ESP32_ChinaDieselHeater_Con.../src/Afterburner/src/OLED/ClockScreen.cpp

139 lines
3.9 KiB
C++

/*
* This file is part of the "bluetoothheater" distribution
* (https://gitlab.com/mrjones.id.au/bluetoothheater)
*
* Copyright (C) 2018 Ray Jones <ray@mrjones.id.au>
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <https://www.gnu.org/licenses/>.
*
*/
#include "ClockScreen.h"
#include "KeyPad.h"
#include "../Utility/helpers.h"
#include "fonts/Tahoma16.h"
#include "fonts/Tahoma24.h"
#include "../RTC/Clock.h"
#include "../Protocol/Protocol.h"
///////////////////////////////////////////////////////////////////////////
//
// CClockScreen
//
// This screen presents a large format clock
//
///////////////////////////////////////////////////////////////////////////
CClockScreen::CClockScreen(C128x64_OLED& display, CScreenManager& mgr) : CScreenHeader(display, mgr)
{
_colon = false;
_keyRepeatCount = -1;
}
bool
CClockScreen::show()
{
CScreenHeader::show();
const BTCDateTime& now = Clock.get();
char str[32];
// if(now.second() & 0x01)
if(_colon)
sprintf(str, "%d:%02d", now.hour(), now.minute());
else
sprintf(str, "%d %02d", now.hour(), now.minute());
_colon = !_colon;
int yPos = 25;
{
// CTransientFont AF(_display, &tahoma_16ptFontInfo); // temporarily use a large font
CTransientFont AF(_display, &tahoma_24ptFontInfo); // temporarily use a large font
_printMenuText(_display.xCentre(), yPos, str, false, eCentreJustify);
}
sprintf(str, "%s %d %s %d", now.dowStr(), now.day(), now.monthStr(), now.year());
_printMenuText(_display.xCentre(), 56, str, false, eCentreJustify);
return true;
}
bool
CClockScreen::keyHandler(uint8_t event)
{
if(event & keyPressed) {
_keyRepeatCount = 0; // unlock tracking of repeat events
// press UP
if(event & key_Up) {
_ScreenManager.selectMenu(CScreenManager::BranchMenu, CScreenManager::SetClockUI); // switch to clock set screen
}
// press DOWN
if(event & key_Down) {
_ScreenManager.selectMenu(CScreenManager::TimerMenuLoop); // switch to timer set screen loop
}
}
if(event & keyRepeat) {
if(_keyRepeatCount >= 0) {
_keyRepeatCount++;
// hold LEFT to toggle GPIO output #1
if(event & key_Left) {
if(_keyRepeatCount > 2) {
_keyRepeatCount = -1; // prevent double handling
toggleGPIOout(0); // toggle GPIO output #1
}
}
// hold RIGHT to toggle GPIO output #2
if(event & key_Right) {
if(_keyRepeatCount > 2) {
_keyRepeatCount = -1; // prevent double handling
toggleGPIOout(1); // toggle GPIO output #2
}
}
// hold CENTRE to toggle On/Off state
if(event & key_Centre) {
int runstate = getHeaterInfo().getRunStateEx();
if(runstate) { // running, including cyclic mode idle
if(_keyRepeatCount > 5) {
_keyRepeatCount = -1;
requestOff();
}
}
else { // standard idle state
// standby, request ON
if(_keyRepeatCount > 3) {
_keyRepeatCount = -1;
requestOn();
}
}
}
}
}
// release event
if(event & keyReleased) {
if(_keyRepeatCount == 0) { // short Up press - lower target
if(event & key_Left) {
_ScreenManager.prevMenu();
}
if(event & key_Right) {
_ScreenManager.nextMenu();
}
}
_keyRepeatCount = -1;
}
return true;
}