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#lang br/quicklang
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(require (for-syntax syntax/strip-context))
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(provide #%top-interaction #%app #%datum
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(rename-out [basic-module-begin #%module-begin])
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(all-defined-out))
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; BASIC implementation details
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; http://www.atariarchives.org/basicgames/showpage.php?page=i12
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(begin-for-syntax
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(require racket/list)
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(define (gather-unique-ids stx)
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(remove-duplicates (map syntax->datum (filter (λ(s) (syntax-property s 'id)) (syntax-flatten stx))) eq?)))
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(define-macro (basic-module-begin (basic-program PROGRAM-LINE ...))
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(with-pattern ([(UNIQUE-ID ...)
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(map (compose1 syntax-local-introduce (λ(id) (datum->syntax #f id)))
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(gather-unique-ids #'(PROGRAM-LINE ...)))])
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#'(#%module-begin
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(define UNIQUE-ID 0) ...
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(provide UNIQUE-ID ...)
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(run (sort (cons (line +inf.0 (statement "end"))
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(list PROGRAM-LINE ...)) #:key $line-number <)))))
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(struct exn:line-not-found exn:fail ())
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(define (raise-line-not-found-error ln)
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(raise
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(exn:line-not-found
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(format "line number ~a not found in program" ln)
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(current-continuation-marks))))
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(struct end-program-signal exn:fail ())
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(define (raise-end-program-signal)
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(raise (end-program-signal "" (current-continuation-marks))))
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(struct end-line-signal exn:fail ())
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(define (raise-end-line-signal)
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(raise (end-line-signal "" (current-continuation-marks))))
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(define (run line-list)
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(define lines (list->vector line-list))
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(define (find-index ln)
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(or
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(for/or ([idx (in-range (vector-length lines))])
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(and (= ($line-number (vector-ref lines idx)) ln)
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idx))
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(raise-line-not-found-error ln)))
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(void
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(with-handlers ([end-program-signal? void])
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(for/fold ([program-counter 0])
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([i (in-naturals)])
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(let* ([line-thunk ($line-thunk (vector-ref lines program-counter))]
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[maybe-line-number (line-thunk)])
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(if (number? maybe-line-number)
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(find-index maybe-line-number)
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(add1 program-counter)))))))
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(define current-return-stack (make-parameter empty))
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(define (basic:gosub where)
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(let/cc return-k
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(current-return-stack (cons return-k (current-return-stack)))
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(basic:goto where)))
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(define current-line (make-parameter #f))
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(struct $line (number thunk) #:transparent)
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(define-macro (line NUMBER . STATEMENTS)
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#'($line NUMBER (λ ()
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(current-line NUMBER)
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(with-handlers ([end-line-signal? (λ _ #f)]
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[end-program-signal? raise]
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[exn:fail? (λ(exn)
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(displayln (format "in line ~a" NUMBER))
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(raise exn))])
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. STATEMENTS))))
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(define-macro-cases statement
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[(statement ID "=" EXPR) #'(basic:let ID EXPR)]
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[(statement PROC-NAME . ARGS)
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(with-pattern
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([PROC-ID (prefix-id "basic:" #'PROC-NAME)])
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#'(PROC-ID . ARGS))])
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(define-macro-cases basic:let
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[(_ (id-expr ID) EXPR)
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#'(set! ID EXPR)]
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[(_ (id-expr ID DIM-IDX ...) EXPR)
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#'(array-set! ID DIM-IDX ... EXPR)])
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(define-macro-cases basic:if
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[(_ COND-EXPR TRUE-EXPR FALSE-EXPR)
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#'(if (true? COND-EXPR)
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TRUE-EXPR
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FALSE-EXPR)]
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[(_ COND-EXPR TRUE-EXPR)
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#'(if (true? COND-EXPR)
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TRUE-EXPR
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(raise-end-line-signal))]) ; special short-circuit rule for one-armed conditional
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(define true? (compose1 not zero?))
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(define (cond->int cond) (if cond 1 0))
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(define (basic:and . args) (cond->int (andmap true? args)))
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(define (basic:or . args) (cond->int (ormap true? args)))
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(define-macro-cases id-expr
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[(_ ID) #'(cond
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[(procedure? ID) (ID)]
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[(array? ID) (array-ref ID (make-vector (array-rank ID) 0))] ; no subscript => zeroth element
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[else ID])]
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[(_ ID EXPR0 EXPR ...) #'(cond
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[(procedure? ID) (ID EXPR0 EXPR ...)]
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[(array? ID) (array-ref ID EXPR0 EXPR ...)]
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[else (error 'id-expr-confused)])])
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(define-macro-cases expr
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[(_ COMP-EXPR) #'COMP-EXPR]
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[(_ COMP-EXPR "and" SUBEXPR) #'(basic:and COMP-EXPR SUBEXPR)]
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[(_ COMP-EXPR "or" SUBEXPR) #'(basic:or COMP-EXPR SUBEXPR)])
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(define-macro-cases comp-expr
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[(_ SUM) #'SUM]
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[(_ SUM "=" COMP-EXPR)
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#'(cond->int (equal? SUM COMP-EXPR))] ; special case because `=` is overloaded in basic
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[(_ SUM OP-STR COMP-EXPR)
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(with-pattern
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([OP (replace-context #'here (prefix-id #'OP-STR))])
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#'(cond->int (OP SUM COMP-EXPR)))])
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(define <> (compose1 not equal?))
