mirror of
https://github.com/etcd-io/etcd.git
synced 2024-09-27 06:25:44 +00:00
345 lines
8.1 KiB
Go
345 lines
8.1 KiB
Go
// Copyright 2016 The etcd Authors
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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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package clientv3
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import (
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"net/url"
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"strings"
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"sync"
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"golang.org/x/net/context"
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"google.golang.org/grpc"
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"google.golang.org/grpc/codes"
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)
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// ErrNoAddrAvilable is returned by Get() when the balancer does not have
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// any active connection to endpoints at the time.
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// This error is returned only when opts.BlockingWait is true.
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var ErrNoAddrAvilable = grpc.Errorf(codes.Unavailable, "there is no address available")
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// simpleBalancer does the bare minimum to expose multiple eps
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// to the grpc reconnection code path
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type simpleBalancer struct {
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// addrs are the client's endpoints for grpc
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addrs []grpc.Address
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// notifyCh notifies grpc of the set of addresses for connecting
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notifyCh chan []grpc.Address
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// readyc closes once the first connection is up
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readyc chan struct{}
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readyOnce sync.Once
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// mu protects upEps, pinAddr, and connectingAddr
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mu sync.RWMutex
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// upc closes when upEps transitions from empty to non-zero or the balancer closes.
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upc chan struct{}
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// downc closes when grpc calls down() on pinAddr
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downc chan struct{}
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// stopc is closed to signal updateNotifyLoop should stop.
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stopc chan struct{}
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// donec closes when all goroutines are exited
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donec chan struct{}
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// updateAddrsC notifies updateNotifyLoop to update addrs.
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updateAddrsC chan struct{}
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// grpc issues TLS cert checks using the string passed into dial so
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// that string must be the host. To recover the full scheme://host URL,
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// have a map from hosts to the original endpoint.
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host2ep map[string]string
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// pinAddr is the currently pinned address; set to the empty string on
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// intialization and shutdown.
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pinAddr string
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closed bool
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}
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func newSimpleBalancer(eps []string) *simpleBalancer {
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notifyCh := make(chan []grpc.Address, 1)
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addrs := make([]grpc.Address, len(eps))
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for i := range eps {
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addrs[i].Addr = getHost(eps[i])
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}
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notifyCh <- addrs
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sb := &simpleBalancer{
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addrs: addrs,
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notifyCh: notifyCh,
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readyc: make(chan struct{}),
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upc: make(chan struct{}),
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stopc: make(chan struct{}),
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downc: make(chan struct{}),
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donec: make(chan struct{}),
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updateAddrsC: make(chan struct{}, 1),
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host2ep: getHost2ep(eps),
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}
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go sb.updateNotifyLoop()
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return sb
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}
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func (b *simpleBalancer) Start(target string, config grpc.BalancerConfig) error { return nil }
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func (b *simpleBalancer) ConnectNotify() <-chan struct{} {
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b.mu.Lock()
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defer b.mu.Unlock()
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return b.upc
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}
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func (b *simpleBalancer) getEndpoint(host string) string {
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b.mu.Lock()
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defer b.mu.Unlock()
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return b.host2ep[host]
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}
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func getHost2ep(eps []string) map[string]string {
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hm := make(map[string]string, len(eps))
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for i := range eps {
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_, host, _ := parseEndpoint(eps[i])
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hm[host] = eps[i]
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}
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return hm
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}
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func (b *simpleBalancer) updateAddrs(eps []string) {
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np := getHost2ep(eps)
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b.mu.Lock()
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match := len(np) == len(b.host2ep)
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for k, v := range np {
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if b.host2ep[k] != v {
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match = false
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break
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}
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}
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if match {
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// same endpoints, so no need to update address
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b.mu.Unlock()
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return
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}
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b.host2ep = np
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addrs := make([]grpc.Address, 0, len(eps))
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for i := range eps {
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addrs = append(addrs, grpc.Address{Addr: getHost(eps[i])})
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}
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b.addrs = addrs
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// updating notifyCh can trigger new connections,
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// only update addrs if all connections are down
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// or addrs does not include pinAddr.
