Refactor uint Decoders
Instead bit-shifting to 'place' the bits where we want them to be and adding Lisp provides the DPB function that allows us to deposit bits where we want them in an integer.
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1 changed files with 15 additions and 18 deletions
33
osc.lisp
33
osc.lisp
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@ -291,25 +291,22 @@
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(ldb (byte 16 0) (decode-int32 s)))
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(ldb (byte 16 0) (decode-int32 s)))
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#-(or sbcl cmucl openmcl allegro) (error "cant decode floats using this implementation"))
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#-(or sbcl cmucl openmcl allegro) (error "cant decode floats using this implementation"))
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(defun decode-uint32 (s)
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(defmacro defint-decoder (num-of-octets &optional docstring)
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"4 byte -> 32 bit unsigned int"
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(let ((decoder-name (intern (format nil "~:@(decode-uint~)~D" (* 8 num-of-octets))))
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(let ((i (+ (ash (elt s 0) 24)
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(seq (gensym))
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(ash (elt s 1) 16)
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(int (gensym)))
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(ash (elt s 2) 8)
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`(defun ,decoder-name (,seq)
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(elt s 3))))
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,@(when docstring
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i))
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(list docstring))
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(let* ((,int 0)
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,@(loop
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for n below num-of-octets
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collect `(,int (dpb (aref ,seq ,n) (byte 8 (* 8 (- (1- ,num-of-octets) ,n)))
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,int))))
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int))))
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(defun decode-uint64 (s)
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(defint-decoder 4 "4 byte -> 32 bit unsigned int")
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"8 byte -> 64 bit unsigned int"
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(defint-decoder 8 "8 byte -> 64 bit unsigned int")
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(let ((i (+ (ash (elt s 0) 56)
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(ash (elt s 1) 48)
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(ash (elt s 2) 40)
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(ash (elt s 3) 32)
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(ash (elt s 4) 24)
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(ash (elt s 5) 16)
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(ash (elt s 6) 8)
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(elt s 7))))
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i))
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(defmacro defint-encoder (num-of-octets &optional docstring)
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(defmacro defint-encoder (num-of-octets &optional docstring)
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(let ((enc-name (intern (format nil "~:@(encode-int~)~D" (* 8 num-of-octets))))
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(let ((enc-name (intern (format nil "~:@(encode-int~)~D" (* 8 num-of-octets))))
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