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1 (ns com.aurellem.run.music
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2 (:use (com.aurellem.gb saves gb-driver util constants
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3 items vbm characters money
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4 rlm-assembly))
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5 (:use (com.aurellem.run util title save-corruption
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6 bootstrap-0 bootstrap-1))
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7 (:require clojure.string)
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8 (:import [com.aurellem.gb.gb_driver SaveState])
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9 (:import java.io.File))
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10
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11 (def third-kind
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12 (File. "/home/r/proj/midi/third-kind.mid"))
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13
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14 (defn raw-midi-text [#^File midi-file]
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15 (:out
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16 (clojure.java.shell/sh
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17 "midicsv"
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18 (.getCanonicalPath midi-file)
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19 "-")))
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20
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21 (def command-line #"^(\d+), (\d+), ([^,]+)(.*)$")
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22
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23 (defmulti parse-command :command)
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24
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25 (defn discard-args [command] (dissoc command :args))
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26
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27 (defmethod parse-command :Start_track
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28 [command] (discard-args command))
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29
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30 (defmethod parse-command :End_track
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31 [command] (discard-args command))
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32
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33 (defmethod parse-command :default
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34 [command] command)
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35
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36 (defn parse-number-list
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37 [number-list-str]
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38 (map #(Integer/parseInt %)
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39 (clojure.string/split number-list-str #", ")))
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40
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41 (defmethod parse-command :Tempo
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42 [command]
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43 (update-in command [:args] #(Integer/parseInt %)))
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44
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45 (defn parse-midi-note-list
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46 [midi-note-list-str]
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47 (let [[channel note velocity]
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48 (parse-number-list midi-note-list-str)]
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49 {:channel channel :note note :velocity velocity}))
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50
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51 (defmethod parse-command :Note_on_c
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52 [command]
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53 (update-in command [:args] parse-midi-note-list))
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54
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55 (defmethod parse-command :Note_off_c
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56 [command]
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57 (update-in command [:args] parse-midi-note-list))
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58
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59 (defmethod parse-command :Header
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60 [command]
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61 (let [args (:args command)
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62 [format num-tracks division] (parse-number-list args)]
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63 (assoc command :args
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64 {:format format
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65 :num-tracks num-tracks
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66 :division division})))
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67
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68 (defmethod parse-command :Program_c
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69 [command]
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70 (let [args (:args command)
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71 [channel program-num] (parse-number-list args)]
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72 (assoc command :args
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73 {:channel channel
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74 :program-num program-num})))
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75
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76 (defn parse-midi [#^File midi-file]
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77 (map
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78 (comp parse-command
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79 (fn [line]
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80 (let [[[_ channel time command args]]
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81 (re-seq command-line line)]
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82 {:channel (Integer/parseInt channel)
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83 :time (Integer/parseInt time)
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84 :command (keyword command)
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85 :args (apply str (drop 2 args))})))
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86 (drop-last
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87 (clojure.string/split-lines
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88 (raw-midi-text midi-file)))))
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89
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90 (def music-base new-kernel)
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91
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92 (defn store [n address]
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93 (flatten
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94 [0xF5
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95 0xE5
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96
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97 0x3E
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98 n
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99
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100 0x21
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101 (reverse (disect-bytes-2 address))
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102
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103 0x77
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104
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105 0xE1
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106 0xF1]))
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107
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108 (defn infinite-loop []
