Update object package docs
Signed-off-by: Stanislav Bogatyrev <stanislav@nspcc.ru>
This commit is contained in:
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3f6c211fef
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2 changed files with 177 additions and 161 deletions
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@ -9,93 +9,98 @@ import "object/types.proto";
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import "refs/types.proto";
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import "session/types.proto";
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// Object service provides API for manipulating with the object.
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// `ObjectService` provides API for manipulating objects. Object operations do
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// not interact with sidechain and are only served by nodes in p2p style.
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service ObjectService {
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// Get the object from container. Response uses gRPC stream. First response
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// message carry object of requested address. Chunk messages are parts of
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// the object's payload if it is needed. All messages except first carry
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// chunks. Requested object can be restored by concatenation of object
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// message payload and all chunks keeping receiving order.
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// Receive full object structure, including Headers and payload. Response uses
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// gRPC stream. First response message carries object with requested address.
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// Chunk messages are parts of the object's payload if it is needed. All
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// messages, except the first one, carry payload chunks. Requested object can
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// be restored by concatenation of object message payload and all chunks
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// keeping receiving order.
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rpc Get(GetRequest) returns (stream GetResponse);
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// Put the object into container. Request uses gRPC stream. First message
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// SHOULD BE type of PutHeader. Container id and Owner id of object SHOULD
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// BE set. Session token SHOULD BE obtained before put operation (see
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// session package). Chunk messages considered by server as part of object
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// payload. All messages except first SHOULD BE chunks. Chunk messages
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// SHOULD BE sent in direct order of fragmentation.
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// SHOULD be of PutHeader type. `ContainerID` and `OwnerID` of an object
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// SHOULD be set. Session token SHOULD be obtained before `PUT` operation (see
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// session package). Chunk messages are considered by server as a part of an
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// object payload. All messages, except first one, SHOULD be payload chunks.
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// Chunk messages SHOULD be sent in direct order of fragmentation.
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rpc Put(stream PutRequest) returns (PutResponse);
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// Delete the object from a container
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// Delete the object from a container. There is no immediate removal
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// guarantee. Object will be marked for removal and deleted eventually.
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rpc Delete(DeleteRequest) returns (DeleteResponse);
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// Head returns the object without data payload. Object in the
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// response has system header only. If full headers flag is set, extended
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// headers are also present.
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// Returns the object Headers without data payload. By default full header is
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// returned. If `main_only` request field is set, the short header with only
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// the very minimal information would be returned instead.
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rpc Head(HeadRequest) returns (HeadResponse);
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// Search objects in container. Version of query language format SHOULD BE
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// set to 1. Search query represented in serialized format (see query
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// package).
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// Search objects in container. Search query allows to match by Object
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// Header's filed values. Please see the corresponding NeoFS Technical
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// Specification section for more details.
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rpc Search(SearchRequest) returns (stream SearchResponse);
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// GetRange of data payload. Range is a pair (offset, length).
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// Requested range can be restored by concatenation of all chunks
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// keeping receiving order.
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// Get byte range of data payload. Range is set as an (offset, length) tuple.
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// Like in `Get` method, the response uses gRPC stream. Requested range can be
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// restored by concatenation of all received payload chunks keeping receiving
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// order.
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rpc GetRange(GetRangeRequest) returns (stream GetRangeResponse);
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// GetRangeHash returns homomorphic hash of object payload range after XOR
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// operation. Ranges are set of pairs (offset, length). Hashes order in
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// response corresponds to ranges order in request. Homomorphic hash is
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// calculated for XORed data.
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// Returns homomorphic or regular hash of object's payload range after
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// applying XOR operation with the provided `salt`. Ranges are set of (offset,
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// length) tuples. Hashes order in response corresponds to ranges order in
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// request. Note that hash is calculated for XORed data.
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rpc GetRangeHash(GetRangeHashRequest) returns (GetRangeHashResponse);
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}
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// Get object request
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// GET object request
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message GetRequest {
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// Request body
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// GET Object request body
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message Body {
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// Address of the requested object.
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// Address of the requested object
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neo.fs.v2.refs.Address address = 1;
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// Carries the raw option flag of the request.
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// Raw request is sent to receive only the objects
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// that are physically stored on the server.
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// If `raw` flag is set, request will work only with objects that are
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// physically stored on the peer node
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bool raw = 2;
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}
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// Body of get object request message.
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Body body = 1;
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// Carries request meta information. Header data is used only to regulate message
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// transport and does not affect request execution.
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// Carries request meta information. Header data is used only to regulate
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// message transport and does not affect request execution.
