* [2SF] Used more up-to-date asmjit, despite the ugly looking code.
| ... | ... |
@@ -37,7 +37,7 @@ public: |
| 37 | 37 |
const Good_Synth *good_synth; |
| 38 | 38 |
const Med_Synth *med_synth; |
| 39 | 39 |
|
| 40 |
- int delay; // clocks until frequency timer expires |
|
| 40 |
+ int32_t delay; // clocks until frequency timer expires |
|
| 41 | 41 |
int length_ctr; // length counter |
| 42 | 42 |
unsigned phase; // waveform phase (or equivalent) |
| 43 | 43 |
bool enabled; // internal enabled flag |
| ... | ... |
@@ -1,8 +1,7 @@ |
| 1 | 1 |
// Private oscillators used by Gb_Apu |
| 2 | 2 |
|
| 3 | 3 |
// Gb_Snd_Emu 0.2.0 |
| 4 |
-#ifndef GB_OSCS_H |
|
| 5 |
-#define GB_OSCS_H |
|
| 4 |
+#pragma once |
|
| 6 | 5 |
|
| 7 | 6 |
#include "blargg_common.h" |
| 8 | 7 |
#include "Blip_Buffer.h" |
| ... | ... |
@@ -170,7 +169,7 @@ private: |
| 170 | 169 |
|
| 171 | 170 |
void corrupt_wave(); |
| 172 | 171 |
|
| 173 |
- uint8_t *wave_bank() const { return &this->wave_ram[((~this->regs[0] & bank40_mask) >> 2) & agb_mask]; }
|
|
| 172 |
+ uint8_t *wave_bank() const { return &this->wave_ram[(~this->regs[0] & bank40_mask) >> 2 & this->agb_mask]; }
|
|
| 174 | 173 |
|
| 175 | 174 |
// Wave index that would be accessed, or -1 if no access would occur |
| 176 | 175 |
int access(unsigned addr) const; |
| ... | ... |
@@ -188,5 +187,3 @@ inline void Gb_Wave::write(unsigned addr, int data) |
| 188 | 187 |
if (index >= 0) |
| 189 | 188 |
this->wave_bank()[index] = data; |
| 190 | 189 |
} |
| 191 |
- |
|
| 192 |
-#endif |
(As an aside, blargg's code style makes me go blarg myself.)
| ... | ... |
@@ -8,184 +8,185 @@ |
| 8 | 8 |
#include "Blip_Buffer.h" |
| 9 | 9 |
|
| 10 | 10 |
#ifndef GB_APU_OVERCLOCK |
| 11 |
- #define GB_APU_OVERCLOCK 1 |
|
| 11 |
+# define GB_APU_OVERCLOCK 1 |
|
| 12 | 12 |
#endif |
| 13 | 13 |
|
| 14 | 14 |
#if GB_APU_OVERCLOCK & (GB_APU_OVERCLOCK - 1) |
| 15 |
- #error "GB_APU_OVERCLOCK must be a power of 2" |
|
| 15 |
+# error "GB_APU_OVERCLOCK must be a power of 2" |
|
| 16 | 16 |
#endif |
| 17 | 17 |
|
| 18 |
-class Gb_Osc {
|
|
| 18 |
+class Gb_Osc |
|
| 19 |
+{
|
|
| 19 | 20 |
protected: |
| 20 |
- |
|
| 21 | 21 |
// 11-bit frequency in NRx3 and NRx4 |
| 22 |
- int frequency() const { return (regs [4] & 7) * 0x100 + regs [3]; }
|
|
| 22 |
+ int frequency() const { return (this->regs[4] & 7) * 0x100 + this->regs[3]; }
|
|
| 23 | 23 |
|
| 24 |
- void update_amp( blip_time_t, int new_amp ); |
|
| 25 |
- int write_trig( int frame_phase, int max_len, int old_data ); |
|
| 24 |
+ void update_amp(blip_time_t, int new_amp); |
|
| 25 |
+ int write_trig(int frame_phase, int max_len, int old_data); |
|
| 26 | 26 |
public: |
| 27 |
- |
|
| 28 |
- enum { clk_mul = GB_APU_OVERCLOCK };
|
|
| 27 |
+ enum { clk_mul = GB_APU_OVERCLOCK };
