mirror of
https://github.com/netfun2000/lcd4linux.git
synced 2026-02-27 09:44:34 +08:00
added 'section' argument to cfg_get(), but NULLed it on all calls by now. git-svn-id: https://ssl.bulix.org/svn/lcd4linux/trunk@298 3ae390bd-cb1e-0410-b409-cd5a39f66f1f
504 lines
11 KiB
C
504 lines
11 KiB
C
/* $Id: T6963.c,v 1.14 2004/01/09 04:16:06 reinelt Exp $
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*
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* driver for display modules based on the Toshiba T6963 chip
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*
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* Copyright 1999, 2000 Michael Reinelt <reinelt@eunet.at>
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*
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* This file is part of LCD4Linux.
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*
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* LCD4Linux 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, or (at your option)
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* any later version.
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*
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* LCD4Linux 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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*
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* $Log: T6963.c,v $
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* Revision 1.14 2004/01/09 04:16:06 reinelt
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* added 'section' argument to cfg_get(), but NULLed it on all calls by now.
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*
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* Revision 1.13 2003/10/05 17:58:50 reinelt
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* libtool junk; copyright messages cleaned up
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*
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* Revision 1.12 2003/09/29 06:12:56 reinelt
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* changed default HD44780 wiring: unused signals are GND
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*
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* Revision 1.11 2003/09/13 06:45:43 reinelt
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* icons for all remaining drivers
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*
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* Revision 1.10 2003/08/16 07:31:35 reinelt
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* double buffering in all drivers
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*
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* Revision 1.9 2003/08/15 07:54:07 reinelt
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* HD44780 4 bit mode implemented
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*
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* Revision 1.8 2003/08/01 05:15:42 reinelt
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* last cleanups for 0.9.9
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*
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* Revision 1.7 2003/07/24 04:48:09 reinelt
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* 'soft clear' needed for virtual rows
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*
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* Revision 1.6 2003/04/07 06:03:00 reinelt
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* further parallel port abstraction
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*
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* Revision 1.5 2003/02/22 07:53:10 reinelt
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* cfg_get(key,defval)
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*
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* Revision 1.4 2002/08/21 06:09:53 reinelt
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* some T6963 fixes, ndelay wrap
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*
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* Revision 1.3 2002/08/19 04:41:20 reinelt
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* introduced bar.c, moved bar stuff from display.h to bar.h
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*
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* Revision 1.2 2002/08/17 12:54:08 reinelt
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* minor T6963 changes
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*
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* Revision 1.1 2002/04/29 11:00:26 reinelt
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*
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* added Toshiba T6963 driver
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* added ndelay() with nanosecond resolution
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*
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*
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*/
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/*
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*
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* exported fuctions:
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*
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* struct LCD T6963[]
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*
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*/
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#include "config.h"
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <errno.h>
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#include "debug.h"
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#include "cfg.h"
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#include "display.h"
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#include "bar.h"
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#include "icon.h"
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#include "parport.h"
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#include "udelay.h"
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#include "pixmap.h"
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#define XRES 6
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#define YRES 8
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static LCD Lcd;
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static int Icons;
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unsigned char *Buffer1, *Buffer2;
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static unsigned char SIGNAL_CE;
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static unsigned char SIGNAL_CD;
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static unsigned char SIGNAL_RD;
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static unsigned char SIGNAL_WR;
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// Fixme:
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static int bug=0;
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// perform normal status check
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void T6_status1 (void)
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{
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int n;
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// turn off data line drivers
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parport_direction (1);
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// lower CE and RD
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parport_control (SIGNAL_CE | SIGNAL_RD, 0);
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// Access Time: 150 ns
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ndelay(150);
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// wait for STA0=1 and STA1=1
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n=0;
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do {
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rep_nop();
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if (++n>1000) {
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debug("hang in status1");
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bug=1;
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break;
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}
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} while ((parport_read() & 0x03) != 0x03);
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// rise RD and CE
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parport_control (SIGNAL_RD | SIGNAL_CE, SIGNAL_RD | SIGNAL_CE);
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// Output Hold Time: 50 ns
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ndelay(50);
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// turn on data line drivers
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parport_direction (0);
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}
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// perform status check in "auto mode"
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void T6_status2 (void)
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{
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int n;
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// turn off data line drivers
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parport_direction (1);
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// lower RD and CE
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parport_control (SIGNAL_RD | SIGNAL_CE, 0);
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// Access Time: 150 ns
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ndelay(150);
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// wait for STA3=1
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n=0;
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do {
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rep_nop();
