230 lines
6.4 KiB
Go
230 lines
6.4 KiB
Go
package throttle
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import (
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"github.com/cyrilix/robocar-base/service"
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"github.com/cyrilix/robocar-protobuf/go/events"
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"github.com/cyrilix/robocar-throttle/pkg/brake"
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"github.com/cyrilix/robocar-throttle/pkg/types"
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mqtt "github.com/eclipse/paho.mqtt.golang"
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"go.uber.org/zap"
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"google.golang.org/protobuf/proto"
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"sync"
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"time"
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)
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func New(client mqtt.Client, throttleTopic, driveModeTopic, rcThrottleTopic, steeringTopic, throttleFeedbackTopic,
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speedZoneTopic string,
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maxValue types.Throttle, publishPilotFrequency int, opts ...Option) *Controller {
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c := &Controller{
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client: client,
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throttleTopic: throttleTopic,
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driveModeTopic: driveModeTopic,
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rcThrottleTopic: rcThrottleTopic,
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steeringTopic: steeringTopic,
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throttleFeedbackTopic: throttleFeedbackTopic,
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speedZoneTopic: speedZoneTopic,
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maxThrottle: maxValue,
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driveMode: events.DriveMode_USER,
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publishPilotFrequency: publishPilotFrequency,
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processor: &SteeringProcessor{minThrottle: 0.1, maxThrottle: maxValue},
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brakeCtrl: &brake.DisabledController{},
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}
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for _, o := range opts {
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o(c)
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}
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return c
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}
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type Option func(c *Controller)
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func WithBrakeController(bc brake.Controller) Option {
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return func(c *Controller) {
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c.brakeCtrl = bc
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}
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}
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func WithThrottleProcessor(p Processor) Option {
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return func(c *Controller) {
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c.processor = p
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}
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}
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type Controller struct {
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client mqtt.Client
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throttleTopic string
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maxThrottle types.Throttle
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processor Processor
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muDriveMode sync.RWMutex
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driveMode events.DriveMode
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muSteering sync.RWMutex
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steering types.Steering
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brakeCtrl brake.Controller
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cancel chan interface{}
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publishPilotFrequency int
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driveModeTopic, rcThrottleTopic, steeringTopic, throttleFeedbackTopic string
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speedZoneTopic string
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}
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func (c *Controller) Start() error {
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if err := registerCallbacks(c); err != nil {
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zap.S().Errorf("unable to register callbacks: %v", err)
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return err
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}
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c.cancel = make(chan interface{})
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ticker := time.NewTicker(1 * time.Second / time.Duration(c.publishPilotFrequency))
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for {
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select {
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case <-ticker.C:
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c.onPublishPilotValue()
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case <-c.cancel:
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return nil
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}
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}
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}
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func (c *Controller) onPublishPilotValue() {
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c.muDriveMode.RLock()
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defer c.muDriveMode.RUnlock()
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if c.driveMode != events.DriveMode_PILOT {
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return
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}
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throttleFromSteering := c.processor.Process(c.readSteering())
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throttleMsg := events.ThrottleMessage{
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Throttle: float32(c.brakeCtrl.AdjustThrottle(throttleFromSteering)),
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Confidence: 1.0,
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}
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payload, err := proto.Marshal(&throttleMsg)
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if err != nil {
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zap.S().Errorf("unable to marshal %v protobuf content: %v", throttleMsg.String(), err)
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return
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}
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publish(c.client, c.throttleTopic, payload)
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}
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func (c *Controller) readSteering() types.Steering {
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c.muSteering.RLock()
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defer c.muSteering.RUnlock()
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return c.steering
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}
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func (c *Controller) Stop() {
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close(c.cancel)
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service.StopService("throttle", c.client, c.driveModeTopic, c.rcThrottleTopic, c.steeringTopic,
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c.throttleFeedbackTopic, c.speedZoneTopic)
