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// Copyright (C) 2019 Storj Labs, Inc.
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// See LICENSE for copying information.
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package overlay
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import (
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"context"
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"errors"
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"net"
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"time"
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"github.com/zeebo/errs"
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"go.uber.org/zap"
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"storj.io/common/pb"
"storj.io/common/storj"
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"storj.io/common/storj/location"
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"storj.io/common/sync2"
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"storj.io/storj/satellite/geoip"
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"storj.io/storj/satellite/metabase"
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)
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// ErrEmptyNode is returned when the nodeID is empty.
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var ErrEmptyNode = errs . New ( "empty node ID" )
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// ErrNodeNotFound is returned if a node does not exist in database.
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var ErrNodeNotFound = errs . Class ( "node not found" )
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// ErrNodeOffline is returned if a nodes is offline.
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var ErrNodeOffline = errs . Class ( "node is offline" )
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// ErrNodeDisqualified is returned if a nodes is disqualified.
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var ErrNodeDisqualified = errs . Class ( "node is disqualified" )
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// ErrNodeFinishedGE is returned if a node has finished graceful exit.
var ErrNodeFinishedGE = errs . Class ( "node finished graceful exit" )
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// ErrNotEnoughNodes is when selecting nodes failed with the given parameters.
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var ErrNotEnoughNodes = errs . Class ( "not enough nodes" )
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// DB implements the database for overlay.Service.
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//
// architecture: Database
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type DB interface {
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// GetOnlineNodesForGetDelete returns a map of nodes for the supplied nodeIDs
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GetOnlineNodesForGetDelete ( ctx context . Context , nodeIDs [ ] storj . NodeID , onlineWindow time . Duration , asOf AsOfSystemTimeConfig ) ( map [ storj . NodeID ] * SelectedNode , error )
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// GetOnlineNodesForAuditRepair returns a map of nodes for the supplied nodeIDs.
// The return value contains necessary information to create orders as well as nodes'
// current reputation status.
GetOnlineNodesForAuditRepair ( ctx context . Context , nodeIDs [ ] storj . NodeID , onlineWindow time . Duration ) ( map [ storj . NodeID ] * NodeReputation , error )
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// SelectStorageNodes looks up nodes based on criteria
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SelectStorageNodes ( ctx context . Context , totalNeededNodes , newNodeCount int , criteria * NodeCriteria ) ( [ ] * SelectedNode , error )
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// SelectAllStorageNodesUpload returns all nodes that qualify to store data, organized as reputable nodes and new nodes
SelectAllStorageNodesUpload ( ctx context . Context , selectionCfg NodeSelectionConfig ) ( reputable , new [ ] * SelectedNode , err error )
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// SelectAllStorageNodesDownload returns a nodes that are ready for downloading
SelectAllStorageNodesDownload ( ctx context . Context , onlineWindow time . Duration , asOf AsOfSystemTimeConfig ) ( [ ] * SelectedNode , error )
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// Get looks up the node by nodeID
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Get ( ctx context . Context , nodeID storj . NodeID ) ( * NodeDossier , error )
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// KnownOffline filters a set of nodes to offline nodes
KnownOffline ( context . Context , * NodeCriteria , storj . NodeIDList ) ( storj . NodeIDList , error )
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// KnownUnreliableOrOffline filters a set of nodes to unhealth or offlines node, independent of new
KnownUnreliableOrOffline ( context . Context , * NodeCriteria , storj . NodeIDList ) ( storj . NodeIDList , error )
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// KnownReliableInExcludedCountries filters healthy nodes that are in excluded countries.
KnownReliableInExcludedCountries ( context . Context , * NodeCriteria , storj . NodeIDList ) ( storj . NodeIDList , error )
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// KnownReliable filters a set of nodes to reliable (online and qualified) nodes.
KnownReliable ( ctx context . Context , onlineWindow time . Duration , nodeIDs storj . NodeIDList ) ( [ ] * pb . Node , error )
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// Reliable returns all nodes that are reliable
Reliable ( context . Context , * NodeCriteria ) ( storj . NodeIDList , error )
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// UpdateReputation updates the DB columns for all reputation fields in ReputationStatus.
