1*e7b1675dSTing-Kang Chang// Copyright 2018 Google LLC 2*e7b1675dSTing-Kang Chang// 3*e7b1675dSTing-Kang Chang// Licensed under the Apache License, Version 2.0 (the "License"); 4*e7b1675dSTing-Kang Chang// you may not use this file except in compliance with the License. 5*e7b1675dSTing-Kang Chang// You may obtain a copy of the License at 6*e7b1675dSTing-Kang Chang// 7*e7b1675dSTing-Kang Chang// http://www.apache.org/licenses/LICENSE-2.0 8*e7b1675dSTing-Kang Chang// 9*e7b1675dSTing-Kang Chang// Unless required by applicable law or agreed to in writing, software 10*e7b1675dSTing-Kang Chang// distributed under the License is distributed on an "AS IS" BASIS, 11*e7b1675dSTing-Kang Chang// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 12*e7b1675dSTing-Kang Chang// See the License for the specific language governing permissions and 13*e7b1675dSTing-Kang Chang// limitations under the License. 14*e7b1675dSTing-Kang Chang// 15*e7b1675dSTing-Kang Chang//////////////////////////////////////////////////////////////////////////////// 16*e7b1675dSTing-Kang Chang 17*e7b1675dSTing-Kang Changpackage mac 18*e7b1675dSTing-Kang Chang 19*e7b1675dSTing-Kang Changimport ( 20*e7b1675dSTing-Kang Chang "errors" 21*e7b1675dSTing-Kang Chang "fmt" 22*e7b1675dSTing-Kang Chang "io" 23*e7b1675dSTing-Kang Chang 24*e7b1675dSTing-Kang Chang "google.golang.org/protobuf/proto" 25*e7b1675dSTing-Kang Chang "github.com/google/tink/go/keyset" 26*e7b1675dSTing-Kang Chang "github.com/google/tink/go/mac/subtle" 27*e7b1675dSTing-Kang Chang "github.com/google/tink/go/subtle/random" 28*e7b1675dSTing-Kang Chang commonpb "github.com/google/tink/go/proto/common_go_proto" 29*e7b1675dSTing-Kang Chang hmacpb "github.com/google/tink/go/proto/hmac_go_proto" 30*e7b1675dSTing-Kang Chang tinkpb "github.com/google/tink/go/proto/tink_go_proto" 31*e7b1675dSTing-Kang Chang) 32*e7b1675dSTing-Kang Chang 33*e7b1675dSTing-Kang Changconst ( 34*e7b1675dSTing-Kang Chang hmacKeyVersion = 0 35*e7b1675dSTing-Kang Chang hmacTypeURL = "type.googleapis.com/google.crypto.tink.HmacKey" 36*e7b1675dSTing-Kang Chang) 37*e7b1675dSTing-Kang Chang 38*e7b1675dSTing-Kang Changvar errInvalidHMACKey = errors.New("hmac_key_manager: invalid key") 39*e7b1675dSTing-Kang Changvar errInvalidHMACKeyFormat = errors.New("hmac_key_manager: invalid key format") 40*e7b1675dSTing-Kang Chang 41*e7b1675dSTing-Kang Chang// hmacKeyManager generates new HMAC keys and produces new instances of HMAC. 42*e7b1675dSTing-Kang Changtype hmacKeyManager struct{} 43*e7b1675dSTing-Kang Chang 44*e7b1675dSTing-Kang Chang// Primitive constructs a HMAC instance for the given serialized HMACKey. 45*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) Primitive(serializedKey []byte) (interface{}, error) { 46*e7b1675dSTing-Kang Chang if len(serializedKey) == 0 { 47*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKey 48*e7b1675dSTing-Kang Chang } 49*e7b1675dSTing-Kang Chang key := new(hmacpb.HmacKey) 50*e7b1675dSTing-Kang Chang if err := proto.Unmarshal(serializedKey, key); err != nil { 51*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKey 52*e7b1675dSTing-Kang Chang } 53*e7b1675dSTing-Kang Chang if err := km.validateKey(key); err != nil { 54*e7b1675dSTing-Kang Chang return nil, err 55*e7b1675dSTing-Kang Chang } 56*e7b1675dSTing-Kang Chang hash := commonpb.HashType_name[int32(key.Params.Hash)] 57*e7b1675dSTing-Kang Chang hmac, err := subtle.NewHMAC(hash, key.KeyValue, key.Params.TagSize) 58*e7b1675dSTing-Kang Chang if err != nil { 59*e7b1675dSTing-Kang Chang return nil, err 60*e7b1675dSTing-Kang Chang } 61*e7b1675dSTing-Kang Chang return hmac, nil 62*e7b1675dSTing-Kang Chang} 63*e7b1675dSTing-Kang Chang 64*e7b1675dSTing-Kang Chang// NewKey generates a new HMACKey according to specification in the given HMACKeyFormat. 