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@ -171,48 +171,61 @@ This would be the place to check a syntax property for hiding.
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(datum->syntax #f d (positions->srcloc start-pos end-pos) stx-with-original?-property))
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(datum->syntax #f d (positions->srcloc start-pos end-pos) stx-with-original?-property))
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(define (remove-rule-name component-stx #:splice? [splice #f])
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(define (apply-name-property name-stx stxs)
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;; when removing a rule name, we apply it as a syntax property to the remaining elements
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(for/list ([stx (in-list (syntax->list stxs))])
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;; for possible later usage (aka, why throw away information)
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(syntax-property stx (syntax->datum name-stx) name-stx)))
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(with-syntax ([(name . subcomponents) component-stx])
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(let ([name-datum (syntax->datum #'name)])
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(if splice
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(define (splice-stx component-stx)
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;; when splicing, returned list is a regular list, with each element having the property.
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;; when splicing, we apply rule name as a syntax property to the remaining elements
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(map (λ(sc) (syntax-property sc name-datum #'name)) (syntax->list #'subcomponents))
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(syntax-case component-stx ()
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;; when hiding, returned list should be a syntaxed list with the property
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[(name . subcomponents)
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;; iow, basically the same as `component-stx`, minus the name
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(syntax-property #'name 'rule-id) ; name has not been removed (recognized by presence of 'rule-id)
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(syntax-property (datum->syntax component-stx #'subcomponents component-stx component-stx) name-datum #'name)))))
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(apply-name-property #'name #'subcomponents)]
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[subcomponents ; name has been removed, but it is stored in 'generating-rule property
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(let* ([name-datum (syntax-property #'subcomponents 'generating-rule)]
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(define (preprocess-component-lists component-lists)
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[name-stx (syntax-property #'subcomponents name-datum)])
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; "preprocess" means splicing and rule-name-hiding where indicated
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(apply-name-property name-stx #'subcomponents))]))
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(define (remove-rule-name component-stx)
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(syntax-case component-stx ()
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[(name . subcomponents)
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(let ([name-datum (syntax->datum #'name)])
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(syntax-property
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(syntax-property
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(datum->syntax component-stx #'subcomponents component-stx component-stx)
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name-datum #'name)
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'generating-rule name-datum))]))
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(define (splice-component-lists component-lists)
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;; each `component-list` is a list that's either empty, or contains component-stx objects
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;; inside `component-stx` is a name followed by subcomponents
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(append*
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(append*
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;; each `component-list` is a list that's either empty, or has a single component-stx object
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;; inside `component-stx` is a name followed by subcomponents
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(for*/list ([component-list (in-list component-lists)]
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(for*/list ([component-list (in-list component-lists)]
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[component-stx (in-list component-list)]) ; this has the effect of omitting any empty `component-list`
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#:unless (empty? component-list)
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(list
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[component-stx (in-list component-list)])
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(cond
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(if (or (eq? (syntax-property component-stx 'hide-or-splice) 'splice)
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;; test splice first in case both hiding and splicing are set, for instance:
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;; /rule : thing @rule
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;; otherwise the hide prevents the splice from being expressed
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[(or (eq? (syntax-property component-stx 'hide-or-splice) 'splice)
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(syntax-property component-stx 'splice-rh-id))
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(syntax-property component-stx 'splice-rh-id))
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(remove-rule-name component-stx #:splice? #t)] ; spliced version is lifted out of the sublist
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(splice-stx component-stx) ; spliced version is lifted out of the sublist
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[(eq? (syntax-property component-stx 'hide-or-splice) 'hide)
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(list component-stx))))) ; otherwise left inside sublist
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(list (remove-rule-name component-stx))] ; hidden version still wrapped in a sublist
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[else (list component-stx)])))))
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;; rule-components->syntax: (U symbol false) (listof stx) ... #:srcloc (U #f (list src line column offset span)) -> stx
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;; rule-components->syntax: (U symbol false) (listof stx) ... #:srcloc (U #f (list src line column offset span)) -> stx
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;; Creates an stx out of the rule name and its components.
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;; Creates an stx out of the rule name and its components.
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;; The location information of the rule spans that of its components.
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;; The location information of the rule spans that of its components.
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(define (rule-components->syntax rule-name/false #:srcloc [srcloc #f] #:hide-or-splice? [hide-or-splice #f] . component-lists)
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(define (rule-components->syntax rule-name/false #:srcloc [srcloc #f] #:hide-or-splice? [hide-or-splice #f] . component-lists)
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(define new-rule-name (datum->syntax #f rule-name/false srcloc stx-with-original?-property))
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(define new-rule-name (syntax-property
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(define new-rule-components (append* (preprocess-component-lists component-lists)))
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(datum->syntax #f rule-name/false srcloc stx-with-original?-property)
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(define rule-result (cons new-rule-name new-rule-components))
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'rule-id #t))
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(define rule-result (cons new-rule-name (splice-component-lists component-lists)))
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(define syntaxed-rule-result (datum->syntax #f rule-result srcloc stx-with-original?-property))
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(define syntaxed-rule-result (datum->syntax #f rule-result srcloc stx-with-original?-property))
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;; not 'hide-or-splice-lhs-id, because this will now become a (right-hand) component in a different (left-hand) rule
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;; not 'hide-or-splice-lhs-id, because this will now become
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;; actual splicing happens when the parent rule is processed (with procedure above)
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;; a (right-hand) component in a different (left-hand) rule
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(syntax-property syntaxed-rule-result 'hide-or-splice hide-or-splice))
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;; actual splicing happens when the parent rule is processed (with `splice-component-lists`)
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(syntax-property ((if (eq? hide-or-splice 'hide)
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remove-rule-name
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values) syntaxed-rule-result)
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'hide-or-splice hide-or-splice))
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