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trillian.pb.go
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trillian.pb.go
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// Code generated by protoc-gen-go. DO NOT EDIT.
// source: trillian.proto
package trillian
import proto "github.com/golang/protobuf/proto"
import fmt "fmt"
import math "math"
import keyspb "github.com/google/trillian/crypto/keyspb"
import sigpb "github.com/google/trillian/crypto/sigpb"
import google_protobuf2 "github.com/golang/protobuf/ptypes/any"
import google_protobuf3 "github.com/golang/protobuf/ptypes/duration"
import google_protobuf1 "github.com/golang/protobuf/ptypes/timestamp"
// Reference imports to suppress errors if they are not otherwise used.
var _ = proto.Marshal
var _ = fmt.Errorf
var _ = math.Inf
// LogRootFormat specifies the fields that are covered by the
// SignedLogRoot signature, as well as their ordering and formats.
type LogRootFormat int32
const (
LogRootFormat_LOG_ROOT_FORMAT_UNKNOWN LogRootFormat = 0
LogRootFormat_LOG_ROOT_FORMAT_V1 LogRootFormat = 1
)
var LogRootFormat_name = map[int32]string{
0: "LOG_ROOT_FORMAT_UNKNOWN",
1: "LOG_ROOT_FORMAT_V1",
}
var LogRootFormat_value = map[string]int32{
"LOG_ROOT_FORMAT_UNKNOWN": 0,
"LOG_ROOT_FORMAT_V1": 1,
}
func (x LogRootFormat) String() string {
return proto.EnumName(LogRootFormat_name, int32(x))
}
func (LogRootFormat) EnumDescriptor() ([]byte, []int) { return fileDescriptor3, []int{0} }
// MapRootFormat specifies the fields that are covered by the
// SignedMapRoot signature, as well as their ordering and formats.
type MapRootFormat int32
const (
MapRootFormat_MAP_ROOT_FORMAT_UNKNOWN MapRootFormat = 0
MapRootFormat_MAP_ROOT_FORMAT_V1 MapRootFormat = 1
)
var MapRootFormat_name = map[int32]string{
0: "MAP_ROOT_FORMAT_UNKNOWN",
1: "MAP_ROOT_FORMAT_V1",
}
var MapRootFormat_value = map[string]int32{
"MAP_ROOT_FORMAT_UNKNOWN": 0,
"MAP_ROOT_FORMAT_V1": 1,
}
func (x MapRootFormat) String() string {
return proto.EnumName(MapRootFormat_name, int32(x))
}
func (MapRootFormat) EnumDescriptor() ([]byte, []int) { return fileDescriptor3, []int{1} }
// Defines the way empty / node / leaf hashes are constructed incorporating
// preimage protection, which can be application specific.
type HashStrategy int32
const (
// Hash strategy cannot be determined. Included to enable detection of
// mismatched proto versions being used. Represents an invalid value.
HashStrategy_UNKNOWN_HASH_STRATEGY HashStrategy = 0
// Certificate Transparency strategy: leaf hash prefix = 0x00, node prefix =
// 0x01, empty hash is digest([]byte{}), as defined in the specification.
HashStrategy_RFC6962_SHA256 HashStrategy = 1
// Sparse Merkle Tree strategy: leaf hash prefix = 0x00, node prefix = 0x01,
// empty branch is recursively computed from empty leaf nodes.
// NOT secure in a multi tree environment. For testing only.
HashStrategy_TEST_MAP_HASHER HashStrategy = 2
// Append-only log strategy where leaf nodes are defined as the ObjectHash.
// All other properties are equal to RFC6962_SHA256.
HashStrategy_OBJECT_RFC6962_SHA256 HashStrategy = 3
// The CONIKS sparse tree hasher with SHA512_256 as the hash algorithm.
HashStrategy_CONIKS_SHA512_256 HashStrategy = 4
)
var HashStrategy_name = map[int32]string{
0: "UNKNOWN_HASH_STRATEGY",
1: "RFC6962_SHA256",
2: "TEST_MAP_HASHER",
3: "OBJECT_RFC6962_SHA256",
4: "CONIKS_SHA512_256",
}
var HashStrategy_value = map[string]int32{
"UNKNOWN_HASH_STRATEGY": 0,
"RFC6962_SHA256": 1,
"TEST_MAP_HASHER": 2,
"OBJECT_RFC6962_SHA256": 3,
"CONIKS_SHA512_256": 4,
}
func (x HashStrategy) String() string {
return proto.EnumName(HashStrategy_name, int32(x))
}
func (HashStrategy) EnumDescriptor() ([]byte, []int) { return fileDescriptor3, []int{2} }
// State of the tree.
type TreeState int32
const (
// Tree state cannot be determined. Included to enable detection of
// mismatched proto versions being used. Represents an invalid value.
