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package stores
import (
"context"
"encoding/json"
"io/ioutil"
"math/bits"
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"math/rand"
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"os"
"path/filepath"
"sync"
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"time"
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"golang.org/x/xerrors"
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ffi "github.com/filecoin-project/filecoin-ffi"
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"github.com/filecoin-project/go-state-types/abi"
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"github.com/filecoin-project/go-state-types/proof"
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"github.com/filecoin-project/specs-storage/storage"
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"github.com/filecoin-project/lotus/extern/sector-storage/fsutil"
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"github.com/filecoin-project/lotus/extern/sector-storage/storiface"
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)
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// LocalStorageMeta [path]/sectorstore.json
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type LocalStorageMeta struct {
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ID storiface . ID
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// A high weight means data is more likely to be stored in this path
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Weight uint64 // 0 = readonly
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// Intermediate data for the sealing process will be stored here
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CanSeal bool
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// Finalized sectors that will be proved over time will be stored here
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CanStore bool
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// MaxStorage specifies the maximum number of bytes to use for sector storage
// (0 = unlimited)
MaxStorage uint64
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// List of storage groups this path belongs to
Groups [ ] string
// List of storage groups to which data from this path can be moved. If none
// are specified, allow to all
AllowTo [ ] string
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}
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// StorageConfig .lotusstorage/storage.json
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type StorageConfig struct {
StoragePaths [ ] LocalPath
}
type LocalPath struct {
Path string
}
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type LocalStorage interface {
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GetStorage ( ) ( StorageConfig , error )
SetStorage ( func ( * StorageConfig ) ) error
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Stat ( path string ) ( fsutil . FsStat , error )
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// returns real disk usage for a file/directory
// os.ErrNotExit when file doesn't exist
DiskUsage ( path string ) ( int64 , error )
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}
const MetaFile = "sectorstore.json"
type Local struct {
localStorage LocalStorage
index SectorIndex
urls [ ] string
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paths map [ storiface . ID ] * path
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localLk sync . RWMutex
}
type path struct {
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local string // absolute local path
maxStorage uint64
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reserved int64
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reservations map [ abi . SectorID ] storiface . SectorFileType
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}
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func ( p * path ) stat ( ls LocalStorage ) ( fsutil . FsStat , error ) {
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start := time . Now ( )
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stat , err := ls . Stat ( p . local )
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if err != nil {
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return fsutil . FsStat { } , xerrors . Errorf ( "stat %s: %w" , p . local , err )
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}
stat . Reserved = p . reserved
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for id , ft := range p . reservations {
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for _ , fileType := range storiface . PathTypes {
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if fileType & ft == 0 {
continue
}
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sp := p . sectorPath ( id , fileType )
used , err := ls . DiskUsage ( sp )
if err == os . ErrNotExist {
p , ferr := tempFetchDest ( sp , false )
if ferr != nil {
return fsutil . FsStat { } , ferr
}
used , err = ls . DiskUsage ( p )
}
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if err != nil {
