[lcd4linux @ 2000-04-12 08:05:45 by reinelt]

first version of the HD44780 driver

git-svn-id: https://ssl.bulix.org/svn/lcd4linux/trunk@43 3ae390bd-cb1e-0410-b409-cd5a39f66f1f
This commit is contained in:
reinelt
2000-04-12 08:05:45 +00:00
parent 66d30deaa9
commit 73ffb61bfc
6 changed files with 535 additions and 24 deletions
+496
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@@ -0,0 +1,496 @@
/* $Id: HD44780.c,v 1.1 2000/04/12 08:05:45 reinelt Exp $
*
* driver for display modules based on the HD44780 chip
*
* 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: HD44780.c,v $
* Revision 1.1 2000/04/12 08:05:45 reinelt
*
* first version of the HD44780 driver
*
*/
/*
*
* exported fuctions:
*
* struct LCD HD44780[]
*
*/
#include <stdlib.h>
#include <stdio.h>
#include <unistd.h>
#include <signal.h>
#include <errno.h>
#include <asm/io.h>
#include "cfg.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 )
static LCD Lcd;
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 unsigned short Port=0;
static char Txt[4][40];
static BAR Bar[4][40];
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 void HD_delay (unsigned long usec)
{
usleep(usec);
}
static void HD_command (unsigned char cmd)
{
outb (cmd, Port); // put data on DB1..DB8
outb (0x02, Port+2); // set Enable = bit 0 invertet
HD_delay(1);
outb (0x03, Port+2); // clear Enable
}
static void HD_write (char *string, int len)
{
while (len--) {
outb (*string++, Port); // put data on DB1..DB8
outb (0x00, Port+2); // set Enable = bit 0 invertet
HD_delay(1);
outb (0x01, Port+2); // clear Enable
HD_delay(40);
}
}
static int HD_open (void)
{
if (ioperm(Port, 3, 1)!=0) {
fprintf (stderr, "HD44780: ioperm() failed: %s\n", strerror(errno));
return -1;
}
HD_command (0x30); // 8 Bit mode
HD_delay (4100); // wait 4.1 ms
HD_command (0x30); // 8 Bit mode
HD_delay (100); // wait 100 us
HD_command (0x30); // 8 Bit mode
HD_delay (4100); // wait 4.1 ms
HD_command (0x38); // 8 Bit mode, 1/16 duty cycle, 5x8 font
HD_delay (40); // wait 40 us
HD_command (0x08); // Display off, cursor off, blink off
HD_delay (40); // wait 40 us
HD_command (0x0c); // Display on, cursor off, blink off
HD_delay (1640); // wait 1.64 ms
HD_command (0x06); // curser moves to right, no shift
HD_delay (40); // wait 40 us
return 0;
}
static void HD_process_bars (void)
{
int row, col;
int i, j;
for (i=2; i<nSegment && Segment[i].used; i++);
for (j=i+1; j<nSegment; j++) {
if (Segment[j].used)
Segment[i++]=Segment[j];
}
nSegment=i;
for (row=0; row<Lcd.rows; row++) {
for (col=0; col<Lcd.cols; col++) {
if (Bar[row][col].type==0) continue;
for (i=0; i<nSegment; i++) {
if (Segment[i].type & Bar[row][col].type &&
Segment[i].len1== Bar[row][col].len1 &&
Segment[i].len2== Bar[row][col].len2) break;
}
if (i==nSegment) {
nSegment++;
Segment[i].len1=Bar[row][col].len1;
Segment[i].len2=Bar[row][col].len2;
Segment[i].type=Bar[row][col].type;
Segment[i].used=0;
Segment[i].ascii=-1;
}
Bar[row][col].segment=i;
}
}
}
static int HD_segment_diff (int i, int j)
{
int RES;
int i1, i2, j1, j2;
if (i==j) return 65535;
