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authorMike Buland <eichlan@xagasoft.com>2012-11-28 17:39:09 +0000
committerMike Buland <eichlan@xagasoft.com>2012-11-28 17:39:09 +0000
commit03e8c5ad314252cde58c53688c70b9f836a1d5b4 (patch)
tree6d26558aaae5e3758ca8b23c4086116e6d6b2636 /src/unstable/ciphermodeofb.h
parent223e2986ad7752d38ce24d1cbeff47db98df1ae3 (diff)
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More comments; moved the encryption system to unstable.
Diffstat (limited to 'src/unstable/ciphermodeofb.h')
-rw-r--r--src/unstable/ciphermodeofb.h65
1 files changed, 65 insertions, 0 deletions
diff --git a/src/unstable/ciphermodeofb.h b/src/unstable/ciphermodeofb.h
new file mode 100644
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+++ b/src/unstable/ciphermodeofb.h
@@ -0,0 +1,65 @@
1#ifndef BU_MODE_OFB_H
2#define BU_MODE_OFB_H
3
4#include "bu/filter.h"
5#include "bu/string.h"
6
7namespace Bu
8{
9 /**
10 * Output Feedback Mode. This cipher mode is one of the most resiliant.
11 * Instead of encrypting your data directly it encrypts a "key stream" using
12 * the initialization vector, and then XORs those blocks with your stream
13 * blocks. This means that an error in your stream will still produce an
14 * error in the output, but it will not propegate. Also, with most
15 * encryption schemes error correction codes on the source data will still
16 * work on the encrypted data or decrypted output.
17 */
18 template<int iBlockSize, typename CipherType>
19 class CipherModeOfb : public CipherType
20 {
21 public:
22 CipherModeOfb(class Stream &rNext ) :
23 CipherType( rNext ),
24 bStart( true )
25 {
26 memset( aVector, 0, iBlockSize );
27 }
28
29 virtual ~CipherModeOfb()
30 {
31 }
32
33 void setIv( const Bu::String &sIv )
34 {
35 memcpy( aVector, sIv.getStr(), iBlockSize );
36 }
37
38 protected:
39 void decipher( void *pBuf )
40 {
41 CipherType::encipher( aVector );
42 uint8_t aTmp[iBlockSize];
43 memcpy( aTmp, aVector, iBlockSize );
44 for( int j = 0; j < iBlockSize; j++ )
45 ((uint8_t *)pBuf)[j] ^= aVector[j];
46 memcpy( aVector, aTmp, iBlockSize );
47 }
48
49 void encipher( void *pBuf )
50 {
51 CipherType::encipher( aVector );
52 uint8_t aTmp[iBlockSize];
53 memcpy( aTmp, aVector, iBlockSize );
54 for( int j = 0; j < iBlockSize; j++ )
55 ((uint8_t *)pBuf)[j] ^= aVector[j];
56 memcpy( aVector, aTmp, iBlockSize );
57 }
58
59 private:
60 bool bStart;
61 uint8_t aVector[iBlockSize];
62 };
63};
64
65#endif