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// we don't care about 'not exist' errors, as storage can be
// reserved before any files are written, so this error is not
// unexpected
if ! os . IsNotExist ( err ) {
log . Warnf ( "getting disk usage of '%s': %+v" , p . sectorPath ( id , fileType ) , err )
}
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continue
}
stat . Reserved -= used
}
}
if stat . Reserved < 0 {
log . Warnf ( "negative reserved storage: p.reserved=%d, reserved: %d" , p . reserved , stat . Reserved )
stat . Reserved = 0
}
stat . Available -= stat . Reserved
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if stat . Available < 0 {
stat . Available = 0
}
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if p . maxStorage > 0 {
used , err := ls . DiskUsage ( p . local )
if err != nil {
return fsutil . FsStat { } , err
}
stat . Max = int64 ( p . maxStorage )
stat . Used = used
avail := int64 ( p . maxStorage ) - used
if uint64 ( used ) > p . maxStorage {
avail = 0
}
if avail < stat . Available {
stat . Available = avail
}
}
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if time . Now ( ) . Sub ( start ) > 5 * time . Second {
log . Warnw ( "slow storage stat" , "took" , time . Now ( ) . Sub ( start ) , "reservations" , len ( p . reservations ) )
}
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return stat , err
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}
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func ( p * path ) sectorPath ( sid abi . SectorID , fileType storiface . SectorFileType ) string {
return filepath . Join ( p . local , fileType . String ( ) , storiface . SectorName ( sid ) )
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}
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type URLs [ ] string
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func NewLocal ( ctx context . Context , ls LocalStorage , index SectorIndex , urls [ ] string ) ( * Local , error ) {
l := & Local {
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localStorage : newCachedLocalStorage ( ls ) ,
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index : index ,
urls : urls ,
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paths : map [ storiface . ID ] * path { } ,
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}
return l , l . open ( ctx )
}
func ( st * Local ) OpenPath ( ctx context . Context , p string ) error {
st . localLk . Lock ( )
defer st . localLk . Unlock ( )
mb , err := ioutil . ReadFile ( filepath . Join ( p , MetaFile ) )
if err != nil {
return xerrors . Errorf ( "reading storage metadata for %s: %w" , p , err )
}
var meta LocalStorageMeta
if err := json . Unmarshal ( mb , & meta ) ; err != nil {
return xerrors . Errorf ( "unmarshalling storage metadata for %s: %w" , p , err )
}
// TODO: Check existing / dedupe
out := & path {
local : p ,
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maxStorage : meta . MaxStorage ,
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reserved : 0 ,
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reservations : map [ abi . SectorID ] storiface . SectorFileType { } ,
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}
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fst , err := out . stat ( st . localStorage )
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if err != nil {
return err
}
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err = st . index . StorageAttach ( ctx , storiface . StorageInfo {
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ID : meta . ID ,
URLs : st . urls ,
Weight : meta . Weight ,
MaxStorage : meta . MaxStorage ,
CanSeal : meta . CanSeal ,
CanStore : meta . CanStore ,
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Groups : meta . Groups ,
AllowTo : meta . AllowTo ,
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} , fst )
if err != nil {
return xerrors . Errorf ( "declaring storage in index: %w" , err )
}
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if err := st . declareSectors ( ctx , p , meta . ID , meta . CanStore ) ; err != nil {
return err
}
st . paths [ meta . ID ] = out
return nil
}
func ( st * Local ) open ( ctx context . Context ) error {
cfg , err := st . localStorage . GetStorage ( )
if err != nil {
return xerrors . Errorf ( "getting local storage config: %w" , err )
}
for _ , path := range cfg . StoragePaths {
err := st . OpenPath ( ctx , path . Path )
if err != nil {
return xerrors . Errorf ( "opening path %s: %w" , path . Path , err )
}
}
go st . reportHealth ( ctx )
return nil
}
func ( st * Local ) Redeclare ( ctx context . Context ) error {
st . localLk . Lock ( )
defer st . localLk . Unlock ( )
for id , p := range st . paths {
mb , err := ioutil . ReadFile ( filepath . Join ( p . local , MetaFile ) )
if err != nil {
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return xerrors . Errorf ( "reading storage metadata for %s: %w" , p . local , err )
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}
var meta LocalStorageMeta
if err := json . Unmarshal ( mb , & meta ) ; err != nil {
