author | Santosh V Patil <santosh.v.patil@nokia.com> |
Fri, 14 Aug 2009 11:20:13 +0530 | |
changeset 3 | d2beca08722f |
parent 0 | 2c201484c85f |
permissions | -rw-r--r-- |
0
2c201484c85f
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parents:
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/** |
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@page symmetric_ciphers Symmetric Cipher |
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- @ref symmetricWhat |
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- @ref symmetricHow |
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- @ref symmetricModes |
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- @ref symmetricWhich |
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- @ref symmetricBuffering |
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2c201484c85f
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<hr> |
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@section symmetricWhat What are symmetric ciphers? |
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2c201484c85f
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In an informal setting, symmetric ciphers can be thought of as a mapping of some |
2c201484c85f
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plaintext to ciphertext, via some well-known transformation function, dependent |
2c201484c85f
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on a secret key. There are two basic types of symmetric ciphers: |
2c201484c85f
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- Stream ciphers -- These map an n-bit stream of plaintext to a n-bit stream of |
2c201484c85f
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ciphertext. |
2c201484c85f
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- Block ciphers -- These map m n-bit blocks of plaintext to m n-bit blocks |
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of ciphertext. Because the base unit of transformation is the n-bit |
2c201484c85f
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block, messages that are not exactly divisible by n must be padded (\c CPadding) |
2c201484c85f
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to allow for their encryption. Optionally, instead of padding out a |
2c201484c85f
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plaintext message to fit in a block, block ciphers allow buffering of |
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partial input blocks until the remainder of the block is given as input. |
2c201484c85f
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(@ref symmetricBuffering). Finally, block ciphers have a concept of modes |
2c201484c85f
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(@ref symmetricModes) that provide a mechanism for making subsequent |
2c201484c85f
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blocks dependent on some number of previous blocks. |
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2c201484c85f
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<hr> |
2c201484c85f
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@section symmetricHow How do I use the symmetric cipher framework? |
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- @ref symmetricHowIntro |
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- @ref symmetricHowInterface |
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- @ref symmetricHowFactory |
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2c201484c85f
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@subsection symmetricHowIntro An introduction to the symmetric cipher framework. |
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The symmetric cipher framework collates the behaviour of all symmetric ciphers |
2c201484c85f
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under one interface: \c CSymmetricCipher. This interface is intended to represent |
2c201484c85f
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one direction of one instance of any symmetric cipher. One direction means |
2c201484c85f
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either encryption or decryption, but not both. |
2c201484c85f
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2c201484c85f
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@subsection symmetricHowInterface CSymmetricCipher interface basics. |
2c201484c85f
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- Block ciphers -- Here one must create an underlying transformation (\c |
2c201484c85f
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CBlockTransformation) and create a \c CBufferedTransformation (which is an |
2c201484c85f
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\c CSymmetricCipher) from that. |
2c201484c85f
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- Stream ciphers -- These have no concept of buffering and are treated as |
2c201484c85f
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specialisations of \c CSymmetricCipher. They require no intermediate container |
2c201484c85f
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class. |
2c201484c85f
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The following code illustrates the creation of a buffered AES ECB encryptor and an |
2c201484c85f
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ARC4 stream cipher. |
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@code |
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CBlockTransformation* block = 0; |
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block = CAESEncryptor::NewLC(aKey); |
2c201484c85f
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CPadding* padding = CPaddingSSLv3::NewLC(KAESBlockSize); //The blocksize of AES (16 bytes) |
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CSymmetricCipher* cipher = CBufferedEncryptor::NewL(block, padding); |
2c201484c85f
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CleanupStack::Pop(2, block); //padding, block -> both owned by cipher |
2c201484c85f
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@endcode |
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@code |
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CSymmetricCipher* cipher = new(ELeave)TARC4(aKey); |
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CleanupStack::PushL(cipher): |
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@endcode |
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After creation, both examples are usable through the \c CSymmetricCipher interface. |
2c201484c85f
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So, to encrypt with either of the above ciphers one could do: |
2c201484c85f
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@code |
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HBufC8* output = HBufC8::NewLC(cipher->MaxOutputLength(input.Size())); |
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cipher->Process(input, output); |
2c201484c85f
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HBufC8* output2 = HBufC8::NewLC(cipher->MaxFinalOutputLength(input2.Size())); |
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cipher->ProcessFinalL(input2, output2); |
2c201484c85f
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@endcode |
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In this example, \c input and \c input2 are two arbitrary, finite length descriptors. |
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The derived implementations of \c CSymmetricCipher (\c CBufferedEncryptor / \c CBufferedDecryptor |
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and \c CStreamCipher) are responsible for handling what to do in each specific |
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case. For example, in the case of an encrypting block cipher, \c ProcessFinalL() |
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will call the underlying padding system, which will in turn ensure that the |
