9f122f279a
Some of the client wrapper's methods should produce notary contract's invocations. In previous implementation all wrappers provided separate methods to do it. Since notary and non-notary invocation scenarios have very different goals, it makes sense to separate the scenarios of using the client wrapper at the stage of its creation. Define `Option` constructor for container client wrapper. Add `TryNotary` option which enables tries of the notary invocations on underlying static client. Mark all notary-dedicated methods as deprecated. Signed-off-by: Leonard Lyubich <leonard@nspcc.ru>
282 lines
7.1 KiB
Go
282 lines
7.1 KiB
Go
package wrapper
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import (
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"crypto/sha256"
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"errors"
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"fmt"
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"github.com/nspcc-dev/neofs-api-go/pkg"
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"github.com/nspcc-dev/neofs-api-go/pkg/container"
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"github.com/nspcc-dev/neofs-api-go/pkg/owner"
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v2refs "github.com/nspcc-dev/neofs-api-go/v2/refs"
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core "github.com/nspcc-dev/neofs-node/pkg/core/container"
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client "github.com/nspcc-dev/neofs-node/pkg/morph/client/container"
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)
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var (
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errNilArgument = errors.New("empty argument")
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errUnsupported = errors.New("unsupported structure version")
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)
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// Put marshals container, and passes it to Wrapper's Put method
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// along with sig.Key() and sig.Sign().
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//
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// Returns error if container is nil.
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func Put(w *Wrapper, cnr *container.Container, sig *pkg.Signature) (*container.ID, error) {
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if cnr == nil {
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return nil, errNilArgument
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}
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data, err := cnr.Marshal()
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if err != nil {
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return nil, fmt.Errorf("can't marshal container: %w", err)
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}
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err = w.Put(data, sig.Key(), sig.Sign())
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if err != nil {
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return nil, err
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}
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id := container.NewID()
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id.SetSHA256(sha256.Sum256(data))
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return id, nil
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}
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// Put saves binary container with its key and signature
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// in NeoFS system through Container contract call.
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//
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// Returns calculated container identifier and any error
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// encountered that caused the saving to interrupt.
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//
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// If TryNotary is provided, call notary contract.
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func (w *Wrapper) Put(cnr, key, sig []byte) error {
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if len(sig) == 0 || len(key) == 0 {
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return errNilArgument
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}
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var args client.PutArgs
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args.SetContainer(cnr)
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args.SetSignature(sig)
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args.SetPublicKey(key)
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err := w.client.Put(args)
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if err != nil {
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return err
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}
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return nil
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}
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type containerSource Wrapper
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func (x *containerSource) Get(cid *container.ID) (*container.Container, error) {
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return Get((*Wrapper)(x), cid)
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}
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// AsContainerSource provides container Source interface
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// from Wrapper instance.
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func AsContainerSource(w *Wrapper) core.Source {
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return (*containerSource)(w)
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}
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// Get marshals container ID, and passes it to Wrapper's Get method.
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//
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// Returns error if cid is nil.
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func Get(w *Wrapper, cid *container.ID) (*container.Container, error) {
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return w.Get(cid.ToV2().GetValue())
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}
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// Get reads the container from NeoFS system by binary identifier
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// through Container contract call.
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//
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// If an empty slice is returned for the requested identifier,
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// storage.ErrNotFound error is returned.
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func (w *Wrapper) Get(cid []byte) (*container.Container, error) {
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var args client.GetArgs
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args.SetCID(cid)
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// ask RPC neo node to get serialized container
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rpcAnswer, err := w.client.Get(args)
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if err != nil {
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return nil, err
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}
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// In #37 we've decided to remove length check, because smart contract would
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// fail on casting `nil` value from storage to `[]byte` producing FAULT state.
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// Apparently it does not fail, so we have to check length explicitly.
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if len(rpcAnswer.Container()) == 0 {
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return nil, core.ErrNotFound
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}
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// unmarshal container
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cnr := container.New()
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if err := cnr.Unmarshal(rpcAnswer.Container()); err != nil {
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// use other major version if there any
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return nil, fmt.Errorf("can't unmarshal container: %w", err)
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}
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return cnr, nil
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}
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// Delete marshals container ID, and passes it to Wrapper's Delete method
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// along with sig.Key() and sig.Sign().
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//
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// Returns error if cid is nil.
