431 lines
15 KiB
Java
431 lines
15 KiB
Java
/* SignerInfo.java -- a SignerInfo object, from PKCS #7
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Copyright (C) 2004, 2005, 2010 Free Software Foundation, Inc.
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This file is part of GNU Classpath.
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GNU Classpath is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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GNU Classpath is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GNU Classpath; see the file COPYING. If not, write to the
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Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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02110-1301 USA.
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Linking this library statically or dynamically with other modules is
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making a combined work based on this library. Thus, the terms and
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conditions of the GNU General Public License cover the whole
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combination.
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As a special exception, the copyright holders of this library give you
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permission to link this library with independent modules to produce an
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executable, regardless of the license terms of these independent
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modules, and to copy and distribute the resulting executable under
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terms of your choice, provided that you also meet, for each linked
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independent module, the terms and conditions of the license of that
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module. An independent module is a module which is not derived from
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or based on this library. If you modify this library, you may extend
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this exception to your version of the library, but you are not
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obligated to do so. If you do not wish to do so, delete this
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exception statement from your version. */
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package gnu.java.security.pkcs;
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import gnu.java.security.Configuration;
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import gnu.java.security.OID;
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import gnu.java.security.ber.BER;
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import gnu.java.security.ber.BEREncodingException;
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import gnu.java.security.ber.BERReader;
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import gnu.java.security.ber.BERValue;
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import gnu.java.security.der.DER;
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import gnu.java.security.der.DERValue;
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import gnu.java.security.der.DERWriter;
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import gnu.java.security.util.Util;
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import java.io.ByteArrayOutputStream;
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import java.io.IOException;
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import java.io.OutputStream;
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import java.math.BigInteger;
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import java.util.ArrayList;
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import java.util.logging.Logger;
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import javax.security.auth.x500.X500Principal;
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public class SignerInfo
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{
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private static final Logger log = Configuration.DEBUG ?
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Logger.getLogger(SignerInfo.class.getName()) : null;
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private final BigInteger version;
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private final BigInteger serialNumber;
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private final X500Principal issuer;
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private final OID digestAlgorithmId;
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private final byte[] digestAlgorithmParams;
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private final byte[] authenticatedAttributes;
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private final OID digestEncryptionAlgorithmId;
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private final byte[] digestEncryptionAlgorithmParams;
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private final byte[] encryptedDigest;
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private final byte[] unauthenticatedAttributes;
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/**
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* Parse a SignerInfo object.
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* <p>
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* A SignerInfo is a structure with the following ASN.1 syntax:
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* <pre>
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* SignerInfo ::= SEQUENCE {
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* version Version, -- always 1 for PKCS7 v1.5
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* issuerAndSerialNumber IssuerAndSerialNumber, -- an INTEGER
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* digestAlgorithm DigestAlgorithmIdentifier,
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* authenticatedAttributes [0] IMPLICIT Attributes OPTIONAL,
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* digestEncryptionAlgorithm DigestEncryptionAlgorithmIdentifier,
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* encryptedDigest EncryptedDigest,
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* unauthenticatedAttributes [1] IMPLICIT Attributes OPTIONAL }
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*
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* IssuerAndSerialNumber ::= SEQUENCE {
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* issuer Name,
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* serialNumber CertificateSerialNumber
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* }
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*
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* DigestAlgorithmIdentifier ::= AlgorithmIdentifier
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*
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* DigestEncryptionAlgorithmIdentifier ::= AlgorithmIdentifier
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*
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* EncryptedDigest ::= OCTET STRING
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* </pre>
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*/
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public SignerInfo(BERReader ber) throws IOException
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{
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DERValue val = ber.read();
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if (Configuration.DEBUG)
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log.fine("SignerInfo: " + val);
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if (!val.isConstructed())
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throw new BEREncodingException("malformed SignerInfo");
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val = ber.read();
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if (val.getTag() != BER.INTEGER)
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throw new BEREncodingException("malformed Version");
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version = (BigInteger) val.getValue();
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if (Configuration.DEBUG)
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log.fine(" Version: " + version);
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val = ber.read();
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if (!val.isConstructed())
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throw new BEREncodingException("malformed IssuerAndSerialNumber");
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if (Configuration.DEBUG)
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log.fine(" IssuerAndSerialNumber: " + val);
