525 lines
17 KiB
Go
525 lines
17 KiB
Go
// Copyright (C) 2019 Storj Labs, Inc.
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// See LICENSE for copying information.
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package piecestore
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import (
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"context"
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"io"
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"time"
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"github.com/golang/protobuf/ptypes"
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"github.com/zeebo/errs"
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"go.uber.org/zap"
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"golang.org/x/sync/errgroup"
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monkit "gopkg.in/spacemonkeygo/monkit.v2"
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"storj.io/storj/internal/memory"
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"storj.io/storj/internal/sync2"
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"storj.io/storj/pkg/auth/signing"
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"storj.io/storj/pkg/identity"
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"storj.io/storj/pkg/pb"
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"storj.io/storj/storagenode/bandwidth"
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"storj.io/storj/storagenode/monitor"
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"storj.io/storj/storagenode/orders"
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"storj.io/storj/storagenode/pieces"
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"storj.io/storj/storagenode/trust"
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)
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var (
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mon = monkit.Package()
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// Error is the default error class for piecestore errors
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Error = errs.Class("piecestore")
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// ErrProtocol is the default error class for protocol errors.
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ErrProtocol = errs.Class("piecestore protocol")
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// ErrInternal is the default error class for internal piecestore errors.
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ErrInternal = errs.Class("piecestore internal")
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)
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var _ pb.PiecestoreServer = (*Endpoint)(nil)
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// OldConfig contains everything necessary for a server
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type OldConfig struct {
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Path string `help:"path to store data in" default:"$CONFDIR/storage"`
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WhitelistedSatelliteIDs string `help:"a comma-separated list of approved satellite node ids" devDefault:"" releaseDefault:"12EayRS2V1kEsWESU9QMRseFhdxYxKicsiFmxrsLZHeLUtdps3S,118UWpMCHzs6CvSgWd9BfFVjw5K9pZbJjkfZJexMtSkmKxvvAW,121RTSDpyNZVcEU84Ticf2L1ntiuUimbWgfATz21tuvgk3vzoA6,12L9ZFwhzVpuEKMUNUqkaTLGzwY9G24tbiigLiXpmZWKwmcNDDs"`
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SatelliteIDRestriction bool `help:"if true, only allow data from approved satellites" devDefault:"false" releaseDefault:"true"`
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AllocatedDiskSpace memory.Size `user:"true" help:"total allocated disk space in bytes" default:"1TB"`
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AllocatedBandwidth memory.Size `user:"true" help:"total allocated bandwidth in bytes" default:"2TB"`
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KBucketRefreshInterval time.Duration `help:"how frequently Kademlia bucket should be refreshed with node stats" default:"1h0m0s"`
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}
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// Config defines parameters for piecestore endpoint.
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type Config struct {
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ExpirationGracePeriod time.Duration `help:"how soon before expiration date should things be considered expired" default:"48h0m0s"`
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Monitor monitor.Config
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Sender orders.SenderConfig
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}
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// Endpoint implements uploading, downloading and deleting for a storage node.
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type Endpoint struct {
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log *zap.Logger
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config Config
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signer signing.Signer
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trust *trust.Pool
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monitor *monitor.Service
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store *pieces.Store
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pieceinfo pieces.DB
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orders orders.DB
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usage bandwidth.DB
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usedSerials UsedSerials
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}
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// NewEndpoint creates a new piecestore endpoint.
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func NewEndpoint(log *zap.Logger, signer signing.Signer, trust *trust.Pool, monitor *monitor.Service, store *pieces.Store, pieceinfo pieces.DB, orders orders.DB, usage bandwidth.DB, usedSerials UsedSerials, config Config) (*Endpoint, error) {
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return &Endpoint{
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log: log,
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config: config,
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signer: signer,
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trust: trust,
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monitor: monitor,
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store: store,
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pieceinfo: pieceinfo,
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orders: orders,
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usage: usage,
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usedSerials: usedSerials,
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}, nil
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}
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// Delete handles deleting a piece on piece store.