if (!(Segment[i].type & Segment[j].type)) return 65535;
if (Segment[i].len1==0 && Segment[j].len1!=0) return 65535;
if (Segment[i].len2==0 && Segment[j].len2!=0) return 65535;
RES=Segment[i].type & BAR_H ? XRES:YRES;
if (Segment[i].len1>=RES && Segment[j].len1<RES) return 65535;
if (Segment[i].len2>=RES && Segment[j].len2<RES) return 65535;
if (Segment[i].len1==Segment[i].len2 && Segment[j].len1!=Segment[j].len2) return 65535;
i1=Segment[i].len1; if (i1>RES) 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 HD_compact_bars (void)
{
int i, j, r, c, min;
int pack_i, pack_j;
int pass1=1;
int error[nSegment][nSegment];
if (nSegment>CHARS+2) {
for (i=2; i<nSegment; i++) {
for (j=0; j<nSegment; j++) {
error[i][j]=HD_segment_diff(i,j);
}
}
while (nSegment>CHARS+2) {
min=65535;
pack_i=-1;
pack_j=-1;
for (i=2; i<nSegment; i++) {
if (pass1 && Segment[i].used) continue;
for (j=0; j<nSegment; j++) {
if (error[i][j]<min) {
min=error[i][j];
pack_i=i;
pack_j=j;
}
}
}
if (pack_i==-1) {
if (pass1) {
pass1=0;
continue;
} else {
fprintf (stderr, "HD44780: unable to compact bar characters\n");
nSegment=CHARS;
break;
}
}
nSegment--;
Segment[pack_i]=Segment[nSegment];
for (i=0; i<nSegment; i++) {
error[pack_i][i]=error[nSegment][i];
error[i][pack_i]=error[i][nSegment];
}
for (r=0; r<Lcd.rows; r++) {
for (c=0; c<Lcd.cols; c++) {
if (Bar[r][c].segment==pack_i)
Bar[r][c].segment=pack_j;
if (Bar[r][c].segment==nSegment)
Bar[r][c].segment=pack_i;
}
}
}
}
}
static void HD_define_chars (void)
{
int c, i, j;
char buffer[8];
for (i=2; i<nSegment; i++) {
if (Segment[i].used) continue;
if (Segment[i].ascii!=-1) continue;
for (c=0; c<CHARS; c++) {
for (j=2; j<nSegment; j++) {
if (Segment[j].ascii==c) break;
}
if (j==nSegment) break;
}
Segment[i].ascii=c;
switch (Segment[i].type) {
case BAR_L:
for (j=0; j<4; j++) {
char Pixel[] = { 0, 1, 3, 7, 15, 31 };
buffer[j]=Pixel[Segment[i].len1];
buffer[j+4]=Pixel[Segment[i].len2];
}
break;
case BAR_R:
for (j=0; j<4; j++) {
char Pixel[] = { 0, 16, 24, 28, 30, 31 };
buffer[j]=Pixel[Segment[i].len1];
buffer[j+4]=Pixel[Segment[i].len2];
}
break;
case BAR_U:
for (j=0; j<Segment[i].len1; j++) {
buffer[7-j]=31;
}
for (; j<YRES; j++) {
buffer[7-j]=0;
}
break;
case BAR_D:
for (j=0; j<Segment[i].len1; j++) {
buffer[j]=31;
}
for (; j<YRES; j++) {
buffer[j]=0;
}
break;
}
HD_command (0x40|8*c);
HD_write (buffer, 8);
}
}
int HD_clear (void)
{
int row, col;
for (row=0; row<Lcd.rows; row++) {
for (col=0; col<Lcd.cols; col++) {
Txt[row][col]='\t';
Bar[row][col].len1=-1;
Bar[row][col].len2=-1;
Bar[row][col].type=0;
Bar[row][col].segment=-1;
}
}
HD_command (0x01); // clear display
HD_delay (1640);
return 0;
}
static void HD_quit (int signal); //forward declaration
int HD_init (LCD *Self)
{
int rows=-1, cols=-1;
char *s, *e;
s=cfg_get ("Port");
if (s==NULL || *s=='\0') {
fprintf (stderr, "HD44780: no 'Port' entry in %s\n", cfg_file());
return -1;
}
if ((Port=strtol(s, &e, 0))==0 || *e!='\0') {
fprintf (stderr, "HD44780: bad port '%s' in %s\n", s, cfg_file());
return -1;
}
s=cfg_get("Size");
if (s==NULL || *s=='\0') {
