199
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1 /*
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2
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3 TiMidity -- Experimental MIDI to WAVE converter
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4 Copyright (C) 1995 Tuukka Toivonen <toivonen@clinet.fi>
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5
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6 Suddenly, you realize that this program is free software; you get
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7 an overwhelming urge to redistribute it and/or modify it under the
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8 terms of the GNU General Public License as published by the Free
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9 Software Foundation; either version 2 of the License, or (at your
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10 option) any later version.
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11
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12 This program is distributed in the hope that it will be useful,
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13 but WITHOUT ANY WARRANTY; without even the implied warranty of
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14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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15 GNU General Public License for more details.
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16
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17 You should have received another copy of the GNU General Public
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18 License along with this program; if not, write to the Free
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19 Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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20 I bet they'll be amazed.
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21
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22 mix.c */
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23
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24 #if HAVE_CONFIG_H
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25 # include <config.h>
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26 #endif
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27
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28 #include <math.h>
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29 #include <stdio.h>
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30 #include <stdlib.h>
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31
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32 #include "SDL_sound.h"
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33
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34 #define __SDL_SOUND_INTERNAL__
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35 #include "SDL_sound_internal.h"
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36
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37 #include "timidity.h"
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38 #include "options.h"
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39 #include "instrum.h"
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40 #include "playmidi.h"
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41 #include "output.h"
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42 #include "tables.h"
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43 #include "resample.h"
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44 #include "mix.h"
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45
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46 /* Returns 1 if envelope runs out */
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47 int recompute_envelope(MidiSong *song, int v)
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48 {
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49 int stage;
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50
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51 stage = song->voice[v].envelope_stage;
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52
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53 if (stage>5)
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54 {
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55 /* Envelope ran out. */
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56 song->voice[v].status = VOICE_FREE;
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57 return 1;
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58 }
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59
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60 if (song->voice[v].sample->modes & MODES_ENVELOPE)
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61 {
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62 if (song->voice[v].status==VOICE_ON || song->voice[v].status==VOICE_SUSTAINED)
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63 {
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64 if (stage>2)
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65 {
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66 /* Freeze envelope until note turns off. Trumpets want this. */
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67 song->voice[v].envelope_increment=0;
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68 return 0;
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69 }
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70 }
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71 }
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72 song->voice[v].envelope_stage=stage+1;
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73
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74 if (song->voice[v].envelope_volume==song->voice[v].sample->envelope_offset[stage])
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75 return recompute_envelope(song, v);
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76 song->voice[v].envelope_target = song->voice[v].sample->envelope_offset[stage];
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77 song->voice[v].envelope_increment = song->voice[v].sample->envelope_rate[stage];
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78 if (song->voice[v].envelope_target < song->voice[v].envelope_volume)
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79 song->voice[v].envelope_increment = -song->voice[v].envelope_increment;
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80 return 0;
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81 }
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82
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83 void apply_envelope_to_amp(MidiSong *song, int v)
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84 {
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85 float lamp = song->voice[v].left_amp, ramp;
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86 Sint32 la,ra;
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87 if (song->voice[v].panned == PANNED_MYSTERY)
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88 {
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89 ramp = song->voice[v].right_amp;
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90 if (song->voice[v].tremolo_phase_increment)
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91 {
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92 lamp *= song->voice[v].tremolo_volume;
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93 ramp *= song->voice[v].tremolo_volume;
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94 }
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95 if (song->voice[v].sample->modes & MODES_ENVELOPE)
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96 {
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97 lamp *= (float)vol_table[song->voice[v].envelope_volume>>23];
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98 ramp *= (float)vol_table[song->voice[v].envelope_volume>>23];
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99 }
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100
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101 la = (Sint32)FSCALE(lamp,AMP_BITS);
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102
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103 if (la>MAX_AMP_VALUE)
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104 la=MAX_AMP_VALUE;
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105
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106 ra = (Sint32)FSCALE(ramp,AMP_BITS);
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107 if (ra>MAX_AMP_VALUE)
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108 ra=MAX_AMP_VALUE;
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109
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110 song->voice[v].left_mix = la;
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111 song->voice[v].right_mix = ra;
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112 }
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113 else
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114 {
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115 if (song->voice[v].tremolo_phase_increment)
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116 lamp *= song->voice[v].tremolo_volume;
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117 if (song->voice[v].sample->modes & MODES_ENVELOPE)
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118 lamp *= (float)vol_table[song->voice[v].envelope_volume>>23];
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119
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120 la = (Sint32)FSCALE(lamp,AMP_BITS);
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121
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122 if (la>MAX_AMP_VALUE)
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123 la=MAX_AMP_VALUE;
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124
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125 song->voice[v].left_mix = la;
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126 }
