public class SPSGroth15SignatureScheme extends java.lang.Object implements MultiMessageStructurePreservingSignatureScheme
Bilinear map type: 3
[1] Groth, J.: Efficient fully structure-preserving signatures for large messages. ASIACRYPT 2015, Part I. LNCS, vol. 9452, pp. 239–259. Springer, Heidelberg https://eprint.iacr.org/2015/824.pdf
[2] Camenisch, J., Drijvers, M., Dubovitskaya, M.: Practical UC-secure delegatable credentials with attributes and their application to blockchain. ACM CCS 2017. pp. 683–699. ACM Press
| Modifier and Type | Field and Description |
|---|---|
protected SPSGroth15PublicParameters |
pp
Public parameters of the signature scheme.
|
| Modifier | Constructor and Description |
|---|---|
protected |
SPSGroth15SignatureScheme() |
|
SPSGroth15SignatureScheme(org.cryptimeleon.math.serialization.Representation repr) |
|
SPSGroth15SignatureScheme(SPSGroth15PublicParameters pp) |
| Modifier and Type | Method and Description |
|---|---|
boolean |
equals(java.lang.Object other) |
SignatureKeyPair<SPSGroth15VerificationKey,SPSGroth15SigningKey> |
generateKeyPair(int numberOfMessages)
Generates a key pair for signing a block of
numberOfMessages messages
with each signature. |
int |
getMaxNumberOfBytesForMapToPlaintext()
Returns the maximal number of bytes that can be mapped injectively to a
PlainText by
SignatureScheme.mapToPlaintext(byte[], SigningKey) and SignatureScheme.mapToPlaintext(byte[], VerificationKey). |
SPSGroth15PublicParameters |
getPp() |
org.cryptimeleon.math.serialization.Representation |
getRepresentation() |
int |
hashCode() |
MessageBlock |
mapToPlaintext(byte[] bytes,
SigningKey sk)
Provides an injective mapping of the given bytes to a
PlainText usable with this scheme (which may be a
MessageBlock). |
MessageBlock |
mapToPlaintext(byte[] bytes,
VerificationKey pk)
Provides an injective mapping of the given bytes to a
PlainText usable with this scheme (which may be a
MessageBlock). |
MessageBlock |
restorePlainText(org.cryptimeleon.math.serialization.Representation repr) |
SPSGroth15Signature |
restoreSignature(org.cryptimeleon.math.serialization.Representation repr) |
SPSGroth15SigningKey |
restoreSigningKey(org.cryptimeleon.math.serialization.Representation repr) |
SPSGroth15VerificationKey |
restoreVerificationKey(org.cryptimeleon.math.serialization.Representation repr) |
Signature |
sign(PlainText plainText,
SigningKey secretKey)
Signs the giving plaintext using the given signing key.
|
java.lang.Boolean |
verify(PlainText plainText,
Signature signature,
VerificationKey publicKey)
Verifies the given signature for the given plaintext using the given verification key.
|
clone, finalize, getClass, notify, notifyAll, toString, wait, wait, waitsign, sign, verify, verifygenerateKeyPairsign, sign, verify, verifyrestoreFromRepresentation, sign, verifyprotected SPSGroth15PublicParameters pp
protected SPSGroth15SignatureScheme()
public SPSGroth15SignatureScheme(SPSGroth15PublicParameters pp)
public SPSGroth15SignatureScheme(org.cryptimeleon.math.serialization.Representation repr)
public SignatureKeyPair<SPSGroth15VerificationKey,SPSGroth15SigningKey> generateKeyPair(int numberOfMessages)
StandardMultiMessageSignatureSchemenumberOfMessages messages
with each signature.generateKeyPair in interface StandardMultiMessageSignatureSchemenumberOfMessages - the number of messages as input to sign supported by this key pairpublic Signature sign(PlainText plainText, SigningKey secretKey)
SignatureSchemesign in interface SignatureSchemeplainText - the message to signsecretKey - the secret signing keyplainText computed using secretKeypublic java.lang.Boolean verify(PlainText plainText, Signature signature, VerificationKey publicKey)
SignatureSchemeverify in interface SignatureSchemeplainText - the plaintext the signature should validate againstsignature - the signature to verifypublicKey - the verification key to verify withpublic org.cryptimeleon.math.serialization.Representation getRepresentation()
getRepresentation in interface org.cryptimeleon.math.serialization.Representablepublic MessageBlock restorePlainText(org.cryptimeleon.math.serialization.Representation repr)
restorePlainText in interface SignatureSchemepublic SPSGroth15Signature restoreSignature(org.cryptimeleon.math.serialization.Representation repr)
restoreSignature in interface SignatureSchemepublic SPSGroth15SigningKey restoreSigningKey(org.cryptimeleon.math.serialization.Representation repr)
restoreSigningKey in interface SignatureSchemepublic SPSGroth15VerificationKey restoreVerificationKey(org.cryptimeleon.math.serialization.Representation repr)
restoreVerificationKey in interface SignatureSchemepublic SPSGroth15PublicParameters getPp()
public int hashCode()
hashCode in class java.lang.Objectpublic boolean equals(java.lang.Object other)
equals in class java.lang.Objectpublic MessageBlock mapToPlaintext(byte[] bytes, VerificationKey pk)
SignatureSchemePlainText usable with this scheme (which may be a
MessageBlock).
It only guarantees injectivity for arrays of the same length.
Applications that would like to use mapToPlaintext with multiple different array lengths
may want to devise a padding method and then only call mapToPlaintext with
byte arrays of the same (padded) length.
The contract is that VerificationKey pk and SigningKey sk are compatible
(in the sense that verify(m,sign(m, sk),pk) == true),
then mapToPlaintext(bytes, pk)) equals mapToPlaintext(bytes, sk) for all bytes.
mapToPlaintext in interface SignatureSchemebytes - bytes to be mapped to a PlainTextpk - the verification key for which the resulting PlainText should be valid
(note that the plaintext space may differ for different verification keys).public MessageBlock mapToPlaintext(byte[] bytes, SigningKey sk)
SignatureSchemePlainText usable with this scheme (which may be a
MessageBlock).
It only guarantees injectivity for arrays of the same length.
Applications that would like to use mapToPlaintext with multiple different array lengths
may want to devise a padding method and then only call mapToPlaintext with
byte arrays of the same (padded) length.
The contract is that VerificationKey pk and SigningKey sk are compatible
(in the sense that verify(m,sign(m, sk),pk) == true),
then mapToPlaintext(bytes, pk)) equals mapToPlaintext(bytes, sk) for all bytes.
mapToPlaintext in interface SignatureSchemebytes - bytes to be mapped to a PlainTextsk - the signing key for which the resulting PlainText should be valid
(note that the plaintext space may differ for different signing keys).public int getMaxNumberOfBytesForMapToPlaintext()
SignatureSchemePlainText by
SignatureScheme.mapToPlaintext(byte[], SigningKey) and SignatureScheme.mapToPlaintext(byte[], VerificationKey).
As described in SignatureScheme.mapToPlaintext(byte[], org.cryptimeleon.craco.sig.VerificationKey) there might be no injective PlainText for some byte arrays, e.g.
if the byte array is too long. Therefore, this method provides the maximal number of bytes that can be mapped
injectively to a PlainText.
getMaxNumberOfBytesForMapToPlaintext in interface SignatureSchemeSignatureScheme.mapToPlaintext(byte[], org.cryptimeleon.craco.sig.VerificationKey).