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UpdateReputation ( ctx context . Context , id storj . NodeID , request ReputationUpdate ) error
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// UpdateNodeInfo updates node dossier with info requested from the node itself like node type, email, wallet, capacity, and version.
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UpdateNodeInfo ( ctx context . Context , node storj . NodeID , nodeInfo * InfoResponse ) ( stats * NodeDossier , err error )
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// UpdateCheckIn updates a single storagenode's check-in stats.
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UpdateCheckIn ( ctx context . Context , node NodeCheckInInfo , timestamp time . Time , config NodeSelectionConfig ) ( err error )
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// AllPieceCounts returns a map of node IDs to piece counts from the db.
AllPieceCounts ( ctx context . Context ) ( pieceCounts map [ storj . NodeID ] int , err error )
// UpdatePieceCounts sets the piece count field for the given node IDs.
UpdatePieceCounts ( ctx context . Context , pieceCounts map [ storj . NodeID ] int ) ( err error )
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// UpdateExitStatus is used to update a node's graceful exit status.
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UpdateExitStatus ( ctx context . Context , request * ExitStatusRequest ) ( _ * NodeDossier , err error )
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// GetExitingNodes returns nodes who have initiated a graceful exit, but have not completed it.
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GetExitingNodes ( ctx context . Context ) ( exitingNodes [ ] * ExitStatus , err error )
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// GetGracefulExitCompletedByTimeFrame returns nodes who have completed graceful exit within a time window (time window is around graceful exit completion).
GetGracefulExitCompletedByTimeFrame ( ctx context . Context , begin , end time . Time ) ( exitedNodes storj . NodeIDList , err error )
// GetGracefulExitIncompleteByTimeFrame returns nodes who have initiated, but not completed graceful exit within a time window (time window is around graceful exit initiation).
GetGracefulExitIncompleteByTimeFrame ( ctx context . Context , begin , end time . Time ) ( exitingNodes storj . NodeIDList , err error )
// GetExitStatus returns a node's graceful exit status.
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GetExitStatus ( ctx context . Context , nodeID storj . NodeID ) ( exitStatus * ExitStatus , err error )
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// GetNodesNetwork returns the /24 subnet for each storage node, order is not guaranteed.
GetNodesNetwork ( ctx context . Context , nodeIDs [ ] storj . NodeID ) ( nodeNets [ ] string , err error )
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// DisqualifyNode disqualifies a storage node.
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DisqualifyNode ( ctx context . Context , nodeID storj . NodeID , disqualifiedAt time . Time , reason DisqualificationReason ) ( err error )
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// DQNodesLastSeenBefore disqualifies a limited number of nodes where last_contact_success < cutoff except those already disqualified
// or gracefully exited or where last_contact_success = '0001-01-01 00:00:00+00'.
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DQNodesLastSeenBefore ( ctx context . Context , cutoff time . Time , limit int ) ( count int , err error )
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// TestSuspendNodeUnknownAudit suspends a storage node for unknown audits.
TestSuspendNodeUnknownAudit ( ctx context . Context , nodeID storj . NodeID , suspendedAt time . Time ) ( err error )
// TestUnsuspendNodeUnknownAudit unsuspends a storage node for unknown audits.
TestUnsuspendNodeUnknownAudit ( ctx context . Context , nodeID storj . NodeID ) ( err error )
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// TestVetNode directly sets a node's vetted_at timestamp to make testing easier
TestVetNode ( ctx context . Context , nodeID storj . NodeID ) ( vettedTime * time . Time , err error )
// TestUnvetNode directly sets a node's vetted_at timestamp to null to make testing easier
TestUnvetNode ( ctx context . Context , nodeID storj . NodeID ) ( err error )
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// TestVetNode directly sets a node's offline_suspended timestamp to make testing easier
TestSuspendNodeOffline ( ctx context . Context , nodeID storj . NodeID , suspendedAt time . Time ) ( err error )
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// TestNodeCountryCode sets node country code.
TestNodeCountryCode ( ctx context . Context , nodeID storj . NodeID , countryCode string ) ( err error )
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// IterateAllNodes will call cb on all known nodes (used in restore trash contexts).
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IterateAllNodes ( context . Context , func ( context . Context , * SelectedNode ) error ) error
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// IterateAllNodes will call cb on all known nodes (used for invoice generation).
