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@ -15,6 +15,7 @@ Factory::Factory() {
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void Factory::initialize() {
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Trace::initialize();
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// TODO: Initialize factory attributes here
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#if defined(TOUCHGFX_ENABLED) && (TOUCHGFX_ENABLED != 0)
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@ -26,21 +27,24 @@ void Factory::initialize() {
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void Factory::build() {
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Trace::out("Factory: Creating app components...");
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// Start SM of ButtonEventLogger & ButtonsController
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// Start state machine(s)
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buttonEventLogger_.startBehavior();
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ButtonsController::getInstance()->startBehavior();
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// Register CallBack of ButtonController with himself for the provider and onButtonChangeState for the CallBack Method
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ButtonsController::getInstance()->registerCallback (
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ButtonEventsHandler::getInstance(),
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(interface::ButtonsControllerCallbackProvider::CallbackMethod) &ButtonEventsHandler::onButtonChangeState
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);
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// Subscribe ButtonEventLogger to ButtonEventsHandler & start SM of ButtonEventsHandler
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buttonEventLogger_.startBehavior();
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ButtonEventsHandler::getInstance()->subscribe(&buttonEventLogger_);
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ButtonEventsHandler::getInstance()->startBehavior();
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// TODO: Start state-machines here
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#if defined(TOUCHGFX_ENABLED) && (TOUCHGFX_ENABLED != 0)
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getTouchGfxTask().start();
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#endif
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@ -11,6 +11,8 @@
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#include "platform/f7-disco-gcc/board/ButtonsController.h"
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#include "mdw/button/ButtonEventsHandler.h"
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// TODO: Add C++ specific includes here
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namespace app {
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/**
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@ -28,6 +30,7 @@ public:
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#endif
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protected:
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// TODO: Add static attributes here
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static ButtonEventsLogger buttonEventLogger_;
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};
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@ -19,8 +19,9 @@ ButtonStateSm::ButtonStateSm()
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stWaitButtonPressed.addTransition(event::evButtonPressed, &stButtonPressed);
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stButtonPressed.setTimeout(1000, &stButtonLongPressed);
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// TODO bug if setTimeout is used before addTransition !!!
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stButtonPressed.addTransition(event::evButtonReleased, &stButtonShortPressed);
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stButtonPressed.setTimeout(1000, &stButtonLongPressed);
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stButtonPressed.registerOnExit((XFState::callback)&ButtonStateSm::genNullTransition);
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stButtonShortPressed.registerOnEntry((XFState::callback)&ButtonStateSm::notifyShortPress);
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@ -25,6 +25,7 @@ protected:
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typedef enum {
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evButtonPressed = 10,
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evButtonReleased,
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evTimeout,
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evReturn
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} event;
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@ -13,95 +13,68 @@
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XFState::XFState(XFBehavior* behavior)
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: pBehavior(behavior) {
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/*
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* Initialise behavior of this state on the constructor.
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* Can't be null !
