mirror of https://github.com/status-im/consul.git
512 lines
16 KiB
Go
512 lines
16 KiB
Go
package structs
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import (
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"encoding/json"
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"fmt"
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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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const (
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defaultExposeProtocol = "http"
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)
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var allowedExposeProtocols = map[string]bool{"http": true, "http2": true}
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type MeshGatewayMode string
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const (
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// MeshGatewayModeDefault represents no specific mode and should
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// be used to indicate that a different layer of the configuration
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// chain should take precedence
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MeshGatewayModeDefault MeshGatewayMode = ""
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// MeshGatewayModeNone represents that the Upstream Connect connections
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// should be direct and not flow through a mesh gateway.
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MeshGatewayModeNone MeshGatewayMode = "none"
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// MeshGatewayModeLocal represents that the Upstrea Connect connections
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// should be made to a mesh gateway in the local datacenter. This is
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MeshGatewayModeLocal MeshGatewayMode = "local"
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// MeshGatewayModeRemote represents that the Upstream Connect connections
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// should be made to a mesh gateway in a remote datacenter.
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MeshGatewayModeRemote MeshGatewayMode = "remote"
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)
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// MeshGatewayConfig controls how Mesh Gateways are configured and used
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// This is a struct to allow for future additions without having more free-hanging
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// configuration items all over the place
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type MeshGatewayConfig struct {
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// The Mesh Gateway routing mode
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Mode MeshGatewayMode `json:",omitempty"`
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}
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func (c *MeshGatewayConfig) IsZero() bool {
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zeroVal := MeshGatewayConfig{}
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return *c == zeroVal
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}
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func (base *MeshGatewayConfig) OverlayWith(overlay MeshGatewayConfig) MeshGatewayConfig {
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out := *base
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if overlay.Mode != MeshGatewayModeDefault {
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out.Mode = overlay.Mode
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}
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return out
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}
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func ValidateMeshGatewayMode(mode string) (MeshGatewayMode, error) {
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switch MeshGatewayMode(mode) {
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case MeshGatewayModeNone:
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return MeshGatewayModeNone, nil
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case MeshGatewayModeDefault:
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return MeshGatewayModeDefault, nil
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case MeshGatewayModeLocal:
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return MeshGatewayModeLocal, nil
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case MeshGatewayModeRemote:
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return MeshGatewayModeRemote, nil
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default:
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return MeshGatewayModeDefault, fmt.Errorf("Invalid Mesh Gateway Mode: %q", mode)
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}
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}
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func (c *MeshGatewayConfig) ToAPI() api.MeshGatewayConfig {
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return api.MeshGatewayConfig{Mode: api.MeshGatewayMode(c.Mode)}
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}
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// ConnectProxyConfig describes the configuration needed for any proxy managed
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// or unmanaged. It describes a single logical service's listener and optionally
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// upstreams and sidecar-related config for a single instance. To describe a
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// centralized proxy that routed traffic for multiple services, a different one
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// of these would be needed for each, sharing the same LogicalProxyID.
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type ConnectProxyConfig struct {
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// DestinationServiceName is required and is the name of the service to accept
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// traffic for.
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DestinationServiceName string `json:",omitempty" alias:"destination_service_name"`
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// DestinationServiceID is optional and should only be specified for
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// "side-car" style proxies where the proxy is in front of just a single
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// instance of the service. It should be set to the service ID of the instance
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// being represented which must be registered to the same agent. It's valid to
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// provide a service ID that does not yet exist to avoid timing issues when
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// bootstrapping a service with a proxy.
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DestinationServiceID string `json:",omitempty" alias:"destination_service_id"`
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// LocalServiceAddress is the address of the local service instance. It is
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// optional and should only be specified for "side-car" style proxies. It will
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// default to 127.0.0.1 if the proxy is a "side-car" (DestinationServiceID is
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// set) but otherwise will be ignored.
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LocalServiceAddress string `json:",omitempty" alias:"local_service_address"`
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// LocalServicePort is the port of the local service instance. It is optional
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// and should only be specified for "side-car" style proxies. It will default
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// to the registered port for the instance if the proxy is a "side-car"
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// (DestinationServiceID is set) but otherwise will be ignored.
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LocalServicePort int `json:",omitempty" alias:"local_service_port"`
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// Config is the arbitrary configuration data provided with the proxy
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// registration.
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Config map[string]interface{} `json:",omitempty" bexpr:"-"`
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// Upstreams describes any upstream dependencies the proxy instance should
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// setup.
