701 lines
16 KiB
Protocol Buffer
701 lines
16 KiB
Protocol Buffer
syntax = "proto3";
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package control;
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import "pkg/services/control/types.proto";
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option go_package = "git.frostfs.info/TrueCloudLab/frostfs-node/pkg/services/control";
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// `ControlService` provides an interface for internal work with the storage
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// node.
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service ControlService {
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// Performs health check of the storage node.
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rpc HealthCheck(HealthCheckRequest) returns (HealthCheckResponse);
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// Sets status of the storage node in FrostFS network map.
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rpc SetNetmapStatus(SetNetmapStatusRequest) returns (SetNetmapStatusResponse);
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// Gets status of the storage node in FrostFS network map.
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rpc GetNetmapStatus(GetNetmapStatusRequest) returns (GetNetmapStatusResponse);
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// Mark objects to be removed from node's local object storage.
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rpc DropObjects(DropObjectsRequest) returns (DropObjectsResponse);
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// Returns list that contains information about all shards of a node.
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rpc ListShards(ListShardsRequest) returns (ListShardsResponse);
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// Sets mode of the shard.
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rpc SetShardMode(SetShardModeRequest) returns (SetShardModeResponse);
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// Synchronizes all log operations for the specified tree.
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rpc SynchronizeTree(SynchronizeTreeRequest) returns (SynchronizeTreeResponse);
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// EvacuateShard moves all data from one shard to the others.
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// Deprecated: Use
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// StartShardEvacuation/GetShardEvacuationStatus/StopShardEvacuation
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rpc EvacuateShard(EvacuateShardRequest) returns (EvacuateShardResponse);
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// StartShardEvacuation starts moving all data from one shard to the others.
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rpc StartShardEvacuation(StartShardEvacuationRequest)
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returns (StartShardEvacuationResponse);
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// GetShardEvacuationStatus returns evacuation status.
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rpc GetShardEvacuationStatus(GetShardEvacuationStatusRequest)
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returns (GetShardEvacuationStatusResponse);
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// ResetShardEvacuationStatus resets evacuation status if there is no running
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// evacuation process.
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rpc ResetShardEvacuationStatus(ResetShardEvacuationStatusRequest)
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returns (ResetShardEvacuationStatusResponse);
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// StopShardEvacuation stops moving all data from one shard to the others.
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rpc StopShardEvacuation(StopShardEvacuationRequest)
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returns (StopShardEvacuationResponse);
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// FlushCache moves all data from one shard to the others.
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rpc FlushCache(FlushCacheRequest) returns (FlushCacheResponse);
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// Doctor performs storage restructuring operations on engine.
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rpc Doctor(DoctorRequest) returns (DoctorResponse);
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// Add local access policy engine overrides to a node.
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rpc AddChainLocalOverride(AddChainLocalOverrideRequest)
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returns (AddChainLocalOverrideResponse);
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// Get local access policy engine overrides stored in the node by chain id.
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rpc GetChainLocalOverride(GetChainLocalOverrideRequest)
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returns (GetChainLocalOverrideResponse);
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// List local access policy engine overrides stored in the node by container
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// id.
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rpc ListChainLocalOverrides(ListChainLocalOverridesRequest)
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returns (ListChainLocalOverridesResponse);
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// Remove local access policy engine overrides stored in the node by chaind
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// id.
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rpc RemoveChainLocalOverride(RemoveChainLocalOverrideRequest)
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returns (RemoveChainLocalOverrideResponse);
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// Remove local access policy engine overrides stored in the node by chaind
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// id.
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rpc RemoveChainLocalOverridesByTarget(
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RemoveChainLocalOverridesByTargetRequest)
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returns (RemoveChainLocalOverridesByTargetResponse);
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// List targets of the local APE overrides stored in the node.
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rpc ListTargetsLocalOverrides(ListTargetsLocalOverridesRequest)
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returns (ListTargetsLocalOverridesResponse);
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// Flush objects from write-cache and move it to degraded read only mode.
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rpc SealWriteCache(SealWriteCacheRequest) returns (SealWriteCacheResponse);
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// DetachShards detaches and closes shards.
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rpc DetachShards(DetachShardsRequest) returns (DetachShardsResponse);
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}
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// Health check request.
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message HealthCheckRequest {
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// Health check request body.
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message Body {}
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// Body of health check request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Health check request.
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message HealthCheckResponse {
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// Health check response body
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message Body {
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// Status of the storage node in FrostFS network map.
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NetmapStatus netmap_status = 1;
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// Health status of storage node application.
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HealthStatus health_status = 2;
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}
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// Body of health check response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Set netmap status request.
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message SetNetmapStatusRequest {
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// Set netmap status request body.
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message Body {
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// New storage node status in FrostFS network map.
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// If status is MAINTENANCE, the node checks whether maintenance is
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// allowed in the network settings. In case of prohibition, the request
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// is denied. Otherwise, node switches to local maintenance state. To
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// force local maintenance, use `force_maintenance` flag.
