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<html><head><title>Python: module gdata.tlslite.X509</title>
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<font color="#ffffff" face="helvetica, arial"> <br><big><big><strong><a href="gdata.html"><font color="#ffffff">gdata</font></a>.<a href="gdata.tlslite.html"><font color="#ffffff">tlslite</font></a>.X509</strong></big></big></font></td
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><font color="#ffffff" face="helvetica, arial"><a href=".">index</a><br><a href="file:/home/afshar/wrk/gdata-python-client/src/gdata/tlslite/X509.py">/home/afshar/wrk/gdata-python-client/src/gdata/tlslite/X509.py</a></font></td></tr></table>
<p><tt>Class representing an X.509 certificate.</tt></p>
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<font color="#ffffff" face="helvetica, arial"><big><strong>Modules</strong></big></font></td></tr>
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<font color="#ffffff" face="helvetica, arial"><big><strong>Classes</strong></big></font></td></tr>
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<td width="100%"><dl>
<dt><font face="helvetica, arial"><a href="gdata.tlslite.X509.html#X509">X509</a>
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<font color="#000000" face="helvetica, arial"><a name="X509">class <strong>X509</strong></a></font></td></tr>
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<td colspan=2><tt>This class represents an X.509 certificate.<br>
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@type bytes: L{array.array} of unsigned bytes<br>
@ivar bytes: The DER-encoded ASN.1 certificate<br>
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@type publicKey: L{tlslite.utils.RSAKey.RSAKey}<br>
@ivar publicKey: The subject public key from the certificate.<br> </tt></td></tr>
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<td width="100%">Methods defined here:<br>
<dl><dt><a name="X509-__init__"><strong>__init__</strong></a>(self)</dt></dl>
<dl><dt><a name="X509-getCommonName"><strong>getCommonName</strong></a>(self)</dt><dd><tt>Get the Subject's Common Name from the certificate.<br>
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The cryptlib_py module must be installed in order to use this<br>
function.<br>
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@rtype: str or None<br>
@return: The CN component of the certificate's subject DN, if<br>
present.</tt></dd></dl>
<dl><dt><a name="X509-getFingerprint"><strong>getFingerprint</strong></a>(self)</dt><dd><tt>Get the hex-encoded fingerprint of this certificate.<br>
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@rtype: str<br>
@return: A hex-encoded fingerprint.</tt></dd></dl>
<dl><dt><a name="X509-parse"><strong>parse</strong></a>(self, s)</dt><dd><tt>Parse a PEM-encoded X.509 certificate.<br>
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@type s: str<br>
@param s: A PEM-encoded X.509 certificate (i.e. a base64-encoded<br>
certificate wrapped with "-----BEGIN CERTIFICATE-----" and<br>
"-----END CERTIFICATE-----" tags).</tt></dd></dl>
<dl><dt><a name="X509-parseBinary"><strong>parseBinary</strong></a>(self, bytes)</dt><dd><tt>Parse a DER-encoded X.509 certificate.<br>
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@type bytes: str or L{array.array} of unsigned bytes<br>
@param bytes: A DER-encoded X.509 certificate.</tt></dd></dl>
<dl><dt><a name="X509-writeBytes"><strong>writeBytes</strong></a>(self)</dt></dl>
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<font color="#ffffff" face="helvetica, arial"><big><strong>Functions</strong></big></font></td></tr>
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<td width="100%"><dl><dt><a name="-sha1"><strong>sha1</strong></a> = openssl_sha1(...)</dt><dd><tt>Returns a sha1 hash object; optionally initialized with a string</tt></dd></dl>
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<font color="#ffffff" face="helvetica, arial"><big><strong>Data</strong></big></font></td></tr>
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<td width="100%"><strong>cryptlibpyLoaded</strong> = False<br>
<strong>gmpyLoaded</strong> = False<br>
<strong>m2cryptoLoaded</strong> = False<br>
<strong>prngName</strong> = 'os.urandom'<br>
<strong>pycryptoLoaded</strong> = True<br>
<strong>sieve</strong> = [2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, ...]</td></tr></table>
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