redis/ring.go

343 lines
6.8 KiB
Go
Raw Normal View History

2015-05-25 16:22:27 +03:00
package redis
import (
"errors"
"fmt"
"sync"
"time"
2016-04-09 14:52:01 +03:00
"gopkg.in/redis.v4/internal"
"gopkg.in/redis.v4/internal/consistenthash"
"gopkg.in/redis.v4/internal/hashtag"
"gopkg.in/redis.v4/internal/pool"
2015-05-25 16:22:27 +03:00
)
var (
errRingShardsDown = errors.New("redis: all ring shards are down")
)
// RingOptions are used to configure a ring client and should be
// passed to NewRing.
type RingOptions struct {
// A map of name => host:port addresses of ring shards.
Addrs map[string]string
// Following options are copied from Options struct.
DB int
2015-05-25 16:22:27 +03:00
Password string
2015-06-04 11:50:24 +03:00
MaxRetries int
2015-05-25 16:22:27 +03:00
DialTimeout time.Duration
ReadTimeout time.Duration
WriteTimeout time.Duration
2016-03-17 19:00:47 +03:00
PoolSize int
PoolTimeout time.Duration
IdleTimeout time.Duration
IdleCheckFrequency time.Duration
2015-05-25 16:22:27 +03:00
}
2016-06-05 14:10:30 +03:00
func (opt *RingOptions) init() {}
2015-05-25 16:22:27 +03:00
func (opt *RingOptions) clientOptions() *Options {
return &Options{
DB: opt.DB,
Password: opt.Password,
DialTimeout: opt.DialTimeout,
ReadTimeout: opt.ReadTimeout,
WriteTimeout: opt.WriteTimeout,
2016-03-17 19:00:47 +03:00
PoolSize: opt.PoolSize,
PoolTimeout: opt.PoolTimeout,
IdleTimeout: opt.IdleTimeout,
IdleCheckFrequency: opt.IdleCheckFrequency,
2015-05-25 16:22:27 +03:00
}
}
type ringShard struct {
Client *Client
down int
}
func (shard *ringShard) String() string {
var state string
if shard.IsUp() {
state = "up"
} else {
state = "down"
}
return fmt.Sprintf("%s is %s", shard.Client, state)
}
func (shard *ringShard) IsDown() bool {
const threshold = 5
return shard.down >= threshold
}
func (shard *ringShard) IsUp() bool {
return !shard.IsDown()
}
// Vote votes to set shard state and returns true if state was changed.
func (shard *ringShard) Vote(up bool) bool {
if up {
changed := shard.IsDown()
shard.down = 0
return changed
}
if shard.IsDown() {
return false
}
shard.down++
return shard.IsDown()
}
// Ring is a Redis client that uses constistent hashing to distribute
2015-09-12 09:36:03 +03:00
// keys across multiple Redis servers (shards). It's safe for
// concurrent use by multiple goroutines.
2015-05-25 16:22:27 +03:00
//
2015-11-21 11:20:01 +03:00
// Ring monitors the state of each shard and removes dead shards from
2016-07-02 11:07:27 +03:00
// the ring. When shard comes online it is added back to the ring. This
2015-05-25 16:22:27 +03:00
// gives you maximum availability and partition tolerance, but no
// consistency between different shards or even clients. Each client
// uses shards that are available to the client and does not do any
// coordination when shard state is changed.
//
// Ring should be used when you use multiple Redis servers for caching
// and can tolerate losing data when one of the servers dies.
// Otherwise you should use Redis Cluster.
type Ring struct {
cmdable
2015-05-25 16:22:27 +03:00
2015-06-04 11:50:24 +03:00
opt *RingOptions
2015-05-25 16:22:27 +03:00
nreplicas int
mu sync.RWMutex
2015-05-25 16:22:27 +03:00
hash *consistenthash.Map
shards map[string]*ringShard
cmdsInfo map[string]*CommandInfo
cmdsInfoOnce *sync.Once
2015-05-25 16:22:27 +03:00
closed bool
}
func NewRing(opt *RingOptions) *Ring {
const nreplicas = 100
2016-06-05 14:10:30 +03:00
opt.init()
2015-05-25 16:22:27 +03:00
ring := &Ring{
2015-06-04 11:50:24 +03:00
opt: opt,
2015-05-25 16:22:27 +03:00
nreplicas: nreplicas,
2015-06-04 11:50:24 +03:00
hash: consistenthash.New(nreplicas, nil),
shards: make(map[string]*ringShard),
cmdsInfoOnce: new(sync.Once),
2015-05-25 16:22:27 +03:00
}
ring.cmdable.process = ring.Process
2015-05-25 16:22:27 +03:00
for name, addr := range opt.Addrs {
clopt := opt.clientOptions()
clopt.Addr = addr
ring.addClient(name, NewClient(clopt))
}
go ring.heartbeat()
return ring
}
func (c *Ring) cmdInfo(name string) *CommandInfo {
c.cmdsInfoOnce.Do(func() {
for _, shard := range c.shards {
cmdsInfo, err := shard.Client.Command().Result()
if err == nil {
c.cmdsInfo = cmdsInfo
return
}
}
c.cmdsInfoOnce = &sync.Once{}
})
if c.cmdsInfo == nil {
return nil
}
return c.cmdsInfo[name]
}
func (c *Ring) cmdFirstKey(cmd Cmder) string {
cmdInfo := c.cmdInfo(cmd.arg(0))
if cmdInfo == nil {
2016-07-08 12:24:02 +03:00
internal.Logf("info for cmd=%s not found", cmd.arg(0))
return ""
}
return cmd.arg(int(cmdInfo.FirstKeyPos))
}
func (c *Ring) addClient(name string, cl *Client) {
c.mu.Lock()
c.hash.Add(name)
c.shards[name] = &ringShard{Client: cl}
c.mu.Unlock()
2015-05-25 16:22:27 +03:00
}
func (c *Ring) getClient(key string) (*Client, error) {
c.mu.RLock()
2015-05-25 16:22:27 +03:00
if c.closed {
return nil, pool.ErrClosed
2015-05-25 16:22:27 +03:00
}
name := c.hash.Get(hashtag.Key(key))
2015-05-25 16:22:27 +03:00
if name == "" {
c.mu.RUnlock()
2015-05-25 16:22:27 +03:00
return nil, errRingShardsDown
}
cl := c.shards[name].Client
c.mu.RUnlock()
return cl, nil
2015-05-25 16:22:27 +03:00
}
func (c *Ring) Process(cmd Cmder) error {
cl, err := c.getClient(c.cmdFirstKey(cmd))
2015-05-25 16:22:27 +03:00
if err != nil {
cmd.setErr(err)
2016-06-17 15:09:38 +03:00
return err
2015-05-25 16:22:27 +03:00
}
2016-06-17 15:09:38 +03:00
return cl.baseClient.Process(cmd)
2015-05-25 16:22:27 +03:00
}
// rebalance removes dead shards from the c.
