ee720040c9
Metainfo needs to know rate and burst limit to be able to limit users requests. We made cache for per project limiter but to make single instance we need to know about limits. So far we were doing direct DB call to get rate/burst limit for project but it's generating lots of DB requests and can be easily cached as we even have project limit cache. This change extends project limit cache with rate/burst limit and starts using this change while creating project limiter instance for metainfo. Because data size kept in project limit cache is quite small this change also bumps a bit default capacity of the cache. Fixes https://github.com/storj/storj/issues/5663 Change-Id: Icb42ec1632bfa0c9f74857b559083dcbd054d071
308 lines
9.5 KiB
Go
308 lines
9.5 KiB
Go
// Copyright (C) 2019 Storj Labs, Inc.
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// See LICENSE for copying information.
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package metainfo
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import (
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"context"
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"time"
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"github.com/spacemonkeygo/monkit/v3"
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"github.com/zeebo/errs"
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"go.uber.org/zap"
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"storj.io/common/encryption"
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"storj.io/common/lrucache"
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"storj.io/common/macaroon"
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"storj.io/common/pb"
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"storj.io/common/rpc/rpcstatus"
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"storj.io/common/signing"
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"storj.io/common/storj"
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"storj.io/storj/satellite/accounting"
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"storj.io/storj/satellite/attribution"
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"storj.io/storj/satellite/buckets"
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"storj.io/storj/satellite/console"
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"storj.io/storj/satellite/internalpb"
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"storj.io/storj/satellite/metabase"
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"storj.io/storj/satellite/metainfo/piecedeletion"
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"storj.io/storj/satellite/metainfo/pointerverification"
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"storj.io/storj/satellite/orders"
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"storj.io/storj/satellite/overlay"
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"storj.io/storj/satellite/revocation"
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)
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const (
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satIDExpiration = 48 * time.Hour
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)
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var (
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mon = monkit.Package()
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// Error general metainfo error.
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Error = errs.Class("metainfo")
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// ErrNodeAlreadyExists pointer already has a piece for a node err.
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ErrNodeAlreadyExists = errs.Class("metainfo: node already exists")
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// ErrBucketNotEmpty is returned when bucket is required to be empty for an operation.
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ErrBucketNotEmpty = errs.Class("bucket not empty")
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)
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// APIKeys is api keys store methods used by endpoint.
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//
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// architecture: Database
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type APIKeys interface {
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GetByHead(ctx context.Context, head []byte) (*console.APIKeyInfo, error)
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}
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// Endpoint metainfo endpoint.
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//
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// architecture: Endpoint
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type Endpoint struct {
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pb.DRPCMetainfoUnimplementedServer
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log *zap.Logger
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buckets *buckets.Service
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metabase *metabase.DB
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deletePieces *piecedeletion.Service
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orders *orders.Service
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overlay *overlay.Service
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attributions attribution.DB
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pointerVerification *pointerverification.Service
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projectUsage *accounting.Service
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projectLimits *accounting.ProjectLimitCache
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projects console.Projects
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apiKeys APIKeys
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satellite signing.Signer
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limiterCache *lrucache.ExpiringLRU
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encInlineSegmentSize int64 // max inline segment size + encryption overhead
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revocations revocation.DB
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defaultRS *pb.RedundancyScheme
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config Config
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versionCollector *versionCollector
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}
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// NewEndpoint creates new metainfo endpoint instance.
