added panel one support
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9423737818
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bd17b9c6da
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@ -94,6 +94,10 @@ void test_palette2(){
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}
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#endif
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#ifdef ANIMATION_MHERWEG
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void checkbox(){
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unsigned char x, delay=250;
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@ -26,6 +26,10 @@ ifeq ($(BORG_HW),HW_BORG_MINI)
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SRC = borg_hw_borg_mini.c
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endif
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ifeq ($(BORG_HW),HW_PANEL_ONE)
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SRC = borg_hw_panel_one.c
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endif
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ifeq ($(SRC),'')
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$(error no valid hardware driver selected )
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endif
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@ -0,0 +1,220 @@
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#include"../autoconf.h"
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#include <avr/interrupt.h>
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#include <avr/io.h>
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#include <avr/wdt.h>
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#include "borg_hw.h"
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/* Steckerbelegung Flachbandkabel am Panel
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* (die Nummerierung ist in wirklichkeit umgekehrt)
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*
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* 1-3 GND
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* 4 +5V für Logic
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* 5-8 +12V
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* 9-10 GND
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* 11 CP3
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* 12 CP2
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* 13 CP1
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* 14 /show
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* 15 CP4
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* 16 /EO3
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* 17-18 GND
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* 19-26 D0-D7
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*
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* Und nochmal richtigrum:
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* 1 D7
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* 2 D6
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* 3 D5
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* 4 D4
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* 5 D3
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* 6 D2
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* 7 D1
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* 8 D0
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* 9 GND
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* 10 GND
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* 11 /EO3
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* 12 CP4
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* 13 /show
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* 14 CP1
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* 15 CP2
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* 16 CP3
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* 17 GND
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* 18 GND
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* 19 +12V
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* 20 +12V
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* 21 +12V
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* 22 +12V
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* 23 +5V
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* 24 GND
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* 25 GND
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* 26 GND
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*
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* Es werden 4 40374 Latches benutzt. Nr. 1,2 und 4 treiben vom Datenbus
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* in Richtung Panel, Nr. 3 treibt von den Tastenausgängen auf den Datenbus.
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* Die EOs von 1,2 und 4 liegen fest auf GND.
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*
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* Die LEDs sind in einer 12*16 Matrix angeordnet
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* Die Werte für die LED spalten Werden mit CP1 und CP2 in die
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* Latches übernommen (insgesammt 16 Spalten)
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* Die Nummer der Zeile wird beim löschen von /show übernommen.
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*
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* Die Tasten sind in einer 8*8 Matrix angeordnet.
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* Über Latch 4 werden die Zeilen einzeln auf high gesetzt, über
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* Latch 3 können dann die Spalten gelesen werden.
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*
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*/
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//Datenport für das Panel
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#define COLPORT PORTC
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#define COLDDR DDRC
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#define COLPIN PINC
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#define CTRLPORT PORTD
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#define CTRLDDR DDRD
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// PINs on CTRLPORT
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#define PIN_EO3 PD7
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#define PIN_CP4 PD2
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#define PIN_SHOW PD3
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#define PIN_CP1 PD4
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#define PIN_CP2 PD5
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#define PIN_CP3 PD6
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//Der Puffer, in dem das aktuelle Bild gespeichert wird
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unsigned char pixmap[NUMPLANE][NUM_ROWS][LINEBYTES];
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volatile uint8_t keys[8];
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inline void busywait() {
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//unsigned char i;
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//for(i=0;i<20;i++){
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// asm volatile("nop");
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//}
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}
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//Eine Zeile anzeigen
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inline void rowshow(unsigned char row, unsigned char plane){
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CTRLPORT |= (1<<PIN_SHOW);//blank
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COLPORT = pixmap[plane][row][0];
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busywait();
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CTRLPORT |= (1<<PIN_CP1);
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busywait();
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CTRLPORT &= ~(1<<PIN_CP1);
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busywait();
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COLPORT = pixmap[plane][row][1];
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busywait();
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CTRLPORT |= (1<<PIN_CP2);
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busywait();
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CTRLPORT &= ~(1<<PIN_CP2);
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busywait();
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COLPORT = row;
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busywait();
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CTRLPORT &= ~(1<<PIN_SHOW);
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}
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inline void checkkeys(uint8_t row){
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static uint8_t mask;
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if(row == 0){
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mask = 1;
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}else{
