2003-05-01 06:21:33 -04:00
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;;; Code for processing file names with regular expressions.
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;;; Copyright (c) 1994 by David Albertz (dalbertz@clark.lcs.mit.edu).
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;;; Copyright (c) 1994 by Olin Shivers (shivers@clark.lcs.mit.edu).
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2004-01-09 08:01:39 -05:00
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;;; See file COPYING
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2003-05-01 06:21:33 -04:00
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;;; Usage: (file-match root dots? . pattern-list)
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;;; root Search starts from here. Usefully "." (cwd)
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;;; dots? => if true, dot files will be matched.
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;;; if false, dot files will not be matched.
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;;; pattern-list := a list of
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;;; - strings
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;;; These are split at /'s and then
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;;; treated as Posix regexp strings.
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;;; - regexps (typically made with RX macro)
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;;; - predicates
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;;; Each member of the list corresponds to one
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;;; or more levels in a directory. (A string
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;;; with embedded "/" characters corresponds
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;;; to multiple levels.)
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;;; Example:
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;;; (file-match "." #f "foo" "bar" "\\.c$")
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;;; means match files that end in ".c"
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;;; if they reside in a directory with
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;;; a name that contains "bar", which
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;;; itself must reside in a directory
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;;; with a name that contains "foo".
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;;; Here are two more equivalent specs
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;;; for the example above:
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;;; (file-match "." #f "foo/bar/\\.c$")
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;;; (file-match "." #f (rx "foo") (rx "bar")
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;;; (rx ".c" eos))
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;;; If a member in the list is a predicate,
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;;; the predicate must be a procedure of
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;;; one argument. This procedure is applied
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;;; to the file name being processed. If it
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;;; returns true, then the file is considered
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;;; a match.
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;;; Return: list of matching file names (strings)
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;;; The matcher never considers "." or "..".
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;;; Subtle point:
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;;; If a file-match predicate raises an error condition, it is caught by
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;;; FILE-MATCH, and the file under consideration is not matched. This
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;;; means that (file-match "." #f file-directory?) doesn't error out
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;;; if you happen to run it in a directory containing a dangling symlink
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;;; when FILE-DIRECTORY? is applied to the bogus symlink.
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(define (file-match root dot-files? . patterns)
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(let ((patterns (apply append
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(map (lambda (p) (if (string? p)
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(map posix-string->regexp (split-pat p))
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p))
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patterns))))
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(let recur ((root root)
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(patterns patterns))
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(if (pair? patterns)
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(let* ((pattern (car patterns))
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(patterns (cdr patterns))
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(dir (file-name-as-directory root))
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(matcher (cond ((regexp? pattern)
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(lambda (f) (regexp-search? pattern f)))
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;; This arm makes a file-matcher using
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;; predicate PATTERN. If PATTERN signals
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;; an error condition while it is being
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;; run, our matcher catches it and returns
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;; #f.
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((procedure? pattern)
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(lambda (f)
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(call-with-current-continuation
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(lambda (abort)
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(with-handler (lambda (condition more)
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(if (error? condition)
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(abort #f)
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(more)))
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(lambda ()
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(pattern (string-append dir f))))))))
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(else
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(error "Bad file-match pattern" pattern))))
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(candidates (maybe-directory-files root dot-files?))
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(winners (filter matcher candidates)))
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(apply append (map (lambda (fn) (recur (string-append dir fn)
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patterns))
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winners)))
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;; All done
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(cons root '())))))
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;;; Split the pattern at the /'s. Slashes are assumed to *separate*
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;;; subpatterns, not terminate them.
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(define (split-pat pat)
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(if (procedure? pat) (list pat)
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(let lp ((i (string-length pat))
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(ans '()))
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(cond ((string-index-right pat #\/ i) =>
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(lambda (j) (lp j (cons (substring pat (+ j 1) i) ans))))
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(else
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(cons (substring pat 0 i) ans))))))
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