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#lang debug racket/base
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(require racket/match
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racket/hash
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racket/list
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racket/string
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"dimension.rkt"
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"pipeline.rkt"
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"struct.rkt"
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"constants.rkt"
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"quad.rkt"
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"param.rkt")
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(provide (all-defined-out))
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(define (do-attr-iteration qs #:which-attr which-arg #:value-proc proc)
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(define key-predicate
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(match which-arg
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[(? attr? attr) (λ (k) (eq? k (attr-name attr)))]
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[(and (list (? attr?) ...) attrs) (λ (k) (memq k (map attr-name attrs)))]
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[(? procedure? pred) pred]
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[other (raise-argument-error 'do-attr-iteration "key predicate" other)]))
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(define attrs-seen (make-hasheq))
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(for ([q (in-list qs)])
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(define attrs (quad-attrs q))
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(hash-ref! attrs-seen attrs
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(λ ()
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(for ([k (in-hash-keys attrs)]
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#:when (key-predicate k))
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(hash-update! attrs k (λ (val) (proc val attrs))))
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#t)))
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qs)
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(define-pass (upgrade-attr-keys qs)
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;; convert attr keys from symbols to attr struct types
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;; also lets us validate keys strictly, if we want
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#:pre (list-of quad?)
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#:post (list-of quad?)
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(define attr-lookup-table (for/hasheq ([a (in-list (current-attrs))])
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(values (attr-name a) a)))
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(define attrs-seen (make-hasheq))
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(define strict-attrs? (current-strict-attrs?))
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(for ([q (in-list qs)])
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(define attrs (quad-attrs q))
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(hash-ref! attrs-seen attrs
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(λ ()
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(for ([(k v) (in-hash attrs)]
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#:unless (attr? k))
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(cond
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[(symbol? k)
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(match (hash-ref attr-lookup-table k #false)
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[(? attr? attr)
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(hash-remove! attrs k)
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(hash-set! attrs attr v)]
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[_ #:when strict-attrs?
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(raise-argument-error 'upgrade-attr-keys "known attr" k)]
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[_ (void)])]
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[else (raise-argument-error 'upgrade-attr-keys "symbol or attr" k)]))
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#t)))
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qs)
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(define-pass (downcase-attr-values qs)
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;; make attribute values lowercase, unless they're case-sensitive
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;; so we can check them more easily later.
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;; in principle we could do this earlier and recursively process a single quad
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;; rather than linearized quads
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;; it would be faster because there are fewer copies of the attr hashes,
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;; so we do fewer tests
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;; but let's stay with the pipeline policy of operating on flat lists of quads
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#:pre (list-of quad?)
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#:post (list-of quad?)
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(do-attr-iteration qs
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#:which-attr attr-cased-string?
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#:value-proc (λ (val attrs) (string-downcase val))))
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(define-pass (convert-boolean-attr-values qs)
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#:pre (list-of quad?)
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#:post (list-of quad?)
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(do-attr-iteration qs
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#:which-attr attr-boolean?
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#:value-proc (λ (val attrs) (match (string-downcase val)
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["false" #false]
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[_ #true]))))
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(define-pass (convert-numeric-attr-values qs)
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#:pre (list-of quad?)
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#:post (list-of quad?)
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(do-attr-iteration qs
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#:which-attr attr-numeric?
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#:value-proc (λ (val attrs)
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(or (string->number val)
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(raise-argument-error 'convert-numeric-attr-values "numeric string" val)))))
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(define-pass (complete-attr-paths qs)
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#:pre (list-of quad?)
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#:post (list-of quad?)
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;; convert every pathlike thing to a complete path (well, path string, because it's inside an attr)
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;; so we don't get tripped up later by relative paths
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;; relies on `current-directory` being parameterized to source file's dir
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(do-attr-iteration qs
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#:which-attr attr-path?
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#:value-proc (λ (val attrs) (path->complete-path val))))
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(define-pass (parse-dimension-strings qs)
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#:pre (list-of quad?)
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#:post (list-of quad?)
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;; certain attributes can be "dimension strings", which are strings like "3in" or "4.2cm"
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;; we parse them into the equivalent measurement in points.
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(do-attr-iteration qs
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#:which-attr attr-dimension-string?
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#:value-proc parse-dimension))
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(module+ test
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(require rackunit)
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(define-attr-list debug-attrs
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[:foo (attr-cased-string 'foo)]
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[:ps (attr-path 'ps)]
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[:dim (attr-dimension-string 'dim)]
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[:boolt (attr-boolean 'bool)]
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[:boolf (attr-boolean 'bool)]
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[:num (attr-numeric 'num)])
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(parameterize ([current-attrs debug-attrs])
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(define q (make-quad #:attrs (make-hasheq (list (cons :foo "BAR")
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(cons 'ding "dong")
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(cons :ps "file.txt")
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(cons :dim "2in")
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(cons :boolt "true")
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(cons :boolf "false")
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(cons :num "42.5")))))
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(define qs (list q))
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(check-not-exn (λ ()
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(parameterize ([current-strict-attrs? #false])
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(upgrade-attr-keys qs))))
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(check-exn exn? (λ ()
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(parameterize ([current-strict-attrs? #true])
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(upgrade-attr-keys qs))))
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(check-equal? (quad-ref (car (downcase-attr-values qs)) :foo) "bar")
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(check-true (complete-path? (string->path (quad-ref (car (complete-attr-paths qs)) :ps))))
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(check-equal? (quad-ref (car (parse-dimension-strings qs)) :dim) 144)
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(let ([q (car (convert-boolean-attr-values qs))])
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(check-true (quad-ref q :boolt))
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(check-false (quad-ref q :boolf)))
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(check-equal? (quad-ref (car (convert-numeric-attr-values qs)) :num) 42.5)))
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