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return xerrors . Errorf ( "unmarshalling storage metadata for %s: %w" , p . local , err )
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}
fst , err := p . stat ( st . localStorage )
if err != nil {
return err
}
if id != meta . ID {
log . Errorf ( "storage path ID changed: %s; %s -> %s" , p . local , id , meta . ID )
continue
}
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err = st . index . StorageAttach ( ctx , storiface . StorageInfo {
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ID : id ,
URLs : st . urls ,
Weight : meta . Weight ,
MaxStorage : meta . MaxStorage ,
CanSeal : meta . CanSeal ,
CanStore : meta . CanStore ,
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Groups : meta . Groups ,
AllowTo : meta . AllowTo ,
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} , fst )
if err != nil {
return xerrors . Errorf ( "redeclaring storage in index: %w" , err )
}
if err := st . declareSectors ( ctx , p . local , meta . ID , meta . CanStore ) ; err != nil {
return xerrors . Errorf ( "redeclaring sectors: %w" , err )
}
}
return nil
}
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func ( st * Local ) declareSectors ( ctx context . Context , p string , id storiface . ID , primary bool ) error {
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for _ , t := range storiface . PathTypes {
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ents , err := ioutil . ReadDir ( filepath . Join ( p , t . String ( ) ) )
if err != nil {
if os . IsNotExist ( err ) {
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if err := os . MkdirAll ( filepath . Join ( p , t . String ( ) ) , 0755 ) ; err != nil { // nolint
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return xerrors . Errorf ( "openPath mkdir '%s': %w" , filepath . Join ( p , t . String ( ) ) , err )
}
continue
}
return xerrors . Errorf ( "listing %s: %w" , filepath . Join ( p , t . String ( ) ) , err )
}
for _ , ent := range ents {
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if ent . Name ( ) == FetchTempSubdir {
continue
}
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sid , err := storiface . ParseSectorID ( ent . Name ( ) )
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if err != nil {
return xerrors . Errorf ( "parse sector id %s: %w" , ent . Name ( ) , err )
}
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if err := st . index . StorageDeclareSector ( ctx , id , sid , t , primary ) ; err != nil {
return xerrors . Errorf ( "declare sector %d(t:%d) -> %s: %w" , sid , t , id , err )
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}
}
}
return nil
}
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func ( st * Local ) reportHealth ( ctx context . Context ) {
// randomize interval by ~10%
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interval := ( HeartbeatInterval * 100_000 + time . Duration ( rand . Int63n ( 10_000 ) ) ) / 100_000
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for {
select {
case <- time . After ( interval ) :
case <- ctx . Done ( ) :
return
}
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st . reportStorage ( ctx )
}
}
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func ( st * Local ) reportStorage ( ctx context . Context ) {
st . localLk . RLock ( )
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toReport := map [ storiface . ID ] storiface . HealthReport { }
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for id , p := range st . paths {
stat , err := p . stat ( st . localStorage )
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r := storiface . HealthReport { Stat : stat }
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if err != nil {
r . Err = err . Error ( )
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}
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toReport [ id ] = r
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}
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st . localLk . RUnlock ( )
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for id , report := range toReport {
if err := st . index . StorageReportHealth ( ctx , id , report ) ; err != nil {
log . Warnf ( "error reporting storage health for %s (%+v): %+v" , id , report , err )
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}
}
}
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func ( st * Local ) Reserve ( ctx context . Context , sid storage . SectorRef , ft storiface . SectorFileType , storageIDs storiface . SectorPaths , overheadTab map [ storiface . SectorFileType ] int ) ( func ( ) , error ) {
ssize , err := sid . ProofType . SectorSize ( )
if err != nil {
return nil , err
}
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st . localLk . Lock ( )
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done := func ( ) { }
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deferredDone := func ( ) { done ( ) }
defer func ( ) {
st . localLk . Unlock ( )
deferredDone ( )
} ( )
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for _ , fileType := range storiface . PathTypes {