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overall length of input plaintext is of a suitable length for encryption. For more |
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information on how the values returned from \c MaxOutputLength() and |
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\c MaxFinalOutputLength() are calculated see @ref symmetricBuffering. |
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@subsection symmetricHowFactory Example code for a symmetric factory class. |
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To simplify the process of creating symmetric encryptors and decryptors, it is |
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strongly recommended that applications create a factory that automates the |
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process for them. The following code gives a sample factory that applications |
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might like to use as a reference. It is not supplied as part of the framework |
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as every application has different ways of identifying symmetric cipher suites. |
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@code |
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CSymmetricCipher* CCipherFactory::BuildEncryptorL( |
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TSymmetricCipherType aType,const TDesC8& aKey,const TDesC8& aIV) |
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{ |
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CSymmetricCipher* cipher = NULL; |
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if (aType==ERc4) |
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changeset
|
100 |
{ |
2c201484c85f
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|
101 |
cipher = new(ELeave) TARC4(aKey); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
102 |
} |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
103 |
else |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
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changeset
|
104 |
{ |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
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changeset
|
105 |
CBlockTransformation* bT = NULL; |
2c201484c85f
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|
106 |
switch (aType) |
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|
107 |
{ |
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Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
108 |
case EDes_cbc: |
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|
109 |
bT = CDESEncryptor::NewL(aKey); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
110 |
break; |
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|
111 |
case EDes_ede3_cbc: |
2c201484c85f
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|
112 |
bT = C3DESEncryptor::NewL(aKey); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
113 |
break; |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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changeset
|
114 |
case ERc2_cbc: |
2c201484c85f
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changeset
|
115 |
bT = CRC2Encryptor::NewL(aKey); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
116 |
break; |
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Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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changeset
|
117 |
default: |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
118 |
User::Leave(KErrNotSupported); |
2c201484c85f
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|
119 |
}; |
2c201484c85f
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|
120 |
CleanupStack::PushL(bT); |
2c201484c85f
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|
121 |
CBlockTransformation* mode = CModeCBCEncryptor::NewL(bT, aIV); |
2c201484c85f
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|
122 |
CleanupStack::Pop(bT); // owned by mode |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
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|
123 |
CleanupStack::PushL(mode); |
2c201484c85f
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parents:
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changeset
|
124 |
|
2c201484c85f
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parents:
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changeset
|
125 |
CPadding* padding = CPaddingSSLv3::NewLC(KBlockSize); //All of these ciphers use 8 byte blocks |
2c201484c85f
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|
126 |
cipher = CBufferedEncryptor::NewL(mode, padding); |
2c201484c85f
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|
127 |
CleanupStack::Pop(2, mode); //padding, mode now owned by cipher |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
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changeset
|
128 |
} |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
129 |
return cipher; |
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|
130 |
} |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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changeset
|
131 |
@endcode |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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|
132 |
|
2c201484c85f
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parents:
diff
changeset
|
133 |
Applications creating these factories need to supply an equivalent to the |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
134 |
\c TSymmetricCipherType enum which contains the list of identifiers representing |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
135 |
the cipher, padding, and mode requirements of the application. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
136 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
137 |
Note that a similar \c BuildDecryptorL() will also have to be created. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
138 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
139 |
Good naming conventions dictate that applications should not pollute the |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
140 |
global namespace and either use their own namespace or prefix their factory |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
141 |
classes with identifiers that associated it with that specific application. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
142 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
143 |
<hr> |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
144 |
@section symmetricModes Symmetric Modes |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
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parents:
diff
changeset
|
145 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
146 |
When the amount of plaintext to be encrypted is larger than a single block, some |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
147 |
method must be employed to specify how subsequent blocks are dependent on |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
148 |
previous blocks. The simplest method, known as ECB (Electronic CodeBook), |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
149 |
specifies that subsequent blocks are completely independent. Therefore, two |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
150 |
identical blocks of plaintext will encrypt to two identical blocks of |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
151 |
ciphertext. ECB has significant security drawbacks, thus most applications use |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
152 |
more advanced modes in which subsequent blocks are dependent on the ciphertext |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
153 |
of previous blocks. The symmetric framework handles these modes through the |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
