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syntax = "proto3";
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package envoy.api.v2.core;
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option java_package = "io.envoyproxy.envoy.api.v2.core";
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option java_multiple_files = true;
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option go_package = "core";
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import "google/protobuf/any.proto";
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import "google/protobuf/struct.proto";
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import "google/protobuf/wrappers.proto";
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import "validate/validate.proto";
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import "gogoproto/gogo.proto";
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import "envoy/type/percent.proto";
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option (gogoproto.equal_all) = true;
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// [#protodoc-title: Common types]
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// Identifies location of where either Envoy runs or where upstream hosts run.
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message Locality {
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// Region this :ref:`zone <envoy_api_field_core.Locality.zone>` belongs to.
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string region = 1;
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// Defines the local service zone where Envoy is running. Though optional, it
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// should be set if discovery service routing is used and the discovery
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// service exposes :ref:`zone data <envoy_api_field_endpoint.LocalityLbEndpoints.locality>`,
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// either in this message or via :option:`--service-zone`. The meaning of zone
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// is context dependent, e.g. `Availability Zone (AZ)
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// <https://docs.aws.amazon.com/AWSEC2/latest/UserGuide/using-regions-availability-zones.html>`_
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// on AWS, `Zone <https://cloud.google.com/compute/docs/regions-zones/>`_ on
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// GCP, etc.
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string zone = 2;
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// When used for locality of upstream hosts, this field further splits zone
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// into smaller chunks of sub-zones so they can be load balanced
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// independently.
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string sub_zone = 3;
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}
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// Identifies a specific Envoy instance. The node identifier is presented to the
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// management server, which may use this identifier to distinguish per Envoy
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// configuration for serving.
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message Node {
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// An opaque node identifier for the Envoy node. This also provides the local
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// service node name. It should be set if any of the following features are
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// used: :ref:`statsd <arch_overview_statistics>`, :ref:`CDS
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// <config_cluster_manager_cds>`, and :ref:`HTTP tracing
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// <arch_overview_tracing>`, either in this message or via
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// :option:`--service-node`.
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string id = 1;
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// Defines the local service cluster name where Envoy is running. Though
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// optional, it should be set if any of the following features are used:
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// :ref:`statsd <arch_overview_statistics>`, :ref:`health check cluster
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// verification <envoy_api_field_core.HealthCheck.HttpHealthCheck.service_name>`,
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// :ref:`runtime override directory <envoy_api_msg_config.bootstrap.v2.Runtime>`,
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// :ref:`user agent addition
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// <envoy_api_field_config.filter.network.http_connection_manager.v2.HttpConnectionManager.add_user_agent>`,
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// :ref:`HTTP global rate limiting <config_http_filters_rate_limit>`,
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// :ref:`CDS <config_cluster_manager_cds>`, and :ref:`HTTP tracing
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// <arch_overview_tracing>`, either in this message or via
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// :option:`--service-cluster`.
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string cluster = 2;
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// Opaque metadata extending the node identifier. Envoy will pass this
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// directly to the management server.
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google.protobuf.Struct metadata = 3;
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// Locality specifying where the Envoy instance is running.
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Locality locality = 4;
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// This is motivated by informing a management server during canary which
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// version of Envoy is being tested in a heterogeneous fleet. This will be set
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// by Envoy in management server RPCs.
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string build_version = 5;
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}
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// Metadata provides additional inputs to filters based on matched listeners,
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// filter chains, routes and endpoints. It is structured as a map, usually from
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// filter name (in reverse DNS format) to metadata specific to the filter. Metadata
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// key-values for a filter are merged as connection and request handling occurs,
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// with later values for the same key overriding earlier values.
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//
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// An example use of metadata is providing additional values to
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// http_connection_manager in the envoy.http_connection_manager.access_log
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// namespace.
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//
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// Another example use of metadata is to per service config info in cluster metadata, which may get
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// consumed by multiple filters.
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//
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// For load balancing, Metadata provides a means to subset cluster endpoints.
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// Endpoints have a Metadata object associated and routes contain a Metadata
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// object to match against. There are some well defined metadata used today for
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// this purpose:
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//
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// * ``{"envoy.lb": {"canary": <bool> }}`` This indicates the canary status of an
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// endpoint and is also used during header processing
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// (x-envoy-upstream-canary) and for stats purposes.
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message Metadata {
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// Key is the reverse DNS filter name, e.g. com.acme.widget. The envoy.*
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// namespace is reserved for Envoy's built-in filters.
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map<string, google.protobuf.Struct> filter_metadata = 1;
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}
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// Runtime derived uint32 with a default when not specified.
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message RuntimeUInt32 {
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// Default value if runtime value is not available.