fprintf (stderr, "HD44780: no 'Size' entry in %s\n", cfg_file());
return -1;
}
if (sscanf(s,"%dx%d",&cols,&rows)!=2 || rows<1 || cols<1) {
fprintf(stderr,"HD44780: bad size '%s'\n",s);
return -1;
}
Self->rows=rows;
Self->cols=cols;
Lcd=*Self;
if (HD_open()!=0)
return -1;
HD_clear();
signal(SIGINT, HD_quit);
signal(SIGQUIT, HD_quit);
signal(SIGTERM, HD_quit);
return 0;
}
void HD_goto (int row, int col)
{
int pos;
pos=(row%2)*64+col;
if (row>2) pos+=20;
HD_command (0x80|pos);
HD_delay(40);
}
int HD_put (int row, int col, char *text)
{
char *p=&Txt[row][col];
char *t=text;
while (*t && col++<=Lcd.cols) {
*p++=*t++;
}
return 0;
}
int HD_bar (int type, int row, int col, int max, int len1, int len2)
{
int rev=0;
if (len1<1) len1=1;
else if (len1>max) 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 HD_flush (void)
{
char buffer[256];
char *p;
int s, row, col;
HD_process_bars();
HD_compact_bars();
HD_define_chars();
for (s=0; s<nSegment; s++) {
Segment[s].used=0;
}
for (row=0; row<Lcd.rows; row++) {
for (col=0; col<Lcd.cols; col++) {
s=Bar[row][col].segment;
if (s!=-1) {
Segment[s].used=1;
Txt[row][col]=Segment[s].ascii;
}
}
for (col=0; col<Lcd.cols; col++) {
if (Txt[row][col]=='\t') continue;
HD_goto (row, col);
for (p=buffer; col<Lcd.cols; col++, p++) {
if (Txt[row][col]=='\t') break;
*p=Txt[row][col];
}
HD_write (buffer, p-buffer);
}
}
return 0;
}
int lcd_hello (void); // prototype from lcd4linux.c
static void HD_quit (int signal)
{
HD_clear();
lcd_hello();
// Fixme: ioperm rückgängig machen?
exit (0);
}
LCD HD44780[] = {
{ "HD44780", 0, 0, XRES, YRES, BARS, HD_init, HD_clear, HD_put, HD_bar, HD_flush },
{ NULL }
};
+1
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@@ -25,5 +25,6 @@ pixmap.c pixmap.h \
fontmap.c fontmap.h \
Skeleton.c \
MatrixOrbital.c \
HD44780.c \
Raster.c \
XWindow.c
+7 -6
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@@ -73,7 +73,7 @@ AM_CFLAGS = $(X_CFLAGS) -Wall
lcd4linux_LDFLAGS = $(X_LIBS)
@WITH_X_TRUE@lcd4linux_LDADD = -lX11
lcd4linux_SOURCES = lcd4linux.c cfg.c cfg.h lock.c lock.h parser.c parser.h processor.c processor.h system.c system.h isdn.c isdn.h filter.c filter.h display.c display.h pixmap.c pixmap.h fontmap.c fontmap.h Skeleton.c MatrixOrbital.c Raster.c XWindow.c
lcd4linux_SOURCES = lcd4linux.c cfg.c cfg.h lock.c lock.h parser.c parser.h processor.c processor.h system.c system.h isdn.c isdn.h filter.c filter.h display.c display.h pixmap.c pixmap.h fontmap.c fontmap.h Skeleton.c MatrixOrbital.c HD44780.c Raster.c XWindow.c
ACLOCAL_M4 = $(top_srcdir)/aclocal.m4
mkinstalldirs = $(SHELL) $(top_srcdir)/mkinstalldirs
@@ -91,7 +91,7 @@ X_EXTRA_LIBS = @X_EXTRA_LIBS@
X_PRE_LIBS = @X_PRE_LIBS@
lcd4linux_OBJECTS = lcd4linux.o cfg.o lock.o parser.o processor.o \
system.o isdn.o filter.o display.o pixmap.o fontmap.o Skeleton.o \
MatrixOrbital.o Raster.o XWindow.o
MatrixOrbital.o HD44780.o Raster.o XWindow.o
@WITH_X_TRUE@lcd4linux_DEPENDENCIES =
CFLAGS = @CFLAGS@
COMPILE = $(CC) $(DEFS) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(AM_CFLAGS) $(CFLAGS)
@@ -105,10 +105,11 @@ DISTFILES = $(DIST_COMMON) $(SOURCES) $(HEADERS) $(TEXINFOS) $(EXTRA_DIST)