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if fileType & ft == 0 {
continue
}
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id := storiface . ID ( storiface . PathByType ( storageIDs , fileType ) )
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p , ok := st . paths [ id ]
if ! ok {
return nil , errPathNotFound
}
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stat , err := p . stat ( st . localStorage )
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if err != nil {
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return nil , xerrors . Errorf ( "getting local storage stat: %w" , err )
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}
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overhead := int64 ( overheadTab [ fileType ] ) * int64 ( ssize ) / storiface . FSOverheadDen
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if stat . Available < overhead {
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return nil , storiface . Err ( storiface . ErrTempAllocateSpace , xerrors . Errorf ( "can't reserve %d bytes in '%s' (id:%s), only %d available" , overhead , p . local , id , stat . Available ) )
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}
p . reserved += overhead
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p . reservations [ sid . ID ] |= fileType
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prevDone := done
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saveFileType := fileType
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done = func ( ) {
prevDone ( )
st . localLk . Lock ( )
defer st . localLk . Unlock ( )
p . reserved -= overhead
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p . reservations [ sid . ID ] ^ = saveFileType
if p . reservations [ sid . ID ] == storiface . FTNone {
delete ( p . reservations , sid . ID )
}
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}
}
deferredDone = func ( ) { }
return done , nil
}
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func ( st * Local ) AcquireSector ( ctx context . Context , sid storage . SectorRef , existing storiface . SectorFileType , allocate storiface . SectorFileType , pathType storiface . PathType , op storiface . AcquireMode ) ( storiface . SectorPaths , storiface . SectorPaths , error ) {
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if existing | allocate != existing ^ allocate {
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return storiface . SectorPaths { } , storiface . SectorPaths { } , xerrors . New ( "can't both find and allocate a sector" )
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}
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ssize , err := sid . ProofType . SectorSize ( )
if err != nil {
return storiface . SectorPaths { } , storiface . SectorPaths { } , err
}
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st . localLk . RLock ( )
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defer st . localLk . RUnlock ( )
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var out storiface . SectorPaths
var storageIDs storiface . SectorPaths
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for _ , fileType := range storiface . PathTypes {
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if fileType & existing == 0 {
continue
}
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si , err := st . index . StorageFindSector ( ctx , sid . ID , fileType , ssize , false )
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if err != nil {
log . Warnf ( "finding existing sector %d(t:%d) failed: %+v" , sid , fileType , err )
continue
}
for _ , info := range si {
p , ok := st . paths [ info . ID ]
if ! ok {
continue
}
if p . local == "" { // TODO: can that even be the case?
continue
}
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spath := p . sectorPath ( sid . ID , fileType )
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storiface . SetPathByType ( & out , fileType , spath )
storiface . SetPathByType ( & storageIDs , fileType , string ( info . ID ) )
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existing ^ = fileType
break
}
}
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for _ , fileType := range storiface . PathTypes {
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if fileType & allocate == 0 {
continue
}
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sis , err := st . index . StorageBestAlloc ( ctx , fileType , ssize , pathType )
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if err != nil {
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return storiface . SectorPaths { } , storiface . SectorPaths { } , xerrors . Errorf ( "finding best storage for allocating : %w" , err )
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}
var best string
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var bestID storiface . ID
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for _ , si := range sis {
p , ok := st . paths [ si . ID ]
if ! ok {
continue
}
if p . local == "" { // TODO: can that even be the case?
