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package structs
import (
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"encoding/json"
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"fmt"
"github.com/hashicorp/consul/acl"
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"github.com/hashicorp/consul/types"
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)
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type MeshConfigEntry struct {
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// TransparentProxy contains cluster-wide options pertaining to TPROXY mode
// when enabled.
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TransparentProxy TransparentProxyMeshConfig ` alias:"transparent_proxy" `
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TLS * MeshTLSConfig ` json:",omitempty" `
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HTTP * MeshHTTPConfig ` json:",omitempty" `
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Peering * PeeringMeshConfig ` json:",omitempty" `
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Meta map [ string ] string ` json:",omitempty" `
acl . EnterpriseMeta ` hcl:",squash" mapstructure:",squash" `
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RaftIndex
}
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// TransparentProxyMeshConfig contains cluster-wide options pertaining to
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// TPROXY mode when enabled.
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type TransparentProxyMeshConfig struct {
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// MeshDestinationsOnly can be used to disable the pass-through that
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// allows traffic to destinations outside of the mesh.
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MeshDestinationsOnly bool ` alias:"mesh_destinations_only" `
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}
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type MeshTLSConfig struct {
Incoming * MeshDirectionalTLSConfig ` json:",omitempty" `
Outgoing * MeshDirectionalTLSConfig ` json:",omitempty" `
}
type MeshDirectionalTLSConfig struct {
TLSMinVersion types . TLSVersion ` json:",omitempty" alias:"tls_min_version" `
TLSMaxVersion types . TLSVersion ` json:",omitempty" alias:"tls_max_version" `
// Define a subset of cipher suites to restrict
// Only applicable to connections negotiated via TLS 1.2 or earlier
CipherSuites [ ] types . TLSCipherSuite ` json:",omitempty" alias:"cipher_suites" `
}
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type MeshHTTPConfig struct {
SanitizeXForwardedClientCert bool ` alias:"sanitize_x_forwarded_client_cert" `
}
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// PeeringMeshConfig contains cluster-wide options pertaining to peering.
type PeeringMeshConfig struct {
// PeerThroughMeshGateways determines whether peering traffic between
// control planes should flow through mesh gateways. If enabled,
// Consul servers will advertise mesh gateway addresses as their own.
// Additionally, mesh gateways will configure themselves to expose
// the local servers using a peering-specific SNI.
PeerThroughMeshGateways bool ` alias:"peer_through_mesh_gateways" `
}
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func ( e * MeshConfigEntry ) GetKind ( ) string {
return MeshConfig
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}
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func ( e * MeshConfigEntry ) GetName ( ) string {
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if e == nil {
return ""
}
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return MeshConfigMesh
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}
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func ( e * MeshConfigEntry ) GetMeta ( ) map [ string ] string {
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if e == nil {
return nil
}
return e . Meta
}
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func ( e * MeshConfigEntry ) Normalize ( ) error {
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if e == nil {
return fmt . Errorf ( "config entry is nil" )
}
e . EnterpriseMeta . Normalize ( )
return nil
}
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func ( e * MeshConfigEntry ) Validate ( ) error {
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if e == nil {
return fmt . Errorf ( "config entry is nil" )
}
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if err := validateConfigEntryMeta ( e . Meta ) ; err != nil {
return err
}
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if e . TLS != nil {
if e . TLS . Incoming != nil {
if err := validateMeshDirectionalTLSConfig ( e . TLS . Incoming ) ; err != nil {
return fmt . Errorf ( "error in incoming TLS configuration: %v" , err )
}
}
if e . TLS . Outgoing != nil {
if err := validateMeshDirectionalTLSConfig ( e . TLS . Outgoing ) ; err != nil {
return fmt . Errorf ( "error in outgoing TLS configuration: %v" , err )
}
}
}
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return e . validateEnterpriseMeta ( )
}
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func ( e * MeshConfigEntry ) CanRead ( authz acl . Authorizer ) error {
return nil
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}
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func ( e * MeshConfigEntry ) CanWrite ( authz acl . Authorizer ) error {
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var authzContext acl . AuthorizerContext
e . FillAuthzContext ( & authzContext )
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return authz . ToAllowAuthorizer ( ) . MeshWriteAllowed ( & authzContext )
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}
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func ( e * MeshConfigEntry ) GetRaftIndex ( ) * RaftIndex {
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if e == nil {
return & RaftIndex { }
}
return & e . RaftIndex
}
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func ( e * MeshConfigEntry ) GetEnterpriseMeta ( ) * acl . EnterpriseMeta {
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if e == nil {
return nil
}
return & e . EnterpriseMeta
}
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// MarshalJSON adds the Kind field so that the JSON can be decoded back into the
// correct type.
// This method is implemented on the structs type (as apposed to the api type)
// because that is what the API currently uses to return a response.
func ( e * MeshConfigEntry ) MarshalJSON ( ) ( [ ] byte , error ) {
type Alias MeshConfigEntry
source := & struct {
Kind string
* Alias
} {
Kind : MeshConfig ,
Alias : ( * Alias ) ( e ) ,
}
return json . Marshal ( source )
}
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func validateMeshDirectionalTLSConfig ( cfg * MeshDirectionalTLSConfig ) error {
if cfg == nil {
return nil
}
return validateTLSConfig ( cfg . TLSMinVersion , cfg . TLSMaxVersion , cfg . CipherSuites )
}
func validateTLSConfig (
tlsMinVersion types . TLSVersion ,
tlsMaxVersion types . TLSVersion ,
cipherSuites [ ] types . TLSCipherSuite ,
) error {
if tlsMinVersion != types . TLSVersionUnspecified {
if err := types . ValidateTLSVersion ( tlsMinVersion ) ; err != nil {
return err
}
}
if tlsMaxVersion != types . TLSVersionUnspecified {
if err := types . ValidateTLSVersion ( tlsMaxVersion ) ; err != nil {
return err
}
if tlsMinVersion != types . TLSVersionUnspecified {
if err , maxLessThanMin := tlsMaxVersion . LessThan ( tlsMinVersion ) ; err == nil && maxLessThanMin {
return fmt . Errorf ( "configuring max version %s less than the configured min version %s is invalid" , tlsMaxVersion , tlsMinVersion )
}
}
}
if len ( cipherSuites ) != 0 {
if _ , ok := types . TLSVersionsWithConfigurableCipherSuites [ tlsMinVersion ] ; ! ok {
return fmt . Errorf ( "configuring CipherSuites is only applicable to connections negotiated with TLS 1.2 or earlier, TLSMinVersion is set to %s" , tlsMinVersion )
}
// NOTE: it would be nice to emit a warning but not return an error from
// here if TLSMaxVersion is unspecified, TLS_AUTO or TLSv1_3
if err := types . ValidateEnvoyCipherSuites ( cipherSuites ) ; err != nil {
return err
}
}
return nil
}