forked from TrueCloudLab/frostfs-api
[#38] Change ObjectID format from UUID to Hash
NeoFS Object are now Content-addressed. It means the Object's address depends on it's content. ObjectID is now calculated as hash of Header, which contains a hash of payload. If either if Object's payload of Headers change, the ID will also change. Signed-off-by: Stanislav Bogatyrev <stanislav@nspcc.ru>
This commit is contained in:
parent
66c58e45e8
commit
818ec7f0dc
7 changed files with 130 additions and 157 deletions
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@ -56,8 +56,7 @@ message EACLRecord {
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enum Header {
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enum Header {
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HEADER_UNKNOWN = 0;
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HEADER_UNKNOWN = 0;
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REQUEST = 1;
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REQUEST = 1;
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OBJECT_SYSTEM = 2;
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OBJECT = 2;
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OBJECT_USER = 3;
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}
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}
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// Header carries type of header.
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// Header carries type of header.
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@ -5,8 +5,8 @@ package container;
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option go_package = "github.com/nspcc-dev/neofs-api-go/container";
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option go_package = "github.com/nspcc-dev/neofs-api-go/container";
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option csharp_namespace = "NeoFS.API.Container";
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option csharp_namespace = "NeoFS.API.Container";
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import "refs/types.proto";
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import "netmap/types.proto";
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import "netmap/types.proto";
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import "refs/types.proto";
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// Container is a structure that defines object placement behaviour. Objects
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// Container is a structure that defines object placement behaviour. Objects
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// can be stored only within containers. They define placement rule, attributes
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// can be stored only within containers. They define placement rule, attributes
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@ -54,7 +54,7 @@ service Service {
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message GetRequest {
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message GetRequest {
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message Body {
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message Body {
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// Carries the address of the requested object.
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// Address of the requested object.
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refs.Address address = 1;
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refs.Address address = 1;
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// Carries the raw option flag of the request.
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// Carries the raw option flag of the request.
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@ -62,7 +62,6 @@ message GetRequest {
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// that are physically stored on the server.
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// that are physically stored on the server.
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bool raw = 2;
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bool raw = 2;
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}
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}
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// Body of get object request message.
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// Body of get object request message.
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Body body = 1;
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Body body = 1;
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@ -77,16 +76,23 @@ message GetRequest {
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message GetResponse {
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message GetResponse {
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message Body {
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message Body {
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// Initialization parameters of the object got from NeoFS.
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message Init {
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// Object ID
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refs.ObjectID object_id = 1;
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// Object signature
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service.Signature signature =2;
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// Object header.
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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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// Carries the single message of the response stream.
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oneof ObjectPart {
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oneof ObjectPart {
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// Carries the object header.
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// Initialization parameters of the object stream.
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Header header = 1;
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Init init =1;
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// Part of the object payload.
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// Carries part of the object payload.
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bytes chunk = 2;
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bytes chunk = 2;
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}
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}
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}
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}
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// Body of get object response message.
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// Body of get object response message.
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Body body = 1;
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Body body = 1;
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@ -104,25 +110,26 @@ message PutRequest {
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message Body {
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message Body {
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// Groups initialization parameters of object placement in NeoFS.
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// Groups initialization parameters of object placement in NeoFS.
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message Init {
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message Init {
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// Carries the header of the object to save in the system.
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// Object ID, where available
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Header header = 1;
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refs.ObjectID object_id = 1;
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// Object signature, were available
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// Carries the number of the object copies to store
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service.Signature signature =2;
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// within the RPC call. Default zero value is processed according
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// Header of the object to save in the system.
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// to the container placement rules.
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Header header = 3;
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uint32 copies_number = 2;
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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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uint32 copies_number = 4;
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}
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}
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// Carries the single part of the query stream.
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// Carries the single part of the query stream.
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oneof Part {
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oneof ObjectPart {
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// Carries the initialization parameters of the object stream.
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// Carries the initialization parameters of the object stream.
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Init init = 1;
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Init init = 1;
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// Carries part of the object payload.
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// Carries part of the object payload.