continue
}
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if ( pathType == storiface . PathSealing ) && ! si . CanSeal {
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continue
}
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if ( pathType == storiface . PathStorage ) && ! si . CanStore {
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continue
}
// TODO: Check free space
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best = p . sectorPath ( sid . ID , fileType )
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bestID = si . ID
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break
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}
if best == "" {
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return storiface . SectorPaths { } , storiface . SectorPaths { } , xerrors . Errorf ( "couldn't find a suitable path for a sector" )
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}
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storiface . SetPathByType ( & out , fileType , best )
storiface . SetPathByType ( & storageIDs , fileType , string ( bestID ) )
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allocate ^ = fileType
}
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return out , storageIDs , nil
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}
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func ( st * Local ) Local ( ctx context . Context ) ( [ ] storiface . StoragePath , error ) {
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st . localLk . RLock ( )
defer st . localLk . RUnlock ( )
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var out [ ] storiface . StoragePath
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for id , p := range st . paths {
if p . local == "" {
continue
}
si , err := st . index . StorageInfo ( ctx , id )
if err != nil {
return nil , xerrors . Errorf ( "get storage info for %s: %w" , id , err )
}
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out = append ( out , storiface . StoragePath {
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ID : id ,
Weight : si . Weight ,
LocalPath : p . local ,
CanSeal : si . CanSeal ,
CanStore : si . CanStore ,
} )
}
return out , nil
}
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func ( st * Local ) Remove ( ctx context . Context , sid abi . SectorID , typ storiface . SectorFileType , force bool , keepIn [ ] storiface . ID ) error {
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if bits . OnesCount ( uint ( typ ) ) != 1 {
return xerrors . New ( "delete expects one file type" )
}
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si , err := st . index . StorageFindSector ( ctx , sid , typ , 0 , false )
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if err != nil {
return xerrors . Errorf ( "finding existing sector %d(t:%d) failed: %w" , sid , typ , err )
}
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if len ( si ) == 0 && ! force {
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return xerrors . Errorf ( "can't delete sector %v(%d), not found" , sid , typ )
}
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storeLoop :
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for _ , info := range si {
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for _ , id := range keepIn {
if id == info . ID {
continue storeLoop
}
}
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if err := st . removeSector ( ctx , sid , typ , info . ID ) ; err != nil {
return err
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}
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}
return nil
}
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func ( st * Local ) RemoveCopies ( ctx context . Context , sid abi . SectorID , typ storiface . SectorFileType ) error {
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if bits . OnesCount ( uint ( typ ) ) != 1 {
return xerrors . New ( "delete expects one file type" )
}
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si , err := st . index . StorageFindSector ( ctx , sid , typ , 0 , false )
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if err != nil {
return xerrors . Errorf ( "finding existing sector %d(t:%d) failed: %w" , sid , typ , err )
}
var hasPrimary bool
for _ , info := range si {
if info . Primary {
hasPrimary = true
break
}
}
if ! hasPrimary {
log . Warnf ( "RemoveCopies: no primary copies of sector %v (%s), not removing anything" , sid , typ )
return nil
}
for _ , info := range si {
if info . Primary {
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continue
}
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if err := st . removeSector ( ctx , sid , typ , info . ID ) ; err != nil {
return err
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}
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}
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return nil
}
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func ( st * Local ) removeSector ( ctx context . Context , sid abi . SectorID , typ storiface . SectorFileType , storage storiface . ID ) error {
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p , ok := st . paths [ storage ]
if ! ok {
return nil
}
if p . local == "" { // TODO: can that even be the case?
return nil
}
if err := st . index . StorageDropSector ( ctx , storage , sid , typ ) ; err != nil {
return xerrors . Errorf ( "dropping sector from index: %w" , err )
}
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spath := p . sectorPath ( sid , typ )
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log . Infof ( "remove %s" , spath )
if err := os . RemoveAll ( spath ) ; err != nil {
log . Errorf ( "removing sector (%v) from %s: %+v" , sid , spath , err )
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}
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st . reportStorage ( ctx ) // report freed space
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return nil
}
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func ( st * Local ) MoveStorage ( ctx context . Context , s storage . SectorRef , types storiface . SectorFileType ) error {