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update := !hasAddr(addrs, b.pinAddr)
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b.mu.Unlock()
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if update {
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select {
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case b.updateAddrsC <- struct{}{}:
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case <-b.stopc:
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}
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}
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}
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func hasAddr(addrs []grpc.Address, targetAddr string) bool {
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for _, addr := range addrs {
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if targetAddr == addr.Addr {
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return true
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}
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}
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return false
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}
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func (b *simpleBalancer) updateNotifyLoop() {
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defer close(b.donec)
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for {
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b.mu.RLock()
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upc := b.upc
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b.mu.RUnlock()
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var downc chan struct{}
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select {
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case <-upc:
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var addr string
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b.mu.RLock()
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addr = b.pinAddr
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// Up() sets pinAddr and downc as a pair under b.mu
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downc = b.downc
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b.mu.RUnlock()
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if addr == "" {
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break
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}
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// close opened connections that are not pinAddr
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// this ensures only one connection is open per client
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select {
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case b.notifyCh <- []grpc.Address{{Addr: addr}}:
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case <-b.stopc:
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return
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}
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case <-b.updateAddrsC:
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b.notifyAddrs()
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continue
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}
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select {
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case <-downc:
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b.notifyAddrs()
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case <-b.updateAddrsC:
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b.notifyAddrs()
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case <-b.stopc:
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return
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}
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}
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}
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func (b *simpleBalancer) notifyAddrs() {
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b.mu.RLock()
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addrs := b.addrs
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b.mu.RUnlock()
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select {
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case b.notifyCh <- addrs:
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case <-b.stopc:
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}
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}
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func (b *simpleBalancer) Up(addr grpc.Address) func(error) {
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b.mu.Lock()
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defer b.mu.Unlock()
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// gRPC might call Up after it called Close. We add this check
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// to "fix" it up at application layer. Or our simplerBalancer
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// might panic since b.upc is closed.
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if b.closed {
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return func(err error) {}
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}
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// gRPC might call Up on a stale address.
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// Prevent updating pinAddr with a stale address.
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if !hasAddr(b.addrs, addr.Addr) {
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return func(err error) {}
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}
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if b.pinAddr == "" {
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// notify waiting Get()s and pin first connected address
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close(b.upc)
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b.downc = make(chan struct{})
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b.pinAddr = addr.Addr
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// notify client that a connection is up
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b.readyOnce.Do(func() { close(b.readyc) })
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}
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return func(err error) {
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b.mu.Lock()
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if b.pinAddr == addr.Addr {
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b.upc = make(chan struct{})
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close(b.downc)
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b.pinAddr = ""
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}
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b.mu.Unlock()
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}
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}
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func (b *simpleBalancer) Get(ctx context.Context, opts grpc.BalancerGetOptions) (grpc.Address, func(), error) {
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var (
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addr string
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closed bool
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)
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// If opts.BlockingWait is false (for fail-fast RPCs), it should return
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// an address it has notified via Notify immediately instead of blocking.
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if !opts.BlockingWait {
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b.mu.RLock()
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closed = b.closed
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addr = b.pinAddr
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b.mu.RUnlock()
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if closed {
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return grpc.Address{Addr: ""}, nil, grpc.ErrClientConnClosing
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}
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if addr == "" {
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return grpc.Address{Addr: ""}, nil, ErrNoAddrAvilable
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}
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return grpc.Address{Addr: addr}, func() {}, nil
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}
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for {
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b.mu.RLock()
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ch := b.upc
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b.mu.RUnlock()
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select {
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case <-ch:
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case <-ctx.Done():
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return grpc.Address{Addr: ""}, nil, ctx.Err()
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}
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b.mu.RLock()
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closed = b.closed
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addr = b.pinAddr
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b.mu.RUnlock()
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// Close() which sets b.closed = true can be called before Get(), Get() must exit if balancer is closed.
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if closed {
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return grpc.Address{Addr: ""}, nil, grpc.ErrClientConnClosing
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}
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if addr != "" {
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break
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}
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}
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return grpc.Address{Addr: addr}, func() {}, nil
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}
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func (b *simpleBalancer) Notify() <-chan []grpc.Address { return b.notifyCh }
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func (b *simpleBalancer) Close() error {
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b.mu.Lock()
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// In case gRPC calls close twice. TODO: remove the checking
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// when we are sure that gRPC wont call close twice.
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if b.closed {
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b.mu.Unlock()
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<-b.donec
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return nil
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}
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b.closed = true
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close(b.stopc)
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b.pinAddr = ""
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// In the case of following scenario:
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// 1. upc is not closed; no pinned address
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// 2. client issues an rpc, calling invoke(), which calls Get(), enters for loop, blocks
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// 3. clientconn.Close() calls balancer.Close(); closed = true
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// 4. for loop in Get() never exits since ctx is the context passed in by the client and may not be canceled
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// we must close upc so Get() exits from blocking on upc
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select {
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case <-b.upc:
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default:
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// terminate all waiting Get()s
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close(b.upc)
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}
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b.mu.Unlock()
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// wait for updateNotifyLoop to finish
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<-b.donec
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close(b.notifyCh)
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return nil
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}
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func getHost(ep string) string {
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url, uerr := url.Parse(ep)
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if uerr != nil || !strings.Contains(ep, "://") {
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return ep
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}
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return url.Host
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}
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