1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
|
/*
* Certificate Verify Message
* (C) 2004,2006,2011,2012 Jack Lloyd
*
* Released under the terms of the Botan license
*/
#include <botan/internal/tls_messages.h>
#include <botan/internal/tls_reader.h>
#include <botan/internal/assert.h>
#include <botan/tls_exceptn.h>
#include <botan/pubkey.h>
#include <botan/rsa.h>
#include <botan/dsa.h>
#include <botan/loadstor.h>
#include <memory>
namespace Botan {
/*
* Create a new Certificate Verify message
*/
Certificate_Verify::Certificate_Verify(Record_Writer& writer,
TLS_Handshake_State* state,
RandomNumberGenerator& rng,
const Private_Key* priv_key)
{
BOTAN_ASSERT_NONNULL(priv_key);
std::pair<std::string, Signature_Format> format =
state->choose_sig_format(priv_key, true);
PK_Signer signer(*priv_key, format.first, format.second);
if(state->version == SSL_V3)
{
SecureVector<byte> md5_sha = state->hash.final_ssl3(
state->keys.master_secret());
if(priv_key->algo_name() == "DSA")
signature = signer.sign_message(&md5_sha[16], md5_sha.size()-16, rng);
else
signature = signer.sign_message(md5_sha, rng);
}
else if(state->version == TLS_V10 || state->version == TLS_V11)
{
signature = signer.sign_message(state->hash.get_contents(), rng);
}
else
throw TLS_Exception(PROTOCOL_VERSION,
"Unknown TLS version in certificate verification");
send(writer, state->hash);
}
/*
* Serialize a Certificate Verify message
*/
MemoryVector<byte> Certificate_Verify::serialize() const
{
MemoryVector<byte> buf;
const u16bit sig_len = signature.size();
buf.push_back(get_byte(0, sig_len));
buf.push_back(get_byte(1, sig_len));
buf += signature;
return buf;
}
/*
* Deserialize a Certificate Verify message
*/
void Certificate_Verify::deserialize(const MemoryRegion<byte>& buf)
{
TLS_Data_Reader reader(buf);
signature = reader.get_range<byte>(2, 0, 65535);
}
/*
* Verify a Certificate Verify message
*/
bool Certificate_Verify::verify(const X509_Certificate& cert,
TLS_Handshake_State* state)
{
std::auto_ptr<Public_Key> key(cert.subject_public_key());
std::pair<std::string, Signature_Format> format =
state->choose_sig_format(key.get(), true);
PK_Verifier verifier(*key, format.first, format.second);
if(state->version == SSL_V3)
{
SecureVector<byte> md5_sha = state->hash.final_ssl3(
state->keys.master_secret());
return verifier.verify_message(&md5_sha[16], md5_sha.size()-16,
&signature[0], signature.size());
}
else if(state->version == TLS_V10 || state->version == TLS_V11)
{
return verifier.verify_message(state->hash.get_contents(), signature);
}
else
throw TLS_Exception(PROTOCOL_VERSION,
"Unknown TLS version in certificate verification");
}
}
|