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				https://github.com/minio/minio.git
				synced 2025-11-04 02:01:05 +01:00 
			
		
		
		
	Co-authored-by: Anis Elleuch <anis@min.io> Co-authored-by: Harshavardhana <harsha@minio.io>
		
			
				
	
	
		
			279 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
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			279 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
/*
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 * MinIO Cloud Storage, (C) 2016, 2017, 2018, 2019 MinIO, Inc.
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 *
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 * Licensed under the Apache License, Version 2.0 (the "License");
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 * you may not use this file except in compliance with the License.
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 * You may obtain a copy of the License at
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 *
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 *     http://www.apache.org/licenses/LICENSE-2.0
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 *
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 * Unless required by applicable law or agreed to in writing, software
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 * distributed under the License is distributed on an "AS IS" BASIS,
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 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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 * See the License for the specific language governing permissions and
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 * limitations under the License.
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 */
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package cmd
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import (
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	"context"
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	"errors"
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	pathutil "path"
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	"runtime"
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	"sort"
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	"strings"
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	"sync"
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	"fmt"
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	"time"
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	"github.com/minio/minio/cmd/logger"
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	"github.com/minio/minio/pkg/dsync"
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	"github.com/minio/minio/pkg/lsync"
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)
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// local lock servers
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var globalLockServer *localLocker
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// RWLocker - locker interface to introduce GetRLock, RUnlock.
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type RWLocker interface {
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	GetLock(ctx context.Context, timeout *dynamicTimeout) (newCtx context.Context, timedOutErr error)
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	Unlock()
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	GetRLock(ctx context.Context, timeout *dynamicTimeout) (newCtx context.Context, timedOutErr error)
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	RUnlock()
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}
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// newNSLock - return a new name space lock map.
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func newNSLock(isDistErasure bool) *nsLockMap {
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	nsMutex := nsLockMap{
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		isDistErasure: isDistErasure,
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	}
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	if isDistErasure {
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		return &nsMutex
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	}
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	nsMutex.lockMap = make(map[string]*nsLock)
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	return &nsMutex
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}
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// nsLock - provides primitives for locking critical namespace regions.
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type nsLock struct {
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	ref int32
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	*lsync.LRWMutex
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}
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// nsLockMap - namespace lock map, provides primitives to Lock,
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// Unlock, RLock and RUnlock.
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type nsLockMap struct {
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	// Indicates if namespace is part of a distributed setup.
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	isDistErasure bool
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	lockMap       map[string]*nsLock
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	lockMapMutex  sync.Mutex
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}
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// Lock the namespace resource.
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func (n *nsLockMap) lock(ctx context.Context, volume string, path string, lockSource, opsID string, readLock bool, timeout time.Duration) (locked bool) {
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	resource := pathJoin(volume, path)
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	n.lockMapMutex.Lock()
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	nsLk, found := n.lockMap[resource]
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	if !found {
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		nsLk = &nsLock{
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			LRWMutex: lsync.NewLRWMutex(),
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		}
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		// Add a count to indicate that a parallel unlock doesn't clear this entry.
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	}
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	nsLk.ref++
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	n.lockMap[resource] = nsLk
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	n.lockMapMutex.Unlock()
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	// Locking here will block (until timeout).
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	if readLock {
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		locked = nsLk.GetRLock(ctx, opsID, lockSource, timeout)
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	} else {
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		locked = nsLk.GetLock(ctx, opsID, lockSource, timeout)
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	}
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	if !locked { // We failed to get the lock
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		// Decrement ref count since we failed to get the lock
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		n.lockMapMutex.Lock()
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		n.lockMap[resource].ref--
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		if n.lockMap[resource].ref < 0 {
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			logger.CriticalIf(GlobalContext, errors.New("resource reference count was lower than 0"))
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		}
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		if n.lockMap[resource].ref == 0 {
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			// Remove from the map if there are no more references.
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			delete(n.lockMap, resource)
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		}
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		n.lockMapMutex.Unlock()
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	}
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	return
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}
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// Unlock the namespace resource.
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func (n *nsLockMap) unlock(volume string, path string, readLock bool) {
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	resource := pathJoin(volume, path)
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	n.lockMapMutex.Lock()
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	defer n.lockMapMutex.Unlock()
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	if _, found := n.lockMap[resource]; !found {
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		return
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	}
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	if readLock {
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		n.lockMap[resource].RUnlock()
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	} else {
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		n.lockMap[resource].Unlock()
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	}
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	n.lockMap[resource].ref--
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	if n.lockMap[resource].ref < 0 {
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		logger.CriticalIf(GlobalContext, errors.New("resource reference count was lower than 0"))
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	}
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	if n.lockMap[resource].ref == 0 {
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		// Remove from the map if there are no more references.
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		delete(n.lockMap, resource)
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	}
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}
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// dsync's distributed lock instance.
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type distLockInstance struct {
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	rwMutex *dsync.DRWMutex
