494 lines
13 KiB
C++
494 lines
13 KiB
C++
/*
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* Copyright (C) 2019 by SASANO Takayoshi JG1UAA
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* Copyright (C) 2015,2016,2018,2019 by Jonathan Naylor G4KLX
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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 2 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, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "TFTSurenoo.h"
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#include "Thread.h"
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#include "Log.h"
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#include <cstdio>
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#include <cassert>
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#include <cstring>
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/*
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* UART-TFT LCD Driver for Surenoo JC22-V05 (128x160)
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* other Surenoo UART-LCD will be work, but display area is still 160x128
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* (tested with JC028-V03 240x320 module)
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*/
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// x = 0 to 159, y = 0 to 127 - Landscape
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// x = 0 to 127, y = 0 to 159 - Portrait
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#define X_WIDTH 160
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#define Y_WIDTH 128
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#define ROTATION_PORTRAIT 0
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#define ROTATION_LANDSCAPE 1
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enum LcdColour {
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COLOUR_BLACK, COLOUR_RED, COLOUR_GREEN, COLOUR_BLUE,
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COLOUR_YELLOW, COLOUR_CYAN, COLOUR_MAGENTA, COLOUR_GREY,
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COLOUR_DARK_GREY, COLOUR_DARK_RED, COLOUR_DARK_GREEN, COLOUR_DARK_BLUE,
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COLOUR_DARK_YELLOW, COLOUR_DARK_CYAN, COLOUR_DARK_MAGENTA, COLOUR_WHITE
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};
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#define FONT_SMALL 16 // 8x16
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#define FONT_MEDIUM 24 // 12x24
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#define FONT_LARGE 32 // 16x32
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#define INFO_COLOUR COLOUR_CYAN
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#define EXT_COLOUR COLOUR_DARK_GREEN
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#define BG_COLOUR COLOUR_BLACK
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#define ERROR_COLOUR COLOUR_DARK_RED
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#define MODE_COLOUR COLOUR_YELLOW
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// MODE_FONT_SIZE should be equal or larger than STATUS_FONT_SIZE
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#define MODE_FONT_SIZE FONT_MEDIUM
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#define STATUS_FONT_SIZE FONT_SMALL
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#define STATUS_MARGIN 32 // pixel
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#define MODE_CHARS (X_WIDTH / (MODE_FONT_SIZE / 2))
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#define STATUS_CHARS (X_WIDTH / (STATUS_FONT_SIZE / 2))
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#define STATUS_LINES ((Y_WIDTH - STATUS_MARGIN) / STATUS_FONT_SIZE)
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#define statusLineOffset(x) ((STATUS_CHARS + 1) * ((x) + 1))
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#define statusLineNo(x) (x)
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#define INFO_LINES statusLineNo(2)
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// This module sometimes ignores display command (too busy?),
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// so supress display refresh
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#define REFRESH_PERIOD 600 // msec
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#define STR_CRLF "\x0D\x0A"
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#define STR_DMR "DMR"
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#define STR_DSTAR "D-STAR"
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#define STR_MMDVM "MMDVM"
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#define STR_NXDN "NXDN"
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#define STR_P25 "P25"
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#define STR_YSF "SystemFusion"
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CTFTSurenoo::CTFTSurenoo(const std::string& callsign, unsigned int dmrid, ISerialPort* serial, unsigned int brightness, bool duplex) :
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CDisplay(),
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m_callsign(callsign),
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m_dmrid(dmrid),
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m_serial(serial),
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m_brightness(brightness),
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m_mode(MODE_IDLE),
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m_duplex(duplex),
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//m_duplex(true), // uncomment to force duplex display for testing!
