Mercurial > repos > blastem
annotate psg.c @ 2234:b6fdedd3b070
Fix SRAM endianness for word-wide SRAM combined with Sega mapper
author | Michael Pavone <pavone@retrodev.com> |
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date | Sun, 11 Sep 2022 15:04:42 -0700 |
parents | 71b0cb7c34a6 |
children | 0d1d5dccdd28 |
rev | line source |
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467
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Added copyright notice to source files and added GPL license text in COPYING
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1 /* |
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2 Copyright 2013 Michael Pavone |
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3 This file is part of BlastEm. |
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4 BlastEm is free software distributed under the terms of the GNU General Public License version 3 or greater. See COPYING for full license text. |
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5 */ |
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6 #include "psg.h" |
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The local clone on my laptop got messed up and some changes had not been pushed. This commit represents the status of the working copy from that clone. It unfortunately contains some changes that I did not intend to commit yet, but this seems like the best option at the moment.
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7 #include "blastem.h" |
1946 | 8 #include "event_log.h" |
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9 #include <string.h> |
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10 #include <stdlib.h> |
838
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Somewhat better handling of high frequency PSG tones. Needs work to fully handle case where frequency > half our output sample rate
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11 #include <stdio.h> |
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Fix PSG linear resampling and implement a low pass filter
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12 #include <math.h> |
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More audio refactoring in preparation for allowing proper sync to video with dynamic audio rate control
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13 void psg_init(psg_context * context, uint32_t master_clock, uint32_t clock_div) |
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14 { |
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15 memset(context, 0, sizeof(*context)); |
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16 context->audio = render_audio_source("PSG", master_clock, clock_div, 2); |
380
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Make the PSG and YM2612 use the master clock internal with an increment based on clock divider so that they stay perflectly in sync. Run both the PSG and YM2612 whenver one of them needs to be run.
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17 context->clock_inc = clock_div; |
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18 for (int i = 0; i < 4; i++) { |
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19 context->volume[i] = 0xF; |
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20 } |
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21 context->pan = 0xFF; |
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22 } |
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23 |
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24 void psg_free(psg_context *context) |
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25 { |
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Small cleanup to audio interface between emulation code and renderer backend
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26 render_free_source(context->audio); |
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27 free(context); |
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28 } |
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29 |
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30 void psg_adjust_master_clock(psg_context * context, uint32_t master_clock) |
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31 { |
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32 render_audio_adjust_clock(context->audio, master_clock, context->clock_inc); |
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33 } |
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34 |
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35 void psg_write(psg_context * context, uint8_t value) |
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36 { |
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Initial stab at VGM logging support
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37 if (context->vgm) { |
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38 vgm_sn76489_write(context->vgm, context->cycles, value); |
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39 } |
1946 | 40 event_log(EVENT_PSG_REG, context->cycles, sizeof(value), &value); |
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41 if (value & 0x80) { |
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42 context->latch = value & 0x70; |
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43 uint8_t channel = value >> 5 & 0x3; |
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44 if (value & 0x10) { |
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45 context->volume[channel] = value & 0xF; |
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46 } else { |
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47 if (channel == 3) { |
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48 switch(value & 0x3) |
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49 { |
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50 case 0: |
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51 case 1: |
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52 case 2: |
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53 context->counter_load[3] = 0x10 << (value & 0x3); |
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54 context->noise_use_tone = 0; |
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55 break; |
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56 default: |
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57 context->counter_load[3] = context->counter_load[2]; |
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58 context->noise_use_tone = 1; |
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59 } |
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60 context->noise_type = value & 0x4; |
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61 context->lsfr = 0x8000; |
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62 } else { |
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63 context->counter_load[channel] = (context->counter_load[channel] & 0x3F0) | (value & 0xF); |
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64 if (channel == 2 && context->noise_use_tone) { |
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65 context->counter_load[3] = context->counter_load[2]; |
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66 } |
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67 } |
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68 } |
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69 } else { |
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70 if (!(context->latch & 0x10)) { |
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71 uint8_t channel = context->latch >> 5 & 0x3; |
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72 if (channel != 3) { |
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73 context->counter_load[channel] = (value << 4 & 0x3F0) | (context->counter_load[channel] & 0xF); |
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74 if (channel == 2 && context->noise_use_tone) { |
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75 context->counter_load[3] = context->counter_load[2]; |
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76 } |
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77 } |
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78 } |
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79 } |
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80 } |
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81 |
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Adjust PSG and YM-2612 volume to be closer to the real console
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82 #define PSG_VOL_DIV 14 |
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83 |
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84 //table shamelessly swiped from PSG doc from smspower.org |
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85 static int16_t volume_table[16] = { |
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86 32767/PSG_VOL_DIV, 26028/PSG_VOL_DIV, 20675/PSG_VOL_DIV, 16422/PSG_VOL_DIV, 13045/PSG_VOL_DIV, 10362/PSG_VOL_DIV, |
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87 8231/PSG_VOL_DIV, 6568/PSG_VOL_DIV, 5193/PSG_VOL_DIV, 4125/PSG_VOL_DIV, 3277/PSG_VOL_DIV, 2603/PSG_VOL_DIV, |
354
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88 2067/PSG_VOL_DIV, 1642/PSG_VOL_DIV, 1304/PSG_VOL_DIV, 0 |
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89 }; |
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90 |
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91 void psg_run(psg_context * context, uint32_t cycles) |
