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@ -12,12 +12,13 @@
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(define (reg-set! ptr val) (vector-set! regs (reg-ref ptr) val))
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(define (reg-set! ptr val) (vector-set! regs (reg-ref ptr) val))
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(let/ec terminate
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(let/ec terminate
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(let loop ([ptr 0])
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(let loop ([ptr 0])
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(match-define (list opcode mode1 mode2 mode3)
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(match-define (list opcode mode-1 mode-2 mode-3)
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(match (for/list ([c (in-string (~r (reg-ref ptr) #:min-width 5 #:pad-string "0"))])
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(match (for/list ([c (in-string (~r (reg-ref ptr) #:min-width 5 #:pad-string "0"))])
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(string->number (string c)))
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(string->number (string c)))
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[(list d4 d3 d2 d1 d0) (cons (+ (* 10 d1) d0)
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[(list d4 d3 d2 d1 d0) (cons (+ (* 10 d1) d0)
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(for/list ([mode (list d2 d3 d4)])
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(for/list ([mode-val (list d2 d3 d4)]
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(if (zero? mode) reg-ref values)))]))
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[offset '(1 2 3)])
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(λ (ptr) ((if (zero? mode-val) reg-ref values) (reg-ref (+ ptr offset))))))]))
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(define next-ptr
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(define next-ptr
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(match opcode
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(match opcode
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[(or 1 2 7 8) ; 4-arity: add & multiply & compare
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[(or 1 2 7 8) ; 4-arity: add & multiply & compare
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@ -25,19 +26,18 @@
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[1 +]
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[1 +]
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[2 *]
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[2 *]
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[7 (binarize <)]
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[7 (binarize <)]
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[8 (binarize =)]) (mode1 (reg-ref (+ ptr 1)))
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[8 (binarize =)]) (mode-1 ptr) (mode-2 ptr)))
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(mode2 (reg-ref (+ ptr 2)))))
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(+ ptr 4)]
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(+ ptr 4)]
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[(or 3 4) ; 2-arity: input & output
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[(or 3 4) ; 2-arity: input & output
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(match opcode
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(match opcode
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[3 (reg-set! (+ ptr 1) starting-input)]
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[3 (reg-set! (+ ptr 1) starting-input)]
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[4 (println (reg-ref (mode1 (+ ptr 1))))])
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[4 (println (mode-1 ptr))])
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(+ ptr 2)]
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(+ ptr 2)]
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[(or 5 6) ; 3-arity: jump
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[(or 5 6) ; 3-arity: jump
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(if ((match opcode
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(if ((match opcode
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[5 not]
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[5 not]
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[6 values]) (zero? (mode1 (reg-ref (+ ptr 1)))))
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[6 values]) (zero? (mode-1 ptr)))
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(mode2 (reg-ref (+ ptr 2)))
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(mode-2 ptr)
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(+ ptr 3))]
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(+ ptr 3))]
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[99 (terminate)]
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[99 (terminate)]
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[_ (error 'unknown-opcode)]))
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[_ (error 'unknown-opcode)]))
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