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109 [0x18 0xFE])
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110
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111 (def divider-register 0xFF04)
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112
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113 (defrecord Bit-Note [frequency volume duration duty])
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114
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115 (defn clear-music-registers []
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116 (flatten
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117 [(store (Integer/parseInt "00000000" 2) 0xFF10) ;; sweep
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118 (store (Integer/parseInt "00000000" 2) 0xFF11) ;; pattern duty
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119 (store (Integer/parseInt "00000000" 2) 0xFF12) ;; volume
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120 (store (Integer/parseInt "00000000" 2) 0xFF13) ;; frequency-low
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121 (store (Integer/parseInt "00000000" 2) 0xFF14) ;; frequency-high
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122
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123 (store (Integer/parseInt "00000000" 2) 0xFF16) ;; pattern duty 000000
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124 (store (Integer/parseInt "00000000" 2) 0xFF17) ;; volume 0000
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125 (store (Integer/parseInt "00000000" 2) 0xFF18) ;; frequency-low
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126 (store (Integer/parseInt "00000000" 2) 0xFF19) ;; 00000 frequency-high
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127
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128 (store (Integer/parseInt "00000000" 2) 0xFF1A)
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129 (store (Integer/parseInt "00000000" 2) 0xFF1B)
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130 (store (Integer/parseInt "00000000" 2) 0xFF1C)
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131 (store (Integer/parseInt "00000000" 2) 0xFF1D)
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132 (store (Integer/parseInt "00000000" 2) 0xFF1E)
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133
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134 (store (Integer/parseInt "00000000" 2) 0xFF20) ;; length
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135 (store (Integer/parseInt "00000000" 2) 0xFF21) ;; volume
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136 (store (Integer/parseInt "00000000" 2) 0xFF22) ;; noise-frequency
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137 (store (Integer/parseInt "00000000" 2) 0xFF23) ;; control
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138 ]))
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139
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140
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141 ;; mini-midi syntax
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142
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143 ;; codes
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144 ;; note-code == 0x00
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145 ;; change-duty-code = 0x01
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146 ;; silence-code = 0x02
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147
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148 ;; silence format
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149 ;; 2 bytes
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150 ;; [silence-code (0x02)]
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151 ;; [duration-8-bits]
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152
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153 ;; note data format
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154 ;; 4 bytes
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155 ;; [note-code (0x00)]
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156 ;; [volume-4-bits 0 frequency-high-3-bits]
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157 ;; [frequengy-low-8-bits]
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158 ;; [duration-8-bits]
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159
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160 ;; change-duty-format
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161 ;; 2 bytes
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162 ;; [change-duty-code (0x01)]
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163 ;; [new-duty]
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164
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165 (def note-code 0x00)
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166 (def change-duty-code 0x01)
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167 (def silence-code 0x02)
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168
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169 (defn do-message
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170 "Read the message which starts at the current value of HL and do
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171 what it says. Duration is left in A, and HL is advanced
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172 appropraitely."
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173 ([] (do-message 0x16))
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174 ([sound-base-address]
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175 (let [switch
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176 [0x2A ;; load message code into A, increment HL
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177
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178 ;; switch on message
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179 0xFE
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180 note-code
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181
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182 0x20
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183 :note-length]
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184
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185 play-note
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186 [0x2A ;; load volume/frequency-high info
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187 0xF5 ;; push A
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188 0xE6
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189 (Integer/parseInt "11110000" 2) ;; volume mask
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190 0xE0
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191 (inc sound-base-address) ;;0x17 ;; set volume
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192 0xF1 ;; pop A
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193 0xE6
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194 (Integer/parseInt "00000111" 2) ;; frequency-high mask
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195 0xE0
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196 (+ 3 sound-base-address) ;;0x19 ;; set frequency-high
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197
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198 0x2A ;; load frequency low-bits
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199 0xE0
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200 (+ 2 sound-base-address) ;;0x18 ;; set frequency-low-bits
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201 0x2A]] ;; load duration
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202 (replace
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203 {:note-length (count play-note)}
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204 (concat switch play-note)))))
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205
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206 ;; (defn play-note
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207 ;; "Play the note referenced by HL in the appropiate channel.
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208 ;; Leaves desired-duration in A."