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	opsID   string
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}
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// Lock - block until write lock is taken or timeout has occurred.
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func (di *distLockInstance) GetLock(ctx context.Context, timeout *dynamicTimeout) (context.Context, error) {
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	lockSource := getSource(2)
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	start := UTCNow()
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	newCtx, cancel := context.WithCancel(ctx)
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	if !di.rwMutex.GetLock(newCtx, cancel, di.opsID, lockSource, dsync.Options{
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		Timeout: timeout.Timeout(),
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	}) {
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		timeout.LogFailure()
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		return ctx, OperationTimedOut{}
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	}
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	timeout.LogSuccess(UTCNow().Sub(start))
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	return newCtx, nil
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}
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// Unlock - block until write lock is released.
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func (di *distLockInstance) Unlock() {
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	di.rwMutex.Unlock()
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}
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// RLock - block until read lock is taken or timeout has occurred.
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func (di *distLockInstance) GetRLock(ctx context.Context, timeout *dynamicTimeout) (context.Context, error) {
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	lockSource := getSource(2)
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	start := UTCNow()
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	newCtx, cancel := context.WithCancel(ctx)
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	if !di.rwMutex.GetRLock(ctx, cancel, di.opsID, lockSource, dsync.Options{
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		Timeout: timeout.Timeout(),
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	}) {
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		timeout.LogFailure()
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		return ctx, OperationTimedOut{}
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	}
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	timeout.LogSuccess(UTCNow().Sub(start))
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	return newCtx, nil
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}
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// RUnlock - block until read lock is released.
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func (di *distLockInstance) RUnlock() {
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	di.rwMutex.RUnlock()
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}
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// localLockInstance - frontend/top-level interface for namespace locks.
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type localLockInstance struct {
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	ns     *nsLockMap
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	volume string
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	paths  []string
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	opsID  string
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}
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// NewNSLock - returns a lock instance for a given volume and
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// path. The returned lockInstance object encapsulates the nsLockMap,
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// volume, path and operation ID.
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func (n *nsLockMap) NewNSLock(lockers func() ([]dsync.NetLocker, string), volume string, paths ...string) RWLocker {
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	opsID := mustGetUUID()
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	if n.isDistErasure {
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		drwmutex := dsync.NewDRWMutex(&dsync.Dsync{
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			GetLockers: lockers,
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		}, pathsJoinPrefix(volume, paths...)...)
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		return &distLockInstance{drwmutex, opsID}
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	}
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	sort.Strings(paths)
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	return &localLockInstance{n, volume, paths, opsID}
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}
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// Lock - block until write lock is taken or timeout has occurred.
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func (li *localLockInstance) GetLock(ctx context.Context, timeout *dynamicTimeout) (_ context.Context, timedOutErr error) {
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	lockSource := getSource(2)
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	start := UTCNow()
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	const readLock = false
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	var success []int
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	for i, path := range li.paths {
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		if !li.ns.lock(ctx, li.volume, path, lockSource, li.opsID, readLock, timeout.Timeout()) {
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			timeout.LogFailure()
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			for _, sint := range success {
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				li.ns.unlock(li.volume, li.paths[sint], readLock)
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			}
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			return nil, OperationTimedOut{}
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		}
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		success = append(success, i)
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	}
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	timeout.LogSuccess(UTCNow().Sub(start))
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	return ctx, nil
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}
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// Unlock - block until write lock is released.
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func (li *localLockInstance) Unlock() {
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	const readLock = false
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	for _, path := range li.paths {
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		li.ns.unlock(li.volume, path, readLock)
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	}
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}
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// RLock - block until read lock is taken or timeout has occurred.
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func (li *localLockInstance) GetRLock(ctx context.Context, timeout *dynamicTimeout) (_ context.Context, timedOutErr error) {
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	lockSource := getSource(2)
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	start := UTCNow()
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	const readLock = true
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	var success []int
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	for i, path := range li.paths {
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		if !li.ns.lock(ctx, li.volume, path, lockSource, li.opsID, readLock, timeout.Timeout()) {
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			timeout.LogFailure()
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			for _, sint := range success {
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				li.ns.unlock(li.volume, li.paths[sint], readLock)
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			}
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			return nil, OperationTimedOut{}
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		}
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		success = append(success, i)
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	}
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	timeout.LogSuccess(UTCNow().Sub(start))
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	return ctx, nil
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}
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// RUnlock - block until read lock is released.
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func (li *localLockInstance) RUnlock() {
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	const readLock = true
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	for _, path := range li.paths {
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		li.ns.unlock(li.volume, path, readLock)
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	}
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}
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func getSource(n int) string {
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	var funcName string
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	pc, filename, lineNum, ok := runtime.Caller(n)
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	if ok {
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		filename = pathutil.Base(filename)
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		funcName = strings.TrimPrefix(runtime.FuncForPC(pc).Name(),
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			"github.com/minio/minio/cmd.")
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	} else {
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		filename = "<unknown>"
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		lineNum = 0
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	}
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	return fmt.Sprintf("[%s:%d:%s()]", filename, lineNum, funcName)
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}
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