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primitive.go
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// Package primitive contains definitions of the primitive types used
// in ag.
package primitive
import (
"encoding/json"
"errors"
"strings"
"time"
"github.com/manifoldco/go-base64"
"github.com/manifoldco/torus-cli/identity"
"github.com/manifoldco/torus-cli/pathexp"
)
// v1Schema embeds in other structs to indicate their schema version is 1.
type v1Schema struct{}
// Version returns the schema version of structs that embed this type.
func (v1Schema) Version() int {
return 1
}
// Embedding the immutable or mutable struct in a struct denotes if it is
// immutable and should be signed, or a mutable type.
type immutable struct{}
func (immutable) Immutable() {}
type mutable struct{}
func (mutable) Mutable() {}
// v2Schema embeds in other structs to indicate their schema version is 2.
type v2Schema struct{}
// Version returns the schema version of structs that embed this type.
func (v2Schema) Version() int {
return 2
}
// LoginPublicKey represents the public component of a asymmetric key used to
// authenticate against the registry
type LoginPublicKey struct {
Alg string `json:"alg"`
Salt *base64.Value `json:"salt"`
Value *base64.Value `json:"value"`
}
// BaseUser represents the common properties shared between all user schema
// versions.
type BaseUser struct {
mutable
Username string `json:"username"`
Name string `json:"name"`
Email string `json:"email"`
State string `json:"state"`
Password *UserPassword `json:"password"`
Master *MasterKey `json:"master"`
}
// User is the body of a user object
type User struct { // type: 0x01
v2Schema
BaseUser
PublicKey *LoginPublicKey `json:"public_key"`
}
// UserV1 is the body of a user object
type UserV1 struct { // type: 0x01
v1Schema
BaseUser
}
// MasterKey is the body.master object for a user and machine token
type MasterKey struct {
Value *base64.Value `json:"value"`
Alg string `json:"alg"`
}
// UserPassword is the body.password object for a user
type UserPassword struct {
Salt string `json:"salt"`
Value *base64.Value `json:"value"`
Alg string `json:"alg"`
}
// TokenType represents the different types of tokens
type TokenType string
// Types of tokens which are created throughout the authentication flow
const (
LoginToken TokenType = "login"
AuthToken TokenType = "auth"
)
// AuthMechanism represents the different authentication mechanisms used for
// granting Tokens of type AuthToken
type AuthMechanism string
// Types of mechanisms used to authenticate a user or machine
const (
HMACAuth AuthMechanism = "hmac"
EdDSAAuth AuthMechanism = "eddsa"
UpgradeEdDSAAuth AuthMechanism = "upgrade-eddsa"
)
// Token is the body of a token object
type Token struct { // type: 0x10
v2Schema
mutable
TokenType TokenType `json:"type"`
Token string `json:"token"`
OwnerID *identity.ID `json:"owner_id"`
Mechanism AuthMechanism `json:"mechanism"`
}
// Signature is an immutable object, but not technically a payload.
// If PublicKeyID is nil, the signature is self-signed.
type Signature struct {
Algorithm string `json:"alg"`
PublicKeyID *identity.ID `json:"public_key_id"`
Value *base64.Value `json:"value"`
}
// PrivateKeyValue holds the encrypted value of the PrivateKey.
type PrivateKeyValue struct {
Algorithm string `json:"alg"`
Value *base64.Value `json:"value"`
}
// PrivateKey is the private portion of an asymetric key.
type PrivateKey struct { // type: 0x07
v1Schema
immutable
Key PrivateKeyValue `json:"key"`
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
PNonce *base64.Value `json:"pnonce"`
PublicKeyID *identity.ID `json:"public_key_id"`
}
// PublicKeyValue is the actual value of a PublicKey.
type PublicKeyValue struct {
Value *base64.Value `json:"value"`
}
// KeyType the enumeration of all types of keys.
type KeyType string
// Types of keys supported by the system.
const (
EncryptionKeyType KeyType = "encryption"
SigningKeyType KeyType = "signing"
)
// PublicKey is the public portion of an asymetric key.
type PublicKey struct { // type: 0x06
v1Schema
immutable
Algorithm string `json:"alg"`
Created time.Time `json:"created_at"`
Expires time.Time `json:"expires_at"`
Key PublicKeyValue `json:"key"`
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
KeyType KeyType `json:"type"`
}
// ClaimType is the enumeration of all claims that can be made against public
// keys.
