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receiver.go
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receiver.go
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package servicebus
// MIT License
//
// Copyright (c) Microsoft Corporation. All rights reserved.
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in all
// copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
// SOFTWARE
import (
"context"
"sync"
"time"
"github.com/Azure/azure-amqp-common-go/v3"
"github.com/devigned/tab"
"github.com/Azure/go-amqp"
)
type (
// Receiver provides connection, session and link handling for a receiving to an entity path
Receiver struct {
namespace *Namespace
client *amqp.Client
clientMu sync.RWMutex
session *session
receiver *amqp.Receiver
entityPath string
doneListening func()
Name string
useSessions bool
sessionID *string
lastError error
mode ReceiveMode
prefetch uint32
DefaultDisposition DispositionAction
Closed bool
doneRefreshingAuth func()
}
// ReceiverOption provides a structure for configuring receivers
ReceiverOption func(receiver *Receiver) error
// ListenerHandle provides the ability to close or listen to the close of a Receiver
ListenerHandle struct {
r *Receiver
ctx context.Context
}
)
// ReceiverWithSession configures a Receiver to use a session
func ReceiverWithSession(sessionID *string) ReceiverOption {
return func(r *Receiver) error {
r.sessionID = sessionID
r.useSessions = true
return nil
}
}
// ReceiverWithReceiveMode configures a Receiver to use the specified receive mode
func ReceiverWithReceiveMode(mode ReceiveMode) ReceiverOption {
return func(r *Receiver) error {
r.mode = mode
return nil
}
}
// ReceiverWithPrefetchCount configures the receiver to attempt to fetch the number of messages specified by the prefect
// at one time.
//
// The default is 1 message at a time.
//
// Caution: Using PeekLock, messages have a set lock timeout, which can be renewed. By setting a high prefetch count, a
// local queue of messages could build up and cause message locks to expire before the message lands in the handler. If
// this happens, the message disposition will fail and will be re-queued and processed again.
func ReceiverWithPrefetchCount(prefetch uint32) ReceiverOption {
return func(receiver *Receiver) error {
receiver.prefetch = prefetch
return nil
}
}
// NewReceiver creates a new Service Bus message listener given an AMQP client and an entity path
func (ns *Namespace) NewReceiver(ctx context.Context, entityPath string, opts ...ReceiverOption) (*Receiver, error) {
ctx, span := ns.startSpanFromContext(ctx, "sb.Namespace.NewReceiver")
defer span.End()
r := &Receiver{
namespace: ns,
entityPath: entityPath,
mode: PeekLockMode,
prefetch: 1,
}
for _, opt := range opts {
if err := opt(r); err != nil {
return nil, err
}
}
err := r.newSessionAndLink(ctx)
if err != nil {
_ = r.Close(ctx)
return nil, err
}
r.periodicallyRefreshAuth()
return r, nil
}
// Close will close the AMQP session and link of the Receiver
func (r *Receiver) Close(ctx context.Context) error {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.Close")
defer span.End()
r.clientMu.Lock()
defer r.clientMu.Unlock()
if r.doneListening != nil {
r.doneListening()
}
if r.doneRefreshingAuth != nil {
r.doneRefreshingAuth()
}
r.Closed = true
var lastErr error
if r.receiver != nil {
lastErr = r.receiver.Close(ctx)
