl_shutdown_t {
1579 ssl_shutdown_none = 0,
1580 ssl_shutdown_close_notify = 1,
1581 ssl_shutdown_fatal_alert = 2,
1582};
1583
David Benjamin86e95b82017-07-18 16:34:25 -04001584struct SSL3_STATE {
David Benjamine228bd22016-10-17 20:41:08 -04001585 uint8_t read_sequence[8];
1586 uint8_t write_sequence[8];
1587
1588 uint8_t server_random[SSL3_RANDOM_SIZE];
1589 uint8_t client_random[SSL3_RANDOM_SIZE];
1590
David Benjamine228bd22016-10-17 20:41:08 -04001591 /* read_buffer holds data from the transport to be processed. */
1592 SSL3_BUFFER read_buffer;
1593 /* write_buffer holds data to be written to the transport. */
1594 SSL3_BUFFER write_buffer;
1595
1596 SSL3_RECORD rrec; /* each decoded record goes in here */
1597
1598 /* partial write - check the numbers match */
1599 unsigned int wnum; /* number of bytes sent so far */
1600 int wpend_tot; /* number bytes written */
1601 int wpend_type;
1602 int wpend_ret; /* number of bytes submitted */
1603 const uint8_t *wpend_buf;
1604
David Benjamine228bd22016-10-17 20:41:08 -04001605 /* recv_shutdown is the shutdown state for the receive half of the
1606 * connection. */
1607 enum ssl_shutdown_t recv_shutdown;
1608
1609 /* recv_shutdown is the shutdown state for the send half of the connection. */
1610 enum ssl_shutdown_t send_shutdown;
1611
Adam Langley4ba6e192016-12-07 15:54:54 -08001612 int alert_dispatch;
1613
1614 int total_renegotiations;
1615
Steven Valdeza4ee74d2016-11-29 13:36:45 -05001616 /* early_data_skipped is the amount of early data that has been skipped by the
1617 * record layer. */
1618 uint16_t early_data_skipped;
1619
David Benjamine228bd22016-10-17 20:41:08 -04001620 /* empty_record_count is the number of consecutive empty records received. */
1621 uint8_t empty_record_count;
1622
1623 /* warning_alert_count is the number of consecutive warning alerts
1624 * received. */
1625 uint8_t warning_alert_count;
1626
1627 /* key_update_count is the number of consecutive KeyUpdates received. */
1628 uint8_t key_update_count;
1629
Adam Langley4ba6e192016-12-07 15:54:54 -08001630 /* skip_early_data instructs the record layer to skip unexpected early data
1631 * messages when 0RTT is rejected. */
1632 unsigned skip_early_data:1;
1633
1634 /* have_version is true if the connection's final version is known. Otherwise
1635 * the version has not been negotiated yet. */
1636 unsigned have_version:1;
1637
1638 /* v2_hello_done is true if the peer's V2ClientHello, if any, has been handled
1639 * and future messages should use the record layer. */
1640 unsigned v2_hello_done:1;
1641
David Benjamin1a444da2017-01-21 14:27:45 -05001642 /* is_v2_hello is true if the current handshake message was derived from a
1643 * V2ClientHello rather than received from the peer directly. */
1644 unsigned is_v2_hello:1;
1645
Adam Langley4ba6e192016-12-07 15:54:54 -08001646 /* initial_handshake_complete is true if the initial handshake has
1647 * completed. */
1648 unsigned initial_handshake_complete:1;
1649
1650 /* session_reused indicates whether a session was resumed. */
1651 unsigned session_reused:1;
1652
1653 unsigned send_connection_binding:1;
1654
1655 /* In a client, this means that the server supported Channel ID and that a
1656 * Channel ID was sent. In a server it means that we echoed support for
1657 * Channel IDs and that tlsext_channel_id will be valid after the
1658 * handshake. */
1659 unsigned tlsext_channel_id_valid:1;
1660
David Benjaminbbba9392017-04-06 12:54:12 -04001661 /* key_update_pending is one if we have a KeyUpdate acknowledgment
1662 * outstanding. */
1663 unsigned key_update_pending:1;
1664
Steven Valdeze831a812017-03-09 14:56:07 -05001665 /* wpend_pending is one if we have a pending write outstanding. */
1666 unsigned wpend_pending:1;
1667
Adam Langley4ba6e192016-12-07 15:54:54 -08001668 uint8_t send_alert[2];
1669
David Benjamindaf207a2017-01-03 18:37:41 -05001670 /* pending_flight is the pending outgoing flight. This is used to flush each
David Benjaminbbba9392017-04-06 12:54:12 -04001671 * handshake flight in a single write. |write_buffer| must be written out
1672 * before this data. */
David Benjamindaf207a2017-01-03 18:37:41 -05001673 BUF_MEM *pending_flight;
1674
1675 /* pending_flight_offset is the number of bytes of |pending_flight| which have
1676 * been successfully written. */
1677 uint32_t pending_flight_offset;
Adam Langley4ba6e192016-12-07 15:54:54 -08001678
David Benjamine228bd22016-10-17 20:41:08 -04001679 /* aead_read_ctx is the current read cipher state. */
David Benjamincfc11c22017-07-18 22:45:18 -04001680 SSLAEADContext *aead_read_ctx;
David Benjamine228bd22016-10-17 20:41:08 -04001681
1682 /* aead_write_ctx is the current write cipher state. */
David Benjamincfc11c22017-07-18 22:45:18 -04001683 SSLAEADContext *aead_write_ctx;
David Benjamine228bd22016-10-17 20:41:08 -04001684
David Benjamine228bd22016-10-17 20:41:08 -04001685 /* hs is the handshake state for the current handshake or NULL if there isn't
1686 * one. */
1687 SSL_HANDSHAKE *hs;
1688
1689 uint8_t write_traffic_secret[EVP_MAX_MD_SIZE];
David Benjamine228bd22016-10-17 20:41:08 -04001690 uint8_t read_traffic_secret[EVP_MAX_MD_SIZE];
David Benjamine228bd22016-10-17 20:41:08 -04001691 uint8_t exporter_secret[EVP_MAX_MD_SIZE];
Steven Valdez2d850622017-01-11 11:34:52 -05001692 uint8_t early_exporter_secret[EVP_MAX_MD_SIZE];
Adam Langley4ba6e192016-12-07 15:54:54 -08001693 uint8_t write_traffic_secret_len;
1694 uint8_t read_traffic_secret_len;
David Benjamine228bd22016-10-17 20:41:08 -04001695 uint8_t exporter_secret_len;
Steven Valdez2d850622017-01-11 11:34:52 -05001696 uint8_t early_exporter_secret_len;
David Benjamine228bd22016-10-17 20:41:08 -04001697
Adam Langley4ba6e192016-12-07 15:54:54 -08001698 /* Connection binding to prevent renegotiation attacks */
1699 uint8_t previous_client_finished[12];
1700 uint8_t previous_client_finished_len;
1701 uint8_t previous_server_finished_len;
1702 uint8_t previous_server_finished[12];
1703
David Benjamine228bd22016-10-17 20:41:08 -04001704 /* State pertaining to the pending handshake.