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val = ber.read();
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if (!val.isConstructed())
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throw new BEREncodingException("malformed Issuer");
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issuer = new X500Principal(val.getEncoded());
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ber.skip(val.getLength());
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if (Configuration.DEBUG)
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log.fine(" Issuer: " + issuer);
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val = ber.read();
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if (val.getTag() != BER.INTEGER)
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throw new BEREncodingException("malformed SerialNumber");
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serialNumber = (BigInteger) val.getValue();
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if (Configuration.DEBUG)
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log.fine(" SerialNumber: " + serialNumber);
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val = ber.read();
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if (!val.isConstructed())
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throw new BEREncodingException("malformed DigestAlgorithmIdentifier");
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if (Configuration.DEBUG)
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log.fine(" DigestAlgorithmIdentifier: " + val);
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int count = 0;
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DERValue val2 = ber.read();
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if (val2.getTag() != BER.OBJECT_IDENTIFIER)
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throw new BEREncodingException("malformed AlgorithmIdentifier");
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digestAlgorithmId = (OID) val2.getValue();
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if (Configuration.DEBUG)
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log.fine(" digestAlgorithm OID: " + digestAlgorithmId);
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if (BERValue.isIndefinite(val))
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{
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val2 = ber.read();
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if (val2 != BER.END_OF_SEQUENCE)
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{
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digestAlgorithmParams = val2.getEncoded();
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val2 = ber.read();
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if (val2 != BER.END_OF_SEQUENCE)
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throw new BEREncodingException("expecting BER end-of-sequence");
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}
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else
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digestAlgorithmParams = null;
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}
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else if (val2.getEncodedLength() < val.getLength())
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{
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val2 = ber.read();
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digestAlgorithmParams = val2.getEncoded();
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if (val2.isConstructed())
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ber.skip(val2.getLength());
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}
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else
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digestAlgorithmParams = null;
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if (Configuration.DEBUG)
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{
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log.fine(" digestAlgorithm params: ");
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log.fine(Util.dumpString(digestAlgorithmParams,
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" digestAlgorithm params: "));
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}
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val = ber.read();
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if (val.getTag() == 0)
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{
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authenticatedAttributes = val.getEncoded();
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val = ber.read();
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if (val.isConstructed())
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ber.skip(val.getLength());
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val = ber.read();
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}
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else
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authenticatedAttributes = null;
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if (Configuration.DEBUG)
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{
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log.fine(" AuthenticatedAttributes: ");
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log.fine(Util.dumpString(authenticatedAttributes,
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" AuthenticatedAttributes: "));
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}
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if (!val.isConstructed())
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throw new BEREncodingException("malformed DigestEncryptionAlgorithmIdentifier");
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if (Configuration.DEBUG)
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log.fine(" DigestEncryptionAlgorithmIdentifier: " + val);
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count = 0;
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val2 = ber.read();
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if (val2.getTag() != BER.OBJECT_IDENTIFIER)
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throw new BEREncodingException("malformed AlgorithmIdentifier");
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digestEncryptionAlgorithmId = (OID) val2.getValue();
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if (Configuration.DEBUG)
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log.fine(" digestEncryptionAlgorithm OID: " + digestEncryptionAlgorithmId);
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if (BERValue.isIndefinite(val))
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{
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val2 = ber.read();
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if (val2 != BER.END_OF_SEQUENCE)
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{
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digestEncryptionAlgorithmParams = val2.getEncoded();
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val2 = ber.read();
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if (val2 != BER.END_OF_SEQUENCE)
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throw new BEREncodingException("expecting BER end-of-sequence");
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}
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else
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digestEncryptionAlgorithmParams = null;
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}
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else if (val2.getEncodedLength() < val.getLength())
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{
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val2 = ber.read();
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digestEncryptionAlgorithmParams = val2.getEncoded();
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if (val2.isConstructed())
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ber.skip(val2.getLength());
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}
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else
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digestEncryptionAlgorithmParams = null;
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if (Configuration.DEBUG)
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{
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log.fine(" digestEncryptionAlgorithm params: ");
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log.fine(Util.dumpString(digestEncryptionAlgorithmParams,
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" digestEncryptionAlgorithm params: "));
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}
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val = ber.read();
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if (val.getTag() != BER.OCTET_STRING)
