mirror of
https://github.com/cgrates/cgrates.git
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Make use of the previously added ees_success_ids and ees_failed_ids configuration fields. Remove Processed opts and everything related to them since they should not be used anymore. Fixed test compilation errors caused by the change.
261 lines
7.2 KiB
Go
261 lines
7.2 KiB
Go
/*
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Real-time Online/Offline Charging System (OCS) for Telecom & ISP environments
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Copyright (C) ITsysCOM GmbH
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>
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*/
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package ers
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import (
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"encoding/json"
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"fmt"
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"time"
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"github.com/aws/aws-sdk-go/aws"
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"github.com/aws/aws-sdk-go/aws/awserr"
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"github.com/aws/aws-sdk-go/aws/credentials"
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"github.com/aws/aws-sdk-go/aws/session"
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"github.com/aws/aws-sdk-go/service/sqs"
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"github.com/cgrates/birpc/context"
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"github.com/cgrates/cgrates/agents"
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"github.com/cgrates/cgrates/config"
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"github.com/cgrates/cgrates/engine"
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"github.com/cgrates/cgrates/utils"
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)
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// NewSQSER return a new sqs event reader
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func NewSQSER(cfg *config.CGRConfig, cfgIdx int, rdrEvents, partialEvents chan *erEvent, rdrErr chan error,
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fltrS *engine.FilterS, rdrExit chan struct{}) (EventReader, error) {
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rdr := &SQSER{
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cgrCfg: cfg,
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cfgIdx: cfgIdx,
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fltrS: fltrS,
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rdrEvents: rdrEvents,
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partialEvents: partialEvents,
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rdrExit: rdrExit,
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rdrErr: rdrErr,
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}
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if concReq := rdr.Config().ConcurrentReqs; concReq != -1 {
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rdr.cap = make(chan struct{}, concReq)
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for i := 0; i < concReq; i++ {
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rdr.cap <- struct{}{}
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}
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}
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rdr.parseOpts(rdr.Config().Opts)
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return rdr, nil
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}
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// SQSER implements EventReader interface for sqs message
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type SQSER struct {
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// sync.RWMutex
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cgrCfg *config.CGRConfig
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cfgIdx int // index of config instance within ERsCfg.Readers
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fltrS *engine.FilterS
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rdrEvents chan *erEvent // channel to dispatch the events created to
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partialEvents chan *erEvent // channel to dispatch the partial events created to
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rdrExit chan struct{}
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rdrErr chan error
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cap chan struct{}
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queueURL *string
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awsRegion string
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awsID string
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awsKey string
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awsToken string
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queueID string
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session *session.Session
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}
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type sqsClient interface {
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ReceiveMessage(input *sqs.ReceiveMessageInput) (*sqs.ReceiveMessageOutput, error)
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DeleteMessage(input *sqs.DeleteMessageInput) (*sqs.DeleteMessageOutput, error)
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GetQueueUrl(input *sqs.GetQueueUrlInput) (*sqs.GetQueueUrlOutput, error)
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CreateQueue(input *sqs.CreateQueueInput) (*sqs.CreateQueueOutput, error)
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}
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// Config returns the curent configuration
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func (rdr *SQSER) Config() *config.EventReaderCfg {
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return rdr.cgrCfg.ERsCfg().Readers[rdr.cfgIdx]
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}
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// Serve will start the gorutines needed to watch the sqs topic
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func (rdr *SQSER) Serve() (err error) {
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if rdr.Config().RunDelay == time.Duration(0) { // 0 disables the automatic read, maybe done per API
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return
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}
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go rdr.readLoop(sqs.New(rdr.session)) // read until the connection is closed
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return
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}
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func (rdr *SQSER) processMessage(body []byte) (err error) {
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var decodedMessage map[string]any
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if err = json.Unmarshal(body, &decodedMessage); err != nil {
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return
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}
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reqVars := &utils.DataNode{Type: utils.NMMapType, Map: map[string]*utils.DataNode{utils.MetaReaderID: utils.NewLeafNode(rdr.cgrCfg.ERsCfg().Readers[rdr.cfgIdx].ID)}}
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agReq := agents.NewAgentRequest(
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utils.MapStorage(decodedMessage), reqVars,
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nil, nil, nil, rdr.Config().Tenant,
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rdr.cgrCfg.GeneralCfg().DefaultTenant,
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utils.FirstNonEmpty(rdr.Config().Timezone,
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rdr.cgrCfg.GeneralCfg().DefaultTimezone),
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rdr.fltrS, nil) // create an AgentRequest
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var pass bool
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if pass, err = rdr.fltrS.Pass(context.TODO(), agReq.Tenant, rdr.Config().Filters,
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agReq); err != nil || !pass {
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return
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}
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if err = agReq.SetFields(rdr.Config().Fields); err != nil {
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return
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}
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cgrEv := utils.NMAsCGREvent(agReq.CGRRequest, agReq.Tenant, utils.NestingSep, agReq.Opts)
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rdrEv := rdr.rdrEvents
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cgrEv.APIOpts = make(map[string]any)
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if _, isPartial := cgrEv.APIOpts[utils.PartialOpt]; isPartial {
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rdrEv = rdr.partialEvents
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}
