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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 1.5 to JDK 1.8.
package org.bouncycastle.pqc.crypto.xmss;
import java.io.IOException;
import org.bouncycastle.util.Encodable;
import org.bouncycastle.util.Pack;
/**
* XMSS Public Key.
*/
public final class XMSSPublicKeyParameters
extends XMSSKeyParameters
implements XMSSStoreableObjectInterface, Encodable
{
/**
* XMSS parameters object.
*/
private final XMSSParameters params;
private final int oid;
private final byte[] root;
private final byte[] publicSeed;
private XMSSPublicKeyParameters(Builder builder)
{
super(false, builder.params.getTreeDigest());
params = builder.params;
if (params == null)
{
throw new NullPointerException("params == null");
}
int n = params.getTreeDigestSize();
byte[] publicKey = builder.publicKey;
if (publicKey != null)
{
/* import */
int oidSize = 4;
int rootSize = n;
int publicSeedSize = n;
// updated key
int position = 0;
// pre-rfc final key without OID.
if (publicKey.length == rootSize + publicSeedSize)
{
oid = 0;
root = XMSSUtil.extractBytesAtOffset(publicKey, position, rootSize);
position += rootSize;
publicSeed = XMSSUtil.extractBytesAtOffset(publicKey, position, publicSeedSize);
}
else if (publicKey.length == oidSize + rootSize + publicSeedSize)
{
oid = Pack.bigEndianToInt(publicKey, 0);
position += oidSize;
root = XMSSUtil.extractBytesAtOffset(publicKey, position, rootSize);
position += rootSize;
publicSeed = XMSSUtil.extractBytesAtOffset(publicKey, position, publicSeedSize);
}
else
{
throw new IllegalArgumentException("public key has wrong size");
}
}
else
{
/* set */
if (params.getOid() != null)
{
this.oid = params.getOid().getOid();
}
else
{
this.oid = 0;
}
byte[] tmpRoot = builder.root;
if (tmpRoot != null)
{
if (tmpRoot.length != n)
{
throw new IllegalArgumentException("length of root must be equal to length of digest");
}
root = tmpRoot;
}
else
{
root = new byte[n];
}
byte[] tmpPublicSeed = builder.publicSeed;
if (tmpPublicSeed != null)
{
if (tmpPublicSeed.length != n)
{
throw new IllegalArgumentException("length of publicSeed must be equal to length of digest");
}
publicSeed = tmpPublicSeed;
}
else
{
publicSeed = new byte[n];
}
}
}
public byte[] getEncoded()
throws IOException
{
return toByteArray();
}
public static class Builder
{
/* mandatory */
private final XMSSParameters params;
/* optional */
private byte[] root = null;
private byte[] publicSeed = null;
private byte[] publicKey = null;
public Builder(XMSSParameters params)
{
super();
this.params = params;
}
public Builder withRoot(byte[] val)
{
root = XMSSUtil.cloneArray(val);
return this;
}
public Builder withPublicSeed(byte[] val)
{
publicSeed = XMSSUtil.cloneArray(val);
return this;
}
public Builder withPublicKey(byte[] val)
{
publicKey = XMSSUtil.cloneArray(val);
return this;
}
public XMSSPublicKeyParameters build()
{
return new XMSSPublicKeyParameters(this);
}
}
/**
* @deprecated use getEncoded() - this method will become private.
*/
public byte[] toByteArray()
{
/* oid || root || seed */
int n = params.getTreeDigestSize();
int oidSize = 4;
int rootSize = n;
int publicSeedSize = n;
byte[] out;
int position = 0;
/* copy oid */
if (oid != 0)
{
out = new byte[oidSize + rootSize + publicSeedSize];
Pack.intToBigEndian(oid, out, position);
position += oidSize;
}
else
{
out = new byte[rootSize + publicSeedSize];
}
/* copy root */
XMSSUtil.copyBytesAtOffset(out, root, position);
position += rootSize;
/* copy public seed */
XMSSUtil.copyBytesAtOffset(out, publicSeed, position);
return out;
}
public byte[] getRoot()
{
return XMSSUtil.cloneArray(root);
}
public byte[] getPublicSeed()
{
return XMSSUtil.cloneArray(publicSeed);
}
public XMSSParameters getParameters()
{
return params;
}
}
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