Alex Vanin
94476f9055
Due to source code relocation from GitHub. Signed-off-by: Alex Vanin <a.vanin@yadro.com>
272 lines
6.5 KiB
Go
272 lines
6.5 KiB
Go
package session
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import (
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"crypto/ecdsa"
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"errors"
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"fmt"
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"git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/refs"
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"git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/session"
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cid "git.frostfs.info/TrueCloudLab/frostfs-sdk-go/container/id"
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oid "git.frostfs.info/TrueCloudLab/frostfs-sdk-go/object/id"
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)
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// Object represents token of the FrostFS Object session. A session is opened
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// between any two sides of the system, and implements a mechanism for transferring
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// the power of attorney of actions to another network member. The session has a
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// limited validity period, and applies to a strictly defined set of operations.
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// See methods for details.
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//
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// Object is mutually compatible with git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/session.Token
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// message. See ReadFromV2 / WriteToV2 methods.
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//
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// Instances can be created using built-in var declaration.
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type Object struct {
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commonData
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verb ObjectVerb
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cnrSet bool
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cnr cid.ID
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objs []oid.ID
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}
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func (x *Object) readContext(c session.TokenContext, checkFieldPresence bool) error {
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cObj, ok := c.(*session.ObjectSessionContext)
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if !ok || cObj == nil {
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return fmt.Errorf("invalid context %T", c)
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}
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var err error
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cnr := cObj.GetContainer()
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if x.cnrSet = cnr != nil; x.cnrSet {
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err := x.cnr.ReadFromV2(*cnr)
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if err != nil {
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return fmt.Errorf("invalid container ID: %w", err)
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}
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} else if checkFieldPresence {
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return errors.New("missing target container")
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}
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objs := cObj.GetObjects()
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if objs != nil {
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x.objs = make([]oid.ID, len(objs))
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for i := range objs {
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err = x.objs[i].ReadFromV2(objs[i])
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if err != nil {
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return fmt.Errorf("invalid target object: %w", err)
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}
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}
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} else {
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x.objs = nil
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}
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x.verb = ObjectVerb(cObj.GetVerb())
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return nil
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}
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func (x *Object) readFromV2(m session.Token, checkFieldPresence bool) error {
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return x.commonData.readFromV2(m, checkFieldPresence, x.readContext)
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}
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// ReadFromV2 reads Object from the session.Token message. Checks if the
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// message conforms to FrostFS API V2 protocol.
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//
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// See also WriteToV2.
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func (x *Object) ReadFromV2(m session.Token) error {
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return x.readFromV2(m, true)
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}
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func (x Object) writeContext() session.TokenContext {
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var c session.ObjectSessionContext
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c.SetVerb(session.ObjectSessionVerb(x.verb))
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if x.cnrSet || len(x.objs) > 0 {
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var cnr *refs.ContainerID
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if x.cnrSet {
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cnr = new(refs.ContainerID)
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x.cnr.WriteToV2(cnr)
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}
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var objs []refs.ObjectID
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if x.objs != nil {
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objs = make([]refs.ObjectID, len(x.objs))
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for i := range x.objs {
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x.objs[i].WriteToV2(&objs[i])
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}
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}
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c.SetTarget(cnr, objs...)
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}
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return &c
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}
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// WriteToV2 writes Object to the session.Token message.
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// The message must not be nil.
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//
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// See also ReadFromV2.
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func (x Object) WriteToV2(m *session.Token) {
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x.writeToV2(m, x.writeContext)
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}
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// Marshal encodes Object into a binary format of the FrostFS API protocol
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// (Protocol Buffers with direct field order).
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//
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// See also Unmarshal.
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func (x Object) Marshal() []byte {
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var m session.Token
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x.WriteToV2(&m)
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return x.marshal(x.writeContext)
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}
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// Unmarshal decodes FrostFS API protocol binary format into the Object
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// (Protocol Buffers with direct field order). Returns an error describing
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// a format violation.
