mirror of
https://github.com/ekeeke/Genesis-Plus-GX.git
synced 2024-12-29 04:31:49 +01:00
fixed YM2612 reset on "soft reset"
small optimizations & fixes in FIR resampler code
This commit is contained in:
parent
f734e2fade
commit
f44d38b537
@ -146,6 +146,7 @@ void gen_reset(uint32 hard_reset)
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/* Reset CPUs */
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/* Reset CPUs */
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resetline = -1;
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resetline = -1;
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gen_running = 1;
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gen_running = 1;
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fm_reset(0);
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m68k_pulse_reset();
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m68k_pulse_reset();
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z80_reset();
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z80_reset();
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}
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}
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@ -214,8 +215,8 @@ void gen_reset_w(uint32 state)
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}
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}
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/* Reset Z80 & YM2612 */
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/* Reset Z80 & YM2612 */
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fm_reset(mcycles_68k);
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z80_reset();
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z80_reset();
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fm_reset();
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/* update Z80 bus status */
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/* update Z80 bus status */
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zstate &= 2;
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zstate &= 2;
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@ -53,7 +53,7 @@ static void gen_sinc(double rolloff, int width, double offset, double spacing, d
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}
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}
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}
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}
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static int available( long input_count )
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/*static int available( long input_count )
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{
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{
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int cycle_count = input_count / input_per_cycle;
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int cycle_count = input_count / input_per_cycle;
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int output_count = cycle_count * res * STEREO;
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int output_count = cycle_count * res * STEREO;
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@ -74,6 +74,36 @@ static int available( long input_count )
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}
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}
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return output_count;
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return output_count;
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}
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}
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*/
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int Fir_Resampler_avail()
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{
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long count = 0;
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sample_t* in = buffer;
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sample_t* end_pos = write_pos;
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unsigned long skip = skip_bits >> imp_phase;
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int remain = res - imp_phase;
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if ( end_pos - in >= WIDTH * STEREO )
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{
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end_pos -= WIDTH * STEREO;
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do
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{
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count++;
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remain--;
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in += (skip * STEREO) & STEREO;
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skip >>= 1;
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in += step;
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if ( !remain )
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{
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skip = skip_bits;
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remain = res;
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}
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}
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while ( in <= end_pos );
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}
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return count;
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}
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int Fir_Resampler_initialize( int new_size )
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int Fir_Resampler_initialize( int new_size )
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{
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{
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@ -191,10 +221,10 @@ int Fir_Resampler_written( void )
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}
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}
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/* Number of output samples available */
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/* Number of output samples available */
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int Fir_Resampler_avail( void )
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/*int Fir_Resampler_avail( void )
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{
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{
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return available( write_pos - &buffer [WIDTH * STEREO] );
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return available( write_pos - &buffer [WIDTH * STEREO] );
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}
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}*/
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void Fir_Resampler_write( long count )
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void Fir_Resampler_write( long count )
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{
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{
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@ -274,13 +304,14 @@ int Fir_Resampler_read( sample_t* out, long count )
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return out - out_;
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return out - out_;
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}
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}
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/* fixed (Eke_Eke) */
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int Fir_Resampler_input_needed( long output_count )
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int Fir_Resampler_input_needed( long output_count )
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{
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{
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long input_count = 0;
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long input_count = 0;
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unsigned long skip = skip_bits >> imp_phase;
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unsigned long skip = skip_bits >> imp_phase;
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int remain = res - imp_phase;
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int remain = res - imp_phase;
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while ( (output_count) > 0 ) /* fixed (Eke_Eke) */
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while ( (output_count) > 0 )