func (c *Ring) rebalance() {
defer c.mu.Unlock()
c.mu.Lock()
2015-05-25 16:22:27 +03:00
c.hash = consistenthash.New(c.nreplicas, nil)
for name, shard := range c.shards {
2015-05-25 16:22:27 +03:00
if shard.IsUp() {
c.hash.Add(name)
2015-05-25 16:22:27 +03:00
}
}
}
2016-07-02 11:07:27 +03:00
// heartbeat monitors state of each shard in the ring.
func (c *Ring) heartbeat() {
2015-05-25 16:22:27 +03:00
ticker := time.NewTicker(100 * time.Millisecond)
defer ticker.Stop()
for _ = range ticker.C {
var rebalance bool
c.mu.RLock()
2015-05-25 16:22:27 +03:00
if c.closed {
c.mu.RUnlock()
2015-05-25 16:22:27 +03:00
break
}
for _, shard := range c.shards {
2015-05-25 16:22:27 +03:00
err := shard.Client.Ping().Err()
if shard.Vote(err == nil || err == pool.ErrPoolTimeout) {
2016-04-09 14:52:01 +03:00
internal.Logf("ring shard state changed: %s", shard)
2015-05-25 16:22:27 +03:00
rebalance = true
}
}
c.mu.RUnlock()
2015-05-25 16:22:27 +03:00
if rebalance {
c.rebalance()
2015-05-25 16:22:27 +03:00
}
}
}
// Close closes the ring client, releasing any open resources.
//
2015-09-12 09:36:03 +03:00
// It is rare to Close a Ring, as the Ring is meant to be long-lived
// and shared between many goroutines.
func (c *Ring) Close() (retErr error) {
defer c.mu.Unlock()
c.mu.Lock()
2015-05-25 16:22:27 +03:00
if c.closed {
2015-05-25 16:22:27 +03:00
return nil
}
c.closed = true
2015-05-25 16:22:27 +03:00
for _, shard := range c.shards {
2015-05-25 16:22:27 +03:00
if err := shard.Client.Close(); err != nil {
retErr = err
}
}
c.hash = nil
c.shards = nil
2015-05-25 16:22:27 +03:00
return retErr
}
2015-06-04 11:50:24 +03:00
func (c *Ring) Pipeline() *Pipeline {
pipe := Pipeline{
exec: c.pipelineExec,
2015-06-04 11:50:24 +03:00
}
pipe.cmdable.process = pipe.Process
pipe.statefulCmdable.process = pipe.Process
return &pipe
2015-06-04 11:50:24 +03:00
}
func (c *Ring) Pipelined(fn func(*Pipeline) error) ([]Cmder, error) {
return c.Pipeline().pipelined(fn)
2015-06-04 11:50:24 +03:00
}
func (c *Ring) pipelineExec(cmds []Cmder) error {
var retErr error
2015-06-04 11:50:24 +03:00
cmdsMap := make(map[string][]Cmder)
for _, cmd := range cmds {
name := c.hash.Get(hashtag.Key(c.cmdFirstKey(cmd)))
if name == "" {
cmd.setErr(errRingShardsDown)
if retErr == nil {
retErr = errRingShardsDown
}
continue
}
2015-06-04 11:50:24 +03:00
cmdsMap[name] = append(cmdsMap[name], cmd)
}
for i := 0; i <= c.opt.MaxRetries; i++ {
2015-06-04 11:50:24 +03:00
failedCmdsMap := make(map[string][]Cmder)
for name, cmds := range cmdsMap {
client := c.shards[name].Client
2016-03-15 15:04:35 +03:00
cn, err := client.conn()
2015-06-04 11:50:24 +03:00
if err != nil {
setCmdsErr(cmds, err)
if retErr == nil {
retErr = err
}
continue
}
if i > 0 {
resetCmds(cmds)
}
failedCmds, err := execCmds(cn, cmds)
2016-03-08 18:18:52 +03:00
client.putConn(cn, err, false)
2015-06-04 11:50:24 +03:00
if err != nil && retErr == nil {
retErr = err
}
if len(failedCmds) > 0 {
failedCmdsMap[name] = failedCmds
}
}
if len(failedCmdsMap) == 0 {
break
}
cmdsMap = failedCmdsMap
}
return retErr
2015-06-04 11:50:24 +03:00
}