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m_refresh(false),
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m_refreshTimer(1000U, 0U, REFRESH_PERIOD),
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m_lineBuf(NULL)
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{
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assert(serial != NULL);
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assert(brightness >= 0U && brightness <= 255U);
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}
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CTFTSurenoo::~CTFTSurenoo()
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{
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}
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bool CTFTSurenoo::open()
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{
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bool ret = m_serial->open();
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if (!ret) {
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LogError("Cannot open the port for the TFT Serial");
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delete m_serial;
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return false;
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}
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m_lineBuf = new char[statusLineOffset(STATUS_LINES)];
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if (m_lineBuf == NULL) {
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LogError("Cannot allocate line buffer");
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m_serial->close();
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delete m_serial;
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return false;
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}
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lcdReset();
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clearScreen(BG_COLOUR);
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setRotation(ROTATION_LANDSCAPE);
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setBrightness(m_brightness);
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setBackground(BG_COLOUR);
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setIdle();
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m_refreshTimer.start();
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return true;
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}
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void CTFTSurenoo::setIdleInt()
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{
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setModeLine(STR_MMDVM);
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::snprintf(m_temp, sizeof(m_temp), "%s / %u", m_callsign.c_str(), m_dmrid);
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setStatusLine(statusLineNo(0), m_temp);
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setStatusLine(statusLineNo(1), "IDLE");
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m_mode = MODE_IDLE;
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}
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void CTFTSurenoo::setErrorInt(const char* text)
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{
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assert(text != NULL);
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setModeLine(STR_MMDVM);
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setStatusLine(statusLineNo(0), text);
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setStatusLine(statusLineNo(1), "ERROR");
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m_mode = MODE_ERROR;
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}
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void CTFTSurenoo::setLockoutInt()
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{
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setModeLine(STR_MMDVM);
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setStatusLine(statusLineNo(1), "LOCKOUT");
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m_mode = MODE_LOCKOUT;
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}
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void CTFTSurenoo::setQuitInt()
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{
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// m_refreshTimer has stopped, need delay here
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CThread::sleep(REFRESH_PERIOD);
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setModeLine(STR_MMDVM);
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setStatusLine(statusLineNo(1), "STOPPED");
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refreshDisplay();
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m_mode = MODE_QUIT;
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}
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void CTFTSurenoo::writeDStarInt(const char* my1, const char* my2, const char* your, const char* type, const char* reflector)
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{
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assert(my1 != NULL);
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assert(my2 != NULL);
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assert(your != NULL);
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assert(type != NULL);
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assert(reflector != NULL);
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setModeLine(STR_MMDVM);
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::snprintf(m_temp, sizeof(m_temp), "%s %s/%s", type, my1, my2);
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setStatusLine(statusLineNo(0), m_temp);
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::snprintf(m_temp, sizeof(m_temp), "%s", your);
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setStatusLine(statusLineNo(1), m_temp);
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if (::strcmp(reflector, " ") != 0)
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::snprintf(m_temp, sizeof(m_temp), "via %s", reflector);
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else
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::strcpy(m_temp, "");
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setStatusLine(statusLineNo(2), m_temp);
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m_mode = MODE_DSTAR;
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}
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void CTFTSurenoo::clearDStarInt()
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{
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setStatusLine(statusLineNo(0), "Listening");
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for (int i = 1; i < STATUS_LINES; i++)
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setStatusLine(statusLineNo(i), "");
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}
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void CTFTSurenoo::writeDMRInt(unsigned int slotNo, const std::string& src, bool group, const std::string& dst, const char* type)
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{
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assert(type != NULL);
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if (m_mode != MODE_DMR) {
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setModeLine(STR_DMR);
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if (m_duplex) {
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setStatusLine(statusLineNo(0), "Listening");
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setStatusLine(statusLineNo(1), "TS1");
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setStatusLine(statusLineNo(2), "Listening");
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setStatusLine(statusLineNo(3), "TS2");
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}
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}
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int pos = m_duplex ? (slotNo - 1) : 0;
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::snprintf(m_temp, sizeof(m_temp), "%s %s", type, src.c_str());
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setStatusLine(statusLineNo(pos * 2), m_temp);
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::snprintf(m_temp, sizeof(m_temp), "TS%d %s%s", slotNo, group ? "TG" : "", dst.c_str());