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neo.fs.v2.session.RequestMetaHeader meta_header = 2;
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// Carries request verification information. This header is used to authenticate
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// the nodes of the message route and check the correctness of transmission.
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// Carries request verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
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}
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// get object response
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// GET object response
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message GetResponse {
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// Response body
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// GET Object Response body
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message Body {
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// Initialization parameters of the object got from NeoFS.
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// Initial part of the `Object` structure stream. Technically it's a
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// set of all `Object` structure's fields except `payload`.
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message Init {
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// Object ID
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// Object's unique identifier.
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neo.fs.v2.refs.ObjectID object_id = 1;
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// Object signature
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// Signed `ObjectID`
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neo.fs.v2.refs.Signature signature = 2;
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// Object header.
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// Object metadata headers
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Header header = 3;
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}
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// Carries the single message of the response stream.
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// Single message in the response stream.
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oneof object_part {
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// Initialization parameters of the object stream.
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// Initial part of the object stream
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Init init = 1;
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// Part of the object payload.
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// Chunked object payload
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bytes chunk = 2;
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}
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}
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@ -107,58 +112,58 @@ message GetResponse {
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neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
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// Carries response verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness
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// of transmission.
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
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}
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// Put object request
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// PUT object request
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message PutRequest {
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// Request body
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// PUT request body
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message Body {
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// Groups initialization parameters of object placement in NeoFS.
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// Newly created object structure parameters. If some optional parameters
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// are not set, they will be calculated by a peer node.
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message Init {
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// Object ID, where available
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// ObjectID if available.
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neo.fs.v2.refs.ObjectID object_id = 1;
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// Object signature, were available
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// Object signature if available
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neo.fs.v2.refs.Signature signature = 2;
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// Header of the object to save in the system.
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// Object's Header
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Header header = 3;
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// Number of the object copies to store within the RPC call.
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// Default zero value is processed according to the
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// container placement rules.
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// Number of the object copies to store within the RPC call. By default
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// object is processed according to the container's placement policy.
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uint32 copies_number = 4;
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}
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// Carries the single part of the query stream.
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// Single message in the request stream.
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oneof object_part {
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// Carries the initialization parameters of the object stream.
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// Initial part of the object stream
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Init init = 1;
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// Carries part of the object payload.
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// Chunked object payload
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bytes chunk = 2;
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}
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}
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// Body of put object request message.
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Body body = 1;
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// Carries request meta information. Header data is used only to regulate message
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// transport and does not affect request execution.
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// Carries request meta information. Header data is used only to regulate
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// message transport and does not affect request execution.
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neo.fs.v2.session.RequestMetaHeader meta_header = 2;
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// Carries request verification information. This header is used to authenticate
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// the nodes of the message route and check the correctness of transmission.
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// Carries request verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
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}
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// Put object response
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// PUT Object response
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message PutResponse {
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// Response body
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// PUT Object response body
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message Body {
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// Carries identifier of the saved object.
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// It is used to access an object in the container.
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// Identifier of the saved object
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neo.fs.v2.refs.ObjectID object_id = 1;
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}
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// Body of put object response message.
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@ -169,34 +174,35 @@ message PutResponse {
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neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
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// Carries response verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness
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// of transmission.
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
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}
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// Object Delete request
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// Object DELETE request
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message DeleteRequest {
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// Request body
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// Object DELETE request body
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message Body {
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// Carries the address of the object to be deleted.
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// Address of the object to be deleted
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neo.fs.v2.refs.Address address = 1;
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}
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// Body of delete object request message.
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Body body = 1;
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// Carries request meta information. Header data is used only to regulate message
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// transport and does not affect request execution.
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// Carries request meta information. Header data is used only to regulate
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// message transport and does not affect request execution.
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neo.fs.v2.session.RequestMetaHeader meta_header = 2;
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// Carries request verification information. This header is used to authenticate
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// the nodes of the message route and check the correctness of transmission.
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// Carries request verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
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}
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// DeleteResponse is empty because we cannot guarantee permanent object removal
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// in distributed system.
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// DeleteResponse body is empty because we cannot guarantee permanent object
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// removal in distributed system.
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message DeleteResponse {
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// Response body
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// Object DELETE Response has an empty body.
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message Body { }
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// Body of delete object response message.
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@ -207,57 +213,60 @@ message DeleteResponse {
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neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
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// Carries response verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness
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// of transmission.
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
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}
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// Object head request
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// Object HEAD request
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message HeadRequest {
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// Request body
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// Object HEAD request body
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message Body {
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// Address of the object with the requested header.