65*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) NewKey(serializedKeyFormat []byte) (proto.Message, error) { 66*e7b1675dSTing-Kang Chang if len(serializedKeyFormat) == 0 { 67*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKeyFormat 68*e7b1675dSTing-Kang Chang } 69*e7b1675dSTing-Kang Chang keyFormat := new(hmacpb.HmacKeyFormat) 70*e7b1675dSTing-Kang Chang if err := proto.Unmarshal(serializedKeyFormat, keyFormat); err != nil { 71*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKeyFormat 72*e7b1675dSTing-Kang Chang } 73*e7b1675dSTing-Kang Chang if err := km.validateKeyFormat(keyFormat); err != nil { 74*e7b1675dSTing-Kang Chang return nil, fmt.Errorf("hmac_key_manager: invalid key format: %s", err) 75*e7b1675dSTing-Kang Chang } 76*e7b1675dSTing-Kang Chang keyValue := random.GetRandomBytes(keyFormat.KeySize) 77*e7b1675dSTing-Kang Chang return &hmacpb.HmacKey{ 78*e7b1675dSTing-Kang Chang Version: hmacKeyVersion, 79*e7b1675dSTing-Kang Chang Params: keyFormat.Params, 80*e7b1675dSTing-Kang Chang KeyValue: keyValue, 81*e7b1675dSTing-Kang Chang }, nil 82*e7b1675dSTing-Kang Chang} 83*e7b1675dSTing-Kang Chang 84*e7b1675dSTing-Kang Chang// NewKeyData generates a new KeyData according to specification in the given 85*e7b1675dSTing-Kang Chang// serialized HMACKeyFormat. This should be used solely by the key management API. 86*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) NewKeyData(serializedKeyFormat []byte) (*tinkpb.KeyData, error) { 87*e7b1675dSTing-Kang Chang key, err := km.NewKey(serializedKeyFormat) 88*e7b1675dSTing-Kang Chang if err != nil { 89*e7b1675dSTing-Kang Chang return nil, err 90*e7b1675dSTing-Kang Chang } 91*e7b1675dSTing-Kang Chang serializedKey, err := proto.Marshal(key) 92*e7b1675dSTing-Kang Chang if err != nil { 93*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKeyFormat 94*e7b1675dSTing-Kang Chang } 95*e7b1675dSTing-Kang Chang 96*e7b1675dSTing-Kang Chang return &tinkpb.KeyData{ 97*e7b1675dSTing-Kang Chang TypeUrl: hmacTypeURL, 98*e7b1675dSTing-Kang Chang Value: serializedKey, 99*e7b1675dSTing-Kang Chang KeyMaterialType: km.KeyMaterialType(), 100*e7b1675dSTing-Kang Chang }, nil 101*e7b1675dSTing-Kang Chang} 102*e7b1675dSTing-Kang Chang 103*e7b1675dSTing-Kang Chang// DoesSupport checks whether this KeyManager supports the given key type. 104*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) DoesSupport(typeURL string) bool { 105*e7b1675dSTing-Kang Chang return typeURL == hmacTypeURL 106*e7b1675dSTing-Kang Chang} 107*e7b1675dSTing-Kang Chang 108*e7b1675dSTing-Kang Chang// TypeURL returns the type URL of keys managed by this KeyManager. 109*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) TypeURL() string { 110*e7b1675dSTing-Kang Chang return hmacTypeURL 111*e7b1675dSTing-Kang Chang} 112*e7b1675dSTing-Kang Chang 113*e7b1675dSTing-Kang Chang// KeyMaterialType returns the key material type of this key manager. 