6fb7b9d608
Bug fix in body temperature sensor < 0
530 lines
18 KiB
C++
530 lines
18 KiB
C++
/*
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* This file is part of the "bluetoothheater" distribution
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* (https://gitlab.com/mrjones.id.au/bluetoothheater)
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*
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* Copyright (C) 2018 Ray Jones <ray@mrjones.id.au>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*
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*/
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#include "128x64OLED.h"
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#include "GPIOSetupScreen.h"
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#include "KeyPad.h"
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#include "../Utility/NVStorage.h"
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#include "../Utility/BTC_GPIO.h"
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#include "fonts/Icons.h"
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#include "../Utility/BoardDetect.h"
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extern CGPIOout GPIOout;
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extern CGPIOin GPIOin;
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extern CGPIOalg GPIOalg;
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int8_t s8abs(int8_t val)
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{
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if(val >= 0)
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return val;
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else
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return -val;
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}
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///////////////////////////////////////////////////////////////////////////
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//
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// CGPIOSetupScreen
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//
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// This screen provides control over GPIO features
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//
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///////////////////////////////////////////////////////////////////////////
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static const int Line3 = 14;
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static const int Line2 = 27;
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static const int Line1 = 40;
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static const int Column1 = 19;
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static const int Column2 = 88;
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CGPIOSetupScreen::CGPIOSetupScreen(C128x64_OLED& display, CScreenManager& mgr) : CUIEditScreen(display, mgr)
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{
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_initUI();
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_GPIOparams.in1Mode = CGPIOin1::Disabled;
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_GPIOparams.in2Mode = CGPIOin2::Disabled;
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_GPIOparams.out1Mode = CGPIOout1::Disabled;
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_GPIOparams.out2Mode = CGPIOout2::Disabled;
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_GPIOparams.algMode = CGPIOalg::Disabled;
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_GPIOparams.thresh[0] = 0;
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_GPIOparams.thresh[1] = 0;
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_ExtHold = 0;
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}
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void
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CGPIOSetupScreen::onSelect()
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{
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CUIEditScreen::onSelect();
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_GPIOparams = NVstore.getUserSettings().GPIO;
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_ExtHold = NVstore.getUserSettings().ExtThermoTimeout;
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_repeatCount = -1;
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}
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bool
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CGPIOSetupScreen::show()
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{
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char msg[16];
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_display.clearDisplay();
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static bool animated = false;
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animated = !animated;
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if(!CUIEditScreen::show()) { // for showing "saving settings"
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_showTitle("GPIO Configuration");
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_drawBitmap(0, Line3, InputIconInfo);
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_drawBitmap(11, Line3, _1IconInfo);
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{
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const char* msgText = NULL;
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switch(_GPIOparams.in1Mode) {
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case CGPIOin1::Disabled: msgText = " --- "; break;
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case CGPIOin1::Start: msgText = "Start"; break;
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case CGPIOin1::Run: msgText = "Run "; break;
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case CGPIOin1::StartStop: msgText = animated ? "Start" : "Stop "; break;
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case CGPIOin1::Stop: msgText = "Stop "; break;
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}
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if(msgText)
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_printMenuText(Column1, Line3, msgText, _rowSel == 4);
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}
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_drawBitmap(0, Line2, InputIconInfo);
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_drawBitmap(11, Line2, _2IconInfo);
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{
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const char* msgText = NULL;
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switch(_GPIOparams.in2Mode) {
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case CGPIOin2::Disabled: msgText = " --- "; break;
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case CGPIOin2::Stop: msgText = "Stop "; break;
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case CGPIOin2::Thermostat: msgText = "\352T"; break;
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}
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if(msgText)