154 |
\c CBlockChainingMode class, which is a specialisation of \c CBlockTransformation. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
155 |
The idea is that one gives an implementation of a \c CBlockChainingMode another |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
156 |
\c CBlockTransformation (\c CAESEncryptor, for instance) and then performs all |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
157 |
operations on the \c CBlockChainingMode instance. When |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
158 |
<code>CBlockTransformation::Transform()</code> is called on the mode it is responsible for |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
159 |
calling \c Transform() on the underlying transformation that it owns and then |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
160 |
applying its own chaining mode transformation. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
161 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
162 |
The following example shows how to create a buffered AES CBC encryptor. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
163 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
164 |
@code |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
165 |
CBlockTransformation* basicAesBlock = 0; |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
166 |
CBlockTransformation* cbcBlock = 0; |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
167 |
basicAesBlock = CAESEncryptor::NewLC(aKey); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
168 |
cbcBlock = CModeCBCEncryptor::NewL(basicAesBlock, iv); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
169 |
CleanupStack::Pop(basicAesBlock); //owned by cbcBlock |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
170 |
CleanupStack::PushL(cbcBlock); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
171 |
CPadding* padding = CPaddingSSLv3::NewLC(KAESBlockSize); //The blocksize of AES (16 bytes) |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
172 |
CSymmetricCipher* cipher = CBufferedEncryptor::NewL(cbcBlock, padding); |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
173 |
CleanupStack::Pop(2, cbcBlock); //padding, cbcBlock -> both owned by cipher |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
174 |
@endcode |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
175 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
176 |
<hr> |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
177 |
@section symmetricWhich Which symmetric cipher should I use? |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
178 |
Generally, when implementing secure comms protocols, the cipher you use will be |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
179 |
dictated by the protocol specification. However, if you are writing your own |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
180 |
application you should consider the use of AES (CAESEncryptor). This is the |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
181 |
cipher recommended by <A HREF="http://csrc.nist.gov/cryptval/">NIST</A>. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
182 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
183 |
<hr> |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
184 |
@section symmetricBuffering How does buffering work within the symmetric cipher framework? |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
185 |
|
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
186 |
- Stream ciphers consume all content they are given. That is, the value |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
187 |
returned from <code>CSymmetricCipher::MaxOutputLength()</code> is always the same as the |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
188 |
\c aInputLength parameter passed in. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
189 |
- Block ciphers controlled through a \c CBufferedTransformation operate under the |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
190 |
following rules: |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
191 |
- \c Process() |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
192 |
-# Any previously buffered data is (logically) prepended to \c aInput. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
193 |
-# All whole blocks are transformed and appended to \c aOutput. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
194 |
-# Any remaining partial blocks, orphaned by the the above rule, are |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
195 |
buffered. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
196 |
- \c ProcessFinalL() |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
197 |
- Encryption |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
198 |
-# Any previously buffered data is (logically) prepended to \c aInput. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
199 |
-# All whole block are transformed and appended to \c aOutput. |
2c201484c85f
Move the Security package to EPL, and add the implementations of the cryptographic algorithms
Santosh Patil <santosh.v.patil@nokia.com>
parents:
diff
changeset
|
200 |
-# Any remaining partial blocks are padded with underlying padding |
2c201484c85f
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201 |
system to be block aligned <I>to the padding block size</I>. (In the |
2c201484c85f
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parents:
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202 |
vast majority of cases, the padding block size is equal to the |
2c201484c85f
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parents:
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203 |
block cipher block size). |
2c201484c85f
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204 |
-# The resulting block(s) are transformed and appended to \c aOutput. |
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parents:
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205 |
- Decryption |
2c201484c85f
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206 |
-# The input <b>must</b> be a multiple of the block size. |
2c201484c85f
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parents:
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207 |
-# Data is decrypted and unpadded using underlying padding system. |
2c201484c85f
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parents:
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208 |
-# Decrypted, unpadded data is appended to \c aOutput. |
2c201484c85f
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parents:
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209 |
|
2c201484c85f
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parents:
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210 |
In all cases <code>CSymmetricCipher::MaxOutputLength()</code> returns as tight an upper bound |
2c201484c85f
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parents:
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211 |
as possible on the number of bytes that will be returned by a call to |
2c201484c85f
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parents:
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212 |
<code>CSymmetricCipher::Process()</code> with a specified number of input bytes. |
2c201484c85f
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parents:
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213 |
Correspondingly, <code>CSymmetricCipher::MaxFinalOutputLength()</code> returns a similar |
2c201484c85f
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parents:
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214 |
bound but for a pending call to <code>CSymmetricCipher::ProcessFinalL()</code>. |
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parents:
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215 |
*/ |