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setStatusLine(statusLineNo(pos * 2 + 1), m_temp);
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m_mode = MODE_DMR;
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}
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int CTFTSurenoo::writeDMRIntEx(unsigned int slotNo, const class CUserDBentry& src, bool group, const std::string& dst, const char* type)
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{
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assert(type != NULL);
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// duplex mode is not supported
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if (m_duplex)
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return -1;
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setModeLine(STR_DMR);
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setStatusLine(statusLineNo(2), (src.get(keyFIRST_NAME) + " " + src.get(keyLAST_NAME)).c_str());
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setStatusLine(statusLineNo(3), src.get(keyCITY).c_str());
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setStatusLine(statusLineNo(4), src.get(keySTATE).c_str());
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setStatusLine(statusLineNo(5), src.get(keyCOUNTRY).c_str());
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m_mode = MODE_DMR;
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return 1;
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}
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void CTFTSurenoo::clearDMRInt(unsigned int slotNo)
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{
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int pos = m_duplex ? (slotNo - 1) : 0;
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setStatusLine(statusLineNo(pos * 2), "Listening");
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if (m_duplex) {
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::snprintf(m_temp, sizeof(m_temp), "TS%d", slotNo);
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setStatusLine(statusLineNo(pos * 2 + 1), m_temp);
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} else {
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for (int i = 1; i < STATUS_LINES; i++)
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setStatusLine(statusLineNo(i), "");
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}
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}
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void CTFTSurenoo::writeFusionInt(const char* source, const char* dest, const char* type, const char* origin)
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{
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assert(source != NULL);
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assert(dest != NULL);
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assert(type != NULL);
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assert(origin != NULL);
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setModeLine(STR_YSF);
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::snprintf(m_temp, sizeof(m_temp), "%s %s", type, source);
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setStatusLine(statusLineNo(0), m_temp);
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::snprintf(m_temp, sizeof(m_temp), "%s", dest);
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setStatusLine(statusLineNo(1), m_temp);
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if (::strcmp(origin, " ") != 0)
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::snprintf(m_temp, sizeof(m_temp), "at %s", origin);
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else
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::strcpy(m_temp, "");
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setStatusLine(statusLineNo(2), m_temp);
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m_mode = MODE_YSF;
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}
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void CTFTSurenoo::clearFusionInt()
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{
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clearDStarInt();
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}
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void CTFTSurenoo::writeP25Int(const char* source, bool group, unsigned int dest, const char* type)
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{
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assert(source != NULL);
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assert(type != NULL);
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setModeLine(STR_P25);
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::snprintf(m_temp, sizeof(m_temp), "%s %s", type, source);
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setStatusLine(statusLineNo(0), m_temp);
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::snprintf(m_temp, sizeof(m_temp), "%s%u", group ? "TG" : "", dest);
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setStatusLine(statusLineNo(1), m_temp);
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m_mode = MODE_P25;
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}
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void CTFTSurenoo::clearP25Int()
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{
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clearDStarInt();
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}
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void CTFTSurenoo::writeNXDNInt(const char* source, bool group, unsigned int dest, const char* type)
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{
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assert(source != NULL);
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assert(type != NULL);
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if (m_mode != MODE_NXDN)
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setModeLine(STR_NXDN);
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::snprintf(m_temp, sizeof(m_temp), "%s %s", type, source);
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setStatusLine(statusLineNo(0), m_temp);
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::snprintf(m_temp, sizeof(m_temp), "%s%u", group ? "TG" : "", dest);
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setStatusLine(statusLineNo(1), m_temp);
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m_mode = MODE_NXDN;
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}
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int CTFTSurenoo::writeNXDNIntEx(const class CUserDBentry& source, bool group, unsigned int dest, const char* type)
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{
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assert(type != NULL);
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setModeLine(STR_NXDN);
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setStatusLine(statusLineNo(2), (source.get(keyFIRST_NAME) + " " + source.get(keyLAST_NAME)).c_str());
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setStatusLine(statusLineNo(3), source.get(keyCITY).c_str());
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setStatusLine(statusLineNo(4), source.get(keySTATE).c_str());
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setStatusLine(statusLineNo(5), source.get(keyCOUNTRY).c_str());
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m_mode = MODE_NXDN;
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return 1;
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}
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void CTFTSurenoo::clearNXDNInt()
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{
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clearDStarInt();
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}
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void CTFTSurenoo::writePOCSAGInt(uint32_t ric, const std::string& message)
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{
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setStatusLine(statusLineNo(1), "POCSAG TX");
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m_mode = MODE_POCSAG;
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}
