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DISP_S.ino
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DISP_S.ino
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/********************************************************************************************************************
* DISPLAY VERT MULTISEGMENTS (9)
*
* longeur : 2 * 48 = 96 pixels
* largeur : 9 * 7 pixels
*
* pins :
* clock -> 4
* d -> 5
* data -> 6
*
* #TODO ##### ## Mapping de ports arduino :
* #--------------------------
* #PORTD maps to Arduino digital pins 0 to 7
* #PORTD - The Port D Data Register - read/write
* #
* #PORTB maps to Arduino digital pins 8 to 13 The two high bits (6 & 7) map to the crystal pins and are not usable
* #PORTB - The Port B Data Register - read/write
*
* #PORTD = B10101000; // sets digital pins 7,5,3 HIGH
********************************************************************************************************************/
//#ifdef VERTICAL_DISPLAY
#if (defined MULTI_SEGMENT_DISPLAY)
// DRIVER 1 pins
#define pin_load 6
#define pin_clock 5
#define pin_data 4
void initlogicdisplay() {
// set the digital pin as output:
pinMode(pin_load, OUTPUT);
pinMode(pin_clock, OUTPUT);
pinMode(pin_data, OUTPUT);
}
void PulseClockPORT() {
PORTD &= B11011111;
PORTD |= B00100000;
}
void PulseClock() {
digitalWrite(pin_clock, HIGH);
//digitalWrite(pin_load, HIGH);
delayMicroseconds( 1 );
digitalWrite(pin_clock, LOW);
// digitalWrite(pin_load, LOW);
delayMicroseconds( 1 );
}
void renderalllines(int delayms, int bitplane) {
/*
byte seg = virtualdisplay[bitplane][i];
for(int j=7; j>=0 ; j--) {
digitalWrite( pin_data, bitRead( seg, j) );
PulseClock();
}
*/
digitalWrite(pin_load, LOW);
for( int i=XMAX-1 ; i >= 0 ; i-- ) {
shiftOut(pin_data, pin_clock, MSBFIRST, virtualdisplay[bitplane][i] ); //shiftOut(dataPin, clockPin, bitOrder, value)
}
#ifdef DOUBLE_DISPLAY
for( int i=XMAX-1 ; i >= 0 ; i-- ) {
shiftOut(pin_data, pin_clock, MSBFIRST, virtualdisplay2[bitplane][i] ); //shiftOut(dataPin, clockPin, bitOrder, value)
}
#endif
// DIPLAY ON
digitalWrite(pin_load, HIGH);
// WAIT FOR THE EYE TO SEE !
// delayMicroseconds( delayms );
// digitalWrite(pin_load, LOW);
}
void renderold() {
int PAUSE = 5000;
for(int j=0; j < BITPLANES ; j++) {
renderalllines( PAUSE, j );
}
}
void render() {
render( displayPause );
}
void render(int PAUSE) {
render( PAUSE, 4);
}
void render(int PAUSE, int option) {
switch( option ) {
case 1 :
{
/*
for(int i=0; i<= 4; i++){
if(i>3) render7linesPORTgrey( PAUSE, 0 );
if(i>2) render7linesPORTgrey( PAUSE, 1 );
if(i>1) render7linesPORTgrey( PAUSE, 2 );
if(i>0) render7linesPORTgrey( PAUSE, 3 );
if(i>0) render7linesPORTgrey( PAUSE, 3 );
}
*/
break;
}
case 2 :
{
renderalllines( PAUSE, 0 );
renderalllines( PAUSE, 1 );
renderalllines( PAUSE, 1 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 3 );
break;
}
case 3 :
{
renderalllines( PAUSE, 0 );
renderalllines( 3*PAUSE, 1 );
renderalllines( 8*PAUSE, 2 );
renderalllines( 17*PAUSE, 3 );
break;
}
case 4 :
{
renderalllines( PAUSE, 0 );
renderalllines( 2*PAUSE, 1 );
renderalllines( 4*PAUSE, 2 );
renderalllines( 8*PAUSE, 3 );
break;
}
case 5 :
{
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 0 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 1 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 1 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 3 );
renderalllines( PAUSE, 2 );
renderalllines( PAUSE, 3 );
break;
}
}
}
void rendermono() {
renderalllines( 3000, 0 );
}
#endif