133 lines
3.7 KiB
C++
133 lines
3.7 KiB
C++
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#define ___fred_function function
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#undef function
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#include <alsa/asoundlib.h>
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#include <poll.h>
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#define function ___fred_function
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internal void
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linux_default_mix_sources(void *ctx, f32 *mix_buffer, u32 sample_count)
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{
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}
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internal void
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linux_default_mix_destination(i16 *dst, f32 *src, u32 sample_count)
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{
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u32 opl = sample_count*2;
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for(u32 i = 0; i < sample_count; i += 1){
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dst[i] = (i16)src[i];
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}
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}
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internal struct alsa_funcs {
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#define ALSA_FN(r,n,a) r (*n) a;
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#include "alsa_funcs.txt"
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#undef ALSA_FN
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} snd_pcm;
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internal void
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linux_submit_audio(snd_pcm_t* pcm, i16* samples, u32 sample_count, f32* mix_buffer)
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{
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Audio_Mix_Sources_Function *audio_mix_src;
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Audio_Mix_Destination_Function *audio_mix_dst;
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pthread_mutex_lock(&linuxvars.audio_mutex);
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audio_mix_src = linuxvars.audio_src_func;
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audio_mix_dst = linuxvars.audio_dst_func;
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void* audio_ctx = linuxvars.audio_ctx;
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pthread_mutex_unlock(&linuxvars.audio_mutex);
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if(!audio_mix_src) {
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audio_mix_src = linux_default_mix_sources;
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}
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if(!audio_mix_dst) {
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audio_mix_dst = linux_default_mix_destination;
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}
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audio_mix_src(audio_ctx, mix_buffer, sample_count);
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audio_mix_dst(samples, mix_buffer, sample_count);
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int err = snd_pcm.writei(pcm, samples, sample_count);
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if(err < 0){
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snd_pcm.recover(pcm, err, 1);
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}
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}
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#define chk(x) ({\
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int err = (x);\
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if(err < 0){\
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fprintf(stderr, "ALSA ERR: %s: [%d]\n", #x, err);\
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}\
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})
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internal void
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linux_audio_main(void* _unused)
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{
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const u32 SamplesPerSecond = 48000;
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const u32 SamplesPerBuffer = 16*SamplesPerSecond/1000;
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const u32 ChannelCount = 2;
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const u32 BytesPerSample = 2; // S16LE
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const u32 BufferSize = SamplesPerBuffer * BytesPerSample;
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const u32 BufferCount = 3;
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const u32 MixBufferSize = (SamplesPerBuffer * ChannelCount * sizeof(f32));
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const u32 SampleBufferSize = (SamplesPerBuffer * ChannelCount * sizeof(i16));
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void* lib = dlopen("libasound.so.2", RTLD_LOCAL | RTLD_LAZY);
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if(!lib) {
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fprintf(stderr, "failed to load libasound.so.2: %s", dlerror());\
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return;
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}
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#define ALSA_FN(r,n,a)\
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*((void**)&snd_pcm.n) = (void*)dlsym(lib, stringify(snd_pcm_##n));\
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if(!snd_pcm.n){\
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fprintf(stderr, "failed to load alsa func: %s", #n);\
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return;\
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}
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#include "alsa_funcs.txt"
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#undef ALSA_FN
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snd_pcm_t* pcm;
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chk( snd_pcm.open(&pcm, "default", SND_PCM_STREAM_PLAYBACK, 0));
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snd_pcm_hw_params_t* hw;
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chk( snd_pcm.hw_params_malloc (&hw));
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chk( snd_pcm.hw_params_any (pcm, hw));
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chk( snd_pcm.hw_params_set_access (pcm, hw, SND_PCM_ACCESS_RW_INTERLEAVED));
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chk( snd_pcm.hw_params_set_format (pcm, hw, SND_PCM_FORMAT_S16_LE));
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chk( snd_pcm.hw_params_set_channels (pcm, hw, ChannelCount));
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chk( snd_pcm.hw_params_set_rate (pcm, hw, SamplesPerSecond, 0));
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chk( snd_pcm.hw_params_set_buffer_size (pcm, hw, BufferSize * BufferCount));
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chk( snd_pcm.hw_params (pcm, hw));
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snd_pcm.hw_params_free (hw);
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int fd_count = snd_pcm.poll_descriptors_count(pcm);
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struct pollfd* fds = (struct pollfd*)calloc(fd_count, sizeof(struct pollfd));
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snd_pcm.poll_descriptors(pcm, fds, fd_count);
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for(;;) {
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int n = poll(fds, fd_count, -1);
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if(n == -1) {
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perror("poll");
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continue;
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}
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f32* MixBuffer = (f32*)calloc(1, MixBufferSize);
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i16* SampleBuffer = (i16*)calloc(1, SampleBufferSize);
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if(!MixBuffer || !SampleBuffer) {
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perror("calloc");
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continue;
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}
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linux_submit_audio(pcm, SampleBuffer, SamplesPerBuffer, MixBuffer);
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free(MixBuffer);
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free(SampleBuffer);
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}
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}
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#undef chk
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