2024-08-08 13:12:37 -07:00
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#include "ymglue.h"
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#include "ymfm_opm.h"
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#include <cstdint>
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class ym2151_interface : public ymfm::ymfm_interface {
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public:
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ym2151_interface():
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m_chip(*this),
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m_timers{0, 0},
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m_busy_timer{ 0 },
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m_irq_status{ false }
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{ }
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~ym2151_interface() { }
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virtual void ymfm_sync_mode_write(uint8_t data) override {
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m_engine->engine_mode_write(data);
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}
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virtual void ymfm_sync_check_interrupts() override {
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m_engine->engine_check_interrupts();
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}
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virtual void ymfm_set_timer(uint32_t tnum, int32_t duration_in_clocks) override {
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if (tnum >= 2) return;
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m_timers[tnum] = duration_in_clocks;
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}
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virtual void ymfm_set_busy_end(uint32_t clocks) override {
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m_busy_timer = clocks;
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}
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virtual bool ymfm_is_busy() override {
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return m_busy_timer > 0;
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}
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virtual void ymfm_update_irq(bool asserted) override {
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m_irq_status = asserted;
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}
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void update_clocks(int cycles) {
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m_busy_timer = std::max(0, m_busy_timer - (64 * cycles));
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for (int i = 0; i < 2; ++i) {
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if (m_timers[i] > 0) {
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m_timers[i] = std::max(0, m_timers[i] - (64 * cycles));
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if (m_timers[i] <= 0) {
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m_engine->engine_timer_expired(i);
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}
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}
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}
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}
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void write(uint8_t addr, uint8_t value) {
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if (!ymfm_is_busy()) {
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m_chip.write_address(addr);
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m_chip.write_data(value);
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} else {
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printf("YM2151 write received while busy.\n");
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}
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}
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void generate(int16_t* output, uint32_t numsamples) {
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int s = 0;
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int ls, rs;
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update_clocks(numsamples);
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for (uint32_t i = 0; i < numsamples; i++) {
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m_chip.generate(&opm_out);
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ls = opm_out.data[0];
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rs = opm_out.data[1];
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if (ls < -32768) ls = -32768;
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if (ls > 32767) ls = 32767;
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if (rs < -32768) rs = -32768;
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if (rs > 32767) rs = 32767;
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output[s++] = ls;
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output[s++] = rs;
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}
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}
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uint8_t read_status() {
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return m_chip.read_status();
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}
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bool irq() {
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return m_irq_status;
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}
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2024-10-15 10:05:18 -07:00
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void reset() {
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m_chip.reset();
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m_timers[0] = 0;
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m_timers[1] = 0;
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m_busy_timer = 0;
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m_irq_status = false;
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opm_out.clear();
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}
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2024-08-08 13:12:37 -07:00
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private:
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ymfm::ym2151 m_chip;
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int32_t m_timers[2];
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int32_t m_busy_timer;
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bool m_irq_status;
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ymfm::ym2151::output_data opm_out;
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};
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namespace {
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ym2151_interface opm_iface;
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bool initialized = false;
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}
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extern "C" {
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void YM_Create(int clock) {
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// clock is fixed at 3.579545MHz
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}
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void YM_init(int sample_rate, int frame_rate) {
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// args are ignored
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initialized = true;
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}
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2024-10-14 21:27:16 -07:00
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void YM_stream_update(int16_t* output, uint32_t numsamples) {
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if (initialized) opm_iface.generate(output, numsamples);
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2024-08-08 13:12:37 -07:00
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}
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void YM_write_reg(uint8_t reg, uint8_t val) {
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if (initialized) opm_iface.write(reg, val);
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}
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2024-10-15 10:05:18 -07:00
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void YM_reset() {
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opm_iface.reset();
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}
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2024-08-08 13:12:37 -07:00
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uint8_t YM_read_status() {
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if (initialized)
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return opm_iface.read_status();
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else
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return 0x00; // prevent programs that wait for the busy flag to clear from locking up (emulator compromise)
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}
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bool YM_irq() {
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if (initialized)
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return opm_iface.irq();
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else
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return false;
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}
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}
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