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typesetting/quad/quad2/main.rkt

94 lines
3.3 KiB
Racket

#lang debug racket/base
(require racket/contract racket/function rackunit)
(struct $point (x y) #:transparent #:mutable)
(struct $size (width height) #:transparent #:mutable)
(struct $rect (origin size) #:transparent #:mutable)
(struct $quad (posn char) #:transparent #:mutable)
(define/contract (posn-add p0 p1)
($point? $size? . -> . $point?)
($point (+ ($point-x p0) ($size-width p1)) (+ ($point-y p0) ($size-height p1))))
(define/contract (size char)
($quad? . -> . $size?)
($size 1 1))
(define/contract (advance char)
($quad? . -> . $size?)
($size 1 0))
(define pass/c ((listof $quad?) . -> . (listof $quad?)))
(define/contract (quadify str)
(string? . -> . (listof $quad?))
(for/list ([c (in-string str)])
($quad #f c)))
(define/contract (make-compiler . passes)
(() #:rest (listof pass/c)
. ->* . (string? . -> . (listof $quad?)))
(apply compose1 (reverse (cons quadify passes))))
(define-syntax-rule (define-pass (PASS-NAME ARG)
#:precondition PRECOND-PROC
#:postcondition POSTCOND-PROC
EXPRS ...)
(define/contract (PASS-NAME ARG)
pass/c
(unless (PRECOND-PROC ARG)
(error 'precondition-failed))
(define res (let () EXPRS ...))
(unless (POSTCOND-PROC res)
(error 'postcondition-failed))
res))
(define (min-x rect) ($point-x ($rect-origin rect)))
(define (width rect) ($size-width ($rect-size rect)))
(define (max-x rect) (+ (min-x rect) (width rect)))
(define (min-y rect) ($point-y ($rect-origin rect)))
(define (height rect) ($size-height ($rect-size rect)))
(define (max-y rect) (+ (min-y rect) (height rect)))
(define/contract (rect-contains-point? rect pt)
($rect? $point? . -> . boolean?)
(and (<= (min-x rect) ($point-x pt) (max-x rect))
(<= (min-y rect) ($point-y pt) (max-y rect))))
(define/contract (rect-contains-rect? outer inner)
($rect? $rect? . -> . boolean?)
(and (rect-contains-point? outer ($rect-origin inner))
(rect-contains-point? outer ($point (max-x inner) (max-y inner)))))
(define (has-position? q) (not (eq? ($quad-posn q) #false)))
(define-pass (layout qs)
#:precondition (λ (qs) (andmap (λ (q) (not (has-position? q))) qs))
#:postcondition (λ (qs) (andmap has-position? qs))
(define frame ($rect ($point 0 0) ($size 5 30)))
(define (quad-fits? q posn)
(define q-size (size q))
(define quad-rect ($rect posn q-size))
(and (rect-contains-rect? frame quad-rect) posn))
(for/fold ([posn ($point 0 0)]
#:result qs)
([q (in-list qs)])
(define first-posn-on-next-line ($point 0 (add1 ($point-y posn))))
(define winning-posn (or (ormap (λ (posn) (quad-fits? q posn)) (list posn first-posn-on-next-line)) (error 'no-posn-that-fits)))
(set-$quad-posn! q winning-posn)
(posn-add winning-posn (advance q))))
(define compile (make-compiler layout))
(check-equal? (compile "Hello world")
(list
($quad ($point 0 0) #\H)
($quad ($point 1 0) #\e)
($quad ($point 2 0) #\l)
($quad ($point 3 0) #\l)
($quad ($point 4 0) #\o)
($quad ($point 0 1) #\space)
($quad ($point 1 1) #\w)
($quad ($point 2 1) #\o)
($quad ($point 3 1) #\r)
($quad ($point 4 1) #\l)
($quad ($point 0 2) #\d)))