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author | tb <> | 2024-07-10 08:49:48 +0000 |
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committer | tb <> | 2024-07-10 08:49:48 +0000 |
commit | 706a44fdaf1eb0113972a05daac068f336e41a20 (patch) | |
tree | a71a40a1c3fe822bbac938c795240511fe3a3c1d /src | |
parent | 7b49cb998603def159ecfb7f8c9c9ad872b1f28c (diff) | |
download | openbsd-706a44fdaf1eb0113972a05daac068f336e41a20.tar.gz openbsd-706a44fdaf1eb0113972a05daac068f336e41a20.tar.bz2 openbsd-706a44fdaf1eb0113972a05daac068f336e41a20.zip |
Import EVP_PKEY_CTX_set_tls1_prf_md.3 from OpenSSL 1.1.1
With only slight application of color to this entelodont's lips. It's the
usual deal - hard to say what's worse, the code or its docs...
Diffstat (limited to 'src')
-rw-r--r-- | src/lib/libcrypto/man/EVP_PKEY_CTX_set_tls1_prf_md.3 | 168 |
1 files changed, 168 insertions, 0 deletions
diff --git a/src/lib/libcrypto/man/EVP_PKEY_CTX_set_tls1_prf_md.3 b/src/lib/libcrypto/man/EVP_PKEY_CTX_set_tls1_prf_md.3 new file mode 100644 index 0000000000..af2a368beb --- /dev/null +++ b/src/lib/libcrypto/man/EVP_PKEY_CTX_set_tls1_prf_md.3 | |||
@@ -0,0 +1,168 @@ | |||
1 | .\" $OpenBSD: EVP_PKEY_CTX_set_tls1_prf_md.3,v 1.1 2024/07/10 08:49:48 tb Exp $ | ||
2 | .\" full merge up to: OpenSSL 1cb7eff4 Sep 10 13:56:40 2019 +0100 | ||
3 | .\" | ||
4 | .\" This file was written by Dr Stephen Henson <steve@openssl.org>, | ||
5 | .\" Copyright (c) 2016 The OpenSSL Project. All rights reserved. | ||
6 | .\" | ||
7 | .\" Redistribution and use in source and binary forms, with or without | ||
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51 | .Dd $Mdocdate: July 10 2024 $ | ||
52 | .Dt EVP_PKEY_CTX_SET_TLS1_PRF_MD 3 | ||
53 | .Os | ||
54 | .Sh NAME | ||
55 | .Nm EVP_PKEY_CTX_set_tls1_prf_md , | ||
56 | .Nm EVP_PKEY_CTX_set1_tls1_prf_secret , | ||
57 | .Nm EVP_PKEY_CTX_add1_tls1_prf_seed | ||
58 | .Nd TLS PRF key derivation algorithm | ||
59 | .Sh SYNOPSIS | ||
60 | .In openssl/evp.h | ||
61 | .In openssl/kdf.h | ||
62 | .Ft int | ||
63 | .Fo EVP_PKEY_CTX_set_tls1_prf_md | ||
64 | .Fa "EVP_PKEY_CTX *pctx" | ||
65 | .Fa "const EVP_MD *md" | ||
66 | .Fc | ||
67 | .Ft int | ||
68 | .Fo EVP_PKEY_CTX_set1_tls1_prf_secret | ||
69 | .Fa "EVP_PKEY_CTX *pctx" | ||
70 | .Fa "unsigned char *sec" | ||
71 | .Fa "int seclen" | ||
72 | .Fc | ||
73 | .Ft int | ||
74 | .Fo EVP_PKEY_CTX_add1_tls1_prf_seed | ||
75 | .Fa "EVP_PKEY_CTX *pctx" | ||
76 | .Fa "unsigned char *seed" | ||
77 | .Fa "int seedlen" | ||
78 | .Fc | ||
79 | .Sh DESCRIPTION | ||
80 | The | ||
81 | .Dv EVP_PKEY_TLS1_PRF | ||
82 | algorithm implements the PRF key derivation function for TLS. | ||
83 | It has no associated private key and only implements key derivation using | ||
84 | .Xr EVP_PKEY_derive 3 . | ||
85 | .Pp | ||
86 | .Fn EVP_PKEY_set_tls1_prf_md | ||
87 | sets the message digest associated with the TLS PRF. | ||
88 | .Xr EVP_md5_sha1 3 | ||
89 | is treated as a special case which uses the PRF algorithm using both | ||
90 | MD5 and SHA1 as used in TLS 1.0 and 1.1. | ||
91 | .Pp | ||