TreeState_UNKNOWN_TREE_STATE TreeState = 0
// Active trees are able to respond to both read and write requests.
TreeState_ACTIVE TreeState = 1
// Frozen trees are only able to respond to read requests, writing to a frozen
// tree is forbidden. Trees should not be frozen when there are entries
// in the queue that have not yet been integrated. See the DRAINING
// state for this case.
TreeState_FROZEN TreeState = 2
// Deprecated: now tracked in Tree.deleted.
TreeState_DEPRECATED_SOFT_DELETED TreeState = 3
// Deprecated: now tracked in Tree.deleted.
TreeState_DEPRECATED_HARD_DELETED TreeState = 4
// A tree that is draining will continue to integrate queued entries.
// No new entries should be accepted.
TreeState_DRAINING TreeState = 5
)
var TreeState_name = map[int32]string{
0: "UNKNOWN_TREE_STATE",
1: "ACTIVE",
2: "FROZEN",
3: "DEPRECATED_SOFT_DELETED",
4: "DEPRECATED_HARD_DELETED",
5: "DRAINING",
}
var TreeState_value = map[string]int32{
"UNKNOWN_TREE_STATE": 0,
"ACTIVE": 1,
"FROZEN": 2,
"DEPRECATED_SOFT_DELETED": 3,
"DEPRECATED_HARD_DELETED": 4,
"DRAINING": 5,
}
func (x TreeState) String() string {
return proto.EnumName(TreeState_name, int32(x))
}
func (TreeState) EnumDescriptor() ([]byte, []int) { return fileDescriptor3, []int{3} }
// Type of the tree.
type TreeType int32
const (
// Tree type cannot be determined. Included to enable detection of mismatched
// proto versions being used. Represents an invalid value.
TreeType_UNKNOWN_TREE_TYPE TreeType = 0
// Tree represents a verifiable log.
TreeType_LOG TreeType = 1
// Tree represents a verifiable map.
TreeType_MAP TreeType = 2
// Tree represents a verifiable pre-ordered log, i.e., a log whose entries are
// placed according to sequence numbers assigned outside of Trillian.
TreeType_PREORDERED_LOG TreeType = 3
)
var TreeType_name = map[int32]string{
0: "UNKNOWN_TREE_TYPE",
1: "LOG",
2: "MAP",
3: "PREORDERED_LOG",
}
var TreeType_value = map[string]int32{
"UNKNOWN_TREE_TYPE": 0,
"LOG": 1,
"MAP": 2,
"PREORDERED_LOG": 3,
}
func (x TreeType) String() string {
return proto.EnumName(TreeType_name, int32(x))
}
func (TreeType) EnumDescriptor() ([]byte, []int) { return fileDescriptor3, []int{4} }
// Represents a tree, which may be either a verifiable log or map.
// Readonly attributes are assigned at tree creation, after which they may not
// be modified.
//
// Note: Many APIs within the rest of the code require these objects to
// be provided. For safety they should be obtained via Admin API calls and
// not created dynamically.
type Tree struct {
// ID of the tree.
// Readonly.
TreeId int64 `protobuf:"varint,1,opt,name=tree_id,json=treeId" json:"tree_id,omitempty"`
// State of the tree.
// Trees are ACTIVE after creation. At any point the tree may transition
// between ACTIVE, DRAINING and FROZEN states.
TreeState TreeState `protobuf:"varint,2,opt,name=tree_state,json=treeState,enum=trillian.TreeState" json:"tree_state,omitempty"`
// Type of the tree.
// Readonly after Tree creation. Exception: Can be switched from
// PREORDERED_LOG to LOG if the Tree is and remains in the FROZEN state.
TreeType TreeType `protobuf:"varint,3,opt,name=tree_type,json=treeType,enum=trillian.TreeType" json:"tree_type,omitempty"`
// Hash strategy to be used by the tree.
// Readonly.