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Upstreams Upstreams `json:",omitempty"`
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// MeshGateway defines the mesh gateway configuration for this upstream
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MeshGateway MeshGatewayConfig `json:",omitempty" alias:"mesh_gateway"`
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// Expose defines whether checks or paths are exposed through the proxy
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Expose ExposeConfig `json:",omitempty"`
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}
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func (t *ConnectProxyConfig) UnmarshalJSON(data []byte) (err error) {
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type Alias ConnectProxyConfig
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aux := &struct {
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DestinationServiceNameSnake string `json:"destination_service_name"`
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DestinationServiceIDSnake string `json:"destination_service_id"`
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LocalServiceAddressSnake string `json:"local_service_address"`
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LocalServicePortSnake int `json:"local_service_port"`
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MeshGatewaySnake MeshGatewayConfig `json:"mesh_gateway"`
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*Alias
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}{
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Alias: (*Alias)(t),
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}
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if err = lib.UnmarshalJSON(data, &aux); err != nil {
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return err
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}
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if t.DestinationServiceName == "" {
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t.DestinationServiceName = aux.DestinationServiceNameSnake
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}
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if t.DestinationServiceID == "" {
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t.DestinationServiceID = aux.DestinationServiceIDSnake
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}
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if t.LocalServiceAddress == "" {
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t.LocalServiceAddress = aux.LocalServiceAddressSnake
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}
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if t.LocalServicePort == 0 {
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t.LocalServicePort = aux.LocalServicePortSnake
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}
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if t.MeshGateway.Mode == "" {
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t.MeshGateway.Mode = aux.MeshGatewaySnake.Mode
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}
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return nil
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}
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func (c *ConnectProxyConfig) MarshalJSON() ([]byte, error) {
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type typeCopy ConnectProxyConfig
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copy := typeCopy(*c)
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proxyConfig, err := lib.MapWalk(copy.Config)
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if err != nil {
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return nil, err
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}
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copy.Config = proxyConfig
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return json.Marshal(©)
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}
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// ToAPI returns the api struct with the same fields. We have duplicates to
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// avoid the api package depending on this one which imports a ton of Consul's
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// core which you don't want if you are just trying to use our client in your
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// app.
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func (c *ConnectProxyConfig) ToAPI() *api.AgentServiceConnectProxyConfig {
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return &api.AgentServiceConnectProxyConfig{
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DestinationServiceName: c.DestinationServiceName,
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DestinationServiceID: c.DestinationServiceID,
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LocalServiceAddress: c.LocalServiceAddress,
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LocalServicePort: c.LocalServicePort,
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Config: c.Config,
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Upstreams: c.Upstreams.ToAPI(),
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MeshGateway: c.MeshGateway.ToAPI(),
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Expose: c.Expose.ToAPI(),
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}
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}
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const (
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UpstreamDestTypeService = "service"
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UpstreamDestTypePreparedQuery = "prepared_query"
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)
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// Upstreams is a list of upstreams. Aliased to allow ToAPI method.
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type Upstreams []Upstream
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// ToAPI returns the api structs with the same fields. We have duplicates to
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// avoid the api package depending on this one which imports a ton of Consul's
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// core which you don't want if you are just trying to use our client in your
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// app.
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func (us Upstreams) ToAPI() []api.Upstream {
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a := make([]api.Upstream, len(us))
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for i, u := range us {
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a[i] = u.ToAPI()
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}
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return a
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}
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// UpstreamsFromAPI is a helper for converting api.Upstream to Upstream.
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func UpstreamsFromAPI(us []api.Upstream) Upstreams {
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a := make([]Upstream, len(us))
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for i, u := range us {
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a[i] = UpstreamFromAPI(u)
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}
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return a
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}
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// Upstream represents a single upstream dependency for a service or proxy. It
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// describes the mechanism used to discover instances to communicate with (the
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// Target) as well as any potential client configuration that may be useful such
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// as load balancer options, timeouts etc.
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type Upstream struct {
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// Destination fields are the required ones for determining what this upstream
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// points to. Depending on DestinationType some other fields below might
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// further restrict the set of instances allowable.
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//
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// DestinationType would be better as an int constant but even with custom
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// JSON marshallers it causes havoc with all the mapstructure mangling we do
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// on service definitions in various places.
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DestinationType string `alias:"destination_type"`
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DestinationNamespace string `json:",omitempty" alias:"destination_namespace"`
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DestinationName string `alias:"destination_name"`
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// Datacenter that the service discovery request should be run against. Note
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// for prepared queries, the actual results might be from a different
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// datacenter.
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Datacenter string
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// LocalBindAddress is the ip address a side-car proxy should listen on for
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// traffic destined for this upstream service. Default if empty is 127.0.0.1.