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127 }
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128
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129 static int update_envelope(MidiSong *song, int v)
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130 {
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131 song->voice[v].envelope_volume += song->voice[v].envelope_increment;
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132 /* Why is there no ^^ operator?? */
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133 if (((song->voice[v].envelope_increment < 0) &&
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134 (song->voice[v].envelope_volume <= song->voice[v].envelope_target)) ||
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135 ((song->voice[v].envelope_increment > 0) &&
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136 (song->voice[v].envelope_volume >= song->voice[v].envelope_target)))
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137 {
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138 song->voice[v].envelope_volume = song->voice[v].envelope_target;
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139 if (recompute_envelope(song, v))
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140 return 1;
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141 }
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142 return 0;
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143 }
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144
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145 static void update_tremolo(MidiSong *song, int v)
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146 {
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147 Sint32 depth = song->voice[v].sample->tremolo_depth << 7;
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148
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149 if (song->voice[v].tremolo_sweep)
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150 {
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151 /* Update sweep position */
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152
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153 song->voice[v].tremolo_sweep_position += song->voice[v].tremolo_sweep;
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154 if (song->voice[v].tremolo_sweep_position >= (1 << SWEEP_SHIFT))
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155 song->voice[v].tremolo_sweep=0; /* Swept to max amplitude */
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156 else
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157 {
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158 /* Need to adjust depth */
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159 depth *= song->voice[v].tremolo_sweep_position;
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160 depth >>= SWEEP_SHIFT;
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161 }
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162 }
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163
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164 song->voice[v].tremolo_phase += song->voice[v].tremolo_phase_increment;
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165
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166 /* if (song->voice[v].tremolo_phase >= (SINE_CYCLE_LENGTH<<RATE_SHIFT))
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167 song->voice[v].tremolo_phase -= SINE_CYCLE_LENGTH<<RATE_SHIFT; */
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168
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169 song->voice[v].tremolo_volume = (float)
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170 (1.0 - FSCALENEG((sine(song->voice[v].tremolo_phase >> RATE_SHIFT) + 1.0)
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171 * depth * TREMOLO_AMPLITUDE_TUNING,
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172 17));
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173
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174 /* I'm not sure about the +1.0 there -- it makes tremoloed voices'
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175 volumes on average the lower the higher the tremolo amplitude. */
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176 }
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177
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178 /* Returns 1 if the note died */
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179 static int update_signal(MidiSong *song, int v)
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180 {
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181 if (song->voice[v].envelope_increment && update_envelope(song, v))
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182 return 1;
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183
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184 if (song->voice[v].tremolo_phase_increment)
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185 update_tremolo(song, v);
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186
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187 apply_envelope_to_amp(song, v);
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188 return 0;
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189 }
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190
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191 #define MIXATION(a) *lp++ += (a)*s;
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192
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193 static void mix_mystery_signal(MidiSong *song, sample_t *sp, Sint32 *lp, int v,
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194 int count)
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195 {
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196 Voice *vp = song->voice + v;
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197 final_volume_t
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198 left=vp->left_mix,
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199 right=vp->right_mix;
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200 int cc;
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201 sample_t s;
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202
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203 if (!(cc = vp->control_counter))
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204 {
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205 cc = song->control_ratio;
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206 if (update_signal(song, v))
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207 return; /* Envelope ran out */
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208 left = vp->left_mix;
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209 right = vp->right_mix;
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210 }
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211
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212 while (count)
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213 if (cc < count)
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214 {
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215 count -= cc;
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216 while (cc--)
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217 {
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218 s = *sp++;
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219 MIXATION(left);
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220 MIXATION(right);
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221 }
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222 cc = song->control_ratio;
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223 if (update_signal(song, v))
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224 return; /* Envelope ran out */
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225 left = vp->left_mix;
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226 right = vp->right_mix;
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227 }
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228 else
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229 {
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230 vp->control_counter = cc - count;
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231 while (count--)
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232 {
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233 s = *sp++;
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234 MIXATION(left);
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235 MIXATION(right);
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236 }
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237 return;
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238 }
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239 }
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240
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241 static void mix_center_signal(MidiSong *song, sample_t *sp, Sint32 *lp, int v,
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242 int count)
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243 {
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244 Voice *vp = song->voice + v;
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245 final_volume_t
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246 left=vp->left_mix;
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247 int cc;
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248 sample_t s;
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249
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250 if (!(cc = vp->control_counter))
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251 {
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252 cc = song->control_ratio;
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253 if (update_signal(song, v))
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254 return; /* Envelope ran out */
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255 left = vp->left_mix;
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256 }
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257
