forked from mirror/redis
304 lines
6.4 KiB
Go
304 lines
6.4 KiB
Go
package redis
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import (
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"errors"
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"io"
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"math/rand"
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"net"
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"strings"
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"sync"
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"sync/atomic"
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"time"
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)
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type ClusterClient struct {
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commandable
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addrs map[string]struct{}
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slots [][]string
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conns map[string]*Client
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opt *ClusterOptions
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// Protect addrs, slots and conns cache
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cachemx sync.RWMutex
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_reload uint32
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}
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// NewClusterClient initializes a new cluster-aware client using given options.
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// A list of seed addresses must be provided.
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func NewClusterClient(opt *ClusterOptions) (*ClusterClient, error) {
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addrs, err := opt.getAddrSet()
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if err != nil {
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return nil, err
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}
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client := &ClusterClient{
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addrs: addrs,
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conns: make(map[string]*Client),
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opt: opt,
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_reload: 1,
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}
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client.commandable.process = client.process
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client.reloadIfDue()
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return client, nil
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}
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// Close closes the cluster connection
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func (c *ClusterClient) Close() error {
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c.cachemx.Lock()
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defer c.cachemx.Unlock()
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return c.reset()
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}
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// ------------------------------------------------------------------------
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// Finds the current master address for a given hash slot
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func (c *ClusterClient) getMasterAddrBySlot(hashSlot int) string {
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if addrs := c.slots[hashSlot]; len(addrs) > 0 {
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return addrs[0]
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}
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return ""
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}
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// Returns a node's client for a given address
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func (c *ClusterClient) getNodeClientByAddr(addr string) *Client {
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client, ok := c.conns[addr]
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if !ok {
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opt := c.opt.clientOptions()
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opt.Addr = addr
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client = NewTCPClient(opt)
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c.conns[addr] = client
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}
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return client
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}
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// Process a command
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func (c *ClusterClient) process(cmd Cmder) {
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var ask bool
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c.reloadIfDue()
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hashSlot := HashSlot(cmd.clusterKey())
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c.cachemx.RLock()
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defer c.cachemx.RUnlock()
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tried := make(map[string]struct{}, len(c.addrs))
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addr := c.getMasterAddrBySlot(hashSlot)
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for attempt := 0; attempt <= c.opt.getMaxRedirects(); attempt++ {
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tried[addr] = struct{}{}
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// Pick the connection, process request
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conn := c.getNodeClientByAddr(addr)
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if ask {
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pipe := conn.Pipeline()
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pipe.Process(NewCmd("ASKING"))
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pipe.Process(cmd)
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_, _ = pipe.Exec()
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ask = false
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} else {
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conn.Process(cmd)
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}
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// If there is no (real) error, we are done!
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err := cmd.Err()
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if err == nil || err == Nil {
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return
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}
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// On connection errors, pick a random, previosuly untried connection
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// and request again.