1705 *
1706 * TODO(davidben): Move everything not needed after the handshake completes to
1707 * |hs| and remove this. */
1708 struct {
Adam Langley4ba6e192016-12-07 15:54:54 -08001709 int message_type;
1710
David Benjamine228bd22016-10-17 20:41:08 -04001711 int reuse_message;
1712
David Benjamine228bd22016-10-17 20:41:08 -04001713 uint8_t new_mac_secret_len;
1714 uint8_t new_key_len;
1715 uint8_t new_fixed_iv_len;
David Benjamine228bd22016-10-17 20:41:08 -04001716 } tmp;
1717
David Benjamine228bd22016-10-17 20:41:08 -04001718 /* established_session is the session established by the connection. This
1719 * session is only filled upon the completion of the handshake and is
1720 * immutable. */
1721 SSL_SESSION *established_session;
1722
David Benjamine228bd22016-10-17 20:41:08 -04001723 /* Next protocol negotiation. For the client, this is the protocol that we
1724 * sent in NextProtocol and is set when handling ServerHello extensions.
1725 *
1726 * For a server, this is the client's selected_protocol from NextProtocol and
1727 * is set when handling the NextProtocol message, before the Finished
1728 * message. */
1729 uint8_t *next_proto_negotiated;
1730 size_t next_proto_negotiated_len;
1731
1732 /* ALPN information
1733 * (we are in the process of transitioning from NPN to ALPN.) */
1734
1735 /* In a server these point to the selected ALPN protocol after the
1736 * ClientHello has been processed. In a client these contain the protocol
1737 * that the server selected once the ServerHello has been processed. */
1738 uint8_t *alpn_selected;
1739 size_t alpn_selected_len;
1740
David Benjamine228bd22016-10-17 20:41:08 -04001741 /* For a server:
1742 * If |tlsext_channel_id_valid| is true, then this contains the
1743 * verified Channel ID from the client: a P256 point, (x,y), where
1744 * each are big-endian values. */
1745 uint8_t tlsext_channel_id[64];
David Benjamin35ac5b72017-03-03 15:05:56 -05001746
1747 /* ticket_age_skew is the difference, in seconds, between the client-sent
1748 * ticket age and the server-computed value in TLS 1.3 server connections
1749 * which resumed a session. */
1750 int32_t ticket_age_skew;
David Benjamin86e95b82017-07-18 16:34:25 -04001751};
David Benjamine228bd22016-10-17 20:41:08 -04001752
David Benjamin593047f2015-05-08 13:08:52 -04001753/* lengths of messages */
1754#define DTLS1_COOKIE_LENGTH 256
1755
1756#define DTLS1_RT_HEADER_LENGTH 13
1757
1758#define DTLS1_HM_HEADER_LENGTH 12
1759
1760#define DTLS1_CCS_HEADER_LENGTH 1
1761
1762#define DTLS1_AL_HEADER_LENGTH 2
1763
David Benjamin593047f2015-05-08 13:08:52 -04001764struct hm_header_st {
1765 uint8_t type;
1766 uint32_t msg_len;
1767 uint16_t seq;
1768 uint32_t frag_off;
1769 uint32_t frag_len;
David Benjamin593047f2015-05-08 13:08:52 -04001770};
1771
David Benjamin528bd262016-07-08 09:34:05 -07001772/* An hm_fragment is an incoming DTLS message, possibly not yet assembled. */
David Benjamin86e95b82017-07-18 16:34:25 -04001773struct hm_fragment {
David Benjamin528bd262016-07-08 09:34:05 -07001774 /* type is the type of the message. */
1775 uint8_t type;
1776 /* seq is the sequence number of this message. */
1777 uint16_t seq;
1778 /* msg_len is the length of the message body. */
1779 uint32_t msg_len;
1780 /* data is a pointer to the message, including message header. It has length
1781 * |DTLS1_HM_HEADER_LENGTH| + |msg_len|. */
1782 uint8_t *data;
1783 /* reassembly is a bitmask of |msg_len| bits corresponding to which parts of
1784 * the message have been received. It is NULL if the message is complete. */
David Benjamin593047f2015-05-08 13:08:52 -04001785 uint8_t *reassembly;
David Benjamin86e95b82017-07-18 16:34:25 -04001786};
David Benjamin593047f2015-05-08 13:08:52 -04001787
David Benjaminad8f5e12017-02-20 17:00:20 -05001788struct OPENSSL_timeval {
1789 uint64_t tv_sec;
1790 uint32_t tv_usec;
1791};
1792
David Benjamin86e95b82017-07-18 16:34:25 -04001793struct DTLS1_STATE {
David Benjamin593047f2015-05-08 13:08:52 -04001794 /* send_cookie is true if we are resending the ClientHello
1795 * with a cookie from a HelloVerifyRequest. */
1796 unsigned int send_cookie;
1797
1798 uint8_t cookie[DTLS1_COOKIE_LENGTH];
1799 size_t cookie_len;
1800
1801 /* The current data and handshake epoch. This is initially undefined, and
1802 * starts at zero once the initial handshake is completed. */
1803 uint16_t r_epoch;
1804 uint16_t w_epoch;
1805
1806 /* records being received in the current epoch */
1807 DTLS1_BITMAP bitmap;
1808
David Benjamin593047f2015-05-08 13:08:52 -04001809 uint16_t handshake_write_seq;
David Benjamin593047f2015-05-08 13:08:52 -04001810 uint16_t handshake_read_seq;
1811
1812 /* save last sequence number for retransmissions */
1813 uint8_t last_write_sequence[8];
David Benjamincfc11c22017-07-18 22:45:18 -04001814 SSLAEADContext *last_aead_write_ctx;
David Benjamin593047f2015-05-08 13:08:52 -04001815
David Benjaminec847ce2016-06-17 19:30:47 -04001816 /* incoming_messages is a ring buffer of incoming handshake messages that have
1817 * yet to be processed. The front of the ring buffer is message number
1818 * |handshake_read_seq|, at position |handshake_read_seq| %
1819 * |SSL_MAX_HANDSHAKE_FLIGHT|. */
1820 hm_fragment *incoming_messages[SSL_MAX_HANDSHAKE_FLIGHT];
David Benjamin593047f2015-05-08 13:08:52 -04001821
David Benjamin29a83c52016-06-17 19:12:54 -04001822 /* outgoing_messages is the queue of outgoing messages from the last handshake
1823 * flight. */
1824 DTLS_OUTGOING_MESSAGE outgoing_messages[SSL_MAX_HANDSHAKE_FLIGHT];
1825 uint8_t outgoing_messages_len;
David Benjamin593047f2015-05-08 13:08:52 -04001826
David Benjamin1a999cf2017-01-03 10:30:35 -05001827 /* outgoing_written is the number of outgoing messages that have been
1828 * written. */
1829 uint8_t outgoing_written;
1830 /* outgoing_offset is the number of bytes of the next outgoing message have
1831 * been written. */
1832 uint32_t outgoing_offset;
1833
David Benjamin593047f2015-05-08 13:08:52 -04001834 unsigned int mtu; /* max DTLS packet size */
1835
David Benjamin593047f2015-05-08 13:08:52 -04001836 /* num_timeouts is the number of times the retransmit timer has fired since
1837 * the last time it was reset. */
1838 unsigned int num_timeouts;
1839
1840 /* Indicates when the last handshake msg or heartbeat sent will