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//
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// See also Marshal.
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func (x *Object) Unmarshal(data []byte) error {
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return x.unmarshal(data, x.readContext)
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}
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// MarshalJSON encodes Object into a JSON format of the FrostFS API protocol
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// (Protocol Buffers JSON).
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//
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// See also UnmarshalJSON.
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func (x Object) MarshalJSON() ([]byte, error) {
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return x.marshalJSON(x.writeContext)
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}
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// UnmarshalJSON decodes FrostFS API protocol JSON format into the Object
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// (Protocol Buffers JSON). Returns an error describing a format violation.
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//
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// See also MarshalJSON.
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func (x *Object) UnmarshalJSON(data []byte) error {
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return x.unmarshalJSON(data, x.readContext)
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}
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// Sign calculates and writes signature of the Object data.
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// Returns signature calculation errors.
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//
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// Zero Object is unsigned.
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//
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// Note that any Object mutation is likely to break the signature, so it is
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// expected to be calculated as a final stage of Object formation.
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//
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// See also VerifySignature.
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func (x *Object) Sign(key ecdsa.PrivateKey) error {
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return x.sign(key, x.writeContext)
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}
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// VerifySignature checks if Object signature is presented and valid.
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//
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// Zero Object fails the check.
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//
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// See also Sign.
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func (x Object) VerifySignature() bool {
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// TODO: (#233) check owner<->key relation
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return x.verifySignature(x.writeContext)
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}
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// BindContainer binds the Object session to a given container. Each session
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// MUST be bound to exactly one container.
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//
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// See also AssertContainer.
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func (x *Object) BindContainer(cnr cid.ID) {
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x.cnr = cnr
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x.cnrSet = true
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}
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// AssertContainer checks if Object session bound to a given container.
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//
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// Zero Object isn't bound to any container which is incorrect according to
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// FrostFS API protocol.
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//
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// See also BindContainer.
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func (x Object) AssertContainer(cnr cid.ID) bool {
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return x.cnr.Equals(cnr)
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}
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// LimitByObjects limits session scope to the given objects from the container
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// to which Object session is bound.
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//
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// Argument MUST NOT be mutated, make a copy first.
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//
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// See also AssertObject.
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func (x *Object) LimitByObjects(objs ...oid.ID) {
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x.objs = objs
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}
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// AssertObject checks if Object session is applied to a given object.
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//
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// Zero Object is applied to all objects in the container.
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//
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// See also LimitByObjects.
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func (x Object) AssertObject(obj oid.ID) bool {
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if len(x.objs) == 0 {
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return true
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}
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for i := range x.objs {
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if x.objs[i].Equals(obj) {
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return true
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}
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}
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return false
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}
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// ObjectVerb enumerates object operations.
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type ObjectVerb int8
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const (
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_ ObjectVerb = iota
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VerbObjectPut // Put rpc
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VerbObjectGet // Get rpc
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VerbObjectHead // Head rpc
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VerbObjectSearch // Search rpc
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VerbObjectDelete // Delete rpc
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VerbObjectRange // GetRange rpc
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VerbObjectRangeHash // GetRangeHash rpc
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)
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// ForVerb specifies the object operation of the session scope. Each
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// Object is related to the single operation.
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//
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// See also AssertVerb.
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func (x *Object) ForVerb(verb ObjectVerb) {
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x.verb = verb
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}
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// AssertVerb checks if Object relates to one of the given object operations.
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//
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// Zero Object relates to zero (unspecified) verb.
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//
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// See also ForVerb.
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func (x Object) AssertVerb(verbs ...ObjectVerb) bool {
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for i := range verbs {
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if verbs[i] == x.verb {
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return true
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}
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}
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return false
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}
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// ExpiredAt asserts "exp" claim.
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//
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// Zero Object is expired in any epoch.
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//
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// See also SetExp.
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func (x Object) ExpiredAt(epoch uint64) bool {
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return x.expiredAt(epoch)
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}
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