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{
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{
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input_count += step + (skip & 1) * STEREO;
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input_count += step + (skip & 1) * STEREO;
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skip >>= 1;
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skip >>= 1;
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@ -289,13 +320,13 @@ int Fir_Resampler_input_needed( long output_count )
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skip = skip_bits;
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skip = skip_bits;
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remain = res;
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remain = res;
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}
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}
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output_count -= 2;
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output_count --;
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}
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}
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long input_extra = input_count - (write_pos - &buffer [WRITE_OFFSET]);
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long input_extra = input_count - (write_pos - &buffer [WRITE_OFFSET]);
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if ( input_extra < 0 )
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if ( input_extra < 0 )
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input_extra = 0;
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input_extra = 0;
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return input_extra;
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return (input_extra >> 1);
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}
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}
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int Fir_Resampler_skip_input( long count )
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int Fir_Resampler_skip_input( long count )
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@ -148,7 +148,7 @@ void sound_init(void)
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Fir_Resampler_time_ratio(mclk / (double)snd.sample_rate / (144.0 * 7.0));
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Fir_Resampler_time_ratio(mclk / (double)snd.sample_rate / (144.0 * 7.0));
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}
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}
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d mcycles per PSG samples\n", psg_cycles_ratio);
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error("%d mcycles per PSG samples\n", psg_cycles_ratio);
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error("%d mcycles per FM samples\n", fm_cycles_ratio);
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error("%d mcycles per FM samples\n", fm_cycles_ratio);
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#endif
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#endif
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@ -172,26 +172,26 @@ int sound_update(unsigned int cycles)
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/* number of available samples */
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/* number of available samples */
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int size = snd.psg.pos - snd.psg.buffer;
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int size = snd.psg.pos - snd.psg.buffer;
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d PSG samples available\n",snd.psg.pos - snd.psg.buffer);
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error("%d PSG samples available\n",size);
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#endif
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#endif
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/* FM resampling */
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/* FM resampling */
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if (config.hq_fm)
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if (config.hq_fm)
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{
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{
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/* resynchronize FM & PSG chips */
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int remain = Fir_Resampler_input_needed(size << 1) >> 1;
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/* get remaining FM samples */
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/* get remaining FM samples */
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int remain = Fir_Resampler_input_needed(size);
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if (remain > 0)
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if (remain > 0)
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{
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{
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/* resynchronize FM & PSG chips */
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YM2612Update(Fir_Resampler_buffer(), remain);
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YM2612Update(Fir_Resampler_buffer(), remain);
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Fir_Resampler_write(remain << 1);
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Fir_Resampler_write(remain << 1);
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}
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}
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fm_cycles_count = psg_cycles_count;
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fm_cycles_count = psg_cycles_count;
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d FM samples available\n",Fir_Resampler_written() >> 1);
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error("%d FM samples available\n",Fir_Resampler_written() >> 1);
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#endif
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#endif
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}
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}
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@ -200,12 +200,12 @@ int sound_update(unsigned int cycles)
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/* run FM chip until end of frame */
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/* run FM chip until end of frame */
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fm_update(cycles);
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fm_update(cycles);
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d FM samples available\n",(snd.fm.pos - snd.fm.buffer)>>1);
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error("%d FM samples available\n",(snd.fm.pos - snd.fm.buffer)>>1);
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#endif
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#endif
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}
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}
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%lu PSG cycles run\n",psg_cycles_count);
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error("%lu PSG cycles run\n",psg_cycles_count);
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error("%lu FM cycles run \n",fm_cycles_count);
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error("%lu FM cycles run \n",fm_cycles_count);
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#endif
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#endif
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@ -214,7 +214,7 @@ int sound_update(unsigned int cycles)
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psg_cycles_count -= (cycles << 11);
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psg_cycles_count -= (cycles << 11);
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fm_cycles_count -= (cycles << 11);
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fm_cycles_count -= (cycles << 11);
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%lu PSG cycles left\n",psg_cycles_count);
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error("%lu PSG cycles left\n",psg_cycles_count);
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error("%lu FM cycles left\n",fm_cycles_count);
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error("%lu FM cycles left\n",fm_cycles_count);
