成功点亮!

This commit is contained in:
unlockable
2023-08-24 17:14:38 +08:00
parent 648e36fdce
commit 1cdc07778e
2 changed files with 114 additions and 71 deletions

View File

@@ -1,85 +1,50 @@
#include "TimerOne.h"
const byte cath_low = 3, cath_high = 2;
const byte anode_start = 4;
byte status = 0;
byte layer = 0;
void setup() {
pinMode(cath_low, OUTPUT);
pinMode(cath_high, OUTPUT);
for (int i = 0; i < 4; i++) {
pinMode(anode_start + i, OUTPUT);
Serial.begin(115200);
for (int i = 0; i < 8; i++) {
pinMode(22 + i, OUTPUT);
}
// pinMode(30, OUTPUT);
// pinMode(31, OUTPUT);
for (int i = 0; i < 8; i++) {
pinMode(30 + i, OUTPUT);
}
Serial.begin(115200);
Timer1.initialize();
Timer1.setPeriod(1000);
Timer1.attachInterrupt(displayOneLayer);
for (int i = 0; i < 8; i++) {
pinMode(38 + i, OUTPUT);
}
}
byte LED_status = 0;
byte currentDisplayLayer = 0;
int column = 0;
void loop() {
// if (Serial.available()) {
// char input = Serial.read();
// if (input >= '0' && input < '9') {
// int LED_num = input - '0';
// LED_status ^= 1 << LED_num;
// }
// }
// for (int i = 0; i < 8; i++) {
// LED_status ^= 1 << i;
// delay(75);
// }
if (Serial.available()) {
int num = Serial.read();
if (num >= '0' && num <= '7') {
num = num - '0';
status ^= 1 << num;
int count = 0;
while (true) {
randomSeed(analogRead(0));
int num = random(0, 8);
if (!(LED_status & (1 << num))) {
count++;
LED_status ^= 1 << num;
delay(100);
}
if (count >= 8) {
break;
}
}
for (int i = 0; i < 8; i++) {
digitalWrite(22 + i, status >> i & 1);
}
delay(500);
while (true) {
randomSeed(analogRead(0));
int num = random(0, 8);
if (LED_status & (1 << num)) {
count--;
LED_status ^= 1 << num;
delay(100);
Serial.println(status, BIN);
} else if (num >= 'a' && num <= 'h') {
num = num - 'a';
column = num;
Serial.print("LOAD");
Serial.print(num);
Serial.println(status, BIN);
digitalWrite(30 + column, HIGH);
digitalWrite(30 + column, LOW);
}
if (count <= 0) {
break;
else if (num == 'z') {
digitalWrite(38 + layer, LOW);
layer = (layer + 1) % 8;
digitalWrite(38 + layer, HIGH);
}
}
delay(500);
}
void displayOneLayer() {
// Serial.println(LED_status, BIN);
currentDisplayLayer = (currentDisplayLayer + 1) % 2;
if (currentDisplayLayer == 0) {
digitalWrite(cath_high, LOW);
for (int i = 0; i < 4; i++) {
digitalWrite(anode_start + i, (LED_status >> i) & 1);
}
digitalWrite(cath_low, HIGH);
} else {
digitalWrite(cath_low, LOW);
for (int i = 0; i < 4; i++) {
digitalWrite(anode_start + i, (LED_status >> (i + 4)) & 1);
}
digitalWrite(cath_high, HIGH);
}
}