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LocalBindAddress string `json:",omitempty" alias:"local_bind_address"`
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// LocalBindPort is the ip address a side-car proxy should listen on for traffic
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// destined for this upstream service. Required.
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LocalBindPort int `alias:"local_bind_port"`
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// Config is an opaque config that is specific to the proxy process being run.
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// It can be used to pass arbitrary configuration for this specific upstream
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// to the proxy.
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Config map[string]interface{} `json:",omitempty" bexpr:"-"`
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// MeshGateway is the configuration for mesh gateway usage of this upstream
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MeshGateway MeshGatewayConfig `json:",omitempty" alias:"mesh_gateway"`
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// IngressHosts are a list of hosts that should route to this upstream from
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// an ingress gateway. This cannot and should not be set by a user, it is
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// used internally to store the association of hosts to an upstream service.
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IngressHosts []string `json:"-" bexpr:"-"`
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}
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func (t *Upstream) UnmarshalJSON(data []byte) (err error) {
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type Alias Upstream
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aux := &struct {
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DestinationTypeSnake string `json:"destination_type"`
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DestinationNamespaceSnake string `json:"destination_namespace"`
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DestinationNameSnake string `json:"destination_name"`
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LocalBindAddressSnake string `json:"local_bind_address"`
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LocalBindPortSnake int `json:"local_bind_port"`
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MeshGatewaySnake MeshGatewayConfig `json:"mesh_gateway"`
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*Alias
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}{
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Alias: (*Alias)(t),
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}
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if err = lib.UnmarshalJSON(data, &aux); err != nil {
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return err
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}
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if t.DestinationType == "" {
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t.DestinationType = aux.DestinationTypeSnake
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}
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if t.DestinationNamespace == "" {
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t.DestinationNamespace = aux.DestinationNamespaceSnake
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}
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if t.DestinationName == "" {
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t.DestinationName = aux.DestinationNameSnake
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}
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if t.LocalBindAddress == "" {
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t.LocalBindAddress = aux.LocalBindAddressSnake
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}
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if t.LocalBindPort == 0 {
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t.LocalBindPort = aux.LocalBindPortSnake
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}
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if t.MeshGateway.Mode == "" {
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t.MeshGateway.Mode = aux.MeshGatewaySnake.Mode
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}
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return nil
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}
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// Validate sanity checks the struct is valid
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func (u *Upstream) Validate() error {
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switch u.DestinationType {
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case UpstreamDestTypePreparedQuery:
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case UpstreamDestTypeService, "":
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default:
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return fmt.Errorf("unknown upstream destination type: %q", u.DestinationType)
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}
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if u.DestinationName == "" {
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return fmt.Errorf("upstream destination name cannot be empty")
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}
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if u.LocalBindPort == 0 {
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return fmt.Errorf("upstream local bind port cannot be zero")
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}
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return nil
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}
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// ToAPI returns the api structs with the same fields. We have duplicates to
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// avoid the api package depending on this one which imports a ton of Consul's
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// core which you don't want if you are just trying to use our client in your
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// app.
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func (u *Upstream) ToAPI() api.Upstream {
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return api.Upstream{
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DestinationType: api.UpstreamDestType(u.DestinationType),
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DestinationNamespace: u.DestinationNamespace,
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DestinationName: u.DestinationName,
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Datacenter: u.Datacenter,
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LocalBindAddress: u.LocalBindAddress,
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LocalBindPort: u.LocalBindPort,
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Config: u.Config,
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MeshGateway: u.MeshGateway.ToAPI(),
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}
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}
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// ToKey returns a value-type representation that uniquely identifies the
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// upstream in a canonical way. Set and unset values are deliberately handled
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// differently.
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//
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// These fields should be user-specificed explicit values and not inferred
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// values.
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func (u *Upstream) ToKey() UpstreamKey {
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return UpstreamKey{
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DestinationType: u.DestinationType,
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DestinationNamespace: u.DestinationNamespace,
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DestinationName: u.DestinationName,
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Datacenter: u.Datacenter,
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}
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}
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type UpstreamKey struct {
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DestinationType string
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DestinationName string
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DestinationNamespace string
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Datacenter string
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}
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func (k UpstreamKey) String() string {
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return fmt.Sprintf(
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"[type=%q, name=%q, namespace=%q, datacenter=%q]",
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k.DestinationType,
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k.DestinationName,
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k.DestinationNamespace,
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k.Datacenter,
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)
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}
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// Identifier returns a string representation that uniquely identifies the
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// upstream in a canonical but human readable way.
