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266 lines
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266 lines
15 KiB
# API style guidelines |
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Generally follow guidance at https://cloud.google.com/apis/design/, in |
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particular for proto3 as described at: |
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* https://cloud.google.com/apis/design/proto3 |
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* https://cloud.google.com/apis/design/naming_convention |
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* https://developers.google.com/protocol-buffers/docs/style |
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A key aspect of our API style is maintaining stability by following the [API versioning |
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guidelines](API_VERSIONING.md). All developers must familiarize themselves with these guidelines, |
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any PR which makes breaking changes to the API will not be merged. |
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In addition, the following conventions should be followed: |
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* Every proto directory should have a `README.md` describing its content. See |
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for example [envoy.service](envoy/service/README.md). |
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* The data plane APIs are primarily intended for machine generation and consumption. |
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It is expected that the management server is responsible for mapping higher |
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level configuration concepts to concrete API concepts. Similarly, static configuration |
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fragments may be generated by tools and UIs, etc. The APIs and tools used |
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to generate xDS configuration are beyond the scope of the definitions in this |
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repository. |
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* Use [wrapped scalar |
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types](https://github.com/google/protobuf/blob/master/src/google/protobuf/wrappers.proto) |
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if there is any potential need for a field to have a default value that does not |
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match the proto3 defaults (0/false/""). For example, new features whose |
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default value may change in the future or security mitigations that should be |
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default safe in the future but are temporarily not enabled. |
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* Use a `[#not-implemented-hide:]` `protodoc` annotation in comments for fields that lack Envoy |
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implementation. These indicate that the entity is not implemented in Envoy and the entity |
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should be hidden from the Envoy documentation. |
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* For extensions that are a work-in-progress or the config proto documentation is hidden with |
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`[#not-implemented-hide:]`, set its `status` field to `wip` in `extensions_metadata.yaml`. |
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* Use a `(xds.annotations.v3.file_status).work_in_progress`, |
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`(xds.annotations.v3.message_status).work_in_progress`, or |
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`(xds.annotations.v3.field_status).work_in_progress` option annotation for files, |
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messages, or fields, respectively, that are considered work in progress and are not subject to the |
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threat model or the breaking change policy. This is similar to the work-in-progress/alpha tagging |
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of extensions described below, but allows tagging protos that are used as part of the core API |
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as work in progress without having to break them into their own file. |
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* Always use plural field names for `repeated` fields, such as `filters`. |
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* Due to the fact that we consider JSON/YAML to be first class inputs, we cannot easily change a |
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a singular field to a repeated field (both due to JSON/YAML array structural differences as well |
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as singular vs. plural field naming). If there is a reasonable expectation that a field may need |
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to be repeated in the future, but we don't need it to be repeated right away, consider making it |
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repeated now but using constraints to enforce a maximum repeated size of 1. E.g.: |
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```proto |
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repeated OutputSink sinks = 1 [(validate.rules).repeated = {min_items: 1, max_items: 1}]; |
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``` |
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* Always use upper camel case names for message types and enum types without embedded |
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acronyms, such as `HttpRequest`. |
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* Prefer `oneof` selections to boolean overloads of fields, for example, prefer: |
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```proto |
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oneof path_specifier { |
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string simple_path = 1; |
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string regex_path = 2; |
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} |
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``` |
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to |
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```proto |
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string path = 1; |
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bool path_is_regex = 2; |
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``` |
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This is more efficient, extendable and self-describing. |
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* The API includes two types for representing [percents](envoy/type/percent.proto). `Percent` is |
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effectively a double value in the range 0.0-100.0. `FractionalPercent` is an integral fraction |
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that can be used to create a truncated percentage also in the range 0.0-100.0. In high performance |
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paths, `FractionalPercent` is preferred as randomness calculations can be performed using integral |
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modulo and comparison operations only without any floating point conversions. Typically, most |
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users do not need infinite precision in these paths. |
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* For enum types, if one of the enum values is used for most cases, make it the |
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first enum value with `0` numeric value. Otherwise, define the first enum |
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value like `TYPE_NAME_UNSPECIFIED = 0`, and treat it as an error. This design |
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pattern forces developers to explicitly choose the correct enum value for |
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their use case, and avoid misunderstanding of the default behavior. |
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* For time-related fields, prefer using the well-known types `google.protobuf.Duration` or |
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`google.protobuf.Timestamp` instead of raw integers for seconds. |
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* If a field is going to contain raw bytes rather than a human-readable string, the field should |