type ClaimType string
// Types of claims that can be made against public keys.
const (
SignatureClaimType ClaimType = "signature"
RevocationClaimType ClaimType = "revocation"
)
// Claim is a signature or revocation claim against a public key.
type Claim struct { // type: 0x08
v1Schema
immutable
Created time.Time `json:"created_at"`
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
Previous *identity.ID `json:"previous"`
PublicKeyID *identity.ID `json:"public_key_id"`
ClaimType ClaimType `json:"type"`
}
// NewClaim returns a new Claim, with the created time set to now
func NewClaim(orgID, ownerID, previous, pubKeyID *identity.ID, claimType ClaimType) *Claim {
return &Claim{
OrgID: orgID,
OwnerID: ownerID,
Previous: previous,
PublicKeyID: pubKeyID,
ClaimType: claimType,
Created: time.Now().UTC(),
}
}
// Credential is a secret value shared between a group of services based
// on users identity, operating environment, project, and organization
type Credential struct { // type: 0x0b
v2Schema
immutable
BaseCredential
State *string `json:"state"`
}
// CredentialV1 is a secret value shared between a group of services based
// on users identity, operating environment, project, and organization
type CredentialV1 struct { // type: 0x0b
v1Schema
immutable
BaseCredential
}
// BaseCredential is a secret value shared between a group of services based
// on users identity, operating environment, project, and organization
type BaseCredential struct {
Credential *CredentialValue `json:"credential"`
KeyringID *identity.ID `json:"keyring_id"`
Name string `json:"name"`
Nonce *base64.Value `json:"nonce"`
OrgID *identity.ID `json:"org_id"`
PathExp *pathexp.PathExp `json:"pathexp"`
Previous *identity.ID `json:"previous"`
ProjectID *identity.ID `json:"project_id"`
CredentialVersion int `json:"version"`
}
// CredentialValue is the secretbox encrypted value of the containing
// Credential.
type CredentialValue struct {
Algorithm string `json:"alg"`
Nonce *base64.Value `json:"nonce"`
Value *base64.Value `json:"value"`
}
// BaseKeyring is the shared structure between keyring schema versions.
type BaseKeyring struct {
immutable
Created time.Time `json:"created_at"`
OrgID *identity.ID `json:"org_id"`
PathExp *pathexp.PathExp `json:"pathexp"`
Previous *identity.ID `json:"previous"`
ProjectID *identity.ID `json:"project_id"`
KeyringVersion int `json:"version"`
}
// KeyringV1 is the old keyring format, without claims or mekshares.
type KeyringV1 struct { // type: 0x09
v1Schema
BaseKeyring
}
// Keyring is a mechanism for sharing a shared secret between many different
// users and machines at a position in the credential path.
//
// Credentials belong to Keyrings
type Keyring struct { // type: 0x09
v2Schema
BaseKeyring
}
// NewKeyring returns a new v2 Keyring, with the created time set to now
func NewKeyring(orgID, projectID *identity.ID, pathExp *pathexp.PathExp) *Keyring {
return &Keyring{
BaseKeyring: BaseKeyring{
Created: time.Now().UTC(),
OrgID: orgID,
PathExp: pathExp,
ProjectID: projectID,
// This is the first instance of the keyring, so version is 1,
// and there is no previous instance.
Previous: nil,
KeyringVersion: 1,
},
}
}
// KeyringMemberV1 is a record of sharing a master secret key with a user or
// machine.
//
// KeyringMember belongs to a Keyring
type KeyringMemberV1 struct { // type: 0x0a
v1Schema
immutable
Created time.Time `json:"created_at"`
EncryptingKeyID *identity.ID `json:"encrypting_key_id"`
Key *KeyringMemberKey `json:"key"`
KeyringID *identity.ID `json:"keyring_id"`
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
ProjectID *identity.ID `json:"project_id"`
PublicKeyID *identity.ID `json:"public_key_id"`
}
// KeyringMember is a record of sharing a master secret key with a user or
// machine.
//
// This is the v2 schema version, which has a detached mekshare so it can be
// revoked.