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bytes chunk = 2;
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bytes chunk = 2;
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}
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}
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}
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}
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// Body of put object request message.
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// Body of put object request message.
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Body body = 1;
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Body body = 1;
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@ -141,7 +148,6 @@ message PutResponse {
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// It is used to access an object in the container.
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// It is used to access an object in the container.
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refs.ObjectID object_id = 1;
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refs.ObjectID object_id = 1;
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}
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}
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// Body of put object response message.
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// Body of put object response message.
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Body body = 1;
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Body body = 1;
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@ -159,11 +165,9 @@ message DeleteRequest {
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message Body {
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message Body {
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// Carries the address of the object to be deleted.
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// Carries the address of the object to be deleted.
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refs.Address address = 1;
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refs.Address address = 1;
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// Carries identifier the object owner.
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// Carries identifier the object owner.
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refs.OwnerID owner_id = 2;
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refs.OwnerID owner_id = 2;
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}
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}
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// Body of delete object request message.
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// Body of delete object request message.
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Body body = 1;
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Body body = 1;
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@ -196,18 +200,15 @@ message DeleteResponse {
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message HeadRequest {
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message HeadRequest {
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message Body {
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message Body {
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// Carries the address of the object with the requested header.
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// Address of the object with the requested header.
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refs.Address address = 1;
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refs.Address address = 1;
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// Return only minimal header subset
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// Carries the option to crop header to main part.
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bool main_only = 2;
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bool main_only = 2;
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// Carries the raw option flag of the request.
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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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// 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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// that are physically stored on the server.
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bool raw = 3;
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bool raw = 3;
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}
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}
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// Body of head object request message.
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// Body of head object request message.
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Body body = 1;
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Body body = 1;
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@ -222,10 +223,25 @@ message HeadRequest {
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message HeadResponse {
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message HeadResponse {
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message Body {
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message Body {
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// Carries the requested object header.
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message ShortHeader {
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Header header = 1;
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// Object format version.
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service.Version version = 1;
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// Epoch when the object was created
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uint64 creation_epoch = 2;
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// Object's owner
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refs.OwnerID owner_id = 3;
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// Type of the object payload content
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ObjectType object_type = 4;
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// Size of payload in bytes.
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// 0xFFFFFFFFFFFFFFFF means `payload_length` is unknown
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uint64 payload_length = 5;
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}
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// Carries the requested object header or it's part
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oneof Head{
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Header header = 1;
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ShortHeader short_header = 2;
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}
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}
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}
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// Body of head object response message.
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// Body of head object response message.
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Body body = 1;
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Body body = 1;
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@ -6,128 +6,80 @@ option go_package = "github.com/nspcc-dev/neofs-api-go/object";
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option csharp_namespace = "NeoFS.API.Object";
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option csharp_namespace = "NeoFS.API.Object";
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import "refs/types.proto";
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import "refs/types.proto";
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import "service/meta.proto";
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import "service/verify.proto";
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import "service/verify.proto";
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// Header groups the information about the NeoFS object.
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// Type of the object payload content
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enum ObjectType {
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// Just a normal object
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REGULAR = 0;
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// Used internally to identify deleted objects
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TOMBSTONE = 1;
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// Identifies that the object holds StorageGroup information
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STORAGE_GROUP = 2;
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}
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message Header {
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message Header {
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// Main groups mandatory information about the object.
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// Object's container
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// Message fields are presented in all NeoFS objects.
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refs.ContainerID container_id = 1;
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message Main {
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// Object's owner
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// payload_length carries length of the object payload.
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refs.OwnerID owner_id = 2;
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// Each object has a fixed payload length since it's immutable.
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// Epoch when the object was created
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uint64 payload_length = 1;
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uint64 creation_epoch = 3;
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// address carries object address in the NeoFS system.
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// Object format version.
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// It encapsulates the object and the container identifiers.
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// Effectively the version of API library used to create particular object
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refs.Address address = 2;
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service.Version version = 4;
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// owner_id carries identifier of the object owner.
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// Size of payload in bytes.