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if (++n>1000) {
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debug("hang in status2");
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bug=1;
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break;
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}
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} while ((parport_read() & 0x08) != 0x08);
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// rise RD and CE
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parport_control (SIGNAL_RD | SIGNAL_CE, SIGNAL_RD | SIGNAL_CE);
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// Output Hold Time: 50 ns
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ndelay(50);
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// turn on data line drivers
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parport_direction (0);
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}
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static void T6_write_cmd (unsigned char cmd)
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{
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// wait until the T6963 is idle
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T6_status1();
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// put data on DB1..DB8
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parport_data (cmd);
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// lower WR and CE
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parport_control (SIGNAL_WR | SIGNAL_CE, 0);
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// Pulse width
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ndelay(80);
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// rise WR and CE
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parport_control (SIGNAL_WR | SIGNAL_CE, SIGNAL_WR | SIGNAL_CE);
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// Data Hold Time
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ndelay(40);
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}
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static void T6_write_data (unsigned char data)
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{
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// wait until the T6963 is idle
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T6_status1();
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// put data on DB1..DB8
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parport_data (data);
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// lower C/D
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parport_control (SIGNAL_CD, 0);
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// C/D Setup Time
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ndelay(20);
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// lower WR and CE
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parport_control (SIGNAL_WR | SIGNAL_CE, 0);
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// Pulse Width
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ndelay(80);
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// rise WR and CE
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parport_control (SIGNAL_WR | SIGNAL_CE, SIGNAL_WR | SIGNAL_CE);
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// Data Hold Time
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ndelay(40);
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// rise CD
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parport_control (SIGNAL_CD, SIGNAL_CD);
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}
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static void T6_write_auto (unsigned char data)
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{
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// wait until the T6963 is idle
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T6_status2();
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// put data on DB1..DB8
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parport_data (data);
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// lower C/D
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parport_control (SIGNAL_CD, 0);
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// C/D Setup Time
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ndelay(20);
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// lower WR and CE
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parport_control (SIGNAL_WR | SIGNAL_CE, 0);
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// Pulse Width
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ndelay(80);
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// rise WR and CE
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parport_control (SIGNAL_WR | SIGNAL_CE, SIGNAL_WR | SIGNAL_CE);
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// Data Hold Time
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ndelay(40);
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// rise CD
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parport_control (SIGNAL_CD, SIGNAL_CD);
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}
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#if 0 // not used
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static void T6_send_byte (unsigned char cmd, unsigned char data)
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{
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T6_write_data(data);
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T6_write_cmd(cmd);
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}
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#endif
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static void T6_send_word (unsigned char cmd, unsigned short data)
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{
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T6_write_data(data&0xff);
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T6_write_data(data>>8);
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T6_write_cmd(cmd);
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}
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static void T6_memset(unsigned short addr, unsigned char data, int len)
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{
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int i;
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T6_send_word (0x24, addr); // Set Adress Pointer
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T6_write_cmd(0xb0); // Set Data Auto Write
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for (i=0; i<len; i++) {
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T6_write_auto(data);
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if (bug) {
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debug("bug occured at byte %d of %d", i, len);
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bug=0;
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}
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}
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T6_status2();
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T6_write_cmd(0xb2); // Auto Reset
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}
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static void T6_memcpy(unsigned short addr, unsigned char *data, int len)
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{
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int i;
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T6_send_word (0x24, 0x0200+addr); // Set Adress Pointer
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T6_write_cmd(0xb0); // Set Data Auto Write
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for (i=0; i<len; i++) {
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T6_write_auto(*(data++));
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if (bug) {
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debug("bug occured at byte %d of %d, addr=%d", i, len, addr);
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bug=0;
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}
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}
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T6_status2();
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T6_write_cmd(0xb2); // Auto Reset
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}
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int T6_clear (int full)
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{
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int rows;
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if (full) {
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rows=(Lcd.rows>8 ? 8 : Lcd.rows);
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T6_memset(0x0000, 0, Lcd.cols*rows); // clear text area
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T6_memset(0x0200, 0, Lcd.cols*rows*8); // clear graphic area
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if (Lcd.rows>8) {
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T6_memset(0x8000, 0, Lcd.cols*(Lcd.rows-rows)); // clear text area #2
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T6_memset(0x8200, 0, Lcd.cols*(Lcd.rows-rows)*8); // clear graphic area #2
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}
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memset(Buffer1,0,Lcd.cols*Lcd.rows*Lcd.yres*sizeof(*Buffer1));
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memset(Buffer2,0,Lcd.cols*Lcd.rows*Lcd.yres*sizeof(*Buffer2));
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}
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return pix_clear();
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}
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int T6_init (LCD *Self)
