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package java.security.spec;
import java.util.Objects;
/**
* A class representing elliptic curve private keys as defined in RFC 7748,
* including the curve and other algorithm parameters. The private key is
* represented as an encoded scalar value. The decoding procedure defined in
* the RFC includes an operation that forces certain bits of the key to either
* 1 or 0. This operation is known as "pruning" or "clamping" the private key.
* All arrays in this spec are unpruned, and implementations will need to prune
* the array before using it in any numerical operations.
*
* @since 11
*/
public class XECPrivateKeySpec implements KeySpec {
private final AlgorithmParameterSpec params;
private final byte[] scalar;
/**
* Construct a private key spec using the supplied parameters and
* encoded scalar value.
*
* @param params the algorithm parameters
* @param scalar the unpruned encoded scalar value. This array is copied
* to protect against subsequent modification.
*
* @throws NullPointerException if {@code params} or {@code scalar}
* is null.
*/
public XECPrivateKeySpec(AlgorithmParameterSpec params, byte[] scalar) {
Objects.requireNonNull(params, "params must not be null");
Objects.requireNonNull(scalar, "scalar must not be null");
this.params = params;
this.scalar = scalar.clone();
}
/**
* Get the algorithm parameters that define the curve and other settings.
*
* @return the algorithm parameters
*/
public AlgorithmParameterSpec getParams() {
return params;
}
/**
* Get the scalar value encoded as an unpruned byte array. A new copy of
* the array is returned each time this method is called.
*
* @return the unpruned encoded scalar value
*/
public byte[] getScalar() {
return scalar.clone();
}
}