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209
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210 ;; [0x2A ;; load volume/frequency-high info
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211 ;; 0xF5 ;; push A
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212 ;; 0xE6
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213 ;; (Integer/parseInt "11110000" 2) ;; volume mask
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214 ;; 0xE0
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215 ;; 0x17 ;; set volume
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216 ;; 0xF1 ;; pop A
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217 ;; 0xE6
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218 ;; (Integer/parseInt "00000111" 2) ;; frequency-high mask
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219 ;; 0xE0
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220 ;; 0x19 ;; set frequency-high
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221
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222 ;; 0x2A ;; load frequency low-bits
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223 ;; 0xE0
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224 ;; 0x18 ;; set frequency-low-bits
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225
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226 ;; 0x2A ;; load duration
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227 ;; ])
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228
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229 (defn music-step [sound-base-address]
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230 ;; C == current-ticks
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231 ;; A == desired-ticks
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232
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233 (flatten
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234 [;; restore variables from stack
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235 0xE1 ;; pop HL
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236 0xC1 ;; pop CB
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237 0xF1 ;; pop AF
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238
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239
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240 0xF5 ;; push A
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241 0xF0
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242 0x05 ;; load current ticks from 0xF005
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243 0xB8 ;;
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244 0x30 ;; increment C only if last result caused carry
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245 0x01
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246 0x0C
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247
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248 0x47 ;; update sub-ticks (A->B)
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249
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250 0xF1 ;; pop AF, now A contains desired-ticks
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251
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252 0xB9 ;; compare with current ticks
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253
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254 ;; if desired-ticks = current ticks
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255 ;; go to next note ; set current set ticks to 0.
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256
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257 0x20
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258 (+ (count (do-message 0)) 2)
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259
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260 (do-message sound-base-address)
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261
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262 0x0E
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263 0x00 ;; 0->C (current-ticks)
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264
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265 ;; save variables to stack
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266 0xF5 ;; push AF
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267 0xC5 ;; push CB
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268 0xE5 ;; push HL
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269
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270
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271 ]))
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272
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273 (def music-1 0x11)
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274 (def music-2 0x16)
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275
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276 (defn music-kernel []
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277 (flatten
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278 [;; global initilization section
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279 (clear-music-registers)
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280
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281 0x3E
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282 0x01
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283 0xE0
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284 0x06 ;; set TMA to 0
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285
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286 0x3E
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287 (Integer/parseInt "00000110" 2)
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288 0xE0
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289 0x07 ;; set TAC to 65536 Hz and activate timer
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290
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291 ;; initialize frame 1
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292 0x21
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293 0x00
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294 0xA0 ;; set HL to 0xA000 == music-start 1
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295 0x0E
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296 0x00 ;; 0->C
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297 0x06
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298 0x00 ;; 0->B
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299
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300 0xAF ;; 0->A
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301
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302 0xF5 ;; push AF
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303 0xC5 ;; push CB
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304 0xE5 ;; push HL
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305
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306 ;; initialize frame 2
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307 0x21
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308 0x00
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309 0xB0 ;; set HL to 0xB000 == music-start 2
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310
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311 0xF5 ;; push AF
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312 0xC5 ;; push CB
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313 0xE5 ;; push HL
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314
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315
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316 ;; main music loop
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317
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318 0xE8 ;; SP + 6; activate frame 1
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319 6
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320 (music-step music-1)
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321 ;;(repeat (count (music-step music-1)) 0x00)
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322
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323 0xE8 ;; SP - 6; activate frame 2
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324 (->signed-8-bit -6)
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325 ;;(repeat (count (music-step music-2)) 0x00)
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326 (music-step music-2)
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327
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328
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329 0x18
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330 (->signed-8-bit (+
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331 ;; two music-steps
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332 (- (* 2 (count (music-step 0))))
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333 -2 ;; this jump instruction
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334 -2 ;; activate frame 1
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335 -2 ;; activate frame 2
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336 ))]))
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337
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338 (defn frequency-code->frequency
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339 [code]
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340 (assert (<= 0 code 2047))
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341 (/ 131072 (- 2048 code)))