|
|
| 29 | 28 |
enum { dac_bias = 7 };
|
| 30 | 29 |
|
| 31 |
- Blip_Buffer* outputs [4];// NULL, right, left, center |
|
| 32 |
- Blip_Buffer* output; // where to output sound |
|
| 33 |
- BOOST::uint8_t* regs; // osc's 5 registers |
|
| 34 |
- int mode; // mode_dmg, mode_cgb, mode_agb |
|
| 35 |
- int dac_off_amp;// amplitude when DAC is off |
|
| 36 |
- int last_amp; // current amplitude in Blip_Buffer |
|
| 37 |
- typedef Blip_Synth<blip_good_quality,1> Good_Synth; |
|
| 38 |
- typedef Blip_Synth<blip_med_quality ,1> Med_Synth; |
|
| 39 |
- Good_Synth const* good_synth; |
|
| 40 |
- Med_Synth const* med_synth; |
|
| 41 |
- |
|
| 42 |
- int delay; // clocks until frequency timer expires |
|
| 43 |
- int length_ctr; // length counter |
|
| 44 |
- unsigned phase; // waveform phase (or equivalent) |
|
| 45 |
- bool enabled; // internal enabled flag |
|
| 30 |
+ Blip_Buffer *outputs[4];// NULL, right, left, center |
|
| 31 |
+ Blip_Buffer *output; // where to output sound |
|
| 32 |
+ uint8_t *regs; // osc's 5 registers |
|
| 33 |
+ int mode; // mode_dmg, mode_cgb, mode_agb |
|
| 34 |
+ int dac_off_amp; // amplitude when DAC is off |
|
| 35 |
+ int last_amp; // current amplitude in Blip_Buffer |
|
| 36 |
+ typedef Blip_Synth<blip_good_quality, 1> Good_Synth; |
|
| 37 |
+ typedef Blip_Synth<blip_med_quality, 1> Med_Synth; |
|
| 38 |
+ const Good_Synth *good_synth; |
|
| 39 |
+ const Med_Synth *med_synth; |
|
| 40 |
+ |
|
| 41 |
+ int delay; // clocks until frequency timer expires |
|
| 42 |
+ int length_ctr; // length counter |
|
| 43 |
+ unsigned phase; // waveform phase (or equivalent) |
|
| 44 |
+ bool enabled; // internal enabled flag |
|
| 46 | 45 |
|
| 47 | 46 |
void clock_length(); |
| 48 | 47 |
void reset(); |
| 49 | 48 |
}; |
| 50 | 49 |
|
| 51 |
-class Gb_Env : public Gb_Osc {
|
|
| 50 |
+class Gb_Env : public Gb_Osc |
|
| 51 |
+{
|
|
| 52 | 52 |
public: |
| 53 |
- Gb_Env() : env_enabled(false), env_delay(0) {}
|
|
| 54 |
- int env_delay; |
|
| 55 |
- int volume; |
|
| 53 |
+ Gb_Env() : env_enabled(false), env_delay(0) { }
|
|
| 54 |
+ int env_delay; |
|
| 55 |
+ int volume; |
|
| 56 | 56 |
bool env_enabled; |
| 57 | 57 |
|
| 58 | 58 |
void clock_envelope(); |
| 59 |
- bool write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 59 |
+ bool write_register(int frame_phase, int reg, int old_data, int data); |
|
| 60 | 60 |
|
| 61 | 61 |
void reset() |
| 62 | 62 |
{
|
| 63 |
- env_delay = 0; |
|
| 64 |
- volume = 0; |
|
| 63 |
+ this->env_delay = 0; |
|
| 64 |
+ this->volume = 0; |
|
| 65 | 65 |
Gb_Osc::reset(); |
| 66 | 66 |
} |
| 67 | 67 |
protected: |
| 68 | 68 |
// Non-zero if DAC is enabled |
| 69 |
- int dac_enabled() const { return regs [2] & 0xF8; }
|
|
| 69 |
+ int dac_enabled() const { return this->regs[2] & 0xF8; }