TAR = tar
GZIP_ENV = --best
DEP_FILES = .deps/MatrixOrbital.P .deps/Raster.P .deps/Skeleton.P \
.deps/XWindow.P .deps/cfg.P .deps/display.P .deps/filter.P \
.deps/fontmap.P .deps/isdn.P .deps/lcd4linux.P .deps/lock.P \
.deps/parser.P .deps/pixmap.P .deps/processor.P .deps/system.P
DEP_FILES = .deps/HD44780.P .deps/MatrixOrbital.P .deps/Raster.P \
.deps/Skeleton.P .deps/XWindow.P .deps/cfg.P .deps/display.P \
.deps/filter.P .deps/fontmap.P .deps/isdn.P .deps/lcd4linux.P \
.deps/lock.P .deps/parser.P .deps/pixmap.P .deps/processor.P \
.deps/system.P
SOURCES = $(lcd4linux_SOURCES)
OBJECTS = $(lcd4linux_OBJECTS)
+10 -7
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@@ -1,4 +1,4 @@
/* $Id: MatrixOrbital.c,v 1.14 2000/04/10 04:40:53 reinelt Exp $
/* $Id: MatrixOrbital.c,v 1.15 2000/04/12 08:05:45 reinelt Exp $
*
* driver for Matrix Orbital serial display modules
*
@@ -20,6 +20,10 @@
*
*
* $Log: MatrixOrbital.c,v $
* 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
@@ -95,7 +99,6 @@
#include "lock.h"
#include "display.h"
#define SPEED 19200
#define XRES 5
#define YRES 8
#define CHARS 8
@@ -367,7 +370,7 @@ int MO_clear (void)
return 0;
}
static void MO_quit (int signal); //forward decvlaration
static void MO_quit (int signal); //forward declaration
int MO_init (LCD *Self)
{
@@ -411,10 +414,6 @@ int MO_init (LCD *Self)
Device=MO_open();
if (Device==-1) return -1;
signal(SIGINT, MO_quit);
signal(SIGQUIT, MO_quit);
signal(SIGTERM, MO_quit);
MO_clear();
MO_contrast();
@@ -425,6 +424,10 @@ int MO_init (LCD *Self)
MO_write ("\376R", 2); // auto scroll off
MO_write ("\376V", 2); // GPO off
signal(SIGINT, MO_quit);
signal(SIGQUIT, MO_quit);
signal(SIGTERM, MO_quit);
return 0;
}
+7 -1
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@@ -1,4 +1,4 @@
/* $Id: display.c,v 1.14 2000/04/03 17:31:52 reinelt Exp $
/* $Id: display.c,v 1.15 2000/04/12 08:05:45 reinelt Exp $
*
* framework for device drivers
*
@@ -20,6 +20,10 @@
*
*
* $Log: display.c,v $
* Revision 1.15 2000/04/12 08:05:45 reinelt
*
* first version of the HD44780 driver
*
* Revision 1.14 2000/04/03 17:31:52 reinelt
*
* suppress welcome message if display is smaller than 20x2
@@ -119,12 +123,14 @@
extern LCD Skeleton[];
extern LCD MatrixOrbital[];
extern LCD HD44780[];
extern LCD Raster[];
extern LCD XWindow[];
FAMILY Driver[] = {
{ "Skeleton", Skeleton },
{ "Matrix Orbital", MatrixOrbital },
{ "Parallel port", HD44780 },
{ "Raster", Raster },
#ifndef X_DISPLAY_MISSING
{ "X Window System", XWindow },
+14 -10
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@@ -3,6 +3,11 @@
#Speed 19200
#Contrast 160
Display HD44780
Port 0x378
Size 16x2
#Display PPM
#size 20x4
#font 5x8
@@ -13,16 +18,15 @@
#halfground \#70c000
#background \#80d000
Display X11
size 20x5
font 5x8
pixel 1+0
gap -1x-1
border 1
foreground \#102000
halfground \#90c000
background \#a0d000
#Display X11
#size 20x5
#font 5x8
#pixel 1+0
#gap -1x-1
#border 1
#foreground \#102000
#halfground \#90c000
#background \#a0d000
#Row1 "*** %o %v ***"
#Row2 "%p CPU %r MB RAM"