dest , destIds , err := st . AcquireSector ( ctx , s , storiface . FTNone , types , storiface . PathStorage , storiface . AcquireMove )
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if err != nil {
return xerrors . Errorf ( "acquire dest storage: %w" , err )
}
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src , srcIds , err := st . AcquireSector ( ctx , s , types , storiface . FTNone , storiface . PathStorage , storiface . AcquireMove )
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if err != nil {
return xerrors . Errorf ( "acquire src storage: %w" , err )
}
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for _ , fileType := range storiface . PathTypes {
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if fileType & types == 0 {
continue
}
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sst , err := st . index . StorageInfo ( ctx , storiface . ID ( storiface . PathByType ( srcIds , fileType ) ) )
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if err != nil {
return xerrors . Errorf ( "failed to get source storage info: %w" , err )
}
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dst , err := st . index . StorageInfo ( ctx , storiface . ID ( storiface . PathByType ( destIds , fileType ) ) )
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if err != nil {
return xerrors . Errorf ( "failed to get source storage info: %w" , err )
}
if sst . ID == dst . ID {
log . Debugf ( "not moving %v(%d); src and dest are the same" , s , fileType )
continue
}
if sst . CanStore {
log . Debugf ( "not moving %v(%d); source supports storage" , s , fileType )
continue
}
log . Debugf ( "moving %v(%d) to storage: %s(se:%t; st:%t) -> %s(se:%t; st:%t)" , s , fileType , sst . ID , sst . CanSeal , sst . CanStore , dst . ID , dst . CanSeal , dst . CanStore )
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if err := st . index . StorageDropSector ( ctx , storiface . ID ( storiface . PathByType ( srcIds , fileType ) ) , s . ID , fileType ) ; err != nil {
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return xerrors . Errorf ( "dropping source sector from index: %w" , err )
}
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if err := move ( storiface . PathByType ( src , fileType ) , storiface . PathByType ( dest , fileType ) ) ; err != nil {
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// TODO: attempt some recovery (check if src is still there, re-declare)
return xerrors . Errorf ( "moving sector %v(%d): %w" , s , fileType , err )
}
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if err := st . index . StorageDeclareSector ( ctx , storiface . ID ( storiface . PathByType ( destIds , fileType ) ) , s . ID , fileType , true ) ; err != nil {
return xerrors . Errorf ( "declare sector %d(t:%d) -> %s: %w" , s , fileType , storiface . ID ( storiface . PathByType ( destIds , fileType ) ) , err )
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}
}
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st . reportStorage ( ctx ) // report space use changes
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return nil
}
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var errPathNotFound = xerrors . Errorf ( "fsstat: path not found" )
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func ( st * Local ) FsStat ( ctx context . Context , id storiface . ID ) ( fsutil . FsStat , error ) {
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st . localLk . RLock ( )
defer st . localLk . RUnlock ( )
p , ok := st . paths [ id ]
if ! ok {
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return fsutil . FsStat { } , errPathNotFound
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}
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return p . stat ( st . localStorage )
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}
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func ( st * Local ) GenerateSingleVanillaProof ( ctx context . Context , minerID abi . ActorID , si storiface . PostSectorChallenge , ppt abi . RegisteredPoStProof ) ( [ ] byte , error ) {
sr := storage . SectorRef {
ID : abi . SectorID {
Miner : minerID ,
Number : si . SectorNumber ,
} ,
ProofType : si . SealProof ,
}
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var cache string
var sealed string
if si . Update {
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src , _ , err := st . AcquireSector ( ctx , sr , storiface . FTUpdate | storiface . FTUpdateCache , storiface . FTNone , storiface . PathStorage , storiface . AcquireMove )
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if err != nil {
return nil , xerrors . Errorf ( "acquire sector: %w" , err )
}
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cache , sealed = src . UpdateCache , src . Update
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} else {
src , _ , err := st . AcquireSector ( ctx , sr , storiface . FTSealed | storiface . FTCache , storiface . FTNone , storiface . PathStorage , storiface . AcquireMove )
if err != nil {
return nil , xerrors . Errorf ( "acquire sector: %w" , err )
}
cache , sealed = src . Cache , src . Sealed
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}
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if sealed == "" || cache == "" {
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return nil , errPathNotFound
}
psi := ffi . PrivateSectorInfo {
SectorInfo : proof . SectorInfo {
SealProof : si . SealProof ,
SectorNumber : si . SectorNumber ,
SealedCID : si . SealedCID ,
} ,
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CacheDirPath : cache ,
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PoStProofType : ppt ,
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SealedSectorPath : sealed ,
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}
return ffi . GenerateSingleVanillaProof ( psi , si . Challenge )
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}
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var _ Store = & Local { }