David Benjamin4d2e7ce2015-05-08 13:29:45 -04001841 * timeout. */
David Benjaminad8f5e12017-02-20 17:00:20 -05001842 struct OPENSSL_timeval next_timeout;
David Benjamin593047f2015-05-08 13:08:52 -04001843
Taylor Brandstetter376a0fe2016-05-10 19:30:28 -07001844 /* timeout_duration_ms is the timeout duration in milliseconds. */
1845 unsigned timeout_duration_ms;
David Benjamin86e95b82017-07-18 16:34:25 -04001846};
David Benjamin593047f2015-05-08 13:08:52 -04001847
David Benjamine39ac8f2017-07-20 12:22:21 -04001848/* SSLConnection backs the public |SSL| type. Due to compatibility constraints,
1849 * it is a base class for |ssl_st|. */
David Benjamin86e95b82017-07-18 16:34:25 -04001850struct SSLConnection {
David Benjamin3f2611a2017-02-06 13:38:26 -05001851 /* method is the method table corresponding to the current protocol (DTLS or
1852 * TLS). */
1853 const SSL_PROTOCOL_METHOD *method;
1854
1855 /* version is the protocol version. */
Steven Valdez8f36c512017-06-20 10:55:02 -04001856 uint16_t version;
David Benjamin3f2611a2017-02-06 13:38:26 -05001857
David Benjaminfc08dfc2017-06-20 14:39:32 -04001858 /* conf_max_version is the maximum acceptable protocol version configured by
1859 * |SSL_set_max_proto_version|. Note this version is normalized in DTLS and is
1860 * further constrainted by |SSL_OP_NO_*|. */
1861 uint16_t conf_max_version;
David Benjamin3f2611a2017-02-06 13:38:26 -05001862
David Benjaminfc08dfc2017-06-20 14:39:32 -04001863 /* conf_min_version is the minimum acceptable protocol version configured by
1864 * |SSL_set_min_proto_version|. Note this version is normalized in DTLS and is
1865 * further constrainted by |SSL_OP_NO_*|. */
1866 uint16_t conf_min_version;
David Benjamin3f2611a2017-02-06 13:38:26 -05001867
Steven Valdez52586f92017-07-11 15:08:32 -04001868 /* tls13_variant is the variant of TLS 1.3 we are using for this
1869 * configuration. */
1870 enum tls13_variant_t tls13_variant;
1871
David Benjamin3f2611a2017-02-06 13:38:26 -05001872 uint16_t max_send_fragment;
1873
1874 /* There are 2 BIO's even though they are normally both the same. This is so
1875 * data can be read and written to different handlers */
1876
1877 BIO *rbio; /* used by SSL_read */
1878 BIO *wbio; /* used by SSL_write */
1879
1880 int (*handshake_func)(SSL_HANDSHAKE *hs);
1881
1882 BUF_MEM *init_buf; /* buffer used during init */
1883
1884 /* init_msg is a pointer to the current handshake message body. */
1885 const uint8_t *init_msg;
1886 /* init_num is the length of the current handshake message body. */
1887 uint32_t init_num;
1888
David Benjamin86e95b82017-07-18 16:34:25 -04001889 SSL3_STATE *s3; /* SSLv3 variables */
1890 DTLS1_STATE *d1; /* DTLSv1 variables */
David Benjamin3f2611a2017-02-06 13:38:26 -05001891
1892 /* callback that allows applications to peek at protocol messages */
1893 void (*msg_callback)(int write_p, int version, int content_type,
1894 const void *buf, size_t len, SSL *ssl, void *arg);
1895 void *msg_callback_arg;
1896
1897 X509_VERIFY_PARAM *param;
1898
1899 /* crypto */
1900 struct ssl_cipher_preference_list_st *cipher_list;
1901
1902 /* session info */
1903
1904 /* client cert? */
1905 /* This is used to hold the server certificate used */
David Benjamin86e95b82017-07-18 16:34:25 -04001906 CERT *cert;
David Benjamin3f2611a2017-02-06 13:38:26 -05001907
1908 /* This holds a variable that indicates what we were doing when a 0 or -1 is
1909 * returned. This is needed for non-blocking IO so we know what request
1910 * needs re-doing when in SSL_accept or SSL_connect */
1911 int rwstate;
1912
1913 /* initial_timeout_duration_ms is the default DTLS timeout duration in
1914 * milliseconds. It's used to initialize the timer any time it's restarted. */
1915 unsigned initial_timeout_duration_ms;
1916
David Benjamin3f2611a2017-02-06 13:38:26 -05001917 /* session is the configured session to be offered by the client. This session
1918 * is immutable. */
1919 SSL_SESSION *session;
1920
1921 int (*verify_callback)(int ok,
1922 X509_STORE_CTX *ctx); /* fail if callback returns 0 */
1923
David Benjamin3a1dd462017-07-11 16:13:10 -04001924 enum ssl_verify_result_t (*custom_verify_callback)(SSL *ssl,
1925 uint8_t *out_alert);
1926
David Benjamin3f2611a2017-02-06 13:38:26 -05001927 void (*info_callback)(const SSL *ssl, int type, int value);
1928
1929 /* Server-only: psk_identity_hint is the identity hint to send in
1930 * PSK-based key exchanges. */
1931 char *psk_identity_hint;
1932
1933 unsigned int (*psk_client_callback)(SSL *ssl, const char *hint,
1934 char *identity,
1935 unsigned int max_identity_len,
1936 uint8_t *psk, unsigned int max_psk_len);
1937 unsigned int (*psk_server_callback)(SSL *ssl, const char *identity,
1938 uint8_t *psk, unsigned int max_psk_len);
1939
1940 SSL_CTX *ctx;
1941
1942 /* extra application data */
1943 CRYPTO_EX_DATA ex_data;
1944
1945 /* for server side, keep the list of CA_dn we can use */
Adam Langley34b4c822017-02-02 10:57:17 -08001946 STACK_OF(CRYPTO_BUFFER) *client_CA;
1947
1948 /* cached_x509_client_CA is a cache of parsed versions of the elements of
1949 * |client_CA|. */
1950 STACK_OF(X509_NAME) *cached_x509_client_CA;
David Benjamin3f2611a2017-02-06 13:38:26 -05001951
1952 uint32_t options; /* protocol behaviour */
1953 uint32_t mode; /* API behaviour */
1954 uint32_t max_cert_list;
1955 char *tlsext_hostname;
1956 size_t supported_group_list_len;
1957 uint16_t *supported_group_list; /* our list */
1958
David Benjaminbe497062017-03-10 16:08:36 -05001959 /* session_ctx is the |SSL_CTX| used for the session cache and related
1960 * settings. */
1961 SSL_CTX *session_ctx;
David Benjamin3f2611a2017-02-06 13:38:26 -05001962
1963 /* srtp_profiles is the list of configured SRTP protection profiles for
1964 * DTLS-SRTP. */
1965 STACK_OF(SRTP_PROTECTION_PROFILE) *srtp_profiles;
1966
1967 /* srtp_profile is the selected SRTP protection profile for
1968 * DTLS-SRTP. */
1969 const SRTP_PROTECTION_PROFILE *srtp_profile;
1970
1971 /* The client's Channel ID private key. */
1972 EVP_PKEY *tlsext_channel_id_private;
1973
1974 /* For a client, this contains the list of supported protocols in wire
1975 * format. */
1976 uint8_t *alpn_client_proto_list;
1977 unsigned alpn_client_proto_list_len;
1978
