177 lines
5.2 KiB
C++
177 lines
5.2 KiB
C++
#include <FatReader.h>
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#include <SdReader.h>
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#include <avr/pgmspace.h>
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#include "WaveUtil.h"
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#include "WaveHC.h"
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SdReader card; // This object holds the information for the card
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FatVolume vol; // This holds the information for the partition on the card
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FatReader root; // This holds the information for the filesystem on the card
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FatReader f; // This holds the information for the file we're play
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WaveHC wave; // This is the only wave (audio) object, since we will only play one at a time
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byte rele[12] = { 9, 10, 11, 12, 13, 14, 15, 1, 2, 3, 4, 5};
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uint16_t val_shift; //Valor del shift register
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const uint8_t dataPin=8;
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const uint8_t latchPin=6;
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const uint8_t clockPin=7;
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void resetshift()
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{
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val_shift = 0x0000;
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digitalWrite(latchPin, LOW);
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byte registerTwo = highByte(val_shift);
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byte registerOne = lowByte(val_shift);
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shiftOut(dataPin, clockPin, MSBFIRST, registerOne);
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shiftOut(dataPin, clockPin, MSBFIRST, registerTwo);
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digitalWrite(latchPin, HIGH);
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}
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void shiftWrite(uint8_t pin, uint8_t state)
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{
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bitWrite(val_shift, pin, state);
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digitalWrite(latchPin, LOW);
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byte registerTwo = highByte(val_shift);
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byte registerOne = lowByte(val_shift);
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shiftOut(dataPin, clockPin, MSBFIRST, registerOne);
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shiftOut(dataPin, clockPin, MSBFIRST, registerTwo);
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digitalWrite(latchPin, HIGH);
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}
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// this handy function will return the number of bytes currently free in RAM, great for debugging!
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int freeRam(void)
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{
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extern int __bss_end;
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extern int *__brkval;
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int free_memory;
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if((int)__brkval == 0) {
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free_memory = ((int)&free_memory) - ((int)&__bss_end);
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}
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else {
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free_memory = ((int)&free_memory) - ((int)__brkval);
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}
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return free_memory;
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}
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void sdErrorCheck(void)
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{
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if (!card.errorCode()) return;
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putstring("\n\rSD I/O error: ");
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Serial.print(card.errorCode(), HEX);
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putstring(", ");
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Serial.println(card.errorData(), HEX);
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while(1);
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}
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// Plays a full file from beginning to end with no pause.
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void playcomplete(char *name) {
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// call our helper to find and play this name
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playfile(name);
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while (wave.isplaying);
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}
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void playfile(char *name) {
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// see if the wave object is currently doing something
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if (wave.isplaying) {// already playing something, so stop it!
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wave.stop(); // stop it
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}
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// look in the root directory and open the file
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if (!f.open(root, name)) {
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putstring("Couldn't open file "); Serial.print(name); return;
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}
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// OK read the file and turn it into a wave object
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if (!wave.create(f)) {
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putstring_nl("Not a valid WAV"); return;
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}
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// ok time to play! start playback
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wave.play();
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}
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void setup() {
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byte i;
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// set up serial port
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Serial.begin(9600);
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putstring_nl("WaveHC");
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putstring("Free RAM: "); // This can help with debugging, running out of RAM is bad
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Serial.println(freeRam()); // if this is under 150 bytes it may spell trouble!
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// Set the output pins for the DAC control. This pins are defined in the library
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pinMode(2, OUTPUT);
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pinMode(3, OUTPUT);
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pinMode(4, OUTPUT);
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pinMode(5, OUTPUT);
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pinMode(dataPin, OUTPUT);
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pinMode(latchPin, OUTPUT);
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pinMode(clockPin, OUTPUT);
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resetshift();
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// pin13 LED
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pinMode(13, OUTPUT);
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// if (!card.init(true)) { //play with 4 MHz spi if 8MHz isn't working for you
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if (!card.init()) { //play with 8 MHz spi (default faster!)
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putstring_nl("Card init. failed!"); // Something went wrong, lets print out why
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sdErrorCheck();
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while(1); // then 'halt' - do nothing!
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}
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// enable optimize read - some cards may timeout. Disable if you're having problems
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card.partialBlockRead(true);
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// Now we will look for a FAT partition!
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uint8_t part;
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for (part = 0; part < 5; part++) { // we have up to 5 slots to look in
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if (vol.init(card, part))
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break; // we found one, lets bail
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}
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if (part == 5) { // if we ended up not finding one :(
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putstring_nl("No valid FAT partition!");
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sdErrorCheck(); // Something went wrong, lets print out why
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while(1); // then 'halt' - do nothing!
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}
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// Lets tell the user about what we found
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putstring("Using partition ");
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Serial.print(part, DEC);
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putstring(", type is FAT");
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Serial.println(vol.fatType(),DEC); // FAT16 or FAT32?
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// Try to open the root directory
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if (!root.openRoot(vol)) {
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putstring_nl("Can't open root dir!"); // Something went wrong,
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while(1); // then 'halt' - do nothing!
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}
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// Whew! We got past the tough parts.
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putstring_nl("Ready!");
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}
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void note(boolean r0, boolean r1, boolean r2, boolean r3, boolean r4, boolean r5, boolean r6, boolean r7, boolean r8, boolean r9, boolean r10, boolean r11, unsigned int time)
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{
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shiftWrite(rele[0], r0);
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shiftWrite(rele[1], r1);
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shiftWrite(rele[2], r2);
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shiftWrite(rele[3], r3);
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shiftWrite(rele[4], r4);
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shiftWrite(rele[5], r5);
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shiftWrite(rele[6], r6);
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shiftWrite(rele[7], r7);
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shiftWrite(rele[8], r8);
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shiftWrite(rele[9], r9);
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shiftWrite(rele[10], r10);
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shiftWrite(rele[11], r11);
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for (unsigned int i=0; i<time; i++) delay(1000);
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}
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void loop() {
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playfile("AUDIO.WAV");
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note(0,0,0,0,0,0,0,0,0,0,0,0, 20);
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note(0,0,0,0,1,0,0,0,1,0,0,0, 20);
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}
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