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be of type `bytes` instead of `string`. |
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* Proto fields should be sorted logically, not by field number. |
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## Package organization |
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API definitions are layered hierarchically in packages from top-to-bottom as following: |
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- `envoy.extensions` contains all definitions for the extensions, the package should match the structure of the `source` directory. |
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- `envoy.service` contains gRPC definitions of supporting services and top-level messages for the services. |
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e.g. `envoy.service.route.v3` contains RDS, `envoy.service.listener.v3` contains LDS. |
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- `envoy.config` contains other definitions for service configuration, bootstrap and some legacy core types. |
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- `envoy.data` contains data format declaration for data types that Envoy produces. |
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- `envoy.type` contains common protobuf types such as percent, range and matchers. |
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Extensions should use the regular hierarchy. For example, configuration for network filters belongs |
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in a package under `envoy.extensions.filter.network`. |
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## Adding an extension configuration to the API |
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Extensions must currently be added as v3 APIs following the [package |
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organization](#package-organization) above. |
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To add an extension config to the API, the steps below should be followed: |
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1. Place the v3 extension configuration `.proto` in `api/envoy/extensions` or `api/contrib/envoy/extensions`, e.g. |
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`api/envoy/extensions/filters/http/foobar/v3/foobar.proto` together with an initial BUILD file: |
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```bazel |
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load("@envoy_api//bazel:api_build_system.bzl", "api_proto_package") |
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licenses(["notice"]) # Apache 2 |
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api_proto_package( |
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deps = ["@com_github_cncf_udpa//udpa/annotations:pkg"], |
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) |
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``` |
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1. If this is still WiP and subject to breaking changes, please tag it |
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`option (xds.annotations.v3.file_status).work_in_progress = true;` and |
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optionally hide it from the docs (`[#not-implemented-hide:]`). |
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1. Make sure your proto imports the v3 extension config proto (`import "udpa/annotations/status.proto";`) |
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1. Make sure your proto is tracked as ready to be used |
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(`option (udpa.annotations.file_status).package_version_status = ACTIVE;`). |
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This is required to automatically include the config proto in [api/versioning/BUILD](versioning/BUILD) under `active_protos`. |
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1. Add a reference to the v3 extension config in [api/BUILD](BUILD) under `v3_protos`. |
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1. Update [source/extensions/extensions_metadata.yaml](../source/extensions/extensions_metadata.yaml) or [contrib/extensions_metadata.yaml](../contrib/extensions_metadata.yaml) |
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with the category, [security posture, and status](../EXTENSION_POLICY.md#extension-stability-and-security-posture). |
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* Any extension category added to `extensions_metadata.yaml` should be annotated in precisely one proto file, associated with a field of a proto message. e.g. |
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```proto |
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message SomeMessage { |
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// An ordered list of http filters |
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// [#extension-category: envoy.http.filters] |
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repeated core.v3.TypedExtensionConfig http_filter_extensions = 1; |
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} |
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``` |
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* Each extension added to `extensions_metadata.yaml` should have precisely one proto file annotated with the extension name. e.g. |
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```proto |
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// [#protodoc-title: Your New Filter] |
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// [#extension: envoy.http.filters.your_new_filter] |
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// YourFilterConfig is the configuration for a YourFilter (write real documentation here). |
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message YourFilterConfig { |
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} |
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``` |
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1. If you introduce a new extension category, you'll also need to add its name |
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under `categories` in: [tools/extensions/extensions_schema.yaml](../tools/extensions/extensions_schema.yaml). |
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1. Update |
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[source/extensions/extensions_build_config.bzl](../source/extensions/extensions_build_config.bzl) or [contrib/contrib_build_config.bzl](../contrib/contrib_build_config.bzl) |
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to include the new extension. |
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1. If the extension is not hidden, find or create a docs file with a toctree |
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and to reference your proto to make sure users can navigate to it from the API docs |
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(and to not break the docs build), like [docs/root/api-v3/admin/admin.rst](../docs/root/api-v3/admin/admin.rst). |
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1. Run `./tools/proto_format/proto_format.sh fix`. **Before running the script**, you will need to **commit your local changes**. By adding the commit, the tool will recognize the change, and will regenerate the `BUILD` file and reformat `foobar.proto` as needed. If you have not followed any of the above steps correctly `proto_format.sh` may remove some of the files that you added. If that is the case you can revert to the committed state, and try again once any issues are resolved. |
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1. See the [key-value-store PR](https://github.com/envoyproxy/envoy/pull/17745/files) for an example of adding a new extension point to common. |
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## API annotations |
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A number of annotations are used in the Envoy APIs to provide additional API |
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metadata. We describe these annotations below by category. |
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### Field level |
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* `[deprecated = true]` to denote fields that are deprecated in a major version. |
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These fields are slated for removal at the next major cycle and follow the |
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[breaking change policy](../CONTRIBUTING.md#breaking-change-policy). |
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* `[envoy.annotations.disallowed_by_default = true]` to denote fields that have |
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been disallowed by default as per the [breaking change policy](../CONTRIBUTING.md#breaking-change-policy). |