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_printMenuText(Column1, Line2, msgText, _rowSel == 2);
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if(_GPIOparams.in2Mode == CGPIOin2::Thermostat) {
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_drawBitmap(Column1 + 13, Line2-2, TimerIconInfo);
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const char* modeStr = "No";
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switch(_ExtHold) {
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case 60000: modeStr = "1m"; break;
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case 120000: modeStr = "2m"; break;
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case 300000: modeStr = "5m"; break;
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case 600000: modeStr = "10m"; break;
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case 900000: modeStr = "15m"; break;
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case 1200000: modeStr = "20m"; break;
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case 1800000: modeStr = "30m"; break;
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case 3600000: modeStr = "1hr"; break;
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}
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_printMenuText(Column1 + 29, Line2, modeStr, _rowSel == 3);
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}
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}
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_drawBitmap(70, Line3, OutputIconInfo);
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_drawBitmap(80, Line3, _1IconInfo);
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{
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const char* msgText = NULL;
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switch(_GPIOparams.out1Mode) {
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case CGPIOout1::Disabled: msgText = "---"; break;
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case CGPIOout1::Status: msgText = "Status"; break;
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case CGPIOout1::User: msgText = "User"; break;
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case CGPIOout1::Thresh:
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if(_rowSel == 6) {
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sprintf(msg, " %d`C", s8abs(_GPIOparams.thresh[0]));
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_printMenuText(Column2, Line3, msg, false);
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_printMenuText(Column2, Line3, _GPIOparams.thresh[0] >= 0 ? ">" : "<", true);
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}
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else {
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sprintf(msg, "%s %d`C", _GPIOparams.thresh[0] >= 0 ? ">" : "<", s8abs(_GPIOparams.thresh[0]));
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_printMenuText(Column2, Line3, msg, _rowSel == 8);
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}
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break;
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}
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if(msgText)
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_printMenuText(Column2, Line3, msgText, _rowSel == 6);
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}
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_drawBitmap(70, Line2, OutputIconInfo);
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_drawBitmap(80, Line2, _2IconInfo);
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{
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const char* msgText = NULL;
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switch(_GPIOparams.out2Mode) {
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case CGPIOout2::Disabled: msgText = "---"; break;
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case CGPIOout2::User: msgText = "User"; break;
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case CGPIOout2::Thresh:
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if(_rowSel == 5) {
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sprintf(msg, " %d`C", s8abs(_GPIOparams.thresh[1]));
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_printMenuText(Column2, Line2, msg, false);
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_printMenuText(Column2, Line2, _GPIOparams.thresh[1] >= 0 ? ">" : "<", true);
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}
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else {
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sprintf(msg, "%s %d`C", _GPIOparams.thresh[1] >= 0 ? ">" : "<", s8abs(_GPIOparams.thresh[1]));
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_printMenuText(Column2, Line2, msg, _rowSel == 7);
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}
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break;
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}
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if(msgText)
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_printMenuText(Column2, Line2, msgText, _rowSel == 5);
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}
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if(getBoardRevision() == BRD_V2_FULLGPIO || getBoardRevision() == BRD_V1_FULLGPIO) {
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_drawBitmap(0, Line1-1, algIconInfo);
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const char* msgText = NULL;
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switch(_GPIOparams.algMode) {
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case CGPIOalg::Disabled: msgText = "Disabled"; break;
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case CGPIOalg::HeatDemand: msgText = "Enabled"; break;
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}
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if(msgText)
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_printMenuText(23, Line1, msgText, _rowSel == 1);
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}
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}
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return true;
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}
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bool
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CGPIOSetupScreen::animate()
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{
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if(_saveBusy()) {
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return false;
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}
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int yPos = 53;
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int xPos = _display.xCentre();
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const char* pMsg = NULL;
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switch(_rowSel) {
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case 0:
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_printMenuText(xPos, yPos, " \021 \030Edit Exit \020 ", true, eCentreJustify);