|
|
| 70 | 70 |
private: |
| 71 |
- void zombie_volume( int old, int data ); |
|
| 71 |
+ void zombie_volume(int old, int data); |
|
| 72 | 72 |
int reload_env_timer(); |
| 73 | 73 |
}; |
| 74 | 74 |
|
| 75 |
-class Gb_Square : public Gb_Env {
|
|
| 75 |
+class Gb_Square : public Gb_Env |
|
| 76 |
+{
|
|
| 76 | 77 |
public: |
| 77 |
- bool write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 78 |
- void run( blip_time_t, blip_time_t ); |
|
| 78 |
+ bool write_register(int frame_phase, int reg, int old_data, int data); |
|
| 79 |
+ void run(blip_time_t, blip_time_t); |
|
| 79 | 80 |
|
| 80 | 81 |
void reset() |
| 81 | 82 |
{
|
| 82 | 83 |
Gb_Env::reset(); |
| 83 |
- delay = 0x40000000; // TODO: something less hacky (never clocked until first trigger) |
|
| 84 |
+ this->delay = 0x40000000; // TODO: something less hacky (never clocked until first trigger) |
|
| 84 | 85 |
} |
| 85 | 86 |
private: |
| 86 | 87 |
// Frequency timer period |
| 87 |
- int period() const { return (2048 - frequency()) * (4 * clk_mul); }
|
|
| 88 |
+ int period() const { return (2048 - this->frequency()) * (4 * clk_mul); }
|
|
| 88 | 89 |
}; |
| 89 | 90 |
|
| 90 |
-class Gb_Sweep_Square : public Gb_Square {
|
|
| 91 |
+class Gb_Sweep_Square : public Gb_Square |
|
| 92 |
+{
|
|
| 91 | 93 |
public: |
| 92 |
- int sweep_freq; |
|
| 93 |
- int sweep_delay; |
|
| 94 |
+ int sweep_freq; |
|
| 95 |
+ int sweep_delay; |
|
| 94 | 96 |
bool sweep_enabled; |
| 95 | 97 |
bool sweep_neg; |
| 96 | 98 |
|
| 97 | 99 |
void clock_sweep(); |
| 98 |
- void write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 100 |
+ void write_register(int frame_phase, int reg, int old_data, int data); |
|
| 99 | 101 |
|
| 100 | 102 |
void reset() |
| 101 | 103 |
{
|
| 102 |
- sweep_freq = 0; |
|
| 103 |
- sweep_delay = 0; |
|
| 104 |
- sweep_enabled = false; |
|
| 105 |
- sweep_neg = false; |
|
| 104 |
+ this->sweep_freq = this->sweep_delay = 0; |
|
| 105 |
+ this->sweep_enabled = this->sweep_neg = false; |
|
| 106 | 106 |
Gb_Square::reset(); |
| 107 | 107 |
} |
| 108 | 108 |
private: |
| 109 | 109 |
enum { period_mask = 0x70 };
|
| 110 | 110 |
enum { shift_mask = 0x07 };
|
| 111 | 111 |
|
| 112 |
- void calc_sweep( bool update ); |
|
| 112 |
+ void calc_sweep(bool update); |
|
| 113 | 113 |
void reload_sweep_timer(); |
| 114 | 114 |
}; |
| 115 | 115 |
|
| 116 |
-class Gb_Noise : public Gb_Env {
|
|
| 116 |
+class Gb_Noise : public Gb_Env |
|
| 117 |
+{
|
|
| 117 | 118 |
public: |
| 118 |
- |
|
| 119 | 119 |
int divider; // noise has more complex frequency divider setup |
| 120 | 120 |
|
| 121 |
- void run( blip_time_t, blip_time_t ); |
|
| 122 |
- void write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 121 |
+ void run(blip_time_t, blip_time_t); |
|
| 122 |
