130 lines
2.9 KiB
C
130 lines
2.9 KiB
C
#include <3ds.h>
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#define DR_FLAC_IMPLEMENTATION
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#include <./dr_libs/dr_flac.h>
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#include "all.h"
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#define SAMPLES_TO_READ (16 * 1024)
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int playFlac(const char* in)
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{
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drflac* pFlac = drflac_open_file(in);
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s16* buffer1 = linearAlloc(SAMPLES_TO_READ * sizeof(s16));
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s16* buffer2 = linearAlloc(SAMPLES_TO_READ * sizeof(s16));
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ndspWaveBuf waveBuf[2];
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bool playing = true;
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bool lastbuf = false;
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if (pFlac == NULL) {
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return -1;
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}
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if(R_FAILED(ndspInit()))
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{
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printf("Initialising ndsp failed.");
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goto out;
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}
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printf("\nRate: %lu\tChan: %d\n", pFlac->sampleRate,
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pFlac->channels);
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ndspChnReset(CHANNEL);
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ndspChnWaveBufClear(CHANNEL);
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ndspSetOutputMode(NDSP_OUTPUT_STEREO);
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ndspChnSetInterp(CHANNEL, NDSP_INTERP_POLYPHASE);
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ndspChnSetRate(CHANNEL, pFlac->sampleRate);
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ndspChnSetFormat(CHANNEL, pFlac->channels == 2 ? NDSP_FORMAT_STEREO_PCM16 :
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NDSP_FORMAT_MONO_PCM16);
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memset(waveBuf, 0, sizeof(waveBuf));
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waveBuf[0].nsamples =
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drflac_read_s16(pFlac, SAMPLES_TO_READ, buffer1) / pFlac->channels;
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waveBuf[0].data_vaddr = &buffer1[0];
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ndspChnWaveBufAdd(CHANNEL, &waveBuf[0]);
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waveBuf[1].nsamples =
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drflac_read_s16(pFlac, SAMPLES_TO_READ, buffer2) / pFlac->channels;
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waveBuf[1].data_vaddr = &buffer2[0];
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ndspChnWaveBufAdd(CHANNEL, &waveBuf[1]);
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printf("Playing %s\n", in);
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/**
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* There may be a chance that the music has not started by the time we get
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* to the while loop. So we ensure that music has started here.
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*/
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while(ndspChnIsPlaying(CHANNEL) == false);
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while(playing == false || ndspChnIsPlaying(CHANNEL) == true)
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{
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u32 kDown;
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/* Number of bytes read from file.
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* Static only for the purposes of the printf debug at the bottom.
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*/
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static size_t read = 0;
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gfxSwapBuffers();
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gfxFlushBuffers();
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gspWaitForVBlank();
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hidScanInput();
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kDown = hidKeysDown();
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if(kDown & KEY_B)
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break;
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if(kDown & (KEY_A | KEY_R))
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{
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playing = !playing;
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printf("\33[2K\r%s", playing == false ? "Paused" : "");
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}
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if(playing == false || lastbuf == true)
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continue;
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if(waveBuf[0].status == NDSP_WBUF_DONE)
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{
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read = drflac_read_s16(pFlac, SAMPLES_TO_READ, buffer1);
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if(read == 0)
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{
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lastbuf = true;
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continue;
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}
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else if(read < SAMPLES_TO_READ)
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waveBuf[0].nsamples = read / pFlac->channels;
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ndspChnWaveBufAdd(CHANNEL, &waveBuf[0]);
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}
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if(waveBuf[1].status == NDSP_WBUF_DONE)
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{
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read = drflac_read_s16(pFlac, SAMPLES_TO_READ, buffer2);
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if(read == 0)
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{
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lastbuf = true;
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continue;
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}
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else if(read < SAMPLES_TO_READ)
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waveBuf[1].nsamples = read / pFlac->channels;
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ndspChnWaveBufAdd(CHANNEL, &waveBuf[1]);
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}
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DSP_FlushDataCache(buffer1, SAMPLES_TO_READ * sizeof(s16));
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DSP_FlushDataCache(buffer2, SAMPLES_TO_READ * sizeof(s16));
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}
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printf("\nEnd of file.");
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out:
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printf("\nStopping Flac playback.\n");
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ndspChnWaveBufClear(CHANNEL);
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ndspExit();
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linearFree(buffer1);
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linearFree(buffer2);
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drflac_close(pFlac);
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return 0;
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}
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