//
// KeyringMember belongs to a Keyring
type KeyringMember struct { // type: 0x0a
v2Schema
immutable
Created time.Time `json:"created_at"`
EncryptingKeyID *identity.ID `json:"encrypting_key_id"`
KeyringID *identity.ID `json:"keyring_id"`
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
PublicKeyID *identity.ID `json:"public_key_id"`
}
// KeyringMemberKey is the keyring master encryption key, encrypted for the
// owner of a KeyringMember/MEKShare
type KeyringMemberKey struct {
Algorithm string `json:"alg"`
Nonce *base64.Value `json:"nonce"`
Value *base64.Value `json:"value"`
}
// MEKShare is a V2 KeyringMember's share of the keyring master encryption key.
type MEKShare struct { // type: 0x16
v1Schema
immutable
Created time.Time `json:"created_at"`
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
KeyringID *identity.ID `json:"keyring_id"`
KeyringMemberID *identity.ID `json:"keyring_member_id"`
Key *KeyringMemberKey `json:"key"`
}
// KeyringMemberClaim is a claim for a keyring member. Only revocation is
// supported as a claim type.
type KeyringMemberClaim struct { // type: 0x15
v1Schema
immutable
OrgID *identity.ID `json:"org_id"`
KeyringID *identity.ID `json:"keyring_id"`
KeyringMemberID *identity.ID `json:"keyring_member_id"`
OwnerID *identity.ID `json:"owner_id"`
Previous *identity.ID `json:"previous"`
ClaimType ClaimType `json:"type"`
Reason *KeyringMemberClaimReason `json:"reason"`
Created time.Time `json:"created_at"`
}
// KeyringMemberClaimReason holds the type and optional details of the reason
// for a KeyringMember's revocation.
type KeyringMemberClaimReason struct {
Type KeyringMemberRevocationType `json:"type"`
Params KeyringMemberRevocationParams `json:"params"`
}
// UnmarshalJSON implements the json.Unmarshaler interface.
func (k *KeyringMemberClaimReason) UnmarshalJSON(b []byte) error {
raw := struct {
Type KeyringMemberRevocationType `json:"type"`
Params json.RawMessage `json:"params"`
}{}
err := json.Unmarshal(b, &raw)
if err != nil {
return err
}
k.Type = raw.Type
switch k.Type {
case OrgRemovalRevocationType: // no params
return nil
case KeyRevocationRevocationType:
k.Params = &KeyRevocationRevocationParams{}
case MachineDestroyRevocationType:
k.Params = &MachineDestroyRevocationParams{}
case MachineTokenDestroyRevocationType:
k.Params = &MachineTokenDestroyRevocationParams{}
}
return json.Unmarshal(raw.Params, k.Params)
}
// KeyringMemberRevocationType is the enumerated byte type of keyring membership
// revocation reasons.
type KeyringMemberRevocationType byte
// The keyring membership revocation reasons.
const (
OrgRemovalRevocationType KeyringMemberRevocationType = iota
KeyRevocationRevocationType
MachineDestroyRevocationType
MachineTokenDestroyRevocationType
)
func (k KeyringMemberRevocationType) String() string {
switch k {
case OrgRemovalRevocationType:
return "org_removal"
case KeyRevocationRevocationType:
return "key_revocation"
case MachineDestroyRevocationType:
return "machine_destroy"
case MachineTokenDestroyRevocationType:
return "machine_token_destroy"
default:
panic("invalid revocation type value")
}
}
// MarshalText implements the encoding.TextMarshaler interface, used for JSON
// marshaling.
func (k KeyringMemberRevocationType) MarshalText() ([]byte, error) {
return []byte(k.String()), nil
}
var errBadRevocationType = errors.New("unknown revocation type")
// UnmarshalText implements the encoding.TextUnmarshaler interface, used for
// JSON unmarshaling.
func (k *KeyringMemberRevocationType) UnmarshalText(b []byte) error {
switch string(b) {
case "org_removal":
*k = OrgRemovalRevocationType
case "key_revocation":
*k = KeyRevocationRevocationType
case "machine_destroy":
*k = MachineDestroyRevocationType
case "machine_token_destroy":
*k = MachineTokenDestroyRevocationType
default:
return errBadRevocationType
}
return nil
}
// KeyringMemberRevocationParams is the interface for holding additional details
// about a membership revocation, based on the reason type.
type KeyringMemberRevocationParams interface{}
// KeyRevocationRevocationParams holds details for a key_revocation revocation
// type.