HashStrategy HashStrategy `protobuf:"varint,4,opt,name=hash_strategy,json=hashStrategy,enum=trillian.HashStrategy" json:"hash_strategy,omitempty"`
// Hash algorithm to be used by the tree.
// Readonly.
HashAlgorithm sigpb.DigitallySigned_HashAlgorithm `protobuf:"varint,5,opt,name=hash_algorithm,json=hashAlgorithm,enum=sigpb.DigitallySigned_HashAlgorithm" json:"hash_algorithm,omitempty"`
// Signature algorithm to be used by the tree.
// Readonly.
SignatureAlgorithm sigpb.DigitallySigned_SignatureAlgorithm `protobuf:"varint,6,opt,name=signature_algorithm,json=signatureAlgorithm,enum=sigpb.DigitallySigned_SignatureAlgorithm" json:"signature_algorithm,omitempty"`
// Display name of the tree.
// Optional.
DisplayName string `protobuf:"bytes,8,opt,name=display_name,json=displayName" json:"display_name,omitempty"`
// Description of the tree,
// Optional.
Description string `protobuf:"bytes,9,opt,name=description" json:"description,omitempty"`
// Identifies the private key used for signing tree heads and entry
// timestamps.
// This can be any type of message to accommodate different key management
// systems, e.g. PEM files, HSMs, etc.
// Private keys are write-only: they're never returned by RPCs.
// The private_key message can be changed after a tree is created, but the
// underlying key must remain the same - this is to enable migrating a key
// from one provider to another.
PrivateKey *google_protobuf2.Any `protobuf:"bytes,12,opt,name=private_key,json=privateKey" json:"private_key,omitempty"`
// Storage-specific settings.
// Varies according to the storage implementation backing Trillian.
StorageSettings *google_protobuf2.Any `protobuf:"bytes,13,opt,name=storage_settings,json=storageSettings" json:"storage_settings,omitempty"`
// The public key used for verifying tree heads and entry timestamps.
// Readonly.
PublicKey *keyspb.PublicKey `protobuf:"bytes,14,opt,name=public_key,json=publicKey" json:"public_key,omitempty"`
// Interval after which a new signed root is produced even if there have been
// no submission. If zero, this behavior is disabled.
MaxRootDuration *google_protobuf3.Duration `protobuf:"bytes,15,opt,name=max_root_duration,json=maxRootDuration" json:"max_root_duration,omitempty"`
// Time of tree creation.
// Readonly.
CreateTime *google_protobuf1.Timestamp `protobuf:"bytes,16,opt,name=create_time,json=createTime" json:"create_time,omitempty"`
// Time of last tree update.
// Readonly (automatically assigned on updates).
UpdateTime *google_protobuf1.Timestamp `protobuf:"bytes,17,opt,name=update_time,json=updateTime" json:"update_time,omitempty"`
// If true, the tree has been deleted.
// Deleted trees may be undeleted during a certain time window, after which
// they're permanently deleted (and unrecoverable).
// Readonly.
Deleted bool `protobuf:"varint,19,opt,name=deleted" json:"deleted,omitempty"`
// Time of tree deletion, if any.
// Readonly.
DeleteTime *google_protobuf1.Timestamp `protobuf:"bytes,20,opt,name=delete_time,json=deleteTime" json:"delete_time,omitempty"`
}
func (m *Tree) Reset() { *m = Tree{} }
func (m *Tree) String() string { return proto.CompactTextString(m) }
func (*Tree) ProtoMessage() {}
func (*Tree) Descriptor() ([]byte, []int) { return fileDescriptor3, []int{0} }
func (m *Tree) GetTreeId() int64 {
if m != nil {
return m.TreeId
}
return 0
}
func (m *Tree) GetTreeState() TreeState {
if m != nil {
return m.TreeState
}
return TreeState_UNKNOWN_TREE_STATE
}
func (m *Tree) GetTreeType() TreeType {
if m != nil {
return m.TreeType
}
return TreeType_UNKNOWN_TREE_TYPE
}
func (m *Tree) GetHashStrategy() HashStrategy {
if m != nil {
return m.HashStrategy
}
return HashStrategy_UNKNOWN_HASH_STRATEGY
}
func (m *Tree) GetHashAlgorithm() sigpb.DigitallySigned_HashAlgorithm {
if m != nil {