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//read keyboard cols into latch
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COLDDR = 0;
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CTRLPORT &= ~(1<<PIN_EO3);
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CTRLPORT |= (1<<PIN_CP3);
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busywait();
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CTRLPORT &= ~(1<<PIN_CP3);
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busywait();
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keys[row-1] = COLPIN;
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CTRLPORT |= (1<<PIN_EO3);
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busywait();
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COLDDR = 0xFF;
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}
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COLPORT = mask;
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mask <<= 1;
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busywait();
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CTRLPORT |= (1<<PIN_CP4);
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busywait();
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CTRLPORT &= ~(1<<PIN_CP4);
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}
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//Dieser Interrupt wird je nach Ebene mit 50kHz 31,25kHz oder 12,5kHz ausgeführt
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SIGNAL(SIG_OUTPUT_COMPARE0)
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{
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static unsigned char plane = 0;
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static unsigned char row = 0;
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//Watchdog zurücksetzen
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wdt_reset();
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//Die aktuelle Zeile in der aktuellen Ebene ausgeben
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rowshow(row, plane);
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if( (plane == 2) && (row<9) ) checkkeys(row);
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//Zeile und Ebene inkrementieren
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if(++row == NUM_ROWS){
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row = 0;
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if(++plane==NUMPLANE) plane=0;
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switch(plane){
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case 0:
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OCR0 = 5;
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break;
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case 1:
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OCR0 = 12;
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break;
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case 2:
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OCR0 = 20;
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break;
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}
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}
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}
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void timer0_off(){
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cli();
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TCCR0 = 0x00;
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sei();
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}
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// Den Timer, der denn Interrupt auslöst, initialisieren
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void timer0_on(){
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/* TCCR0: FOC0 WGM00 COM01 COM00 WGM01 CS02 CS01 CS00
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CS02 CS01 CS00
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0 0 0 stop
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0 0 1 clk
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0 1 0 clk/8
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0 1 1 clk/64
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1 0 0 clk/256
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1 0 1 clk/1024
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*/
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TCCR0 = 0x0C; // CTC Mode, clk/64
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TCNT0 = 0; // reset timer
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OCR0 = 20; // Compare with this value
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TIMSK = 0x02; // Compare match Interrupt on
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}
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void borg_hw_init(){
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//Pins am Zeilenport auf Ausgang
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CTRLPORT |= (1<<PIN_EO3)|(1<<PIN_SHOW);
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CTRLDDR |= (1<<PIN_EO3) | (1<<PIN_CP4) | (1<<PIN_SHOW) | (1<<PIN_CP1) | (1<<PIN_CP2) | (1<<PIN_CP3);
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//Alle Spalten erstmal aus
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//Spalten Ports auf Ausgang
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COLDDR = 0xFF;
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COLPORT = 0x00;
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timer0_on();
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//Watchdog Timer aktivieren
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wdt_reset();
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wdt_enable(0x00); // 17ms Watchdog
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}
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@ -13,7 +13,8 @@ choice 'Hardware Driver' \
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Andre-borg HW_BORG_ANDRE \
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Laufschrift-borg HW_BORG_LS \
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Laufschrift-borg-mh HW_BORG_MH \
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Borg-mini HW_BORG_MINI" \
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Borg-mini HW_BORG_MINI \
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Panel-One HW_PANEL_ONE" \
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'Borg-16' BORG_HW
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@ -33,11 +34,14 @@ if [ "$BORG_HW" == "HW_BORG_MH" ] ; then
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source borg_hw/config_borg_mh.in
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fi
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if [ "$BORG_HW" == "HW_BORG_MINI" ] ; then
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source borg_hw/config_borg_mini.in
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fi
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if [ "$BORG_HW" == "HW_PANEL_ONE" ] ; then
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source borg_hw/config_panel_one.in
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fi
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@ -0,0 +1,6 @@
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mainmenu_option next_comment
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comment "Borg-mini port setup"
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endmenu
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@ -66,6 +66,7 @@ comment "Animations"
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dep_bool "Matrix" ANIMATION_MATRIX $RANDOM_SUPPORT
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dep_bool "Random bright" ANIMATION_RANDOM_BRIGHT $RANDOM_SUPPORT
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dep_bool "Game of Life" ANIMATION_GAMEOFLIFE $RANDOM_SUPPORT
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bool "M Herweg" ANIMATION_MHERWEG
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comment "Special Animations"
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bool "Test Animations" ANIMATION_TESTS
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@ -96,7 +96,7 @@ void display_loop(){
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break;
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#endif
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//#ifdef ANIMATION_RECTAGLES
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#ifdef ANIMATION_MHERWEG
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case 10:
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flydots();
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lines1();
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rectangle1();
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rectangles();
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break;
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//#endif
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#endif
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case 29:
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// mode = 1;
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break;
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