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342
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343 (defn clamp [x low high]
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344 (cond (> x high) high
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345 (< x low) low
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346 true x))
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347
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348 (defn frequency->frequency-code
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349 [frequency]
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350 (clamp
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351 (Math/round
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352 (float
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353 (/ (- (* 2048 frequency) 131072) frequency)))
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354 0x00 2048))
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355
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356 (defn note-codes [frequency volume duration]
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357 (assert (<= 0 volume 0xF))
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358 (if (<= duration 0xFF)
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359 (let [frequency-code
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360 (frequency->frequency-code frequency)
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361 volume&high-frequency
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362 (+ (bit-shift-left volume 4)
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363 (bit-shift-right frequency-code 8))
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364 low-frequency
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365 (bit-and 0xFF frequency-code)]
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366 [note-code
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367 volume&high-frequency
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368 low-frequency
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369 duration])
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370 (vec
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371 (flatten
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372 [(note-codes frequency volume 0xFF)
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373 (note-codes frequency volume (- duration 0xFF))]))))
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374
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375
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376 (defn midi-code->frequency
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377 [midi-code]
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378 (* 8.1757989156
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379 (Math/pow 2 (* (float (/ 12)) midi-code))))
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380
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rlm@427
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381 ;; division == clock-pulses / quarter-note
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rlm@427
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382 ;; tempo == microseconds / quarter-note
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383
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rlm@427
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384 ;; have: clock-pulses
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385 ;; want: seconds
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386
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387
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rlm@428
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388 (defn silence [length]
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389 {:frequency 1
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rlm@428
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390 :duration length
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rlm@428
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391 :volume 0})
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392
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rlm@427
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393 (defn midi->mini-midi [#^File midi-file]
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394 (let [midi-events (parse-midi midi-file)
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395
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396 note-on-events
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rlm@427
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397 (filter #(= :Note_on_c (:command %)) midi-events)
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398 note-off-events
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rlm@427
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399 (filter #(= :Note_off_c (:command %)) midi-events)
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400
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rlm@427
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401 channel-1-on
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rlm@427
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402 (sort-by :time
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403 (filter #(= 1 (:channel (:args %)))
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404 note-on-events))
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rlm@427
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405 channel-1-off
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rlm@427
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406 (sort-by :time
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407 (filter #(= 1 (:channel (:args %)))
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408 note-off-events))
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409
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rlm@427
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410
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rlm@427
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411 tempo (:args (first (filter #(= :Tempo (:command %)) midi-events)))
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rlm@427
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412 division (:division
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rlm@427
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413 (:args (first (filter #(= :Header (:command %)) midi-events))))
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rlm@428
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414
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rlm@428
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415 notes
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rlm@428
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416 (map
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rlm@428
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417 (fn [note-on note-off]
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rlm@428
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418 {:frequency (midi-code->frequency (:note (:args note-on)))
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rlm@428
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419 :duration
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rlm@428
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420 (/ (* (/ tempo division)
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rlm@428
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421 (- (:time note-off) (:time note-on)))
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rlm@428
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422 1e6) ;; convert clock-pulses into seconds
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rlm@428
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423 :volume (int (/ (:velocity (:args note-on)) 10))
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rlm@428
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424 :time-stamp (/ (* (/ tempo division)
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rlm@428
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425 (:time note-on)) 1e6)})
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rlm@428
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426 channel-1-on channel-1-off)
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rlm@428
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427
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rlm@428
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428 silences
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rlm@428
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429 (map (fn [note-1 note-2]
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rlm@428
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430 (let [note-1-space (- (:time-stamp note-2)
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rlm@428
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431 (:time-stamp note-1))
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rlm@428
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432 note-1-length (:duration note-1)]
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rlm@428
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433 (silence (- note-1-space note-1-length))))
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rlm@428
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434 ;; to handle silence at the beginning.
