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// Code generated by counterfeiter. DO NOT EDIT.
package mock
import (
"sync"
"github.com/hyperledger/fabric/bccsp/idemix/handlers"
)
type NymSignatureScheme struct {
SignStub func(sk handlers.Big, Nym handlers.Ecp, RNym handlers.Big, ipk handlers.IssuerPublicKey, digest []byte) ([]byte, error)
signMutex sync.RWMutex
signArgsForCall []struct {
sk handlers.Big
Nym handlers.Ecp
RNym handlers.Big
ipk handlers.IssuerPublicKey
digest []byte
}
signReturns struct {
result1 []byte
result2 error
}
signReturnsOnCall map[int]struct {
result1 []byte
result2 error
}
VerifyStub func(pk handlers.IssuerPublicKey, Nym handlers.Ecp, signature, digest []byte) error
verifyMutex sync.RWMutex
verifyArgsForCall []struct {
pk handlers.IssuerPublicKey
Nym handlers.Ecp
signature []byte
digest []byte
}
verifyReturns struct {
result1 error
}
verifyReturnsOnCall map[int]struct {
result1 error
}
invocations map[string][][]interface{}
invocationsMutex sync.RWMutex
}
func (fake *NymSignatureScheme) Sign(sk handlers.Big, Nym handlers.Ecp, RNym handlers.Big, ipk handlers.IssuerPublicKey, digest []byte) ([]byte, error) {
var digestCopy []byte
if digest != nil {
digestCopy = make([]byte, len(digest))
copy(digestCopy, digest)
}
fake.signMutex.Lock()
ret, specificReturn := fake.signReturnsOnCall[len(fake.signArgsForCall)]
fake.signArgsForCall = append(fake.signArgsForCall, struct {
sk handlers.Big
Nym handlers.Ecp
RNym handlers.Big
ipk handlers.IssuerPublicKey
digest []byte
}{sk, Nym, RNym, ipk, digestCopy})
fake.recordInvocation("Sign", []interface{}{sk, Nym, RNym, ipk, digestCopy})
fake.signMutex.Unlock()
if fake.SignStub != nil {
return fake.SignStub(sk, Nym, RNym, ipk, digest)
}
if specificReturn {
return ret.result1, ret.result2
}
return fake.signReturns.result1, fake.signReturns.result2
}
func (fake *NymSignatureScheme) SignCallCount() int {
fake.signMutex.RLock()
defer fake.signMutex.RUnlock()
return len(fake.signArgsForCall)
}
func (fake *NymSignatureScheme) SignArgsForCall(i int) (handlers.Big, handlers.Ecp, handlers.Big, handlers.IssuerPublicKey, []byte) {
fake.signMutex.RLock()
defer fake.signMutex.RUnlock()
return fake.signArgsForCall[i].sk, fake.signArgsForCall[i].Nym, fake.signArgsForCall[i].RNym, fake.signArgsForCall[i].ipk, fake.signArgsForCall[i].digest
}
func (fake *NymSignatureScheme) SignReturns(result1 []byte, result2 error) {
fake.SignStub = nil
fake.signReturns = struct {
result1 []byte
result2 error
}{result1, result2}
}
func (fake *NymSignatureScheme) SignReturnsOnCall(i int, result1 []byte, result2 error) {
fake.SignStub = nil
if fake.signReturnsOnCall == nil {
fake.signReturnsOnCall = make(map[int]struct {
result1 []byte
result2 error
})
}
fake.signReturnsOnCall[i] = struct {
result1 []byte
result2 error
}{result1, result2}
}
func (fake *NymSignatureScheme) Verify(pk handlers.IssuerPublicKey, Nym handlers.Ecp, signature []byte, digest []byte) error {
var signatureCopy []byte
if signature != nil {
signatureCopy = make([]byte, len(signature))
copy(signatureCopy, signature)
}
var digestCopy []byte
if digest != nil {
digestCopy = make([]byte, len(digest))
copy(digestCopy, digest)
}
fake.verifyMutex.Lock()
ret, specificReturn := fake.verifyReturnsOnCall[len(fake.verifyArgsForCall)]
fake.verifyArgsForCall = append(fake.verifyArgsForCall, struct {
pk handlers.IssuerPublicKey
Nym handlers.Ecp
signature []byte
digest []byte
}{pk, Nym, signatureCopy, digestCopy})
fake.recordInvocation("Verify", []interface{}{pk, Nym, signatureCopy, digestCopy})
fake.verifyMutex.Unlock()
if fake.VerifyStub != nil {
return fake.VerifyStub(pk, Nym, signature, digest)
}
if specificReturn {
return ret.result1
}
return fake.verifyReturns.result1
}
func (fake *NymSignatureScheme) VerifyCallCount() int {
fake.verifyMutex.RLock()
defer fake.verifyMutex.RUnlock()
return len(fake.verifyArgsForCall)
}
func (fake *NymSignatureScheme) VerifyArgsForCall(i int) (handlers.IssuerPublicKey, handlers.Ecp, []byte, []byte) {
fake.verifyMutex.RLock()
defer fake.verifyMutex.RUnlock()
return fake.verifyArgsForCall[i].pk, fake.verifyArgsForCall[i].Nym, fake.verifyArgsForCall[i].signature, fake.verifyArgsForCall[i].digest
}
func (fake *NymSignatureScheme) VerifyReturns(result1 error) {
fake.VerifyStub = nil
fake.verifyReturns = struct {
result1 error
}{result1}
}
func (fake *NymSignatureScheme) VerifyReturnsOnCall(i int, result1 error) {
fake.VerifyStub = nil
if fake.verifyReturnsOnCall == nil {
fake.verifyReturnsOnCall = make(map[int]struct {
result1 error
})
}
fake.verifyReturnsOnCall[i] = struct {
result1 error
}{result1}
}
func (fake *NymSignatureScheme) Invocations() map[string][][]interface{} {
fake.invocationsMutex.RLock()
defer fake.invocationsMutex.RUnlock()
fake.signMutex.RLock()
defer fake.signMutex.RUnlock()
fake.verifyMutex.RLock()
defer fake.verifyMutex.RUnlock()
copiedInvocations := map[string][][]interface{}{}
for key, value := range fake.invocations {
copiedInvocations[key] = value
}
return copiedInvocations
}
func (fake *NymSignatureScheme) recordInvocation(key string, args []interface{}) {
fake.invocationsMutex.Lock()
defer fake.invocationsMutex.Unlock()
if fake.invocations == nil {
fake.invocations = map[string][][]interface{}{}
}
if fake.invocations[key] == nil {
fake.invocations[key] = [][]interface{}{}
}
fake.invocations[key] = append(fake.invocations[key], args)
}
var _ handlers.NymSignatureScheme = new(NymSignatureScheme)
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