/* $Id: MatrixOrbital.c,v 1.21 2001/02/14 07:40:16 reinelt Exp $ * * driver for Matrix Orbital serial display modules * * Copyright 1999, 2000 by Michael Reinelt (reinelt@eunet.at) * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2, or (at your option) * any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. * * * $Log: MatrixOrbital.c,v $ * Revision 1.21 2001/02/14 07:40:16 reinelt * * first (incomplete) GPO implementation * * Revision 1.20 2001/02/13 09:00:13 reinelt * * prepared framework for GPO's (general purpose outputs) * * Revision 1.19 2000/08/10 09:44:09 reinelt * * new debugging scheme: error(), info(), debug() * uses syslog if in daemon mode * * Revision 1.18 2000/08/09 09:50:29 reinelt * * opened 0.98 development * removed driver-specific signal-handlers * added 'quit'-function to driver structure * added global signal-handler * * Revision 1.17 2000/04/15 11:13:54 reinelt * * added '-d' (debugging) switch * added several debugging messages * removed config entry 'Delay' for HD44780 driver * delay loop for HD44780 will be calibrated automatically * * Revision 1.16 2000/04/13 06:09:52 reinelt * * added BogoMips() to system.c (not used by now, maybe sometimes we can * calibrate our delay loop with this value) * * added delay loop to HD44780 driver. It seems to be quite fast now. Hopefully * no compiler will optimize away the delay loop! * * Revision 1.15 2000/04/12 08:05:45 reinelt * * first version of the HD44780 driver * * Revision 1.14 2000/04/10 04:40:53 reinelt * * minor changes and cleanups * * Revision 1.13 2000/04/07 05:42:20 reinelt * * UUCP style lockfiles for the serial port * * Revision 1.12 2000/03/26 18:46:28 reinelt * * bug in pixmap.c that leaded to empty bars fixed * name conflicts with X11 resolved * * Revision 1.11 2000/03/25 05:50:43 reinelt * * memory leak in Raster_flush closed * driver family logic changed * * Revision 1.10 2000/03/23 07:24:48 reinelt * * PPM driver up and running (but slow!) * * Revision 1.9 2000/03/22 07:33:50 reinelt * * FAQ added * new modules 'processor.c' contains all data processing * * Revision 1.8 2000/03/19 08:41:28 reinelt * * documentation available! README, README.MatrixOrbital, README.Drivers * added Skeleton.c as a starting point for new drivers * * Revision 1.7 2000/03/18 08:07:04 reinelt * * vertical bars implemented * bar compaction improved * memory information implemented * * Revision 1.6 2000/03/17 09:21:42 reinelt * * various memory statistics added * * Revision 1.5 2000/03/13 15:58:24 reinelt * * release 0.9 * moved row parsing to parser.c * all basic work finished * * Revision 1.4 2000/03/10 17:36:02 reinelt * * first unstable but running release * */ /* * * exported fuctions: * * struct LCD MatrixOrbital[] * */ #include #include #include #include #include #include #include #include "debug.h" #include "cfg.h" #include "lock.h" #include "display.h" #define XRES 5 #define YRES 8 #define CHARS 8 #define BARS ( BAR_L | BAR_R | BAR_U | BAR_D | BAR_H2 ) typedef struct { int len1; int len2; int type; int segment; } BAR; typedef struct { int len1; int len2; int type; int used; int ascii; } SEGMENT; static LCD Lcd; static char *Port=NULL; static speed_t Speed; static int Device=-1; static char Txt[4][40]; static BAR Bar[4][40]; static int GPO; static int nSegment=2; static SEGMENT Segment[128] = {{ len1:0, len2:0, type:255, used:0, ascii:32 }, { len1:255, len2:255, type:255, used:0, ascii:255 }}; static int MO_open (void) { int fd; pid_t pid; struct termios portset; if ((pid=lock_port(Port))!=0) { if (pid==-1) error ("MatrixOrbital: port %s could not be locked", Port); else error ("MatrixOrbital: port %s is locked by process %d", Port, pid); return -1; } fd = open(Port, O_RDWR | O_NOCTTY | O_NDELAY); if (fd==-1) { error ("MatrixOrbital: open(%s) failed: %s", Port, strerror(errno)); return -1; } if (tcgetattr(fd, &portset)==-1) { error ("MatrixOrbital: tcgetattr(%s) failed: %s", Port, strerror(errno)); return -1; } cfmakeraw(&portset); cfsetospeed(&portset, Speed); if (tcsetattr(fd, TCSANOW, &portset)==-1) { error ("MatrixOrbital: tcsetattr(%s) failed: %s", Port, strerror(errno)); return -1; } return fd; } static void MO_write (char *string, int len) { if (Device==-1) return; if (write (Device, string, len)==-1) { if (errno==EAGAIN) { usleep(1000); if (write (Device, string, len)>=0) return; } error ("MatrixOrbital: write(%s) failed: %s", Port, strerror(errno)); } } static int MO_contrast (void) { char buffer[4]; int contrast; contrast=atoi(cfg_get("Contrast")?:"160"); snprintf (buffer, 4, "\376P%c", contrast); MO_write (buffer, 3); return 0; } static void MO_process_bars (void) { int row, col; int i, j; for (i=2; i=RES && Segment[j].len1=RES && Segment[j].len2RES) i1=RES; i2=Segment[i].len2; if (i2>RES) i2=RES; j1=Segment[j].len1; if (j1>RES) i1=RES; j2=Segment[j].len2; if (j2>RES) i2=RES; return (i1-i2)*(i1-i2)+(j1-j2)*(j1-j2); } static void MO_compact_bars (void) { int i, j, r, c, min; int pack_i, pack_j; int pass1=1; int deviation[nSegment][nSegment]; if (nSegment>CHARS+2) { for (i=2; iCHARS+2) { min=65535; pack_i=-1; pack_j=-1; for (i=2; imax) len1=max; if (len2<1) len2=1; else if (len2>max) len2=max; switch (type) { case BAR_L: len1=max-len1; len2=max-len2; rev=1; case BAR_R: while (max>0 && col<=Lcd.cols) { Bar[row][col].type=type; Bar[row][col].segment=-1; if (len1>=XRES) { Bar[row][col].len1=rev?0:XRES; len1-=XRES; } else { Bar[row][col].len1=rev?XRES-len1:len1; len1=0; } if (len2>=XRES) { Bar[row][col].len2=rev?0:XRES; len2-=XRES; } else { Bar[row][col].len2=rev?XRES-len2:len2; len2=0; } max-=XRES; col++; } break; case BAR_U: len1=max-len1; len2=max-len2; rev=1; case BAR_D: while (max>0 && row<=Lcd.rows) { Bar[row][col].type=type; Bar[row][col].segment=-1; if (len1>=YRES) { Bar[row][col].len1=rev?0:YRES; len1-=YRES; } else { Bar[row][col].len1=rev?YRES-len1:len1; len1=0; } if (len2>=YRES) { Bar[row][col].len2=rev?0:YRES; len2-=YRES; } else { Bar[row][col].len2=rev?YRES-len2:len2; len2=0; } max-=YRES; row++; } break; } return 0; } int MO_gpo (int num, int val) { if (num>=Lcd.gpos) return -1; if (val) { GPO |= 1<