IterateAllNodeDossiers ( context . Context , func ( context . Context , * NodeDossier ) error ) error
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}
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// DisqualificationReason is disqualification reason enum type.
type DisqualificationReason int
const (
// DisqualificationReasonUnknown denotes undetermined disqualification reason.
DisqualificationReasonUnknown DisqualificationReason = 0
// DisqualificationReasonAuditFailure denotes disqualification due to audit score falling below threshold.
DisqualificationReasonAuditFailure DisqualificationReason = 1
// DisqualificationReasonSuspension denotes disqualification due to unknown audit failure after grace period for unknown audits
// has elapsed.
DisqualificationReasonSuspension DisqualificationReason = 2
// DisqualificationReasonNodeOffline denotes disqualification due to node's online score falling below threshold after tracking
// period has elapsed.
DisqualificationReasonNodeOffline DisqualificationReason = 3
)
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// NodeCheckInInfo contains all the info that will be updated when a node checkins.
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type NodeCheckInInfo struct {
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NodeID storj . NodeID
Address * pb . NodeAddress
LastNet string
LastIPPort string
IsUp bool
Operator * pb . NodeOperator
Capacity * pb . NodeCapacity
Version * pb . NodeVersion
CountryCode location . CountryCode
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}
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// InfoResponse contains node dossier info requested from the storage node.
type InfoResponse struct {
Type pb . NodeType
Operator * pb . NodeOperator
Capacity * pb . NodeCapacity
Version * pb . NodeVersion
}
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// FindStorageNodesRequest defines easy request parameters.
type FindStorageNodesRequest struct {
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RequestedCount int
ExcludedIDs [ ] storj . NodeID
MinimumVersion string // semver or empty
AsOfSystemInterval time . Duration // only used for CRDB queries
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Placement storj . PlacementConstraint
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}
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// NodeCriteria are the requirements for selecting nodes.
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type NodeCriteria struct {
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FreeDisk int64
ExcludedIDs [ ] storj . NodeID
ExcludedNetworks [ ] string // the /24 subnet IPv4 or /64 subnet IPv6 for nodes
MinimumVersion string // semver or empty
OnlineWindow time . Duration
DistinctIP bool
AsOfSystemInterval time . Duration // only used for CRDB queries
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ExcludedCountries [ ] string
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}
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// ReputationStatus indicates current reputation status for a node.
type ReputationStatus struct {
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Disqualified * time . Time
DisqualificationReason * DisqualificationReason
UnknownAuditSuspended * time . Time
OfflineSuspended * time . Time
VettedAt * time . Time
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}
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// ReputationUpdate contains reputation update data for a node.
type ReputationUpdate struct {
Disqualified * time . Time
DisqualificationReason DisqualificationReason
UnknownAuditSuspended * time . Time
OfflineSuspended * time . Time
VettedAt * time . Time
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}
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// ExitStatus is used for reading graceful exit status.
type ExitStatus struct {
NodeID storj . NodeID
ExitInitiatedAt * time . Time
ExitLoopCompletedAt * time . Time
ExitFinishedAt * time . Time
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ExitSuccess bool
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}
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// ExitStatusRequest is used to update a node's graceful exit status.
type ExitStatusRequest struct {
NodeID storj . NodeID
ExitInitiatedAt time . Time
ExitLoopCompletedAt time . Time
ExitFinishedAt time . Time
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ExitSuccess bool
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}
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// NodeDossier is the complete info that the satellite tracks for a storage node.
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type NodeDossier struct {
pb . Node
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Type pb . NodeType
Operator pb . NodeOperator
Capacity pb . NodeCapacity
Reputation NodeStats
Version pb . NodeVersion
Contained bool
Disqualified * time . Time
DisqualificationReason * DisqualificationReason
UnknownAuditSuspended * time . Time
OfflineSuspended * time . Time
OfflineUnderReview * time . Time
PieceCount int64
ExitStatus ExitStatus
CreatedAt time . Time
LastNet string
LastIPPort string
CountryCode location . CountryCode
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}
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// NodeStats contains statistics about a node.
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type NodeStats struct {
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Latency90 int64
LastContactSuccess time . Time
LastContactFailure time . Time
OfflineUnderReview * time . Time
Status ReputationStatus
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}
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// NodeLastContact contains the ID, address, and timestamp.