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92 { |
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93 while (context->cycles < cycles) { |
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94 for (int i = 0; i < 4; i++) { |
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95 if (context->counters[i]) { |
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96 context->counters[i] -= 1; |
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97 } |
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98 if (!context->counters[i]) { |
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99 context->counters[i] = context->counter_load[i]; |
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100 context->output_state[i] = !context->output_state[i]; |
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101 if (i == 3 && context->output_state[i]) { |
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102 context->noise_out = context->lsfr & 1; |
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103 context->lsfr = (context->lsfr >> 1) | (context->lsfr << 15); |
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104 if (context->noise_type) { |
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105 //white noise |
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106 if (context->lsfr & 0x4) { |
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107 context->lsfr ^= 0x8000; |
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108 } |
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109 } |
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110 } |
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111 } |
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112 } |
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113 |
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114 int16_t left_accum = 0, right_accum = 0; |
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115 uint8_t pan_left = 0x10, pan_right = 0x1; |
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116 |
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117 for (int i = 0; i < 3; i++) { |
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118 if (context->output_state[i]) { |
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119 int16_t value = volume_table[context->volume[i]]; |
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120 if (context->pan & pan_left) { |
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121 left_accum += value; |
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122 } |
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123 if (context->pan & pan_right) { |
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124 right_accum += value; |
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125 } |
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126 pan_left <<= 1; |
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127 pan_right <<= 1; |
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128 } |
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129 } |
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130 if (context->noise_out) { |
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131 int16_t value = volume_table[context->volume[3]]; |
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132 if (context->pan & pan_left) { |
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133 left_accum += value; |
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134 } |
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135 if (context->pan & pan_right) { |
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136 right_accum += value; |
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137 } |
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138 } |
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139 |
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140 render_put_stereo_sample(context->audio, left_accum, right_accum); |
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141 |
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142 context->cycles += context->clock_inc; |
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143 } |
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144 } |
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145 |
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146 void psg_vgm_log(psg_context *context, uint32_t master_clock, vgm_writer *vgm) |
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147 { |
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148 vgm_sn76489_init(vgm, 16 * master_clock / context->clock_inc, 9, 16, 0); |
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149 context->vgm = vgm; |
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150 for (int chan = 0; chan < 4; chan++) |
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151 { |
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152 uint8_t base = chan << 5 | 0x80; |
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153 vgm_sn76489_write(context->vgm, context->cycles, context->volume[chan] | base | 0x10); |
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154 if (chan == 3) { |
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155 if (context->noise_use_tone) { |
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156 vgm_sn76489_write(context->vgm, context->cycles, 3 | base); |
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157 } else { |
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158 //0x10 = 0 |
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159 //0x20 = 1 |
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160 //0x40 = 2 |
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161 vgm_sn76489_write(context->vgm, context->cycles, context->counter_load[chan] >> 5 | base); |
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162 } |
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163 } else { |
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164 vgm_sn76489_write(context->vgm, context->cycles, (context->counter_load[chan] & 0xF) | base); |
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165 vgm_sn76489_write(context->vgm, context->cycles, context->counter_load[chan] >> 4 & 0x3F); |
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166 } |
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167 } |
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168 } |
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169 |
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170 void psg_serialize(psg_context *context, serialize_buffer *buf) |
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171 { |
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172 save_int16(buf, context->lsfr); |
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173 save_buffer16(buf, context->counter_load, 4); |
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174 save_buffer16(buf, context->counters, 4); |
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175 save_buffer8(buf, context->volume, 4); |
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176 uint8_t output_state = context->output_state[0] << 3 | context->output_state[1] << 2 |
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177 | context->output_state[2] << 1 | context->output_state[3] |
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178 | context->noise_use_tone << 4; |
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179 save_int8(buf, output_state); |
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180 save_int8(buf, context->noise_type); |
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181 save_int8(buf, context->latch); |
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182 save_int32(buf, context->cycles); |
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183 } |
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184 |
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185 void psg_deserialize(deserialize_buffer *buf, void *vcontext) |
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186 { |
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187 psg_context *context = vcontext; |
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188 context->lsfr = load_int16(buf); |
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189 load_buffer16(buf, context->counter_load, 4); |
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190 load_buffer16(buf, context->counters, 4); |
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191 load_buffer8(buf, context->volume, 4); |
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192 uint8_t output_state = load_int8(buf); |
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193 context->output_state[0] = output_state >> 3 & 1; |
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194 context->output_state[1] = output_state >> 2 & 1; |
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195 context->output_state[2] = output_state >> 1 & 1; |
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196 context->output_state[3] = output_state & 1; |
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197 context->noise_use_tone = output_state >> 4 & 1; |
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198 context->noise_type = load_int8(buf); |
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199 context->latch = load_int8(buf); |
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200 context->cycles = load_int32(buf); |
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201 } |