README, a bit of optimisation and gitignore
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.gitignore
vendored
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2
.gitignore
vendored
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@ -0,0 +1,2 @@
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Makefile
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build*/*
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@ -29,27 +29,19 @@ const byte ICtable[9]={
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B00000000 //une façon de boucler sur 0
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};
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/*
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void selectIC(int outputPin){
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//for (int i=0; i<3; i++){
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// digitalWrite(ICPins[i], ICtable[outputPin][i]);
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//}
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PORTB=ICtable[outputPin];
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}
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*/
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void writeCube(int tdelay){
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static int currentLayer=0;
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unsigned long startedAt = millis();
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while(millis() - startedAt < tdelay){
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delay(1);// wait a bit on previous layer
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digitalWrite(layersPins[currentLayer],LOW);//turn off current Layer
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//turn off all layers
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for(int pin=0; pin<8; pin++){
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digitalWrite(layersPins[pin],LOW);
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}
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//change currentLayer
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if(currentLayer == 8)
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currentLayer=0;
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else
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currentLayer++;
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digitalWrite(pinOE, HIGH);//Output Enabled off
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//lines
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@ -59,19 +51,12 @@ void writeCube(int tdelay){
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for (int led=0;led <8;led++){
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digitalWrite(busPins[led], cube[currentLayer][ligne][led]);
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}
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PORTB=ICtable[ligne +1]; //74HC574 is writed when clock pin goes LOW to HIGH. SO go to the next value for IC.
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PORTB=ICtable[ligne +1]; //74HC574 is writen when clock pin goes LOW to HIGH. SO go to the next value for IC.
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}
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//OE ON
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digitalWrite(pinOE, LOW);
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//layer on
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digitalWrite(layersPins[currentLayer],HIGH);
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//change currentLayer
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if(currentLayer == 8)
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currentLayer=0;
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else
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currentLayer++;
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}
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}
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void fillCube(){
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@ -107,17 +92,6 @@ void setup(){
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}
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void loop(){
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/*
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for (int i=0;i<8;i++){
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for(int j=0;j<8;j++){
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for(int k=0;k<8;k++){
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cube[i][j][k]=HIGH;
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writeCube(100);
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cube[i][j][k]=LOW;
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}
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}
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}
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*/
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//remplir tout le layer haut
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for(int i=0;i<8;i++){
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for(int j=0;j<8;j++){
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@ -148,7 +122,4 @@ void loop(){
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}
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}
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}
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6
README.md
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6
README.md
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@ -0,0 +1,6 @@
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# Arduino's low level code for cube led 8x8x8
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Simplifying the code founded everywhere.
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Read [Electronique et Code de bas niveau du cube led 8x8x8](https://blog-du-grouik.tinad.fr/post/Code-de-bas-niveau-du-cube-led-8x8x8) on my web blog for more explanations.
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