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type NodeLastContact struct {
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URL storj . NodeURL
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LastIPPort string
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LastContactSuccess time . Time
LastContactFailure time . Time
}
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// SelectedNode is used as a result for creating orders limits.
type SelectedNode struct {
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ID storj . NodeID
Address * pb . NodeAddress
LastNet string
LastIPPort string
CountryCode location . CountryCode
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}
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// NodeReputation is used as a result for creating orders limits for audits.
type NodeReputation struct {
ID storj . NodeID
Address * pb . NodeAddress
LastNet string
LastIPPort string
Reputation ReputationStatus
}
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// Clone returns a deep clone of the selected node.
func ( node * SelectedNode ) Clone ( ) * SelectedNode {
return & SelectedNode {
ID : node . ID ,
Address : & pb . NodeAddress {
Transport : node . Address . Transport ,
Address : node . Address . Address ,
} ,
LastNet : node . LastNet ,
LastIPPort : node . LastIPPort ,
}
}
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// Service is used to store and handle node information.
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//
// architecture: Service
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type Service struct {
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log * zap . Logger
db DB
config Config
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GeoIP geoip . IPToCountry
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UploadSelectionCache * UploadSelectionCache
DownloadSelectionCache * DownloadSelectionCache
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}
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// NewService returns a new Service.
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func NewService ( log * zap . Logger , db DB , config Config ) ( * Service , error ) {
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err := config . Node . AsOfSystemTime . isValid ( )
if err != nil {
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return nil , errs . Wrap ( err )
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}
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var geoIP geoip . IPToCountry = geoip . NewMockIPToCountry ( config . GeoIP . MockCountries )
if config . GeoIP . DB != "" {
geoIP , err = geoip . OpenMaxmindDB ( config . GeoIP . DB )
if err != nil {
return nil , Error . Wrap ( err )
}
}
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uploadSelectionCache , err := NewUploadSelectionCache ( log , db ,
config . NodeSelectionCache . Staleness , config . Node ,
)
if err != nil {
return nil , errs . Wrap ( err )
}
downloadSelectionCache , err := NewDownloadSelectionCache ( log , db , DownloadSelectionCacheConfig {
Staleness : config . NodeSelectionCache . Staleness ,
OnlineWindow : config . Node . OnlineWindow ,
AsOfSystemTime : config . Node . AsOfSystemTime ,
} )
if err != nil {
return nil , errs . Wrap ( err )
}
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return & Service {
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log : log ,
db : db ,
config : config ,
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GeoIP : geoIP ,
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UploadSelectionCache : uploadSelectionCache ,
DownloadSelectionCache : downloadSelectionCache ,
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} , nil
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}
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// Run runs the background processes needed for caches.
func ( service * Service ) Run ( ctx context . Context ) error {
return errs . Combine ( sync2 . Concurrently (
func ( ) error { return service . UploadSelectionCache . Run ( ctx ) } ,
func ( ) error { return service . DownloadSelectionCache . Run ( ctx ) } ,
) ... )
}
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// Close closes resources.
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func ( service * Service ) Close ( ) error {
return service . GeoIP . Close ( )
}
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// Get looks up the provided nodeID from the overlay.
func ( service * Service ) Get ( ctx context . Context , nodeID storj . NodeID ) ( _ * NodeDossier , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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if nodeID . IsZero ( ) {
return nil , ErrEmptyNode
}
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return service . db . Get ( ctx , nodeID )
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}
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// GetOnlineNodesForGetDelete returns a map of nodes for the supplied nodeIDs.
func ( service * Service ) GetOnlineNodesForGetDelete ( ctx context . Context , nodeIDs [ ] storj . NodeID ) ( _ map [ storj . NodeID ] * SelectedNode , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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return service . db . GetOnlineNodesForGetDelete ( ctx , nodeIDs , service . config . Node . OnlineWindow , service . config . Node . AsOfSystemTime )
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}
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// GetOnlineNodesForAuditRepair returns a map of nodes for the supplied nodeIDs.
