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v2fly/proxy/vmess/vmess.go

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// Package vmess contains the implementation of VMess protocol and transportation.
//
// VMess contains both inbound and outbound connections. VMess inbound is usually used on servers
// together with 'freedom' to talk to final destination, while VMess outbound is usually used on
// clients with 'socks' for proxying.
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package vmess
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//go:generate go run $GOPATH/src/v2ray.com/core/common/errors/errorgen/main.go -pkg vmess -path Proxy,VMess
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import (
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"strings"
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"sync"
"time"
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"v2ray.com/core/common"
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"v2ray.com/core/common/protocol"
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"v2ray.com/core/common/signal"
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)
const (
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updateInterval = 10 * time.Second
cacheDurationSec = 120
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)
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type user struct {
user *protocol.User
account *InternalAccount
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lastSec protocol.Timestamp
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}
type TimedUserValidator struct {
sync.RWMutex
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users []*user
userHash map[[16]byte]indexTimePair
hasher protocol.IDHash
baseTime protocol.Timestamp
task *signal.PeriodicTask
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}
type indexTimePair struct {
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user *user
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timeInc uint32
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}
func NewTimedUserValidator(hasher protocol.IDHash) *TimedUserValidator {
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tuv := &TimedUserValidator{
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users: make([]*user, 0, 16),
userHash: make(map[[16]byte]indexTimePair, 1024),
hasher: hasher,
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baseTime: protocol.Timestamp(time.Now().Unix() - cacheDurationSec*2),
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}
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tuv.task = &signal.PeriodicTask{
Interval: updateInterval,
Execute: func() error {
tuv.updateUserHash()
return nil
},
}
tuv.task.Start()
return tuv
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}
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func (v *TimedUserValidator) generateNewHashes(nowSec protocol.Timestamp, user *user) {
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var hashValue [16]byte
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genHashForID := func(id *protocol.ID) {
idHash := v.hasher(id.Bytes())
lastSec := user.lastSec
if lastSec < nowSec-cacheDurationSec*2 {
lastSec = nowSec - cacheDurationSec*2
}
for ts := lastSec; ts <= nowSec; ts++ {
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common.Must2(idHash.Write(ts.Bytes(nil)))
idHash.Sum(hashValue[:0])
idHash.Reset()
v.userHash[hashValue] = indexTimePair{
user: user,
timeInc: uint32(ts - v.baseTime),
}
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}
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}
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genHashForID(user.account.ID)
for _, id := range user.account.AlterIDs {
genHashForID(id)
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}
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user.lastSec = nowSec
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}
func (v *TimedUserValidator) removeExpiredHashes(expire uint32) {
for key, pair := range v.userHash {
if pair.timeInc < expire {
delete(v.userHash, key)
}
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}
}
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func (v *TimedUserValidator) updateUserHash() {
now := time.Now()
nowSec := protocol.Timestamp(now.Unix() + cacheDurationSec)
v.Lock()
defer v.Unlock()
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for _, user := range v.users {
v.generateNewHashes(nowSec, user)
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}
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expire := protocol.Timestamp(now.Unix() - cacheDurationSec)
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if expire > v.baseTime {
v.removeExpiredHashes(uint32(expire - v.baseTime))
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}
}
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func (v *TimedUserValidator) Add(u *protocol.User) error {
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v.Lock()
defer v.Unlock()
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rawAccount, err := u.GetTypedAccount()
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if err != nil {
return err
}
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account := rawAccount.(*InternalAccount)
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nowSec := time.Now().Unix()
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uu := &user{
user: u,
account: account,
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lastSec: protocol.Timestamp(nowSec - cacheDurationSec),
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}
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v.users = append(v.users, uu)
v.generateNewHashes(protocol.Timestamp(nowSec+cacheDurationSec), uu)
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return nil
}
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func (v *TimedUserValidator) Get(userHash []byte) (*protocol.User, protocol.Timestamp, bool) {
defer v.RUnlock()
v.RLock()
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var fixedSizeHash [16]byte
copy(fixedSizeHash[:], userHash)
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pair, found := v.userHash[fixedSizeHash]
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if found {
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return pair.user.user, protocol.Timestamp(pair.timeInc) + v.baseTime, true
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}
return nil, 0, false
}
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func (v *TimedUserValidator) Remove(email string) bool {
v.Lock()
defer v.Unlock()
email = strings.ToLower(email)
idx := -1
for i, u := range v.users {
if strings.ToLower(u.user.Email) == email {
idx = i
break
}
}
if idx == -1 {
return false
}
ulen := len(v.users)
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if idx < ulen {
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v.users[idx] = v.users[ulen-1]
v.users[ulen-1] = nil
v.users = v.users[:ulen-1]
}
return true
}
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// Close implements common.Closable.
func (v *TimedUserValidator) Close() error {
return v.task.Close()
}