mirror of
https://github.com/JorjBauer/aiie.git
synced 2024-10-11 16:23:40 +00:00
161 lines
3.6 KiB
C++
161 lines
3.6 KiB
C++
#include "sdl-speaker.h"
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#include <pthread.h>
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extern "C"
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{
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#include <SDL.h>
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#include <SDL_thread.h>
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};
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#include "timeutil.h"
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#include "globals.h"
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// FIXME: Globals; ick.
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static pthread_t speakerThreadID;
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static uint8_t curSpeakerData = 0x00;
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static volatile uint16_t bufIdx = 0;
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static uint8_t soundBuf[4096];
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static pthread_mutex_t mutex = PTHREAD_MUTEX_INITIALIZER;
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static uint64_t hitcount;
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static uint64_t misscount;
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static uint64_t copycount = 0;
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static void audioCallback(void *unused, Uint8 *stream, int len)
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{
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pthread_mutex_lock(&mutex);
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if (bufIdx >= len) {
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memcpy(stream, soundBuf, len);
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if (bufIdx > len) {
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// move the remaining data down
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memcpy(soundBuf, &soundBuf[len], bufIdx - len);
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bufIdx -= len;
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copycount += len;
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}
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} else {
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// Audio underrun
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memset(stream, 0, len);
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}
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pthread_mutex_unlock(&mutex);
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}
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static void *speaker_thread(void *dummyptr) {
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struct timespec currentTime;
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struct timespec startTime;
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struct timespec nextSampleTime;
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pthread_mutex_init(&mutex, NULL);
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SDL_AudioSpec audioDevice;
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SDL_AudioSpec audioActual;
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SDL_memset(&audioDevice, 0, sizeof(audioDevice));
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audioDevice.freq = 22050;
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audioDevice.format = AUDIO_U8;
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audioDevice.channels = 1;
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audioDevice.samples = 2048; // 2048 bytes @ 22050Hz is about 1/10th second out of sync - should be okay for this testing
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audioDevice.callback = audioCallback;
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audioDevice.userdata = NULL;
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SDL_OpenAudio(&audioDevice, &audioActual); // FIXME retval
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printf("Actual: freq %d channels %d samples %d\n",
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audioActual.freq, audioActual.channels, audioActual.samples);
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_init_darwin_shim();
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do_gettime(&startTime);
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do_gettime(&nextSampleTime);
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SDL_PauseAudio(0);
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uint64_t sampleCount = 0;
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while (1) {
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do_gettime(¤tTime);
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struct timespec diff = tsSubtract(nextSampleTime, currentTime);
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if (diff.tv_sec >= 0 && diff.tv_nsec >= 0) {
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nanosleep(&diff, NULL);
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hitcount++;
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} else
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misscount++;
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if ((sampleCount & 0xFFFF) == 0) {
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printf("sound hit: %lld miss: %lld copy: %lld\n", hitcount, misscount, copycount);
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}
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pthread_mutex_lock(&mutex);
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soundBuf[bufIdx++] = curSpeakerData & 0xFF;
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if (bufIdx >= sizeof(soundBuf)) {
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// Audio overrun; start dropping data
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bufIdx--;
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}
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pthread_mutex_unlock(&mutex);
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// set nextSampleTime to the absolute reference time of when the
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// next sample should start (based on our start time).
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timespec_add_us(&startTime, (sampleCount * 1000000) / 22050 , &nextSampleTime);
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sampleCount++;
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}
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}
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SDLSpeaker::SDLSpeaker()
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{
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toggleState = false;
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needsToggle = false;
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mixerValue = 0;
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_init_darwin_shim(); // set up the clock interface
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if (!pthread_create(&speakerThreadID, NULL, &speaker_thread, (void *)NULL)) {
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printf("speaker thread created\n");
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}
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}
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SDLSpeaker::~SDLSpeaker()
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{
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pclose(f);
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}
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void SDLSpeaker::toggle()
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{
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needsToggle = true;
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}
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void SDLSpeaker::maintainSpeaker(uint32_t c)
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{
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if (needsToggle) {
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// Override the mixer with a 1-bit "Terribad" audio sample change
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toggleState = !toggleState;
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needsToggle = false;
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}
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// The "terribad" audio gets two shares. THis means we've got 8 total
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// "voices" -- 6 from the mockingboard and 2 from the built-in. 8 is
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// a great number for dividing. :)
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mixerValue += (toggleState ? 0xFF : 0x00);
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numMixed += 2;
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if (numMixed != 8) {
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printf("SPEAKER FAIL - should always be 8\n");
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}
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mixerValue >>= 3; // divide by 8
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// FIXME: g_volume
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curSpeakerData = mixerValue & 0xFF;
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}
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void SDLSpeaker::beginMixing()
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{
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mixerValue = 0;
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numMixed = 0;
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}
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void SDLSpeaker::mixOutput(uint8_t v)
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{
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mixerValue += v;
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numMixed++;
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}
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