func ( service * Service ) GetOnlineNodesForAuditRepair ( ctx context . Context , nodeIDs [ ] storj . NodeID ) ( _ map [ storj . NodeID ] * NodeReputation , err error ) {
defer mon . Task ( ) ( & ctx ) ( & err )
return service . db . GetOnlineNodesForAuditRepair ( ctx , nodeIDs , service . config . Node . OnlineWindow )
}
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// GetNodeIPs returns a map of node ip:port for the supplied nodeIDs.
func ( service * Service ) GetNodeIPs ( ctx context . Context , nodeIDs [ ] storj . NodeID ) ( _ map [ storj . NodeID ] string , err error ) {
defer mon . Task ( ) ( & ctx ) ( & err )
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return service . DownloadSelectionCache . GetNodeIPs ( ctx , nodeIDs )
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}
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// IsOnline checks if a node is 'online' based on the collected statistics.
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func ( service * Service ) IsOnline ( node * NodeDossier ) bool {
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return time . Since ( node . Reputation . LastContactSuccess ) < service . config . Node . OnlineWindow
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}
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// FindStorageNodesForGracefulExit searches the overlay network for nodes that meet the provided requirements for graceful-exit requests.
func ( service * Service ) FindStorageNodesForGracefulExit ( ctx context . Context , req FindStorageNodesRequest ) ( _ [ ] * SelectedNode , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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return service . UploadSelectionCache . GetNodes ( ctx , req )
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}
// FindStorageNodesForUpload searches the overlay network for nodes that meet the provided requirements for upload.
//
// When enabled it uses the cache to select nodes.
// When the node selection from the cache fails, it falls back to the old implementation.
func ( service * Service ) FindStorageNodesForUpload ( ctx context . Context , req FindStorageNodesRequest ) ( _ [ ] * SelectedNode , err error ) {
defer mon . Task ( ) ( & ctx ) ( & err )
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if service . config . Node . AsOfSystemTime . Enabled && service . config . Node . AsOfSystemTime . DefaultInterval < 0 {
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req . AsOfSystemInterval = service . config . Node . AsOfSystemTime . DefaultInterval
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}
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// TODO excluding country codes on upload if cache is disabled is not implemented
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if service . config . NodeSelectionCache . Disabled {
return service . FindStorageNodesWithPreferences ( ctx , req , & service . config . Node )
}
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selectedNodes , err := service . UploadSelectionCache . GetNodes ( ctx , req )
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if err != nil {
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return selectedNodes , err
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}
if len ( selectedNodes ) < req . RequestedCount {
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excludedIDs := make ( [ ] string , 0 )
for _ , e := range req . ExcludedIDs {
excludedIDs = append ( excludedIDs , e . String ( ) )
}
service . log . Warn ( "Not enough nodes are available from Node Cache" ,
zap . String ( "minVersion" , req . MinimumVersion ) ,
zap . Strings ( "excludedIDs" , excludedIDs ) ,
zap . Duration ( "asOfSystemInterval" , req . AsOfSystemInterval ) ,
zap . Int ( "requested" , req . RequestedCount ) ,
zap . Int ( "available" , len ( selectedNodes ) ) ,
zap . Uint16 ( "placement" , uint16 ( req . Placement ) ) )
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}
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return selectedNodes , err
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}
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// FindStorageNodesWithPreferences searches the overlay network for nodes that meet the provided criteria.
//
// This does not use a cache.
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func ( service * Service ) FindStorageNodesWithPreferences ( ctx context . Context , req FindStorageNodesRequest , preferences * NodeSelectionConfig ) ( nodes [ ] * SelectedNode , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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// TODO: add sanity limits to requested node count
// TODO: add sanity limits to excluded nodes
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totalNeededNodes := req . RequestedCount
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excludedIDs := req . ExcludedIDs
// if distinctIP is enabled, keep track of the network
// to make sure we only select nodes from different networks
var excludedNetworks [ ] string
if preferences . DistinctIP && len ( excludedIDs ) > 0 {
excludedNetworks , err = service . db . GetNodesNetwork ( ctx , excludedIDs )
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if err != nil {
return nil , Error . Wrap ( err )
}
}
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newNodeCount := 0
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if preferences . NewNodeFraction > 0 {
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newNodeCount = int ( float64 ( totalNeededNodes ) * preferences . NewNodeFraction )
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}
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criteria := NodeCriteria {
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FreeDisk : preferences . MinimumDiskSpace . Int64 ( ) ,
ExcludedIDs : excludedIDs ,
ExcludedNetworks : excludedNetworks ,
MinimumVersion : preferences . MinimumVersion ,
OnlineWindow : preferences . OnlineWindow ,
DistinctIP : preferences . DistinctIP ,
AsOfSystemInterval : req . AsOfSystemInterval ,
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}
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nodes , err = service . db . SelectStorageNodes ( ctx , totalNeededNodes , newNodeCount , & criteria )
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if err != nil {
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return nil , Error . Wrap ( err )
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}
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if len ( nodes ) < totalNeededNodes {
return nodes , ErrNotEnoughNodes . New ( "requested %d found %d; %+v " , totalNeededNodes , len ( nodes ) , criteria )
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}
return nodes , nil
}
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// KnownOffline filters a set of nodes to offline nodes.
