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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 Java 1.8 and later with debug enabled.

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package org.bouncycastle.pqc.asn1;

import org.bouncycastle.asn1.ASN1EncodableVector;
import org.bouncycastle.asn1.ASN1Integer;
import org.bouncycastle.asn1.ASN1Object;
import org.bouncycastle.asn1.ASN1OctetString;
import org.bouncycastle.asn1.ASN1Primitive;
import org.bouncycastle.asn1.ASN1Sequence;
import org.bouncycastle.asn1.DEROctetString;
import org.bouncycastle.asn1.DERSequence;
import org.bouncycastle.util.Arrays;

/**
 * ASN.1 Encoding for a
 * FALCON private key for fully populated:
 * 
 * FALCONPrivateKey ::= SEQUENCE {
 *     version     INTEGER {v2(1)}    -- syntax version 2 (round 3)
 *     f           OCTET STRING,      -- short integer polynomial f
 *     g           OCTET STRING,      -- short integer polynomial g
 *     f           OCTET STRING,      -- short integer polynomial F
 *     publicKey   [0] IMPLICIT FALCONPublicKey  OPTIONAL
 *                                    -- see next section
 *     }
 * 
*/ public class FalconPrivateKey extends ASN1Object { private int version; private byte[] f; private byte[] g; private byte[] F; private FalconPublicKey publicKey; public FalconPrivateKey(int version, byte[] f, byte[] g, byte[] f1, FalconPublicKey publicKey) { this.version = version; this.f = f; this.g = g; F = f1; this.publicKey = publicKey; } public FalconPrivateKey(int version, byte[] f, byte[] g, byte[] f1) { this(version, f, g, f1, null); } public int getVersion() { return version; } public byte[] getf() { return Arrays.clone(f); } public byte[] getF() { return Arrays.clone(F); } public FalconPublicKey getPublicKey() { return publicKey; } public byte[] getG() { return Arrays.clone(g); } private FalconPrivateKey(ASN1Sequence seq) { version = ASN1Integer.getInstance(seq.getObjectAt(0)).intValueExact(); if (version != 0) { throw new IllegalArgumentException("unrecognized version"); } f = Arrays.clone(ASN1OctetString.getInstance(seq.getObjectAt(1)).getOctets()); g = Arrays.clone(ASN1OctetString.getInstance(seq.getObjectAt(2)).getOctets()); F = Arrays.clone(ASN1OctetString.getInstance(seq.getObjectAt(3)).getOctets()); if(seq.size() == 5) { publicKey = FalconPublicKey.getInstance(seq.getObjectAt(4)); } } public ASN1Primitive toASN1Primitive() { ASN1EncodableVector v = new ASN1EncodableVector(); v.add(new ASN1Integer(version)); v.add(new DEROctetString(f)); v.add(new DEROctetString(g)); v.add(new DEROctetString(F)); // todo optional publickey if(publicKey != null) { v.add(new FalconPublicKey(publicKey.getH())); } return new DERSequence(v); } public static FalconPrivateKey getInstance(Object o) { if (o instanceof FalconPrivateKey) { return (FalconPrivateKey)o; } else if (o != null) { return new FalconPrivateKey(ASN1Sequence.getInstance(o)); } return null; } }




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