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func (endpoint *Endpoint) Delete(ctx context.Context, delete *pb.PieceDeleteRequest) (_ *pb.PieceDeleteResponse, err error) {
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defer mon.Task()(&ctx)(&err)
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if delete.Limit.Action != pb.PieceAction_DELETE {
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return nil, Error.New("expected delete action got %v", delete.Limit.Action) // TODO: report grpc status unauthorized or bad request
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}
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if err := endpoint.VerifyOrderLimit(ctx, delete.Limit); err != nil {
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// TODO: report grpc status unauthorized or bad request
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return nil, Error.Wrap(err)
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}
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// TODO: parallelize this and maybe return early
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pieceInfoErr := endpoint.pieceinfo.Delete(ctx, delete.Limit.SatelliteId, delete.Limit.PieceId)
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pieceErr := endpoint.store.Delete(ctx, delete.Limit.SatelliteId, delete.Limit.PieceId)
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if err := errs.Combine(pieceInfoErr, pieceErr); err != nil {
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// explicitly ignoring error because the errors
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// TODO: add more debug info
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endpoint.log.Error("delete failed", zap.Stringer("Piece ID", delete.Limit.PieceId), zap.Error(err))
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// TODO: report internal server internal or missing error using grpc status,
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// e.g. missing might happen when we get a deletion request after garbage collection has deleted it
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} else {
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endpoint.log.Info("deleted", zap.Stringer("Piece ID", delete.Limit.PieceId))
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}
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return &pb.PieceDeleteResponse{}, nil
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}
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// Upload handles uploading a piece on piece store.
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func (endpoint *Endpoint) Upload(stream pb.Piecestore_UploadServer) (err error) {
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ctx := stream.Context()
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defer mon.Task()(&ctx)(&err)
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startTime := time.Now().UTC()
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// TODO: set connection timeouts
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// TODO: set maximum message size
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var message *pb.PieceUploadRequest
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message, err = stream.Recv()
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switch {
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case err != nil:
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return ErrProtocol.Wrap(err)
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case message == nil:
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return ErrProtocol.New("expected a message")
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case message.Limit == nil:
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return ErrProtocol.New("expected order limit as the first message")
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}
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limit := message.Limit
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// TODO: verify that we have have expected amount of storage before continuing
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if limit.Action != pb.PieceAction_PUT && limit.Action != pb.PieceAction_PUT_REPAIR {
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return ErrProtocol.New("expected put or put repair action got %v", limit.Action) // TODO: report grpc status unauthorized or bad request
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}
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if err := endpoint.VerifyOrderLimit(ctx, limit); err != nil {
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return err // TODO: report grpc status unauthorized or bad request
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}
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var pieceWriter *pieces.Writer
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defer func() {
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endTime := time.Now().UTC()
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dt := endTime.Sub(startTime)
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uploadSize := int64(0)
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if pieceWriter != nil {
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uploadSize = pieceWriter.Size()
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}
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uploadRate := float64(0)
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if dt.Seconds() > 0 {
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uploadRate = float64(uploadSize) / dt.Seconds()
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}
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uploadDuration := dt.Nanoseconds()
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if err != nil {
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mon.IntVal("upload_failure_size_bytes").Observe(uploadSize)
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mon.IntVal("upload_failure_duration_ns").Observe(uploadDuration)
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mon.FloatVal("upload_failure_rate_bytes_per_sec").Observe(uploadRate)
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endpoint.log.Info("upload failed", zap.Stringer("Piece ID", limit.PieceId), zap.Stringer("Node ID", limit.StorageNodeId), zap.Stringer("Action", limit.Action), zap.Error(err))
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} else {
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mon.IntVal("upload_success_size_bytes").Observe(uploadSize)
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mon.IntVal("upload_success_duration_ns").Observe(uploadDuration)
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mon.FloatVal("upload_success_rate_bytes_per_sec").Observe(uploadRate)
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endpoint.log.Info("uploaded", zap.Stringer("Piece ID", limit.PieceId), zap.Stringer("Action", limit.Action))
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}
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}()
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peer, err := identity.PeerIdentityFromContext(ctx)
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if err != nil {
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return Error.Wrap(err)
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}
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pieceWriter, err = endpoint.store.Writer(ctx, limit.SatelliteId, limit.PieceId)
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if err != nil {
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return ErrInternal.Wrap(err) // TODO: report grpc status internal server error
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}
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defer func() {
