mirror of
https://source.quilibrium.com/quilibrium/ceremonyclient.git
synced 2024-12-25 08:05:17 +00:00
a0659fec83
* add version label and trim repo url * add README for protobufs * add version to NodeInfoResponse * add docker login task * remove version from docker compose file * return version with GetNodeInfo response * add basic -node-info flag * print max frame as well with -node-info * expand protobuf README * update node command examples to use node binary and make log commands follow * return all of NodeInfo * extract FormatVersion * print version of running process
238 lines
7.4 KiB
Protocol Buffer
238 lines
7.4 KiB
Protocol Buffer
syntax = "proto3";
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package quilibrium.node.node.pb;
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option go_package = "source.quilibrium.com/quilibrium/monorepo/node/protobufs";
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import "clock.proto";
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message GetFramesRequest {
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bytes filter = 1;
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uint64 from_frame_number = 2;
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uint64 to_frame_number = 3;
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bool include_candidates = 4;
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}
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message GetFrameInfoRequest {
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bytes filter = 1;
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uint64 frame_number = 2;
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bytes selector = 3;
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}
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message GetPeerInfoRequest {}
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message GetNodeInfoRequest {}
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message GetNetworkInfoRequest {}
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message FramesResponse {
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repeated quilibrium.node.clock.pb.ClockFrame truncated_clock_frames = 1;
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}
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message FrameInfoResponse {
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quilibrium.node.clock.pb.ClockFrame clock_frame = 1;
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}
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message PeerInfo {
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bytes peer_id = 1;
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repeated string multiaddrs = 2;
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uint64 max_frame = 3;
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int64 timestamp = 4;
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bytes version = 5;
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bytes signature = 6;
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bytes public_key = 7;
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bytes total_distance = 8;
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}
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message PeerInfoResponse {
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repeated PeerInfo peer_info = 1;
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repeated PeerInfo uncooperative_peer_info = 2;
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}
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message NetworkInfo {
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bytes peer_id = 1;
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repeated string multiaddrs = 2;
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double peer_score = 3;
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}
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message NodeInfoResponse {
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string peer_id = 1;
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uint64 max_frame = 2;
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uint64 peer_score = 3;
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bytes version = 4;
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}
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message PutPeerInfoRequest {
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repeated PeerInfo peer_info = 1;
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repeated PeerInfo uncooperative_peer_info = 2;
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}
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message PutNodeInfoRequest {
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string peer_id = 1;
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uint64 max_frame = 2;
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uint64 peer_score = 3;
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bytes signature = 4;
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}
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message PutResponse {}
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message NetworkInfoResponse {
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repeated NetworkInfo network_info = 1;
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}
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message GetTokenInfoRequest {}
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message TokenInfoResponse {
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// Total active token supply, as a 256 bit integer representing maximum
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// divisble units. 1 QUIL = 8000000000 units, 50 QUIL would be represented by
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// 0x0000000000000000000000000000000000000000000000000000005D21DBA000
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bytes confirmed_token_supply = 1;
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// Total token supply, including unconfirmed frame data, as a 256 bit integer.
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bytes unconfirmed_token_supply = 2;
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// The total number of tokens owned by the prover address associated with the
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// node.
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bytes owned_tokens = 3;
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// The total number of tokens owned by the prover address associated with the
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// node, including unconfirmed frame data.
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bytes unconfirmed_owned_tokens = 4;
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}
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message Capability {
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// A general protocol identifier as a uint32 – this is expected to rarely
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// iterate, and should be uniquely identifying both protocol and version.
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// Pragmatically speaking, this implies that the least significant byte
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// specifies version (which should iterate most minimally), and the three most
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// significant bytes should specify protocol. Recipients SHOULD ignore
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// messages with incompatible protocol identifiers, but also SHOULD warn on
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// identifiers with versions higher than the supported protocol. A large
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// number of unsupported protocol messages may indicate spam/some other
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// attack, whereas a large number of unsupported protocol versions may
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// indicate an out of date client, respective to which side is the maximum of
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// the version number.
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uint32 protocol_identifier = 1;
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// An optional bundle of information specific to the capability – used for
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// extensibility in negotiating variations of a protocol – e.g. Triple-Ratchet
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// but only for certain curve types.
