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-rw-r--r--lib/crypto/doc/src/crypto.xml34
1 files changed, 31 insertions, 3 deletions
diff --git a/lib/crypto/doc/src/crypto.xml b/lib/crypto/doc/src/crypto.xml
index 824be09438..8cb893cd1c 100644
--- a/lib/crypto/doc/src/crypto.xml
+++ b/lib/crypto/doc/src/crypto.xml
@@ -1,4 +1,4 @@
-<?xml version="1.0" encoding="latin1" ?>
+<?xml version="1.0" encoding="iso-8859-1" ?>
<!DOCTYPE erlref SYSTEM "erlref.dtd">
<erlref>
@@ -334,14 +334,16 @@ Mpint() = <![CDATA[<<ByteLen:32/integer-big, Bytes:ByteLen/binary>>]]>
</func>
<func>
<name>sha_mac(Key, Data) -> Mac</name>
+ <name>sha_mac(Key, Data, MacLength) -> Mac</name>
<fsummary>Compute an <c>MD5 MAC</c>message authentification code</fsummary>
<type>
<v>Key = Data = iolist() | binary()</v>
<v>Mac = binary()</v>
+ <v>MacLenength = integer() =&lt; 20 </v>
</type>
<desc>
<p>Computes an <c>SHA MAC</c> message authentification code
- from <c>Key</c> and <c>Data</c>, where the length of the Mac
+ from <c>Key</c> and <c>Data</c>, where the default length of the Mac
is 160 bits (20 bytes).</p>
</desc>
</func>
@@ -894,7 +896,7 @@ Mpint() = <![CDATA[<<ByteLen:32/integer-big, Bytes:ByteLen/binary>>]]>
<v>Key = [E, N]</v>
<v>E, N = Mpint</v>
<d>Where <c>E</c> is the public exponent and <c>N</c> is public modulus.</d>
- <v>DigestType = md5 | sha</v>
+ <v>DigestType = md5 | sha | sha256 | sha384 | sha512</v>
<d> The default <c>DigestType</c> is sha.</d>
<v>Mpint = binary()</v>
</type>
@@ -903,6 +905,8 @@ Mpint() = <![CDATA[<<ByteLen:32/integer-big, Bytes:ByteLen/binary>>]]>
and verifies that the digest matches the RSA signature using the
signer's public key <c>Key</c>.
</p>
+ <p>May throw exception <c>notsup</c> in case the chosen <c>DigestType</c>
+ is not supported by the underlying OpenSSL implementation.</p>
</desc>
</func>
@@ -1046,6 +1050,30 @@ Mpint() = <![CDATA[<<ByteLen:32/integer-big, Bytes:ByteLen/binary>>]]>
</func>
<func>
+ <name>rc2_cbc_encrypt(Key, IVec, Text) -> Cipher</name>
+ <fsummary>Encrypt <c>Text</c>according to RC2 in CBC mode</fsummary>
+ <type>
+ <v>Key = Text = iolist() | binary()</v>
+ <v>Ivec = Cipher = binary()</v>
+ </type>
+ <desc>
+ <p>Encrypts <c>Text</c> according to RC2 in CBC mode.</p>
+ </desc>
+ </func>
+
+ <func>
+ <name>rc2_cbc_decrypt(Key, IVec, Cipher) -> Text</name>
+ <fsummary>Decrypts <c>Cipher</c>according to RC2 in CBC mode</fsummary>
+ <type>
+ <v>Key = Text = iolist() | binary()</v>
+ <v>Ivec = Cipher = binary()</v>
+ </type>
+ <desc>
+ <p>Decrypts <c>Cipher</c> according to RC2 in CBC mode.</p>
+ </desc>
+ </func>
+
+ <func>
<name>rc4_encrypt(Key, Data) -> Result</name>
<fsummary>Encrypt data using RC4</fsummary>
<type>