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4cd1bbb50a
- Stop spawning store replay routines when testing the notification targets - Properly honor the target.Close() to clean the resources used Fixes #8707 Co-authored-by: Harshavardhana <harsha@minio.io>
360 lines
9.8 KiB
Go
360 lines
9.8 KiB
Go
/*
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* MinIO Cloud Storage, (C) 2018 MinIO, Inc.
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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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*/
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package target
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import (
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"context"
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"crypto/tls"
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"crypto/x509"
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"encoding/json"
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"errors"
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"net/url"
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"os"
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"path/filepath"
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"github.com/minio/minio/pkg/event"
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xnet "github.com/minio/minio/pkg/net"
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"github.com/nats-io/nats.go"
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"github.com/nats-io/stan.go"
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)
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// NATS related constants
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const (
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NATSAddress = "address"
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NATSSubject = "subject"
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NATSUsername = "username"
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NATSPassword = "password"
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NATSToken = "token"
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NATSTLS = "tls"
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NATSTLSSkipVerify = "tls_skip_verify"
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NATSPingInterval = "ping_interval"
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NATSQueueDir = "queue_dir"
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NATSQueueLimit = "queue_limit"
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NATSCertAuthority = "cert_authority"
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NATSClientCert = "client_cert"
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NATSClientKey = "client_key"
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// Streaming constants
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NATSStreaming = "streaming"
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NATSStreamingClusterID = "streaming_cluster_id"
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NATSStreamingAsync = "streaming_async"
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NATSStreamingMaxPubAcksInFlight = "streaming_max_pub_acks_in_flight"
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EnvNATSEnable = "MINIO_NOTIFY_NATS_ENABLE"
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EnvNATSAddress = "MINIO_NOTIFY_NATS_ADDRESS"
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EnvNATSSubject = "MINIO_NOTIFY_NATS_SUBJECT"
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EnvNATSUsername = "MINIO_NOTIFY_NATS_USERNAME"
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EnvNATSPassword = "MINIO_NOTIFY_NATS_PASSWORD"
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EnvNATSToken = "MINIO_NOTIFY_NATS_TOKEN"
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EnvNATSTLS = "MINIO_NOTIFY_NATS_TLS"
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EnvNATSTLSSkipVerify = "MINIO_NOTIFY_NATS_TLS_SKIP_VERIFY"
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EnvNATSPingInterval = "MINIO_NOTIFY_NATS_PING_INTERVAL"
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EnvNATSQueueDir = "MINIO_NOTIFY_NATS_QUEUE_DIR"
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EnvNATSQueueLimit = "MINIO_NOTIFY_NATS_QUEUE_LIMIT"
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EnvNATSCertAuthority = "MINIO_NOTIFY_NATS_CERT_AUTHORITY"
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EnvNATSClientCert = "MINIO_NOTIFY_NATS_CLIENT_CERT"
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EnvNATSClientKey = "MINIO_NOTIFY_NATS_CLIENT_KEY"
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// Streaming constants
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EnvNATSStreaming = "MINIO_NOTIFY_NATS_STREAMING"
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EnvNATSStreamingClusterID = "MINIO_NOTIFY_NATS_STREAMING_CLUSTER_ID"
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EnvNATSStreamingAsync = "MINIO_NOTIFY_NATS_STREAMING_ASYNC"
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EnvNATSStreamingMaxPubAcksInFlight = "MINIO_NOTIFY_NATS_STREAMING_MAX_PUB_ACKS_IN_FLIGHT"
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)
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// NATSArgs - NATS target arguments.
