mirror of
https://github.com/hyperion-project/hyperion.ng.git
synced 2023-10-10 13:36:59 +02:00
Added abstract boot sequence to handle events and iteration count.
Implemented KnightRider bootsequence (KittBootSequence).
This commit is contained in:
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35
libsrc/bootsequence/AbstractBootSequence.cpp
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35
libsrc/bootsequence/AbstractBootSequence.cpp
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#include "AbstractBootSequence.h"
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AbstractBootSequence::AbstractBootSequence(Hyperion * hyperion, const int64_t interval, const unsigned iterationCnt) :
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_timer(),
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_hyperion(hyperion),
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_priority(0),
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_iterationCounter(iterationCnt)
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{
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_timer.setInterval(interval);
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_timer.setSingleShot(false);
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QObject::connect(&_timer, SIGNAL(timeout()), this, SLOT(update()));
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}
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void AbstractBootSequence::start()
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{
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_timer.start();
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}
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void AbstractBootSequence::update()
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{
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if (_iterationCounter == 0)
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{
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_timer.stop();
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_hyperion->clear(_priority);
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return;
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}
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// Obtain the next led-colors from the child-class
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const std::vector<RgbColor>& colors = nextColors();
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// Write the colors to hyperion
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_hyperion->setColors(_priority, colors, -1);
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// Decrease the loop count
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--_iterationCounter;
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}
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40
libsrc/bootsequence/AbstractBootSequence.h
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40
libsrc/bootsequence/AbstractBootSequence.h
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#pragma once
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// QT includes
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#include <QTimer>
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// Bootsequence includes
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#include <bootsequence/BootSequence.h>
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// Hyperion includes
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#include <hyperion/Hyperion.h>
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class AbstractBootSequence : public QObject, public BootSequence
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{
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Q_OBJECT
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public:
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AbstractBootSequence(Hyperion * hyperion, const int64_t interval, const unsigned iterationCnt);
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virtual void start();
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protected slots:
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void update();
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protected:
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virtual const std::vector<RgbColor>& nextColors() = 0;
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private:
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/// The timer used to generate an 'update' signal every interval
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QTimer _timer;
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/// The Hyperion instance
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Hyperion * _hyperion;
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/// The priority of the boot sequence
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int _priority;
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/// The counter of the number of iterations left
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int _iterationCounter;
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};
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@ -5,17 +5,21 @@ SET(CURRENT_SOURCE_DIR ${CMAKE_SOURCE_DIR}/libsrc/bootsequence)
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# Group the headers that go through the MOC compiler
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SET(BootsequenceQT_HEADERS
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${CURRENT_SOURCE_DIR}/RainbowBootSequence.h
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${CURRENT_SOURCE_DIR}/AbstractBootSequence.h
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)
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SET(BootsequenceHEADERS
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${CURRENT_HEADER_DIR}/BootSequence.h
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${CURRENT_HEADER_DIR}/BootSequenceFactory.h
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${CURRENT_SOURCE_DIR}/RainbowBootSequence.h
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${CURRENT_SOURCE_DIR}/KittBootSequence.h
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)
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SET(BootsequenceSOURCES
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${CURRENT_SOURCE_DIR}/AbstractBootSequence.cpp
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${CURRENT_SOURCE_DIR}/BootSequenceFactory.cpp
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${CURRENT_SOURCE_DIR}/RainbowBootSequence.cpp
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${CURRENT_SOURCE_DIR}/KittBootSequence.cpp
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)
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QT4_WRAP_CPP(BootsequenceHEADERS_MOC ${BootsequenceQT_HEADERS})
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67
libsrc/bootsequence/KittBootSequence.cpp
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67
libsrc/bootsequence/KittBootSequence.cpp
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// Hyperion includes
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#include <hyperion/ImageProcessorFactory.h>
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// Local-Bootsequence includes
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#include "KittBootSequence.h"
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KittBootSequence::KittBootSequence(Hyperion * hyperion, const unsigned duration_ms) :
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AbstractBootSequence(hyperion, 100, duration_ms/100),
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_processor(ImageProcessorFactory::getInstance().newImageProcessor()),
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_image(9, 1),
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_ledColors(hyperion->getLedCount(), RgbColor::BLACK),
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_forwardMove(false),
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_currentLight(0)
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{
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// empty
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}
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KittBootSequence::~KittBootSequence()
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{
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delete _processor;
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}
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const std::vector<RgbColor>& KittBootSequence::nextColors()
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{
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// Switch the previous light 'off'
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_image(_currentLight, 0) = RgbColor::BLACK;
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// Move the current to the next light
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moveNextLight();
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// Switch the current light 'on'
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_image(_currentLight, 0) = RgbColor::RED;
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// Translate the 'image' to led colors
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_processor->process(_image, _ledColors);
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// Return the colors
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return _ledColors;
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}
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void KittBootSequence::moveNextLight()
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{
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// Increase/Decrease the current light
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if (_forwardMove)
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{
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++_currentLight;
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if (_currentLight == _image.width())
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{
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_forwardMove = false;
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--_currentLight;
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}
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}
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else
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{
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if (_currentLight == 0)
