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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 1.4.
package org.bouncycastle.pqc.crypto.picnic;
import java.io.DataInputStream;
import java.io.IOException;
import java.util.zip.GZIPInputStream;
import org.bouncycastle.util.Exceptions;
public class LowmcConstantsL3
extends LowmcConstants
{
LowmcConstantsL3()
{
// load a properties file
try
{
DataInputStream input = new DataInputStream(new GZIPInputStream(LowmcConstants.class.getResourceAsStream("lowmcL3.bin.properties")));
linearMatrices = readArray(input);
roundConstants = readArray(input);
keyMatrices = readArray(input);
linearMatrices_full = readArray(input);
keyMatrices_full = readArray(input);
keyMatrices_inv = readArray(input);
linearMatrices_inv = readArray(input);
roundConstants_full = readArray(input);
}
catch (IOException e)
{
throw Exceptions.illegalStateException("unable to load Picnic properties: " + e.getMessage(), e);
}
// Parameters for security level L3
// Block/key size: 192
// Rounds: 30
// linearMatrices = ReadFromProperty(props, "linearMatrices", 138240);
// roundConstants = ReadFromProperty(props, "roundConstants", 720);
// keyMatrices = ReadFromProperty(props, "keyMatrices", 142848);
LMatrix = new KMatrices(30, 192, 6, linearMatrices);
KMatrix = new KMatrices(31, 192, 6, keyMatrices);
RConstants = new KMatrices(30, 1, 6, roundConstants);
// Parameters for security level L3, full s-box layer
// Block/key size: 192
// S-boxes: 64
// Rounds: 4
// linearMatrices_full = ReadFromProperty(props, "linearMatrices_full", 18432);
// linearMatrices_inv = ReadFromProperty(props, "linearMatrices_inv", 18432);
// roundConstants_full = ReadFromProperty(props, "roundConstants_full", 96);
// keyMatrices_full = ReadFromProperty(props, "keyMatrices_full", 23040);
// keyMatrices_inv = ReadFromProperty(props, "keyMatrices_inv", 4608);
LMatrix_full = new KMatrices(4, 192, 6, linearMatrices_full);
LMatrix_inv = new KMatrices(4, 192, 6, linearMatrices_inv);
KMatrix_full = new KMatrices(5, 192, 6, keyMatrices_full);
KMatrix_inv = new KMatrices(1, 192, 6, keyMatrices_inv);
RConstants_full = new KMatrices(4, 1, 6, roundConstants_full);
}
}
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