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func ( service * Service ) KnownOffline ( ctx context . Context , nodeIds storj . NodeIDList ) ( offlineNodes storj . NodeIDList , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
criteria := & NodeCriteria {
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OnlineWindow : service . config . Node . OnlineWindow ,
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}
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return service . db . KnownOffline ( ctx , criteria , nodeIds )
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}
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// KnownUnreliableOrOffline filters a set of nodes to unhealth or offlines node, independent of new.
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func ( service * Service ) KnownUnreliableOrOffline ( ctx context . Context , nodeIds storj . NodeIDList ) ( badNodes storj . NodeIDList , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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criteria := & NodeCriteria {
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OnlineWindow : service . config . Node . OnlineWindow ,
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}
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return service . db . KnownUnreliableOrOffline ( ctx , criteria , nodeIds )
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}
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// KnownReliableInExcludedCountries filters healthy nodes that are in excluded countries.
func ( service * Service ) KnownReliableInExcludedCountries ( ctx context . Context , nodeIds storj . NodeIDList ) ( reliableInExcluded storj . NodeIDList , err error ) {
defer mon . Task ( ) ( & ctx ) ( & err )
criteria := & NodeCriteria {
OnlineWindow : service . config . Node . OnlineWindow ,
ExcludedCountries : service . config . RepairExcludedCountryCodes ,
}
return service . db . KnownReliableInExcludedCountries ( ctx , criteria , nodeIds )
}
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// KnownReliable filters a set of nodes to reliable (online and qualified) nodes.
func ( service * Service ) KnownReliable ( ctx context . Context , nodeIDs storj . NodeIDList ) ( nodes [ ] * pb . Node , err error ) {
defer mon . Task ( ) ( & ctx ) ( & err )
return service . db . KnownReliable ( ctx , service . config . Node . OnlineWindow , nodeIDs )
}
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// Reliable filters a set of nodes that are reliable, independent of new.
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func ( service * Service ) Reliable ( ctx context . Context ) ( nodes storj . NodeIDList , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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criteria := & NodeCriteria {
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OnlineWindow : service . config . Node . OnlineWindow ,
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}
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criteria . ExcludedCountries = service . config . RepairExcludedCountryCodes
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return service . db . Reliable ( ctx , criteria )
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}
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// UpdateReputation updates the DB columns for any of the reputation fields.
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func ( service * Service ) UpdateReputation ( ctx context . Context , id storj . NodeID , request ReputationUpdate ) ( err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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return service . db . UpdateReputation ( ctx , id , request )
}
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// UpdateNodeInfo updates node dossier with info requested from the node itself like node type, email, wallet, capacity, and version.
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func ( service * Service ) UpdateNodeInfo ( ctx context . Context , node storj . NodeID , nodeInfo * InfoResponse ) ( stats * NodeDossier , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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return service . db . UpdateNodeInfo ( ctx , node , nodeInfo )
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}
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// UpdateCheckIn updates a single storagenode's check-in info if needed.
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/ *
The check - in info is updated in the database if :
( 1 ) there is no previous entry ;
( 2 ) it has been too long since the last known entry ; or
( 3 ) the node hostname , IP address , port , wallet , sw version , or disk capacity
has changed .
Note that there can be a race between acquiring the previous entry and
performing the update , so if two updates happen at about the same time it is
not defined which one will end up in the database .
