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client.go
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client.go
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package zkgroup
/*
#cgo linux,amd64 LDFLAGS: -L${SRCDIR}/lib '-Wl,-rpath,$$ORIGIN/' -lzkgroup_linux_x86_64
#cgo linux,arm64 LDFLAGS: -L${SRCDIR}/lib '-Wl,-rpath,$$ORIGIN/' -lzkgroup_linux_aarch64
#cgo linux,arm LDFLAGS: -L${SRCDIR}/lib '-Wl,-rpath,$$ORIGIN/' -lzkgroup_linux_armv7
#include "lib/zkgroup.h"
*/
import "C"
import (
"encoding/binary"
"github.com/pkg/errors"
)
// ClientZkGroupCipher ...
type ClientZkGroupCipher struct {
groupSecretParams GroupSecretParams
}
// NewClientZkGroupCipher ...
func NewClientZkGroupCipher(groupSecretParams GroupSecretParams) *ClientZkGroupCipher {
return &ClientZkGroupCipher{groupSecretParams: groupSecretParams}
}
// EncryptBlob ...
func (c ClientZkGroupCipher) EncryptBlob(plaintext []byte) ([]byte, error) {
rand := randBytes(32)
return c.EncryptBlobDeterministic(rand, plaintext)
}
// EncryptBlobDeterministic ...
func (c ClientZkGroupCipher) EncryptBlobDeterministic(random []byte, plaintext []byte) ([]byte, error) {
paddedPlaintext := append([]byte{0x00, 0x00, 0x00, 0x00}, plaintext...)
ciphertext := make([]byte, len(paddedPlaintext)+29)
if res := C.FFI_GroupSecretParams_encryptBlobDeterministic(cBytes(c.groupSecretParams), cLen(c.groupSecretParams), cBytes(random), cLen(random), cBytes(paddedPlaintext), cLen(paddedPlaintext), cBytes(ciphertext), cLen(ciphertext)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
return ciphertext, nil
}
// DecryptBlob ...
func (c ClientZkGroupCipher) DecryptBlob(ciphertext []byte) ([]byte, error) {
out := make([]byte, len(ciphertext)-29)
if res := C.FFI_GroupSecretParams_decryptBlob(cBytes(c.groupSecretParams), cLen(c.groupSecretParams), cBytes(ciphertext), cLen(ciphertext), cBytes(out), cLen(out)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
if len(out) < 4 {
return nil, ErrVerificationFailed
}
padLenBytes := out[0:4]
padLen := int(binary.BigEndian.Uint32(padLenBytes))
if len(out) < (4 + padLen) {
return nil, ErrVerificationFailed
}
return out[4 : len(out)-padLen], nil
}
// EncryptUUID ...
func (c ClientZkGroupCipher) EncryptUUID(uuid UUID) ([]byte, error) {
if len(uuid) != C.UUID_LEN {
return nil, errors.Errorf("invalid uuid length %d %d", len(uuid), C.UUID_LEN)
}
ciphertext := make([]byte, C.UUID_CIPHERTEXT_LEN)
if res := C.FFI_GroupSecretParams_encryptUuid(cBytes(c.groupSecretParams), cLen(c.groupSecretParams), cBytes(uuid), cLen(uuid), cBytes(ciphertext), cLen(ciphertext)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
return ciphertext, nil
}
// DecryptUUID ...
func (c ClientZkGroupCipher) DecryptUUID(ciphertext []byte) (UUID, error) {
uuid := make([]byte, C.UUID_LEN)
if res := C.FFI_GroupSecretParams_decryptUuid(cBytes(c.groupSecretParams), cLen(c.groupSecretParams), cBytes(ciphertext), cLen(ciphertext), cBytes(uuid), cLen(uuid)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
return uuid, nil
}
// DecryptProfileKey ...
func (c ClientZkGroupCipher) DecryptProfileKey(profileKeyCiphertext []byte, uuid []byte) (UUID, error) {
profileKey := make([]byte, C.PROFILE_KEY_LEN)
if res := C.FFI_GroupSecretParams_decryptProfileKey(cBytes(c.groupSecretParams), cLen(c.groupSecretParams), cBytes(profileKeyCiphertext), cLen(profileKeyCiphertext), cBytes(uuid), cLen(uuid), cBytes(profileKey), cLen(profileKey)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
return profileKey, nil
}
// ClientZkAuthOperations ...
type ClientZkAuthOperations struct {
serverPublicParams ServerPublicParams
}
// NewClientZkAuthOperations ...
func NewClientZkAuthOperations(serverPublicParams ServerPublicParams) (*ClientZkAuthOperations, error) {
if serverPublicParams == nil {
return nil, errors.Errorf("empty server public params")
}
return &ClientZkAuthOperations{serverPublicParams: serverPublicParams}, nil
}
// ReceiveAuthCredential ...
func (c ClientZkAuthOperations) ReceiveAuthCredential(uuid UUID, redemptionTime uint32, authCredentialResponse AuthCredentialResponse) (AuthCredential, error) {
out := make([]byte, C.AUTH_CREDENTIAL_LEN)
if res := C.FFI_ServerPublicParams_receiveAuthCredential(
cBytes(c.serverPublicParams), cLen(c.serverPublicParams),
cBytes(uuid), cLen(uuid),
C.uint32_t(redemptionTime),
cBytes(authCredentialResponse), cLen(authCredentialResponse),
cBytes(out), cLen(out)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
return AuthCredential(out), nil
}
// CreateAuthCredentialPresentation ...
func (c ClientZkAuthOperations) CreateAuthCredentialPresentation(groupSecretParams GroupSecretParams, authCredential AuthCredential) (AuthCredentialPresentation, error) {
return c.CreateAuthCredentialPresentationDeterministic(randBytes(32), groupSecretParams, authCredential)
}
// CreateAuthCredentialPresentationDeterministic ...
func (c ClientZkAuthOperations) CreateAuthCredentialPresentationDeterministic(random []byte, groupSecretParams GroupSecretParams, authCredential AuthCredential) (AuthCredentialPresentation, error) {
out := make([]byte, C.AUTH_CREDENTIAL_PRESENTATION_LEN)
if res := C.FFI_ServerPublicParams_createAuthCredentialPresentationDeterministic(
cBytes(c.serverPublicParams), cLen(c.serverPublicParams),
cBytes(random), cLen(random),
cBytes(groupSecretParams), cLen(groupSecretParams),
cBytes(authCredential), cLen(authCredential),
cBytes(out), cLen(out)); res != C.FFI_RETURN_OK {
return nil, errFromCode(res)
}
return AuthCredentialPresentation(out), nil
}