#include #include #include "ibm.h" #include "device.h" #include "filters.h" #include "sound_opl.h" #include "sound.h" #include "sound_adlib.h" #include "sound_adlibgold.h" #include "sound_pas16.h" #include "sound_sb.h" #include "sound_sb_dsp.h" #include "sound_wss.h" #include "timer.h" #include "thread.h" int sound_card_current = 0; static int sound_card_last = 0; typedef struct { char name[32]; device_t *device; } SOUND_CARD; static SOUND_CARD sound_cards[] = { {"None", NULL}, {"Adlib", &adlib_device}, {"Sound Blaster 1.0", &sb_1_device}, {"Sound Blaster 1.5", &sb_15_device}, {"Sound Blaster 2.0", &sb_2_device}, {"Sound Blaster Pro v1", &sb_pro_v1_device}, {"Sound Blaster Pro v2", &sb_pro_v2_device}, {"Sound Blaster 16", &sb_16_device}, {"Sound Blaster AWE32", &sb_awe32_device}, {"Adlib Gold", &adgold_device}, {"Windows Sound System", &wss_device}, {"Pro Audio Spectrum 16", &pas16_device}, {"", NULL} }; int sound_card_available(int card) { if (sound_cards[card].device) return device_available(sound_cards[card].device); return 1; } char *sound_card_getname(int card) { return sound_cards[card].name; } device_t *sound_card_getdevice(int card) { return sound_cards[card].device; } int sound_card_has_config(int card) { if (!sound_cards[card].device) return 0; return sound_cards[card].device->config ? 1 : 0; } void sound_card_init() { if (sound_cards[sound_card_current].device) device_add(sound_cards[sound_card_current].device); sound_card_last = sound_card_current; } static struct { void (*poll)(void *p); void (*get_buffer)(int16_t *buffer, int len, void *p); void *priv; } sound_handlers[8]; static int sound_handlers_num; static int sound_poll_time = 0, sound_get_buffer_time = 0; int soundon = 1; static int16_t cd_buffer[CD_BUFLEN * 2]; static thread_t *sound_cd_thread_h; static event_t *sound_cd_event; static unsigned int cd_vol_l, cd_vol_r; void sound_set_cd_volume(unsigned int vol_l, unsigned int vol_r) { cd_vol_l = vol_l; cd_vol_r = vol_r; } static void sound_cd_thread(void *param) { while (1) { int c; thread_wait_event(sound_cd_event, -1); ioctl_audio_callback(cd_buffer, CD_BUFLEN*2); if (soundon) { for (c = 0; c < CD_BUFLEN*2; c += 2) { cd_buffer[c] = ((int32_t)cd_buffer[c] * cd_vol_l) / 65535; cd_buffer[c+1] = ((int32_t)cd_buffer[c+1] * cd_vol_r) / 65535; } givealbuffer_cd(cd_buffer); } } } static uint16_t *outbuffer; void sound_init() { initalmain(0,NULL); inital(); outbuffer = malloc(SOUNDBUFLEN * 2 * sizeof(int16_t)); sound_cd_event = thread_create_event(); sound_cd_thread_h = thread_create(sound_cd_thread, NULL); } void sound_add_handler(void (*poll)(void *p), void (*get_buffer)(int16_t *buffer, int len, void *p), void *p) { sound_handlers[sound_handlers_num].poll = poll; sound_handlers[sound_handlers_num].get_buffer = get_buffer; sound_handlers[sound_handlers_num].priv = p; sound_handlers_num++; } void sound_poll(void *priv) { int c; sound_poll_time += (int)((double)TIMER_USEC * (1000000.0 / 48000.0)); for (c = 0; c < sound_handlers_num; c++) sound_handlers[c].poll(sound_handlers[c].priv); } FILE *soundf; void sound_get_buffer(void *priv) { int c; sound_get_buffer_time += (TIMER_USEC * (1000000 / 10)); memset(outbuffer, 0, SOUNDBUFLEN * 2 * sizeof(int16_t)); for (c = 0; c < sound_handlers_num; c++) sound_handlers[c].get_buffer(outbuffer, SOUNDBUFLEN, sound_handlers[c].priv); /* if (!soundf) soundf=fopen("sound.pcm","wb"); fwrite(outbuffer,(SOUNDBUFLEN)*2*2,1,soundf);*/ if (soundon) givealbuffer(outbuffer); thread_set_event(sound_cd_event); } void sound_reset() { timer_add(sound_poll, &sound_poll_time, TIMER_ALWAYS_ENABLED, NULL); timer_add(sound_get_buffer, &sound_get_buffer_time, TIMER_ALWAYS_ENABLED, NULL); sound_handlers_num = 0; sound_set_cd_volume(65535, 65535); ioctl_audio_stop(); }