mirror of https://github.com/k3s-io/k3s
212 lines
7.6 KiB
Protocol Buffer
212 lines
7.6 KiB
Protocol Buffer
// To regenerate api.pb.go run hack/update-generated-device-plugin.sh
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syntax = 'proto3';
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package v1beta1;
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import "github.com/gogo/protobuf/gogoproto/gogo.proto";
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option (gogoproto.goproto_stringer_all) = false;
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option (gogoproto.stringer_all) = true;
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option (gogoproto.goproto_getters_all) = true;
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option (gogoproto.marshaler_all) = true;
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option (gogoproto.sizer_all) = true;
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option (gogoproto.unmarshaler_all) = true;
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option (gogoproto.goproto_unrecognized_all) = false;
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// Registration is the service advertised by the Kubelet
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// Only when Kubelet answers with a success code to a Register Request
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// may Device Plugins start their service
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// Registration may fail when device plugin version is not supported by
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// Kubelet or the registered resourceName is already taken by another
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// active device plugin. Device plugin is expected to terminate upon registration failure
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service Registration {
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rpc Register(RegisterRequest) returns (Empty) {}
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}
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message DevicePluginOptions {
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// Indicates if PreStartContainer call is required before each container start
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bool pre_start_required = 1;
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// Indicates if GetPreferredAllocation is implemented and available for calling
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bool get_preferred_allocation_available = 2;
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}
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message RegisterRequest {
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// Version of the API the Device Plugin was built against
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string version = 1;
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// Name of the unix socket the device plugin is listening on
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// PATH = path.Join(DevicePluginPath, endpoint)
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string endpoint = 2;
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// Schedulable resource name. As of now it's expected to be a DNS Label
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string resource_name = 3;
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// Options to be communicated with Device Manager
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DevicePluginOptions options = 4;
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}
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message Empty {
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}
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// DevicePlugin is the service advertised by Device Plugins
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service DevicePlugin {
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// GetDevicePluginOptions returns options to be communicated with Device
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// Manager
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rpc GetDevicePluginOptions(Empty) returns (DevicePluginOptions) {}
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// ListAndWatch returns a stream of List of Devices
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// Whenever a Device state change or a Device disappears, ListAndWatch
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// returns the new list
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rpc ListAndWatch(Empty) returns (stream ListAndWatchResponse) {}
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// GetPreferredAllocation returns a preferred set of devices to allocate
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// from a list of available ones. The resulting preferred allocation is not
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// guaranteed to be the allocation ultimately performed by the
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// devicemanager. It is only designed to help the devicemanager make a more
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// informed allocation decision when possible.
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rpc GetPreferredAllocation(PreferredAllocationRequest) returns (PreferredAllocationResponse) {}
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// Allocate is called during container creation so that the Device
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// Plugin can run device specific operations and instruct Kubelet
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// of the steps to make the Device available in the container
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rpc Allocate(AllocateRequest) returns (AllocateResponse) {}
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// PreStartContainer is called, if indicated by Device Plugin during registeration phase,
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// before each container start. Device plugin can run device specific operations
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// such as resetting the device before making devices available to the container
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rpc PreStartContainer(PreStartContainerRequest) returns (PreStartContainerResponse) {}
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}
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// ListAndWatch returns a stream of List of Devices
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// Whenever a Device state change or a Device disappears, ListAndWatch
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// returns the new list
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message ListAndWatchResponse {
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repeated Device devices = 1;
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}
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message TopologyInfo {
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repeated NUMANode nodes = 1;
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}
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message NUMANode {
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int64 ID = 1;
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}
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/* E.g:
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* struct Device {
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* ID: "GPU-fef8089b-4820-abfc-e83e-94318197576e",
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* Health: "Healthy",
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* Topology:
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* Node:
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* ID: 1
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*} */
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message Device {
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// A unique ID assigned by the device plugin used
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// to identify devices during the communication
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// Max length of this field is 63 characters
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string ID = 1;
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// Health of the device, can be healthy or unhealthy, see constants.go
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string health = 2;
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// Topology for device
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TopologyInfo topology = 3;
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}
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// - PreStartContainer is expected to be called before each container start if indicated by plugin during registration phase.
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// - PreStartContainer allows kubelet to pass reinitialized devices to containers.
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// - PreStartContainer allows Device Plugin to run device specific operations on
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// the Devices requested
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message PreStartContainerRequest {
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repeated string devicesIDs = 1;
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}
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// PreStartContainerResponse will be send by plugin in response to PreStartContainerRequest
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message PreStartContainerResponse {
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}
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// PreferredAllocationRequest is passed via a call to GetPreferredAllocation()
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// at pod admission time. The device plugin should take the list of
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// `available_deviceIDs` and calculate a preferred allocation of size
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// 'allocation_size' from them, making sure to include the set of devices
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// listed in 'must_include_deviceIDs'.
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message PreferredAllocationRequest {
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repeated ContainerPreferredAllocationRequest container_requests = 1;
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}
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message ContainerPreferredAllocationRequest {
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// List of available deviceIDs from which to choose a preferred allocation
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repeated string available_deviceIDs = 1;
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// List of deviceIDs that must be included in the preferred allocation
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repeated string must_include_deviceIDs = 2;
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// Number of devices to include in the preferred allocation
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int32 allocation_size = 3;
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}
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// PreferredAllocationResponse returns a preferred allocation,
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// resulting from a PreferredAllocationRequest.
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message PreferredAllocationResponse {
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repeated ContainerPreferredAllocationResponse container_responses = 1;
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}
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message ContainerPreferredAllocationResponse {
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repeated string deviceIDs = 1;
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}
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// - Allocate is expected to be called during pod creation since allocation
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// failures for any container would result in pod startup failure.
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// - Allocate allows kubelet to exposes additional artifacts in a pod's
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// environment as directed by the plugin.
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// - Allocate allows Device Plugin to run device specific operations on
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// the Devices requested
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message AllocateRequest {
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repeated ContainerAllocateRequest container_requests = 1;
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}
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message ContainerAllocateRequest {
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repeated string devicesIDs = 1;
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}
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// AllocateResponse includes the artifacts that needs to be injected into
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// a container for accessing 'deviceIDs' that were mentioned as part of
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// 'AllocateRequest'.
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// Failure Handling:
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// if Kubelet sends an allocation request for dev1 and dev2.
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// Allocation on dev1 succeeds but allocation on dev2 fails.
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// The Device plugin should send a ListAndWatch update and fail the
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// Allocation request
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message AllocateResponse {
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repeated ContainerAllocateResponse container_responses = 1;
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}
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message ContainerAllocateResponse {
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// List of environment variable to be set in the container to access one of more devices.
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map<string, string> envs = 1;
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// Mounts for the container.
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repeated Mount mounts = 2;
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// Devices for the container.
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repeated DeviceSpec devices = 3;
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// Container annotations to pass to the container runtime
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map<string, string> annotations = 4;
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}
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// Mount specifies a host volume to mount into a container.
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// where device library or tools are installed on host and container
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message Mount {
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// Path of the mount within the container.
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string container_path = 1;
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// Path of the mount on the host.
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string host_path = 2;
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// If set, the mount is read-only.
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bool read_only = 3;
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}
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// DeviceSpec specifies a host device to mount into a container.
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message DeviceSpec {
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// Path of the device within the container.
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string container_path = 1;
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// Path of the device on the host.
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string host_path = 2;
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// Cgroups permissions of the device, candidates are one or more of
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// * r - allows container to read from the specified device.
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// * w - allows container to write to the specified device.
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// * m - allows container to create device files that do not yet exist.
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string permissions = 3;
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}
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