1979 /* renegotiate_mode controls how peer renegotiation attempts are handled. */
1980 enum ssl_renegotiate_mode_t renegotiate_mode;
1981
1982 /* verify_mode is a bitmask of |SSL_VERIFY_*| values. */
1983 uint8_t verify_mode;
1984
1985 /* server is true iff the this SSL* is the server half. Note: before the SSL*
1986 * is initialized by either SSL_set_accept_state or SSL_set_connect_state,
1987 * the side is not determined. In this state, server is always false. */
1988 unsigned server:1;
1989
1990 /* quiet_shutdown is true if the connection should not send a close_notify on
1991 * shutdown. */
1992 unsigned quiet_shutdown:1;
1993
1994 /* Enable signed certificate time stamps. Currently client only. */
1995 unsigned signed_cert_timestamps_enabled:1;
1996
1997 /* ocsp_stapling_enabled is only used by client connections and indicates
1998 * whether OCSP stapling will be requested. */
1999 unsigned ocsp_stapling_enabled:1;
2000
2001 /* tlsext_channel_id_enabled is copied from the |SSL_CTX|. For a server,
2002 * means that we'll accept Channel IDs from clients. For a client, means that
2003 * we'll advertise support. */
2004 unsigned tlsext_channel_id_enabled:1;
2005
2006 /* retain_only_sha256_of_client_certs is true if we should compute the SHA256
2007 * hash of the peer's certificate and then discard it to save memory and
2008 * session space. Only effective on the server side. */
2009 unsigned retain_only_sha256_of_client_certs:1;
Steven Valdez2d850622017-01-11 11:34:52 -05002010
2011 /* early_data_accepted is true if early data was accepted by the server. */
2012 unsigned early_data_accepted:1;
David Benjamin3f2611a2017-02-06 13:38:26 -05002013};
2014
Steven Valdeza833c352016-11-01 13:39:36 -04002015/* From draft-ietf-tls-tls13-18, used in determining PSK modes. */
2016#define SSL_PSK_KE 0x0
2017#define SSL_PSK_DHE_KE 0x1
Steven Valdez1e6f11a2016-07-27 11:10:52 -04002018
Steven Valdezc4aa7272016-10-03 12:25:56 -04002019/* From draft-ietf-tls-tls13-16, used in determining whether to respond with a
2020 * KeyUpdate. */
2021#define SSL_KEY_UPDATE_NOT_REQUESTED 0
2022#define SSL_KEY_UPDATE_REQUESTED 1
2023
Alessandro Ghedinide254b42017-04-17 19:12:33 +01002024/* kMaxEarlyDataAccepted is the advertised number of plaintext bytes of early
2025 * data that will be accepted. This value should be slightly below
2026 * kMaxEarlyDataSkipped in tls_record.c, which is measured in ciphertext. */
2027static const size_t kMaxEarlyDataAccepted = 14336;
2028
Adam Langley3509dac2017-02-01 11:59:18 -08002029CERT *ssl_cert_new(const SSL_X509_METHOD *x509_method);
Adam Langley95c29f32014-06-20 12:00:00 -07002030CERT *ssl_cert_dup(CERT *cert);
Adam Langley95c29f32014-06-20 12:00:00 -07002031void ssl_cert_clear_certs(CERT *c);
2032void ssl_cert_free(CERT *c);
Adam Langley3509dac2017-02-01 11:59:18 -08002033int ssl_set_cert(CERT *cert, CRYPTO_BUFFER *buffer);
Adam Langley52940c42017-02-01 12:40:31 -08002034int ssl_is_key_type_supported(int key_type);
Adam Langleyc26692c2017-01-25 09:34:42 -08002035/* ssl_compare_public_and_private_key returns one if |pubkey| is the public
2036 * counterpart to |privkey|. Otherwise it returns zero and pushes a helpful
2037 * message on the error queue. */
2038int ssl_compare_public_and_private_key(const EVP_PKEY *pubkey,
2039 const EVP_PKEY *privkey);
Adam Langley3a2b47a2017-01-24 13:59:42 -08002040int ssl_cert_check_private_key(const CERT *cert, const EVP_PKEY *privkey);
David Benjaminf3c8f8d2016-11-17 17:20:47 +09002041int ssl_get_new_session(SSL_HANDSHAKE *hs, int is_server);
Steven Valdez1e6f11a2016-07-27 11:10:52 -04002042int ssl_encrypt_ticket(SSL *ssl, CBB *out, const SSL_SESSION *session);
David Benjamine3aa1d92015-06-16 15:34:50 -04002043
David Benjamin31b0c9b2017-07-20 14:49:15 -04002044/* ssl_session_new returns a newly-allocated blank |SSL_SESSION| or nullptr on
Adam Langley46db7af2017-02-01 15:49:37 -08002045 * error. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04002046UniquePtr<SSL_SESSION> ssl_session_new(const SSL_X509_METHOD *x509_method);
Adam Langley46db7af2017-02-01 15:49:37 -08002047
2048/* SSL_SESSION_parse parses an |SSL_SESSION| from |cbs| and advances |cbs| over
2049 * the parsed data. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04002050UniquePtr<SSL_SESSION> SSL_SESSION_parse(CBS *cbs,
2051 const SSL_X509_METHOD *x509_method,
2052 CRYPTO_BUFFER_POOL *pool);
Adam Langley46db7af2017-02-01 15:49:37 -08002053
Steven Valdez4aa154e2016-07-29 14:32:55 -04002054/* ssl_session_is_context_valid returns one if |session|'s session ID context
2055 * matches the one set on |ssl| and zero otherwise. */
2056int ssl_session_is_context_valid(const SSL *ssl, const SSL_SESSION *session);
2057
2058/* ssl_session_is_time_valid returns one if |session| is still valid and zero if
2059 * it has expired. */
2060int ssl_session_is_time_valid(const SSL *ssl, const SSL_SESSION *session);
2061
David Benjamin45738dd2017-02-09 20:01:26 -05002062/* ssl_session_is_resumable returns one if |session| is resumable for |hs| and
David Benjamin75f99142016-11-12 12:36:06 +09002063 * zero otherwise. */
David Benjamin45738dd2017-02-09 20:01:26 -05002064int ssl_session_is_resumable(const SSL_HANDSHAKE *hs,
2065 const SSL_SESSION *session);
David Benjamin75f99142016-11-12 12:36:06 +09002066
Steven Valdez8f36c512017-06-20 10:55:02 -04002067/* SSL_SESSION_protocol_version returns the protocol version associated with
2068 * |session|. */
2069uint16_t SSL_SESSION_protocol_version(const SSL_SESSION *session);
2070
2071/* SSL_SESSION_get_digest returns the digest used in |session|. */
2072const EVP_MD *SSL_SESSION_get_digest(const SSL_SESSION *session);
Steven Valdez908ac192017-01-12 13:17:07 -05002073
David Benjamin4d0be242016-09-01 01:10:07 -04002074void ssl_set_session(SSL *ssl, SSL_SESSION *session);
2075
David Benjamine3aa1d92015-06-16 15:34:50 -04002076enum ssl_session_result_t {
2077 ssl_session_success,
2078 ssl_session_error,
2079 ssl_session_retry,
Adam Langley4c341d02017-03-08 19:33:21 -08002080 ssl_session_ticket_retry,
David Benjamine3aa1d92015-06-16 15:34:50 -04002081};
2082
David Benjamin731058e2016-12-03 23:15:13 -05002083/* ssl_get_prev_session looks up the previous session based on |client_hello|.
2084 * On success, it sets |*out_session| to the session or NULL if none was found.