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NetmapStatus status = 1;
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// MAINTENANCE status validation skip flag. If set, node starts local
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// maintenance regardless of network settings. The flag MUST NOT be
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// set for any other status.
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bool force_maintenance = 2;
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}
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// Body of set netmap status request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Set netmap status response.
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message SetNetmapStatusResponse {
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// Set netmap status response body
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message Body {}
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// Body of set netmap status response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Get netmap status request.
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message GetNetmapStatusRequest {
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message Body {}
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// Body of set netmap status request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Get netmap status response.
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message GetNetmapStatusResponse {
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message Body {
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// Storage node status in FrostFS network map.
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NetmapStatus status = 1;
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// Network map epoch.
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uint64 epoch = 2;
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}
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// Body of get netmap status response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Request to drop the objects.
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message DropObjectsRequest {
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// Request body structure.
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message Body {
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// List of object addresses to be removed.
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// in FrostFS API binary format.
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repeated bytes address_list = 1;
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}
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// Body of the request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Response to request to drop the objects.
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message DropObjectsResponse {
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// Response body structure.
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message Body {}
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// Body of the response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Request to list all shards of the node.
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message ListShardsRequest {
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// Request body structure.
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message Body {}
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// Body of the request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// ListShards response.
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message ListShardsResponse {
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// Response body structure.
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message Body {
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// List of the node's shards.
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repeated ShardInfo shards = 1;
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}
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// Body of the response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// Request to set mode of the shard.
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message SetShardModeRequest {
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// Request body structure.
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message Body {
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// ID of the shard.
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repeated bytes shard_ID = 1;
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// Mode that requested to be set.
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ShardMode mode = 2;
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// Flag signifying whether error counter should be set to 0.
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bool resetErrorCounter = 3;
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}
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// Body of set shard mode request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// SetShardMode response.
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message SetShardModeResponse {
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// Response body structure.
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message Body {}
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// Body of set shard mode response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// SynchronizeTree request.
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message SynchronizeTreeRequest {
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// Request body structure.
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message Body {
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bytes container_id = 1;
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string tree_id = 2;
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// Starting height for the synchronization. Can be omitted.
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uint64 height = 3;
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}
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// Body of restore shard request message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// SynchronizeTree response.
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message SynchronizeTreeResponse {
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// Response body structure.
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message Body {}
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// Body of restore shard response message.
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Body body = 1;
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// Body signature.
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Signature signature = 2;
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}
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// EvacuateShard request.
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message EvacuateShardRequest {
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// Request body structure.
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message Body {
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// ID of the shard.
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repeated bytes shard_ID = 1;
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// Flag indicating whether object read errors should be ignored.
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bool ignore_errors = 2;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// EvacuateShard response.
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message EvacuateShardResponse {
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// Response body structure.
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message Body { uint32 count = 1; }
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Body body = 1;
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Signature signature = 2;
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}
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// FlushCache request.
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message FlushCacheRequest {
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// Request body structure.
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message Body {
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// ID of the shard.
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repeated bytes shard_ID = 1;
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// If true, then writecache will be left in read-only mode after flush
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// completed.
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bool seal = 2;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// FlushCache response.
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message FlushCacheResponse {
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// Response body structure.
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// Doctor request.
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message DoctorRequest {
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// Request body structure.
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message Body {
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// Number of threads to use for the operation.
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uint32 concurrency = 1;
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// Flag to search engine for duplicate objects and leave only one copy.
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bool remove_duplicates = 2;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// Doctor response.
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message DoctorResponse {
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// Response body structure.
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// StartShardEvacuation request.
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message StartShardEvacuationRequest {
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// Request body structure.
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message Body {
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enum Scope {
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NONE = 0;
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OBJECTS = 1;
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TREES = 2;
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}
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// IDs of the shards.
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repeated bytes shard_ID = 1;
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// Flag indicating whether object read errors should be ignored.
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bool ignore_errors = 2;
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// Evacuation scope.
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uint32 scope = 3;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// StartShardEvacuation response.
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message StartShardEvacuationResponse {
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// Response body structure.
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// GetShardEvacuationStatus request.
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message GetShardEvacuationStatusRequest {
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// Request body structure.
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// GetShardEvacuationStatus response.
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message GetShardEvacuationStatusResponse {
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// Response body structure.
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message Body {
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// Evacuate status enum.
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enum Status {
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EVACUATE_SHARD_STATUS_UNDEFINED = 0;
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RUNNING = 1;
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COMPLETED = 2;
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}
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// Unix timestamp value.
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message UnixTimestamp { int64 value = 1; }
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// Duration in seconds.
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message Duration { int64 seconds = 1; }
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// Total objects to evacuate count. The value is approximate, so evacuated +
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// failed + skipped == total is not guaranteed after completion.
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uint64 total_objects = 1;
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// Evacuated objects count.
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uint64 evacuated_objects = 2;
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// Failed objects count.
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uint64 failed_objects = 3;
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// Shard IDs.
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repeated bytes shard_ID = 4;
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// Evacuation process status.
