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322 lines
9.2 KiB
322 lines
9.2 KiB
# NATS - Go Client
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A [Go](http://golang.org) client for the [NATS messaging system](https://nats.io).
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[![License MIT](https://img.shields.io/npm/l/express.svg)](http://opensource.org/licenses/MIT)
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[![Go Report Card](https://goreportcard.com/badge/github.com/nats-io/go-nats)](https://goreportcard.com/report/github.com/nats-io/go-nats) [![Build Status](https://travis-ci.org/nats-io/go-nats.svg?branch=master)](http://travis-ci.org/nats-io/go-nats) [![GoDoc](https://godoc.org/github.com/nats-io/go-nats?status.svg)](http://godoc.org/github.com/nats-io/go-nats) [![Coverage Status](https://coveralls.io/repos/nats-io/go-nats/badge.svg?branch=master)](https://coveralls.io/r/nats-io/go-nats?branch=master)
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## Installation
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```bash
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# Go client
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go get github.com/nats-io/go-nats
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# Server
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go get github.com/nats-io/gnatsd
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```
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## Basic Usage
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```go
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nc, _ := nats.Connect(nats.DefaultURL)
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// Simple Publisher
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nc.Publish("foo", []byte("Hello World"))
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// Simple Async Subscriber
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nc.Subscribe("foo", func(m *nats.Msg) {
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fmt.Printf("Received a message: %s\n", string(m.Data))
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})
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// Simple Sync Subscriber
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sub, err := nc.SubscribeSync("foo")
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m, err := sub.NextMsg(timeout)
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// Channel Subscriber
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ch := make(chan *nats.Msg, 64)
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sub, err := nc.ChanSubscribe("foo", ch)
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msg <- ch
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// Unsubscribe
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sub.Unsubscribe()
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// Requests
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msg, err := nc.Request("help", []byte("help me"), 10*time.Millisecond)
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// Replies
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nc.Subscribe("help", func(m *Msg) {
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nc.Publish(m.Reply, []byte("I can help!"))
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})
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// Close connection
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nc := nats.Connect("nats://localhost:4222")
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nc.Close();
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```
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## Encoded Connections
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```go
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nc, _ := nats.Connect(nats.DefaultURL)
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c, _ := nats.NewEncodedConn(nc, nats.JSON_ENCODER)
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defer c.Close()
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// Simple Publisher
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c.Publish("foo", "Hello World")
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// Simple Async Subscriber
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c.Subscribe("foo", func(s string) {
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fmt.Printf("Received a message: %s\n", s)
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})
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// EncodedConn can Publish any raw Go type using the registered Encoder
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type person struct {
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Name string
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Address string
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Age int
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}
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// Go type Subscriber
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c.Subscribe("hello", func(p *person) {
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fmt.Printf("Received a person: %+v\n", p)
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})
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me := &person{Name: "derek", Age: 22, Address: "140 New Montgomery Street, San Francisco, CA"}
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// Go type Publisher
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c.Publish("hello", me)
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// Unsubscribe
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sub, err := c.Subscribe("foo", nil)
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...
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sub.Unsubscribe()
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// Requests
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var response string
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err := c.Request("help", "help me", &response, 10*time.Millisecond)
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if err != nil {
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fmt.Printf("Request failed: %v\n", err)
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}
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// Replying
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c.Subscribe("help", func(subj, reply string, msg string) {
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c.Publish(reply, "I can help!")
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})
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// Close connection
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c.Close();
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```
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## TLS
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```go
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// tls as a scheme will enable secure connections by default. This will also verify the server name.
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nc, err := nats.Connect("tls://nats.demo.io:4443")
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// If you are using a self-signed certificate, you need to have a tls.Config with RootCAs setup.
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// We provide a helper method to make this case easier.
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nc, err = nats.Connect("tls://localhost:4443", nats.RootCAs("./configs/certs/ca.pem"))
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// If the server requires client certificate, there is an helper function for that too:
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cert := nats.ClientCert("./configs/certs/client-cert.pem", "./configs/certs/client-key.pem")
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nc, err = nats.Connect("tls://localhost:4443", cert)
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// You can also supply a complete tls.Config
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certFile := "./configs/certs/client-cert.pem"
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keyFile := "./configs/certs/client-key.pem"
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cert, err := tls.LoadX509KeyPair(certFile, keyFile)
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if err != nil {
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t.Fatalf("error parsing X509 certificate/key pair: %v", err)
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}
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config := &tls.Config{
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ServerName: opts.Host,
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Certificates: []tls.Certificate{cert},
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RootCAs: pool,
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MinVersion: tls.VersionTLS12,
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}
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nc, err = nats.Connect("nats://localhost:4443", nats.Secure(config))
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if err != nil {
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t.Fatalf("Got an error on Connect with Secure Options: %+v\n", err)
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}
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```
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## Using Go Channels (netchan)
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```go
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nc, _ := nats.Connect(nats.DefaultURL)
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ec, _ := nats.NewEncodedConn(nc, nats.JSON_ENCODER)
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defer ec.Close()
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type person struct {
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Name string
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Address string
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Age int
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}
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recvCh := make(chan *person)
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ec.BindRecvChan("hello", recvCh)
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sendCh := make(chan *person)
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ec.BindSendChan("hello", sendCh)
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me := &person{Name: "derek", Age: 22, Address: "140 New Montgomery Street"}
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// Send via Go channels
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sendCh <- me
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// Receive via Go channels
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who := <- recvCh
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```
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## Wildcard Subscriptions
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```go
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// "*" matches any token, at any level of the subject.