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uint32 default_value = 2;
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// Runtime key to get value for comparison. This value is used if defined.
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string runtime_key = 3 [(validate.rules).string.min_bytes = 1];
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}
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// Envoy supports :ref:`upstream priority routing
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// <arch_overview_http_routing_priority>` both at the route and the virtual
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// cluster level. The current priority implementation uses different connection
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// pool and circuit breaking settings for each priority level. This means that
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// even for HTTP/2 requests, two physical connections will be used to an
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// upstream host. In the future Envoy will likely support true HTTP/2 priority
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// over a single upstream connection.
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enum RoutingPriority {
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DEFAULT = 0;
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HIGH = 1;
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}
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// HTTP request method.
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enum RequestMethod {
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option (gogoproto.goproto_enum_prefix) = false;
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METHOD_UNSPECIFIED = 0;
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GET = 1;
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HEAD = 2;
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POST = 3;
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PUT = 4;
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DELETE = 5;
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CONNECT = 6;
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OPTIONS = 7;
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TRACE = 8;
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}
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// Header name/value pair.
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message HeaderValue {
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// Header name.
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string key = 1 [(validate.rules).string = {min_bytes: 1, max_bytes: 16384}];
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// Header value.
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//
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// The same :ref:`format specifier <config_access_log_format>` as used for
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// :ref:`HTTP access logging <config_access_log>` applies here, however
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// unknown header values are replaced with the empty string instead of `-`.
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string value = 2 [(validate.rules).string.max_bytes = 16384];
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}
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// Header name/value pair plus option to control append behavior.
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message HeaderValueOption {
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// Header name/value pair that this option applies to.
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HeaderValue header = 1 [(validate.rules).message.required = true];
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// Should the value be appended? If true (default), the value is appended to
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// existing values.
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google.protobuf.BoolValue append = 2;
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}
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// Data source consisting of either a file or an inline value.
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message DataSource {
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oneof specifier {
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option (validate.required) = true;
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// Local filesystem data source.
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string filename = 1 [(validate.rules).string.min_bytes = 1];
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// Bytes inlined in the configuration.
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bytes inline_bytes = 2 [(validate.rules).bytes.min_len = 1];
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// String inlined in the configuration.
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string inline_string = 3 [(validate.rules).string.min_bytes = 1];
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}
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}
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// Configuration for transport socket in :ref:`listeners <config_listeners>` and
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// :ref:`clusters <envoy_api_msg_Cluster>`. If the configuration is
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// empty, a default transport socket implementation and configuration will be
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// chosen based on the platform and existence of tls_context.
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message TransportSocket {
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// The name of the transport socket to instantiate. The name must match a supported transport
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// socket implementation.
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string name = 1 [(validate.rules).string.min_bytes = 1];
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// Implementation specific configuration which depends on the implementation being instantiated.
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// See the supported transport socket implementations for further documentation.
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oneof config_type {
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google.protobuf.Struct config = 2 [deprecated = true];
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google.protobuf.Any typed_config = 3;
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}
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}
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// Generic socket option message. This would be used to set socket options that
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// might not exist in upstream kernels or precompiled Envoy binaries.
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message SocketOption {
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// An optional name to give this socket option for debugging, etc.
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// Uniqueness is not required and no special meaning is assumed.
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string description = 1;
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// Corresponding to the level value passed to setsockopt, such as IPPROTO_TCP
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int64 level = 2;
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// The numeric name as passed to setsockopt
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int64 name = 3;
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oneof value {
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option (validate.required) = true;
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// Because many sockopts take an int value.
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int64 int_value = 4;
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// Otherwise it's a byte buffer.
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bytes buf_value = 5;
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}
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enum SocketState {
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option (gogoproto.goproto_enum_prefix) = false;
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// Socket options are applied after socket creation but before binding the socket to a port
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STATE_PREBIND = 0;
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// Socket options are applied after binding the socket to a port but before calling listen()
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STATE_BOUND = 1;
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// Socket options are applied after calling listen()
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STATE_LISTENING = 2;
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}
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// The state in which the option will be applied. When used in BindConfig
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// STATE_PREBIND is currently the only valid value.
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SocketState state = 6
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[(validate.rules).message.required = true, (validate.rules).enum.defined_only = true];
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}
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// Runtime derived FractionalPercent with defaults for when the numerator or denominator is not
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// specified via a runtime key.
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message RuntimeFractionalPercent {
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// Default value if the runtime value's for the numerator/denominator keys are not available.
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envoy.type.FractionalPercent default_value = 1 [(validate.rules).message.required = true];
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// Runtime key for a YAML representation of a FractionalPercent.
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string runtime_key = 2;
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}
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