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break;
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case 1:
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_display.drawFastHLine(0, 52, 128, WHITE);
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switch(_GPIOparams.algMode) {
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case CGPIOalg::Disabled: pMsg = " Analogue input is ignored. "; break;
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case CGPIOalg::HeatDemand: pMsg = " Input 1 enables reading of analogue input to set temperature. "; break;
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}
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if(pMsg)
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 2:
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_display.drawFastHLine(0, 52, 128, WHITE);
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switch(_GPIOparams.in2Mode) {
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case CGPIOin2::Disabled: pMsg = " Input 2: DISABLED. "; break;
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case CGPIOin2::Stop: pMsg = " Input 2: Stops heater upon closure. "; break;
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case CGPIOin2::Thermostat: pMsg = " Input 2: External thermostat. Max fuel when closed, min fuel when open. "; break;
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}
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if(pMsg)
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 3:
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_display.drawFastHLine(0, 52, 128, WHITE);
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pMsg = " Input 2: External thermostat heater control. Start heater upon closure, stop after open for specified period. ";
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 4:
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_display.drawFastHLine(0, 52, 128, WHITE);
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switch(_GPIOparams.in1Mode) {
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case CGPIOin1::Disabled: pMsg = " Input 1: DISABLED. "; break;
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case CGPIOin1::Start: pMsg = " Input 1: Starts heater upon closure. "; break;
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case CGPIOin1::Run: pMsg = " Input 1: Starts heater when held closed, stops when opened. "; break;
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case CGPIOin1::StartStop: pMsg = " Input 1: Starts or Stops heater upon closure. "; break;
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case CGPIOin1::Stop: pMsg = " Input 1: Stops heater upon closure. "; break;
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}
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if(pMsg)
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 5:
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_display.drawFastHLine(0, 52, 128, WHITE);
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switch(_GPIOparams.out2Mode) {
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case CGPIOout2::Disabled: pMsg = " Output 2: DISABLED. "; break;
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case CGPIOout2::User: pMsg = " Output 2: User controlled. "; break;
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case CGPIOout2::Thresh:
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if(_GPIOparams.thresh[1] >= 0)
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pMsg = " Output 2: Active if over temperature. Hold LEFT to set under. Hold RIGHT to set over. ";
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else
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pMsg = " Output 2: Active if under temperature. Hold LEFT to set under. Hold RIGHT to set over. ";
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break;
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}
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if(pMsg)
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 6:
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_display.drawFastHLine(0, 52, 128, WHITE);
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switch(_GPIOparams.out1Mode) {
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case CGPIOout1::Disabled: pMsg = " Output 1: DISABLED. "; break;
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case CGPIOout1::Status: pMsg = " Output 1: LED status indicator. "; break;
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case CGPIOout1::User: pMsg = " Output 1: User controlled. "; break;
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case CGPIOout1::Thresh:
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if(_GPIOparams.thresh[0] >= 0)
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pMsg = " Output 1: Active if over temperature. Hold LEFT to set under. Hold RIGHT to set over. ";
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else
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pMsg = " Output 1: Active if under temperature. Hold LEFT to set under. Hold RIGHT to set over. ";
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break;
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}
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if(pMsg)
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 7:
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_display.drawFastHLine(0, 52, 128, WHITE);
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if(_GPIOparams.thresh[1] >= 0)
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pMsg = " Output 2: Active if over temperature. CENTRE to accept. Hold LEFT to set under. ";
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else
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pMsg = " Output 2: Active if under temperature. CENTRE to accept. Hold RIGHT to set over. ";
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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case 8:
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_display.drawFastHLine(0, 52, 128, WHITE);
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if(_GPIOparams.thresh[0] >= 0)
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pMsg = " Output 1: Active if over temperature. Centre to accept. Hold LEFT to set under. ";
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else
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pMsg = " Output 1: Active if under temperature. Centre to accept. Hold RIGHT to set over. ";
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_scrollMessage(56, pMsg, _scrollChar);
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break;
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}
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return true;
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}
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bool
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CGPIOSetupScreen::keyHandler(uint8_t event)
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{
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if(CUIEditScreen::keyHandler(event)) { // handle confirm save