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func NewEndpoint(log *zap.Logger, buckets *buckets.Service, metabaseDB *metabase.DB,
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deletePieces *piecedeletion.Service, orders *orders.Service, cache *overlay.Service,
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attributions attribution.DB, peerIdentities overlay.PeerIdentities,
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apiKeys APIKeys, projectUsage *accounting.Service, projectLimits *accounting.ProjectLimitCache, projects console.Projects,
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satellite signing.Signer, revocations revocation.DB, config Config) (*Endpoint, error) {
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// TODO do something with too many params
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encInlineSegmentSize, err := encryption.CalcEncryptedSize(config.MaxInlineSegmentSize.Int64(), storj.EncryptionParameters{
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CipherSuite: storj.EncAESGCM,
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BlockSize: 128, // intentionally low block size to allow maximum possible encryption overhead
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})
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if err != nil {
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return nil, err
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}
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defaultRSScheme := &pb.RedundancyScheme{
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Type: pb.RedundancyScheme_RS,
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MinReq: int32(config.RS.Min),
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RepairThreshold: int32(config.RS.Repair),
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SuccessThreshold: int32(config.RS.Success),
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Total: int32(config.RS.Total),
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ErasureShareSize: config.RS.ErasureShareSize.Int32(),
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}
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return &Endpoint{
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log: log,
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buckets: buckets,
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metabase: metabaseDB,
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deletePieces: deletePieces,
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orders: orders,
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overlay: cache,
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attributions: attributions,
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pointerVerification: pointerverification.NewService(peerIdentities),
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apiKeys: apiKeys,
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projectUsage: projectUsage,
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projectLimits: projectLimits,
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projects: projects,
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satellite: satellite,
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limiterCache: lrucache.New(lrucache.Options{
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Capacity: config.RateLimiter.CacheCapacity,
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Expiration: config.RateLimiter.CacheExpiration,
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}),
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encInlineSegmentSize: encInlineSegmentSize,
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revocations: revocations,
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defaultRS: defaultRSScheme,
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config: config,
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versionCollector: newVersionCollector(log),
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}, nil
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}
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// Close closes resources.
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func (endpoint *Endpoint) Close() error { return nil }
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// ProjectInfo returns allowed ProjectInfo for the provided API key.
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func (endpoint *Endpoint) ProjectInfo(ctx context.Context, req *pb.ProjectInfoRequest) (_ *pb.ProjectInfoResponse, err error) {
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defer mon.Task()(&ctx)(&err)
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endpoint.versionCollector.collect(req.Header.UserAgent, mon.Func().ShortName())
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keyInfo, err := endpoint.validateAuth(ctx, req.Header, macaroon.Action{
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Op: macaroon.ActionProjectInfo,
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Time: time.Now(),
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})
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if err != nil {
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return nil, err
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}
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salt, err := endpoint.projects.GetSalt(ctx, keyInfo.ProjectID)
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if err != nil {
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return nil, err
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}
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return &pb.ProjectInfoResponse{
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ProjectSalt: salt,
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}, nil
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}
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// RevokeAPIKey handles requests to revoke an api key.
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func (endpoint *Endpoint) RevokeAPIKey(ctx context.Context, req *pb.RevokeAPIKeyRequest) (resp *pb.RevokeAPIKeyResponse, err error) {
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defer mon.Task()(&ctx)(&err)
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endpoint.versionCollector.collect(req.Header.UserAgent, mon.Func().ShortName())
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macToRevoke, err := macaroon.ParseMacaroon(req.GetApiKey())
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if err != nil {
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return nil, rpcstatus.Error(rpcstatus.InvalidArgument, "API key to revoke is not a macaroon")
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}
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keyInfo, err := endpoint.validateRevoke(ctx, req.Header, macToRevoke)
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if err != nil {
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return nil, err
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}
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err = endpoint.revocations.Revoke(ctx, macToRevoke.Tail(), keyInfo.ID[:])
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if err != nil {
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endpoint.log.Error("Failed to revoke API key", zap.Error(err))
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return nil, rpcstatus.Error(rpcstatus.Internal, "Failed to revoke API key")
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}
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return &pb.RevokeAPIKeyResponse{}, nil
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}
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func (endpoint *Endpoint) packStreamID(ctx context.Context, satStreamID *internalpb.StreamID) (streamID storj.StreamID, err error) {
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defer mon.Task()(&ctx)(&err)
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if satStreamID == nil {
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return nil, rpcstatus.Error(rpcstatus.Internal, "unable to create stream id")
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}
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if !satStreamID.ExpirationDate.IsZero() {
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// DB can only preserve microseconds precision and nano seconds will be cut.
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// To have stable StreamID/UploadID we need to always truncate it.
