Add txexpr/stx module (#5)
parent
77ea84153c
commit
87cd845136
@ -1,4 +1,4 @@
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#lang info
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(define scribblings '(("scribblings/txexpr.scrbl" ())))
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(define compile-omit-paths '("tests.rkt"))
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(define compile-omit-paths '("test/tests.rkt"))
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#lang racket/base
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(provide txexpr?/recur
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txexpr->values/attrs?)
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(require racket/list)
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;; A [TXcontainer T A E] is one of:
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;; - (List* T A (Listof E))
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;; - (Lxst* T (Listof E))
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;; Where A and E are disjoint.
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;; txexpr?/recur :
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;; Any
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;; [Any -> Bool : T]
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;; [Any -> Bool : #:+ (and A (! E)) #:- (! A)]
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;; [Any -> Bool : #:+ (and E (! A)) #:- (! E)]
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;; ->
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;; Bool
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;; : [TXcontainer T A E]
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;; the attrs? predicate and the element? predicate should be disjoint
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(define (txexpr?/recur v tag? attrs? element?)
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(and (list? v)
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(not (empty? v))
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(tag? (first v))
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(cond [(and (not (empty? (rest v)))
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(attrs? (second v)))
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(andmap element? (rest (rest v)))]
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[else
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(andmap element? (rest v))])))
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;; txexpr->values/attrs? :
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;; [TXcontainer T A E]
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;; [Any -> Bool : #:+ (and A (! E)) #:- (! A)]
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;; ->
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;; (values T A (Listof E))
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(define (txexpr->values/attrs? tx attrs?)
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(cond [(and (not (empty? (rest tx)))
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(attrs? (second tx)))
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(values (first tx) (second tx) (rest (rest tx)))]
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[else
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(values (first tx) '() (rest tx))]))
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@ -0,0 +1,127 @@
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#lang racket/base
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(provide stx-xexpr?
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stx-txexpr?
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stx-txexpr-tag?
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stx-txexpr-attrs?
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stx-txexpr->values
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stx-txexpr->list
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stx-txexpr-tag
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stx-txexpr-attrs
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stx-txexpr-elements)
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(require syntax/stx
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xml
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"base.rkt"
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"private/container.rkt")
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;; ---------------------------------------------------------
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;; Data Definitions
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;; A [Stx E] is one of:
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;; - (Syntaxof E)
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;; - E
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;; A StxXexpr is a [Stx XexprE]
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;; A StxTXexpr is a [Stx TXexprE]
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;; A StxTag is a [Stx Symbol]
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;; A StxAttrs is a (StxListof (StxList [Stx Symbol] [Stx String]))
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;; A StxElements is a (StxListof StxXexpr)
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;; A XexprE is one of:
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;; - String
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;; - TXexprE
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;; - Symbol ; for example 'nbsp representing ` `
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;; - ValidChar ; for example #x20 representing ` `
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;; - CData ; an instance of the `cdata` structure type from `xml`
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;; - Misc ; an instance of the `comment` or `p-i` structure types
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;; A TXexprE is one of:
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;; - (list* StxTag StxAttrs StxElements)
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;; - (list* StxTag StxElements)
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;; The types `StxAttrs` and `StxXexpr` are disjoint, as they
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;; need to be for this to be unambiguous.
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;; ---------------------------------------------------------
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;; Predicates
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;; Any -> Bool
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(define (stx-xexpr? v)
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(stx-xexpr?/recur v stx-xexpr?))
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;; Any -> Bool
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(define (stx-txexpr? v)
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(stx-txexpr?/recur v stx-xexpr?))
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;; Any [Any -> Bool] -> Bool
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(define (stx-xexpr?/recur v rec)
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(cond
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[(syntax? v) (stx-xexpr?/recur (syntax-e v) rec)]
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[(pair? v) (stx-txexpr?/recur v rec)]
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[else (xexpr?/recur v rec)]))
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;; Any [Any -> Bool] -> Bool
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;; the `rec` predicate should not overlap with `txexpr-attrs?`
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(define (xexpr?/recur v rec)
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(cond
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[(pair? v) (txexpr?/recur v txexpr-tag? txexpr-attrs? rec)]
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[(string? v) #true]
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[(symbol? v) #true]
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[(integer? v) (valid-char? v)]
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[(cdata? v) #true]
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[(comment? v) #true]
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[(p-i? v) #true]
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[else #false]))
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;; Any [Any -> Bool] -> Bool
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;; the `rec` predicate should not overlap with
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;; `stx-txexpr-attrs?`
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(define (stx-txexpr?/recur v rec)
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;; Even if it's not stx, the cdr or cddr might be syntax.