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func (u *Upstream) Identifier() string {
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name := u.DestinationName
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typ := u.DestinationType
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if typ != UpstreamDestTypePreparedQuery && u.DestinationNamespace != "" && u.DestinationNamespace != IntentionDefaultNamespace {
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name = u.DestinationNamespace + "/" + u.DestinationName
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}
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if u.Datacenter != "" {
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name += "?dc=" + u.Datacenter
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}
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// Service is default type so never prefix it. This is more readable and long
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// term it is the only type that matters so we can drop the prefix and have
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// nicer naming in metrics etc.
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if typ == "" || typ == UpstreamDestTypeService {
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return name
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}
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return typ + ":" + name
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}
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// String implements Stringer by returning the Identifier.
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func (u *Upstream) String() string {
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return u.Identifier()
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}
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// UpstreamFromAPI is a helper for converting api.Upstream to Upstream.
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func UpstreamFromAPI(u api.Upstream) Upstream {
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return Upstream{
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DestinationType: string(u.DestinationType),
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DestinationNamespace: u.DestinationNamespace,
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DestinationName: u.DestinationName,
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Datacenter: u.Datacenter,
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LocalBindAddress: u.LocalBindAddress,
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LocalBindPort: u.LocalBindPort,
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Config: u.Config,
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}
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}
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// ExposeConfig describes HTTP paths to expose through Envoy outside of Connect.
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// Users can expose individual paths and/or all HTTP/GRPC paths for checks.
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type ExposeConfig struct {
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// Checks defines whether paths associated with Consul checks will be exposed.
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// This flag triggers exposing all HTTP and GRPC check paths registered for the service.
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Checks bool `json:",omitempty"`
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// Paths is the list of paths exposed through the proxy.
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Paths []ExposePath `json:",omitempty"`
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}
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func (e ExposeConfig) Clone() ExposeConfig {
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e2 := e
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if len(e.Paths) > 0 {
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e2.Paths = make([]ExposePath, 0, len(e.Paths))
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for _, p := range e.Paths {
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e2.Paths = append(e2.Paths, p)
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}
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}
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return e2
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}
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type ExposePath struct {
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// ListenerPort defines the port of the proxy's listener for exposed paths.
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ListenerPort int `json:",omitempty" alias:"listener_port"`
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// Path is the path to expose through the proxy, ie. "/metrics."
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Path string `json:",omitempty"`
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// LocalPathPort is the port that the service is listening on for the given path.
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LocalPathPort int `json:",omitempty" alias:"local_path_port"`
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// Protocol describes the upstream's service protocol.
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// Valid values are "http" and "http2", defaults to "http"
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Protocol string `json:",omitempty"`
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// ParsedFromCheck is set if this path was parsed from a registered check
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ParsedFromCheck bool `json:",omitempty" alias:"parsed_from_check"`
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}
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func (t *ExposePath) UnmarshalJSON(data []byte) (err error) {
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type Alias ExposePath
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aux := &struct {
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ListenerPortSnake int `json:"listener_port"`
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LocalPathPortSnake int `json:"local_path_port"`
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ParsedFromCheckSnake bool `json:"parsed_from_check"`
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*Alias
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}{
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Alias: (*Alias)(t),
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}
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if err = lib.UnmarshalJSON(data, &aux); err != nil {
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return err
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}
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if t.LocalPathPort == 0 {
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t.LocalPathPort = aux.LocalPathPortSnake
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}
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if t.ListenerPort == 0 {
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t.ListenerPort = aux.ListenerPortSnake
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}
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if aux.ParsedFromCheckSnake {
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t.ParsedFromCheck = true
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}
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return nil
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}
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func (e *ExposeConfig) ToAPI() api.ExposeConfig {
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paths := make([]api.ExposePath, 0)
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for _, p := range e.Paths {
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paths = append(paths, p.ToAPI())
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}
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if e.Paths == nil {
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paths = nil
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}
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return api.ExposeConfig{
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Checks: e.Checks,
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Paths: paths,
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}
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}
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func (p *ExposePath) ToAPI() api.ExposePath {
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return api.ExposePath{
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ListenerPort: p.ListenerPort,
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Path: p.Path,
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LocalPathPort: p.LocalPathPort,
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Protocol: p.Protocol,
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ParsedFromCheck: p.ParsedFromCheck,
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}
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}
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// Finalize validates ExposeConfig and sets default values
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func (e *ExposeConfig) Finalize() {
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for i := 0; i < len(e.Paths); i++ {
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path := &e.Paths[i]
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if path.Protocol == "" {
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path.Protocol = defaultExposeProtocol
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}
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}
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}
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