return m.HashAlgorithm
}
return sigpb.DigitallySigned_NONE
}
func (m *Tree) GetSignatureAlgorithm() sigpb.DigitallySigned_SignatureAlgorithm {
if m != nil {
return m.SignatureAlgorithm
}
return sigpb.DigitallySigned_ANONYMOUS
}
func (m *Tree) GetDisplayName() string {
if m != nil {
return m.DisplayName
}
return ""
}
func (m *Tree) GetDescription() string {
if m != nil {
return m.Description
}
return ""
}
func (m *Tree) GetPrivateKey() *google_protobuf2.Any {
if m != nil {
return m.PrivateKey
}
return nil
}
func (m *Tree) GetStorageSettings() *google_protobuf2.Any {
if m != nil {
return m.StorageSettings
}
return nil
}
func (m *Tree) GetPublicKey() *keyspb.PublicKey {
if m != nil {
return m.PublicKey
}
return nil
}
func (m *Tree) GetMaxRootDuration() *google_protobuf3.Duration {
if m != nil {
return m.MaxRootDuration
}
return nil
}
func (m *Tree) GetCreateTime() *google_protobuf1.Timestamp {
if m != nil {
return m.CreateTime
}
return nil
}
func (m *Tree) GetUpdateTime() *google_protobuf1.Timestamp {
if m != nil {
return m.UpdateTime
}
return nil
}
func (m *Tree) GetDeleted() bool {
if m != nil {
return m.Deleted
}
return false
}
func (m *Tree) GetDeleteTime() *google_protobuf1.Timestamp {
if m != nil {
return m.DeleteTime
}
return nil
}
type SignedEntryTimestamp struct {
TimestampNanos int64 `protobuf:"varint,1,opt,name=timestamp_nanos,json=timestampNanos" json:"timestamp_nanos,omitempty"`
LogId int64 `protobuf:"varint,2,opt,name=log_id,json=logId" json:"log_id,omitempty"`
Signature *sigpb.DigitallySigned `protobuf:"bytes,3,opt,name=signature" json:"signature,omitempty"`
}
func (m *SignedEntryTimestamp) Reset() { *m = SignedEntryTimestamp{} }
func (m *SignedEntryTimestamp) String() string { return proto.CompactTextString(m) }
func (*SignedEntryTimestamp) ProtoMessage() {}
func (*SignedEntryTimestamp) Descriptor() ([]byte, []int) { return fileDescriptor3, []int{1} }
func (m *SignedEntryTimestamp) GetTimestampNanos() int64 {
if m != nil {
return m.TimestampNanos
}
return 0
}
func (m *SignedEntryTimestamp) GetLogId() int64 {
if m != nil {
return m.LogId
}
return 0
}
func (m *SignedEntryTimestamp) GetSignature() *sigpb.DigitallySigned {
if m != nil {
return m.Signature
}
return nil
}
// SignedLogRoot represents a commitment by a Log to a particular tree.
type SignedLogRoot struct {
// Deprecated: TimestampNanos moved to LogRoot.
TimestampNanos int64 `protobuf:"varint,1,opt,name=timestamp_nanos,json=timestampNanos" json:"timestamp_nanos,omitempty"`
// Deprecated: RootHash moved to LogRoot.
RootHash []byte `protobuf:"bytes,2,opt,name=root_hash,json=rootHash,proto3" json:"root_hash,omitempty"`
// Deprecated: TreeSize moved to LogRoot.
TreeSize int64 `protobuf:"varint,3,opt,name=tree_size,json=treeSize" json:"tree_size,omitempty"`
// Deprecated: TreeRevision moved to LogRoot.
TreeRevision int64 `protobuf:"varint,6,opt,name=tree_revision,json=treeRevision" json:"tree_revision,omitempty"`
// key_hint is a hint to identify the public key for signature verification.
// key_hint is not authenticated and may be incorrect or missing, in which
// case all known public keys may be used to verify the signature.
// When directly communicating with a Trillian gRPC server, the key_hint will
// typically contain the LogID encoded as a big-endian 64-bit integer;
// however, in other contexts the key_hint is likely to have different
// contents (e.g. it could be a GUID, a URL + TreeID, or it could be
// derived from the public key itself).
KeyHint []byte `protobuf:"bytes,7,opt,name=key_hint,json=keyHint,proto3" json:"key_hint,omitempty"`
// log_root holds the TLS-serialization of the following structure (described
// in RFC5246 notation): Clients should validate log_root_signature with
// VerifySignedLogRoot before deserializing log_root.