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rlm@428
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435 (concat [(assoc (silence 0)
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rlm@428
|
436 :time-stamp 0)] notes)
|
rlm@428
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437 notes)
|
rlm@428
|
438
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rlm@428
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439 notes-with-silence
|
rlm@428
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440 (filter (comp not zero? :duration) (interleave silences notes))
|
rlm@427
|
441 ]
|
rlm@428
|
442
|
rlm@427
|
443 (map
|
rlm@427
|
444 (fn [note-event]
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rlm@427
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445 (note-codes (:frequency note-event)
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rlm@427
|
446 (:volume note-event)
|
rlm@427
|
447 (int (* (:duration note-event) 0x100))))
|
rlm@428
|
448 notes-with-silence)))
|
rlm@428
|
449
|
rlm@428
|
450
|
rlm@424
|
451 (def C4 (partial note-codes 261.63))
|
rlm@424
|
452 (def D4 (partial note-codes 293.66))
|
rlm@424
|
453 (def E4 (partial note-codes 329.63))
|
rlm@424
|
454 (def F4 (partial note-codes 349.23))
|
rlm@424
|
455 (def G4 (partial note-codes 392))
|
rlm@424
|
456 (def A4 (partial note-codes 440))
|
rlm@424
|
457 (def B4 (partial note-codes 493.88))
|
rlm@424
|
458 (def C5 (partial note-codes 523.3))
|
rlm@424
|
459
|
rlm@430
|
460 (def scale
|
rlm@430
|
461 (flatten
|
rlm@430
|
462 [(C4 0xF 0x40)
|
rlm@430
|
463 (D4 0xF 0x40)
|
rlm@430
|
464 (E4 0xF 0x40)
|
rlm@430
|
465 (F4 0xF 0x40)
|
rlm@430
|
466 (G4 0xF 0x40)
|
rlm@430
|
467 (A4 0xF 0x40)
|
rlm@430
|
468 (B4 0xF 0x40)
|
rlm@430
|
469 (C5 0xF 0x40)]))
|
rlm@424
|
470
|
rlm@418
|
471 (defn play-music [music-bytes]
|
rlm@417
|
472 (let [program-target 0xC000
|
rlm@437
|
473 music-target 0xA000]
|
rlm@417
|
474 (-> (set-memory-range (second (music-base))
|
rlm@417
|
475 program-target (music-kernel))
|
rlm@417
|
476 (set-memory-range music-target music-bytes)
|
rlm@417
|
477 (PC! program-target))))
|
rlm@417
|
478
|
rlm@417
|
479
|
rlm@437
|
480 ;; (defn test-note [music-bytes]
|
rlm@437
|
481 ;; (-> (set-memory-range (second (music-base))
|
rlm@437
|
482 ;; 0xC000 (concat (clear-music-registers)
|
rlm@437
|
483 ;; (play-note)
|
rlm@437
|
484 ;; (infinite-loop)))
|
rlm@437
|
485 ;; (set-memory-range 0xD000 music-bytes)
|
rlm@437
|
486 ;; (PC! 0xC000)
|
rlm@437
|
487 ;; (HL! 0xD000)
|
rlm@437
|
488 ;; ))
|
rlm@417
|
489
|
rlm@417
|
490
|
rlm@417
|
491 (defn run-program
|
rlm@418
|
492 ([program]
|
rlm@417
|
493 (let [target 0xC000]
|
rlm@417
|
494 (-> (set-memory-range (second (music-base))
|
rlm@417
|
495 target program)
|
rlm@417
|
496 (PC! target)))))
|
rlm@417
|
497
|
rlm@424
|
498 (defn test-timer []
|
rlm@424
|
499 (flatten
|
rlm@424
|
500 [0x3E
|
rlm@424
|
501 0x01
|
rlm@424
|
502 0xE0
|
rlm@424
|
503 0x06 ;; set TMA to 0
|
rlm@424
|
504
|
rlm@424
|
505 0x3E
|
rlm@424
|
506 (Integer/parseInt "00000100" 2)
|
rlm@424
|
507 0xE0
|
rlm@424
|
508 0x07 ;; set TAC to 16384 Hz and activate timer
|
rlm@424
|
509
|
rlm@424
|
510 (repeat
|
rlm@424
|
511 500
|
rlm@424
|
512 [0xF0
|
rlm@424
|
513 0x05])]))
|
rlm@426
|
514
|
rlm@426
|
515
|