dash/go-bindings/threshold.cpp

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// Copyright (c) 2021 The Dash Core developers
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include <vector>
#include <stdint.h>
#include "dashbls/bls.hpp"
#include "privatekey.h"
#include "elements.h"
#include "blschia.h"
#include "threshold.h"
#include "utils.hpp"
#include "error.h"
std::vector<bls::Bytes> toVectorHashes(void** elems, const size_t len) {
std::vector<bls::Bytes> vec;
vec.reserve(len);
for (int i = 0 ; i < len; ++i) {
vec.push_back(
bls::Bytes((uint8_t*)elems[i], HashSize)
);
}
return vec;
}
CPrivateKey CThresholdPrivateKeyShare(void** sks, const size_t sksLen, const void* hash, bool* didErr) {
bls::PrivateKey* sk = nullptr;
try {
sk = new bls::PrivateKey(
bls::Threshold::PrivateKeyShare(
toBLSVector<bls::PrivateKey>(sks, sksLen),
bls::Bytes((uint8_t*)hash, HashSize)
)
);
} catch(const std::exception& ex) {
gErrMsg = ex.what();
*didErr = true;
return nullptr;
}
*didErr = false;
return sk;
}
CPrivateKey CThresholdPrivateKeyRecover(void** sks,
const size_t sksLen,
void** hashes,
const size_t hashesLen,
bool* didErr) {
bls::PrivateKey* sk = nullptr;
std::vector<bls::Bytes> pop = toVectorHashes(hashes, hashesLen);
try {
sk = new bls::PrivateKey(
bls::Threshold::PrivateKeyRecover(
toBLSVector<bls::PrivateKey>(sks, sksLen),
toVectorHashes(hashes, hashesLen)
)
);
} catch(const std::exception& ex) {
gErrMsg = ex.what();
*didErr = true;
return nullptr;
}
*didErr = false;
return sk;
}
CG1Element CThresholdPublicKeyShare(void** pks, const size_t pksLen, const void* hash, bool* didErr) {
bls::G1Element* el = nullptr;
try {
el = new bls::G1Element(
bls::Threshold::PublicKeyShare(
toBLSVector<bls::G1Element>(pks, pksLen),
bls::Bytes((uint8_t*)hash, HashSize)
)
);
} catch(const std::exception& ex) {
gErrMsg = ex.what();
*didErr = true;
return nullptr;
}
*didErr = false;
return el;
}
CG1Element CThresholdPublicKeyRecover(void** pks,
const size_t pksLen,
void** hashes,
const size_t hashesLen,
bool* didErr) {
bls::G1Element* el = nullptr;
try {
el = new bls::G1Element(
bls::Threshold::PublicKeyRecover(
toBLSVector<bls::G1Element>(pks, pksLen),
toVectorHashes(hashes, hashesLen)
)
);
} catch(const std::exception& ex) {
gErrMsg = ex.what();
*didErr = true;
return nullptr;
}
*didErr = false;
return el;
}
CG2Element CThresholdSignatureShare(void** sigs, const size_t sigsLen, const void* hash, bool* didErr) {
bls::G2Element* el = nullptr;
try {
el = new bls::G2Element(
bls::Threshold::SignatureShare(
toBLSVector<bls::G2Element>(sigs, sigsLen),
bls::Bytes((uint8_t*)hash, HashSize)
)
);
} catch(const std::exception& ex) {
gErrMsg = ex.what();
*didErr = true;
return nullptr;
}
*didErr = false;
return el;
}
CG2Element CThresholdSignatureRecover(void** sigs,
const size_t sigsLen,
void** hashes,
const size_t hashesLen,
bool* didErr) {
bls::G2Element* el = nullptr;
try {
el = new bls::G2Element(
bls::Threshold::SignatureRecover(
toBLSVector<bls::G2Element>(sigs, sigsLen),
toVectorHashes(hashes, hashesLen)
)
);
} catch(const std::exception& ex) {
gErrMsg = ex.what();
*didErr = true;
return nullptr;
}
*didErr = false;
return el;
}
CG2Element CThresholdSign(const CPrivateKey sk, const void* hash) {
bls::PrivateKey* skPtr = (bls::PrivateKey*)sk;
return new bls::G2Element(
bls::Threshold::Sign(*skPtr, bls::Bytes((uint8_t*)hash, HashSize))
);
}
bool CThresholdVerify(const CG1Element pk, const void* hash, const CG2Element sig) {
bls::G1Element* pkPtr = (bls::G1Element*)pk;
bls::G2Element* sigPtr = (bls::G2Element*)sig;
return bls::Threshold::Verify(*pkPtr, bls::Bytes((uint8_t*)hash, HashSize), *sigPtr);
}