2085 * If the session could not be looked up synchronously, it returns
Adam Langley4c341d02017-03-08 19:33:21 -08002086 * |ssl_session_retry| and should be called again. If a ticket could not be
2087 * decrypted immediately it returns |ssl_session_ticket_retry| and should also
2088 * be called again. Otherwise, it returns |ssl_session_error|. */
David Benjamine3aa1d92015-06-16 15:34:50 -04002089enum ssl_session_result_t ssl_get_prev_session(
David Benjamin75f99142016-11-12 12:36:06 +09002090 SSL *ssl, SSL_SESSION **out_session, int *out_tickets_supported,
David Benjamin731058e2016-12-03 23:15:13 -05002091 int *out_renew_ticket, const SSL_CLIENT_HELLO *client_hello);
David Benjamine3aa1d92015-06-16 15:34:50 -04002092
Steven Valdez4aa154e2016-07-29 14:32:55 -04002093/* The following flags determine which parts of the session are duplicated. */
2094#define SSL_SESSION_DUP_AUTH_ONLY 0x0
2095#define SSL_SESSION_INCLUDE_TICKET 0x1
2096#define SSL_SESSION_INCLUDE_NONAUTH 0x2
2097#define SSL_SESSION_DUP_ALL \
2098 (SSL_SESSION_INCLUDE_TICKET | SSL_SESSION_INCLUDE_NONAUTH)
2099
Steven Valdez87eab492016-06-27 16:34:59 -04002100/* SSL_SESSION_dup returns a newly-allocated |SSL_SESSION| with a copy of the
David Benjamin31b0c9b2017-07-20 14:49:15 -04002101 * fields in |session| or nullptr on error. The new session is non-resumable and
Steven Valdez87eab492016-06-27 16:34:59 -04002102 * must be explicitly marked resumable once it has been filled in. */
David Benjamin31b0c9b2017-07-20 14:49:15 -04002103OPENSSL_EXPORT UniquePtr<SSL_SESSION> SSL_SESSION_dup(SSL_SESSION *session,
2104 int dup_flags);
Steven Valdez87eab492016-06-27 16:34:59 -04002105
David Benjamin17b30832017-01-28 14:00:32 -05002106/* ssl_session_rebase_time updates |session|'s start time to the current time,
David Benjamin123db572016-11-03 16:59:25 -04002107 * adjusting the timeout so the expiration time is unchanged. */
David Benjamin17b30832017-01-28 14:00:32 -05002108void ssl_session_rebase_time(SSL *ssl, SSL_SESSION *session);
2109
2110/* ssl_session_renew_timeout calls |ssl_session_rebase_time| and renews
2111 * |session|'s timeout to |timeout| (measured from the current time). The
2112 * renewal is clamped to the session's auth_timeout. */
David Benjaminad8f5e12017-02-20 17:00:20 -05002113void ssl_session_renew_timeout(SSL *ssl, SSL_SESSION *session,
2114 uint32_t timeout);
David Benjamin123db572016-11-03 16:59:25 -04002115
Adam Langley858a88d2014-06-20 12:00:00 -07002116void ssl_cipher_preference_list_free(
Adam Langleyfcf25832014-12-18 17:42:32 -08002117 struct ssl_cipher_preference_list_st *cipher_list);
David Benjaminabbbee12016-10-31 19:20:42 -04002118
2119/* ssl_get_cipher_preferences returns the cipher preference list for TLS 1.2 and
2120 * below. */
David Benjaminaf3b3d32016-10-31 16:29:57 -04002121const struct ssl_cipher_preference_list_st *ssl_get_cipher_preferences(
2122 const SSL *ssl);
David Benjaminea72bd02014-12-21 21:27:41 -05002123
David Benjaminf3c8f8d2016-11-17 17:20:47 +09002124void ssl_update_cache(SSL_HANDSHAKE *hs, int mode);
David Benjaminf31e6812014-11-13 18:05:55 -05002125
David Benjaminc3c88822016-11-14 10:32:04 +09002126int ssl3_get_finished(SSL_HANDSHAKE *hs);
David Benjamin0d56f882015-12-19 17:05:56 -05002127int ssl3_send_alert(SSL *ssl, int level, int desc);
David Benjaminf71036e2017-01-21 14:49:39 -05002128int ssl3_get_message(SSL *ssl);
David Benjaminced94792016-11-14 17:12:11 +09002129void ssl3_get_current_message(const SSL *ssl, CBS *out);
David Benjamin4497e582016-07-27 17:51:49 -04002130void ssl3_release_current_message(SSL *ssl, int free_buffer);
David Benjamin854dd652014-08-26 00:32:30 -04002131
David Benjamin16315f72017-01-12 20:02:05 -05002132int ssl3_send_finished(SSL_HANDSHAKE *hs);
David Benjamin0d56f882015-12-19 17:05:56 -05002133int ssl3_dispatch_alert(SSL *ssl);
David Benjamin163f29a2016-07-28 11:05:58 -04002134int ssl3_read_app_data(SSL *ssl, int *out_got_handshake, uint8_t *buf, int len,
2135 int peek);
David Benjamina41280d2015-11-26 02:16:49 -05002136int ssl3_read_change_cipher_spec(SSL *ssl);
David Benjamina6022772015-05-30 16:22:10 -04002137void ssl3_read_close_notify(SSL *ssl);
David Benjamin163f29a2016-07-28 11:05:58 -04002138int ssl3_read_handshake_bytes(SSL *ssl, uint8_t *buf, int len);
Steven Valdeze831a812017-03-09 14:56:07 -05002139int ssl3_write_app_data(SSL *ssl, int *out_needs_handshake, const uint8_t *buf,
2140 int len);
David Benjamin0d56f882015-12-19 17:05:56 -05002141int ssl3_output_cert_chain(SSL *ssl);
Steven Valdezb6b6ff32016-10-26 11:56:35 -04002142
David Benjamin0d56f882015-12-19 17:05:56 -05002143int ssl3_new(SSL *ssl);
2144void ssl3_free(SSL *ssl);
David Benjamince8c9d22016-11-14 10:45:16 +09002145int ssl3_accept(SSL_HANDSHAKE *hs);
2146int ssl3_connect(SSL_HANDSHAKE *hs);
Adam Langley95c29f32014-06-20 12:00:00 -07002147
David Benjamin75836432016-06-17 18:48:29 -04002148int ssl3_init_message(SSL *ssl, CBB *cbb, CBB *body, uint8_t type);
Steven Valdez5eead162016-11-11 22:23:25 -05002149int ssl3_finish_message(SSL *ssl, CBB *cbb, uint8_t **out_msg, size_t *out_len);
David Benjamindaf207a2017-01-03 18:37:41 -05002150int ssl3_add_message(SSL *ssl, uint8_t *msg, size_t len);
2151int ssl3_add_change_cipher_spec(SSL *ssl);
2152int ssl3_add_alert(SSL *ssl, uint8_t level, uint8_t desc);
David Benjamindaf207a2017-01-03 18:37:41 -05002153int ssl3_flush_flight(SSL *ssl);
David Benjamin75836432016-06-17 18:48:29 -04002154
David Benjamin75836432016-06-17 18:48:29 -04002155int dtls1_init_message(SSL *ssl, CBB *cbb, CBB *body, uint8_t type);
Steven Valdez5eead162016-11-11 22:23:25 -05002156int dtls1_finish_message(SSL *ssl, CBB *cbb, uint8_t **out_msg,
2157 size_t *out_len);
David Benjamindaf207a2017-01-03 18:37:41 -05002158int dtls1_add_message(SSL *ssl, uint8_t *msg, size_t len);
2159int dtls1_add_change_cipher_spec(SSL *ssl);
2160int dtls1_add_alert(SSL *ssl, uint8_t level, uint8_t desc);
David Benjamin1a999cf2017-01-03 10:30:35 -05002161int dtls1_flush_flight(SSL *ssl);
David Benjaminc6604172016-06-02 16:38:35 -04002162
David Benjamindaf207a2017-01-03 18:37:41 -05002163/* ssl_add_message_cbb finishes the handshake message in |cbb| and adds it to
2164 * the pending flight. It returns one on success and zero on error. */
2165int ssl_add_message_cbb(SSL *ssl, CBB *cbb);
Steven Valdez5eead162016-11-11 22:23:25 -05002166
David Benjaminced94792016-11-14 17:12:11 +09002167/* ssl_hash_current_message incorporates the current handshake message into the
2168 * handshake hash. It returns one on success and zero on allocation failure. */
Steven Valdez908ac192017-01-12 13:17:07 -05002169int ssl_hash_current_message(SSL_HANDSHAKE *hs);