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type NATSArgs struct {
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Enable bool `json:"enable"`
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Address xnet.Host `json:"address"`
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Subject string `json:"subject"`
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Username string `json:"username"`
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Password string `json:"password"`
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Token string `json:"token"`
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TLS bool `json:"tls"`
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TLSSkipVerify bool `json:"tlsSkipVerify"`
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Secure bool `json:"secure"`
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CertAuthority string `json:"certAuthority"`
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ClientCert string `json:"clientCert"`
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ClientKey string `json:"clientKey"`
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PingInterval int64 `json:"pingInterval"`
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QueueDir string `json:"queueDir"`
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QueueLimit uint64 `json:"queueLimit"`
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Streaming struct {
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Enable bool `json:"enable"`
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ClusterID string `json:"clusterID"`
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Async bool `json:"async"`
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MaxPubAcksInflight int `json:"maxPubAcksInflight"`
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} `json:"streaming"`
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RootCAs *x509.CertPool `json:"-"`
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}
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// Validate NATSArgs fields
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func (n NATSArgs) Validate() error {
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if !n.Enable {
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return nil
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}
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if n.Address.IsEmpty() {
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return errors.New("empty address")
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}
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if n.Subject == "" {
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return errors.New("empty subject")
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}
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if n.ClientCert != "" && n.ClientKey == "" || n.ClientCert == "" && n.ClientKey != "" {
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return errors.New("cert and key must be specified as a pair")
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}
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if n.Streaming.Enable {
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if n.Streaming.ClusterID == "" {
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return errors.New("empty cluster id")
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}
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}
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if n.QueueDir != "" {
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if !filepath.IsAbs(n.QueueDir) {
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return errors.New("queueDir path should be absolute")
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}
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}
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if n.QueueLimit > 10000 {
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return errors.New("queueLimit should not exceed 10000")
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}
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return nil
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}
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// To obtain a nats connection from args.
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func (n NATSArgs) connectNats() (*nats.Conn, error) {
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connOpts := []nats.Option{nats.Name("Minio Notification")}
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if n.Username != "" && n.Password != "" {
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connOpts = append(connOpts, nats.UserInfo(n.Username, n.Password))
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}
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if n.Token != "" {
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connOpts = append(connOpts, nats.Token(n.Token))
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}
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if n.Secure || n.TLS && n.TLSSkipVerify {
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connOpts = append(connOpts, nats.Secure(nil))
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} else if n.TLS {
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connOpts = append(connOpts, nats.Secure(&tls.Config{RootCAs: n.RootCAs}))
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}
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if n.CertAuthority != "" {
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connOpts = append(connOpts, nats.RootCAs(n.CertAuthority))
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}
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if n.ClientCert != "" && n.ClientKey != "" {
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connOpts = append(connOpts, nats.ClientCert(n.ClientCert, n.ClientKey))
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}
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return nats.Connect(n.Address.String(), connOpts...)
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}
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// To obtain a streaming connection from args.
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func (n NATSArgs) connectStan() (stan.Conn, error) {
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scheme := "nats"
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if n.Secure {
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scheme = "tls"
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}
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addressURL := scheme + "://" + n.Username + ":" + n.Password + "@" + n.Address.String()
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clientID, err := getNewUUID()
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if err != nil {
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return nil, err
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}
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connOpts := []stan.Option{stan.NatsURL(addressURL)}
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if n.Streaming.MaxPubAcksInflight > 0 {
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connOpts = append(connOpts, stan.MaxPubAcksInflight(n.Streaming.MaxPubAcksInflight))
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}
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return stan.Connect(n.Streaming.ClusterID, clientID, connOpts...)
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}
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// NATSTarget - NATS target.
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type NATSTarget struct {
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id event.TargetID
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args NATSArgs
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natsConn *nats.Conn
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stanConn stan.Conn
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store Store
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}
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// ID - returns target ID.
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func (target *NATSTarget) ID() event.TargetID {
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return target.id
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}
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// IsActive - Return true if target is up and active
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func (target *NATSTarget) IsActive() (bool, error) {
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if target.args.Streaming.Enable {
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if !target.stanConn.NatsConn().IsConnected() {
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return false, errNotConnected
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}
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} else {
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if !target.natsConn.IsConnected() {
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return false, errNotConnected
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}
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}
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return true, nil
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}
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// Save - saves the events to the store which will be replayed when the Nats connection is active.