* /
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func ( service * Service ) UpdateCheckIn ( ctx context . Context , node NodeCheckInInfo , timestamp time . Time ) ( err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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failureMeter := mon . Meter ( "geofencing_lookup_failed" )
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oldInfo , err := service . Get ( ctx , node . NodeID )
if err != nil && ! ErrNodeNotFound . Has ( err ) {
return Error . New ( "failed to get node info from DB" )
}
if oldInfo == nil {
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node . CountryCode , err = service . GeoIP . LookupISOCountryCode ( node . LastIPPort )
if err != nil {
failureMeter . Mark ( 1 )
service . log . Debug ( "failed to resolve country code for node" ,
zap . String ( "node address" , node . Address . Address ) ,
zap . Stringer ( "Node ID" , node . NodeID ) ,
zap . Error ( err ) )
}
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return service . db . UpdateCheckIn ( ctx , node , timestamp , service . config . Node )
}
lastUp , lastDown := oldInfo . Reputation . LastContactSuccess , oldInfo . Reputation . LastContactFailure
lastContact := lastUp
if lastContact . Before ( lastDown ) {
lastContact = lastDown
}
dbStale := lastContact . Add ( service . config . NodeCheckInWaitPeriod ) . Before ( timestamp ) ||
( node . IsUp && lastUp . Before ( lastDown ) ) || ( ! node . IsUp && lastDown . Before ( lastUp ) )
addrChanged := ( ( node . Address == nil ) != ( oldInfo . Address == nil ) ) ||
( oldInfo . Address != nil && node . Address != nil && oldInfo . Address . Address != node . Address . Address )
walletChanged := ( node . Operator == nil && oldInfo . Operator . Wallet != "" ) ||
( node . Operator != nil && oldInfo . Operator . Wallet != node . Operator . Wallet )
verChanged := ( node . Version == nil && oldInfo . Version . Version != "" ) ||
( node . Version != nil && oldInfo . Version . Version != node . Version . Version )
spaceChanged := ( node . Capacity == nil && oldInfo . Capacity . FreeDisk != 0 ) ||
( node . Capacity != nil && node . Capacity . FreeDisk != oldInfo . Capacity . FreeDisk )
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if oldInfo . CountryCode == location . CountryCode ( 0 ) || oldInfo . LastIPPort != node . LastIPPort {
node . CountryCode , err = service . GeoIP . LookupISOCountryCode ( node . LastIPPort )
if err != nil {
failureMeter . Mark ( 1 )
service . log . Debug ( "failed to resolve country code for node" ,
zap . String ( "node address" , node . Address . Address ) ,
zap . Stringer ( "Node ID" , node . NodeID ) ,
zap . Error ( err ) )
}
} else {
node . CountryCode = oldInfo . CountryCode
}
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if dbStale || addrChanged || walletChanged || verChanged || spaceChanged ||
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oldInfo . LastNet != node . LastNet || oldInfo . LastIPPort != node . LastIPPort ||
oldInfo . CountryCode != node . CountryCode {
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return service . db . UpdateCheckIn ( ctx , node , timestamp , service . config . Node )
}
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service . log . Debug ( "ignoring unnecessary check-in" ,
zap . String ( "node address" , node . Address . Address ) ,
zap . Stringer ( "Node ID" , node . NodeID ) )
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mon . Event ( "unnecessary_node_check_in" )
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return nil
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}
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// GetMissingPieces returns the list of offline nodes and the corresponding pieces.
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func ( service * Service ) GetMissingPieces ( ctx context . Context , pieces metabase . Pieces ) ( missingPieces [ ] uint16 , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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var nodeIDs storj . NodeIDList
for _ , p := range pieces {
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nodeIDs = append ( nodeIDs , p . StorageNode )
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}
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badNodeIDs , err := service . KnownUnreliableOrOffline ( ctx , nodeIDs )
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if err != nil {
return nil , Error . New ( "error getting nodes %s" , err )
}
for _ , p := range pieces {
for _ , nodeID := range badNodeIDs {
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if nodeID == p . StorageNode {
missingPieces = append ( missingPieces , p . Number )
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}
}
}
return missingPieces , nil
}
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// GetReliablePiecesInExcludedCountries returns the list of pieces held by nodes located in excluded countries.