David Benjaminced94792016-11-14 17:12:11 +09002170
David Benjaminc6604172016-06-02 16:38:35 -04002171/* dtls1_get_record reads a new input record. On success, it places it in
2172 * |ssl->s3->rrec| and returns one. Otherwise it returns <= 0 on error or if
2173 * more data is needed. */
2174int dtls1_get_record(SSL *ssl);
2175
David Benjamin163f29a2016-07-28 11:05:58 -04002176int dtls1_read_app_data(SSL *ssl, int *out_got_handshake, uint8_t *buf, int len,
2177 int peek);
David Benjamina41280d2015-11-26 02:16:49 -05002178int dtls1_read_change_cipher_spec(SSL *ssl);
David Benjamina6022772015-05-30 16:22:10 -04002179void dtls1_read_close_notify(SSL *ssl);
Adam Langley95c29f32014-06-20 12:00:00 -07002180
Steven Valdeze831a812017-03-09 14:56:07 -05002181int dtls1_write_app_data(SSL *ssl, int *out_needs_handshake, const uint8_t *buf,
2182 int len);
David Benjamin45d45c12016-06-07 15:20:49 -04002183
2184/* dtls1_write_record sends a record. It returns one on success and <= 0 on
2185 * error. */
2186int dtls1_write_record(SSL *ssl, int type, const uint8_t *buf, size_t len,
2187 enum dtls1_use_epoch_t use_epoch);
Adam Langley95c29f32014-06-20 12:00:00 -07002188
David Benjamin0d56f882015-12-19 17:05:56 -05002189int dtls1_send_finished(SSL *ssl, int a, int b, const char *sender, int slen);
David Benjaminaad50db2016-06-23 17:49:12 -04002190int dtls1_retransmit_outgoing_messages(SSL *ssl);
David Benjamin0d56f882015-12-19 17:05:56 -05002191void dtls1_clear_record_buffer(SSL *ssl);
David Benjaminc6604172016-06-02 16:38:35 -04002192int dtls1_parse_fragment(CBS *cbs, struct hm_header_st *out_hdr,
2193 CBS *out_body);
David Benjamin0d56f882015-12-19 17:05:56 -05002194int dtls1_check_timeout_num(SSL *ssl);
David Benjamin0d56f882015-12-19 17:05:56 -05002195int dtls1_handshake_write(SSL *ssl);
David Benjamin2fa83de2015-02-08 01:40:08 -05002196
David Benjamin0d56f882015-12-19 17:05:56 -05002197void dtls1_start_timer(SSL *ssl);
2198void dtls1_stop_timer(SSL *ssl);
2199int dtls1_is_timer_expired(SSL *ssl);
2200void dtls1_double_timeout(SSL *ssl);
Adam Langley95c29f32014-06-20 12:00:00 -07002201unsigned int dtls1_min_mtu(void);
2202
David Benjamin0d56f882015-12-19 17:05:56 -05002203int dtls1_new(SSL *ssl);
2204int dtls1_accept(SSL *ssl);
2205int dtls1_connect(SSL *ssl);
2206void dtls1_free(SSL *ssl);
Adam Langley95c29f32014-06-20 12:00:00 -07002207
David Benjaminf71036e2017-01-21 14:49:39 -05002208int dtls1_get_message(SSL *ssl);
David Benjaminced94792016-11-14 17:12:11 +09002209void dtls1_get_current_message(const SSL *ssl, CBS *out);
David Benjamin4497e582016-07-27 17:51:49 -04002210void dtls1_release_current_message(SSL *ssl, int free_buffer);
David Benjamin0d56f882015-12-19 17:05:56 -05002211int dtls1_dispatch_alert(SSL *ssl);
Adam Langley95c29f32014-06-20 12:00:00 -07002212
David Benjamin67739722016-11-17 17:03:59 +09002213int tls1_change_cipher_state(SSL_HANDSHAKE *hs, int which);
Steven Valdez908ac192017-01-12 13:17:07 -05002214int tls1_generate_master_secret(SSL_HANDSHAKE *hs, uint8_t *out,
2215 const uint8_t *premaster, size_t premaster_len);
Adam Langley95c29f32014-06-20 12:00:00 -07002216
Steven Valdez5440fe02016-07-18 12:40:30 -04002217/* tls1_get_grouplist sets |*out_group_ids| and |*out_group_ids_len| to the
David Benjaminf04976b2016-10-07 00:37:55 -04002218 * locally-configured group preference list. */
2219void tls1_get_grouplist(SSL *ssl, const uint16_t **out_group_ids,
Steven Valdez5440fe02016-07-18 12:40:30 -04002220 size_t *out_group_ids_len);
2221
David Benjamin9d0b4bc2016-10-07 00:34:08 -04002222/* tls1_check_group_id returns one if |group_id| is consistent with
2223 * locally-configured group preferences. */
Steven Valdezce902a92016-05-17 11:47:53 -04002224int tls1_check_group_id(SSL *ssl, uint16_t group_id);
Sigbjorn Vik2b23d242015-06-29 15:07:26 +02002225
Steven Valdezce902a92016-05-17 11:47:53 -04002226/* tls1_get_shared_group sets |*out_group_id| to the first preferred shared
2227 * group between client and server preferences and returns one. If none may be
David Benjamin4298d772015-12-19 00:18:25 -05002228 * found, it returns zero. */
David Benjaminf3c8f8d2016-11-17 17:20:47 +09002229int tls1_get_shared_group(SSL_HANDSHAKE *hs, uint16_t *out_group_id);
David Benjamin072334d2014-07-13 16:24:27 -04002230
2231/* tls1_set_curves converts the array of |ncurves| NIDs pointed to by |curves|
Steven Valdezce902a92016-05-17 11:47:53 -04002232 * into a newly allocated array of TLS group IDs. On success, the function
2233 * returns one and writes the array to |*out_group_ids| and its size to
2234 * |*out_group_ids_len|. Otherwise, it returns zero. */
2235int tls1_set_curves(uint16_t **out_group_ids, size_t *out_group_ids_len,
Adam Langleyfcf25832014-12-18 17:42:32 -08002236 const int *curves, size_t ncurves);
David Benjamin072334d2014-07-13 16:24:27 -04002237
Alessandro Ghedini5fd18072016-09-28 21:04:25 +01002238/* tls1_set_curves_list converts the string of curves pointed to by |curves|
2239 * into a newly allocated array of TLS group IDs. On success, the function
2240 * returns one and writes the array to |*out_group_ids| and its size to
2241 * |*out_group_ids_len|. Otherwise, it returns zero. */
2242int tls1_set_curves_list(uint16_t **out_group_ids, size_t *out_group_ids_len,
2243 const char *curves);
2244
David Benjamine8d53502015-10-10 14:13:23 -04002245/* ssl_add_clienthello_tlsext writes ClientHello extensions to |out|. It
2246 * returns one on success and zero on failure. The |header_len| argument is the
2247 * length of the ClientHello written so far and is used to compute the padding
2248 * length. (It does not include the record header.) */
David Benjamin8c880a22016-12-03 02:20:34 -05002249int ssl_add_clienthello_tlsext(SSL_HANDSHAKE *hs, CBB *out, size_t header_len);
David Benjamine8d53502015-10-10 14:13:23 -04002250
David Benjamin8c880a22016-12-03 02:20:34 -05002251int ssl_add_serverhello_tlsext(SSL_HANDSHAKE *hs, CBB *out);
David Benjamin731058e2016-12-03 23:15:13 -05002252int ssl_parse_clienthello_tlsext(SSL_HANDSHAKE *hs,
2253 const SSL_CLIENT_HELLO *client_hello);
David Benjamin8c880a22016-12-03 02:20:34 -05002254int ssl_parse_serverhello_tlsext(SSL_HANDSHAKE *hs, CBS *cbs);
Adam Langley95c29f32014-06-20 12:00:00 -07002255
Adam Langleyfcf25832014-12-18 17:42:32 -08002256#define tlsext_tick_md EVP_sha256
David Benjamine3aa1d92015-06-16 15:34:50 -04002257
Adam Langley4c341d02017-03-08 19:33:21 -08002258/* ssl_process_ticket processes a session ticket from the client. It returns
2259 * one of:
2260 * |ssl_ticket_aead_success|: |*out_session| is set to the parsed session and
2261 * |*out_renew_ticket| is set to whether the ticket should be renewed.
