6cb513c976
New version contains fix for `object.GetRangeResponse` message type. Signed-off-by: Leonard Lyubich <leonard@nspcc.ru>
377 lines
9.5 KiB
Go
377 lines
9.5 KiB
Go
package audit
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import (
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"errors"
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"fmt"
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"github.com/nspcc-dev/neofs-api-go/v2/audit"
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"github.com/nspcc-dev/neofs-api-go/v2/refs"
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cid "github.com/nspcc-dev/neofs-sdk-go/container/id"
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oid "github.com/nspcc-dev/neofs-sdk-go/object/id"
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"github.com/nspcc-dev/neofs-sdk-go/version"
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)
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// Result represents report on the results of the data audit in NeoFS system.
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//
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// Result is mutually binary-compatible with github.com/nspcc-dev/neofs-api-go/v2/audit.DataAuditResult
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// message. See Marshal / Unmarshal methods.
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//
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// Instances can be created using built-in var declaration.
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type Result struct {
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versionEncoded bool
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v2 audit.DataAuditResult
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}
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// Marshal encodes Result into a canonical NeoFS binary format (Protocol Buffers
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// with direct field order).
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//
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// Writes version.Current() protocol version into the resulting message if Result
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// hasn't been already decoded from such a message using Unmarshal.
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//
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// See also Unmarshal.
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func (r *Result) Marshal() []byte {
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if !r.versionEncoded {
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var verV2 refs.Version
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version.Current().WriteToV2(&verV2)
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r.v2.SetVersion(&verV2)
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r.versionEncoded = true
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}
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return r.v2.StableMarshal(nil)
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}
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var errCIDNotSet = errors.New("container ID is not set")
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// Unmarshal decodes Result from its canonical NeoFS binary format (Protocol Buffers
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// with direct field order). Returns an error describing a format violation.
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//
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// See also Marshal.
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func (r *Result) Unmarshal(data []byte) error {
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err := r.v2.Unmarshal(data)
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if err != nil {
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return err
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}
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r.versionEncoded = true
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// format checks
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var cID cid.ID
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cidV2 := r.v2.GetContainerID()
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if cidV2 == nil {
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return errCIDNotSet
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}
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err = cID.ReadFromV2(*cidV2)
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if err != nil {
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return fmt.Errorf("could not convert V2 container ID: %w", err)
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}
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var (
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oID oid.ID
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oidV2 refs.ObjectID
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)
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for _, oidV2 = range r.v2.GetPassSG() {
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err = oID.ReadFromV2(oidV2)
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if err != nil {
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return fmt.Errorf("invalid passed storage group ID: %w", err)
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}
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}
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for _, oidV2 = range r.v2.GetFailSG() {
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err = oID.ReadFromV2(oidV2)
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if err != nil {
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return fmt.Errorf("invalid failed storage group ID: %w", err)
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}
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}
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return nil
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}
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// Epoch returns NeoFS epoch when the data associated with the Result was audited.
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//
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// Zero Result has zero epoch.
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//
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// See also ForEpoch.
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func (r Result) Epoch() uint64 {
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return r.v2.GetAuditEpoch()
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}
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// ForEpoch specifies NeoFS epoch when the data associated with the Result was audited.
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//
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// See also Epoch.
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func (r *Result) ForEpoch(epoch uint64) {
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r.v2.SetAuditEpoch(epoch)
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}
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// Container returns identifier of the container with which the data audit Result
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// is associated and a bool that indicates container ID field presence in the Result.
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//
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// Zero Result does not have container ID.
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//
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// See also ForContainer.
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func (r Result) Container() (cid.ID, bool) {
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var cID cid.ID
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cidV2 := r.v2.GetContainerID()
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if cidV2 != nil {
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_ = cID.ReadFromV2(*cidV2)
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return cID, true
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}
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return cID, false
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}
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// ForContainer sets identifier of the container with which the data audit Result
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// is associated.