// enum { v1(1), (65535)} Version;
// struct {
// uint64 tree_size;
// opaque root_hash<0..128>;
// uint64 timestamp_nanos;
// uint64 revision;
// opaque metadata<0..65535>;
// } LogRootV1;
// struct {
// Version version;
// select(version) {
// case v1: LogRootV1;
// }
// } LogRoot;
LogRoot []byte `protobuf:"bytes,8,opt,name=log_root,json=logRoot,proto3" json:"log_root,omitempty"`
// log_root_signature is the raw signature over log_root.
LogRootSignature []byte `protobuf:"bytes,9,opt,name=log_root_signature,json=logRootSignature,proto3" json:"log_root_signature,omitempty"`
}
func (m *SignedLogRoot) Reset() { *m = SignedLogRoot{} }
func (m *SignedLogRoot) String() string { return proto.CompactTextString(m) }
func (*SignedLogRoot) ProtoMessage() {}
func (*SignedLogRoot) Descriptor() ([]byte, []int) { return fileDescriptor3, []int{2} }
func (m *SignedLogRoot) GetTimestampNanos() int64 {
if m != nil {
return m.TimestampNanos
}
return 0
}
func (m *SignedLogRoot) GetRootHash() []byte {
if m != nil {
return m.RootHash
}
return nil
}
func (m *SignedLogRoot) GetTreeSize() int64 {
if m != nil {
return m.TreeSize
}
return 0
}
func (m *SignedLogRoot) GetTreeRevision() int64 {
if m != nil {
return m.TreeRevision
}
return 0
}
func (m *SignedLogRoot) GetKeyHint() []byte {
if m != nil {
return m.KeyHint
}
return nil
}
func (m *SignedLogRoot) GetLogRoot() []byte {
if m != nil {
return m.LogRoot
}
return nil
}
func (m *SignedLogRoot) GetLogRootSignature() []byte {
if m != nil {
return m.LogRootSignature
}
return nil
}
// SignedMapRoot represents a commitment by a Map to a particular tree.
type SignedMapRoot struct {
// map_root holds the TLS-serialization of the following structure (described
// in RFC5246 notation): Clients should validate signature with
// VerifySignedMapRoot before deserializing map_root.
// enum { v1(1), (65535)} Version;
// struct {
// opaque root_hash<0..128>;
// uint64 timestamp_nanos;
// uint64 revision;
// opaque metadata<0..65535>;
// } MapRootV1;
// struct {
// Version version;
// select(version) {
// case v1: MapRootV1;
// }
// } MapRoot;
MapRoot []byte `protobuf:"bytes,9,opt,name=map_root,json=mapRoot,proto3" json:"map_root,omitempty"`
// Signature is the raw signature over MapRoot.
Signature []byte `protobuf:"bytes,4,opt,name=signature,proto3" json:"signature,omitempty"`
}
func (m *SignedMapRoot) Reset() { *m = SignedMapRoot{} }
func (m *SignedMapRoot) String() string { return proto.CompactTextString(m) }
func (*SignedMapRoot) ProtoMessage() {}
func (*SignedMapRoot) Descriptor() ([]byte, []int) { return fileDescriptor3, []int{3} }
func (m *SignedMapRoot) GetMapRoot() []byte {
if m != nil {
return m.MapRoot
}
return nil
}
func (m *SignedMapRoot) GetSignature() []byte {
if m != nil {
return m.Signature
}
return nil
}
func init() {
proto.RegisterType((*Tree)(nil), "trillian.Tree")
proto.RegisterType((*SignedEntryTimestamp)(nil), "trillian.SignedEntryTimestamp")
proto.RegisterType((*SignedLogRoot)(nil), "trillian.SignedLogRoot")
proto.RegisterType((*SignedMapRoot)(nil), "trillian.SignedMapRoot")
proto.RegisterEnum("trillian.LogRootFormat", LogRootFormat_name, LogRootFormat_value)
proto.RegisterEnum("trillian.MapRootFormat", MapRootFormat_name, MapRootFormat_value)
proto.RegisterEnum("trillian.HashStrategy", HashStrategy_name, HashStrategy_value)
proto.RegisterEnum("trillian.TreeState", TreeState_name, TreeState_value)
proto.RegisterEnum("trillian.TreeType", TreeType_name, TreeType_value)
}
func init() { proto.RegisterFile("trillian.proto", fileDescriptor3) }
var fileDescriptor3 = []byte{
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