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bytes additional_metadata = 2;
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}
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message SelfTestReport {
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// The difficulty the self test was conducted under
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uint32 difficulty = 1;
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// The resulting local time of computing the VDF test under the difficulty
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int64 difficulty_metric = 2;
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// The resulting local time of computing a KZG commitment for a 16 degree
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// polynomial
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int64 commit_16_metric = 3;
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// The resulting local time of computing a KZG commitment for a 128 degree
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// polynomial
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int64 commit_128_metric = 4;
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// The resulting local time of computing a KZG commitment for a 1024 degree
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// polynomial
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int64 commit_1024_metric = 5;
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// The resulting local time of computing a KZG commitment for a 65536 degree
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// polynomial
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int64 commit_65536_metric = 6;
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// The resulting local time of computing a KZG proof for a 16 degree
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// polynomial
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int64 proof_16_metric = 7;
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// The resulting local time of computing a KZG proof for a 128 degree
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// polynomial
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int64 proof_128_metric = 8;
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// The resulting local time of computing a KZG proof for a 1024 degree
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// polynomial
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int64 proof_1024_metric = 9;
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// The resulting local time of computing a KZG proof for a 65536 degree
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// polynomial
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int64 proof_65536_metric = 10;
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// The number of reported accessible cores
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uint32 cores = 11;
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// The total available memory
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bytes memory = 12;
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// The total available storage
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bytes storage = 13;
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// The list of supported capabilities
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repeated Capability capabilities = 14;
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// The highest master frame the node has
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uint64 master_head_frame = 15;
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}
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message ValidationMessage {
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bytes validation = 1;
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}
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message SyncRequest {
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quilibrium.node.clock.pb.ClockFramesRequest frames_request = 1;
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}
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message SyncResponse {
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quilibrium.node.clock.pb.ClockFramesResponse frames_response = 1;
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}
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service ValidationService {
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rpc PerformValidation(ValidationMessage) returns (ValidationMessage);
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rpc Sync(SyncRequest) returns (stream SyncResponse);
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}
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message GetPeerManifestsRequest {}
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message PeerManifest {
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bytes peer_id = 1;
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// The difficulty the self test was conducted under
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uint32 difficulty = 2;
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// The resulting local time of computing the VDF test under the difficulty
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int64 difficulty_metric = 3;
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// The resulting local time of computing a KZG commitment for a 16 degree
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// polynomial
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int64 commit_16_metric = 4;
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// The resulting local time of computing a KZG commitment for a 128 degree
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// polynomial
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int64 commit_128_metric = 5;
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// The resulting local time of computing a KZG commitment for a 1024 degree
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// polynomial
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int64 commit_1024_metric = 6;
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// The resulting local time of computing a KZG commitment for a 65536 degree
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// polynomial
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int64 commit_65536_metric = 7;
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// The resulting local time of computing a KZG proof for a 16 degree
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// polynomial
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int64 proof_16_metric = 8;
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// The resulting local time of computing a KZG proof for a 128 degree
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// polynomial
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int64 proof_128_metric = 9;
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// The resulting local time of computing a KZG proof for a 1024 degree
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// polynomial
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int64 proof_1024_metric = 10;
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// The resulting local time of computing a KZG proof for a 65536 degree
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// polynomial
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int64 proof_65536_metric = 11;
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// The number of reported accessible cores
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uint32 cores = 12;
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// The total available memory
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bytes memory = 13;
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// The total available storage
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bytes storage = 14;
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// The list of supported capabilities
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repeated Capability capabilities = 15;
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// The highest master frame the node has
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uint64 master_head_frame = 16;
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}
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message PeerManifestsResponse {
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repeated PeerManifest peer_manifests = 1;
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}
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service NodeService {
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rpc GetFrames(GetFramesRequest) returns (FramesResponse);
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rpc GetFrameInfo(GetFrameInfoRequest) returns (FrameInfoResponse);
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rpc GetPeerInfo(GetPeerInfoRequest) returns (PeerInfoResponse);
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rpc GetNodeInfo(GetNodeInfoRequest) returns (NodeInfoResponse);
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rpc GetNetworkInfo(GetNetworkInfoRequest) returns (NetworkInfoResponse);
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rpc GetTokenInfo(GetTokenInfoRequest) returns (TokenInfoResponse);
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rpc GetPeerManifests(GetPeerManifestsRequest) returns (PeerManifestsResponse);
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}
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service NodeStats {
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rpc PutNodeInfo(PutNodeInfoRequest) returns (PutResponse);
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rpc PutPeerInfo(PutPeerInfoRequest) returns (PutResponse);
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} |