2262 * |ssl_ticket_aead_ignore_ticket|: |*out_renew_ticket| is set to whether a
2263 * fresh ticket should be sent, but the given ticket cannot be used.
2264 * |ssl_ticket_aead_retry|: the ticket could not be immediately decrypted.
2265 * Retry later.
2266 * |ssl_ticket_aead_error|: an error occured that is fatal to the connection. */
2267enum ssl_ticket_aead_result_t ssl_process_ticket(
2268 SSL *ssl, SSL_SESSION **out_session, int *out_renew_ticket,
2269 const uint8_t *ticket, size_t ticket_len, const uint8_t *session_id,
2270 size_t session_id_len);
Adam Langley95c29f32014-06-20 12:00:00 -07002271
Nick Harper60a85cb2016-09-23 16:25:11 -07002272/* tls1_verify_channel_id processes the current message as a Channel ID message,
2273 * and verifies the signature. If the key is valid, it saves the Channel ID and
2274 * returns one. Otherwise, it returns zero. */
Steven Valdez908ac192017-01-12 13:17:07 -05002275int tls1_verify_channel_id(SSL_HANDSHAKE *hs);
Nick Harper60a85cb2016-09-23 16:25:11 -07002276
2277/* tls1_write_channel_id generates a Channel ID message and puts the output in
2278 * |cbb|. |ssl->tlsext_channel_id_private| must already be set before calling.
2279 * This function returns one on success and zero on error. */
Steven Valdez908ac192017-01-12 13:17:07 -05002280int tls1_write_channel_id(SSL_HANDSHAKE *hs, CBB *cbb);
Nick Harper60a85cb2016-09-23 16:25:11 -07002281
David Benjamind6a4ae92015-08-06 11:10:51 -04002282/* tls1_channel_id_hash computes the hash to be signed by Channel ID and writes
2283 * it to |out|, which must contain at least |EVP_MAX_MD_SIZE| bytes. It returns
2284 * one on success and zero on failure. */
Steven Valdez908ac192017-01-12 13:17:07 -05002285int tls1_channel_id_hash(SSL_HANDSHAKE *hs, uint8_t *out, size_t *out_len);
David Benjamind6a4ae92015-08-06 11:10:51 -04002286
Steven Valdez908ac192017-01-12 13:17:07 -05002287int tls1_record_handshake_hashes_for_channel_id(SSL_HANDSHAKE *hs);
Adam Langley1258b6a2014-06-20 12:00:00 -07002288
Nick Harper60a85cb2016-09-23 16:25:11 -07002289/* ssl_do_channel_id_callback checks runs |ssl->ctx->channel_id_cb| if
2290 * necessary. It returns one on success and zero on fatal error. Note that, on
2291 * success, |ssl->tlsext_channel_id_private| may be unset, in which case the
2292 * operation should be retried later. */
2293int ssl_do_channel_id_callback(SSL *ssl);
2294
David Benjamin0d56f882015-12-19 17:05:56 -05002295/* ssl3_can_false_start returns one if |ssl| is allowed to False Start and zero
David Benjamined7c4752015-02-16 19:16:46 -05002296 * otherwise. */
David Benjamin0d56f882015-12-19 17:05:56 -05002297int ssl3_can_false_start(const SSL *ssl);
David Benjaminceb6f282014-12-07 23:56:19 -05002298
Steven Valdez681eb6a2016-12-19 13:19:29 -05002299/* ssl_can_write returns one if |ssl| is allowed to write and zero otherwise. */
2300int ssl_can_write(const SSL *ssl);
2301
2302/* ssl_can_read returns one if |ssl| is allowed to read and zero otherwise. */
2303int ssl_can_read(const SSL *ssl);
2304
David Benjaminad8f5e12017-02-20 17:00:20 -05002305void ssl_get_current_time(const SSL *ssl, struct OPENSSL_timeval *out_clock);
David Benjamin721e8b72016-08-03 13:13:17 -04002306
David Benjamin2be4aa72017-01-02 07:56:51 -05002307/* ssl_reset_error_state resets state for |SSL_get_error|. */
2308void ssl_reset_error_state(SSL *ssl);
2309
Steven Valdez87eab492016-06-27 16:34:59 -04002310
Adam Langley11d11d62017-07-17 11:10:46 -07002311/* Utility macros */
2312
2313#if defined(__clang__)
2314/* SSL_FALLTHROUGH annotates a fallthough case in a switch statement. */
2315#define SSL_FALLTHROUGH [[clang::fallthrough]]
2316#else
2317#define SSL_FALLTHROUGH
2318#endif
2319
David Benjamin86e95b82017-07-18 16:34:25 -04002320} // namespace bssl
Adam Langley11d11d62017-07-17 11:10:46 -07002321
Steven Valdez87eab492016-06-27 16:34:59 -04002322
David Benjamine39ac8f2017-07-20 12:22:21 -04002323/* Opaque C types.
2324 *
2325 * The following types are exported to C code as public typedefs, so they must
2326 * be defined outside of the namespace. */
2327
2328/* ssl_method_st backs the public |SSL_METHOD| type. It is a compatibility
2329 * structure to support the legacy version-locked methods. */
2330struct ssl_method_st {
2331 /* version, if non-zero, is the only protocol version acceptable to an
2332 * SSL_CTX initialized from this method. */
2333 uint16_t version;
2334 /* method is the underlying SSL_PROTOCOL_METHOD that initializes the
2335 * SSL_CTX. */
2336 const SSL_PROTOCOL_METHOD *method;
2337 /* x509_method contains pointers to functions that might deal with |X509|
2338 * compatibility, or might be a no-op, depending on the application. */
2339 const SSL_X509_METHOD *x509_method;
2340};
2341
2342/* ssl_protocol_method_st, aka |SSL_PROTOCOL_METHOD| abstracts between TLS and
2343 * DTLS. */
2344struct ssl_protocol_method_st {
2345 /* is_dtls is one if the protocol is DTLS and zero otherwise. */
2346 char is_dtls;
2347 int (*ssl_new)(SSL *ssl);
2348 void (*ssl_free)(SSL *ssl);
2349 /* ssl_get_message reads the next handshake message. On success, it returns
2350 * one and sets |ssl->s3->tmp.message_type|, |ssl->init_msg|, and
2351 * |ssl->init_num|. Otherwise, it returns <= 0. */
2352 int (*ssl_get_message)(SSL *ssl);
2353 /* get_current_message sets |*out| to the current handshake message. This
2354 * includes the protocol-specific message header. */
2355 void (*get_current_message)(const SSL *ssl, CBS *out);
2356 /* release_current_message is called to release the current handshake message.
