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Dependencies: BSP_DISCO_F746NG F746_GUI LCD_DISCO_F746NG SDFileSystem TS_DISCO_F746NG ResistiveTouchController Map CYS8218Controller MedianFilter
main.cpp
- Committer:
- Kerneels Bezuidenhout
- Date:
- 2016-10-03
- Revision:
- 35:6baa558d3b86
- Parent:
- 34:0b308a399f72
- Child:
- 36:9ca4125e526e
File content as of revision 35:6baa558d3b86:
#include "mbed.h"
#include "Screens.hpp"
void GUIThread();
void Init();
void ZeroPlate();
void Manual();
void Automatic();
void Calibrate();
int currentScreen = 0;
int nextScreen = 0;
Thread guiThread;
Screen *activeScreen = NULL;
float zeroAlpha = 0;
float alpha = 0;
float xSP = -20;
float x = 0;
float zeroBeta = 0;
float beta = 0;
float ySP = 50;
float y = 0;
float P = 0;
float I = 0;
float D = 0;
float Ts = 4;
float tCal[3][2];
int calPoint = 0;
bool calStarted = false;
Timer calTimer;
float calHeldTime;
int measuredTs = 0;
bool started = true;
int ballOnPlate = 1;
bool saved = false;
// TODO Delete these variables
float t = 0;
Serial pc(USBTX,USBRX);
DigitalIn test(D3);
int main()
{
Init();
while(1)
{
switch (currentScreen)
{
case Screen::ZERO_PLATE_SCREEN :
ZeroPlate();
break;
case Screen::MANUAL_CONTROL_SCREEN :
Manual();
break;
case Screen::AUTOMATIC_CONTROL_SCREEN :
Automatic();
break;
case Screen::CALIBRATE_SCREEN :
Calibrate();
break;
}
}
}
void GUIThread()
{
while(1)
{
if( nextScreen != currentScreen )
{
if( activeScreen != NULL)
delete activeScreen;
switch (nextScreen)
{
case Screen::MAIN_MENU_SCREEN :
activeScreen = new MainMenuScreen(&nextScreen);
break;
case Screen::MAIN_SETTINGS_SCREEN :
activeScreen = new MainSettingsScreen(&nextScreen);
break;
case Screen::ZERO_PLATE_SCREEN :
activeScreen = new ZeroPlateScreen(&nextScreen, &zeroAlpha, &zeroBeta, &saved);
break;
case Screen::MANUAL_CONTROL_SCREEN :
activeScreen = new ManualControlScreen(&nextScreen, &alpha, &beta);
break;
case Screen::AUTOMATIC_CONTROL_SCREEN :
activeScreen = new AutomaticControlScreen(&nextScreen, &x, &y, &measuredTs, &started, &ballOnPlate, &xSP, &ySP);
break;
case Screen::AUTOMATIC_MORE_SCREEN :
activeScreen = new AutomaticMoreScreen(&nextScreen);
break;
case Screen::MANUAL_SETPOINT_SCREEN :
activeScreen = new ManualSetpointScreen(&nextScreen, &xSP, &ySP, &ballOnPlate, &started);
break;
case Screen::AUTOMATIC_SETTINGS_SCREEN :
activeScreen = new AutomaticSettingsScreen(&nextScreen, &P, &I, &D, &Ts);
break;
case Screen::CHANGE_P_SCREEN :
activeScreen = new ChangeValScreen(&nextScreen, currentScreen, &P, "Change P");
break;
case Screen::CHANGE_I_SCREEN :
activeScreen = new ChangeValScreen(&nextScreen, currentScreen, &I, "Change I");
break;
case Screen::CHANGE_D_SCREEN :
activeScreen = new ChangeValScreen(&nextScreen, currentScreen, &D, "Change D");
break;
case Screen::CHANGE_TS_SCREEN :
activeScreen = new ChangeValWholeScreen(&nextScreen, currentScreen, &Ts, "Change Ts", false, 4);
break;
case Screen::CALIBRATE_SCREEN :
activeScreen = new CalibrateScreen(&nextScreen, &ballOnPlate, &calStarted, &calPoint, &calHeldTime);
break;
}
activeScreen->Draw();
Thread::wait(200);
currentScreen = nextScreen;
}
activeScreen->Process();
Thread::wait(10);
}
}
void Init()
{
pc.baud(57600);
nextScreen = Screen::MAIN_MENU_SCREEN;
guiThread.start(GUIThread);
}
void ZeroPlate()
{
pc.printf("Zero a : %f | Zero b : %f\n\r", zeroAlpha, zeroBeta);
if( saved)
{
// TODO Save zero position on servos
nextScreen = Screen::MAIN_SETTINGS_SCREEN;
saved = false;
}
Thread::wait(20);
}
void Manual()
{
// TODO Add manual control logic
}
void Automatic()
{
//TODO Add automatic control mode logic
ballOnPlate = test.read();
Thread::wait(4);
}
void Calibrate()
{
ballOnPlate = test.read();
while( calStarted )
{
while( calPoint < 3 )
{
//TODO Reaplace test with plate
if( test.read() )
{
calTimer.start();
//TODO measure and save screen values;
while( calTimer.read() < 5 )
{
calHeldTime = calTimer.read();
}
while(test.read());
calPoint++;
calTimer.stop;
calTimer.reset();
}
else
{
calTimer.stop;
calTimer.reset();
}
}
calStarted = false;
calPoint = 0;
}
}