cubefs/client/fs/dcachev2.go
leonrayang d5bb45ea49 docs. update to cubefs
Signed-off-by: leonrayang <chl696@sina.com>
2023-05-26 11:17:10 +08:00

173 lines
4.6 KiB
Go

// Copyright 2018 The CubeFS Authors.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
// implied. See the License for the specific language governing
// permissions and limitations under the License.
package fs
import (
"container/list"
"sync"
"time"
"github.com/cubefs/cubefs/proto"
"github.com/cubefs/cubefs/util/log"
)
const (
// MinDentryCacheEvictNum is used in the foreground eviction.
// When clearing the inodes from the cache, it stops as soon as 10 inodes have been evicted.
MinDentryCacheEvictNum = 10
// MaxDentryCacheEvictNum is used in the back ground. We can evict 200000 inodes at max.
MaxDentryCacheEvictNum = 200000
DentryBgEvictionInterval = 2 * time.Minute
)
// Dcache defines the structure of the inode cache.
type Dcache struct {
sync.RWMutex
cache map[string]*list.Element
lruList *list.List
expiration time.Duration
maxElements int
}
// NewDentryCache returns a new inode cache.
func NewDcache(exp time.Duration, maxElements int) *Dcache {
dc := &Dcache{
cache: make(map[string]*list.Element),
lruList: list.New(),
expiration: exp,
maxElements: maxElements,
}
go dc.backgroundEviction()
return dc
}
// Put puts the given inode info into the inode cache.
func (dc *Dcache) Put(info *proto.DentryInfo) {
dc.Lock()
old, ok := dc.cache[info.Name]
if ok {
dc.lruList.Remove(old)
delete(dc.cache, info.Name)
}
if dc.lruList.Len() >= dc.maxElements {
dc.evict(true)
}
dentrySetExpiration(info, dc.expiration)
element := dc.lruList.PushFront(info)
dc.cache[info.Name] = element
dc.Unlock()
// log.LogDebugf("Dcache put inode: inode(%v)", info.Inode)
}
// Get returns the inode info based on the given inode number.
func (dc *Dcache) Get(name string) *proto.DentryInfo {
dc.RLock()
element, ok := dc.cache[name]
if !ok {
dc.RUnlock()
return nil
}
info := element.Value.(*proto.DentryInfo)
if dentryExpired(info) && DisableMetaCache {
dc.RUnlock()
// log.LogDebugf("Dcache GetConnect expired: now(%v) inode(%v), expired(%d)", time.Now().Format(LogTimeFormat), info.Inode, info.Expiration())
return nil
}
dc.RUnlock()
return info
}
// Delete deletes the dentry info based on the given name(partentId+name).
func (dc *Dcache) Delete(name string) {
// log.LogDebugf("Dcache Delete: ino(%v)", ino)
dc.Lock()
element, ok := dc.cache[name]
if ok {
dc.lruList.Remove(element)
delete(dc.cache, name)
}
dc.Unlock()
}
// Foreground eviction cares more about the speed.
// Background eviction evicts all expired items from the cache.
// The caller should grab the WRITE lock of the inode cache.
func (dc *Dcache) evict(foreground bool) {
var count int
for i := 0; i < MinDentryCacheEvictNum; i++ {
element := dc.lruList.Back()
if element == nil {
return
}
// For background eviction, if all expired items have been evicted, just return
// But for foreground eviction, we need to evict at least MinDentryCacheEvictNum inodes.
// The foreground eviction, does not need to care if the inode has expired or not.
info := element.Value.(*proto.DentryInfo)
if !foreground && !dentryExpired(info) {
return
}
// log.LogDebugf("Dcache GetConnect expired: now(%v) inode(%v)", time.Now().Format(LogTimeFormat), info.Inode)
dc.lruList.Remove(element)
delete(dc.cache, info.Name)
count++
}
// For background eviction, we need to continue evict all expired items from the cache
if foreground {
return
}
for i := 0; i < MaxDentryCacheEvictNum; i++ {
element := dc.lruList.Back()
if element == nil {
break
}
info := element.Value.(*proto.DentryInfo)
if !dentryExpired(info) {
break
}
// log.LogDebugf("Dcache GetConnect expired: now(%v) inode(%v)", time.Now().Format(LogTimeFormat), info.Inode)
dc.lruList.Remove(element)
delete(dc.cache, info.Name)
count++
}
}
func (dc *Dcache) backgroundEviction() {
t := time.NewTicker(DentryBgEvictionInterval)
defer t.Stop()
for range t.C {
log.LogInfof("Dcache: start BG evict")
if !DisableMetaCache {
log.LogInfof("Dcache: no need to do BG evict")
continue
}
start := time.Now()
dc.Lock()
dc.evict(false)
dc.Unlock()
elapsed := time.Since(start)
log.LogInfof("Dcache: total inode cache(%d), cost(%d)ns", dc.lruList.Len(), elapsed.Nanoseconds())
}
}