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throw new BEREncodingException("malformed EncryptedDigest");
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encryptedDigest = (byte[]) val.getValue();
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if (Configuration.DEBUG)
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{
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log.fine(" EncryptedDigest: ");
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log.fine(Util.dumpString(encryptedDigest, " EncryptedDigest: "));
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}
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if (ber.peek() == 1)
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unauthenticatedAttributes = ber.read().getEncoded();
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else
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unauthenticatedAttributes = null;
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if (Configuration.DEBUG)
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{
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log.fine(" UnauthenticatedAttributes: ");
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log.fine(Util.dumpString(unauthenticatedAttributes,
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" UnauthenticatedAttributes: "));
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}
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if (ber.peek() == 0)
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ber.read();
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}
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/**
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* Constructs a new instance of <code>SignerInfo</code> given a designated
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* set of fields.
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*
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* @param issuer the X.500 Principal name of the signer referenced by this
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* instance.
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* @param serialNumber the serial number of the certificate being used. Both
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* this and the previous arguments are gleaned from the signer's
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* certificate.
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* @param digestAlgorithmOID the OID of the digest algorithm. When
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* constructing the DigestAlgorithmIdentifier with this OID, the
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* parameters part will be NULL.
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* @param authenticatedAttributes the encoding of the set of authenticated
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* attributes to use.
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* @param digestEncryptionAlgorithmOID the OID of the digest encryption
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* algorithm. When constructing the
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* DigestEncryptionAlgorithmIdentifier with this OID, the parameters
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* part will be NULL.
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* @param encryptedDigest the encrypted hash generated with this signer's
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* private key.
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* @param unauthenticatedAttributes the encoding of the set of
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* unauthencticated attributes.
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*/
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public SignerInfo(X500Principal issuer, BigInteger serialNumber,
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OID digestAlgorithmOID, byte[] authenticatedAttributes,
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OID digestEncryptionAlgorithmOID,
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byte[] encryptedDigest, byte[] unauthenticatedAttributes)
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{
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super();
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this.version = BigInteger.ONE;
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this.issuer = issuer;
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this.serialNumber = serialNumber;
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this.digestAlgorithmId = digestAlgorithmOID;
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this.digestAlgorithmParams = null;
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this.authenticatedAttributes = authenticatedAttributes;
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this.digestEncryptionAlgorithmId = digestEncryptionAlgorithmOID;
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this.digestEncryptionAlgorithmParams = null;
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this.encryptedDigest = encryptedDigest;
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this.unauthenticatedAttributes = unauthenticatedAttributes;
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}
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public BigInteger getVersion()
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{
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return version;
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}
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public BigInteger getSerialNumber()
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{
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return serialNumber;
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}
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public X500Principal getIssuer()
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{
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return issuer;
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}
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public OID getDigestAlgorithmId()
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{
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return digestAlgorithmId;
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}
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public byte[] getDigestAlgorithmParams()
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{
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return (digestAlgorithmParams != null
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? (byte[]) digestAlgorithmParams.clone()
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: null);
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}
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public byte[] getAuthenticatedAttributes()
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{
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return (authenticatedAttributes != null
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? (byte[]) authenticatedAttributes.clone()
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: null);
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}
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public OID getDigestEncryptionAlgorithmId()
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{
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return digestEncryptionAlgorithmId;
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}
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public byte[] getDigestEncryptionAlgorithmParams()
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{
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return (digestEncryptionAlgorithmParams != null
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? (byte[]) digestEncryptionAlgorithmParams.clone()
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: null);
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}
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public byte[] getEncryptedDigest()
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{
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return (encryptedDigest != null ? (byte[]) encryptedDigest.clone() : null);
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}
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public byte[] getUnauthenticatedAttributes()
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{
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return (unauthenticatedAttributes != null
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? (byte[]) unauthenticatedAttributes.clone()
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: null);
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}
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/**
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* Writes to the designated output stream the DER encoding of the current
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* contents of this instance.
