Fixed Key Expansion + Removed Tests
Key Expansion should now be able to return the correct keys. Removed JUnit tests for the final release
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@ -242,26 +242,38 @@ public class AES {
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new BigInteger("0"), new BigInteger("0"), new BigInteger("0"), new BigInteger("0"), new BigInteger("0"),
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new BigInteger("0"), new BigInteger("0"), };
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// initialize rcon iteration
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int rconCounter = 1;
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for (int i = 1; i < 11; i++) {
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// get the previous 32 bits the key
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BigInteger t = roundKeys[i - 1].remainder(new BigInteger("100000000", 16));
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// initialize rcon iteration
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int rconCounter = 1;
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// split previous key into 8-bit segments
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BigInteger[] prevKey = {
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roundKeys[i - 1].remainder(new BigInteger("100000000", 16)),
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roundKeys[i - 1].remainder(new BigInteger("10000000000000000", 16)).divide(new BigInteger("100000000", 16)),
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roundKeys[i - 1].remainder(new BigInteger("1000000000000000000000000", 16)).divide(new BigInteger("10000000000000000", 16)),
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roundKeys[i - 1].divide(new BigInteger("1000000000000000000000000", 16)),
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};
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// schedule core
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// run schedule core
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t = scheduleCore(t, rconCounter);
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rconCounter += 1;
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BigInteger t1 = t.multiply(new BigInteger("100000000", 16));
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BigInteger t2 = t.multiply(new BigInteger("10000000000000000", 16));
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BigInteger t3 = t.multiply(new BigInteger("1000000000000000000000000", 16));
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t = t.add(t1).add(t2).add(t3);
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BigInteger xorMask = roundKeys[i - 1].divide(new BigInteger("100000000", 16));
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xorMask = xorMask.multiply(new BigInteger("100000000", 16));
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t = t.xor(xorMask);
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roundKeys[i] = t;
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// Calculate partial round key
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BigInteger t0 = t.xor(prevKey[3]);
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BigInteger t1 = t0.xor(prevKey[2]);
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BigInteger t2 = t1.xor(prevKey[1]);
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BigInteger t3 = t2.xor(prevKey[0]);
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// Join round key segments
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t2 = t2.multiply(new BigInteger("100000000", 16));
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t1 = t1.multiply(new BigInteger("10000000000000000", 16));
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t0 = t0.multiply(new BigInteger("1000000000000000000000000", 16));
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roundKeys[i] = t0.add(t1).add(t2).add(t3);
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}
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return roundKeys;
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@ -511,11 +523,13 @@ public class AES {
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public static void main(String[] args) {
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boolean encrypt = false;
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BigInteger key = new BigInteger("f0f1f2f3f4f5f6f708090a0b0c0d0e0f", 16);
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BigInteger key = new BigInteger("0", 16);
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BigInteger plaintext = new BigInteger("0", 16);
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BigInteger ciphertext = new BigInteger("adcfc0ed15292419cb796167bc02b669", 16);
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BigInteger output;
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System.out.println(keyExpansion(key)[2].xor(new BigInteger("9b9898c9f9fbfbaa9b9898c9f9fbfbaa",16)).toString(16));
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if (encrypt) {
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output = encrypt(plaintext, key);
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} else {
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@ -1,87 +0,0 @@
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package ciphers;
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import static org.junit.Assert.*;
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import java.math.BigInteger;
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import org.junit.Test;
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public class AESTest {
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@Test
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public void testSubBytes() {
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BigInteger x = new BigInteger("00ff01ff02ff03ff04ff05ff06ff07ff",16);
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BigInteger expected = new BigInteger("63167c1677167b16f2166b166f16c516",16);
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assertEquals(expected,AES.subBytes(x));
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}
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@Test
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public void testSubBytesDec() {
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BigInteger x = new BigInteger("63167c1677167b16f2166b166f16c516",16);
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BigInteger expected = new BigInteger("00ff01ff02ff03ff04ff05ff06ff07ff",16);
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assertEquals(expected,AES.subBytesDec(x));
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}
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@Test
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public void testShiftRows() {
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BigInteger x = new BigInteger("00102030011121310212223203132333",16);
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BigInteger expected = new BigInteger("00112233011223300213203103102132",16);
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assertEquals(expected,AES.shiftRows(x));
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}
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@Test
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public void testShiftRowsDec() {
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BigInteger x = new BigInteger("00112233011223300213203103102132",16);
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BigInteger expected = new BigInteger("00102030011121310212223203132333",16);
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assertEquals(expected,AES.shiftRowsDec(x));
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}
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@Test
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public void testMixColumns() {
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BigInteger x = new BigInteger("db135345f20a225c010101012d26314c",16);
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BigInteger expected = new BigInteger("8e4da1bc9fdc589d010101014d7ebdf8",16);
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assertEquals(expected,AES.mixColumns(x));
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}
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@Test
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public void testMixColumnsDec() {
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BigInteger x = new BigInteger("8e4da1bc9fdc589d010101014d7ebdf8",16);
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BigInteger expected = new BigInteger("db135345f20a225c010101012d26314c",16);
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assertEquals(expected,AES.mixColumnsDec(x));
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}
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@Test
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public void testEncryptAndDecryptCorrectKey() {
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// Plaintext/Ciphertext pairing with correct key
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BigInteger key = new BigInteger("f0f1f2f3f4f5f6f708090a0b0c0d0e0f", 16);
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BigInteger plaintext = new BigInteger("e9870a476d8d0bc43abde33cba26747e", 16);
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BigInteger ciphertext = new BigInteger("adcfc0ed15292419cb796167bc02b669", 16);
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BigInteger encryptedPlaintext = AES.encrypt(plaintext,key);
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BigInteger decryptedCiphertext = AES.decrypt(ciphertext,key);
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assertEquals(plaintext,decryptedCiphertext);
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assertEquals(ciphertext,encryptedPlaintext);
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}
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@Test
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public void testEncryptAndDecryptWrongKey() {
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// Plaintext/Ciphertext Pairing with incorrect key
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BigInteger key = new BigInteger("f4f1f2f3f4f5f6f708090a0b0c0d0e0f", 16);
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BigInteger plaintext = new BigInteger("e9870a476d8d0bc43abde33cba26747e", 16);
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BigInteger ciphertext = new BigInteger("adcfc0ed15292419cb796167bc02b669", 16);
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BigInteger encryptedPlaintext = AES.encrypt(plaintext,key);
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BigInteger decryptedCiphertext = AES.decrypt(plaintext,key);
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assertNotEquals(plaintext,decryptedCiphertext);
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assertNotEquals(ciphertext,encryptedPlaintext);
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}
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}
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