if lastErr != nil {
tab.For(ctx).Error(lastErr)
}
}
if r.session != nil {
if err := r.session.Close(ctx); err != nil {
tab.For(ctx).Error(err)
lastErr = err
}
}
if r.client != nil {
if err := r.client.Close(); err != nil {
tab.For(ctx).Error(err)
lastErr = err
}
}
r.receiver = nil
r.session = nil
r.client = nil
return lastErr
}
// Recover will attempt to close the current session and link, then rebuild them
func (r *Receiver) Recover(ctx context.Context) error {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.Recover")
defer span.End()
// we expect the Sender, session or client is in an error state, ignore errors
closeCtx, cancel := context.WithTimeout(ctx, 10*time.Second)
closeCtx = tab.NewContext(closeCtx, span)
defer cancel()
_ = r.Close(ctx)
return r.newSessionAndLink(ctx)
}
// ReceiveOne will receive one message from the link
func (r *Receiver) ReceiveOne(ctx context.Context, handler Handler) error {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.ReceiveOne")
defer span.End()
amqpMsg, err := r.listenForMessage(ctx)
if err != nil {
tab.For(ctx).Error(err)
return err
}
r.handleMessage(ctx, amqpMsg, handler)
return nil
}
// Listen start a listener for messages sent to the entity path
func (r *Receiver) Listen(ctx context.Context, handler Handler) *ListenerHandle {
ctx, done := context.WithCancel(ctx)
r.doneListening = done
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.Listen")
defer span.End()
messages := make(chan *amqp.Message)
go r.listenForMessages(ctx, messages)
go r.handleMessages(ctx, messages, handler)
return &ListenerHandle{
r: r,
ctx: ctx,
}
}
func (r *Receiver) handleMessages(ctx context.Context, messages chan *amqp.Message, handler Handler) {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.handleMessages")
defer span.End()
for msg := range messages {
r.handleMessage(ctx, msg, handler)
}
}
func (r *Receiver) handleMessage(ctx context.Context, msg *amqp.Message, handler Handler) {
const optName = "sb.Receiver.handleMessage"
event, err := messageFromAMQPMessage(msg)
if err != nil {
_, span := r.startConsumerSpanFromContext(ctx, optName)
span.Logger().Error(err)
r.lastError = err
if r.doneListening != nil {
r.doneListening()
}
return
}
ctx, span := tab.StartSpanWithRemoteParent(ctx, optName, event)
defer span.End()
id := messageID(msg)
if idStr, ok := id.(string); ok {
span.AddAttributes(tab.StringAttribute("amqp.message.id", idStr))
}
if err := handler.Handle(ctx, event); err != nil {
// stop handling messages since the message consumer ran into an unexpected error
r.lastError = err
if r.doneListening != nil {
r.doneListening()
}
return
}
// nothing more to be done. The message was settled when it was accepted by the Receiver
if r.mode == ReceiveAndDeleteMode {
return
}
// nothing more to be done. The Receiver has no default disposition, so the handler is solely responsible for
// disposition
if r.DefaultDisposition == nil {
return
}
// default disposition is set, so try to send the disposition. If the message disposition has already been set, the
// underlying AMQP library will ignore the second disposition respecting the disposition of the handler func.
if err := r.DefaultDisposition(ctx); err != nil {
// if an error is returned by the default disposition, then we must alert the message consumer as we can't
// be sure the final message disposition.