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//
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// See also Container.
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func (r *Result) ForContainer(cnr cid.ID) {
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var cidV2 refs.ContainerID
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cnr.WriteToV2(&cidV2)
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r.v2.SetContainerID(&cidV2)
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}
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// AuditorKey returns public key of the auditing NeoFS Inner Ring node in
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// a NeoFS binary key format.
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//
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// Zero Result has nil key. Return value MUST NOT be mutated: to do this,
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// first make a copy.
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//
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// See also SetAuditorPublicKey.
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func (r Result) AuditorKey() []byte {
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return r.v2.GetPublicKey()
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}
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// SetAuditorKey specifies public key of the auditing NeoFS Inner Ring node in
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// a NeoFS binary key format.
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//
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// Argument MUST NOT be mutated at least until the end of using the Result.
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//
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// See also AuditorKey.
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func (r *Result) SetAuditorKey(key []byte) {
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r.v2.SetPublicKey(key)
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}
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// Completed returns completion state of the data audit associated with the Result.
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//
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// Zero Result corresponds to incomplete data audit.
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//
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// See also Complete.
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func (r Result) Completed() bool {
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return r.v2.GetComplete()
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}
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// Complete marks the data audit associated with the Result as completed.
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//
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// See also Completed.
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func (r *Result) Complete() {
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r.v2.SetComplete(true)
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}
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// RequestsPoR returns number of requests made by Proof-of-Retrievability
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// audit check to get all headers of the objects inside storage groups.
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//
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// Zero Result has zero requests.
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//
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// See also SetRequestsPoR.
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func (r Result) RequestsPoR() uint32 {
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return r.v2.GetRequests()
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}
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// SetRequestsPoR sets number of requests made by Proof-of-Retrievability
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// audit check to get all headers of the objects inside storage groups.
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//
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// See also RequestsPoR.
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func (r *Result) SetRequestsPoR(v uint32) {
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r.v2.SetRequests(v)
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}
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// RetriesPoR returns number of retries made by Proof-of-Retrievability
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// audit check to get all headers of the objects inside storage groups.
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//
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// Zero Result has zero retries.
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//
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// See also SetRetriesPoR.
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func (r Result) RetriesPoR() uint32 {
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return r.v2.GetRetries()
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}
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// SetRetriesPoR sets number of retries made by Proof-of-Retrievability
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// audit check to get all headers of the objects inside storage groups.
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//
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// See also RetriesPoR.
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func (r *Result) SetRetriesPoR(v uint32) {
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r.v2.SetRetries(v)
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}
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// IteratePassedStorageGroups iterates over all storage groups that passed
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// Proof-of-Retrievability audit check and passes them into f. Breaks on f's
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// false return, f MUST NOT be nil.
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//
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// Zero Result has no passed storage groups and doesn't call f.
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//
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// See also SubmitPassedStorageGroup.
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func (r Result) IteratePassedStorageGroups(f func(oid.ID) bool) {
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r2 := r.v2.GetPassSG()
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var id oid.ID
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for i := range r2 {
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_ = id.ReadFromV2(r2[i])
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if !f(id) {
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return
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}
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}
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}
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// SubmitPassedStorageGroup marks storage group as passed Proof-of-Retrievability
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// audit check.
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//
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// See also IteratePassedStorageGroups.
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func (r *Result) SubmitPassedStorageGroup(sg oid.ID) {
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var idV2 refs.ObjectID
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sg.WriteToV2(&idV2)
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r.v2.SetPassSG(append(r.v2.GetPassSG(), idV2))
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}
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// IterateFailedStorageGroups is similar to IteratePassedStorageGroups but for failed groups.
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//
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// See also SubmitFailedStorageGroup.
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func (r Result) IterateFailedStorageGroups(f func(oid.ID) bool) {
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v := r.v2.GetFailSG()
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var id oid.ID
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for i := range v {
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_ = id.ReadFromV2(v[i])
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if !f(id) {
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return
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}
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}
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}
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// SubmitFailedStorageGroup is similar to SubmitPassedStorageGroup but for failed groups.