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// Address of the object with the requested Header
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neo.fs.v2.refs.Address address = 1;
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// Return only minimal header subset
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bool main_only = 2;
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// Carries the raw option flag of the request.
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// Raw request is sent to receive only the headers of the objects
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// that are physically stored on the server.
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// If `raw` flag is set, request will work only with objects that are
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// physically stored on the peer node
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bool raw = 3;
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}
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// Body of head object request message.
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Body body = 1;
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// Carries request meta information. Header data is used only to regulate message
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// transport and does not affect request execution.
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// Carries request meta information. Header data is used only to regulate
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// message transport and does not affect request execution.
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neo.fs.v2.session.RequestMetaHeader meta_header = 2;
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// Carries request verification information. This header is used to authenticate
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// the nodes of the message route and check the correctness of transmission.
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// Carries request verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
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}
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// Tuple of full object header and signature of object ID.
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// Tuple of full object header and signature of `ObjectID`. \
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// Signed `ObjectID` is present to verify full header's authenticity through the
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// following steps:
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//
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// 1. Calculate `SHA-256` of marshalled `Header` structure
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// 2. Check if the resulting hash matched `ObjectID`
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// 3. Check if `ObjectID` signature in `signature` field is correct
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message HeaderWithSignature {
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// Full object header
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Header header = 1;
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// Signed object_id to verify full header's authenticity through following steps:
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// 1. Calculate SHA-256 of marshalled Headers structure.
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// 2. Check if the resulting hash matched ObjectID
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// 3. Check if ObjectID's signature in signature field is correct.
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// Signed `ObjectID` to verify full header's authenticity
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neo.fs.v2.refs.Signature signature = 2;
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}
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// Head response
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// Object HEAD response
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message HeadResponse {
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// Response body
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// Object HEAD response body
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message Body {
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// Carries the requested object header or it's part
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// Requested object header or it's part.
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oneof head{
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// Full object header with object ID signature
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// Full object's `Header` with `ObjectID` signature
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HeaderWithSignature header = 1;
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// Short object header
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@ -272,16 +281,16 @@ message HeadResponse {
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neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
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// Carries response verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness
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// of transmission.
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
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}
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// Search objects request
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// Object Search request
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message SearchRequest {
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// Request body
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// Object Search request body
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message Body {
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// Carries search container identifier.
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// Container identifier were to search
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neo.fs.v2.refs.ContainerID container_id = 1;
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// Version of the Query Language used
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// Body of search object request message.
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Body body = 1;
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// Carries request meta information. Header data is used only to regulate message
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// transport and does not affect request execution.
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// Carries request meta information. Header data is used only to regulate
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// message transport and does not affect request execution.
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neo.fs.v2.session.RequestMetaHeader meta_header = 2;
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// Carries request verification information. This header is used to authenticate
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// the nodes of the message route and check the correctness of transmission.
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// Carries request verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
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}
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// Search response
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message SearchResponse {
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// Response body
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// Object Search response body
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message Body {
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// Carries list of object identifiers that match the search query
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// List of `ObjectID`s that match the search query
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repeated neo.fs.v2.refs.ObjectID id_list = 1;
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}
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// Body of search object response message.
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neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
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// Carries response verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness
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// of transmission.
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
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}
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// Range groups the parameters of object payload range.
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// Object payload range.Ranges of zero length SHOULD be considered as invalid.
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message Range {
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// Carries the offset of the range from the object payload start.
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// Offset of the range from the object payload start
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uint64 offset = 1;
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// Carries the length of the object payload range.
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// Length in bytes of the object payload range
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uint64 length = 2;
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}
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// Request to get part of object's payload
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// Request part of object's payload
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message GetRangeRequest {
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// Request Body
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// Byte range of object's payload request body
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message Body {
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// Address carries address of the object that contains the requested payload range.
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// Address of the object containing the requested payload range
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neo.fs.v2.refs.Address address = 1;
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// Range carries the parameters of the requested payload range.
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// Requested payload range
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Range range = 2;
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}
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// Body of get range object request message.
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Body body = 1;
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// Carries request meta information. Header data is used only to regulate message
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// transport and does not affect request execution.
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// Carries request meta information. Header data is used only to regulate
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// message transport and does not affect request execution.
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neo.fs.v2.session.RequestMetaHeader meta_header = 2;
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// Carries request verification information. This header is used to authenticate
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// the nodes of the message route and check the correctness of transmission.