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// cancel error if it hasn't been committed
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if cancelErr := pieceWriter.Cancel(); cancelErr != nil {
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endpoint.log.Error("error during canceling a piece write", zap.Error(cancelErr))
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}
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}()
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availableBandwidth, err := endpoint.monitor.AvailableBandwidth(ctx)
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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availableSpace, err := endpoint.monitor.AvailableSpace(ctx)
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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largestOrder := pb.Order2{}
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defer endpoint.SaveOrder(ctx, limit, &largestOrder, peer)
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for {
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message, err = stream.Recv() // TODO: reuse messages to avoid allocations
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if err == io.EOF {
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return ErrProtocol.New("unexpected EOF")
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} else if err != nil {
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return ErrProtocol.Wrap(err) // TODO: report grpc status bad message
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}
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if message == nil {
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return ErrProtocol.New("expected a message") // TODO: report grpc status bad message
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}
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switch {
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default:
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return ErrProtocol.New("message didn't contain any of order, chunk or done") // TODO: report grpc status bad message
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case message.Order != nil:
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if err := endpoint.VerifyOrder(ctx, peer, limit, message.Order, largestOrder.Amount); err != nil {
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return err
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}
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largestOrder = *message.Order
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case message.Chunk != nil:
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if message.Chunk.Offset != pieceWriter.Size() {
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return ErrProtocol.New("chunk out of order") // TODO: report grpc status bad message
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}
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chunkSize := int64(len(message.Chunk.Data))
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if largestOrder.Amount < pieceWriter.Size()+chunkSize {
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// TODO: should we write currently and give a chance for uplink to remedy the situation?
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return ErrProtocol.New("not enough allocated, allocated=%v writing=%v", largestOrder.Amount, pieceWriter.Size()+int64(len(message.Chunk.Data))) // TODO: report grpc status ?
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}
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availableBandwidth -= chunkSize
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if availableBandwidth < 0 {
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return ErrProtocol.New("out of bandwidth")
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}
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availableSpace -= chunkSize
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if availableSpace < 0 {
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return ErrProtocol.New("out of space")
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}
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if _, err := pieceWriter.Write(message.Chunk.Data); err != nil {
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return ErrInternal.Wrap(err) // TODO: report grpc status internal server error
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}
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case message.Done != nil:
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expectedHash := pieceWriter.Hash()
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if err := endpoint.VerifyPieceHash(ctx, peer, limit, message.Done, expectedHash); err != nil {
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return err // TODO: report grpc status internal server error
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}
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if err := pieceWriter.Commit(); err != nil {
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return ErrInternal.Wrap(err) // TODO: report grpc status internal server error
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}
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// TODO: do this in a goroutine
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{
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var expiration *time.Time
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if limit.PieceExpiration != nil {
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exp, err := ptypes.Timestamp(limit.PieceExpiration)
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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expiration = &exp
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}
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// TODO: maybe this should be as a pieceWriter.Commit(ctx, info)
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info := &pieces.Info{
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SatelliteID: limit.SatelliteId,
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PieceID: limit.PieceId,
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PieceSize: pieceWriter.Size(),
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PieceExpiration: expiration,
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UplinkPieceHash: message.Done,
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Uplink: peer,
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}
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if err := endpoint.pieceinfo.Add(ctx, info); err != nil {
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return ErrInternal.Wrap(err)
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}
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}
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storageNodeHash, err := signing.SignPieceHash(endpoint.signer, &pb.PieceHash{
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PieceId: limit.PieceId,
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Hash: expectedHash,
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})
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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closeErr := stream.SendAndClose(&pb.PieceUploadResponse{
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Done: storageNodeHash,
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})
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return ErrProtocol.Wrap(ignoreEOF(closeErr))
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}
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}
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}
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// Download implements downloading a piece from piece store.