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satStreamID.ExpirationDate = satStreamID.ExpirationDate.Truncate(time.Microsecond)
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}
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signedStreamID, err := SignStreamID(ctx, endpoint.satellite, satStreamID)
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if err != nil {
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return nil, rpcstatus.Error(rpcstatus.Internal, err.Error())
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}
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encodedStreamID, err := pb.Marshal(signedStreamID)
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if err != nil {
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return nil, rpcstatus.Error(rpcstatus.Internal, err.Error())
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}
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streamID, err = storj.StreamIDFromBytes(encodedStreamID)
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if err != nil {
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return nil, rpcstatus.Error(rpcstatus.Internal, err.Error())
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}
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return streamID, nil
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}
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func (endpoint *Endpoint) packSegmentID(ctx context.Context, satSegmentID *internalpb.SegmentID) (segmentID storj.SegmentID, err error) {
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defer mon.Task()(&ctx)(&err)
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if satSegmentID == nil {
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return nil, rpcstatus.Error(rpcstatus.Internal, "unable to create segment id")
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}
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signedSegmentID, err := SignSegmentID(ctx, endpoint.satellite, satSegmentID)
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if err != nil {
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return nil, err
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}
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encodedSegmentID, err := pb.Marshal(signedSegmentID)
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if err != nil {
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return nil, err
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}
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segmentID, err = storj.SegmentIDFromBytes(encodedSegmentID)
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if err != nil {
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return nil, err
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}
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return segmentID, nil
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}
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func (endpoint *Endpoint) unmarshalSatStreamID(ctx context.Context, streamID storj.StreamID) (_ *internalpb.StreamID, err error) {
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defer mon.Task()(&ctx)(&err)
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satStreamID := &internalpb.StreamID{}
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err = pb.Unmarshal(streamID, satStreamID)
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if err != nil {
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return nil, err
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}
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err = VerifyStreamID(ctx, endpoint.satellite, satStreamID)
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if err != nil {
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return nil, err
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}
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return satStreamID, nil
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}
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func (endpoint *Endpoint) unmarshalSatSegmentID(ctx context.Context, segmentID storj.SegmentID) (_ *internalpb.SegmentID, err error) {
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defer mon.Task()(&ctx)(&err)
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if len(segmentID) == 0 {
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return nil, errs.New("segment ID missing")
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}
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satSegmentID := &internalpb.SegmentID{}
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err = pb.Unmarshal(segmentID, satSegmentID)
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if err != nil {
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return nil, err
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}
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if satSegmentID.StreamId == nil {
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return nil, errs.New("stream ID missing")
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}
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err = VerifySegmentID(ctx, endpoint.satellite, satSegmentID)
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if err != nil {
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return nil, err
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}
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if satSegmentID.CreationDate.Before(time.Now().Add(-satIDExpiration)) {
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return nil, errs.New("segment ID expired")
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}
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return satSegmentID, nil
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}
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// convertMetabaseErr converts domain errors from metabase to appropriate rpc statuses errors.
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func (endpoint *Endpoint) convertMetabaseErr(err error) error {
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if rpcstatus.Code(err) != rpcstatus.Unknown {
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// it's already RPC error
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return err
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}
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switch {
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case storj.ErrObjectNotFound.Has(err):
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return rpcstatus.Error(rpcstatus.NotFound, err.Error())
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case metabase.ErrSegmentNotFound.Has(err):
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return rpcstatus.Error(rpcstatus.NotFound, err.Error())
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case metabase.ErrInvalidRequest.Has(err):
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return rpcstatus.Error(rpcstatus.InvalidArgument, err.Error())
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case metabase.ErrObjectAlreadyExists.Has(err):
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return rpcstatus.Error(rpcstatus.AlreadyExists, err.Error())
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case metabase.ErrPendingObjectMissing.Has(err):
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return rpcstatus.Error(rpcstatus.NotFound, err.Error())
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case metabase.ErrPermissionDenied.Has(err):
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return rpcstatus.Error(rpcstatus.PermissionDenied, err.Error())
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default:
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endpoint.log.Error("internal", zap.Error(err))
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return rpcstatus.Error(rpcstatus.Internal, err.Error())
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}
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}
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