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rdrEv <- &erEvent{
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cgrEvent: cgrEv,
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rdrCfg: rdr.Config(),
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}
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return
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}
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func (rdr *SQSER) parseOpts(opts *config.EventReaderOpts) {
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rdr.queueID = utils.DefaultQueueID
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if opts.SQSQueueID != nil {
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rdr.queueID = *opts.SQSQueueID
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}
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if opts.AWSRegion != nil {
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rdr.awsRegion = *opts.AWSRegion
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}
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if opts.AWSKey != nil {
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rdr.awsID = *opts.AWSKey
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}
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if opts.AWSSecret != nil {
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rdr.awsKey = *opts.AWSSecret
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}
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if opts.AWSToken != nil {
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rdr.awsToken = *opts.AWSToken
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}
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rdr.getQueueURL()
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}
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func (rdr *SQSER) getQueueURL() (err error) {
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if rdr.queueURL != nil {
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return nil
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}
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if err = rdr.newSession(); err != nil {
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return
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}
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return rdr.getQueueURLWithClient(sqs.New(rdr.session))
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}
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func (rdr *SQSER) getQueueURLWithClient(svc sqsClient) (err error) {
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var result *sqs.GetQueueUrlOutput
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if result, err = svc.GetQueueUrl(&sqs.GetQueueUrlInput{
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QueueName: aws.String(rdr.queueID),
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}); err == nil {
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rdr.queueURL = new(string)
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*rdr.queueURL = *result.QueueUrl
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return
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}
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if aerr, ok := err.(awserr.Error); ok && aerr.Code() == sqs.ErrCodeQueueDoesNotExist {
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// For CreateQueue
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var createResult *sqs.CreateQueueOutput
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if createResult, err = svc.CreateQueue(&sqs.CreateQueueInput{
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QueueName: aws.String(rdr.queueID),
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}); err == nil {
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rdr.queueURL = utils.StringPointer(*createResult.QueueUrl)
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return
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}
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}
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return
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}
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func (rdr *SQSER) readLoop(scv sqsClient) (err error) {
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// scv := sqs.New(rdr.session)
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for !rdr.isClosed() {
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if rdr.Config().ConcurrentReqs != -1 {
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<-rdr.cap // do not try to read if the limit is reached
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}
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var msgs *sqs.ReceiveMessageOutput
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if msgs, err = scv.ReceiveMessage(&sqs.ReceiveMessageInput{
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QueueUrl: rdr.queueURL,
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MaxNumberOfMessages: aws.Int64(1),
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WaitTimeSeconds: aws.Int64(1),
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}); err != nil {
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return
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}
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if len(msgs.Messages) != 0 {
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go rdr.readMsg(scv, msgs.Messages[0])
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} else if rdr.Config().ConcurrentReqs != -1 {
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rdr.cap <- struct{}{}
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}
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}
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return
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}
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func (rdr *SQSER) isClosed() bool {
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select {
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case <-rdr.rdrExit:
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return true
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default:
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return false
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}
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}
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func (rdr *SQSER) readMsg(scv sqsClient, msg *sqs.Message) (err error) {
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if rdr.Config().ConcurrentReqs != -1 {
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defer func() { rdr.cap <- struct{}{} }()
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}
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body := []byte(*msg.Body)
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key := *msg.MessageId
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if err = rdr.processMessage(body); err != nil {
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utils.Logger.Warning(
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fmt.Sprintf("<%s> processing message %s error: %s",
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utils.ERs, key, err.Error()))
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return
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}
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if _, err = scv.DeleteMessage(&sqs.DeleteMessageInput{
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QueueUrl: rdr.queueURL,
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ReceiptHandle: msg.ReceiptHandle,
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}); err != nil {
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rdr.rdrErr <- err
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return
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}
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return
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}
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func (rdr *SQSER) newSession() (err error) {
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cfg := aws.Config{Endpoint: aws.String(rdr.Config().SourcePath)}
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if len(rdr.awsRegion) != 0 {
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cfg.Region = aws.String(rdr.awsRegion)
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}
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if len(rdr.awsID) != 0 &&
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len(rdr.awsKey) != 0 {
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cfg.Credentials = credentials.NewStaticCredentials(rdr.awsID, rdr.awsKey, rdr.awsToken)
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}
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rdr.session, err = session.NewSessionWithOptions(
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session.Options{
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Config: cfg,
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},
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)
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return
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}
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