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func (endpoint *Endpoint) Download(stream pb.Piecestore_DownloadServer) (err error) {
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ctx := stream.Context()
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defer mon.Task()(&ctx)(&err)
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startTime := time.Now().UTC()
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// TODO: set connection timeouts
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// TODO: set maximum message size
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var message *pb.PieceDownloadRequest
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// receive limit and chunk from uplink
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message, err = stream.Recv()
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if err != nil {
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return ErrProtocol.Wrap(err)
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}
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if message.Limit == nil || message.Chunk == nil {
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return ErrProtocol.New("expected order limit and chunk as the first message")
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}
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limit, chunk := message.Limit, message.Chunk
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if limit.Action != pb.PieceAction_GET && limit.Action != pb.PieceAction_GET_REPAIR && limit.Action != pb.PieceAction_GET_AUDIT {
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return ErrProtocol.New("expected get or get repair or audit action got %v", limit.Action) // TODO: report grpc status unauthorized or bad request
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}
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if chunk.ChunkSize > limit.Limit {
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return ErrProtocol.New("requested more that order limit allows, limit=%v requested=%v", limit.Limit, chunk.ChunkSize)
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}
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if err := endpoint.VerifyOrderLimit(ctx, limit); err != nil {
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return Error.Wrap(err) // TODO: report grpc status unauthorized or bad request
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}
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var pieceReader *pieces.Reader
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defer func() {
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endTime := time.Now().UTC()
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dt := endTime.Sub(startTime)
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downloadSize := int64(0)
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if pieceReader != nil {
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downloadSize = pieceReader.Size()
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}
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downloadRate := float64(0)
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if dt.Seconds() > 0 {
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downloadRate = float64(downloadSize) / dt.Seconds()
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}
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downloadDuration := dt.Nanoseconds()
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if err != nil {
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mon.IntVal("download_failure_size_bytes").Observe(downloadSize)
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mon.IntVal("download_failure_duration_ns").Observe(downloadDuration)
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mon.FloatVal("download_failure_rate_bytes_per_sec").Observe(downloadRate)
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endpoint.log.Info("download failed", zap.Stringer("Piece ID", limit.PieceId), zap.Stringer("Action", limit.Action), zap.Error(err))
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} else {
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mon.IntVal("download_success_size_bytes").Observe(downloadSize)
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mon.IntVal("download_success_duration_ns").Observe(downloadDuration)
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mon.FloatVal("download_success_rate_bytes_per_sec").Observe(downloadRate)
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endpoint.log.Info("downloaded", zap.Stringer("Piece ID", limit.PieceId), zap.Stringer("Action", limit.Action))
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}
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}()
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peer, err := identity.PeerIdentityFromContext(ctx)
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if err != nil {
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return Error.Wrap(err)
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}
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pieceReader, err = endpoint.store.Reader(ctx, limit.SatelliteId, limit.PieceId)
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if err != nil {
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return ErrInternal.Wrap(err) // TODO: report grpc status internal server error
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}
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defer func() {
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err := pieceReader.Close() // similarly how transcation Rollback works
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if err != nil {
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// no reason to report this error to the uplink
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endpoint.log.Error("failed to close piece reader", zap.Error(err))
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}
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}()
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// TODO: verify chunk.Size behavior logic with regards to reading all
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if chunk.Offset+chunk.ChunkSize > pieceReader.Size() {
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return Error.New("requested more data than available, requesting=%v available=%v", chunk.Offset+chunk.ChunkSize, pieceReader.Size())
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}
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availableBandwidth, err := endpoint.monitor.AvailableBandwidth(ctx)
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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throttle := sync2.NewThrottle()
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// TODO: see whether this can be implemented without a goroutine
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group, ctx := errgroup.WithContext(ctx)