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258 while (count)
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259 if (cc < count)
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260 {
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261 count -= cc;
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262 while (cc--)
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263 {
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264 s = *sp++;
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265 MIXATION(left);
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266 MIXATION(left);
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267 }
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268 cc = song->control_ratio;
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269 if (update_signal(song, v))
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270 return; /* Envelope ran out */
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271 left = vp->left_mix;
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272 }
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273 else
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274 {
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275 vp->control_counter = cc - count;
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276 while (count--)
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277 {
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278 s = *sp++;
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279 MIXATION(left);
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280 MIXATION(left);
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281 }
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282 return;
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283 }
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284 }
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285
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286 static void mix_single_signal(MidiSong *song, sample_t *sp, Sint32 *lp, int v,
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287 int count)
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288 {
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289 Voice *vp = song->voice + v;
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290 final_volume_t
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291 left=vp->left_mix;
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292 int cc;
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293 sample_t s;
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294
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295 if (!(cc = vp->control_counter))
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296 {
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297 cc = song->control_ratio;
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298 if (update_signal(song, v))
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299 return; /* Envelope ran out */
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300 left = vp->left_mix;
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301 }
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302
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303 while (count)
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304 if (cc < count)
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305 {
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306 count -= cc;
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307 while (cc--)
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308 {
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309 s = *sp++;
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310 MIXATION(left);
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311 lp++;
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312 }
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313 cc = song->control_ratio;
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314 if (update_signal(song, v))
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315 return; /* Envelope ran out */
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316 left = vp->left_mix;
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317 }
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318 else
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319 {
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320 vp->control_counter = cc - count;
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321 while (count--)
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322 {
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323 s = *sp++;
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324 MIXATION(left);
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325 lp++;
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326 }
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327 return;
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328 }
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329 }
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330
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331 static void mix_mono_signal(MidiSong *song, sample_t *sp, Sint32 *lp, int v,
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332 int count)
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333 {
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334 Voice *vp = song->voice + v;
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335 final_volume_t
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336 left=vp->left_mix;
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337 int cc;
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338 sample_t s;
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339
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340 if (!(cc = vp->control_counter))
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341 {
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342 cc = song->control_ratio;
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343 if (update_signal(song, v))
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344 return; /* Envelope ran out */
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345 left = vp->left_mix;
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346 }
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347
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348 while (count)
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349 if (cc < count)
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350 {
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351 count -= cc;
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352 while (cc--)
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353 {
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354 s = *sp++;
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355 MIXATION(left);
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356 }
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357 cc = song->control_ratio;
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358 if (update_signal(song, v))
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359 return; /* Envelope ran out */
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360 left = vp->left_mix;
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361 }
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362 else
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363 {
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364 vp->control_counter = cc - count;
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365 while (count--)
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366 {
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367 s = *sp++;
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368 MIXATION(left);
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369 }
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370 return;
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371 }
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372 }
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373
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374 static void mix_mystery(MidiSong *song, sample_t *sp, Sint32 *lp, int v, int count)
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375 {
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376 final_volume_t
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377 left = song->voice[v].left_mix,
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378 right = song->voice[v].right_mix;
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379 sample_t s;
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380
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381 while (count--)
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382 {
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383 s = *sp++;
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384 MIXATION(left);
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385 MIXATION(right);
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386 }
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387 }
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388
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389 static void mix_center(MidiSong *song, sample_t *sp, Sint32 *lp, int v, int count)
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390 {
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391 final_volume_t
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392 left = song->voice[v].left_mix;
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393 sample_t s;
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394
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395 while (count--)
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396 {
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397 s = *sp++;
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398 MIXATION(left);
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399 MIXATION(left);
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400 }
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401 }