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return true;
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}
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if(event & keyPressed) {
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_repeatCount = 0;
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}
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if(event & keyRepeat) {
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if(_repeatCount >= 0) {
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_repeatCount++;
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// hold LEFT to toggle GPIO output #1
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if(event & key_Left) {
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if(_repeatCount > 1) {
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_repeatCount = -1; // prevent double handling
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if((_rowSel == 6 || _rowSel == 8) && _GPIOparams.out1Mode == CGPIOout1::Thresh) {
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_GPIOparams.thresh[0] = -s8abs(_GPIOparams.thresh[0]);
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BOUNDSLIMIT(_GPIOparams.thresh[0], -50, -1);
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_rowSel = 8;
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}
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if((_rowSel == 5 || _rowSel == 7) && _GPIOparams.out2Mode == CGPIOout2::Thresh) {
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_GPIOparams.thresh[1] = -s8abs(_GPIOparams.thresh[1]);
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BOUNDSLIMIT(_GPIOparams.thresh[1], -50, -1);
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_rowSel = 7;
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}
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}
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}
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if(event & key_Right) {
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if(_repeatCount > 1) {
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_repeatCount = -1; // prevent double handling
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if((_rowSel == 6 || _rowSel == 8) && _GPIOparams.out1Mode == CGPIOout1::Thresh) {
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_GPIOparams.thresh[0] = s8abs(_GPIOparams.thresh[0]);
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BOUNDSLIMIT(_GPIOparams.thresh[0], 0, 50);
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_rowSel = 8;
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}
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if((_rowSel == 5 || _rowSel == 7) && _GPIOparams.out2Mode == CGPIOout2::Thresh) {
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_GPIOparams.thresh[1] = s8abs(_GPIOparams.thresh[1]);
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BOUNDSLIMIT(_GPIOparams.thresh[1], 0, 50);
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_rowSel = 7;
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}
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}
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}
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}
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}
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if(event & keyReleased) {
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// press LEFT to select previous screen
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if(_repeatCount == 0) {
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if(event & key_Left) {
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switch(_rowSel) {
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case 0:
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_ScreenManager.prevMenu();
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break;
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case 1:
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case 2:
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case 3:
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case 4:
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case 5:
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case 6:
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case 7:
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case 8:
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_scrollChar = 0;
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_adjust(-1);
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break;
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}
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}
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// press RIGHT to select next screen
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if(event & key_Right) {
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switch(_rowSel) {
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case 0:
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_ScreenManager.nextMenu();
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break;
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case 1:
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case 2:
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case 3:
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case 4:
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case 5:
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case 6:
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case 7:
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case 8:
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_scrollChar = 0;
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_adjust(+1);
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break;
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}
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}
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if(event & key_Down) {
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_scrollChar = 0;
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_rowSel--;
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if((_rowSel == 3) && (_GPIOparams.in2Mode != CGPIOin2::Thermostat))
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_rowSel--; // force skip if not set to external thermostat
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if((_rowSel == 1) && ((getBoardRevision() == BRD_V2_GPIO_NOALG) || (getBoardRevision() == BRD_V3_GPIO_NOALG))) // GPIO but NO analog support
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_rowSel--; // force skip if analog input is not supported by PCB
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LOWERLIMIT(_rowSel, 0);
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}
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// UP press
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if(event & key_Up) {
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switch(_rowSel) {
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case 0:
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if((getBoardRevision() == BRD_V2_GPIO_NOALG) || (getBoardRevision() == BRD_V3_GPIO_NOALG)) // GPIO but NO Analog support