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func (target *NATSTarget) Save(eventData event.Event) error {
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if target.store != nil {
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return target.store.Put(eventData)
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}
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_, err := target.IsActive()
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if err != nil {
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return err
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}
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return target.send(eventData)
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}
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// send - sends an event to the Nats.
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func (target *NATSTarget) send(eventData event.Event) error {
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objectName, err := url.QueryUnescape(eventData.S3.Object.Key)
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if err != nil {
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return err
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}
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key := eventData.S3.Bucket.Name + "/" + objectName
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data, err := json.Marshal(event.Log{EventName: eventData.EventName, Key: key, Records: []event.Event{eventData}})
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if err != nil {
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return err
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}
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if target.stanConn != nil {
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if target.args.Streaming.Async {
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_, err = target.stanConn.PublishAsync(target.args.Subject, data, nil)
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} else {
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err = target.stanConn.Publish(target.args.Subject, data)
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}
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} else {
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err = target.natsConn.Publish(target.args.Subject, data)
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}
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return err
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}
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// Send - sends event to Nats.
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func (target *NATSTarget) Send(eventKey string) error {
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var connErr error
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if target.args.Streaming.Enable {
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if target.stanConn == nil || target.stanConn.NatsConn() == nil {
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target.stanConn, connErr = target.args.connectStan()
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} else {
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if !target.stanConn.NatsConn().IsConnected() {
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return errNotConnected
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}
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}
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} else {
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if target.natsConn == nil {
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target.natsConn, connErr = target.args.connectNats()
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} else {
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if !target.natsConn.IsConnected() {
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return errNotConnected
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}
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}
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}
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if connErr != nil {
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if connErr.Error() == nats.ErrNoServers.Error() {
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return errNotConnected
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}
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return connErr
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}
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eventData, eErr := target.store.Get(eventKey)
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if eErr != nil {
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// The last event key in a successful batch will be sent in the channel atmost once by the replayEvents()
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// Such events will not exist and wouldve been already been sent successfully.
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if os.IsNotExist(eErr) {
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return nil
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}
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return eErr
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}
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if err := target.send(eventData); err != nil {
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return err
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}
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return target.store.Del(eventKey)
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}
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// Close - closes underneath connections to NATS server.
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func (target *NATSTarget) Close() (err error) {
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if target.stanConn != nil {
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// closing the streaming connection does not close the provided NATS connection.
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if target.stanConn.NatsConn() != nil {
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target.stanConn.NatsConn().Close()
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}
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err = target.stanConn.Close()
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}
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if target.natsConn != nil {
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target.natsConn.Close()
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}
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return err
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}
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// NewNATSTarget - creates new NATS target.
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func NewNATSTarget(id string, args NATSArgs, doneCh <-chan struct{}, loggerOnce func(ctx context.Context, err error, id interface{}, kind ...interface{}), test bool) (*NATSTarget, error) {
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var natsConn *nats.Conn
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var stanConn stan.Conn
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var err error
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var store Store
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if args.QueueDir != "" {
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queueDir := filepath.Join(args.QueueDir, storePrefix+"-nats-"+id)
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store = NewQueueStore(queueDir, args.QueueLimit)
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if oErr := store.Open(); oErr != nil {
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return nil, oErr
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}
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}
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if args.Streaming.Enable {
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stanConn, err = args.connectStan()
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} else {
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natsConn, err = args.connectNats()
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}
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if err != nil {
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if store == nil || err.Error() != nats.ErrNoServers.Error() {
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return nil, err
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}
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}
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target := &NATSTarget{
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id: event.TargetID{ID: id, Name: "nats"},
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args: args,
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stanConn: stanConn,
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natsConn: natsConn,
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store: store,
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}
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if target.store != nil && !test {
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// Replays the events from the store.
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eventKeyCh := replayEvents(target.store, doneCh, loggerOnce, target.ID())
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// Start replaying events from the store.
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go sendEvents(target, eventKeyCh, doneCh, loggerOnce)
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}
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return target, nil
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}
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