+ void write_register(int frame_phase, int reg, int old_data, int data); |
|
| 123 | 123 |
|
| 124 | 124 |
void reset() |
| 125 | 125 |
{
|
| 126 |
- divider = 0; |
|
| 126 |
+ this->divider = 0; |
|
| 127 | 127 |
Gb_Env::reset(); |
| 128 |
- delay = 4 * clk_mul; // TODO: remove? |
|
| 128 |
+ this->delay = 4 * clk_mul; // TODO: remove? |
|
| 129 | 129 |
} |
| 130 | 130 |
private: |
| 131 | 131 |
enum { period2_mask = 0x1FFFF };
|
| 132 | 132 |
|
| 133 |
- int period2_index() const { return regs [3] >> 4; }
|
|
| 134 |
- int period2( int base = 8 ) const { return base << period2_index(); }
|
|
| 135 |
- unsigned lfsr_mask() const { return (regs [3] & 0x08) ? ~0x4040 : ~0x4000; }
|
|
| 133 |
+ int period2_index() const { return this->regs[3] >> 4; }
|
|
| 134 |
+ int period2(int base = 8) const { return base << this->period2_index(); }
|
|
| 135 |
+ unsigned lfsr_mask() const { return (this->regs[3] & 0x08) ? ~0x4040 : ~0x4000; }
|
|
| 136 | 136 |
}; |
| 137 | 137 |
|
| 138 |
-class Gb_Wave : public Gb_Osc {
|
|
| 138 |
+class Gb_Wave : public Gb_Osc |
|
| 139 |
+{
|
|
| 139 | 140 |
public: |
| 140 | 141 |
int sample_buf; // last wave RAM byte read (hardware has this as well) |
| 141 | 142 |
|
| 142 |
- void write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 143 |
- void run( blip_time_t, blip_time_t ); |
|
| 143 |
+ void write_register(int frame_phase, int reg, int old_data, int data); |
|
| 144 |
+ void run(blip_time_t, blip_time_t); |
|
| 144 | 145 |
|
| 145 | 146 |
// Reads/writes wave RAM |
| 146 |
- int read( unsigned addr ) const; |
|
| 147 |
- void write( unsigned addr, int data ); |
|
| 147 |
+ int read(unsigned addr) const; |
|
| 148 |
+ void write(unsigned addr, int data); |
|
| 148 | 149 |
|
| 149 | 150 |
void reset() |
| 150 | 151 |
{
|
| 151 |
- sample_buf = 0; |
|
| 152 |
+ this->sample_buf = 0; |
|
| 152 | 153 |
Gb_Osc::reset(); |
| 153 | 154 |
} |
| 154 | 155 |
|
| 155 | 156 |
private: |
| 156 | 157 |
enum { bank40_mask = 0x40 };
|
| 157 |
- enum { bank_size = 32 };
|
|
| 158 |
+ enum { bank_size = 32 };
|
|
| 158 | 159 |
|
| 159 |
- int agb_mask; // 0xFF if AGB features enabled, 0 otherwise |
|
| 160 |
- BOOST::uint8_t* wave_ram; // 32 bytes (64 nybbles), stored in APU |
|
| 160 |
+ int agb_mask; // 0xFF if AGB features enabled, 0 otherwise |
|
| 161 |
+ uint8_t *wave_ram; // 32 bytes (64 nybbles), stored in APU |
|
| 161 | 162 |
|
| 162 | 163 |
friend class Gb_Apu; |
| 163 | 164 |
|
| 164 | 165 |
// Frequency timer period |
| 165 |
- int period() const { return (2048 - frequency()) * (2 * clk_mul); }
|
|
| 166 |
+ int period() const { return (2048 - this->frequency()) * (2 * clk_mul); }
|
|
| 166 | 167 |
|
| 167 | 168 |
// Non-zero if DAC is enabled |
| 168 |
- int dac_enabled() const { return regs [0] & 0x80; }
