blob: e3063511d90e67a2de37e7975f5da9e397726ccd [file] [log] [blame]
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/**
* @test
* @bug 4844847
* @summary Test the Signature.update(ByteBuffer) method
* @author Andreas Sterbenz
*/
import java.util.*;
import java.nio.*;
import java.security.*;
public class ByteBuffers {
public static void main(String[] args) throws Exception {
Provider p = Security.getProvider("SUN");
Random random = new Random();
int n = 10 * 1024;
byte[] t = new byte[n];
random.nextBytes(t);
KeyPairGenerator kpg = KeyPairGenerator.getInstance("DSA", p);
kpg.initialize(512);
KeyPair kp = kpg.generateKeyPair();
Signature sig = Signature.getInstance("DSA", p);
sig.initSign(kp.getPrivate());
sig.update(t);
byte[] signature = sig.sign();
sig.initVerify(kp.getPublic());
// test 1: ByteBuffer with an accessible backing array
ByteBuffer b1 = ByteBuffer.allocate(n + 256);
b1.position(random.nextInt(256));
b1.limit(b1.position() + n);
ByteBuffer b2 = b1.slice();
b2.put(t);
b2.clear();
verify(sig, signature, b2, random);
// test 2: direct ByteBuffer
ByteBuffer b3 = ByteBuffer.allocateDirect(t.length);
b3.put(t);
b3.clear();
verify(sig, signature, b3, random);
// test 3: ByteBuffer without an accessible backing array
b2.clear();
ByteBuffer b4 = b2.asReadOnlyBuffer();
verify(sig, signature, b4, random);
System.out.println("All tests passed");
}
private static void verify(Signature sig, byte[] signature, ByteBuffer b, Random random) throws Exception {
int lim = b.limit();
b.limit(random.nextInt(lim));
sig.update(b);
if (b.hasRemaining()) {
throw new Exception("Buffer not consumed");
}
b.limit(lim);
sig.update(b);
if (b.hasRemaining()) {
throw new Exception("Buffer not consumed");
}
if (sig.verify(signature) == false) {
throw new Exception("Signature did not verify");
}
}
}