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;; This flattens it so that the cdd...r is always a pair or empty.
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(define lst (stx->list v))
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(and lst (txexpr?/recur lst stx-txexpr-tag? stx-txexpr-attrs? rec)))
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;; Any -> Bool
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(define (stx-txexpr-tag? v)
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(cond
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[(syntax? v) (txexpr-tag? (syntax-e v))]
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[else (txexpr-tag? v)]))
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;; Any -> Bool
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(define (stx-txexpr-attrs? v)
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(txexpr-attrs? (syntax->datum (datum->syntax #f v))))
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;; ---------------------------------------------------------
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;; Accessors
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;; StxTxexpr -> (values StxTag StxAttrs StxElements)
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(define (stx-txexpr->values v)
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(txexpr->values/attrs? (stx->list v) stx-txexpr-attrs?))
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;; StxTxexpr -> (List StxTag StxAttrs StxElements)
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(define (stx-txexpr->list v)
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(define-values [tag attrs elements] (stx-txexpr->values v))
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(list tag attrs elements))
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;; StxTxexpr -> StxTag
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(define (stx-txexpr-tag v)
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(define-values [tag attrs elements] (stx-txexpr->values v))
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tag)
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;; StxTxexpr -> StxAttrs
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(define (stx-txexpr-attrs v)
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(define-values [tag attrs elements] (stx-txexpr->values v))
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attrs)
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;; StxTxexpr -> StxElements
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(define (stx-txexpr-elements v)
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(define-values [tag attrs elements] (stx-txexpr->values v))
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elements)
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;; ---------------------------------------------------------
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@ -0,0 +1,63 @@
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#lang racket/base
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(provide values->list
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check-values=?
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check/values)
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(require rackunit
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(for-syntax racket/base))
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;; Takes an expression producing an unknown number of values
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;; and wraps them all in a list.
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(define-syntax-rule (values->list values-expr)
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(call-with-values (λ () values-expr) list))
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;; Checks that two expressions (each producing an unknown
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;; number of values until evaluated) produce the same number
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;; of values, and that the values are equal.
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(define-syntax check-values=?
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(lambda (stx)
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(syntax-case stx []
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[(_ actual-expr expected-expr)
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(syntax/loc stx
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(check/values check-equal? actual-expr expected-expr))])))
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(define-syntax check/values
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(lambda (stx)
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(syntax-case stx []
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[(_ check-form actual-expr expected-expr)
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(syntax/loc stx
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(check-form (vs actual-expr) (vs expected-expr)))])))
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;; Takes an expression producing an unknown number of values
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;; and wraps them in a "fake-values" structure that can be
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;; compared with other fake-values structures for equality,
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;; and can be printed to look like a call to `values`.
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(define-syntax-rule (vs values-expr)
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(fake-values (values->list values-expr)))
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;; if make-constructor-style-printer from racket/struct exists,
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;; this is it, and otherwise this is a cheap immitation.
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(define make-constructor-style-printer
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(with-handlers ([exn:fail:filesystem?
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(λ (e)
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(λ (get-head get-elems)
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(λ (v out mode)
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(define head (get-head v))
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(define elems (get-elems v))
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(fprintf out "(~a" head)
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(for ([elem elems])
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(fprintf out " ~v" elem))
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(fprintf out ")"))))])
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(dynamic-require 'racket/struct 'make-constructor-style-printer)))
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(struct fake-values [list]
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#:transparent
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#:methods gen:custom-write
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[(define write-proc
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(make-constructor-style-printer
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(lambda (self) 'values)
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(lambda (self) (fake-values-list self))))])
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#lang racket/base
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(require rackunit "../stx.rkt" "check-values.rkt"
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(for-syntax racket/base))
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;; Works on fully wrapped, non-wrapped, and partially
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;; wrapped values, and it checks that the the inputs
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;; are wrapped in all the same places. It checks scopes,
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;; but it does not check source location.
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(define-binary-check (check-stx=? stx=? actual expected))
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(define (stx=? a b)
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(cond
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[(and (identifier? a) (identifier? b))
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(bound-identifier=? a b)]
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[(and (syntax? a) (syntax? b))
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(and (bound-identifier=? (datum->syntax a '||) (datum->syntax b '||))
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(stx=? (syntax-e a) (syntax-e b)))]
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[else
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(equal?/recur a b stx=?)]))
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(define-syntax check-values-stx=?