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func Delete(w *Wrapper, cid *container.ID, sig *pkg.Signature) error {
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if cid == nil {
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return errNilArgument
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}
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return w.Delete(cid.ToV2().GetValue(), sig.Sign())
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}
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// Delete removes the container from NeoFS system
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// through Container contract call.
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//
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// Returns any error encountered that caused
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// the removal to interrupt.
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//
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// If TryNotary is provided, calls notary contract.
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func (w *Wrapper) Delete(cid, signature []byte) error {
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if len(signature) == 0 {
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return errNilArgument
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}
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var args client.DeleteArgs
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args.SetSignature(signature)
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args.SetCID(cid)
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return w.client.Delete(args)
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}
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// List returns a list of container identifiers belonging
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// to the specified owner of NeoFS system. The list is composed
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// through Container contract call.
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//
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// Returns the identifiers of all NeoFS containers if pointer
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// to owner identifier is nil.
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func (w *Wrapper) List(ownerID *owner.ID) ([]*container.ID, error) {
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args := client.ListArgs{}
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if ownerID == nil {
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args.SetOwnerID([]byte{})
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} else if v2 := ownerID.ToV2(); v2 == nil {
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return nil, errUnsupported // use other major version if there any
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} else {
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args.SetOwnerID(v2.GetValue())
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}
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// ask RPC neo node to get serialized container
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rpcAnswer, err := w.client.List(args)
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if err != nil {
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return nil, err
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}
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rawIDs := rpcAnswer.CIDList()
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result := make([]*container.ID, 0, len(rawIDs))
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for i := range rawIDs {
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v2 := new(v2refs.ContainerID)
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v2.SetValue(rawIDs[i])
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cid := container.NewIDFromV2(v2)
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result = append(result, cid)
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}
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return result, nil
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}
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// AnnounceLoad saves container size estimation calculated by storage node
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// with key in NeoFS system through Container contract call.
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//
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// Returns any error encountered that caused the saving to interrupt.
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func (w *Wrapper) AnnounceLoad(a container.UsedSpaceAnnouncement, key []byte) error {
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v2 := a.ContainerID().ToV2()
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if v2 == nil {
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return errUnsupported // use other major version if there any
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}
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args := client.PutSizeArgs{}
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args.SetContainerID(v2.GetValue())
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args.SetEpoch(a.Epoch())
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args.SetSize(a.UsedSpace())
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args.SetReporterKey(key)
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return w.client.PutSize(args)
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}
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// EstimationID is an identity of container load estimation inside Container contract.
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type EstimationID []byte
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// ListLoadEstimationsByEpoch returns a list of container load estimations for to the specified epoch.
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// The list is composed through Container contract call.
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func (w *Wrapper) ListLoadEstimationsByEpoch(epoch uint64) ([]EstimationID, error) {
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args := client.ListSizesArgs{}
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args.SetEpoch(epoch)
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// ask RPC neo node to get serialized container
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rpcAnswer, err := w.client.ListSizes(args)
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if err != nil {
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return nil, err
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}
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rawIDs := rpcAnswer.IDList()
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result := make([]EstimationID, 0, len(rawIDs))
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for i := range rawIDs {
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result = append(result, rawIDs[i])
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}
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return result, nil
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}
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// Estimation is a structure of single container load estimation
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// reported by storage node.
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type Estimation struct {
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Size uint64
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Reporter []byte
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}
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// Estimation is a structure of grouped container load estimation inside Container contract.
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type Estimations struct {
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ContainerID *container.ID
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Values []Estimation
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}
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// GetUsedSpaceEstimations returns a list of container load estimations by ID.
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// The list is composed through Container contract call.
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func (w *Wrapper) GetUsedSpaceEstimations(id EstimationID) (*Estimations, error) {
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args := client.GetSizeArgs{}
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args.SetID(id)
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rpcAnswer, err := w.client.GetContainerSize(args)
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if err != nil {
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return nil, err
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}
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es := rpcAnswer.Estimations()
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v2 := new(v2refs.ContainerID)
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v2.SetValue(es.ContainerID)
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res := &Estimations{
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ContainerID: container.NewIDFromV2(v2),
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Values: make([]Estimation, 0, len(es.Estimations)),
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}
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for i := range es.Estimations {
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res.Values = append(res.Values, Estimation{
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Size: uint64(es.Estimations[i].Size),
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Reporter: es.Estimations[i].Reporter,
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})
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}
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return res, nil
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}
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