view clojure/com/aurellem/run/music.clj @ 434:988f0fda6c93

paramaterized music-step
author Robert McIntyre <rlm@mit.edu>
date Wed, 25 Apr 2012 01:58:44 -0500
parents 985c90ffa1fe
children 3939ad680681
line wrap: on
line source
1 (ns com.aurellem.run.music
2 (:use (com.aurellem.gb saves gb-driver util constants
3 items vbm characters money
4 rlm-assembly))
5 (:use (com.aurellem.run util title save-corruption
6 bootstrap-0 bootstrap-1))
7 (:require clojure.string)
8 (:import [com.aurellem.gb.gb_driver SaveState])
9 (:import java.io.File))
11 (def third-kind
12 (File. "/home/r/proj/midi/third-kind.mid"))
14 (defn raw-midi-text [#^File midi-file]
15 (:out
16 (clojure.java.shell/sh
17 "midicsv"
18 (.getCanonicalPath midi-file)
19 "-")))
21 (def command-line #"^(\d+), (\d+), ([^,]+)(.*)$")
23 (defmulti parse-command :command)
25 (defn discard-args [command] (dissoc command :args))
27 (defmethod parse-command :Start_track
28 [command] (discard-args command))
30 (defmethod parse-command :End_track
31 [command] (discard-args command))
33 (defmethod parse-command :default
34 [command] command)
36 (defn parse-number-list
37 [number-list-str]
38 (map #(Integer/parseInt %)
39 (clojure.string/split number-list-str #", ")))
41 (defmethod parse-command :Tempo
42 [command]
43 (update-in command [:args] #(Integer/parseInt %)))
45 (defn parse-midi-note-list
46 [midi-note-list-str]
47 (let [[channel note velocity]
48 (parse-number-list midi-note-list-str)]
49 {:channel channel :note note :velocity velocity}))
51 (defmethod parse-command :Note_on_c
52 [command]
53 (update-in command [:args] parse-midi-note-list))
55 (defmethod parse-command :Note_off_c
56 [command]
57 (update-in command [:args] parse-midi-note-list))
59 (defmethod parse-command :Header
60 [command]
61 (let [args (:args command)
62 [format num-tracks division] (parse-number-list args)]
63 (assoc command :args
64 {:format format
65 :num-tracks num-tracks
66 :division division})))
68 (defmethod parse-command :Program_c
69 [command]
70 (let [args (:args command)
71 [channel program-num] (parse-number-list args)]
72 (assoc command :args
73 {:channel channel
74 :program-num program-num})))
76 (defn parse-midi [#^File midi-file]
77 (map
78 (comp parse-command
79 (fn [line]
80 (let [[[_ channel time command args]]
81 (re-seq command-line line)]
82 {:channel (Integer/parseInt channel)
83 :time (Integer/parseInt time)
84 :command (keyword command)
85 :args (apply str (drop 2 args))})))
86 (drop-last
87 (clojure.string/split-lines
88 (raw-midi-text midi-file)))))
90 (def music-base new-kernel)
92 (defn store [n address]
93 (flatten
94 [0xF5
95 0xE5
97 0x3E
98 n
100 0x21
101 (reverse (disect-bytes-2 address))
103 0x77
105 0xE1
106 0xF1]))
108 (defn infinite-loop []
109 [0x18 0xFE])
111 (def divider-register 0xFF04)
113 (defrecord Bit-Note [frequency volume duration duty])
115 (defn clear-music-registers []
116 (flatten
117 [(store (Integer/parseInt "00000000" 2) 0xFF10) ;; sweep
118 (store (Integer/parseInt "00000000" 2) 0xFF11) ;; pattern duty
119 (store (Integer/parseInt "00000000" 2) 0xFF12) ;; volume
120 (store (Integer/parseInt "00000000" 2) 0xFF13) ;; frequency-low
121 (store (Integer/parseInt "00000000" 2) 0xFF14) ;; frequency-high
123 (store (Integer/parseInt "00000000" 2) 0xFF16) ;; pattern duty 000000
124 (store (Integer/parseInt "00000000" 2) 0xFF17) ;; volume 0000
125 (store (Integer/parseInt "00000000" 2) 0xFF18) ;; frequency-low
126 (store (Integer/parseInt "00000000" 2) 0xFF19) ;; 00000 frequency-high
128 (store (Integer/parseInt "00000000" 2) 0xFF1A)
129 (store (Integer/parseInt "00000000" 2) 0xFF1B)
130 (store (Integer/parseInt "00000000" 2) 0xFF1C)
131 (store (Integer/parseInt "00000000" 2) 0xFF1D)
132 (store (Integer/parseInt "00000000" 2) 0xFF1E)
134 (store (Integer/parseInt "00000000" 2) 0xFF20) ;; length
135 (store (Integer/parseInt "00000000" 2) 0xFF21) ;; volume
136 (store (Integer/parseInt "00000000" 2) 0xFF22) ;; noise-frequency
137 (store (Integer/parseInt "00000000" 2) 0xFF23) ;; control
138 ]))
141 ;; mini-midi syntax
143 ;; codes
144 ;; note-code == 0x00
145 ;; change-duty-code = 0x01
146 ;; silence-code = 0x02
148 ;; silence format
149 ;; 2 bytes
150 ;; [silence-code (0x02)]
151 ;; [duration-8-bits]
153 ;; note data format
154 ;; 4 bytes
155 ;; [note-code (0x00)]
156 ;; [volume-4-bits 0 frequency-high-3-bits]
157 ;; [frequengy-low-8-bits]
158 ;; [duration-8-bits]
160 ;; change-duty-format
161 ;; 2 bytes
162 ;; [change-duty-code (0x01)]
163 ;; [new-duty]
165 (def note-code 0x00)
166 (def change-duty-code 0x01)
167 (def silence-code 0x02)
169 (defn do-message
170 "Read the message which starts at the current value of HL and do
171 what it says. Duration is left in A, and HL is advanced
172 appropraitely."