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Status status = 5;
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// Evacuation process duration.
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Duration duration = 6;
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// Evacuation process started at timestamp.
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UnixTimestamp started_at = 7;
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// Error message if evacuation failed.
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string error_message = 8;
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// Skipped objects count.
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uint64 skipped_objects = 9;
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// Total trees to evacuate count.
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uint64 total_trees = 10;
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// Evacuated trees count.
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uint64 evacuated_trees = 11;
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// Failed trees count.
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uint64 failed_trees = 12;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// ResetShardEvacuationStatus request.
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message ResetShardEvacuationStatusRequest {
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// ResetShardEvacuationStatus response.
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message ResetShardEvacuationStatusResponse {
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// StopShardEvacuation request.
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message StopShardEvacuationRequest {
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// Request body structure.
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// StopShardEvacuation response.
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message StopShardEvacuationResponse {
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// Response body structure.
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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// AddChainLocalOverride request.
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message AddChainLocalOverrideRequest {
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message Body {
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// Target for which the overrides are applied.
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ChainTarget target = 1;
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// Serialized rule chain. If chain ID is left empty
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// in the chain, then it will be generated and returned
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// in the response.
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bytes chain = 2;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// AddChainLocalOverride response.
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message AddChainLocalOverrideResponse {
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message Body {
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// Chain ID assigned for the added rule chain.
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// If chain ID is left empty in the request, then
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// it will be generated.
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bytes chain_id = 1;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// GetChainLocalOverride request.
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message GetChainLocalOverrideRequest {
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message Body {
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// Target for which the overrides are applied.
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ChainTarget target = 1;
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// Chain ID assigned for the added rule chain.
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bytes chain_id = 2;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// GetChainLocalOverride response.
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message GetChainLocalOverrideResponse {
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message Body {
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// Serialized rule chain.
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bytes chain = 1;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// ListChainLocalOverrides request.
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message ListChainLocalOverridesRequest {
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message Body {
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// Target for which the overrides are applied.
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ChainTarget target = 1;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// ListChainLocalOverrides response.
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message ListChainLocalOverridesResponse {
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message Body {
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// The list of serialized rule chain.
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repeated bytes chains = 1;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// ListTargetsLocalOverrides request.
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message ListTargetsLocalOverridesRequest {
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message Body {
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// Target for which the overrides are applied.
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string chainName = 1;
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}
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Body body = 1;
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Signature signature = 2;
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}
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// ListTargetsLocalOverrides response.
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message ListTargetsLocalOverridesResponse {
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message Body {
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// The list of chain targets.
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repeated ChainTarget targets = 1;
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}
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Body body = 1;
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Signature signature = 2;
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}
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message RemoveChainLocalOverrideRequest {
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message Body {
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// Target for which the overrides are applied.
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ChainTarget target = 1;
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// Chain ID assigned for the added rule chain.
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bytes chain_id = 2;
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}
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Body body = 1;
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Signature signature = 2;
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}
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message RemoveChainLocalOverrideResponse {
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message Body {}
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Body body = 1;
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Signature signature = 2;
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}
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message RemoveChainLocalOverridesByTargetRequest {
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message Body {
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// Target for which the overrides are applied.
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ChainTarget target = 1;
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}
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Body body = 1;
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Signature signature = 2;
|
|
}
|
|
|
|
message RemoveChainLocalOverridesByTargetResponse {
|
|
message Body {}
|
|
|
|
Body body = 1;
|
|
|
|
Signature signature = 2;
|
|
}
|
|
|
|
message SealWriteCacheRequest {
|
|
// Request body structure.
|
|
message Body {
|
|
// ID of the shard.
|
|
repeated bytes shard_ID = 1;
|
|
|
|
// Flag indicating whether object read errors should be ignored.
|
|
bool ignore_errors = 2;
|
|
|
|
// Flag indicating whether writecache will be sealed async.
|
|
bool async = 3;
|
|
|
|
// If true, then writecache will be sealed, but mode will be restored to the current one.
|
|
bool restore_mode = 4;
|
|
|
|
// If true, then writecache will shrink internal storage.
|
|
bool shrink = 5;
|
|
}
|
|
|
|
Body body = 1;
|
|
Signature signature = 2;
|
|
}
|
|
|
|
message SealWriteCacheResponse {
|
|
message Body {
|
|
message Status {
|
|
bytes shard_ID = 1;
|
|
bool success = 2;
|
|
string error = 3;
|
|
}
|
|
repeated Status results = 1;
|
|
}
|
|
|
|
Body body = 1;
|
|
|
|
Signature signature = 2;
|
|
}
|
|
|
|
message DetachShardsRequest {
|
|
message Body { repeated bytes shard_ID = 1; }
|
|
|
|
Body body = 1;
|
|
Signature signature = 2;
|
|
}
|
|
|
|
message DetachShardsResponse {
|
|
message Body {}
|
|
|
|
Body body = 1;
|
|
|
|
Signature signature = 2;
|
|
}
|