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*/
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assert(behavior != nullptr);
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cbState_ = nullptr;
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cbEntry_ = nullptr;
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cbExit_ = nullptr;
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cbEvState_ = nullptr;
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cbEvEntry_ = nullptr;
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cbEvExit_ = nullptr;
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}
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void XFState::addTransition(XFEvent::XFEventType type, const int evid, const int time, XFState* state) {
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assert(state != nullptr);
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/*
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* Create a transition with his Type, ID, time if Timeout and the state to be set when this transition happen
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* Push the transition on the list of transition of the event
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* Pointer State can't be null
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*/
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transition t;
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t.evType = type;
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t.evid = evid;
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t.time = time;
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t.evType = type;
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t.nextState = state;
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transitions_.push_back(t);
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}
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XFEventStatus XFState::changeState(XFState* state) {
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// Change current state of the behavior
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pBehavior->currentXFState_ = state;
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// Set state is changed
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pBehavior->changeXFState = true;
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// Return the event status as consumed
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return XFEventStatus::Consumed;
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}
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XFEventStatus XFState::onState(const XFEvent* ev) {
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// Execute onState callBack without parameter if it's defined
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if(cbState_ != nullptr) {
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(pBehavior->*cbState_)();
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}
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// Execute onState callBack with event as parameter if it's defined
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if(cbEvState_ != nullptr) {
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(pBehavior->*cbEvState_)(ev);
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}
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// Test each transition and change state if one is actual transition
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for(transition t : transitions_) {
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switch(ev->getEventType()) {
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if(t.evType == XFEvent::XFEventType::Initial){
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pBehavior->curentXFState_ = t.nextState;
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pBehavior->changeXFState = true;
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return XFEventStatus::Consumed;
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}
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case XFEvent::XFEventType::Initial:
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if(t.evType == XFEvent::XFEventType::Initial) {
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return changeState(t.nextState);
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}
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break;
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case XFEvent::XFEventType::Timeout:
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if(t.evType == XFEvent::XFEventType::Timeout) {
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return changeState(t.nextState);
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}
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break;
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case XFEvent::XFEventType::Event:
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if(t.evid == ev->getId()) {
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return changeState(t.nextState);
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}
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break;
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if(t.evType == XFEvent::XFEventType::Timeout) {
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pBehavior->curentXFState_ = t.nextState;
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pBehavior->changeXFState = true;
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return XFEventStatus::Consumed;
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}
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if(t.evid == ev->getId()) {
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pBehavior->curentXFState_ = t.nextState;
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pBehavior->changeXFState = true;
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return XFEventStatus::Consumed;
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}
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}
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// Return event status as notConsumed if actual event isn't on the list of transitions
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return XFEventStatus::NotConsumed;
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}
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void XFState::onEntry(const XFEvent* ev) {
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// Execute onEntry callBack without parameter if it's defined
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if(cbEntry_ != nullptr) {
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(pBehavior->*cbEntry_)();
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}
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// Execute onExit callBack with event as parameter if it's defined
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if(cbEvEntry_ != nullptr) {
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(pBehavior->*cbEvEntry_)(ev);
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}
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// If a timeout is on the list of transition start it with is own delay
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for(transition t : transitions_) {
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if(t.evType == XFEvent::XFEventType::Timeout) {
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@ -111,18 +84,14 @@ void XFState::onEntry(const XFEvent* ev) {
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}
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}
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void XFState::onExit(const XFEvent* ev) {
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// Execute onExit callBack without parameter if it's defined
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if(cbExit_ != nullptr) {
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(pBehavior->*cbExit_)();
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}
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// Execute onExit callBack with event as parameter if it's defined
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if(cbEvExit_ != nullptr) {
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(pBehavior->*cbEvExit_)(ev);
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}
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// If a timeout is on the list of transition and isn't the actual event, stop it
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for(transition t: transitions_) {
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if(t.evType == XFEvent::XFEventType::Timeout) {
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@ -84,21 +84,16 @@ XFBehavior::TerminateBehavior XFBehavior::process(const XFEvent * pEvent)
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}
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XFEventStatus XFBehavior::processEvent(){
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/*
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* Basic double switch pattern but not switch on an enum but on Object XFState
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*/
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XFEventStatus eventStatus = XFEventStatus::Unknown;
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const XFEvent * ev = getCurrentEvent();
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oldXFState_ = currentXFState_;
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oldXFState_ = curentXFState_;
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eventStatus = currentXFState_->onState(ev);
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eventStatus = curentXFState_->onState(ev);
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if(changeXFState){
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oldXFState_->onExit(ev);
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currentXFState_->onEntry(ev);
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curentXFState_->onEntry(ev);
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}
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return eventStatus;
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@ -21,68 +21,24 @@ class XFBehavior;
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class XFState {
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friend class XFBehavior;
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public:
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/**
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* Create and initialise a State for the behavior.
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* Have to be initialized in the constructor of the behavior.
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* @param behavior Pointer to the behavior class. Use the keyword this
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*/
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XFState(XFBehavior* behavior);
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~XFState() = default;
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/**
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* Set the conditional state of an custom event.
