#include #include #include "ibm.h" #include "io.h" #include "sound_opl.h" #include "sound_dbopl.h" /*Interfaces between PCem and the actual OPL emulator*/ uint8_t opl2_read(uint16_t a, void *priv) { opl_t *opl = (opl_t *)priv; cycles -= (int)(isa_timing * 8); return opl_read(0, a); } void opl2_write(uint16_t a, uint8_t v, void *priv) { opl_t *opl = (opl_t *)priv; opl_write(0, a, v); opl_write(1, a, v); } uint8_t opl2_l_read(uint16_t a, void *priv) { opl_t *opl = (opl_t *)priv; cycles -= (int)(isa_timing * 8); return opl_read(0, a); } void opl2_l_write(uint16_t a, uint8_t v, void *priv) { opl_t *opl = (opl_t *)priv; opl_write(0, a, v); } uint8_t opl2_r_read(uint16_t a, void *priv) { opl_t *opl = (opl_t *)priv; cycles -= (int)(isa_timing * 8); return opl_read(1, a); } void opl2_r_write(uint16_t a, uint8_t v, void *priv) { opl_t *opl = (opl_t *)priv; opl_write(1, a, v); } uint8_t opl3_read(uint16_t a, void *priv) { opl_t *opl = (opl_t *)priv; cycles -= (int)(isa_timing * 8); return opl_read(0, a); } void opl3_write(uint16_t a, uint8_t v, void *priv) { opl_t *opl = (opl_t *)priv; opl_write(0, a, v); } void opl2_poll(opl_t *opl, int16_t *bufl, int16_t *bufr) { opl2_update(0, bufl, 1); opl2_update(1, bufr, 1); opl->filtbuf[0] = *bufl = ((*bufl) / 4) + ((opl->filtbuf[0] * 11) / 16); opl->filtbuf[1] = *bufr = ((*bufr) / 4) + ((opl->filtbuf[1] * 11) / 16); if (opl->timers_enable[0][0]) { opl->timers[0][0]--; if (opl->timers[0][0] < 0) opl_timer_over(0, 0); } if (opl->timers_enable[0][1]) { opl->timers[0][1]--; if (opl->timers[0][1] < 0) opl_timer_over(0, 1); } if (opl->timers_enable[1][0]) { opl->timers[1][0]--; if (opl->timers[1][0] < 0) opl_timer_over(1, 0); } if (opl->timers_enable[1][1]) { opl->timers[1][1]--; if (opl->timers[1][1] < 0) opl_timer_over(1, 1); } } void opl3_poll(opl_t *opl, int16_t *bufl, int16_t *bufr) { opl3_update(0, bufl, bufr, 1); opl->filtbuf[0] = *bufl = ((*bufl) / 4) + ((opl->filtbuf[0] * 11) / 16); opl->filtbuf[1] = *bufr = ((*bufr) / 4) + ((opl->filtbuf[1] * 11) / 16); if (opl->timers_enable[0][0]) { opl->timers[0][0]--; if (opl->timers[0][0] < 0) { opl->timers_enable[0][0] = 0; opl_timer_over(0, 0); } } if (opl->timers_enable[0][1]) { opl->timers[0][1]--; if (opl->timers[0][1] < 0) { opl->timers_enable[0][1] = 0; opl_timer_over(0, 1); } } } void ym3812_timer_set_0(void *param, int timer, int64_t period) { opl_t *opl = (opl_t *)param; opl->timers[0][timer] = period / 20833; if (!opl->timers[0][timer]) opl->timers[0][timer] = 1; opl->timers_enable[0][timer] = period ? 1 : 0; } void ym3812_timer_set_1(void *param, int timer, int64_t period) { opl_t *opl = (opl_t *)param; opl->timers[1][timer] = period / 20833; if (!opl->timers[1][timer]) opl->timers[1][timer] = 1; opl->timers_enable[1][timer] = period ? 1 : 0; } void ymf262_timer_set(void *param, int timer, int64_t period) { opl_t *opl = (opl_t *)param; opl->timers[0][timer] = period / 20833; if (!opl->timers[0][timer]) opl->timers[0][timer] = 1; opl->timers_enable[0][timer] = period ? 1 : 0; } void opl2_init(opl_t *opl) { opl_init(ym3812_timer_set_0, opl, 0, 0); opl_init(ym3812_timer_set_1, opl, 1, 0); } void opl3_init(opl_t *opl) { opl_init(ymf262_timer_set, opl, 0, 1); }