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#endif
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#endif
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@ -222,10 +222,10 @@ int sound_update(unsigned int cycles)
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return size;
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return size;
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}
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}
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/* Reset FM chip during 68k execution */
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/* Reset FM chip */
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void fm_reset(void)
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void fm_reset(unsigned int cycles)
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{
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{
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fm_update(mcycles_68k);
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fm_update(cycles);
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YM2612ResetChip();
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YM2612ResetChip();
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}
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}
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@ -28,7 +28,7 @@
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extern void sound_init(void);
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extern void sound_init(void);
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extern void sound_reset(void);
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extern void sound_reset(void);
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extern int sound_update(unsigned int cycles);
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extern int sound_update(unsigned int cycles);
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extern void fm_reset(void);
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extern void fm_reset(unsigned int cycles);
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extern void fm_write(unsigned int cycles, unsigned int address, unsigned int data);
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extern void fm_write(unsigned int cycles, unsigned int address, unsigned int data);
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extern unsigned int fm_read(unsigned int cycles, unsigned int address);
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extern unsigned int fm_read(unsigned int cycles, unsigned int address);
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extern void psg_write(unsigned int cycles, unsigned int data);
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extern void psg_write(unsigned int cycles, unsigned int data);
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@ -84,7 +84,7 @@ int audio_update (void)
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/* resample into FM output buffer */
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/* resample into FM output buffer */
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Fir_Resampler_read(fm,size);
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Fir_Resampler_read(fm,size);
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d FM samples remaining\n",Fir_Resampler_written() >> 1);
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error("%d FM samples remaining\n",Fir_Resampler_written() >> 1);
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#endif
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#endif
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}
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}
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@ -93,7 +93,7 @@ int audio_update (void)
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/* adjust remaining samples in FM output buffer*/
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/* adjust remaining samples in FM output buffer*/
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snd.fm.pos -= (size << 1);
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snd.fm.pos -= (size << 1);
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d FM samples remaining\n",(snd.fm.pos - snd.fm.buffer)>>1);
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error("%d FM samples remaining\n",(snd.fm.pos - snd.fm.buffer)>>1);
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#endif
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#endif
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}
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}
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@ -101,7 +101,7 @@ int audio_update (void)
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/* adjust remaining samples in PSG output buffer*/
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/* adjust remaining samples in PSG output buffer*/
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snd.psg.pos -= size;
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snd.psg.pos -= size;
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d PSG samples remaining\n",snd.psg.pos - snd.psg.buffer);
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error("%d PSG samples remaining\n",snd.psg.pos - snd.psg.buffer);
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#endif
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#endif
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@ -155,7 +155,7 @@ int audio_update (void)
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memcpy(snd.fm.buffer, fm, (snd.fm.pos - snd.fm.buffer) << 1);
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memcpy(snd.fm.buffer, fm, (snd.fm.pos - snd.fm.buffer) << 1);
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memcpy(snd.psg.buffer, psg, (snd.psg.pos - snd.psg.buffer) << 1);
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memcpy(snd.psg.buffer, psg, (snd.psg.pos - snd.psg.buffer) << 1);
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#ifdef LOG_SOUND
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#ifdef LOGSOUND
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error("%d samples returned\n\n",size);
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error("%d samples returned\n\n",size);
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#endif
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#endif
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@ -398,7 +398,7 @@ int system_frame (int do_skip)
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if (line == vdp_height)
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if (line == vdp_height)
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{
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{
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/* render overscan */
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/* render overscan */
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if (line < end_line)
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if (!do_skip && (line < end_line))
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render_line(line, 1);
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render_line(line, 1);
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/* update inputs (doing this here fix Warriors of Eternal Sun) */
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/* update inputs (doing this here fix Warriors of Eternal Sun) */
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@ -439,7 +439,7 @@ int system_frame (int do_skip)
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else
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else
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{
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{
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/* render overscan */
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/* render overscan */
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if ((line < end_line) || (line >= start_line))
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if (!do_skip && ((line < end_line) || (line >= start_line)))
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render_line(line, 1);
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render_line(line, 1);
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/* clear any pending Z80 interrupt */
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/* clear any pending Z80 interrupt */
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