|
|
| 169 |
+ int dac_enabled() const { return this->regs[0] & 0x80; }
|
|
| 169 | 170 |
|
| 170 | 171 |
void corrupt_wave(); |
| 171 | 172 |
|
| 172 |
- BOOST::uint8_t* wave_bank() const { return &wave_ram [(~regs [0] & bank40_mask) >> 2 & agb_mask]; }
|
|
| 173 |
+ uint8_t *wave_bank() const { return &this->wave_ram[((~this->regs[0] & bank40_mask) >> 2) & agb_mask]; }
|
|
| 173 | 174 |
|
| 174 | 175 |
// Wave index that would be accessed, or -1 if no access would occur |
| 175 |
- int access( unsigned addr ) const; |
|
| 176 |
+ int access(unsigned addr) const; |
|
| 176 | 177 |
}; |
| 177 | 178 |
|
| 178 |
-inline int Gb_Wave::read( unsigned addr ) const |
|
| 179 |
+inline int Gb_Wave::read(unsigned addr) const |
|
| 179 | 180 |
{
|
| 180 |
- int index = access( addr ); |
|
| 181 |
- return (index < 0 ? 0xFF : wave_bank() [index]); |
|
| 181 |
+ int index = this->access(addr); |
|
| 182 |
+ return index < 0 ? 0xFF : this->wave_bank()[index]; |
|
| 182 | 183 |
} |
| 183 | 184 |
|
| 184 |
-inline void Gb_Wave::write( unsigned addr, int data ) |
|
| 185 |
+inline void Gb_Wave::write(unsigned addr, int data) |
|
| 185 | 186 |
{
|
| 186 |
- int index = access( addr ); |
|
| 187 |
- if ( index >= 0 ) |
|
| 188 |
- wave_bank() [index] = data;; |
|
| 187 |
+ int index = this->access(addr); |
|
| 188 |
+ if (index >= 0) |
|
| 189 |
+ this->wave_bank()[index] = data;; |
|
| 189 | 190 |
} |
| 190 | 191 |
|
| 191 | 192 |
#endif |
| 1 | 1 |
new file mode 100644 |
| ... | ... |
@@ -0,0 +1,191 @@ |
| 1 |
+// Private oscillators used by Gb_Apu |
|
| 2 |
+ |
|
| 3 |
+// Gb_Snd_Emu 0.2.0 |
|
| 4 |
+#ifndef GB_OSCS_H |
|
| 5 |
+#define GB_OSCS_H |
|
| 6 |
+ |
|
| 7 |
+#include "blargg_common.h" |
|
| 8 |
+#include "Blip_Buffer.h" |
|
| 9 |
+ |
|
| 10 |
+#ifndef GB_APU_OVERCLOCK |
|
| 11 |
+ #define GB_APU_OVERCLOCK 1 |
|
| 12 |
+#endif |
|
| 13 |
+ |
|
| 14 |
+#if GB_APU_OVERCLOCK & (GB_APU_OVERCLOCK - 1) |
|
| 15 |
+ #error "GB_APU_OVERCLOCK must be a power of 2" |
|
| 16 |
+#endif |
|
| 17 |
+ |
|
| 18 |
+class Gb_Osc {
|
|
| 19 |
+protected: |
|
| 20 |
+ |
|
| 21 |
+ // 11-bit frequency in NRx3 and NRx4 |
|
| 22 |
+ int frequency() const { return (regs [4] & 7) * 0x100 + regs [3]; }
|
|
| 23 |
+ |
|
| 24 |
+ void update_amp( blip_time_t, int new_amp ); |
|
| 25 |
+ int write_trig( int frame_phase, int max_len, int old_data ); |
|
| 26 |
+public: |
|
| 27 |
+ |
|
| 28 |
+ enum { clk_mul = GB_APU_OVERCLOCK };
|
|
| 29 |
+ enum { dac_bias = 7 };
|
|
| 30 |
+ |
|
| 31 |
+ Blip_Buffer* outputs [4];// NULL, right, left, center |
|
| 32 |
+ Blip_Buffer* output; // where to output sound |
|
| 33 |
+ BOOST::uint8_t* regs; // osc's 5 registers |
|
| 34 |
+ int mode; // mode_dmg, mode_cgb, mode_agb |
|
| 35 |
+ int dac_off_amp;// amplitude when DAC is off |