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(lambda (stx)
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(syntax-case stx []
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[(_ actual-expr expected-expr)
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(syntax/loc stx
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(check/values check-stx=? actual-expr expected-expr))])))
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;; ---------------------------------------------------------
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;; Predicates
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(check-pred stx-xexpr? "A leaf on a string")
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(check-pred stx-xexpr? #'"A leaf in syntax")
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(check-pred stx-xexpr? #'(div))
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(check-pred stx-xexpr? #'(div ((id "top")) "Hello" (p "World")))
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(check-pred stx-xexpr? `(div ((id ,#'"top")) "Hello" ,#'(p "World")))
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(check-false (stx-txexpr? "A leaf without a tag"))
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(check-pred stx-txexpr? '(div))
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(check-pred stx-txexpr? #'(div))
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(check-pred stx-txexpr? #'(div ((id "top")) "Hello" (p "World")))
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(check-pred stx-txexpr? `(div ((id ,#'"top")) "Hello" ,#'(p "World")))
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(check-pred stx-txexpr-tag? 'div)
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(check-pred stx-txexpr-tag? #'div)
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(check-pred stx-txexpr-tag? 'this-is-something-else)
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(check-pred stx-txexpr-tag? #'this-is-something-else)
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(check-pred stx-txexpr-attrs? '())
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(check-pred stx-txexpr-attrs? #'())
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(check-pred stx-txexpr-attrs? '((id "top") (style "color: blue")))
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(check-pred stx-txexpr-attrs? #'((id "top") (style "color: blue")))
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(check-pred stx-txexpr-attrs? `((id "top") (style ,#'"color: blue")))
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;; ---------------------------------------------------------
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;; Accessors
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(check-values-stx=? (stx-txexpr->values '(p))
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(values 'p null null))
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(check-values-stx=? (stx-txexpr->values '(p "foo"))
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(values 'p null '("foo")))
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(check-values-stx=? (stx-txexpr->values '(p ((key "value"))))
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(values 'p '((key "value")) null))
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(check-values-stx=? (stx-txexpr->values '(p ((key "value")) "foo"))
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(values 'p '((key "value")) '("foo")))
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(check-values-stx=? (stx-txexpr->values #'(p))
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(values #'p null null))
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(check-values-stx=? (stx-txexpr->values #'(p "foo"))
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(values #'p null (list #'"foo")))
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(check-values-stx=? (stx-txexpr->values #'(p ((key "value"))))
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(values #'p #'((key "value")) null))
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(check-values-stx=? (stx-txexpr->values #'(p ((key "value")) "foo"))
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(values #'p #'((key "value")) (list #'"foo")))
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(check-values-stx=? (stx-txexpr->values `(,#'p))
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(values #'p null null))
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(check-values-stx=? (stx-txexpr->values `(p ,#'"foo"))
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(values 'p null (list #'"foo")))
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(check-values-stx=? (stx-txexpr->values `(p ((,#'key "value")) . ,#'("foo")))
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(values 'p `((,#'key "value")) (list #'"foo")))
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(check-stx=? (stx-txexpr-tag '(p ((key "value"))"foo" (em "square")))
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'p)
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(check-stx=? (stx-txexpr-tag #'(p ((key "value"))"foo" (em "square")))
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#'p)
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(check-stx=? (stx-txexpr-attrs '(p ((key "value"))"foo" "bar" (em "square")))
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'((key "value")))
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(check-stx=? (stx-txexpr-attrs #'(p ((key "value"))"foo" "bar" (em "square")))
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#'((key "value")))
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(check-stx=? (stx-txexpr-attrs '(p "foo" "bar" (em "square")))
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'())
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(check-stx=? (stx-txexpr-attrs #'(p "foo" "bar" (em "square")))
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'())
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(check-stx=? (stx-txexpr-elements '(p "foo" "bar" (em "square")))
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'("foo" "bar" (em "square")))
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(check-stx=? (stx-txexpr-elements #'(p "foo" "bar" (em "square")))
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(list #'"foo" #'"bar" #'(em "square")))
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(check-stx=? (stx-txexpr-elements '(p ((k "v"))"foo" "bar" (em "square")))
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'("foo" "bar" (em "square")))
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(check-stx=? (stx-txexpr-elements #'(p ((k "v"))"foo" "bar" (em "square")))
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(list #'"foo" #'"bar" #'(em "square")))
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(check-stx=? (stx-txexpr-elements #'(p ((k "v"))"foo" . ("bar" (em "square"))))
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(list #'"foo" #'"bar" #'(em "square")))
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(check-stx=? (stx-txexpr-elements `(p ((k "v"))"foo" .,#'("bar" (em "square"))))
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(list "foo" #'"bar" #'(em "square")))
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;; ---------------------------------------------------------
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