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void CTFTSurenoo::clearPOCSAGInt()
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{
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setStatusLine(statusLineNo(1), "IDLE");
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}
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void CTFTSurenoo::writeCWInt()
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{
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setStatusLine(statusLineNo(1), "CW TX");
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m_mode = MODE_CW;
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}
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void CTFTSurenoo::clearCWInt()
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{
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setStatusLine(statusLineNo(1), "IDLE");
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}
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void CTFTSurenoo::close()
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{
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delete[] m_lineBuf;
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m_serial->close();
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delete m_serial;
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}
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void CTFTSurenoo::clockInt(unsigned int ms)
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{
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m_refreshTimer.clock(ms); // renew timer status
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if (m_refreshTimer.isRunning() && m_refreshTimer.hasExpired()) {
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refreshDisplay();
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m_refreshTimer.start(); // reset timer, wait for next period
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}
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}
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void CTFTSurenoo::setLineBuffer(char *buf, const char *text, int maxchar)
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{
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int i;
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for (i = 0; i < maxchar && text[i] != '\0'; i++)
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buf[i] = text[i];
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buf[i] = '\0';
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m_refresh = true;
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}
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void CTFTSurenoo::setModeLine(const char *text)
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{
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setLineBuffer(m_lineBuf, text, MODE_CHARS);
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// clear all status line
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for (int i = 0; i < STATUS_LINES; i++) setStatusLine(i, "");
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}
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void CTFTSurenoo::setStatusLine(unsigned int line, const char *text)
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{
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setLineBuffer(m_lineBuf + statusLineOffset(line), text, STATUS_CHARS);
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}
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void CTFTSurenoo::refreshDisplay(void)
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{
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if (!m_refresh) return;
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// send CR+LF to avoid first command is not processed
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::snprintf(m_temp, sizeof(m_temp), STR_CRLF);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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// clear display
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::snprintf(m_temp, sizeof(m_temp), "BOXF(%d,%d,%d,%d,%d);",
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0, 0, X_WIDTH - 1, Y_WIDTH - 1, BG_COLOUR);
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m_serial->write((unsigned char*)m_temp, ::strlen(m_temp));
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// mode line
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::snprintf(m_temp, sizeof(m_temp), "DCV%d(%d,%d,'%s',%d);",
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MODE_FONT_SIZE, 0, 0, m_lineBuf, MODE_COLOUR);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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// status line
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for (int i = 0; i < STATUS_LINES; i++) {
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char *p = m_lineBuf + statusLineOffset(i);
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if (!::strlen(p)) continue;
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::snprintf(m_temp, sizeof(m_temp), "DCV%d(%d,%d,'%s',%d);",
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STATUS_FONT_SIZE, 0,
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STATUS_MARGIN + STATUS_FONT_SIZE * i, p,
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(!m_duplex && i >= INFO_LINES) ? EXT_COLOUR : INFO_COLOUR);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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}
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// sending CR+LF finishes commands
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::snprintf(m_temp, sizeof(m_temp), STR_CRLF);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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m_refresh = false;
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}
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void CTFTSurenoo::lcdReset(void)
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{
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::snprintf(m_temp, sizeof(m_temp), "RESET;" STR_CRLF);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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CThread::sleep(250); // document says 230ms
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}
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void CTFTSurenoo::clearScreen(unsigned char colour)
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{
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assert(colour >= 0U && colour <= 63U);
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::snprintf(m_temp, sizeof(m_temp), "CLR(%d);" STR_CRLF, colour);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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CThread::sleep(100); // at least 60ms (@240x320 panel)
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}
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void CTFTSurenoo::setBackground(unsigned char colour)
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{
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assert(colour >= 0U && colour <= 63U);
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::snprintf(m_temp, sizeof(m_temp), "SBC(%d);", colour);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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}
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void CTFTSurenoo::setRotation(unsigned char rotation)
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{
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assert(rotation >= 0U && rotation <= 1U);
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::snprintf(m_temp, sizeof(m_temp), "DIR(%d);", rotation);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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}
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void CTFTSurenoo::setBrightness(unsigned char brightness)
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{
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assert(brightness >= 0U && brightness <= 255U);
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::snprintf(m_temp, sizeof(m_temp), "BL(%d);", brightness);
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m_serial->write((unsigned char*)m_temp, (unsigned int)::strlen(m_temp));
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}
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