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68 lines
2.3 KiB
Racket
68 lines
2.3 KiB
Racket
#lang racket/base
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(require parser-tools/lex
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racket/string
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(prefix-in : parser-tools/lex-sre)
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(for-syntax racket/base))
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(provide (all-from-out parser-tools/lex)
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(all-from-out parser-tools/lex-sre)
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[struct-out token-struct]
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token
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[struct-out exn:fail:parsing]
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apply-tokenizer
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trim-ends
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from/to)
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(struct token-struct (type val offset line column span skip?)
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#:transparent)
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;; Token constructor.
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;; This is intended to be a general token structure constructor that's nice
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;; to work with.
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;; It should cooperate with the tokenizers constructed with make-permissive-tokenizer.
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(define token
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(lambda (type ;; (U symbol string)
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[val #f] ;; any
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#:offset [offset #f] ;; (U #f number)
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#:line [line #f] ;; (U #f number)
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#:column [column #f] ;; (U #f number)
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#:span [span #f] ;; boolean
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#:skip? [skip? #f])
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(token-struct (if (string? type) (string->symbol type) type)
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val
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offset line column span skip?)))
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;; When bad things happen, we need to emit errors with source location.
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(struct exn:fail:parsing exn:fail (srclocs)
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#:transparent
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#:property prop:exn:srclocs (lambda (instance)
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(exn:fail:parsing-srclocs instance)))
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(define (apply-tokenizer tokenize in)
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(define input-port (if (string? in)
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(open-input-string in)
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in))
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(define token-producer (tokenize input-port))
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(for/list ([token (in-producer token-producer (λ(token)
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;; position-tokens are produced by lexer-src-pos
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(eq? eof (if (position-token? token)
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(position-token-token token)
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token))))])
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token))
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(define (trim-ends left lexeme right)
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(string-trim (string-trim lexeme left #:right? #f) right #:left? #f))
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(define-lex-trans from/to
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(λ(stx)
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(syntax-case stx ()
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[(_ OPEN CLOSE)
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#'(:seq OPEN (complement (:seq any-string CLOSE any-string)) CLOSE)])))
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