|
| 36 |
+ int last_amp; // current amplitude in Blip_Buffer |
|
| 37 |
+ typedef Blip_Synth<blip_good_quality,1> Good_Synth; |
|
| 38 |
+ typedef Blip_Synth<blip_med_quality ,1> Med_Synth; |
|
| 39 |
+ Good_Synth const* good_synth; |
|
| 40 |
+ Med_Synth const* med_synth; |
|
| 41 |
+ |
|
| 42 |
+ int delay; // clocks until frequency timer expires |
|
| 43 |
+ int length_ctr; // length counter |
|
| 44 |
+ unsigned phase; // waveform phase (or equivalent) |
|
| 45 |
+ bool enabled; // internal enabled flag |
|
| 46 |
+ |
|
| 47 |
+ void clock_length(); |
|
| 48 |
+ void reset(); |
|
| 49 |
+}; |
|
| 50 |
+ |
|
| 51 |
+class Gb_Env : public Gb_Osc {
|
|
| 52 |
+public: |
|
| 53 |
+ Gb_Env() : env_enabled(false), env_delay(0) {}
|
|
| 54 |
+ int env_delay; |
|
| 55 |
+ int volume; |
|
| 56 |
+ bool env_enabled; |
|
| 57 |
+ |
|
| 58 |
+ void clock_envelope(); |
|
| 59 |
+ bool write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 60 |
+ |
|
| 61 |
+ void reset() |
|
| 62 |
+ {
|
|
| 63 |
+ env_delay = 0; |
|
| 64 |
+ volume = 0; |
|
| 65 |
+ Gb_Osc::reset(); |
|
| 66 |
+ } |
|
| 67 |
+protected: |
|
| 68 |
+ // Non-zero if DAC is enabled |
|
| 69 |
+ int dac_enabled() const { return regs [2] & 0xF8; }
|
|
| 70 |
+private: |
|
| 71 |
+ void zombie_volume( int old, int data ); |
|
| 72 |
+ int reload_env_timer(); |
|
| 73 |
+}; |
|
| 74 |
+ |
|
| 75 |
+class Gb_Square : public Gb_Env {
|
|
| 76 |
+public: |
|
| 77 |
+ bool write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 78 |
+ void run( blip_time_t, blip_time_t ); |
|
| 79 |
+ |
|
| 80 |
+ void reset() |
|
| 81 |
+ {
|
|
| 82 |
+ Gb_Env::reset(); |
|
| 83 |
+ delay = 0x40000000; // TODO: something less hacky (never clocked until first trigger) |
|
| 84 |
+ } |
|
| 85 |
+private: |
|
| 86 |
+ // Frequency timer period |
|
| 87 |
+ int period() const { return (2048 - frequency()) * (4 * clk_mul); }
|
|
| 88 |
+}; |
|
| 89 |
+ |
|
| 90 |
+class Gb_Sweep_Square : public Gb_Square {
|
|
| 91 |
+public: |
|
| 92 |
+ int sweep_freq; |
|
| 93 |
+ int sweep_delay; |
|
| 94 |
+ bool sweep_enabled; |
|
| 95 |
+ bool sweep_neg; |
|
| 96 |
+ |
|
| 97 |
+ void clock_sweep(); |
|
| 98 |
+ void write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 99 |
+ |
|
| 100 |
+ void reset() |
|
| 101 |
+ {
|
|
| 102 |
+ sweep_freq = 0; |
|
| 103 |
+ sweep_delay = 0; |
|
| 104 |
+ sweep_enabled = false; |
|
| 105 |
+ sweep_neg = false; |
|
| 106 |
+ Gb_Square::reset(); |
|
| 107 |
+ } |
|
| 108 |
+private: |
|
| 109 |
+ enum { period_mask = 0x70 };
|
|
| 110 |
+ enum { shift_mask = 0x07 };
|
|
| 111 |
+ |
|
| 112 |
+ void calc_sweep( bool update ); |
|
| 113 |
+ void reload_sweep_timer(); |
|
| 114 |
+}; |
|
| 115 |
+ |
|
| 116 |
+class Gb_Noise : public Gb_Env {
|
|