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{
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_forwardMove = true;
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}
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else
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{
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--_currentLight;
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}
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}
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}
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36
libsrc/bootsequence/KittBootSequence.h
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36
libsrc/bootsequence/KittBootSequence.h
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#pragma once
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// Bootsequence includes
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#include "AbstractBootSequence.h"
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// Hyperion includes
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#include <hyperion/Hyperion.h>
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#include <hyperion/ImageProcessor.h>
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class KittBootSequence : public AbstractBootSequence
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{
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public:
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KittBootSequence(Hyperion * hyperion, const unsigned duration_ms);
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virtual ~KittBootSequence();
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virtual const std::vector<RgbColor>& nextColors();
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private:
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/// Image processor to compute led-colors from the image
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ImageProcessor * _processor;
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/// 1D-Image of the KITT-grill contains a single red pixel and the rest black
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RgbImage _image;
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/// The vector with led-colors
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std::vector<RgbColor> _ledColors;
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bool _forwardMove = true;
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unsigned _currentLight = 0;
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void moveNextLight();
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};
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@ -6,49 +6,25 @@
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#include "RainbowBootSequence.h"
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RainbowBootSequence::RainbowBootSequence(Hyperion * hyperion, const unsigned duration_ms) :
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_timer(),
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_hyperion(hyperion),
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_priority(0),
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_ledColors(hyperion->getLedCount()),
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_iterationCounter(hyperion->getLedCount())
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AbstractBootSequence(hyperion, duration_ms/hyperion->getLedCount(), hyperion->getLedCount()),
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_ledColors(hyperion->getLedCount())
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{
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for (unsigned iLed=0; iLed<_hyperion->getLedCount(); ++iLed)
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for (unsigned iLed=0; iLed<hyperion->getLedCount(); ++iLed)
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{
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RgbColor& color = _ledColors[iLed];
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HsvTransform::hsv2rgb(iLed*360/_hyperion->getLedCount(), 255, 255, color.red, color.green, color.blue);
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HsvTransform::hsv2rgb(iLed*360/hyperion->getLedCount(), 255, 255, color.red, color.green, color.blue);
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}
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_timer.setInterval(duration_ms/_hyperion->getLedCount());
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_timer.setSingleShot(false);
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QObject::connect(&_timer, SIGNAL(timeout()), this, SLOT(update()));
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}
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void RainbowBootSequence::start()
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const std::vector<RgbColor>& RainbowBootSequence::nextColors()
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{
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_timer.start();
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}
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void RainbowBootSequence::update()
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{
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if (_iterationCounter == 0)
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// Rotate the colors left
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const RgbColor headColor = _ledColors.front();
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for (unsigned i=1; i<_ledColors.size(); ++i)
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{
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_timer.stop();
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_hyperion->clear(_priority);
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_ledColors[i-1] = _ledColors[i];
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}
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else
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{
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// Rotate the colors left
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const RgbColor headColor = _ledColors.front();
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for (unsigned i=1; i<_ledColors.size(); ++i)
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{
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_ledColors[i-1] = _ledColors[i];
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}
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_ledColors.back() = headColor;
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_ledColors.back() = headColor;
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// Write the colors to hyperion
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_hyperion->setColors(_priority, _ledColors, -1);
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// Decrease the loop count
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--_iterationCounter;
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}
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return _ledColors;
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}
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#include <QTimer>
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// Bootsequence include
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#include <bootsequence/BootSequence.h>
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// Hyperion includes
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#include <hyperion/Hyperion.h>
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#include "AbstractBootSequence.h"
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///
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/// The RainborBootSequence shows a 'rainbow' (all lights have a different color). The rainbow is
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/// rotated over each led during the length of the sequence.
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///
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class RainbowBootSequence : public QObject, public BootSequence
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class RainbowBootSequence : public AbstractBootSequence
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{
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Q_OBJECT
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public:
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///
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/// Constructs the rainbow boot-sequence. Hyperion is used for writing the led colors. The given
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@ -28,27 +23,13 @@ public:
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///
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RainbowBootSequence(Hyperion * hyperion, const unsigned duration_ms);
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///
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/// Starts the boot-sequence
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///
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virtual void start();
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private slots:
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protected:
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///
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/// Moves the rainbow one led further
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///
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void update();
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const std::vector<RgbColor>& nextColors();
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private:
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/// The timer used to generate an 'update' signal every interval
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QTimer _timer;
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/// The Hyperion instance
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Hyperion * _hyperion;
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/// The priority of the boot sequence
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int _priority;
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/// The current color of the boot sequence (the rainbow)
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std::vector<RgbColor> _ledColors;
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/// The counter of the number of iterations left
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