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refs.OwnerID owner_id = 3;
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// 0xFFFFFFFFFFFFFFFF means `payload_length` is unknown
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uint64 payload_length = 5;
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// Hash of payload bytes
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bytes payload_hash = 6;
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ObjectType object_type = 7;
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// Homomorphic hash of the object payload.
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bytes homomorphic_hash = 8;
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// Session token, if it was used during Object creation.
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// Need it to verify integrity and authenticity out of Request scope.
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service.SessionToken session_token = 9;
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// Attribute groups the user-defined Key-Value pairs attached to the object
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message Attribute {
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// string key to the object attribute
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string key = 1;
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// string value of the object attribute
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string value = 2;
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}
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}
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repeated Attribute attributes = 10;
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// Main carries the main part of the header.
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// Information about spawning the objects through a payload splitting.
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// Main MUST NOT be NULL.
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message Split {
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Main main = 1;
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// Identifier of the origin object.
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// Parent and children objects must be within the same container.
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// Extended groups additional information about the object.
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// Parent object_id is known only to the minor child.
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// It encapsulates both user and system attributes needed to regulate
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refs.ObjectID parent = 1;
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// the NeoFS sub-systems.
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// Previous carries identifier of the left split neighbor.
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message Extended {
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refs.ObjectID previous = 2;
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// Integrity groups evidence of the integrity of an object's structure.
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// `signature` field of the parent object. Used to reconstruct parent.
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message Integrity {
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service.Signature parent_signature = 3;
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// payload_checksum carries the checksum of object payload bytes.
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// `header` field of the parent object. Used to reconstruct parent.
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// Changing any byte of the payload changes the checksum.
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Header parent_header = 4;
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// It is calculated as a SHA-256 hash over payload bytes.
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// Children carries list of identifiers of the objects generated by splitting the current.
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bytes payload_checksum = 1;
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repeated refs.ObjectID children = 5;
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// header_checksum carries checksum of the object header structure.
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// It covers all object attributes. Changing any field of the object except
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// CreatorKey and ChecksumSignature changes the checksum.
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// payload_checksum and header_checksum cannot be merged due to the need
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// to verify the header in the absence of a payload (e.g. in object.Head rpc).
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// It is calculated as a SHA-256 hash over marshaled object header
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// with cut creator_key and checksum_signature.
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bytes header_checksum = 2;
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// session_token carries token of the session within which the object was created.
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// If session token is presented in object, it acts as the user's proof of the
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// correctness of the creator_key.
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service.SessionToken session_token = 3;
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// creator_key carries public key of the object creator in a binary format.
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bytes creator_key = 4;
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// checksum_signature carries signature of the structure checksum by the object creator.
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bytes checksum_signature = 5;
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}
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// integrity carries object integrity evidence.
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Integrity integrity = 1;
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// Attribute groups the parameters of the object attributes.
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message Attribute {
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// key carries the string key to the object attribute.
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string key = 1;
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// value carries the string value of the object attribute.
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string value = 2;
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}
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// attributes carries list of the object attributes in a string key-value format.
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repeated Attribute attributes = 2;
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// creation_epoch carries number of NeoFS epoch on which the object was created.
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uint64 creation_epoch = 3;
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// Tombstone groups the options for deleting an object.
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message Tombstone {
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}
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// Tombstone marks the object to be deleted.
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Tombstone tombstone = 4;
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// homomorphic_hash carries homomorphic hash of the object payload.
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bytes homomorphic_hash = 5;
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// StorageGroup groups meta information about a storage group.
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message StorageGroup {
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}
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// StorageGroup marks an object containing information about a storage group.
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StorageGroup storage_group = 6;
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// Split groups information about spawning the object through a payload
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// splitting.
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message Split {
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// Parent carries identifier of the origin object.
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refs.ObjectID parent = 1;
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// Previous carries identifier of the left split neighbor.
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refs.ObjectID previous = 2;
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// Next carries identifier of the right split neighbor.
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refs.ObjectID next = 3;
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// Children carries list of identifiers of the objects generated by
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// splitting the current.
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repeated refs.ObjectID children = 4;
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// Origin carries the header of the origin object.
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Header origin = 5;
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}
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// Split carries the position of the object in the split hierarchy.
