ESP32_ChinaDieselHeater_Con.../Arduino/BTCDieselHeater/ScreenManager.cpp
2018-12-02 05:25:10 +11:00

230 lines
9.8 KiB
C++

#include "ScreenManager.h"
#include <SPI.h>
#include <Wire.h>
#include "128x64OLED.h"
#include "pins.h"
#include "BluetoothAbstract.h"
#include "Screen1.h"
#include "Screen2.h"
#include "Screen3.h"
#include "Screen4.h"
#include "Screen5.h"
//
// **** NOTE: There are two very lame libaries conspiring to make life difficult ****
// A/ The ESP32 SPI.cpp library instatiates an instance of SPI, using the VSPI port (and pins)
// B/ The Adfruit_SH1106 library has hard coded "SPI" as the SPI port instance
//
// As an ESP32 has a pin multiplexer, this is very bad form.
// The design uses the defacto HSPI pins (and port),
// You **MUST comment out the SPIClass SPI(VSPI);** at the end of the ESP32 SPI library
// then we declare "SPI" here, which will use HSPI!!!!
// 128 x 64 OLED support
SPIClass SPI; // default constructor opens HSPI on standard pins : MOSI=13,CLK=14,MISO=12(unused)
////////////////////////////////////////////////////////////////////////////////////////////////
// splash creen created using image2cpp http://javl.github.io/image2cpp/
// Settings:
// Black background
// Invert [X]
// Arduino code, single bitmap
// Identifier: DieselSplash
// Draw Mode: Horizontal
//
const unsigned char DieselSplash [] PROGMEM = {
// 'Splash2, 128x64px
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};
CScreenManager::CScreenManager()
{
_pDisplay = NULL;
_pActiveScreen = NULL;
for(int i = 0; i < _maxScreens; i++)
_pScreen[i] = NULL;
_currentScreen = 1;
_bReqUpdate = false;
}
CScreenManager::~CScreenManager()
{
_pActiveScreen = NULL;
for(int i=0; i<_maxScreens; i++) {
if(_pScreen[i]) {
delete _pScreen[i]; _pScreen[i] = NULL;
}
}
if(_pDisplay) {
delete _pDisplay; _pDisplay = NULL;
}
}
void
CScreenManager::init()
{
// 128 x 64 OLED support (Hardware SPI)
// SH1106_SWITCHCAPVCC = generate display voltage from 3.3V internally
#if OLED_HW_SPI == 1
SPI.setFrequency(8000000);
_pDisplay = new C128x64_OLED(OLED_DC_pin, -1, OLED_CS_pin);
_pDisplay->begin(SH1106_SWITCHCAPVCC, 0, false);
#else
_pDisplay = new C128x64_OLED(OLED_SDA_pin, OLED_SCL_pin);
_pDisplay->begin(SH1106_SWITCHCAPVCC);
Wire.begin(OLED_SDA_pin, OLED_SCL_pin, 800000); // speed up I2C from the default crappy 100kHz set via the adafruit begin!
#endif
// replace adafruit splash screen
_pDisplay->clearDisplay();
_pDisplay->drawBitmap(0, 0, DieselSplash, 128, 64, WHITE);
// Show initial display buffer contents on the screen --
_pDisplay->display();
_pScreen[0] = new CScreen1(*_pDisplay, *this);
_pScreen[1] = new CScreen2(*_pDisplay, *this);
_pScreen[2] = new CScreen3(*_pDisplay, *this);
_pScreen[3] = new CScreen4(*_pDisplay, *this);
_pScreen[4] = new CScreen5(*_pDisplay, *this);
_switchScreen();
}
bool
CScreenManager::checkUpdate()
{
if(_bReqUpdate) {
if(_pActiveScreen) {
_pActiveScreen->show();
_bReqUpdate = false;
return true;
}
}
return false;
}
void
CScreenManager::reqUpdate()
{
_bReqUpdate = true;
}
bool
CScreenManager::animate()
{
if(_pActiveScreen)
return _pActiveScreen->animate();
return false;
}
void
CScreenManager::refresh()
{
if(_pDisplay)
_pDisplay->display();
}
void
CScreenManager::_switchScreen()
{
if(_currentScreen < _maxScreens)
_pActiveScreen = _pScreen[_currentScreen];
// reqDisplayUpdate();
reqUpdate();
}
void
CScreenManager::nextScreen()
{
_currentScreen++;
if(_currentScreen >= _maxScreens) {
_currentScreen = 0;
}
_switchScreen();
}
void
CScreenManager::prevScreen()
{
_currentScreen--;
if(_currentScreen < 0) {
_currentScreen = _maxScreens-1;
}
_switchScreen();
}
void
CScreenManager::keyHandler(uint8_t event)
{
if(_pActiveScreen) _pActiveScreen->keyHandler(event);
}