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#lang br
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(require racket/file rackunit racket/async-channel)
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(define (string->ints str) (map string->number (string-split str #px",\\s*")))
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(define (string->regs str) (list->vector (string->ints str)))
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(define ((binarize proc) x y) (if (proc x y) 1 0))
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(define (make-runner program inch ouch)
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(thread (λ ()
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(define regs (string->regs (file->string program)))
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(define (maybe-enlarge-regs ptr)
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(unless (< ptr (vector-length regs))
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(define newvec (make-vector (add1 ptr) 0))
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(vector-copy! newvec 0 regs)
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(set! regs newvec))
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regs)
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(define (reg-ref ptr) (vector-ref (maybe-enlarge-regs ptr) ptr))
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(define (reg-set! ptr val) (vector-set! (maybe-enlarge-regs ptr) ptr val))
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(define relative-base 0)
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(define address #false)
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(let/ec terminate
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(let loop ([ptr 0])
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(define inst (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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(define-values (opcode resolve)
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(match inst
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[(list d4 d3 d2 d1 d0)
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(values (+ (* 10 d1) d0)
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(λ (ptr offset)
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(define parameter-value (match offset [1 d2] [2 d3] [3 d4]))
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(define ptr-resolver (match parameter-value
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[0 reg-ref] ; position
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[1 values] ; immediate
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[2 (compose1 (λ (ptr) (+ relative-base ptr)) reg-ref)])); relative
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(ptr-resolver (+ ptr offset))))]))
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(define next-ptr
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(match opcode
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[(or 1 2 7 8) ; 4-arity: add & multiply & compare
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(reg-set! (resolve ptr 3) ((match opcode
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[1 +]
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[2 *]
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[7 (binarize <)]
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[8 (binarize =)]) (reg-ref (resolve ptr 1)) (reg-ref (resolve ptr 2))))
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(+ ptr 4)]
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[(or 3 4 9) ; 2-arity: input & output
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(match opcode
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[3 (async-channel-put ouch 'wants-input)
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(define val (async-channel-get inch))
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(unless address (set! address val))
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(reg-set! (resolve ptr 1) val)]
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[4 (async-channel-put ouch (reg-ref (resolve ptr 1)))]
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[9 (set! relative-base (+ relative-base (reg-ref (resolve ptr 1))))])
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(+ ptr 2)]
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[(or 5 6) ; 3-arity: jump
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(if ((match opcode
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[5 not]
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[6 values]) (zero? (reg-ref (resolve ptr 1))))
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(reg-ref (resolve ptr 2))
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(+ ptr 3))]
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[99 (terminate)]
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[_ (error "unknown opcode" opcode)]))
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(loop next-ptr))))))
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(define packet-address first)
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(define packet-x second)
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(define packet-y third)
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(define (solve break-cond)
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(define nics (for/list ([i (in-range 50)])
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(define inch (make-async-channel))
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(define ouch (make-async-channel))
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(define th (make-runner "23.rktd" inch ouch))
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(async-channel-get ouch)
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(async-channel-put inch i)
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(list inch ouch i)))
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(define idle-nics (make-hasheq))
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(for/fold ([packets null]
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[nat #false]
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[idle-packets null]
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#:result (packet-y nat))
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([nicrec (in-cycle nics)]
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#:break (break-cond nat idle-packets))
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(define (network-idle?) (and (null? packets)
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(= 50 (length (hash-values idle-nics)))
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(for/and ([val (in-hash-values idle-nics)])
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(> val 10))))
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(cond
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[(network-idle?)
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(match-define (list inch _ _) (car nics))
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(async-channel-put inch (packet-x nat))
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(async-channel-put inch (packet-y nat))
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(set! idle-nics (make-hasheq))
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(values packets nat (cons nat idle-packets))]
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[else
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(match-define (list inch ouch nic-address) nicrec)
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(match (async-channel-get ouch)
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['wants-input
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(define-values (ps other-ps) (partition (λ (p) (= nic-address (packet-address p))) packets))
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(match (reverse ps)
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[(? null?) (async-channel-put inch -1)]
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[ps (for ([p (in-list ps)])
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(match-define (list _ x y) p)
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(async-channel-put inch x)
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(async-channel-put inch y))])
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(hash-update! idle-nics nic-address add1 0)
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(values other-ps nat idle-packets)]
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[dest
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(hash-set! idle-nics nic-address 0)
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(define next-packet (list dest (async-channel-get ouch) (async-channel-get ouch)))
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(if (eq? dest 255)
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(values packets next-packet idle-packets)
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(values (cons next-packet packets) nat idle-packets))])])))
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;; 1
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(check-eq? (solve (λ (nat idle-vals) nat)) 21089)
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;; 2
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(solve (λ (nat idle-packets)
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(match idle-packets
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[(list* (list _ _ y) (list _ _ y) _) y]
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[_ #false])))
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