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{
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Lcd=*Self;
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if (pix_init (Lcd.rows, Lcd.cols, Lcd.xres, Lcd.yres)!=0) {
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error ("T6963: pix_init(%d, %d, %d, %d) failed", Lcd.rows, Lcd.cols, Lcd.xres, Lcd.yres);
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return -1;
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}
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if (cfg_number(NULL, "Icons", 0, 0, 8, &Icons) < 0) return -1;
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if (Icons>0) {
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info ("allocating %d icons", Icons);
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icon_init(Lcd.rows, Lcd.cols, Lcd.xres, Lcd.yres, 8, Icons, pix_icon);
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Self->icons=Icons;
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Lcd.icons=Icons;
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}
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Buffer1=malloc(Lcd.cols*Lcd.rows*Lcd.yres);
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if (Buffer1==NULL) {
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error ("T6963: malloc(%d) failed: %s", Lcd.cols*Lcd.rows*Lcd.yres, strerror(errno));
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return -1;
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}
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Buffer2=malloc(Lcd.cols*Lcd.rows*Lcd.yres);
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if (Buffer2==NULL) {
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error ("T6963: malloc(%d) failed: %s", Lcd.cols*Lcd.rows*Lcd.yres, strerror(errno));
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return -1;
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}
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if ((SIGNAL_CE=parport_wire_ctrl ("CE", "STROBE"))==0xff) return -1;
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if ((SIGNAL_CD=parport_wire_ctrl ("CD", "SELECT"))==0xff) return -1;
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if ((SIGNAL_RD=parport_wire_ctrl ("RD", "AUTOFD"))==0xff) return -1;
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if ((SIGNAL_WR=parport_wire_ctrl ("WR", "INIT") )==0xff) return -1;
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if (parport_open() != 0) {
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error ("T6963: could not initialize parallel port!");
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return -1;
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}
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// rise CE, CD, RD and WR
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parport_control (SIGNAL_CE | SIGNAL_CD | SIGNAL_RD | SIGNAL_WR,
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SIGNAL_CE | SIGNAL_CD | SIGNAL_RD | SIGNAL_WR);
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// set direction: write
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parport_direction (0);
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debug ("setting %d columns", Lcd.cols);
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T6_send_word (0x40, 0x0000); // Set Text Home Address
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T6_send_word (0x41, Lcd.cols); // Set Text Area
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T6_send_word (0x42, 0x0200); // Set Graphic Home Address
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T6_send_word (0x43, Lcd.cols); // Set Graphic Area
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T6_write_cmd (0x80); // Mode Set: OR mode, Internal CG RAM mode
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T6_send_word (0x22, 0x0002); // Set Offset Register
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T6_write_cmd (0x98); // Set Display Mode: Curser off, Text off, Graphics on
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T6_write_cmd (0xa0); // Set Cursor Pattern: 1 line cursor
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T6_send_word (0x21, 0x0000); // Set Cursor Pointer to (0,0)
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T6_clear(1);
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return 0;
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}
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int T6_put (int row, int col, char *text)
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{
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return pix_put(row,col,text);
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}
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int T6_bar (int type, int row, int col, int max, int len1, int len2)
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{
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return pix_bar(type,row,col,max,len1,len2);
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}
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int T6_icon (int num, int seq, int row, int col)
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{
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return icon_draw (num, seq, row, col);
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}
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int T6_flush (void)
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{
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int i, j, e;
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memset(Buffer1,0,Lcd.cols*Lcd.rows*Lcd.yres*sizeof(*Buffer1));
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for (i=0; i<Lcd.cols*Lcd.rows*Lcd.yres; i++) {
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for (j=0; j<Lcd.xres; j++) {
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Buffer1[i]<<=1;
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if (LCDpixmap[i*Lcd.xres+j]) Buffer1[i]|=1;
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}
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}
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for (i=0; i<Lcd.cols*Lcd.rows*Lcd.yres; i++) {
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if (Buffer1[i]==Buffer2[i]) continue;
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for (j=i, e=0; i<Lcd.cols*Lcd.rows*Lcd.yres; i++) {
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if (Buffer1[i]==Buffer2[i]) {
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if (++e>4) break;
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} else {
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e=0;
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}
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}
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T6_memcpy (j, Buffer1+j, i-j-e+1);
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}
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memcpy(Buffer2,Buffer1,Lcd.cols*Lcd.rows*Lcd.yres*sizeof(*Buffer1));
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return 0;
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}
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int T6_quit (void)
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{
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return parport_close();
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}
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LCD T6963[] = {
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{ name: "TLC1091",
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rows: 16,
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cols: 40,
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xres: 6,
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yres: 8,
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bars: BAR_L | BAR_R | BAR_U | BAR_D | BAR_H2 | BAR_V2 | BAR_T,
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icons: 0,
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gpos: 0,
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init: T6_init,
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clear: T6_clear,
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put: T6_put,
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bar: T6_bar,
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icon: T6_icon,
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gpo: NULL,
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flush: T6_flush,
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quit: T6_quit
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},
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{ name: "DMF5002N",
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rows: 14,
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cols: 16,
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xres: 8,
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yres: 8,
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bars: BAR_L | BAR_R | BAR_U | BAR_D | BAR_H2 | BAR_V2 | BAR_T,
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icons: 0,
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gpos: 0,
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init: T6_init,
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clear: T6_clear,
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put: T6_put,
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bar: T6_bar,
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icon: T6_icon,
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gpo: NULL,
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flush: T6_flush,
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quit: T6_quit
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},
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{ NULL }
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};
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