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// Carries request verification information. This header is used to
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// authenticate the nodes of the message route and check the correctness of
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// transmission.
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neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
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}
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// Get part of object's payload
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message GetRangeResponse {
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// Response body
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// Get Range response body uses streams to transfer the response. Because
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// object payload considered a byte sequence, there is no need to have some
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// initial preamble message. The requested byte range is sent as a series
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// chunks.
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message Body {
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// Carries part of the object payload.
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// Chunked object payload's range
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bytes chunk = 1;
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}
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@ -380,22 +394,22 @@ message GetRangeResponse {
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neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
|
||||
|
||||
// Carries response verification information. This header is used to
|
||||
// authenticate the nodes of the message route and check the correctness
|
||||
// of transmission.
|
||||
// authenticate the nodes of the message route and check the correctness of
|
||||
// transmission.
|
||||
neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
|
||||
}
|
||||
|
||||
// Get hash of object's payload part
|
||||
message GetRangeHashRequest {
|
||||
// Request body
|
||||
// Get hash of object's payload part request body.
|
||||
message Body {
|
||||
// Carries address of the object that contains the requested payload range.
|
||||
// Address of the object that containing the requested payload range
|
||||
neo.fs.v2.refs.Address address = 1;
|
||||
|
||||
// Carries the list of object payload range to calculate homomorphic hash.
|
||||
// List of object's payload ranges to calculate homomorphic hash
|
||||
repeated Range ranges = 2;
|
||||
|
||||
// Carries binary salt to XOR object payload ranges before hash calculation.
|
||||
// Binary salt to XOR object's payload ranges before hash calculation
|
||||
bytes salt = 3;
|
||||
|
||||
// Checksum algorithm type
|
||||
|
@ -404,23 +418,24 @@ message GetRangeHashRequest {
|
|||
// Body of get range hash object request message.
|
||||
Body body = 1;
|
||||
|
||||
// Carries request meta information. Header data is used only to regulate message
|
||||
// transport and does not affect request execution.
|
||||
// Carries request meta information. Header data is used only to regulate
|
||||
// message transport and does not affect request execution.
|
||||
neo.fs.v2.session.RequestMetaHeader meta_header = 2;
|
||||
|
||||
// Carries request verification information. This header is used to authenticate
|
||||
// the nodes of the message route and check the correctness of transmission.
|
||||
// Carries request verification information. This header is used to
|
||||
// authenticate the nodes of the message route and check the correctness of
|
||||
// transmission.
|
||||
neo.fs.v2.session.RequestVerificationHeader verify_header = 3;
|
||||
}
|
||||
|
||||
// Get hash of object's payload part
|
||||
message GetRangeHashResponse {
|
||||
// Response body
|
||||
// Get hash of object's payload part response body.
|
||||
message Body {
|
||||
// Checksum algorithm type
|
||||
neo.fs.v2.refs.ChecksumType type = 1;
|
||||
|
||||
// List of range hashes in a binary format.
|
||||
// List of range hashes in a binary format
|
||||
repeated bytes hash_list = 2;
|
||||
}
|
||||
// Body of get range hash object response message.
|
||||
|
@ -431,7 +446,7 @@ message GetRangeHashResponse {
|
|||
neo.fs.v2.session.ResponseMetaHeader meta_header = 2;
|
||||
|
||||
// Carries response verification information. This header is used to
|
||||
// authenticate the nodes of the message route and check the correctness
|
||||
// of transmission.
|
||||
// authenticate the nodes of the message route and check the correctness of
|
||||
// transmission.
|
||||
neo.fs.v2.session.ResponseVerificationHeader verify_header = 3;
|
||||
}
|
||||
|
|
|
@ -8,7 +8,7 @@ option csharp_namespace = "NeoFS.API.v2.Object";
|
|||
import "refs/types.proto";
|
||||
import "session/types.proto";
|
||||
|
||||
// Type of the object payload content
|
||||
// Type of the object payload content.
|
||||
enum ObjectType {
|
||||
// Just a normal object
|
||||
REGULAR = 0;
|
||||
|
@ -16,7 +16,7 @@ enum ObjectType {
|
|||
// Used internally to identify deleted objects
|
||||
TOMBSTONE = 1;
|
||||
|
||||
// Identifies that the object holds StorageGroup information
|
||||
// StorageGroup information
|
||||
STORAGE_GROUP = 2;
|
||||
}
|
||||
|
||||
|
@ -30,7 +30,8 @@ enum MatchType {
|
|||
|
||||
// Short header fields
|
||||
message ShortHeader {
|
||||
// Object format version.