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(define-macro-cases sum
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[(_ SUM) #'SUM]
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[(_ SUM "+" PRODUCT) #'(+ SUM PRODUCT)]
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[(_ SUM "-" PRODUCT) #'(- SUM PRODUCT)])
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(define-macro-cases product
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[(_ "-" VALUE) #'(- VALUE)]
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[(_ VALUE) #'VALUE]
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[(_ PRODUCT "*" VALUE) #'(* PRODUCT VALUE)]
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[(_ PRODUCT "/" VALUE) #'(/ PRODUCT VALUE)])
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(define-macro-cases power
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[(_ BASE) #'BASE]
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[(_ BASE POWER) #'(expt BASE POWER)])
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(define-macro-cases maybe-negative-val
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[(_ "-" ID) #'(- ID)]
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[(_ ID) #'ID])
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(define print-list list)
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(define (basic:print [args #f])
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(define (println [x ""])
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(define xstr (format "~a" x))
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(displayln xstr)
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(current-print-position 0))
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(define (print x)
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(define xstr (format "~a" x))
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(display xstr)
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(current-print-position (+ (current-print-position) (string-length xstr))))
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(match args
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[#f (println)]
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[(list print-list-items ... ";" pl)
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(begin
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(for-each
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(λ(pli)
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(print (if (number? pli)
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(format "~a " pli)
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pli)))
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print-list-items)
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(basic:print pl))]
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[(list print-list-items ... ";") (for-each print print-list-items)]
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[(list print-list-items ...)
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(for-each println print-list-items)]))
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(define current-print-position (make-parameter 0))
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(define (TAB num) (make-string (max 0 (INT (- num (current-print-position)))) #\space))
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(define (INT num) (inexact->exact (truncate num)))
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(define (SIN num) (sin num))
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(define (ABS num) (inexact->exact (abs num)))
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(define (RND num) (* (random) num))
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(define (EXP num) (exp num))
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(define (SQR num) (sqrt num))
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(define-macro-cases basic:input
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[(_ (print-list . PL-ITEMS) ID ...)
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#'(begin
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(basic:print (append (print-list . PL-ITEMS) (list ";")))
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(basic:input ID) ...)]
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[(_ ID ...) #'(begin
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(set! ID (let* ([str (read-line)]
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[num (string->number (string-trim str))])
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(or num str))) ...)])
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(define (basic:goto where) where)
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(define-macro-cases basic:on
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[(_ TEST-EXPR "goto" OPTION ...)
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#'(basic:goto (list-ref (list OPTION ...) (sub1 TEST-EXPR)))]
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[(_ TEST-EXPR "gosub" OPTION ...)
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#'(basic:gosub (list-ref (list OPTION ...) (sub1 TEST-EXPR)))])
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(define (basic:return)
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(define return-k (car (current-return-stack)))
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(current-return-stack (cdr (current-return-stack)))
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(return-k #f))
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(define (basic:stop) (basic:end))
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(define (basic:end) (raise-end-program-signal))
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(require srfi/25)
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(define-macro (basic:dim (id-expr ID EXPR ...) ...)
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#'(begin
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(set! ID (make-array (apply shape (append (list 0 (add1 EXPR)) ...)))) ...))
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(define current-for-stack (make-parameter empty))
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(define (push-for-stack thunk)
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(current-for-stack (cons thunk (current-for-stack))))
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(define (pop-for-stack)
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(current-for-stack (cdr (current-for-stack))))
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(define (in-closed-interval? x left right)
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(define cmp (if (< left right) <= >=))
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(cmp left x right))
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(define-macro-cases basic:for
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[(_ VAR START-VALUE END-VALUE)
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#'(basic:for VAR START-VALUE END-VALUE 1)]
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[(_ VAR START-VALUE END-VALUE STEP-VALUE)
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#'(begin
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(statement (id-expr VAR) "=" START-VALUE) ; initialize the loop counter
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(let/cc return-k ; create a return point
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(push-for-stack (cons 'VAR
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(λ () ; thunk that increments counter & teleports back to beginning of loop
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(define next-val (+ VAR STEP-VALUE))
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(if (next-val . in-closed-interval? . START-VALUE END-VALUE)
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(begin
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(set! VAR next-val)
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(return-k #f)) ; return value for subsequent visits to line
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(pop-for-stack)))))
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#f))]) ; return value for first visit to line
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(define (handle-next [which #f])
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(unless (pair? (current-for-stack)) (error 'next "for-stack is empty"))
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(define for-thunk (cdr (if which
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(assq which (current-for-stack))
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(car (current-for-stack)))))
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(for-thunk))
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(define-macro (basic:next VAR ...)
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#'(handle-next 'VAR ...))
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(define-macro (basic:def DEF-ID LAMBDA-ID EXPR)
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#'(set! DEF-ID (λ (LAMBDA-ID) EXPR)))
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