| 117 |
+public: |
|
| 118 |
+ |
|
| 119 |
+ int divider; // noise has more complex frequency divider setup |
|
| 120 |
+ |
|
| 121 |
+ void run( blip_time_t, blip_time_t ); |
|
| 122 |
+ void write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 123 |
+ |
|
| 124 |
+ void reset() |
|
| 125 |
+ {
|
|
| 126 |
+ divider = 0; |
|
| 127 |
+ Gb_Env::reset(); |
|
| 128 |
+ delay = 4 * clk_mul; // TODO: remove? |
|
| 129 |
+ } |
|
| 130 |
+private: |
|
| 131 |
+ enum { period2_mask = 0x1FFFF };
|
|
| 132 |
+ |
|
| 133 |
+ int period2_index() const { return regs [3] >> 4; }
|
|
| 134 |
+ int period2( int base = 8 ) const { return base << period2_index(); }
|
|
| 135 |
+ unsigned lfsr_mask() const { return (regs [3] & 0x08) ? ~0x4040 : ~0x4000; }
|
|
| 136 |
+}; |
|
| 137 |
+ |
|
| 138 |
+class Gb_Wave : public Gb_Osc {
|
|
| 139 |
+public: |
|
| 140 |
+ int sample_buf; // last wave RAM byte read (hardware has this as well) |
|
| 141 |
+ |
|
| 142 |
+ void write_register( int frame_phase, int reg, int old_data, int data ); |
|
| 143 |
+ void run( blip_time_t, blip_time_t ); |
|
| 144 |
+ |
|
| 145 |
+ // Reads/writes wave RAM |
|
| 146 |
+ int read( unsigned addr ) const; |
|
| 147 |
+ void write( unsigned addr, int data ); |
|
| 148 |
+ |
|
| 149 |
+ void reset() |
|
| 150 |
+ {
|
|
| 151 |
+ sample_buf = 0; |
|
| 152 |
+ Gb_Osc::reset(); |
|
| 153 |
+ } |
|
| 154 |
+ |
|
| 155 |
+private: |
|
| 156 |
+ enum { bank40_mask = 0x40 };
|
|
| 157 |
+ enum { bank_size = 32 };
|
|
| 158 |
+ |
|
| 159 |
+ int agb_mask; // 0xFF if AGB features enabled, 0 otherwise |
|
| 160 |
+ BOOST::uint8_t* wave_ram; // 32 bytes (64 nybbles), stored in APU |
|
| 161 |
+ |
|
| 162 |
+ friend class Gb_Apu; |
|
| 163 |
+ |
|
| 164 |
+ // Frequency timer period |
|
| 165 |
+ int period() const { return (2048 - frequency()) * (2 * clk_mul); }
|
|
| 166 |
+ |
|
| 167 |
+ // Non-zero if DAC is enabled |
|
| 168 |
+ int dac_enabled() const { return regs [0] & 0x80; }
|
|
| 169 |
+ |
|
| 170 |
+ void corrupt_wave(); |
|
| 171 |
+ |
|
| 172 |
+ BOOST::uint8_t* wave_bank() const { return &wave_ram [(~regs [0] & bank40_mask) >> 2 & agb_mask]; }
|
|
| 173 |
+ |
|
| 174 |
+ // Wave index that would be accessed, or -1 if no access would occur |
|
| 175 |
+ int access( unsigned addr ) const; |
|
| 176 |
+}; |
|
| 177 |
+ |
|
| 178 |
+inline int Gb_Wave::read( unsigned addr ) const |
|
| 179 |
+{
|
|
| 180 |
+ int index = access( addr ); |
|
| 181 |
+ return (index < 0 ? 0xFF : wave_bank() [index]); |
|
| 182 |
+} |
|
| 183 |
+ |
|
| 184 |
+inline void Gb_Wave::write( unsigned addr, int data ) |
|
| 185 |
+{
|
|
| 186 |
+ int index = access( addr ); |
|
| 187 |
+ if ( index >= 0 ) |
|
| 188 |
+ wave_bank() [index] = data;; |
|
| 189 |
+} |
|
| 190 |
+ |
|
| 191 |
+#endif |