173 ([] (do-message 0x16))
174 ([sound-base-address]
175 (let [switch
176 [0x2A ;; load message code into A, increment HL
178 ;; switch on message
179 0xFE
180 note-code
182 0x20
183 :note-length]
185 play-note
186 [0x2A ;; load volume/frequency-high info
187 0xF5 ;; push A
188 0xE6
189 (Integer/parseInt "11110000" 2) ;; volume mask
190 0xE0
191 (inc sound-base-address) ;;0x17 ;; set volume
192 0xF1 ;; pop A
193 0xE6
194 (Integer/parseInt "00000111" 2) ;; frequency-high mask
195 0xE0
196 (+ 3 sound-base-address) ;;0x19 ;; set frequency-high
198 0x2A ;; load frequency low-bits
199 0xE0
200 (+ 2 sound-base-address) ;;0x18 ;; set frequency-low-bits
201 0x2A]] ;; load duration
202 (replace
203 {:note-length (count play-note)}
204 (concat switch play-note)))))
206 ;; (defn play-note
207 ;; "Play the note referenced by HL in the appropiate channel.
208 ;; Leaves desired-duration in A."
210 ;; [0x2A ;; load volume/frequency-high info
211 ;; 0xF5 ;; push A
212 ;; 0xE6
213 ;; (Integer/parseInt "11110000" 2) ;; volume mask
214 ;; 0xE0
215 ;; 0x17 ;; set volume
216 ;; 0xF1 ;; pop A
217 ;; 0xE6
218 ;; (Integer/parseInt "00000111" 2) ;; frequency-high mask
219 ;; 0xE0
220 ;; 0x19 ;; set frequency-high
222 ;; 0x2A ;; load frequency low-bits
223 ;; 0xE0
224 ;; 0x18 ;; set frequency-low-bits
226 ;; 0x2A ;; load duration
227 ;; ])
229 (defn music-step [sound-base-address]
230 ;; C == current-ticks
231 ;; A == desired-ticks
233 (flatten
234 [0xF5 ;; push A
235 0xF0
236 0x05 ;; load current ticks from 0xF005
237 0xB8 ;;
238 0x30 ;; increment C only if last result caused carry
239 0x01
240 0x0C
242 0x47 ;; update sub-ticks (A->B)
244 0xF1 ;; pop AF, now A contains desired-ticks
246 0xB9 ;; compare with current ticks
248 ;; if desired-ticks = current ticks
249 ;; go to next note ; set current set ticks to 0.