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Split split = 7;
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}
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}
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// Position of the object in the split hierarchy.
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// Extended carries the additional part of the header.
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Split split = 11;
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Extended extended = 2;
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}
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}
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// Object groups the information about the NeoFS object.
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// Object structure.
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// It consists of payload data with additional service information.
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message Object {
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message Object {
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// Header carries the object header.
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// Object's unique identifier.
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Header header = 1;
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// Object is content-addressed. It means id will change if header or payload
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// changes. It's calculated as a hash of header field, which contains hash of
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// Payload carries the object payload bytes.
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// object's payload
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bytes payload = 2;
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refs.ObjectID object_id = 1;
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// Signed object_id
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service.Signature signature = 2;
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// Object metadata headers
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Header header = 3;
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// Payload bytes.
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bytes payload = 4;
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}
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}
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@ -9,18 +9,17 @@ option csharp_namespace = "NeoFS.API.Refs";
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message Address {
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message Address {
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// container_id carries container identifier.
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// container_id carries container identifier.
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ContainerID container_id = 1;
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ContainerID container_id = 1;
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// object_id carries object identifier.
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// object_id carries object identifier.
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ObjectID object_id = 2;
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ObjectID object_id = 2;
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}
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}
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// ObjectID groups information about the NeoFS object identifier.
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// NeoFS object identifier.
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message ObjectID {
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message ObjectID {
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// value carries the object identifier in a binary format.
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// value carries the object identifier in a binary format.
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bytes value = 1;
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bytes value = 1;
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}
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}
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// ContainerID groups information about the NeoFS container identifier.
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// NeoFS container identifier.
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message ContainerID {
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message ContainerID {
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// value carries the container identifier in a binary format.
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// value carries the container identifier in a binary format.
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bytes value = 1;
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bytes value = 1;
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@ -5,6 +5,14 @@ package service;
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option go_package = "github.com/nspcc-dev/neofs-api-go/service";
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option go_package = "github.com/nspcc-dev/neofs-api-go/service";
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option csharp_namespace = "NeoFS.API.Service";
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option csharp_namespace = "NeoFS.API.Service";
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// Represents API version used by node.
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message Version {
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// Major API version.
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uint32 major = 1;
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|
// Minor API version.
|
||||||
|
uint32 minor = 2;
|
||||||
|
}
|
||||||
|
|
||||||
// RequestMetaHeader contains information about request meta headers.
|
// RequestMetaHeader contains information about request meta headers.
|
||||||
message RequestMetaHeader {
|
message RequestMetaHeader {
|
||||||
// Carries maximum number of nodes in the request route.
|
// Carries maximum number of nodes in the request route.
|
||||||
|
|
|
@ -8,17 +8,16 @@ option csharp_namespace = "NeoFS.API.Service";
|
||||||
import "acl/types.proto";
|
import "acl/types.proto";
|
||||||
import "refs/types.proto";
|
import "refs/types.proto";
|
||||||
|
|
||||||
|
message Signature {
|
||||||
|
// Public key used for signing.
|
||||||
|
bytes key = 1;
|
||||||
|
// Signature
|
||||||
|
bytes sign = 2;
|
||||||
|
}
|
||||||
|
|
||||||
// RequestVerificationHeader is a set of signatures of every NeoFS Node that
|
// RequestVerificationHeader is a set of signatures of every NeoFS Node that
|
||||||
// processed request.
|
// processed request.
|
||||||
message RequestVerificationHeader {
|
message RequestVerificationHeader {
|
||||||
message Signature {
|
|
||||||
// Key is compressed public key used for signature.
|
|
||||||
bytes key = 1;
|
|
||||||
|
|
||||||
// Sign is signature of the request or session key.
|
|
||||||
bytes sign = 2;
|
|
||||||
}
|
|
||||||
|
|
||||||
// Signatures is a set of signatures of every passed NeoFS Node
|
// Signatures is a set of signatures of every passed NeoFS Node
|
||||||
repeated Signature signatures = 1;
|
repeated Signature signatures = 1;
|
||||||
|
|
||||||
|
|
Loading…
Reference in a new issue