2357 * If |free_buffer| is one, buffers will also be released. */
2358 void (*release_current_message)(SSL *ssl, int free_buffer);
2359 /* read_app_data reads up to |len| bytes of application data into |buf|. On
2360 * success, it returns the number of bytes read. Otherwise, it returns <= 0
2361 * and sets |*out_got_handshake| to whether the failure was due to a
2362 * post-handshake handshake message. If so, it fills in the current message as
2363 * in |ssl_get_message|. */
2364 int (*read_app_data)(SSL *ssl, int *out_got_handshake, uint8_t *buf, int len,
2365 int peek);
2366 int (*read_change_cipher_spec)(SSL *ssl);
2367 void (*read_close_notify)(SSL *ssl);
2368 int (*write_app_data)(SSL *ssl, int *out_needs_handshake, const uint8_t *buf,
2369 int len);
2370 int (*dispatch_alert)(SSL *ssl);
2371 /* supports_cipher returns one if |cipher| is supported by this protocol and
2372 * zero otherwise. */
2373 int (*supports_cipher)(const SSL_CIPHER *cipher);
2374 /* init_message begins a new handshake message of type |type|. |cbb| is the
2375 * root CBB to be passed into |finish_message|. |*body| is set to a child CBB
2376 * the caller should write to. It returns one on success and zero on error. */
2377 int (*init_message)(SSL *ssl, CBB *cbb, CBB *body, uint8_t type);
2378 /* finish_message finishes a handshake message. It sets |*out_msg| to a
2379 * newly-allocated buffer with the serialized message. The caller must
2380 * release it with |OPENSSL_free| when done. It returns one on success and
2381 * zero on error. */
2382 int (*finish_message)(SSL *ssl, CBB *cbb, uint8_t **out_msg, size_t *out_len);
2383 /* add_message adds a handshake message to the pending flight. It returns one
2384 * on success and zero on error. In either case, it takes ownership of |msg|
2385 * and releases it with |OPENSSL_free| when done. */
2386 int (*add_message)(SSL *ssl, uint8_t *msg, size_t len);
2387 /* add_change_cipher_spec adds a ChangeCipherSpec record to the pending
2388 * flight. It returns one on success and zero on error. */
2389 int (*add_change_cipher_spec)(SSL *ssl);
2390 /* add_alert adds an alert to the pending flight. It returns one on success
2391 * and zero on error. */
2392 int (*add_alert)(SSL *ssl, uint8_t level, uint8_t desc);
2393 /* flush_flight flushes the pending flight to the transport. It returns one on
2394 * success and <= 0 on error. */
2395 int (*flush_flight)(SSL *ssl);
2396 /* expect_flight is called when the handshake expects a flight of messages from
2397 * the peer. */
2398 void (*expect_flight)(SSL *ssl);
2399 /* received_flight is called when the handshake has received a flight of
2400 * messages from the peer. */
2401 void (*received_flight)(SSL *ssl);
2402 /* set_read_state sets |ssl|'s read cipher state to |aead_ctx|. It returns
2403 * one on success and zero if changing the read state is forbidden at this
2404 * point. */
2405 int (*set_read_state)(SSL *ssl,
2406 bssl::UniquePtr<bssl::SSLAEADContext> aead_ctx);
2407 /* set_write_state sets |ssl|'s write cipher state to |aead_ctx|. It returns
2408 * one on success and zero if changing the write state is forbidden at this
2409 * point. */
2410 int (*set_write_state)(SSL *ssl,
2411 bssl::UniquePtr<bssl::SSLAEADContext> aead_ctx);
2412};
2413
2414struct ssl_x509_method_st {
2415 /* check_client_CA_list returns one if |names| is a good list of X.509
2416 * distinguished names and zero otherwise. This is used to ensure that we can
2417 * reject unparsable values at handshake time when using crypto/x509. */
2418 int (*check_client_CA_list)(STACK_OF(CRYPTO_BUFFER) *names);
2419
2420 /* cert_clear frees and NULLs all X509 certificate-related state. */
2421 void (*cert_clear)(CERT *cert);
2422 /* cert_free frees all X509-related state. */
2423 void (*cert_free)(CERT *cert);
2424 /* cert_flush_cached_chain drops any cached |X509|-based certificate chain
2425 * from |cert|. */
2426 /* cert_dup duplicates any needed fields from |cert| to |new_cert|. */
2427 void (*cert_dup)(CERT *new_cert, const CERT *cert);
2428 void (*cert_flush_cached_chain)(CERT *cert);
2429 /* cert_flush_cached_chain drops any cached |X509|-based leaf certificate
2430 * from |cert|. */
2431 void (*cert_flush_cached_leaf)(CERT *cert);
2432
2433 /* session_cache_objects fills out |sess->x509_peer| and |sess->x509_chain|
2434 * from |sess->certs| and erases |sess->x509_chain_without_leaf|. It returns
2435 * one on success or zero on error. */
2436 int (*session_cache_objects)(SSL_SESSION *session);
2437 /* session_dup duplicates any needed fields from |session| to |new_session|.
2438 * It returns one on success or zero on error. */
2439 int (*session_dup)(SSL_SESSION *new_session, const SSL_SESSION *session);
2440 /* session_clear frees any X509-related state from |session|. */
2441 void (*session_clear)(SSL_SESSION *session);
2442 /* session_verify_cert_chain verifies the certificate chain in |session|,
2443 * sets |session->verify_result| and returns one on success or zero on
2444 * error. */
2445 int (*session_verify_cert_chain)(SSL_SESSION *session, SSL *ssl,
2446 uint8_t *out_alert);
2447
2448 /* hs_flush_cached_ca_names drops any cached |X509_NAME|s from |hs|. */
2449 void (*hs_flush_cached_ca_names)(bssl::SSL_HANDSHAKE *hs);
2450 /* ssl_new does any neccessary initialisation of |ssl|. It returns one on
2451 * success or zero on error. */
2452 int (*ssl_new)(SSL *ssl);
2453 /* ssl_free frees anything created by |ssl_new|. */
2454 void (*ssl_free)(SSL *ssl);
2455 /* ssl_flush_cached_client_CA drops any cached |X509_NAME|s from |ssl|. */
2456 void (*ssl_flush_cached_client_CA)(SSL *ssl);
2457 /* ssl_auto_chain_if_needed runs the deprecated auto-chaining logic if
2458 * necessary. On success, it updates |ssl|'s certificate configuration as
2459 * needed and returns one. Otherwise, it returns zero. */
2460 int (*ssl_auto_chain_if_needed)(SSL *ssl);
2461 /* ssl_ctx_new does any neccessary initialisation of |ctx|. It returns one on
2462 * success or zero on error. */
2463 int (*ssl_ctx_new)(SSL_CTX *ctx);
2464 /* ssl_ctx_free frees anything created by |ssl_ctx_new|. */
2465 void (*ssl_ctx_free)(SSL_CTX *ctx);
2466 /* ssl_ctx_flush_cached_client_CA drops any cached |X509_NAME|s from |ctx|. */
2467 void (*ssl_ctx_flush_cached_client_CA)(SSL_CTX *ssl);
2468};
2469
2470/* ssl_st backs the public |SSL| type. It subclasses the true type so that
2471 * SSLConnection may be a C++ type with methods and destructor without
2472 * polluting the global namespace. */
2473struct ssl_st : public bssl::SSLConnection {};
2474
2475struct cert_st : public bssl::SSLCertConfig {};
2476
2477
David Benjamin2ee94aa2015-04-07 22:38:30 -04002478#endif /* OPENSSL_HEADER_SSL_INTERNAL_H */