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group.Go(func() (err error) {
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var maximumChunkSize = 1 * memory.MiB.Int64()
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currentOffset := chunk.Offset
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unsentAmount := chunk.ChunkSize
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for unsentAmount > 0 {
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tryToSend := min(unsentAmount, maximumChunkSize)
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// TODO: add timeout here
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chunkSize, err := throttle.ConsumeOrWait(tryToSend)
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if err != nil {
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// this can happen only because uplink decided to close the connection
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return nil
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}
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chunkData := make([]byte, chunkSize)
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_, err = pieceReader.Seek(currentOffset, io.SeekStart)
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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_, err = pieceReader.Read(chunkData)
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if err != nil {
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return ErrInternal.Wrap(err)
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}
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err = stream.Send(&pb.PieceDownloadResponse{
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Chunk: &pb.PieceDownloadResponse_Chunk{
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Offset: currentOffset,
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Data: chunkData,
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},
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})
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if err != nil {
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// err is io.EOF when uplink asked for a piece, but decided not to retrieve it,
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// no need to propagate it
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return ErrProtocol.Wrap(ignoreEOF(err))
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}
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currentOffset += chunkSize
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unsentAmount -= chunkSize
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}
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return nil
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})
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recvErr := func() (err error) {
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largestOrder := pb.Order2{}
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defer endpoint.SaveOrder(ctx, limit, &largestOrder, peer)
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// ensure that we always terminate sending goroutine
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defer throttle.Fail(io.EOF)
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for {
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// TODO: check errors
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// TODO: add timeout here
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message, err = stream.Recv()
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if err != nil {
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// err is io.EOF when uplink closed the connection, no need to return error
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return ErrProtocol.Wrap(ignoreEOF(err))
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}
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if message == nil || message.Order == nil {
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return ErrProtocol.New("expected order as the message")
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}
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if err := endpoint.VerifyOrder(ctx, peer, limit, message.Order, largestOrder.Amount); err != nil {
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return err
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}
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chunkSize := message.Order.Amount - largestOrder.Amount
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availableBandwidth -= chunkSize
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if availableBandwidth < 0 {
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return ErrProtocol.New("out of bandwidth")
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}
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if err := throttle.Produce(chunkSize); err != nil {
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// shouldn't happen since only receiving side is calling Fail
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return ErrInternal.Wrap(err)
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}
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largestOrder = *message.Order
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}
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}()
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// ensure we wait for sender to complete
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sendErr := group.Wait()
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return Error.Wrap(errs.Combine(sendErr, recvErr))
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}
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// SaveOrder saves the order with all necessary information. It assumes it has been already verified.
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func (endpoint *Endpoint) SaveOrder(ctx context.Context, limit *pb.OrderLimit2, order *pb.Order2, uplink *identity.PeerIdentity) {
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// TODO: do this in a goroutine
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if order == nil || order.Amount <= 0 {
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return
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}
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err := endpoint.orders.Enqueue(ctx, &orders.Info{
|
|
Limit: limit,
|
|
Order: order,
|
|
Uplink: uplink,
|
|
})
|
|
if err != nil {
|
|
endpoint.log.Error("failed to add order", zap.Error(err))
|
|
} else {
|
|
err := endpoint.usage.Add(ctx, limit.SatelliteId, limit.Action, order.Amount, time.Now())
|
|
if err != nil {
|
|
endpoint.log.Error("failed to add bandwidth usage", zap.Error(err))
|
|
}
|
|
}
|
|
}
|
|
|
|
// min finds the min of two values
|
|
func min(a, b int64) int64 {
|
|
if a < b {
|
|
return a
|
|
}
|
|
return b
|
|
}
|
|
|
|
// ignoreEOF ignores io.EOF error.
|
|
func ignoreEOF(err error) error {
|
|
if err == io.EOF {
|
|
return nil
|
|
}
|
|
return err
|
|
}
|