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The Bouncy Castle Crypto package is a Java implementation of cryptographic algorithms. This jar contains JCE provider and lightweight API for the Bouncy Castle Cryptography APIs for JDK 1.8 and up.
package org.bouncycastle.pqc.crypto.lms;
import java.io.ByteArrayInputStream;
import java.io.DataInputStream;
import java.io.IOException;
import java.io.InputStream;
import org.bouncycastle.util.Arrays;
import org.bouncycastle.util.io.Streams;
public class LMSPublicKeyParameters
extends LMSKeyParameters
implements LMSContextBasedVerifier
{
private final LMSigParameters parameterSet;
private final LMOtsParameters lmOtsType;
private final byte[] I;
private final byte[] T1;
public LMSPublicKeyParameters(LMSigParameters parameterSet, LMOtsParameters lmOtsType, byte[] T1, byte[] I)
{
super(false);
this.parameterSet = parameterSet;
this.lmOtsType = lmOtsType;
this.I = Arrays.clone(I);
this.T1 = Arrays.clone(T1);
}
public static LMSPublicKeyParameters getInstance(Object src)
throws IOException
{
if (src instanceof LMSPublicKeyParameters)
{
return (LMSPublicKeyParameters)src;
}
else if (src instanceof DataInputStream)
{
int pubType = ((DataInputStream)src).readInt();
LMSigParameters lmsParameter = LMSigParameters.getParametersForType(pubType);
LMOtsParameters ostTypeCode = LMOtsParameters.getParametersForType(((DataInputStream)src).readInt());
byte[] I = new byte[16];
((DataInputStream)src).readFully(I);
byte[] T1 = new byte[lmsParameter.getM()];
((DataInputStream)src).readFully(T1);
return new LMSPublicKeyParameters(lmsParameter, ostTypeCode, T1, I);
}
else if (src instanceof byte[])
{
InputStream in = null;
try // 1.5 / 1.6 compatibility
{
in = new DataInputStream(new ByteArrayInputStream((byte[])src));
return getInstance(in);
}
finally
{
if (in != null)
{
in.close();
}
}
}
else if (src instanceof InputStream)
{
return getInstance(Streams.readAll((InputStream)src));
}
throw new IllegalArgumentException("cannot parse " + src);
}
public byte[] getEncoded()
throws IOException
{
return this.toByteArray();
}
public LMSigParameters getSigParameters()
{
return parameterSet;
}
public LMOtsParameters getOtsParameters()
{
return lmOtsType;
}
public LMSParameters getLMSParameters()
{
return new LMSParameters(this.getSigParameters(), this.getOtsParameters());
}
public byte[] getT1()
{
return Arrays.clone(T1);
}
boolean matchesT1(byte[] sig)
{
return Arrays.constantTimeAreEqual(T1, sig);
}
public byte[] getI()
{
return Arrays.clone(I);
}
byte[] refI()
{
return I;
}
@Override
public boolean equals(Object o)
{
if (this == o)
{
return true;
}
if (o == null || getClass() != o.getClass())
{
return false;
}
LMSPublicKeyParameters publicKey = (LMSPublicKeyParameters)o;
if (!parameterSet.equals(publicKey.parameterSet))
{
return false;
}
if (!lmOtsType.equals(publicKey.lmOtsType))
{
return false;
}
if (!Arrays.areEqual(I, publicKey.I))
{
return false;
}
return Arrays.areEqual(T1, publicKey.T1);
}
@Override
public int hashCode()
{
int result = parameterSet.hashCode();
result = 31 * result + lmOtsType.hashCode();
result = 31 * result + Arrays.hashCode(I);
result = 31 * result + Arrays.hashCode(T1);
return result;
}
byte[] toByteArray()
{
return Composer.compose()
.u32str(parameterSet.getType())
.u32str(lmOtsType.getType())
.bytes(I)
.bytes(T1)
.build();
}
public LMSContext generateLMSContext(byte[] signature)
{
try
{
return generateOtsContext(LMSSignature.getInstance(signature));
}
catch (IOException e)
{
throw new IllegalStateException("cannot parse signature: " + e.getMessage());
}
}
LMSContext generateOtsContext(LMSSignature S)
{
int ots_typecode = getOtsParameters().getType();
if (S.getOtsSignature().getType().getType() != ots_typecode)
{
throw new IllegalArgumentException("ots type from lsm signature does not match ots" +
" signature type from embedded ots signature");
}
return new LMOtsPublicKey(LMOtsParameters.getParametersForType(ots_typecode), I, S.getQ(), null).createOtsContext(S);
}
public boolean verify(LMSContext context)
{
return LMS.verifySignature(this, context);
}
}
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