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}
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func (c *Controller) onThrottleFeedback(_ mqtt.Client, message mqtt.Message) {
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var msg events.ThrottleMessage
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err := proto.Unmarshal(message.Payload(), &msg)
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if err != nil {
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zap.S().Errorf("unable to unmarshal protobuf %T message: %v", &msg, err)
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return
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}
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c.brakeCtrl.SetRealThrottle(types.Throttle(msg.GetThrottle()))
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}
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func (c *Controller) onDriveMode(_ mqtt.Client, message mqtt.Message) {
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var msg events.DriveModeMessage
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err := proto.Unmarshal(message.Payload(), &msg)
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if err != nil {
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zap.S().Errorf("unable to unmarshal protobuf %T message: %v", &msg, err)
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return
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}
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c.muDriveMode.Lock()
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defer c.muDriveMode.Unlock()
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c.driveMode = msg.GetDriveMode()
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}
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func (c *Controller) onRCThrottle(_ mqtt.Client, message mqtt.Message) {
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c.muDriveMode.RLock()
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defer c.muDriveMode.RUnlock()
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if c.driveMode == events.DriveMode_USER || c.driveMode == events.DriveMode_COPILOT {
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// Republish same content
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payload := message.Payload()
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var throttleMsg events.ThrottleMessage
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err := proto.Unmarshal(payload, &throttleMsg)
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if err != nil {
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zap.S().Errorf("unable to unmarshall throttle msg to check throttle value: %v", err)
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return
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}
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zap.S().Debugf("publish new throttle value from rc: %v", throttleMsg.GetThrottle())
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if types.Throttle(throttleMsg.GetThrottle()) > c.maxThrottle {
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zap.S().Debugf("throttle upper that max value allowed, patch value from %v to %v", throttleMsg.GetThrottle(), c.maxThrottle)
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throttleMsg.Throttle = float32(c.maxThrottle)
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payloadPatched, err := proto.Marshal(&throttleMsg)
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if err != nil {
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zap.S().Errorf("unable to marshall throttle msg: %v", err)
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return
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}
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publish(c.client, c.throttleTopic, payloadPatched)
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return
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}
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publish(c.client, c.throttleTopic, payload)
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}
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}
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func (c *Controller) onSteering(_ mqtt.Client, message mqtt.Message) {
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var steeringMsg events.SteeringMessage
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payload := message.Payload()
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err := proto.Unmarshal(payload, &steeringMsg)
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if err != nil {
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zap.S().Errorf("unable to unmarshal steering message, skip value: %v", err)
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return
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}
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c.muSteering.Lock()
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defer c.muSteering.Unlock()
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c.steering = types.Steering(steeringMsg.GetSteering())
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}
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func (c *Controller) onSpeedZone(_ mqtt.Client, message mqtt.Message) {
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var szMsg events.SpeedZoneMessage
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payload := message.Payload()
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err := proto.Unmarshal(payload, &szMsg)
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if err != nil {
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zap.S().Errorf("unable to unmarshal speedZone message, skip value: %v", err)
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return
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}
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c.processor.SetSpeedZone(szMsg.GetSpeedZone())
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}
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var registerCallbacks = func(p *Controller) error {
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err := service.RegisterCallback(p.client, p.driveModeTopic, p.onDriveMode)
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if err != nil {
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return err
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}
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err = service.RegisterCallback(p.client, p.rcThrottleTopic, p.onRCThrottle)
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if err != nil {
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return err
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}
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err = service.RegisterCallback(p.client, p.steeringTopic, p.onSteering)
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if err != nil {
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return err
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}
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err = service.RegisterCallback(p.client, p.throttleFeedbackTopic, p.onThrottleFeedback)
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if err != nil {
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return err
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}
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err = service.RegisterCallback(p.client, p.speedZoneTopic, p.onSpeedZone)
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if err != nil {
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return err
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}
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return nil
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}
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var publish = func(client mqtt.Client, topic string, payload []byte) {
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client.Publish(topic, 0, false, payload)
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}
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