tab.For(ctx).Error(err)
r.lastError = err
if r.doneListening != nil {
r.doneListening()
}
return
}
}
func (r *Receiver) listenForMessages(ctx context.Context, msgChan chan *amqp.Message) {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.listenForMessages")
defer span.End()
for {
msg, err := r.listenForMessage(ctx)
if err == nil {
msgChan <- msg
continue
}
select {
case <-ctx.Done():
tab.For(ctx).Debug("context done")
close(msgChan)
return
default:
_, retryErr := common.Retry(10, 10*time.Second, func() (interface{}, error) {
ctx, sp := r.startConsumerSpanFromContext(ctx, "sb.Receiver.listenForMessages.tryRecover")
defer sp.End()
tab.For(ctx).Debug("recovering connection")
err := r.Recover(ctx)
if err == nil {
tab.For(ctx).Debug("recovered connection")
return nil, nil
}
select {
case <-ctx.Done():
return nil, ctx.Err()
default:
return nil, common.Retryable(err.Error())
}
})
if retryErr != nil {
tab.For(ctx).Debug("retried, but error was unrecoverable")
r.lastError = retryErr
if err := r.Close(ctx); err != nil {
tab.For(ctx).Error(err)
}
close(msgChan)
return
}
}
}
}
func (r *Receiver) listenForMessage(ctx context.Context) (*amqp.Message, error) {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.listenForMessage")
defer span.End()
msg, err := r.receiver.Receive(ctx)
if err != nil {
tab.For(ctx).Debug(err.Error())
return nil, err
}
id := messageID(msg)
if idStr, ok := id.(string); ok {
span.AddAttributes(tab.StringAttribute("amqp.message.id", idStr))
}
return msg, nil
}
// newSessionAndLink will replace the session and link on the Receiver
func (r *Receiver) newSessionAndLink(ctx context.Context) error {
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.newSessionAndLink")
defer span.End()
r.clientMu.Lock()
defer r.clientMu.Unlock()
client, err := r.namespace.newClient()
if err != nil {
tab.For(ctx).Error(err)
return err
}
r.client = client
err = r.namespace.negotiateClaim(ctx, client, r.entityPath)
if err != nil {
tab.For(ctx).Error(err)
return err
}
amqpSession, err := client.NewSession()
if err != nil {
tab.For(ctx).Error(err)
return err
}
r.session, err = newSession(amqpSession)
if err != nil {
tab.For(ctx).Error(err)
return err
}
receiveMode := amqp.ModeSecond
if r.mode == ReceiveAndDeleteMode {
receiveMode = amqp.ModeFirst
}
opts := []amqp.LinkOption{
amqp.LinkSourceAddress(r.entityPath),
amqp.LinkReceiverSettle(receiveMode),
amqp.LinkCredit(r.prefetch),
}
if r.mode == ReceiveAndDeleteMode {
opts = append(opts, amqp.LinkSenderSettle(amqp.ModeSettled))
}
if opt, ok := r.getSessionFilterLinkOption(); ok {
opts = append(opts, opt)
}
amqpReceiver, err := amqpSession.NewReceiver(opts...)
if err != nil {
tab.For(ctx).Error(err)
return err
}
r.receiver = amqpReceiver
return nil
}
func (r *Receiver) getSessionFilterLinkOption() (amqp.LinkOption, bool) {
const name = "com.microsoft:session-filter"
const code = uint64(0x00000137000000C)
if !r.useSessions {
return nil, false
}
if r.sessionID == nil {
return amqp.LinkSourceFilter(name, code, nil), true
}
return amqp.LinkSourceFilter(name, code, r.sessionID), true
}
func (r *Receiver) periodicallyRefreshAuth() {
ctx, done := context.WithCancel(context.Background())
r.doneRefreshingAuth = done
ctx, span := r.startConsumerSpanFromContext(ctx, "sb.Receiver.periodicallyRefreshAuth")
defer span.End()
doNegotiateClaimLocked := func(ctx context.Context, r *Receiver) {
r.clientMu.RLock()
defer r.clientMu.RUnlock()
if r.client != nil {
if err := r.namespace.negotiateClaim(ctx, r.client, r.entityPath); err != nil {
tab.For(ctx).Error(err)
}
}
}
go func() {
for {
select {
case <-ctx.Done():
return
default:
time.Sleep(5 * time.Minute)
doNegotiateClaimLocked(ctx, r)
}
}
}()
}
func messageID(msg *amqp.Message) interface{} {
var id interface{} = "null"
if msg.Properties != nil {
id = msg.Properties.MessageID
}
return id
}
// Close will close the listener
func (lc *ListenerHandle) Close(ctx context.Context) error {
return lc.r.Close(ctx)
}
// Done will close the channel when the listener has stopped
func (lc *ListenerHandle) Done() <-chan struct{} {
return lc.ctx.Done()
}
// Err will return the last error encountered
func (lc *ListenerHandle) Err() error {
if lc.r.lastError != nil {
return lc.r.lastError
}
return lc.ctx.Err()
}