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nc.Subscribe("foo.*.baz", func(m *Msg) {
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fmt.Printf("Msg received on [%s] : %s\n", m.Subject, string(m.Data));
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})
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nc.Subscribe("foo.bar.*", func(m *Msg) {
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fmt.Printf("Msg received on [%s] : %s\n", m.Subject, string(m.Data));
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})
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// ">" matches any length of the tail of a subject, and can only be the last token
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// E.g. 'foo.>' will match 'foo.bar', 'foo.bar.baz', 'foo.foo.bar.bax.22'
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nc.Subscribe("foo.>", func(m *Msg) {
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fmt.Printf("Msg received on [%s] : %s\n", m.Subject, string(m.Data));
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})
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// Matches all of the above
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nc.Publish("foo.bar.baz", []byte("Hello World"))
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```
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## Queue Groups
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```go
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// All subscriptions with the same queue name will form a queue group.
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// Each message will be delivered to only one subscriber per queue group,
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// using queuing semantics. You can have as many queue groups as you wish.
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// Normal subscribers will continue to work as expected.
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nc.QueueSubscribe("foo", "job_workers", func(_ *Msg) {
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received += 1;
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})
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```
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## Advanced Usage
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```go
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// Flush connection to server, returns when all messages have been processed.
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nc.Flush()
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fmt.Println("All clear!")
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// FlushTimeout specifies a timeout value as well.
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err := nc.FlushTimeout(1*time.Second)
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if err != nil {
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fmt.Println("All clear!")
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} else {
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fmt.Println("Flushed timed out!")
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}
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// Auto-unsubscribe after MAX_WANTED messages received
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const MAX_WANTED = 10
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sub, err := nc.Subscribe("foo")
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sub.AutoUnsubscribe(MAX_WANTED)
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// Multiple connections
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nc1 := nats.Connect("nats://host1:4222")
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nc2 := nats.Connect("nats://host2:4222")
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nc1.Subscribe("foo", func(m *Msg) {
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fmt.Printf("Received a message: %s\n", string(m.Data))
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})
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nc2.Publish("foo", []byte("Hello World!"));
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```
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## Clustered Usage
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```go
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var servers = "nats://localhost:1222, nats://localhost:1223, nats://localhost:1224"
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nc, err := nats.Connect(servers)
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// Optionally set ReconnectWait and MaxReconnect attempts.
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// This example means 10 seconds total per backend.
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nc, err = nats.Connect(servers, nats.MaxReconnects(5), nats.ReconnectWait(2 * time.Second))
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// Optionally disable randomization of the server pool
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nc, err = nats.Connect(servers, nats.DontRandomize())
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// Setup callbacks to be notified on disconnects, reconnects and connection closed.
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nc, err = nats.Connect(servers,
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nats.DisconnectHandler(func(nc *nats.Conn) {
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fmt.Printf("Got disconnected!\n")
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}),
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nats.ReconnectHandler(func(_ *nats.Conn) {
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fmt.Printf("Got reconnected to %v!\n", nc.ConnectedUrl())
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}),
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nats.ClosedHandler(func(nc *nats.Conn) {
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fmt.Printf("Connection closed. Reason: %q\n", nc.LastError())
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})
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)
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// When connecting to a mesh of servers with auto-discovery capabilities,
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// you may need to provide a username/password or token in order to connect
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// to any server in that mesh when authentication is required.
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// Instead of providing the credentials in the initial URL, you will use
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// new option setters:
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nc, err = nats.Connect("nats://localhost:4222", nats.UserInfo("foo", "bar"))
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// For token based authentication:
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nc, err = nats.Connect("nats://localhost:4222", nats.Token("S3cretT0ken"))
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// You can even pass the two at the same time in case one of the server
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// in the mesh requires token instead of user name and password.
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nc, err = nats.Connect("nats://localhost:4222",
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nats.UserInfo("foo", "bar"),
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nats.Token("S3cretT0ken"))
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// Note that if credentials are specified in the initial URLs, they take
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// precedence on the credentials specfied through the options.
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// For instance, in the connect call below, the client library will use
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// the user "my" and password "pwd" to connect to locahost:4222, however,
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// it will use username "foo" and password "bar" when (re)connecting to
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// a different server URL that it got as part of the auto-discovery.
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nc, err = nats.Connect("nats://my:pwd@localhost:4222", nats.UserInfo("foo", "bar"))
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```
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## License
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(The MIT License)
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Copyright (c) 2012-2016 Apcera Inc.
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to
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deal in the Software without restriction, including without limitation the
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rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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sell copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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IN THE SOFTWARE.
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