mirror of
https://github.com/cookiengineer/audacity
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201 lines
6.8 KiB
Common Lisp
201 lines
6.8 KiB
Common Lisp
;nyquist plug-in
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;version 4
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;type process
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;preview linear
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;preview selection
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;categories "http://lv2plug.in/ns/lv2core#MixerPlugin"
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;name "Adjustable Fade..."
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;action "Applying Fade..."
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;author "Steve Daulton"
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;copyright "Released under terms of the GNU General Public License version 2"
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;; adjustable-fade.ny by Steve Daulton Dec 2012
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;; Released under terms of the GNU General Public License version 2:
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;; http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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;;
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;; For information about writing and modifying Nyquist plug-ins:
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;; http://wiki.audacityteam.org/wiki/Nyquist_Plug-ins_Reference
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;control type "Fade Type" choice "Fade Up,Fade Down,S-Curve Up,S-Curve Down" 0
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;control curve "Mid-fade Adjust (%)" real "" 0 -100 100
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;control units "Start/End as" choice "% of Original,dB Gain" 0
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;control gain-string-0 "Start (or end)" string "" "0" ""
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;control gain-string-1 "End (or start)" string "" "100" ""
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;control preset " Handy Presets\n(override controls)" choice "None Selected,Linear In,Linear Out,Exponential In,Exponential Out,Logarithmic In,Logarithmic Out,Rounded In,Rounded Out,Cosine In,Cosine Out,S-Curve In,S-Curve Out" 0
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(defun get-input (sig)
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"Preview takes the entire selection so that we know the correct
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selection length, but preview only needs to process preview length."
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(if (get '*track* 'view) ;NIL if preview
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sig
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(multichan-expand #'trim-input sig)))
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(defun trim-input (sig)
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"Trim input when previewing."
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(let ((dur (min (get-duration 1)
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(get '*project* 'preview-duration))))
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(setf sig (extract-abs 0 dur *track*))))
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(setq err "")
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; bad things may happen outside of the slider range.
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(setq curve (min 1 (max -1 (/ curve 100.0))))
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;;; Convert string to value
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(defun string-to-val (string)
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(setq val-array
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(read (make-string-input-stream (format nil "(~a)" string))))
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(if (and (= (length val-array) 1)
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(numberp (car val-array)))
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(let ((val (float (car val-array))))
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(case units
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(0 (/ val 100))
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(t (db-to-linear val))))))
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;;; invalid string error
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(defun invalid-string (x y)
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(unless x
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(setf err (format nil "~aYou entered \"~a\"~%~
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\"Start (or end):\" must be one number.~%"
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err
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gain-string-0)))
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(unless y
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(setf err (format nil "~aYou entered \"~a\"~%~
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\"End (or start):\" must be one number.~%"
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err gain-string-1)))
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err)
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;;; invalid values
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(defun check-values (x y)
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(when (or (< x 0)(< y 0))
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(setf err (format nil "~a% values cannot be negative.~%" err))))
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;;; select and apply fade
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(defun fade (sig type curve g0 g1)
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(mult (get-input sig)
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(case preset
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(0 (case type ; Custom fade
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(0 (simple (min g0 g1) (max g0 g1) curve))
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(1 (simple (max g0 g1) (min g0 g1) curve))
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(2 (raised-cos (min g0 g1)(max g0 g1) curve))
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(T (raised-cos (max g0 g1) (min g0 g1) curve))))
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(1 (linear 0 1)) ; Linear In
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(2 (linear 1 0)) ; Linear Out
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(3 (log-exp-curve -60 0)) ; Exponential In
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(4 (log-exp-curve -60 1)) ; ExponentialOut
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(5 (log-exp-curve 15.311 0)) ; Logarithmic In
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(6 (log-exp-curve 15.311 1)) ; Logarithmic Out
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(7 (simple-curve 0 1 0.5)) ; Rounded In
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(8 (simple-curve 1 0 0.5)) ; Rounded Out
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(9 (cosine-curve 0 1)) ; Cosine In
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(10 (cosine-curve 1 0)) ; Cosine Out
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(11 (raised-cos 0 1 0.0)) ; S-Curve In
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(t (raised-cos 1 0 0.0))))) ; S-Curve Out
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;;; Simple Curve:
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;;; Use cosine for + values and linear for -ve.