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//
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// See also IterateFailedStorageGroups.
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func (r *Result) SubmitFailedStorageGroup(sg oid.ID) {
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var idV2 refs.ObjectID
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sg.WriteToV2(&idV2)
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r.v2.SetFailSG(append(r.v2.GetFailSG(), idV2))
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}
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// Hits returns number of sampled objects under audit placed
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// in an optimal way according to the container's placement policy
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// when checking Proof-of-Placement.
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//
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// Zero result has zero hits.
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//
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// See also SetHits.
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func (r Result) Hits() uint32 {
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return r.v2.GetHit()
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}
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// SetHits sets number of sampled objects under audit placed
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// in an optimal way according to the containers placement policy
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// when checking Proof-of-Placement.
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//
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// See also Hits.
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func (r *Result) SetHits(hit uint32) {
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r.v2.SetHit(hit)
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}
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// Misses returns number of sampled objects under audit placed
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// in suboptimal way according to the container's placement policy,
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// but still at a satisfactory level when checking Proof-of-Placement.
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//
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// Zero Result has zero misses.
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//
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// See also SetMisses.
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func (r Result) Misses() uint32 {
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return r.v2.GetMiss()
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}
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// SetMisses sets number of sampled objects under audit placed
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// in suboptimal way according to the container's placement policy,
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// but still at a satisfactory level when checking Proof-of-Placement.
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//
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// See also Misses.
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func (r *Result) SetMisses(miss uint32) {
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r.v2.SetMiss(miss)
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}
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// Failures returns number of sampled objects under audit stored
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// in a way not confirming placement policy or not found at all
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// when checking Proof-of-Placement.
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//
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// Zero result has zero failures.
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//
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// See also SetFailures.
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func (r Result) Failures() uint32 {
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return r.v2.GetFail()
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}
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// SetFailures sets number of sampled objects under audit stored
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// in a way not confirming placement policy or not found at all
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// when checking Proof-of-Placement.
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//
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// See also Failures.
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func (r *Result) SetFailures(fail uint32) {
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r.v2.SetFail(fail)
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}
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// IteratePassedStorageNodes iterates over all storage nodes that passed at least one
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// Proof-of-Data-Possession audit check and passes their public keys into f. Breaks on
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// f's false return.
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//
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// f MUST NOT be nil and MUST NOT mutate parameter passed into it at least until
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// the end of using the Result.
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//
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// Zero Result has no passed storage nodes and doesn't call f.
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//
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// See also SubmitPassedStorageNode.
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func (r Result) IteratePassedStorageNodes(f func([]byte) bool) {
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v := r.v2.GetPassNodes()
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for i := range v {
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if !f(v[i]) {
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return
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}
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}
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}
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// SubmitPassedStorageNodes marks storage node list as passed Proof-of-Data-Possession
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// audit check. The list contains public keys.
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//
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// Argument and its elements MUST NOT be mutated at least until the end of using the Result.
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//
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// See also IteratePassedStorageNodes.
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func (r *Result) SubmitPassedStorageNodes(list [][]byte) {
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r.v2.SetPassNodes(list)
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}
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// IterateFailedStorageNodes is similar to IteratePassedStorageNodes but for failed nodes.
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//
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// See also SubmitPassedStorageNodes.
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func (r Result) IterateFailedStorageNodes(f func([]byte) bool) {
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v := r.v2.GetFailNodes()
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for i := range v {
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if !f(v[i]) {
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return
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}
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}
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}
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// SubmitFailedStorageNodes is similar to SubmitPassedStorageNodes but for failed nodes.
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//
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// See also IterateFailedStorageNodes.
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func (r *Result) SubmitFailedStorageNodes(list [][]byte) {
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r.v2.SetFailNodes(list)
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}
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