92 | .Fn EVP_PKEY_CTX_set_tls1_prf_secret | ||
93 | sets the secret value of the TLS PRF to | ||
94 | .Fa seclen | ||
95 | bytes of the buffer | ||
96 | .Fa sec . | ||
97 | Any existing secret value is replaced and any seed is reset. | ||
98 | .Pp | ||
99 | .Fn EVP_PKEY_CTX_add1_tls1_prf_seed | ||
100 | sets the seed to | ||
101 | .Fa seedlen | ||
102 | bytes of | ||
103 | .Fa seed . | ||
104 | If a seed is already set it is appended to the existing value. | ||
105 | .Sh STRING CTRLS | ||
106 | The TLS PRF also supports string based control operations using | ||
107 | .Xr EVP_PKEY_CTX_ctrl_str 3 . | ||
108 | The | ||
109 | .Fa type | ||
110 | parameter "md" uses the supplied | ||
111 | .Fa value | ||
112 | as the name of the digest algorithm to use. | ||
113 | The | ||
114 | .Fa type | ||
115 | parameters "secret" and "seed" use the supplied | ||
116 | .Fa value | ||
117 | parameter as a secret or seed value. | ||
118 | The names "hexsecret" and "hexseed" are similar except they take a hex | ||
119 | string which is converted to binary. | ||
120 | .Sh NOTES | ||
121 | All these functions are implemented as macros. | ||
122 | .Pp | ||
123 | A context for the TLS PRF can be obtained by calling: | ||
124 | .Bd -literal | ||
125 | EVP_PKEY_CTX *pctx = EVP_PKEY_CTX_new_id(EVP_PKEY_TLS1_PRF, NULL); | ||
126 | .Ed | ||
127 | .Pp | ||
128 | The digest, secret value and seed must be set before a key is derived or | ||
129 | an error occurs. | ||
130 | .Pp | ||
131 | The total length of all seeds cannot exceed 1024 bytes in length: this | ||
132 | should be more than enough for any normal use of the TLS PRF. | ||
133 | .Pp | ||
134 | The output length of the PRF is specified by the length parameter in the | ||
135 | .Xr EVP_PKEY_derive 3 | ||
136 | function. | ||
137 | Since the output length is variable, setting the buffer to | ||
138 | .Dv NULL | ||
139 | is not meaningful for the TLS PRF. | ||
140 | .Sh RETURN VALUES | ||
141 | All these functions return 1 for success and 0 or a negative value for | ||
142 | failure. | ||
143 | In particular a return value of -2 indicates the operation is not | ||
144 | supported by the public key algorithm. | ||
145 | .Sh EXAMPLES | ||
146 | This example derives 10 bytes using SHA-256 with the secret key "secret" | ||
147 | and seed value "seed": | ||
148 | .Bd -literal | ||
149 | EVP_PKEY_CTX *pctx; | ||
150 | unsigned char out[10]; | ||
151 | size_t outlen = sizeof(out); | ||
152 | |||
153 | pctx = EVP_PKEY_CTX_new_id(EVP_PKEY_TLS1_PRF, NULL); | ||
154 | if (EVP_PKEY_derive_init(pctx) <= 0) | ||
155 | /* Error */ | ||
156 | if (EVP_PKEY_CTX_set_tls1_prf_md(pctx, EVP_sha256()) <= 0) | ||
157 | /* Error */ | ||
158 | if (EVP_PKEY_CTX_set1_tls1_prf_secret(pctx, "secret", 6) <= 0) | ||
159 | /* Error */ | ||
160 | if (EVP_PKEY_CTX_add1_tls1_prf_seed(pctx, "seed", 4) <= 0) | ||
161 | /* Error */ | ||
162 | if (EVP_PKEY_derive(pctx, out, &outlen) <= 0) | ||
163 | /* Error */ | ||
164 | .Ed | ||
165 | .Sh SEE ALSO | ||
166 | .Xr EVP_PKEY_CTX_ctrl_str 3 , | ||
167 | .Xr EVP_PKEY_CTX_new 3 , | ||
168 | .Xr EVP_PKEY_derive 3 | ||