func ( service * Service ) GetReliablePiecesInExcludedCountries ( ctx context . Context , pieces metabase . Pieces ) ( piecesInExcluded [ ] uint16 , err error ) {
defer mon . Task ( ) ( & ctx ) ( & err )
var nodeIDs storj . NodeIDList
for _ , p := range pieces {
nodeIDs = append ( nodeIDs , p . StorageNode )
}
inExcluded , err := service . KnownReliableInExcludedCountries ( ctx , nodeIDs )
if err != nil {
return nil , Error . New ( "error getting nodes %s" , err )
}
for _ , p := range pieces {
for _ , nodeID := range inExcluded {
if nodeID == p . StorageNode {
piecesInExcluded = append ( piecesInExcluded , p . Number )
}
}
}
return piecesInExcluded , nil
}
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// DisqualifyNode disqualifies a storage node.
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func ( service * Service ) DisqualifyNode ( ctx context . Context , nodeID storj . NodeID , reason DisqualificationReason ) ( err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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return service . db . DisqualifyNode ( ctx , nodeID , time . Now ( ) . UTC ( ) , reason )
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}
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// ResolveIPAndNetwork resolves the target address and determines its IP and /24 subnet IPv4 or /64 subnet IPv6.
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func ResolveIPAndNetwork ( ctx context . Context , target string ) ( ip net . IP , port , network string , err error ) {
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defer mon . Task ( ) ( & ctx ) ( & err )
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host , port , err := net . SplitHostPort ( target )
if err != nil {
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return nil , "" , "" , err
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}
ipAddr , err := net . ResolveIPAddr ( "ip" , host )
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if err != nil {
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return nil , "" , "" , err
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}
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// If addr can be converted to 4byte notation, it is an IPv4 address, else its an IPv6 address
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if ipv4 := ipAddr . IP . To4 ( ) ; ipv4 != nil {
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// Filter all IPv4 Addresses into /24 Subnet's
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mask := net . CIDRMask ( 24 , 32 )
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return ipAddr . IP , port , ipv4 . Mask ( mask ) . String ( ) , nil
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}
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if ipv6 := ipAddr . IP . To16 ( ) ; ipv6 != nil {
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// Filter all IPv6 Addresses into /64 Subnet's
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mask := net . CIDRMask ( 64 , 128 )
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return ipAddr . IP , port , ipv6 . Mask ( mask ) . String ( ) , nil
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}
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return nil , "" , "" , errors . New ( "unable to get network for address " + ipAddr . String ( ) )
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}
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// TestVetNode directly sets a node's vetted_at timestamp to make testing easier.
func ( service * Service ) TestVetNode ( ctx context . Context , nodeID storj . NodeID ) ( vettedTime * time . Time , err error ) {
vettedTime , err = service . db . TestVetNode ( ctx , nodeID )
service . log . Warn ( "node vetted" , zap . Stringer ( "node ID" , nodeID ) , zap . Stringer ( "vetted time" , vettedTime ) )
if err != nil {
service . log . Warn ( "error vetting node" , zap . Stringer ( "node ID" , nodeID ) )
return nil , err
}
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err = service . UploadSelectionCache . Refresh ( ctx )
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service . log . Warn ( "nodecache refresh err" , zap . Error ( err ) )
return vettedTime , err
}
// TestUnvetNode directly sets a node's vetted_at timestamp to null to make testing easier.
func ( service * Service ) TestUnvetNode ( ctx context . Context , nodeID storj . NodeID ) ( err error ) {
err = service . db . TestUnvetNode ( ctx , nodeID )
if err != nil {
service . log . Warn ( "error unvetting node" , zap . Stringer ( "node ID" , nodeID ) , zap . Error ( err ) )
return err
}
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err = service . UploadSelectionCache . Refresh ( ctx )
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service . log . Warn ( "nodecache refresh err" , zap . Error ( err ) )
return err
}
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// TestNodeCountryCode directly sets a node's vetted_at timestamp to null to make testing easier.
func ( service * Service ) TestNodeCountryCode ( ctx context . Context , nodeID storj . NodeID , countryCode string ) ( err error ) {
err = service . db . TestNodeCountryCode ( ctx , nodeID , countryCode )
if err != nil {
service . log . Warn ( "error updating node" , zap . Stringer ( "node ID" , nodeID ) , zap . Error ( err ) )
return err
}
return nil
}