type KeyRevocationRevocationParams struct {
PublicKeyID *identity.ID `json:"public_key_id"`
}
// MachineDestroyRevocationParams holds details for a machine_destroy revocation
// type.
type MachineDestroyRevocationParams struct {
MachineID *identity.ID `json:"machine_id"`
}
// MachineTokenDestroyRevocationParams holds details for a machine_token_destroy
// revocation type.
type MachineTokenDestroyRevocationParams struct {
MachineTokenID *identity.ID `json:"machine_token_id"`
}
// Org is a grouping of users that collaborate with each other
type Org struct { // type: 0x0d
v1Schema
mutable
Name string `json:"name"`
}
// Org Invitations exist in four states: pending, associated,
// accepted, and approved.
const (
OrgInvitePendingState = "pending"
OrgInviteAssociatedState = "associated"
OrgInviteAcceptedState = "accepted"
OrgInviteApprovedState = "approved"
)
// OrgInvite is an invitation for an individual to join an organization
type OrgInvite struct { // type: 0x13
v1Schema
mutable
OrgID *identity.ID `json:"org_id"`
Email string `json:"email"`
InviterID *identity.ID `json:"inviter_id"`
InviteeID *identity.ID `json:"invitee_id"`
ApproverID *identity.ID `json:"approver_id"`
State string `json:"state"`
Code *struct {
Alg string `json:"alg"`
Salt *base64.Value `json:"salt"`
Value *base64.Value `json:"value"`
} `json:"code"`
PendingTeams []identity.ID `json:"pending_teams"`
Created *time.Time `json:"created_at"`
Accepted *time.Time `json:"accepted_at"`
Approved *time.Time `json:"approved_at"`
}
// Machines can be in one of two states: active or destroyed
const (
MachineActiveState = "active"
MachineDestroyedState = "destroyed"
)
// Machine is an entity that represents a machine object
type Machine struct { // type: 0x17
v1Schema
mutable
Name string `json:"name"`
OrgID *identity.ID `json:"org_id"`
CreatedBy *identity.ID `json:"created_by"`
Created time.Time `json:"created_at"`
DestroyedBy *identity.ID `json:"destroyed_by"`
Destroyed *time.Time `json:"destroyed_at"`
State string `json:"state"`
}
// MachineTokens can be in one of two states: active or destroyed
const (
MachineTokenActiveState = "active"
MachineTokenDestroyedState = "destroyed"
)
// MachineToken is an portion of the MachineSegment object
type MachineToken struct { // type: 0x18
v1Schema
mutable
OrgID *identity.ID `json:"org_id"`
MachineID *identity.ID `json:"machine_id"`
PublicKey *LoginPublicKey `json:"public_key"`
Master *MasterKey `json:"master"`
CreatedBy *identity.ID `json:"created_by"`
Created time.Time `json:"created_at"`
DestroyedBy *identity.ID `json:"destroyed_by"`
Destroyed *time.Time `json:"destroyed_at"`
State string `json:"state"`
}
// Project is an entity that represents a group of services
type Project struct { // type: 0x04
v1Schema
mutable
Name string `json:"name"`
OrgID *identity.ID `json:"org_id"`
}
// Policy is an entity that represents a group of statements for acl
type Policy struct { // type: 0x11
v1Schema
mutable
PolicyType string `json:"type"`
Previous *identity.ID `json:"previous"`
OrgID *identity.ID `json:"org_id"`
Policy struct {
Name string `json:"name"`
Description string `json:"description"`
Statements []PolicyStatement `json:"statements"`
} `json:"policy"`
}
// PolicyStatement is an acl statement on a policy object
type PolicyStatement struct {
Effect PolicyEffect `json:"effect"`
Action PolicyAction `json:"action"`
Resource string `json:"resource"`
}
// PolicyEffect is the effect type of the statement (allow or deny)
type PolicyEffect bool
// These are the two policy effect types
const (
PolicyEffectAllow = true
PolicyEffectDeny = false
)
// MarshalText implements the encoding.TextMarshaler interface, used for JSON
// marshaling.
func (pe *PolicyEffect) MarshalText() ([]byte, error) {
if *pe {
return []byte("allow"), nil
}
return []byte("deny"), nil
}
// UnmarshalText implements the encoding.TextUnmarshaler interface, used for
// JSON unmarshaling.