114*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) KeyMaterialType() tinkpb.KeyData_KeyMaterialType { 115*e7b1675dSTing-Kang Chang return tinkpb.KeyData_SYMMETRIC 116*e7b1675dSTing-Kang Chang} 117*e7b1675dSTing-Kang Chang 118*e7b1675dSTing-Kang Chang// DeriveKey derives a new key from serializedKeyFormat and pseudorandomness. 119*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) DeriveKey(serializedKeyFormat []byte, pseudorandomness io.Reader) (proto.Message, error) { 120*e7b1675dSTing-Kang Chang if len(serializedKeyFormat) == 0 { 121*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKeyFormat 122*e7b1675dSTing-Kang Chang } 123*e7b1675dSTing-Kang Chang keyFormat := new(hmacpb.HmacKeyFormat) 124*e7b1675dSTing-Kang Chang if err := proto.Unmarshal(serializedKeyFormat, keyFormat); err != nil { 125*e7b1675dSTing-Kang Chang return nil, errInvalidHMACKeyFormat 126*e7b1675dSTing-Kang Chang } 127*e7b1675dSTing-Kang Chang if err := km.validateKeyFormat(keyFormat); err != nil { 128*e7b1675dSTing-Kang Chang return nil, fmt.Errorf("hmac_key_manager: invalid key format: %v", err) 129*e7b1675dSTing-Kang Chang } 130*e7b1675dSTing-Kang Chang if err := keyset.ValidateKeyVersion(keyFormat.GetVersion(), hmacKeyVersion); err != nil { 131*e7b1675dSTing-Kang Chang return nil, fmt.Errorf("hmac_key_manager: invalid key version: %s", err) 132*e7b1675dSTing-Kang Chang } 133*e7b1675dSTing-Kang Chang 134*e7b1675dSTing-Kang Chang keyValue := make([]byte, keyFormat.GetKeySize()) 135*e7b1675dSTing-Kang Chang if _, err := io.ReadFull(pseudorandomness, keyValue); err != nil { 136*e7b1675dSTing-Kang Chang return nil, fmt.Errorf("hmac_key_manager: not enough pseudorandomness given") 137*e7b1675dSTing-Kang Chang } 138*e7b1675dSTing-Kang Chang return &hmacpb.HmacKey{ 139*e7b1675dSTing-Kang Chang Version: hmacKeyVersion, 140*e7b1675dSTing-Kang Chang Params: keyFormat.Params, 141*e7b1675dSTing-Kang Chang KeyValue: keyValue, 142*e7b1675dSTing-Kang Chang }, nil 143*e7b1675dSTing-Kang Chang} 144*e7b1675dSTing-Kang Chang 145*e7b1675dSTing-Kang Chang// validateKey validates the given HMACKey. It only validates the version of the 146*e7b1675dSTing-Kang Chang// key because other parameters will be validated in primitive construction. 147*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) validateKey(key *hmacpb.HmacKey) error { 148*e7b1675dSTing-Kang Chang err := keyset.ValidateKeyVersion(key.Version, hmacKeyVersion) 149*e7b1675dSTing-Kang Chang if err != nil { 150*e7b1675dSTing-Kang Chang return fmt.Errorf("hmac_key_manager: invalid version: %s", err) 151*e7b1675dSTing-Kang Chang } 152*e7b1675dSTing-Kang Chang keySize := uint32(len(key.KeyValue)) 153*e7b1675dSTing-Kang Chang hash := commonpb.HashType_name[int32(key.Params.Hash)] 154*e7b1675dSTing-Kang Chang return subtle.ValidateHMACParams(hash, keySize, key.Params.TagSize) 155*e7b1675dSTing-Kang Chang} 156*e7b1675dSTing-Kang Chang 157*e7b1675dSTing-Kang Chang// validateKeyFormat validates the given HMACKeyFormat 158*e7b1675dSTing-Kang Changfunc (km *hmacKeyManager) validateKeyFormat(format *hmacpb.HmacKeyFormat) error { 159*e7b1675dSTing-Kang Chang if format.Params == nil { 160*e7b1675dSTing-Kang Chang return fmt.Errorf("null HMAC params") 161*e7b1675dSTing-Kang Chang } 162*e7b1675dSTing-Kang Chang hash := commonpb.HashType_name[int32(format.Params.Hash)] 163*e7b1675dSTing-Kang Chang return subtle.ValidateHMACParams(hash, format.KeySize, format.Params.TagSize) 164*e7b1675dSTing-Kang Chang} 165