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* `[(udpa.annotations.field_migrate).rename = "<new field name>"]` to denote that |
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the field will be renamed to a given name in the next API major version. |
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* `[(udpa.annotations.field_migrate).oneof_promotion = "<oneof name>"]` to denote that |
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the field will be promoted to a given `oneof` in the next API major version. |
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* `[(udpa.annotations.sensitive) = true]` to denote sensitive fields that |
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should be redacted in output such as logging or configuration dumps. |
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* [PGV annotations](https://github.com/bufbuild/protoc-gen-validate) to denote field |
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value constraints. |
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### Enum value level |
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* `[(udpa.annotations.enum_value_migrate).rename = "new enum value name"]` to denote that |
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the enum value will be renamed to a given name in the next API major version. |
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### Message level |
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* `option (udpa.annotations.versioning).previous_message_type = "<message type |
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name>";` to denote the previous type name for an upgraded message. You should |
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never have to write these manually, they are generated by `protoxform`. |
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### Service level |
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* `option (envoy.annotations.resource).type = "<resource type name>";` to denote |
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the resource type for an xDS service definition. |
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### File level |
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* `option (udpa.annotations.file_migrate).move_to_package = "<package name>";` |
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to denote that in the next major version of the API, the file will be moved to |
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the given package. This is consumed by `protoxform`. |
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* `option (xds.annotations.v3.file_status).work_in_progress = true;` to denote a |
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file that is still work-in-progress and subject to breaking changes. |
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## Principles |
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The following principles should be adhered to when extending or modifying the |
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xDS APIs: |
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* The xDS APIs have a logical distinction between transport and data model: |
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- The xDS transport protocol describes the network transport on which xDS |
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configuration resources are delivered to clients. A versioned gRPC streaming |
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protocol with support for ACK/NACK is provided by xDS; this is known as the |
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xDS transport protocol (xDS-TP). xDS configuration resources can also be |
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delivered on other transports, e.g. HTTP or filesystem, with some |
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limitations (e.g. no version feedback). |
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- The xDS data model describes the xDS configuration resources themselves, |
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e.g. listeners, route configurations, clusters, endpoints, secrets. |
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* The xDS APIs are directionally client and server neutral. While many aspects |
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of the APIs reflect the history of their origin as Envoy's control plane APIs, |
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API decisions going forward should reflect the principle of client neutrality. |
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* The xDS APIs are expressed canonically as [Proto3](https://developers.google.com/protocol-buffers/docs/proto3). |
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Both JSON and YAML are also supported formats, with the standard JSON-proto3 |
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conversion used during client configuration ingestion. |
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* xDS APIs are eventual consistency first. For example, if RDS references a |
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cluster that has not yet been supplied by CDS, it should be silently ignored |
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and traffic not forwarded until the CDS update occurs. Stronger consistency |
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guarantees are possible if the management server is able to sequence the xDS |
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APIs carefully (for example by using the ADS API below). By following the |
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`[CDS, EDS, LDS, RDS]` sequence for all pertinent resources, it will be |
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possible to avoid traffic outages during configuration update. |
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* The API is primarily intended for machine generation and consumption. It is |
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expected that the management server is responsible for mapping higher level |
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configuration concepts to API responses. Similarly, static configuration |
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fragments may be generated by templating tools, etc. With that consideration, |
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we also aim to have API artifacts readable by humans for debugging and |
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understanding applied configuration. This implies that APIs do not have to |
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have ergonomics as the main driver, but should still be reasonable to read by |
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humans. The APIs and tools used to generate xDS configuration are beyond the |
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scope of the definitions in this repository. |
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* All supported transports (xDS-TP, HTTP, filesystem) support basic singleton xDS |
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subscription services CDS/EDS/LDS/RDS/SDS. Advanced APIs such as HDS, ADS and |
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EDS multi-dimensional LB are xDS-TP only. This avoids having to map |
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complicated bidirectional stream semantics onto REST, etc.. |
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* Versioning follows the scheme described [here](API_VERSIONING.md). A key |
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principle that we target is that API consumers should not be exposed to |
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breaking changes where there is no substantial gain in functionality, |
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performance, security or implementation simplification. We will tolerate |
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technical debt in the API itself, e.g. in the form of vestigial deprecated |
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fields or reduced ergonomics (such as not using `oneof` when we would prefer |
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to), in order to meet this principle. |
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* Namespaces for extensions, metadata, etc. use a reverse DNS naming scheme, |
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e.g. `com.google.widget`, `com.lyft.widget`. Client built-ins may be prefixed |
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with client name, e.g. `envoy.foo`, `grpc.bar`.
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