251 0x20
252 (+ (count (do-message 0)) 2)
254 (do-message sound-base-address)
256 0x0E
257 0x00])) ;; 0->C (current-ticks)
259 (def music-2 0x16)
261 (defn music-kernel []
262 (flatten
263 [;; global initilization section
264 (clear-music-registers)
266 0x3E
267 0x01
268 0xE0
269 0x06 ;; set TMA to 0
271 0x3E
272 (Integer/parseInt "00000110" 2)
273 0xE0
274 0x07 ;; set TAC to 65536 Hz and activate timer
276 ;; local initilization section
277 0x21
278 0x00
279 0xD0 ;; set HL to 0xD000 == music-start
280 0x0E
281 0x00 ;; 0->C
282 0x06
283 0x00 ;; 0->B
284 0xAF ;; 0->A
289 (music-step music-2)
290 0x18
291 (->signed-8-bit (+ (- (count (music-step 0)))
292 -2))]))
294 (defn frequency-code->frequency
295 [code]
296 (assert (<= 0 code 2047))
297 (/ 131072 (- 2048 code)))
299 (defn clamp [x low high]
300 (cond (> x high) high
301 (< x low) low
302 true x))
304 (defn frequency->frequency-code
305 [frequency]
306 (clamp
307 (Math/round
308 (float
309 (/ (- (* 2048 frequency) 131072) frequency)))
310 0x00 2048))
312 (defn note-codes [frequency volume duration]
313 (assert (<= 0 volume 0xF))
314 (if (<= duration 0xFF)
315 (let [frequency-code
316 (frequency->frequency-code frequency)
317 volume&high-frequency
318 (+ (bit-shift-left volume 4)
319 (bit-shift-right frequency-code 8))
320 low-frequency
321 (bit-and 0xFF frequency-code)]
322 [note-code
323 volume&high-frequency
324 low-frequency
325 duration])
326 (vec
327 (flatten
328 [(note-codes frequency volume 0xFF)
329 (note-codes frequency volume (- duration 0xFF))]))))
332 (defn midi-code->frequency
333 [midi-code]
334 (* 8.1757989156
335 (Math/pow 2 (* (float (/ 12)) midi-code))))
337 ;; division == clock-pulses / quarter-note
338 ;; tempo == microseconds / quarter-note
340 ;; have: clock-pulses
341 ;; want: seconds
344 (defn silence [length]
345 {:frequency 1
346 :duration length
347 :volume 0})
349 (defn midi->mini-midi [#^File midi-file]
350 (let [midi-events (parse-midi midi-file)
352 note-on-events
353 (filter #(= :Note_on_c (:command %)) midi-events)
354 note-off-events
355 (filter #(= :Note_off_c (:command %)) midi-events)
357 channel-1-on
358 (sort-by :time
359 (filter #(= 1 (:channel (:args %)))
360 note-on-events))
361 channel-1-off
362 (sort-by :time
363 (filter #(= 1 (:channel (:args %)))
364 note-off-events))
367 tempo (:args (first (filter #(= :Tempo (:command %)) midi-events)))
368 division (:division
369 (:args (first (filter #(= :Header (:command %)) midi-events))))
371 notes
372 (map
373 (fn [note-on note-off]
374 {:frequency (midi-code->frequency (:note (:args note-on)))
375 :duration
376 (/ (* (/ tempo division)
377 (- (:time note-off) (:time note-on)))
378 1e6) ;; convert clock-pulses into seconds
379 :volume (int (/ (:velocity (:args note-on)) 10))
380 :time-stamp (/ (* (/ tempo division)
381 (:time note-on)) 1e6)})
382 channel-1-on channel-1-off)
384 silences
385 (map (fn [note-1 note-2]
386 (let [note-1-space (- (:time-stamp note-2)
387 (:time-stamp note-1))
388 note-1-length (:duration note-1)]
389 (silence (- note-1-space note-1-length))))
390 ;; to handle silence at the beginning.
391 (concat [(assoc (silence 0)
392 :time-stamp 0)] notes)
393 notes)
395 notes-with-silence
396 (filter (comp not zero? :duration) (interleave silences notes))
397 ]
399 (map
400 (fn [note-event]
401 (note-codes (:frequency note-event)
402 (:volume note-event)
403 (int (* (:duration note-event) 0x100))))
404 notes-with-silence)))
407 (def C4 (partial note-codes 261.63))
408 (def D4 (partial note-codes 293.66))
409 (def E4 (partial note-codes 329.63))
410 (def F4 (partial note-codes 349.23))
411 (def G4 (partial note-codes 392))
412 (def A4 (partial note-codes 440))
413 (def B4 (partial note-codes 493.88))
414 (def C5 (partial note-codes 523.3))
416 (def scale
417 (flatten
418 [(C4 0xF 0x40)
419 (D4 0xF 0x40)
420 (E4 0xF 0x40)
421 (F4 0xF 0x40)
422 (G4 0xF 0x40)
423 (A4 0xF 0x40)
424 (B4 0xF 0x40)
425 (C5 0xF 0x40)]))
427 (defn play-music [music-bytes]
428 (let [program-target 0xC000
429 music-target 0xD000]
430 (-> (set-memory-range (second (music-base))
431 program-target (music-kernel))
432 (set-memory-range music-target music-bytes)
433 (PC! program-target))))
436 (defn test-note [music-bytes]
437 (-> (set-memory-range (second (music-base))
438 0xC000 (concat (clear-music-registers)
439 (play-note)
440 (infinite-loop)))
441 (set-memory-range 0xD000 music-bytes)
442 (PC! 0xC000)
443 (HL! 0xD000)
444 ))
447 (defn run-program
448 ([program]
449 (let [target 0xC000]
450 (-> (set-memory-range (second (music-base))
451 target program)
452 (PC! target)))))
454 (defn test-timer []
455 (flatten
456 [0x3E
457 0x01
458 0xE0
459 0x06 ;; set TMA to 0
461 0x3E
462 (Integer/parseInt "00000100" 2)
463 0xE0
464 0x07 ;; set TAC to 16384 Hz and activate timer
466 (repeat
467 500
468 [0xF0
469 0x05])]))