Squashed 'src/secp256k1/' content from commit ad2028f
git-subtree-dir: src/secp256k1 git-subtree-split: ad2028f9890ca40bdd32055aa0fe5c1c9af0e485
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60
src/java/org/bitcoin/NativeSecp256k1.java
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60
src/java/org/bitcoin/NativeSecp256k1.java
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package org.bitcoin;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import com.google.common.base.Preconditions;
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/**
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* This class holds native methods to handle ECDSA verification.
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* You can find an example library that can be used for this at
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* https://github.com/sipa/secp256k1
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*/
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public class NativeSecp256k1 {
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public static final boolean enabled;
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static {
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boolean isEnabled = true;
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try {
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System.loadLibrary("javasecp256k1");
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} catch (UnsatisfiedLinkError e) {
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isEnabled = false;
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}
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enabled = isEnabled;
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}
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private static ThreadLocal<ByteBuffer> nativeECDSABuffer = new ThreadLocal<ByteBuffer>();
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/**
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* Verifies the given secp256k1 signature in native code.
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* Calling when enabled == false is undefined (probably library not loaded)
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*
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* @param data The data which was signed, must be exactly 32 bytes
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* @param signature The signature
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* @param pub The public key which did the signing
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*/
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public static boolean verify(byte[] data, byte[] signature, byte[] pub) {
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Preconditions.checkArgument(data.length == 32 && signature.length <= 520 && pub.length <= 520);
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ByteBuffer byteBuff = nativeECDSABuffer.get();
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if (byteBuff == null) {
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byteBuff = ByteBuffer.allocateDirect(32 + 8 + 520 + 520);
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byteBuff.order(ByteOrder.nativeOrder());
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nativeECDSABuffer.set(byteBuff);
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}
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byteBuff.rewind();
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byteBuff.put(data);
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byteBuff.putInt(signature.length);
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byteBuff.putInt(pub.length);
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byteBuff.put(signature);
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byteBuff.put(pub);
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return secp256k1_ecdsa_verify(byteBuff) == 1;
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}
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/**
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* @param byteBuff signature format is byte[32] data,
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* native-endian int signatureLength, native-endian int pubkeyLength,
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* byte[signatureLength] signature, byte[pubkeyLength] pub
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* @returns 1 for valid signature, anything else for invalid
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*/
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private static native int secp256k1_ecdsa_verify(ByteBuffer byteBuff);
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}
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