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(defun simple (g0 g1 curve)
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(cond
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((= g0 g1) g0) ; amplify
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((and (> curve 0)(< curve 0.5)) ; +ve curve less than 0.5, lin to cosine
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(let ((curve (* curve 2)))
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(sim
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(mult (- 1 curve)
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(scale-curve g0 g1 (linear g0 g1))) ; linear
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(mult curve
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(scale-curve g0 g1 (cosine-curve g0 g1)))))) ; cosine curve
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((> curve 0)
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(cos-curve g0 g1 (- 1.5 curve))) ; +ve curve > 0.5
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(t (simple-curve g0 g1 (- 1 (* 2 curve)))))) ; -ve curve
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;;; linear fade to the power of pow
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(defun simple-curve (g0 g1 pow)
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(curve-adjust g0 g1 pow
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(linear g0 g1)))
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;;; cosine fade to the power of pow
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(defun cos-curve (g0 g1 pow)
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(curve-adjust g0 g1 pow
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(cosine-curve g0 g1)))
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(defun curve-adjust (g0 g1 pow env)
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(scale-curve g0 g1
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(if (= pow 1)
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env
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(snd-exp
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(mult pow
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(snd-log env))))))
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;;; scale curves to min, max
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(defun scale-curve (g0 g1 env)
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(sum (min g0 g1)
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(mult (abs (- g0 g1)) env)))
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;;; cosine curve
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(defun cosine-curve (g0 g1)
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(let ((step (hz-to-step (/ 0.25 (get-duration 1))))
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(phase (if (> g0 g1) 90 0)))
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(osc step 1 *sine-table* phase)))
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;;; linear fade in, out
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(defun linear (g0 g1)
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(control-srate-abs *sound-srate*
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(if (> g0 g1) ; g0 = g1 does not occur here.
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(pwlv 1 1 0) ; fade out
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(pwlv 0 1 1)))) ; else fade in
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;;; raised cosine fades
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(defun raised-cos (g0 g1 curve)
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(setq curve
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(if (> curve 0)
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(exp-scale-mid (* 2 curve)) ; mid-point -3dB @ Adjust = 50%
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(exp-scale-mid (* 1.63 curve)))) ; mid-point -12dB @ Adjust = -50%
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(setf env
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(control-srate-abs *sound-srate* ; sound srate required for accuracy.
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(cond
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((= g0 g1) g0) ; amplify
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((> g0 g1) ; fade down
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(snd-exp
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(mult (pwlv (- 1 curve) 1 1)
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(snd-log (raised-cosin 90)))))
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(t (snd-exp ; fade up
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(mult (pwlv 1 1 (- 1 curve))
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(snd-log (raised-cosin -90))))))))
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(sum (min g0 g1)
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(mult (abs (- g0 g1)) env)))
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;;; raised cosine curve
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(defun raised-cosin (phase)
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(let ((hz (hz-to-step (/ (get-duration 2)))))
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(mult 0.5
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(sum 1
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(osc hz 1 *sine-table* phase)))))
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;;; log or exponential curve scaled 0 to 1
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;;; x is the minimum level in dB before scaling
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(defun log-exp-curve (x direction)
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(control-srate-abs *sound-srate*
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(let ((x (db-to-linear x)))
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;; If direction=0 fade-in else fade-out
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(if (= direction 0)
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(setf env (pwev x 1 1))
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(setf env (pwev 1 1 x)))
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(mult (/ (- 1 x)) ; normalize to 0 dB
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(diff env x))))) ; drop down to silence
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;;; curve scaling for S-curve
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(defun exp-scale-mid (x)
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(let ((e (exp 1.0)))
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(/ (- (exp (- 1 x)) e)
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(- 1 e))))
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(let ((gain0 (string-to-val gain-string-0))
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(gain1 (string-to-val gain-string-1)))
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(if (and gain0 gain1)
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(check-values gain0 gain1)
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(setf err (format nil "~a" (invalid-string gain0 gain1))))
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(if (= (length err) 0)
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(fade *track* type curve gain0 gain1)
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(format nil "Error.~%~a." err)))
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