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_rowSel++; // force skip if analog input is not supported by PCB
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case 1:
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case 2:
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case 3:
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case 4:
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case 5:
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_scrollChar = 0;
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_rowSel++;
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if((_rowSel == 3) && (_GPIOparams.in2Mode != CGPIOin2::Thermostat))
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_rowSel++; // force skip if not set to external thermostat
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UPPERLIMIT(_rowSel, 6);
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break;
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}
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}
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// CENTRE press
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if(event & key_Centre) {
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switch(_rowSel) {
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case 0:
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_ScreenManager.selectMenu(CScreenManager::RootMenuLoop); // force return to main menu
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break;
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case 1:
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case 2:
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case 3:
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case 4:
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case 5:
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case 6:
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_confirmSave(); // enter save confirm mode
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_rowSel = 0;
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break;
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case 7:
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_rowSel = 5;
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break;
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case 8:
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_rowSel = 6;
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break;
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}
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}
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}
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_repeatCount = -1;
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_ScreenManager.reqUpdate();
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}
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return true;
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}
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void
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CGPIOSetupScreen::_adjust(int dir)
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{
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int tVal;
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switch(_rowSel) {
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case 1: // analogue mode
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tVal = _GPIOparams.algMode;
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tVal += dir;
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WRAPLIMITS(tVal, 0, 1);
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_GPIOparams.algMode = (CGPIOalg::Modes)tVal;
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break;
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case 2:
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tVal = _GPIOparams.in2Mode;
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tVal += dir;
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WRAPLIMITS(tVal, 0, 2);
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_GPIOparams.in2Mode = (CGPIOin2::Modes)tVal;
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break;
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case 3:
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switch(_ExtHold) {
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case 0: _ExtHold = (dir > 0) ? 60000 : 0; break;
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case 60000: _ExtHold = (dir > 0) ? 120000 : 0; break;
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case 120000: _ExtHold = (dir > 0) ? 300000 : 60000; break;
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case 300000: _ExtHold = (dir > 0) ? 600000 : 120000; break;
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case 600000: _ExtHold = (dir > 0) ? 900000 : 300000; break;
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case 900000: _ExtHold = (dir > 0) ? 1200000 : 600000; break;
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case 1200000: _ExtHold = (dir > 0) ? 1800000 : 900000; break;
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case 1800000: _ExtHold = (dir > 0) ? 3600000 : 1200000; break;
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case 3600000: _ExtHold = (dir > 0) ? 3600000 : 1800000; break;
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default: _ExtHold = 0; break;
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}
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break;
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case 4:
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tVal = _GPIOparams.in1Mode;
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tVal += dir;
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WRAPLIMITS(tVal, 0, 4);
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_GPIOparams.in1Mode = (CGPIOin1::Modes)tVal;
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break;
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case 5: // outputs mode
|
|
tVal = _GPIOparams.out2Mode;
|
|
tVal += dir;
|
|
WRAPLIMITS(tVal, 0, 2);
|
|
_GPIOparams.out2Mode = (CGPIOout2::Modes)tVal;
|
|
break;
|
|
case 6: // outputs mode
|
|
tVal = _GPIOparams.out1Mode;
|
|
tVal += dir;
|
|
WRAPLIMITS(tVal, 0, 3);
|
|
_GPIOparams.out1Mode = (CGPIOout1::Modes)tVal;
|
|
break;
|
|
case 7:
|
|
if(_GPIOparams.thresh[1] < 0) {
|
|
_GPIOparams.thresh[1] += -dir;
|
|
BOUNDSLIMIT(_GPIOparams.thresh[1], -50, -1);
|
|
}
|
|
else {
|
|
_GPIOparams.thresh[1] += dir;
|
|
BOUNDSLIMIT(_GPIOparams.thresh[1], 0, 50);
|
|
}
|
|
break;
|
|
case 8:
|
|
if(_GPIOparams.thresh[0] < 0) {
|
|
_GPIOparams.thresh[0] += -dir;
|
|
BOUNDSLIMIT(_GPIOparams.thresh[0], -50, -1);
|
|
}
|
|
else {
|
|
_GPIOparams.thresh[0] += dir;
|
|
BOUNDSLIMIT(_GPIOparams.thresh[0], 0, 50);
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
|
|
void
|
|
CGPIOSetupScreen::_saveNV()
|
|
{
|
|
sUserSettings us = NVstore.getUserSettings();
|
|
us.GPIO = _GPIOparams;
|
|
us.ExtThermoTimeout = _ExtHold;
|
|
NVstore.setUserSettings(us);
|
|
NVstore.save();
|
|
|
|
setupGPIO();
|
|
}
|
|
|