func (pe *PolicyEffect) UnmarshalText(b []byte) error {
*pe = string(b) == "allow" || string(b) == "sudo"
return nil
}
// String returns a string representation of the PolicyEffect (allow or deny)
func (pe *PolicyEffect) String() string {
b, _ := pe.MarshalText()
return string(b)
}
// PolicyAction represents the user actions that are covered by a statement.
type PolicyAction byte
// These are all the possible PolicyActions
const (
PolicyActionCreate = 1 << iota
PolicyActionRead
PolicyActionUpdate
PolicyActionDelete
PolicyActionList
)
var policyActionStrings = []string{
"create",
"read",
"update",
"delete",
"list",
}
// MarshalJSON implements the json.Marshaler interface. A PolicyAction is
// encoded in JSON either the string representations of its actions in a list,
// or a single string when there is only one action.
func (pa *PolicyAction) MarshalJSON() ([]byte, error) {
out := []string{}
for i, v := range policyActionStrings {
if (1<<uint(i))&byte(*pa) > 0 {
out = append(out, v)
}
}
if len(out) == 1 {
return json.Marshal(out[0])
}
return json.Marshal(out)
}
// UnmarshalJSON implements the json.Unmarshaler interface.
func (pa *PolicyAction) UnmarshalJSON(b []byte) error {
raw := make([]string, 1)
var err error
if len(b) > 0 && b[0] == '"' {
err = json.Unmarshal(b, &raw[0])
} else {
err = json.Unmarshal(b, &raw)
}
if err != nil {
return err
}
for _, a := range raw {
for i, v := range policyActionStrings {
if a == v {
*pa |= 1 << uint(i)
continue
}
}
}
return nil
}
func (pa *PolicyAction) String() string {
out := []string{}
for i, v := range policyActionStrings {
if (1<<uint(i))&byte(*pa) > 0 {
out = append(out, v)
}
}
return strings.Join(out, ", ")
}
// ShortString displays a single character representation of each of the
// policy's actions.
func (pa *PolicyAction) ShortString() string {
out := []byte{}
for i, v := range policyActionStrings {
if (1<<uint(i))&byte(*pa) > 0 {
out = append(out, v[0])
} else {
out = append(out, '-')
}
}
return string(out)
}
// PolicyAttachment is an entity that represents the link between policies and teams
type PolicyAttachment struct { // type: 0x12
v1Schema
mutable
OwnerID *identity.ID `json:"owner_id"`
PolicyID *identity.ID `json:"policy_id"`
OrgID *identity.ID `json:"org_id"`
}
// Service is an entity that represents a group of processes
type Service struct { // type: 0x03
v1Schema
mutable
Name string `json:"name"`
OrgID *identity.ID `json:"org_id"`
ProjectID *identity.ID `json:"project_id"`
}
// Environment is an entity that represents a group of processes
type Environment struct { // type: 0x05
v1Schema
mutable
Name string `json:"name"`
OrgID *identity.ID `json:"org_id"`
ProjectID *identity.ID `json:"project_id"`
}
// TeamType is the type that holds the enumeration of possible team types.
type TeamType string
// There are three types of teams: system, machine and user. System teams are
// managed by the Torus registry while Machine teams contain only machines.
const (
AnyTeamType TeamType = ""
SystemTeamType TeamType = "system"
UserTeamType TeamType = "user"
MachineTeamType TeamType = "machine"
)
// Teams are used to represent a group of identities and their associated
// access control policies
const (
AdminTeamName = "admin"
OwnerTeamName = "owner"
MemberTeamName = "member"
MachineTeamName = "machine"
)
// Team IDs for certain system teams can be derived based on their OrgID.
const (
DerivableMachineTeamSymbol = 0x04
)
// Team is an entity that represents a group of users
type Team struct { // type: 0x0f
v1Schema
mutable
Name string `json:"name"`
OrgID *identity.ID `json:"org_id"`
TeamType TeamType `json:"type"`
}
// Membership is an entity that represents whether a user or
// machine is a part of a team in an organization.
type Membership struct { // type: 0x0e
v1Schema
mutable
OrgID *identity.ID `json:"org_id"`
OwnerID *identity.ID `json:"owner_id"`
TeamID *identity.ID `json:"team_id"`
}