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402
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403 static void mix_single(MidiSong *song, sample_t *sp, Sint32 *lp, int v, int count)
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404 {
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405 final_volume_t
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406 left = song->voice[v].left_mix;
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407 sample_t s;
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408
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409 while (count--)
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410 {
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411 s = *sp++;
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412 MIXATION(left);
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413 lp++;
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414 }
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415 }
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416
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417 static void mix_mono(MidiSong *song, sample_t *sp, Sint32 *lp, int v, int count)
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418 {
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419 final_volume_t
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420 left = song->voice[v].left_mix;
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421 sample_t s;
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422
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423 while (count--)
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424 {
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425 s = *sp++;
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426 MIXATION(left);
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427 }
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428 }
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429
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430 /* Ramp a note out in c samples */
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431 static void ramp_out(MidiSong *song, sample_t *sp, Sint32 *lp, int v, Sint32 c)
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432 {
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433
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434 /* should be final_volume_t, but Uint8 gives trouble. */
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435 Sint32 left, right, li, ri;
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436
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437 sample_t s=0; /* silly warning about uninitialized s */
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438
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439 /* Fix by James Caldwell */
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440 if ( c == 0 ) c = 1;
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441
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442 left=song->voice[v].left_mix;
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443 li=-(left/c);
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444 if (!li) li=-1;
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445
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446 /* printf("Ramping out: left=%d, c=%d, li=%d\n", left, c, li); */
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447
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448 if (!(song->encoding & PE_MONO))
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449 {
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450 if (song->voice[v].panned==PANNED_MYSTERY)
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451 {
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452 right=song->voice[v].right_mix;
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453 ri=-(right/c);
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454 while (c--)
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455 {
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456 left += li;
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457 if (left<0)
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458 left=0;
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459 right += ri;
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460 if (right<0)
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461 right=0;
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462 s=*sp++;
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463 MIXATION(left);
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464 MIXATION(right);
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465 }
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466 }
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467 else if (song->voice[v].panned==PANNED_CENTER)
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468 {
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469 while (c--)
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470 {
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471 left += li;
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472 if (left<0)
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473 return;
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474 s=*sp++;
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475 MIXATION(left);
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476 MIXATION(left);
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477 }
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478 }
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479 else if (song->voice[v].panned==PANNED_LEFT)
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480 {
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481 while (c--)
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482 {
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483 left += li;
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484 if (left<0)
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485 return;
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486 s=*sp++;
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487 MIXATION(left);
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488 lp++;
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489 }
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490 }
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491 else if (song->voice[v].panned==PANNED_RIGHT)
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492 {
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493 while (c--)
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494 {
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495 left += li;
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496 if (left<0)
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497 return;
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498 s=*sp++;
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499 lp++;
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500 MIXATION(left);
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501 }
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502 }
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503 }
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504 else
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505 {
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506 /* Mono output. */
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507 while (c--)
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508 {
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509 left += li;
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510 if (left<0)
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511 return;
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512 s=*sp++;
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513 MIXATION(left);
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514 }
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515 }
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516 }
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517
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518
|
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519 /**************** interface function ******************/
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520
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521 void mix_voice(MidiSong *song, Sint32 *buf, int v, Sint32 c)
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522 {
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523 Voice *vp = song->voice + v;
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524 sample_t *sp;
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525 if (vp->status==VOICE_DIE)
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526 {
|
|
527 if (c>=MAX_DIE_TIME)
|
|
528 c=MAX_DIE_TIME;
|
|
529 sp=resample_voice(song, v, &c);
|
|
530 ramp_out(song, sp, buf, v, c);
|
|
531 vp->status=VOICE_FREE;
|
|
532 }
|
|
533 else
|
|
534 {
|
|
535 sp=resample_voice(song, v, &c);
|
|
536 if (song->encoding & PE_MONO)
|
|
537 {
|
|
538 /* Mono output. */
|
|
539 if (vp->envelope_increment || vp->tremolo_phase_increment)
|
|
540 mix_mono_signal(song, sp, buf, v, c);
|
|
541 else
|
|
542 mix_mono(song, sp, buf, v, c);
|
|
543 }
|
|
544 else
|
|
545 {
|
|
546 if (vp->panned == PANNED_MYSTERY)
|
|
547 {
|
|
548 if (vp->envelope_increment || vp->tremolo_phase_increment)
|
|
549 mix_mystery_signal(song, sp, buf, v, c);
|
|
550 else
|
|
551 mix_mystery(song, sp, buf, v, c);
|
|
552 }
|
|
553 else if (vp->panned == PANNED_CENTER)
|
|
554 {
|
|
555 if (vp->envelope_increment || vp->tremolo_phase_increment)
|
|
556 mix_center_signal(song, sp, buf, v, c);
|
|
557 else
|
|
558 mix_center(song, sp, buf, v, c);
|
|
559 }
|
|
560 else
|
|
561 {
|
|
562 /* It's either full left or full right. In either case,
|
|
563 every other sample is 0. Just get the offset right: */
|
|
564 if (vp->panned == PANNED_RIGHT) buf++;
|
|
565
|
|
566 if (vp->envelope_increment || vp->tremolo_phase_increment)
|
|
567 mix_single_signal(song, sp, buf, v, c);
|
|
568 else
|
|
569 mix_single(song, sp, buf, v, c);
|
|
570 }
|
|
571 }
|
|
572 }
|
|
573 }
|