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if _, ok := err.(*net.OpError); ok || err == io.EOF {
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if addr = c.findNextAddr(tried); addr == "" {
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return
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}
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cmd.reset()
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continue
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}
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// Check the error message, return if unexpected
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parts := strings.SplitN(err.Error(), " ", 3)
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if len(parts) != 3 {
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return
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}
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// Handle MOVE and ASK redirections, return on any other error
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switch parts[0] {
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case "MOVED":
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c.forceReload()
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addr = parts[2]
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case "ASK":
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ask = true
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addr = parts[2]
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default:
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return
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}
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cmd.reset()
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}
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}
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// Closes all connections and reloads slot cache, if due
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func (c *ClusterClient) reloadIfDue() (err error) {
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if !atomic.CompareAndSwapUint32(&c._reload, 1, 0) {
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return
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}
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var infos []ClusterSlotInfo
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c.cachemx.Lock()
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defer c.cachemx.Unlock()
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// Try known addresses in random order (map interation order is random in Go)
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// http://redis.io/topics/cluster-spec#clients-first-connection-and-handling-of-redirections
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// https://github.com/antirez/redis-rb-cluster/blob/fd931ed/cluster.rb#L157
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for addr := range c.addrs {
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c.reset()
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infos, err = c.fetchClusterSlots(addr)
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if err == nil {
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c.update(infos)
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break
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}
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}
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return
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}
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// Closes all connections and flushes slots cache
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func (c *ClusterClient) reset() (err error) {
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for addr, client := range c.conns {
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if e := client.Close(); e != nil {
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err = e
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}
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delete(c.conns, addr)
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}
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c.slots = make([][]string, hashSlots)
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return
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}
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// Forces a cache reload on next request
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func (c *ClusterClient) forceReload() {
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atomic.StoreUint32(&c._reload, 1)
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}
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// Find the next untried address
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func (c *ClusterClient) findNextAddr(tried map[string]struct{}) string {
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for addr := range c.addrs {
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if _, ok := tried[addr]; !ok {
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return addr
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}
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}
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return ""
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}
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// Fetch slot information
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func (c *ClusterClient) fetchClusterSlots(addr string) ([]ClusterSlotInfo, error) {
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opt := c.opt.clientOptions()
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opt.Addr = addr
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client := NewClient(opt)
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defer client.Close()
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return client.ClusterSlots().Result()
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}
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// Update slot information, populate slots
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func (c *ClusterClient) update(infos []ClusterSlotInfo) {
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for _, info := range infos {
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for i := info.Start; i <= info.End; i++ {
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c.slots[i] = info.Addrs
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}
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for _, addr := range info.Addrs {
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c.addrs[addr] = struct{}{}
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}
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}
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}
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//------------------------------------------------------------------------------
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var errNoAddrs = errors.New("redis: no addresses")
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type ClusterOptions struct {
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// A seed-list of host:port addresses of known cluster nodes
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Addrs []string
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// An optional password
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Password string
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// The maximum number of MOVED/ASK redirects to follow, before
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// giving up. Default: 16
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MaxRedirects int
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// The maximum number of TCP sockets per connection. Default: 5
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PoolSize int
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// Timeout settings
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DialTimeout, ReadTimeout, WriteTimeout, IdleTimeout time.Duration
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}
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func (opt *ClusterOptions) getPoolSize() int {
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if opt.PoolSize < 1 {
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return 5
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}
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return opt.PoolSize
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}
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func (opt *ClusterOptions) getDialTimeout() time.Duration {
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if opt.DialTimeout == 0 {
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return 5 * time.Second
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}
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return opt.DialTimeout
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}
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func (opt *ClusterOptions) getMaxRedirects() int {
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if opt.MaxRedirects < 1 {
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return 16
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}
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return opt.MaxRedirects
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}
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func (opt *ClusterOptions) getAddrSet() (map[string]struct{}, error) {
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size := len(opt.Addrs)
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if size < 1 {
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return nil, errNoAddrs
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}
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addrs := make(map[string]struct{}, size)
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for _, addr := range opt.Addrs {
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addrs[addr] = struct{}{}
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}
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return addrs, nil
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}
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func (opt *ClusterOptions) clientOptions() *Options {
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return &Options{
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DB: 0,
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Password: opt.Password,
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DialTimeout: opt.getDialTimeout(),
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ReadTimeout: opt.ReadTimeout,
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WriteTimeout: opt.WriteTimeout,
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PoolSize: opt.getPoolSize(),
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IdleTimeout: opt.IdleTimeout,
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}
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}
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//------------------------------------------------------------------------------
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const hashSlots = 16384
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// HashSlot returns a consistent slot number between 0 and 16383
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// for any given string key
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func HashSlot(key string) int {
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if s := strings.IndexByte(key, '{'); s > -1 {
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if e := strings.IndexByte(key[s+1:], '}'); e > 0 {
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key = key[s+1 : s+e+1]
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}
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}
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if key == "" {
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return rand.Intn(hashSlots)
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}
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return int(crc16sum(key)) % hashSlots
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}
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