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*
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* @param out the destination output stream.
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* @throws IOException if an I/O related exception occurs during the process.
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*/
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public void encode(OutputStream out) throws IOException
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{
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DERValue derVersion = new DERValue(DER.INTEGER, version);
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ByteArrayOutputStream baos = new ByteArrayOutputStream(4096);
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baos.write(issuer.getEncoded());
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DERValue derSerialNumber = new DERValue(DER.INTEGER, serialNumber);
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DERWriter.write(baos, derSerialNumber);
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baos.flush();
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byte[] b = baos.toByteArray();
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DERValue derIssuerAndSerialNumber =
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new DERValue(DER.CONSTRUCTED | DER.SEQUENCE, b.length, b, null);
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DERValue derDigestAlgorithmOID = new DERValue(DER.OBJECT_IDENTIFIER,
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digestAlgorithmId);
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ArrayList digestAlgorithmIdentifier = new ArrayList(1);
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digestAlgorithmIdentifier.add(derDigestAlgorithmOID);
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DERValue derDigestAlgorithmIdentifier =
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new DERValue(DER.CONSTRUCTED | DER.SEQUENCE, digestAlgorithmIdentifier);
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DERValue derAuthenticatedAttributes;
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if (authenticatedAttributes == null)
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derAuthenticatedAttributes = new DERValue(DER.NULL, null);
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else
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derAuthenticatedAttributes = new DERValue(DER.CONSTRUCTED | DER.SET,
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authenticatedAttributes);
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DERValue derDigestEncryptionAlgorithmOID =
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new DERValue(DER.OBJECT_IDENTIFIER, digestEncryptionAlgorithmId);
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ArrayList digestEncryptionAlgorithmIdentifier = new ArrayList(1);
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digestEncryptionAlgorithmIdentifier.add(derDigestEncryptionAlgorithmOID);
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DERValue derDigestEncryptionAlgorithmIdentifier =
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new DERValue(DER.CONSTRUCTED | DER.SEQUENCE, digestEncryptionAlgorithmIdentifier);
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DERValue derEncryptedDigest = new DERValue(DER.OCTET_STRING, encryptedDigest);
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DERValue derUnauthenticatedAttributes;
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if (unauthenticatedAttributes == null)
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derUnauthenticatedAttributes = new DERValue(DER.NULL, null);
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else
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derUnauthenticatedAttributes = new DERValue(DER.CONSTRUCTED | DER.SET,
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unauthenticatedAttributes);
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ArrayList signerInfo = new ArrayList(5);
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signerInfo.add(derVersion);
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signerInfo.add(derIssuerAndSerialNumber);
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signerInfo.add(derDigestAlgorithmIdentifier);
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signerInfo.add(derDigestEncryptionAlgorithmIdentifier);
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signerInfo.add(derEncryptedDigest);
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DERValue derSignerInfo = new DERValue(DER.CONSTRUCTED | DER.SEQUENCE,
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signerInfo);
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DERWriter.write(out, derSignerInfo);
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}
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}
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