213 lines
5.6 KiB
Go
213 lines
5.6 KiB
Go
package pbpeering
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import (
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"time"
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"github.com/golang/protobuf/ptypes/timestamp"
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"github.com/hashicorp/consul/agent/structs"
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"github.com/hashicorp/consul/api"
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"github.com/hashicorp/consul/lib"
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)
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// RequestDatacenter implements structs.RPCInfo
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func (req *GenerateTokenRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *EstablishRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *PeeringReadRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *PeeringListRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *PeeringWriteRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *PeeringDeleteRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *TrustBundleReadRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// RequestDatacenter implements structs.RPCInfo
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func (req *TrustBundleListByServiceRequest) RequestDatacenter() string {
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// Cross-datacenter requests are not allowed for peering actions because
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// they rely on WAN-federation.
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return ""
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}
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// ShouldDial returns true when the peering was stored via the peering initiation endpoint,
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// AND the peering is not marked as terminated by our peer.
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// If we generated a token for this peer we did not store our server addresses under PeerServerAddresses.
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// These server addresses are for dialing, and only the peer initiating the peering will do the dialing.
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func (p *Peering) ShouldDial() bool {
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return len(p.PeerServerAddresses) > 0
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}
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func (x PeeringState) GoString() string {
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return x.String()
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}
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// ConcatenatedRootPEMs concatenates and returns all PEM-encoded public certificates
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// in a peer's trust bundle.
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func (b *PeeringTrustBundle) ConcatenatedRootPEMs() string {
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if b == nil {
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return ""
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}
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var rootPEMs string
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for _, pem := range b.RootPEMs {
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rootPEMs += lib.EnsureTrailingNewline(pem)
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}
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return rootPEMs
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}
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// enumcover:PeeringState
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func PeeringStateToAPI(s PeeringState) api.PeeringState {
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switch s {
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case PeeringState_PENDING:
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return api.PeeringStatePending
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case PeeringState_ESTABLISHING:
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return api.PeeringStateEstablishing
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case PeeringState_ACTIVE:
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return api.PeeringStateActive
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case PeeringState_FAILING:
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return api.PeeringStateFailing
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case PeeringState_DELETING:
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return api.PeeringStateDeleting
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case PeeringState_TERMINATED:
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return api.PeeringStateTerminated
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case PeeringState_UNDEFINED:
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fallthrough
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default:
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return api.PeeringStateUndefined
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}
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}
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// enumcover:api.PeeringState
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func PeeringStateFromAPI(t api.PeeringState) PeeringState {
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switch t {
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case api.PeeringStatePending:
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return PeeringState_PENDING
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case api.PeeringStateEstablishing:
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return PeeringState_ESTABLISHING
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case api.PeeringStateActive:
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return PeeringState_ACTIVE
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case api.PeeringStateFailing:
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return PeeringState_FAILING
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case api.PeeringStateDeleting:
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return PeeringState_DELETING
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case api.PeeringStateTerminated:
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return PeeringState_TERMINATED
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case api.PeeringStateUndefined:
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fallthrough
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default:
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return PeeringState_UNDEFINED
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}
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}
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func (p *Peering) IsActive() bool {
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if p != nil && p.State == PeeringState_TERMINATED {
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return false
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}
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if p == nil || p.DeletedAt == nil {
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return true
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}
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// The minimum protobuf timestamp is the Unix epoch rather than go's zero.
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return structs.IsZeroProtoTime(p.DeletedAt)
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}
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func (p *Peering) ToAPI() *api.Peering {
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var t api.Peering
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PeeringToAPI(p, &t)
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return &t
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}
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// TODO consider using mog for this
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func (resp *PeeringListResponse) ToAPI() []*api.Peering {
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list := make([]*api.Peering, len(resp.Peerings))
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for i, p := range resp.Peerings {
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list[i] = p.ToAPI()
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}
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return list
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}
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// TODO consider using mog for this
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func (resp *GenerateTokenResponse) ToAPI() *api.PeeringGenerateTokenResponse {
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var t api.PeeringGenerateTokenResponse
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GenerateTokenResponseToAPI(resp, &t)
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return &t
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}
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// TODO consider using mog for this
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func (resp *EstablishResponse) ToAPI() *api.PeeringEstablishResponse {
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var t api.PeeringEstablishResponse
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EstablishResponseToAPI(resp, &t)
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return &t
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}
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// convenience
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func NewGenerateTokenRequestFromAPI(req *api.PeeringGenerateTokenRequest) *GenerateTokenRequest {
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if req == nil {
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return nil
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}
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t := &GenerateTokenRequest{}
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GenerateTokenRequestFromAPI(req, t)
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return t
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}
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// convenience
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func NewEstablishRequestFromAPI(req *api.PeeringEstablishRequest) *EstablishRequest {
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if req == nil {
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return nil
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}
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t := &EstablishRequest{}
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EstablishRequestFromAPI(req, t)
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return t
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}
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func TimePtrFromProto(s *timestamp.Timestamp) *time.Time {
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if s == nil {
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return nil
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}
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t := structs.TimeFromProto(s)
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return &t
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}
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func TimePtrToProto(s *time.Time) *timestamp.Timestamp {
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if s == nil {
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return nil
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}
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return structs.TimeToProto(*s)
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}
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