|
||||
// Object format version. Effectively the version of API library used to
|
||||
// create particular object
|
||||
neo.fs.v2.refs.Version version = 1;
|
||||
|
||||
// Epoch when the object was created
|
||||
|
@ -43,14 +44,14 @@ message ShortHeader {
|
|||
ObjectType object_type = 4;
|
||||
|
||||
// Size of payload in bytes.
|
||||
// 0xFFFFFFFFFFFFFFFF means `payload_length` is unknown
|
||||
// `0xFFFFFFFFFFFFFFFF` means `payload_length` is unknown
|
||||
uint64 payload_length = 5;
|
||||
}
|
||||
|
||||
// Object Headers
|
||||
// Object Header
|
||||
message Header {
|
||||
// Object format version.
|
||||
// Effectively the version of API library used to create particular object
|
||||
// Object format version. Effectively the version of API library used to
|
||||
// create particular object
|
||||
neo.fs.v2.refs.Version version = 1;
|
||||
|
||||
// Object's container
|
||||
|
@ -63,20 +64,20 @@ message Header {
|
|||
uint64 creation_epoch = 4;
|
||||
|
||||
// Size of payload in bytes.
|
||||
// 0xFFFFFFFFFFFFFFFF means `payload_length` is unknown
|
||||
// `0xFFFFFFFFFFFFFFFF` means `payload_length` is unknown
|
||||
uint64 payload_length = 5;
|
||||
|
||||
// Hash of payload bytes
|
||||
neo.fs.v2.refs.Checksum payload_hash = 6;
|
||||
|
||||
// Special object type
|
||||
// Type of the object payload content
|
||||
ObjectType object_type = 7;
|
||||
|
||||
// Homomorphic hash of the object payload.
|
||||
neo.fs.v2.refs.Checksum homomorphic_hash = 8;
|
||||
|
||||
// Session token, if it was used during Object creation.
|
||||
// Need it to verify integrity and authenticity out of Request scope.
|
||||
// Session token, if it was used during Object creation. Need it to verify
|
||||
// integrity and authenticity out of Request scope.
|
||||
neo.fs.v2.session.SessionToken session_token = 9;
|
||||
|
||||
// `Attribute` is a user-defined Key-Value metadata pair attached to the
|
||||
|
@ -99,14 +100,15 @@ message Header {
|
|||
// User-defined object attributes
|
||||
repeated Attribute attributes = 10;
|
||||
|
||||
// Information about spawning the objects through a payload splitting.
|
||||
// Bigger objects can be split into a chain of smaller objects. Information
|
||||
// about inter-dependencies between spawned objects and how to re-construct
|
||||
// the original one is in the `Split` headers. Parent and children objects
|
||||
// must be within the same container.
|
||||
message Split {
|
||||
// Identifier of the origin object.
|
||||
// Parent and children objects must be within the same container.
|
||||
// Parent object_id is known only to the minor child.
|
||||
// Identifier of the origin object. Known only to the minor child.
|
||||
neo.fs.v2.refs.ObjectID parent = 1;
|
||||
|
||||
// Previous carries identifier of the left split neighbor.
|
||||
// Identifier of the left split neighbor
|
||||
neo.fs.v2.refs.ObjectID previous = 2;
|
||||
|
||||
// `signature` field of the parent object. Used to reconstruct parent.
|
||||
|
@ -115,19 +117,18 @@ message Header {
|
|||
// `header` field of the parent object. Used to reconstruct parent.
|
||||
Header parent_header = 4;
|
||||
|
||||
// Children carries list of identifiers of the objects generated by splitting the current.
|
||||
// List of identifiers of the objects generated by splitting current one.
|
||||
repeated neo.fs.v2.refs.ObjectID children = 5;
|
||||
}
|
||||
// Position of the object in the split hierarchy.
|
||||
// Position of the object in the split hierarchy
|
||||
Split split = 11;
|
||||
}
|
||||
|
||||
// Object structure.
|
||||
// Object structure. Object is immutable and content-addressed. It means
|
||||
// `ObjectID` will change if header or payload changes. It's calculated as a
|
||||
// hash of header field, which contains hash of object's payload.
|
||||
message Object {
|
||||
// Object's unique identifier.
|
||||
// Object is content-addressed. It means id will change if header or payload
|
||||
// changes. It's calculated as a hash of header field, which contains hash of
|
||||
// object's payload
|
||||
neo.fs.v2.refs.ObjectID object_id = 1;
|
||||
|
||||
// Signed object_id
|
||||
|
|
Loading…
Reference in a new issue