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* @param evid Id of the event for set the next State
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* @param state Pointer to the next state
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*/
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inline void addTransition(const int evid, XFState* state) { addTransition(XFEvent::XFEventType::Event, evid, 0, state); };
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/**
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* Set a new timer with a certain duration on every entry of this state.
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* Set next state after
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* @param time Time duration of the timeout
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* @param nextState Pointer to the next state
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*/
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inline void setTimeout(int time, XFState* nextState) { addTransition(XFEvent::XFEventType::Timeout, XFEvent::Timeout, time, nextState); };
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// Callback typedef for callback without parameter
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typedef void (XFBehavior::*callback)();
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//inline void registerOnState(callback cbState) { cbState_ = cbState; };
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/**
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* Register the method for the entry callback without parameter
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* @param cbEntry Callback automatically called when the state is onEntry
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*/
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inline void registerOnEntry(callback cbEntry) { cbEntry_ = cbEntry; };
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/**
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* Register the method for the exit callback without parameter
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* @param cbExit Callback automatically called when the state is onExit
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*/
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inline void registerOnExit(callback cbExit) { cbExit_ = cbExit; };
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//Callback typedef for callback with event in parameter
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typedef void (XFBehavior::*callbackEv)(const XFEvent* ev);
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//inline void registerOnState(callback cbState) { cbState_ = cbState; };
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inline void registerOnEntry(callback cbEntry) { cbEntry_ = cbEntry; };
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inline void registerOnExit(callback cbExit) { cbExit_ = cbExit; };
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//inline void registerOnState(callbackEv cbState) { cbEvState_ = cbState; };
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/**
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* Register the method for the entry callback with event in parameter.
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* @param cbEntry Callback automatically called when the state is onEntry
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*/
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inline void registerOnEntry(callbackEv cbEntry) { cbEvEntry_ = cbEntry; };
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/**
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* Register the method for the exit callback with event in parameter
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* @param cbExit Callback automatically called when the state is onExit
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*/
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inline void registerOnExit(callbackEv cbExit) { cbEvExit_ = cbExit; };
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protected:
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void addTransition(XFEvent::XFEventType type, const int evid, const int time, XFState* state);
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XFEventStatus changeState(XFState* state);
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XFEventStatus onState(const XFEvent* ev);
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void onEntry(const XFEvent* ev);
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void onExit(const XFEvent* ev);
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@ -97,22 +53,18 @@ protected:
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} transition;
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std::list<transition> transitions_;
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callback cbState_ = nullptr;
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callback cbEntry_ = nullptr;
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callback cbExit_ = nullptr;
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callbackEv cbEvState_ = nullptr;
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callbackEv cbEvEntry_ = nullptr;
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callbackEv cbEvExit_ = nullptr;
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callback cbState_;
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callback cbEntry_;
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callback cbExit_;
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callbackEv cbEvState_;
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callbackEv cbEvEntry_;
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callbackEv cbEvExit_;
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};
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class XFInitialState : public XFState {
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public:
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/**
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* Use for set next state of the Initial State.
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* @param state Pointer to the next state
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*/
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inline XFInitialState(XFBehavior* behavior) : XFState(behavior) {};
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~XFInitialState() = default;
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inline void addInitialTransition(XFState* state) { addTransition(XFEvent::XFEventType::Initial, XFEvent::Initial, 0, state); };
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@ -55,7 +55,7 @@ public:
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protected:
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/**
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* Executes the current event in its implemented behavior.
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* This method can be overridden to implement the
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* This method needs to be overridden to implement the
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* behavior (i.e. state machine) needed.
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*/
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virtual XFEventStatus processEvent();
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@ -100,20 +100,9 @@ protected:
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const XFEvent * pCurrentEvent_; ///< Reference to actually processed event.
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protected:
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/**
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* Behavior have at least an Initial State.
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*/
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XFInitialState stInitial;
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/**
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* Pointer for the curent and old state of this behavior
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*/
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XFState* currentXFState_ = &stInitial;
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XFState* curentXFState_ = &stInitial;
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XFState* oldXFState_ = &stInitial;
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/**
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* Keep in trace when state is changed (have to be set to true in every processEvent
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*/
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bool changeXFState = false;
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};
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